author  wenzelm 
Sat, 25 May 2013 17:40:44 +0200  
changeset 52147  9943f8067f11 
parent 52017  bc0238c1f73a 
child 52639  df830310e550 
permissions  rwrr 
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(* Title: Tools/solve_direct.ML 
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Author: Timothy Bourke and Gerwin Klein, NICTA 
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Check whether a newly stated theorem can be solved directly by an 

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existing theorem. Duplicate lemmas can be detected in this way. 

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The implementation relies critically on the Find_Theorems solves 
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feature. 
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*) 

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signature SOLVE_DIRECT = 
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sig 
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val solve_directN: string 
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val someN: string 
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val noneN: string 
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val unknownN: string 
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val auto: bool Unsynchronized.ref 
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val max_solutions: int Unsynchronized.ref 

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val solve_direct: Proof.state > bool * (string * Proof.state) 
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val setup: theory > theory 
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end; 
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structure Solve_Direct: SOLVE_DIRECT = 
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struct 
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datatype mode = Auto_Try  Try  Normal 
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val solve_directN = "solve_direct"; 
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val someN = "some"; 
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val noneN = "none"; 
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val unknownN = "none"; 
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(* preferences *) 
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val auto = Unsynchronized.ref false; 
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val max_solutions = Unsynchronized.ref 5; 
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val _ = 
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ProofGeneral.preference_bool ProofGeneral.category_tracing 
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(SOME "true") 
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auto 
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"autosolvedirect" 
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("Run " ^ quote solve_directN ^ " automatically"); 
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(* solve_direct command *) 

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fun do_solve_direct mode state = 
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let 
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val ctxt = Proof.context_of state; 

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val crits = [(true, Find_Theorems.Solves)]; 
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fun find g = 
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snd (Find_Theorems.find_theorems ctxt (SOME g) (SOME (! max_solutions)) false crits); 

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fun prt_result (goal, results) = 

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let 

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val msg = 

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(if mode = Auto_Try then "Auto " else "") ^ solve_directN ^ ": " ^ 
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(case goal of 
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NONE => "The current goal" 

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 SOME sg => Syntax.string_of_term ctxt (Thm.term_of sg)); 

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in 

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Pretty.big_list 

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(msg ^ " can be solved directly with") 
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(map (Find_Theorems.pretty_thm ctxt) results) 
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end; 
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fun seek_against_goal () = 

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(case try Proof.simple_goal state of 
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NONE => NONE 
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 SOME {goal = st, ...} => 
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let 
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val subgoals = Drule.strip_imp_prems (Thm.cprop_of st); 
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val rs = 
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if length subgoals = 1 

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then [(NONE, find st)] 
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else map (fn sg => (SOME sg, find (Goal.init sg))) subgoals; 
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val results = filter_out (null o snd) rs; 

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in if null results then NONE else SOME results end); 

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fun message results = separate (Pretty.brk 0) (map prt_result results); 
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in 
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(case try seek_against_goal () of 
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SOME (SOME results) => 
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(someN, 
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state > 
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(if mode = Auto_Try then 
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Proof.goal_message 
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(fn () => 
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Pretty.chunks 
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Isabellespecific implementation of quasiabstract markup elements  back to module arrangement before d83797ef0d2d;
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[Pretty.str "", Pretty.markup Markup.intensify (message results)]) 
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else 
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tap (fn _ => 
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Output.urgent_message (Pretty.string_of (Pretty.chunks (message results)))))) 
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 SOME NONE => 
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(if mode = Normal then Output.urgent_message "No proof found." 
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else (); 
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(noneN, state)) 
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 NONE => 
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(if mode = Normal then Output.urgent_message "An error occurred." 
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else (); 
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(unknownN, state))) 
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end 
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> `(fn (outcome_code, _) => outcome_code = someN); 
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val solve_direct = do_solve_direct Normal 
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val _ = 
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outer syntax command definitions based on formal command_spec derived from theory header declarations;
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Outer_Syntax.improper_command @{command_spec "solve_direct"} 
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"try to solve conjectures directly with existing theorems" 
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more robust access Toplevel.proof_of  prefer warning via Toplevel.unknown_proof over hard crash (notably for skipped proofs);
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(Scan.succeed (Toplevel.unknown_proof o 
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Toplevel.keep (ignore o solve_direct o Toplevel.proof_of))); 
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(* hook *) 
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fun try_solve_direct auto = do_solve_direct (if auto then Auto_Try else Try) 
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val setup = Try.register_tool (solve_directN, (10, auto, try_solve_direct)); 
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end; 