mirror of
https://github.com/Z3Prover/z3
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172 lines
4.5 KiB
C++
172 lines
4.5 KiB
C++
/*++
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Copyright (c) 2006 Microsoft Corporation
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Module Name:
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maximize_ac_sharing.cpp
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Abstract:
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<abstract>
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Author:
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Leonardo de Moura (leonardo) 2008-10-22.
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Revision History:
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--*/
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#include "ast/rewriter/maximize_ac_sharing.h"
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#include "ast/ast_pp.h"
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void maximize_ac_sharing::register_kind(decl_kind k) {
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m_kinds.push_back(k);
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}
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br_status maximize_ac_sharing::reduce_app(func_decl * f, unsigned num_args, expr * const * args, expr_ref & result, proof_ref& result_pr) {
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decl_kind k = f->get_kind();
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if (!f->is_associative())
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return BR_FAILED;
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if (num_args <= 2)
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return BR_FAILED;
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if (std::find(m_kinds.begin(), m_kinds.end(), k) == m_kinds.end())
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return BR_FAILED;
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ptr_buffer<expr, 128> _args;
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expr * numeral = nullptr;
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if (is_numeral(args[0])) {
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numeral = args[0];
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for (unsigned i = 1; i < num_args; i++)
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_args.push_back(args[i]);
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num_args--;
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}
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else {
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_args.append(num_args, args);
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}
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TRACE("ac_sharing_detail", tout << "before-reuse: num_args: " << num_args << "\n";);
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#define MAX_NUM_ARGS_FOR_OPT 128
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// Try to reuse already created circuits.
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TRACE("ac_sharing_detail", tout << "args: "; for (unsigned i = 0; i < num_args; i++) tout << mk_pp(_args[i], m) << "\n";);
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try_to_reuse:
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if (num_args > 1 && num_args < MAX_NUM_ARGS_FOR_OPT) {
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for (unsigned i = 0; i + 1 < num_args; i++) {
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for (unsigned j = i + 1; j < num_args; j++) {
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if (contains(f, _args[i], _args[j])) {
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TRACE("ac_sharing_detail", tout << "reusing args: " << i << " " << j << "\n";);
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_args[i] = m.mk_app(f, _args[i], _args[j]);
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SASSERT(num_args > 1);
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for (unsigned w = j; w + 1 < num_args; w++) {
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_args[w] = _args[w+1];
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}
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num_args--;
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goto try_to_reuse;
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}
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}
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}
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}
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// Create "tree-like circuit"
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while (true) {
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TRACE("ac_sharing_detail", tout << "tree-loop: num_args: " << num_args << "\n";);
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unsigned j = 0;
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for (unsigned i = 0; i < num_args; i += 2, j++) {
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if (i == num_args - 1) {
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_args[j] = _args[i];
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}
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else {
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insert(f, _args[i], _args[i+1]);
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_args[j] = m.mk_app(f, _args[i], _args[i+1]);
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}
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}
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num_args = j;
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if (num_args == 1) {
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if (numeral == nullptr) {
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result = _args[0];
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}
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else {
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result = m.mk_app(f, numeral, _args[0]);
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}
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TRACE("ac_sharing_detail", tout << "result: " << mk_pp(result, m) << "\n";);
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return BR_DONE;
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}
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}
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UNREACHABLE();
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return BR_FAILED;
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}
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bool maximize_ac_sharing::contains(func_decl * f, expr * arg1, expr * arg2) {
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entry e(f, arg1, arg2);
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return m_cache.contains(&e);
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}
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void maximize_ac_sharing::insert(func_decl * f, expr * arg1, expr * arg2) {
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entry * e = new (m_region) entry(f, arg1, arg2);
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m_entries.push_back(e);
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m_cache.insert(e);
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m.inc_ref(arg1);
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m.inc_ref(arg2);
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}
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maximize_ac_sharing::maximize_ac_sharing(ast_manager & m):
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m(m),
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m_init(false) {
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}
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maximize_ac_sharing::~maximize_ac_sharing() {
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restore_entries(0);
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}
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void maximize_ac_sharing::push_scope() {
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init();
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m_scopes.push_back(m_entries.size());
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m_region.push_scope();
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}
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void maximize_ac_sharing::pop_scope(unsigned num_scopes) {
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SASSERT(num_scopes <= m_scopes.size());
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unsigned new_lvl = m_scopes.size() - num_scopes;
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unsigned old_lim = m_scopes[new_lvl];
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restore_entries(old_lim);
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m_region.pop_scope(num_scopes);
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m_scopes.shrink(new_lvl);
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}
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void maximize_ac_sharing::restore_entries(unsigned old_lim) {
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unsigned i = m_entries.size();
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while (i != old_lim) {
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--i;
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entry * e = m_entries[i];
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m_cache.remove(e);
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m.dec_ref(e->m_arg1);
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m.dec_ref(e->m_arg2);
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}
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m_entries.shrink(old_lim);
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}
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void maximize_ac_sharing::reset() {
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m_cache.reset();
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}
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void maximize_bv_sharing::init_core() {
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register_kind(OP_BADD);
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register_kind(OP_BMUL);
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register_kind(OP_BOR);
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register_kind(OP_BAND);
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}
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bool maximize_bv_sharing::is_numeral(expr * n) const {
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return m_util.is_numeral(n);
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}
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maximize_bv_sharing::maximize_bv_sharing(ast_manager & m):
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maximize_ac_sharing(m),
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m_util(m) {
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}
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