| author | wenzelm | 
| Wed, 10 Jul 2013 22:04:57 +0200 | |
| changeset 52582 | 31467a4b1466 | 
| parent 46582 | dcc312f22ee8 | 
| child 55640 | abc140f21caa | 
| permissions | -rw-r--r-- | 
| 33026 | 1 | (* Title: HOL/Isar_Examples/Expr_Compiler.thy | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 2 | Author: Markus Wenzel, TU Muenchen | 
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 3 | |
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 4 | Correctness of a simple expression/stack-machine compiler. | 
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 5 | *) | 
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 6 | |
| 10007 | 7 | header {* Correctness of a simple expression compiler *}
 | 
| 7748 | 8 | |
| 31758 | 9 | theory Expr_Compiler | 
| 10 | imports Main | |
| 11 | begin | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 12 | |
| 37671 | 13 | text {* This is a (rather trivial) example of program verification.
 | 
| 14 | We model a compiler for translating expressions to stack machine | |
| 15 | instructions, and prove its correctness wrt.\ some evaluation | |
| 16 | semantics. *} | |
| 7869 | 17 | |
| 18 | ||
| 10007 | 19 | subsection {* Binary operations *}
 | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 20 | |
| 37671 | 21 | text {* Binary operations are just functions over some type of values.
 | 
| 22 | This is both for abstract syntax and semantics, i.e.\ we use a | |
| 23 | ``shallow embedding'' here. *} | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 24 | |
| 41818 | 25 | type_synonym 'val binop = "'val => 'val => 'val" | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 26 | |
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 27 | |
| 10007 | 28 | subsection {* Expressions *}
 | 
| 7869 | 29 | |
| 37671 | 30 | text {* The language of expressions is defined as an inductive type,
 | 
| 31 | consisting of variables, constants, and binary operations on | |
| 32 | expressions. *} | |
| 7869 | 33 | |
| 34 | datatype ('adr, 'val) expr =
 | |
| 37671 | 35 | Variable 'adr | 
| 36 | | Constant 'val | |
| 37 |   | Binop "'val binop" "('adr, 'val) expr" "('adr, 'val) expr"
 | |
| 7869 | 38 | |
| 37671 | 39 | text {* Evaluation (wrt.\ some environment of variable assignments) is
 | 
| 40 | defined by primitive recursion over the structure of expressions. *} | |
| 7869 | 41 | |
| 37671 | 42 | primrec eval :: "('adr, 'val) expr => ('adr => 'val) => 'val"
 | 
| 43 | where | |
| 7869 | 44 | "eval (Variable x) env = env x" | 
| 37671 | 45 | | "eval (Constant c) env = c" | 
| 46 | | "eval (Binop f e1 e2) env = f (eval e1 env) (eval e2 env)" | |
| 7869 | 47 | |
| 48 | ||
| 10007 | 49 | subsection {* Machine *}
 | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 50 | |
| 37671 | 51 | text {* Next we model a simple stack machine, with three
 | 
| 52 | instructions. *} | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 53 | |
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 54 | datatype ('adr, 'val) instr =
 | 
| 37671 | 55 | Const 'val | 
| 56 | | Load 'adr | |
| 57 | | Apply "'val binop" | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 58 | |
| 37671 | 59 | text {* Execution of a list of stack machine instructions is easily
 | 
| 60 | defined as follows. *} | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 61 | |
| 46582 | 62 | primrec exec :: "(('adr, 'val) instr) list => 'val list => ('adr => 'val) => 'val list"
 | 
| 37671 | 63 | where | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 64 | "exec [] stack env = stack" | 
| 37671 | 65 | | "exec (instr # instrs) stack env = | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 66 | (case instr of | 
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 67 | Const c => exec instrs (c # stack) env | 
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 68 | | Load x => exec instrs (env x # stack) env | 
| 7761 | 69 | | Apply f => exec instrs (f (hd stack) (hd (tl stack)) | 
| 10007 | 70 | # (tl (tl stack))) env)" | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 71 | |
| 46582 | 72 | definition execute :: "(('adr, 'val) instr) list => ('adr => 'val) => 'val"
 | 
| 37671 | 73 | where "execute instrs env = hd (exec instrs [] env)" | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 74 | |
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 75 | |
| 10007 | 76 | subsection {* Compiler *}
 | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 77 | |
| 37671 | 78 | text {* We are ready to define the compilation function of expressions
 | 
| 79 | to lists of stack machine instructions. *} | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 80 | |
| 46582 | 81 | primrec compile :: "('adr, 'val) expr => (('adr, 'val) instr) list"
 | 
| 37671 | 82 | where | 
| 8031 
826c6222cca2
renamed comp to compile (avoids clash with Relation.comp);
 wenzelm parents: 
7982diff
changeset | 83 | "compile (Variable x) = [Load x]" | 
| 37671 | 84 | | "compile (Constant c) = [Const c]" | 
| 85 | | "compile (Binop f e1 e2) = compile e2 @ compile e1 @ [Apply f]" | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 86 | |
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 87 | |
| 37671 | 88 | text {* The main result of this development is the correctness theorem
 | 
| 89 |   for @{text compile}.  We first establish a lemma about @{text exec}
 | |
| 90 | and list append. *} | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 91 | |
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 92 | lemma exec_append: | 
| 18153 | 93 | "exec (xs @ ys) stack env = | 
| 94 | exec ys (exec xs stack env) env" | |
| 20503 | 95 | proof (induct xs arbitrary: stack) | 
| 18153 | 96 | case Nil | 
| 97 | show ?case by simp | |
| 11809 | 98 | next | 
| 18153 | 99 | case (Cons x xs) | 
| 100 | show ?case | |
| 11809 | 101 | proof (induct x) | 
| 23373 | 102 | case Const | 
| 103 | from Cons show ?case by simp | |
| 18153 | 104 | next | 
| 23373 | 105 | case Load | 
| 106 | from Cons show ?case by simp | |
| 18153 | 107 | next | 
| 23373 | 108 | case Apply | 
| 109 | from Cons show ?case by simp | |
| 10007 | 110 | qed | 
| 111 | qed | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 112 | |
| 10007 | 113 | theorem correctness: "execute (compile e) env = eval e env" | 
| 114 | proof - | |
| 18193 | 115 | have "\<And>stack. exec (compile e) stack env = eval e env # stack" | 
| 11809 | 116 | proof (induct e) | 
| 18153 | 117 | case Variable show ?case by simp | 
| 118 | next | |
| 119 | case Constant show ?case by simp | |
| 120 | next | |
| 121 | case Binop then show ?case by (simp add: exec_append) | |
| 10007 | 122 | qed | 
| 23373 | 123 | then show ?thesis by (simp add: execute_def) | 
| 10007 | 124 | qed | 
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 125 | |
| 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 126 | |
| 37671 | 127 | text {* \bigskip In the proofs above, the @{text simp} method does
 | 
| 128 | quite a lot of work behind the scenes (mostly ``functional program | |
| 129 | execution''). Subsequently, the same reasoning is elaborated in | |
| 130 | detail --- at most one recursive function definition is used at a | |
| 131 | time. Thus we get a better idea of what is actually going on. *} | |
| 8051 | 132 | |
| 13524 | 133 | lemma exec_append': | 
| 18153 | 134 | "exec (xs @ ys) stack env = exec ys (exec xs stack env) env" | 
| 20503 | 135 | proof (induct xs arbitrary: stack) | 
| 18153 | 136 | case (Nil s) | 
| 137 | have "exec ([] @ ys) s env = exec ys s env" by simp | |
| 138 | also have "... = exec ys (exec [] s env) env" by simp | |
| 139 | finally show ?case . | |
| 140 | next | |
| 141 | case (Cons x xs s) | |
| 142 | show ?case | |
| 10007 | 143 | proof (induct x) | 
| 18153 | 144 | case (Const val) | 
| 145 | have "exec ((Const val # xs) @ ys) s env = exec (Const val # xs @ ys) s env" | |
| 146 | by simp | |
| 147 | also have "... = exec (xs @ ys) (val # s) env" by simp | |
| 148 | also from Cons have "... = exec ys (exec xs (val # s) env) env" . | |
| 149 | also have "... = exec ys (exec (Const val # xs) s env) env" by simp | |
| 150 | finally show ?case . | |
| 10007 | 151 | next | 
| 18153 | 152 | case (Load adr) | 
| 153 |     from Cons show ?case by simp -- {* same as above *}
 | |
| 154 | next | |
| 20523 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 155 | case (Apply fn) | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 156 | have "exec ((Apply fn # xs) @ ys) s env = | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 157 | exec (Apply fn # xs @ ys) s env" by simp | 
| 18153 | 158 | also have "... = | 
| 20523 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 159 | exec (xs @ ys) (fn (hd s) (hd (tl s)) # (tl (tl s))) env" by simp | 
| 18153 | 160 | also from Cons have "... = | 
| 20523 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 161 | exec ys (exec xs (fn (hd s) (hd (tl s)) # tl (tl s)) env) env" . | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 162 | also have "... = exec ys (exec (Apply fn # xs) s env) env" by simp | 
| 18153 | 163 | finally show ?case . | 
| 10007 | 164 | qed | 
| 165 | qed | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 166 | |
| 13537 | 167 | theorem correctness': "execute (compile e) env = eval e env" | 
| 10007 | 168 | proof - | 
| 18193 | 169 | have exec_compile: "\<And>stack. exec (compile e) stack env = eval e env # stack" | 
| 10007 | 170 | proof (induct e) | 
| 18153 | 171 | case (Variable adr s) | 
| 172 | have "exec (compile (Variable adr)) s env = exec [Load adr] s env" | |
| 173 | by simp | |
| 174 | also have "... = env adr # s" by simp | |
| 175 | also have "env adr = eval (Variable adr) env" by simp | |
| 176 | finally show ?case . | |
| 10007 | 177 | next | 
| 18153 | 178 | case (Constant val s) | 
| 179 |     show ?case by simp -- {* same as above *}
 | |
| 10007 | 180 | next | 
| 20523 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 181 | case (Binop fn e1 e2 s) | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 182 | have "exec (compile (Binop fn e1 e2)) s env = | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 183 | exec (compile e2 @ compile e1 @ [Apply fn]) s env" by simp | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 184 | also have "... = exec [Apply fn] | 
| 18153 | 185 | (exec (compile e1) (exec (compile e2) s env) env) env" | 
| 186 | by (simp only: exec_append) | |
| 187 | also have "exec (compile e2) s env = eval e2 env # s" by fact | |
| 188 | also have "exec (compile e1) ... env = eval e1 env # ..." by fact | |
| 20523 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 189 | also have "exec [Apply fn] ... env = | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 190 | fn (hd ...) (hd (tl ...)) # (tl (tl ...))" by simp | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 191 | also have "... = fn (eval e1 env) (eval e2 env) # s" by simp | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 192 | also have "fn (eval e1 env) (eval e2 env) = | 
| 
36a59e5d0039
Major update to function package, including new syntax and the (only theoretical)
 krauss parents: 
20503diff
changeset | 193 | eval (Binop fn e1 e2) env" | 
| 18153 | 194 | by simp | 
| 195 | finally show ?case . | |
| 10007 | 196 | qed | 
| 8051 | 197 | |
| 10007 | 198 | have "execute (compile e) env = hd (exec (compile e) [] env)" | 
| 199 | by (simp add: execute_def) | |
| 37671 | 200 | also from exec_compile have "exec (compile e) [] env = [eval e env]" . | 
| 10007 | 201 | also have "hd ... = eval e env" by simp | 
| 202 | finally show ?thesis . | |
| 203 | qed | |
| 6444 
2ebe9e630cab
Miscellaneous Isabelle/Isar examples for Higher-Order Logic.
 wenzelm parents: diff
changeset | 204 | |
| 10007 | 205 | end |