author | wenzelm |
Tue, 02 Aug 2022 12:57:04 +0200 | |
changeset 75734 | 7671f9fc66d7 |
parent 75694 | 1b812435a632 |
child 78955 | 74147aa81dbb |
permissions | -rw-r--r-- |
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
1 |
(* Author: Tobias Nipkow, Florian Haftmann, TU Muenchen *) |
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
2 |
|
60758 | 3 |
section \<open>Character and string types\<close> |
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
4 |
|
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
5 |
theory String |
74101 | 6 |
imports Enum Bit_Operations Code_Numeral |
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
7 |
begin |
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
8 |
|
68028 | 9 |
subsection \<open>Strings as list of bytes\<close> |
10 |
||
11 |
text \<open> |
|
12 |
When modelling strings, we follow the approach given |
|
69593 | 13 |
in \<^url>\<open>https://utf8everywhere.org/\<close>: |
68028 | 14 |
|
15 |
\<^item> Strings are a list of bytes (8 bit). |
|
16 |
||
17 |
\<^item> Byte values from 0 to 127 are US-ASCII. |
|
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
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18 |
|
68028 | 19 |
\<^item> Byte values from 128 to 255 are uninterpreted blobs. |
20 |
\<close> |
|
21 |
||
22 |
subsubsection \<open>Bytes as datatype\<close> |
|
23 |
||
24 |
datatype char = |
|
25 |
Char (digit0: bool) (digit1: bool) (digit2: bool) (digit3: bool) |
|
26 |
(digit4: bool) (digit5: bool) (digit6: bool) (digit7: bool) |
|
27 |
||
28 |
context comm_semiring_1 |
|
29 |
begin |
|
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more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
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diff
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30 |
|
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b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
31 |
definition of_char :: \<open>char \<Rightarrow> 'a\<close> |
72024 | 32 |
where \<open>of_char c = horner_sum of_bool 2 [digit0 c, digit1 c, digit2 c, digit3 c, digit4 c, digit5 c, digit6 c, digit7 c]\<close> |
68028 | 33 |
|
34 |
lemma of_char_Char [simp]: |
|
71535
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more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
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35 |
\<open>of_char (Char b0 b1 b2 b3 b4 b5 b6 b7) = |
72024 | 36 |
horner_sum of_bool 2 [b0, b1, b2, b3, b4, b5, b6, b7]\<close> |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
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37 |
by (simp add: of_char_def) |
68028 | 38 |
|
39 |
end |
|
40 |
||
75622
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
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41 |
lemma (in comm_semiring_1) of_nat_of_char: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
42 |
\<open>of_nat (of_char c) = of_char c\<close> |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
43 |
by (cases c) simp |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
44 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
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|
45 |
lemma (in comm_ring_1) of_int_of_char: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
46 |
\<open>of_int (of_char c) = of_char c\<close> |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
47 |
by (cases c) simp |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
48 |
|
75662 | 49 |
lemma nat_of_char [simp]: |
50 |
\<open>nat (of_char c) = of_char c\<close> |
|
51 |
by (cases c) (simp only: of_char_Char nat_horner_sum) |
|
52 |
||
75622
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
53 |
|
74108
3146646a43a7
simplified hierarchy of type classes for bit operations
haftmann
parents:
74101
diff
changeset
|
54 |
context unique_euclidean_semiring_with_bit_operations |
68028 | 55 |
begin |
56 |
||
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
57 |
definition char_of :: \<open>'a \<Rightarrow> char\<close> |
75085 | 58 |
where \<open>char_of n = Char (bit n 0) (bit n 1) (bit n 2) (bit n 3) (bit n 4) (bit n 5) (bit n 6) (bit n 7)\<close> |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
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59 |
|
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
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60 |
lemma char_of_take_bit_eq: |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
61 |
\<open>char_of (take_bit n m) = char_of m\<close> if \<open>n \<ge> 8\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
62 |
using that by (simp add: char_of_def bit_take_bit_iff) |
68028 | 63 |
|
64 |
lemma char_of_char [simp]: |
|
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
65 |
\<open>char_of (of_char c) = c\<close> |
72024 | 66 |
by (simp only: of_char_def char_of_def bit_horner_sum_bit_iff) simp |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
67 |
|
68028 | 68 |
lemma char_of_comp_of_char [simp]: |
69 |
"char_of \<circ> of_char = id" |
|
70 |
by (simp add: fun_eq_iff) |
|
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
71 |
|
68028 | 72 |
lemma inj_of_char: |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
73 |
\<open>inj of_char\<close> |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
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diff
changeset
|
74 |
proof (rule injI) |
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
75 |
fix c d |
68028 | 76 |
assume "of_char c = of_char d" |
77 |
then have "char_of (of_char c) = char_of (of_char d)" |
|
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
78 |
by simp |
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
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diff
changeset
|
79 |
then show "c = d" |
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
80 |
by simp |
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
81 |
qed |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
82 |
|
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
83 |
lemma of_char_eqI: |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
84 |
\<open>c = d\<close> if \<open>of_char c = of_char d\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
85 |
using that inj_of_char by (simp add: inj_eq) |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
86 |
|
68028 | 87 |
lemma of_char_eq_iff [simp]: |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
88 |
\<open>of_char c = of_char d \<longleftrightarrow> c = d\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
89 |
by (auto intro: of_char_eqI) |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
90 |
|
68028 | 91 |
lemma of_char_of [simp]: |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
92 |
\<open>of_char (char_of a) = a mod 256\<close> |
68028 | 93 |
proof - |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
94 |
have \<open>[0..<8] = [0, Suc 0, 2, 3, 4, 5, 6, 7 :: nat]\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
95 |
by (simp add: upt_eq_Cons_conv) |
75085 | 96 |
then have \<open>[bit a 0, bit a 1, bit a 2, bit a 3, bit a 4, bit a 5, bit a 6, bit a 7] = map (bit a) [0..<8]\<close> |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
97 |
by simp |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
98 |
then have \<open>of_char (char_of a) = take_bit 8 a\<close> |
72024 | 99 |
by (simp only: char_of_def of_char_def char.sel horner_sum_bit_eq_take_bit) |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
100 |
then show ?thesis |
68028 | 101 |
by (simp add: take_bit_eq_mod) |
102 |
qed |
|
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
103 |
|
68028 | 104 |
lemma char_of_mod_256 [simp]: |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
105 |
\<open>char_of (n mod 256) = char_of n\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
106 |
by (rule of_char_eqI) simp |
68028 | 107 |
|
108 |
lemma of_char_mod_256 [simp]: |
|
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
109 |
\<open>of_char c mod 256 = of_char c\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
110 |
proof - |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
111 |
have \<open>of_char (char_of (of_char c)) mod 256 = of_char (char_of (of_char c))\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
112 |
by (simp only: of_char_of) simp |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
113 |
then show ?thesis |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
114 |
by simp |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
115 |
qed |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
116 |
|
68028 | 117 |
lemma char_of_quasi_inj [simp]: |
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
118 |
\<open>char_of m = char_of n \<longleftrightarrow> m mod 256 = n mod 256\<close> (is \<open>?P \<longleftrightarrow> ?Q\<close>) |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
119 |
proof |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
120 |
assume ?Q |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
121 |
then show ?P |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
122 |
by (auto intro: of_char_eqI) |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
123 |
next |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
124 |
assume ?P |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
125 |
then have \<open>of_char (char_of m) = of_char (char_of n)\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
126 |
by simp |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
127 |
then show ?Q |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
128 |
by simp |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
129 |
qed |
68028 | 130 |
|
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
131 |
lemma char_of_eq_iff: |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
132 |
\<open>char_of n = c \<longleftrightarrow> take_bit 8 n = of_char c\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
133 |
by (auto intro: of_char_eqI simp add: take_bit_eq_mod) |
68028 | 134 |
|
135 |
lemma char_of_nat [simp]: |
|
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
136 |
\<open>char_of (of_nat n) = char_of n\<close> |
74309
42523fbf643b
explicit predicate for confined bit range avoids cyclic rewriting in presence of extensionality rule for bit values (contributed by Thomas Sewell)
haftmann
parents:
74108
diff
changeset
|
137 |
by (simp add: char_of_def String.char_of_def drop_bit_of_nat bit_simps possible_bit_def) |
68033
ad4b8b6892c3
uniform tagging for printable and non-printable literals
haftmann
parents:
68028
diff
changeset
|
138 |
|
68028 | 139 |
end |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
140 |
|
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
141 |
lemma inj_on_char_of_nat [simp]: |
68028 | 142 |
"inj_on char_of {0::nat..<256}" |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
143 |
by (rule inj_onI) simp |
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
144 |
|
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
145 |
lemma nat_of_char_less_256 [simp]: |
68028 | 146 |
"of_char c < (256 :: nat)" |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
147 |
proof - |
68028 | 148 |
have "of_char c mod (256 :: nat) < 256" |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
149 |
by arith |
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
150 |
then show ?thesis by simp |
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
151 |
qed |
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
152 |
|
68028 | 153 |
lemma range_nat_of_char: |
154 |
"range of_char = {0::nat..<256}" |
|
155 |
proof (rule; rule) |
|
156 |
fix n :: nat |
|
157 |
assume "n \<in> range of_char" |
|
158 |
then show "n \<in> {0..<256}" |
|
159 |
by auto |
|
160 |
next |
|
161 |
fix n :: nat |
|
162 |
assume "n \<in> {0..<256}" |
|
163 |
then have "n = of_char (char_of n)" |
|
164 |
by simp |
|
165 |
then show "n \<in> range of_char" |
|
166 |
by (rule range_eqI) |
|
167 |
qed |
|
168 |
||
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
169 |
lemma UNIV_char_of_nat: |
68028 | 170 |
"UNIV = char_of ` {0::nat..<256}" |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
171 |
proof - |
68028 | 172 |
have "range (of_char :: char \<Rightarrow> nat) = of_char ` char_of ` {0::nat..<256}" |
173 |
by (auto simp add: range_nat_of_char intro!: image_eqI) |
|
72170
7fa9605b226c
Another go with lex: now lexordp back in class ord
paulson <lp15@cam.ac.uk>
parents:
72164
diff
changeset
|
174 |
with inj_of_char [where ?'a = nat] show ?thesis |
68028 | 175 |
by (simp add: inj_image_eq_iff) |
62364
9209770bdcdf
more direct bootstrap of char type, still retaining the nibble representation for syntax
haftmann
parents:
61799
diff
changeset
|
176 |
qed |
9209770bdcdf
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177 |
|
62597 | 178 |
lemma card_UNIV_char: |
179 |
"card (UNIV :: char set) = 256" |
|
180 |
by (auto simp add: UNIV_char_of_nat card_image) |
|
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181 |
|
68028 | 182 |
context |
183 |
includes lifting_syntax integer.lifting natural.lifting |
|
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184 |
begin |
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185 |
|
68028 | 186 |
lemma [transfer_rule]: |
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187 |
\<open>(pcr_integer ===> (=)) char_of char_of\<close> |
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|
188 |
by (unfold char_of_def) transfer_prover |
68028 | 189 |
|
190 |
lemma [transfer_rule]: |
|
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191 |
\<open>((=) ===> pcr_integer) of_char of_char\<close> |
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|
192 |
by (unfold of_char_def) transfer_prover |
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193 |
|
68028 | 194 |
lemma [transfer_rule]: |
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195 |
\<open>(pcr_natural ===> (=)) char_of char_of\<close> |
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|
196 |
by (unfold char_of_def) transfer_prover |
68028 | 197 |
|
198 |
lemma [transfer_rule]: |
|
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199 |
\<open>((=) ===> pcr_natural) of_char of_char\<close> |
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|
200 |
by (unfold of_char_def) transfer_prover |
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201 |
|
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202 |
end |
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|
203 |
|
68028 | 204 |
lifting_update integer.lifting |
205 |
lifting_forget integer.lifting |
|
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|
206 |
|
68028 | 207 |
lifting_update natural.lifting |
208 |
lifting_forget natural.lifting |
|
62364
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|
209 |
|
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|
210 |
lemma size_char_eq_0 [simp, code]: |
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211 |
\<open>size c = 0\<close> for c :: char |
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|
212 |
by (cases c) simp |
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|
213 |
|
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|
214 |
lemma size'_char_eq_0 [simp, code]: |
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|
215 |
\<open>size_char c = 0\<close> |
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|
216 |
by (cases c) simp |
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|
217 |
|
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|
218 |
syntax |
62597 | 219 |
"_Char" :: "str_position \<Rightarrow> char" ("CHR _") |
62678 | 220 |
"_Char_ord" :: "num_const \<Rightarrow> char" ("CHR _") |
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|
221 |
|
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|
222 |
type_synonym string = "char list" |
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|
223 |
|
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|
224 |
syntax |
68028 | 225 |
"_String" :: "str_position \<Rightarrow> string" ("_") |
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|
226 |
|
69605 | 227 |
ML_file \<open>Tools/string_syntax.ML\<close> |
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|
228 |
|
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|
229 |
instantiation char :: enum |
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|
230 |
begin |
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|
231 |
|
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|
232 |
definition |
68028 | 233 |
"Enum.enum = [ |
234 |
CHR 0x00, CHR 0x01, CHR 0x02, CHR 0x03, |
|
62678 | 235 |
CHR 0x04, CHR 0x05, CHR 0x06, CHR 0x07, |
236 |
CHR 0x08, CHR 0x09, CHR ''\<newline>'', CHR 0x0B, |
|
237 |
CHR 0x0C, CHR 0x0D, CHR 0x0E, CHR 0x0F, |
|
238 |
CHR 0x10, CHR 0x11, CHR 0x12, CHR 0x13, |
|
239 |
CHR 0x14, CHR 0x15, CHR 0x16, CHR 0x17, |
|
240 |
CHR 0x18, CHR 0x19, CHR 0x1A, CHR 0x1B, |
|
241 |
CHR 0x1C, CHR 0x1D, CHR 0x1E, CHR 0x1F, |
|
242 |
CHR '' '', CHR ''!'', CHR 0x22, CHR ''#'', |
|
243 |
CHR ''$'', CHR ''%'', CHR ''&'', CHR 0x27, |
|
62597 | 244 |
CHR ''('', CHR '')'', CHR ''*'', CHR ''+'', |
245 |
CHR '','', CHR ''-'', CHR ''.'', CHR ''/'', |
|
246 |
CHR ''0'', CHR ''1'', CHR ''2'', CHR ''3'', |
|
247 |
CHR ''4'', CHR ''5'', CHR ''6'', CHR ''7'', |
|
248 |
CHR ''8'', CHR ''9'', CHR '':'', CHR '';'', |
|
249 |
CHR ''<'', CHR ''='', CHR ''>'', CHR ''?'', |
|
250 |
CHR ''@'', CHR ''A'', CHR ''B'', CHR ''C'', |
|
251 |
CHR ''D'', CHR ''E'', CHR ''F'', CHR ''G'', |
|
252 |
CHR ''H'', CHR ''I'', CHR ''J'', CHR ''K'', |
|
253 |
CHR ''L'', CHR ''M'', CHR ''N'', CHR ''O'', |
|
254 |
CHR ''P'', CHR ''Q'', CHR ''R'', CHR ''S'', |
|
255 |
CHR ''T'', CHR ''U'', CHR ''V'', CHR ''W'', |
|
256 |
CHR ''X'', CHR ''Y'', CHR ''Z'', CHR ''['', |
|
62678 | 257 |
CHR 0x5C, CHR '']'', CHR ''^'', CHR ''_'', |
258 |
CHR 0x60, CHR ''a'', CHR ''b'', CHR ''c'', |
|
62597 | 259 |
CHR ''d'', CHR ''e'', CHR ''f'', CHR ''g'', |
260 |
CHR ''h'', CHR ''i'', CHR ''j'', CHR ''k'', |
|
261 |
CHR ''l'', CHR ''m'', CHR ''n'', CHR ''o'', |
|
262 |
CHR ''p'', CHR ''q'', CHR ''r'', CHR ''s'', |
|
263 |
CHR ''t'', CHR ''u'', CHR ''v'', CHR ''w'', |
|
264 |
CHR ''x'', CHR ''y'', CHR ''z'', CHR ''{'', |
|
62678 | 265 |
CHR ''|'', CHR ''}'', CHR ''~'', CHR 0x7F, |
266 |
CHR 0x80, CHR 0x81, CHR 0x82, CHR 0x83, |
|
267 |
CHR 0x84, CHR 0x85, CHR 0x86, CHR 0x87, |
|
268 |
CHR 0x88, CHR 0x89, CHR 0x8A, CHR 0x8B, |
|
269 |
CHR 0x8C, CHR 0x8D, CHR 0x8E, CHR 0x8F, |
|
270 |
CHR 0x90, CHR 0x91, CHR 0x92, CHR 0x93, |
|
271 |
CHR 0x94, CHR 0x95, CHR 0x96, CHR 0x97, |
|
272 |
CHR 0x98, CHR 0x99, CHR 0x9A, CHR 0x9B, |
|
273 |
CHR 0x9C, CHR 0x9D, CHR 0x9E, CHR 0x9F, |
|
274 |
CHR 0xA0, CHR 0xA1, CHR 0xA2, CHR 0xA3, |
|
275 |
CHR 0xA4, CHR 0xA5, CHR 0xA6, CHR 0xA7, |
|
276 |
CHR 0xA8, CHR 0xA9, CHR 0xAA, CHR 0xAB, |
|
277 |
CHR 0xAC, CHR 0xAD, CHR 0xAE, CHR 0xAF, |
|
278 |
CHR 0xB0, CHR 0xB1, CHR 0xB2, CHR 0xB3, |
|
279 |
CHR 0xB4, CHR 0xB5, CHR 0xB6, CHR 0xB7, |
|
280 |
CHR 0xB8, CHR 0xB9, CHR 0xBA, CHR 0xBB, |
|
281 |
CHR 0xBC, CHR 0xBD, CHR 0xBE, CHR 0xBF, |
|
282 |
CHR 0xC0, CHR 0xC1, CHR 0xC2, CHR 0xC3, |
|
283 |
CHR 0xC4, CHR 0xC5, CHR 0xC6, CHR 0xC7, |
|
284 |
CHR 0xC8, CHR 0xC9, CHR 0xCA, CHR 0xCB, |
|
285 |
CHR 0xCC, CHR 0xCD, CHR 0xCE, CHR 0xCF, |
|
286 |
CHR 0xD0, CHR 0xD1, CHR 0xD2, CHR 0xD3, |
|
287 |
CHR 0xD4, CHR 0xD5, CHR 0xD6, CHR 0xD7, |
|
288 |
CHR 0xD8, CHR 0xD9, CHR 0xDA, CHR 0xDB, |
|
289 |
CHR 0xDC, CHR 0xDD, CHR 0xDE, CHR 0xDF, |
|
290 |
CHR 0xE0, CHR 0xE1, CHR 0xE2, CHR 0xE3, |
|
291 |
CHR 0xE4, CHR 0xE5, CHR 0xE6, CHR 0xE7, |
|
292 |
CHR 0xE8, CHR 0xE9, CHR 0xEA, CHR 0xEB, |
|
293 |
CHR 0xEC, CHR 0xED, CHR 0xEE, CHR 0xEF, |
|
294 |
CHR 0xF0, CHR 0xF1, CHR 0xF2, CHR 0xF3, |
|
295 |
CHR 0xF4, CHR 0xF5, CHR 0xF6, CHR 0xF7, |
|
296 |
CHR 0xF8, CHR 0xF9, CHR 0xFA, CHR 0xFB, |
|
297 |
CHR 0xFC, CHR 0xFD, CHR 0xFE, CHR 0xFF]" |
|
31484 | 298 |
|
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|
299 |
definition |
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|
300 |
"Enum.enum_all P \<longleftrightarrow> list_all P (Enum.enum :: char list)" |
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changeset
|
301 |
|
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|
302 |
definition |
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changeset
|
303 |
"Enum.enum_ex P \<longleftrightarrow> list_ex P (Enum.enum :: char list)" |
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changeset
|
304 |
|
62597 | 305 |
lemma enum_char_unfold: |
68028 | 306 |
"Enum.enum = map char_of [0..<256]" |
62597 | 307 |
proof - |
68028 | 308 |
have "map (of_char :: char \<Rightarrow> nat) Enum.enum = [0..<256]" |
309 |
by (simp add: enum_char_def of_char_def upt_conv_Cons_Cons numeral_2_eq_2 [symmetric]) |
|
310 |
then have "map char_of (map (of_char :: char \<Rightarrow> nat) Enum.enum) = |
|
311 |
map char_of [0..<256]" |
|
312 |
by simp |
|
313 |
then show ?thesis |
|
314 |
by simp |
|
62597 | 315 |
qed |
51160
599ff65b85e2
systematic conversions between nat and nibble/char;
haftmann
parents:
49972
diff
changeset
|
316 |
|
49972
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changeset
|
317 |
instance proof |
f11f8905d9fd
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changeset
|
318 |
show UNIV: "UNIV = set (Enum.enum :: char list)" |
62597 | 319 |
by (simp add: enum_char_unfold UNIV_char_of_nat atLeast0LessThan) |
49972
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incorporated constant chars into instantiation proof for enum;
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parents:
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diff
changeset
|
320 |
show "distinct (Enum.enum :: char list)" |
62597 | 321 |
by (auto simp add: enum_char_unfold distinct_map intro: inj_onI) |
49972
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parents:
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diff
changeset
|
322 |
show "\<And>P. Enum.enum_all P \<longleftrightarrow> Ball (UNIV :: char set) P" |
f11f8905d9fd
incorporated constant chars into instantiation proof for enum;
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parents:
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diff
changeset
|
323 |
by (simp add: UNIV enum_all_char_def list_all_iff) |
f11f8905d9fd
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haftmann
parents:
49948
diff
changeset
|
324 |
show "\<And>P. Enum.enum_ex P \<longleftrightarrow> Bex (UNIV :: char set) P" |
f11f8905d9fd
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parents:
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diff
changeset
|
325 |
by (simp add: UNIV enum_ex_char_def list_ex_iff) |
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changeset
|
326 |
qed |
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parents:
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changeset
|
327 |
|
f11f8905d9fd
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changeset
|
328 |
end |
f11f8905d9fd
incorporated constant chars into instantiation proof for enum;
haftmann
parents:
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diff
changeset
|
329 |
|
68028 | 330 |
lemma linorder_char: |
331 |
"class.linorder (\<lambda>c d. of_char c \<le> (of_char d :: nat)) (\<lambda>c d. of_char c < (of_char d :: nat))" |
|
332 |
by standard auto |
|
333 |
||
334 |
text \<open>Optimized version for execution\<close> |
|
335 |
||
336 |
definition char_of_integer :: "integer \<Rightarrow> char" |
|
337 |
where [code_abbrev]: "char_of_integer = char_of" |
|
338 |
||
339 |
definition integer_of_char :: "char \<Rightarrow> integer" |
|
340 |
where [code_abbrev]: "integer_of_char = of_char" |
|
341 |
||
62597 | 342 |
lemma char_of_integer_code [code]: |
68028 | 343 |
"char_of_integer k = (let |
344 |
(q0, b0) = bit_cut_integer k; |
|
345 |
(q1, b1) = bit_cut_integer q0; |
|
346 |
(q2, b2) = bit_cut_integer q1; |
|
347 |
(q3, b3) = bit_cut_integer q2; |
|
348 |
(q4, b4) = bit_cut_integer q3; |
|
349 |
(q5, b5) = bit_cut_integer q4; |
|
350 |
(q6, b6) = bit_cut_integer q5; |
|
351 |
(_, b7) = bit_cut_integer q6 |
|
352 |
in Char b0 b1 b2 b3 b4 b5 b6 b7)" |
|
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
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parents:
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diff
changeset
|
353 |
by (simp add: bit_cut_integer_def char_of_integer_def char_of_def div_mult2_numeral_eq bit_iff_odd_drop_bit drop_bit_eq_div) |
49948
744934b818c7
moved quite generic material from theory Enum to more appropriate places
haftmann
parents:
49834
diff
changeset
|
354 |
|
68028 | 355 |
lemma integer_of_char_code [code]: |
356 |
"integer_of_char (Char b0 b1 b2 b3 b4 b5 b6 b7) = |
|
357 |
((((((of_bool b7 * 2 + of_bool b6) * 2 + |
|
358 |
of_bool b5) * 2 + of_bool b4) * 2 + |
|
359 |
of_bool b3) * 2 + of_bool b2) * 2 + |
|
360 |
of_bool b1) * 2 + of_bool b0" |
|
71535
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parents:
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diff
changeset
|
361 |
by (simp add: integer_of_char_def of_char_def) |
66331 | 362 |
|
31051
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parents:
diff
changeset
|
363 |
|
68028 | 364 |
subsection \<open>Strings as dedicated type for target language code generation\<close> |
365 |
||
366 |
subsubsection \<open>Logical specification\<close> |
|
367 |
||
368 |
context |
|
369 |
begin |
|
370 |
||
371 |
qualified definition ascii_of :: "char \<Rightarrow> char" |
|
372 |
where "ascii_of c = Char (digit0 c) (digit1 c) (digit2 c) (digit3 c) (digit4 c) (digit5 c) (digit6 c) False" |
|
39250
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
373 |
|
68028 | 374 |
qualified lemma ascii_of_Char [simp]: |
375 |
"ascii_of (Char b0 b1 b2 b3 b4 b5 b6 b7) = Char b0 b1 b2 b3 b4 b5 b6 False" |
|
376 |
by (simp add: ascii_of_def) |
|
377 |
||
75622
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
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diff
changeset
|
378 |
qualified lemma digit0_ascii_of_iff [simp]: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
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diff
changeset
|
379 |
"digit0 (String.ascii_of c) \<longleftrightarrow> digit0 c" |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
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diff
changeset
|
380 |
by (simp add: String.ascii_of_def) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
381 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
382 |
qualified lemma digit1_ascii_of_iff [simp]: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
383 |
"digit1 (String.ascii_of c) \<longleftrightarrow> digit1 c" |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
384 |
by (simp add: String.ascii_of_def) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
385 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
386 |
qualified lemma digit2_ascii_of_iff [simp]: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
387 |
"digit2 (String.ascii_of c) \<longleftrightarrow> digit2 c" |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
388 |
by (simp add: String.ascii_of_def) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
389 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
390 |
qualified lemma digit3_ascii_of_iff [simp]: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
391 |
"digit3 (String.ascii_of c) \<longleftrightarrow> digit3 c" |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
392 |
by (simp add: String.ascii_of_def) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
393 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
394 |
qualified lemma digit4_ascii_of_iff [simp]: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
395 |
"digit4 (String.ascii_of c) \<longleftrightarrow> digit4 c" |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
396 |
by (simp add: String.ascii_of_def) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
397 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
398 |
qualified lemma digit5_ascii_of_iff [simp]: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
399 |
"digit5 (String.ascii_of c) \<longleftrightarrow> digit5 c" |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
400 |
by (simp add: String.ascii_of_def) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
401 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
402 |
qualified lemma digit6_ascii_of_iff [simp]: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
403 |
"digit6 (String.ascii_of c) \<longleftrightarrow> digit6 c" |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
404 |
by (simp add: String.ascii_of_def) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
405 |
|
68028 | 406 |
qualified lemma not_digit7_ascii_of [simp]: |
407 |
"\<not> digit7 (ascii_of c)" |
|
408 |
by (simp add: ascii_of_def) |
|
409 |
||
410 |
qualified lemma ascii_of_idem: |
|
411 |
"ascii_of c = c" if "\<not> digit7 c" |
|
412 |
using that by (cases c) simp |
|
39250
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
413 |
|
68028 | 414 |
qualified typedef literal = "{cs. \<forall>c\<in>set cs. \<not> digit7 c}" |
415 |
morphisms explode Abs_literal |
|
416 |
proof |
|
417 |
show "[] \<in> {cs. \<forall>c\<in>set cs. \<not> digit7 c}" |
|
418 |
by simp |
|
419 |
qed |
|
420 |
||
421 |
qualified setup_lifting type_definition_literal |
|
59484
a130ae7a9398
slightly more standard code setup for String.literal, with explicit special case in predicate compiler
haftmann
parents:
59483
diff
changeset
|
422 |
|
68028 | 423 |
qualified lift_definition implode :: "string \<Rightarrow> literal" |
424 |
is "map ascii_of" |
|
425 |
by auto |
|
426 |
||
427 |
qualified lemma implode_explode_eq [simp]: |
|
428 |
"String.implode (String.explode s) = s" |
|
429 |
proof transfer |
|
430 |
fix cs |
|
431 |
show "map ascii_of cs = cs" if "\<forall>c\<in>set cs. \<not> digit7 c" |
|
432 |
using that |
|
433 |
by (induction cs) (simp_all add: ascii_of_idem) |
|
434 |
qed |
|
435 |
||
436 |
qualified lemma explode_implode_eq [simp]: |
|
437 |
"String.explode (String.implode cs) = map ascii_of cs" |
|
59484
a130ae7a9398
slightly more standard code setup for String.literal, with explicit special case in predicate compiler
haftmann
parents:
59483
diff
changeset
|
438 |
by transfer rule |
54594
a2d1522cdd54
setup lifting/transfer for String.literal
Andreas Lochbihler
parents:
54317
diff
changeset
|
439 |
|
68028 | 440 |
end |
441 |
||
75622
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
442 |
context unique_euclidean_semiring_with_bit_operations |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
443 |
begin |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
444 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
445 |
context |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
446 |
begin |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
447 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
448 |
qualified lemma char_of_ascii_of [simp]: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
449 |
\<open>of_char (String.ascii_of c) = take_bit 7 (of_char c)\<close> |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
450 |
by (cases c) (simp only: String.ascii_of_Char of_char_Char take_bit_horner_sum_bit_eq, simp) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
451 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
452 |
qualified lemma ascii_of_char_of: |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
453 |
\<open>String.ascii_of (char_of a) = char_of (take_bit 7 a)\<close> |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
454 |
by (simp add: char_of_def bit_simps) |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
455 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
456 |
end |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
457 |
|
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
458 |
end |
53b61706749b
Centralized some char-related lemmas in distribution.
haftmann
parents:
75398
diff
changeset
|
459 |
|
68028 | 460 |
|
461 |
subsubsection \<open>Syntactic representation\<close> |
|
462 |
||
463 |
text \<open> |
|
464 |
Logical ground representations for literals are: |
|
465 |
||
69272 | 466 |
\<^enum> \<open>0\<close> for the empty literal; |
66251
cd935b7cb3fb
proper concept of code declaration wrt. atomicity and Isar declarations
haftmann
parents:
66190
diff
changeset
|
467 |
|
69272 | 468 |
\<^enum> \<open>Literal b0 \<dots> b6 s\<close> for a literal starting with one |
68028 | 469 |
character and continued by another literal. |
470 |
||
471 |
Syntactic representations for literals are: |
|
472 |
||
69272 | 473 |
\<^enum> Printable text as string prefixed with \<open>STR\<close>; |
68028 | 474 |
|
69272 | 475 |
\<^enum> A single ascii value as numerical hexadecimal value prefixed with \<open>STR\<close>. |
68028 | 476 |
\<close> |
477 |
||
478 |
instantiation String.literal :: zero |
|
39250
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
479 |
begin |
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
480 |
|
68028 | 481 |
context |
482 |
begin |
|
483 |
||
484 |
qualified lift_definition zero_literal :: String.literal |
|
485 |
is Nil |
|
486 |
by simp |
|
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
487 |
|
39250
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
488 |
instance .. |
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
489 |
|
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
490 |
end |
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
491 |
|
68028 | 492 |
end |
493 |
||
494 |
context |
|
39250
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
495 |
begin |
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
496 |
|
68028 | 497 |
qualified abbreviation (output) empty_literal :: String.literal |
498 |
where "empty_literal \<equiv> 0" |
|
499 |
||
500 |
qualified lift_definition Literal :: "bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> String.literal \<Rightarrow> String.literal" |
|
501 |
is "\<lambda>b0 b1 b2 b3 b4 b5 b6 cs. Char b0 b1 b2 b3 b4 b5 b6 False # cs" |
|
502 |
by auto |
|
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
503 |
|
68028 | 504 |
qualified lemma Literal_eq_iff [simp]: |
505 |
"Literal b0 b1 b2 b3 b4 b5 b6 s = Literal c0 c1 c2 c3 c4 c5 c6 t |
|
506 |
\<longleftrightarrow> (b0 \<longleftrightarrow> c0) \<and> (b1 \<longleftrightarrow> c1) \<and> (b2 \<longleftrightarrow> c2) \<and> (b3 \<longleftrightarrow> c3) |
|
507 |
\<and> (b4 \<longleftrightarrow> c4) \<and> (b5 \<longleftrightarrow> c5) \<and> (b6 \<longleftrightarrow> c6) \<and> s = t" |
|
508 |
by transfer simp |
|
509 |
||
510 |
qualified lemma empty_neq_Literal [simp]: |
|
511 |
"empty_literal \<noteq> Literal b0 b1 b2 b3 b4 b5 b6 s" |
|
512 |
by transfer simp |
|
513 |
||
514 |
qualified lemma Literal_neq_empty [simp]: |
|
515 |
"Literal b0 b1 b2 b3 b4 b5 b6 s \<noteq> empty_literal" |
|
516 |
by transfer simp |
|
39250
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
517 |
|
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
518 |
end |
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
519 |
|
68028 | 520 |
code_datatype "0 :: String.literal" String.Literal |
521 |
||
522 |
syntax |
|
523 |
"_Literal" :: "str_position \<Rightarrow> String.literal" ("STR _") |
|
68033
ad4b8b6892c3
uniform tagging for printable and non-printable literals
haftmann
parents:
68028
diff
changeset
|
524 |
"_Ascii" :: "num_const \<Rightarrow> String.literal" ("STR _") |
54594
a2d1522cdd54
setup lifting/transfer for String.literal
Andreas Lochbihler
parents:
54317
diff
changeset
|
525 |
|
69605 | 526 |
ML_file \<open>Tools/literal.ML\<close> |
68028 | 527 |
|
52365
95186e6e4bf4
reflexive nbe equation for equality on String.literal
haftmann
parents:
51717
diff
changeset
|
528 |
|
68028 | 529 |
subsubsection \<open>Operations\<close> |
530 |
||
531 |
instantiation String.literal :: plus |
|
67730 | 532 |
begin |
533 |
||
68028 | 534 |
context |
535 |
begin |
|
536 |
||
537 |
qualified lift_definition plus_literal :: "String.literal \<Rightarrow> String.literal \<Rightarrow> String.literal" |
|
538 |
is "(@)" |
|
539 |
by auto |
|
67730 | 540 |
|
541 |
instance .. |
|
542 |
||
543 |
end |
|
544 |
||
68028 | 545 |
end |
67730 | 546 |
|
68028 | 547 |
instance String.literal :: monoid_add |
548 |
by (standard; transfer) simp_all |
|
549 |
||
550 |
instantiation String.literal :: size |
|
67729 | 551 |
begin |
552 |
||
68028 | 553 |
context |
554 |
includes literal.lifting |
|
555 |
begin |
|
556 |
||
557 |
lift_definition size_literal :: "String.literal \<Rightarrow> nat" |
|
558 |
is length . |
|
559 |
||
560 |
end |
|
67729 | 561 |
|
562 |
instance .. |
|
563 |
||
564 |
end |
|
565 |
||
68028 | 566 |
instantiation String.literal :: equal |
567 |
begin |
|
568 |
||
569 |
context |
|
570 |
begin |
|
571 |
||
572 |
qualified lift_definition equal_literal :: "String.literal \<Rightarrow> String.literal \<Rightarrow> bool" |
|
573 |
is HOL.equal . |
|
574 |
||
575 |
instance |
|
576 |
by (standard; transfer) (simp add: equal) |
|
577 |
||
578 |
end |
|
579 |
||
580 |
end |
|
581 |
||
582 |
instantiation String.literal :: linorder |
|
583 |
begin |
|
67729 | 584 |
|
68028 | 585 |
context |
586 |
begin |
|
587 |
||
588 |
qualified lift_definition less_eq_literal :: "String.literal \<Rightarrow> String.literal \<Rightarrow> bool" |
|
72170
7fa9605b226c
Another go with lex: now lexordp back in class ord
paulson <lp15@cam.ac.uk>
parents:
72164
diff
changeset
|
589 |
is "ord.lexordp_eq (\<lambda>c d. of_char c < (of_char d :: nat))" |
68028 | 590 |
. |
591 |
||
592 |
qualified lift_definition less_literal :: "String.literal \<Rightarrow> String.literal \<Rightarrow> bool" |
|
72170
7fa9605b226c
Another go with lex: now lexordp back in class ord
paulson <lp15@cam.ac.uk>
parents:
72164
diff
changeset
|
593 |
is "ord.lexordp (\<lambda>c d. of_char c < (of_char d :: nat))" |
68028 | 594 |
. |
595 |
||
596 |
instance proof - |
|
72170
7fa9605b226c
Another go with lex: now lexordp back in class ord
paulson <lp15@cam.ac.uk>
parents:
72164
diff
changeset
|
597 |
from linorder_char interpret linorder "ord.lexordp_eq (\<lambda>c d. of_char c < (of_char d :: nat))" |
7fa9605b226c
Another go with lex: now lexordp back in class ord
paulson <lp15@cam.ac.uk>
parents:
72164
diff
changeset
|
598 |
"ord.lexordp (\<lambda>c d. of_char c < (of_char d :: nat)) :: string \<Rightarrow> string \<Rightarrow> bool" |
68028 | 599 |
by (rule linorder.lexordp_linorder) |
600 |
show "PROP ?thesis" |
|
601 |
by (standard; transfer) (simp_all add: less_le_not_le linear) |
|
602 |
qed |
|
603 |
||
604 |
end |
|
605 |
||
606 |
end |
|
67730 | 607 |
|
68028 | 608 |
lemma infinite_literal: |
609 |
"infinite (UNIV :: String.literal set)" |
|
610 |
proof - |
|
611 |
define S where "S = range (\<lambda>n. replicate n CHR ''A'')" |
|
612 |
have "inj_on String.implode S" |
|
613 |
proof (rule inj_onI) |
|
614 |
fix cs ds |
|
615 |
assume "String.implode cs = String.implode ds" |
|
616 |
then have "String.explode (String.implode cs) = String.explode (String.implode ds)" |
|
617 |
by simp |
|
618 |
moreover assume "cs \<in> S" and "ds \<in> S" |
|
619 |
ultimately show "cs = ds" |
|
620 |
by (auto simp add: S_def) |
|
621 |
qed |
|
622 |
moreover have "infinite S" |
|
623 |
by (auto simp add: S_def dest: finite_range_imageI [of _ length]) |
|
624 |
ultimately have "infinite (String.implode ` S)" |
|
625 |
by (simp add: finite_image_iff) |
|
626 |
then show ?thesis |
|
627 |
by (auto intro: finite_subset) |
|
628 |
qed |
|
629 |
||
630 |
||
631 |
subsubsection \<open>Executable conversions\<close> |
|
632 |
||
633 |
context |
|
634 |
begin |
|
635 |
||
636 |
qualified lift_definition asciis_of_literal :: "String.literal \<Rightarrow> integer list" |
|
637 |
is "map of_char" |
|
638 |
. |
|
639 |
||
69879 | 640 |
qualified lemma asciis_of_zero [simp, code]: |
641 |
"asciis_of_literal 0 = []" |
|
642 |
by transfer simp |
|
643 |
||
644 |
qualified lemma asciis_of_Literal [simp, code]: |
|
645 |
"asciis_of_literal (String.Literal b0 b1 b2 b3 b4 b5 b6 s) = |
|
646 |
of_char (Char b0 b1 b2 b3 b4 b5 b6 False) # asciis_of_literal s " |
|
647 |
by transfer simp |
|
648 |
||
68028 | 649 |
qualified lift_definition literal_of_asciis :: "integer list \<Rightarrow> String.literal" |
650 |
is "map (String.ascii_of \<circ> char_of)" |
|
651 |
by auto |
|
55426
90f2ceed2828
make lifting setup for String.literal local to prevent transfer from replacing STR ''...'' literals
Andreas Lochbihler
parents:
55015
diff
changeset
|
652 |
|
69879 | 653 |
qualified lemma literal_of_asciis_Nil [simp, code]: |
654 |
"literal_of_asciis [] = 0" |
|
655 |
by transfer simp |
|
656 |
||
657 |
qualified lemma literal_of_asciis_Cons [simp, code]: |
|
658 |
"literal_of_asciis (k # ks) = (case char_of k |
|
659 |
of Char b0 b1 b2 b3 b4 b5 b6 b7 \<Rightarrow> String.Literal b0 b1 b2 b3 b4 b5 b6 (literal_of_asciis ks))" |
|
660 |
by (simp add: char_of_def) (transfer, simp add: char_of_def) |
|
661 |
||
68028 | 662 |
qualified lemma literal_of_asciis_of_literal [simp]: |
663 |
"literal_of_asciis (asciis_of_literal s) = s" |
|
664 |
proof transfer |
|
665 |
fix cs |
|
666 |
assume "\<forall>c\<in>set cs. \<not> digit7 c" |
|
667 |
then show "map (String.ascii_of \<circ> char_of) (map of_char cs) = cs" |
|
72170
7fa9605b226c
Another go with lex: now lexordp back in class ord
paulson <lp15@cam.ac.uk>
parents:
72164
diff
changeset
|
668 |
by (induction cs) (simp_all add: String.ascii_of_idem) |
68028 | 669 |
qed |
670 |
||
671 |
qualified lemma explode_code [code]: |
|
672 |
"String.explode s = map char_of (asciis_of_literal s)" |
|
673 |
by transfer simp |
|
674 |
||
675 |
qualified lemma implode_code [code]: |
|
676 |
"String.implode cs = literal_of_asciis (map of_char cs)" |
|
677 |
by transfer simp |
|
64994
6e4c05e8edbb
computation preprocessing rules to allow literals as input for computations
haftmann
parents:
64630
diff
changeset
|
678 |
|
69879 | 679 |
qualified lemma equal_literal [code]: |
680 |
"HOL.equal (String.Literal b0 b1 b2 b3 b4 b5 b6 s) |
|
681 |
(String.Literal a0 a1 a2 a3 a4 a5 a6 r) |
|
682 |
\<longleftrightarrow> (b0 \<longleftrightarrow> a0) \<and> (b1 \<longleftrightarrow> a1) \<and> (b2 \<longleftrightarrow> a2) \<and> (b3 \<longleftrightarrow> a3) |
|
683 |
\<and> (b4 \<longleftrightarrow> a4) \<and> (b5 \<longleftrightarrow> a5) \<and> (b6 \<longleftrightarrow> a6) \<and> (s = r)" |
|
684 |
by (simp add: equal) |
|
68028 | 685 |
|
69879 | 686 |
end |
68028 | 687 |
|
688 |
||
689 |
subsubsection \<open>Technical code generation setup\<close> |
|
690 |
||
691 |
text \<open>Alternative constructor for generated computations\<close> |
|
692 |
||
693 |
context |
|
72170
7fa9605b226c
Another go with lex: now lexordp back in class ord
paulson <lp15@cam.ac.uk>
parents:
72164
diff
changeset
|
694 |
begin |
68028 | 695 |
|
696 |
qualified definition Literal' :: "bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> bool \<Rightarrow> String.literal \<Rightarrow> String.literal" |
|
697 |
where [simp]: "Literal' = String.Literal" |
|
698 |
||
699 |
lemma [code]: |
|
71535
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
700 |
\<open>Literal' b0 b1 b2 b3 b4 b5 b6 s = String.literal_of_asciis |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
701 |
[foldr (\<lambda>b k. of_bool b + k * 2) [b0, b1, b2, b3, b4, b5, b6] 0] + s\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
702 |
proof - |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
703 |
have \<open>foldr (\<lambda>b k. of_bool b + k * 2) [b0, b1, b2, b3, b4, b5, b6] 0 = of_char (Char b0 b1 b2 b3 b4 b5 b6 False)\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
704 |
by simp |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
705 |
moreover have \<open>Literal' b0 b1 b2 b3 b4 b5 b6 s = String.literal_of_asciis |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
706 |
[of_char (Char b0 b1 b2 b3 b4 b5 b6 False)] + s\<close> |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
707 |
by (unfold Literal'_def) (transfer, simp only: list.simps comp_apply char_of_char, simp) |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
708 |
ultimately show ?thesis |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
709 |
by simp |
b612edee9b0c
more frugal simp rules for bit operations; more pervasive use of bit selector
haftmann
parents:
71094
diff
changeset
|
710 |
qed |
64994
6e4c05e8edbb
computation preprocessing rules to allow literals as input for computations
haftmann
parents:
64630
diff
changeset
|
711 |
|
6e4c05e8edbb
computation preprocessing rules to allow literals as input for computations
haftmann
parents:
64630
diff
changeset
|
712 |
lemma [code_computation_unfold]: |
68028 | 713 |
"String.Literal = Literal'" |
714 |
by simp |
|
64994
6e4c05e8edbb
computation preprocessing rules to allow literals as input for computations
haftmann
parents:
64630
diff
changeset
|
715 |
|
68028 | 716 |
end |
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
717 |
|
75694 | 718 |
code_reserved SML string String Char Str_Literal |
719 |
code_reserved OCaml string String Char Str_Literal |
|
68028 | 720 |
code_reserved Haskell Prelude |
34886 | 721 |
code_reserved Scala string |
33237 | 722 |
|
75647
34cd1d210b92
officical abstract characters for code generation
haftmann
parents:
75622
diff
changeset
|
723 |
code_identifier |
34cd1d210b92
officical abstract characters for code generation
haftmann
parents:
75622
diff
changeset
|
724 |
code_module String \<rightharpoonup> |
34cd1d210b92
officical abstract characters for code generation
haftmann
parents:
75622
diff
changeset
|
725 |
(SML) Str and (OCaml) Str and (Haskell) Str and (Scala) Str |
34cd1d210b92
officical abstract characters for code generation
haftmann
parents:
75622
diff
changeset
|
726 |
|
52435
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
727 |
code_printing |
68028 | 728 |
type_constructor String.literal \<rightharpoonup> |
52435
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
729 |
(SML) "string" |
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
730 |
and (OCaml) "string" |
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
731 |
and (Haskell) "String" |
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
732 |
and (Scala) "String" |
68028 | 733 |
| constant "STR ''''" \<rightharpoonup> |
734 |
(SML) "\"\"" |
|
735 |
and (OCaml) "\"\"" |
|
736 |
and (Haskell) "\"\"" |
|
737 |
and (Scala) "\"\"" |
|
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
738 |
|
60758 | 739 |
setup \<open> |
68028 | 740 |
fold Literal.add_code ["SML", "OCaml", "Haskell", "Scala"] |
60758 | 741 |
\<close> |
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
742 |
|
52435
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
743 |
code_printing |
75694 | 744 |
code_module "Str_Literal" \<rightharpoonup> |
745 |
(SML) \<open>structure Str_Literal = |
|
746 |
struct |
|
747 |
||
748 |
fun map f [] = [] |
|
749 |
| map f (x :: xs) = f x :: map f xs; (* deliberate clone not relying on List._ module *) |
|
750 |
||
751 |
fun check_ascii (k : IntInf.int) = |
|
752 |
if 0 <= k andalso k < 128 |
|
753 |
then k |
|
754 |
else raise Fail "Non-ASCII character in literal"; |
|
755 |
||
756 |
val char_of_ascii = Char.chr o IntInf.toInt o check_ascii; |
|
757 |
||
758 |
val ascii_of_char = check_ascii o IntInf.fromInt o Char.ord; |
|
759 |
||
760 |
val literal_of_asciis = String.implode o map char_of_ascii; |
|
761 |
||
762 |
val asciis_of_literal = map ascii_of_char o String.explode; |
|
763 |
||
764 |
end;\<close> for constant String.literal_of_asciis String.asciis_of_literal |
|
765 |
and (OCaml) \<open>module Str_Literal = |
|
766 |
struct |
|
767 |
||
768 |
let implode f xs = |
|
769 |
let rec length xs = match xs with |
|
770 |
[] -> 0 |
|
771 |
| x :: xs -> 1 + length xs in |
|
772 |
let rec nth xs n = match xs with |
|
773 |
(x :: xs) -> if n <= 0 then x else nth xs (n - 1) |
|
774 |
in String.init (length xs) (fun n -> f (nth xs n));; |
|
775 |
||
776 |
let explode f s = |
|
777 |
let rec map_range f n = |
|
778 |
if n <= 0 then [] else map_range f (n - 1) @ [f n] |
|
779 |
in map_range (fun n -> f (String.get s n)) (String.length s);; |
|
780 |
||
781 |
let z_128 = Z.of_int 128;; |
|
782 |
||
783 |
let check_ascii (k : Z.t) = |
|
784 |
if Z.leq Z.zero k && Z.lt k z_128 |
|
785 |
then k |
|
786 |
else failwith "Non-ASCII character in literal";; |
|
787 |
||
788 |
let char_of_ascii k = Char.chr (Z.to_int (check_ascii k));; |
|
789 |
||
790 |
let ascii_of_char c = check_ascii (Z.of_int (Char.code c));; |
|
791 |
||
792 |
let literal_of_asciis ks = implode char_of_ascii ks;; |
|
793 |
||
794 |
let asciis_of_literal s = explode ascii_of_char s;; |
|
795 |
||
796 |
end;;\<close> for constant String.literal_of_asciis String.asciis_of_literal |
|
797 |
| constant "(+) :: String.literal \<Rightarrow> String.literal \<Rightarrow> String.literal" \<rightharpoonup> |
|
68028 | 798 |
(SML) infixl 18 "^" |
799 |
and (OCaml) infixr 6 "^" |
|
800 |
and (Haskell) infixr 5 "++" |
|
801 |
and (Scala) infixl 7 "+" |
|
802 |
| constant String.literal_of_asciis \<rightharpoonup> |
|
75694 | 803 |
(SML) "Str'_Literal.literal'_of'_asciis" |
804 |
and (OCaml) "Str'_Literal.literal'_of'_asciis" |
|
68028 | 805 |
and (Haskell) "map/ (let chr k | (0 <= k && k < 128) = Prelude.toEnum k :: Prelude.Char in chr . Prelude.fromInteger)" |
806 |
and (Scala) "\"\"/ ++/ _.map((k: BigInt) => if (BigInt(0) <= k && k < BigInt(128)) k.charValue else sys.error(\"Non-ASCII character in literal\"))" |
|
807 |
| constant String.asciis_of_literal \<rightharpoonup> |
|
75694 | 808 |
(SML) "Str'_Literal.asciis'_of'_literal" |
809 |
and (OCaml) "Str'_Literal.asciis'_of'_literal" |
|
68028 | 810 |
and (Haskell) "map/ (let ord k | (k < 128) = Prelude.toInteger k in ord . (Prelude.fromEnum :: Prelude.Char -> Prelude.Int))" |
811 |
and (Scala) "!(_.toList.map(c => { val k: Int = c.toInt; if (k < 128) BigInt(k) else sys.error(\"Non-ASCII character in literal\") }))" |
|
812 |
| class_instance String.literal :: equal \<rightharpoonup> |
|
52435
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
813 |
(Haskell) - |
68028 | 814 |
| constant "HOL.equal :: String.literal \<Rightarrow> String.literal \<Rightarrow> bool" \<rightharpoonup> |
52435
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
815 |
(SML) "!((_ : string) = _)" |
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
816 |
and (OCaml) "!((_ : string) = _)" |
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
817 |
and (Haskell) infix 4 "==" |
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
haftmann
parents:
52365
diff
changeset
|
818 |
and (Scala) infixl 5 "==" |
68028 | 819 |
| constant "(\<le>) :: String.literal \<Rightarrow> String.literal \<Rightarrow> bool" \<rightharpoonup> |
820 |
(SML) "!((_ : string) <= _)" |
|
821 |
and (OCaml) "!((_ : string) <= _)" |
|
69743 | 822 |
and (Haskell) infix 4 "<=" |
69593 | 823 |
\<comment> \<open>Order operations for \<^typ>\<open>String.literal\<close> work in Haskell only |
68028 | 824 |
if no type class instance needs to be generated, because String = [Char] in Haskell |
69593 | 825 |
and \<^typ>\<open>char list\<close> need not have the same order as \<^typ>\<open>String.literal\<close>.\<close> |
68028 | 826 |
and (Scala) infixl 4 "<=" |
827 |
and (Eval) infixl 6 "<=" |
|
828 |
| constant "(<) :: String.literal \<Rightarrow> String.literal \<Rightarrow> bool" \<rightharpoonup> |
|
829 |
(SML) "!((_ : string) < _)" |
|
830 |
and (OCaml) "!((_ : string) < _)" |
|
831 |
and (Haskell) infix 4 "<" |
|
832 |
and (Scala) infixl 4 "<" |
|
833 |
and (Eval) infixl 6 "<" |
|
834 |
||
835 |
||
836 |
subsubsection \<open>Code generation utility\<close> |
|
31051
4d9b52e0a48c
refined HOL string theories and corresponding ML fragments
haftmann
parents:
diff
changeset
|
837 |
|
60758 | 838 |
setup \<open>Sign.map_naming (Name_Space.mandatory_path "Code")\<close> |
52910
7bfe0df532a9
abort execution of generated code with explicit exception message
Andreas Lochbihler
parents:
52435
diff
changeset
|
839 |
|
68028 | 840 |
definition abort :: "String.literal \<Rightarrow> (unit \<Rightarrow> 'a) \<Rightarrow> 'a" |
841 |
where [simp]: "abort _ f = f ()" |
|
52910
7bfe0df532a9
abort execution of generated code with explicit exception message
Andreas Lochbihler
parents:
52435
diff
changeset
|
842 |
|
68028 | 843 |
declare [[code drop: Code.abort]] |
844 |
||
845 |
lemma abort_cong: |
|
846 |
"msg = msg' \<Longrightarrow> Code.abort msg f = Code.abort msg' f" |
|
847 |
by simp |
|
54317
da932f511746
add congruence rule to prevent code_simp from looping
Andreas Lochbihler
parents:
52910
diff
changeset
|
848 |
|
60758 | 849 |
setup \<open>Sign.map_naming Name_Space.parent_path\<close> |
52910
7bfe0df532a9
abort execution of generated code with explicit exception message
Andreas Lochbihler
parents:
52435
diff
changeset
|
850 |
|
60758 | 851 |
setup \<open>Code_Simp.map_ss (Simplifier.add_cong @{thm Code.abort_cong})\<close> |
54317
da932f511746
add congruence rule to prevent code_simp from looping
Andreas Lochbihler
parents:
52910
diff
changeset
|
852 |
|
68028 | 853 |
code_printing |
854 |
constant Code.abort \<rightharpoonup> |
|
52910
7bfe0df532a9
abort execution of generated code with explicit exception message
Andreas Lochbihler
parents:
52435
diff
changeset
|
855 |
(SML) "!(raise/ Fail/ _)" |
7bfe0df532a9
abort execution of generated code with explicit exception message
Andreas Lochbihler
parents:
52435
diff
changeset
|
856 |
and (OCaml) "failwith" |
59483
ddb73392356e
explicit type annotation avoids problems with Haskell type inference
haftmann
parents:
58889
diff
changeset
|
857 |
and (Haskell) "!(error/ ::/ forall a./ String -> (() -> a) -> a)" |
68028 | 858 |
and (Scala) "!{/ sys.error((_));/ ((_)).apply(())/ }" |
859 |
||
52910
7bfe0df532a9
abort execution of generated code with explicit exception message
Andreas Lochbihler
parents:
52435
diff
changeset
|
860 |
|
68028 | 861 |
subsubsection \<open>Finally\<close> |
31205
98370b26c2ce
String.literal replaces message_string, code_numeral replaces (code_)index
haftmann
parents:
31176
diff
changeset
|
862 |
|
68028 | 863 |
lifting_update literal.lifting |
864 |
lifting_forget literal.lifting |
|
57437 | 865 |
|
39250
548a3e5521ab
changing String.literal to a type instead of a datatype
bulwahn
parents:
39198
diff
changeset
|
866 |
end |