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https://github.com/Z3Prover/z3
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commit
33060f7b97
2 changed files with 72 additions and 65 deletions
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@ -83,7 +83,7 @@ namespace smt {
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return r;
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}
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unsigned parallel::param_generator::replay_proof_prefixes(vector<smt_params> candidate_param_states, unsigned max_conflicts_epsilon=200) {
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unsigned parallel::param_generator::replay_proof_prefixes(vector<param_values> const& candidate_param_states, unsigned max_conflicts_epsilon=200) {
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unsigned conflict_budget = m_max_prefix_conflicts + max_conflicts_epsilon;
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unsigned best_param_state_idx;
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double best_score;
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@ -95,11 +95,11 @@ namespace smt {
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double score = 0.0;
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// apply the ith param state to probe_ctx
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smt_params params = candidate_param_states[i];
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params_ref p;
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params.updt_params(p);
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params_ref p = apply_param_values(candidate_param_states[i]);
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probe_ctx->updt_params(p);
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// todo: m_recorded_cubes as a expr_ref_vector
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for (auto const& clause : probe_ctx->m_recorded_clauses) {
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expr_ref_vector negated_lits(probe_ctx->m);
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for (literal lit : clause) {
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@ -111,15 +111,13 @@ namespace smt {
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}
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// Replay the negated clause
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lbool r = probe_ctx->check(negated_lits.size(), negated_lits.data());
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::statistics st;
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probe_ctx->collect_statistics(st);
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unsigned conflicts = 0, decisions = 0, rlimit = 0;
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conflicts = st.get_val("conflicts");
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decisions = st.get_val("decisions");
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rlimit = st.get_val("rlimit count");
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score += conflicts + decisions + rlimit;
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unsigned conflicts = probe_ctx->m_stats.m_num_conflicts;
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unsigned decisions = probe_ctx->m_stats.m_num_decisions;
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score += conflicts + decisions;
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}
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if (i == 0 || score < best_score) {
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@ -132,49 +130,40 @@ namespace smt {
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}
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void parallel::param_generator::init_param_state() {
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// param_descrs smt_desc;
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// smt_params_helper::collect_param_descrs(smt_desc);
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smt_params_helper smtp(m_p);
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m_my_param_state.insert(symbol("smt.arith.nl.branching"), smtp.arith_nl_branching());
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m_my_param_state.insert(symbol("smt.arith.nl.cross_nested"), smtp.arith_nl_cross_nested());
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m_my_param_state.insert(symbol("smt.arith.nl.delay"), smtp.arith_nl_delay());
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m_my_param_state.insert(symbol("smt.arith.nl.expensive_patching"), smtp.arith_nl_expensive_patching());
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// m_my_param_state.insert(symbol("smt.arith.nl.gb"), smtp.arith_nl_gb());
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m_my_param_state.insert(symbol("smt.arith.nl.horner"), smtp.arith_nl_horner());
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m_my_param_state.insert(symbol("smt.arith.nl.horner_frequency"), smtp.arith_nl_horner_frequency());
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m_my_param_state.insert(symbol("smt.arith.nl.optimize_bounds"), smtp.arith_nl_optimize_bounds());
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m_my_param_state.insert(symbol("smt.arith.nl.propagate_linear_monomials"), smtp.arith_nl_propagate_linear_monomials());
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m_my_param_state.insert(symbol("smt.arith.nl.tangents"), smtp.arith_nl_tangents());
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m_param_state.push_back({symbol("smt.arith.nl.branching"), smtp.arith_nl_branching()});
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m_param_state.push_back({symbol("smt.arith.nl.cross_nested"), smtp.arith_nl_cross_nested()});
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m_param_state.push_back({symbol("smt.arith.nl.delay"), unsigned_value({smtp.arith_nl_delay(), 5, 10})});
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m_param_state.push_back({symbol("smt.arith.nl.expensive_patching"), smtp.arith_nl_expensive_patching()});
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m_param_state.push_back({symbol("smt.arith.nl.gb"), smtp.arith_nl_grobner()});
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m_param_state.push_back({symbol("smt.arith.nl.horner"), smtp.arith_nl_horner()});
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m_param_state.push_back({symbol("smt.arith.nl.horner_frequency"), unsigned_value({smtp.arith_nl_horner_frequency(), 2, 6})
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});
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m_param_state.push_back({symbol("smt.arith.nl.optimize_bounds"), smtp.arith_nl_optimize_bounds()});
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m_param_state.push_back(
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{symbol("smt.arith.nl.propagate_linear_monomials"), smtp.arith_nl_propagate_linear_monomials()});
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m_param_state.push_back({symbol("smt.arith.nl.tangents"), smtp.arith_nl_tangents()});
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};
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// TODO: this should mutate only one field at a time an mutate it based on m_my_param_state to keep it generic.
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parallel::param_generator::param_values parallel::param_generator::mutate_param_state() {
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smt_params parallel::param_generator::mutate_param_state() {
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smt_params p = m_param_state;
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random_gen m_rand;
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auto flip_bool = [&](bool &x) {
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if (m_rand(2) == 0)
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x = !x;
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};
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auto mutate_uint = [&](unsigned &x, unsigned lo, unsigned hi) {
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if ((m_rand() % 2) == 0)
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x = lo + (m_rand((hi - lo + 1)));
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};
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flip_bool(p.m_nl_arith_branching);
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flip_bool(p.m_nl_arith_cross_nested);
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mutate_uint(p.m_nl_arith_delay, 5, 20);
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flip_bool(p.m_nl_arith_expensive_patching);
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flip_bool(p.m_nl_arith_gb);
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flip_bool(p.m_nl_arith_horner);
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mutate_uint(p.m_nl_arith_horner_frequency, 2, 6);
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flip_bool(p.m_nl_arith_optimize_bounds);
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flip_bool(p.m_nl_arith_propagate_linear_monomials);
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flip_bool(p.m_nl_arith_tangents);
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return p;
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param_values new_param_values(m_param_state);
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unsigned index = ctx->get_random_value() % new_param_values.size();
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auto ¶m = new_param_values[index];
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if (std::holds_alternative<bool>(param.second)) {
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bool value = *std::get_if<bool>(¶m.second);
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param.second = !value;
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}
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else if (std::holds_alternative<unsigned_value>(param.second)) {
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auto [value, lo, hi] = *std::get_if<unsigned_value>(¶m.second);
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unsigned new_value = value;
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while (new_value == value) {
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new_value = lo + ctx->get_random_value() % (hi - lo + 1);
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}
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std::get<unsigned_value>(param.second).value = new_value;
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}
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return new_param_values;
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}
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void parallel::param_generator::protocol_iteration() {
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@ -183,6 +172,8 @@ namespace smt {
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// copy current param state to all param probe contexts, before running the next prefix step
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// this ensures that each param probe context replays the prefix from the same configuration
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// instead just one one context and reset it each time before copy.
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for (unsigned i = 0; i < m_param_probe_contexts.size(); ++i) {
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context::copy(*ctx, *m_param_probe_contexts[i], true);
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}
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@ -193,8 +184,12 @@ namespace smt {
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case l_undef: {
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// TODO, change from smt_params to a generic param state representation based on params_ref
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// only params_ref have effect on updates.
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smt_params best_param_state = m_param_state;
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vector<smt_params> candidate_param_states;
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param_values best_param_state = m_param_state;
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vector<param_values> candidate_param_states;
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// you can create the mutations on the fly and get the scores
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// you don't have to copy all over each tester.
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candidate_param_states.push_back(best_param_state); // first candidate param state is current best
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while (candidate_param_states.size() <= N) {
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@ -205,7 +200,8 @@ namespace smt {
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if (best_param_state_idx != 0) {
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m_param_state = candidate_param_states[best_param_state_idx];
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b.set_param_state(m_param_state);
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auto p = apply_param_values(m_param_state);
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b.set_param_state(p);
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IF_VERBOSE(1, verbose_stream() << " PARAM TUNER found better param state at index " << best_param_state_idx << "\n");
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} else {
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IF_VERBOSE(1, verbose_stream() << " PARAM TUNER retained current param state\n");
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@ -316,12 +312,12 @@ namespace smt {
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}
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parallel::param_generator::param_generator(parallel& p)
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: p(p), b(p.m_batch_manager), m_param_state(p.ctx.get_fparams()), m_p(p.ctx.get_params()), m_l2g(m, p.ctx.m) {
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ctx = alloc(context, m, m_param_state, m_p);
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: p(p), b(p.m_batch_manager), m_p(p.ctx.get_params()), m_l2g(m, p.ctx.m) {
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ctx = alloc(context, m, p.ctx.get_fparams(), m_p);
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context::copy(p.ctx, *ctx, true);
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for (unsigned i = 0; i < N; ++i) {
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m_param_probe_contexts.push_back(alloc(context, m, m_param_state, m_p));
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m_param_probe_contexts.push_back(alloc(context, m, ctx->get_fparams(), m_p));
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}
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// don't share initial units
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@ -481,7 +477,8 @@ namespace smt {
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}
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}
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smt_params parallel::batch_manager::get_best_param_state() {
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// todo make this thread safe by not using reference counts implicit in params ref but instead copying the entire structure.
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params_ref parallel::batch_manager::get_best_param_state() {
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std::scoped_lock lock(mux);
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return m_param_state;
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}
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@ -80,7 +80,7 @@ namespace smt {
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std::mutex mux;
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state m_state = state::is_running;
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stats m_stats;
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smt_params m_param_state;
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params_ref m_param_state;
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using node = search_tree::node<cube_config>;
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search_tree::tree<cube_config> m_search_tree;
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@ -105,10 +105,10 @@ namespace smt {
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void set_sat(ast_translation& l2g, model& m);
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void set_exception(std::string const& msg);
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void set_exception(unsigned error_code);
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void set_param_state(smt_params const& p) { m_param_state = p; }
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void set_param_state(params_ref const& p) { m_param_state.copy(p); }
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void collect_statistics(::statistics& st) const;
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smt_params get_best_param_state();
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params_ref get_best_param_state();
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bool get_cube(ast_translation& g2l, unsigned id, expr_ref_vector& cube, node*& n);
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void backtrack(ast_translation& l2g, expr_ref_vector const& core, node* n);
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void split(ast_translation& l2g, unsigned id, node* n, expr* atom);
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@ -138,22 +138,32 @@ namespace smt {
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scoped_ptr<context> m_prefix_solver;
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scoped_ptr_vector<context> m_param_probe_contexts;
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smt_params m_param_state;
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params_ref m_p;
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using param_value = std::variant<unsigned, bool, double>;
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symbol_table<param_value> m_my_param_state;
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struct unsigned_value {
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unsigned value;
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unsigned min_value;
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unsigned max_value;
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};
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using param_value = std::variant<unsigned_value, bool>;
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using param_values = vector<std::pair<symbol, param_value>>;
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param_values m_param_state;
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params_ref apply_param_values(param_values const &pv) {
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return m_p;
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}
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// todo
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private:
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void init_param_state();
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smt_params mutate_param_state();
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param_values mutate_param_state();
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public:
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param_generator(parallel &p);
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lbool run_prefix_step();
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void protocol_iteration();
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unsigned replay_proof_prefixes(vector<smt_params> candidate_param_states, unsigned max_conflicts_epsilon);
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unsigned replay_proof_prefixes(vector<param_values> const& candidate_param_states, unsigned max_conflicts_epsilon);
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reslimit &limit() {
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return m.limit();
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