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permissions  rwrr 
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(* Title: Pure/context.ML 
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ID: $Id$ 

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Author: Markus Wenzel, TU Muenchen 

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Generic theory contexts with unique identity, arbitrarily typed data, 
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development graph and history support. Implicit theory contexts in ML. 
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Generic proof contexts with arbitrarily typed data. 

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*) 
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signature BASIC_CONTEXT = 

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sig 

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type theory 
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type theory_ref 
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exception THEORY of string * theory list 
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val context: theory > unit 
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val the_context: unit > theory 

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end; 

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signature CONTEXT = 

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sig 

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include BASIC_CONTEXT 

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(*theory context*) 
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val theory_name: theory > string 
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val parents_of: theory > theory list 
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val ancestors_of: theory > theory list 
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val is_stale: theory > bool 
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val ProtoPureN: string 
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val PureN: string 
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val CPureN: string 
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val draftN: string 
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val exists_name: string > theory > bool 
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val names_of: theory > string list 
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val pretty_thy: theory > Pretty.T 
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val string_of_thy: theory > string 
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val pprint_thy: theory > pprint_args > unit 
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val pretty_abbrev_thy: theory > Pretty.T 
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val str_of_thy: theory > string 
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val check_thy: theory > theory 
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val eq_thy: theory * theory > bool 
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val subthy: theory * theory > bool 
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val joinable: theory * theory > bool 
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val merge: theory * theory > theory (*exception TERM*) 
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val merge_refs: theory_ref * theory_ref > theory_ref (*exception TERM*) 
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val self_ref: theory > theory_ref 
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val deref: theory_ref > theory 
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val copy_thy: theory > theory 
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val checkpoint_thy: theory > theory 
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val finish_thy: theory > theory 
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val theory_data_of: theory > string list 
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val pre_pure_thy: theory 
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val begin_thy: (theory > Pretty.pp) > string > theory list > theory 
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(*ML theory context*) 
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val get_context: unit > theory option 
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val set_context: theory option > unit 

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val reset_context: unit > unit 

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val setmp: theory option > ('a > 'b) > 'a > 'b 
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val pass: theory option > ('a > 'b) > 'a > 'b * theory option 
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val pass_theory: theory > ('a > 'b) > 'a > 'b * theory 

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val save: ('a > 'b) > 'a > 'b 
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val >> : (theory > theory) > unit 
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val ml_output: (string > unit) * (string > unit) 
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val use_mltext: string > bool > theory option > unit 
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val use_mltext_theory: string > bool > theory > theory 
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val use_let: string > string > string > theory > theory 
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val add_setup: (theory > theory) > unit 
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val setup: unit > theory > theory 

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(*proof context*) 
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type proof 

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val theory_of_proof: proof > theory 

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val transfer_proof: theory > proof > proof 
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val init_proof: theory > proof 
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val proof_data_of: theory > string list 

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(*generic context*) 

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datatype generic = Theory of theory  Proof of proof 
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val cases: (theory > 'a) > (proof > 'a) > generic > 'a 

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val the_theory: generic > theory 

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val the_proof: generic > proof 

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val map_theory: (theory > theory) > generic > generic 
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val map_proof: (proof > proof) > generic > generic 

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val theory_map: (generic > generic) > theory > theory 

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val proof_map: (generic > generic) > proof > proof 

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val theory_of: generic > theory (*total*) 
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val proof_of: generic > proof (*total*) 

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end; 
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signature PRIVATE_CONTEXT = 
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sig 
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include CONTEXT 
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structure TheoryData: 
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sig 
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val declare: string > Object.T > (Object.T > Object.T) > (Object.T > Object.T) > 
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(Pretty.pp > Object.T * Object.T > Object.T) > serial 
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val init: serial > theory > theory 
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val get: serial > (Object.T > 'a) > theory > 'a 
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val put: serial > ('a > Object.T) > 'a > theory > theory 
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end 
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structure ProofData: 
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sig 

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val declare: string > (theory > Object.T) > serial 

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val init: serial > theory > theory 

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val get: serial > (Object.T > 'a) > proof > 'a 

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val put: serial > ('a > Object.T) > 'a > proof > proof 

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end 

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end; 
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structure Context: PRIVATE_CONTEXT = 
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struct 
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(*** theory context ***) 
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(** theory data **) 
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(* data kinds and access methods *) 
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(*private copy avoids potential conflict of table exceptions*) 
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structure Datatab = TableFun(type key = int val ord = int_ord); 
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local 
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type kind = 
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{name: string, 
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empty: Object.T, 
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copy: Object.T > Object.T, 
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extend: Object.T > Object.T, 
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merge: Pretty.pp > Object.T * Object.T > Object.T}; 
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val kinds = ref (Datatab.empty: kind Datatab.table); 
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fun invoke meth_name meth_fn k = 
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(case Datatab.lookup (! kinds) k of 
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SOME kind => meth_fn kind > transform_failure (fn exn => 
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EXCEPTION (exn, "Theory data method " ^ #name kind ^ "." ^ meth_name ^ " failed")) 
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 NONE => sys_error ("Invalid theory data identifier " ^ string_of_int k)); 
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in 
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fun invoke_name k = invoke "name" (K o #name) k (); 
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fun invoke_empty k = invoke "empty" (K o #empty) k (); 
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val invoke_copy = invoke "copy" #copy; 
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val invoke_extend = invoke "extend" #extend; 
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fun invoke_merge pp = invoke "merge" (fn kind => #merge kind pp); 
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fun declare_theory_data name empty copy extend merge = 
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let 
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val k = serial (); 
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val kind = {name = name, empty = empty, copy = copy, extend = extend, merge = merge}; 
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val _ = conditional (Datatab.exists (equal name o #name o #2) (! kinds)) (fn () => 
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warning ("Duplicate declaration of theory data " ^ quote name)); 
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val _ = change kinds (Datatab.update (k, kind)); 
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in k end; 
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val copy_data = Datatab.map' invoke_copy; 
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val extend_data = Datatab.map' invoke_extend; 
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fun merge_data pp = Datatab.join (invoke_merge pp) o pairself extend_data; 
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end; 
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(** datatype theory **) 
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datatype theory = 
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Theory of 
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(*identity*) 
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{self: theory ref option, (*dynamic self reference  follows theory changes*) 
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id: serial * string, (*identifier of this theory*) 
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ids: string Inttab.table, (*identifiers of ancestors*) 
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iids: string Inttab.table} * (*identifiers of intermediate checkpoints*) 
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(*data*) 
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{theory: Object.T Datatab.table, (*theory data record*) 
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proof: unit Datatab.table} * (*proof data kinds*) 
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(*ancestry*) 
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{parents: theory list, (*immediate predecessors*) 
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ancestors: theory list} * (*all predecessors*) 
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(*history*) 
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{name: string, (*prospective name of finished theory*) 
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version: int, (*checkpoint counter*) 
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intermediates: theory list}; (*intermediate checkpoints*) 
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exception THEORY of string * theory list; 
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fun rep_theory (Theory args) = args; 
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val identity_of = #1 o rep_theory; 
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val data_of = #2 o rep_theory; 
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val ancestry_of = #3 o rep_theory; 
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val history_of = #4 o rep_theory; 
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fun make_identity self id ids iids = {self = self, id = id, ids = ids, iids = iids}; 
16533  190 
fun make_data theory proof = {theory = theory, proof = proof}; 
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fun make_ancestry parents ancestors = {parents = parents, ancestors = ancestors}; 
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fun make_history name vers ints = {name = name, version = vers, intermediates = ints}; 
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18731  194 
fun map_theory_data f {theory, proof} = make_data (f theory) proof; 
195 
fun map_proof_data f {theory, proof} = make_data theory (f proof); 

16533  196 

197 
val the_self = the o #self o identity_of; 

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val parents_of = #parents o ancestry_of; 
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val ancestors_of = #ancestors o ancestry_of; 
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val theory_name = #name o history_of; 
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(* staleness *) 
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16533  205 
fun eq_id ((i: int, _), (j, _)) = (i = j); 
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fun is_stale 
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(Theory ({self = SOME (ref (Theory ({id = id', ...}, _, _, _))), id, ...}, _, _, _)) = 
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not (eq_id (id, id')) 
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 is_stale (Theory ({self = NONE, ...}, _, _, _)) = true; 
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211 

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fun vitalize (thy as Theory ({self = SOME r, ...}, _, _, _)) = (r := thy; thy) 
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 vitalize (thy as Theory ({self = NONE, id, ids, iids}, data, ancestry, history)) = 
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let 
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val r = ref thy; 
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val thy' = Theory (make_identity (SOME r) id ids iids, data, ancestry, history); 
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in r := thy'; thy' end; 
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(* names *) 
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val ProtoPureN = "ProtoPure"; 
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val PureN = "Pure"; 
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val CPureN = "CPure"; 
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val draftN = "#"; 
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fun draft_id (_, name) = (name = draftN); 
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val is_draft = draft_id o #id o identity_of; 
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fun exists_name name (Theory ({id, ids, iids, ...}, _, _, _)) = 
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name = #2 id orelse 
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Inttab.exists (equal name o #2) ids orelse 
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Inttab.exists (equal name o #2) iids; 
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fun names_of (Theory ({id, ids, iids, ...}, _, _, _)) = 
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rev (#2 id :: Inttab.fold (cons o #2) iids (Inttab.fold (cons o #2) ids [])); 
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fun pretty_thy thy = 
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Pretty.str_list "{" "}" (names_of thy @ (if is_stale thy then ["!"] else [])); 
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val string_of_thy = Pretty.string_of o pretty_thy; 
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val pprint_thy = Pretty.pprint o pretty_thy; 
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fun pretty_abbrev_thy thy = 
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let 
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val names = names_of thy; 
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val n = length names; 
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val abbrev = if n > 5 then "..." :: List.drop (names, n  5) else names; 
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in Pretty.str_list "{" "}" abbrev end; 
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250 

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val str_of_thy = Pretty.str_of o pretty_abbrev_thy; 
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16533  254 
(* consistency *) (*exception TERM*) 
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16719  256 
fun check_thy thy = 
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if is_stale thy then 
16719  258 
raise TERM ("Stale theory encountered:\n" ^ string_of_thy thy, []) 
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else thy; 
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fun check_ins id ids = 
16894  262 
if draft_id id orelse Inttab.defined ids (#1 id) then ids 
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else if Inttab.exists (equal (#2 id) o #2) ids then 
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raise TERM ("Different versions of theory component " ^ quote (#2 id), []) 
17412  265 
else Inttab.update id ids; 
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fun check_insert intermediate id (ids, iids) = 
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let val ids' = check_ins id ids and iids' = check_ins id iids 
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in if intermediate then (ids, iids') else (ids', iids) end; 
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fun check_merge 
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(Theory ({id = id1, ids = ids1, iids = iids1, ...}, _, _, history1)) 
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(Theory ({id = id2, ids = ids2, iids = iids2, ...}, _, _, history2)) = 
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(Inttab.fold check_ins ids2 ids1, Inttab.fold check_ins iids2 iids1) 
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> check_insert (#version history1 > 0) id1 
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> check_insert (#version history2 > 0) id2; 
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16533  279 
(* equality and inclusion *) 
280 

16719  281 
val eq_thy = eq_id o pairself (#id o identity_of o check_thy); 
16533  282 

283 
fun proper_subthy 

16719  284 
(Theory ({id = (i, _), ...}, _, _, _), Theory ({ids, iids, ...}, _, _, _)) = 
16894  285 
Inttab.defined ids i orelse Inttab.defined iids i; 
16533  286 

287 
fun subthy thys = eq_thy thys orelse proper_subthy thys; 

288 

16594  289 
fun joinable (thy1, thy2) = subthy (thy1, thy2) orelse subthy (thy2, thy1); 
290 

16533  291 

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(* theory references *) 
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(*theory_ref provides a safe way to store dynamic references to a 
16533  295 
theory in external data structures  a plain theory value would 
296 
become stale as the self reference moves on*) 

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datatype theory_ref = TheoryRef of theory ref; 
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16719  300 
val self_ref = TheoryRef o the_self o check_thy; 
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fun deref (TheoryRef (ref thy)) = thy; 
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16533  304 
(* trivial merge *) (*exception TERM*) 
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305 

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fun merge (thy1, thy2) = 
16719  307 
if eq_thy (thy1, thy2) then thy1 
308 
else if proper_subthy (thy2, thy1) then thy1 

309 
else if proper_subthy (thy1, thy2) then thy2 

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else (check_merge thy1 thy2; 
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raise TERM (cat_lines ["Attempt to perform nontrivial merge of theories:", 
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str_of_thy thy1, str_of_thy thy2], [])); 
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16719  314 
fun merge_refs (ref1, ref2) = 
315 
if ref1 = ref2 then ref1 

316 
else self_ref (merge (deref ref1, deref ref2)); 

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(** build theories **) 
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(* primitives *) 
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323 

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fun create_thy name self id ids iids data ancestry history = 
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let 
17756  326 
val {version, name = _, intermediates = _} = history; 
327 
val intermediate = version > 0; 

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val (ids', iids') = check_insert intermediate id (ids, iids); 
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val id' = (serial (), name); 
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val _ = check_insert intermediate id' (ids', iids'); 
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val identity' = make_identity self id' ids' iids'; 
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in vitalize (Theory (identity', data, ancestry, history)) end; 
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333 

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fun change_thy name f (thy as Theory ({self, id, ids, iids}, data, ancestry, history)) = 
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let 
16719  336 
val _ = check_thy thy; 
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val (self', data', ancestry') = 
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if is_draft thy then (self, data, ancestry) (*destructive change!*) 
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else if #version history > 0 
18731  340 
then (NONE, map_theory_data copy_data data, ancestry) 
341 
else (NONE, map_theory_data extend_data data, 

342 
make_ancestry [thy] (thy :: #ancestors ancestry)); 

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val data'' = f data'; 
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in create_thy name self' id ids iids data'' ancestry' history end; 
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345 

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fun name_thy name = change_thy name I; 
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val modify_thy = change_thy draftN; 
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val extend_thy = modify_thy I; 
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349 

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fun copy_thy (thy as Theory ({id, ids, iids, ...}, data, ancestry, history)) = 
16719  351 
(check_thy thy; 
18731  352 
create_thy draftN NONE id ids iids (map_theory_data copy_data data) ancestry history); 
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353 

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val pre_pure_thy = create_thy draftN NONE (serial (), draftN) Inttab.empty Inttab.empty 
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(make_data Datatab.empty Datatab.empty) (make_ancestry [] []) (make_history ProtoPureN 0 []); 
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356 

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357 

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358 
(* named theory nodes *) 
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359 

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360 
fun merge_thys pp (thy1, thy2) = 
16533  361 
if exists_name CPureN thy1 <> exists_name CPureN thy2 then 
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362 
error "Cannot merge Pure and CPure developments" 
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363 
else 
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364 
let 
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365 
val (ids, iids) = check_merge thy1 thy2; 
16533  366 
val data1 = data_of thy1 and data2 = data_of thy2; 
367 
val data = make_data 

368 
(merge_data (pp thy1) (#theory data1, #theory data2)) 

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369 
(Datatab.merge (K true) (#proof data1, #proof data2)); 
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370 
val ancestry = make_ancestry [] []; 
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371 
val history = make_history "" 0 []; 
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372 
in create_thy draftN NONE (serial (), draftN) ids iids data ancestry history end; 
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373 

16533  374 
fun maximal_thys thys = 
375 
thys > filter (fn thy => not (exists (fn thy' => proper_subthy (thy, thy')) thys)); 

376 

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377 
fun begin_thy pp name imports = 
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378 
if name = draftN then error ("Illegal theory name: " ^ quote draftN) 
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379 
else 
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380 
let 
16533  381 
val parents = 
16719  382 
maximal_thys (gen_distinct eq_thy (map check_thy imports)); 
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383 
val ancestors = gen_distinct eq_thy (parents @ List.concat (map ancestors_of parents)); 
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384 
val Theory ({id, ids, iids, ...}, data, _, _) = 
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385 
(case parents of 
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386 
[] => error "No parent theories" 
16533  387 
 [thy] => extend_thy thy 
388 
 thy :: thys => Library.foldl (merge_thys pp) (thy, thys)); 

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389 
val ancestry = make_ancestry parents ancestors; 
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390 
val history = make_history name 0 []; 
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391 
in create_thy draftN NONE id ids iids data ancestry history end; 
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392 

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393 

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394 
(* undoable checkpoints *) 
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395 

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396 
fun checkpoint_thy thy = 
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397 
if not (is_draft thy) then thy 
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398 
else 
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399 
let 
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400 
val {name, version, intermediates} = history_of thy; 
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401 
val thy' as Theory (identity', data', ancestry', _) = 
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402 
name_thy (name ^ ":" ^ string_of_int version) thy; 
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403 
val history' = make_history name (version + 1) (thy' :: intermediates); 
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404 
in vitalize (Theory (identity', data', ancestry', history')) end; 
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405 

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406 
fun finish_thy thy = 
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407 
let 
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408 
val {name, version, intermediates} = history_of thy; 
16719  409 
val rs = map (the_self o check_thy) intermediates; 
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410 
val thy' as Theory ({self, id, ids, ...}, data', ancestry', _) = name_thy name thy; 
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411 
val identity' = make_identity self id ids Inttab.empty; 
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412 
val history' = make_history name 0 []; 
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413 
val thy'' = vitalize (Theory (identity', data', ancestry', history')); 
16533  414 
val _ = List.app (fn r => r := thy'') rs; 
415 
in thy'' end; 

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416 

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417 

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418 
(* theory data *) 
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419 

16533  420 
fun dest_data name_of tab = 
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421 
map name_of (Datatab.keys tab) 
18931  422 
> map (rpair ()) > Symtab.make_list > Symtab.dest 
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423 
> map (apsnd length) 
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424 
> map (fn (name, 1) => name  (name, n) => name ^ enclose "[" "]" (string_of_int n)); 
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425 

16533  426 
val theory_data_of = dest_data invoke_name o #theory o data_of; 
427 

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428 
structure TheoryData = 
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429 
struct 
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430 

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431 
val declare = declare_theory_data; 
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432 

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433 
fun get k dest thy = 
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434 
(case Datatab.lookup (#theory (data_of thy)) k of 
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435 
SOME x => (dest x handle Match => 
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436 
error ("Failed to access theory data " ^ quote (invoke_name k))) 
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437 
 NONE => error ("Uninitialized theory data " ^ quote (invoke_name k))); 
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438 

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439 
fun put k mk x = modify_thy (map_theory_data (Datatab.update (k, mk x))); 
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440 
fun init k = put k I (invoke_empty k); 
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441 

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442 
end; 
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443 

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444 

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445 

16533  446 
(*** ML theory context ***) 
6185  447 

448 
local 

15531  449 
val current_theory = ref (NONE: theory option); 
6185  450 
in 
451 
fun get_context () = ! current_theory; 

452 
fun set_context opt_thy = current_theory := opt_thy; 

6238  453 
fun setmp opt_thy f x = Library.setmp current_theory opt_thy f x; 
6185  454 
end; 
455 

456 
fun the_context () = 

457 
(case get_context () of 

15531  458 
SOME thy => thy 
6185  459 
 _ => error "Unknown theory context"); 
460 

15531  461 
fun context thy = set_context (SOME thy); 
462 
fun reset_context () = set_context NONE; 

6185  463 

6310  464 
fun pass opt_thy f x = 
6261  465 
setmp opt_thy (fn x => let val y = f x in (y, get_context ()) end) x; 
466 

6310  467 
fun pass_theory thy f x = 
15531  468 
(case pass (SOME thy) f x of 
469 
(y, SOME thy') => (y, thy') 

470 
 (_, NONE) => error "Lost theory context in ML"); 

6261  471 

6238  472 
fun save f x = setmp (get_context ()) f x; 
473 

6185  474 

475 
(* map context *) 

476 

477 
nonfix >>; 

15531  478 
fun >> f = set_context (SOME (f (the_context ()))); 
6185  479 

480 

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481 
(* use ML text *) 
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482 

18678  483 
val ml_output = (writeln, Output.error_msg); 
14976  484 

18711  485 
fun use_output verbose txt = 
486 
Output.ML_errors (use_text ml_output verbose) (Symbol.escape txt); 

10914  487 

17060
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488 
fun use_mltext txt verbose opt_thy = setmp opt_thy (fn () => use_output verbose txt) (); 
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489 
fun use_mltext_theory txt verbose thy = #2 (pass_theory thy (use_output verbose) txt); 
8348
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490 

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491 
fun use_context txt = use_mltext_theory ("Context.>> (" ^ txt ^ ");") false; 
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492 

9586  493 
fun use_let bind body txt = 
494 
use_context ("let " ^ bind ^ " = " ^ txt ^ " in\n" ^ body ^ " end"); 

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495 

15801  496 

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497 
(* delayed theory setup *) 
15801  498 

499 
local 

18711  500 
val setup_fn = ref (I: theory > theory); 
15801  501 
in 
18711  502 
fun add_setup f = setup_fn := (! setup_fn #> f); 
503 
fun setup () = let val f = ! setup_fn in setup_fn := I; f end; 

15801  504 
end; 
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505 

16533  506 

507 

508 
(*** proof context ***) 

509 

510 
(* datatype proof *) 

511 

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512 
datatype proof = Proof of theory_ref * Object.T Datatab.table; 
17060
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513 

cca2f3938443
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514 
fun theory_of_proof (Proof (thy_ref, _)) = deref thy_ref; 
16533  515 
fun data_of_proof (Proof (_, data)) = data; 
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516 
fun map_prf f (Proof (thy_ref, data)) = Proof (thy_ref, f data); 
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517 

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518 
fun transfer_proof thy' (prf as Proof (thy_ref, data)) = 
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519 
if not (subthy (deref thy_ref, thy')) then 
18678  520 
error "transfer proof context: no a super theory" 
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521 
else Proof (self_ref thy', data); 
16533  522 

523 

524 
(* proof data kinds *) 

525 

526 
local 

527 

528 
type kind = 

529 
{name: string, 

530 
init: theory > Object.T}; 

531 

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532 
val kinds = ref (Datatab.empty: kind Datatab.table); 
16533  533 

534 
fun invoke meth_name meth_fn k = 

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535 
(case Datatab.lookup (! kinds) k of 
16533  536 
SOME kind => meth_fn kind > transform_failure (fn exn => 
17340  537 
EXCEPTION (exn, "Proof data method " ^ #name kind ^ "." ^ meth_name ^ " failed")) 
16533  538 
 NONE => sys_error ("Invalid proof data identifier " ^ string_of_int k)); 
539 

540 
fun invoke_name k = invoke "name" (K o #name) k (); 

541 
val invoke_init = invoke "init" #init; 

542 

543 
in 

544 

545 
val proof_data_of = dest_data invoke_name o #proof o data_of; 

546 

547 
fun init_proof thy = 

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548 
Proof (self_ref thy, Datatab.map' (fn k => fn _ => invoke_init k thy) (#proof (data_of thy))); 
16533  549 

550 
structure ProofData = 

551 
struct 

552 

553 
fun declare name init = 

554 
let 

555 
val k = serial (); 

556 
val kind = {name = name, init = init}; 

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557 
val _ = conditional (Datatab.exists (equal name o #name o #2) (! kinds)) (fn () => 
16533  558 
warning ("Duplicate declaration of proof data " ^ quote name)); 
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559 
val _ = change kinds (Datatab.update (k, kind)); 
16533  560 
in k end; 
561 

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562 
fun init k = modify_thy (map_proof_data (Datatab.update (k, ()))); 
16533  563 

564 
fun get k dest prf = 

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565 
(case Datatab.lookup (data_of_proof prf) k of 
16533  566 
SOME x => (dest x handle Match => 
567 
error ("Failed to access proof data " ^ quote (invoke_name k))) 

568 
 NONE => error ("Uninitialized proof data " ^ quote (invoke_name k))); 

569 

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570 
fun put k mk x = map_prf (Datatab.update (k, mk x)); 
16533  571 

572 
end; 

573 

574 
end; 

575 

576 

18632  577 

16533  578 
(*** generic context ***) 
579 

18632  580 
datatype generic = Theory of theory  Proof of proof; 
581 

582 
fun cases f _ (Theory thy) = f thy 

583 
 cases _ g (Proof prf) = g prf; 

16533  584 

18731  585 
val the_theory = cases I (fn _ => raise Fail "Illtyped context: theory expected"); 
586 
val the_proof = cases (fn _ => raise Fail "Illtyped context: proof expected") I; 

16533  587 

18731  588 
fun map_theory f = Theory o f o the_theory; 
589 
fun map_proof f = Proof o f o the_proof; 

590 

591 
fun theory_map f = the_theory o f o Theory; 

592 
fun proof_map f = the_proof o f o Proof; 

18665  593 

18632  594 
val theory_of = cases I theory_of_proof; 
595 
val proof_of = cases init_proof I; 

16533  596 

6185  597 
end; 
598 

599 
structure BasicContext: BASIC_CONTEXT = Context; 

600 
open BasicContext; 

16436
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601 

7eb6b6cbd166
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602 

7eb6b6cbd166
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603 

16533  604 
(*** typesafe interfaces for data declarations ***) 
605 

606 
(** theory data **) 

16436
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changeset

607 

7eb6b6cbd166
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changeset

608 
signature THEORY_DATA_ARGS = 
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609 
sig 
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610 
val name: string 
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611 
type T 
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612 
val empty: T 
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613 
val copy: T > T 
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614 
val extend: T > T 
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615 
val merge: Pretty.pp > T * T > T 
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616 
val print: theory > T > unit 
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617 
end; 
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618 

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619 
signature THEORY_DATA = 
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620 
sig 
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621 
type T 
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622 
val init: theory > theory 
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623 
val print: theory > unit 
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624 
val get: theory > T 
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625 
val get_sg: theory > T (*obsolete*) 
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626 
val put: T > theory > theory 
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627 
val map: (T > T) > theory > theory 
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628 
end; 
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629 

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630 
functor TheoryDataFun(Data: THEORY_DATA_ARGS): THEORY_DATA = 
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631 
struct 
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632 

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633 
structure TheoryData = Context.TheoryData; 
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634 

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635 
type T = Data.T; 
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636 
exception Data of T; 
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637 

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638 
val kind = TheoryData.declare Data.name 
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639 
(Data Data.empty) 
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640 
(fn Data x => Data (Data.copy x)) 
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641 
(fn Data x => Data (Data.extend x)) 
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642 
(fn pp => fn (Data x1, Data x2) => Data (Data.merge pp (x1, x2))); 
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643 

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644 
val init = TheoryData.init kind; 
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645 
val get = TheoryData.get kind (fn Data x => x); 
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646 
val get_sg = get; 
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647 
fun print thy = Data.print thy (get thy); 
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648 
val put = TheoryData.put kind Data; 
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649 
fun map f thy = put (f (get thy)) thy; 
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650 

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651 
end; 
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652 

16533  653 

654 

655 
(** proof data **) 

656 

657 
signature PROOF_DATA_ARGS = 

658 
sig 

659 
val name: string 

660 
type T 

661 
val init: theory > T 

662 
val print: Context.proof > T > unit 

663 
end; 

664 

665 
signature PROOF_DATA = 

666 
sig 

667 
type T 

668 
val init: theory > theory 

669 
val print: Context.proof > unit 

670 
val get: Context.proof > T 

671 
val put: T > Context.proof > Context.proof 

672 
val map: (T > T) > Context.proof > Context.proof 

673 
end; 

674 

675 
functor ProofDataFun(Data: PROOF_DATA_ARGS): PROOF_DATA = 

676 
struct 

677 

678 
structure ProofData = Context.ProofData; 

679 

680 
type T = Data.T; 

681 
exception Data of T; 

682 

683 
val kind = ProofData.declare Data.name (Data o Data.init); 

684 

685 
val init = ProofData.init kind; 

686 
val get = ProofData.get kind (fn Data x => x); 

687 
fun print prf = Data.print prf (get prf); 

688 
val put = ProofData.put kind Data; 

689 
fun map f prf = put (f (get prf)) prf; 

690 

691 
end; 

692 

18632  693 

694 

695 
(** generic data **) 

696 

697 
signature GENERIC_DATA_ARGS = 

698 
sig 

699 
val name: string 

700 
type T 

701 
val empty: T 

702 
val extend: T > T 

703 
val merge: Pretty.pp > T * T > T 

704 
val print: Context.generic > T > unit 

705 
end; 

706 

707 
signature GENERIC_DATA = 

708 
sig 

709 
type T 

710 
val init: theory > theory 

711 
val get: Context.generic > T 

712 
val put: T > Context.generic > Context.generic 

713 
val map: (T > T) > Context.generic > Context.generic 

714 
val print: Context.generic > unit 

715 
end; 

716 

717 
functor GenericDataFun(Data: GENERIC_DATA_ARGS): GENERIC_DATA = 

718 
struct 

719 

720 
structure ThyData = TheoryDataFun(open Data val copy = I fun print _ _ = ()); 

721 
structure PrfData = 

722 
ProofDataFun(val name = Data.name type T = Data.T val init = ThyData.get fun print _ _ = ()); 

723 

724 
type T = Data.T; 

725 
val init = ThyData.init #> PrfData.init; 

726 

727 
fun get (Context.Theory thy) = ThyData.get thy 

728 
 get (Context.Proof prf) = PrfData.get prf; 

729 

730 
fun put x (Context.Theory thy) = Context.Theory (ThyData.put x thy) 

731 
 put x (Context.Proof prf) = Context.Proof (PrfData.put x prf); 

732 

733 
fun map f ctxt = put (f (get ctxt)) ctxt; 

734 

735 
fun print ctxt = Data.print ctxt (get ctxt); 

736 

737 
end; 

738 

739 

16533  740 
(*hide private interface*) 
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741 
structure Context: CONTEXT = Context; 