author  wenzelm 
Mon, 07 Oct 2013 21:24:44 +0200  
changeset 54313  da2e6282a4f5 
parent 52519  598addf65209 
child 54889  4121d64fde90 
permissions  rwrr 
24590  1 
(* Title: Tools/nbe.ML 
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Authors: Klaus Aehlig, LMU Muenchen; Tobias Nipkow, Florian Haftmann, TU Muenchen 
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Normalization by evaluation, based on generic code generator. 
24155  5 
*) 
6 

7 
signature NBE = 

8 
sig 

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val dynamic_conv: theory > conv 
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val dynamic_value: theory > term > term 
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val static_conv: theory > string list > conv 

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val static_value: theory > string list > term > term 

25101  13 

25204  14 
datatype Univ = 
26064  15 
Const of int * Univ list (*named (uninterpreted) constants*) 
25924  16 
 DFree of string * int (*free (uninterpreted) dictionary parameters*) 
24155  17 
 BVar of int * Univ list 
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 Abs of (int * (Univ list > Univ)) * Univ list 
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val apps: Univ > Univ list > Univ (*explicit applications*) 
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val abss: int > (Univ list > Univ) > Univ 
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(*abstractions as closures*) 
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val same: Univ * Univ > bool 
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val put_result: (unit > Univ list > Univ list) > Proof.context > Proof.context 
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val trace: bool Unsynchronized.ref 
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val setup: theory > theory 
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val add_const_alias: thm > theory > theory 
24155  29 
end; 
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31 
structure Nbe: NBE = 

32 
struct 

33 

34 
(* generic nonsense *) 

35 

32740  36 
val trace = Unsynchronized.ref false; 
32544  37 
fun traced f x = if !trace then (tracing (f x); x) else x; 
24155  38 

39 

32544  40 
(** certificates and oracle for "trivial type classes" **) 
41 

33522  42 
structure Triv_Class_Data = Theory_Data 
32544  43 
( 
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type T = (class * thm) list; 

45 
val empty = []; 

46 
val extend = I; 

33522  47 
fun merge data : T = AList.merge (op =) (K true) data; 
32544  48 
); 
49 

50 
fun add_const_alias thm thy = 

51 
let 

52 
val (ofclass, eqn) = case try Logic.dest_equals (Thm.prop_of thm) 

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of SOME ofclass_eq => ofclass_eq 

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 _ => error ("Bad certificate: " ^ Display.string_of_thm_global thy thm); 

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val (T, class) = case try Logic.dest_of_class ofclass 

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of SOME T_class => T_class 

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 _ => error ("Bad certificate: " ^ Display.string_of_thm_global thy thm); 

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val tvar = case try Term.dest_TVar T 

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of SOME (tvar as (_, sort)) => if null (filter (can (Axclass.get_info thy)) sort) 
32544  60 
then tvar 
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else error ("Bad sort: " ^ Display.string_of_thm_global thy thm) 

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 _ => error ("Bad type: " ^ Display.string_of_thm_global thy thm); 

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val _ = if Term.add_tvars eqn [] = [tvar] then () 

64 
else error ("Inconsistent type: " ^ Display.string_of_thm_global thy thm); 

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val lhs_rhs = case try Logic.dest_equals eqn 

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of SOME lhs_rhs => lhs_rhs 

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 _ => error ("Not an equation: " ^ Syntax.string_of_term_global thy eqn); 

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val c_c' = case try (pairself (Axclass.unoverload_const thy o dest_Const)) lhs_rhs 
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of SOME c_c' => c_c' 
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 _ => error ("Not an equation with two constants: " 

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^ Syntax.string_of_term_global thy eqn); 

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val _ = if the_list (Axclass.class_of_param thy (snd c_c')) = [class] then () 
32544  73 
else error ("Inconsistent class: " ^ Display.string_of_thm_global thy thm); 
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in Triv_Class_Data.map (AList.update (op =) (class, thm)) thy end; 

75 

76 
local 

77 

78 
val get_triv_classes = map fst o Triv_Class_Data.get; 

79 

80 
val (_, triv_of_class) = Context.>>> (Context.map_theory_result 

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(Thm.add_oracle (@{binding triv_of_class}, fn (thy, T, class) => 
32544  82 
Thm.cterm_of thy (Logic.mk_of_class (T, class))))); 
83 

84 
in 

85 

86 
fun lift_triv_classes_conv thy conv ct = 

87 
let 

88 
val algebra = Sign.classes_of thy; 

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val certT = Thm.ctyp_of thy; 
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val triv_classes = get_triv_classes thy; 
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fun additional_classes sort = filter_out (fn class => Sorts.sort_le algebra (sort, [class])) triv_classes; 
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fun mk_entry (v, sort) = 
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let 
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val T = TFree (v, sort); 
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val cT = certT T; 
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val triv_sort = additional_classes sort; 
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in 
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(v, (Sorts.inter_sort algebra (sort, triv_sort), 
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(cT, AList.make (fn class => Thm.of_class (cT, class)) sort 
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@ AList.make (fn class => triv_of_class (thy, T, class)) triv_sort))) 
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end; 
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val vs_tab = map mk_entry (Term.add_tfrees (Thm.term_of ct) []); 
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fun instantiate thm = 
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let 
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val cert_tvars = map (certT o TVar) (Term.add_tvars 
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((fst o Logic.dest_equals o Logic.strip_imp_concl o Thm.prop_of) thm) []); 
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val instantiation = 
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map2 (fn cert_tvar => fn (_, (_, (cT, _))) => (cert_tvar, cT)) cert_tvars vs_tab; 
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in Thm.instantiate (instantiation, []) thm end; 
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fun of_class (TFree (v, _), class) = 
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the (AList.lookup (op =) ((snd o snd o the o AList.lookup (op =) vs_tab) v) class) 
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 of_class (T, _) = error ("Bad type " ^ Syntax.string_of_typ_global thy T); 
32544  113 
fun strip_of_class thm = 
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let 

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val prems_of_class = Thm.prop_of thm 
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> Logic.strip_imp_prems 
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> map (Logic.dest_of_class #> of_class); 
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in fold Thm.elim_implies prems_of_class thm end; 
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in 
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ct 
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> (Drule.cterm_fun o map_types o map_type_tfree) 
47609  122 
(fn (v, _) => TFree (v, (fst o the o AList.lookup (op =) vs_tab) v)) 
32544  123 
> conv 
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> Thm.strip_shyps 
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> Thm.varifyT_global 
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> Thm.unconstrainT 
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> instantiate 
32544  128 
> strip_of_class 
129 
end; 

130 

131 
fun lift_triv_classes_rew thy rew t = 

132 
let 

133 
val algebra = Sign.classes_of thy; 

134 
val triv_classes = get_triv_classes thy; 

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val vs = Term.add_tfrees t []; 

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in 
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t 
32544  138 
> (map_types o map_type_tfree) 
139 
(fn (v, sort) => TFree (v, Sorts.inter_sort algebra (sort, triv_classes))) 

140 
> rew 

141 
> (map_types o map_type_tfree) 

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(fn (v, sort) => TFree (v, the_default sort (AList.lookup (op =) vs v))) 
32544  143 
end; 
144 

145 
end; 

146 

147 

148 
(** the semantic universe **) 

24155  149 

150 
(* 

151 
Functions are given by their semantical function value. To avoid 

152 
trouble with the MLtype system, these functions have the most 

153 
generic type, that is "Univ list > Univ". The calling convention is 

154 
that the arguments come as a list, the last argument first. In 

155 
other words, a function call that usually would look like 

156 

157 
f x_1 x_2 ... x_n or f(x_1,x_2, ..., x_n) 

158 

159 
would be in our convention called as 

160 

161 
f [x_n,..,x_2,x_1] 

162 

163 
Moreover, to handle functions that are still waiting for some 

164 
arguments we have additionally a list of arguments collected to far 

165 
and the number of arguments we're still waiting for. 

166 
*) 

167 

25204  168 
datatype Univ = 
26064  169 
Const of int * Univ list (*named (uninterpreted) constants*) 
25924  170 
 DFree of string * int (*free (uninterpreted) dictionary parameters*) 
27499  171 
 BVar of int * Univ list (*bound variables, named*) 
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 Abs of (int * (Univ list > Univ)) * Univ list 
27499  173 
(*abstractions as closures*); 
24155  174 

35371  175 

24155  176 
(* constructor functions *) 
177 

25944  178 
fun abss n f = Abs ((n, f), []); 
25924  179 
fun apps (Abs ((n, f), xs)) ys = let val k = n  length ys in 
27499  180 
case int_ord (k, 0) 
181 
of EQUAL => f (ys @ xs) 

182 
 LESS => let val (zs, ws) = chop (~ k) ys in apps (f (ws @ xs)) zs end 

183 
 GREATER => Abs ((k, f), ys @ xs) (*note: reverse convention also for apps!*) 

184 
end 

25924  185 
 apps (Const (name, xs)) ys = Const (name, ys @ xs) 
27499  186 
 apps (BVar (n, xs)) ys = BVar (n, ys @ xs); 
24155  187 

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fun same (Const (k, xs), Const (l, ys)) = k = l andalso eq_list same (xs, ys) 
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 same (DFree (s, k), DFree (t, l)) = s = t andalso k = l 
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 same (BVar (k, xs), BVar (l, ys)) = k = l andalso eq_list same (xs, ys) 
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 same _ = false; 
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24155  193 

194 
(** assembling and compiling ML code from terms **) 

195 

196 
(* abstract ML syntax *) 

197 

198 
infix 9 `$` `$$`; 

199 
fun e1 `$` e2 = "(" ^ e1 ^ " " ^ e2 ^ ")"; 

25101  200 
fun e `$$` [] = e 
201 
 e `$$` es = "(" ^ e ^ " " ^ space_implode " " es ^ ")"; 

24590  202 
fun ml_abs v e = "(fn " ^ v ^ " => " ^ e ^ ")"; 
24155  203 

204 
fun ml_cases t cs = 

205 
"(case " ^ t ^ " of " ^ space_implode "  " (map (fn (p, t) => p ^ " => " ^ t) cs) ^ ")"; 

25944  206 
fun ml_Let d e = "let\n" ^ d ^ " in " ^ e ^ " end"; 
28337  207 
fun ml_as v t = "(" ^ v ^ " as " ^ t ^ ")"; 
24155  208 

28350  209 
fun ml_and [] = "true" 
210 
 ml_and [x] = x 

211 
 ml_and xs = "(" ^ space_implode " andalso " xs ^ ")"; 

212 
fun ml_if b x y = "(if " ^ b ^ " then " ^ x ^ " else " ^ y ^ ")"; 

213 

24155  214 
fun ml_list es = "[" ^ commas es ^ "]"; 
215 

216 
fun ml_fundefs ([(name, [([], e)])]) = 

217 
"val " ^ name ^ " = " ^ e ^ "\n" 

218 
 ml_fundefs (eqs :: eqss) = 

219 
let 

220 
fun fundef (name, eqs) = 

221 
let 

222 
fun eqn (es, e) = name ^ " " ^ space_implode " " es ^ " = " ^ e 

223 
in space_implode "\n  " (map eqn eqs) end; 

224 
in 

225 
(prefix "fun " o fundef) eqs :: map (prefix "and " o fundef) eqss 

26931  226 
> cat_lines 
24155  227 
> suffix "\n" 
228 
end; 

229 

35371  230 

25944  231 
(* nbe specific syntax and sandbox communication *) 
232 

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structure Univs = Proof_Data 
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( 
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type T = unit > Univ list > Univ list 
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(* FIXME avoid user error with nonuser text *) 
39399  237 
fun init _ () = error "Univs" 
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); 
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val put_result = Univs.put; 
24155  240 

241 
local 

41068  242 
val prefix = "Nbe."; 
243 
val name_put = prefix ^ "put_result"; 

244 
val name_const = prefix ^ "Const"; 

245 
val name_abss = prefix ^ "abss"; 

246 
val name_apps = prefix ^ "apps"; 

247 
val name_same = prefix ^ "same"; 

24155  248 
in 
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val univs_cookie = (Univs.get, put_result, name_put); 
25944  251 

28337  252 
fun nbe_fun 0 "" = "nbe_value" 
253 
 nbe_fun i c = "c_" ^ translate_string (fn "." => "_"  c => c) c ^ "_" ^ string_of_int i; 

25101  254 
fun nbe_dict v n = "d_" ^ v ^ "_" ^ string_of_int n; 
24155  255 
fun nbe_bound v = "v_" ^ v; 
31888  256 
fun nbe_bound_optional NONE = "_" 
35500  257 
 nbe_bound_optional (SOME v) = nbe_bound v; 
28337  258 
fun nbe_default v = "w_" ^ v; 
24155  259 

25924  260 
(*note: these three are the "turning spots" where proper argument order is established!*) 
261 
fun nbe_apps t [] = t 

262 
 nbe_apps t ts = name_apps `$$` [t, ml_list (rev ts)]; 

28337  263 
fun nbe_apps_local i c ts = nbe_fun i c `$` ml_list (rev ts); 
264 
fun nbe_apps_constr idx_of c ts = 

265 
let 

266 
val c' = if !trace then string_of_int (idx_of c) ^ " (*" ^ c ^ "*)" 

267 
else string_of_int (idx_of c); 

268 
in name_const `$` ("(" ^ c' ^ ", " ^ ml_list (rev ts) ^ ")") end; 

25924  269 

24155  270 
fun nbe_abss 0 f = f `$` ml_list [] 
25944  271 
 nbe_abss n f = name_abss `$$` [string_of_int n, f]; 
24155  272 

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fun nbe_same (v1, v2) = "(" ^ name_same ^ " (" ^ nbe_bound v1 ^ ", " ^ nbe_bound v2 ^ "))"; 
28350  274 

24155  275 
end; 
276 

28054  277 
open Basic_Code_Thingol; 
24155  278 

35371  279 

25865  280 
(* code generation *) 
24155  281 

26064  282 
fun assemble_eqnss idx_of deps eqnss = 
25944  283 
let 
284 
fun prep_eqns (c, (vs, eqns)) = 

25924  285 
let 
25944  286 
val dicts = maps (fn (v, sort) => map_index (nbe_dict v o fst) sort) vs; 
28337  287 
val num_args = length dicts + ((length o fst o hd) eqns); 
25944  288 
in (c, (num_args, (dicts, eqns))) end; 
289 
val eqnss' = map prep_eqns eqnss; 

290 

291 
fun assemble_constapp c dss ts = 

292 
let 

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val ts' = (maps o map) assemble_dict dss @ ts; 
25944  294 
in case AList.lookup (op =) eqnss' c 
28337  295 
of SOME (num_args, _) => if num_args <= length ts' 
296 
then let val (ts1, ts2) = chop num_args ts' 

297 
in nbe_apps (nbe_apps_local 0 c ts1) ts2 

298 
end else nbe_apps (nbe_abss num_args (nbe_fun 0 c)) ts' 

25944  299 
 NONE => if member (op =) deps c 
28337  300 
then nbe_apps (nbe_fun 0 c) ts' 
301 
else nbe_apps_constr idx_of c ts' 

25924  302 
end 
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and assemble_classrels classrels = 
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fold_rev (fn classrel => assemble_constapp classrel [] o single) classrels 
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305 
and assemble_dict (Dict (classrels, x)) = 
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306 
assemble_classrels classrels (assemble_plain_dict x) 
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307 
and assemble_plain_dict (Dict_Const (inst, dss)) = 
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308 
assemble_constapp inst dss [] 
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309 
 assemble_plain_dict (Dict_Var (v, (n, _))) = 
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310 
nbe_dict v n 
25924  311 

28350  312 
fun assemble_iterm constapp = 
24155  313 
let 
28350  314 
fun of_iterm match_cont t = 
25944  315 
let 
28054  316 
val (t', ts) = Code_Thingol.unfold_app t 
28350  317 
in of_iapp match_cont t' (fold_rev (cons o of_iterm NONE) ts []) end 
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318 
and of_iapp match_cont (IConst { name = c, dicts = dss, ... }) ts = constapp c dss ts 
31889  319 
 of_iapp match_cont (IVar v) ts = nbe_apps (nbe_bound_optional v) ts 
31724  320 
 of_iapp match_cont ((v, _) `=> t) ts = 
31888  321 
nbe_apps (nbe_abss 1 (ml_abs (ml_list [nbe_bound_optional v]) (of_iterm NONE t))) ts 
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322 
 of_iapp match_cont (ICase { term = t, clauses = clauses, primitive = t0, ... }) ts = 
28350  323 
nbe_apps (ml_cases (of_iterm NONE t) 
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324 
(map (fn (p, t) => (of_iterm NONE p, of_iterm match_cont t)) clauses 
28350  325 
@ [("_", case match_cont of SOME s => s  NONE => of_iterm NONE t0)])) ts 
25944  326 
in of_iterm end; 
24155  327 

28350  328 
fun subst_nonlin_vars args = 
329 
let 

330 
val vs = (fold o Code_Thingol.fold_varnames) 

33002  331 
(fn v => AList.map_default (op =) (v, 0) (Integer.add 1)) args []; 
28350  332 
val names = Name.make_context (map fst vs); 
43329
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333 
fun declare v k ctxt = 
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334 
let val vs = Name.invent ctxt v k 
28350  335 
in (vs, fold Name.declare vs ctxt) end; 
336 
val (vs_renames, _) = fold_map (fn (v, k) => if k > 1 

337 
then declare v (k  1) #>> (fn vs => (v, vs)) 

338 
else pair (v, [])) vs names; 

339 
val samepairs = maps (fn (v, vs) => map (pair v) vs) vs_renames; 

340 
fun subst_vars (t as IConst _) samepairs = (t, samepairs) 

31889  341 
 subst_vars (t as IVar NONE) samepairs = (t, samepairs) 
342 
 subst_vars (t as IVar (SOME v)) samepairs = (case AList.lookup (op =) samepairs v 

343 
of SOME v' => (IVar (SOME v'), AList.delete (op =) v samepairs) 

28350  344 
 NONE => (t, samepairs)) 
345 
 subst_vars (t1 `$ t2) samepairs = samepairs 

346 
> subst_vars t1 

347 
>> subst_vars t2 

348 
>> (op `$) 

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349 
 subst_vars (ICase { primitive = t, ... }) samepairs = subst_vars t samepairs; 
28350  350 
val (args', _) = fold_map subst_vars args samepairs; 
351 
in (samepairs, args') end; 

352 

28337  353 
fun assemble_eqn c dicts default_args (i, (args, rhs)) = 
354 
let 

355 
val is_eval = (c = ""); 

356 
val default_rhs = nbe_apps_local (i+1) c (dicts @ default_args); 

357 
val match_cont = if is_eval then NONE else SOME default_rhs; 

28350  358 
val assemble_arg = assemble_iterm 
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359 
(fn c => fn dss => fn ts => nbe_apps_constr idx_of c ((maps o map) (K "_") dss @ ts)) NONE; 
35371  360 
val assemble_rhs = assemble_iterm assemble_constapp match_cont; 
28350  361 
val (samepairs, args') = subst_nonlin_vars args; 
362 
val s_args = map assemble_arg args'; 

363 
val s_rhs = if null samepairs then assemble_rhs rhs 

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364 
else ml_if (ml_and (map nbe_same samepairs)) 
28350  365 
(assemble_rhs rhs) default_rhs; 
28337  366 
val eqns = if is_eval then 
28350  367 
[([ml_list (rev (dicts @ s_args))], s_rhs)] 
28337  368 
else 
28350  369 
[([ml_list (rev (dicts @ map2 ml_as default_args s_args))], s_rhs), 
28337  370 
([ml_list (rev (dicts @ default_args))], default_rhs)] 
371 
in (nbe_fun i c, eqns) end; 

372 

25944  373 
fun assemble_eqns (c, (num_args, (dicts, eqns))) = 
374 
let 

28337  375 
val default_args = map nbe_default 
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376 
(Name.invent Name.context "a" (num_args  length dicts)); 
28337  377 
val eqns' = map_index (assemble_eqn c dicts default_args) eqns 
378 
@ (if c = "" then [] else [(nbe_fun (length eqns) c, 

379 
[([ml_list (rev (dicts @ default_args))], 

380 
nbe_apps_constr idx_of c (dicts @ default_args))])]); 

381 
in (eqns', nbe_abss num_args (nbe_fun 0 c)) end; 

24155  382 

25944  383 
val (fun_vars, fun_vals) = map_split assemble_eqns eqnss'; 
28337  384 
val deps_vars = ml_list (map (nbe_fun 0) deps); 
385 
in ml_abs deps_vars (ml_Let (ml_fundefs (flat fun_vars)) (ml_list fun_vals)) end; 

25944  386 

35371  387 

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388 
(* compile equations *) 
25944  389 

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390 
fun compile_eqnss thy nbe_program raw_deps [] = [] 
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391 
 compile_eqnss thy nbe_program raw_deps eqnss = 
24155  392 
let 
42361  393 
val ctxt = Proof_Context.init_global thy; 
26064  394 
val (deps, deps_vals) = split_list (map_filter 
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395 
(fn dep => Option.map (fn univ => (dep, univ)) (fst ((Graph.get_node nbe_program dep)))) raw_deps); 
26064  396 
val idx_of = raw_deps 
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397 
> map (fn dep => (dep, snd (Graph.get_node nbe_program dep))) 
26064  398 
> AList.lookup (op =) 
399 
> (fn f => the o f); 

400 
val s = assemble_eqnss idx_of deps eqnss; 

24155  401 
val cs = map fst eqnss; 
25944  402 
in 
403 
s 

32544  404 
> traced (fn s => "\n code to be evaluated:\n" ^ s) 
38931
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diff
changeset

405 
> pair "" 
39911  406 
> Code_Runtime.value ctxt univs_cookie 
25944  407 
> (fn f => f deps_vals) 
408 
> (fn univs => cs ~~ univs) 

409 
end; 

25190  410 

30672
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changeset

411 

39392
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412 
(* extract equations from statements *) 
24155  413 

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414 
fun dummy_const c dss = 
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415 
IConst { name = c, typargs = [], dicts = dss, 
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416 
dom = [], range = ITyVar "", annotate = false }; 
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417 

37437  418 
fun eqns_of_stmt (_, Code_Thingol.Fun (_, ((_, []), _))) = 
25101  419 
[] 
37437  420 
 eqns_of_stmt (const, Code_Thingol.Fun (_, (((vs, _), eqns), _))) = 
25101  421 
[(const, (vs, map fst eqns))] 
28054  422 
 eqns_of_stmt (_, Code_Thingol.Datatypecons _) = 
25101  423 
[] 
28054  424 
 eqns_of_stmt (_, Code_Thingol.Datatype _) = 
25101  425 
[] 
37447
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diff
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426 
 eqns_of_stmt (class, Code_Thingol.Class (_, (v, (super_classes, classparams)))) = 
25101  427 
let 
37384
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changeset

428 
val names = map snd super_classes @ map fst classparams; 
43329
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429 
val params = Name.invent Name.context "d" (length names); 
25101  430 
fun mk (k, name) = 
431 
(name, ([(v, [])], 

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432 
[([dummy_const class [] `$$ map (IVar o SOME) params], 
31889  433 
IVar (SOME (nth params k)))])); 
25101  434 
in map_index mk names end 
28054  435 
 eqns_of_stmt (_, Code_Thingol.Classrel _) = 
25101  436 
[] 
28054  437 
 eqns_of_stmt (_, Code_Thingol.Classparam _) = 
25101  438 
[] 
48072
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439 
 eqns_of_stmt (inst, Code_Thingol.Classinst { class, vs, superinsts, inst_params, ... }) = 
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440 
[(inst, (vs, [([], dummy_const class [] `$$ 
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441 
map (fn (_, (_, (inst, dss))) => dummy_const inst dss) superinsts 
52519
598addf65209
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haftmann
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diff
changeset

442 
@ map (IConst o fst o snd o fst) inst_params)]))]; 
24155  443 

39392
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changeset

444 

7a0fcee7a2a3
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445 
(* compile whole programs *) 
7a0fcee7a2a3
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446 

39399  447 
fun ensure_const_idx name (nbe_program, (maxidx, idx_tab)) = 
448 
if can (Graph.get_node nbe_program) name 

449 
then (nbe_program, (maxidx, idx_tab)) 

450 
else (Graph.new_node (name, (NONE, maxidx)) nbe_program, 

451 
(maxidx + 1, Inttab.update_new (maxidx, name) idx_tab)); 

452 

39392
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453 
fun compile_stmts thy stmts_deps = 
25101  454 
let 
455 
val names = map (fst o fst) stmts_deps; 

456 
val names_deps = map (fn ((name, _), deps) => (name, deps)) stmts_deps; 

457 
val eqnss = maps (eqns_of_stmt o fst) stmts_deps; 

26064  458 
val refl_deps = names_deps 
25190  459 
> maps snd 
460 
> distinct (op =) 

26064  461 
> fold (insert (op =)) names; 
39392
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462 
fun compile nbe_program = eqnss 
7a0fcee7a2a3
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463 
> compile_eqnss thy nbe_program refl_deps 
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464 
> rpair nbe_program; 
25101  465 
in 
39399  466 
fold ensure_const_idx refl_deps 
26064  467 
#> apfst (fold (fn (name, deps) => fold (curry Graph.add_edge name) deps) names_deps 
468 
#> compile 

469 
#> fold (fn (name, univ) => (Graph.map_node name o apfst) (K (SOME univ)))) 

25101  470 
end; 
24155  471 

39392
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diff
changeset

472 
fun compile_program thy program = 
25101  473 
let 
39392
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haftmann
parents:
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diff
changeset

474 
fun add_stmts names (nbe_program, (maxidx, idx_tab)) = if exists ((can o Graph.get_node) nbe_program) names 
7a0fcee7a2a3
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haftmann
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475 
then (nbe_program, (maxidx, idx_tab)) 
7a0fcee7a2a3
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haftmann
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476 
else (nbe_program, (maxidx, idx_tab)) 
7a0fcee7a2a3
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haftmann
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diff
changeset

477 
> compile_stmts thy (map (fn name => ((name, Graph.get_node program name), 
44338
700008399ee5
refined Graph implementation: more abstract/scalable Graph.Keys instead of plain lists  order of adjacency is now standardized wrt. Key.ord;
wenzelm
parents:
43619
diff
changeset

478 
Graph.immediate_succs program name)) names); 
28706  479 
in 
480 
fold_rev add_stmts (Graph.strong_conn program) 

481 
end; 

24155  482 

25944  483 

484 
(** evaluation **) 

485 

39392
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haftmann
parents:
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diff
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486 
(* term evaluation by compilation *) 
25944  487 

39392
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more clear separation of static compilation and dynamic evaluation
haftmann
parents:
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diff
changeset

488 
fun compile_term thy nbe_program deps (vs : (string * sort) list, t) = 
25924  489 
let 
490 
val dict_frees = maps (fn (v, sort) => map_index (curry DFree v o fst) sort) vs; 

491 
in 

31064  492 
("", (vs, [([], t)])) 
39392
7a0fcee7a2a3
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haftmann
parents:
39388
diff
changeset

493 
> singleton (compile_eqnss thy nbe_program deps) 
25924  494 
> snd 
31064  495 
> (fn t => apps t (rev dict_frees)) 
25924  496 
end; 
24155  497 

35371  498 

39392
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
haftmann
parents:
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diff
changeset

499 
(* reconstruction *) 
24155  500 

30947  501 
fun typ_of_itype program vs (ityco `%% itys) = 
502 
let 

503 
val Code_Thingol.Datatype (tyco, _) = Graph.get_node program ityco; 

504 
in Type (tyco, map (typ_of_itype program vs) itys) end 

505 
 typ_of_itype program vs (ITyVar v) = 

506 
let 

507 
val sort = (the o AList.lookup (op =) vs) v; 

508 
in TFree ("'" ^ v, sort) end; 

509 

28663
bd8438543bf2
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haftmann
parents:
28423
diff
changeset

510 
fun term_of_univ thy program idx_tab t = 
24155  511 
let 
25101  512 
fun take_until f [] = [] 
513 
 take_until f (x::xs) = if f x then [] else x :: take_until f xs; 

28663
bd8438543bf2
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haftmann
parents:
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diff
changeset

514 
fun is_dict (Const (idx, _)) = (case (Graph.get_node program o the o Inttab.lookup idx_tab) idx 
bd8438543bf2
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haftmann
parents:
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diff
changeset

515 
of Code_Thingol.Class _ => true 
bd8438543bf2
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haftmann
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diff
changeset

516 
 Code_Thingol.Classrel _ => true 
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haftmann
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diff
changeset

517 
 Code_Thingol.Classinst _ => true 
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haftmann
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diff
changeset

518 
 _ => false) 
25101  519 
 is_dict (DFree _) = true 
520 
 is_dict _ = false; 

28663
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haftmann
parents:
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diff
changeset

521 
fun const_of_idx idx = (case (Graph.get_node program o the o Inttab.lookup idx_tab) idx 
35371  522 
of Code_Thingol.Fun (c, _) => c 
523 
 Code_Thingol.Datatypecons (c, _) => c 

524 
 Code_Thingol.Classparam (c, _) => c); 

24155  525 
fun of_apps bounds (t, ts) = 
526 
fold_map (of_univ bounds) ts 

527 
#>> (fn ts' => list_comb (t, rev ts')) 

26064  528 
and of_univ bounds (Const (idx, ts)) typidx = 
24155  529 
let 
25101  530 
val ts' = take_until is_dict ts; 
28663
bd8438543bf2
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haftmann
parents:
28423
diff
changeset

531 
val c = const_of_idx idx; 
31957  532 
val T = map_type_tvar (fn ((v, i), _) => 
37145
01aa36932739
renamed structure TypeInfer to Type_Infer, keeping the old name as legacy alias for some time;
wenzelm
parents:
36982
diff
changeset

533 
Type_Infer.param typidx (v ^ string_of_int i, [])) 
31957  534 
(Sign.the_const_type thy c); 
30022
1d8b8fa19074
maintain order of constructors in datatypes; clarified conventions for type schemes
haftmann
parents:
29272
diff
changeset

535 
val typidx' = typidx + 1; 
31957  536 
in of_apps bounds (Term.Const (c, T), ts') typidx' end 
27499  537 
 of_univ bounds (BVar (n, ts)) typidx = 
538 
of_apps bounds (Bound (bounds  n  1), ts) typidx 

24155  539 
 of_univ bounds (t as Abs _) typidx = 
540 
typidx 

25924  541 
> of_univ (bounds + 1) (apps t [BVar (bounds, [])]) 
24155  542 
> (fn t' => pair (Term.Abs ("u", dummyT, t'))) 
543 
in of_univ 0 t 0 > fst end; 

544 

35371  545 

39392
7a0fcee7a2a3
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haftmann
parents:
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diff
changeset

546 
(* evaluation with type reconstruction *) 
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
haftmann
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diff
changeset

547 

7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
haftmann
parents:
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diff
changeset

548 
fun eval_term thy program (nbe_program, idx_tab) ((vs0, (vs, ty)), t) deps = 
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
haftmann
parents:
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diff
changeset

549 
let 
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
haftmann
parents:
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diff
changeset

550 
val ctxt = Syntax.init_pretty_global thy; 
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
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diff
changeset

551 
val string_of_term = Syntax.string_of_term (Config.put show_types true ctxt); 
7a0fcee7a2a3
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haftmann
parents:
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diff
changeset

552 
val ty' = typ_of_itype program vs0 ty; 
42405
13ecdb3057d8
split Type_Infer into early and late part, after Proof_Context;
wenzelm
parents:
42361
diff
changeset

553 
fun type_infer t = 
13ecdb3057d8
split Type_Infer into early and late part, after Proof_Context;
wenzelm
parents:
42361
diff
changeset

554 
Syntax.check_term (Config.put Type_Infer_Context.const_sorts false ctxt) 
13ecdb3057d8
split Type_Infer into early and late part, after Proof_Context;
wenzelm
parents:
42361
diff
changeset

555 
(Type.constraint ty' t); 
39392
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
haftmann
parents:
39388
diff
changeset

556 
fun check_tvars t = 
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
haftmann
parents:
39388
diff
changeset

557 
if null (Term.add_tvars t []) then t 
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
haftmann
parents:
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diff
changeset

558 
else error ("Illegal schematic type variables in normalized term: " ^ string_of_term t); 
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more clear separation of static compilation and dynamic evaluation
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parents:
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diff
changeset

559 
in 
7a0fcee7a2a3
more clear separation of static compilation and dynamic evaluation
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parents:
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changeset

560 
compile_term thy nbe_program deps (vs, t) 
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more clear separation of static compilation and dynamic evaluation
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561 
> term_of_univ thy program idx_tab 
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562 
> traced (fn t => "Normalized:\n" ^ string_of_term t) 
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563 
> type_infer 
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more clear separation of static compilation and dynamic evaluation
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changeset

564 
> traced (fn t => "Types inferred:\n" ^ string_of_term t) 
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more clear separation of static compilation and dynamic evaluation
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565 
> check_tvars 
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parents:
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566 
> traced (fn _ => "\n") 
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567 
end; 
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changeset

568 

39436  569 

25101  570 
(* function store *) 
571 

34173
458ced35abb8
reduced code generator cache to the baremost minimum
haftmann
parents:
33522
diff
changeset

572 
structure Nbe_Functions = Code_Data 
25101  573 
( 
35500  574 
type T = (Univ option * int) Graph.T * (int * string Inttab.table); 
575 
val empty = (Graph.empty, (0, Inttab.empty)); 

25101  576 
); 
577 

39399  578 
fun compile ignore_cache thy program = 
24155  579 
let 
39392
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parents:
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diff
changeset

580 
val (nbe_program, (_, idx_tab)) = 
39399  581 
Nbe_Functions.change (if ignore_cache then NONE else SOME thy) 
582 
(compile_program thy program); 

39392
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diff
changeset

583 
in (nbe_program, idx_tab) end; 
24155  584 

32544  585 

47572  586 
(* evaluation oracle *) 
24155  587 

30947  588 
fun mk_equals thy lhs raw_rhs = 
26747
f32fa5f5bdd1
moved 'trivial classes' to foundation of code generator
haftmann
parents:
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diff
changeset

589 
let 
30947  590 
val ty = Thm.typ_of (Thm.ctyp_of_term lhs); 
591 
val eq = Thm.cterm_of thy (Term.Const ("==", ty > ty > propT)); 

592 
val rhs = Thm.cterm_of thy raw_rhs; 

593 
in Thm.mk_binop eq lhs rhs end; 

26747
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moved 'trivial classes' to foundation of code generator
haftmann
parents:
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diff
changeset

594 

38669
9ff76d0f0610
refined and unified naming convention for dynamic code evaluation techniques
haftmann
parents:
37449
diff
changeset

595 
val (_, raw_oracle) = Context.>>> (Context.map_theory_result 
43619
3803869014aa
proper @{binding} antiquotations (relevant for formal references);
wenzelm
parents:
43329
diff
changeset

596 
(Thm.add_oracle (@{binding normalization_by_evaluation}, 
39399  597 
fn (thy, program, nbe_program_idx_tab, vsp_ty_t, deps, ct) => 
598 
mk_equals thy ct (eval_term thy program nbe_program_idx_tab vsp_ty_t deps)))); 

31064  599 

39399  600 
fun oracle thy program nbe_program_idx_tab vsp_ty_t deps ct = 
601 
raw_oracle (thy, program, nbe_program_idx_tab, vsp_ty_t, deps, ct); 

30942
1e246776f876
diagnostic commands now in code_thingol; tuned code of funny continuations
haftmann
parents:
30672
diff
changeset

602 

41247  603 
fun dynamic_conv thy = lift_triv_classes_conv thy (Code_Thingol.dynamic_conv thy 
604 
(K (fn program => oracle thy program (compile false thy program)))); 

24155  605 

41184  606 
fun dynamic_value thy = lift_triv_classes_rew thy 
607 
(Code_Thingol.dynamic_value thy I 

39606
7af0441a3a47
no_frees_* is subsumed by new framework mechanisms in Code_Preproc
haftmann
parents:
39475
diff
changeset

608 
(K (fn program => eval_term thy program (compile false thy program)))); 
39399  609 

41184  610 
fun static_conv thy consts = 
611 
lift_triv_classes_conv thy (Code_Thingol.static_conv thy consts 

47573
6244475356ba
corrected Nbe.static_value: ignore cached compilations;
haftmann
parents:
47572
diff
changeset

612 
(K (fn program => fn _ => oracle thy program (compile true thy program)))); 
24839  613 

41184  614 
fun static_value thy consts = lift_triv_classes_rew thy 
615 
(Code_Thingol.static_value thy I consts 

47573
6244475356ba
corrected Nbe.static_value: ignore cached compilations;
haftmann
parents:
47572
diff
changeset

616 
(K (fn program => fn _ => eval_term thy program (compile true thy program)))); 
41184  617 

35371  618 

39396  619 
(** setup **) 
24155  620 

42361  621 
val setup = Value.add_evaluator ("nbe", dynamic_value o Proof_Context.theory_of); 
24155  622 

623 
end; 

28337  624 