mirror of
https://github.com/Z3Prover/z3
synced 2025-04-08 18:31:49 +00:00
141 lines
3.9 KiB
C++
141 lines
3.9 KiB
C++
#include "ast_util.h"
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app * mk_list_assoc_app(ast_manager & m, func_decl * f, unsigned num_args, expr * const * args) {
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SASSERT(f->is_associative());
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SASSERT(num_args >= 2);
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if (num_args > 2) {
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unsigned j = num_args - 1;
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app * r = m.mk_app(f, args[j-1], args[j]);
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-- j;
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while (j > 0) {
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--j;
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r = m.mk_app(f, args[j], r);
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}
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return r;
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}
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else {
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SASSERT(num_args == 2);
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return m.mk_app(f, args[0], args[1]);
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}
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}
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app * mk_list_assoc_app(ast_manager & m, family_id fid, decl_kind k, unsigned num_args, expr * const * args) {
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func_decl * decl = m.mk_func_decl(fid, k, 0, 0, num_args, args, 0);
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SASSERT(decl != 0);
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SASSERT(decl->is_associative());
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return mk_list_assoc_app(m, decl, num_args, args);
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}
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bool is_well_formed_vars(ptr_vector<sort>& bound, expr* e) {
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ptr_vector<expr> todo;
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ast_mark mark;
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todo.push_back(e);
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while (!todo.empty()) {
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expr* e = todo.back();
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todo.pop_back();
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if (mark.is_marked(e)) {
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continue;
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}
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mark.mark(e, true);
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if (is_quantifier(e)) {
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quantifier* q = to_quantifier(e);
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unsigned depth = q->get_num_decls();
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bound.append(depth, q->get_decl_sorts());
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if (!is_well_formed_vars(bound, q->get_expr())) {
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return false;
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}
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bound.resize(bound.size()-depth);
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}
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else if (is_app(e)) {
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app* a = to_app(e);
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for (unsigned i = 0; i < a->get_num_args(); ++i) {
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todo.push_back(a->get_arg(i));
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}
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}
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else if (is_var(e)) {
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var* v = to_var(e);
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unsigned index = v->get_idx();
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sort* s = v->get_sort();
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SASSERT(index < bound.size());
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index = bound.size()-1-index;
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if (!bound[index]) {
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bound[index] = s;
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}
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if (bound[index] != s) {
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return false;
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}
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}
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else {
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UNREACHABLE();
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}
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}
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return true;
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}
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bool is_atom(ast_manager & m, expr * n) {
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if (is_quantifier(n) || !m.is_bool(n))
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return false;
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if (is_var(n))
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return true;
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SASSERT(is_app(n));
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if (to_app(n)->get_family_id() != m.get_basic_family_id()) {
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return true;
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}
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// the other operators of the basic family are not considered atomic: distinct, ite, and, or, iff, xor, not, implies.
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return (m.is_eq(n) && !m.is_bool(to_app(n)->get_arg(0))) || m.is_true(n) || m.is_false(n);
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}
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bool is_literal(ast_manager & m, expr * n) {
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return
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is_atom(m, n) ||
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(m.is_not(n) && is_atom(m, to_app(n)->get_arg(0)));
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}
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void get_literal_atom_sign(ast_manager & m, expr * n, expr * & atom, bool & sign) {
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SASSERT(is_literal(m, n));
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if (is_atom(m, n)) {
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atom = n;
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sign = false;
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}
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else {
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SASSERT(m.is_not(n));
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atom = to_app(n)->get_arg(0);
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sign = true;
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}
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}
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bool is_clause(ast_manager & m, expr * n) {
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if (is_literal(m, n))
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return true;
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if (m.is_or(n)) {
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unsigned num_args = to_app(n)->get_num_args();
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for (unsigned i = 0; i < num_args; i++) {
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if (!is_literal(m, to_app(n)->get_arg(i)))
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return false;
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}
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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_clause_num_literals(ast_manager & m, expr * cls) {
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SASSERT(is_clause(m, cls));
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if (is_literal(m, cls))
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return 1;
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SASSERT(m.is_or(cls));
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return to_app(cls)->get_num_args();
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}
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expr * get_clause_literal(ast_manager & m, expr * cls, unsigned idx) {
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SASSERT(is_clause(m, cls));
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SASSERT(idx < get_clause_num_literals(m, cls));
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if (is_literal(m, cls)) {
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SASSERT(idx == 0);
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return cls;
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}
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SASSERT(m.is_or(cls));
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return to_app(cls)->get_arg(idx);
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}
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