src/HOL/List.thy
author nipkow
Wed, 28 Jan 2009 16:29:16 +0100
changeset 29667 53103fc8ffa3
parent 29509 1ff0f3f08a7b
child 29626 6f8aada233c1
permissions -rw-r--r--
Replaced group_ and ring_simps by algebra_simps; removed compare_rls - use algebra_simps now
Ignore whitespace changes - Everywhere: Within whitespace: At end of lines:
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
     1
(*  Title:      HOL/List.thy
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
     2
    Author:     Tobias Nipkow
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
     3
*)
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
     4
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
     5
header {* The datatype of finite lists *}
13122
wenzelm
parents: 13114
diff changeset
     6
15131
c69542757a4d New theory header syntax.
nipkow
parents: 15113
diff changeset
     7
theory List
27368
9f90ac19e32b established Plain theory and image
haftmann
parents: 27106
diff changeset
     8
imports Plain Relation_Power Presburger Recdef ATP_Linkup
21754
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
     9
uses "Tools/string_syntax.ML"
15131
c69542757a4d New theory header syntax.
nipkow
parents: 15113
diff changeset
    10
begin
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    11
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
    12
datatype 'a list =
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    13
    Nil    ("[]")
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    14
  | Cons 'a  "'a list"    (infixr "#" 65)
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    15
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
    16
subsection{*Basic list processing functions*}
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
    17
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    18
consts
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    19
  filter:: "('a => bool) => 'a list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    20
  concat:: "'a list list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    21
  foldl :: "('b => 'a => 'b) => 'b => 'a list => 'b"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    22
  foldr :: "('a => 'b => 'b) => 'a list => 'b => 'b"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    23
  hd:: "'a list => 'a"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    24
  tl:: "'a list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    25
  last:: "'a list => 'a"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    26
  butlast :: "'a list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    27
  set :: "'a list => 'a set"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    28
  map :: "('a=>'b) => ('a list => 'b list)"
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
    29
  listsum ::  "'a list => 'a::monoid_add"
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    30
  nth :: "'a list => nat => 'a"    (infixl "!" 100)
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    31
  list_update :: "'a list => nat => 'a => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    32
  take:: "nat => 'a list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    33
  drop:: "nat => 'a list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    34
  takeWhile :: "('a => bool) => 'a list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    35
  dropWhile :: "('a => bool) => 'a list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    36
  rev :: "'a list => 'a list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    37
  zip :: "'a list => 'b list => ('a * 'b) list"
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
    38
  upt :: "nat => nat => nat list" ("(1[_..</_'])")
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    39
  remdups :: "'a list => 'a list"
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
    40
  remove1 :: "'a => 'a list => 'a list"
27693
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
    41
  removeAll :: "'a => 'a list => 'a list"
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    42
  "distinct":: "'a list => bool"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    43
  replicate :: "nat => 'a => 'a list"
19390
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
    44
  splice :: "'a list \<Rightarrow> 'a list \<Rightarrow> 'a list"
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
    45
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    46
13146
f43153b63361 *** empty log message ***
nipkow
parents: 13145
diff changeset
    47
nonterminals lupdbinds lupdbind
5077
71043526295f * HOL/List: new function list_update written xs[i:=v] that updates the i-th
nipkow
parents: 4643
diff changeset
    48
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    49
syntax
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    50
  -- {* list Enumeration *}
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    51
  "@list" :: "args => 'a list"    ("[(_)]")
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    52
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    53
  -- {* Special syntax for filter *}
23279
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
    54
  "@filter" :: "[pttrn, 'a list, bool] => 'a list"    ("(1[_<-_./ _])")
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    55
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    56
  -- {* list update *}
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    57
  "_lupdbind":: "['a, 'a] => lupdbind"    ("(2_ :=/ _)")
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    58
  "" :: "lupdbind => lupdbinds"    ("_")
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    59
  "_lupdbinds" :: "[lupdbind, lupdbinds] => lupdbinds"    ("_,/ _")
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    60
  "_LUpdate" :: "['a, lupdbinds] => 'a"    ("_/[(_)]" [900,0] 900)
5077
71043526295f * HOL/List: new function list_update written xs[i:=v] that updates the i-th
nipkow
parents: 4643
diff changeset
    61
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    62
translations
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    63
  "[x, xs]" == "x#[xs]"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    64
  "[x]" == "x#[]"
23279
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
    65
  "[x<-xs . P]"== "filter (%x. P) xs"
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
    66
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    67
  "_LUpdate xs (_lupdbinds b bs)"== "_LUpdate (_LUpdate xs b) bs"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    68
  "xs[i:=x]" == "list_update xs i x"
5077
71043526295f * HOL/List: new function list_update written xs[i:=v] that updates the i-th
nipkow
parents: 4643
diff changeset
    69
5427
26c9a7c0b36b Arith: less_diff_conv
nipkow
parents: 5425
diff changeset
    70
12114
a8e860c86252 eliminated old "symbols" syntax, use "xsymbols" instead;
wenzelm
parents: 10832
diff changeset
    71
syntax (xsymbols)
23279
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
    72
  "@filter" :: "[pttrn, 'a list, bool] => 'a list"("(1[_\<leftarrow>_ ./ _])")
14565
c6dc17aab88a use more symbols in HTML output
kleing
parents: 14538
diff changeset
    73
syntax (HTML output)
23279
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
    74
  "@filter" :: "[pttrn, 'a list, bool] => 'a list"("(1[_\<leftarrow>_ ./ _])")
3342
ec3b55fcb165 New operator "lists" for formalizing sets of lists
paulson
parents: 3320
diff changeset
    75
ec3b55fcb165 New operator "lists" for formalizing sets of lists
paulson
parents: 3320
diff changeset
    76
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
    77
text {*
14589
feae7b5fd425 tuned document;
wenzelm
parents: 14565
diff changeset
    78
  Function @{text size} is overloaded for all datatypes. Users may
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
    79
  refer to the list version as @{text length}. *}
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
    80
19363
667b5ea637dd refined 'abbreviation';
wenzelm
parents: 19302
diff changeset
    81
abbreviation
21404
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
    82
  length :: "'a list => nat" where
19363
667b5ea637dd refined 'abbreviation';
wenzelm
parents: 19302
diff changeset
    83
  "length == size"
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
    84
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
    85
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    86
  "hd(x#xs) = x"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    87
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
    88
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    89
  "tl([]) = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    90
  "tl(x#xs) = xs"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    91
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
    92
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    93
  "last(x#xs) = (if xs=[] then x else last xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    94
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
    95
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    96
  "butlast []= []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    97
  "butlast(x#xs) = (if xs=[] then [] else x#butlast xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
    98
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
    99
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   100
  "set [] = {}"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   101
  "set (x#xs) = insert x (set xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   102
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   103
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   104
  "map f [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   105
  "map f (x#xs) = f(x)#map f xs"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   106
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   107
primrec
25559
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
   108
  append :: "'a list \<Rightarrow> 'a list \<Rightarrow> 'a list" (infixr "@" 65)
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
   109
where
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
   110
  append_Nil:"[] @ ys = ys"
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
   111
  | append_Cons: "(x#xs) @ ys = x # xs @ ys"
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   112
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   113
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   114
  "rev([]) = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   115
  "rev(x#xs) = rev(xs) @ [x]"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   116
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   117
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   118
  "filter P [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   119
  "filter P (x#xs) = (if P x then x#filter P xs else filter P xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   120
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   121
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   122
  foldl_Nil:"foldl f a [] = a"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   123
  foldl_Cons: "foldl f a (x#xs) = foldl f (f a x) xs"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   124
8000
acafa0f15131 added foldr
paulson
parents: 7224
diff changeset
   125
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   126
  "foldr f [] a = a"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   127
  "foldr f (x#xs) a = f x (foldr f xs a)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   128
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   129
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   130
  "concat([]) = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   131
  "concat(x#xs) = x @ concat(xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   132
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   133
primrec
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
   134
"listsum [] = 0"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
   135
"listsum (x # xs) = x + listsum xs"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
   136
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
   137
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   138
  drop_Nil:"drop n [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   139
  drop_Cons: "drop n (x#xs) = (case n of 0 => x#xs | Suc(m) => drop m xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   140
  -- {*Warning: simpset does not contain this definition, but separate
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   141
       theorems for @{text "n = 0"} and @{text "n = Suc k"} *}
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   142
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   143
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   144
  take_Nil:"take n [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   145
  take_Cons: "take n (x#xs) = (case n of 0 => [] | Suc(m) => x # take m xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   146
  -- {*Warning: simpset does not contain this definition, but separate
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   147
       theorems for @{text "n = 0"} and @{text "n = Suc k"} *}
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   148
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   149
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   150
  nth_Cons:"(x#xs)!n = (case n of 0 => x | (Suc k) => xs!k)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   151
  -- {*Warning: simpset does not contain this definition, but separate
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   152
       theorems for @{text "n = 0"} and @{text "n = Suc k"} *}
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   153
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   154
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   155
  "[][i:=v] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   156
  "(x#xs)[i:=v] = (case i of 0 => v # xs | Suc j => x # xs[j:=v])"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   157
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   158
primrec
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   159
  "takeWhile P [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   160
  "takeWhile P (x#xs) = (if P x then x#takeWhile P xs else [])"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   161
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   162
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   163
  "dropWhile P [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   164
  "dropWhile P (x#xs) = (if P x then dropWhile P xs else x#xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   165
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   166
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   167
  "zip xs [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   168
  zip_Cons: "zip xs (y#ys) = (case xs of [] => [] | z#zs => (z,y)#zip zs ys)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   169
  -- {*Warning: simpset does not contain this definition, but separate
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   170
       theorems for @{text "xs = []"} and @{text "xs = z # zs"} *}
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   171
5427
26c9a7c0b36b Arith: less_diff_conv
nipkow
parents: 5425
diff changeset
   172
primrec
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
   173
  upt_0: "[i..<0] = []"
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
   174
  upt_Suc: "[i..<(Suc j)] = (if i <= j then [i..<j] @ [j] else [])"
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   175
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   176
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   177
  "distinct [] = True"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   178
  "distinct (x#xs) = (x ~: set xs \<and> distinct xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   179
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   180
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   181
  "remdups [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   182
  "remdups (x#xs) = (if x : set xs then remdups xs else x # remdups xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   183
5183
89f162de39cf Adapted to new datatype package.
berghofe
parents: 5162
diff changeset
   184
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   185
  "remove1 x [] = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   186
  "remove1 x (y#xs) = (if x=y then xs else y # remove1 x xs)"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   187
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   188
primrec
27693
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
   189
  "removeAll x [] = []"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
   190
  "removeAll x (y#xs) = (if x=y then removeAll x xs else y # removeAll x xs)"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
   191
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
   192
primrec
15307
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   193
  replicate_0: "replicate 0 x = []"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   194
  replicate_Suc: "replicate (Suc n) x = x # replicate n x"
10dd989282fd indentation
paulson
parents: 15305
diff changeset
   195
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   196
definition
21404
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   197
  rotate1 :: "'a list \<Rightarrow> 'a list" where
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   198
  "rotate1 xs = (case xs of [] \<Rightarrow> [] | x#xs \<Rightarrow> xs @ [x])"
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   199
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   200
definition
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   201
  rotate :: "nat \<Rightarrow> 'a list \<Rightarrow> 'a list" where
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   202
  "rotate n = rotate1 ^ n"
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   203
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   204
definition
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   205
  list_all2 :: "('a => 'b => bool) => 'a list => 'b list => bool" where
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28537
diff changeset
   206
  [code del]: "list_all2 P xs ys =
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   207
    (length xs = length ys \<and> (\<forall>(x, y) \<in> set (zip xs ys). P x y))"
21404
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   208
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   209
definition
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   210
  sublist :: "'a list => nat set => 'a list" where
eb85850d3eb7 more robust syntax for definition/abbreviation/notation;
wenzelm
parents: 21211
diff changeset
   211
  "sublist xs A = map fst (filter (\<lambda>p. snd p \<in> A) (zip xs [0..<size xs]))"
17086
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
   212
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
   213
primrec
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   214
  "splice [] ys = ys"
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   215
  "splice (x#xs) ys = (if ys=[] then x#xs else x # hd ys # splice xs (tl ys))"
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   216
    -- {*Warning: simpset does not contain the second eqn but a derived one. *}
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   217
26771
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   218
text{*
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   219
\begin{figure}[htbp]
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   220
\fbox{
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   221
\begin{tabular}{l}
27381
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   222
@{lemma "[a,b]@[c,d] = [a,b,c,d]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   223
@{lemma "length [a,b,c] = 3" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   224
@{lemma "set [a,b,c] = {a,b,c}" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   225
@{lemma "map f [a,b,c] = [f a, f b, f c]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   226
@{lemma "rev [a,b,c] = [c,b,a]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   227
@{lemma "hd [a,b,c,d] = a" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   228
@{lemma "tl [a,b,c,d] = [b,c,d]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   229
@{lemma "last [a,b,c,d] = d" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   230
@{lemma "butlast [a,b,c,d] = [a,b,c]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   231
@{lemma[source] "filter (\<lambda>n::nat. n<2) [0,2,1] = [0,1]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   232
@{lemma "concat [[a,b],[c,d,e],[],[f]] = [a,b,c,d,e,f]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   233
@{lemma "foldl f x [a,b,c] = f (f (f x a) b) c" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   234
@{lemma "foldr f [a,b,c] x = f a (f b (f c x))" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   235
@{lemma "zip [a,b,c] [x,y,z] = [(a,x),(b,y),(c,z)]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   236
@{lemma "zip [a,b] [x,y,z] = [(a,x),(b,y)]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   237
@{lemma "splice [a,b,c] [x,y,z] = [a,x,b,y,c,z]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   238
@{lemma "splice [a,b,c,d] [x,y] = [a,x,b,y,c,d]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   239
@{lemma "take 2 [a,b,c,d] = [a,b]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   240
@{lemma "take 6 [a,b,c,d] = [a,b,c,d]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   241
@{lemma "drop 2 [a,b,c,d] = [c,d]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   242
@{lemma "drop 6 [a,b,c,d] = []" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   243
@{lemma "takeWhile (%n::nat. n<3) [1,2,3,0] = [1,2]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   244
@{lemma "dropWhile (%n::nat. n<3) [1,2,3,0] = [3,0]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   245
@{lemma "distinct [2,0,1::nat]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   246
@{lemma "remdups [2,0,2,1::nat,2] = [0,1,2]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   247
@{lemma "remove1 2 [2,0,2,1::nat,2] = [0,2,1,2]" by simp}\\
27693
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
   248
@{lemma "removeAll 2 [2,0,2,1::nat,2] = [0,1]" by simp}\\
27381
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   249
@{lemma "nth [a,b,c,d] 2 = c" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   250
@{lemma "[a,b,c,d][2 := x] = [a,b,x,d]" by simp}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   251
@{lemma "sublist [a,b,c,d,e] {0,2,3} = [a,c,d]" by (simp add:sublist_def)}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   252
@{lemma "rotate1 [a,b,c,d] = [b,c,d,a]" by (simp add:rotate1_def)}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   253
@{lemma "rotate 3 [a,b,c,d] = [d,a,b,c]" by (simp add:rotate1_def rotate_def nat_number)}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   254
@{lemma "replicate 4 a = [a,a,a,a]" by (simp add:nat_number)}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   255
@{lemma "[2..<5] = [2,3,4]" by (simp add:nat_number)}\\
19ae7064f00f @{lemma}: 'by' keyword;
wenzelm
parents: 27368
diff changeset
   256
@{lemma "listsum [1,2,3::nat] = 6" by simp}
26771
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   257
\end{tabular}}
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   258
\caption{Characteristic examples}
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   259
\label{fig:Characteristic}
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   260
\end{figure}
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   261
Figure~\ref{fig:Characteristic} shows charachteristic examples
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   262
that should give an intuitive understanding of the above functions.
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   263
*}
1d67ab20f358 Added documentation
nipkow
parents: 26749
diff changeset
   264
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
   265
text{* The following simple sort functions are intended for proofs,
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
   266
not for efficient implementations. *}
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
   267
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   268
context linorder
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   269
begin
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   270
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   271
fun sorted :: "'a list \<Rightarrow> bool" where
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
   272
"sorted [] \<longleftrightarrow> True" |
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
   273
"sorted [x] \<longleftrightarrow> True" |
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
   274
"sorted (x#y#zs) \<longleftrightarrow> x <= y \<and> sorted (y#zs)"
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
   275
25559
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
   276
primrec insort :: "'a \<Rightarrow> 'a list \<Rightarrow> 'a list" where
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
   277
"insort x [] = [x]" |
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
   278
"insort x (y#ys) = (if x <= y then (x#y#ys) else y#(insort x ys))"
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
   279
25559
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
   280
primrec sort :: "'a list \<Rightarrow> 'a list" where
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
   281
"sort [] = []" |
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
   282
"sort (x#xs) = insort x (sort xs)"
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
   283
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   284
end
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   285
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
   286
23388
77645da0db85 tuned proofs: avoid implicit prems;
wenzelm
parents: 23279
diff changeset
   287
subsubsection {* List comprehension *}
23192
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   288
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   289
text{* Input syntax for Haskell-like list comprehension notation.
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   290
Typical example: @{text"[(x,y). x \<leftarrow> xs, y \<leftarrow> ys, x \<noteq> y]"},
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   291
the list of all pairs of distinct elements from @{text xs} and @{text ys}.
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   292
The syntax is as in Haskell, except that @{text"|"} becomes a dot
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   293
(like in Isabelle's set comprehension): @{text"[e. x \<leftarrow> xs, \<dots>]"} rather than
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   294
\verb![e| x <- xs, ...]!.
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   295
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   296
The qualifiers after the dot are
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   297
\begin{description}
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   298
\item[generators] @{text"p \<leftarrow> xs"},
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   299
 where @{text p} is a pattern and @{text xs} an expression of list type, or
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   300
\item[guards] @{text"b"}, where @{text b} is a boolean expression.
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   301
%\item[local bindings] @ {text"let x = e"}.
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   302
\end{description}
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   303
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   304
Just like in Haskell, list comprehension is just a shorthand. To avoid
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   305
misunderstandings, the translation into desugared form is not reversed
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   306
upon output. Note that the translation of @{text"[e. x \<leftarrow> xs]"} is
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   307
optmized to @{term"map (%x. e) xs"}.
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   308
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   309
It is easy to write short list comprehensions which stand for complex
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   310
expressions. During proofs, they may become unreadable (and
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   311
mangled). In such cases it can be advisable to introduce separate
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   312
definitions for the list comprehensions in question.  *}
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   313
23209
098a23702aba *** empty log message ***
nipkow
parents: 23192
diff changeset
   314
(*
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   315
Proper theorem proving support would be nice. For example, if
23192
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   316
@{text"set[f x y. x \<leftarrow> xs, y \<leftarrow> ys, P x y]"}
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   317
produced something like
23209
098a23702aba *** empty log message ***
nipkow
parents: 23192
diff changeset
   318
@{term"{z. EX x: set xs. EX y:set ys. P x y \<and> z = f x y}"}.
098a23702aba *** empty log message ***
nipkow
parents: 23192
diff changeset
   319
*)
098a23702aba *** empty log message ***
nipkow
parents: 23192
diff changeset
   320
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   321
nonterminals lc_qual lc_quals
23192
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   322
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   323
syntax
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   324
"_listcompr" :: "'a \<Rightarrow> lc_qual \<Rightarrow> lc_quals \<Rightarrow> 'a list"  ("[_ . __")
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   325
"_lc_gen" :: "'a \<Rightarrow> 'a list \<Rightarrow> lc_qual" ("_ <- _")
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   326
"_lc_test" :: "bool \<Rightarrow> lc_qual" ("_")
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   327
(*"_lc_let" :: "letbinds => lc_qual"  ("let _")*)
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   328
"_lc_end" :: "lc_quals" ("]")
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   329
"_lc_quals" :: "lc_qual \<Rightarrow> lc_quals \<Rightarrow> lc_quals" (", __")
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   330
"_lc_abs" :: "'a => 'b list => 'b list"
23192
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   331
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   332
(* These are easier than ML code but cannot express the optimized
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   333
   translation of [e. p<-xs]
23192
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   334
translations
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   335
"[e. p<-xs]" => "concat(map (_lc_abs p [e]) xs)"
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   336
"_listcompr e (_lc_gen p xs) (_lc_quals Q Qs)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   337
 => "concat (map (_lc_abs p (_listcompr e Q Qs)) xs)"
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   338
"[e. P]" => "if P then [e] else []"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   339
"_listcompr e (_lc_test P) (_lc_quals Q Qs)"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   340
 => "if P then (_listcompr e Q Qs) else []"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   341
"_listcompr e (_lc_let b) (_lc_quals Q Qs)"
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   342
 => "_Let b (_listcompr e Q Qs)"
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   343
*)
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   344
23279
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
   345
syntax (xsymbols)
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   346
"_lc_gen" :: "'a \<Rightarrow> 'a list \<Rightarrow> lc_qual" ("_ \<leftarrow> _")
23279
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
   347
syntax (HTML output)
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   348
"_lc_gen" :: "'a \<Rightarrow> 'a list \<Rightarrow> lc_qual" ("_ \<leftarrow> _")
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   350
parse_translation (advanced) {*
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   351
let
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   352
  val NilC = Syntax.const @{const_name Nil};
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   353
  val ConsC = Syntax.const @{const_name Cons};
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   354
  val mapC = Syntax.const @{const_name map};
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   355
  val concatC = Syntax.const @{const_name concat};
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   356
  val IfC = Syntax.const @{const_name If};
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   357
  fun singl x = ConsC $ x $ NilC;
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   358
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   359
   fun pat_tr ctxt p e opti = (* %x. case x of p => e | _ => [] *)
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   360
    let
29281
b22ccb3998db eliminated OldTerm.add_term_free_names;
wenzelm
parents: 29270
diff changeset
   361
      val x = Free (Name.variant (fold Term.add_free_names [p, e] []) "x", dummyT);
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   362
      val e = if opti then singl e else e;
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   363
      val case1 = Syntax.const "_case1" $ p $ e;
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   364
      val case2 = Syntax.const "_case1" $ Syntax.const Term.dummy_patternN
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   365
                                        $ NilC;
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   366
      val cs = Syntax.const "_case2" $ case1 $ case2
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   367
      val ft = DatatypeCase.case_tr false DatatypePackage.datatype_of_constr
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   368
                 ctxt [x, cs]
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   369
    in lambda x ft end;
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   370
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   371
  fun abs_tr ctxt (p as Free(s,T)) e opti =
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   372
        let val thy = ProofContext.theory_of ctxt;
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   373
            val s' = Sign.intern_const thy s
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   374
        in if Sign.declared_const thy s'
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   375
           then (pat_tr ctxt p e opti, false)
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   376
           else (lambda p e, true)
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   377
        end
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   378
    | abs_tr ctxt p e opti = (pat_tr ctxt p e opti, false);
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   379
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   380
  fun lc_tr ctxt [e, Const("_lc_test",_)$b, qs] =
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   381
        let val res = case qs of Const("_lc_end",_) => singl e
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   382
                      | Const("_lc_quals",_)$q$qs => lc_tr ctxt [e,q,qs];
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   383
        in IfC $ b $ res $ NilC end
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   384
    | lc_tr ctxt [e, Const("_lc_gen",_) $ p $ es, Const("_lc_end",_)] =
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   385
        (case abs_tr ctxt p e true of
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   386
           (f,true) => mapC $ f $ es
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   387
         | (f, false) => concatC $ (mapC $ f $ es))
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   388
    | lc_tr ctxt [e, Const("_lc_gen",_) $ p $ es, Const("_lc_quals",_)$q$qs] =
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   389
        let val e' = lc_tr ctxt [e,q,qs];
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   390
        in concatC $ (mapC $ (fst(abs_tr ctxt p e' false)) $ es) end
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   391
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   392
in [("_listcompr", lc_tr)] end
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   393
*}
23279
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
   394
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   395
(*
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   396
term "[(x,y,z). b]"
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   397
term "[(x,y,z). x\<leftarrow>xs]"
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   398
term "[e x y. x\<leftarrow>xs, y\<leftarrow>ys]"
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   399
term "[(x,y,z). x<a, x>b]"
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   400
term "[(x,y,z). x\<leftarrow>xs, x>b]"
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
   401
term "[(x,y,z). x<a, x\<leftarrow>xs]"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   402
term "[(x,y). Cons True x \<leftarrow> xs]"
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   403
term "[(x,y,z). Cons x [] \<leftarrow> xs]"
23240
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   404
term "[(x,y,z). x<a, x>b, x=d]"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   405
term "[(x,y,z). x<a, x>b, y\<leftarrow>ys]"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   406
term "[(x,y,z). x<a, x\<leftarrow>xs,y>b]"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   407
term "[(x,y,z). x<a, x\<leftarrow>xs, y\<leftarrow>ys]"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   408
term "[(x,y,z). x\<leftarrow>xs, x>b, y<a]"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   409
term "[(x,y,z). x\<leftarrow>xs, x>b, y\<leftarrow>ys]"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   410
term "[(x,y,z). x\<leftarrow>xs, y\<leftarrow>ys,y>x]"
7077dc80a14b tuned list comprehension
nipkow
parents: 23235
diff changeset
   411
term "[(x,y,z). x\<leftarrow>xs, y\<leftarrow>ys,z\<leftarrow>zs]"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   412
term "[(x,y). x\<leftarrow>xs, let xx = x+x, y\<leftarrow>ys, y \<noteq> xx]"
23192
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   413
*)
ec73b9707d48 Moved list comprehension into List
nipkow
parents: 23096
diff changeset
   414
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   415
subsubsection {* @{const Nil} and @{const Cons} *}
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   416
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   417
lemma not_Cons_self [simp]:
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   418
  "xs \<noteq> x # xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   419
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   420
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   421
lemmas not_Cons_self2 [simp] = not_Cons_self [symmetric]
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   422
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   423
lemma neq_Nil_conv: "(xs \<noteq> []) = (\<exists>y ys. xs = y # ys)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   424
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   425
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   426
lemma length_induct:
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   427
  "(\<And>xs. \<forall>ys. length ys < length xs \<longrightarrow> P ys \<Longrightarrow> P xs) \<Longrightarrow> P xs"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17501
diff changeset
   428
by (rule measure_induct [of length]) iprover
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   429
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   430
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   431
subsubsection {* @{const length} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   432
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   433
text {*
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   434
  Needs to come before @{text "@"} because of theorem @{text
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   435
  append_eq_append_conv}.
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   436
*}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   437
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   438
lemma length_append [simp]: "length (xs @ ys) = length xs + length ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   439
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   440
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   441
lemma length_map [simp]: "length (map f xs) = length xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   442
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   443
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   444
lemma length_rev [simp]: "length (rev xs) = length xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   445
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   446
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   447
lemma length_tl [simp]: "length (tl xs) = length xs - 1"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   448
by (cases xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   449
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   450
lemma length_0_conv [iff]: "(length xs = 0) = (xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   451
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   452
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   453
lemma length_greater_0_conv [iff]: "(0 < length xs) = (xs \<noteq> [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   454
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   455
23479
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
   456
lemma length_pos_if_in_set: "x : set xs \<Longrightarrow> length xs > 0"
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
   457
by auto
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
   458
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   459
lemma length_Suc_conv:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   460
"(length xs = Suc n) = (\<exists>y ys. xs = y # ys \<and> length ys = n)"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   461
by (induct xs) auto
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   462
14025
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   463
lemma Suc_length_conv:
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   464
"(Suc n = length xs) = (\<exists>y ys. xs = y # ys \<and> length ys = n)"
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
   465
apply (induct xs, simp, simp)
14025
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   466
apply blast
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   467
done
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   468
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   469
lemma impossible_Cons: "length xs <= length ys ==> xs = x # ys = False"
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   470
  by (induct xs) auto
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   471
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   472
lemma list_induct2 [consumes 1, case_names Nil Cons]:
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   473
  "length xs = length ys \<Longrightarrow> P [] [] \<Longrightarrow>
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   474
   (\<And>x xs y ys. length xs = length ys \<Longrightarrow> P xs ys \<Longrightarrow> P (x#xs) (y#ys))
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   475
   \<Longrightarrow> P xs ys"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   476
proof (induct xs arbitrary: ys)
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   477
  case Nil then show ?case by simp
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   478
next
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   479
  case (Cons x xs ys) then show ?case by (cases ys) simp_all
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   480
qed
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   481
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   482
lemma list_induct3 [consumes 2, case_names Nil Cons]:
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   483
  "length xs = length ys \<Longrightarrow> length ys = length zs \<Longrightarrow> P [] [] [] \<Longrightarrow>
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   484
   (\<And>x xs y ys z zs. length xs = length ys \<Longrightarrow> length ys = length zs \<Longrightarrow> P xs ys zs \<Longrightarrow> P (x#xs) (y#ys) (z#zs))
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   485
   \<Longrightarrow> P xs ys zs"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   486
proof (induct xs arbitrary: ys zs)
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   487
  case Nil then show ?case by simp
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   488
next
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   489
  case (Cons x xs ys zs) then show ?case by (cases ys, simp_all)
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   490
    (cases zs, simp_all)
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
   491
qed
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   492
22493
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
   493
lemma list_induct2': 
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
   494
  "\<lbrakk> P [] [];
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
   495
  \<And>x xs. P (x#xs) [];
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
   496
  \<And>y ys. P [] (y#ys);
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
   497
   \<And>x xs y ys. P xs ys  \<Longrightarrow> P (x#xs) (y#ys) \<rbrakk>
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
   498
 \<Longrightarrow> P xs ys"
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
   499
by (induct xs arbitrary: ys) (case_tac x, auto)+
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
   500
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   501
lemma neq_if_length_neq: "length xs \<noteq> length ys \<Longrightarrow> (xs = ys) == False"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
   502
by (rule Eq_FalseI) auto
24037
0a41d2ebc0cd proper simproc_setup for "list_neq";
wenzelm
parents: 23983
diff changeset
   503
0a41d2ebc0cd proper simproc_setup for "list_neq";
wenzelm
parents: 23983
diff changeset
   504
simproc_setup list_neq ("(xs::'a list) = ys") = {*
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   505
(*
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   506
Reduces xs=ys to False if xs and ys cannot be of the same length.
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   507
This is the case if the atomic sublists of one are a submultiset
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   508
of those of the other list and there are fewer Cons's in one than the other.
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   509
*)
24037
0a41d2ebc0cd proper simproc_setup for "list_neq";
wenzelm
parents: 23983
diff changeset
   510
0a41d2ebc0cd proper simproc_setup for "list_neq";
wenzelm
parents: 23983
diff changeset
   511
let
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   512
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   513
fun len (Const("List.list.Nil",_)) acc = acc
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   514
  | len (Const("List.list.Cons",_) $ _ $ xs) (ts,n) = len xs (ts,n+1)
23029
79ee75dc1e59 constant op @ now named append
haftmann
parents: 22994
diff changeset
   515
  | len (Const("List.append",_) $ xs $ ys) acc = len xs (len ys acc)
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   516
  | len (Const("List.rev",_) $ xs) acc = len xs acc
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   517
  | len (Const("List.map",_) $ _ $ xs) acc = len xs acc
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   518
  | len t (ts,n) = (t::ts,n);
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   519
24037
0a41d2ebc0cd proper simproc_setup for "list_neq";
wenzelm
parents: 23983
diff changeset
   520
fun list_neq _ ss ct =
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   521
  let
24037
0a41d2ebc0cd proper simproc_setup for "list_neq";
wenzelm
parents: 23983
diff changeset
   522
    val (Const(_,eqT) $ lhs $ rhs) = Thm.term_of ct;
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   523
    val (ls,m) = len lhs ([],0) and (rs,n) = len rhs ([],0);
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   524
    fun prove_neq() =
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   525
      let
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   526
        val Type(_,listT::_) = eqT;
22994
02440636214f abstract size function in hologic.ML
haftmann
parents: 22940
diff changeset
   527
        val size = HOLogic.size_const listT;
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   528
        val eq_len = HOLogic.mk_eq (size $ lhs, size $ rhs);
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   529
        val neq_len = HOLogic.mk_Trueprop (HOLogic.Not $ eq_len);
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   530
        val thm = Goal.prove (Simplifier.the_context ss) [] [] neq_len
22633
haftmann
parents: 22551
diff changeset
   531
          (K (simp_tac (Simplifier.inherit_context ss @{simpset}) 1));
haftmann
parents: 22551
diff changeset
   532
      in SOME (thm RS @{thm neq_if_length_neq}) end
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   533
  in
23214
dc23c062b58c renamed gen_submultiset to submultiset;
wenzelm
parents: 23212
diff changeset
   534
    if m < n andalso submultiset (op aconv) (ls,rs) orelse
dc23c062b58c renamed gen_submultiset to submultiset;
wenzelm
parents: 23212
diff changeset
   535
       n < m andalso submultiset (op aconv) (rs,ls)
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   536
    then prove_neq() else NONE
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   537
  end;
24037
0a41d2ebc0cd proper simproc_setup for "list_neq";
wenzelm
parents: 23983
diff changeset
   538
in list_neq end;
22143
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   539
*}
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   540
cf58486ca11b Added simproc list_neq (prompted by an application)
nipkow
parents: 21911
diff changeset
   541
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
   542
subsubsection {* @{text "@"} -- append *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   543
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   544
lemma append_assoc [simp]: "(xs @ ys) @ zs = xs @ (ys @ zs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   545
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   546
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   547
lemma append_Nil2 [simp]: "xs @ [] = xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   548
by (induct xs) auto
3507
157be29ad5ba Improved length = size translation.
nipkow
parents: 3465
diff changeset
   549
29509
1ff0f3f08a7b migrated class package to new locale implementation
haftmann
parents: 29281
diff changeset
   550
interpretation semigroup_append!: semigroup_add "op @"
28823
dcbef866c9e2 tuned unfold_locales invocation
haftmann
parents: 28789
diff changeset
   551
  proof qed simp
29509
1ff0f3f08a7b migrated class package to new locale implementation
haftmann
parents: 29281
diff changeset
   552
interpretation monoid_append!: monoid_add "[]" "op @"
28823
dcbef866c9e2 tuned unfold_locales invocation
haftmann
parents: 28789
diff changeset
   553
  proof qed simp+
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
   554
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   555
lemma append_is_Nil_conv [iff]: "(xs @ ys = []) = (xs = [] \<and> ys = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   556
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   557
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   558
lemma Nil_is_append_conv [iff]: "([] = xs @ ys) = (xs = [] \<and> ys = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   559
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   560
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   561
lemma append_self_conv [iff]: "(xs @ ys = xs) = (ys = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   562
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   563
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   564
lemma self_append_conv [iff]: "(xs = xs @ ys) = (ys = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   565
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   566
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   567
lemma append_eq_append_conv [simp, noatp]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
   568
 "length xs = length ys \<or> length us = length vs
13883
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
   569
 ==> (xs@us = ys@vs) = (xs=ys \<and> us=vs)"
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
   570
apply (induct xs arbitrary: ys)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
   571
 apply (case_tac ys, simp, force)
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
   572
apply (case_tac ys, force, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   573
done
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   574
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
   575
lemma append_eq_append_conv2: "(xs @ ys = zs @ ts) =
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
   576
  (EX us. xs = zs @ us & us @ ys = ts | xs @ us = zs & ys = us@ ts)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
   577
apply (induct xs arbitrary: ys zs ts)
14495
e2a1c31cf6d3 Added append_eq_append_conv2
nipkow
parents: 14402
diff changeset
   578
 apply fastsimp
e2a1c31cf6d3 Added append_eq_append_conv2
nipkow
parents: 14402
diff changeset
   579
apply(case_tac zs)
e2a1c31cf6d3 Added append_eq_append_conv2
nipkow
parents: 14402
diff changeset
   580
 apply simp
e2a1c31cf6d3 Added append_eq_append_conv2
nipkow
parents: 14402
diff changeset
   581
apply fastsimp
e2a1c31cf6d3 Added append_eq_append_conv2
nipkow
parents: 14402
diff changeset
   582
done
e2a1c31cf6d3 Added append_eq_append_conv2
nipkow
parents: 14402
diff changeset
   583
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   584
lemma same_append_eq [iff]: "(xs @ ys = xs @ zs) = (ys = zs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   585
by simp
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   586
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   587
lemma append1_eq_conv [iff]: "(xs @ [x] = ys @ [y]) = (xs = ys \<and> x = y)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   588
by simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   589
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   590
lemma append_same_eq [iff]: "(ys @ xs = zs @ xs) = (ys = zs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   591
by simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   592
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   593
lemma append_self_conv2 [iff]: "(xs @ ys = ys) = (xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   594
using append_same_eq [of _ _ "[]"] by auto
3507
157be29ad5ba Improved length = size translation.
nipkow
parents: 3465
diff changeset
   595
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   596
lemma self_append_conv2 [iff]: "(ys = xs @ ys) = (xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   597
using append_same_eq [of "[]"] by auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   598
24286
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
   599
lemma hd_Cons_tl [simp,noatp]: "xs \<noteq> [] ==> hd xs # tl xs = xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   600
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   601
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   602
lemma hd_append: "hd (xs @ ys) = (if xs = [] then hd ys else hd xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   603
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   604
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   605
lemma hd_append2 [simp]: "xs \<noteq> [] ==> hd (xs @ ys) = hd xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   606
by (simp add: hd_append split: list.split)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   607
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   608
lemma tl_append: "tl (xs @ ys) = (case xs of [] => tl ys | z#zs => zs @ ys)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   609
by (simp split: list.split)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   610
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   611
lemma tl_append2 [simp]: "xs \<noteq> [] ==> tl (xs @ ys) = tl xs @ ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   612
by (simp add: tl_append split: list.split)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   613
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   614
14300
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
   615
lemma Cons_eq_append_conv: "x#xs = ys@zs =
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
   616
 (ys = [] & x#xs = zs | (EX ys'. x#ys' = ys & xs = ys'@zs))"
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
   617
by(cases ys) auto
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
   618
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
   619
lemma append_eq_Cons_conv: "(ys@zs = x#xs) =
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
   620
 (ys = [] & zs = x#xs | (EX ys'. ys = x#ys' & ys'@zs = xs))"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
   621
by(cases ys) auto
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
   622
14300
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
   623
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   624
text {* Trivial rules for solving @{text "@"}-equations automatically. *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   625
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   626
lemma eq_Nil_appendI: "xs = ys ==> xs = [] @ ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   627
by simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   628
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   629
lemma Cons_eq_appendI:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   630
"[| x # xs1 = ys; xs = xs1 @ zs |] ==> x # xs = ys @ zs"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   631
by (drule sym) simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   632
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   633
lemma append_eq_appendI:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   634
"[| xs @ xs1 = zs; ys = xs1 @ us |] ==> xs @ ys = zs @ us"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   635
by (drule sym) simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   636
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   637
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   638
text {*
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   639
Simplification procedure for all list equalities.
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   640
Currently only tries to rearrange @{text "@"} to see if
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   641
- both lists end in a singleton list,
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   642
- or both lists end in the same list.
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   643
*}
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   644
26480
544cef16045b replaced 'ML_setup' by 'ML';
wenzelm
parents: 26442
diff changeset
   645
ML {*
3507
157be29ad5ba Improved length = size translation.
nipkow
parents: 3465
diff changeset
   646
local
157be29ad5ba Improved length = size translation.
nipkow
parents: 3465
diff changeset
   647
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   648
fun last (cons as Const("List.list.Cons",_) $ _ $ xs) =
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   649
  (case xs of Const("List.list.Nil",_) => cons | _ => last xs)
23029
79ee75dc1e59 constant op @ now named append
haftmann
parents: 22994
diff changeset
   650
  | last (Const("List.append",_) $ _ $ ys) = last ys
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   651
  | last t = t;
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   652
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   653
fun list1 (Const("List.list.Cons",_) $ _ $ Const("List.list.Nil",_)) = true
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   654
  | list1 _ = false;
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   655
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   656
fun butlast ((cons as Const("List.list.Cons",_) $ x) $ xs) =
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   657
  (case xs of Const("List.list.Nil",_) => xs | _ => cons $ butlast xs)
23029
79ee75dc1e59 constant op @ now named append
haftmann
parents: 22994
diff changeset
   658
  | butlast ((app as Const("List.append",_) $ xs) $ ys) = app $ butlast ys
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   659
  | butlast xs = Const("List.list.Nil",fastype_of xs);
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   660
22633
haftmann
parents: 22551
diff changeset
   661
val rearr_ss = HOL_basic_ss addsimps [@{thm append_assoc},
haftmann
parents: 22551
diff changeset
   662
  @{thm append_Nil}, @{thm append_Cons}];
16973
b2a894562b8f simprocs: Simplifier.inherit_bounds;
wenzelm
parents: 16965
diff changeset
   663
20044
92cc2f4c7335 simprocs: no theory argument -- use simpset context instead;
wenzelm
parents: 19890
diff changeset
   664
fun list_eq ss (F as (eq as Const(_,eqT)) $ lhs $ rhs) =
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   665
  let
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   666
    val lastl = last lhs and lastr = last rhs;
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   667
    fun rearr conv =
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   668
      let
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   669
        val lhs1 = butlast lhs and rhs1 = butlast rhs;
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   670
        val Type(_,listT::_) = eqT
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   671
        val appT = [listT,listT] ---> listT
23029
79ee75dc1e59 constant op @ now named append
haftmann
parents: 22994
diff changeset
   672
        val app = Const("List.append",appT)
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   673
        val F2 = eq $ (app$lhs1$lastl) $ (app$rhs1$lastr)
13480
bb72bd43c6c3 use Tactic.prove instead of prove_goalw_cterm in internal proofs!
wenzelm
parents: 13462
diff changeset
   674
        val eq = HOLogic.mk_Trueprop (HOLogic.mk_eq (F,F2));
20044
92cc2f4c7335 simprocs: no theory argument -- use simpset context instead;
wenzelm
parents: 19890
diff changeset
   675
        val thm = Goal.prove (Simplifier.the_context ss) [] [] eq
17877
67d5ab1cb0d8 Simplifier.inherit_context instead of Simplifier.inherit_bounds;
wenzelm
parents: 17830
diff changeset
   676
          (K (simp_tac (Simplifier.inherit_context ss rearr_ss) 1));
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15489
diff changeset
   677
      in SOME ((conv RS (thm RS trans)) RS eq_reflection) end;
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   678
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   679
  in
22633
haftmann
parents: 22551
diff changeset
   680
    if list1 lastl andalso list1 lastr then rearr @{thm append1_eq_conv}
haftmann
parents: 22551
diff changeset
   681
    else if lastl aconv lastr then rearr @{thm append_same_eq}
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15489
diff changeset
   682
    else NONE
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   683
  end;
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   684
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   685
in
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   686
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   687
val list_eq_simproc =
28262
aa7ca36d67fd back to dynamic the_context(), because static @{theory} is invalidated if ML environment changes within the same code block;
wenzelm
parents: 28244
diff changeset
   688
  Simplifier.simproc (the_context ()) "list_eq" ["(xs::'a list) = ys"] (K list_eq);
13462
56610e2ba220 sane interface for simprocs;
wenzelm
parents: 13366
diff changeset
   689
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   690
end;
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   691
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   692
Addsimprocs [list_eq_simproc];
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   693
*}
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   694
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   695
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
   696
subsubsection {* @{text map} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   697
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   698
lemma map_ext: "(!!x. x : set xs --> f x = g x) ==> map f xs = map g xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   699
by (induct xs) simp_all
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   700
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   701
lemma map_ident [simp]: "map (\<lambda>x. x) = (\<lambda>xs. xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   702
by (rule ext, induct_tac xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   703
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   704
lemma map_append [simp]: "map f (xs @ ys) = map f xs @ map f ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   705
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   706
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   707
lemma map_compose: "map (f o g) xs = map f (map g xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   708
by (induct xs) (auto simp add: o_def)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   709
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   710
lemma rev_map: "rev (map f xs) = map f (rev xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   711
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   712
13737
e564c3d2d174 added a few lemmas
nipkow
parents: 13601
diff changeset
   713
lemma map_eq_conv[simp]: "(map f xs = map g xs) = (!x : set xs. f x = g x)"
e564c3d2d174 added a few lemmas
nipkow
parents: 13601
diff changeset
   714
by (induct xs) auto
e564c3d2d174 added a few lemmas
nipkow
parents: 13601
diff changeset
   715
19770
be5c23ebe1eb HOL/Tools/function_package: Added support for mutual recursive definitions.
krauss
parents: 19623
diff changeset
   716
lemma map_cong [fundef_cong, recdef_cong]:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   717
"xs = ys ==> (!!x. x : set ys ==> f x = g x) ==> map f xs = map g ys"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   718
-- {* a congruence rule for @{text map} *}
13737
e564c3d2d174 added a few lemmas
nipkow
parents: 13601
diff changeset
   719
by simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   720
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   721
lemma map_is_Nil_conv [iff]: "(map f xs = []) = (xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   722
by (cases xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   723
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   724
lemma Nil_is_map_conv [iff]: "([] = map f xs) = (xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   725
by (cases xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   726
18447
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
   727
lemma map_eq_Cons_conv:
14025
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   728
 "(map f xs = y#ys) = (\<exists>z zs. xs = z#zs \<and> f z = y \<and> map f zs = ys)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   729
by (cases xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   730
18447
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
   731
lemma Cons_eq_map_conv:
14025
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   732
 "(x#xs = map f ys) = (\<exists>z zs. ys = z#zs \<and> x = f z \<and> xs = map f zs)"
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   733
by (cases ys) auto
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
   734
18447
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
   735
lemmas map_eq_Cons_D = map_eq_Cons_conv [THEN iffD1]
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
   736
lemmas Cons_eq_map_D = Cons_eq_map_conv [THEN iffD1]
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
   737
declare map_eq_Cons_D [dest!]  Cons_eq_map_D [dest!]
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
   738
14111
993471c762b8 Some new thm (ex_map_conv?)
nipkow
parents: 14099
diff changeset
   739
lemma ex_map_conv:
993471c762b8 Some new thm (ex_map_conv?)
nipkow
parents: 14099
diff changeset
   740
  "(EX xs. ys = map f xs) = (ALL y : set ys. EX x. y = f x)"
18447
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
   741
by(induct ys, auto simp add: Cons_eq_map_conv)
14111
993471c762b8 Some new thm (ex_map_conv?)
nipkow
parents: 14099
diff changeset
   742
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   743
lemma map_eq_imp_length_eq:
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   744
  assumes "map f xs = map f ys"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   745
  shows "length xs = length ys"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   746
using assms proof (induct ys arbitrary: xs)
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   747
  case Nil then show ?case by simp
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   748
next
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   749
  case (Cons y ys) then obtain z zs where xs: "xs = z # zs" by auto
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   750
  from Cons xs have "map f zs = map f ys" by simp
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   751
  moreover with Cons have "length zs = length ys" by blast
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   752
  with xs show ?case by simp
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   753
qed
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   754
  
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   755
lemma map_inj_on:
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   756
 "[| map f xs = map f ys; inj_on f (set xs Un set ys) |]
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   757
  ==> xs = ys"
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   758
apply(frule map_eq_imp_length_eq)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   759
apply(rotate_tac -1)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   760
apply(induct rule:list_induct2)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   761
 apply simp
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   762
apply(simp)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   763
apply (blast intro:sym)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   764
done
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   765
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   766
lemma inj_on_map_eq_map:
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   767
 "inj_on f (set xs Un set ys) \<Longrightarrow> (map f xs = map f ys) = (xs = ys)"
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   768
by(blast dest:map_inj_on)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   769
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   770
lemma map_injective:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
   771
 "map f xs = map f ys ==> inj f ==> xs = ys"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
   772
by (induct ys arbitrary: xs) (auto dest!:injD)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   773
14339
ec575b7bde7a *** empty log message ***
nipkow
parents: 14338
diff changeset
   774
lemma inj_map_eq_map[simp]: "inj f \<Longrightarrow> (map f xs = map f ys) = (xs = ys)"
ec575b7bde7a *** empty log message ***
nipkow
parents: 14338
diff changeset
   775
by(blast dest:map_injective)
ec575b7bde7a *** empty log message ***
nipkow
parents: 14338
diff changeset
   776
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   777
lemma inj_mapI: "inj f ==> inj (map f)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17501
diff changeset
   778
by (iprover dest: map_injective injD intro: inj_onI)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   779
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   780
lemma inj_mapD: "inj (map f) ==> inj f"
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
   781
apply (unfold inj_on_def, clarify)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   782
apply (erule_tac x = "[x]" in ballE)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
   783
 apply (erule_tac x = "[y]" in ballE, simp, blast)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   784
apply blast
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   785
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   786
14339
ec575b7bde7a *** empty log message ***
nipkow
parents: 14338
diff changeset
   787
lemma inj_map[iff]: "inj (map f) = inj f"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   788
by (blast dest: inj_mapD intro: inj_mapI)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   789
15303
eedbb8d22ca2 added lemmas
nipkow
parents: 15302
diff changeset
   790
lemma inj_on_mapI: "inj_on f (\<Union>(set ` A)) \<Longrightarrow> inj_on (map f) A"
eedbb8d22ca2 added lemmas
nipkow
parents: 15302
diff changeset
   791
apply(rule inj_onI)
eedbb8d22ca2 added lemmas
nipkow
parents: 15302
diff changeset
   792
apply(erule map_inj_on)
eedbb8d22ca2 added lemmas
nipkow
parents: 15302
diff changeset
   793
apply(blast intro:inj_onI dest:inj_onD)
eedbb8d22ca2 added lemmas
nipkow
parents: 15302
diff changeset
   794
done
eedbb8d22ca2 added lemmas
nipkow
parents: 15302
diff changeset
   795
14343
6bc647f472b9 map_idI
kleing
parents: 14339
diff changeset
   796
lemma map_idI: "(\<And>x. x \<in> set xs \<Longrightarrow> f x = x) \<Longrightarrow> map f xs = xs"
6bc647f472b9 map_idI
kleing
parents: 14339
diff changeset
   797
by (induct xs, auto)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   798
14402
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
   799
lemma map_fun_upd [simp]: "y \<notin> set xs \<Longrightarrow> map (f(y:=v)) xs = map f xs"
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
   800
by (induct xs) auto
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
   801
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   802
lemma map_fst_zip[simp]:
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   803
  "length xs = length ys \<Longrightarrow> map fst (zip xs ys) = xs"
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   804
by (induct rule:list_induct2, simp_all)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   805
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   806
lemma map_snd_zip[simp]:
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   807
  "length xs = length ys \<Longrightarrow> map snd (zip xs ys) = ys"
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   808
by (induct rule:list_induct2, simp_all)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   809
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
   810
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
   811
subsubsection {* @{text rev} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   812
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   813
lemma rev_append [simp]: "rev (xs @ ys) = rev ys @ rev xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   814
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   815
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   816
lemma rev_rev_ident [simp]: "rev (rev xs) = xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   817
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   818
15870
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   819
lemma rev_swap: "(rev xs = ys) = (xs = rev ys)"
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   820
by auto
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   821
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   822
lemma rev_is_Nil_conv [iff]: "(rev xs = []) = (xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   823
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   824
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   825
lemma Nil_is_rev_conv [iff]: "([] = rev xs) = (xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   826
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   827
15870
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   828
lemma rev_singleton_conv [simp]: "(rev xs = [x]) = (xs = [x])"
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   829
by (cases xs) auto
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   830
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   831
lemma singleton_rev_conv [simp]: "([x] = rev xs) = (xs = [x])"
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   832
by (cases xs) auto
4320bce5873f more on rev
kleing
parents: 15868
diff changeset
   833
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   834
lemma rev_is_rev_conv [iff]: "(rev xs = rev ys) = (xs = ys)"
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
   835
apply (induct xs arbitrary: ys, force)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
   836
apply (case_tac ys, simp, force)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   837
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   838
15439
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
   839
lemma inj_on_rev[iff]: "inj_on rev A"
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
   840
by(simp add:inj_on_def)
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
   841
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
   842
lemma rev_induct [case_names Nil snoc]:
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
   843
  "[| P []; !!x xs. P xs ==> P (xs @ [x]) |] ==> P xs"
15489
d136af442665 Replaced application of subst by simplesubst in proof of rev_induct
berghofe
parents: 15439
diff changeset
   844
apply(simplesubst rev_rev_ident[symmetric])
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   845
apply(rule_tac list = "rev xs" in list.induct, simp_all)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   846
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   847
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
   848
lemma rev_exhaust [case_names Nil snoc]:
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
   849
  "(xs = [] ==> P) ==>(!!ys y. xs = ys @ [y] ==> P) ==> P"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   850
by (induct xs rule: rev_induct) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   851
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
   852
lemmas rev_cases = rev_exhaust
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
   853
18423
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
   854
lemma rev_eq_Cons_iff[iff]: "(rev xs = y#ys) = (xs = rev ys @ [y])"
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
   855
by(rule rev_cases[of xs]) auto
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
   856
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   857
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
   858
subsubsection {* @{text set} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   859
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   860
lemma finite_set [iff]: "finite (set xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   861
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   862
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   863
lemma set_append [simp]: "set (xs @ ys) = (set xs \<union> set ys)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   864
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   865
17830
695a2365d32f added hd lemma
nipkow
parents: 17765
diff changeset
   866
lemma hd_in_set[simp]: "xs \<noteq> [] \<Longrightarrow> hd xs : set xs"
695a2365d32f added hd lemma
nipkow
parents: 17765
diff changeset
   867
by(cases xs) auto
14099
55d244f3c86d added fold_red, o2l, postfix, some thms
oheimb
parents: 14050
diff changeset
   868
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   869
lemma set_subset_Cons: "set xs \<subseteq> set (x # xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   870
by auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   871
14099
55d244f3c86d added fold_red, o2l, postfix, some thms
oheimb
parents: 14050
diff changeset
   872
lemma set_ConsD: "y \<in> set (x # xs) \<Longrightarrow> y=x \<or> y \<in> set xs" 
55d244f3c86d added fold_red, o2l, postfix, some thms
oheimb
parents: 14050
diff changeset
   873
by auto
55d244f3c86d added fold_red, o2l, postfix, some thms
oheimb
parents: 14050
diff changeset
   874
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   875
lemma set_empty [iff]: "(set xs = {}) = (xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   876
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   877
15245
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
   878
lemma set_empty2[iff]: "({} = set xs) = (xs = [])"
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
   879
by(induct xs) auto
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
   880
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   881
lemma set_rev [simp]: "set (rev xs) = set xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   882
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   883
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   884
lemma set_map [simp]: "set (map f xs) = f`(set xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   885
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   886
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   887
lemma set_filter [simp]: "set (filter P xs) = {x. x : set xs \<and> P x}"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   888
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   889
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
   890
lemma set_upt [simp]: "set[i..<j] = {k. i \<le> k \<and> k < j}"
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
   891
apply (induct j, simp_all)
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
   892
apply (erule ssubst, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
   893
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
   894
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
   895
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   896
lemma split_list: "x : set xs \<Longrightarrow> \<exists>ys zs. xs = ys @ x # zs"
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   897
proof (induct xs)
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   898
  case Nil thus ?case by simp
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   899
next
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   900
  case Cons thus ?case by (auto intro: Cons_eq_appendI)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   901
qed
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   902
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   903
lemma in_set_conv_decomp: "x \<in> set xs \<longleftrightarrow> (\<exists>ys zs. xs = ys @ x # zs)"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   904
  by (auto elim: split_list)
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   905
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   906
lemma split_list_first: "x : set xs \<Longrightarrow> \<exists>ys zs. xs = ys @ x # zs \<and> x \<notin> set ys"
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   907
proof (induct xs)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   908
  case Nil thus ?case by simp
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   909
next
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   910
  case (Cons a xs)
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   911
  show ?case
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   912
  proof cases
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
   913
    assume "x = a" thus ?case using Cons by fastsimp
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   914
  next
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   915
    assume "x \<noteq> a" thus ?case using Cons by(fastsimp intro!: Cons_eq_appendI)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   916
  qed
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   917
qed
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   918
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   919
lemma in_set_conv_decomp_first:
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   920
  "(x : set xs) = (\<exists>ys zs. xs = ys @ x # zs \<and> x \<notin> set ys)"
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   921
  by (auto dest!: split_list_first)
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   922
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   923
lemma split_list_last: "x : set xs \<Longrightarrow> \<exists>ys zs. xs = ys @ x # zs \<and> x \<notin> set zs"
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   924
proof (induct xs rule:rev_induct)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   925
  case Nil thus ?case by simp
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   926
next
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   927
  case (snoc a xs)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   928
  show ?case
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   929
  proof cases
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   930
    assume "x = a" thus ?case using snoc by simp (metis ex_in_conv set_empty2)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   931
  next
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   932
    assume "x \<noteq> a" thus ?case using snoc by fastsimp
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   933
  qed
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   934
qed
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
   935
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   936
lemma in_set_conv_decomp_last:
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   937
  "(x : set xs) = (\<exists>ys zs. xs = ys @ x # zs \<and> x \<notin> set zs)"
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   938
  by (auto dest!: split_list_last)
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   939
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   940
lemma split_list_prop: "\<exists>x \<in> set xs. P x \<Longrightarrow> \<exists>ys x zs. xs = ys @ x # zs & P x"
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   941
proof (induct xs)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   942
  case Nil thus ?case by simp
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   943
next
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   944
  case Cons thus ?case
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   945
    by(simp add:Bex_def)(metis append_Cons append.simps(1))
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   946
qed
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   947
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   948
lemma split_list_propE:
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   949
  assumes "\<exists>x \<in> set xs. P x"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   950
  obtains ys x zs where "xs = ys @ x # zs" and "P x"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   951
using split_list_prop [OF assms] by blast
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   952
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   953
lemma split_list_first_prop:
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   954
  "\<exists>x \<in> set xs. P x \<Longrightarrow>
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   955
   \<exists>ys x zs. xs = ys@x#zs \<and> P x \<and> (\<forall>y \<in> set ys. \<not> P y)"
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   956
proof (induct xs)
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   957
  case Nil thus ?case by simp
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   958
next
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   959
  case (Cons x xs)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   960
  show ?case
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   961
  proof cases
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   962
    assume "P x"
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   963
    thus ?thesis by simp
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   964
      (metis Un_upper1 contra_subsetD in_set_conv_decomp_first self_append_conv2 set_append)
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   965
  next
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   966
    assume "\<not> P x"
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   967
    hence "\<exists>x\<in>set xs. P x" using Cons(2) by simp
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   968
    thus ?thesis using `\<not> P x` Cons(1) by (metis append_Cons set_ConsD)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   969
  qed
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   970
qed
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   971
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   972
lemma split_list_first_propE:
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   973
  assumes "\<exists>x \<in> set xs. P x"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   974
  obtains ys x zs where "xs = ys @ x # zs" and "P x" and "\<forall>y \<in> set ys. \<not> P y"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   975
using split_list_first_prop [OF assms] by blast
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   976
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   977
lemma split_list_first_prop_iff:
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   978
  "(\<exists>x \<in> set xs. P x) \<longleftrightarrow>
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   979
   (\<exists>ys x zs. xs = ys@x#zs \<and> P x \<and> (\<forall>y \<in> set ys. \<not> P y))"
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
   980
by (rule, erule split_list_first_prop) auto
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   981
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   982
lemma split_list_last_prop:
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   983
  "\<exists>x \<in> set xs. P x \<Longrightarrow>
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   984
   \<exists>ys x zs. xs = ys@x#zs \<and> P x \<and> (\<forall>z \<in> set zs. \<not> P z)"
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   985
proof(induct xs rule:rev_induct)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   986
  case Nil thus ?case by simp
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   987
next
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   988
  case (snoc x xs)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   989
  show ?case
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   990
  proof cases
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   991
    assume "P x" thus ?thesis by (metis emptyE set_empty)
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   992
  next
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   993
    assume "\<not> P x"
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   994
    hence "\<exists>x\<in>set xs. P x" using snoc(2) by simp
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   995
    thus ?thesis using `\<not> P x` snoc(1) by fastsimp
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   996
  qed
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   997
qed
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   998
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
   999
lemma split_list_last_propE:
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  1000
  assumes "\<exists>x \<in> set xs. P x"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  1001
  obtains ys x zs where "xs = ys @ x # zs" and "P x" and "\<forall>z \<in> set zs. \<not> P z"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  1002
using split_list_last_prop [OF assms] by blast
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
  1003
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
  1004
lemma split_list_last_prop_iff:
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
  1005
  "(\<exists>x \<in> set xs. P x) \<longleftrightarrow>
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
  1006
   (\<exists>ys x zs. xs = ys@x#zs \<and> P x \<and> (\<forall>z \<in> set zs. \<not> P z))"
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  1007
by (metis split_list_last_prop [where P=P] in_set_conv_decomp)
26073
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
  1008
0e70d3bd2eb4 more lemmas
nipkow
parents: 25966
diff changeset
  1009
lemma finite_list: "finite A ==> EX xs. set xs = A"
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  1010
  by (erule finite_induct)
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  1011
    (auto simp add: set.simps(2) [symmetric] simp del: set.simps(2))
13508
890d736b93a5 Frederic Blanqui's new "guard" examples
paulson
parents: 13480
diff changeset
  1012
14388
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  1013
lemma card_length: "card (set xs) \<le> length xs"
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  1014
by (induct xs) (auto simp add: card_insert_if)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1015
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1016
lemma set_minus_filter_out:
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1017
  "set xs - {y} = set (filter (\<lambda>x. \<not> (x = y)) xs)"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1018
  by (induct xs) auto
15168
33a08cfc3ae5 new functions for sets of lists
paulson
parents: 15140
diff changeset
  1019
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1020
subsubsection {* @{text filter} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1021
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1022
lemma filter_append [simp]: "filter P (xs @ ys) = filter P xs @ filter P ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1023
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1024
15305
0bd9eedaa301 added lemmas
nipkow
parents: 15304
diff changeset
  1025
lemma rev_filter: "rev (filter P xs) = filter P (rev xs)"
0bd9eedaa301 added lemmas
nipkow
parents: 15304
diff changeset
  1026
by (induct xs) simp_all
0bd9eedaa301 added lemmas
nipkow
parents: 15304
diff changeset
  1027
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1028
lemma filter_filter [simp]: "filter P (filter Q xs) = filter (\<lambda>x. Q x \<and> P x) xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1029
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1030
16998
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1031
lemma length_filter_le [simp]: "length (filter P xs) \<le> length xs"
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1032
by (induct xs) (auto simp add: le_SucI)
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1033
18423
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1034
lemma sum_length_filter_compl:
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1035
  "length(filter P xs) + length(filter (%x. ~P x) xs) = length xs"
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1036
by(induct xs) simp_all
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1037
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1038
lemma filter_True [simp]: "\<forall>x \<in> set xs. P x ==> filter P xs = xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1039
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1040
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1041
lemma filter_False [simp]: "\<forall>x \<in> set xs. \<not> P x ==> filter P xs = []"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1042
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1043
16998
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1044
lemma filter_empty_conv: "(filter P xs = []) = (\<forall>x\<in>set xs. \<not> P x)" 
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1045
by (induct xs) simp_all
16998
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1046
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1047
lemma filter_id_conv: "(filter P xs = xs) = (\<forall>x\<in>set xs. P x)"
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1048
apply (induct xs)
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1049
 apply auto
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1050
apply(cut_tac P=P and xs=xs in length_filter_le)
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1051
apply simp
e0050191e2d1 Added filter lemma
nipkow
parents: 16973
diff changeset
  1052
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1053
16965
46697fa536ab added map_filter lemmas
nipkow
parents: 16770
diff changeset
  1054
lemma filter_map:
46697fa536ab added map_filter lemmas
nipkow
parents: 16770
diff changeset
  1055
  "filter P (map f xs) = map f (filter (P o f) xs)"
46697fa536ab added map_filter lemmas
nipkow
parents: 16770
diff changeset
  1056
by (induct xs) simp_all
46697fa536ab added map_filter lemmas
nipkow
parents: 16770
diff changeset
  1057
46697fa536ab added map_filter lemmas
nipkow
parents: 16770
diff changeset
  1058
lemma length_filter_map[simp]:
46697fa536ab added map_filter lemmas
nipkow
parents: 16770
diff changeset
  1059
  "length (filter P (map f xs)) = length(filter (P o f) xs)"
46697fa536ab added map_filter lemmas
nipkow
parents: 16770
diff changeset
  1060
by (simp add:filter_map)
46697fa536ab added map_filter lemmas
nipkow
parents: 16770
diff changeset
  1061
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1062
lemma filter_is_subset [simp]: "set (filter P xs) \<le> set xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1063
by auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1064
15246
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1065
lemma length_filter_less:
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1066
  "\<lbrakk> x : set xs; ~ P x \<rbrakk> \<Longrightarrow> length(filter P xs) < length xs"
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1067
proof (induct xs)
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1068
  case Nil thus ?case by simp
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1069
next
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1070
  case (Cons x xs) thus ?case
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1071
    apply (auto split:split_if_asm)
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1072
    using length_filter_le[of P xs] apply arith
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1073
  done
0984a2c2868b added and renamed
nipkow
parents: 15245
diff changeset
  1074
qed
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1075
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1076
lemma length_filter_conv_card:
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1077
 "length(filter p xs) = card{i. i < length xs & p(xs!i)}"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1078
proof (induct xs)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1079
  case Nil thus ?case by simp
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1080
next
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1081
  case (Cons x xs)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1082
  let ?S = "{i. i < length xs & p(xs!i)}"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1083
  have fin: "finite ?S" by(fast intro: bounded_nat_set_is_finite)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1084
  show ?case (is "?l = card ?S'")
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1085
  proof (cases)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1086
    assume "p x"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1087
    hence eq: "?S' = insert 0 (Suc ` ?S)"
25162
ad4d5365d9d8 went back to >0
nipkow
parents: 25157
diff changeset
  1088
      by(auto simp: image_def split:nat.split dest:gr0_implies_Suc)
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1089
    have "length (filter p (x # xs)) = Suc(card ?S)"
23388
77645da0db85 tuned proofs: avoid implicit prems;
wenzelm
parents: 23279
diff changeset
  1090
      using Cons `p x` by simp
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1091
    also have "\<dots> = Suc(card(Suc ` ?S))" using fin
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1092
      by (simp add: card_image inj_Suc)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1093
    also have "\<dots> = card ?S'" using eq fin
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1094
      by (simp add:card_insert_if) (simp add:image_def)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1095
    finally show ?thesis .
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1096
  next
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1097
    assume "\<not> p x"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1098
    hence eq: "?S' = Suc ` ?S"
25162
ad4d5365d9d8 went back to >0
nipkow
parents: 25157
diff changeset
  1099
      by(auto simp add: image_def split:nat.split elim:lessE)
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1100
    have "length (filter p (x # xs)) = card ?S"
23388
77645da0db85 tuned proofs: avoid implicit prems;
wenzelm
parents: 23279
diff changeset
  1101
      using Cons `\<not> p x` by simp
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1102
    also have "\<dots> = card(Suc ` ?S)" using fin
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1103
      by (simp add: card_image inj_Suc)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1104
    also have "\<dots> = card ?S'" using eq fin
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1105
      by (simp add:card_insert_if)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1106
    finally show ?thesis .
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1107
  qed
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1108
qed
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1109
17629
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1110
lemma Cons_eq_filterD:
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1111
 "x#xs = filter P ys \<Longrightarrow>
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1112
  \<exists>us vs. ys = us @ x # vs \<and> (\<forall>u\<in>set us. \<not> P u) \<and> P x \<and> xs = filter P vs"
19585
70a1ce3b23ae removed 'concl is' patterns;
wenzelm
parents: 19487
diff changeset
  1113
  (is "_ \<Longrightarrow> \<exists>us vs. ?P ys us vs")
17629
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1114
proof(induct ys)
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1115
  case Nil thus ?case by simp
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1116
next
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1117
  case (Cons y ys)
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1118
  show ?case (is "\<exists>x. ?Q x")
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1119
  proof cases
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1120
    assume Py: "P y"
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1121
    show ?thesis
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1122
    proof cases
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1123
      assume "x = y"
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1124
      with Py Cons.prems have "?Q []" by simp
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1125
      then show ?thesis ..
17629
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1126
    next
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1127
      assume "x \<noteq> y"
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1128
      with Py Cons.prems show ?thesis by simp
17629
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1129
    qed
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1130
  next
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1131
    assume "\<not> P y"
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1132
    with Cons obtain us vs where "?P (y#ys) (y#us) vs" by fastsimp
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1133
    then have "?Q (y#us)" by simp
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1134
    then show ?thesis ..
17629
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1135
  qed
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1136
qed
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1137
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1138
lemma filter_eq_ConsD:
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1139
 "filter P ys = x#xs \<Longrightarrow>
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1140
  \<exists>us vs. ys = us @ x # vs \<and> (\<forall>u\<in>set us. \<not> P u) \<and> P x \<and> xs = filter P vs"
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1141
by(rule Cons_eq_filterD) simp
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1142
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1143
lemma filter_eq_Cons_iff:
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1144
 "(filter P ys = x#xs) =
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1145
  (\<exists>us vs. ys = us @ x # vs \<and> (\<forall>u\<in>set us. \<not> P u) \<and> P x \<and> xs = filter P vs)"
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1146
by(auto dest:filter_eq_ConsD)
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1147
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1148
lemma Cons_eq_filter_iff:
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1149
 "(x#xs = filter P ys) =
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1150
  (\<exists>us vs. ys = us @ x # vs \<and> (\<forall>u\<in>set us. \<not> P u) \<and> P x \<and> xs = filter P vs)"
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1151
by(auto dest:Cons_eq_filterD)
f8ea8068c6d9 a few new filter lemmas
nipkow
parents: 17589
diff changeset
  1152
19770
be5c23ebe1eb HOL/Tools/function_package: Added support for mutual recursive definitions.
krauss
parents: 19623
diff changeset
  1153
lemma filter_cong[fundef_cong, recdef_cong]:
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1154
 "xs = ys \<Longrightarrow> (\<And>x. x \<in> set ys \<Longrightarrow> P x = Q x) \<Longrightarrow> filter P xs = filter Q ys"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1155
apply simp
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1156
apply(erule thin_rl)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1157
by (induct ys) simp_all
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1158
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1159
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1160
subsubsection {* List partitioning *}
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1161
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1162
primrec partition :: "('a \<Rightarrow> bool) \<Rightarrow>'a list \<Rightarrow> 'a list \<times> 'a list" where
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1163
  "partition P [] = ([], [])"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1164
  | "partition P (x # xs) = 
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1165
      (let (yes, no) = partition P xs
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1166
      in if P x then (x # yes, no) else (yes, x # no))"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1167
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1168
lemma partition_filter1:
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1169
    "fst (partition P xs) = filter P xs"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1170
by (induct xs) (auto simp add: Let_def split_def)
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1171
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1172
lemma partition_filter2:
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1173
    "snd (partition P xs) = filter (Not o P) xs"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1174
by (induct xs) (auto simp add: Let_def split_def)
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1175
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1176
lemma partition_P:
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1177
  assumes "partition P xs = (yes, no)"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1178
  shows "(\<forall>p \<in> set yes.  P p) \<and> (\<forall>p  \<in> set no. \<not> P p)"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1179
proof -
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1180
  from assms have "yes = fst (partition P xs)" and "no = snd (partition P xs)"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1181
    by simp_all
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1182
  then show ?thesis by (simp_all add: partition_filter1 partition_filter2)
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1183
qed
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1184
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1185
lemma partition_set:
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1186
  assumes "partition P xs = (yes, no)"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1187
  shows "set yes \<union> set no = set xs"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1188
proof -
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1189
  from assms have "yes = fst (partition P xs)" and "no = snd (partition P xs)"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1190
    by simp_all
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1191
  then show ?thesis by (auto simp add: partition_filter1 partition_filter2) 
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1192
qed
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1193
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  1194
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1195
subsubsection {* @{text concat} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1196
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1197
lemma concat_append [simp]: "concat (xs @ ys) = concat xs @ concat ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1198
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1199
18447
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
  1200
lemma concat_eq_Nil_conv [simp]: "(concat xss = []) = (\<forall>xs \<in> set xss. xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1201
by (induct xss) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1202
18447
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
  1203
lemma Nil_eq_concat_conv [simp]: "([] = concat xss) = (\<forall>xs \<in> set xss. xs = [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1204
by (induct xss) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1205
24308
700e745994c1 removed set_concat_map and improved set_concat
nipkow
parents: 24286
diff changeset
  1206
lemma set_concat [simp]: "set (concat xs) = (UN x:set xs. set x)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1207
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1208
24476
f7ad9fbbeeaa turned list comprehension translations into ML to optimize base case
nipkow
parents: 24471
diff changeset
  1209
lemma concat_map_singleton[simp]: "concat(map (%x. [f x]) xs) = map f xs"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1210
by (induct xs) auto
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1211
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1212
lemma map_concat: "map f (concat xs) = concat (map (map f) xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1213
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1214
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1215
lemma filter_concat: "filter p (concat xs) = concat (map (filter p) xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1216
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1217
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1218
lemma rev_concat: "rev (concat xs) = concat (map rev (rev xs))"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1219
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1220
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1221
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1222
subsubsection {* @{text nth} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1223
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1224
lemma nth_Cons_0 [simp]: "(x # xs)!0 = x"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1225
by auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1226
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1227
lemma nth_Cons_Suc [simp]: "(x # xs)!(Suc n) = xs!n"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1228
by auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1229
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1230
declare nth.simps [simp del]
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1231
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1232
lemma nth_append:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1233
  "(xs @ ys)!n = (if n < length xs then xs!n else ys!(n - length xs))"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1234
apply (induct xs arbitrary: n, simp)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1235
apply (case_tac n, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1236
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1237
14402
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  1238
lemma nth_append_length [simp]: "(xs @ x # ys) ! length xs = x"
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1239
by (induct xs) auto
14402
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  1240
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  1241
lemma nth_append_length_plus[simp]: "(xs @ ys) ! (length xs + n) = ys ! n"
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  1242
by (induct xs) auto
14402
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  1243
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1244
lemma nth_map [simp]: "n < length xs ==> (map f xs)!n = f(xs!n)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1245
apply (induct xs arbitrary: n, simp)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1246
apply (case_tac n, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1247
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1248
18423
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1249
lemma hd_conv_nth: "xs \<noteq> [] \<Longrightarrow> hd xs = xs!0"
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1250
by(cases xs) simp_all
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1251
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  1252
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  1253
lemma list_eq_iff_nth_eq:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1254
 "(xs = ys) = (length xs = length ys \<and> (ALL i<length xs. xs!i = ys!i))"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1255
apply(induct xs arbitrary: ys)
24632
779fc4fcbf8b metis now available in PreList
paulson
parents: 24617
diff changeset
  1256
 apply force
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  1257
apply(case_tac ys)
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  1258
 apply simp
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  1259
apply(simp add:nth_Cons split:nat.split)apply blast
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  1260
done
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  1261
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1262
lemma set_conv_nth: "set xs = {xs!i | i. i < length xs}"
15251
bb6f072c8d10 converted some induct_tac to induct
paulson
parents: 15246
diff changeset
  1263
apply (induct xs, simp, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1264
apply safe
24632
779fc4fcbf8b metis now available in PreList
paulson
parents: 24617
diff changeset
  1265
apply (metis nat_case_0 nth.simps zero_less_Suc)
779fc4fcbf8b metis now available in PreList
paulson
parents: 24617
diff changeset
  1266
apply (metis less_Suc_eq_0_disj nth_Cons_Suc)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1267
apply (case_tac i, simp)
24632
779fc4fcbf8b metis now available in PreList
paulson
parents: 24617
diff changeset
  1268
apply (metis diff_Suc_Suc nat_case_Suc nth.simps zero_less_diff)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1269
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1270
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1271
lemma in_set_conv_nth: "(x \<in> set xs) = (\<exists>i < length xs. xs!i = x)"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1272
by(auto simp:set_conv_nth)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1273
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1274
lemma list_ball_nth: "[| n < length xs; !x : set xs. P x|] ==> P(xs!n)"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1275
by (auto simp add: set_conv_nth)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1276
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1277
lemma nth_mem [simp]: "n < length xs ==> xs!n : set xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1278
by (auto simp add: set_conv_nth)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1279
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1280
lemma all_nth_imp_all_set:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1281
"[| !i < length xs. P(xs!i); x : set xs|] ==> P x"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1282
by (auto simp add: set_conv_nth)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1283
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1284
lemma all_set_conv_all_nth:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1285
"(\<forall>x \<in> set xs. P x) = (\<forall>i. i < length xs --> P (xs ! i))"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1286
by (auto simp add: set_conv_nth)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1287
25296
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1288
lemma rev_nth:
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1289
  "n < size xs \<Longrightarrow> rev xs ! n = xs ! (length xs - Suc n)"
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1290
proof (induct xs arbitrary: n)
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1291
  case Nil thus ?case by simp
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1292
next
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1293
  case (Cons x xs)
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1294
  hence n: "n < Suc (length xs)" by simp
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1295
  moreover
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1296
  { assume "n < length xs"
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1297
    with n obtain n' where "length xs - n = Suc n'"
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1298
      by (cases "length xs - n", auto)
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1299
    moreover
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1300
    then have "length xs - Suc n = n'" by simp
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1301
    ultimately
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1302
    have "xs ! (length xs - Suc n) = (x # xs) ! (length xs - n)" by simp
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1303
  }
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1304
  ultimately
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1305
  show ?case by (clarsimp simp add: Cons nth_append)
c187b7422156 rev_nth
kleing
parents: 25287
diff changeset
  1306
qed
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1307
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1308
subsubsection {* @{text list_update} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1309
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1310
lemma length_list_update [simp]: "length(xs[i:=x]) = length xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1311
by (induct xs arbitrary: i) (auto split: nat.split)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1312
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1313
lemma nth_list_update:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1314
"i < length xs==> (xs[i:=x])!j = (if i = j then x else xs!j)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1315
by (induct xs arbitrary: i j) (auto simp add: nth_Cons split: nat.split)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1316
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1317
lemma nth_list_update_eq [simp]: "i < length xs ==> (xs[i:=x])!i = x"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1318
by (simp add: nth_list_update)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1319
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1320
lemma nth_list_update_neq [simp]: "i \<noteq> j ==> xs[i:=x]!j = xs!j"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1321
by (induct xs arbitrary: i j) (auto simp add: nth_Cons split: nat.split)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1322
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1323
lemma list_update_id[simp]: "xs[i := xs!i] = xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1324
by (induct xs arbitrary: i) (simp_all split:nat.splits)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1325
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1326
lemma list_update_beyond[simp]: "length xs \<le> i \<Longrightarrow> xs[i:=x] = xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1327
apply (induct xs arbitrary: i)
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1328
 apply simp
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1329
apply (case_tac i)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1330
apply simp_all
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1331
done
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1332
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1333
lemma list_update_same_conv:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1334
"i < length xs ==> (xs[i := x] = xs) = (xs!i = x)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1335
by (induct xs arbitrary: i) (auto split: nat.split)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1336
14187
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1337
lemma list_update_append1:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1338
 "i < size xs \<Longrightarrow> (xs @ ys)[i:=x] = xs[i:=x] @ ys"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1339
apply (induct xs arbitrary: i, simp)
14187
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1340
apply(simp split:nat.split)
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1341
done
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1342
15868
9634b3f9d910 more about list_update
kleing
parents: 15693
diff changeset
  1343
lemma list_update_append:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1344
  "(xs @ ys) [n:= x] = 
15868
9634b3f9d910 more about list_update
kleing
parents: 15693
diff changeset
  1345
  (if n < length xs then xs[n:= x] @ ys else xs @ (ys [n-length xs:= x]))"
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1346
by (induct xs arbitrary: n) (auto split:nat.splits)
15868
9634b3f9d910 more about list_update
kleing
parents: 15693
diff changeset
  1347
14402
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  1348
lemma list_update_length [simp]:
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  1349
 "(xs @ x # ys)[length xs := y] = (xs @ y # ys)"
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  1350
by (induct xs, auto)
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  1351
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1352
lemma update_zip:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1353
  "length xs = length ys ==>
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1354
  (zip xs ys)[i:=xy] = zip (xs[i:=fst xy]) (ys[i:=snd xy])"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1355
by (induct ys arbitrary: i xy xs) (auto, case_tac xs, auto split: nat.split)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1356
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1357
lemma set_update_subset_insert: "set(xs[i:=x]) <= insert x (set xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1358
by (induct xs arbitrary: i) (auto split: nat.split)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1359
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1360
lemma set_update_subsetI: "[| set xs <= A; x:A |] ==> set(xs[i := x]) <= A"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1361
by (blast dest!: set_update_subset_insert [THEN subsetD])
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1362
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1363
lemma set_update_memI: "n < length xs \<Longrightarrow> x \<in> set (xs[n := x])"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1364
by (induct xs arbitrary: n) (auto split:nat.splits)
15868
9634b3f9d910 more about list_update
kleing
parents: 15693
diff changeset
  1365
24796
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1366
lemma list_update_overwrite:
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1367
  "xs [i := x, i := y] = xs [i := y]"
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1368
apply (induct xs arbitrary: i)
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1369
apply simp
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1370
apply (case_tac i)
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1371
apply simp_all
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1372
done
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1373
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1374
lemma list_update_swap:
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1375
  "i \<noteq> i' \<Longrightarrow> xs [i := x, i' := x'] = xs [i' := x', i := x]"
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1376
apply (induct xs arbitrary: i i')
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1377
apply simp
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1378
apply (case_tac i, case_tac i')
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1379
apply auto
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1380
apply (case_tac i')
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1381
apply auto
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1382
done
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1383
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1384
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1385
subsubsection {* @{text last} and @{text butlast} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1386
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1387
lemma last_snoc [simp]: "last (xs @ [x]) = x"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1388
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1389
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1390
lemma butlast_snoc [simp]: "butlast (xs @ [x]) = xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1391
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1392
14302
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1393
lemma last_ConsL: "xs = [] \<Longrightarrow> last(x#xs) = x"
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1394
by(simp add:last.simps)
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1395
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1396
lemma last_ConsR: "xs \<noteq> [] \<Longrightarrow> last(x#xs) = last xs"
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1397
by(simp add:last.simps)
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1398
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1399
lemma last_append: "last(xs @ ys) = (if ys = [] then last xs else last ys)"
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1400
by (induct xs) (auto)
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1401
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1402
lemma last_appendL[simp]: "ys = [] \<Longrightarrow> last(xs @ ys) = last xs"
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1403
by(simp add:last_append)
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1404
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1405
lemma last_appendR[simp]: "ys \<noteq> [] \<Longrightarrow> last(xs @ ys) = last ys"
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1406
by(simp add:last_append)
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1407
17762
478869f444ca new hd/rev/last lemmas
nipkow
parents: 17724
diff changeset
  1408
lemma hd_rev: "xs \<noteq> [] \<Longrightarrow> hd(rev xs) = last xs"
478869f444ca new hd/rev/last lemmas
nipkow
parents: 17724
diff changeset
  1409
by(rule rev_exhaust[of xs]) simp_all
478869f444ca new hd/rev/last lemmas
nipkow
parents: 17724
diff changeset
  1410
478869f444ca new hd/rev/last lemmas
nipkow
parents: 17724
diff changeset
  1411
lemma last_rev: "xs \<noteq> [] \<Longrightarrow> last(rev xs) = hd xs"
478869f444ca new hd/rev/last lemmas
nipkow
parents: 17724
diff changeset
  1412
by(cases xs) simp_all
478869f444ca new hd/rev/last lemmas
nipkow
parents: 17724
diff changeset
  1413
17765
e3cd31bc2e40 added last in set lemma
nipkow
parents: 17762
diff changeset
  1414
lemma last_in_set[simp]: "as \<noteq> [] \<Longrightarrow> last as \<in> set as"
e3cd31bc2e40 added last in set lemma
nipkow
parents: 17762
diff changeset
  1415
by (induct as) auto
17762
478869f444ca new hd/rev/last lemmas
nipkow
parents: 17724
diff changeset
  1416
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1417
lemma length_butlast [simp]: "length (butlast xs) = length xs - 1"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1418
by (induct xs rule: rev_induct) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1419
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1420
lemma butlast_append:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1421
  "butlast (xs @ ys) = (if ys = [] then butlast xs else xs @ butlast ys)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1422
by (induct xs arbitrary: ys) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1423
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1424
lemma append_butlast_last_id [simp]:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1425
"xs \<noteq> [] ==> butlast xs @ [last xs] = xs"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1426
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1427
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1428
lemma in_set_butlastD: "x : set (butlast xs) ==> x : set xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1429
by (induct xs) (auto split: split_if_asm)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1430
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1431
lemma in_set_butlast_appendI:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1432
"x : set (butlast xs) | x : set (butlast ys) ==> x : set (butlast (xs @ ys))"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1433
by (auto dest: in_set_butlastD simp add: butlast_append)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1434
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1435
lemma last_drop[simp]: "n < length xs \<Longrightarrow> last (drop n xs) = last xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1436
apply (induct xs arbitrary: n)
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1437
 apply simp
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1438
apply (auto split:nat.split)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1439
done
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1440
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17501
diff changeset
  1441
lemma last_conv_nth: "xs\<noteq>[] \<Longrightarrow> last xs = xs!(length xs - 1)"
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17501
diff changeset
  1442
by(induct xs)(auto simp:neq_Nil_conv)
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17501
diff changeset
  1443
26584
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1444
lemma butlast_conv_take: "butlast xs = take (length xs - 1) xs"
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1445
by (induct xs, simp, case_tac xs, simp_all)
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1446
24796
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1447
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1448
subsubsection {* @{text take} and @{text drop} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1449
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1450
lemma take_0 [simp]: "take 0 xs = []"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1451
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1452
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1453
lemma drop_0 [simp]: "drop 0 xs = xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1454
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1455
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1456
lemma take_Suc_Cons [simp]: "take (Suc n) (x # xs) = x # take n xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1457
by simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1458
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1459
lemma drop_Suc_Cons [simp]: "drop (Suc n) (x # xs) = drop n xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1460
by simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1461
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1462
declare take_Cons [simp del] and drop_Cons [simp del]
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1463
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1464
lemma take_Suc: "xs ~= [] ==> take (Suc n) xs = hd xs # take n (tl xs)"
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1465
by(clarsimp simp add:neq_Nil_conv)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1466
14187
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1467
lemma drop_Suc: "drop (Suc n) xs = drop n (tl xs)"
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1468
by(cases xs, simp_all)
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1469
26584
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1470
lemma take_tl: "take n (tl xs) = tl (take (Suc n) xs)"
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1471
by (induct xs arbitrary: n) simp_all
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1472
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1473
lemma drop_tl: "drop n (tl xs) = tl(drop n xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1474
by(induct xs arbitrary: n, simp_all add:drop_Cons drop_Suc split:nat.split)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1475
26584
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1476
lemma tl_take: "tl (take n xs) = take (n - 1) (tl xs)"
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1477
by (cases n, simp, cases xs, auto)
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1478
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1479
lemma tl_drop: "tl (drop n xs) = drop n (tl xs)"
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1480
by (simp only: drop_tl)
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1481
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1482
lemma nth_via_drop: "drop n xs = y#ys \<Longrightarrow> xs!n = y"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1483
apply (induct xs arbitrary: n, simp)
14187
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1484
apply(simp add:drop_Cons nth_Cons split:nat.splits)
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1485
done
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1486
13913
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1487
lemma take_Suc_conv_app_nth:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1488
  "i < length xs \<Longrightarrow> take (Suc i) xs = take i xs @ [xs!i]"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1489
apply (induct xs arbitrary: i, simp)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1490
apply (case_tac i, auto)
13913
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1491
done
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1492
14591
7be4d5dadf15 lemma drop_Suc_conv_tl added.
mehta
parents: 14589
diff changeset
  1493
lemma drop_Suc_conv_tl:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1494
  "i < length xs \<Longrightarrow> (xs!i) # (drop (Suc i) xs) = drop i xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1495
apply (induct xs arbitrary: i, simp)
14591
7be4d5dadf15 lemma drop_Suc_conv_tl added.
mehta
parents: 14589
diff changeset
  1496
apply (case_tac i, auto)
7be4d5dadf15 lemma drop_Suc_conv_tl added.
mehta
parents: 14589
diff changeset
  1497
done
7be4d5dadf15 lemma drop_Suc_conv_tl added.
mehta
parents: 14589
diff changeset
  1498
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1499
lemma length_take [simp]: "length (take n xs) = min (length xs) n"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1500
by (induct n arbitrary: xs) (auto, case_tac xs, auto)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1501
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1502
lemma length_drop [simp]: "length (drop n xs) = (length xs - n)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1503
by (induct n arbitrary: xs) (auto, case_tac xs, auto)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1504
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1505
lemma take_all [simp]: "length xs <= n ==> take n xs = xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1506
by (induct n arbitrary: xs) (auto, case_tac xs, auto)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1507
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1508
lemma drop_all [simp]: "length xs <= n ==> drop n xs = []"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1509
by (induct n arbitrary: xs) (auto, case_tac xs, auto)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1510
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1511
lemma take_append [simp]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1512
  "take n (xs @ ys) = (take n xs @ take (n - length xs) ys)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1513
by (induct n arbitrary: xs) (auto, case_tac xs, auto)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1514
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1515
lemma drop_append [simp]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1516
  "drop n (xs @ ys) = drop n xs @ drop (n - length xs) ys"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1517
by (induct n arbitrary: xs) (auto, case_tac xs, auto)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1518
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1519
lemma take_take [simp]: "take n (take m xs) = take (min n m) xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1520
apply (induct m arbitrary: xs n, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1521
apply (case_tac xs, auto)
15236
f289e8ba2bb3 Proofs needed to be updated because induction now preserves name of
nipkow
parents: 15176
diff changeset
  1522
apply (case_tac n, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1523
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1524
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1525
lemma drop_drop [simp]: "drop n (drop m xs) = drop (n + m) xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1526
apply (induct m arbitrary: xs, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1527
apply (case_tac xs, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1528
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1529
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1530
lemma take_drop: "take n (drop m xs) = drop m (take (n + m) xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1531
apply (induct m arbitrary: xs n, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1532
apply (case_tac xs, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1533
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1534
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1535
lemma drop_take: "drop n (take m xs) = take (m-n) (drop n xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1536
apply(induct xs arbitrary: m n)
14802
e05116289ff9 added drop_take:thm
nipkow
parents: 14770
diff changeset
  1537
 apply simp
e05116289ff9 added drop_take:thm
nipkow
parents: 14770
diff changeset
  1538
apply(simp add: take_Cons drop_Cons split:nat.split)
e05116289ff9 added drop_take:thm
nipkow
parents: 14770
diff changeset
  1539
done
e05116289ff9 added drop_take:thm
nipkow
parents: 14770
diff changeset
  1540
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1541
lemma append_take_drop_id [simp]: "take n xs @ drop n xs = xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1542
apply (induct n arbitrary: xs, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1543
apply (case_tac xs, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1544
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1545
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1546
lemma take_eq_Nil[simp]: "(take n xs = []) = (n = 0 \<or> xs = [])"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1547
apply(induct xs arbitrary: n)
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1548
 apply simp
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1549
apply(simp add:take_Cons split:nat.split)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1550
done
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1551
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1552
lemma drop_eq_Nil[simp]: "(drop n xs = []) = (length xs <= n)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1553
apply(induct xs arbitrary: n)
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1554
apply simp
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1555
apply(simp add:drop_Cons split:nat.split)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1556
done
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1557
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1558
lemma take_map: "take n (map f xs) = map f (take n xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1559
apply (induct n arbitrary: xs, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1560
apply (case_tac xs, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1561
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1562
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1563
lemma drop_map: "drop n (map f xs) = map f (drop n xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1564
apply (induct n arbitrary: xs, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1565
apply (case_tac xs, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1566
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1567
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1568
lemma rev_take: "rev (take i xs) = drop (length xs - i) (rev xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1569
apply (induct xs arbitrary: i, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1570
apply (case_tac i, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1571
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1572
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1573
lemma rev_drop: "rev (drop i xs) = take (length xs - i) (rev xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1574
apply (induct xs arbitrary: i, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1575
apply (case_tac i, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1576
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1577
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1578
lemma nth_take [simp]: "i < n ==> (take n xs)!i = xs!i"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1579
apply (induct xs arbitrary: i n, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1580
apply (case_tac n, blast)
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1581
apply (case_tac i, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1582
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1583
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1584
lemma nth_drop [simp]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1585
  "n + i <= length xs ==> (drop n xs)!i = xs!(n + i)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1586
apply (induct n arbitrary: xs i, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1587
apply (case_tac xs, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1588
done
3507
157be29ad5ba Improved length = size translation.
nipkow
parents: 3465
diff changeset
  1589
26584
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1590
lemma butlast_take:
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1591
  "n <= length xs ==> butlast (take n xs) = take (n - 1) xs"
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1592
by (simp add: butlast_conv_take min_max.inf_absorb1 min_max.inf_absorb2)
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1593
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1594
lemma butlast_drop: "butlast (drop n xs) = drop n (butlast xs)"
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1595
by (simp add: butlast_conv_take drop_take)
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1596
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1597
lemma take_butlast: "n < length xs ==> take n (butlast xs) = take n xs"
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1598
by (simp add: butlast_conv_take min_max.inf_absorb1)
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1599
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1600
lemma drop_butlast: "drop n (butlast xs) = butlast (drop n xs)"
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1601
by (simp add: butlast_conv_take drop_take)
46f3b89b2445 move lemmas from Word/BinBoolList.thy to List.thy
huffman
parents: 26480
diff changeset
  1602
18423
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1603
lemma hd_drop_conv_nth: "\<lbrakk> xs \<noteq> []; n < length xs \<rbrakk> \<Longrightarrow> hd(drop n xs) = xs!n"
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1604
by(simp add: hd_conv_nth)
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1605
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1606
lemma set_take_subset: "set(take n xs) \<subseteq> set xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1607
by(induct xs arbitrary: n)(auto simp:take_Cons split:nat.split)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1608
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1609
lemma set_drop_subset: "set(drop n xs) \<subseteq> set xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1610
by(induct xs arbitrary: n)(auto simp:drop_Cons split:nat.split)
14025
d9b155757dc8 *** empty log message ***
nipkow
parents: 13913
diff changeset
  1611
14187
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1612
lemma in_set_takeD: "x : set(take n xs) \<Longrightarrow> x : set xs"
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1613
using set_take_subset by fast
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1614
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1615
lemma in_set_dropD: "x : set(drop n xs) \<Longrightarrow> x : set xs"
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1616
using set_drop_subset by fast
26dfcd0ac436 Added new theorems
nipkow
parents: 14111
diff changeset
  1617
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1618
lemma append_eq_conv_conj:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1619
  "(xs @ ys = zs) = (xs = take (length xs) zs \<and> ys = drop (length xs) zs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1620
apply (induct xs arbitrary: zs, simp, clarsimp)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1621
apply (case_tac zs, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1622
done
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1623
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1624
lemma take_add: 
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1625
  "i+j \<le> length(xs) \<Longrightarrow> take (i+j) xs = take i xs @ take j (drop i xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1626
apply (induct xs arbitrary: i, auto) 
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1627
apply (case_tac i, simp_all)
14050
826037db30cd new theorem
paulson
parents: 14025
diff changeset
  1628
done
826037db30cd new theorem
paulson
parents: 14025
diff changeset
  1629
14300
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1630
lemma append_eq_append_conv_if:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1631
 "(xs\<^isub>1 @ xs\<^isub>2 = ys\<^isub>1 @ ys\<^isub>2) =
14300
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1632
  (if size xs\<^isub>1 \<le> size ys\<^isub>1
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1633
   then xs\<^isub>1 = take (size xs\<^isub>1) ys\<^isub>1 \<and> xs\<^isub>2 = drop (size xs\<^isub>1) ys\<^isub>1 @ ys\<^isub>2
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1634
   else take (size ys\<^isub>1) xs\<^isub>1 = ys\<^isub>1 \<and> drop (size ys\<^isub>1) xs\<^isub>1 @ xs\<^isub>2 = ys\<^isub>2)"
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1635
apply(induct xs\<^isub>1 arbitrary: ys\<^isub>1)
14300
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1636
 apply simp
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1637
apply(case_tac ys\<^isub>1)
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1638
apply simp_all
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1639
done
bf8b8c9425c3 *** empty log message ***
nipkow
parents: 14247
diff changeset
  1640
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1641
lemma take_hd_drop:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1642
  "n < length xs \<Longrightarrow> take n xs @ [hd (drop n xs)] = take (n+1) xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1643
apply(induct xs arbitrary: n)
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1644
apply simp
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1645
apply(simp add:drop_Cons split:nat.split)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1646
done
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  1647
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1648
lemma id_take_nth_drop:
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1649
 "i < length xs \<Longrightarrow> xs = take i xs @ xs!i # drop (Suc i) xs" 
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1650
proof -
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1651
  assume si: "i < length xs"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1652
  hence "xs = take (Suc i) xs @ drop (Suc i) xs" by auto
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1653
  moreover
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1654
  from si have "take (Suc i) xs = take i xs @ [xs!i]"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1655
    apply (rule_tac take_Suc_conv_app_nth) by arith
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1656
  ultimately show ?thesis by auto
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1657
qed
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1658
  
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1659
lemma upd_conv_take_nth_drop:
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1660
 "i < length xs \<Longrightarrow> xs[i:=a] = take i xs @ a # drop (Suc i) xs"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1661
proof -
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1662
  assume i: "i < length xs"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1663
  have "xs[i:=a] = (take i xs @ xs!i # drop (Suc i) xs)[i:=a]"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1664
    by(rule arg_cong[OF id_take_nth_drop[OF i]])
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1665
  also have "\<dots> = take i xs @ a # drop (Suc i) xs"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1666
    using i by (simp add: list_update_append)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1667
  finally show ?thesis .
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1668
qed
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1669
24796
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1670
lemma nth_drop':
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1671
  "i < length xs \<Longrightarrow> xs ! i # drop (Suc i) xs = drop i xs"
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1672
apply (induct i arbitrary: xs)
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1673
apply (simp add: neq_Nil_conv)
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1674
apply (erule exE)+
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1675
apply simp
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1676
apply (case_tac xs)
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1677
apply simp_all
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1678
done
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  1679
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1680
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1681
subsubsection {* @{text takeWhile} and @{text dropWhile} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1682
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1683
lemma takeWhile_dropWhile_id [simp]: "takeWhile P xs @ dropWhile P xs = xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1684
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1685
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1686
lemma takeWhile_append1 [simp]:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1687
"[| x:set xs; ~P(x)|] ==> takeWhile P (xs @ ys) = takeWhile P xs"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1688
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1689
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1690
lemma takeWhile_append2 [simp]:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1691
"(!!x. x : set xs ==> P x) ==> takeWhile P (xs @ ys) = xs @ takeWhile P ys"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1692
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1693
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1694
lemma takeWhile_tail: "\<not> P x ==> takeWhile P (xs @ (x#l)) = takeWhile P xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1695
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1696
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1697
lemma dropWhile_append1 [simp]:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1698
"[| x : set xs; ~P(x)|] ==> dropWhile P (xs @ ys) = (dropWhile P xs)@ys"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1699
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1700
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1701
lemma dropWhile_append2 [simp]:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1702
"(!!x. x:set xs ==> P(x)) ==> dropWhile P (xs @ ys) = dropWhile P ys"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1703
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1704
23971
e6d505d5b03d renamed lemma "set_take_whileD" to "set_takeWhileD"
krauss
parents: 23740
diff changeset
  1705
lemma set_takeWhileD: "x : set (takeWhile P xs) ==> x : set xs \<and> P x"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1706
by (induct xs) (auto split: split_if_asm)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1707
13913
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1708
lemma takeWhile_eq_all_conv[simp]:
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1709
 "(takeWhile P xs = xs) = (\<forall>x \<in> set xs. P x)"
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1710
by(induct xs, auto)
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1711
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1712
lemma dropWhile_eq_Nil_conv[simp]:
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1713
 "(dropWhile P xs = []) = (\<forall>x \<in> set xs. P x)"
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1714
by(induct xs, auto)
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1715
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1716
lemma dropWhile_eq_Cons_conv:
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1717
 "(dropWhile P xs = y#ys) = (xs = takeWhile P xs @ y # ys & \<not> P y)"
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1718
by(induct xs, auto)
b3ed67af04b8 Added take/dropWhile thms
nipkow
parents: 13883
diff changeset
  1719
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1720
text{* The following two lemmmas could be generalized to an arbitrary
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1721
property. *}
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1722
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1723
lemma takeWhile_neq_rev: "\<lbrakk>distinct xs; x \<in> set xs\<rbrakk> \<Longrightarrow>
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1724
 takeWhile (\<lambda>y. y \<noteq> x) (rev xs) = rev (tl (dropWhile (\<lambda>y. y \<noteq> x) xs))"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1725
by(induct xs) (auto simp: takeWhile_tail[where l="[]"])
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1726
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1727
lemma dropWhile_neq_rev: "\<lbrakk>distinct xs; x \<in> set xs\<rbrakk> \<Longrightarrow>
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1728
  dropWhile (\<lambda>y. y \<noteq> x) (rev xs) = x # rev (takeWhile (\<lambda>y. y \<noteq> x) xs)"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1729
apply(induct xs)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1730
 apply simp
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1731
apply auto
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1732
apply(subst dropWhile_append2)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1733
apply auto
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1734
done
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  1735
18423
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1736
lemma takeWhile_not_last:
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1737
 "\<lbrakk> xs \<noteq> []; distinct xs\<rbrakk> \<Longrightarrow> takeWhile (\<lambda>y. y \<noteq> last xs) xs = butlast xs"
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1738
apply(induct xs)
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1739
 apply simp
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1740
apply(case_tac xs)
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1741
apply(auto)
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1742
done
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  1743
19770
be5c23ebe1eb HOL/Tools/function_package: Added support for mutual recursive definitions.
krauss
parents: 19623
diff changeset
  1744
lemma takeWhile_cong [fundef_cong, recdef_cong]:
18336
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  1745
  "[| l = k; !!x. x : set l ==> P x = Q x |] 
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  1746
  ==> takeWhile P l = takeWhile Q k"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1747
by (induct k arbitrary: l) (simp_all)
18336
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  1748
19770
be5c23ebe1eb HOL/Tools/function_package: Added support for mutual recursive definitions.
krauss
parents: 19623
diff changeset
  1749
lemma dropWhile_cong [fundef_cong, recdef_cong]:
18336
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  1750
  "[| l = k; !!x. x : set l ==> P x = Q x |] 
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  1751
  ==> dropWhile P l = dropWhile Q k"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1752
by (induct k arbitrary: l, simp_all)
18336
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  1753
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1754
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1755
subsubsection {* @{text zip} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1756
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1757
lemma zip_Nil [simp]: "zip [] ys = []"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1758
by (induct ys) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1759
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1760
lemma zip_Cons_Cons [simp]: "zip (x # xs) (y # ys) = (x, y) # zip xs ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1761
by simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1762
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1763
declare zip_Cons [simp del]
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1764
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1765
lemma zip_Cons1:
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1766
 "zip (x#xs) ys = (case ys of [] \<Rightarrow> [] | y#ys \<Rightarrow> (x,y)#zip xs ys)"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1767
by(auto split:list.split)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  1768
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1769
lemma length_zip [simp]:
22493
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1770
"length (zip xs ys) = min (length xs) (length ys)"
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1771
by (induct xs ys rule:list_induct2') auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1772
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1773
lemma zip_append1:
22493
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1774
"zip (xs @ ys) zs =
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1775
zip xs (take (length xs) zs) @ zip ys (drop (length xs) zs)"
22493
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1776
by (induct xs zs rule:list_induct2') auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1777
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1778
lemma zip_append2:
22493
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1779
"zip xs (ys @ zs) =
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1780
zip (take (length ys) xs) ys @ zip (drop (length ys) xs) zs"
22493
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1781
by (induct xs ys rule:list_induct2') auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1782
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1783
lemma zip_append [simp]:
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1784
 "[| length xs = length us; length ys = length vs |] ==>
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1785
zip (xs@ys) (us@vs) = zip xs us @ zip ys vs"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1786
by (simp add: zip_append1)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1787
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1788
lemma zip_rev:
14247
cb32eb89bddd *** empty log message ***
nipkow
parents: 14208
diff changeset
  1789
"length xs = length ys ==> zip (rev xs) (rev ys) = rev (zip xs ys)"
cb32eb89bddd *** empty log message ***
nipkow
parents: 14208
diff changeset
  1790
by (induct rule:list_induct2, simp_all)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1791
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1792
lemma map_zip_map:
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1793
 "map f (zip (map g xs) ys) = map (%(x,y). f(g x, y)) (zip xs ys)"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1794
apply(induct xs arbitrary:ys) apply simp
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1795
apply(case_tac ys)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1796
apply simp_all
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1797
done
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1798
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1799
lemma map_zip_map2:
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1800
 "map f (zip xs (map g ys)) = map (%(x,y). f(x, g y)) (zip xs ys)"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1801
apply(induct xs arbitrary:ys) apply simp
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1802
apply(case_tac ys)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1803
apply simp_all
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1804
done
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  1805
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1806
lemma nth_zip [simp]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1807
"[| i < length xs; i < length ys|] ==> (zip xs ys)!i = (xs!i, ys!i)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1808
apply (induct ys arbitrary: i xs, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1809
apply (case_tac xs)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1810
 apply (simp_all add: nth.simps split: nat.split)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1811
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1812
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1813
lemma set_zip:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1814
"set (zip xs ys) = {(xs!i, ys!i) | i. i < min (length xs) (length ys)}"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1815
by (simp add: set_conv_nth cong: rev_conj_cong)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1816
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1817
lemma zip_update:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1818
"length xs = length ys ==> zip (xs[i:=x]) (ys[i:=y]) = (zip xs ys)[i:=(x,y)]"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1819
by (rule sym, simp add: update_zip)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1820
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1821
lemma zip_replicate [simp]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1822
  "zip (replicate i x) (replicate j y) = replicate (min i j) (x,y)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1823
apply (induct i arbitrary: j, auto)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1824
apply (case_tac j, auto)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1825
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1826
19487
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1827
lemma take_zip:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1828
  "take n (zip xs ys) = zip (take n xs) (take n ys)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1829
apply (induct n arbitrary: xs ys)
19487
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1830
 apply simp
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1831
apply (case_tac xs, simp)
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1832
apply (case_tac ys, simp_all)
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1833
done
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1834
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1835
lemma drop_zip:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1836
  "drop n (zip xs ys) = zip (drop n xs) (drop n ys)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1837
apply (induct n arbitrary: xs ys)
19487
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1838
 apply simp
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1839
apply (case_tac xs, simp)
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1840
apply (case_tac ys, simp_all)
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1841
done
d5e79a41bce0 added zip/take/drop lemmas
nipkow
parents: 19390
diff changeset
  1842
22493
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1843
lemma set_zip_leftD:
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1844
  "(x,y)\<in> set (zip xs ys) \<Longrightarrow> x \<in> set xs"
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1845
by (induct xs ys rule:list_induct2') auto
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1846
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1847
lemma set_zip_rightD:
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1848
  "(x,y)\<in> set (zip xs ys) \<Longrightarrow> y \<in> set ys"
db930e490fe5 added another rule for simultaneous induction, and lemmas for zip
krauss
parents: 22422
diff changeset
  1849
by (induct xs ys rule:list_induct2') auto
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1850
23983
79dc793bec43 Added lemmas
nipkow
parents: 23971
diff changeset
  1851
lemma in_set_zipE:
79dc793bec43 Added lemmas
nipkow
parents: 23971
diff changeset
  1852
  "(x,y) : set(zip xs ys) \<Longrightarrow> (\<lbrakk> x : set xs; y : set ys \<rbrakk> \<Longrightarrow> R) \<Longrightarrow> R"
79dc793bec43 Added lemmas
nipkow
parents: 23971
diff changeset
  1853
by(blast dest: set_zip_leftD set_zip_rightD)
79dc793bec43 Added lemmas
nipkow
parents: 23971
diff changeset
  1854
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  1855
subsubsection {* @{text list_all2} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1856
14316
91b897b9a2dc added some [intro?] and [trans] for list_all2 lemmas
kleing
parents: 14302
diff changeset
  1857
lemma list_all2_lengthD [intro?]: 
91b897b9a2dc added some [intro?] and [trans] for list_all2 lemmas
kleing
parents: 14302
diff changeset
  1858
  "list_all2 P xs ys ==> length xs = length ys"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1859
by (simp add: list_all2_def)
19607
07eeb832f28d introduced characters for code generator; some improved code lemmas for some list functions
haftmann
parents: 19585
diff changeset
  1860
19787
b949911ecff5 improved code lemmas
haftmann
parents: 19770
diff changeset
  1861
lemma list_all2_Nil [iff, code]: "list_all2 P [] ys = (ys = [])"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1862
by (simp add: list_all2_def)
19607
07eeb832f28d introduced characters for code generator; some improved code lemmas for some list functions
haftmann
parents: 19585
diff changeset
  1863
19787
b949911ecff5 improved code lemmas
haftmann
parents: 19770
diff changeset
  1864
lemma list_all2_Nil2 [iff, code]: "list_all2 P xs [] = (xs = [])"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1865
by (simp add: list_all2_def)
19607
07eeb832f28d introduced characters for code generator; some improved code lemmas for some list functions
haftmann
parents: 19585
diff changeset
  1866
07eeb832f28d introduced characters for code generator; some improved code lemmas for some list functions
haftmann
parents: 19585
diff changeset
  1867
lemma list_all2_Cons [iff, code]:
07eeb832f28d introduced characters for code generator; some improved code lemmas for some list functions
haftmann
parents: 19585
diff changeset
  1868
  "list_all2 P (x # xs) (y # ys) = (P x y \<and> list_all2 P xs ys)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1869
by (auto simp add: list_all2_def)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1870
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1871
lemma list_all2_Cons1:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1872
"list_all2 P (x # xs) ys = (\<exists>z zs. ys = z # zs \<and> P x z \<and> list_all2 P xs zs)"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1873
by (cases ys) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1874
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1875
lemma list_all2_Cons2:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1876
"list_all2 P xs (y # ys) = (\<exists>z zs. xs = z # zs \<and> P z y \<and> list_all2 P zs ys)"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1877
by (cases xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1878
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  1879
lemma list_all2_rev [iff]:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1880
"list_all2 P (rev xs) (rev ys) = list_all2 P xs ys"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1881
by (simp add: list_all2_def zip_rev cong: conj_cong)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1882
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1883
lemma list_all2_rev1:
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1884
"list_all2 P (rev xs) ys = list_all2 P xs (rev ys)"
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1885
by (subst list_all2_rev [symmetric]) simp
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1886
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1887
lemma list_all2_append1:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1888
"list_all2 P (xs @ ys) zs =
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1889
(EX us vs. zs = us @ vs \<and> length us = length xs \<and> length vs = length ys \<and>
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1890
list_all2 P xs us \<and> list_all2 P ys vs)"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1891
apply (simp add: list_all2_def zip_append1)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1892
apply (rule iffI)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1893
 apply (rule_tac x = "take (length xs) zs" in exI)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1894
 apply (rule_tac x = "drop (length xs) zs" in exI)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1895
 apply (force split: nat_diff_split simp add: min_def, clarify)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1896
apply (simp add: ball_Un)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1897
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1898
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1899
lemma list_all2_append2:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1900
"list_all2 P xs (ys @ zs) =
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1901
(EX us vs. xs = us @ vs \<and> length us = length ys \<and> length vs = length zs \<and>
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1902
list_all2 P us ys \<and> list_all2 P vs zs)"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1903
apply (simp add: list_all2_def zip_append2)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1904
apply (rule iffI)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1905
 apply (rule_tac x = "take (length ys) xs" in exI)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1906
 apply (rule_tac x = "drop (length ys) xs" in exI)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  1907
 apply (force split: nat_diff_split simp add: min_def, clarify)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1908
apply (simp add: ball_Un)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1909
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1910
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1911
lemma list_all2_append:
14247
cb32eb89bddd *** empty log message ***
nipkow
parents: 14208
diff changeset
  1912
  "length xs = length ys \<Longrightarrow>
cb32eb89bddd *** empty log message ***
nipkow
parents: 14208
diff changeset
  1913
  list_all2 P (xs@us) (ys@vs) = (list_all2 P xs ys \<and> list_all2 P us vs)"
cb32eb89bddd *** empty log message ***
nipkow
parents: 14208
diff changeset
  1914
by (induct rule:list_induct2, simp_all)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1915
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1916
lemma list_all2_appendI [intro?, trans]:
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1917
  "\<lbrakk> list_all2 P a b; list_all2 P c d \<rbrakk> \<Longrightarrow> list_all2 P (a@c) (b@d)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1918
by (simp add: list_all2_append list_all2_lengthD)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1919
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1920
lemma list_all2_conv_all_nth:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1921
"list_all2 P xs ys =
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1922
(length xs = length ys \<and> (\<forall>i < length xs. P (xs!i) (ys!i)))"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  1923
by (force simp add: list_all2_def set_zip)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  1924
13883
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1925
lemma list_all2_trans:
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1926
  assumes tr: "!!a b c. P1 a b ==> P2 b c ==> P3 a c"
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1927
  shows "!!bs cs. list_all2 P1 as bs ==> list_all2 P2 bs cs ==> list_all2 P3 as cs"
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1928
        (is "!!bs cs. PROP ?Q as bs cs")
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1929
proof (induct as)
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1930
  fix x xs bs assume I1: "!!bs cs. PROP ?Q xs bs cs"
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1931
  show "!!cs. PROP ?Q (x # xs) bs cs"
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1932
  proof (induct bs)
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1933
    fix y ys cs assume I2: "!!cs. PROP ?Q (x # xs) ys cs"
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1934
    show "PROP ?Q (x # xs) (y # ys) cs"
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1935
      by (induct cs) (auto intro: tr I1 I2)
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1936
  qed simp
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1937
qed simp
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  1938
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1939
lemma list_all2_all_nthI [intro?]:
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1940
  "length a = length b \<Longrightarrow> (\<And>n. n < length a \<Longrightarrow> P (a!n) (b!n)) \<Longrightarrow> list_all2 P a b"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1941
by (simp add: list_all2_conv_all_nth)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1942
14395
cc96cc06abf9 new theorem
paulson
parents: 14388
diff changeset
  1943
lemma list_all2I:
cc96cc06abf9 new theorem
paulson
parents: 14388
diff changeset
  1944
  "\<forall>x \<in> set (zip a b). split P x \<Longrightarrow> length a = length b \<Longrightarrow> list_all2 P a b"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1945
by (simp add: list_all2_def)
14395
cc96cc06abf9 new theorem
paulson
parents: 14388
diff changeset
  1946
14328
fd063037fdf5 list_all2_nthD no good as [intro?]
kleing
parents: 14327
diff changeset
  1947
lemma list_all2_nthD:
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1948
  "\<lbrakk> list_all2 P xs ys; p < size xs \<rbrakk> \<Longrightarrow> P (xs!p) (ys!p)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1949
by (simp add: list_all2_conv_all_nth)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1950
14302
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1951
lemma list_all2_nthD2:
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1952
  "\<lbrakk>list_all2 P xs ys; p < size ys\<rbrakk> \<Longrightarrow> P (xs!p) (ys!p)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1953
by (frule list_all2_lengthD) (auto intro: list_all2_nthD)
14302
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1954
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1955
lemma list_all2_map1: 
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1956
  "list_all2 P (map f as) bs = list_all2 (\<lambda>x y. P (f x) y) as bs"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1957
by (simp add: list_all2_conv_all_nth)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1958
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1959
lemma list_all2_map2: 
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1960
  "list_all2 P as (map f bs) = list_all2 (\<lambda>x y. P x (f y)) as bs"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1961
by (auto simp add: list_all2_conv_all_nth)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1962
14316
91b897b9a2dc added some [intro?] and [trans] for list_all2 lemmas
kleing
parents: 14302
diff changeset
  1963
lemma list_all2_refl [intro?]:
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1964
  "(\<And>x. P x x) \<Longrightarrow> list_all2 P xs xs"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1965
by (simp add: list_all2_conv_all_nth)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1966
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1967
lemma list_all2_update_cong:
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1968
  "\<lbrakk> i<size xs; list_all2 P xs ys; P x y \<rbrakk> \<Longrightarrow> list_all2 P (xs[i:=x]) (ys[i:=y])"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1969
by (simp add: list_all2_conv_all_nth nth_list_update)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1970
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1971
lemma list_all2_update_cong2:
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1972
  "\<lbrakk>list_all2 P xs ys; P x y; i < length ys\<rbrakk> \<Longrightarrow> list_all2 P (xs[i:=x]) (ys[i:=y])"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1973
by (simp add: list_all2_lengthD list_all2_update_cong)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1974
14302
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1975
lemma list_all2_takeI [simp,intro?]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1976
  "list_all2 P xs ys \<Longrightarrow> list_all2 P (take n xs) (take n ys)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1977
apply (induct xs arbitrary: n ys)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1978
 apply simp
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1979
apply (clarsimp simp add: list_all2_Cons1)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1980
apply (case_tac n)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1981
apply auto
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1982
done
14302
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1983
6c24235e8d5d *** empty log message ***
nipkow
parents: 14300
diff changeset
  1984
lemma list_all2_dropI [simp,intro?]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1985
  "list_all2 P as bs \<Longrightarrow> list_all2 P (drop n as) (drop n bs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1986
apply (induct as arbitrary: n bs, simp)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1987
apply (clarsimp simp add: list_all2_Cons1)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1988
apply (case_tac n, simp, simp)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1989
done
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1990
14327
9cd4dea593e3 list_all2_mono should not be [trans]
kleing
parents: 14316
diff changeset
  1991
lemma list_all2_mono [intro?]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1992
  "list_all2 P xs ys \<Longrightarrow> (\<And>xs ys. P xs ys \<Longrightarrow> Q xs ys) \<Longrightarrow> list_all2 Q xs ys"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1993
apply (induct xs arbitrary: ys, simp)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1994
apply (case_tac ys, auto)
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  1995
done
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  1996
22551
e52f5400e331 paraphrasing equality
haftmann
parents: 22539
diff changeset
  1997
lemma list_all2_eq:
e52f5400e331 paraphrasing equality
haftmann
parents: 22539
diff changeset
  1998
  "xs = ys \<longleftrightarrow> list_all2 (op =) xs ys"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  1999
by (induct xs ys rule: list_induct2') auto
22551
e52f5400e331 paraphrasing equality
haftmann
parents: 22539
diff changeset
  2000
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2001
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  2002
subsubsection {* @{text foldl} and @{text foldr} *}
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2003
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2004
lemma foldl_append [simp]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2005
  "foldl f a (xs @ ys) = foldl f (foldl f a xs) ys"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2006
by (induct xs arbitrary: a) auto
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2007
14402
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2008
lemma foldr_append[simp]: "foldr f (xs @ ys) a = foldr f xs (foldr f ys a)"
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2009
by (induct xs) auto
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2010
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2011
lemma foldr_map: "foldr g (map f xs) a = foldr (g o f) xs a"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2012
by(induct xs) simp_all
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2013
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2014
text{* For efficient code generation: avoid intermediate list. *}
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2015
lemma foldl_map[code unfold]:
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2016
  "foldl g a (map f xs) = foldl (%a x. g a (f x)) a xs"
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2017
by(induct xs arbitrary:a) simp_all
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2018
19770
be5c23ebe1eb HOL/Tools/function_package: Added support for mutual recursive definitions.
krauss
parents: 19623
diff changeset
  2019
lemma foldl_cong [fundef_cong, recdef_cong]:
18336
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  2020
  "[| a = b; l = k; !!a x. x : set l ==> f a x = g a x |] 
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  2021
  ==> foldl f a l = foldl g b k"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  2022
by (induct k arbitrary: a b l) simp_all
18336
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  2023
19770
be5c23ebe1eb HOL/Tools/function_package: Added support for mutual recursive definitions.
krauss
parents: 19623
diff changeset
  2024
lemma foldr_cong [fundef_cong, recdef_cong]:
18336
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  2025
  "[| a = b; l = k; !!a x. x : set l ==> f x a = g x a |] 
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  2026
  ==> foldr f l a = foldr g k b"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  2027
by (induct k arbitrary: a b l) simp_all
18336
1a2e30b37ed3 Added recdef congruence rules for bounded quantifiers and commonly used
krauss
parents: 18049
diff changeset
  2028
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2029
lemma (in semigroup_add) foldl_assoc:
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2030
shows "foldl op+ (x+y) zs = x + (foldl op+ y zs)"
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2031
by (induct zs arbitrary: y) (simp_all add:add_assoc)
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2032
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2033
lemma (in monoid_add) foldl_absorb0:
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2034
shows "x + (foldl op+ 0 zs) = foldl op+ x zs"
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2035
by (induct zs) (simp_all add:foldl_assoc)
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2036
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2037
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2038
text{* The ``First Duality Theorem'' in Bird \& Wadler: *}
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2039
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2040
lemma foldl_foldr1_lemma:
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2041
 "foldl op + a xs = a + foldr op + xs (0\<Colon>'a::monoid_add)"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2042
by (induct xs arbitrary: a) (auto simp:add_assoc)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2043
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2044
corollary foldl_foldr1:
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2045
 "foldl op + 0 xs = foldr op + xs (0\<Colon>'a::monoid_add)"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2046
by (simp add:foldl_foldr1_lemma)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2047
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2048
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2049
text{* The ``Third Duality Theorem'' in Bird \& Wadler: *}
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2050
14402
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2051
lemma foldr_foldl: "foldr f xs a = foldl (%x y. f y x) a (rev xs)"
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2052
by (induct xs) auto
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2053
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2054
lemma foldl_foldr: "foldl f a xs = foldr (%x y. f y x) (rev xs) a"
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2055
by (simp add: foldr_foldl [of "%x y. f y x" "rev xs"])
4201e1916482 moved lemmas from MicroJava/Comp/AuxLemmas.thy to List.thy
nipkow
parents: 14395
diff changeset
  2056
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2057
lemma (in ab_semigroup_add) foldr_conv_foldl: "foldr op + xs a = foldl op + a xs"
24471
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2058
  by (induct xs, auto simp add: foldl_assoc add_commute)
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2059
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2060
text {*
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2061
Note: @{text "n \<le> foldl (op +) n ns"} looks simpler, but is more
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2062
difficult to use because it requires an additional transitivity step.
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2063
*}
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2064
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2065
lemma start_le_sum: "(m::nat) <= n ==> m <= foldl (op +) n ns"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2066
by (induct ns arbitrary: n) auto
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2067
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2068
lemma elem_le_sum: "(n::nat) : set ns ==> n <= foldl (op +) 0 ns"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2069
by (force intro: start_le_sum simp add: in_set_conv_decomp)
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2070
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2071
lemma sum_eq_0_conv [iff]:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2072
  "(foldl (op +) (m::nat) ns = 0) = (m = 0 \<and> (\<forall>n \<in> set ns. n = 0))"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2073
by (induct ns arbitrary: m) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2074
24471
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2075
lemma foldr_invariant: 
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2076
  "\<lbrakk>Q x ; \<forall> x\<in> set xs. P x; \<forall> x y. P x \<and> Q y \<longrightarrow> Q (f x y) \<rbrakk> \<Longrightarrow> Q (foldr f xs x)"
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2077
  by (induct xs, simp_all)
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2078
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2079
lemma foldl_invariant: 
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2080
  "\<lbrakk>Q x ; \<forall> x\<in> set xs. P x; \<forall> x y. P x \<and> Q y \<longrightarrow> Q (f y x) \<rbrakk> \<Longrightarrow> Q (foldl f x xs)"
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2081
  by (induct xs arbitrary: x, simp_all)
d7cf53c1085f removed unused theorems ; added lifting properties for foldr and foldl
chaieb
parents: 24461
diff changeset
  2082
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2083
text{* @{const foldl} and @{text concat} *}
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2084
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2085
lemma concat_conv_foldl: "concat xss = foldl op@ [] xss"
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2086
by (induct xss) (simp_all add:monoid_append.foldl_absorb0)
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2087
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2088
lemma foldl_conv_concat:
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2089
  "foldl (op @) xs xxs = xs @ (concat xxs)"
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2090
by(simp add:concat_conv_foldl monoid_append.foldl_absorb0)
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2091
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2092
subsubsection {* List summation: @{const listsum} and @{text"\<Sum>"}*}
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2093
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2094
lemma listsum_append [simp]: "listsum (xs @ ys) = listsum xs + listsum ys"
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2095
by (induct xs) (simp_all add:add_assoc)
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2096
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2097
lemma listsum_rev [simp]:
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2098
  fixes xs :: "'a\<Colon>comm_monoid_add list"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2099
  shows "listsum (rev xs) = listsum xs"
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2100
by (induct xs) (simp_all add:add_ac)
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2101
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2102
lemma listsum_foldr: "listsum xs = foldr (op +) xs 0"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2103
by (induct xs) auto
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2104
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2105
lemma length_concat: "length (concat xss) = listsum (map length xss)"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2106
by (induct xss) simp_all
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2107
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2108
text{* For efficient code generation ---
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2109
       @{const listsum} is not tail recursive but @{const foldl} is. *}
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2110
lemma listsum[code unfold]: "listsum xs = foldl (op +) 0 xs"
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2111
by(simp add:listsum_foldr foldl_foldr1)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2112
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  2113
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2114
text{* Some syntactic sugar for summing a function over a list: *}
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2115
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2116
syntax
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2117
  "_listsum" :: "pttrn => 'a list => 'b => 'b"    ("(3SUM _<-_. _)" [0, 51, 10] 10)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2118
syntax (xsymbols)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2119
  "_listsum" :: "pttrn => 'a list => 'b => 'b"    ("(3\<Sum>_\<leftarrow>_. _)" [0, 51, 10] 10)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2120
syntax (HTML output)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2121
  "_listsum" :: "pttrn => 'a list => 'b => 'b"    ("(3\<Sum>_\<leftarrow>_. _)" [0, 51, 10] 10)
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2122
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2123
translations -- {* Beware of argument permutation! *}
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2124
  "SUM x<-xs. b" == "CONST listsum (map (%x. b) xs)"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2125
  "\<Sum>x\<leftarrow>xs. b" == "CONST listsum (map (%x. b) xs)"
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2126
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2127
lemma listsum_triv: "(\<Sum>x\<leftarrow>xs. r) = of_nat (length xs) * r"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2128
  by (induct xs) (simp_all add: left_distrib)
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2129
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2130
lemma listsum_0 [simp]: "(\<Sum>x\<leftarrow>xs. 0) = 0"
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2131
  by (induct xs) (simp_all add: left_distrib)
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2132
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2133
text{* For non-Abelian groups @{text xs} needs to be reversed on one side: *}
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2134
lemma uminus_listsum_map:
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2135
  fixes f :: "'a \<Rightarrow> 'b\<Colon>ab_group_add"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2136
  shows "- listsum (map f xs) = (listsum (map (uminus o f) xs))"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  2137
by (induct xs) simp_all
23096
423ad2fe9f76 *** empty log message ***
nipkow
parents: 23060
diff changeset
  2138
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2139
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2140
subsubsection {* @{text upt} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2141
17090
603f23d71ada small mods to code lemmas
nipkow
parents: 17086
diff changeset
  2142
lemma upt_rec[code]: "[i..<j] = (if i<j then i#[Suc i..<j] else [])"
603f23d71ada small mods to code lemmas
nipkow
parents: 17086
diff changeset
  2143
-- {* simp does not terminate! *}
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2144
by (induct j) auto
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2145
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
  2146
lemma upt_conv_Nil [simp]: "j <= i ==> [i..<j] = []"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2147
by (subst upt_rec) simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2148
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
  2149
lemma upt_eq_Nil_conv[simp]: "([i..<j] = []) = (j = 0 \<or> j <= i)"
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2150
by(induct j)simp_all
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2151
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2152
lemma upt_eq_Cons_conv:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2153
 "([i..<j] = x#xs) = (i < j & i = x & [i+1..<j] = xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2154
apply(induct j arbitrary: x xs)
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2155
 apply simp
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2156
apply(clarsimp simp add: append_eq_Cons_conv)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2157
apply arith
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2158
done
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2159
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
  2160
lemma upt_Suc_append: "i <= j ==> [i..<(Suc j)] = [i..<j]@[j]"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2161
-- {* Only needed if @{text upt_Suc} is deleted from the simpset. *}
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2162
by simp
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2163
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
  2164
lemma upt_conv_Cons: "i < j ==> [i..<j] = i # [Suc i..<j]"
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  2165
  by (simp add: upt_rec)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2166
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
  2167
lemma upt_add_eq_append: "i<=j ==> [i..<j+k] = [i..<j]@[j..<j+k]"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2168
-- {* LOOPS as a simprule, since @{text "j <= j"}. *}
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2169
by (induct k) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2170
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
  2171
lemma length_upt [simp]: "length [i..<j] = j - i"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2172
by (induct j) (auto simp add: Suc_diff_le)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2173
15425
6356d2523f73 [ .. (] -> [ ..< ]
nipkow
parents: 15392
diff changeset
  2174
lemma nth_upt [simp]: "i + k < j ==> [i..<j] ! k = i + k"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2175
apply (induct j)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2176
apply (auto simp add: less_Suc_eq nth_append split: nat_diff_split)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2177
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2178
17906
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2179
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2180
lemma hd_upt[simp]: "i < j \<Longrightarrow> hd[i..<j] = i"
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2181
by(simp add:upt_conv_Cons)
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2182
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2183
lemma last_upt[simp]: "i < j \<Longrightarrow> last[i..<j] = j - 1"
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2184
apply(cases j)
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2185
 apply simp
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2186
by(simp add:upt_Suc_append)
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2187
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2188
lemma take_upt [simp]: "i+m <= n ==> take m [i..<n] = [i..<i+m]"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2189
apply (induct m arbitrary: i, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2190
apply (subst upt_rec)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2191
apply (rule sym)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2192
apply (subst upt_rec)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2193
apply (simp del: upt.simps)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2194
done
3507
157be29ad5ba Improved length = size translation.
nipkow
parents: 3465
diff changeset
  2195
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2196
lemma drop_upt[simp]: "drop m [i..<j] = [i+m..<j]"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2197
apply(induct j)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2198
apply auto
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2199
done
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2200
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2201
lemma map_Suc_upt: "map Suc [m..<n] = [Suc m..<Suc n]"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2202
by (induct n) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2203
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2204
lemma nth_map_upt: "i < n-m ==> (map f [m..<n]) ! i = f(m+i)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2205
apply (induct n m  arbitrary: i rule: diff_induct)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2206
prefer 3 apply (subst map_Suc_upt[symmetric])
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2207
apply (auto simp add: less_diff_conv nth_upt)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2208
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2209
13883
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  2210
lemma nth_take_lemma:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2211
  "k <= length xs ==> k <= length ys ==>
13883
0451e0fb3f22 Re-structured some proofs in order to get rid of rule_format attribute.
berghofe
parents: 13863
diff changeset
  2212
     (!!i. i < k --> xs!i = ys!i) ==> take k xs = take k ys"
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2213
apply (atomize, induct k arbitrary: xs ys)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2214
apply (simp_all add: less_Suc_eq_0_disj all_conj_distrib, clarify)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2215
txt {* Both lists must be non-empty *}
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2216
apply (case_tac xs, simp)
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2217
apply (case_tac ys, clarify)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2218
 apply (simp (no_asm_use))
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2219
apply clarify
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2220
txt {* prenexing's needed, not miniscoping *}
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2221
apply (simp (no_asm_use) add: all_simps [symmetric] del: all_simps)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2222
apply blast
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2223
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2224
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2225
lemma nth_equalityI:
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2226
 "[| length xs = length ys; ALL i < length xs. xs!i = ys!i |] ==> xs = ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2227
apply (frule nth_take_lemma [OF le_refl eq_imp_le])
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2228
apply (simp_all add: take_all)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2229
done
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2230
24796
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2231
lemma map_nth:
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2232
  "map (\<lambda>i. xs ! i) [0..<length xs] = xs"
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2233
  by (rule nth_equalityI, auto)
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2234
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  2235
(* needs nth_equalityI *)
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  2236
lemma list_all2_antisym:
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  2237
  "\<lbrakk> (\<And>x y. \<lbrakk>P x y; Q y x\<rbrakk> \<Longrightarrow> x = y); list_all2 P xs ys; list_all2 Q ys xs \<rbrakk> 
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  2238
  \<Longrightarrow> xs = ys"
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  2239
  apply (simp add: list_all2_conv_all_nth) 
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2240
  apply (rule nth_equalityI, blast, simp)
13863
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  2241
  done
ec901a432ea1 more about list_all2
kleing
parents: 13737
diff changeset
  2242
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2243
lemma take_equalityI: "(\<forall>i. take i xs = take i ys) ==> xs = ys"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2244
-- {* The famous take-lemma. *}
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2245
apply (drule_tac x = "max (length xs) (length ys)" in spec)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2246
apply (simp add: le_max_iff_disj take_all)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2247
done
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2248
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2249
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2250
lemma take_Cons':
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2251
     "take n (x # xs) = (if n = 0 then [] else x # take (n - 1) xs)"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2252
by (cases n) simp_all
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2253
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2254
lemma drop_Cons':
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2255
     "drop n (x # xs) = (if n = 0 then x # xs else drop (n - 1) xs)"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2256
by (cases n) simp_all
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2257
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2258
lemma nth_Cons': "(x # xs)!n = (if n = 0 then x else xs!(n - 1))"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2259
by (cases n) simp_all
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2260
18622
4524643feecc theorems need names
paulson
parents: 18490
diff changeset
  2261
lemmas take_Cons_number_of = take_Cons'[of "number_of v",standard]
4524643feecc theorems need names
paulson
parents: 18490
diff changeset
  2262
lemmas drop_Cons_number_of = drop_Cons'[of "number_of v",standard]
4524643feecc theorems need names
paulson
parents: 18490
diff changeset
  2263
lemmas nth_Cons_number_of = nth_Cons'[of _ _ "number_of v",standard]
4524643feecc theorems need names
paulson
parents: 18490
diff changeset
  2264
4524643feecc theorems need names
paulson
parents: 18490
diff changeset
  2265
declare take_Cons_number_of [simp] 
4524643feecc theorems need names
paulson
parents: 18490
diff changeset
  2266
        drop_Cons_number_of [simp] 
4524643feecc theorems need names
paulson
parents: 18490
diff changeset
  2267
        nth_Cons_number_of [simp] 
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2268
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2269
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  2270
subsubsection {* @{text "distinct"} and @{text remdups} *}
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2271
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2272
lemma distinct_append [simp]:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2273
"distinct (xs @ ys) = (distinct xs \<and> distinct ys \<and> set xs \<inter> set ys = {})"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2274
by (induct xs) auto
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2275
15305
0bd9eedaa301 added lemmas
nipkow
parents: 15304
diff changeset
  2276
lemma distinct_rev[simp]: "distinct(rev xs) = distinct xs"
0bd9eedaa301 added lemmas
nipkow
parents: 15304
diff changeset
  2277
by(induct xs) auto
0bd9eedaa301 added lemmas
nipkow
parents: 15304
diff changeset
  2278
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2279
lemma set_remdups [simp]: "set (remdups xs) = set xs"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2280
by (induct xs) (auto simp add: insert_absorb)
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2281
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2282
lemma distinct_remdups [iff]: "distinct (remdups xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2283
by (induct xs) auto
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2284
25287
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2285
lemma distinct_remdups_id: "distinct xs ==> remdups xs = xs"
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2286
by (induct xs, auto)
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2287
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  2288
lemma remdups_id_iff_distinct [simp]: "remdups xs = xs \<longleftrightarrow> distinct xs"
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  2289
by (metis distinct_remdups distinct_remdups_id)
25287
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2290
24566
2bfa0215904c added lemma
nipkow
parents: 24526
diff changeset
  2291
lemma finite_distinct_list: "finite A \<Longrightarrow> EX xs. set xs = A & distinct xs"
24632
779fc4fcbf8b metis now available in PreList
paulson
parents: 24617
diff changeset
  2292
by (metis distinct_remdups finite_list set_remdups)
24566
2bfa0215904c added lemma
nipkow
parents: 24526
diff changeset
  2293
15072
4861bf6af0b4 new material courtesy of Norbert Voelker
paulson
parents: 15064
diff changeset
  2294
lemma remdups_eq_nil_iff [simp]: "(remdups x = []) = (x = [])"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  2295
by (induct x, auto) 
15072
4861bf6af0b4 new material courtesy of Norbert Voelker
paulson
parents: 15064
diff changeset
  2296
4861bf6af0b4 new material courtesy of Norbert Voelker
paulson
parents: 15064
diff changeset
  2297
lemma remdups_eq_nil_right_iff [simp]: "([] = remdups x) = (x = [])"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  2298
by (induct x, auto)
15072
4861bf6af0b4 new material courtesy of Norbert Voelker
paulson
parents: 15064
diff changeset
  2299
15245
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2300
lemma length_remdups_leq[iff]: "length(remdups xs) <= length xs"
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2301
by (induct xs) auto
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2302
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2303
lemma length_remdups_eq[iff]:
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2304
  "(length (remdups xs) = length xs) = (remdups xs = xs)"
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2305
apply(induct xs)
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2306
 apply auto
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2307
apply(subgoal_tac "length (remdups xs) <= length xs")
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2308
 apply arith
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2309
apply(rule length_remdups_leq)
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2310
done
5a21d9a8f14b Added a few lemmas
nipkow
parents: 15236
diff changeset
  2311
18490
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2312
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2313
lemma distinct_map:
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2314
  "distinct(map f xs) = (distinct xs & inj_on f (set xs))"
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2315
by (induct xs) auto
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2316
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2317
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2318
lemma distinct_filter [simp]: "distinct xs ==> distinct (filter P xs)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2319
by (induct xs) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2320
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2321
lemma distinct_upt[simp]: "distinct[i..<j]"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2322
by (induct j) auto
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2323
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2324
lemma distinct_take[simp]: "distinct xs \<Longrightarrow> distinct (take i xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2325
apply(induct xs arbitrary: i)
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2326
 apply simp
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2327
apply (case_tac i)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2328
 apply simp_all
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2329
apply(blast dest:in_set_takeD)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2330
done
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2331
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2332
lemma distinct_drop[simp]: "distinct xs \<Longrightarrow> distinct (drop i xs)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2333
apply(induct xs arbitrary: i)
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2334
 apply simp
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2335
apply (case_tac i)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2336
 apply simp_all
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2337
done
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2338
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2339
lemma distinct_list_update:
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2340
assumes d: "distinct xs" and a: "a \<notin> set xs - {xs!i}"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2341
shows "distinct (xs[i:=a])"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2342
proof (cases "i < length xs")
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2343
  case True
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2344
  with a have "a \<notin> set (take i xs @ xs ! i # drop (Suc i) xs) - {xs!i}"
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2345
    apply (drule_tac id_take_nth_drop) by simp
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2346
  with d True show ?thesis
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2347
    apply (simp add: upd_conv_take_nth_drop)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2348
    apply (drule subst [OF id_take_nth_drop]) apply assumption
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2349
    apply simp apply (cases "a = xs!i") apply simp by blast
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2350
next
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2351
  case False with d show ?thesis by auto
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2352
qed
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2353
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2354
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2355
text {* It is best to avoid this indexed version of distinct, but
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2356
sometimes it is useful. *}
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2357
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2358
lemma distinct_conv_nth:
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2359
"distinct xs = (\<forall>i < size xs. \<forall>j < size xs. i \<noteq> j --> xs!i \<noteq> xs!j)"
15251
bb6f072c8d10 converted some induct_tac to induct
paulson
parents: 15246
diff changeset
  2360
apply (induct xs, simp, simp)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2361
apply (rule iffI, clarsimp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2362
 apply (case_tac i)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2363
apply (case_tac j, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2364
apply (simp add: set_conv_nth)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2365
 apply (case_tac j)
24648
1e8053a6d725 metis too slow
paulson
parents: 24645
diff changeset
  2366
apply (clarsimp simp add: set_conv_nth, simp) 
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2367
apply (rule conjI)
24648
1e8053a6d725 metis too slow
paulson
parents: 24645
diff changeset
  2368
(*TOO SLOW
24632
779fc4fcbf8b metis now available in PreList
paulson
parents: 24617
diff changeset
  2369
apply (metis Zero_neq_Suc gr0_conv_Suc in_set_conv_nth lessI less_trans_Suc nth_Cons' nth_Cons_Suc)
24648
1e8053a6d725 metis too slow
paulson
parents: 24645
diff changeset
  2370
*)
1e8053a6d725 metis too slow
paulson
parents: 24645
diff changeset
  2371
 apply (clarsimp simp add: set_conv_nth)
1e8053a6d725 metis too slow
paulson
parents: 24645
diff changeset
  2372
 apply (erule_tac x = 0 in allE, simp)
1e8053a6d725 metis too slow
paulson
parents: 24645
diff changeset
  2373
 apply (erule_tac x = "Suc i" in allE, simp, clarsimp)
25130
d91391a8705b avoid very slow metis invocation;
wenzelm
parents: 25112
diff changeset
  2374
(*TOO SLOW
24632
779fc4fcbf8b metis now available in PreList
paulson
parents: 24617
diff changeset
  2375
apply (metis Suc_Suc_eq lessI less_trans_Suc nth_Cons_Suc)
25130
d91391a8705b avoid very slow metis invocation;
wenzelm
parents: 25112
diff changeset
  2376
*)
d91391a8705b avoid very slow metis invocation;
wenzelm
parents: 25112
diff changeset
  2377
apply (erule_tac x = "Suc i" in allE, simp)
d91391a8705b avoid very slow metis invocation;
wenzelm
parents: 25112
diff changeset
  2378
apply (erule_tac x = "Suc j" in allE, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2379
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2380
18490
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2381
lemma nth_eq_iff_index_eq:
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2382
 "\<lbrakk> distinct xs; i < length xs; j < length xs \<rbrakk> \<Longrightarrow> (xs!i = xs!j) = (i = j)"
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2383
by(auto simp: distinct_conv_nth)
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2384
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2385
lemma distinct_card: "distinct xs ==> card (set xs) = size xs"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  2386
by (induct xs) auto
14388
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2387
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2388
lemma card_distinct: "card (set xs) = size xs ==> distinct xs"
14388
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2389
proof (induct xs)
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2390
  case Nil thus ?case by simp
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2391
next
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2392
  case (Cons x xs)
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2393
  show ?case
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2394
  proof (cases "x \<in> set xs")
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2395
    case False with Cons show ?thesis by simp
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2396
  next
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2397
    case True with Cons.prems
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2398
    have "card (set xs) = Suc (length xs)" 
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2399
      by (simp add: card_insert_if split: split_if_asm)
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2400
    moreover have "card (set xs) \<le> length xs" by (rule card_length)
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2401
    ultimately have False by simp
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2402
    thus ?thesis ..
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2403
  qed
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2404
qed
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  2405
25287
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2406
lemma not_distinct_decomp: "~ distinct ws ==> EX xs ys zs y. ws = xs@[y]@ys@[y]@zs"
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2407
apply (induct n == "length ws" arbitrary:ws) apply simp
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2408
apply(case_tac ws) apply simp
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2409
apply (simp split:split_if_asm)
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2410
apply (metis Cons_eq_appendI eq_Nil_appendI split_list)
094dab519ff5 added lemmas
nipkow
parents: 25277
diff changeset
  2411
done
18490
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2412
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2413
lemma length_remdups_concat:
434e34392c40 new lemmas
nipkow
parents: 18451
diff changeset
  2414
 "length(remdups(concat xss)) = card(\<Union>xs \<in> set xss. set xs)"
24308
700e745994c1 removed set_concat_map and improved set_concat
nipkow
parents: 24286
diff changeset
  2415
by(simp add: set_concat distinct_card[symmetric])
17906
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2416
719364f5179b added 2 lemmas
nipkow
parents: 17877
diff changeset
  2417
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  2418
subsubsection {* @{text remove1} *}
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2419
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2420
lemma remove1_append:
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2421
  "remove1 x (xs @ ys) =
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2422
  (if x \<in> set xs then remove1 x xs @ ys else xs @ remove1 x ys)"
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2423
by (induct xs) auto
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2424
23479
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2425
lemma in_set_remove1[simp]:
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2426
  "a \<noteq> b \<Longrightarrow> a : set(remove1 b xs) = (a : set xs)"
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2427
apply (induct xs)
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2428
apply auto
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2429
done
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2430
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2431
lemma set_remove1_subset: "set(remove1 x xs) <= set xs"
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2432
apply(induct xs)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2433
 apply simp
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2434
apply simp
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2435
apply blast
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2436
done
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2437
17724
e969fc0a4925 simprules need names
paulson
parents: 17629
diff changeset
  2438
lemma set_remove1_eq [simp]: "distinct xs ==> set(remove1 x xs) = set xs - {x}"
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2439
apply(induct xs)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2440
 apply simp
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2441
apply simp
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2442
apply blast
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2443
done
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2444
23479
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2445
lemma length_remove1:
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2446
  "length(remove1 x xs) = (if x : set xs then length xs - 1 else length xs)"
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2447
apply (induct xs)
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2448
 apply (auto dest!:length_pos_if_in_set)
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2449
done
10adbdcdc65b new lemmas
nipkow
parents: 23388
diff changeset
  2450
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2451
lemma remove1_filter_not[simp]:
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2452
  "\<not> P x \<Longrightarrow> remove1 x (filter P xs) = filter P xs"
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2453
by(induct xs) auto
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2454
15110
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2455
lemma notin_set_remove1[simp]: "x ~: set xs ==> x ~: set(remove1 y xs)"
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2456
apply(insert set_remove1_subset)
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2457
apply fast
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2458
done
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2459
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2460
lemma distinct_remove1[simp]: "distinct xs ==> distinct(remove1 x xs)"
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2461
by (induct xs) simp_all
78b5636eabc7 Added a number of new thms and the new function remove1
nipkow
parents: 15072
diff changeset
  2462
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2463
27693
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2464
subsubsection {* @{text removeAll} *}
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2465
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2466
lemma removeAll_append[simp]:
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2467
  "removeAll x (xs @ ys) = removeAll x xs @ removeAll x ys"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2468
by (induct xs) auto
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2469
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2470
lemma set_removeAll[simp]: "set(removeAll x xs) = set xs - {x}"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2471
by (induct xs) auto
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2472
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2473
lemma removeAll_id[simp]: "x \<notin> set xs \<Longrightarrow> removeAll x xs = xs"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2474
by (induct xs) auto
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2475
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2476
(* Needs count:: 'a \<Rightarrow> a' list \<Rightarrow> nat
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2477
lemma length_removeAll:
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2478
  "length(removeAll x xs) = length xs - count x xs"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2479
*)
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2480
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2481
lemma removeAll_filter_not[simp]:
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2482
  "\<not> P x \<Longrightarrow> removeAll x (filter P xs) = filter P xs"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2483
by(induct xs) auto
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2484
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2485
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2486
lemma distinct_remove1_removeAll:
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2487
  "distinct xs ==> remove1 x xs = removeAll x xs"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2488
by (induct xs) simp_all
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2489
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2490
lemma map_removeAll_inj_on: "inj_on f (insert x (set xs)) \<Longrightarrow>
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2491
  map f (removeAll x xs) = removeAll (f x) (map f xs)"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2492
by (induct xs) (simp_all add:inj_on_def)
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2493
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2494
lemma map_removeAll_inj: "inj f \<Longrightarrow>
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2495
  map f (removeAll x xs) = removeAll (f x) (map f xs)"
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2496
by(metis map_removeAll_inj_on subset_inj_on subset_UNIV)
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2497
73253a4e3ee2 added removeAll
nipkow
parents: 27381
diff changeset
  2498
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  2499
subsubsection {* @{text replicate} *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2500
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2501
lemma length_replicate [simp]: "length (replicate n x) = n"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2502
by (induct n) auto
13124
6e1decd8a7a9 new thm distinct_conv_nth
nipkow
parents: 13122
diff changeset
  2503
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2504
lemma map_replicate [simp]: "map f (replicate n x) = replicate n (f x)"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2505
by (induct n) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2506
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2507
lemma replicate_app_Cons_same:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2508
"(replicate n x) @ (x # xs) = x # replicate n x @ xs"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2509
by (induct n) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2510
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2511
lemma rev_replicate [simp]: "rev (replicate n x) = replicate n x"
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2512
apply (induct n, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2513
apply (simp add: replicate_app_Cons_same)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2514
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2515
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2516
lemma replicate_add: "replicate (n + m) x = replicate n x @ replicate m x"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2517
by (induct n) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2518
16397
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2519
text{* Courtesy of Matthias Daum: *}
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2520
lemma append_replicate_commute:
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2521
  "replicate n x @ replicate k x = replicate k x @ replicate n x"
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2522
apply (simp add: replicate_add [THEN sym])
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2523
apply (simp add: add_commute)
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2524
done
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2525
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2526
lemma hd_replicate [simp]: "n \<noteq> 0 ==> hd (replicate n x) = x"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2527
by (induct n) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2528
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2529
lemma tl_replicate [simp]: "n \<noteq> 0 ==> tl (replicate n x) = replicate (n - 1) x"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2530
by (induct n) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2531
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2532
lemma last_replicate [simp]: "n \<noteq> 0 ==> last (replicate n x) = x"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2533
by (atomize (full), induct n) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2534
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2535
lemma nth_replicate[simp]: "i < n ==> (replicate n x)!i = x"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2536
apply (induct n arbitrary: i, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2537
apply (simp add: nth_Cons split: nat.split)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2538
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2539
16397
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2540
text{* Courtesy of Matthias Daum (2 lemmas): *}
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2541
lemma take_replicate[simp]: "take i (replicate k x) = replicate (min i k) x"
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2542
apply (case_tac "k \<le> i")
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2543
 apply  (simp add: min_def)
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2544
apply (drule not_leE)
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2545
apply (simp add: min_def)
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2546
apply (subgoal_tac "replicate k x = replicate i x @ replicate (k - i) x")
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2547
 apply  simp
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2548
apply (simp add: replicate_add [symmetric])
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2549
done
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2550
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2551
lemma drop_replicate[simp]: "drop i (replicate k x) = replicate (k-i) x"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2552
apply (induct k arbitrary: i)
16397
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2553
 apply simp
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2554
apply clarsimp
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2555
apply (case_tac i)
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2556
 apply simp
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2557
apply clarsimp
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2558
done
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2559
c047008f88d4 added lemmas
nipkow
parents: 15870
diff changeset
  2560
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2561
lemma set_replicate_Suc: "set (replicate (Suc n) x) = {x}"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2562
by (induct n) auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2563
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2564
lemma set_replicate [simp]: "n \<noteq> 0 ==> set (replicate n x) = {x}"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2565
by (fast dest!: not0_implies_Suc intro!: set_replicate_Suc)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2566
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2567
lemma set_replicate_conv_if: "set (replicate n x) = (if n = 0 then {} else {x})"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2568
by auto
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2569
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2570
lemma in_set_replicateD: "x : set (replicate n y) ==> x = y"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2571
by (simp add: set_replicate_conv_if split: split_if_asm)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2572
24796
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2573
lemma replicate_append_same:
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2574
  "replicate i x @ [x] = x # replicate i x"
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2575
  by (induct i) simp_all
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2576
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2577
lemma map_replicate_trivial:
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2578
  "map (\<lambda>i. x) [0..<i] = replicate i x"
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2579
  by (induct i) (simp_all add: replicate_append_same)
529e458f84d2 added some lemmas
haftmann
parents: 24748
diff changeset
  2580
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2581
28642
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2582
lemma replicate_empty[simp]: "(replicate n x = []) \<longleftrightarrow> n=0"
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2583
by (induct n) auto
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2584
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2585
lemma empty_replicate[simp]: "([] = replicate n x) \<longleftrightarrow> n=0"
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2586
by (induct n) auto
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2587
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2588
lemma replicate_eq_replicate[simp]:
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2589
  "(replicate m x = replicate n y) \<longleftrightarrow> (m=n & (m\<noteq>0 \<longrightarrow> x=y))"
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2590
apply(induct m arbitrary: n)
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2591
 apply simp
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2592
apply(induct_tac n)
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2593
apply auto
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2594
done
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2595
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2596
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  2597
subsubsection{*@{text rotate1} and @{text rotate}*}
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2598
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2599
lemma rotate_simps[simp]: "rotate1 [] = [] \<and> rotate1 (x#xs) = xs @ [x]"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2600
by(simp add:rotate1_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2601
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2602
lemma rotate0[simp]: "rotate 0 = id"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2603
by(simp add:rotate_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2604
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2605
lemma rotate_Suc[simp]: "rotate (Suc n) xs = rotate1(rotate n xs)"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2606
by(simp add:rotate_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2607
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2608
lemma rotate_add:
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2609
  "rotate (m+n) = rotate m o rotate n"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2610
by(simp add:rotate_def funpow_add)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2611
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2612
lemma rotate_rotate: "rotate m (rotate n xs) = rotate (m+n) xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2613
by(simp add:rotate_add)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2614
18049
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2615
lemma rotate1_rotate_swap: "rotate1 (rotate n xs) = rotate n (rotate1 xs)"
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2616
by(simp add:rotate_def funpow_swap1)
156bba334c12 A few new lemmas
nipkow
parents: 17956
diff changeset
  2617
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2618
lemma rotate1_length01[simp]: "length xs <= 1 \<Longrightarrow> rotate1 xs = xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2619
by(cases xs) simp_all
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2620
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2621
lemma rotate_length01[simp]: "length xs <= 1 \<Longrightarrow> rotate n xs = xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2622
apply(induct n)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2623
 apply simp
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2624
apply (simp add:rotate_def)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2625
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2626
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2627
lemma rotate1_hd_tl: "xs \<noteq> [] \<Longrightarrow> rotate1 xs = tl xs @ [hd xs]"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2628
by(simp add:rotate1_def split:list.split)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2629
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2630
lemma rotate_drop_take:
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2631
  "rotate n xs = drop (n mod length xs) xs @ take (n mod length xs) xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2632
apply(induct n)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2633
 apply simp
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2634
apply(simp add:rotate_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2635
apply(cases "xs = []")
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2636
 apply (simp)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2637
apply(case_tac "n mod length xs = 0")
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2638
 apply(simp add:mod_Suc)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2639
 apply(simp add: rotate1_hd_tl drop_Suc take_Suc)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2640
apply(simp add:mod_Suc rotate1_hd_tl drop_Suc[symmetric] drop_tl[symmetric]
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2641
                take_hd_drop linorder_not_le)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2642
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2643
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2644
lemma rotate_conv_mod: "rotate n xs = rotate (n mod length xs) xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2645
by(simp add:rotate_drop_take)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2646
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2647
lemma rotate_id[simp]: "n mod length xs = 0 \<Longrightarrow> rotate n xs = xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2648
by(simp add:rotate_drop_take)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2649
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2650
lemma length_rotate1[simp]: "length(rotate1 xs) = length xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2651
by(simp add:rotate1_def split:list.split)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2652
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2653
lemma length_rotate[simp]: "length(rotate n xs) = length xs"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2654
by (induct n arbitrary: xs) (simp_all add:rotate_def)
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2655
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2656
lemma distinct1_rotate[simp]: "distinct(rotate1 xs) = distinct xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2657
by(simp add:rotate1_def split:list.split) blast
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2658
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2659
lemma distinct_rotate[simp]: "distinct(rotate n xs) = distinct xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2660
by (induct n) (simp_all add:rotate_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2661
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2662
lemma rotate_map: "rotate n (map f xs) = map f (rotate n xs)"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2663
by(simp add:rotate_drop_take take_map drop_map)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2664
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2665
lemma set_rotate1[simp]: "set(rotate1 xs) = set xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2666
by(simp add:rotate1_def split:list.split)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2667
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2668
lemma set_rotate[simp]: "set(rotate n xs) = set xs"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2669
by (induct n) (simp_all add:rotate_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2670
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2671
lemma rotate1_is_Nil_conv[simp]: "(rotate1 xs = []) = (xs = [])"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2672
by(simp add:rotate1_def split:list.split)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2673
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2674
lemma rotate_is_Nil_conv[simp]: "(rotate n xs = []) = (xs = [])"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  2675
by (induct n) (simp_all add:rotate_def)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2676
15439
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2677
lemma rotate_rev:
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2678
  "rotate n (rev xs) = rev(rotate (length xs - (n mod length xs)) xs)"
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2679
apply(simp add:rotate_drop_take rev_drop rev_take)
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2680
apply(cases "length xs = 0")
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2681
 apply simp
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2682
apply(cases "n mod length xs = 0")
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2683
 apply simp
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2684
apply(simp add:rotate_drop_take rev_drop rev_take)
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2685
done
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15426
diff changeset
  2686
18423
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  2687
lemma hd_rotate_conv_nth: "xs \<noteq> [] \<Longrightarrow> hd(rotate n xs) = xs!(n mod length xs)"
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  2688
apply(simp add:rotate_drop_take hd_append hd_drop_conv_nth hd_conv_nth)
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  2689
apply(subgoal_tac "length xs \<noteq> 0")
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  2690
 prefer 2 apply simp
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  2691
using mod_less_divisor[of "length xs" n] by arith
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  2692
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2693
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  2694
subsubsection {* @{text sublist} --- a generalization of @{text nth} to sets *}
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2695
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2696
lemma sublist_empty [simp]: "sublist xs {} = []"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2697
by (auto simp add: sublist_def)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2698
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2699
lemma sublist_nil [simp]: "sublist [] A = []"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2700
by (auto simp add: sublist_def)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2701
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2702
lemma length_sublist:
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2703
  "length(sublist xs I) = card{i. i < length xs \<and> i : I}"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2704
by(simp add: sublist_def length_filter_conv_card cong:conj_cong)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2705
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2706
lemma sublist_shift_lemma_Suc:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2707
  "map fst (filter (%p. P(Suc(snd p))) (zip xs is)) =
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2708
   map fst (filter (%p. P(snd p)) (zip xs (map Suc is)))"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2709
apply(induct xs arbitrary: "is")
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2710
 apply simp
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2711
apply (case_tac "is")
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2712
 apply simp
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2713
apply simp
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2714
done
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2715
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2716
lemma sublist_shift_lemma:
23279
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
  2717
     "map fst [p<-zip xs [i..<i + length xs] . snd p : A] =
e39dd93161d9 tuned list comprehension, changed filter syntax from : to <-
nipkow
parents: 23246
diff changeset
  2718
      map fst [p<-zip xs [0..<length xs] . snd p + i : A]"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2719
by (induct xs rule: rev_induct) (simp_all add: add_commute)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2720
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2721
lemma sublist_append:
15168
33a08cfc3ae5 new functions for sets of lists
paulson
parents: 15140
diff changeset
  2722
     "sublist (l @ l') A = sublist l A @ sublist l' {j. j + length l : A}"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2723
apply (unfold sublist_def)
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2724
apply (induct l' rule: rev_induct, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2725
apply (simp add: upt_add_eq_append[of 0] zip_append sublist_shift_lemma)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2726
apply (simp add: add_commute)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2727
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2728
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2729
lemma sublist_Cons:
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2730
"sublist (x # l) A = (if 0:A then [x] else []) @ sublist l {j. Suc j : A}"
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2731
apply (induct l rule: rev_induct)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2732
 apply (simp add: sublist_def)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2733
apply (simp del: append_Cons add: append_Cons[symmetric] sublist_append)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2734
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2735
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2736
lemma set_sublist: "set(sublist xs I) = {xs!i|i. i<size xs \<and> i \<in> I}"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2737
apply(induct xs arbitrary: I)
25162
ad4d5365d9d8 went back to >0
nipkow
parents: 25157
diff changeset
  2738
apply(auto simp: sublist_Cons nth_Cons split:nat.split dest!: gr0_implies_Suc)
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2739
done
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2740
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2741
lemma set_sublist_subset: "set(sublist xs I) \<subseteq> set xs"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2742
by(auto simp add:set_sublist)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2743
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2744
lemma notin_set_sublistI[simp]: "x \<notin> set xs \<Longrightarrow> x \<notin> set(sublist xs I)"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2745
by(auto simp add:set_sublist)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2746
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2747
lemma in_set_sublistD: "x \<in> set(sublist xs I) \<Longrightarrow> x \<in> set xs"
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2748
by(auto simp add:set_sublist)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2749
13142
1ebd8ed5a1a0 tuned document;
wenzelm
parents: 13124
diff changeset
  2750
lemma sublist_singleton [simp]: "sublist [x] A = (if 0 : A then [x] else [])"
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2751
by (simp add: sublist_Cons)
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2752
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2753
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2754
lemma distinct_sublistI[simp]: "distinct xs \<Longrightarrow> distinct(sublist xs I)"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2755
apply(induct xs arbitrary: I)
15281
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2756
 apply simp
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2757
apply(auto simp add:sublist_Cons)
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2758
done
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2759
bd4611956c7b More lemmas
nipkow
parents: 15251
diff changeset
  2760
15045
d59f7e2e18d3 Moved to new m<..<n syntax for set intervals.
nipkow
parents: 14981
diff changeset
  2761
lemma sublist_upt_eq_take [simp]: "sublist l {..<n} = take n l"
14208
144f45277d5a misc tidying
paulson
parents: 14187
diff changeset
  2762
apply (induct l rule: rev_induct, simp)
13145
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2763
apply (simp split: nat_diff_split add: sublist_append)
59bc43b51aa2 *** empty log message ***
nipkow
parents: 13142
diff changeset
  2764
done
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2765
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2766
lemma filter_in_sublist:
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2767
 "distinct xs \<Longrightarrow> filter (%x. x \<in> set(sublist xs s)) xs = sublist xs s"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2768
proof (induct xs arbitrary: s)
17501
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2769
  case Nil thus ?case by simp
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2770
next
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2771
  case (Cons a xs)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2772
  moreover hence "!x. x: set xs \<longrightarrow> x \<noteq> a" by auto
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2773
  ultimately show ?case by(simp add: sublist_Cons cong:filter_cong)
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2774
qed
acbebb72e85a added a number of lemmas
nipkow
parents: 17090
diff changeset
  2775
13114
f2b00262bdfc converted;
wenzelm
parents: 12887
diff changeset
  2776
19390
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2777
subsubsection {* @{const splice} *}
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2778
19607
07eeb832f28d introduced characters for code generator; some improved code lemmas for some list functions
haftmann
parents: 19585
diff changeset
  2779
lemma splice_Nil2 [simp, code]:
19390
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2780
 "splice xs [] = xs"
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2781
by (cases xs) simp_all
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2782
19607
07eeb832f28d introduced characters for code generator; some improved code lemmas for some list functions
haftmann
parents: 19585
diff changeset
  2783
lemma splice_Cons_Cons [simp, code]:
19390
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2784
 "splice (x#xs) (y#ys) = x # y # splice xs ys"
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2785
by simp
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2786
19607
07eeb832f28d introduced characters for code generator; some improved code lemmas for some list functions
haftmann
parents: 19585
diff changeset
  2787
declare splice.simps(2) [simp del, code del]
19390
6c7383f80ad1 Added function "splice"
nipkow
parents: 19363
diff changeset
  2788
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2789
lemma length_splice[simp]: "length(splice xs ys) = length xs + length ys"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  2790
apply(induct xs arbitrary: ys) apply simp
22793
dc13dfd588b2 new lemma splice_length
nipkow
parents: 22633
diff changeset
  2791
apply(case_tac ys)
dc13dfd588b2 new lemma splice_length
nipkow
parents: 22633
diff changeset
  2792
 apply auto
dc13dfd588b2 new lemma splice_length
nipkow
parents: 22633
diff changeset
  2793
done
dc13dfd588b2 new lemma splice_length
nipkow
parents: 22633
diff changeset
  2794
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2795
28642
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2796
subsubsection {* Infiniteness *}
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2797
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2798
lemma finite_maxlen:
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2799
  "finite (M::'a list set) ==> EX n. ALL s:M. size s < n"
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2800
proof (induct rule: finite.induct)
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2801
  case emptyI show ?case by simp
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2802
next
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2803
  case (insertI M xs)
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2804
  then obtain n where "\<forall>s\<in>M. length s < n" by blast
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2805
  hence "ALL s:insert xs M. size s < max n (size xs) + 1" by auto
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2806
  thus ?case ..
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2807
qed
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2808
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2809
lemma infinite_UNIV_listI: "~ finite(UNIV::'a list set)"
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2810
apply(rule notI)
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2811
apply(drule finite_maxlen)
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2812
apply (metis UNIV_I length_replicate less_not_refl)
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2813
done
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2814
658b598d8af4 added lemmas
nipkow
parents: 28562
diff changeset
  2815
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2816
subsection {*Sorting*}
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2817
24617
bc484b2671fd sorting
nipkow
parents: 24616
diff changeset
  2818
text{* Currently it is not shown that @{const sort} returns a
bc484b2671fd sorting
nipkow
parents: 24616
diff changeset
  2819
permutation of its input because the nicest proof is via multisets,
bc484b2671fd sorting
nipkow
parents: 24616
diff changeset
  2820
which are not yet available. Alternatively one could define a function
bc484b2671fd sorting
nipkow
parents: 24616
diff changeset
  2821
that counts the number of occurrences of an element in a list and use
bc484b2671fd sorting
nipkow
parents: 24616
diff changeset
  2822
that instead of multisets to state the correctness property. *}
bc484b2671fd sorting
nipkow
parents: 24616
diff changeset
  2823
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2824
context linorder
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2825
begin
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2826
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2827
lemma sorted_Cons: "sorted (x#xs) = (sorted xs & (ALL y:set xs. x <= y))"
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2828
apply(induct xs arbitrary: x) apply simp
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2829
by simp (blast intro: order_trans)
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2830
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2831
lemma sorted_append:
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2832
  "sorted (xs@ys) = (sorted xs & sorted ys & (\<forall>x \<in> set xs. \<forall>y \<in> set ys. x\<le>y))"
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2833
by (induct xs) (auto simp add:sorted_Cons)
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2834
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2835
lemma set_insort: "set(insort x xs) = insert x (set xs)"
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2836
by (induct xs) auto
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2837
24617
bc484b2671fd sorting
nipkow
parents: 24616
diff changeset
  2838
lemma set_sort[simp]: "set(sort xs) = set xs"
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2839
by (induct xs) (simp_all add:set_insort)
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2840
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2841
lemma distinct_insort: "distinct (insort x xs) = (x \<notin> set xs \<and> distinct xs)"
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2842
by(induct xs)(auto simp:set_insort)
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2843
24617
bc484b2671fd sorting
nipkow
parents: 24616
diff changeset
  2844
lemma distinct_sort[simp]: "distinct (sort xs) = distinct xs"
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2845
by(induct xs)(simp_all add:distinct_insort set_sort)
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2846
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2847
lemma sorted_insort: "sorted (insort x xs) = sorted xs"
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2848
apply (induct xs)
24650
nipkow
parents: 24648
diff changeset
  2849
 apply(auto simp:sorted_Cons set_insort)
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2850
done
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2851
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2852
theorem sorted_sort[simp]: "sorted (sort xs)"
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2853
by (induct xs) (auto simp:sorted_insort)
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2854
26143
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2855
lemma insort_is_Cons: "\<forall>x\<in>set xs. a \<le> x \<Longrightarrow> insort a xs = a # xs"
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2856
by (cases xs) auto
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2857
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2858
lemma sorted_remove1: "sorted xs \<Longrightarrow> sorted (remove1 a xs)"
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2859
by (induct xs, auto simp add: sorted_Cons)
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2860
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2861
lemma insort_remove1: "\<lbrakk> a \<in> set xs; sorted xs \<rbrakk> \<Longrightarrow> insort a (remove1 a xs) = xs"
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2862
by (induct xs, auto simp add: sorted_Cons insort_is_Cons)
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2863
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2864
lemma sorted_remdups[simp]:
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2865
  "sorted l \<Longrightarrow> sorted (remdups l)"
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2866
by (induct l) (auto simp: sorted_Cons)
314c0bcb7df7 Added useful general lemmas from the work with the HeapMonad
bulwahn
parents: 26073
diff changeset
  2867
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2868
lemma sorted_distinct_set_unique:
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2869
assumes "sorted xs" "distinct xs" "sorted ys" "distinct ys" "set xs = set ys"
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2870
shows "xs = ys"
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2871
proof -
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  2872
  from assms have 1: "length xs = length ys" by (auto dest!: distinct_card)
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2873
  from assms show ?thesis
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2874
  proof(induct rule:list_induct2[OF 1])
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2875
    case 1 show ?case by simp
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2876
  next
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2877
    case 2 thus ?case by (simp add:sorted_Cons)
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2878
       (metis Diff_insert_absorb antisym insertE insert_iff)
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2879
  qed
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2880
qed
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2881
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2882
lemma finite_sorted_distinct_unique:
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2883
shows "finite A \<Longrightarrow> EX! xs. set xs = A & sorted xs & distinct xs"
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2884
apply(drule finite_distinct_list)
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2885
apply clarify
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2886
apply(rule_tac a="sort xs" in ex1I)
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2887
apply (auto simp: sorted_distinct_set_unique)
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2888
done
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2889
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2890
end
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2891
25277
95128fcdd7e8 added lemmas
nipkow
parents: 25221
diff changeset
  2892
lemma sorted_upt[simp]: "sorted[i..<j]"
95128fcdd7e8 added lemmas
nipkow
parents: 25221
diff changeset
  2893
by (induct j) (simp_all add:sorted_append)
95128fcdd7e8 added lemmas
nipkow
parents: 25221
diff changeset
  2894
24616
fac3dd4ade83 sorting
nipkow
parents: 24566
diff changeset
  2895
25069
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2896
subsubsection {* @{text sorted_list_of_set} *}
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2897
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2898
text{* This function maps (finite) linearly ordered sets to sorted
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2899
lists. Warning: in most cases it is not a good idea to convert from
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2900
sets to lists but one should convert in the other direction (via
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2901
@{const set}). *}
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2902
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2903
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2904
context linorder
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2905
begin
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2906
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2907
definition
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2908
 sorted_list_of_set :: "'a set \<Rightarrow> 'a list" where
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28537
diff changeset
  2909
 [code del]: "sorted_list_of_set A == THE xs. set xs = A & sorted xs & distinct xs"
25069
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2910
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2911
lemma sorted_list_of_set[simp]: "finite A \<Longrightarrow>
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2912
  set(sorted_list_of_set A) = A &
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2913
  sorted(sorted_list_of_set A) & distinct(sorted_list_of_set A)"
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2914
apply(simp add:sorted_list_of_set_def)
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2915
apply(rule the1I2)
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2916
 apply(simp_all add: finite_sorted_distinct_unique)
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2917
done
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2918
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2919
lemma sorted_list_of_empty[simp]: "sorted_list_of_set {} = []"
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2920
unfolding sorted_list_of_set_def
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2921
apply(subst the_equality[of _ "[]"])
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2922
apply simp_all
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2923
done
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2924
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2925
end
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2926
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2927
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2928
subsubsection {* @{text upto}: the generic interval-list *}
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2929
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2930
class finite_intvl_succ = linorder +
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2931
fixes successor :: "'a \<Rightarrow> 'a"
25069
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2932
assumes finite_intvl: "finite{a..b}"
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2933
and successor_incr: "a < successor a"
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2934
and ord_discrete: "\<not>(\<exists>x. a < x & x < successor a)"
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2935
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2936
context finite_intvl_succ
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2937
begin
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2938
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2939
definition
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2940
 upto :: "'a \<Rightarrow> 'a \<Rightarrow> 'a list" ("(1[_../_])") where
25069
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2941
"upto i j == sorted_list_of_set {i..j}"
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2942
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2943
lemma upto[simp]: "set[a..b] = {a..b} & sorted[a..b] & distinct[a..b]"
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2944
by(simp add:upto_def finite_intvl)
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2945
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2946
lemma insert_intvl: "i \<le> j \<Longrightarrow> insert i {successor i..j} = {i..j}"
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2947
apply(insert successor_incr[of i])
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2948
apply(auto simp: atLeastAtMost_def atLeast_def atMost_def)
26734
a92057c1ee21 dropped some metis calls
haftmann
parents: 26584
diff changeset
  2949
apply(metis ord_discrete less_le not_le)
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2950
done
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  2951
25069
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2952
lemma sorted_list_of_set_rec: "i \<le> j \<Longrightarrow>
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2953
  sorted_list_of_set {i..j} = i # sorted_list_of_set {successor i..j}"
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2954
apply(simp add:sorted_list_of_set_def upto_def)
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2955
apply (rule the1_equality[OF finite_sorted_distinct_unique])
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2956
 apply (simp add:finite_intvl)
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2957
apply(rule the1I2[OF finite_sorted_distinct_unique])
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2958
 apply (simp add:finite_intvl)
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2959
apply (simp add: sorted_Cons insert_intvl Ball_def)
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2960
apply (metis successor_incr leD less_imp_le order_trans)
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2961
done
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2962
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2963
lemma sorted_list_of_set_rec2: "i \<le> j \<Longrightarrow>
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2964
  sorted_list_of_set {i..successor j} =
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2965
  sorted_list_of_set {i..j} @ [successor j]"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2966
apply(simp add:sorted_list_of_set_def upto_def)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2967
apply (rule the1_equality[OF finite_sorted_distinct_unique])
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2968
 apply (simp add:finite_intvl)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2969
apply(rule the1I2[OF finite_sorted_distinct_unique])
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2970
 apply (simp add:finite_intvl)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2971
apply (simp add: sorted_append Ball_def expand_set_eq)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2972
apply(rule conjI)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2973
apply (metis eq_iff leD linear not_leE ord_discrete order_trans successor_incr)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2974
apply (metis leD linear order_trans successor_incr)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2975
done
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2976
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24902
diff changeset
  2977
lemma upto_rec[code]: "[i..j] = (if i \<le> j then i # [successor i..j] else [])"
25069
081189141a6e added sorted_list_of_set
nipkow
parents: 25062
diff changeset
  2978
by(simp add: upto_def sorted_list_of_set_rec)
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2979
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2980
lemma upto_empty[simp]: "j < i \<Longrightarrow> [i..j] = []"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2981
by(simp add: upto_rec)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2982
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2983
lemma upto_rec2: "i \<le> j \<Longrightarrow> [i..successor j] = [i..j] @ [successor j]"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2984
by(simp add: upto_def sorted_list_of_set_rec2)
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2985
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2986
end
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2987
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2988
text{* The integers are an instance of the above class: *}
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  2989
25571
c9e39eafc7a0 instantiation target rather than legacy instance
haftmann
parents: 25563
diff changeset
  2990
instantiation int:: finite_intvl_succ
c9e39eafc7a0 instantiation target rather than legacy instance
haftmann
parents: 25563
diff changeset
  2991
begin
c9e39eafc7a0 instantiation target rather than legacy instance
haftmann
parents: 25563
diff changeset
  2992
c9e39eafc7a0 instantiation target rather than legacy instance
haftmann
parents: 25563
diff changeset
  2993
definition
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2994
successor_int_def: "successor = (%i\<Colon>int. i+1)"
25571
c9e39eafc7a0 instantiation target rather than legacy instance
haftmann
parents: 25563
diff changeset
  2995
c9e39eafc7a0 instantiation target rather than legacy instance
haftmann
parents: 25563
diff changeset
  2996
instance
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  2997
by intro_classes (simp_all add: successor_int_def)
25571
c9e39eafc7a0 instantiation target rather than legacy instance
haftmann
parents: 25563
diff changeset
  2998
c9e39eafc7a0 instantiation target rather than legacy instance
haftmann
parents: 25563
diff changeset
  2999
end
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  3000
24697
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  3001
text{* Now @{term"[i..j::int]"} is defined for integers. *}
b37d3980da3c fixed haftmann bug
nipkow
parents: 24657
diff changeset
  3002
24698
9800a7602629 hide successor
nipkow
parents: 24697
diff changeset
  3003
hide (open) const successor
9800a7602629 hide successor
nipkow
parents: 24697
diff changeset
  3004
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3005
lemma upto_rec2_int: "(i::int) \<le> j \<Longrightarrow> [i..j+1] = [i..j] @ [j+1]"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3006
by(rule upto_rec2[where 'a = int, simplified successor_int_def])
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3007
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  3008
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  3009
subsubsection {* @{text lists}: the list-forming operator over sets *}
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3010
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3011
inductive_set
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3012
  lists :: "'a set => 'a list set"
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3013
  for A :: "'a set"
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3014
where
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3015
    Nil [intro!]: "[]: lists A"
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3016
  | Cons [intro!,noatp]: "[| a: A; l: lists A|] ==> a#l : lists A"
24286
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
  3017
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
  3018
inductive_cases listsE [elim!,noatp]: "x#l : lists A"
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
  3019
inductive_cases listspE [elim!,noatp]: "listsp A (x # l)"
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3020
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3021
lemma listsp_mono [mono]: "A \<le> B ==> listsp A \<le> listsp B"
26795
a27607030a1c - Explicitely applied predicate1I in a few proofs, because it is no longer
berghofe
parents: 26771
diff changeset
  3022
by (rule predicate1I, erule listsp.induct, blast+)
a27607030a1c - Explicitely applied predicate1I in a few proofs, because it is no longer
berghofe
parents: 26771
diff changeset
  3023
a27607030a1c - Explicitely applied predicate1I in a few proofs, because it is no longer
berghofe
parents: 26771
diff changeset
  3024
lemmas lists_mono = listsp_mono [to_set pred_subset_eq]
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3025
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3026
lemma listsp_infI:
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3027
  assumes l: "listsp A l" shows "listsp B l ==> listsp (inf A B) l" using l
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3028
by induct blast+
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3029
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3030
lemmas lists_IntI = listsp_infI [to_set]
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3031
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3032
lemma listsp_inf_eq [simp]: "listsp (inf A B) = inf (listsp A) (listsp B)"
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3033
proof (rule mono_inf [where f=listsp, THEN order_antisym])
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3034
  show "mono listsp" by (simp add: mono_def listsp_mono)
26795
a27607030a1c - Explicitely applied predicate1I in a few proofs, because it is no longer
berghofe
parents: 26771
diff changeset
  3035
  show "inf (listsp A) (listsp B) \<le> listsp (inf A B)" by (blast intro!: listsp_infI predicate1I)
14388
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  3036
qed
04f04408b99b lemmas about card (set xs)
kleing
parents: 14343
diff changeset
  3037
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3038
lemmas listsp_conj_eq [simp] = listsp_inf_eq [simplified inf_fun_eq inf_bool_eq]
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3039
26795
a27607030a1c - Explicitely applied predicate1I in a few proofs, because it is no longer
berghofe
parents: 26771
diff changeset
  3040
lemmas lists_Int_eq [simp] = listsp_inf_eq [to_set pred_equals_eq]
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3041
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3042
lemma append_in_listsp_conv [iff]:
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3043
     "(listsp A (xs @ ys)) = (listsp A xs \<and> listsp A ys)"
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3044
by (induct xs) auto
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3045
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3046
lemmas append_in_lists_conv [iff] = append_in_listsp_conv [to_set]
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3047
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3048
lemma in_listsp_conv_set: "(listsp A xs) = (\<forall>x \<in> set xs. A x)"
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3049
-- {* eliminate @{text listsp} in favour of @{text set} *}
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3050
by (induct xs) auto
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3051
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3052
lemmas in_lists_conv_set = in_listsp_conv_set [to_set]
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3053
24286
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
  3054
lemma in_listspD [dest!,noatp]: "listsp A xs ==> \<forall>x\<in>set xs. A x"
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3055
by (rule in_listsp_conv_set [THEN iffD1])
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3056
24286
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
  3057
lemmas in_listsD [dest!,noatp] = in_listspD [to_set]
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
  3058
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
  3059
lemma in_listspI [intro!,noatp]: "\<forall>x\<in>set xs. A x ==> listsp A xs"
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3060
by (rule in_listsp_conv_set [THEN iffD2])
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3061
24286
7619080e49f0 ATP blacklisting is now in theory data, attribute noatp
paulson
parents: 24219
diff changeset
  3062
lemmas in_listsI [intro!,noatp] = in_listspI [to_set]
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3063
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3064
lemma lists_UNIV [simp]: "lists UNIV = UNIV"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3065
by auto
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3066
17086
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3067
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3068
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3069
subsubsection{* Inductive definition for membership *}
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3070
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3071
inductive ListMem :: "'a \<Rightarrow> 'a list \<Rightarrow> bool"
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3072
where
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3073
    elem:  "ListMem x (x # xs)"
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3074
  | insert:  "ListMem x xs \<Longrightarrow> ListMem x (y # xs)"
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3075
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3076
lemma ListMem_iff: "(ListMem x xs) = (x \<in> set xs)"
17086
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3077
apply (rule iffI)
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3078
 apply (induct set: ListMem)
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3079
  apply auto
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3080
apply (induct xs)
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3081
 apply (auto intro: ListMem.intros)
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3082
done
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3083
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3084
0eb0c9259dd7 added quite a few functions for code generation
nipkow
parents: 16998
diff changeset
  3085
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  3086
subsubsection{*Lists as Cartesian products*}
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3087
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3088
text{*@{text"set_Cons A Xs"}: the set of lists with head drawn from
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3089
@{term A} and tail drawn from @{term Xs}.*}
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3090
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3091
constdefs
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3092
  set_Cons :: "'a set \<Rightarrow> 'a list set \<Rightarrow> 'a list set"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3093
  "set_Cons A XS == {z. \<exists>x xs. z = x#xs & x \<in> A & xs \<in> XS}"
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28537
diff changeset
  3094
declare set_Cons_def [code del]
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3095
17724
e969fc0a4925 simprules need names
paulson
parents: 17629
diff changeset
  3096
lemma set_Cons_sing_Nil [simp]: "set_Cons A {[]} = (%x. [x])`A"
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3097
by (auto simp add: set_Cons_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3098
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3099
text{*Yields the set of lists, all of the same length as the argument and
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3100
with elements drawn from the corresponding element of the argument.*}
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3101
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3102
consts  listset :: "'a set list \<Rightarrow> 'a list set"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3103
primrec
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3104
   "listset []    = {[]}"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3105
   "listset(A#As) = set_Cons A (listset As)"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3106
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3107
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3108
subsection{*Relations on Lists*}
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3109
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3110
subsubsection {* Length Lexicographic Ordering *}
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3111
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3112
text{*These orderings preserve well-foundedness: shorter lists 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3113
  precede longer lists. These ordering are not used in dictionaries.*}
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3114
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3115
consts lexn :: "('a * 'a)set => nat => ('a list * 'a list)set"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3116
        --{*The lexicographic ordering for lists of the specified length*}
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3117
primrec
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3118
  "lexn r 0 = {}"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3119
  "lexn r (Suc n) =
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3120
    (prod_fun (%(x,xs). x#xs) (%(x,xs). x#xs) ` (r <*lex*> lexn r n)) Int
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3121
    {(xs,ys). length xs = Suc n \<and> length ys = Suc n}"
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3122
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3123
constdefs
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3124
  lex :: "('a \<times> 'a) set => ('a list \<times> 'a list) set"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3125
    "lex r == \<Union>n. lexn r n"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3126
        --{*Holds only between lists of the same length*}
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3127
15693
3a67e61c6e96 tuned Map, renamed lex stuff in List.
nipkow
parents: 15656
diff changeset
  3128
  lenlex :: "('a \<times> 'a) set => ('a list \<times> 'a list) set"
3a67e61c6e96 tuned Map, renamed lex stuff in List.
nipkow
parents: 15656
diff changeset
  3129
    "lenlex r == inv_image (less_than <*lex*> lex r) (%xs. (length xs, xs))"
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3130
        --{*Compares lists by their length and then lexicographically*}
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3131
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28537
diff changeset
  3132
declare lex_def [code del]
27106
ff27dc6e7d05 removed some dubious code lemmas
haftmann
parents: 26975
diff changeset
  3133
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3134
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3135
lemma wf_lexn: "wf r ==> wf (lexn r n)"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3136
apply (induct n, simp, simp)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3137
apply(rule wf_subset)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3138
 prefer 2 apply (rule Int_lower1)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3139
apply(rule wf_prod_fun_image)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3140
 prefer 2 apply (rule inj_onI, auto)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3141
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3142
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3143
lemma lexn_length:
24526
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  3144
  "(xs, ys) : lexn r n ==> length xs = n \<and> length ys = n"
7fa202789bf6 tuned lemma; replaced !! by arbitrary
nipkow
parents: 24476
diff changeset
  3145
by (induct n arbitrary: xs ys) auto
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3146
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3147
lemma wf_lex [intro!]: "wf r ==> wf (lex r)"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3148
apply (unfold lex_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3149
apply (rule wf_UN)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3150
apply (blast intro: wf_lexn, clarify)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3151
apply (rename_tac m n)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3152
apply (subgoal_tac "m \<noteq> n")
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3153
 prefer 2 apply blast
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3154
apply (blast dest: lexn_length not_sym)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3155
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3156
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3157
lemma lexn_conv:
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3158
  "lexn r n =
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3159
    {(xs,ys). length xs = n \<and> length ys = n \<and>
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3160
    (\<exists>xys x y xs' ys'. xs= xys @ x#xs' \<and> ys= xys @ y # ys' \<and> (x, y):r)}"
18423
d7859164447f new lemmas
nipkow
parents: 18336
diff changeset
  3161
apply (induct n, simp)
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3162
apply (simp add: image_Collect lex_prod_def, safe, blast)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3163
 apply (rule_tac x = "ab # xys" in exI, simp)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3164
apply (case_tac xys, simp_all, blast)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3165
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3166
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3167
lemma lex_conv:
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3168
  "lex r =
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3169
    {(xs,ys). length xs = length ys \<and>
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3170
    (\<exists>xys x y xs' ys'. xs = xys @ x # xs' \<and> ys = xys @ y # ys' \<and> (x, y):r)}"
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3171
by (force simp add: lex_def lexn_conv)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3172
15693
3a67e61c6e96 tuned Map, renamed lex stuff in List.
nipkow
parents: 15656
diff changeset
  3173
lemma wf_lenlex [intro!]: "wf r ==> wf (lenlex r)"
3a67e61c6e96 tuned Map, renamed lex stuff in List.
nipkow
parents: 15656
diff changeset
  3174
by (unfold lenlex_def) blast
3a67e61c6e96 tuned Map, renamed lex stuff in List.
nipkow
parents: 15656
diff changeset
  3175
3a67e61c6e96 tuned Map, renamed lex stuff in List.
nipkow
parents: 15656
diff changeset
  3176
lemma lenlex_conv:
3a67e61c6e96 tuned Map, renamed lex stuff in List.
nipkow
parents: 15656
diff changeset
  3177
    "lenlex r = {(xs,ys). length xs < length ys |
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3178
                 length xs = length ys \<and> (xs, ys) : lex r}"
19623
12e6cc4382ae added lemma in_measure
nipkow
parents: 19607
diff changeset
  3179
by (simp add: lenlex_def diag_def lex_prod_def inv_image_def)
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3180
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3181
lemma Nil_notin_lex [iff]: "([], ys) \<notin> lex r"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3182
by (simp add: lex_conv)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3183
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3184
lemma Nil2_notin_lex [iff]: "(xs, []) \<notin> lex r"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3185
by (simp add:lex_conv)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3186
18447
da548623916a removed or modified some instances of [iff]
paulson
parents: 18423
diff changeset
  3187
lemma Cons_in_lex [simp]:
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3188
    "((x # xs, y # ys) : lex r) =
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3189
      ((x, y) : r \<and> length xs = length ys | x = y \<and> (xs, ys) : lex r)"
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3190
apply (simp add: lex_conv)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3191
apply (rule iffI)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3192
 prefer 2 apply (blast intro: Cons_eq_appendI, clarify)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3193
apply (case_tac xys, simp, simp)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3194
apply blast
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3195
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3196
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3197
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3198
subsubsection {* Lexicographic Ordering *}
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3199
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3200
text {* Classical lexicographic ordering on lists, ie. "a" < "ab" < "b".
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3201
    This ordering does \emph{not} preserve well-foundedness.
17090
603f23d71ada small mods to code lemmas
nipkow
parents: 17086
diff changeset
  3202
     Author: N. Voelker, March 2005. *} 
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3203
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3204
constdefs 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3205
  lexord :: "('a * 'a)set \<Rightarrow> ('a list * 'a list) set" 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3206
  "lexord  r == {(x,y). \<exists> a v. y = x @ a # v \<or> 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3207
            (\<exists> u a b v w. (a,b) \<in> r \<and> x = u @ (a # v) \<and> y = u @ (b # w))}"
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28537
diff changeset
  3208
declare lexord_def [code del]
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3209
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3210
lemma lexord_Nil_left[simp]:  "([],y) \<in> lexord r = (\<exists> a x. y = a # x)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3211
by (unfold lexord_def, induct_tac y, auto) 
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3212
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3213
lemma lexord_Nil_right[simp]: "(x,[]) \<notin> lexord r"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3214
by (unfold lexord_def, induct_tac x, auto)
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3215
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3216
lemma lexord_cons_cons[simp]:
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3217
     "((a # x, b # y) \<in> lexord r) = ((a,b)\<in> r | (a = b & (x,y)\<in> lexord r))"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3218
  apply (unfold lexord_def, safe, simp_all)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3219
  apply (case_tac u, simp, simp)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3220
  apply (case_tac u, simp, clarsimp, blast, blast, clarsimp)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3221
  apply (erule_tac x="b # u" in allE)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3222
  by force
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3223
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3224
lemmas lexord_simps = lexord_Nil_left lexord_Nil_right lexord_cons_cons
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3225
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3226
lemma lexord_append_rightI: "\<exists> b z. y = b # z \<Longrightarrow> (x, x @ y) \<in> lexord r"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3227
by (induct_tac x, auto)  
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3228
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3229
lemma lexord_append_left_rightI:
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3230
     "(a,b) \<in> r \<Longrightarrow> (u @ a # x, u @ b # y) \<in> lexord r"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3231
by (induct_tac u, auto)
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3232
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3233
lemma lexord_append_leftI: " (u,v) \<in> lexord r \<Longrightarrow> (x @ u, x @ v) \<in> lexord r"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3234
by (induct x, auto)
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3235
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3236
lemma lexord_append_leftD:
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3237
     "\<lbrakk> (x @ u, x @ v) \<in> lexord r; (! a. (a,a) \<notin> r) \<rbrakk> \<Longrightarrow> (u,v) \<in> lexord r"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3238
by (erule rev_mp, induct_tac x, auto)
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3239
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3240
lemma lexord_take_index_conv: 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3241
   "((x,y) : lexord r) = 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3242
    ((length x < length y \<and> take (length x) y = x) \<or> 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3243
     (\<exists>i. i < min(length x)(length y) & take i x = take i y & (x!i,y!i) \<in> r))"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3244
  apply (unfold lexord_def Let_def, clarsimp) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3245
  apply (rule_tac f = "(% a b. a \<or> b)" in arg_cong2)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3246
  apply auto 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3247
  apply (rule_tac x="hd (drop (length x) y)" in exI)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3248
  apply (rule_tac x="tl (drop (length x) y)" in exI)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3249
  apply (erule subst, simp add: min_def) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3250
  apply (rule_tac x ="length u" in exI, simp) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3251
  apply (rule_tac x ="take i x" in exI) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3252
  apply (rule_tac x ="x ! i" in exI) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3253
  apply (rule_tac x ="y ! i" in exI, safe) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3254
  apply (rule_tac x="drop (Suc i) x" in exI)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3255
  apply (drule sym, simp add: drop_Suc_conv_tl) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3256
  apply (rule_tac x="drop (Suc i) y" in exI)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3257
  by (simp add: drop_Suc_conv_tl) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3258
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3259
-- {* lexord is extension of partial ordering List.lex *} 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3260
lemma lexord_lex: " (x,y) \<in> lex r = ((x,y) \<in> lexord r \<and> length x = length y)"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3261
  apply (rule_tac x = y in spec) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3262
  apply (induct_tac x, clarsimp) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3263
  by (clarify, case_tac x, simp, force)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3264
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3265
lemma lexord_irreflexive: "(! x. (x,x) \<notin> r) \<Longrightarrow> (y,y) \<notin> lexord r"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3266
  by (induct y, auto)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3267
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3268
lemma lexord_trans: 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3269
    "\<lbrakk> (x, y) \<in> lexord r; (y, z) \<in> lexord r; trans r \<rbrakk> \<Longrightarrow> (x, z) \<in> lexord r"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3270
   apply (erule rev_mp)+
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3271
   apply (rule_tac x = x in spec) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3272
  apply (rule_tac x = z in spec) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3273
  apply ( induct_tac y, simp, clarify)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3274
  apply (case_tac xa, erule ssubst) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3275
  apply (erule allE, erule allE) -- {* avoid simp recursion *} 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3276
  apply (case_tac x, simp, simp) 
24632
779fc4fcbf8b metis now available in PreList
paulson
parents: 24617
diff changeset
  3277
  apply (case_tac x, erule allE, erule allE, simp)
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3278
  apply (erule_tac x = listb in allE) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3279
  apply (erule_tac x = lista in allE, simp)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3280
  apply (unfold trans_def)
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3281
  by blast
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3282
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3283
lemma lexord_transI:  "trans r \<Longrightarrow> trans (lexord r)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3284
by (rule transI, drule lexord_trans, blast) 
15656
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3285
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3286
lemma lexord_linear: "(! a b. (a,b)\<in> r | a = b | (b,a) \<in> r) \<Longrightarrow> (x,y) : lexord r | x = y | (y,x) : lexord r"
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3287
  apply (rule_tac x = y in spec) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3288
  apply (induct_tac x, rule allI) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3289
  apply (case_tac x, simp, simp) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3290
  apply (rule allI, case_tac x, simp, simp) 
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3291
  by blast
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3292
988f91b9c4ef lexicographic order by Norbert Voelker
paulson
parents: 15570
diff changeset
  3293
21103
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3294
subsection {* Lexicographic combination of measure functions *}
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3295
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3296
text {* These are useful for termination proofs *}
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3297
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3298
definition
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3299
  "measures fs = inv_image (lex less_than) (%a. map (%f. f a) fs)"
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3300
21106
51599a81b308 Added "recdef_wf" and "simp" attribute to "wf_measures"
krauss
parents: 21103
diff changeset
  3301
lemma wf_measures[recdef_wf, simp]: "wf (measures fs)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3302
unfolding measures_def
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3303
by blast
21103
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3304
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3305
lemma in_measures[simp]: 
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3306
  "(x, y) \<in> measures [] = False"
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3307
  "(x, y) \<in> measures (f # fs)
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3308
         = (f x < f y \<or> (f x = f y \<and> (x, y) \<in> measures fs))"  
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3309
unfolding measures_def
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3310
by auto
21103
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3311
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3312
lemma measures_less: "f x < f y ==> (x, y) \<in> measures (f#fs)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3313
by simp
21103
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3314
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3315
lemma measures_lesseq: "f x <= f y ==> (x, y) \<in> measures fs ==> (x, y) \<in> measures (f#fs)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3316
by auto
21103
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3317
367b4ad7c7cc Added "measures" combinator for lexicographic combinations of multiple measures.
krauss
parents: 21079
diff changeset
  3318
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  3319
subsubsection{*Lifting a Relation on List Elements to the Lists*}
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3320
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3321
inductive_set
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3322
  listrel :: "('a * 'a)set => ('a list * 'a list)set"
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3323
  for r :: "('a * 'a)set"
22262
96ba62dff413 Adapted to new inductive definition package.
berghofe
parents: 22143
diff changeset
  3324
where
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3325
    Nil:  "([],[]) \<in> listrel r"
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3326
  | Cons: "[| (x,y) \<in> r; (xs,ys) \<in> listrel r |] ==> (x#xs, y#ys) \<in> listrel r"
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3327
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3328
inductive_cases listrel_Nil1 [elim!]: "([],xs) \<in> listrel r"
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3329
inductive_cases listrel_Nil2 [elim!]: "(xs,[]) \<in> listrel r"
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3330
inductive_cases listrel_Cons1 [elim!]: "(y#ys,xs) \<in> listrel r"
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3331
inductive_cases listrel_Cons2 [elim!]: "(xs,y#ys) \<in> listrel r"
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3332
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3333
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3334
lemma listrel_mono: "r \<subseteq> s \<Longrightarrow> listrel r \<subseteq> listrel s"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3335
apply clarify  
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3336
apply (erule listrel.induct)
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3337
apply (blast intro: listrel.intros)+
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3338
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3339
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3340
lemma listrel_subset: "r \<subseteq> A \<times> A \<Longrightarrow> listrel r \<subseteq> lists A \<times> lists A"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3341
apply clarify 
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3342
apply (erule listrel.induct, auto) 
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3343
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3344
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3345
lemma listrel_refl: "refl A r \<Longrightarrow> refl (lists A) (listrel r)" 
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3346
apply (simp add: refl_def listrel_subset Ball_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3347
apply (rule allI) 
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3348
apply (induct_tac x) 
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3349
apply (auto intro: listrel.intros)
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3350
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3351
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3352
lemma listrel_sym: "sym r \<Longrightarrow> sym (listrel r)" 
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3353
apply (auto simp add: sym_def)
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3354
apply (erule listrel.induct) 
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3355
apply (blast intro: listrel.intros)+
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3356
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3357
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3358
lemma listrel_trans: "trans r \<Longrightarrow> trans (listrel r)" 
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3359
apply (simp add: trans_def)
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3360
apply (intro allI) 
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3361
apply (rule impI) 
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3362
apply (erule listrel.induct) 
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3363
apply (blast intro: listrel.intros)+
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3364
done
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3365
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3366
theorem equiv_listrel: "equiv A r \<Longrightarrow> equiv (lists A) (listrel r)"
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3367
by (simp add: equiv_def listrel_refl listrel_sym listrel_trans) 
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3368
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3369
lemma listrel_Nil [simp]: "listrel r `` {[]} = {[]}"
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3370
by (blast intro: listrel.intros)
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3371
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3372
lemma listrel_Cons:
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3373
     "listrel r `` {x#xs} = set_Cons (r``{x}) (listrel r `` {xs})";
23740
d7f18c837ce7 Adapted to new package for inductive sets.
berghofe
parents: 23554
diff changeset
  3374
by (auto simp add: set_Cons_def intro: listrel.intros) 
15302
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3375
a643fcbc3468 Restructured List and added "rotate"
nipkow
parents: 15281
diff changeset
  3376
15392
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  3377
subsection{*Miscellany*}
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  3378
290bc97038c7 First step in reorganizing Finite_Set
nipkow
parents: 15307
diff changeset
  3379
subsubsection {* Characters and strings *}
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3380
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3381
datatype nibble =
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3382
    Nibble0 | Nibble1 | Nibble2 | Nibble3 | Nibble4 | Nibble5 | Nibble6 | Nibble7
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3383
  | Nibble8 | Nibble9 | NibbleA | NibbleB | NibbleC | NibbleD | NibbleE | NibbleF
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3384
26148
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3385
lemma UNIV_nibble:
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3386
  "UNIV = {Nibble0, Nibble1, Nibble2, Nibble3, Nibble4, Nibble5, Nibble6, Nibble7,
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3387
    Nibble8, Nibble9, NibbleA, NibbleB, NibbleC, NibbleD, NibbleE, NibbleF}" (is "_ = ?A")
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3388
proof (rule UNIV_eq_I)
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3389
  fix x show "x \<in> ?A" by (cases x) simp_all
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3390
qed
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3391
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3392
instance nibble :: finite
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3393
  by default (simp add: UNIV_nibble)
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3394
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3395
datatype char = Char nibble nibble
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3396
  -- "Note: canonical order of character encoding coincides with standard term ordering"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3397
26148
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3398
lemma UNIV_char:
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3399
  "UNIV = image (split Char) (UNIV \<times> UNIV)"
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3400
proof (rule UNIV_eq_I)
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3401
  fix x show "x \<in> image (split Char) (UNIV \<times> UNIV)" by (cases x) auto
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3402
qed
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3403
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3404
instance char :: finite
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3405
  by default (simp add: UNIV_char)
cbe6f8af8db2 char and nibble are finite
haftmann
parents: 26143
diff changeset
  3406
28230
87feb146d3d1 explicit size of characters
haftmann
parents: 28090
diff changeset
  3407
lemma size_char [code, simp]:
87feb146d3d1 explicit size of characters
haftmann
parents: 28090
diff changeset
  3408
  "size (c::char) = 0" by (cases c) simp
87feb146d3d1 explicit size of characters
haftmann
parents: 28090
diff changeset
  3409
87feb146d3d1 explicit size of characters
haftmann
parents: 28090
diff changeset
  3410
lemma char_size [code, simp]:
87feb146d3d1 explicit size of characters
haftmann
parents: 28090
diff changeset
  3411
  "char_size (c::char) = 0" by (cases c) simp
87feb146d3d1 explicit size of characters
haftmann
parents: 28090
diff changeset
  3412
28244
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3413
primrec nibble_pair_of_char :: "char \<Rightarrow> nibble \<times> nibble" where
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3414
  "nibble_pair_of_char (Char n m) = (n, m)"
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3415
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28537
diff changeset
  3416
declare nibble_pair_of_char.simps [code del]
28244
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3417
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3418
setup {*
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3419
let
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3420
  val nibbles = map (Thm.cterm_of @{theory} o HOLogic.mk_nibble) (0 upto 15);
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3421
  val thms = map_product
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3422
   (fn n => fn m => Drule.instantiate' [] [SOME n, SOME m] @{thm nibble_pair_of_char.simps})
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3423
      nibbles nibbles;
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3424
in
28965
1de908189869 cleaned up binding module and related code
haftmann
parents: 28823
diff changeset
  3425
  PureThy.note_thmss Thm.lemmaK [((Binding.name "nibble_pair_of_char_simps", []), [(thms, [])])]
28370
37f56e6e702d removed obsolete name convention "func"
haftmann
parents: 28346
diff changeset
  3426
  #-> (fn [(_, thms)] => fold_rev Code.add_eqn thms)
28244
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3427
end
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3428
*}
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3429
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28537
diff changeset
  3430
lemma char_case_nibble_pair [code, code inline]:
28244
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3431
  "char_case f = split f o nibble_pair_of_char"
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3432
  by (simp add: expand_fun_eq split: char.split)
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3433
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28537
diff changeset
  3434
lemma char_rec_nibble_pair [code, code inline]:
28244
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3435
  "char_rec f = split f o nibble_pair_of_char"
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3436
  unfolding char_case_nibble_pair [symmetric]
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3437
  by (simp add: expand_fun_eq split: char.split)
f433e544a855 a sophisticated char/nibble conversion combinator
haftmann
parents: 28230
diff changeset
  3438
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3439
types string = "char list"
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3440
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3441
syntax
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3442
  "_Char" :: "xstr => char"    ("CHR _")
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3443
  "_String" :: "xstr => string"    ("_")
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3444
21754
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
  3445
setup StringSyntax.setup
13366
114b7c14084a moved stuff from Main.thy;
wenzelm
parents: 13187
diff changeset
  3446
20453
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3447
26749
397a1aeede7d * New attribute "termination_simp": Simp rules for termination proofs
krauss
parents: 26734
diff changeset
  3448
subsection {* Size function *}
397a1aeede7d * New attribute "termination_simp": Simp rules for termination proofs
krauss
parents: 26734
diff changeset
  3449
26875
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3450
lemma [measure_function]: "is_measure f \<Longrightarrow> is_measure (list_size f)"
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3451
by (rule is_measure_trivial)
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3452
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3453
lemma [measure_function]: "is_measure f \<Longrightarrow> is_measure (option_size f)"
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3454
by (rule is_measure_trivial)
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3455
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3456
lemma list_size_estimation[termination_simp]: 
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3457
  "x \<in> set xs \<Longrightarrow> y < f x \<Longrightarrow> y < list_size f xs"
26749
397a1aeede7d * New attribute "termination_simp": Simp rules for termination proofs
krauss
parents: 26734
diff changeset
  3458
by (induct xs) auto
397a1aeede7d * New attribute "termination_simp": Simp rules for termination proofs
krauss
parents: 26734
diff changeset
  3459
26875
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3460
lemma list_size_estimation'[termination_simp]: 
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3461
  "x \<in> set xs \<Longrightarrow> y \<le> f x \<Longrightarrow> y \<le> list_size f xs"
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3462
by (induct xs) auto
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3463
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3464
lemma list_size_map[simp]: "list_size f (map g xs) = list_size (f o g) xs"
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3465
by (induct xs) auto
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3466
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3467
lemma list_size_pointwise[termination_simp]: 
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3468
  "(\<And>x. x \<in> set xs \<Longrightarrow> f x < g x) \<Longrightarrow> list_size f xs \<le> list_size g xs"
e18574413bc4 Measure functions can now be declared via special rules, allowing for a
krauss
parents: 26795
diff changeset
  3469
by (induct xs) force+
26749
397a1aeede7d * New attribute "termination_simp": Simp rules for termination proofs
krauss
parents: 26734
diff changeset
  3470
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3471
subsection {* Code generator *}
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3472
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3473
subsubsection {* Setup *}
15064
4f3102b50197 - Moved code generator setup for lists from Main.thy to List.thy
berghofe
parents: 15045
diff changeset
  3474
16770
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3475
types_code
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3476
  "list" ("_ list")
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3477
attach (term_of) {*
21760
78248dda3a90 fixed term_of_list;
wenzelm
parents: 21754
diff changeset
  3478
fun term_of_list f T = HOLogic.mk_list T o map f;
16770
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3479
*}
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3480
attach (test) {*
25885
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3481
fun gen_list' aG aT i j = frequency
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3482
  [(i, fn () =>
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3483
      let
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3484
        val (x, t) = aG j;
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3485
        val (xs, ts) = gen_list' aG aT (i-1) j
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3486
      in (x :: xs, fn () => HOLogic.cons_const aT $ t () $ ts ()) end),
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3487
   (1, fn () => ([], fn () => HOLogic.nil_const aT))] ()
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3488
and gen_list aG aT i = gen_list' aG aT i i;
16770
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3489
*}
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3490
  "char" ("string")
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3491
attach (term_of) {*
24130
5ab8044b6d46 Repaired term_of_char.
berghofe
parents: 24037
diff changeset
  3492
val term_of_char = HOLogic.mk_char o ord;
16770
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3493
*}
1f1b1fae30e4 Auxiliary functions to be used in generated code are now defined using "attach".
berghofe
parents: 16634
diff changeset
  3494
attach (test) {*
25885
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3495
fun gen_char i =
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3496
  let val j = random_range (ord "a") (Int.min (ord "a" + i, ord "z"))
6fbc3f54f819 New interface for test data generators.
berghofe
parents: 25591
diff changeset
  3497
  in (chr j, fn () => HOLogic.mk_char j) end;
15064
4f3102b50197 - Moved code generator setup for lists from Main.thy to List.thy
berghofe
parents: 15045
diff changeset
  3498
*}
4f3102b50197 - Moved code generator setup for lists from Main.thy to List.thy
berghofe
parents: 15045
diff changeset
  3499
4f3102b50197 - Moved code generator setup for lists from Main.thy to List.thy
berghofe
parents: 15045
diff changeset
  3500
consts_code "Cons" ("(_ ::/ _)")
4f3102b50197 - Moved code generator setup for lists from Main.thy to List.thy
berghofe
parents: 15045
diff changeset
  3501
20453
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3502
code_type list
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3503
  (SML "_ list")
21911
e29bcab0c81c added OCaml code generation (without dictionaries)
haftmann
parents: 21891
diff changeset
  3504
  (OCaml "_ list")
21113
5b76e541cc0a adapted to new serializer syntax
haftmann
parents: 21106
diff changeset
  3505
  (Haskell "![_]")
20453
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3506
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3507
code_reserved SML
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3508
  list
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3509
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3510
code_reserved OCaml
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3511
  list
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3512
20453
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3513
code_const Nil
21113
5b76e541cc0a adapted to new serializer syntax
haftmann
parents: 21106
diff changeset
  3514
  (SML "[]")
21911
e29bcab0c81c added OCaml code generation (without dictionaries)
haftmann
parents: 21891
diff changeset
  3515
  (OCaml "[]")
21113
5b76e541cc0a adapted to new serializer syntax
haftmann
parents: 21106
diff changeset
  3516
  (Haskell "[]")
20453
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3517
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3518
ML {*
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3519
local
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3520
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3521
open Basic_Code_Thingol;
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3522
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3523
fun implode_list (nil', cons') t =
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3524
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3525
    fun dest_cons (IConst (c, _) `$ t1 `$ t2) =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3526
          if c = cons'
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3527
          then SOME (t1, t2)
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3528
          else NONE
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3529
      | dest_cons _ = NONE;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3530
    val (ts, t') = Code_Thingol.unfoldr dest_cons t;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3531
  in case t'
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3532
   of IConst (c, _) => if c = nil' then SOME ts else NONE
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3533
    | _ => NONE
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3534
  end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3535
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3536
fun decode_char nibbles' (IConst (c1, _), IConst (c2, _)) =
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3537
      let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3538
        fun idx c = find_index (curry (op =) c) nibbles';
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3539
        fun decode ~1 _ = NONE
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3540
          | decode _ ~1 = NONE
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3541
          | decode n m = SOME (chr (n * 16 + m));
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3542
      in decode (idx c1) (idx c2) end
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3543
  | decode_char _ _ = NONE;
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3544
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3545
fun implode_string (char', nibbles') mk_char mk_string ts =
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3546
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3547
    fun implode_char (IConst (c, _) `$ t1 `$ t2) =
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3548
          if c = char' then decode_char nibbles' (t1, t2) else NONE
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3549
      | implode_char _ = NONE;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3550
    val ts' = map implode_char ts;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3551
  in if forall is_some ts'
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3552
    then (SOME o Code_Printer.str o mk_string o implode o map_filter I) ts'
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3553
    else NONE
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3554
  end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3555
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3556
fun list_names naming = pairself (the o Code_Thingol.lookup_const naming)
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3557
  (@{const_name Nil}, @{const_name Cons});
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3558
fun char_name naming = (the o Code_Thingol.lookup_const naming)
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3559
  @{const_name Char}
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3560
fun nibble_names naming = map (the o Code_Thingol.lookup_const naming)
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3561
  [@{const_name Nibble0}, @{const_name Nibble1},
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3562
   @{const_name Nibble2}, @{const_name Nibble3},
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3563
   @{const_name Nibble4}, @{const_name Nibble5},
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3564
   @{const_name Nibble6}, @{const_name Nibble7},
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3565
   @{const_name Nibble8}, @{const_name Nibble9},
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3566
   @{const_name NibbleA}, @{const_name NibbleB},
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3567
   @{const_name NibbleC}, @{const_name NibbleD},
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3568
   @{const_name NibbleE}, @{const_name NibbleF}];
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3569
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3570
fun default_list (target_fxy, target_cons) pr fxy t1 t2 =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3571
  Code_Printer.brackify_infix (target_fxy, Code_Printer.R) fxy [
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3572
    pr (Code_Printer.INFX (target_fxy, Code_Printer.X)) t1,
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3573
    Code_Printer.str target_cons,
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3574
    pr (Code_Printer.INFX (target_fxy, Code_Printer.R)) t2
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3575
  ];
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3576
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3577
fun pretty_list literals =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3578
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3579
    val mk_list = Code_Printer.literal_list literals;
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28663
diff changeset
  3580
    fun pretty pr naming thm vars fxy [(t1, _), (t2, _)] =
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3581
      case Option.map (cons t1) (implode_list (list_names naming) t2)
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3582
       of SOME ts => mk_list (map (pr vars Code_Printer.NOBR) ts)
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3583
        | NONE => default_list (Code_Printer.infix_cons literals) (pr vars) fxy t1 t2;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3584
  in (2, pretty) end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3585
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3586
fun pretty_list_string literals =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3587
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3588
    val mk_list = Code_Printer.literal_list literals;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3589
    val mk_char = Code_Printer.literal_char literals;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3590
    val mk_string = Code_Printer.literal_string literals;
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28663
diff changeset
  3591
    fun pretty pr naming thm vars fxy [(t1, _), (t2, _)] =
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3592
      case Option.map (cons t1) (implode_list (list_names naming) t2)
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3593
       of SOME ts => (case implode_string (char_name naming, nibble_names naming) mk_char mk_string ts
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3594
           of SOME p => p
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3595
            | NONE => mk_list (map (pr vars Code_Printer.NOBR) ts))
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3596
        | NONE => default_list (Code_Printer.infix_cons literals) (pr vars) fxy t1 t2;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3597
  in (2, pretty) end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3598
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3599
fun pretty_char literals =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3600
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3601
    val mk_char = Code_Printer.literal_char literals;
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28663
diff changeset
  3602
    fun pretty _ naming thm _ _ [(t1, _), (t2, _)] =
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3603
      case decode_char (nibble_names naming) (t1, t2)
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3604
       of SOME c => (Code_Printer.str o mk_char) c
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3605
        | NONE => Code_Printer.nerror thm "Illegal character expression";
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3606
  in (2, pretty) end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3607
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3608
fun pretty_message literals =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3609
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3610
    val mk_char = Code_Printer.literal_char literals;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3611
    val mk_string = Code_Printer.literal_string literals;
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28663
diff changeset
  3612
    fun pretty _ naming thm _ _ [(t, _)] =
28663
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3613
      case implode_list (list_names naming) t
bd8438543bf2 code identifier namings are no longer imperative
haftmann
parents: 28642
diff changeset
  3614
       of SOME ts => (case implode_string (char_name naming, nibble_names naming) mk_char mk_string ts
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3615
           of SOME p => p
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3616
            | NONE => Code_Printer.nerror thm "Illegal message expression")
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3617
        | NONE => Code_Printer.nerror thm "Illegal message expression";
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3618
  in (1, pretty) end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3619
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3620
in
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3621
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3622
fun add_literal_list target thy =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3623
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3624
    val pr = pretty_list (Code_Target.the_literals thy target);
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3625
  in
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3626
    thy
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3627
    |> Code_Target.add_syntax_const target @{const_name Cons} (SOME pr)
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3628
  end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3629
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3630
fun add_literal_list_string target thy =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3631
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3632
    val pr = pretty_list_string (Code_Target.the_literals thy target);
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3633
  in
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3634
    thy
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3635
    |> Code_Target.add_syntax_const target @{const_name Cons} (SOME pr)
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3636
  end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3637
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3638
fun add_literal_char target thy =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3639
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3640
    val pr = pretty_char (Code_Target.the_literals thy target);
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3641
  in
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3642
    thy
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3643
    |> Code_Target.add_syntax_const target @{const_name Char} (SOME pr)
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3644
  end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3645
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3646
fun add_literal_message str target thy =
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3647
  let
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3648
    val pr = pretty_message (Code_Target.the_literals thy target);
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3649
  in
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3650
    thy
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3651
    |> Code_Target.add_syntax_const target str (SOME pr)
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3652
  end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3653
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3654
end;
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3655
*}
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3656
21911
e29bcab0c81c added OCaml code generation (without dictionaries)
haftmann
parents: 21891
diff changeset
  3657
setup {*
28090
29af3c712d2b distributed literal code generation out of central infrastructure
haftmann
parents: 28072
diff changeset
  3658
  fold (fn target => add_literal_list target) ["SML", "OCaml", "Haskell"]
21911
e29bcab0c81c added OCaml code generation (without dictionaries)
haftmann
parents: 21891
diff changeset
  3659
*}
e29bcab0c81c added OCaml code generation (without dictionaries)
haftmann
parents: 21891
diff changeset
  3660
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3661
code_instance list :: eq
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3662
  (Haskell -)
20588
c847c56edf0c added operational equality
haftmann
parents: 20503
diff changeset
  3663
28346
b8390cd56b8f discontinued special treatment of op = vs. eq_class.eq
haftmann
parents: 28262
diff changeset
  3664
code_const "eq_class.eq \<Colon> 'a\<Colon>eq list \<Rightarrow> 'a list \<Rightarrow> bool"
20588
c847c56edf0c added operational equality
haftmann
parents: 20503
diff changeset
  3665
  (Haskell infixl 4 "==")
c847c56edf0c added operational equality
haftmann
parents: 20503
diff changeset
  3666
20453
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3667
setup {*
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3668
let
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3669
28537
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3670
fun list_codegen thy defs dep thyname b t gr =
24902
49f002c3964e list_codegen and char_codegen now call invoke_tycodegen to ensure
berghofe
parents: 24796
diff changeset
  3671
  let
49f002c3964e list_codegen and char_codegen now call invoke_tycodegen to ensure
berghofe
parents: 24796
diff changeset
  3672
    val ts = HOLogic.dest_list t;
28537
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3673
    val (_, gr') = Codegen.invoke_tycodegen thy defs dep thyname false
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3674
      (fastype_of t) gr;
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3675
    val (ps, gr'') = fold_map
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3676
      (Codegen.invoke_codegen thy defs dep thyname false) ts gr'
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3677
  in SOME (Pretty.list "[" "]" ps, gr'') end handle TERM _ => NONE;
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3678
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3679
fun char_codegen thy defs dep thyname b t gr =
24902
49f002c3964e list_codegen and char_codegen now call invoke_tycodegen to ensure
berghofe
parents: 24796
diff changeset
  3680
  let
49f002c3964e list_codegen and char_codegen now call invoke_tycodegen to ensure
berghofe
parents: 24796
diff changeset
  3681
    val i = HOLogic.dest_char t;
28537
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3682
    val (_, gr') = Codegen.invoke_tycodegen thy defs dep thyname false
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3683
      (fastype_of t) gr;
1e84256d1a8a established canonical argument order in SML code generators
haftmann
parents: 28515
diff changeset
  3684
  in SOME (Codegen.str (ML_Syntax.print_string (chr i)), gr')
24902
49f002c3964e list_codegen and char_codegen now call invoke_tycodegen to ensure
berghofe
parents: 24796
diff changeset
  3685
  end handle TERM _ => NONE;
20453
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3686
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3687
in
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3688
  Codegen.add_codegen "list_codegen" list_codegen
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3689
  #> Codegen.add_codegen "char_codegen" char_codegen
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3690
end;
855f07fabd76 final syntax for some Isar code generator keywords
haftmann
parents: 20439
diff changeset
  3691
*}
15064
4f3102b50197 - Moved code generator setup for lists from Main.thy to List.thy
berghofe
parents: 15045
diff changeset
  3692
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3693
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3694
subsubsection {* Generation of efficient code *}
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3695
25221
5ded95dda5df append/member: more light-weight way to declare authentic syntax;
wenzelm
parents: 25215
diff changeset
  3696
primrec
25559
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
  3697
  member :: "'a \<Rightarrow> 'a list \<Rightarrow> bool" (infixl "mem" 55)
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
  3698
where 
f14305fb698c authentic primrec
haftmann
parents: 25502
diff changeset
  3699
  "x mem [] \<longleftrightarrow> False"
28515
b26ba1b1dbda dropped superfluous if
haftmann
parents: 28370
diff changeset
  3700
  | "x mem (y#ys) \<longleftrightarrow> x = y \<or> x mem ys"
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3701
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3702
primrec
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3703
  null:: "'a list \<Rightarrow> bool"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3704
where
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3705
  "null [] = True"
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3706
  | "null (x#xs) = False"
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3707
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3708
primrec
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3709
  list_inter :: "'a list \<Rightarrow> 'a list \<Rightarrow> 'a list"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3710
where
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3711
  "list_inter [] bs = []"
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3712
  | "list_inter (a#as) bs =
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3713
     (if a \<in> set bs then a # list_inter as bs else list_inter as bs)"
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3714
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3715
primrec
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3716
  list_all :: "('a \<Rightarrow> bool) \<Rightarrow> ('a list \<Rightarrow> bool)"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3717
where
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3718
  "list_all P [] = True"
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3719
  | "list_all P (x#xs) = (P x \<and> list_all P xs)"
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3720
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3721
primrec
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3722
  list_ex :: "('a \<Rightarrow> bool) \<Rightarrow> 'a list \<Rightarrow> bool"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3723
where
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3724
  "list_ex P [] = False"
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3725
  | "list_ex P (x#xs) = (P x \<or> list_ex P xs)"
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3726
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3727
primrec
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3728
  filtermap :: "('a \<Rightarrow> 'b option) \<Rightarrow> 'a list \<Rightarrow> 'b list"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3729
where
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3730
  "filtermap f [] = []"
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3731
  | "filtermap f (x#xs) =
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3732
     (case f x of None \<Rightarrow> filtermap f xs
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3733
      | Some y \<Rightarrow> y # filtermap f xs)"
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3734
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3735
primrec
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3736
  map_filter :: "('a \<Rightarrow> 'b) \<Rightarrow> ('a \<Rightarrow> bool) \<Rightarrow> 'a list \<Rightarrow> 'b list"
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3737
where
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3738
  "map_filter f P [] = []"
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3739
  | "map_filter f P (x#xs) =
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3740
     (if P x then f x # map_filter f P xs else map_filter f P xs)"
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3741
28789
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3742
primrec
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3743
  length_unique :: "'a list \<Rightarrow> nat"
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3744
where
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3745
  "length_unique [] = 0"
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3746
  | "length_unique (x#xs) =
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3747
      (if x \<in> set xs then length_unique xs else Suc (length_unique xs))"
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3748
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3749
text {*
21754
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
  3750
  Only use @{text mem} for generating executable code.  Otherwise use
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
  3751
  @{prop "x : set xs"} instead --- it is much easier to reason about.
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3752
  The same is true for @{const list_all} and @{const list_ex}: write
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3753
  @{text "\<forall>x\<in>set xs"} and @{text "\<exists>x\<in>set xs"} instead because the HOL
21754
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
  3754
  quantifiers are aleady known to the automatic provers. In fact, the
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
  3755
  declarations in the code subsection make sure that @{text "\<in>"},
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
  3756
  @{text "\<forall>x\<in>set xs"} and @{text "\<exists>x\<in>set xs"} are implemented
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
  3757
  efficiently.
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3758
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3759
  Efficient emptyness check is implemented by @{const null}.
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3760
23060
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3761
  The functions @{const filtermap} and @{const map_filter} are just
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3762
  there to generate efficient code. Do not use
21754
6316163ae934 moved char/string syntax to Tools/string_syntax.ML;
wenzelm
parents: 21548
diff changeset
  3763
  them for modelling and proving.
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3764
*}
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3765
23060
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3766
lemma rev_foldl_cons [code]:
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3767
  "rev xs = foldl (\<lambda>xs x. x # xs) [] xs"
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3768
proof (induct xs)
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3769
  case Nil then show ?case by simp
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3770
next
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3771
  case Cons
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3772
  {
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3773
    fix x xs ys
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3774
    have "foldl (\<lambda>xs x. x # xs) ys xs @ [x]
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3775
      = foldl (\<lambda>xs x. x # xs) (ys @ [x]) xs"
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3776
    by (induct xs arbitrary: ys) auto
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3777
  }
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3778
  note aux = this
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3779
  show ?case by (induct xs) (auto simp add: Cons aux)
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3780
qed
0c0b03d0ec7e improved code for rev
haftmann
parents: 23029
diff changeset
  3781
24166
7b28dc69bdbb new nbe implementation
haftmann
parents: 24130
diff changeset
  3782
lemma mem_iff [code post]:
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3783
  "x mem xs \<longleftrightarrow> x \<in> set xs"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3784
by (induct xs) auto
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3785
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3786
lemmas in_set_code [code unfold] = mem_iff [symmetric]
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3787
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3788
lemma empty_null [code inline]:
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3789
  "xs = [] \<longleftrightarrow> null xs"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3790
by (cases xs) simp_all
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3791
24166
7b28dc69bdbb new nbe implementation
haftmann
parents: 24130
diff changeset
  3792
lemmas null_empty [code post] =
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3793
  empty_null [symmetric]
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3794
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3795
lemma list_inter_conv:
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3796
  "set (list_inter xs ys) = set xs \<inter> set ys"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3797
by (induct xs) auto
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3798
24166
7b28dc69bdbb new nbe implementation
haftmann
parents: 24130
diff changeset
  3799
lemma list_all_iff [code post]:
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3800
  "list_all P xs \<longleftrightarrow> (\<forall>x \<in> set xs. P x)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3801
by (induct xs) auto
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3802
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3803
lemmas list_ball_code [code unfold] = list_all_iff [symmetric]
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3804
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3805
lemma list_all_append [simp]:
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3806
  "list_all P (xs @ ys) \<longleftrightarrow> (list_all P xs \<and> list_all P ys)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3807
by (induct xs) auto
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3808
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3809
lemma list_all_rev [simp]:
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3810
  "list_all P (rev xs) \<longleftrightarrow> list_all P xs"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3811
by (simp add: list_all_iff)
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3812
22506
c78f1d924bfe two further properties about lists
haftmann
parents: 22493
diff changeset
  3813
lemma list_all_length:
c78f1d924bfe two further properties about lists
haftmann
parents: 22493
diff changeset
  3814
  "list_all P xs \<longleftrightarrow> (\<forall>n < length xs. P (xs ! n))"
c78f1d924bfe two further properties about lists
haftmann
parents: 22493
diff changeset
  3815
  unfolding list_all_iff by (auto intro: all_nth_imp_all_set)
c78f1d924bfe two further properties about lists
haftmann
parents: 22493
diff changeset
  3816
24166
7b28dc69bdbb new nbe implementation
haftmann
parents: 24130
diff changeset
  3817
lemma list_ex_iff [code post]:
22422
ee19cdb07528 stepping towards uniform lattice theory development in HOL
haftmann
parents: 22262
diff changeset
  3818
  "list_ex P xs \<longleftrightarrow> (\<exists>x \<in> set xs. P x)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3819
by (induct xs) simp_all
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3820
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3821
lemmas list_bex_code [code unfold] =
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3822
  list_ex_iff [symmetric]
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3823
22506
c78f1d924bfe two further properties about lists
haftmann
parents: 22493
diff changeset
  3824
lemma list_ex_length:
c78f1d924bfe two further properties about lists
haftmann
parents: 22493
diff changeset
  3825
  "list_ex P xs \<longleftrightarrow> (\<exists>n < length xs. P (xs ! n))"
c78f1d924bfe two further properties about lists
haftmann
parents: 22493
diff changeset
  3826
  unfolding list_ex_iff set_conv_nth by auto
c78f1d924bfe two further properties about lists
haftmann
parents: 22493
diff changeset
  3827
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3828
lemma filtermap_conv:
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3829
   "filtermap f xs = map (\<lambda>x. the (f x)) (filter (\<lambda>x. f x \<noteq> None) xs)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3830
by (induct xs) (simp_all split: option.split) 
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3831
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3832
lemma map_filter_conv [simp]:
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3833
  "map_filter f P xs = map f (filter P xs)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3834
by (induct xs) auto
21061
580dfc999ef6 added normal post setup; cleaned up "execution" constants
haftmann
parents: 21046
diff changeset
  3835
28823
dcbef866c9e2 tuned unfold_locales invocation
haftmann
parents: 28789
diff changeset
  3836
lemma length_remdups_length_unique [code inline]:
28789
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3837
  "length (remdups xs) = length_unique xs"
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3838
  by (induct xs) simp_all
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3839
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3840
hide (open) const length_unique
5a404273ea8f added length_unique operation for code generation
haftmann
parents: 28708
diff changeset
  3841
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  3842
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  3843
text {* Code for bounded quantification and summation over nats. *}
21891
b4e4ea3db161 added code lemmas for quantification over bounded nats
haftmann
parents: 21871
diff changeset
  3844
28072
a45e8c872dc1 It appears that the code generator (Stefan's) needs some laws that appear superfluous: {..n} = set ...
nipkow
parents: 28068
diff changeset
  3845
lemma atMost_upto [code unfold]:
a45e8c872dc1 It appears that the code generator (Stefan's) needs some laws that appear superfluous: {..n} = set ...
nipkow
parents: 28068
diff changeset
  3846
  "{..n} = set [0..<Suc n]"
a45e8c872dc1 It appears that the code generator (Stefan's) needs some laws that appear superfluous: {..n} = set ...
nipkow
parents: 28068
diff changeset
  3847
by auto
a45e8c872dc1 It appears that the code generator (Stefan's) needs some laws that appear superfluous: {..n} = set ...
nipkow
parents: 28068
diff changeset
  3848
a45e8c872dc1 It appears that the code generator (Stefan's) needs some laws that appear superfluous: {..n} = set ...
nipkow
parents: 28068
diff changeset
  3849
lemma atLeast_upt [code unfold]:
a45e8c872dc1 It appears that the code generator (Stefan's) needs some laws that appear superfluous: {..n} = set ...
nipkow
parents: 28068
diff changeset
  3850
  "{..<n} = set [0..<n]"
a45e8c872dc1 It appears that the code generator (Stefan's) needs some laws that appear superfluous: {..n} = set ...
nipkow
parents: 28068
diff changeset
  3851
by auto
a45e8c872dc1 It appears that the code generator (Stefan's) needs some laws that appear superfluous: {..n} = set ...
nipkow
parents: 28068
diff changeset
  3852
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  3853
lemma greaterThanLessThan_upt [code unfold]:
21891
b4e4ea3db161 added code lemmas for quantification over bounded nats
haftmann
parents: 21871
diff changeset
  3854
  "{n<..<m} = set [Suc n..<m]"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3855
by auto
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3856
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  3857
lemma atLeastLessThan_upt [code unfold]:
21891
b4e4ea3db161 added code lemmas for quantification over bounded nats
haftmann
parents: 21871
diff changeset
  3858
  "{n..<m} = set [n..<m]"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3859
by auto
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3860
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3861
lemma greaterThanAtMost_upt [code unfold]:
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  3862
  "{n<..m} = set [Suc n..<Suc m]"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3863
by auto
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3864
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3865
lemma atLeastAtMost_upt [code unfold]:
24645
1af302128da2 Generalized [_.._] from nat to linear orders
nipkow
parents: 24640
diff changeset
  3866
  "{n..m} = set [n..<Suc m]"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3867
by auto
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3868
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3869
lemma all_nat_less_eq [code unfold]:
21891
b4e4ea3db161 added code lemmas for quantification over bounded nats
haftmann
parents: 21871
diff changeset
  3870
  "(\<forall>m<n\<Colon>nat. P m) \<longleftrightarrow> (\<forall>m \<in> {0..<n}. P m)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3871
by auto
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3872
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3873
lemma ex_nat_less_eq [code unfold]:
21891
b4e4ea3db161 added code lemmas for quantification over bounded nats
haftmann
parents: 21871
diff changeset
  3874
  "(\<exists>m<n\<Colon>nat. P m) \<longleftrightarrow> (\<exists>m \<in> {0..<n}. P m)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3875
by auto
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3876
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3877
lemma all_nat_less [code unfold]:
21891
b4e4ea3db161 added code lemmas for quantification over bounded nats
haftmann
parents: 21871
diff changeset
  3878
  "(\<forall>m\<le>n\<Colon>nat. P m) \<longleftrightarrow> (\<forall>m \<in> {0..n}. P m)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3879
by auto
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3880
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3881
lemma ex_nat_less [code unfold]:
21891
b4e4ea3db161 added code lemmas for quantification over bounded nats
haftmann
parents: 21871
diff changeset
  3882
  "(\<exists>m\<le>n\<Colon>nat. P m) \<longleftrightarrow> (\<exists>m \<in> {0..n}. P m)"
24349
0dd8782fb02d Final mods for list comprehension
nipkow
parents: 24335
diff changeset
  3883
by auto
22799
ed7d53db2170 moved code generation pretty integers and characters to separate theories
haftmann
parents: 22793
diff changeset
  3884
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3885
lemma setsum_set_distinct_conv_listsum:
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3886
  "distinct xs \<Longrightarrow> setsum f (set xs) = listsum (map f xs)"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3887
by (induct xs) simp_all
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3888
26442
57fb6a8b099e restructuring; explicit case names for rule list_induct2
haftmann
parents: 26300
diff changeset
  3889
lemma setsum_set_upt_conv_listsum [code unfold]:
27715
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3890
  "setsum f (set [m..<n]) = listsum (map f [m..<n])"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3891
by (rule setsum_set_distinct_conv_listsum) simp
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3892
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3893
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3894
text {* Code for summation over ints. *}
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3895
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3896
lemma greaterThanLessThan_upto [code unfold]:
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3897
  "{i<..<j::int} = set [i+1..j - 1]"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3898
by auto
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3899
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3900
lemma atLeastLessThan_upto [code unfold]:
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3901
  "{i..<j::int} = set [i..j - 1]"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3902
by auto
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3903
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3904
lemma greaterThanAtMost_upto [code unfold]:
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3905
  "{i<..j::int} = set [i+1..j]"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3906
by auto
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3907
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3908
lemma atLeastAtMost_upto [code unfold]:
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3909
  "{i..j::int} = set [i..j]"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3910
by auto
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3911
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3912
lemma setsum_set_upto_conv_listsum [code unfold]:
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3913
  "setsum f (set [i..j::int]) = listsum (map f [i..j])"
087db5aacac3 made setsum executable on int.
nipkow
parents: 27693
diff changeset
  3914
by (rule setsum_set_distinct_conv_listsum) simp
24449
2f05cb7fed85 added (code) lemmas for setsum and foldl
nipkow
parents: 24349
diff changeset
  3915
23388
77645da0db85 tuned proofs: avoid implicit prems;
wenzelm
parents: 23279
diff changeset
  3916
end