mirror of
https://github.com/Z3Prover/z3
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151 lines
3.9 KiB
C++
151 lines
3.9 KiB
C++
/*++
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Copyright (c) 2011 Microsoft Corporation
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Module Name:
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model_converter.h
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Abstract:
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Abstract interface for converting models.
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Author:
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Leonardo (leonardo) 2011-04-21
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Notes:
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--*/
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#include"model_converter.h"
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#include"model_v2_pp.h"
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class concat_model_converter : public concat_converter<model_converter> {
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public:
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concat_model_converter(model_converter * mc1, model_converter * mc2):concat_converter<model_converter>(mc1, mc2) {}
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virtual void operator()(model_ref & m) {
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this->m_c2->operator()(m);
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this->m_c1->operator()(m);
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}
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virtual void operator()(model_ref & m, unsigned goal_idx) {
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this->m_c2->operator()(m, goal_idx);
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this->m_c1->operator()(m, 0);
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}
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virtual char const * get_name() const { return "concat-model-converter"; }
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virtual model_converter * translate(ast_translation & translator) {
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return this->translate_core<concat_model_converter>(translator);
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}
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};
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model_converter * concat(model_converter * mc1, model_converter * mc2) {
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if (mc1 == 0)
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return mc2;
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if (mc2 == 0)
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return mc1;
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return alloc(concat_model_converter, mc1, mc2);
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}
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class concat_star_model_converter : public concat_star_converter<model_converter> {
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public:
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concat_star_model_converter(model_converter * mc1, unsigned num, model_converter * const * mc2s, unsigned * szs):
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concat_star_converter<model_converter>(mc1, num, mc2s, szs) {
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}
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virtual void operator()(model_ref & m) {
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// TODO: delete method after conversion is complete
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UNREACHABLE();
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}
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virtual void operator()(model_ref & m, unsigned goal_idx) {
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unsigned num = this->m_c2s.size();
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for (unsigned i = 0; i < num; i++) {
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if (goal_idx < this->m_szs[i]) {
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// found the model converter that should be used
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model_converter * c2 = this->m_c2s[i];
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if (c2)
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c2->operator()(m, goal_idx);
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if (m_c1)
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this->m_c1->operator()(m, i);
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return;
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}
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// invalid goal
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goal_idx -= this->m_szs[i];
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}
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UNREACHABLE();
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}
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virtual char const * get_name() const { return "concat-star-model-converter"; }
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virtual model_converter * translate(ast_translation & translator) {
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return this->translate_core<concat_star_model_converter>(translator);
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}
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};
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model_converter * concat(model_converter * mc1, unsigned num, model_converter * const * mc2s, unsigned * szs) {
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SASSERT(num > 0);
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if (num == 1)
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return concat(mc1, mc2s[0]);
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unsigned i;
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for (i = 0; i < num; i++) {
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if (mc2s[i] != 0)
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break;
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}
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if (i == num) {
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// all mc2s are 0
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return mc1;
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}
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return alloc(concat_star_model_converter, mc1, num, mc2s, szs);
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}
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class model2mc : public model_converter {
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model_ref m_model;
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public:
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model2mc(model * m):m_model(m) {}
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virtual ~model2mc() {}
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virtual void operator()(model_ref & m) {
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m = m_model;
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}
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virtual void operator()(model_ref & m, unsigned goal_idx) {
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m = m_model;
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}
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virtual void cancel() {
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}
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virtual void display(std::ostream & out) {
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out << "(model->model-converter-wrapper\n";
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model_v2_pp(out, *m_model);
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out << ")\n";
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}
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virtual model_converter * translate(ast_translation & translator) {
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model * m = m_model->translate(translator);
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return alloc(model2mc, m);
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}
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};
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model_converter * model2model_converter(model * m) {
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if (m == 0)
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return 0;
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return alloc(model2mc, m);
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}
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void model_converter2model(ast_manager & mng, model_converter * mc, model_ref & m) {
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if (mc) {
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m = alloc(model, mng);
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(*mc)(m, 0);
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}
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}
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void apply(model_converter_ref & mc, model_ref & m, unsigned gidx) {
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if (mc) {
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(*mc)(m, gidx);
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}
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}
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