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https://github.com/Z3Prover/z3
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Remove old special_relations_tactic class, use simplifier-based tactic as the sole special-relations tactic
Co-authored-by: NikolajBjorner <3085284+NikolajBjorner@users.noreply.github.com>
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2 changed files with 1 additions and 204 deletions
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@ -18,164 +18,4 @@ Notes:
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--*/
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#include "tactic/core/special_relations_tactic.h"
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#include "ast/rewriter/func_decl_replace.h"
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#include "ast/ast_util.h"
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#include "ast/ast_pp.h"
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void special_relations_tactic::collect_feature(goal const& g, unsigned idx,
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obj_map<func_decl, sp_axioms>& goal_features) {
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expr* f = g.form(idx);
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func_decl_ref p(m);
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if (!is_quantifier(f)) return;
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unsigned index = 0;
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app_ref_vector patterns(m);
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bool is_match = m_pm.match_quantifier_index(to_quantifier(f), patterns, index);
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TRACE(special_relations, tout << "check " << is_match << " " << mk_pp(f, m) << "\n";
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if (is_match) tout << patterns << " " << index << "\n";);
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if (is_match) {
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p = to_app(patterns.get(0)->get_arg(0))->get_decl();
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insert(goal_features, p, idx, m_properties[index]);
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}
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}
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void special_relations_tactic::insert(obj_map<func_decl, sp_axioms>& goal_features, func_decl* f, unsigned idx, sr_property p) {
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sp_axioms ax;
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goal_features.find(f, ax);
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ax.m_goal_indices.push_back(idx);
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ax.m_sp_features = (sr_property)(p | ax.m_sp_features);
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goal_features.insert(f, ax);
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}
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void special_relations_tactic::initialize() {
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if (!m_properties.empty()) return;
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sort_ref A(m.mk_uninterpreted_sort(symbol("A")), m);
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func_decl_ref R(m.mk_func_decl(symbol("?R"), A, A, m.mk_bool_sort()), m);
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var_ref x(m.mk_var(0, A), m);
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var_ref y(m.mk_var(1, A), m);
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var_ref z(m.mk_var(2, A), m);
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expr* _x = x, *_y = y, *_z = z;
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expr_ref Rxy(m.mk_app(R, _x, y), m);
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expr_ref Ryz(m.mk_app(R, _y, z), m);
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expr_ref Rxz(m.mk_app(R, _x, z), m);
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expr_ref Rxx(m.mk_app(R, _x, x), m);
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expr_ref Ryx(m.mk_app(R, _y, x), m);
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expr_ref Rzy(m.mk_app(R, _z, y), m);
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expr_ref Rzx(m.mk_app(R, _z, x), m);
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expr_ref nRxy(m.mk_not(Rxy), m);
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expr_ref nRyx(m.mk_not(Ryx), m);
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expr_ref nRzx(m.mk_not(Rzx), m);
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expr_ref nRxz(m.mk_not(Rxz), m);
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sort* As[3] = { A, A, A};
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symbol xyz[3] = { symbol("x"), symbol("y"), symbol("z") };
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expr_ref fml(m);
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quantifier_ref q(m);
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expr_ref pat(m.mk_pattern(to_app(Rxy)), m);
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expr_ref pat0(m.mk_pattern(to_app(Rxx)), m);
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expr* pats[1] = { pat };
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expr* pats0[1] = { pat0 };
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fml = m.mk_or(m.mk_not(Rxy), m.mk_not(Ryz), Rxz);
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q = m.mk_forall(3, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_transitive);
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fml = m.mk_or(mk_not(Rxy & Ryz), Rxz);
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q = m.mk_forall(3, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_transitive);
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fml = Rxx;
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q = m.mk_forall(1, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats0);
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register_pattern(m_pm.initialize(q), sr_reflexive);
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fml = m.mk_or(nRxy, nRyx, m.mk_eq(x, y));
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q = m.mk_forall(2, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_antisymmetric);
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fml = m.mk_or(mk_not(Rxy & Ryx), m.mk_eq(x, y));
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q = m.mk_forall(2, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_antisymmetric);
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fml = m.mk_or(nRyx, nRzx, Ryz, Rzy);
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q = m.mk_forall(3, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_lefttree);
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fml = m.mk_or(mk_not (Ryx & Rzx), Ryz, Rzy);
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q = m.mk_forall(3, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_lefttree);
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fml = m.mk_or(nRxy, nRxz, Ryz, Rzy);
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q = m.mk_forall(3, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_righttree);
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fml = m.mk_or(mk_not(Rxy & Rxz), Ryz, Rzy);
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q = m.mk_forall(3, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_righttree);
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fml = m.mk_or(Rxy, Ryx);
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q = m.mk_forall(2, As, xyz, fml, 0, symbol::null, symbol::null, 1, pats);
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register_pattern(m_pm.initialize(q), sr_total);
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TRACE(special_relations, m_pm.display(tout););
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}
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void special_relations_tactic::register_pattern(unsigned index, sr_property p) {
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SASSERT(index == m_properties.size());
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m_properties.push_back(p);
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}
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void special_relations_tactic::operator()(goal_ref const & g, goal_ref_buffer & result) {
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tactic_report report("special_relations", *g);
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initialize();
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obj_map<func_decl, sp_axioms> goal_features;
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unsigned size = g->size();
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for (unsigned idx = 0; idx < size; ++idx) {
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collect_feature(*g, idx, goal_features);
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}
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special_relations_util u(m);
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func_decl_replace replace(m);
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unsigned_vector to_delete;
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for(auto const& kv : goal_features) {
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sr_property feature = kv.m_value.m_sp_features;
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switch (feature) {
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case sr_po:
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replace.insert(kv.m_key, u.mk_po_decl(kv.m_key));
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to_delete.append(kv.m_value.m_goal_indices);
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break;
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case sr_to:
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replace.insert(kv.m_key, u.mk_to_decl(kv.m_key));
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to_delete.append(kv.m_value.m_goal_indices);
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break;
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case sr_plo:
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replace.insert(kv.m_key, u.mk_plo_decl(kv.m_key));
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to_delete.append(kv.m_value.m_goal_indices);
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break;
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case sr_lo:
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replace.insert(kv.m_key, u.mk_lo_decl(kv.m_key));
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to_delete.append(kv.m_value.m_goal_indices);
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break;
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default:
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TRACE(special_relations, tout << "unprocessed feature " << feature << "\n";);
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break;
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}
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}
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if (!replace.empty()) {
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for (unsigned idx = 0; idx < size; ++idx) {
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if (to_delete.contains(idx)) {
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g->update(idx, m.mk_true());
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}
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else {
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expr_ref new_f = replace(g->form(idx));
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g->update(idx, new_f);
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}
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}
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g->elim_true();
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}
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g->inc_depth();
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result.push_back(g.get());
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}
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tactic * mk_special_relations_tactic(ast_manager & m, params_ref const & p) {
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return alloc(special_relations_tactic, m, p);
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}
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@ -20,52 +20,10 @@ Notes:
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#pragma once
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#include "tactic/tactic.h"
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#include "tactic/tactical.h"
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#include "tactic/dependent_expr_state_tactic.h"
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#include "ast/special_relations_decl_plugin.h"
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#include "ast/pattern/expr_pattern_match.h"
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#include "ast/simplifiers/special_relations_simplifier.h"
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class special_relations_tactic : public tactic {
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ast_manager& m;
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params_ref m_params;
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expr_pattern_match m_pm;
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svector<sr_property> m_properties;
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struct sp_axioms {
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unsigned_vector m_goal_indices;
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sr_property m_sp_features;
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sp_axioms():m_sp_features(sr_none) {}
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};
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void collect_feature(goal const& g, unsigned idx, obj_map<func_decl, sp_axioms>& goal_features);
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void insert(obj_map<func_decl, sp_axioms>& goal_features, func_decl* f, unsigned idx, sr_property p);
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void initialize();
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void register_pattern(unsigned index, sr_property);
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public:
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special_relations_tactic(ast_manager & m, params_ref const & ref = params_ref()):
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m(m), m_params(ref), m_pm(m) {}
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void updt_params(params_ref const & p) override { m_params.append(p); }
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void collect_param_descrs(param_descrs & r) override { }
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void operator()(goal_ref const & in, goal_ref_buffer & result) override;
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void cleanup() override {}
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tactic * translate(ast_manager & m) override { return alloc(special_relations_tactic, m, m_params); }
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char const* name() const override { return "special_relations"; }
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};
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tactic * mk_special_relations_tactic(ast_manager & m, params_ref const & p = params_ref());
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inline tactic* mk_special_relations2_tactic(ast_manager& m, params_ref const& p = params_ref()) {
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inline tactic* mk_special_relations_tactic(ast_manager& m, params_ref const& p = params_ref()) {
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return alloc(dependent_expr_state_tactic, m, p,
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[](auto& m, auto& p, auto& s) -> dependent_expr_simplifier* {
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return alloc(special_relations_simplifier, m, p, s);
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@ -74,7 +32,6 @@ inline tactic* mk_special_relations2_tactic(ast_manager& m, params_ref const& p
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/*
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ADD_TACTIC("special-relations", "detect and replace by special relations.", "mk_special_relations_tactic(m, p)")
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ADD_TACTIC("special-relations2", "detect and replace by special relations.", "mk_special_relations2_tactic(m, p)")
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ADD_SIMPLIFIER("special-relations", "detect and replace by special relations.", "alloc(special_relations_simplifier, m, p, s)")
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*/
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