| author | paulson | 
| Wed, 17 Sep 1997 16:39:43 +0200 | |
| changeset 3681 | 61c7469fd0b0 | 
| parent 2973 | 184c7cd8043d | 
| child 3692 | 9f9bcce140ce | 
| permissions | -rw-r--r-- | 
| 923 | 1 | (* Title: HOL/Prod.thy | 
| 2 | ID: Prod.thy,v 1.5 1994/08/19 09:04:27 lcp Exp | |
| 3 | Author: Lawrence C Paulson, Cambridge University Computer Laboratory | |
| 4 | Copyright 1992 University of Cambridge | |
| 5 | ||
| 6 | Ordered Pairs and the Cartesian product type. | |
| 7 | The unit type. | |
| 8 | *) | |
| 9 | ||
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changeset | 10 | Prod = Fun + equalities + | 
| 923 | 11 | |
| 2260 | 12 | |
| 13 | (** products **) | |
| 923 | 14 | |
| 15 | (* type definition *) | |
| 16 | ||
| 1558 | 17 | constdefs | 
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changeset | 18 | Pair_Rep :: ['a, 'b] => ['a, 'b] => bool | 
| 1558 | 19 | "Pair_Rep == (%a b. %x y. x=a & y=b)" | 
| 923 | 20 | |
| 1475 | 21 | typedef (Prod) | 
| 923 | 22 |   ('a, 'b) "*"          (infixr 20)
 | 
| 23 |     = "{f. ? a b. f = Pair_Rep (a::'a) (b::'b)}"
 | |
| 24 | ||
| 2260 | 25 | syntax (symbols) | 
| 26 |   "*"           :: [type, type] => type         ("(_ \\<times>/ _)" [21, 20] 20)
 | |
| 27 | ||
| 923 | 28 | |
| 29 | (* abstract constants and syntax *) | |
| 30 | ||
| 31 | consts | |
| 32 | fst :: "'a * 'b => 'a" | |
| 33 | snd :: "'a * 'b => 'b" | |
| 34 | split :: "[['a, 'b] => 'c, 'a * 'b] => 'c" | |
| 35 | prod_fun :: "['a => 'b, 'c => 'd, 'a * 'c] => 'b * 'd" | |
| 36 | Pair :: "['a, 'b] => 'a * 'b" | |
| 37 |   Sigma         :: "['a set, 'a => 'b set] => ('a * 'b) set"
 | |
| 38 | ||
| 2260 | 39 | |
| 40 | (* patterns -- extends pre-defined type "pttrn" used in abstractions *) | |
| 41 | ||
| 1068 | 42 | types pttrns | 
| 43 | ||
| 923 | 44 | syntax | 
| 2260 | 45 |   "@Tuple"      :: "['a, args] => 'a * 'b"      ("(1'(_,/ _'))")
 | 
| 923 | 46 | |
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changeset | 47 |   "_pttrn"      :: [pttrn, pttrns] => pttrn     ("'(_,/_')")
 | 
| 2260 | 48 |   ""            :: pttrn => pttrns              ("_")
 | 
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changeset | 49 |   "_pttrns"     :: [pttrn, pttrns] => pttrns    ("_,/_")
 | 
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changeset | 50 | |
| 2260 | 51 |   "@Sigma"      :: "[idt, 'a set, 'b set] => ('a * 'b) set"     ("(3SIGMA _:_./ _)" 10)
 | 
| 52 |   "@Times"      :: "['a set, 'a => 'b set] => ('a * 'b) set"    ("_ Times _" [81, 80] 80)
 | |
| 1636 | 53 | |
| 923 | 54 | translations | 
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changeset | 55 | "(x, y, z)" == "(x, (y, z))" | 
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changeset | 56 | "(x, y)" == "Pair x y" | 
| 923 | 57 | |
| 2260 | 58 | "%(x,y,zs).b" == "split(%x (y,zs).b)" | 
| 59 | "%(x,y).b" == "split(%x y.b)" | |
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changeset | 60 | "_abs (Pair x y) t" => "%(x,y).t" | 
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changeset | 61 | (* The last rule accommodates tuples in `case C ... (x,y) ... => ...' | 
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changeset | 62 | The (x,y) is parsed as `Pair x y' because it is logic, not pttrn *) | 
| 2260 | 63 | |
| 64 | "SIGMA x:A.B" => "Sigma A (%x.B)" | |
| 65 | "A Times B" => "Sigma A (_K B)" | |
| 1068 | 66 | |
| 2260 | 67 | syntax (symbols) | 
| 68 |   "@Sigma"      :: "[idt, 'a set, 'b set] => ('a * 'b) set"     ("(3\\<Sigma> _\\<in>_./ _)" 10)
 | |
| 69 |   "@Times"      :: "['a set, 'a => 'b set] => ('a * 'b) set"    ("_ \\<times> _" [81, 80] 80)
 | |
| 70 | ||
| 71 | ||
| 72 | (* definitions *) | |
| 1636 | 73 | |
| 923 | 74 | defs | 
| 75 | Pair_def "Pair a b == Abs_Prod(Pair_Rep a b)" | |
| 2393 | 76 | fst_def "fst p == @a. ? b. p = (a, b)" | 
| 77 | snd_def "snd p == @b. ? a. p = (a, b)" | |
| 1655 | 78 | split_def "split == (%c p. c (fst p) (snd p))" | 
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changeset | 79 | prod_fun_def "prod_fun f g == split(%x y.(f(x), g(y)))" | 
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changeset | 80 |   Sigma_def     "Sigma A B == UN x:A. UN y:B(x). {(x, y)}"
 | 
| 923 | 81 | |
| 2260 | 82 | |
| 83 | ||
| 84 | (** unit **) | |
| 923 | 85 | |
| 2886 | 86 | typedef  unit = "{True}"
 | 
| 923 | 87 | |
| 88 | consts | |
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changeset | 89 |   "()"          :: unit                           ("'(')")
 | 
| 923 | 90 | |
| 91 | defs | |
| 2880 | 92 | Unity_def "() == Abs_unit True" | 
| 1273 | 93 | |
| 923 | 94 | end | 
| 1636 | 95 | |
| 96 | ML | |
| 97 | ||
| 98 | val print_translation = [("Sigma", dependent_tr' ("@Sigma", "@Times"))];
 |