| author | wenzelm | 
| Thu, 10 Jan 2013 15:45:27 +0100 | |
| changeset 50805 | 69439c9defec | 
| parent 48073 | 1b609a7837ef | 
| child 51090 | bee2678a3b61 | 
| permissions | -rw-r--r-- | 
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
1  | 
(* Title: HOL/Imperative_HOL/Ref.thy  | 
| 26170 | 2  | 
Author: John Matthews, Galois Connections; Alexander Krauss, Lukas Bulwahn & Florian Haftmann, TU Muenchen  | 
3  | 
*)  | 
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4  | 
||
5  | 
header {* Monadic references *}
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6  | 
||
7  | 
theory Ref  | 
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
8  | 
imports Array  | 
| 26170 | 9  | 
begin  | 
10  | 
||
11  | 
text {*
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12  | 
Imperative reference operations; modeled after their ML counterparts.  | 
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13  | 
See http://caml.inria.fr/pub/docs/manual-caml-light/node14.15.html  | 
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14  | 
and http://www.smlnj.org/doc/Conversion/top-level-comparison.html  | 
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15  | 
*}  | 
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||
| 37753 | 17  | 
subsection {* Primitives *}
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
18  | 
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| 37725 | 19  | 
definition present :: "heap \<Rightarrow> 'a\<Colon>heap ref \<Rightarrow> bool" where  | 
20  | 
"present h r \<longleftrightarrow> addr_of_ref r < lim h"  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
21  | 
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| 37725 | 22  | 
definition get :: "heap \<Rightarrow> 'a\<Colon>heap ref \<Rightarrow> 'a" where  | 
23  | 
  "get h = from_nat \<circ> refs h TYPEREP('a) \<circ> addr_of_ref"
 | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
24  | 
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| 37725 | 25  | 
definition set :: "'a\<Colon>heap ref \<Rightarrow> 'a \<Rightarrow> heap \<Rightarrow> heap" where  | 
26  | 
"set r x = refs_update  | 
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27  | 
    (\<lambda>h. h(TYPEREP('a) := ((h (TYPEREP('a))) (addr_of_ref r := to_nat x))))"
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
28  | 
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| 37725 | 29  | 
definition alloc :: "'a \<Rightarrow> heap \<Rightarrow> 'a\<Colon>heap ref \<times> heap" where  | 
30  | 
"alloc x h = (let  | 
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
31  | 
l = lim h;  | 
| 37725 | 32  | 
r = Ref l  | 
33  | 
in (r, set r x (h\<lparr>lim := l + 1\<rparr>)))"  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
34  | 
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| 37725 | 35  | 
definition noteq :: "'a\<Colon>heap ref \<Rightarrow> 'b\<Colon>heap ref \<Rightarrow> bool" (infix "=!=" 70) where  | 
| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
36  | 
  "r =!= s \<longleftrightarrow> TYPEREP('a) \<noteq> TYPEREP('b) \<or> addr_of_ref r \<noteq> addr_of_ref s"
 | 
| 
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
37  | 
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| 37753 | 38  | 
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39  | 
subsection {* Monad operations *}
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40  | 
||
41  | 
definition ref :: "'a\<Colon>heap \<Rightarrow> 'a ref Heap" where  | 
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42  | 
[code del]: "ref v = Heap_Monad.heap (alloc v)"  | 
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43  | 
||
44  | 
definition lookup :: "'a\<Colon>heap ref \<Rightarrow> 'a Heap" ("!_" 61) where
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| 37758 | 45  | 
[code del]: "lookup r = Heap_Monad.tap (\<lambda>h. get h r)"  | 
| 37753 | 46  | 
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47  | 
definition update :: "'a ref \<Rightarrow> 'a\<Colon>heap \<Rightarrow> unit Heap" ("_ := _" 62) where
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48  | 
[code del]: "update r v = Heap_Monad.heap (\<lambda>h. ((), set r v h))"  | 
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49  | 
||
50  | 
definition change :: "('a\<Colon>heap \<Rightarrow> 'a) \<Rightarrow> 'a ref \<Rightarrow> 'a Heap" where
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| 37792 | 51  | 
  "change f r = do {
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| 37753 | 52  | 
x \<leftarrow> ! r;  | 
53  | 
let y = f x;  | 
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54  | 
r := y;  | 
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55  | 
return y  | 
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| 37792 | 56  | 
}"  | 
| 37753 | 57  | 
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59  | 
subsection {* Properties *}
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||
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text {* Primitives *}
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62  | 
||
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lemma noteq_sym: "r =!= s \<Longrightarrow> s =!= r"  | 
64  | 
and unequal [simp]: "r \<noteq> r' \<longleftrightarrow> r =!= r'" -- "same types!"  | 
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65  | 
by (auto simp add: noteq_def)  | 
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
66  | 
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| 37725 | 67  | 
lemma noteq_irrefl: "r =!= r \<Longrightarrow> False"  | 
68  | 
by (auto simp add: noteq_def)  | 
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
69  | 
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| 37725 | 70  | 
lemma present_alloc_neq: "present h r \<Longrightarrow> r =!= fst (alloc v h)"  | 
71  | 
by (simp add: present_def alloc_def noteq_def Let_def)  | 
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
72  | 
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| 37725 | 73  | 
lemma next_fresh [simp]:  | 
74  | 
assumes "(r, h') = alloc x h"  | 
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75  | 
shows "\<not> present h r"  | 
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76  | 
using assms by (cases h) (auto simp add: alloc_def present_def Let_def)  | 
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
77  | 
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| 37725 | 78  | 
lemma next_present [simp]:  | 
79  | 
assumes "(r, h') = alloc x h"  | 
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80  | 
shows "present h' r"  | 
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81  | 
using assms by (cases h) (auto simp add: alloc_def set_def present_def Let_def)  | 
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
82  | 
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| 37725 | 83  | 
lemma get_set_eq [simp]:  | 
84  | 
"get (set r x h) r = x"  | 
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85  | 
by (simp add: get_def set_def)  | 
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37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
86  | 
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| 37725 | 87  | 
lemma get_set_neq [simp]:  | 
88  | 
"r =!= s \<Longrightarrow> get (set s x h) r = get h r"  | 
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89  | 
by (simp add: noteq_def get_def set_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
90  | 
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| 37725 | 91  | 
lemma set_same [simp]:  | 
92  | 
"set r x (set r y h) = set r x h"  | 
|
93  | 
by (simp add: set_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
94  | 
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| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
95  | 
lemma not_present_alloc [simp]:  | 
| 
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
96  | 
"\<not> present h (fst (alloc v h))"  | 
| 
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
97  | 
by (simp add: present_def alloc_def Let_def)  | 
| 
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
98  | 
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| 37725 | 99  | 
lemma set_set_swap:  | 
100  | 
"r =!= r' \<Longrightarrow> set r x (set r' x' h) = set r' x' (set r x h)"  | 
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39302
 
d7728f65b353
renamed lemmas: ext_iff -> fun_eq_iff, set_ext_iff -> set_eq_iff, set_ext -> set_eqI
 
nipkow 
parents: 
39198 
diff
changeset
 | 
101  | 
by (simp add: noteq_def set_def fun_eq_iff)  | 
| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
102  | 
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| 37725 | 103  | 
lemma alloc_set:  | 
104  | 
"fst (alloc x (set r x' h)) = fst (alloc x h)"  | 
|
105  | 
by (simp add: alloc_def set_def Let_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
106  | 
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| 37725 | 107  | 
lemma get_alloc [simp]:  | 
108  | 
"get (snd (alloc x h)) (fst (alloc x' h)) = x"  | 
|
109  | 
by (simp add: alloc_def Let_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
110  | 
|
| 37725 | 111  | 
lemma set_alloc [simp]:  | 
112  | 
"set (fst (alloc v h)) v' (snd (alloc v h)) = snd (alloc v' h)"  | 
|
113  | 
by (simp add: alloc_def Let_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
114  | 
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| 37725 | 115  | 
lemma get_alloc_neq: "r =!= fst (alloc v h) \<Longrightarrow>  | 
116  | 
get (snd (alloc v h)) r = get h r"  | 
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117  | 
by (simp add: get_def set_def alloc_def Let_def noteq_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
118  | 
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| 37725 | 119  | 
lemma lim_set [simp]:  | 
120  | 
"lim (set r v h) = lim h"  | 
|
121  | 
by (simp add: set_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
122  | 
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| 37725 | 123  | 
lemma present_alloc [simp]:  | 
124  | 
"present h r \<Longrightarrow> present (snd (alloc v h)) r"  | 
|
125  | 
by (simp add: present_def alloc_def Let_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
126  | 
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| 37725 | 127  | 
lemma present_set [simp]:  | 
128  | 
"present (set r v h) = present h"  | 
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39302
 
d7728f65b353
renamed lemmas: ext_iff -> fun_eq_iff, set_ext_iff -> set_eq_iff, set_ext -> set_eqI
 
nipkow 
parents: 
39198 
diff
changeset
 | 
129  | 
by (simp add: present_def fun_eq_iff)  | 
| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
130  | 
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| 37725 | 131  | 
lemma noteq_I:  | 
132  | 
"present h r \<Longrightarrow> \<not> present h r' \<Longrightarrow> r =!= r'"  | 
|
133  | 
by (auto simp add: noteq_def present_def)  | 
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| 
37719
 
271ecd4fb9f9
moved "open" operations from Heap.thy to Array.thy and Ref.thy
 
haftmann 
parents: 
37709 
diff
changeset
 | 
134  | 
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| 37758 | 135  | 
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136  | 
text {* Monad operations *}
 | 
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137  | 
||
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
138  | 
lemma execute_ref [execute_simps]:  | 
| 37758 | 139  | 
"execute (ref v) h = Some (alloc v h)"  | 
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
140  | 
by (simp add: ref_def execute_simps)  | 
| 26170 | 141  | 
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| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
142  | 
lemma success_refI [success_intros]:  | 
| 37758 | 143  | 
"success (ref v) h"  | 
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
144  | 
by (auto intro: success_intros simp add: ref_def)  | 
| 37758 | 145  | 
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| 40671 | 146  | 
lemma effect_refI [effect_intros]:  | 
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37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
147  | 
assumes "(r, h') = alloc v h"  | 
| 40671 | 148  | 
shows "effect (ref v) h h' r"  | 
149  | 
by (rule effectI) (insert assms, simp add: execute_simps)  | 
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37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
150  | 
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| 40671 | 151  | 
lemma effect_refE [effect_elims]:  | 
152  | 
assumes "effect (ref v) h h' r"  | 
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| 37796 | 153  | 
obtains "get h' r = v" and "present h' r" and "\<not> present h r"  | 
| 40671 | 154  | 
using assms by (rule effectE) (simp add: execute_simps)  | 
| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
155  | 
|
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
156  | 
lemma execute_lookup [execute_simps]:  | 
| 37753 | 157  | 
"Heap_Monad.execute (lookup r) h = Some (get h r, h)"  | 
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
158  | 
by (simp add: lookup_def execute_simps)  | 
| 26182 | 159  | 
|
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
160  | 
lemma success_lookupI [success_intros]:  | 
| 37758 | 161  | 
"success (lookup r) h"  | 
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
162  | 
by (auto intro: success_intros simp add: lookup_def)  | 
| 37758 | 163  | 
|
| 40671 | 164  | 
lemma effect_lookupI [effect_intros]:  | 
| 37796 | 165  | 
assumes "h' = h" "x = get h r"  | 
| 40671 | 166  | 
shows "effect (!r) h h' x"  | 
167  | 
by (rule effectI) (insert assms, simp add: execute_simps)  | 
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| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
168  | 
|
| 40671 | 169  | 
lemma effect_lookupE [effect_elims]:  | 
170  | 
assumes "effect (!r) h h' x"  | 
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| 37796 | 171  | 
obtains "h' = h" "x = get h r"  | 
| 40671 | 172  | 
using assms by (rule effectE) (simp add: execute_simps)  | 
| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
173  | 
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| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
174  | 
lemma execute_update [execute_simps]:  | 
| 37753 | 175  | 
"Heap_Monad.execute (update r v) h = Some ((), set r v h)"  | 
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
176  | 
by (simp add: update_def execute_simps)  | 
| 26170 | 177  | 
|
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
178  | 
lemma success_updateI [success_intros]:  | 
| 37758 | 179  | 
"success (update r v) h"  | 
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
180  | 
by (auto intro: success_intros simp add: update_def)  | 
| 37758 | 181  | 
|
| 40671 | 182  | 
lemma effect_updateI [effect_intros]:  | 
| 37796 | 183  | 
assumes "h' = set r v h"  | 
| 40671 | 184  | 
shows "effect (r := v) h h' x"  | 
185  | 
by (rule effectI) (insert assms, simp add: execute_simps)  | 
|
| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
186  | 
|
| 40671 | 187  | 
lemma effect_updateE [effect_elims]:  | 
188  | 
assumes "effect (r' := v) h h' r"  | 
|
| 37796 | 189  | 
obtains "h' = set r' v h"  | 
| 40671 | 190  | 
using assms by (rule effectE) (simp add: execute_simps)  | 
| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
191  | 
|
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
192  | 
lemma execute_change [execute_simps]:  | 
| 37753 | 193  | 
"Heap_Monad.execute (change f r) h = Some (f (get h r), set r (f (get h r)) h)"  | 
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
194  | 
by (simp add: change_def bind_def Let_def execute_simps)  | 
| 37758 | 195  | 
|
| 
37787
 
30dc3abf4a58
theorem collections do not contain default rules any longer
 
haftmann 
parents: 
37771 
diff
changeset
 | 
196  | 
lemma success_changeI [success_intros]:  | 
| 37758 | 197  | 
"success (change f r) h"  | 
| 40671 | 198  | 
by (auto intro!: success_intros effect_intros simp add: change_def)  | 
| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
199  | 
|
| 40671 | 200  | 
lemma effect_changeI [effect_intros]:  | 
| 37796 | 201  | 
assumes "h' = set r (f (get h r)) h" "x = f (get h r)"  | 
| 40671 | 202  | 
shows "effect (change f r) h h' x"  | 
203  | 
by (rule effectI) (insert assms, simp add: execute_simps)  | 
|
| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
204  | 
|
| 40671 | 205  | 
lemma effect_changeE [effect_elims]:  | 
206  | 
assumes "effect (change f r') h h' r"  | 
|
| 37796 | 207  | 
obtains "h' = set r' (f (get h r')) h" "r = f (get h r')"  | 
| 40671 | 208  | 
using assms by (rule effectE) (simp add: execute_simps)  | 
| 26170 | 209  | 
|
210  | 
lemma lookup_chain:  | 
|
211  | 
"(!r \<guillemotright> f) = f"  | 
|
| 
37771
 
1bec64044b5e
spelt out relational framework in a consistent way
 
haftmann 
parents: 
37758 
diff
changeset
 | 
212  | 
by (rule Heap_eqI) (auto simp add: lookup_def execute_simps intro: execute_bind)  | 
| 26170 | 213  | 
|
| 28562 | 214  | 
lemma update_change [code]:  | 
| 37725 | 215  | 
"r := e = change (\<lambda>_. e) r \<guillemotright> return ()"  | 
216  | 
by (rule Heap_eqI) (simp add: change_def lookup_chain)  | 
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219  | 
text {* Non-interaction between imperative array and imperative references *}
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220  | 
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221  | 
lemma array_get_set [simp]:  | 
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222  | 
"Array.get (set r v h) = Array.get h"  | 
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223  | 
by (simp add: Array.get_def set_def fun_eq_iff)  | 
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224  | 
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lemma get_update [simp]:  | 
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"get (Array.update a i v h) r = get h r"  | 
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227  | 
by (simp add: get_def Array.update_def Array.set_def)  | 
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228  | 
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lemma alloc_update:  | 
230  | 
"fst (alloc v (Array.update a i v' h)) = fst (alloc v h)"  | 
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231  | 
by (simp add: Array.update_def Array.get_def Array.set_def alloc_def Let_def)  | 
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232  | 
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lemma update_set_swap:  | 
234  | 
"Array.update a i v (set r v' h) = set r v' (Array.update a i v h)"  | 
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235  | 
by (simp add: Array.update_def Array.get_def Array.set_def set_def)  | 
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236  | 
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lemma length_alloc [simp]:  | 
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"Array.length (snd (alloc v h)) a = Array.length h a"  | 
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239  | 
by (simp add: Array.length_def Array.get_def alloc_def set_def Let_def)  | 
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240  | 
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241  | 
lemma array_get_alloc [simp]:  | 
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242  | 
"Array.get (snd (alloc v h)) = Array.get h"  | 
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243  | 
by (simp add: Array.get_def alloc_def set_def Let_def fun_eq_iff)  | 
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244  | 
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lemma present_update [simp]:  | 
246  | 
"present (Array.update a i v h) = present h"  | 
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247  | 
by (simp add: Array.update_def Array.set_def fun_eq_iff present_def)  | 
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248  | 
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lemma array_present_set [simp]:  | 
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250  | 
"Array.present (set r v h) = Array.present h"  | 
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251  | 
by (simp add: Array.present_def set_def fun_eq_iff)  | 
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252  | 
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lemma array_present_alloc [simp]:  | 
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254  | 
"Array.present h a \<Longrightarrow> Array.present (snd (alloc v h)) a"  | 
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255  | 
by (simp add: Array.present_def alloc_def Let_def)  | 
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256  | 
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lemma set_array_set_swap:  | 
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258  | 
"Array.set a xs (set r x' h) = set r x' (Array.set a xs h)"  | 
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259  | 
by (simp add: Array.set_def set_def)  | 
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|
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hide_const (open) present get set alloc noteq lookup update change  | 
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262  | 
|
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263  | 
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subsection {* Code generator setup *}
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265  | 
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266  | 
text {* Intermediate operation avoids invariance problem in @{text Scala} (similiar to value restriction) *}
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267  | 
|
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268  | 
definition ref' where  | 
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269  | 
[code del]: "ref' = ref"  | 
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270  | 
|
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271  | 
lemma [code]:  | 
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272  | 
"ref x = ref' x"  | 
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273  | 
by (simp add: ref'_def)  | 
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274  | 
|
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275  | 
|
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text {* SML / Eval *}
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| 26182 | 277  | 
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| 39607 | 278  | 
code_type ref (SML "_/ ref")  | 
279  | 
code_type ref (Eval "_/ Unsynchronized.ref")  | 
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code_const Ref (SML "raise/ (Fail/ \"bare Ref\")")  | 
| 39607 | 281  | 
code_const ref' (SML "(fn/ ()/ =>/ ref/ _)")  | 
282  | 
code_const ref' (Eval "(fn/ ()/ =>/ Unsynchronized.ref/ _)")  | 
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| 26752 | 283  | 
code_const Ref.lookup (SML "(fn/ ()/ =>/ !/ _)")  | 
284  | 
code_const Ref.update (SML "(fn/ ()/ =>/ _/ :=/ _)")  | 
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285  | 
code_const "HOL.equal :: 'a ref \<Rightarrow> 'a ref \<Rightarrow> bool" (SML infixl 6 "=")  | 
| 26182 | 286  | 
|
| 39607 | 287  | 
code_reserved Eval Unsynchronized  | 
| 26182 | 288  | 
|
289  | 
||
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text {* OCaml *}
 | 
| 26182 | 291  | 
|
292  | 
code_type ref (OCaml "_/ ref")  | 
|
| 37830 | 293  | 
code_const Ref (OCaml "failwith/ \"bare Ref\"")  | 
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294  | 
code_const ref' (OCaml "(fun/ ()/ ->/ ref/ _)")  | 
| 37830 | 295  | 
code_const Ref.lookup (OCaml "(fun/ ()/ ->/ !/ _)")  | 
296  | 
code_const Ref.update (OCaml "(fun/ ()/ ->/ _/ :=/ _)")  | 
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297  | 
code_const "HOL.equal :: 'a ref \<Rightarrow> 'a ref \<Rightarrow> bool" (OCaml infixl 4 "=")  | 
| 26182 | 298  | 
|
299  | 
code_reserved OCaml ref  | 
|
300  | 
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301  | 
||
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text {* Haskell *}
 | 
| 26182 | 303  | 
|
| 29793 | 304  | 
code_type ref (Haskell "Heap.STRef/ Heap.RealWorld/ _")  | 
| 26182 | 305  | 
code_const Ref (Haskell "error/ \"bare Ref\"")  | 
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306  | 
code_const ref' (Haskell "Heap.newSTRef")  | 
| 29793 | 307  | 
code_const Ref.lookup (Haskell "Heap.readSTRef")  | 
308  | 
code_const Ref.update (Haskell "Heap.writeSTRef")  | 
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309  | 
code_const "HOL.equal :: 'a ref \<Rightarrow> 'a ref \<Rightarrow> bool" (Haskell infix 4 "==")  | 
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310  | 
code_instance ref :: HOL.equal (Haskell -)  | 
| 26182 | 311  | 
|
| 37842 | 312  | 
|
313  | 
text {* Scala *}
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|
314  | 
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code_type ref (Scala "!Ref[_]")  | 
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316  | 
code_const Ref (Scala "!sys.error(\"bare Ref\")")  | 
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317  | 
code_const ref' (Scala "('_: Unit)/ =>/ Ref((_))")
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318  | 
code_const Ref.lookup (Scala "('_: Unit)/ =>/ Ref.lookup((_))")
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319  | 
code_const Ref.update (Scala "('_: Unit)/ =>/ Ref.update((_), (_))")
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320  | 
code_const "HOL.equal :: 'a ref \<Rightarrow> 'a ref \<Rightarrow> bool" (Scala infixl 5 "==")  | 
| 37842 | 321  | 
|
| 37758 | 322  | 
end  |