1 |
|
/****************************************************************************** |
2 |
|
* Top contributors (to current version): |
3 |
|
* Andrew Reynolds, Mathias Preiner, Haniel Barbosa |
4 |
|
* |
5 |
|
* This file is part of the cvc5 project. |
6 |
|
* |
7 |
|
* Copyright (c) 2009-2021 by the authors listed in the file AUTHORS |
8 |
|
* in the top-level source directory and their institutional affiliations. |
9 |
|
* All rights reserved. See the file COPYING in the top-level source |
10 |
|
* directory for licensing information. |
11 |
|
* **************************************************************************** |
12 |
|
* |
13 |
|
* Implementation of class that encapsulates techniques for a single |
14 |
|
* (SyGuS) synthesis conjecture. |
15 |
|
*/ |
16 |
|
#include "theory/quantifiers/sygus/synth_conjecture.h" |
17 |
|
|
18 |
|
#include "base/configuration.h" |
19 |
|
#include "expr/node_algorithm.h" |
20 |
|
#include "expr/skolem_manager.h" |
21 |
|
#include "options/base_options.h" |
22 |
|
#include "options/datatypes_options.h" |
23 |
|
#include "options/outputc.h" |
24 |
|
#include "options/quantifiers_options.h" |
25 |
|
#include "printer/printer.h" |
26 |
|
#include "smt/logic_exception.h" |
27 |
|
#include "smt/smt_statistics_registry.h" |
28 |
|
#include "theory/datatypes/sygus_datatype_utils.h" |
29 |
|
#include "theory/quantifiers/first_order_model.h" |
30 |
|
#include "theory/quantifiers/instantiate.h" |
31 |
|
#include "theory/quantifiers/quantifiers_attributes.h" |
32 |
|
#include "theory/quantifiers/sygus/enum_value_manager.h" |
33 |
|
#include "theory/quantifiers/sygus/sygus_grammar_cons.h" |
34 |
|
#include "theory/quantifiers/sygus/sygus_pbe.h" |
35 |
|
#include "theory/quantifiers/sygus/synth_engine.h" |
36 |
|
#include "theory/quantifiers/sygus/term_database_sygus.h" |
37 |
|
#include "theory/quantifiers/term_util.h" |
38 |
|
#include "theory/rewriter.h" |
39 |
|
#include "theory/smt_engine_subsolver.h" |
40 |
|
|
41 |
|
using namespace cvc5::kind; |
42 |
|
using namespace std; |
43 |
|
|
44 |
|
namespace cvc5 { |
45 |
|
namespace theory { |
46 |
|
namespace quantifiers { |
47 |
|
|
48 |
1190 |
SynthConjecture::SynthConjecture(QuantifiersState& qs, |
49 |
|
QuantifiersInferenceManager& qim, |
50 |
|
QuantifiersRegistry& qr, |
51 |
|
TermRegistry& tr, |
52 |
1190 |
SygusStatistics& s) |
53 |
|
: d_qstate(qs), |
54 |
|
d_qim(qim), |
55 |
|
d_qreg(qr), |
56 |
|
d_treg(tr), |
57 |
|
d_stats(s), |
58 |
1190 |
d_tds(tr.getTermDatabaseSygus()), |
59 |
|
d_verify(qs.options(), qs.getLogicInfo(), d_tds), |
60 |
|
d_hasSolution(false), |
61 |
2380 |
d_ceg_si(new CegSingleInv(qs.getEnv(), tr, s)), |
62 |
1190 |
d_templInfer(new SygusTemplateInfer), |
63 |
1190 |
d_ceg_proc(new SynthConjectureProcess), |
64 |
1190 |
d_ceg_gc(new CegGrammarConstructor(d_tds, this)), |
65 |
2380 |
d_sygus_rconst(new SygusRepairConst(qs.getEnv(), d_tds)), |
66 |
1190 |
d_exampleInfer(new ExampleInfer(d_tds)), |
67 |
1190 |
d_ceg_pbe(new SygusPbe(qs, qim, d_tds, this)), |
68 |
1190 |
d_ceg_cegis(new Cegis(qs, qim, d_tds, this)), |
69 |
1190 |
d_ceg_cegisUnif(new CegisUnif(qs, qim, d_tds, this)), |
70 |
1190 |
d_sygus_ccore(new CegisCoreConnective(qs, qim, d_tds, this)), |
71 |
|
d_master(nullptr), |
72 |
|
d_set_ce_sk_vars(false), |
73 |
|
d_repair_index(0), |
74 |
16660 |
d_guarded_stream_exc(false) |
75 |
|
{ |
76 |
1190 |
if (options::sygusSymBreakPbe() || options::sygusUnifPbe()) |
77 |
|
{ |
78 |
1190 |
d_modules.push_back(d_ceg_pbe.get()); |
79 |
|
} |
80 |
1190 |
if (options::sygusUnifPi() != options::SygusUnifPiMode::NONE) |
81 |
|
{ |
82 |
21 |
d_modules.push_back(d_ceg_cegisUnif.get()); |
83 |
|
} |
84 |
1190 |
if (options::sygusCoreConnective()) |
85 |
|
{ |
86 |
67 |
d_modules.push_back(d_sygus_ccore.get()); |
87 |
|
} |
88 |
1190 |
d_modules.push_back(d_ceg_cegis.get()); |
89 |
1190 |
} |
90 |
|
|
91 |
1188 |
SynthConjecture::~SynthConjecture() {} |
92 |
|
|
93 |
1172 |
void SynthConjecture::presolve() |
94 |
|
{ |
95 |
|
// we don't have a solution yet |
96 |
1172 |
d_hasSolution = false; |
97 |
1172 |
} |
98 |
|
|
99 |
331 |
void SynthConjecture::assign(Node q) |
100 |
|
{ |
101 |
331 |
Assert(d_embed_quant.isNull()); |
102 |
331 |
Assert(q.getKind() == FORALL); |
103 |
331 |
Trace("cegqi") << "SynthConjecture : assign : " << q << std::endl; |
104 |
331 |
d_quant = q; |
105 |
331 |
NodeManager* nm = NodeManager::currentNM(); |
106 |
331 |
SkolemManager* sm = nm->getSkolemManager(); |
107 |
|
|
108 |
|
// initialize the guard |
109 |
331 |
d_feasible_guard = sm->mkDummySkolem("G", nm->booleanType()); |
110 |
331 |
d_feasible_guard = Rewriter::rewrite(d_feasible_guard); |
111 |
331 |
d_feasible_guard = d_qstate.getValuation().ensureLiteral(d_feasible_guard); |
112 |
331 |
AlwaysAssert(!d_feasible_guard.isNull()); |
113 |
|
|
114 |
|
// pre-simplify the quantified formula based on the process utility |
115 |
331 |
d_simp_quant = d_ceg_proc->preSimplify(d_quant); |
116 |
|
|
117 |
|
// compute its attributes |
118 |
660 |
QAttributes qa; |
119 |
331 |
QuantAttributes::computeQuantAttributes(q, qa); |
120 |
|
|
121 |
660 |
std::map<Node, Node> templates; |
122 |
660 |
std::map<Node, Node> templates_arg; |
123 |
|
// register with single invocation if applicable |
124 |
331 |
if (qa.d_sygus) |
125 |
|
{ |
126 |
331 |
d_ceg_si->initialize(d_simp_quant); |
127 |
331 |
d_simp_quant = d_ceg_si->getSimplifiedConjecture(); |
128 |
331 |
if (!d_ceg_si->isSingleInvocation()) |
129 |
|
{ |
130 |
331 |
d_templInfer->initialize(d_simp_quant); |
131 |
|
} |
132 |
|
// carry the templates |
133 |
835 |
for (const Node& v : q[0]) |
134 |
|
{ |
135 |
1008 |
Node templ = d_templInfer->getTemplate(v); |
136 |
504 |
if (!templ.isNull()) |
137 |
|
{ |
138 |
31 |
templates[v] = templ; |
139 |
31 |
templates_arg[v] = d_templInfer->getTemplateArg(v); |
140 |
|
} |
141 |
|
} |
142 |
|
} |
143 |
|
|
144 |
|
// post-simplify the quantified formula based on the process utility |
145 |
331 |
d_simp_quant = d_ceg_proc->postSimplify(d_simp_quant); |
146 |
|
|
147 |
|
// finished simplifying the quantified formula at this point |
148 |
|
|
149 |
|
// convert to deep embedding and finalize single invocation here |
150 |
331 |
d_embed_quant = d_ceg_gc->process(d_simp_quant, templates, templates_arg); |
151 |
662 |
Trace("cegqi") << "SynthConjecture : converted to embedding : " |
152 |
331 |
<< d_embed_quant << std::endl; |
153 |
|
|
154 |
660 |
Node sc = qa.d_sygusSideCondition; |
155 |
331 |
if (!sc.isNull()) |
156 |
|
{ |
157 |
|
// convert to deep embedding |
158 |
16 |
d_embedSideCondition = d_ceg_gc->convertToEmbedding(sc); |
159 |
32 |
Trace("cegqi") << "SynthConjecture : side condition : " |
160 |
16 |
<< d_embedSideCondition << std::endl; |
161 |
|
} |
162 |
|
|
163 |
|
// we now finalize the single invocation module, based on the syntax |
164 |
|
// restrictions |
165 |
331 |
if (qa.d_sygus) |
166 |
|
{ |
167 |
331 |
d_ceg_si->finishInit(d_ceg_gc->isSyntaxRestricted()); |
168 |
|
} |
169 |
|
|
170 |
331 |
Assert(d_candidates.empty()); |
171 |
660 |
std::vector<Node> vars; |
172 |
835 |
for (unsigned i = 0; i < d_embed_quant[0].getNumChildren(); i++) |
173 |
|
{ |
174 |
504 |
vars.push_back(d_embed_quant[0][i]); |
175 |
1008 |
Node e = sm->mkDummySkolem("e", d_embed_quant[0][i].getType()); |
176 |
504 |
d_candidates.push_back(e); |
177 |
|
} |
178 |
662 |
Trace("cegqi") << "Base quantified formula is : " << d_embed_quant |
179 |
331 |
<< std::endl; |
180 |
|
// construct base instantiation |
181 |
662 |
d_base_inst = Rewriter::rewrite(d_qim.getInstantiate()->getInstantiation( |
182 |
331 |
d_embed_quant, vars, d_candidates)); |
183 |
331 |
if (!d_embedSideCondition.isNull() && !vars.empty()) |
184 |
|
{ |
185 |
32 |
d_embedSideCondition = d_embedSideCondition.substitute( |
186 |
16 |
vars.begin(), vars.end(), d_candidates.begin(), d_candidates.end()); |
187 |
|
} |
188 |
331 |
Trace("cegqi") << "Base instantiation is : " << d_base_inst << std::endl; |
189 |
|
|
190 |
|
// initialize the sygus constant repair utility |
191 |
331 |
if (options::sygusRepairConst()) |
192 |
|
{ |
193 |
8 |
d_sygus_rconst->initialize(d_base_inst.negate(), d_candidates); |
194 |
8 |
if (options::sygusConstRepairAbort()) |
195 |
|
{ |
196 |
|
if (!d_sygus_rconst->isActive()) |
197 |
|
{ |
198 |
|
// no constant repair is possible: abort |
199 |
|
std::stringstream ss; |
200 |
|
ss << "Grammar does not allow repair constants." << std::endl; |
201 |
|
throw LogicException(ss.str()); |
202 |
|
} |
203 |
|
} |
204 |
|
} |
205 |
|
// initialize the example inference utility |
206 |
331 |
if (!d_exampleInfer->initialize(d_base_inst, d_candidates)) |
207 |
|
{ |
208 |
|
// there is a contradictory example pair, the conjecture is infeasible. |
209 |
4 |
Node infLem = d_feasible_guard.negate(); |
210 |
2 |
d_qim.lemma(infLem, InferenceId::QUANTIFIERS_SYGUS_EXAMPLE_INFER_CONTRA); |
211 |
|
// we don't need to continue initialization in this case |
212 |
2 |
return; |
213 |
|
} |
214 |
|
|
215 |
|
// register this term with sygus database and other utilities that impact |
216 |
|
// the enumerative sygus search |
217 |
329 |
if (!isSingleInvocation()) |
218 |
|
{ |
219 |
241 |
d_ceg_proc->initialize(d_base_inst, d_candidates); |
220 |
440 |
for (unsigned i = 0, size = d_modules.size(); i < size; i++) |
221 |
|
{ |
222 |
440 |
if (d_modules[i]->initialize(d_simp_quant, d_base_inst, d_candidates)) |
223 |
|
{ |
224 |
241 |
d_master = d_modules[i]; |
225 |
241 |
break; |
226 |
|
} |
227 |
|
} |
228 |
241 |
Assert(d_master != nullptr); |
229 |
|
} |
230 |
|
|
231 |
329 |
Assert(d_qreg.getQuantAttributes().isSygus(q)); |
232 |
|
// if the base instantiation is an existential, store its variables |
233 |
329 |
if (d_base_inst.getKind() == NOT && d_base_inst[0].getKind() == FORALL) |
234 |
|
{ |
235 |
979 |
for (const Node& v : d_base_inst[0][0]) |
236 |
|
{ |
237 |
795 |
d_inner_vars.push_back(v); |
238 |
|
} |
239 |
|
} |
240 |
|
|
241 |
|
// register the strategy |
242 |
987 |
d_feasible_strategy.reset( |
243 |
|
new DecisionStrategySingleton("sygus_feasible", |
244 |
|
d_feasible_guard, |
245 |
329 |
d_qstate.getSatContext(), |
246 |
658 |
d_qstate.getValuation())); |
247 |
329 |
d_qim.getDecisionManager()->registerStrategy( |
248 |
|
DecisionManager::STRAT_QUANT_SYGUS_FEASIBLE, d_feasible_strategy.get()); |
249 |
|
// this must be called, both to ensure that the feasible guard is |
250 |
|
// decided on with true polariy, but also to ensure that output channel |
251 |
|
// has been used on this call to check. |
252 |
329 |
d_qim.requirePhase(d_feasible_guard, true); |
253 |
|
|
254 |
658 |
Trace("cegqi") << "...finished, single invocation = " << isSingleInvocation() |
255 |
329 |
<< std::endl; |
256 |
|
} |
257 |
|
|
258 |
4135 |
Node SynthConjecture::getGuard() const { return d_feasible_guard; } |
259 |
|
|
260 |
41202 |
bool SynthConjecture::isSingleInvocation() const |
261 |
|
{ |
262 |
41202 |
return d_ceg_si->isSingleInvocation(); |
263 |
|
} |
264 |
|
|
265 |
4798 |
bool SynthConjecture::needsCheck() |
266 |
|
{ |
267 |
|
bool value; |
268 |
4798 |
Assert(!d_feasible_guard.isNull()); |
269 |
|
// non or fully single invocation : look at guard only |
270 |
4798 |
if (d_qstate.getValuation().hasSatValue(d_feasible_guard, value)) |
271 |
|
{ |
272 |
4798 |
if (!value) |
273 |
|
{ |
274 |
8 |
Trace("sygus-engine-debug") << "Conjecture is infeasible." << std::endl; |
275 |
8 |
Warning() << "Warning : the SyGuS conjecture may be infeasible" |
276 |
|
<< std::endl; |
277 |
8 |
return false; |
278 |
|
} |
279 |
|
else |
280 |
|
{ |
281 |
9580 |
Trace("sygus-engine-debug") << "Feasible guard " << d_feasible_guard |
282 |
4790 |
<< " assigned true." << std::endl; |
283 |
|
} |
284 |
|
} |
285 |
|
else |
286 |
|
{ |
287 |
|
Trace("cegqi-warn") << "WARNING: Guard " << d_feasible_guard |
288 |
|
<< " is not assigned!" << std::endl; |
289 |
|
Assert(false); |
290 |
|
} |
291 |
4790 |
return true; |
292 |
|
} |
293 |
|
|
294 |
110322 |
bool SynthConjecture::needsRefinement() const { return d_set_ce_sk_vars; } |
295 |
39097 |
bool SynthConjecture::doCheck() |
296 |
|
{ |
297 |
39097 |
if (isSingleInvocation()) |
298 |
|
{ |
299 |
|
// We now try to solve with the single invocation solver, which may or may |
300 |
|
// not succeed in solving the conjecture. In either case, we are done and |
301 |
|
// return true. |
302 |
80 |
if (d_ceg_si->solve()) |
303 |
|
{ |
304 |
72 |
d_hasSolution = true; |
305 |
|
// the conjecture has a solution, so its negation holds |
306 |
144 |
Node qn = d_quant.negate(); |
307 |
72 |
d_qim.addPendingLemma(qn, InferenceId::QUANTIFIERS_SYGUS_SI_SOLVED); |
308 |
|
} |
309 |
80 |
return true; |
310 |
|
} |
311 |
39017 |
Assert(d_master != nullptr); |
312 |
39017 |
Assert(!d_hasSolution); |
313 |
|
|
314 |
|
// get the list of terms that the master strategy is interested in |
315 |
78034 |
std::vector<Node> terms; |
316 |
39017 |
d_master->getTermList(d_candidates, terms); |
317 |
|
|
318 |
39017 |
Assert(!d_candidates.empty()); |
319 |
|
|
320 |
78034 |
Trace("cegqi-check") << "CegConjuncture : check, build candidates..." |
321 |
39017 |
<< std::endl; |
322 |
78034 |
std::vector<Node> candidate_values; |
323 |
39017 |
bool constructed_cand = false; |
324 |
|
|
325 |
|
// If a module is not trying to repair constants in solutions and the option |
326 |
|
// sygusRepairConst is true, we use a default scheme for trying to repair |
327 |
|
// constants here. |
328 |
|
bool doRepairConst = |
329 |
39017 |
options::sygusRepairConst() && !d_master->usingRepairConst(); |
330 |
39017 |
if (doRepairConst) |
331 |
|
{ |
332 |
|
// have we tried to repair the previous solution? |
333 |
|
// if not, call the repair constant utility |
334 |
|
unsigned ninst = d_cinfo[d_candidates[0]].d_inst.size(); |
335 |
|
if (d_repair_index < ninst) |
336 |
|
{ |
337 |
|
std::vector<Node> fail_cvs; |
338 |
|
for (const Node& cprog : d_candidates) |
339 |
|
{ |
340 |
|
Assert(d_repair_index < d_cinfo[cprog].d_inst.size()); |
341 |
|
fail_cvs.push_back(d_cinfo[cprog].d_inst[d_repair_index]); |
342 |
|
} |
343 |
|
if (Trace.isOn("sygus-engine")) |
344 |
|
{ |
345 |
|
Trace("sygus-engine") << "CegConjuncture : repair previous solution "; |
346 |
|
for (const Node& fc : fail_cvs) |
347 |
|
{ |
348 |
|
std::stringstream ss; |
349 |
|
TermDbSygus::toStreamSygus(ss, fc); |
350 |
|
Trace("sygus-engine") << ss.str() << " "; |
351 |
|
} |
352 |
|
Trace("sygus-engine") << std::endl; |
353 |
|
} |
354 |
|
d_repair_index++; |
355 |
|
if (d_sygus_rconst->repairSolution( |
356 |
|
d_candidates, fail_cvs, candidate_values, true)) |
357 |
|
{ |
358 |
|
constructed_cand = true; |
359 |
|
} |
360 |
|
} |
361 |
|
} |
362 |
|
|
363 |
39017 |
bool printDebug = Output.isOn(options::OutputTag::SYGUS); |
364 |
39017 |
if (!constructed_cand) |
365 |
|
{ |
366 |
|
// get the model value of the relevant terms from the master module |
367 |
55800 |
std::vector<Node> enum_values; |
368 |
39017 |
bool activeIncomplete = false; |
369 |
39017 |
bool fullModel = getEnumeratedValues(terms, enum_values, activeIncomplete); |
370 |
|
|
371 |
|
// if the master requires a full model and the model is partial, we fail |
372 |
39008 |
if (!d_master->allowPartialModel() && !fullModel) |
373 |
|
{ |
374 |
|
// we retain the values in d_ev_active_gen_waiting |
375 |
19006 |
Trace("sygus-engine-debug") << "...partial model, fail." << std::endl; |
376 |
|
// if we are partial due to an active enumerator, we may still succeed |
377 |
|
// on the next call |
378 |
19006 |
return !activeIncomplete; |
379 |
|
} |
380 |
|
// determine if we had at least one value for an enumerator |
381 |
20002 |
Assert(terms.size() == enum_values.size()); |
382 |
20002 |
bool modelSuccess = false; |
383 |
45234 |
for (unsigned i = 0, size = terms.size(); i < size; i++) |
384 |
|
{ |
385 |
25232 |
if (!enum_values[i].isNull()) |
386 |
|
{ |
387 |
21562 |
modelSuccess = true; |
388 |
|
} |
389 |
|
} |
390 |
20002 |
if (modelSuccess) |
391 |
|
{ |
392 |
|
// Must separately compute whether trace is on due to compilation of |
393 |
|
// Trace.isOn. |
394 |
16774 |
bool traceIsOn = Trace.isOn("sygus-engine"); |
395 |
16774 |
if (printDebug || traceIsOn) |
396 |
|
{ |
397 |
2 |
Trace("sygus-engine") << " * Value is : "; |
398 |
4 |
std::stringstream sygusEnumOut; |
399 |
2 |
FirstOrderModel* m = d_treg.getModel(); |
400 |
4 |
for (unsigned i = 0, size = terms.size(); i < size; i++) |
401 |
|
{ |
402 |
4 |
Node nv = enum_values[i]; |
403 |
4 |
Node onv = nv.isNull() ? m->getValue(terms[i]) : nv; |
404 |
4 |
TypeNode tn = onv.getType(); |
405 |
4 |
std::stringstream ss; |
406 |
2 |
TermDbSygus::toStreamSygus(ss, onv); |
407 |
2 |
if (printDebug) |
408 |
|
{ |
409 |
2 |
sygusEnumOut << " " << ss.str(); |
410 |
|
} |
411 |
2 |
Trace("sygus-engine") << terms[i] << " -> "; |
412 |
2 |
if (nv.isNull()) |
413 |
|
{ |
414 |
|
Trace("sygus-engine") << "[EXC: " << ss.str() << "] "; |
415 |
|
} |
416 |
|
else |
417 |
|
{ |
418 |
2 |
Trace("sygus-engine") << ss.str() << " "; |
419 |
2 |
if (Trace.isOn("sygus-engine-rr")) |
420 |
|
{ |
421 |
|
Node bv = d_tds->sygusToBuiltin(nv, tn); |
422 |
|
bv = Rewriter::rewrite(bv); |
423 |
|
Trace("sygus-engine-rr") << " -> " << bv << std::endl; |
424 |
|
} |
425 |
|
} |
426 |
|
} |
427 |
2 |
Trace("sygus-engine") << std::endl; |
428 |
4 |
Output(options::OutputTag::SYGUS) |
429 |
2 |
<< "(sygus-enum" << sygusEnumOut.str() << ")" << std::endl; |
430 |
|
} |
431 |
16774 |
Assert(candidate_values.empty()); |
432 |
33548 |
constructed_cand = d_master->constructCandidates( |
433 |
16774 |
terms, enum_values, d_candidates, candidate_values); |
434 |
|
} |
435 |
|
// notify the enumerator managers of the status of the candidate |
436 |
25652 |
for (std::pair<const Node, std::unique_ptr<EnumValueManager>>& ecp : |
437 |
20002 |
d_enumManager) |
438 |
|
{ |
439 |
25652 |
ecp.second->notifyCandidate(modelSuccess); |
440 |
|
} |
441 |
|
// if we did not generate a candidate, return now |
442 |
20002 |
if (!modelSuccess) |
443 |
|
{ |
444 |
3228 |
Trace("sygus-engine-debug") << "...empty model, fail." << std::endl; |
445 |
3228 |
return !activeIncomplete; |
446 |
|
} |
447 |
|
} |
448 |
|
|
449 |
16774 |
NodeManager* nm = NodeManager::currentNM(); |
450 |
16774 |
SkolemManager* sm = nm->getSkolemManager(); |
451 |
|
|
452 |
|
// check the side condition if we constructed a candidate |
453 |
16774 |
if (constructed_cand) |
454 |
|
{ |
455 |
1790 |
if (!checkSideCondition(candidate_values)) |
456 |
|
{ |
457 |
70 |
excludeCurrentSolution(terms, candidate_values); |
458 |
70 |
Trace("sygus-engine") << "...failed side condition" << std::endl; |
459 |
70 |
return false; |
460 |
|
} |
461 |
|
} |
462 |
|
|
463 |
|
// must get a counterexample to the value of the current candidate |
464 |
33408 |
Node inst; |
465 |
16704 |
if (constructed_cand) |
466 |
|
{ |
467 |
1720 |
if (Trace.isOn("cegqi-check")) |
468 |
|
{ |
469 |
|
Trace("cegqi-check") << "CegConjuncture : check candidate : " |
470 |
|
<< std::endl; |
471 |
|
for (unsigned i = 0, size = candidate_values.size(); i < size; i++) |
472 |
|
{ |
473 |
|
Trace("cegqi-check") << " " << i << " : " << d_candidates[i] << " -> " |
474 |
|
<< candidate_values[i] << std::endl; |
475 |
|
} |
476 |
|
} |
477 |
1720 |
Assert(candidate_values.size() == d_candidates.size()); |
478 |
1720 |
inst = d_base_inst.substitute(d_candidates.begin(), |
479 |
|
d_candidates.end(), |
480 |
|
candidate_values.begin(), |
481 |
|
candidate_values.end()); |
482 |
|
} |
483 |
|
else |
484 |
|
{ |
485 |
14984 |
inst = d_base_inst; |
486 |
|
} |
487 |
|
|
488 |
16704 |
if (!constructed_cand) |
489 |
|
{ |
490 |
14984 |
return false; |
491 |
|
} |
492 |
|
|
493 |
|
// if we trust the sampling we ran, we terminate now |
494 |
1720 |
if (options::cegisSample() == options::CegisSampleMode::TRUST) |
495 |
|
{ |
496 |
|
// we have that the current candidate passed a sample test |
497 |
|
// since we trust sampling in this mode, we assert there is no |
498 |
|
// counterexample to the conjecture here. |
499 |
2 |
Node qn = d_quant.negate(); |
500 |
1 |
d_qim.addPendingLemma(qn, |
501 |
|
InferenceId::QUANTIFIERS_SYGUS_SAMPLE_TRUST_SOLVED); |
502 |
1 |
recordSolution(candidate_values); |
503 |
1 |
return true; |
504 |
|
} |
505 |
1719 |
Assert(!d_set_ce_sk_vars); |
506 |
|
|
507 |
|
// immediately skolemize inner existentials |
508 |
3438 |
Node query; |
509 |
|
// introduce the skolem variables |
510 |
3438 |
std::vector<Node> sks; |
511 |
3438 |
std::vector<Node> vars; |
512 |
1719 |
if (constructed_cand) |
513 |
|
{ |
514 |
1719 |
if (printDebug) |
515 |
|
{ |
516 |
2 |
const Options& sopts = d_qstate.options(); |
517 |
2 |
std::ostream& out = *sopts.base.out; |
518 |
2 |
out << "(sygus-candidate "; |
519 |
2 |
Assert(d_quant[0].getNumChildren() == candidate_values.size()); |
520 |
4 |
for (unsigned i = 0, ncands = candidate_values.size(); i < ncands; i++) |
521 |
|
{ |
522 |
4 |
Node v = candidate_values[i]; |
523 |
4 |
std::stringstream ss; |
524 |
2 |
TermDbSygus::toStreamSygus(ss, v); |
525 |
2 |
out << "(" << d_quant[0][i] << " " << ss.str() << ")"; |
526 |
|
} |
527 |
2 |
out << ")" << std::endl; |
528 |
|
} |
529 |
1719 |
if (inst.getKind() == NOT && inst[0].getKind() == FORALL) |
530 |
|
{ |
531 |
3166 |
for (const Node& v : inst[0][0]) |
532 |
|
{ |
533 |
5406 |
Node sk = sm->mkDummySkolem("rsk", v.getType()); |
534 |
2703 |
sks.push_back(sk); |
535 |
2703 |
vars.push_back(v); |
536 |
5406 |
Trace("cegqi-check-debug") |
537 |
2703 |
<< " introduce skolem " << sk << " for " << v << "\n"; |
538 |
|
} |
539 |
463 |
query = inst[0][1].substitute( |
540 |
|
vars.begin(), vars.end(), sks.begin(), sks.end()); |
541 |
463 |
query = query.negate(); |
542 |
|
} |
543 |
|
else |
544 |
|
{ |
545 |
|
// use the instance itself |
546 |
1256 |
query = inst; |
547 |
|
} |
548 |
|
} |
549 |
1719 |
d_ce_sk_vars.insert(d_ce_sk_vars.end(), sks.begin(), sks.end()); |
550 |
1719 |
d_set_ce_sk_vars = true; |
551 |
|
|
552 |
1719 |
if (query.isNull()) |
553 |
|
{ |
554 |
|
// no lemma to check |
555 |
|
return false; |
556 |
|
} |
557 |
|
|
558 |
|
// Record the solution, which may be falsified below. We require recording |
559 |
|
// here since the result of the satisfiability test may be unknown. |
560 |
1719 |
recordSolution(candidate_values); |
561 |
|
|
562 |
3438 |
Result r = d_verify.verify(query, d_ce_sk_vars, d_ce_sk_var_mvs); |
563 |
|
|
564 |
1719 |
if (r.asSatisfiabilityResult().isSat() == Result::SAT) |
565 |
|
{ |
566 |
|
// we have a counterexample |
567 |
424 |
return false; |
568 |
|
} |
569 |
1295 |
else if (r.asSatisfiabilityResult().isSat() != Result::UNSAT) |
570 |
|
{ |
571 |
|
// In the rare case that the subcall is unknown, we simply exclude the |
572 |
|
// solution, without adding a counterexample point. This should only |
573 |
|
// happen if the quantifier free logic is undecidable. |
574 |
36 |
excludeCurrentSolution(terms, candidate_values); |
575 |
|
// We should set incomplete, since a "sat" answer should not be |
576 |
|
// interpreted as "infeasible", which would make a difference in the rare |
577 |
|
// case where e.g. we had a finite grammar and exhausted the grammar. |
578 |
36 |
d_qim.setIncomplete(IncompleteId::QUANTIFIERS_SYGUS_NO_VERIFY); |
579 |
36 |
return false; |
580 |
|
} |
581 |
|
// otherwise we are unsat, and we will process the solution below |
582 |
|
|
583 |
|
// now mark that we have a solution |
584 |
1259 |
d_hasSolution = true; |
585 |
1259 |
if (options::sygusStream()) |
586 |
|
{ |
587 |
|
// immediately print the current solution |
588 |
1068 |
printAndContinueStream(terms, candidate_values); |
589 |
|
// streaming means now we immediately are looking for a new solution |
590 |
1068 |
d_hasSolution = false; |
591 |
1068 |
return false; |
592 |
|
} |
593 |
|
// Use lemma to terminate with "unsat", this is justified by the verification |
594 |
|
// check above, which confirms the synthesis conjecture is solved. |
595 |
382 |
Node qn = d_quant.negate(); |
596 |
191 |
d_qim.addPendingLemma(qn, InferenceId::QUANTIFIERS_SYGUS_VERIFY_SOLVED); |
597 |
191 |
return true; |
598 |
|
} |
599 |
|
|
600 |
1790 |
bool SynthConjecture::checkSideCondition(const std::vector<Node>& cvals) const |
601 |
|
{ |
602 |
1790 |
if (!d_embedSideCondition.isNull()) |
603 |
|
{ |
604 |
244 |
Node sc = d_embedSideCondition; |
605 |
157 |
if (!cvals.empty()) |
606 |
|
{ |
607 |
157 |
sc = sc.substitute( |
608 |
|
d_candidates.begin(), d_candidates.end(), cvals.begin(), cvals.end()); |
609 |
|
} |
610 |
157 |
Trace("sygus-engine") << "Check side condition..." << std::endl; |
611 |
157 |
Trace("cegqi-debug") << "Check side condition : " << sc << std::endl; |
612 |
157 |
Env& env = d_qstate.getEnv(); |
613 |
244 |
Result r = checkWithSubsolver(sc, env.getOptions(), env.getLogicInfo()); |
614 |
157 |
Trace("cegqi-debug") << "...got side condition : " << r << std::endl; |
615 |
157 |
if (r == Result::UNSAT) |
616 |
|
{ |
617 |
70 |
return false; |
618 |
|
} |
619 |
87 |
Trace("sygus-engine") << "...passed side condition" << std::endl; |
620 |
|
} |
621 |
1720 |
return true; |
622 |
|
} |
623 |
|
|
624 |
424 |
bool SynthConjecture::doRefine() |
625 |
|
{ |
626 |
424 |
Assert(d_set_ce_sk_vars); |
627 |
|
|
628 |
|
// first, make skolem substitution |
629 |
848 |
Trace("cegqi-refine") << "doRefine : construct skolem substitution..." |
630 |
424 |
<< std::endl; |
631 |
848 |
std::vector<Node> sk_vars; |
632 |
848 |
std::vector<Node> sk_subs; |
633 |
|
// collect the substitution over all disjuncts |
634 |
424 |
if (!d_ce_sk_vars.empty()) |
635 |
|
{ |
636 |
273 |
Trace("cegqi-refine") << "Get model values for skolems..." << std::endl; |
637 |
273 |
Assert(d_inner_vars.size() == d_ce_sk_vars.size()); |
638 |
273 |
if (d_ce_sk_var_mvs.empty()) |
639 |
|
{ |
640 |
|
std::vector<Node> model_values; |
641 |
|
for (const Node& v : d_ce_sk_vars) |
642 |
|
{ |
643 |
|
Node mv = getModelValue(v); |
644 |
|
Trace("cegqi-refine") << " " << v << " -> " << mv << std::endl; |
645 |
|
model_values.push_back(mv); |
646 |
|
} |
647 |
|
sk_subs.insert(sk_subs.end(), model_values.begin(), model_values.end()); |
648 |
|
} |
649 |
|
else |
650 |
|
{ |
651 |
273 |
Assert(d_ce_sk_var_mvs.size() == d_ce_sk_vars.size()); |
652 |
273 |
sk_subs.insert( |
653 |
546 |
sk_subs.end(), d_ce_sk_var_mvs.begin(), d_ce_sk_var_mvs.end()); |
654 |
|
} |
655 |
273 |
sk_vars.insert(sk_vars.end(), d_inner_vars.begin(), d_inner_vars.end()); |
656 |
|
} |
657 |
|
else |
658 |
|
{ |
659 |
151 |
Assert(d_inner_vars.empty()); |
660 |
|
} |
661 |
|
|
662 |
848 |
Trace("cegqi-refine") << "doRefine : Construct refinement lemma..." |
663 |
424 |
<< std::endl; |
664 |
848 |
Trace("cegqi-refine-debug") |
665 |
424 |
<< " For counterexample skolems : " << d_ce_sk_vars << std::endl; |
666 |
848 |
Node base_lem; |
667 |
424 |
if (d_base_inst.getKind() == NOT && d_base_inst[0].getKind() == FORALL) |
668 |
|
{ |
669 |
273 |
base_lem = d_base_inst[0][1]; |
670 |
|
} |
671 |
|
else |
672 |
|
{ |
673 |
151 |
base_lem = d_base_inst.negate(); |
674 |
|
} |
675 |
|
|
676 |
424 |
Assert(sk_vars.size() == sk_subs.size()); |
677 |
|
|
678 |
424 |
Trace("cegqi-refine") << "doRefine : substitute..." << std::endl; |
679 |
424 |
base_lem = base_lem.substitute( |
680 |
|
sk_vars.begin(), sk_vars.end(), sk_subs.begin(), sk_subs.end()); |
681 |
424 |
Trace("cegqi-refine") << "doRefine : rewrite..." << std::endl; |
682 |
424 |
base_lem = d_tds->rewriteNode(base_lem); |
683 |
848 |
Trace("cegqi-refine") << "doRefine : register refinement lemma " << base_lem |
684 |
424 |
<< "..." << std::endl; |
685 |
424 |
size_t prevPending = d_qim.numPendingLemmas(); |
686 |
424 |
d_master->registerRefinementLemma(sk_vars, base_lem); |
687 |
424 |
Trace("cegqi-refine") << "doRefine : finished" << std::endl; |
688 |
424 |
d_set_ce_sk_vars = false; |
689 |
424 |
d_ce_sk_vars.clear(); |
690 |
424 |
d_ce_sk_var_mvs.clear(); |
691 |
|
|
692 |
|
// check if we added a lemma |
693 |
424 |
bool addedLemma = d_qim.numPendingLemmas() > prevPending; |
694 |
424 |
if (addedLemma) |
695 |
|
{ |
696 |
267 |
Trace("sygus-engine-debug") << " ...refine candidate." << std::endl; |
697 |
|
} |
698 |
|
else |
699 |
|
{ |
700 |
314 |
Trace("sygus-engine-debug") << " ...(warning) failed to refine candidate, " |
701 |
157 |
"manually exclude candidate." |
702 |
157 |
<< std::endl; |
703 |
314 |
std::vector<Node> cvals; |
704 |
314 |
for (const Node& c : d_candidates) |
705 |
|
{ |
706 |
157 |
cvals.push_back(d_cinfo[c].d_inst.back()); |
707 |
|
} |
708 |
|
// something went wrong, exclude the current candidate |
709 |
157 |
excludeCurrentSolution(d_candidates, cvals); |
710 |
|
// Note this happens when evaluation is incapable of disproving a candidate |
711 |
|
// for counterexample point c, but satisfiability checking happened to find |
712 |
|
// the the same point c is indeed a true counterexample. It is sound |
713 |
|
// to exclude the candidate in this case. |
714 |
|
} |
715 |
848 |
return addedLemma; |
716 |
|
} |
717 |
|
|
718 |
333 |
void SynthConjecture::preregisterConjecture(Node q) |
719 |
|
{ |
720 |
333 |
d_ceg_si->preregisterConjecture(q); |
721 |
333 |
} |
722 |
|
|
723 |
39017 |
bool SynthConjecture::getEnumeratedValues(std::vector<Node>& n, |
724 |
|
std::vector<Node>& v, |
725 |
|
bool& activeIncomplete) |
726 |
|
{ |
727 |
78034 |
std::vector<Node> ncheck = n; |
728 |
39017 |
n.clear(); |
729 |
39017 |
bool ret = true; |
730 |
84936 |
for (unsigned i = 0, size = ncheck.size(); i < size; i++) |
731 |
|
{ |
732 |
91840 |
Node e = ncheck[i]; |
733 |
|
// if it is not active, we return null |
734 |
91840 |
Node g = d_tds->getActiveGuardForEnumerator(e); |
735 |
45928 |
if (!g.isNull()) |
736 |
|
{ |
737 |
70214 |
Node gstatus = d_qstate.getValuation().getSatValue(g); |
738 |
35131 |
if (gstatus.isNull() || !gstatus.getConst<bool>()) |
739 |
|
{ |
740 |
32 |
Trace("sygus-engine-debug") |
741 |
16 |
<< "Enumerator " << e << " is inactive." << std::endl; |
742 |
16 |
continue; |
743 |
|
} |
744 |
|
} |
745 |
45912 |
EnumValueManager* eman = getEnumValueManagerFor(e); |
746 |
91815 |
Node nv = eman->getEnumeratedValue(activeIncomplete); |
747 |
45903 |
n.push_back(e); |
748 |
45903 |
v.push_back(nv); |
749 |
45903 |
ret = ret && !nv.isNull(); |
750 |
|
} |
751 |
78016 |
return ret; |
752 |
|
} |
753 |
|
|
754 |
64476 |
EnumValueManager* SynthConjecture::getEnumValueManagerFor(Node e) |
755 |
|
{ |
756 |
|
std::map<Node, std::unique_ptr<EnumValueManager>>::iterator it = |
757 |
64476 |
d_enumManager.find(e); |
758 |
64476 |
if (it != d_enumManager.end()) |
759 |
|
{ |
760 |
64132 |
return it->second.get(); |
761 |
|
} |
762 |
|
// otherwise, allocate it |
763 |
688 |
Node f = d_tds->getSynthFunForEnumerator(e); |
764 |
1032 |
bool hasExamples = (d_exampleInfer->hasExamples(f) |
765 |
1032 |
&& d_exampleInfer->getNumExamples(f) != 0); |
766 |
688 |
d_enumManager[e].reset( |
767 |
344 |
new EnumValueManager(e, d_qstate, d_qim, d_treg, d_stats, hasExamples)); |
768 |
344 |
EnumValueManager* eman = d_enumManager[e].get(); |
769 |
|
// set up the examples |
770 |
344 |
if (hasExamples) |
771 |
|
{ |
772 |
128 |
ExampleEvalCache* eec = eman->getExampleEvalCache(); |
773 |
128 |
Assert(eec != nullptr); |
774 |
698 |
for (unsigned i = 0, nex = d_exampleInfer->getNumExamples(f); i < nex; i++) |
775 |
|
{ |
776 |
1140 |
std::vector<Node> input; |
777 |
570 |
d_exampleInfer->getExample(f, i, input); |
778 |
570 |
eec->addExample(input); |
779 |
|
} |
780 |
|
} |
781 |
344 |
return eman; |
782 |
|
} |
783 |
|
|
784 |
1412 |
Node SynthConjecture::getModelValue(Node n) |
785 |
|
{ |
786 |
1412 |
Trace("cegqi-mv") << "getModelValue for : " << n << std::endl; |
787 |
1412 |
return d_treg.getModel()->getValue(n); |
788 |
|
} |
789 |
|
|
790 |
|
void SynthConjecture::debugPrint(const char* c) |
791 |
|
{ |
792 |
|
Trace(c) << "Synthesis conjecture : " << d_embed_quant << std::endl; |
793 |
|
Trace(c) << " * Candidate programs : " << d_candidates << std::endl; |
794 |
|
Trace(c) << " * Counterexample skolems : " << d_ce_sk_vars << std::endl; |
795 |
|
} |
796 |
|
|
797 |
1068 |
void SynthConjecture::printAndContinueStream(const std::vector<Node>& enums, |
798 |
|
const std::vector<Node>& values) |
799 |
|
{ |
800 |
1068 |
Assert(d_master != nullptr); |
801 |
|
// we have generated a solution, print it |
802 |
|
// get the current output stream |
803 |
1068 |
const Options& sopts = d_qstate.options(); |
804 |
1068 |
printSynthSolutionInternal(*sopts.base.out); |
805 |
1068 |
excludeCurrentSolution(enums, values); |
806 |
1068 |
} |
807 |
|
|
808 |
1331 |
void SynthConjecture::excludeCurrentSolution(const std::vector<Node>& enums, |
809 |
|
const std::vector<Node>& values) |
810 |
|
{ |
811 |
2662 |
Trace("cegqi-debug") << "Exclude current solution: " << enums << " / " |
812 |
1331 |
<< values << std::endl; |
813 |
|
// We will not refine the current candidate solution since it is a solution |
814 |
|
// thus, we clear information regarding the current refinement |
815 |
1331 |
d_set_ce_sk_vars = false; |
816 |
1331 |
d_ce_sk_vars.clear(); |
817 |
1331 |
d_ce_sk_var_mvs.clear(); |
818 |
|
// However, we need to exclude the current solution using an explicit |
819 |
|
// blocking clause, so that we proceed to the next solution. We do this only |
820 |
|
// for passively-generated enumerators (TermDbSygus::isPassiveEnumerator). |
821 |
2662 |
std::vector<Node> exp; |
822 |
2671 |
for (unsigned i = 0, tsize = enums.size(); i < tsize; i++) |
823 |
|
{ |
824 |
2680 |
Node cprog = enums[i]; |
825 |
1340 |
Assert(d_tds->isEnumerator(cprog)); |
826 |
1340 |
if (d_tds->isPassiveEnumerator(cprog)) |
827 |
|
{ |
828 |
94 |
Node cval = values[i]; |
829 |
|
// add to explanation of exclusion |
830 |
47 |
d_tds->getExplain()->getExplanationForEquality(cprog, cval, exp); |
831 |
|
} |
832 |
|
} |
833 |
1331 |
if (!exp.empty()) |
834 |
|
{ |
835 |
38 |
if (!d_guarded_stream_exc) |
836 |
|
{ |
837 |
8 |
d_guarded_stream_exc = true; |
838 |
8 |
exp.push_back(d_feasible_guard); |
839 |
|
} |
840 |
38 |
Node exc_lem = exp.size() == 1 |
841 |
|
? exp[0] |
842 |
76 |
: NodeManager::currentNM()->mkNode(kind::AND, exp); |
843 |
38 |
exc_lem = exc_lem.negate(); |
844 |
76 |
Trace("cegqi-lemma") << "Cegqi::Lemma : stream exclude current solution : " |
845 |
38 |
<< exc_lem << std::endl; |
846 |
38 |
d_qim.lemma(exc_lem, InferenceId::QUANTIFIERS_SYGUS_STREAM_EXCLUDE_CURRENT); |
847 |
|
} |
848 |
1331 |
} |
849 |
|
|
850 |
1068 |
void SynthConjecture::printSynthSolutionInternal(std::ostream& out) |
851 |
|
{ |
852 |
1068 |
Trace("cegqi-sol-debug") << "Printing synth solution..." << std::endl; |
853 |
1068 |
Assert(d_quant[0].getNumChildren() == d_embed_quant[0].getNumChildren()); |
854 |
2136 |
std::vector<Node> sols; |
855 |
2136 |
std::vector<int8_t> statuses; |
856 |
1068 |
if (!getSynthSolutionsInternal(sols, statuses)) |
857 |
|
{ |
858 |
|
return; |
859 |
|
} |
860 |
1068 |
NodeManager* nm = NodeManager::currentNM(); |
861 |
2136 |
for (unsigned i = 0, size = d_embed_quant[0].getNumChildren(); i < size; i++) |
862 |
|
{ |
863 |
2136 |
Node sol = sols[i]; |
864 |
1068 |
if (!sol.isNull()) |
865 |
|
{ |
866 |
2136 |
Node prog = d_embed_quant[0][i]; |
867 |
1068 |
int8_t status = statuses[i]; |
868 |
2136 |
TypeNode tn = prog.getType(); |
869 |
1068 |
const DType& dt = tn.getDType(); |
870 |
2136 |
std::stringstream ss; |
871 |
1068 |
ss << prog; |
872 |
2136 |
std::string f(ss.str()); |
873 |
1068 |
f.erase(f.begin()); |
874 |
1068 |
++(d_stats.d_solutions); |
875 |
|
|
876 |
1068 |
bool is_unique_term = true; |
877 |
|
|
878 |
1068 |
if (status != 0 |
879 |
2132 |
&& (options::sygusRewSynth() || options::sygusQueryGen() |
880 |
60 |
|| options::sygusFilterSolMode() |
881 |
|
!= options::SygusFilterSolMode::NONE)) |
882 |
|
{ |
883 |
1064 |
Trace("cegqi-sol-debug") << "Run expression mining..." << std::endl; |
884 |
|
std::map<Node, std::unique_ptr<ExpressionMinerManager>>::iterator its = |
885 |
1064 |
d_exprm.find(prog); |
886 |
1064 |
if (its == d_exprm.end()) |
887 |
|
{ |
888 |
9 |
d_exprm[prog].reset(new ExpressionMinerManager(d_qstate.getEnv())); |
889 |
9 |
ExpressionMinerManager* emm = d_exprm[prog].get(); |
890 |
18 |
emm->initializeSygus( |
891 |
18 |
d_tds, d_candidates[i], options::sygusSamples(), true); |
892 |
9 |
if (options::sygusRewSynth()) |
893 |
|
{ |
894 |
7 |
emm->enableRewriteRuleSynth(); |
895 |
|
} |
896 |
9 |
if (options::sygusQueryGen()) |
897 |
|
{ |
898 |
|
emm->enableQueryGeneration(options::sygusQueryGenThresh()); |
899 |
|
} |
900 |
18 |
if (options::sygusFilterSolMode() |
901 |
9 |
!= options::SygusFilterSolMode::NONE) |
902 |
|
{ |
903 |
4 |
if (options::sygusFilterSolMode() |
904 |
2 |
== options::SygusFilterSolMode::STRONG) |
905 |
|
{ |
906 |
2 |
emm->enableFilterStrongSolutions(); |
907 |
|
} |
908 |
|
else if (options::sygusFilterSolMode() |
909 |
|
== options::SygusFilterSolMode::WEAK) |
910 |
|
{ |
911 |
|
emm->enableFilterWeakSolutions(); |
912 |
|
} |
913 |
|
} |
914 |
9 |
its = d_exprm.find(prog); |
915 |
|
} |
916 |
1064 |
bool rew_print = false; |
917 |
1064 |
is_unique_term = its->second->addTerm(sol, out, rew_print); |
918 |
1064 |
if (rew_print) |
919 |
|
{ |
920 |
103 |
++(d_stats.d_candidate_rewrites_print); |
921 |
|
} |
922 |
1064 |
if (!is_unique_term) |
923 |
|
{ |
924 |
248 |
++(d_stats.d_filtered_solutions); |
925 |
|
} |
926 |
|
} |
927 |
1068 |
if (is_unique_term) |
928 |
|
{ |
929 |
820 |
out << "(define-fun " << f << " "; |
930 |
|
// Only include variables that are truly bound variables of the |
931 |
|
// function-to-synthesize. This means we exclude variables that encode |
932 |
|
// external terms. This ensures that --sygus-stream prints |
933 |
|
// solutions with no arguments on the predicate for responses to |
934 |
|
// the get-abduct command. |
935 |
|
// pvs stores the variables that will be printed in the argument list |
936 |
|
// below. |
937 |
1640 |
std::vector<Node> pvs; |
938 |
1640 |
Node vl = dt.getSygusVarList(); |
939 |
820 |
if (!vl.isNull()) |
940 |
|
{ |
941 |
820 |
Assert(vl.getKind() == BOUND_VAR_LIST); |
942 |
|
SygusVarToTermAttribute sta; |
943 |
2743 |
for (const Node& v : vl) |
944 |
|
{ |
945 |
1923 |
if (!v.hasAttribute(sta)) |
946 |
|
{ |
947 |
1839 |
pvs.push_back(v); |
948 |
|
} |
949 |
|
} |
950 |
|
} |
951 |
820 |
if (pvs.empty()) |
952 |
|
{ |
953 |
21 |
out << "() "; |
954 |
|
} |
955 |
|
else |
956 |
|
{ |
957 |
799 |
vl = nm->mkNode(BOUND_VAR_LIST, pvs); |
958 |
799 |
out << vl << " "; |
959 |
|
} |
960 |
820 |
out << dt.getSygusType() << " "; |
961 |
820 |
if (status == 0) |
962 |
|
{ |
963 |
|
out << sol; |
964 |
|
} |
965 |
|
else |
966 |
|
{ |
967 |
1640 |
Node bsol = datatypes::utils::sygusToBuiltin(sol, true); |
968 |
820 |
out << bsol; |
969 |
|
} |
970 |
820 |
out << ")" << std::endl; |
971 |
|
} |
972 |
|
} |
973 |
|
} |
974 |
|
} |
975 |
|
|
976 |
254 |
bool SynthConjecture::getSynthSolutions( |
977 |
|
std::map<Node, std::map<Node, Node> >& sol_map) |
978 |
|
{ |
979 |
254 |
NodeManager* nm = NodeManager::currentNM(); |
980 |
508 |
std::vector<Node> sols; |
981 |
508 |
std::vector<int8_t> statuses; |
982 |
254 |
Trace("cegqi-debug") << "getSynthSolutions..." << std::endl; |
983 |
254 |
if (!getSynthSolutionsInternal(sols, statuses)) |
984 |
|
{ |
985 |
|
Trace("cegqi-debug") << "...failed internal" << std::endl; |
986 |
|
return false; |
987 |
|
} |
988 |
|
// we add it to the solution map, indexed by this conjecture |
989 |
254 |
std::map<Node, Node>& smc = sol_map[d_quant]; |
990 |
633 |
for (unsigned i = 0, size = d_embed_quant[0].getNumChildren(); i < size; i++) |
991 |
|
{ |
992 |
758 |
Node sol = sols[i]; |
993 |
379 |
int8_t status = statuses[i]; |
994 |
758 |
Trace("cegqi-debug") << "...got " << i << ": " << sol |
995 |
379 |
<< ", status=" << status << std::endl; |
996 |
|
// get the builtin solution |
997 |
758 |
Node bsol = sol; |
998 |
379 |
if (status != 0) |
999 |
|
{ |
1000 |
|
// Convert sygus to builtin here. |
1001 |
|
// We must use the external representation to ensure bsol matches the |
1002 |
|
// grammar. |
1003 |
229 |
bsol = datatypes::utils::sygusToBuiltin(sol, true); |
1004 |
|
} |
1005 |
|
// convert to lambda |
1006 |
758 |
TypeNode tn = d_embed_quant[0][i].getType(); |
1007 |
379 |
const DType& dt = tn.getDType(); |
1008 |
758 |
Node fvar = d_quant[0][i]; |
1009 |
758 |
Node bvl = dt.getSygusVarList(); |
1010 |
379 |
if (!bvl.isNull()) |
1011 |
|
{ |
1012 |
|
// since we don't have function subtyping, this assertion should only |
1013 |
|
// check the return type |
1014 |
294 |
Assert(fvar.getType().isFunction()); |
1015 |
294 |
Assert(fvar.getType().getRangeType().isComparableTo(bsol.getType())); |
1016 |
294 |
bsol = nm->mkNode(LAMBDA, bvl, bsol); |
1017 |
|
} |
1018 |
|
else |
1019 |
|
{ |
1020 |
85 |
Assert(fvar.getType().isComparableTo(bsol.getType())); |
1021 |
|
} |
1022 |
|
// store in map |
1023 |
379 |
smc[fvar] = bsol; |
1024 |
379 |
Trace("cegqi-debug") << "...return " << bsol << std::endl; |
1025 |
|
} |
1026 |
254 |
return true; |
1027 |
|
} |
1028 |
|
|
1029 |
1720 |
void SynthConjecture::recordSolution(std::vector<Node>& vs) |
1030 |
|
{ |
1031 |
1720 |
Assert(vs.size() == d_candidates.size()); |
1032 |
1720 |
d_cinfo.clear(); |
1033 |
3572 |
for (unsigned i = 0; i < vs.size(); i++) |
1034 |
|
{ |
1035 |
1852 |
d_cinfo[d_candidates[i]].d_inst.push_back(vs[i]); |
1036 |
|
} |
1037 |
1720 |
} |
1038 |
|
|
1039 |
1322 |
bool SynthConjecture::getSynthSolutionsInternal(std::vector<Node>& sols, |
1040 |
|
std::vector<int8_t>& statuses) |
1041 |
|
{ |
1042 |
1322 |
if (!d_hasSolution) |
1043 |
|
{ |
1044 |
|
return false; |
1045 |
|
} |
1046 |
2769 |
for (unsigned i = 0, size = d_embed_quant[0].getNumChildren(); i < size; i++) |
1047 |
|
{ |
1048 |
2894 |
Node prog = d_embed_quant[0][i]; |
1049 |
1447 |
Trace("cegqi-debug") << " get solution for " << prog << std::endl; |
1050 |
2894 |
TypeNode tn = prog.getType(); |
1051 |
1447 |
Assert(tn.isDatatype()); |
1052 |
|
// get the solution |
1053 |
2894 |
Node sol; |
1054 |
1447 |
int8_t status = -1; |
1055 |
1447 |
if (isSingleInvocation()) |
1056 |
|
{ |
1057 |
157 |
Assert(d_ceg_si != NULL); |
1058 |
157 |
sol = d_ceg_si->getSolution(i, tn, status, true); |
1059 |
157 |
if (sol.isNull()) |
1060 |
|
{ |
1061 |
|
return false; |
1062 |
|
} |
1063 |
157 |
sol = sol.getKind() == LAMBDA ? sol[1] : sol; |
1064 |
|
} |
1065 |
|
else |
1066 |
|
{ |
1067 |
2580 |
Node cprog = d_candidates[i]; |
1068 |
1290 |
if (!d_cinfo[cprog].d_inst.empty()) |
1069 |
|
{ |
1070 |
|
// the solution is just the last instantiated term |
1071 |
1290 |
sol = d_cinfo[cprog].d_inst.back(); |
1072 |
1290 |
status = 1; |
1073 |
|
|
1074 |
|
// check if there was a template |
1075 |
2580 |
Node sf = d_quant[0][i]; |
1076 |
2580 |
Node templ = d_templInfer->getTemplate(sf); |
1077 |
1290 |
if (!templ.isNull()) |
1078 |
|
{ |
1079 |
34 |
Trace("cegqi-inv-debug") |
1080 |
17 |
<< sf << " used template : " << templ << std::endl; |
1081 |
|
// if it was not embedded into the grammar |
1082 |
17 |
if (!options::sygusTemplEmbedGrammar()) |
1083 |
|
{ |
1084 |
34 |
TNode templa = d_templInfer->getTemplateArg(sf); |
1085 |
|
// make the builtin version of the full solution |
1086 |
17 |
sol = d_tds->sygusToBuiltin(sol, sol.getType()); |
1087 |
34 |
Trace("cegqi-inv") << "Builtin version of solution is : " << sol |
1088 |
17 |
<< ", type : " << sol.getType() << std::endl; |
1089 |
34 |
TNode tsol = sol; |
1090 |
17 |
sol = templ.substitute(templa, tsol); |
1091 |
17 |
Trace("cegqi-inv-debug") << "With template : " << sol << std::endl; |
1092 |
17 |
sol = Rewriter::rewrite(sol); |
1093 |
17 |
Trace("cegqi-inv-debug") << "Simplified : " << sol << std::endl; |
1094 |
|
// now, reconstruct to the syntax |
1095 |
17 |
sol = d_ceg_si->reconstructToSyntax(sol, tn, status, true); |
1096 |
17 |
sol = sol.getKind() == LAMBDA ? sol[1] : sol; |
1097 |
34 |
Trace("cegqi-inv-debug") |
1098 |
17 |
<< "Reconstructed to syntax : " << sol << std::endl; |
1099 |
|
} |
1100 |
|
else |
1101 |
|
{ |
1102 |
|
Trace("cegqi-inv-debug") |
1103 |
|
<< "...was embedding into grammar." << std::endl; |
1104 |
|
} |
1105 |
|
} |
1106 |
|
else |
1107 |
|
{ |
1108 |
2546 |
Trace("cegqi-inv-debug") |
1109 |
1273 |
<< sf << " did not use template" << std::endl; |
1110 |
|
} |
1111 |
|
} |
1112 |
|
else |
1113 |
|
{ |
1114 |
|
Trace("cegqi-warn") << "WARNING : No recorded instantiations for " |
1115 |
|
"syntax-guided solution!" |
1116 |
|
<< std::endl; |
1117 |
|
} |
1118 |
|
} |
1119 |
1447 |
sols.push_back(sol); |
1120 |
1447 |
statuses.push_back(status); |
1121 |
|
} |
1122 |
1322 |
return true; |
1123 |
|
} |
1124 |
|
|
1125 |
9256 |
Node SynthConjecture::getSymmetryBreakingPredicate( |
1126 |
|
Node x, Node e, TypeNode tn, unsigned tindex, unsigned depth) |
1127 |
|
{ |
1128 |
18512 |
std::vector<Node> sb_lemmas; |
1129 |
|
|
1130 |
|
// based on simple preprocessing |
1131 |
|
Node ppred = |
1132 |
18512 |
d_ceg_proc->getSymmetryBreakingPredicate(x, e, tn, tindex, depth); |
1133 |
9256 |
if (!ppred.isNull()) |
1134 |
|
{ |
1135 |
|
sb_lemmas.push_back(ppred); |
1136 |
|
} |
1137 |
|
|
1138 |
|
// other static conjecture-dependent symmetry breaking goes here |
1139 |
|
|
1140 |
9256 |
if (!sb_lemmas.empty()) |
1141 |
|
{ |
1142 |
|
return sb_lemmas.size() == 1 |
1143 |
|
? sb_lemmas[0] |
1144 |
|
: NodeManager::currentNM()->mkNode(kind::AND, sb_lemmas); |
1145 |
|
} |
1146 |
|
else |
1147 |
|
{ |
1148 |
9256 |
return Node::null(); |
1149 |
|
} |
1150 |
|
} |
1151 |
|
|
1152 |
18564 |
ExampleEvalCache* SynthConjecture::getExampleEvalCache(Node e) |
1153 |
|
{ |
1154 |
18564 |
EnumValueManager* eman = getEnumValueManagerFor(e); |
1155 |
18564 |
return eman->getExampleEvalCache(); |
1156 |
|
} |
1157 |
|
|
1158 |
|
} // namespace quantifiers |
1159 |
|
} // namespace theory |
1160 |
29505 |
} // namespace cvc5 |