mirror of
https://github.com/Z3Prover/z3
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258 lines
6.9 KiB
C++
258 lines
6.9 KiB
C++
/*++
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Copyright (c) 2011 Microsoft Corporation
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Module Name:
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shallow_context_simplifier.h
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Abstract:
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Depth 1 context simplifier.
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Author:
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Leonardo de Moura (leonardo) 2011-04-28
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Revision History:
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--*/
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#include"shallow_context_simplifier.h"
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#include"assertion_set_util.h"
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#include"expr_substitution.h"
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#include"th_rewriter.h"
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#include"ast_smt2_pp.h"
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#include"assertion_set_util.h"
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struct shallow_context_simplifier::imp {
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ast_manager & m_manager;
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th_rewriter m_r;
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expr_substitution m_subst;
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assertion_set * m_set;
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as_shared_occs m_occs;
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unsigned m_idx;
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unsigned m_num_steps;
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unsigned m_max_rounds;
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bool m_modified;
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imp(ast_manager & m, params_ref const & p):
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m_manager(m),
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m_r(m, p),
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m_subst(m),
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m_set(0),
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m_occs(m, true /* track atoms */) {
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m_r.set_substitution(&m_subst);
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updt_params_core(p);
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}
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void updt_params_core(params_ref const & p) {
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m_max_rounds = p.get_uint(":max-rounds", 4);
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}
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void updt_params(params_ref const & p) {
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m_r.updt_params(p);
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updt_params_core(p);
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}
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ast_manager & m() const { return m_manager; }
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void set_cancel(bool f) {
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m_r.set_cancel(f);
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}
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void reset() {
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m_subst.reset();
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m_set = 0;
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m_num_steps = 0;
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}
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void push_result(expr * new_curr, proof * new_pr) {
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if (m().proofs_enabled()) {
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proof * pr = m_set->pr(m_idx);
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new_pr = m().mk_modus_ponens(pr, new_pr);
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}
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m_set->update(m_idx, new_curr, new_pr);
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if (is_shared(new_curr)) {
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m_subst.insert(new_curr, m().mk_true(), m().mk_iff_true(new_pr));
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}
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expr * atom;
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if (is_shared_neg(new_curr, atom)) {
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m_subst.insert(atom, m().mk_false(), m().mk_iff_false(new_pr));
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}
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expr * lhs, * value;
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if (is_shared_eq(new_curr, lhs, value)) {
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TRACE("shallow_context_simplifier_bug", tout << "found eq:\n" << mk_ismt2_pp(new_curr, m()) << "\n";);
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m_subst.insert(lhs, value, new_pr);
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}
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}
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void process_current() {
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expr * curr = m_set->form(m_idx);
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expr_ref new_curr(m());
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proof_ref new_pr(m());
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if (!m_subst.empty()) {
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m_r(curr, new_curr, new_pr);
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m_num_steps += m_r.get_num_steps();
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}
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else {
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new_curr = curr;
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if (m().proofs_enabled())
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new_pr = m().mk_reflexivity(curr);
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}
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TRACE("shallow_context_simplifier_bug", tout << mk_ismt2_pp(curr, m()) << "\n---->\n" << mk_ismt2_pp(new_curr, m()) << "\n";);
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push_result(new_curr, new_pr);
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if (new_curr != curr)
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m_modified = true;
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}
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void operator()(assertion_set & s) {
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SASSERT(is_well_sorted(s));
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as_st_report report("shallow-context-simplifier", s);
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m_num_steps = 0;
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if (s.inconsistent())
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return;
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SASSERT(m_set == 0);
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bool forward = true;
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m_set = &s;
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m_occs(*m_set);
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TRACE("shallow_context_simplifier_bug", m_occs.display(tout, m()); );
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unsigned size = s.size();
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m_idx = 0;
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m_modified = false;
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expr_ref new_curr(m());
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proof_ref new_pr(m());
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unsigned round = 0;
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while (true) {
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TRACE("shallow_context_simplifier_round", s.display(tout););
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if (forward) {
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for (; m_idx < size; m_idx++) {
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process_current();
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if (m_set->inconsistent())
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goto end;
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}
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if (m_subst.empty() && !m_modified)
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goto end;
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m_occs(*m_set);
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m_idx = m_set->size();
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forward = false;
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m_subst.reset();
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m_r.set_substitution(&m_subst); // reset, but keep substitution
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}
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else {
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while (m_idx > 0) {
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m_idx--;
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process_current();
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if (m_set->inconsistent())
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goto end;
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}
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if (!m_modified)
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goto end;
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m_subst.reset();
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m_r.set_substitution(&m_subst); // reset, but keep substitution
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m_modified = false;
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m_occs(*m_set);
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m_idx = 0;
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size = m_set->size();
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forward = true;
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}
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round++;
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if (round >= m_max_rounds)
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break;
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IF_VERBOSE(100, verbose_stream() << "starting new round, assertion-set size: " << m_set->num_exprs() << std::endl;);
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TRACE("shallow_context_simplifier", tout << "round finished\n"; m_set->display(tout); tout << "\n";);
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}
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end:
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m_set = 0;
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SASSERT(is_well_sorted(s));
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}
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bool is_shared(expr * t) {
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return m_occs.is_shared(t);
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}
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bool is_shared_neg(expr * t, expr * & atom) {
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if (!m().is_not(t))
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return false;
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atom = to_app(t)->get_arg(0);
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return is_shared(atom);
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}
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bool is_shared_eq(expr * t, expr * & lhs, expr * & value) {
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if (!m().is_eq(t))
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return false;
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expr * arg1 = to_app(t)->get_arg(0);
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expr * arg2 = to_app(t)->get_arg(1);
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if (m().is_value(arg1) && is_shared(arg2)) {
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lhs = arg2;
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value = arg1;
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return true;
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}
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if (m().is_value(arg2) && is_shared(arg1)) {
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lhs = arg1;
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value = arg2;
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return true;
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}
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return false;
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}
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unsigned get_num_steps() const { return m_num_steps; }
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};
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shallow_context_simplifier::shallow_context_simplifier(ast_manager & m, params_ref const & p):
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m_params(p) {
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m_imp = alloc(imp, m, p);
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}
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shallow_context_simplifier::~shallow_context_simplifier() {
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dealloc(m_imp);
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}
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void shallow_context_simplifier::updt_params(params_ref const & p) {
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m_params = p;
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m_imp->updt_params(p);
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}
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void shallow_context_simplifier::get_param_descrs(param_descrs & r) {
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th_rewriter::get_param_descrs(r);
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r.insert(":max-rounds", CPK_UINT, "(default: 2) maximum number of rounds.");
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}
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void shallow_context_simplifier::operator()(assertion_set & s) {
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m_imp->operator()(s);
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}
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void shallow_context_simplifier::set_cancel(bool f) {
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if (m_imp)
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m_imp->set_cancel(f);
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}
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void shallow_context_simplifier::cleanup() {
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ast_manager & m = m_imp->m();
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imp * d = m_imp;
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#pragma omp critical (as_st_cancel)
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{
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m_imp = 0;
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}
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dealloc(d);
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d = alloc(imp, m, m_params);
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#pragma omp critical (as_st_cancel)
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{
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m_imp = d;
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}
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}
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unsigned shallow_context_simplifier::get_num_steps() const {
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return m_imp->get_num_steps();
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}
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