author | paulson <lp15@cam.ac.uk> |
Thu, 26 Sep 2024 14:44:37 +0100 | |
changeset 80948 | 572970d15ab0 |
parent 80703 | cc4ecaa8e96e |
permissions | -rw-r--r-- |
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1 |
(* Title: HOL/Hoare/hoare_tac.ML |
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2 |
Author: Leonor Prensa Nieto & Tobias Nipkow |
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Extension of session HOL/Hoare with total correctness proof system by Walter Guttmann
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3 |
Author: Walter Guttmann (extension to total-correctness proofs) |
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4 |
|
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5 |
Derivation of the proof rules and, most importantly, the VCG tactic. |
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6 |
*) |
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7 |
|
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8 |
signature HOARE_TAC = |
55660 | 9 |
sig |
55661 | 10 |
val hoare_rule_tac: Proof.context -> term list * thm -> (int -> tactic) -> bool -> |
11 |
int -> tactic |
|
55660 | 12 |
val hoare_tac: Proof.context -> (int -> tactic) -> int -> tactic |
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13 |
val hoare_tc_tac: Proof.context -> (int -> tactic) -> int -> tactic |
55660 | 14 |
end; |
15 |
||
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16 |
structure Hoare_Tac: HOARE_TAC = |
55660 | 17 |
struct |
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|
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19 |
(*** The tactics ***) |
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20 |
|
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21 |
(*****************************************************************************) |
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22 |
(** The function Mset makes the theorem **) |
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23 |
(** "?Mset <= {(x1,...,xn). ?P (x1,...,xn)} ==> ?Mset <= {s. ?P s}", **) |
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24 |
(** where (x1,...,xn) are the variables of the particular program we are **) |
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25 |
(** working on at the moment of the call **) |
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26 |
(*****************************************************************************) |
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27 |
|
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local |
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29 |
|
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30 |
(** maps (%x1 ... xn. t) to [x1,...,xn] **) |
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fun abs2list \<^Const_>\<open>case_prod _ _ _ for \<open>Abs (x, T, t)\<close>\<close> = Free (x, T) :: abs2list t |
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| abs2list (Abs (x, T, _)) = [Free (x, T)] |
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33 |
| abs2list _ = []; |
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34 |
|
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35 |
(** maps {(x1,...,xn). t} to [x1,...,xn] **) |
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fun mk_vars \<^Const_>\<open>Collect _ for T\<close> = abs2list T |
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37 |
| mk_vars _ = []; |
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38 |
|
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39 |
(** abstraction of body over a tuple formed from a list of free variables. |
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40 |
Types are also built **) |
74304 | 41 |
fun mk_abstupleC [] body = absfree ("x", \<^Type>\<open>unit\<close>) body |
44241 | 42 |
| mk_abstupleC [v] body = absfree (dest_Free v) body |
43 |
| mk_abstupleC (v :: w) body = |
|
44 |
let |
|
45 |
val (x, T) = dest_Free v; |
|
46 |
val z = mk_abstupleC w body; |
|
47 |
val T2 = |
|
48 |
(case z of |
|
49 |
Abs (_, T, _) => T |
|
50 |
| Const (_, Type (_, [_, Type (_, [T, _])])) $ _ => T); |
|
51 |
in |
|
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\<^Const>\<open>case_prod T T2 \<^Type>\<open>bool\<close> for \<open>absfree (x, T) z\<close>\<close> |
44241 | 53 |
end; |
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54 |
|
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55 |
(** maps [x1,...,xn] to (x1,...,xn) and types**) |
74304 | 56 |
fun mk_bodyC [] = \<^Const>\<open>Unity\<close> |
55661 | 57 |
| mk_bodyC [x] = x |
58 |
| mk_bodyC (x :: xs) = |
|
59 |
let |
|
60 |
val (_, T) = dest_Free x; |
|
61 |
val z = mk_bodyC xs; |
|
62 |
val T2 = |
|
63 |
(case z of |
|
64 |
Free (_, T) => T |
|
74304 | 65 |
| \<^Const_>\<open>Pair A B for _ _\<close> => \<^Type>\<open>prod A B\<close>); |
66 |
in \<^Const>\<open>Pair T T2 for x z\<close> end; |
|
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67 |
|
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68 |
(** maps a subgoal of the form: |
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VARS x1 ... xn {._.} _ {._.} or to [x1,...,xn] |
70 |
**) |
|
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71 |
fun get_vars c = |
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72 |
let |
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73 |
val d = Logic.strip_assums_concl c; |
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74 |
val pre = |
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75 |
case HOLogic.dest_Trueprop d of |
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76 |
Const _ $ pre $ _ $ _ $ _ => pre |
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77 |
| Const _ $ pre $ _ $ _ => pre \<comment> \<open>support for \<^file>\<open>~~/src/HOL/Isar_Examples/Hoare.thy\<close>\<close> |
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78 |
in mk_vars pre end; |
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79 |
|
55661 | 80 |
fun mk_CollectC tm = |
74304 | 81 |
let val \<^Type>\<open>fun t _\<close> = fastype_of tm; |
82 |
in \<^Const>\<open>Collect t for tm\<close> end; |
|
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83 |
|
74304 | 84 |
fun inclt ty = \<^Const>\<open>less_eq ty\<close>; |
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85 |
|
41449 | 86 |
in |
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87 |
|
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88 |
fun Mset ctxt prop = |
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89 |
let |
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90 |
val [(Mset, _), (P, _)] = Variable.variant_frees ctxt [] [("Mset", ()), ("P", ())]; |
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91 |
|
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92 |
val vars = get_vars prop; |
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|
93 |
val varsT = fastype_of (mk_bodyC vars); |
55661 | 94 |
val big_Collect = |
74304 | 95 |
mk_CollectC (mk_abstupleC vars (Free (P, varsT --> \<^Type>\<open>bool\<close>) $ mk_bodyC vars)); |
55661 | 96 |
val small_Collect = |
74304 | 97 |
mk_CollectC (Abs ("x", varsT, Free (P, varsT --> \<^Type>\<open>bool\<close>) $ Bound 0)); |
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98 |
|
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99 |
val MsetT = fastype_of big_Collect; |
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fun Mset_incl t = HOLogic.mk_Trueprop (inclt MsetT $ Free (Mset, MsetT) $ t); |
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101 |
val impl = Logic.mk_implies (Mset_incl big_Collect, Mset_incl small_Collect); |
42793 | 102 |
val th = Goal.prove ctxt [Mset, P] [] impl (fn _ => blast_tac ctxt 1); |
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103 |
in (vars, th) end; |
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104 |
|
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105 |
end; |
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106 |
|
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107 |
|
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108 |
(*****************************************************************************) |
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109 |
(** Simplifying: **) |
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110 |
(** Some useful lemmata, lists and simplification tactics to control which **) |
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111 |
(** theorems are used to simplify at each moment, so that the original **) |
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112 |
(** input does not suffer any unexpected transformation **) |
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113 |
(*****************************************************************************) |
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114 |
|
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115 |
(**Simp_tacs**) |
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116 |
|
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117 |
fun before_set2pred_simp_tac ctxt = |
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118 |
simp_tac (put_simpset HOL_basic_ss ctxt addsimps [Collect_conj_eq RS sym, @{thm Compl_Collect}]); |
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119 |
|
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120 |
fun split_simp_tac ctxt = |
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121 |
simp_tac (put_simpset HOL_basic_ss ctxt addsimps [@{thm split_conv}]); |
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122 |
|
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123 |
(*****************************************************************************) |
55661 | 124 |
(** set_to_pred_tac transforms sets inclusion into predicates implication, **) |
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125 |
(** maintaining the original variable names. **) |
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|
126 |
(** Ex. "{x. x=0} <= {x. x <= 1}" -set2pred-> "x=0 --> x <= 1" **) |
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127 |
(** Subgoals containing intersections (A Int B) or complement sets (-A) **) |
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128 |
(** are first simplified by "before_set2pred_simp_tac", that returns only **) |
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129 |
(** subgoals of the form "{x. P x} <= {x. Q x}", which are easily **) |
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130 |
(** transformed. **) |
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131 |
(** This transformation may solve very easy subgoals due to a ligth **) |
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132 |
(** simplification done by (split_all_tac) **) |
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(*****************************************************************************) |
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fun set_to_pred_tac ctxt var_names = SUBGOAL (fn (_, i) => |
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before_set2pred_simp_tac ctxt i THEN_MAYBE |
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EVERY [ |
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resolve_tac ctxt [subsetI] i, |
139 |
resolve_tac ctxt [CollectI] i, |
|
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dresolve_tac ctxt [CollectD] i, |
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TRY (split_all_tac ctxt i) THEN_MAYBE |
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(rename_tac var_names i THEN |
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full_simp_tac (put_simpset HOL_basic_ss ctxt addsimps [@{thm split_conv}]) i)]); |
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|
55661 | 145 |
(*******************************************************************************) |
146 |
(** basic_simp_tac is called to simplify all verification conditions. It does **) |
|
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(** a light simplification by applying "mem_Collect_eq", then it calls **) |
|
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(** max_simp_tac, which solves subgoals of the form "A <= A", **) |
|
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(** and transforms any other into predicates, applying then **) |
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(** the tactic chosen by the user, which may solve the subgoal completely. **) |
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(*******************************************************************************) |
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fun max_simp_tac ctxt var_names tac = |
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FIRST' [resolve_tac ctxt [subset_refl], |
155 |
set_to_pred_tac ctxt var_names THEN_MAYBE' tac]; |
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fun basic_simp_tac ctxt var_names tac = |
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simp_tac |
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(put_simpset HOL_basic_ss ctxt |
80703 | 160 |
addsimps [mem_Collect_eq, @{thm split_conv}] |> Simplifier.add_proc Record.simproc) |
55661 | 161 |
THEN_MAYBE' max_simp_tac ctxt var_names tac; |
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162 |
|
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163 |
|
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164 |
(** hoare_rule_tac **) |
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165 |
|
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fun hoare_rule_tac ctxt (vars, Mlem) tac = |
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167 |
let |
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val get_thms = Proof_Context.get_thms ctxt; |
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val var_names = map (fst o dest_Free) vars; |
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fun wlp_tac i = |
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resolve_tac ctxt (get_thms \<^named_theorems>\<open>SeqRule\<close>) i THEN rule_tac false (i + 1) |
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and rule_tac pre_cond i st = st |> (*abstraction over st prevents looping*) |
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173 |
((wlp_tac i THEN rule_tac pre_cond i) |
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174 |
ORELSE |
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175 |
(FIRST [ |
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resolve_tac ctxt (get_thms \<^named_theorems>\<open>SkipRule\<close>) i, |
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resolve_tac ctxt (get_thms \<^named_theorems>\<open>AbortRule\<close>) i, |
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178 |
EVERY [ |
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resolve_tac ctxt (get_thms \<^named_theorems>\<open>BasicRule\<close>) i, |
60754 | 180 |
resolve_tac ctxt [Mlem] i, |
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split_simp_tac ctxt i], |
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182 |
EVERY [ |
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resolve_tac ctxt (get_thms \<^named_theorems>\<open>CondRule\<close>) i, |
28457
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184 |
rule_tac false (i + 2), |
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185 |
rule_tac false (i + 1)], |
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186 |
EVERY [ |
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187 |
resolve_tac ctxt (get_thms \<^named_theorems>\<open>WhileRule\<close>) i, |
55661 | 188 |
basic_simp_tac ctxt var_names tac (i + 2), |
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|
189 |
rule_tac true (i + 1)]] |
60754 | 190 |
THEN ( |
191 |
if pre_cond then basic_simp_tac ctxt var_names tac i |
|
192 |
else resolve_tac ctxt [subset_refl] i))); |
|
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193 |
in rule_tac end; |
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194 |
|
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195 |
|
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196 |
(** tac is the tactic the user chooses to solve or simplify **) |
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197 |
(** the final verification conditions **) |
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198 |
|
55659 | 199 |
fun hoare_tac ctxt tac = SUBGOAL (fn (goal, i) => |
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SELECT_GOAL (hoare_rule_tac ctxt (Mset ctxt goal) tac true 1) i); |
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|
201 |
|
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|
202 |
|
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203 |
(* total correctness rules *) |
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|
204 |
|
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205 |
fun hoare_tc_rule_tac ctxt (vars, Mlem) tac = |
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206 |
let |
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207 |
val get_thms = Proof_Context.get_thms ctxt; |
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val var_names = map (fst o dest_Free) vars; |
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209 |
fun wlp_tac i = |
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210 |
resolve_tac ctxt (get_thms \<^named_theorems>\<open>SeqRuleTC\<close>) i THEN rule_tac false (i + 1) |
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and rule_tac pre_cond i st = st |> (*abstraction over st prevents looping*) |
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((wlp_tac i THEN rule_tac pre_cond i) |
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213 |
ORELSE |
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214 |
(FIRST [ |
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215 |
resolve_tac ctxt (get_thms \<^named_theorems>\<open>SkipRuleTC\<close>) i, |
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216 |
EVERY [ |
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217 |
resolve_tac ctxt (get_thms \<^named_theorems>\<open>BasicRuleTC\<close>) i, |
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resolve_tac ctxt [Mlem] i, |
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split_simp_tac ctxt i], |
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220 |
EVERY [ |
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221 |
resolve_tac ctxt (get_thms \<^named_theorems>\<open>CondRuleTC\<close>) i, |
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rule_tac false (i + 2), |
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223 |
rule_tac false (i + 1)], |
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224 |
EVERY [ |
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225 |
resolve_tac ctxt (get_thms \<^named_theorems>\<open>WhileRuleTC\<close>) i, |
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basic_simp_tac ctxt var_names tac (i + 2), |
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rule_tac true (i + 1)]] |
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228 |
THEN ( |
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if pre_cond then basic_simp_tac ctxt var_names tac i |
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230 |
else resolve_tac ctxt [subset_refl] i))); |
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in rule_tac end; |
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232 |
|
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233 |
|
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234 |
fun hoare_tc_tac ctxt tac = SUBGOAL (fn (goal, i) => |
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235 |
SELECT_GOAL (hoare_tc_rule_tac ctxt (Mset ctxt goal) tac true 1) i); |
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236 |
|
55660 | 237 |
end; |