Z3
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z3++.h
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1/*++
2Copyright (c) 2012 Microsoft Corporation
3
4 Thin C++ layer on top of the Z3 C API.
5 Main features:
6 - Smart pointers for all Z3 objects.
7 - Object-Oriented interface.
8 - Operator overloading.
9 - Exceptions for signaling Z3 errors
10
11 The C API can be used simultaneously with the C++ layer.
12 However, if you use the C API directly, you will have to check the error conditions manually.
13 Of course, you can invoke the method check_error() of the context object.
14Author:
15
16 Leonardo (leonardo) 2012-03-28
17
18Notes:
19
20--*/
21#pragma once
22
23#include<cassert>
24#include<ostream>
25#include<string>
26#include<memory>
27#include<vector>
28#include<z3.h>
29#include<z3_rcf.h>
30#include<limits.h>
31#include<functional>
32
33#undef min
34#undef max
35
41
46
50namespace z3 {
51
52 class exception;
53 class config;
54 class context;
55 class symbol;
56 class params;
57 class param_descrs;
58 class ast;
59 class sort;
60 class constructors;
61 class constructor_list;
62 class func_decl;
63 class expr;
64 class solver;
65 class goal;
66 class tactic;
67 class simplifier;
68 class probe;
69 class model;
70 class func_interp;
71 class func_entry;
72 class statistics;
73 class apply_result;
74 template<typename T> class cast_ast;
75 template<typename T> class ast_vector_tpl;
80
81 inline void set_param(char const * param, char const * value) { Z3_global_param_set(param, value); }
82 inline void set_param(char const * param, bool value) { Z3_global_param_set(param, value ? "true" : "false"); }
83 inline void set_param(char const * param, int value) { auto str = std::to_string(value); Z3_global_param_set(param, str.c_str()); }
85
89 inline void get_version(unsigned& major, unsigned& minor, unsigned& build_number, unsigned& revision_number) {
90 Z3_get_version(&major, &minor, &build_number, &revision_number);
91 }
92
96 inline std::string get_full_version() {
97 return std::string(Z3_get_full_version());
98 }
99
104 inline void enable_trace(char const * tag) {
105 Z3_enable_trace(tag);
106 }
107
112 inline void disable_trace(char const * tag) {
113 Z3_disable_trace(tag);
114 }
115
119 class exception : public std::exception {
120 std::string m_msg;
121 public:
122 virtual ~exception() throw() = default;
123 exception(char const * msg):m_msg(msg) {}
124 char const * msg() const { return m_msg.c_str(); }
125 char const * what() const throw() { return m_msg.c_str(); }
126 friend std::ostream & operator<<(std::ostream & out, exception const & e);
127 };
128 inline std::ostream & operator<<(std::ostream & out, exception const & e) { out << e.msg(); return out; }
129
130#if !defined(Z3_THROW)
131#if __cpp_exceptions || _CPPUNWIND || __EXCEPTIONS
132#define Z3_THROW(x) throw x
133#else
134#define Z3_THROW(x) {}
135#endif
136#endif // !defined(Z3_THROW)
137
141 class config {
142 Z3_config m_cfg;
143 config(config const &) = delete;
144 config & operator=(config const &) = delete;
145 public:
146 config() { m_cfg = Z3_mk_config(); }
147 ~config() { Z3_del_config(m_cfg); }
148 operator Z3_config() const { return m_cfg; }
152 void set(char const * param, char const * value) { Z3_set_param_value(m_cfg, param, value); }
156 void set(char const * param, bool value) { Z3_set_param_value(m_cfg, param, value ? "true" : "false"); }
160 void set(char const * param, int value) {
161 auto str = std::to_string(value);
162 Z3_set_param_value(m_cfg, param, str.c_str());
163 }
164 };
165
169
177
179 if (l == Z3_L_TRUE) return sat;
180 else if (l == Z3_L_FALSE) return unsat;
181 return unknown;
182 }
183
184
185
189
190
191 class context {
192 private:
194 bool m_enable_exceptions = true;
195 rounding_mode m_rounding_mode;
196 Z3_context m_ctx = nullptr;
197 void init(config & c) {
198 set_context(Z3_mk_context_rc(c));
199 }
200 void set_context(Z3_context ctx) {
201 m_ctx = ctx;
202 m_enable_exceptions = true;
203 m_rounding_mode = RNE;
204 Z3_set_error_handler(m_ctx, 0);
206 }
207
208
209 context(context const &) = delete;
210 context & operator=(context const &) = delete;
211
212 context(Z3_context c) { set_context(c); }
213 void detach() { m_ctx = nullptr; }
214 public:
215 context() { config c; init(c); }
216 context(config & c) { init(c); }
217
218 context(context && other) noexcept
219 : m_enable_exceptions(other.m_enable_exceptions),
220 m_rounding_mode(other.m_rounding_mode),
221 m_ctx(other.m_ctx) {
222 other.m_ctx = nullptr;
223 }
224
225 context & operator=(context && other) noexcept {
226 if (this != &other) {
227 if (m_ctx) Z3_del_context(m_ctx);
228 m_enable_exceptions = other.m_enable_exceptions;
229 m_rounding_mode = other.m_rounding_mode;
230 m_ctx = other.m_ctx;
231 other.m_ctx = nullptr;
232 }
233 return *this;
234 }
235 ~context() { if (m_ctx) Z3_del_context(m_ctx); }
236 operator Z3_context() const { return m_ctx; }
237
243 if (e != Z3_OK && enable_exceptions())
245 return e;
246 }
247
248 void check_parser_error() const {
249 check_error();
250 }
251
259 void set_enable_exceptions(bool f) { m_enable_exceptions = f; }
260
261 bool enable_exceptions() const { return m_enable_exceptions; }
262
266 void set(char const * param, char const * value) { Z3_update_param_value(m_ctx, param, value); }
270 void set(char const * param, bool value) { Z3_update_param_value(m_ctx, param, value ? "true" : "false"); }
271
272 unsigned num_simplifiers() const {
273 unsigned r = Z3_get_num_simplifiers(m_ctx);
274 check_error();
275 return r;
276 }
277 std::string simplifier_name(unsigned i) const {
278 char const* r = Z3_get_simplifier_name(m_ctx, i);
279 check_error();
280 return r;
281 }
282 std::string simplifier_description(char const* name) const {
283 char const* r = Z3_simplifier_get_descr(m_ctx, name);
284 check_error();
285 return r;
286 }
287
290 void set(char const * param, int value) {
291 auto str = std::to_string(value);
292 Z3_update_param_value(m_ctx, param, str.c_str());
293 }
294
299 void interrupt() { Z3_interrupt(m_ctx); }
300
304 symbol str_symbol(char const * s);
308 symbol int_symbol(int n);
312 sort bool_sort();
316 sort int_sort();
320 sort real_sort();
324 sort bv_sort(unsigned sz);
325
329 sort char_sort();
337 sort seq_sort(sort& s);
351 sort array_sort(sort d, sort r);
352 sort array_sort(sort_vector const& d, sort r);
359 sort fpa_sort(unsigned ebits, unsigned sbits);
363 template<size_t precision>
378 sort enumeration_sort(char const * name, unsigned n, char const * const * enum_names, func_decl_vector & cs, func_decl_vector & ts);
379
386 func_decl tuple_sort(char const * name, unsigned n, char const * const * names, sort const* sorts, func_decl_vector & projs);
387
388
397 sort datatype(symbol const& name, constructors const& cs);
398
406 sort datatype(symbol const &name, sort_vector const &params, constructors const &cs);
407
414 sort_vector datatypes(unsigned n, symbol const* names,
415 constructor_list *const* cons);
416
417
422 sort datatype_sort(symbol const& name);
423
430 sort datatype_sort(symbol const& name, sort_vector const& params);
431
432
436 sort uninterpreted_sort(char const* name);
437 sort uninterpreted_sort(symbol const& name);
438
439 func_decl function(symbol const & name, unsigned arity, sort const * domain, sort const & range);
440 func_decl function(char const * name, unsigned arity, sort const * domain, sort const & range);
441 func_decl function(symbol const& name, sort_vector const& domain, sort const& range);
442 func_decl function(char const * name, sort_vector const& domain, sort const& range);
443 func_decl function(char const * name, sort const & domain, sort const & range);
444 func_decl function(char const * name, sort const & d1, sort const & d2, sort const & range);
445 func_decl function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & range);
446 func_decl function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & d4, sort const & range);
447 func_decl function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & d4, sort const & d5, sort const & range);
448
449 func_decl recfun(symbol const & name, unsigned arity, sort const * domain, sort const & range);
450 func_decl recfun(symbol const & name, const sort_vector& domain, sort const & range);
451 func_decl recfun(char const * name, sort_vector const& domain, sort const & range);
452 func_decl recfun(char const * name, unsigned arity, sort const * domain, sort const & range);
453 func_decl recfun(char const * name, sort const & domain, sort const & range);
454 func_decl recfun(char const * name, sort const & d1, sort const & d2, sort const & range);
455
462 void recdef(func_decl decl, expr_vector const& args, expr const& body);
463 func_decl user_propagate_function(symbol const& name, sort_vector const& domain, sort const& range);
464
468 expr constant(symbol const & name, sort const & s);
469 expr constant(char const * name, sort const & s);
473 expr bool_const(char const * name);
474 expr int_const(char const * name);
475 expr real_const(char const * name);
476 expr string_const(char const * name);
477 expr bv_const(char const * name, unsigned sz);
478 expr fpa_const(char const * name, unsigned ebits, unsigned sbits);
479
480 template<size_t precision>
481 expr fpa_const(char const * name);
482
486 expr variable(unsigned index, sort const& s);
487
488
490
491 expr bool_val(bool b);
492
493 expr int_val(int n);
494 expr int_val(unsigned n);
495 expr int_val(int64_t n);
496 expr int_val(uint64_t n);
497 expr int_val(char const * n);
498
499 expr real_val(int n);
500 expr real_val(unsigned n);
501 expr real_val(int64_t n);
502 expr real_val(uint64_t n);
503 expr real_val(int64_t n, int64_t d);
504 expr real_val(char const * n);
505
506 expr bv_val(int n, unsigned sz);
507 expr bv_val(unsigned n, unsigned sz);
508 expr bv_val(int64_t n, unsigned sz);
509 expr bv_val(uint64_t n, unsigned sz);
510 expr bv_val(char const * n, unsigned sz);
511 expr bv_val(unsigned n, bool const* bits);
512
513 expr fpa_val(double n);
514 expr fpa_val(float n);
515 expr fpa_nan(sort const & s);
516 expr fpa_inf(sort const & s, bool sgn);
517
518 expr string_val(char const* s);
519 expr string_val(char const* s, unsigned n);
520 expr string_val(std::string const& s);
521 expr string_val(std::u32string const& s);
522
523 expr num_val(int n, sort const & s);
524
528 expr_vector parse_string(char const* s);
529 expr_vector parse_file(char const* file);
530
531 expr_vector parse_string(char const* s, sort_vector const& sorts, func_decl_vector const& decls);
532 expr_vector parse_file(char const* s, sort_vector const& sorts, func_decl_vector const& decls);
533 };
534
535
536 template<typename T>
537 class array {
538 std::unique_ptr<T[]> m_array;
539 unsigned m_size;
540 array(array const &) = delete;
541 array & operator=(array const &) = delete;
542 public:
543 array(unsigned sz):m_array(new T[sz]),m_size(sz) {}
544 template<typename T2>
545 array(ast_vector_tpl<T2> const & v);
546 void resize(unsigned sz) { m_array.reset(new T[sz]); m_size = sz; }
547 unsigned size() const { return m_size; }
548 T & operator[](int i) { assert(0 <= i); assert(static_cast<unsigned>(i) < m_size); return m_array[i]; }
549 T const & operator[](int i) const { assert(0 <= i); assert(static_cast<unsigned>(i) < m_size); return m_array[i]; }
550 T const * ptr() const { return m_array.get(); }
551 T * ptr() { return m_array.get(); }
552 };
553
554 class object {
555 protected:
557 public:
558 object(context & c):m_ctx(&c) {}
559 virtual ~object() = default;
560 context & ctx() const { return *m_ctx; }
561 Z3_error_code check_error() const { return m_ctx->check_error(); }
562 friend void check_context(object const & a, object const & b);
563 };
564 inline void check_context(object const & a, object const & b) { (void)a; (void)b; assert(a.m_ctx == b.m_ctx); }
565
566 class symbol : public object {
567 Z3_symbol m_sym;
568 public:
569 symbol(context & c, Z3_symbol s):object(c), m_sym(s) {}
570 operator Z3_symbol() const { return m_sym; }
571 Z3_symbol_kind kind() const { return Z3_get_symbol_kind(ctx(), m_sym); }
572 std::string str() const { assert(kind() == Z3_STRING_SYMBOL); return Z3_get_symbol_string(ctx(), m_sym); }
573 int to_int() const { assert(kind() == Z3_INT_SYMBOL); return Z3_get_symbol_int(ctx(), m_sym); }
574 friend std::ostream & operator<<(std::ostream & out, symbol const & s);
575 };
576
577 inline std::ostream & operator<<(std::ostream & out, symbol const & s) {
578 if (s.kind() == Z3_INT_SYMBOL)
579 out << "k!" << s.to_int();
580 else
581 out << s.str();
582 return out;
583 }
584
585
586 class param_descrs : public object {
587 Z3_param_descrs m_descrs;
588 public:
589 param_descrs(context& c, Z3_param_descrs d): object(c), m_descrs(d) { Z3_param_descrs_inc_ref(c, d); }
590 param_descrs(param_descrs const& o): object(o.ctx()), m_descrs(o.m_descrs) { Z3_param_descrs_inc_ref(ctx(), m_descrs); }
592 Z3_param_descrs_inc_ref(o.ctx(), o.m_descrs);
593 Z3_param_descrs_dec_ref(ctx(), m_descrs);
594 m_descrs = o.m_descrs;
595 object::operator=(o);
596 return *this;
597 }
598 ~param_descrs() override { Z3_param_descrs_dec_ref(ctx(), m_descrs); }
601
602 unsigned size() { return Z3_param_descrs_size(ctx(), m_descrs); }
603 symbol name(unsigned i) { return symbol(ctx(), Z3_param_descrs_get_name(ctx(), m_descrs, i)); }
604 Z3_param_kind kind(symbol const& s) { return Z3_param_descrs_get_kind(ctx(), m_descrs, s); }
605 std::string documentation(symbol const& s) { char const* r = Z3_param_descrs_get_documentation(ctx(), m_descrs, s); check_error(); return r; }
606 std::string to_string() const { return Z3_param_descrs_to_string(ctx(), m_descrs); }
607 };
608
609 inline std::ostream& operator<<(std::ostream & out, param_descrs const & d) { return out << d.to_string(); }
610
611 class params : public object {
612 Z3_params m_params;
613 public:
614 params(context & c):object(c) { m_params = Z3_mk_params(c); Z3_params_inc_ref(ctx(), m_params); }
615 params(params const & s):object(s), m_params(s.m_params) { Z3_params_inc_ref(ctx(), m_params); }
616 ~params() override { Z3_params_dec_ref(ctx(), m_params); }
617 operator Z3_params() const { return m_params; }
618 params & operator=(params const & s) {
619 Z3_params_inc_ref(s.ctx(), s.m_params);
620 Z3_params_dec_ref(ctx(), m_params);
621 object::operator=(s);
622 m_params = s.m_params;
623 return *this;
624 }
625 void set(char const * k, bool b) { Z3_params_set_bool(ctx(), m_params, ctx().str_symbol(k), b); }
626 void set(char const * k, unsigned n) { Z3_params_set_uint(ctx(), m_params, ctx().str_symbol(k), n); }
627 void set(char const * k, double n) { Z3_params_set_double(ctx(), m_params, ctx().str_symbol(k), n); }
628 void set(char const * k, symbol const & s) { Z3_params_set_symbol(ctx(), m_params, ctx().str_symbol(k), s); }
629 void set(char const * k, char const* s) { Z3_params_set_symbol(ctx(), m_params, ctx().str_symbol(k), ctx().str_symbol(s)); }
630 friend std::ostream & operator<<(std::ostream & out, params const & p);
631 };
632
633 inline std::ostream & operator<<(std::ostream & out, params const & p) {
634 out << Z3_params_to_string(p.ctx(), p); return out;
635 }
636
637 class ast : public object {
638 protected:
639 Z3_ast m_ast;
640 public:
641 ast(context & c):object(c), m_ast(0) {}
642 ast(context & c, Z3_ast n):object(c), m_ast(n) { Z3_inc_ref(ctx(), m_ast); }
643 ast(ast const & s) :object(s), m_ast(s.m_ast) { Z3_inc_ref(ctx(), m_ast); }
644 ~ast() override { if (m_ast) { Z3_dec_ref(*m_ctx, m_ast); } }
645 operator Z3_ast() const { return m_ast; }
646 operator bool() const { return m_ast != 0; }
647 ast & operator=(ast const & s) {
648 Z3_inc_ref(s.ctx(), s.m_ast);
649 if (m_ast)
650 Z3_dec_ref(ctx(), m_ast);
651 object::operator=(s);
652 m_ast = s.m_ast;
653 return *this;
654 }
656 unsigned hash() const { unsigned r = Z3_get_ast_hash(ctx(), m_ast); check_error(); return r; }
657 friend std::ostream & operator<<(std::ostream & out, ast const & n);
658 std::string to_string() const { return std::string(Z3_ast_to_string(ctx(), m_ast)); }
659
660
664 friend bool eq(ast const & a, ast const & b);
665 };
666 inline std::ostream & operator<<(std::ostream & out, ast const & n) {
667 out << Z3_ast_to_string(n.ctx(), n.m_ast); return out;
668 }
669
670 inline bool eq(ast const & a, ast const & b) { return Z3_is_eq_ast(a.ctx(), a, b); }
671
672 template<typename T>
673 class ast_vector_tpl : public object {
674 Z3_ast_vector m_vector;
675 void init(Z3_ast_vector v) { Z3_ast_vector_inc_ref(ctx(), v); m_vector = v; }
676 public:
678 ast_vector_tpl(context & c, Z3_ast_vector v):object(c) { init(v); }
679 ast_vector_tpl(ast_vector_tpl const & s):object(s), m_vector(s.m_vector) { Z3_ast_vector_inc_ref(ctx(), m_vector); }
680 ast_vector_tpl(context& c, ast_vector_tpl const& src): object(c) { init(Z3_ast_vector_translate(src.ctx(), src, c)); }
681
682 ~ast_vector_tpl() override { Z3_ast_vector_dec_ref(ctx(), m_vector); }
683 operator Z3_ast_vector() const { return m_vector; }
684 unsigned size() const { return Z3_ast_vector_size(ctx(), m_vector); }
685 T operator[](unsigned i) const { Z3_ast r = Z3_ast_vector_get(ctx(), m_vector, i); check_error(); return cast_ast<T>()(ctx(), r); }
686 void push_back(T const & e) { Z3_ast_vector_push(ctx(), m_vector, e); check_error(); }
687 void resize(unsigned sz) { Z3_ast_vector_resize(ctx(), m_vector, sz); check_error(); }
688 T back() const { return operator[](size() - 1); }
689 void pop_back() { assert(size() > 0); resize(size() - 1); }
690 bool empty() const { return size() == 0; }
692 Z3_ast_vector_inc_ref(s.ctx(), s.m_vector);
693 Z3_ast_vector_dec_ref(ctx(), m_vector);
694 object::operator=(s);
695 m_vector = s.m_vector;
696 return *this;
697 }
698 ast_vector_tpl& set(unsigned idx, ast& a) {
699 Z3_ast_vector_set(ctx(), m_vector, idx, a);
700 return *this;
701 }
702 /*
703 Disabled pending C++98 build upgrade
704 bool contains(T const& x) const {
705 for (T y : *this) if (eq(x, y)) return true;
706 return false;
707 }
708 */
709
710 class iterator final {
711 ast_vector_tpl const* m_vector;
712 unsigned m_index;
713 public:
714 iterator(ast_vector_tpl const* v, unsigned i): m_vector(v), m_index(i) {}
715
716 bool operator==(iterator const& other) const noexcept {
717 return other.m_index == m_index;
718 };
719
720 bool operator!=(iterator const& other) const noexcept {
721 return other.m_index != m_index;
722 };
723 iterator& operator++() noexcept {
724 ++m_index;
725 return *this;
726 }
727 void set(T& arg) {
728 Z3_ast_vector_set(m_vector->ctx(), *m_vector, m_index, arg);
729 }
730 iterator operator++(int) noexcept { iterator tmp = *this; ++m_index; return tmp; }
731 T * operator->() const { return &(operator*()); }
732 T operator*() const { return (*m_vector)[m_index]; }
733 };
734 iterator begin() const noexcept { return iterator(this, 0); }
735 iterator end() const { return iterator(this, size()); }
736 friend std::ostream & operator<<(std::ostream & out, ast_vector_tpl const & v) { out << Z3_ast_vector_to_string(v.ctx(), v); return out; }
737 std::string to_string() const { return std::string(Z3_ast_vector_to_string(ctx(), m_vector)); }
738 };
739
743 class ast_map : public object {
744 Z3_ast_map m_map;
745 void init(Z3_ast_map m) {
747 m_map = m;
748 }
749 public:
750 ast_map(context& c): object(c) { init(Z3_mk_ast_map(c)); }
751 ast_map(context& c, Z3_ast_map m): object(c) { init(m); }
752 ast_map(ast_map const& s): object(s) { init(s.m_map); }
753 ~ast_map() override { Z3_ast_map_dec_ref(ctx(), m_map); }
754 operator Z3_ast_map() const { return m_map; }
756 Z3_ast_map_inc_ref(s.ctx(), s.m_map);
757 Z3_ast_map_dec_ref(ctx(), m_map);
758 object::operator=(s);
759 m_map = s.m_map;
760 return *this;
761 }
762 bool contains(ast const& k) const {
763 check_context(*this, k);
764 bool r = Z3_ast_map_contains(ctx(), m_map, k);
765 check_error();
766 return r;
767 }
768 ast find(ast const& k) const {
769 check_context(*this, k);
770 Z3_ast r = Z3_ast_map_find(ctx(), m_map, k);
771 check_error();
772 return ast(ctx(), r);
773 }
774 void insert(ast const& k, ast const& v) {
775 check_context(*this, k); check_context(*this, v);
776 Z3_ast_map_insert(ctx(), m_map, k, v);
777 check_error();
778 }
779 void erase(ast const& k) {
780 check_context(*this, k);
781 Z3_ast_map_erase(ctx(), m_map, k);
782 check_error();
783 }
784 void reset() { Z3_ast_map_reset(ctx(), m_map); check_error(); }
785 unsigned size() const {
786 unsigned r = Z3_ast_map_size(ctx(), m_map);
787 check_error();
788 return r;
789 }
790 ast_vector keys() const {
791 Z3_ast_vector r = Z3_ast_map_keys(ctx(), m_map);
792 check_error();
793 return ast_vector(ctx(), r);
794 }
795 };
796
797
801 class sort : public ast {
802 public:
803 sort(context & c):ast(c) {}
804 sort(context & c, Z3_sort s):ast(c, reinterpret_cast<Z3_ast>(s)) {}
805 sort(context & c, Z3_ast a):ast(c, a) {}
806 operator Z3_sort() const { return reinterpret_cast<Z3_sort>(m_ast); }
807
811 unsigned id() const { unsigned r = Z3_get_sort_id(ctx(), *this); check_error(); return r; }
812
816 Z3_sort_kind sort_kind() const { return Z3_get_sort_kind(*m_ctx, *this); }
820 symbol name() const { Z3_symbol s = Z3_get_sort_name(ctx(), *this); check_error(); return symbol(ctx(), s); }
824 bool is_bool() const { return sort_kind() == Z3_BOOL_SORT; }
828 bool is_int() const { return sort_kind() == Z3_INT_SORT; }
832 bool is_real() const { return sort_kind() == Z3_REAL_SORT; }
836 bool is_arith() const { return is_int() || is_real(); }
840 bool is_bv() const { return sort_kind() == Z3_BV_SORT; }
844 bool is_array() const { return sort_kind() == Z3_ARRAY_SORT; }
848 bool is_datatype() const { return sort_kind() == Z3_DATATYPE_SORT; }
852 bool is_relation() const { return sort_kind() == Z3_RELATION_SORT; }
856 bool is_seq() const { return sort_kind() == Z3_SEQ_SORT; }
860 bool is_re() const { return sort_kind() == Z3_RE_SORT; }
868 bool is_fpa() const { return sort_kind() == Z3_FLOATING_POINT_SORT; }
869
875 unsigned bv_size() const { assert(is_bv()); unsigned r = Z3_get_bv_sort_size(ctx(), *this); check_error(); return r; }
876
877 unsigned fpa_ebits() const { assert(is_fpa()); unsigned r = Z3_fpa_get_ebits(ctx(), *this); check_error(); return r; }
878
879 unsigned fpa_sbits() const { assert(is_fpa()); unsigned r = Z3_fpa_get_sbits(ctx(), *this); check_error(); return r; }
885 sort array_domain() const { assert(is_array()); Z3_sort s = Z3_get_array_sort_domain(ctx(), *this); check_error(); return sort(ctx(), s); }
891 sort array_range() const { assert(is_array()); Z3_sort s = Z3_get_array_sort_range(ctx(), *this); check_error(); return sort(ctx(), s); }
892
893 friend std::ostream & operator<<(std::ostream & out, sort const & s) { return out << Z3_sort_to_string(s.ctx(), Z3_sort(s.m_ast)); }
894
897 };
898
899
904 class func_decl : public ast {
905 public:
907 func_decl(context & c, Z3_func_decl n):ast(c, reinterpret_cast<Z3_ast>(n)) {}
908 operator Z3_func_decl() const { return reinterpret_cast<Z3_func_decl>(m_ast); }
909
913 unsigned id() const { unsigned r = Z3_get_func_decl_id(ctx(), *this); check_error(); return r; }
914
915 unsigned arity() const { return Z3_get_arity(ctx(), *this); }
916 sort domain(unsigned i) const { assert(i < arity()); Z3_sort r = Z3_get_domain(ctx(), *this, i); check_error(); return sort(ctx(), r); }
917 sort range() const { Z3_sort r = Z3_get_range(ctx(), *this); check_error(); return sort(ctx(), r); }
918 symbol name() const { Z3_symbol s = Z3_get_decl_name(ctx(), *this); check_error(); return symbol(ctx(), s); }
919 Z3_decl_kind decl_kind() const { return Z3_get_decl_kind(ctx(), *this); }
920 unsigned num_parameters() const { return Z3_get_decl_num_parameters(ctx(), *this); }
921
922
924 Z3_func_decl tc = Z3_mk_transitive_closure(ctx(), *this); check_error(); return func_decl(ctx(), tc);
925 }
926
927 bool is_const() const { return arity() == 0; }
928
929 expr operator()() const;
930 expr operator()(unsigned n, expr const * args) const;
931 expr operator()(expr_vector const& v) const;
932 expr operator()(expr const & a) const;
933 expr operator()(int a) const;
934 expr operator()(expr const & a1, expr const & a2) const;
935 expr operator()(expr const & a1, int a2) const;
936 expr operator()(int a1, expr const & a2) const;
937 expr operator()(expr const & a1, expr const & a2, expr const & a3) const;
938 expr operator()(expr const & a1, expr const & a2, expr const & a3, expr const & a4) const;
939 expr operator()(expr const & a1, expr const & a2, expr const & a3, expr const & a4, expr const & a5) const;
940
942
943 };
944
945 class parser_context : public object {
946 Z3_parser_context m_pc;
947 public:
949 ~parser_context() override { if (m_pc) Z3_parser_context_dec_ref(ctx(), m_pc); }
950 explicit operator bool() const { return m_pc; }
951 operator Z3_parser_context() const { return m_pc; }
952 parser_context(const parser_context &o):object(o), m_pc(o.m_pc) { Z3_parser_context_inc_ref(ctx(), m_pc); }
954 if (this != &o) {
955 if (m_pc) Z3_parser_context_dec_ref(*m_ctx, m_pc);
957 object::operator=(o);
958 m_pc = o.m_pc;
959 }
960 return *this;
961 }
962
966 void add_sort(const sort & s) { Z3_parser_context_add_sort(ctx(), m_pc, s); check_error(); }
967
971 void add_sort(const func_decl & f) { Z3_parser_context_add_decl(ctx(), m_pc, f); check_error(); }
972
976 expr_vector parse_string(const char * s) {
977 auto result = Z3_parser_context_from_string(ctx(), m_pc, s);
978 m_ctx->check_error();
979 return expr_vector(ctx(), result);
980 }
981 };
982
986 expr select(expr const & a, expr const& i);
987 expr select(expr const & a, expr_vector const & i);
988
993 class expr : public ast {
994 public:
995 expr(context & c):ast(c) {}
996 expr(context & c, Z3_ast n):ast(c, reinterpret_cast<Z3_ast>(n)) {}
997
1001 sort get_sort() const { Z3_sort s = Z3_get_sort(*m_ctx, m_ast); check_error(); return sort(*m_ctx, s); }
1002
1006 bool is_bool() const { return get_sort().is_bool(); }
1010 bool is_int() const { return get_sort().is_int(); }
1014 bool is_real() const { return get_sort().is_real(); }
1018 bool is_arith() const { return get_sort().is_arith(); }
1022 bool is_bv() const { return get_sort().is_bv(); }
1026 bool is_array() const { return get_sort().is_array(); }
1030 bool is_datatype() const { return get_sort().is_datatype(); }
1034 bool is_relation() const { return get_sort().is_relation(); }
1038 bool is_seq() const { return get_sort().is_seq(); }
1042 bool is_re() const { return get_sort().is_re(); }
1043
1052 bool is_finite_domain() const { return get_sort().is_finite_domain(); }
1056 bool is_fpa() const { return get_sort().is_fpa(); }
1057
1063 bool is_numeral() const { return kind() == Z3_NUMERAL_AST; }
1064 bool is_numeral_i64(int64_t& i) const { bool r = Z3_get_numeral_int64(ctx(), m_ast, &i); check_error(); return r;}
1065 bool is_numeral_u64(uint64_t& i) const { bool r = Z3_get_numeral_uint64(ctx(), m_ast, &i); check_error(); return r;}
1066 bool is_numeral_i(int& i) const { bool r = Z3_get_numeral_int(ctx(), m_ast, &i); check_error(); return r;}
1067 bool is_numeral_u(unsigned& i) const { bool r = Z3_get_numeral_uint(ctx(), m_ast, &i); check_error(); return r;}
1068 bool is_numeral(std::string& s) const { if (!is_numeral()) return false; s = Z3_get_numeral_string(ctx(), m_ast); check_error(); return true; }
1069 bool is_numeral(std::string& s, unsigned precision) const { if (!is_numeral()) return false; s = Z3_get_numeral_decimal_string(ctx(), m_ast, precision); check_error(); return true; }
1070 bool is_numeral(double& d) const { if (!is_numeral()) return false; d = Z3_get_numeral_double(ctx(), m_ast); check_error(); return true; }
1071 bool as_binary(std::string& s) const { if (!is_numeral()) return false; s = Z3_get_numeral_binary_string(ctx(), m_ast); check_error(); return true; }
1072
1073 double as_double() const { double d = 0; is_numeral(d); return d; }
1074 uint64_t as_uint64() const { uint64_t r = 0; is_numeral_u64(r); return r; }
1075 int64_t as_int64() const { int64_t r = 0; is_numeral_i64(r); return r; }
1076
1077
1081 bool is_app() const { return kind() == Z3_APP_AST || kind() == Z3_NUMERAL_AST; }
1085 bool is_const() const { return is_app() && num_args() == 0; }
1089 bool is_quantifier() const { return kind() == Z3_QUANTIFIER_AST; }
1090
1094 bool is_forall() const { return Z3_is_quantifier_forall(ctx(), m_ast); }
1098 bool is_exists() const { return Z3_is_quantifier_exists(ctx(), m_ast); }
1102 bool is_lambda() const { return Z3_is_lambda(ctx(), m_ast); }
1107 bool is_var() const { return kind() == Z3_VAR_AST; }
1111 bool is_algebraic() const { return Z3_is_algebraic_number(ctx(), m_ast); }
1112
1116 bool is_well_sorted() const { bool r = Z3_is_well_sorted(ctx(), m_ast); check_error(); return r; }
1117
1121 expr mk_is_inf() const {
1122 assert(is_fpa());
1123 Z3_ast r = Z3_mk_fpa_is_infinite(ctx(), m_ast);
1124 check_error();
1125 return expr(ctx(), r);
1126 }
1127
1131 expr mk_is_nan() const {
1132 assert(is_fpa());
1133 Z3_ast r = Z3_mk_fpa_is_nan(ctx(), m_ast);
1134 check_error();
1135 return expr(ctx(), r);
1136 }
1137
1142 assert(is_fpa());
1143 Z3_ast r = Z3_mk_fpa_is_normal(ctx(), m_ast);
1144 check_error();
1145 return expr(ctx(), r);
1146 }
1147
1152 assert(is_fpa());
1153 Z3_ast r = Z3_mk_fpa_is_subnormal(ctx(), m_ast);
1154 check_error();
1155 return expr(ctx(), r);
1156 }
1157
1162 assert(is_fpa());
1163 Z3_ast r = Z3_mk_fpa_is_zero(ctx(), m_ast);
1164 check_error();
1165 return expr(ctx(), r);
1166 }
1167
1172 assert(is_fpa());
1173 Z3_ast r = Z3_mk_fpa_to_ieee_bv(ctx(), m_ast);
1174 check_error();
1175 return expr(ctx(), r);
1176 }
1177
1181 expr mk_from_ieee_bv(sort const &s) const {
1182 assert(is_bv());
1183 Z3_ast r = Z3_mk_fpa_to_fp_bv(ctx(), m_ast, s);
1184 check_error();
1185 return expr(ctx(), r);
1186 }
1187
1194 std::string get_decimal_string(int precision) const {
1195 assert(is_numeral() || is_algebraic());
1196 return std::string(Z3_get_numeral_decimal_string(ctx(), m_ast, precision));
1197 }
1198
1202 expr algebraic_lower(unsigned precision) const {
1203 assert(is_algebraic());
1204 Z3_ast r = Z3_get_algebraic_number_lower(ctx(), m_ast, precision);
1205 check_error();
1206 return expr(ctx(), r);
1207 }
1208
1209 expr algebraic_upper(unsigned precision) const {
1210 assert(is_algebraic());
1211 Z3_ast r = Z3_get_algebraic_number_upper(ctx(), m_ast, precision);
1212 check_error();
1213 return expr(ctx(), r);
1214 }
1215
1220 assert(is_algebraic());
1221 Z3_ast_vector r = Z3_algebraic_get_poly(ctx(), m_ast);
1222 check_error();
1223 return expr_vector(ctx(), r);
1224 }
1225
1229 unsigned algebraic_i() const {
1230 assert(is_algebraic());
1231 unsigned i = Z3_algebraic_get_i(ctx(), m_ast);
1232 check_error();
1233 return i;
1234 }
1235
1239 unsigned id() const { unsigned r = Z3_get_ast_id(ctx(), m_ast); check_error(); return r; }
1240
1251 int get_numeral_int() const {
1252 int result = 0;
1253 if (!is_numeral_i(result)) {
1254 assert(ctx().enable_exceptions());
1255 if (!ctx().enable_exceptions()) return 0;
1256 Z3_THROW(exception("numeral does not fit in machine int"));
1257 }
1258 return result;
1259 }
1260
1270 unsigned get_numeral_uint() const {
1271 assert(is_numeral());
1272 unsigned result = 0;
1273 if (!is_numeral_u(result)) {
1274 assert(ctx().enable_exceptions());
1275 if (!ctx().enable_exceptions()) return 0;
1276 Z3_THROW(exception("numeral does not fit in machine uint"));
1277 }
1278 return result;
1279 }
1280
1287 int64_t get_numeral_int64() const {
1288 assert(is_numeral());
1289 int64_t result = 0;
1290 if (!is_numeral_i64(result)) {
1291 assert(ctx().enable_exceptions());
1292 if (!ctx().enable_exceptions()) return 0;
1293 Z3_THROW(exception("numeral does not fit in machine int64_t"));
1294 }
1295 return result;
1296 }
1297
1304 uint64_t get_numeral_uint64() const {
1305 assert(is_numeral());
1306 uint64_t result = 0;
1307 if (!is_numeral_u64(result)) {
1308 assert(ctx().enable_exceptions());
1309 if (!ctx().enable_exceptions()) return 0;
1310 Z3_THROW(exception("numeral does not fit in machine uint64_t"));
1311 }
1312 return result;
1313 }
1314
1316 return Z3_get_bool_value(ctx(), m_ast);
1317 }
1318
1319 expr numerator() const {
1320 assert(is_numeral());
1321 Z3_ast r = Z3_get_numerator(ctx(), m_ast);
1322 check_error();
1323 return expr(ctx(),r);
1324 }
1325
1326
1328 assert(is_numeral());
1329 Z3_ast r = Z3_get_denominator(ctx(), m_ast);
1330 check_error();
1331 return expr(ctx(),r);
1332 }
1333
1334
1339 bool is_string_value() const { return Z3_is_string(ctx(), m_ast); }
1340
1345
1346 std::string get_string() const {
1347 assert(is_string_value());
1348 char const* s = Z3_get_string(ctx(), m_ast);
1349 check_error();
1350 return std::string(s);
1351 }
1352
1357
1358 std::u32string get_u32string() const {
1359 assert(is_string_value());
1360 unsigned n = Z3_get_string_length(ctx(), m_ast);
1361 std::u32string s;
1362 s.resize(n);
1363 Z3_get_string_contents(ctx(), m_ast, n, (unsigned*)s.data());
1364 return s;
1365 }
1366
1367 operator Z3_app() const { assert(is_app()); return reinterpret_cast<Z3_app>(m_ast); }
1368
1375 func_decl decl() const { Z3_func_decl f = Z3_get_app_decl(ctx(), *this); check_error(); return func_decl(ctx(), f); }
1382 unsigned num_args() const { unsigned r = Z3_get_app_num_args(ctx(), *this); check_error(); return r; }
1390 expr arg(unsigned i) const { Z3_ast r = Z3_get_app_arg(ctx(), *this, i); check_error(); return expr(ctx(), r); }
1398 expr_vector vec(ctx());
1399 unsigned argCnt = num_args();
1400 for (unsigned i = 0; i < argCnt; ++i)
1401 vec.push_back(arg(i));
1402 return vec;
1403 }
1404
1413 expr update(expr_vector const& args) const;
1414
1424 expr update_field(func_decl const& field_access, expr const& new_value) const;
1425
1431 expr body() const { assert(is_quantifier()); Z3_ast r = Z3_get_quantifier_body(ctx(), *this); check_error(); return expr(ctx(), r); }
1432
1438 friend expr operator!(expr const & a);
1439
1446 friend expr operator&&(expr const & a, expr const & b);
1447
1448
1455 friend expr operator&&(expr const & a, bool b);
1462 friend expr operator&&(bool a, expr const & b);
1463
1470 friend expr operator||(expr const & a, expr const & b);
1477 friend expr operator||(expr const & a, bool b);
1478
1485 friend expr operator||(bool a, expr const & b);
1486
1487 friend expr implies(expr const & a, expr const & b);
1488 friend expr implies(expr const & a, bool b);
1489 friend expr implies(bool a, expr const & b);
1490
1491 friend expr mk_or(expr_vector const& args);
1492 friend expr mk_xor(expr_vector const& args);
1493 friend expr mk_and(expr_vector const& args);
1494
1495 friend expr ite(expr const & c, expr const & t, expr const & e);
1496
1497 bool is_true() const { return is_app() && Z3_OP_TRUE == decl().decl_kind(); }
1498 bool is_false() const { return is_app() && Z3_OP_FALSE == decl().decl_kind(); }
1499 bool is_not() const { return is_app() && Z3_OP_NOT == decl().decl_kind(); }
1500 bool is_and() const { return is_app() && Z3_OP_AND == decl().decl_kind(); }
1501 bool is_or() const { return is_app() && Z3_OP_OR == decl().decl_kind(); }
1502 bool is_xor() const { return is_app() && Z3_OP_XOR == decl().decl_kind(); }
1503 bool is_implies() const { return is_app() && Z3_OP_IMPLIES == decl().decl_kind(); }
1504 bool is_eq() const { return is_app() && Z3_OP_EQ == decl().decl_kind(); }
1505 bool is_ite() const { return is_app() && Z3_OP_ITE == decl().decl_kind(); }
1506 bool is_distinct() const { return is_app() && Z3_OP_DISTINCT == decl().decl_kind(); }
1507
1508 friend expr distinct(expr_vector const& args);
1509 friend expr concat(expr const& a, expr const& b);
1510 friend expr concat(expr_vector const& args);
1511
1512 friend expr operator==(expr const & a, expr const & b);
1513 friend expr operator==(expr const & a, int b);
1514 friend expr operator==(int a, expr const & b);
1515
1516 friend expr operator!=(expr const & a, expr const & b);
1517 friend expr operator!=(expr const & a, int b);
1518 friend expr operator!=(int a, expr const & b);
1519
1520 friend expr operator+(expr const & a, expr const & b);
1521 friend expr operator+(expr const & a, int b);
1522 friend expr operator+(int a, expr const & b);
1523 friend expr sum(expr_vector const& args);
1524
1525 friend expr operator*(expr const & a, expr const & b);
1526 friend expr operator*(expr const & a, int b);
1527 friend expr operator*(int a, expr const & b);
1528
1529 /* \brief Power operator */
1530 friend expr pw(expr const & a, expr const & b);
1531 friend expr pw(expr const & a, int b);
1532 friend expr pw(int a, expr const & b);
1533
1534 /* \brief mod operator */
1535 friend expr mod(expr const& a, expr const& b);
1536 friend expr mod(expr const& a, int b);
1537 friend expr mod(int a, expr const& b);
1538
1539 /* \brief rem operator */
1540 friend expr rem(expr const& a, expr const& b);
1541 friend expr rem(expr const& a, int b);
1542 friend expr rem(int a, expr const& b);
1543
1544 friend expr is_int(expr const& e);
1545
1546 friend expr operator/(expr const & a, expr const & b);
1547 friend expr operator/(expr const & a, int b);
1548 friend expr operator/(int a, expr const & b);
1549
1550 friend expr operator-(expr const & a);
1551
1552 friend expr operator-(expr const & a, expr const & b);
1553 friend expr operator-(expr const & a, int b);
1554 friend expr operator-(int a, expr const & b);
1555
1556 friend expr operator<=(expr const & a, expr const & b);
1557 friend expr operator<=(expr const & a, int b);
1558 friend expr operator<=(int a, expr const & b);
1559
1560
1561 friend expr operator>=(expr const & a, expr const & b);
1562 friend expr operator>=(expr const & a, int b);
1563 friend expr operator>=(int a, expr const & b);
1564
1565 friend expr operator<(expr const & a, expr const & b);
1566 friend expr operator<(expr const & a, int b);
1567 friend expr operator<(int a, expr const & b);
1568
1569 friend expr operator>(expr const & a, expr const & b);
1570 friend expr operator>(expr const & a, int b);
1571 friend expr operator>(int a, expr const & b);
1572
1573 friend expr pble(expr_vector const& es, int const * coeffs, int bound);
1574 friend expr pbge(expr_vector const& es, int const * coeffs, int bound);
1575 friend expr pbeq(expr_vector const& es, int const * coeffs, int bound);
1576 friend expr atmost(expr_vector const& es, unsigned bound);
1577 friend expr atleast(expr_vector const& es, unsigned bound);
1578
1579 friend expr operator&(expr const & a, expr const & b);
1580 friend expr operator&(expr const & a, int b);
1581 friend expr operator&(int a, expr const & b);
1582
1583 friend expr operator^(expr const & a, expr const & b);
1584 friend expr operator^(expr const & a, int b);
1585 friend expr operator^(int a, expr const & b);
1586
1587 friend expr operator|(expr const & a, expr const & b);
1588 friend expr operator|(expr const & a, int b);
1589 friend expr operator|(int a, expr const & b);
1590 friend expr nand(expr const& a, expr const& b);
1591 friend expr nor(expr const& a, expr const& b);
1592 friend expr xnor(expr const& a, expr const& b);
1593
1594 friend expr min(expr const& a, expr const& b);
1595 friend expr max(expr const& a, expr const& b);
1596
1597 friend expr bv2int(expr const& a, bool is_signed);
1598 friend expr int2bv(unsigned n, expr const& a);
1599 friend expr bvadd_no_overflow(expr const& a, expr const& b, bool is_signed);
1600 friend expr bvadd_no_underflow(expr const& a, expr const& b);
1601 friend expr bvsub_no_overflow(expr const& a, expr const& b);
1602 friend expr bvsub_no_underflow(expr const& a, expr const& b, bool is_signed);
1603 friend expr bvsdiv_no_overflow(expr const& a, expr const& b);
1604 friend expr bvneg_no_overflow(expr const& a);
1605 friend expr bvmul_no_overflow(expr const& a, expr const& b, bool is_signed);
1606 friend expr bvmul_no_underflow(expr const& a, expr const& b);
1607
1608 expr rotate_left(unsigned i) const { Z3_ast r = Z3_mk_rotate_left(ctx(), i, *this); ctx().check_error(); return expr(ctx(), r); }
1609 expr rotate_right(unsigned i) const { Z3_ast r = Z3_mk_rotate_right(ctx(), i, *this); ctx().check_error(); return expr(ctx(), r); }
1610 expr ext_rotate_left(expr const& n) const { Z3_ast r = Z3_mk_ext_rotate_left(ctx(), *this, n); ctx().check_error(); return expr(ctx(), r); }
1611 expr ext_rotate_right(expr const& n) const { Z3_ast r = Z3_mk_ext_rotate_right(ctx(), *this, n); ctx().check_error(); return expr(ctx(), r); }
1612 expr repeat(unsigned i) const { Z3_ast r = Z3_mk_repeat(ctx(), i, *this); ctx().check_error(); return expr(ctx(), r); }
1613
1614 friend expr bvredor(expr const & a);
1615 friend expr bvredand(expr const & a);
1616
1617 friend expr abs(expr const & a);
1618 friend expr sqrt(expr const & a, expr const & rm);
1619 friend expr fp_eq(expr const & a, expr const & b);
1620
1621 friend expr operator~(expr const & a);
1622 expr extract(unsigned hi, unsigned lo) const { Z3_ast r = Z3_mk_extract(ctx(), hi, lo, *this); ctx().check_error(); return expr(ctx(), r); }
1623 expr bit2bool(unsigned i) const { Z3_ast r = Z3_mk_bit2bool(ctx(), i, *this); ctx().check_error(); return expr(ctx(), r); }
1624 unsigned lo() const { assert (is_app() && Z3_get_decl_num_parameters(ctx(), decl()) == 2); return static_cast<unsigned>(Z3_get_decl_int_parameter(ctx(), decl(), 1)); }
1625 unsigned hi() const { assert (is_app() && Z3_get_decl_num_parameters(ctx(), decl()) == 2); return static_cast<unsigned>(Z3_get_decl_int_parameter(ctx(), decl(), 0)); }
1626
1630 friend expr fma(expr const& a, expr const& b, expr const& c, expr const& rm);
1631
1635 friend expr fpa_fp(expr const& sgn, expr const& exp, expr const& sig);
1636
1640 friend expr fpa_to_sbv(expr const& t, unsigned sz);
1641
1645 friend expr fpa_to_ubv(expr const& t, unsigned sz);
1646
1650 friend expr sbv_to_fpa(expr const& t, sort s);
1651
1655 friend expr ubv_to_fpa(expr const& t, sort s);
1656
1660 friend expr fpa_to_fpa(expr const& t, sort s);
1661
1665 friend expr round_fpa_to_closest_integer(expr const& t);
1666
1672 expr extract(expr const& offset, expr const& length) const {
1673 check_context(*this, offset); check_context(offset, length);
1674 Z3_ast r = Z3_mk_seq_extract(ctx(), *this, offset, length); check_error(); return expr(ctx(), r);
1675 }
1676 expr replace(expr const& src, expr const& dst) const {
1677 check_context(*this, src); check_context(src, dst);
1678 Z3_ast r = Z3_mk_seq_replace(ctx(), *this, src, dst);
1679 check_error();
1680 return expr(ctx(), r);
1681 }
1682 expr unit() const {
1683 Z3_ast r = Z3_mk_seq_unit(ctx(), *this);
1684 check_error();
1685 return expr(ctx(), r);
1686 }
1687 expr contains(expr const& s) const {
1688 check_context(*this, s);
1689 Z3_ast r = Z3_mk_seq_contains(ctx(), *this, s);
1690 check_error();
1691 return expr(ctx(), r);
1692 }
1693 expr at(expr const& index) const {
1694 check_context(*this, index);
1695 Z3_ast r = Z3_mk_seq_at(ctx(), *this, index);
1696 check_error();
1697 return expr(ctx(), r);
1698 }
1699 expr nth(expr const& index) const {
1700 check_context(*this, index);
1701 Z3_ast r = Z3_mk_seq_nth(ctx(), *this, index);
1702 check_error();
1703 return expr(ctx(), r);
1704 }
1705 expr length() const {
1706 Z3_ast r = Z3_mk_seq_length(ctx(), *this);
1707 check_error();
1708 return expr(ctx(), r);
1709 }
1710 expr stoi() const {
1711 Z3_ast r = Z3_mk_str_to_int(ctx(), *this);
1712 check_error();
1713 return expr(ctx(), r);
1714 }
1715 expr itos() const {
1716 Z3_ast r = Z3_mk_int_to_str(ctx(), *this);
1717 check_error();
1718 return expr(ctx(), r);
1719 }
1720 expr ubvtos() const {
1721 Z3_ast r = Z3_mk_ubv_to_str(ctx(), *this);
1722 check_error();
1723 return expr(ctx(), r);
1724 }
1725 expr sbvtos() const {
1726 Z3_ast r = Z3_mk_sbv_to_str(ctx(), *this);
1727 check_error();
1728 return expr(ctx(), r);
1729 }
1731 Z3_ast r = Z3_mk_char_to_int(ctx(), *this);
1732 check_error();
1733 return expr(ctx(), r);
1734 }
1736 Z3_ast r = Z3_mk_char_to_bv(ctx(), *this);
1737 check_error();
1738 return expr(ctx(), r);
1739 }
1741 Z3_ast r = Z3_mk_char_from_bv(ctx(), *this);
1742 check_error();
1743 return expr(ctx(), r);
1744 }
1745 expr is_digit() const {
1746 Z3_ast r = Z3_mk_char_is_digit(ctx(), *this);
1747 check_error();
1748 return expr(ctx(), r);
1749 }
1750
1751 friend expr range(expr const& lo, expr const& hi);
1755 expr loop(unsigned lo) {
1756 Z3_ast r = Z3_mk_re_loop(ctx(), m_ast, lo, 0);
1757 check_error();
1758 return expr(ctx(), r);
1759 }
1760 expr loop(unsigned lo, unsigned hi) {
1761 Z3_ast r = Z3_mk_re_loop(ctx(), m_ast, lo, hi);
1762 check_error();
1763 return expr(ctx(), r);
1764 }
1765
1769 expr operator[](expr const& index) const {
1770 assert(is_array() || is_seq());
1771 if (is_array()) {
1772 return select(*this, index);
1773 }
1774 return nth(index);
1775 }
1776
1777 expr operator[](expr_vector const& index) const {
1778 return select(*this, index);
1779 }
1780
1784 expr simplify() const { Z3_ast r = Z3_simplify(ctx(), m_ast); check_error(); return expr(ctx(), r); }
1788 expr simplify(params const & p) const { Z3_ast r = Z3_simplify_ex(ctx(), m_ast, p); check_error(); return expr(ctx(), r); }
1789
1793 expr substitute(expr_vector const& src, expr_vector const& dst);
1794
1798 expr substitute(expr_vector const& dst);
1799
1803 expr substitute(func_decl_vector const& funs, expr_vector const& bodies);
1804
1805
1806 class iterator {
1807 expr& e;
1808 unsigned i;
1809 public:
1810 iterator(expr& e, unsigned i): e(e), i(i) {}
1811 bool operator==(iterator const& other) const noexcept {
1812 return i == other.i;
1813 }
1814 bool operator!=(iterator const& other) const noexcept {
1815 return i != other.i;
1816 }
1817 expr operator*() const { return e.arg(i); }
1818 iterator& operator++() { ++i; return *this; }
1819 iterator operator++(int) { assert(false); return *this; }
1820 };
1821
1822 iterator begin() { return iterator(*this, 0); }
1823 iterator end() { return iterator(*this, is_app() ? num_args() : 0); }
1824
1825 };
1826
1827#define _Z3_MK_BIN_(a, b, binop) \
1828 check_context(a, b); \
1829 Z3_ast r = binop(a.ctx(), a, b); \
1830 a.check_error(); \
1831 return expr(a.ctx(), r); \
1832
1833
1834 inline expr implies(expr const & a, expr const & b) {
1835 assert(a.is_bool() && b.is_bool());
1837 }
1838 inline expr implies(expr const & a, bool b) { return implies(a, a.ctx().bool_val(b)); }
1839 inline expr implies(bool a, expr const & b) { return implies(b.ctx().bool_val(a), b); }
1840
1841
1842 inline expr pw(expr const & a, expr const & b) { _Z3_MK_BIN_(a, b, Z3_mk_power); }
1843 inline expr pw(expr const & a, int b) { return pw(a, a.ctx().num_val(b, a.get_sort())); }
1844 inline expr pw(int a, expr const & b) { return pw(b.ctx().num_val(a, b.get_sort()), b); }
1845
1846 inline expr mod(expr const& a, expr const& b) {
1847 if (a.is_bv()) {
1848 _Z3_MK_BIN_(a, b, Z3_mk_bvsmod);
1849 }
1850 else {
1851 _Z3_MK_BIN_(a, b, Z3_mk_mod);
1852 }
1853 }
1854 inline expr mod(expr const & a, int b) { return mod(a, a.ctx().num_val(b, a.get_sort())); }
1855 inline expr mod(int a, expr const & b) { return mod(b.ctx().num_val(a, b.get_sort()), b); }
1856
1857 inline expr operator%(expr const& a, expr const& b) { return mod(a, b); }
1858 inline expr operator%(expr const& a, int b) { return mod(a, b); }
1859 inline expr operator%(int a, expr const& b) { return mod(a, b); }
1860
1861
1862 inline expr rem(expr const& a, expr const& b) {
1863 if (a.is_fpa() && b.is_fpa()) {
1865 } else {
1866 _Z3_MK_BIN_(a, b, Z3_mk_rem);
1867 }
1868 }
1869 inline expr rem(expr const & a, int b) { return rem(a, a.ctx().num_val(b, a.get_sort())); }
1870 inline expr rem(int a, expr const & b) { return rem(b.ctx().num_val(a, b.get_sort()), b); }
1871
1872#undef _Z3_MK_BIN_
1873
1874#define _Z3_MK_UN_(a, mkun) \
1875 Z3_ast r = mkun(a.ctx(), a); \
1876 a.check_error(); \
1877 return expr(a.ctx(), r); \
1878
1879
1880 inline expr operator!(expr const & a) { assert(a.is_bool()); _Z3_MK_UN_(a, Z3_mk_not); }
1881
1882 inline expr is_int(expr const& e) { _Z3_MK_UN_(e, Z3_mk_is_int); }
1883
1884#undef _Z3_MK_UN_
1885
1886 inline expr operator&&(expr const & a, expr const & b) {
1887 check_context(a, b);
1888 assert(a.is_bool() && b.is_bool());
1889 Z3_ast args[2] = { a, b };
1890 Z3_ast r = Z3_mk_and(a.ctx(), 2, args);
1891 a.check_error();
1892 return expr(a.ctx(), r);
1893 }
1894
1895 inline expr operator&&(expr const & a, bool b) { return a && a.ctx().bool_val(b); }
1896 inline expr operator&&(bool a, expr const & b) { return b.ctx().bool_val(a) && b; }
1897
1898 inline expr operator||(expr const & a, expr const & b) {
1899 check_context(a, b);
1900 assert(a.is_bool() && b.is_bool());
1901 Z3_ast args[2] = { a, b };
1902 Z3_ast r = Z3_mk_or(a.ctx(), 2, args);
1903 a.check_error();
1904 return expr(a.ctx(), r);
1905 }
1906
1907 inline expr operator||(expr const & a, bool b) { return a || a.ctx().bool_val(b); }
1908
1909 inline expr operator||(bool a, expr const & b) { return b.ctx().bool_val(a) || b; }
1910
1911 inline expr operator==(expr const & a, expr const & b) {
1912 check_context(a, b);
1913 Z3_ast r = Z3_mk_eq(a.ctx(), a, b);
1914 a.check_error();
1915 return expr(a.ctx(), r);
1916 }
1917 inline expr operator==(expr const & a, int b) { assert(a.is_arith() || a.is_bv() || a.is_fpa()); return a == a.ctx().num_val(b, a.get_sort()); }
1918 inline expr operator==(int a, expr const & b) { assert(b.is_arith() || b.is_bv() || b.is_fpa()); return b.ctx().num_val(a, b.get_sort()) == b; }
1919 inline expr operator==(expr const & a, double b) { assert(a.is_fpa()); return a == a.ctx().fpa_val(b); }
1920 inline expr operator==(double a, expr const & b) { assert(b.is_fpa()); return b.ctx().fpa_val(a) == b; }
1921
1922 inline expr operator!=(expr const & a, expr const & b) {
1923 check_context(a, b);
1924 Z3_ast args[2] = { a, b };
1925 Z3_ast r = Z3_mk_distinct(a.ctx(), 2, args);
1926 a.check_error();
1927 return expr(a.ctx(), r);
1928 }
1929 inline expr operator!=(expr const & a, int b) { assert(a.is_arith() || a.is_bv() || a.is_fpa()); return a != a.ctx().num_val(b, a.get_sort()); }
1930 inline expr operator!=(int a, expr const & b) { assert(b.is_arith() || b.is_bv() || b.is_fpa()); return b.ctx().num_val(a, b.get_sort()) != b; }
1931 inline expr operator!=(expr const & a, double b) { assert(a.is_fpa()); return a != a.ctx().fpa_val(b); }
1932 inline expr operator!=(double a, expr const & b) { assert(b.is_fpa()); return b.ctx().fpa_val(a) != b; }
1933
1934 inline expr operator+(expr const & a, expr const & b) {
1935 check_context(a, b);
1936 Z3_ast r = 0;
1937 if (a.is_arith() && b.is_arith()) {
1938 Z3_ast args[2] = { a, b };
1939 r = Z3_mk_add(a.ctx(), 2, args);
1940 }
1941 else if (a.is_bv() && b.is_bv()) {
1942 r = Z3_mk_bvadd(a.ctx(), a, b);
1943 }
1944 else if (a.is_seq() && b.is_seq()) {
1945 return concat(a, b);
1946 }
1947 else if (a.is_re() && b.is_re()) {
1948 Z3_ast _args[2] = { a, b };
1949 r = Z3_mk_re_union(a.ctx(), 2, _args);
1950 }
1951 else if (a.is_fpa() && b.is_fpa()) {
1952 r = Z3_mk_fpa_add(a.ctx(), a.ctx().fpa_rounding_mode(), a, b);
1953 }
1954 else {
1955 // operator is not supported by given arguments.
1956 assert(false);
1957 }
1958 a.check_error();
1959 return expr(a.ctx(), r);
1960 }
1961 inline expr operator+(expr const & a, int b) { return a + a.ctx().num_val(b, a.get_sort()); }
1962 inline expr operator+(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) + b; }
1963
1964 inline expr operator*(expr const & a, expr const & b) {
1965 check_context(a, b);
1966 Z3_ast r = 0;
1967 if (a.is_arith() && b.is_arith()) {
1968 Z3_ast args[2] = { a, b };
1969 r = Z3_mk_mul(a.ctx(), 2, args);
1970 }
1971 else if (a.is_bv() && b.is_bv()) {
1972 r = Z3_mk_bvmul(a.ctx(), a, b);
1973 }
1974 else if (a.is_fpa() && b.is_fpa()) {
1975 r = Z3_mk_fpa_mul(a.ctx(), a.ctx().fpa_rounding_mode(), a, b);
1976 }
1977 else {
1978 // operator is not supported by given arguments.
1979 assert(false);
1980 }
1981 a.check_error();
1982 return expr(a.ctx(), r);
1983 }
1984 inline expr operator*(expr const & a, int b) { return a * a.ctx().num_val(b, a.get_sort()); }
1985 inline expr operator*(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) * b; }
1986
1987
1988 inline expr operator>=(expr const & a, expr const & b) {
1989 check_context(a, b);
1990 Z3_ast r = 0;
1991 if (a.is_arith() && b.is_arith()) {
1992 r = Z3_mk_ge(a.ctx(), a, b);
1993 }
1994 else if (a.is_bv() && b.is_bv()) {
1995 r = Z3_mk_bvsge(a.ctx(), a, b);
1996 }
1997 else if (a.is_fpa() && b.is_fpa()) {
1998 r = Z3_mk_fpa_geq(a.ctx(), a, b);
1999 }
2000 else {
2001 // operator is not supported by given arguments.
2002 assert(false);
2003 }
2004 a.check_error();
2005 return expr(a.ctx(), r);
2006 }
2007
2008 inline expr operator/(expr const & a, expr const & b) {
2009 check_context(a, b);
2010 Z3_ast r = 0;
2011 if (a.is_arith() && b.is_arith()) {
2012 r = Z3_mk_div(a.ctx(), a, b);
2013 }
2014 else if (a.is_bv() && b.is_bv()) {
2015 r = Z3_mk_bvsdiv(a.ctx(), a, b);
2016 }
2017 else if (a.is_fpa() && b.is_fpa()) {
2018 r = Z3_mk_fpa_div(a.ctx(), a.ctx().fpa_rounding_mode(), a, b);
2019 }
2020 else {
2021 // operator is not supported by given arguments.
2022 assert(false);
2023 }
2024 a.check_error();
2025 return expr(a.ctx(), r);
2026 }
2027 inline expr operator/(expr const & a, int b) { return a / a.ctx().num_val(b, a.get_sort()); }
2028 inline expr operator/(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) / b; }
2029
2030 inline expr operator-(expr const & a) {
2031 Z3_ast r = 0;
2032 if (a.is_arith()) {
2033 r = Z3_mk_unary_minus(a.ctx(), a);
2034 }
2035 else if (a.is_bv()) {
2036 r = Z3_mk_bvneg(a.ctx(), a);
2037 }
2038 else if (a.is_fpa()) {
2039 r = Z3_mk_fpa_neg(a.ctx(), a);
2040 }
2041 else {
2042 // operator is not supported by given arguments.
2043 assert(false);
2044 }
2045 a.check_error();
2046 return expr(a.ctx(), r);
2047 }
2048
2049 inline expr operator-(expr const & a, expr const & b) {
2050 check_context(a, b);
2051 Z3_ast r = 0;
2052 if (a.is_arith() && b.is_arith()) {
2053 Z3_ast args[2] = { a, b };
2054 r = Z3_mk_sub(a.ctx(), 2, args);
2055 }
2056 else if (a.is_bv() && b.is_bv()) {
2057 r = Z3_mk_bvsub(a.ctx(), a, b);
2058 }
2059 else if (a.is_fpa() && b.is_fpa()) {
2060 r = Z3_mk_fpa_sub(a.ctx(), a.ctx().fpa_rounding_mode(), a, b);
2061 }
2062 else {
2063 // operator is not supported by given arguments.
2064 assert(false);
2065 }
2066 a.check_error();
2067 return expr(a.ctx(), r);
2068 }
2069 inline expr operator-(expr const & a, int b) { return a - a.ctx().num_val(b, a.get_sort()); }
2070 inline expr operator-(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) - b; }
2071
2072 inline expr operator<=(expr const & a, expr const & b) {
2073 check_context(a, b);
2074 Z3_ast r = 0;
2075 if (a.is_arith() && b.is_arith()) {
2076 r = Z3_mk_le(a.ctx(), a, b);
2077 }
2078 else if (a.is_bv() && b.is_bv()) {
2079 r = Z3_mk_bvsle(a.ctx(), a, b);
2080 }
2081 else if (a.is_fpa() && b.is_fpa()) {
2082 r = Z3_mk_fpa_leq(a.ctx(), a, b);
2083 }
2084 else {
2085 // operator is not supported by given arguments.
2086 assert(false);
2087 }
2088 a.check_error();
2089 return expr(a.ctx(), r);
2090 }
2091 inline expr operator<=(expr const & a, int b) { return a <= a.ctx().num_val(b, a.get_sort()); }
2092 inline expr operator<=(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) <= b; }
2093
2094 inline expr operator>=(expr const & a, int b) { return a >= a.ctx().num_val(b, a.get_sort()); }
2095 inline expr operator>=(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) >= b; }
2096
2097 inline expr operator<(expr const & a, expr const & b) {
2098 check_context(a, b);
2099 Z3_ast r = 0;
2100 if (a.is_arith() && b.is_arith()) {
2101 r = Z3_mk_lt(a.ctx(), a, b);
2102 }
2103 else if (a.is_bv() && b.is_bv()) {
2104 r = Z3_mk_bvslt(a.ctx(), a, b);
2105 }
2106 else if (a.is_fpa() && b.is_fpa()) {
2107 r = Z3_mk_fpa_lt(a.ctx(), a, b);
2108 }
2109 else {
2110 // operator is not supported by given arguments.
2111 assert(false);
2112 }
2113 a.check_error();
2114 return expr(a.ctx(), r);
2115 }
2116 inline expr operator<(expr const & a, int b) { return a < a.ctx().num_val(b, a.get_sort()); }
2117 inline expr operator<(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) < b; }
2118
2119 inline expr operator>(expr const & a, expr const & b) {
2120 check_context(a, b);
2121 Z3_ast r = 0;
2122 if (a.is_arith() && b.is_arith()) {
2123 r = Z3_mk_gt(a.ctx(), a, b);
2124 }
2125 else if (a.is_bv() && b.is_bv()) {
2126 r = Z3_mk_bvsgt(a.ctx(), a, b);
2127 }
2128 else if (a.is_fpa() && b.is_fpa()) {
2129 r = Z3_mk_fpa_gt(a.ctx(), a, b);
2130 }
2131 else {
2132 // operator is not supported by given arguments.
2133 assert(false);
2134 }
2135 a.check_error();
2136 return expr(a.ctx(), r);
2137 }
2138 inline expr operator>(expr const & a, int b) { return a > a.ctx().num_val(b, a.get_sort()); }
2139 inline expr operator>(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) > b; }
2140
2141 inline expr operator&(expr const & a, expr const & b) { if (a.is_bool()) return a && b; check_context(a, b); Z3_ast r = Z3_mk_bvand(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r); }
2142 inline expr operator&(expr const & a, int b) { return a & a.ctx().num_val(b, a.get_sort()); }
2143 inline expr operator&(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) & b; }
2144
2145 inline expr operator^(expr const & a, expr const & b) { check_context(a, b); Z3_ast r = a.is_bool() ? Z3_mk_xor(a.ctx(), a, b) : Z3_mk_bvxor(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r); }
2146 inline expr operator^(expr const & a, int b) { return a ^ a.ctx().num_val(b, a.get_sort()); }
2147 inline expr operator^(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) ^ b; }
2148
2149 inline expr operator|(expr const & a, expr const & b) { if (a.is_bool()) return a || b; check_context(a, b); Z3_ast r = Z3_mk_bvor(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r); }
2150 inline expr operator|(expr const & a, int b) { return a | a.ctx().num_val(b, a.get_sort()); }
2151 inline expr operator|(int a, expr const & b) { return b.ctx().num_val(a, b.get_sort()) | b; }
2152
2153 inline expr nand(expr const& a, expr const& b) { if (a.is_bool()) return !(a && b); check_context(a, b); Z3_ast r = Z3_mk_bvnand(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r); }
2154 inline expr nor(expr const& a, expr const& b) { if (a.is_bool()) return !(a || b); check_context(a, b); Z3_ast r = Z3_mk_bvnor(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r); }
2155 inline expr xnor(expr const& a, expr const& b) { if (a.is_bool()) return !(a ^ b); check_context(a, b); Z3_ast r = Z3_mk_bvxnor(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r); }
2156 inline expr min(expr const& a, expr const& b) {
2157 check_context(a, b);
2158 Z3_ast r;
2159 if (a.is_arith()) {
2160 r = Z3_mk_ite(a.ctx(), Z3_mk_ge(a.ctx(), a, b), b, a);
2161 }
2162 else if (a.is_bv()) {
2163 r = Z3_mk_ite(a.ctx(), Z3_mk_bvuge(a.ctx(), a, b), b, a);
2164 }
2165 else {
2166 assert(a.is_fpa());
2167 r = Z3_mk_fpa_min(a.ctx(), a, b);
2168 }
2169 a.check_error();
2170 return expr(a.ctx(), r);
2171 }
2172 inline expr max(expr const& a, expr const& b) {
2173 check_context(a, b);
2174 Z3_ast r;
2175 if (a.is_arith()) {
2176 r = Z3_mk_ite(a.ctx(), Z3_mk_ge(a.ctx(), a, b), a, b);
2177 }
2178 else if (a.is_bv()) {
2179 r = Z3_mk_ite(a.ctx(), Z3_mk_bvuge(a.ctx(), a, b), a, b);
2180 }
2181 else {
2182 assert(a.is_fpa());
2183 r = Z3_mk_fpa_max(a.ctx(), a, b);
2184 }
2185 a.check_error();
2186 return expr(a.ctx(), r);
2187 }
2188 inline expr bvredor(expr const & a) {
2189 assert(a.is_bv());
2190 Z3_ast r = Z3_mk_bvredor(a.ctx(), a);
2191 a.check_error();
2192 return expr(a.ctx(), r);
2193 }
2194 inline expr bvredand(expr const & a) {
2195 assert(a.is_bv());
2196 Z3_ast r = Z3_mk_bvredand(a.ctx(), a);
2197 a.check_error();
2198 return expr(a.ctx(), r);
2199 }
2200 inline expr abs(expr const & a) {
2201 Z3_ast r;
2202 if (a.is_int()) {
2203 expr zero = a.ctx().int_val(0);
2204 expr ge = a >= zero;
2205 expr na = -a;
2206 r = Z3_mk_ite(a.ctx(), ge, a, na);
2207 }
2208 else if (a.is_real()) {
2209 expr zero = a.ctx().real_val(0);
2210 expr ge = a >= zero;
2211 expr na = -a;
2212 r = Z3_mk_ite(a.ctx(), ge, a, na);
2213 }
2214 else {
2215 r = Z3_mk_fpa_abs(a.ctx(), a);
2216 }
2217 a.check_error();
2218 return expr(a.ctx(), r);
2219 }
2220 inline expr sqrt(expr const & a, expr const& rm) {
2221 check_context(a, rm);
2222 assert(a.is_fpa());
2223 Z3_ast r = Z3_mk_fpa_sqrt(a.ctx(), rm, a);
2224 a.check_error();
2225 return expr(a.ctx(), r);
2226 }
2227 inline expr fp_eq(expr const & a, expr const & b) {
2228 check_context(a, b);
2229 assert(a.is_fpa());
2230 Z3_ast r = Z3_mk_fpa_eq(a.ctx(), a, b);
2231 a.check_error();
2232 return expr(a.ctx(), r);
2233 }
2234 inline expr operator~(expr const & a) { Z3_ast r = Z3_mk_bvnot(a.ctx(), a); return expr(a.ctx(), r); }
2235
2236 inline expr fma(expr const& a, expr const& b, expr const& c, expr const& rm) {
2237 check_context(a, b); check_context(a, c); check_context(a, rm);
2238 assert(a.is_fpa() && b.is_fpa() && c.is_fpa());
2239 Z3_ast r = Z3_mk_fpa_fma(a.ctx(), rm, a, b, c);
2240 a.check_error();
2241 return expr(a.ctx(), r);
2242 }
2243
2244 inline expr fpa_fp(expr const& sgn, expr const& exp, expr const& sig) {
2245 check_context(sgn, exp); check_context(exp, sig);
2246 assert(sgn.is_bv() && exp.is_bv() && sig.is_bv());
2247 Z3_ast r = Z3_mk_fpa_fp(sgn.ctx(), sgn, exp, sig);
2248 sgn.check_error();
2249 return expr(sgn.ctx(), r);
2250 }
2251
2252 inline expr fpa_to_sbv(expr const& t, unsigned sz) {
2253 assert(t.is_fpa());
2254 Z3_ast r = Z3_mk_fpa_to_sbv(t.ctx(), t.ctx().fpa_rounding_mode(), t, sz);
2255 t.check_error();
2256 return expr(t.ctx(), r);
2257 }
2258
2259 inline expr fpa_to_ubv(expr const& t, unsigned sz) {
2260 assert(t.is_fpa());
2261 Z3_ast r = Z3_mk_fpa_to_ubv(t.ctx(), t.ctx().fpa_rounding_mode(), t, sz);
2262 t.check_error();
2263 return expr(t.ctx(), r);
2264 }
2265
2266 inline expr sbv_to_fpa(expr const& t, sort s) {
2267 assert(t.is_bv());
2268 Z3_ast r = Z3_mk_fpa_to_fp_signed(t.ctx(), t.ctx().fpa_rounding_mode(), t, s);
2269 t.check_error();
2270 return expr(t.ctx(), r);
2271 }
2272
2273 inline expr ubv_to_fpa(expr const& t, sort s) {
2274 assert(t.is_bv());
2275 Z3_ast r = Z3_mk_fpa_to_fp_unsigned(t.ctx(), t.ctx().fpa_rounding_mode(), t, s);
2276 t.check_error();
2277 return expr(t.ctx(), r);
2278 }
2279
2280 inline expr fpa_to_fpa(expr const& t, sort s) {
2281 assert(t.is_fpa());
2282 Z3_ast r = Z3_mk_fpa_to_fp_float(t.ctx(), t.ctx().fpa_rounding_mode(), t, s);
2283 t.check_error();
2284 return expr(t.ctx(), r);
2285 }
2286
2288 assert(t.is_fpa());
2289 Z3_ast r = Z3_mk_fpa_round_to_integral(t.ctx(), t.ctx().fpa_rounding_mode(), t);
2290 t.check_error();
2291 return expr(t.ctx(), r);
2292 }
2293
2299 inline expr ite(expr const & c, expr const & t, expr const & e) {
2300 check_context(c, t); check_context(c, e);
2301 assert(c.is_bool());
2302 Z3_ast r = Z3_mk_ite(c.ctx(), c, t, e);
2303 c.check_error();
2304 return expr(c.ctx(), r);
2305 }
2306
2307
2312 inline expr to_expr(context & c, Z3_ast a) {
2313 c.check_error();
2314 assert(Z3_get_ast_kind(c, a) == Z3_APP_AST ||
2316 Z3_get_ast_kind(c, a) == Z3_VAR_AST ||
2318 return expr(c, a);
2319 }
2320
2321 inline sort to_sort(context & c, Z3_sort s) {
2322 c.check_error();
2323 return sort(c, s);
2324 }
2325
2326 inline func_decl to_func_decl(context & c, Z3_func_decl f) {
2327 c.check_error();
2328 return func_decl(c, f);
2329 }
2330
2334 inline expr sle(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvsle(a.ctx(), a, b)); }
2335 inline expr sle(expr const & a, int b) { return sle(a, a.ctx().num_val(b, a.get_sort())); }
2336 inline expr sle(int a, expr const & b) { return sle(b.ctx().num_val(a, b.get_sort()), b); }
2340 inline expr slt(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvslt(a.ctx(), a, b)); }
2341 inline expr slt(expr const & a, int b) { return slt(a, a.ctx().num_val(b, a.get_sort())); }
2342 inline expr slt(int a, expr const & b) { return slt(b.ctx().num_val(a, b.get_sort()), b); }
2346 inline expr sge(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvsge(a.ctx(), a, b)); }
2347 inline expr sge(expr const & a, int b) { return sge(a, a.ctx().num_val(b, a.get_sort())); }
2348 inline expr sge(int a, expr const & b) { return sge(b.ctx().num_val(a, b.get_sort()), b); }
2352 inline expr sgt(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvsgt(a.ctx(), a, b)); }
2353 inline expr sgt(expr const & a, int b) { return sgt(a, a.ctx().num_val(b, a.get_sort())); }
2354 inline expr sgt(int a, expr const & b) { return sgt(b.ctx().num_val(a, b.get_sort()), b); }
2355
2356
2360 inline expr ule(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvule(a.ctx(), a, b)); }
2361 inline expr ule(expr const & a, int b) { return ule(a, a.ctx().num_val(b, a.get_sort())); }
2362 inline expr ule(int a, expr const & b) { return ule(b.ctx().num_val(a, b.get_sort()), b); }
2366 inline expr ult(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvult(a.ctx(), a, b)); }
2367 inline expr ult(expr const & a, int b) { return ult(a, a.ctx().num_val(b, a.get_sort())); }
2368 inline expr ult(int a, expr const & b) { return ult(b.ctx().num_val(a, b.get_sort()), b); }
2372 inline expr uge(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvuge(a.ctx(), a, b)); }
2373 inline expr uge(expr const & a, int b) { return uge(a, a.ctx().num_val(b, a.get_sort())); }
2374 inline expr uge(int a, expr const & b) { return uge(b.ctx().num_val(a, b.get_sort()), b); }
2378 inline expr ugt(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvugt(a.ctx(), a, b)); }
2379 inline expr ugt(expr const & a, int b) { return ugt(a, a.ctx().num_val(b, a.get_sort())); }
2380 inline expr ugt(int a, expr const & b) { return ugt(b.ctx().num_val(a, b.get_sort()), b); }
2381
2385 inline expr sdiv(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvsdiv(a.ctx(), a, b)); }
2386 inline expr sdiv(expr const & a, int b) { return sdiv(a, a.ctx().num_val(b, a.get_sort())); }
2387 inline expr sdiv(int a, expr const & b) { return sdiv(b.ctx().num_val(a, b.get_sort()), b); }
2388
2392 inline expr udiv(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvudiv(a.ctx(), a, b)); }
2393 inline expr udiv(expr const & a, int b) { return udiv(a, a.ctx().num_val(b, a.get_sort())); }
2394 inline expr udiv(int a, expr const & b) { return udiv(b.ctx().num_val(a, b.get_sort()), b); }
2395
2399 inline expr srem(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvsrem(a.ctx(), a, b)); }
2400 inline expr srem(expr const & a, int b) { return srem(a, a.ctx().num_val(b, a.get_sort())); }
2401 inline expr srem(int a, expr const & b) { return srem(b.ctx().num_val(a, b.get_sort()), b); }
2402
2406 inline expr smod(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvsmod(a.ctx(), a, b)); }
2407 inline expr smod(expr const & a, int b) { return smod(a, a.ctx().num_val(b, a.get_sort())); }
2408 inline expr smod(int a, expr const & b) { return smod(b.ctx().num_val(a, b.get_sort()), b); }
2409
2413 inline expr urem(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvurem(a.ctx(), a, b)); }
2414 inline expr urem(expr const & a, int b) { return urem(a, a.ctx().num_val(b, a.get_sort())); }
2415 inline expr urem(int a, expr const & b) { return urem(b.ctx().num_val(a, b.get_sort()), b); }
2416
2420 inline expr shl(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvshl(a.ctx(), a, b)); }
2421 inline expr shl(expr const & a, int b) { return shl(a, a.ctx().num_val(b, a.get_sort())); }
2422 inline expr shl(int a, expr const & b) { return shl(b.ctx().num_val(a, b.get_sort()), b); }
2423
2427 inline expr lshr(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvlshr(a.ctx(), a, b)); }
2428 inline expr lshr(expr const & a, int b) { return lshr(a, a.ctx().num_val(b, a.get_sort())); }
2429 inline expr lshr(int a, expr const & b) { return lshr(b.ctx().num_val(a, b.get_sort()), b); }
2430
2434 inline expr ashr(expr const & a, expr const & b) { return to_expr(a.ctx(), Z3_mk_bvashr(a.ctx(), a, b)); }
2435 inline expr ashr(expr const & a, int b) { return ashr(a, a.ctx().num_val(b, a.get_sort())); }
2436 inline expr ashr(int a, expr const & b) { return ashr(b.ctx().num_val(a, b.get_sort()), b); }
2437
2441 inline expr zext(expr const & a, unsigned i) { return to_expr(a.ctx(), Z3_mk_zero_ext(a.ctx(), i, a)); }
2442
2446 inline expr bv2int(expr const& a, bool is_signed) { Z3_ast r = Z3_mk_bv2int(a.ctx(), a, is_signed); a.check_error(); return expr(a.ctx(), r); }
2447 inline expr int2bv(unsigned n, expr const& a) { Z3_ast r = Z3_mk_int2bv(a.ctx(), n, a); a.check_error(); return expr(a.ctx(), r); }
2448
2452 inline expr bvadd_no_overflow(expr const& a, expr const& b, bool is_signed) {
2453 check_context(a, b); Z3_ast r = Z3_mk_bvadd_no_overflow(a.ctx(), a, b, is_signed); a.check_error(); return expr(a.ctx(), r);
2454 }
2455 inline expr bvadd_no_underflow(expr const& a, expr const& b) {
2456 check_context(a, b); Z3_ast r = Z3_mk_bvadd_no_underflow(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r);
2457 }
2458 inline expr bvsub_no_overflow(expr const& a, expr const& b) {
2459 check_context(a, b); Z3_ast r = Z3_mk_bvsub_no_overflow(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r);
2460 }
2461 inline expr bvsub_no_underflow(expr const& a, expr const& b, bool is_signed) {
2462 check_context(a, b); Z3_ast r = Z3_mk_bvsub_no_underflow(a.ctx(), a, b, is_signed); a.check_error(); return expr(a.ctx(), r);
2463 }
2464 inline expr bvsdiv_no_overflow(expr const& a, expr const& b) {
2465 check_context(a, b); Z3_ast r = Z3_mk_bvsdiv_no_overflow(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r);
2466 }
2467 inline expr bvneg_no_overflow(expr const& a) {
2468 Z3_ast r = Z3_mk_bvneg_no_overflow(a.ctx(), a); a.check_error(); return expr(a.ctx(), r);
2469 }
2470 inline expr bvmul_no_overflow(expr const& a, expr const& b, bool is_signed) {
2471 check_context(a, b); Z3_ast r = Z3_mk_bvmul_no_overflow(a.ctx(), a, b, is_signed); a.check_error(); return expr(a.ctx(), r);
2472 }
2473 inline expr bvmul_no_underflow(expr const& a, expr const& b) {
2474 check_context(a, b); Z3_ast r = Z3_mk_bvmul_no_underflow(a.ctx(), a, b); a.check_error(); return expr(a.ctx(), r);
2475 }
2476
2477
2481 inline expr sext(expr const & a, unsigned i) { return to_expr(a.ctx(), Z3_mk_sign_ext(a.ctx(), i, a)); }
2482
2483 inline func_decl linear_order(sort const& a, unsigned index) {
2484 return to_func_decl(a.ctx(), Z3_mk_linear_order(a.ctx(), a, index));
2485 }
2486 inline func_decl partial_order(sort const& a, unsigned index) {
2487 return to_func_decl(a.ctx(), Z3_mk_partial_order(a.ctx(), a, index));
2488 }
2489 inline func_decl piecewise_linear_order(sort const& a, unsigned index) {
2490 return to_func_decl(a.ctx(), Z3_mk_piecewise_linear_order(a.ctx(), a, index));
2491 }
2492 inline func_decl tree_order(sort const& a, unsigned index) {
2493 return to_func_decl(a.ctx(), Z3_mk_tree_order(a.ctx(), a, index));
2494 }
2495
2502 inline expr_vector polynomial_subresultants(expr const& p, expr const& q, expr const& x) {
2503 check_context(p, q); check_context(p, x);
2504 Z3_ast_vector r = Z3_polynomial_subresultants(p.ctx(), p, q, x);
2505 p.check_error();
2506 return expr_vector(p.ctx(), r);
2507 }
2508
2509 template<> class cast_ast<ast> {
2510 public:
2511 ast operator()(context & c, Z3_ast a) { return ast(c, a); }
2512 };
2513
2514 template<> class cast_ast<expr> {
2515 public:
2516 expr operator()(context & c, Z3_ast a) {
2517 assert(Z3_get_ast_kind(c, a) == Z3_NUMERAL_AST ||
2518 Z3_get_ast_kind(c, a) == Z3_APP_AST ||
2520 Z3_get_ast_kind(c, a) == Z3_VAR_AST);
2521 return expr(c, a);
2522 }
2523 };
2524
2525 template<> class cast_ast<sort> {
2526 public:
2527 sort operator()(context & c, Z3_ast a) {
2528 assert(Z3_get_ast_kind(c, a) == Z3_SORT_AST);
2529 return sort(c, reinterpret_cast<Z3_sort>(a));
2530 }
2531 };
2532
2533 template<> class cast_ast<func_decl> {
2534 public:
2536 assert(Z3_get_ast_kind(c, a) == Z3_FUNC_DECL_AST);
2537 return func_decl(c, reinterpret_cast<Z3_func_decl>(a));
2538 }
2539 };
2540
2541 template<typename T>
2542 template<typename T2>
2543 array<T>::array(ast_vector_tpl<T2> const & v):m_array(new T[v.size()]), m_size(v.size()) {
2544 for (unsigned i = 0; i < m_size; ++i) {
2545 m_array[i] = v[i];
2546 }
2547 }
2548
2549 // Basic functions for creating quantified formulas.
2550 // The C API should be used for creating quantifiers with patterns, weights, many variables, etc.
2551 inline expr forall(expr const & x, expr const & b) {
2552 check_context(x, b);
2553 Z3_app vars[] = {(Z3_app) x};
2554 Z3_ast r = Z3_mk_forall_const(b.ctx(), 0, 1, vars, 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2555 }
2556 inline expr forall(expr const & x1, expr const & x2, expr const & b) {
2557 check_context(x1, b); check_context(x2, b);
2558 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2};
2559 Z3_ast r = Z3_mk_forall_const(b.ctx(), 0, 2, vars, 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2560 }
2561 inline expr forall(expr const & x1, expr const & x2, expr const & x3, expr const & b) {
2562 check_context(x1, b); check_context(x2, b); check_context(x3, b);
2563 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2, (Z3_app) x3 };
2564 Z3_ast r = Z3_mk_forall_const(b.ctx(), 0, 3, vars, 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2565 }
2566 inline expr forall(expr const & x1, expr const & x2, expr const & x3, expr const & x4, expr const & b) {
2567 check_context(x1, b); check_context(x2, b); check_context(x3, b); check_context(x4, b);
2568 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2, (Z3_app) x3, (Z3_app) x4 };
2569 Z3_ast r = Z3_mk_forall_const(b.ctx(), 0, 4, vars, 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2570 }
2571 inline expr forall(expr_vector const & xs, expr const & b) {
2572 array<Z3_app> vars(xs);
2573 Z3_ast r = Z3_mk_forall_const(b.ctx(), 0, vars.size(), vars.ptr(), 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2574 }
2575 inline expr exists(expr const & x, expr const & b) {
2576 check_context(x, b);
2577 Z3_app vars[] = {(Z3_app) x};
2578 Z3_ast r = Z3_mk_exists_const(b.ctx(), 0, 1, vars, 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2579 }
2580 inline expr exists(expr const & x1, expr const & x2, expr const & b) {
2581 check_context(x1, b); check_context(x2, b);
2582 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2};
2583 Z3_ast r = Z3_mk_exists_const(b.ctx(), 0, 2, vars, 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2584 }
2585 inline expr exists(expr const & x1, expr const & x2, expr const & x3, expr const & b) {
2586 check_context(x1, b); check_context(x2, b); check_context(x3, b);
2587 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2, (Z3_app) x3 };
2588 Z3_ast r = Z3_mk_exists_const(b.ctx(), 0, 3, vars, 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2589 }
2590 inline expr exists(expr const & x1, expr const & x2, expr const & x3, expr const & x4, expr const & b) {
2591 check_context(x1, b); check_context(x2, b); check_context(x3, b); check_context(x4, b);
2592 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2, (Z3_app) x3, (Z3_app) x4 };
2593 Z3_ast r = Z3_mk_exists_const(b.ctx(), 0, 4, vars, 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2594 }
2595 inline expr exists(expr_vector const & xs, expr const & b) {
2596 array<Z3_app> vars(xs);
2597 Z3_ast r = Z3_mk_exists_const(b.ctx(), 0, vars.size(), vars.ptr(), 0, 0, b); b.check_error(); return expr(b.ctx(), r);
2598 }
2599 inline expr lambda(expr const & x, expr const & b) {
2600 check_context(x, b);
2601 Z3_app vars[] = {(Z3_app) x};
2602 Z3_ast r = Z3_mk_lambda_const(b.ctx(), 1, vars, b); b.check_error(); return expr(b.ctx(), r);
2603 }
2604 inline expr lambda(expr const & x1, expr const & x2, expr const & b) {
2605 check_context(x1, b); check_context(x2, b);
2606 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2};
2607 Z3_ast r = Z3_mk_lambda_const(b.ctx(), 2, vars, b); b.check_error(); return expr(b.ctx(), r);
2608 }
2609 inline expr lambda(expr const & x1, expr const & x2, expr const & x3, expr const & b) {
2610 check_context(x1, b); check_context(x2, b); check_context(x3, b);
2611 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2, (Z3_app) x3 };
2612 Z3_ast r = Z3_mk_lambda_const(b.ctx(), 3, vars, b); b.check_error(); return expr(b.ctx(), r);
2613 }
2614 inline expr lambda(expr const & x1, expr const & x2, expr const & x3, expr const & x4, expr const & b) {
2615 check_context(x1, b); check_context(x2, b); check_context(x3, b); check_context(x4, b);
2616 Z3_app vars[] = {(Z3_app) x1, (Z3_app) x2, (Z3_app) x3, (Z3_app) x4 };
2617 Z3_ast r = Z3_mk_lambda_const(b.ctx(), 4, vars, b); b.check_error(); return expr(b.ctx(), r);
2618 }
2619 inline expr lambda(expr_vector const & xs, expr const & b) {
2620 array<Z3_app> vars(xs);
2621 Z3_ast r = Z3_mk_lambda_const(b.ctx(), vars.size(), vars.ptr(), b); b.check_error(); return expr(b.ctx(), r);
2622 }
2623
2624 inline expr pble(expr_vector const& es, int const* coeffs, int bound) {
2625 assert(es.size() > 0);
2626 context& ctx = es[0u].ctx();
2627 array<Z3_ast> _es(es);
2628 Z3_ast r = Z3_mk_pble(ctx, _es.size(), _es.ptr(), coeffs, bound);
2629 ctx.check_error();
2630 return expr(ctx, r);
2631 }
2632 inline expr pbge(expr_vector const& es, int const* coeffs, int bound) {
2633 assert(es.size() > 0);
2634 context& ctx = es[0u].ctx();
2635 array<Z3_ast> _es(es);
2636 Z3_ast r = Z3_mk_pbge(ctx, _es.size(), _es.ptr(), coeffs, bound);
2637 ctx.check_error();
2638 return expr(ctx, r);
2639 }
2640 inline expr pbeq(expr_vector const& es, int const* coeffs, int bound) {
2641 assert(es.size() > 0);
2642 context& ctx = es[0u].ctx();
2643 array<Z3_ast> _es(es);
2644 Z3_ast r = Z3_mk_pbeq(ctx, _es.size(), _es.ptr(), coeffs, bound);
2645 ctx.check_error();
2646 return expr(ctx, r);
2647 }
2648 inline expr atmost(expr_vector const& es, unsigned bound) {
2649 assert(es.size() > 0);
2650 context& ctx = es[0u].ctx();
2651 array<Z3_ast> _es(es);
2652 Z3_ast r = Z3_mk_atmost(ctx, _es.size(), _es.ptr(), bound);
2653 ctx.check_error();
2654 return expr(ctx, r);
2655 }
2656 inline expr atleast(expr_vector const& es, unsigned bound) {
2657 assert(es.size() > 0);
2658 context& ctx = es[0u].ctx();
2659 array<Z3_ast> _es(es);
2660 Z3_ast r = Z3_mk_atleast(ctx, _es.size(), _es.ptr(), bound);
2661 ctx.check_error();
2662 return expr(ctx, r);
2663 }
2664 inline expr sum(expr_vector const& args) {
2665 assert(args.size() > 0);
2666 context& ctx = args[0u].ctx();
2667 array<Z3_ast> _args(args);
2668 Z3_ast r = Z3_mk_add(ctx, _args.size(), _args.ptr());
2669 ctx.check_error();
2670 return expr(ctx, r);
2671 }
2672
2674 assert(args.size() > 0);
2675 context& ctx = args[0u].ctx();
2676 array<Z3_ast> _args(args);
2677 Z3_ast r = Z3_mk_distinct(ctx, _args.size(), _args.ptr());
2678 ctx.check_error();
2679 return expr(ctx, r);
2680 }
2681
2682 inline expr concat(expr const& a, expr const& b) {
2683 check_context(a, b);
2684 Z3_ast r;
2685 if (Z3_is_seq_sort(a.ctx(), a.get_sort())) {
2686 Z3_ast _args[2] = { a, b };
2687 r = Z3_mk_seq_concat(a.ctx(), 2, _args);
2688 }
2689 else if (Z3_is_re_sort(a.ctx(), a.get_sort())) {
2690 Z3_ast _args[2] = { a, b };
2691 r = Z3_mk_re_concat(a.ctx(), 2, _args);
2692 }
2693 else {
2694 r = Z3_mk_concat(a.ctx(), a, b);
2695 }
2696 a.ctx().check_error();
2697 return expr(a.ctx(), r);
2698 }
2699
2700 inline expr concat(expr_vector const& args) {
2701 Z3_ast r;
2702 assert(args.size() > 0);
2703 if (args.size() == 1) {
2704 return args[0u];
2705 }
2706 context& ctx = args[0u].ctx();
2707 array<Z3_ast> _args(args);
2708 if (Z3_is_seq_sort(ctx, args[0u].get_sort())) {
2709 r = Z3_mk_seq_concat(ctx, _args.size(), _args.ptr());
2710 }
2711 else if (Z3_is_re_sort(ctx, args[0u].get_sort())) {
2712 r = Z3_mk_re_concat(ctx, _args.size(), _args.ptr());
2713 }
2714 else {
2715 r = _args[args.size()-1];
2716 for (unsigned i = args.size()-1; i > 0; ) {
2717 --i;
2718 r = Z3_mk_concat(ctx, _args[i], r);
2719 ctx.check_error();
2720 }
2721 }
2722 ctx.check_error();
2723 return expr(ctx, r);
2724 }
2725
2726 inline expr map(expr const& f, expr const& list) {
2727 context& ctx = f.ctx();
2728 Z3_ast r = Z3_mk_seq_map(ctx, f, list);
2729 ctx.check_error();
2730 return expr(ctx, r);
2731 }
2732
2733 inline expr mapi(expr const& f, expr const& i, expr const& list) {
2734 context& ctx = f.ctx();
2735 Z3_ast r = Z3_mk_seq_mapi(ctx, f, i, list);
2736 ctx.check_error();
2737 return expr(ctx, r);
2738 }
2739
2740 inline expr foldl(expr const& f, expr const& a, expr const& list) {
2741 context& ctx = f.ctx();
2742 Z3_ast r = Z3_mk_seq_foldl(ctx, f, a, list);
2743 ctx.check_error();
2744 return expr(ctx, r);
2745 }
2746
2747 inline expr foldli(expr const& f, expr const& i, expr const& a, expr const& list) {
2748 context& ctx = f.ctx();
2749 Z3_ast r = Z3_mk_seq_foldli(ctx, f, i, a, list);
2750 ctx.check_error();
2751 return expr(ctx, r);
2752 }
2753
2754 inline expr mk_or(expr_vector const& args) {
2755 array<Z3_ast> _args(args);
2756 Z3_ast r = Z3_mk_or(args.ctx(), _args.size(), _args.ptr());
2757 args.check_error();
2758 return expr(args.ctx(), r);
2759 }
2760 inline expr mk_and(expr_vector const& args) {
2761 array<Z3_ast> _args(args);
2762 Z3_ast r = Z3_mk_and(args.ctx(), _args.size(), _args.ptr());
2763 args.check_error();
2764 return expr(args.ctx(), r);
2765 }
2766 inline expr mk_xor(expr_vector const& args) {
2767 if (args.empty())
2768 return args.ctx().bool_val(false);
2769 expr r = args[0u];
2770 for (unsigned i = 1; i < args.size(); ++i)
2771 r = r ^ args[i];
2772 return r;
2773 }
2774
2775
2776 class func_entry : public object {
2777 Z3_func_entry m_entry;
2778 void init(Z3_func_entry e) {
2779 m_entry = e;
2780 Z3_func_entry_inc_ref(ctx(), m_entry);
2781 }
2782 public:
2783 func_entry(context & c, Z3_func_entry e):object(c) { init(e); }
2784 func_entry(func_entry const & s):object(s) { init(s.m_entry); }
2785 ~func_entry() override { Z3_func_entry_dec_ref(ctx(), m_entry); }
2786 operator Z3_func_entry() const { return m_entry; }
2788 Z3_func_entry_inc_ref(s.ctx(), s.m_entry);
2789 Z3_func_entry_dec_ref(ctx(), m_entry);
2790 object::operator=(s);
2791 m_entry = s.m_entry;
2792 return *this;
2793 }
2794 expr value() const { Z3_ast r = Z3_func_entry_get_value(ctx(), m_entry); check_error(); return expr(ctx(), r); }
2795 unsigned num_args() const { unsigned r = Z3_func_entry_get_num_args(ctx(), m_entry); check_error(); return r; }
2796 expr arg(unsigned i) const { Z3_ast r = Z3_func_entry_get_arg(ctx(), m_entry, i); check_error(); return expr(ctx(), r); }
2797 };
2798
2799 class func_interp : public object {
2800 Z3_func_interp m_interp;
2801 void init(Z3_func_interp e) {
2802 m_interp = e;
2803 Z3_func_interp_inc_ref(ctx(), m_interp);
2804 }
2805 public:
2806 func_interp(context & c, Z3_func_interp e):object(c) { init(e); }
2807 func_interp(func_interp const & s):object(s) { init(s.m_interp); }
2808 ~func_interp() override { Z3_func_interp_dec_ref(ctx(), m_interp); }
2809 operator Z3_func_interp() const { return m_interp; }
2811 Z3_func_interp_inc_ref(s.ctx(), s.m_interp);
2812 Z3_func_interp_dec_ref(ctx(), m_interp);
2813 object::operator=(s);
2814 m_interp = s.m_interp;
2815 return *this;
2816 }
2817 expr else_value() const { Z3_ast r = Z3_func_interp_get_else(ctx(), m_interp); check_error(); return expr(ctx(), r); }
2818 unsigned num_entries() const { unsigned r = Z3_func_interp_get_num_entries(ctx(), m_interp); check_error(); return r; }
2819 func_entry entry(unsigned i) const { Z3_func_entry e = Z3_func_interp_get_entry(ctx(), m_interp, i); check_error(); return func_entry(ctx(), e); }
2820 void add_entry(expr_vector const& args, expr& value) {
2821 Z3_func_interp_add_entry(ctx(), m_interp, args, value);
2822 check_error();
2823 }
2824 void set_else(expr& value) {
2825 Z3_func_interp_set_else(ctx(), m_interp, value);
2826 check_error();
2827 }
2828 };
2829
2830 class model : public object {
2831 Z3_model m_model;
2832 void init(Z3_model m) {
2833 m_model = m;
2834 Z3_model_inc_ref(ctx(), m);
2835 }
2836 public:
2837 struct translate {};
2838 model(context & c):object(c) { init(Z3_mk_model(c)); }
2839 model(context & c, Z3_model m):object(c) { init(m); }
2840 model(model const & s):object(s) { init(s.m_model); }
2841 model(model& src, context& dst, translate) : object(dst) { init(Z3_model_translate(src.ctx(), src, dst)); }
2842 ~model() override { Z3_model_dec_ref(ctx(), m_model); }
2843 operator Z3_model() const { return m_model; }
2844 model & operator=(model const & s) {
2845 Z3_model_inc_ref(s.ctx(), s.m_model);
2846 Z3_model_dec_ref(ctx(), m_model);
2847 object::operator=(s);
2848 m_model = s.m_model;
2849 return *this;
2850 }
2851
2852 expr eval(expr const & n, bool model_completion=false) const {
2853 check_context(*this, n);
2854 Z3_ast r = 0;
2855 bool status = Z3_model_eval(ctx(), m_model, n, model_completion, &r);
2856 check_error();
2857 if (status == false && ctx().enable_exceptions())
2858 Z3_THROW(exception("failed to evaluate expression"));
2859 return expr(ctx(), r);
2860 }
2861
2862 unsigned num_consts() const { return Z3_model_get_num_consts(ctx(), m_model); }
2863 unsigned num_funcs() const { return Z3_model_get_num_funcs(ctx(), m_model); }
2864 func_decl get_const_decl(unsigned i) const { Z3_func_decl r = Z3_model_get_const_decl(ctx(), m_model, i); check_error(); return func_decl(ctx(), r); }
2865 func_decl get_func_decl(unsigned i) const { Z3_func_decl r = Z3_model_get_func_decl(ctx(), m_model, i); check_error(); return func_decl(ctx(), r); }
2866 unsigned size() const { return num_consts() + num_funcs(); }
2867 func_decl operator[](int i) const {
2868 assert(0 <= i);
2869 return static_cast<unsigned>(i) < num_consts() ? get_const_decl(i) : get_func_decl(i - num_consts());
2870 }
2871
2872 // returns interpretation of constant declaration c.
2873 // If c is not assigned any value in the model it returns
2874 // an expression with a null ast reference.
2876 check_context(*this, c);
2877 Z3_ast r = Z3_model_get_const_interp(ctx(), m_model, c);
2878 check_error();
2879 return expr(ctx(), r);
2880 }
2882 check_context(*this, f);
2883 Z3_func_interp r = Z3_model_get_func_interp(ctx(), m_model, f);
2884 check_error();
2885 return func_interp(ctx(), r);
2886 }
2887
2888 // returns true iff the model contains an interpretation
2889 // for function f.
2890 bool has_interp(func_decl f) const {
2891 check_context(*this, f);
2892 return Z3_model_has_interp(ctx(), m_model, f);
2893 }
2894
2896 Z3_func_interp r = Z3_add_func_interp(ctx(), m_model, f, else_val);
2897 check_error();
2898 return func_interp(ctx(), r);
2899 }
2900
2902 Z3_add_const_interp(ctx(), m_model, f, value);
2903 check_error();
2904 }
2905
2906 unsigned num_sorts() const {
2907 unsigned r = Z3_model_get_num_sorts(ctx(), m_model);
2908 check_error();
2909 return r;
2910 }
2911
2916 sort get_sort(unsigned i) const {
2917 Z3_sort s = Z3_model_get_sort(ctx(), m_model, i);
2918 check_error();
2919 return sort(ctx(), s);
2920 }
2921
2923 check_context(*this, s);
2924 Z3_ast_vector r = Z3_model_get_sort_universe(ctx(), m_model, s);
2925 check_error();
2926 return expr_vector(ctx(), r);
2927 }
2928
2929 friend std::ostream & operator<<(std::ostream & out, model const & m);
2930
2931 std::string to_string() const { return m_model ? std::string(Z3_model_to_string(ctx(), m_model)) : "null"; }
2932 };
2933
2934 inline expr qe_lite(expr_vector const& vars, expr const& body) {
2935 check_context(vars, body);
2936 Z3_ast r = Z3_qe_lite(body.ctx(), vars, body);
2937 body.check_error();
2938 return expr(body.ctx(), r);
2939 }
2940
2941 inline std::vector<Z3_app> to_apps(expr_vector const& bounds) {
2942 std::vector<Z3_app> apps;
2943 for (unsigned i = 0; i < bounds.size(); ++i) {
2944 if (!Z3_is_app(bounds.ctx(), bounds[i]))
2945 Z3_THROW(exception("model projection bounds must be applications"));
2946 apps.push_back(Z3_to_app(bounds.ctx(), bounds[i]));
2947 }
2948 return apps;
2949 }
2950
2951 inline expr qe_model_project(model const& m, expr_vector const& bounds, expr const& body) {
2952 check_context(m, bounds); check_context(m, body);
2953 std::vector<Z3_app> apps = to_apps(bounds);
2954 Z3_ast r = Z3_qe_model_project(m.ctx(), m, bounds.size(), apps.data(), body);
2955 m.check_error();
2956 return expr(m.ctx(), r);
2957 }
2958
2962 inline expr qe_model_project_skolem(model const& m, expr_vector const& bounds, expr const& body, ast_map& map) {
2963 check_context(m, bounds); check_context(m, body); check_context(m, map);
2964 std::vector<Z3_app> apps = to_apps(bounds);
2965 Z3_ast r = Z3_qe_model_project_skolem(m.ctx(), m, bounds.size(), apps.data(), body, map);
2966 m.check_error();
2967 return expr(m.ctx(), r);
2968 }
2969
2973 inline expr qe_model_project_with_witness(model const& m, expr_vector const& bounds, expr const& body, ast_map& map) {
2974 check_context(m, bounds); check_context(m, body); check_context(m, map);
2975 std::vector<Z3_app> apps = to_apps(bounds);
2976 Z3_ast r = Z3_qe_model_project_with_witness(m.ctx(), m, bounds.size(), apps.data(), body, map);
2977 m.check_error();
2978 return expr(m.ctx(), r);
2979 }
2980
2981 inline std::ostream & operator<<(std::ostream & out, model const & m) { return out << m.to_string(); }
2982
2983 class stats : public object {
2984 Z3_stats m_stats;
2985 void init(Z3_stats e) {
2986 m_stats = e;
2987 Z3_stats_inc_ref(ctx(), m_stats);
2988 }
2989 public:
2990 stats(context & c):object(c), m_stats(0) {}
2991 stats(context & c, Z3_stats e):object(c) { init(e); }
2992 stats(stats const & s):object(s) { init(s.m_stats); }
2993 ~stats() override { if (m_stats) Z3_stats_dec_ref(ctx(), m_stats); }
2994 operator Z3_stats() const { return m_stats; }
2995 stats & operator=(stats const & s) {
2996 Z3_stats_inc_ref(s.ctx(), s.m_stats);
2997 if (m_stats) Z3_stats_dec_ref(ctx(), m_stats);
2998 object::operator=(s);
2999 m_stats = s.m_stats;
3000 return *this;
3001 }
3002 unsigned size() const { return Z3_stats_size(ctx(), m_stats); }
3003 std::string key(unsigned i) const { Z3_string s = Z3_stats_get_key(ctx(), m_stats, i); check_error(); return s; }
3004 bool is_uint(unsigned i) const { bool r = Z3_stats_is_uint(ctx(), m_stats, i); check_error(); return r; }
3005 bool is_double(unsigned i) const { bool r = Z3_stats_is_double(ctx(), m_stats, i); check_error(); return r; }
3006 unsigned uint_value(unsigned i) const { unsigned r = Z3_stats_get_uint_value(ctx(), m_stats, i); check_error(); return r; }
3007 double double_value(unsigned i) const { double r = Z3_stats_get_double_value(ctx(), m_stats, i); check_error(); return r; }
3008 friend std::ostream & operator<<(std::ostream & out, stats const & s);
3009 };
3010 inline std::ostream & operator<<(std::ostream & out, stats const & s) { out << Z3_stats_to_string(s.ctx(), s); return out; }
3011
3012
3013 inline std::ostream & operator<<(std::ostream & out, check_result r) {
3014 if (r == unsat) out << "unsat";
3015 else if (r == sat) out << "sat";
3016 else out << "unknown";
3017 return out;
3018 }
3019
3031 Z3_parameter_kind m_kind;
3032 func_decl m_decl;
3033 unsigned m_index;
3034 context& ctx() const { return m_decl.ctx(); }
3035 void check_error() const { ctx().check_error(); }
3036 public:
3037 parameter(func_decl const& d, unsigned idx) : m_decl(d), m_index(idx) {
3038 if (ctx().enable_exceptions() && idx >= d.num_parameters())
3039 Z3_THROW(exception("parameter index is out of bounds"));
3040 m_kind = Z3_get_decl_parameter_kind(ctx(), d, idx);
3041 }
3042 parameter(expr const& e, unsigned idx) : m_decl(e.decl()), m_index(idx) {
3043 if (ctx().enable_exceptions() && idx >= m_decl.num_parameters())
3044 Z3_THROW(exception("parameter index is out of bounds"));
3045 m_kind = Z3_get_decl_parameter_kind(ctx(), m_decl, idx);
3046 }
3047 Z3_parameter_kind kind() const { return m_kind; }
3048 expr get_expr() const { Z3_ast a = Z3_get_decl_ast_parameter(ctx(), m_decl, m_index); check_error(); return expr(ctx(), a); }
3049 sort get_sort() const { Z3_sort s = Z3_get_decl_sort_parameter(ctx(), m_decl, m_index); check_error(); return sort(ctx(), s); }
3050 func_decl get_decl() const { Z3_func_decl f = Z3_get_decl_func_decl_parameter(ctx(), m_decl, m_index); check_error(); return func_decl(ctx(), f); }
3051 symbol get_symbol() const { Z3_symbol s = Z3_get_decl_symbol_parameter(ctx(), m_decl, m_index); check_error(); return symbol(ctx(), s); }
3052 std::string get_rational() const { Z3_string s = Z3_get_decl_rational_parameter(ctx(), m_decl, m_index); check_error(); return s; }
3053 double get_double() const { double d = Z3_get_decl_double_parameter(ctx(), m_decl, m_index); check_error(); return d; }
3054 int get_int() const { int i = Z3_get_decl_int_parameter(ctx(), m_decl, m_index); check_error(); return i; }
3055 };
3056
3057
3058 class solver : public object {
3059 Z3_solver m_solver;
3060 void init(Z3_solver s) {
3061 m_solver = s;
3062 if (s)
3063 Z3_solver_inc_ref(ctx(), s);
3064 }
3065 public:
3066 struct simple {};
3067 struct translate {};
3070 solver(context & c, Z3_solver s):object(c) { init(s); }
3071 solver(context & c, char const * logic):object(c) { init(Z3_mk_solver_for_logic(c, c.str_symbol(logic))); check_error(); }
3072 solver(context & c, solver const& src, translate): object(c) { Z3_solver s = Z3_solver_translate(src.ctx(), src, c); check_error(); init(s); }
3073 solver(solver const & s):object(s) { init(s.m_solver); }
3074 solver(solver const& s, simplifier const& simp);
3075 ~solver() override { Z3_solver_dec_ref(ctx(), m_solver); }
3076 operator Z3_solver() const { return m_solver; }
3077 solver & operator=(solver const & s) {
3078 Z3_solver_inc_ref(s.ctx(), s.m_solver);
3079 Z3_solver_dec_ref(ctx(), m_solver);
3080 object::operator=(s);
3081 m_solver = s.m_solver;
3082 return *this;
3083 }
3084 void set(params const & p) { Z3_solver_set_params(ctx(), m_solver, p); check_error(); }
3085 void set(char const * k, bool v) { params p(ctx()); p.set(k, v); set(p); }
3086 void set(char const * k, unsigned v) { params p(ctx()); p.set(k, v); set(p); }
3087 void set(char const * k, double v) { params p(ctx()); p.set(k, v); set(p); }
3088 void set(char const * k, symbol const & v) { params p(ctx()); p.set(k, v); set(p); }
3089 void set(char const * k, char const* v) { params p(ctx()); p.set(k, v); set(p); }
3100 void push() { Z3_solver_push(ctx(), m_solver); check_error(); }
3101 void pop(unsigned n = 1) { Z3_solver_pop(ctx(), m_solver, n); check_error(); }
3102 void reset() { Z3_solver_reset(ctx(), m_solver); check_error(); }
3103 void add(expr const & e) { assert(e.is_bool()); Z3_solver_assert(ctx(), m_solver, e); check_error(); }
3104 void add(expr const & e, expr const & p) {
3105 assert(e.is_bool()); assert(p.is_bool()); assert(p.is_const());
3106 Z3_solver_assert_and_track(ctx(), m_solver, e, p);
3107 check_error();
3108 }
3109 void add(expr const & e, char const * p) {
3110 add(e, ctx().bool_const(p));
3111 }
3112 void add(expr_vector const& v) {
3113 check_context(*this, v);
3114 for (unsigned i = 0; i < v.size(); ++i)
3115 add(v[i]);
3116 }
3117 void from_file(char const* file) { Z3_solver_from_file(ctx(), m_solver, file); ctx().check_parser_error(); }
3118 void from_string(char const* s) { Z3_solver_from_string(ctx(), m_solver, s); ctx().check_parser_error(); }
3119
3121 check_result check(unsigned n, expr * const assumptions) {
3122 array<Z3_ast> _assumptions(n);
3123 for (unsigned i = 0; i < n; ++i) {
3124 check_context(*this, assumptions[i]);
3125 _assumptions[i] = assumptions[i];
3126 }
3127 Z3_lbool r = Z3_solver_check_assumptions(ctx(), m_solver, n, _assumptions.ptr());
3128 check_error();
3129 return to_check_result(r);
3130 }
3131 check_result check(expr_vector const& assumptions) {
3132 unsigned n = assumptions.size();
3133 array<Z3_ast> _assumptions(n);
3134 for (unsigned i = 0; i < n; ++i) {
3135 check_context(*this, assumptions[i]);
3136 _assumptions[i] = assumptions[i];
3137 }
3138 Z3_lbool r = Z3_solver_check_assumptions(ctx(), m_solver, n, _assumptions.ptr());
3139 check_error();
3140 return to_check_result(r);
3141 }
3142 model get_model() const { Z3_model m = Z3_solver_get_model(ctx(), m_solver); check_error(); return model(ctx(), m); }
3144 Z3_lbool r = Z3_solver_get_consequences(ctx(), m_solver, assumptions, vars, conseq);
3145 check_error();
3146 return to_check_result(r);
3147 }
3148 std::string reason_unknown() const { Z3_string r = Z3_solver_get_reason_unknown(ctx(), m_solver); check_error(); return r; }
3149 stats statistics() const { Z3_stats r = Z3_solver_get_statistics(ctx(), m_solver); check_error(); return stats(ctx(), r); }
3150 expr_vector unsat_core() const { Z3_ast_vector r = Z3_solver_get_unsat_core(ctx(), m_solver); check_error(); return expr_vector(ctx(), r); }
3151 expr_vector assertions() const { Z3_ast_vector r = Z3_solver_get_assertions(ctx(), m_solver); check_error(); return expr_vector(ctx(), r); }
3152 expr_vector non_units() const { Z3_ast_vector r = Z3_solver_get_non_units(ctx(), m_solver); check_error(); return expr_vector(ctx(), r); }
3153 expr_vector units() const { Z3_ast_vector r = Z3_solver_get_units(ctx(), m_solver); check_error(); return expr_vector(ctx(), r); }
3154 expr_vector trail() const { Z3_ast_vector r = Z3_solver_get_trail(ctx(), m_solver); check_error(); return expr_vector(ctx(), r); }
3156 Z3_ast_vector r = Z3_solver_get_trail(ctx(), m_solver);
3157 check_error();
3158 expr_vector result(ctx(), r);
3159 unsigned sz = result.size();
3160 levels.resize(sz);
3161 Z3_solver_get_levels(ctx(), m_solver, r, sz, levels.ptr());
3162 check_error();
3163 return result;
3164 }
3165 expr congruence_root(expr const& t) const {
3166 check_context(*this, t);
3167 Z3_ast r = Z3_solver_congruence_root(ctx(), m_solver, t);
3168 check_error();
3169 return expr(ctx(), r);
3170 }
3171 expr congruence_next(expr const& t) const {
3172 check_context(*this, t);
3173 Z3_ast r = Z3_solver_congruence_next(ctx(), m_solver, t);
3174 check_error();
3175 return expr(ctx(), r);
3176 }
3177 expr congruence_explain(expr const& a, expr const& b) const {
3178 check_context(*this, a);
3179 check_context(*this, b);
3180 Z3_ast r = Z3_solver_congruence_explain(ctx(), m_solver, a, b);
3181 check_error();
3182 return expr(ctx(), r);
3183 }
3184 void set_initial_value(expr const& var, expr const& value) {
3185 Z3_solver_set_initial_value(ctx(), m_solver, var, value);
3186 check_error();
3187 }
3188 void set_initial_value(expr const& var, int i) {
3189 set_initial_value(var, ctx().num_val(i, var.get_sort()));
3190 }
3191 void set_initial_value(expr const& var, bool b) {
3192 set_initial_value(var, ctx().bool_val(b));
3193 }
3194
3195 void solve_for(expr_vector const& vars, expr_vector& terms, expr_vector& guards) {
3196 // Create a copy of vars since the C API modifies the variables vector
3197 expr_vector variables(ctx());
3198 for (unsigned i = 0; i < vars.size(); ++i) {
3199 check_context(*this, vars[i]);
3200 variables.push_back(vars[i]);
3201 }
3202 // Clear output vectors before calling C API
3203 terms = expr_vector(ctx());
3204 guards = expr_vector(ctx());
3205 Z3_solver_solve_for(ctx(), m_solver, variables, terms, guards);
3206 check_error();
3207 }
3208
3210 check_context(*this, src);
3211 Z3_solver_import_model_converter(ctx(), src.m_solver, m_solver);
3212 check_error();
3213 }
3214
3215 expr proof() const { Z3_ast r = Z3_solver_get_proof(ctx(), m_solver); check_error(); return expr(ctx(), r); }
3216 friend std::ostream & operator<<(std::ostream & out, solver const & s);
3217
3218 std::string to_smt2(char const* status = "unknown") {
3220 Z3_ast const* fmls = es.ptr();
3221 Z3_ast fml = 0;
3222 unsigned sz = es.size();
3223 if (sz > 0) {
3224 --sz;
3225 fml = fmls[sz];
3226 }
3227 else {
3228 fml = ctx().bool_val(true);
3229 }
3230 return std::string(Z3_benchmark_to_smtlib_string(
3231 ctx(),
3232 "", "", status, "",
3233 sz,
3234 fmls,
3235 fml));
3236 }
3237
3238 std::string dimacs(bool include_names = true) const { return std::string(Z3_solver_to_dimacs_string(ctx(), m_solver, include_names)); }
3239
3241
3242
3243 expr_vector cube(expr_vector& vars, unsigned cutoff) {
3244 Z3_ast_vector r = Z3_solver_cube(ctx(), m_solver, vars, cutoff);
3245 check_error();
3246 return expr_vector(ctx(), r);
3247 }
3248
3250 solver& m_solver;
3251 unsigned& m_cutoff;
3252 expr_vector& m_vars;
3253 expr_vector m_cube;
3254 bool m_end;
3255 bool m_empty;
3256
3257 void inc() {
3258 assert(!m_end && !m_empty);
3259 m_cube = m_solver.cube(m_vars, m_cutoff);
3260 m_cutoff = 0xFFFFFFFF;
3261 if (m_cube.size() == 1 && m_cube[0u].is_false()) {
3262 m_cube = z3::expr_vector(m_solver.ctx());
3263 m_end = true;
3264 }
3265 else if (m_cube.empty()) {
3266 m_empty = true;
3267 }
3268 }
3269 public:
3270 cube_iterator(solver& s, expr_vector& vars, unsigned& cutoff, bool end):
3271 m_solver(s),
3272 m_cutoff(cutoff),
3273 m_vars(vars),
3274 m_cube(s.ctx()),
3275 m_end(end),
3276 m_empty(false) {
3277 if (!m_end) {
3278 inc();
3279 }
3280 }
3281
3283 assert(!m_end);
3284 if (m_empty) {
3285 m_end = true;
3286 }
3287 else {
3288 inc();
3289 }
3290 return *this;
3291 }
3292 cube_iterator operator++(int) { assert(false); return *this; }
3293 expr_vector const * operator->() const { return &(operator*()); }
3294 expr_vector const& operator*() const noexcept { return m_cube; }
3295
3296 bool operator==(cube_iterator const& other) const noexcept {
3297 return other.m_end == m_end;
3298 };
3299 bool operator!=(cube_iterator const& other) const noexcept {
3300 return other.m_end != m_end;
3301 };
3302
3303 };
3304
3306 solver& m_solver;
3307 unsigned m_cutoff;
3308 expr_vector m_default_vars;
3309 expr_vector& m_vars;
3310 public:
3312 m_solver(s),
3313 m_cutoff(0xFFFFFFFF),
3314 m_default_vars(s.ctx()),
3315 m_vars(m_default_vars)
3316 {}
3317
3319 m_solver(s),
3320 m_cutoff(0xFFFFFFFF),
3321 m_default_vars(s.ctx()),
3322 m_vars(vars)
3323 {}
3324
3325 cube_iterator begin() { return cube_iterator(m_solver, m_vars, m_cutoff, false); }
3326 cube_iterator end() { return cube_iterator(m_solver, m_vars, m_cutoff, true); }
3327 void set_cutoff(unsigned c) noexcept { m_cutoff = c; }
3328 };
3329
3331 cube_generator cubes(expr_vector& vars) { return cube_generator(*this, vars); }
3332
3333 };
3334 inline std::ostream & operator<<(std::ostream & out, solver const & s) { out << Z3_solver_to_string(s.ctx(), s); return out; }
3335
3336 class goal : public object {
3337 Z3_goal m_goal;
3338 void init(Z3_goal s) {
3339 m_goal = s;
3340 Z3_goal_inc_ref(ctx(), s);
3341 }
3342 public:
3343 goal(context & c, bool models=true, bool unsat_cores=false, bool proofs=false):object(c) { init(Z3_mk_goal(c, models, unsat_cores, proofs)); }
3344 goal(context & c, Z3_goal s):object(c) { init(s); }
3345 goal(goal const & s):object(s) { init(s.m_goal); }
3346 ~goal() override { Z3_goal_dec_ref(ctx(), m_goal); }
3347 operator Z3_goal() const { return m_goal; }
3348 goal & operator=(goal const & s) {
3349 Z3_goal_inc_ref(s.ctx(), s.m_goal);
3350 Z3_goal_dec_ref(ctx(), m_goal);
3351 object::operator=(s);
3352 m_goal = s.m_goal;
3353 return *this;
3354 }
3355 void add(expr const & f) { check_context(*this, f); Z3_goal_assert(ctx(), m_goal, f); check_error(); }
3356 void add(expr_vector const& v) { check_context(*this, v); for (unsigned i = 0; i < v.size(); ++i) add(v[i]); }
3357 unsigned size() const { return Z3_goal_size(ctx(), m_goal); }
3358 expr operator[](int i) const { assert(0 <= i); Z3_ast r = Z3_goal_formula(ctx(), m_goal, i); check_error(); return expr(ctx(), r); }
3359 Z3_goal_prec precision() const { return Z3_goal_precision(ctx(), m_goal); }
3360 bool inconsistent() const { return Z3_goal_inconsistent(ctx(), m_goal); }
3361 unsigned depth() const { return Z3_goal_depth(ctx(), m_goal); }
3362 void reset() { Z3_goal_reset(ctx(), m_goal); }
3363 unsigned num_exprs() const { return Z3_goal_num_exprs(ctx(), m_goal); }
3364 bool is_decided_sat() const { return Z3_goal_is_decided_sat(ctx(), m_goal); }
3365 bool is_decided_unsat() const { return Z3_goal_is_decided_unsat(ctx(), m_goal); }
3366 model convert_model(model const & m) const {
3367 check_context(*this, m);
3368 Z3_model new_m = Z3_goal_convert_model(ctx(), m_goal, m);
3369 check_error();
3370 return model(ctx(), new_m);
3371 }
3373 Z3_model new_m = Z3_goal_convert_model(ctx(), m_goal, 0);
3374 check_error();
3375 return model(ctx(), new_m);
3376 }
3377 expr as_expr() const {
3378 unsigned n = size();
3379 if (n == 0)
3380 return ctx().bool_val(true);
3381 else if (n == 1)
3382 return operator[](0u);
3383 else {
3384 array<Z3_ast> args(n);
3385 for (unsigned i = 0; i < n; ++i)
3386 args[i] = operator[](i);
3387 return expr(ctx(), Z3_mk_and(ctx(), n, args.ptr()));
3388 }
3389 }
3390 std::string dimacs(bool include_names = true) const { return std::string(Z3_goal_to_dimacs_string(ctx(), m_goal, include_names)); }
3391 friend std::ostream & operator<<(std::ostream & out, goal const & g);
3392 };
3393 inline std::ostream & operator<<(std::ostream & out, goal const & g) { out << Z3_goal_to_string(g.ctx(), g); return out; }
3394
3395 class apply_result : public object {
3396 Z3_apply_result m_apply_result;
3397 void init(Z3_apply_result s) {
3398 m_apply_result = s;
3400 }
3401 public:
3402 apply_result(context & c, Z3_apply_result s):object(c) { init(s); }
3403 apply_result(apply_result const & s):object(s) { init(s.m_apply_result); }
3404 ~apply_result() override { Z3_apply_result_dec_ref(ctx(), m_apply_result); }
3405 operator Z3_apply_result() const { return m_apply_result; }
3407 Z3_apply_result_inc_ref(s.ctx(), s.m_apply_result);
3408 Z3_apply_result_dec_ref(ctx(), m_apply_result);
3409 object::operator=(s);
3410 m_apply_result = s.m_apply_result;
3411 return *this;
3412 }
3413 unsigned size() const { return Z3_apply_result_get_num_subgoals(ctx(), m_apply_result); }
3414 goal operator[](int i) const { assert(0 <= i); Z3_goal r = Z3_apply_result_get_subgoal(ctx(), m_apply_result, i); check_error(); return goal(ctx(), r); }
3415 friend std::ostream & operator<<(std::ostream & out, apply_result const & r);
3416 };
3417 inline std::ostream & operator<<(std::ostream & out, apply_result const & r) { out << Z3_apply_result_to_string(r.ctx(), r); return out; }
3418
3419 class tactic : public object {
3420 Z3_tactic m_tactic;
3421 void init(Z3_tactic s) {
3422 m_tactic = s;
3423 Z3_tactic_inc_ref(ctx(), s);
3424 }
3425 public:
3426 tactic(context & c, char const * name):object(c) { Z3_tactic r = Z3_mk_tactic(c, name); check_error(); init(r); }
3427 tactic(context & c, Z3_tactic s):object(c) { init(s); }
3428 tactic(tactic const & s):object(s) { init(s.m_tactic); }
3429 ~tactic() override { Z3_tactic_dec_ref(ctx(), m_tactic); }
3430 operator Z3_tactic() const { return m_tactic; }
3431 tactic & operator=(tactic const & s) {
3432 Z3_tactic_inc_ref(s.ctx(), s.m_tactic);
3433 Z3_tactic_dec_ref(ctx(), m_tactic);
3434 object::operator=(s);
3435 m_tactic = s.m_tactic;
3436 return *this;
3437 }
3438 solver mk_solver() const { Z3_solver r = Z3_mk_solver_from_tactic(ctx(), m_tactic); check_error(); return solver(ctx(), r); }
3439 apply_result apply(goal const & g) const {
3440 check_context(*this, g);
3441 Z3_apply_result r = Z3_tactic_apply(ctx(), m_tactic, g);
3442 check_error();
3443 return apply_result(ctx(), r);
3444 }
3445 apply_result operator()(goal const & g) const {
3446 return apply(g);
3447 }
3448 std::string help() const { char const * r = Z3_tactic_get_help(ctx(), m_tactic); check_error(); return r; }
3449 friend tactic operator&(tactic const & t1, tactic const & t2);
3450 friend tactic operator|(tactic const & t1, tactic const & t2);
3451 friend tactic repeat(tactic const & t, unsigned max);
3452 friend tactic with(tactic const & t, params const & p);
3453 friend tactic try_for(tactic const & t, unsigned ms);
3454 friend tactic par_or(unsigned n, tactic const* tactics);
3455 friend tactic par_and_then(tactic const& t1, tactic const& t2);
3457 };
3458
3459 inline tactic operator&(tactic const & t1, tactic const & t2) {
3460 check_context(t1, t2);
3461 Z3_tactic r = Z3_tactic_and_then(t1.ctx(), t1, t2);
3462 t1.check_error();
3463 return tactic(t1.ctx(), r);
3464 }
3465
3466 inline tactic operator|(tactic const & t1, tactic const & t2) {
3467 check_context(t1, t2);
3468 Z3_tactic r = Z3_tactic_or_else(t1.ctx(), t1, t2);
3469 t1.check_error();
3470 return tactic(t1.ctx(), r);
3471 }
3472
3473 inline tactic repeat(tactic const & t, unsigned max=UINT_MAX) {
3474 Z3_tactic r = Z3_tactic_repeat(t.ctx(), t, max);
3475 t.check_error();
3476 return tactic(t.ctx(), r);
3477 }
3478
3479 inline tactic with(tactic const & t, params const & p) {
3480 Z3_tactic r = Z3_tactic_using_params(t.ctx(), t, p);
3481 t.check_error();
3482 return tactic(t.ctx(), r);
3483 }
3484 inline tactic try_for(tactic const & t, unsigned ms) {
3485 Z3_tactic r = Z3_tactic_try_for(t.ctx(), t, ms);
3486 t.check_error();
3487 return tactic(t.ctx(), r);
3488 }
3489 inline tactic par_or(unsigned n, tactic const* tactics) {
3490 if (n == 0) {
3491 Z3_THROW(exception("a non-zero number of tactics need to be passed to par_or"));
3492 }
3493 array<Z3_tactic> buffer(n);
3494 for (unsigned i = 0; i < n; ++i) buffer[i] = tactics[i];
3495 return tactic(tactics[0u].ctx(), Z3_tactic_par_or(tactics[0u].ctx(), n, buffer.ptr()));
3496 }
3497
3498 inline tactic par_and_then(tactic const & t1, tactic const & t2) {
3499 check_context(t1, t2);
3500 Z3_tactic r = Z3_tactic_par_and_then(t1.ctx(), t1, t2);
3501 t1.check_error();
3502 return tactic(t1.ctx(), r);
3503 }
3504
3505 class simplifier : public object {
3506 Z3_simplifier m_simplifier;
3507 void init(Z3_simplifier s) {
3508 m_simplifier = s;
3510 }
3511 public:
3512 simplifier(context & c, char const * name):object(c) { Z3_simplifier r = Z3_mk_simplifier(c, name); check_error(); init(r); }
3513 simplifier(context & c, Z3_simplifier s):object(c) { init(s); }
3514 simplifier(simplifier const & s):object(s) { init(s.m_simplifier); }
3515 ~simplifier() override { Z3_simplifier_dec_ref(ctx(), m_simplifier); }
3516 operator Z3_simplifier() const { return m_simplifier; }
3518 Z3_simplifier_inc_ref(s.ctx(), s.m_simplifier);
3519 Z3_simplifier_dec_ref(ctx(), m_simplifier);
3520 object::operator=(s);
3521 m_simplifier = s.m_simplifier;
3522 return *this;
3523 }
3524 std::string help() const { char const * r = Z3_simplifier_get_help(ctx(), m_simplifier); check_error(); return r; }
3525 friend simplifier operator&(simplifier const & t1, simplifier const & t2);
3526 friend simplifier with(simplifier const & t, params const & p);
3528 };
3529
3530 inline solver::solver(solver const& s, simplifier const& simp):object(s) { init(Z3_solver_add_simplifier(s.ctx(), s, simp)); }
3531
3532
3533 inline simplifier operator&(simplifier const & t1, simplifier const & t2) {
3534 check_context(t1, t2);
3535 Z3_simplifier r = Z3_simplifier_and_then(t1.ctx(), t1, t2);
3536 t1.check_error();
3537 return simplifier(t1.ctx(), r);
3538 }
3539
3540 inline simplifier with(simplifier const & t, params const & p) {
3541 Z3_simplifier r = Z3_simplifier_using_params(t.ctx(), t, p);
3542 t.check_error();
3543 return simplifier(t.ctx(), r);
3544 }
3545
3546 class probe : public object {
3547 Z3_probe m_probe;
3548 void init(Z3_probe s) {
3549 m_probe = s;
3550 Z3_probe_inc_ref(ctx(), s);
3551 }
3552 public:
3553 probe(context & c, char const * name):object(c) { Z3_probe r = Z3_mk_probe(c, name); check_error(); init(r); }
3554 probe(context & c, double val):object(c) { Z3_probe r = Z3_probe_const(c, val); check_error(); init(r); }
3555 probe(context & c, Z3_probe s):object(c) { init(s); }
3556 probe(probe const & s):object(s) { init(s.m_probe); }
3557 ~probe() override { Z3_probe_dec_ref(ctx(), m_probe); }
3558 operator Z3_probe() const { return m_probe; }
3559 probe & operator=(probe const & s) {
3560 Z3_probe_inc_ref(s.ctx(), s.m_probe);
3561 Z3_probe_dec_ref(ctx(), m_probe);
3562 object::operator=(s);
3563 m_probe = s.m_probe;
3564 return *this;
3565 }
3566 double apply(goal const & g) const { double r = Z3_probe_apply(ctx(), m_probe, g); check_error(); return r; }
3567 double operator()(goal const & g) const { return apply(g); }
3568 friend probe operator<=(probe const & p1, probe const & p2);
3569 friend probe operator<=(probe const & p1, double p2);
3570 friend probe operator<=(double p1, probe const & p2);
3571 friend probe operator>=(probe const & p1, probe const & p2);
3572 friend probe operator>=(probe const & p1, double p2);
3573 friend probe operator>=(double p1, probe const & p2);
3574 friend probe operator<(probe const & p1, probe const & p2);
3575 friend probe operator<(probe const & p1, double p2);
3576 friend probe operator<(double p1, probe const & p2);
3577 friend probe operator>(probe const & p1, probe const & p2);
3578 friend probe operator>(probe const & p1, double p2);
3579 friend probe operator>(double p1, probe const & p2);
3580 friend probe operator==(probe const & p1, probe const & p2);
3581 friend probe operator==(probe const & p1, double p2);
3582 friend probe operator==(double p1, probe const & p2);
3583 friend probe operator&&(probe const & p1, probe const & p2);
3584 friend probe operator||(probe const & p1, probe const & p2);
3585 friend probe operator!(probe const & p);
3586 };
3587
3588 inline probe operator<=(probe const & p1, probe const & p2) {
3589 check_context(p1, p2); Z3_probe r = Z3_probe_le(p1.ctx(), p1, p2); p1.check_error(); return probe(p1.ctx(), r);
3590 }
3591 inline probe operator<=(probe const & p1, double p2) { return p1 <= probe(p1.ctx(), p2); }
3592 inline probe operator<=(double p1, probe const & p2) { return probe(p2.ctx(), p1) <= p2; }
3593 inline probe operator>=(probe const & p1, probe const & p2) {
3594 check_context(p1, p2); Z3_probe r = Z3_probe_ge(p1.ctx(), p1, p2); p1.check_error(); return probe(p1.ctx(), r);
3595 }
3596 inline probe operator>=(probe const & p1, double p2) { return p1 >= probe(p1.ctx(), p2); }
3597 inline probe operator>=(double p1, probe const & p2) { return probe(p2.ctx(), p1) >= p2; }
3598 inline probe operator<(probe const & p1, probe const & p2) {
3599 check_context(p1, p2); Z3_probe r = Z3_probe_lt(p1.ctx(), p1, p2); p1.check_error(); return probe(p1.ctx(), r);
3600 }
3601 inline probe operator<(probe const & p1, double p2) { return p1 < probe(p1.ctx(), p2); }
3602 inline probe operator<(double p1, probe const & p2) { return probe(p2.ctx(), p1) < p2; }
3603 inline probe operator>(probe const & p1, probe const & p2) {
3604 check_context(p1, p2); Z3_probe r = Z3_probe_gt(p1.ctx(), p1, p2); p1.check_error(); return probe(p1.ctx(), r);
3605 }
3606 inline probe operator>(probe const & p1, double p2) { return p1 > probe(p1.ctx(), p2); }
3607 inline probe operator>(double p1, probe const & p2) { return probe(p2.ctx(), p1) > p2; }
3608 inline probe operator==(probe const & p1, probe const & p2) {
3609 check_context(p1, p2); Z3_probe r = Z3_probe_eq(p1.ctx(), p1, p2); p1.check_error(); return probe(p1.ctx(), r);
3610 }
3611 inline probe operator==(probe const & p1, double p2) { return p1 == probe(p1.ctx(), p2); }
3612 inline probe operator==(double p1, probe const & p2) { return probe(p2.ctx(), p1) == p2; }
3613 inline probe operator&&(probe const & p1, probe const & p2) {
3614 check_context(p1, p2); Z3_probe r = Z3_probe_and(p1.ctx(), p1, p2); p1.check_error(); return probe(p1.ctx(), r);
3615 }
3616 inline probe operator||(probe const & p1, probe const & p2) {
3617 check_context(p1, p2); Z3_probe r = Z3_probe_or(p1.ctx(), p1, p2); p1.check_error(); return probe(p1.ctx(), r);
3618 }
3619 inline probe operator!(probe const & p) {
3620 Z3_probe r = Z3_probe_not(p.ctx(), p); p.check_error(); return probe(p.ctx(), r);
3621 }
3622
3623 class optimize : public object {
3624 Z3_optimize m_opt;
3625
3626 public:
3627 struct translate {};
3628 class handle final {
3629 unsigned m_h;
3630 public:
3631 handle(unsigned h): m_h(h) {}
3632 unsigned h() const { return m_h; }
3633 };
3635 optimize(context & c, optimize const& src, translate): object(c) {
3636 Z3_optimize o = Z3_optimize_translate(src.ctx(), src, c);
3637 check_error();
3638 m_opt = o;
3639 Z3_optimize_inc_ref(c, m_opt);
3640 }
3641 optimize(optimize const & o):object(o), m_opt(o.m_opt) {
3642 Z3_optimize_inc_ref(o.ctx(), o.m_opt);
3643 }
3645 m_opt = Z3_mk_optimize(c);
3646 Z3_optimize_inc_ref(c, m_opt);
3647 add(expr_vector(c, src.assertions()));
3648 expr_vector v(c, src.objectives());
3649 for (expr_vector::iterator it = v.begin(); it != v.end(); ++it) minimize(*it);
3650 }
3652 Z3_optimize_inc_ref(o.ctx(), o.m_opt);
3653 Z3_optimize_dec_ref(ctx(), m_opt);
3654 m_opt = o.m_opt;
3655 object::operator=(o);
3656 return *this;
3657 }
3658 ~optimize() override { Z3_optimize_dec_ref(ctx(), m_opt); }
3659 operator Z3_optimize() const { return m_opt; }
3660 void add(expr const& e) {
3661 assert(e.is_bool());
3662 Z3_optimize_assert(ctx(), m_opt, e);
3663 }
3664 void add(expr_vector const& es) {
3665 for (expr_vector::iterator it = es.begin(); it != es.end(); ++it) add(*it);
3666 }
3667 void add(expr const& e, expr const& t) {
3668 assert(e.is_bool());
3669 Z3_optimize_assert_and_track(ctx(), m_opt, e, t);
3670 }
3671 void add(expr const& e, char const* p) {
3672 assert(e.is_bool());
3673 add(e, ctx().bool_const(p));
3674 }
3675 handle add_soft(expr const& e, unsigned weight) {
3676 assert(e.is_bool());
3677 auto str = std::to_string(weight);
3678 return handle(Z3_optimize_assert_soft(ctx(), m_opt, e, str.c_str(), 0));
3679 }
3680 handle add_soft(expr const& e, char const* weight) {
3681 assert(e.is_bool());
3682 return handle(Z3_optimize_assert_soft(ctx(), m_opt, e, weight, 0));
3683 }
3684 handle add(expr const& e, unsigned weight) {
3685 return add_soft(e, weight);
3686 }
3687 void set_initial_value(expr const& var, expr const& value) {
3688 Z3_optimize_set_initial_value(ctx(), m_opt, var, value);
3689 check_error();
3690 }
3691 void set_initial_value(expr const& var, int i) {
3692 set_initial_value(var, ctx().num_val(i, var.get_sort()));
3693 }
3694 void set_initial_value(expr const& var, bool b) {
3695 set_initial_value(var, ctx().bool_val(b));
3696 }
3697
3699 return handle(Z3_optimize_maximize(ctx(), m_opt, e));
3700 }
3702 return handle(Z3_optimize_minimize(ctx(), m_opt, e));
3703 }
3704 void push() {
3705 Z3_optimize_push(ctx(), m_opt);
3706 }
3707 void pop() {
3708 Z3_optimize_pop(ctx(), m_opt);
3709 }
3712 unsigned n = asms.size();
3713 array<Z3_ast> _asms(n);
3714 for (unsigned i = 0; i < n; ++i) {
3715 check_context(*this, asms[i]);
3716 _asms[i] = asms[i];
3717 }
3718 Z3_lbool r = Z3_optimize_check(ctx(), m_opt, n, _asms.ptr());
3719 check_error();
3720 return to_check_result(r);
3721 }
3722 model get_model() const { Z3_model m = Z3_optimize_get_model(ctx(), m_opt); check_error(); return model(ctx(), m); }
3723 expr_vector unsat_core() const { Z3_ast_vector r = Z3_optimize_get_unsat_core(ctx(), m_opt); check_error(); return expr_vector(ctx(), r); }
3724 void set(params const & p) { Z3_optimize_set_params(ctx(), m_opt, p); check_error(); }
3725 expr lower(handle const& h) {
3726 Z3_ast r = Z3_optimize_get_lower(ctx(), m_opt, h.h());
3727 check_error();
3728 return expr(ctx(), r);
3729 }
3731 Z3_ast_vector r = Z3_optimize_get_lower_as_vector(ctx(), m_opt, h.h());
3732 check_error();
3733 return expr_vector(ctx(), r);
3734 }
3735 expr upper(handle const& h) {
3736 Z3_ast r = Z3_optimize_get_upper(ctx(), m_opt, h.h());
3737 check_error();
3738 return expr(ctx(), r);
3739 }
3741 Z3_ast_vector r = Z3_optimize_get_upper_as_vector(ctx(), m_opt, h.h());
3742 check_error();
3743 return expr_vector(ctx(), r);
3744 }
3745 expr_vector assertions() const { Z3_ast_vector r = Z3_optimize_get_assertions(ctx(), m_opt); check_error(); return expr_vector(ctx(), r); }
3746 expr_vector objectives() const { Z3_ast_vector r = Z3_optimize_get_objectives(ctx(), m_opt); check_error(); return expr_vector(ctx(), r); }
3747 stats statistics() const { Z3_stats r = Z3_optimize_get_statistics(ctx(), m_opt); check_error(); return stats(ctx(), r); }
3748 friend std::ostream & operator<<(std::ostream & out, optimize const & s);
3749 void from_file(char const* filename) { Z3_optimize_from_file(ctx(), m_opt, filename); check_error(); }
3750 void from_string(char const* constraints) { Z3_optimize_from_string(ctx(), m_opt, constraints); check_error(); }
3751 std::string help() const { char const * r = Z3_optimize_get_help(ctx(), m_opt); check_error(); return r; }
3752 };
3753 inline std::ostream & operator<<(std::ostream & out, optimize const & s) { out << Z3_optimize_to_string(s.ctx(), s.m_opt); return out; }
3754
3755 class fixedpoint : public object {
3756 Z3_fixedpoint m_fp;
3757 public:
3759 fixedpoint(fixedpoint const & o):object(o), m_fp(o.m_fp) { Z3_fixedpoint_inc_ref(ctx(), m_fp); }
3760 ~fixedpoint() override { Z3_fixedpoint_dec_ref(ctx(), m_fp); }
3762 Z3_fixedpoint_inc_ref(o.ctx(), o.m_fp);
3763 Z3_fixedpoint_dec_ref(ctx(), m_fp);
3764 m_fp = o.m_fp;
3765 object::operator=(o);
3766 return *this;
3767 }
3768 operator Z3_fixedpoint() const { return m_fp; }
3769 expr_vector from_string(char const* s) {
3770 Z3_ast_vector r = Z3_fixedpoint_from_string(ctx(), m_fp, s);
3771 check_error();
3772 return expr_vector(ctx(), r);
3773 }
3774 expr_vector from_file(char const* s) {
3775 Z3_ast_vector r = Z3_fixedpoint_from_file(ctx(), m_fp, s);
3776 check_error();
3777 return expr_vector(ctx(), r);
3778 }
3779 void add_rule(expr& rule, symbol const& name) { Z3_fixedpoint_add_rule(ctx(), m_fp, rule, name); check_error(); }
3780 void add_fact(func_decl& f, unsigned * args) { Z3_fixedpoint_add_fact(ctx(), m_fp, f, f.arity(), args); check_error(); }
3783 array<Z3_func_decl> rs(relations);
3784 Z3_lbool r = Z3_fixedpoint_query_relations(ctx(), m_fp, rs.size(), rs.ptr());
3785 check_error();
3786 return to_check_result(r);
3787 }
3788 expr get_answer() { Z3_ast r = Z3_fixedpoint_get_answer(ctx(), m_fp); check_error(); return expr(ctx(), r); }
3789 std::string reason_unknown() { return Z3_fixedpoint_get_reason_unknown(ctx(), m_fp); }
3790 void update_rule(expr& rule, symbol const& name) { Z3_fixedpoint_update_rule(ctx(), m_fp, rule, name); check_error(); }
3791 unsigned get_num_levels(func_decl& p) { unsigned r = Z3_fixedpoint_get_num_levels(ctx(), m_fp, p); check_error(); return r; }
3793 Z3_ast r = Z3_fixedpoint_get_cover_delta(ctx(), m_fp, level, p);
3794 check_error();
3795 return expr(ctx(), r);
3796 }
3797 void add_cover(int level, func_decl& p, expr& property) { Z3_fixedpoint_add_cover(ctx(), m_fp, level, p, property); check_error(); }
3798 stats statistics() const { Z3_stats r = Z3_fixedpoint_get_statistics(ctx(), m_fp); check_error(); return stats(ctx(), r); }
3800 expr_vector assertions() const { Z3_ast_vector r = Z3_fixedpoint_get_assertions(ctx(), m_fp); check_error(); return expr_vector(ctx(), r); }
3801 expr_vector rules() const { Z3_ast_vector r = Z3_fixedpoint_get_rules(ctx(), m_fp); check_error(); return expr_vector(ctx(), r); }
3802 void set(params const & p) { Z3_fixedpoint_set_params(ctx(), m_fp, p); check_error(); }
3803 std::string help() const { return Z3_fixedpoint_get_help(ctx(), m_fp); }
3805 std::string to_string() { return Z3_fixedpoint_to_string(ctx(), m_fp, 0, 0); }
3806 std::string to_string(expr_vector const& queries) {
3807 array<Z3_ast> qs(queries);
3808 return Z3_fixedpoint_to_string(ctx(), m_fp, qs.size(), qs.ptr());
3809 }
3810 };
3811 inline std::ostream & operator<<(std::ostream & out, fixedpoint const & f) { return out << Z3_fixedpoint_to_string(f.ctx(), f, 0, 0); }
3812
3813 inline tactic fail_if(probe const & p) {
3814 Z3_tactic r = Z3_tactic_fail_if(p.ctx(), p);
3815 p.check_error();
3816 return tactic(p.ctx(), r);
3817 }
3818 inline tactic when(probe const & p, tactic const & t) {
3819 check_context(p, t);
3820 Z3_tactic r = Z3_tactic_when(t.ctx(), p, t);
3821 t.check_error();
3822 return tactic(t.ctx(), r);
3823 }
3824 inline tactic cond(probe const & p, tactic const & t1, tactic const & t2) {
3825 check_context(p, t1); check_context(p, t2);
3826 Z3_tactic r = Z3_tactic_cond(t1.ctx(), p, t1, t2);
3827 t1.check_error();
3828 return tactic(t1.ctx(), r);
3829 }
3830
3831 inline symbol context::str_symbol(char const * s) { Z3_symbol r = Z3_mk_string_symbol(m_ctx, s); check_error(); return symbol(*this, r); }
3832 inline symbol context::int_symbol(int n) { Z3_symbol r = Z3_mk_int_symbol(m_ctx, n); check_error(); return symbol(*this, r); }
3833
3834 inline sort context::bool_sort() { Z3_sort s = Z3_mk_bool_sort(m_ctx); check_error(); return sort(*this, s); }
3835 inline sort context::int_sort() { Z3_sort s = Z3_mk_int_sort(m_ctx); check_error(); return sort(*this, s); }
3836 inline sort context::real_sort() { Z3_sort s = Z3_mk_real_sort(m_ctx); check_error(); return sort(*this, s); }
3837 inline sort context::bv_sort(unsigned sz) { Z3_sort s = Z3_mk_bv_sort(m_ctx, sz); check_error(); return sort(*this, s); }
3838 inline sort context::string_sort() { Z3_sort s = Z3_mk_string_sort(m_ctx); check_error(); return sort(*this, s); }
3839 inline sort context::char_sort() { Z3_sort s = Z3_mk_char_sort(m_ctx); check_error(); return sort(*this, s); }
3840 inline sort context::seq_sort(sort& s) { Z3_sort r = Z3_mk_seq_sort(m_ctx, s); check_error(); return sort(*this, r); }
3841 inline sort context::re_sort(sort& s) { Z3_sort r = Z3_mk_re_sort(m_ctx, s); check_error(); return sort(*this, r); }
3842 inline sort context::finite_set_sort(sort& s) { Z3_sort r = Z3_mk_finite_set_sort(m_ctx, s); check_error(); return sort(*this, r); }
3843 inline sort context::fpa_sort(unsigned ebits, unsigned sbits) { Z3_sort s = Z3_mk_fpa_sort(m_ctx, ebits, sbits); check_error(); return sort(*this, s); }
3844
3845 template<>
3846 inline sort context::fpa_sort<16>() { return fpa_sort(5, 11); }
3847
3848 template<>
3849 inline sort context::fpa_sort<32>() { return fpa_sort(8, 24); }
3850
3851 template<>
3852 inline sort context::fpa_sort<64>() { return fpa_sort(11, 53); }
3853
3854 template<>
3855 inline sort context::fpa_sort<128>() { return fpa_sort(15, 113); }
3856
3857 inline sort context::fpa_rounding_mode_sort() { Z3_sort r = Z3_mk_fpa_rounding_mode_sort(m_ctx); check_error(); return sort(*this, r); }
3858
3859 inline sort context::array_sort(sort d, sort r) { Z3_sort s = Z3_mk_array_sort(m_ctx, d, r); check_error(); return sort(*this, s); }
3861 array<Z3_sort> dom(d);
3862 Z3_sort s = Z3_mk_array_sort_n(m_ctx, dom.size(), dom.ptr(), r); check_error(); return sort(*this, s);
3863 }
3864 inline sort context::enumeration_sort(char const * name, unsigned n, char const * const * enum_names, func_decl_vector & cs, func_decl_vector & ts) {
3865 array<Z3_symbol> _enum_names(n);
3866 for (unsigned i = 0; i < n; ++i) { _enum_names[i] = Z3_mk_string_symbol(*this, enum_names[i]); }
3867 array<Z3_func_decl> _cs(n);
3868 array<Z3_func_decl> _ts(n);
3869 Z3_symbol _name = Z3_mk_string_symbol(*this, name);
3870 sort s = to_sort(*this, Z3_mk_enumeration_sort(*this, _name, n, _enum_names.ptr(), _cs.ptr(), _ts.ptr()));
3871 check_error();
3872 for (unsigned i = 0; i < n; ++i) { cs.push_back(func_decl(*this, _cs[i])); ts.push_back(func_decl(*this, _ts[i])); }
3873 return s;
3874 }
3875 inline func_decl context::tuple_sort(char const * name, unsigned n, char const * const * names, sort const* sorts, func_decl_vector & projs) {
3876 array<Z3_symbol> _names(n);
3877 array<Z3_sort> _sorts(n);
3878 for (unsigned i = 0; i < n; ++i) { _names[i] = Z3_mk_string_symbol(*this, names[i]); _sorts[i] = sorts[i]; }
3879 array<Z3_func_decl> _projs(n);
3880 Z3_symbol _name = Z3_mk_string_symbol(*this, name);
3881 Z3_func_decl tuple;
3882 sort _ignore_s = to_sort(*this, Z3_mk_tuple_sort(*this, _name, n, _names.ptr(), _sorts.ptr(), &tuple, _projs.ptr()));
3883 check_error();
3884 for (unsigned i = 0; i < n; ++i) { projs.push_back(func_decl(*this, _projs[i])); }
3885 return func_decl(*this, tuple);
3886 }
3887
3889 context& ctx;
3890 Z3_constructor_list clist;
3891 public:
3892 constructor_list(constructors const& cs);
3894 operator Z3_constructor_list() const { return clist; }
3895 };
3896
3898 friend class constructor_list;
3899 context& ctx;
3900 std::vector<Z3_constructor> cons;
3901 std::vector<unsigned> num_fields;
3902 public:
3903 constructors(context& ctx): ctx(ctx) {}
3904
3906 for (auto con : cons)
3907 Z3_del_constructor(ctx, con);
3908 }
3909
3910 void add(symbol const& name, symbol const& rec, unsigned n, symbol const* names, sort const* fields) {
3911 array<unsigned> sort_refs(n);
3912 array<Z3_sort> sorts(n);
3913 array<Z3_symbol> _names(n);
3914 for (unsigned i = 0; i < n; ++i) sorts[i] = fields[i], _names[i] = names[i];
3915 cons.push_back(Z3_mk_constructor(ctx, name, rec, n, _names.ptr(), sorts.ptr(), sort_refs.ptr()));
3916 num_fields.push_back(n);
3917 }
3918
3919 Z3_constructor operator[](unsigned i) const { return cons[i]; }
3920
3921 unsigned size() const { return (unsigned)cons.size(); }
3922
3923 void query(unsigned i, func_decl& constructor, func_decl& test, func_decl_vector& accs) {
3924 Z3_func_decl _constructor;
3925 Z3_func_decl _test;
3926 array<Z3_func_decl> accessors(num_fields[i]);
3927 accs.resize(0);
3929 cons[i],
3930 num_fields[i],
3931 &_constructor,
3932 &_test,
3933 accessors.ptr());
3934 constructor = func_decl(ctx, _constructor);
3935
3936 test = func_decl(ctx, _test);
3937 for (unsigned j = 0; j < num_fields[i]; ++j)
3938 accs.push_back(func_decl(ctx, accessors[j]));
3939 }
3940 };
3941
3942 inline constructor_list::constructor_list(constructors const& cs): ctx(cs.ctx) {
3943 array<Z3_constructor> cons(cs.size());
3944 for (unsigned i = 0; i < cs.size(); ++i)
3945 cons[i] = cs[i];
3946 clist = Z3_mk_constructor_list(ctx, cs.size(), cons.ptr());
3947 }
3948
3949 inline sort context::datatype(symbol const& name, constructors const& cs) {
3950 array<Z3_constructor> _cs(cs.size());
3951 for (unsigned i = 0; i < cs.size(); ++i) _cs[i] = cs[i];
3952 Z3_sort s = Z3_mk_datatype(*this, name, cs.size(), _cs.ptr());
3953 check_error();
3954 return sort(*this, s);
3955 }
3956
3957 inline sort context::datatype(symbol const &name, sort_vector const& params, constructors const &cs) {
3958 array<Z3_sort> _params(params);
3959 array<Z3_constructor> _cs(cs.size());
3960 for (unsigned i = 0; i < cs.size(); ++i)
3961 _cs[i] = cs[i];
3962 Z3_sort s = Z3_mk_polymorphic_datatype(*this, name, _params.size(), _params.ptr(), cs.size(), _cs.ptr());
3963 check_error();
3964 return sort(*this, s);
3965 }
3966
3968 unsigned n, symbol const* names,
3969 constructor_list *const* cons) {
3970 sort_vector result(*this);
3971 array<Z3_symbol> _names(n);
3972 array<Z3_sort> _sorts(n);
3974 for (unsigned i = 0; i < n; ++i)
3975 _names[i] = names[i], _cons[i] = *cons[i];
3976 Z3_mk_datatypes(*this, n, _names.ptr(), _sorts.ptr(), _cons.ptr());
3977 for (unsigned i = 0; i < n; ++i)
3978 result.push_back(sort(*this, _sorts[i]));
3979 return result;
3980 }
3981
3982
3983 inline sort context::datatype_sort(symbol const& name) {
3984 Z3_sort s = Z3_mk_datatype_sort(*this, name, 0, nullptr);
3985 check_error();
3986 return sort(*this, s);
3987 }
3988
3990 array<Z3_sort> _params(params);
3991 Z3_sort s = Z3_mk_datatype_sort(*this, name, _params.size(), _params.ptr());
3992 check_error();
3993 return sort(*this, s);
3994 }
3995
3996
3997 inline sort context::uninterpreted_sort(char const* name) {
3998 Z3_symbol _name = Z3_mk_string_symbol(*this, name);
3999 return to_sort(*this, Z3_mk_uninterpreted_sort(*this, _name));
4000 }
4002 return to_sort(*this, Z3_mk_uninterpreted_sort(*this, name));
4003 }
4004
4005 inline func_decl context::function(symbol const & name, unsigned arity, sort const * domain, sort const & range) {
4006 array<Z3_sort> args(arity);
4007 for (unsigned i = 0; i < arity; ++i) {
4008 check_context(domain[i], range);
4009 args[i] = domain[i];
4010 }
4011 Z3_func_decl f = Z3_mk_func_decl(m_ctx, name, arity, args.ptr(), range);
4012 check_error();
4013 return func_decl(*this, f);
4014 }
4015
4016 inline func_decl context::function(char const * name, unsigned arity, sort const * domain, sort const & range) {
4017 return function(range.ctx().str_symbol(name), arity, domain, range);
4018 }
4019
4020 inline func_decl context::function(symbol const& name, sort_vector const& domain, sort const& range) {
4021 array<Z3_sort> args(domain.size());
4022 for (unsigned i = 0; i < domain.size(); ++i) {
4023 check_context(domain[i], range);
4024 args[i] = domain[i];
4025 }
4026 Z3_func_decl f = Z3_mk_func_decl(m_ctx, name, domain.size(), args.ptr(), range);
4027 check_error();
4028 return func_decl(*this, f);
4029 }
4030
4031 inline func_decl context::function(char const * name, sort_vector const& domain, sort const& range) {
4032 return function(range.ctx().str_symbol(name), domain, range);
4033 }
4034
4035
4036 inline func_decl context::function(char const * name, sort const & domain, sort const & range) {
4037 check_context(domain, range);
4038 Z3_sort args[1] = { domain };
4039 Z3_func_decl f = Z3_mk_func_decl(m_ctx, str_symbol(name), 1, args, range);
4040 check_error();
4041 return func_decl(*this, f);
4042 }
4043
4044 inline func_decl context::function(char const * name, sort const & d1, sort const & d2, sort const & range) {
4046 Z3_sort args[2] = { d1, d2 };
4047 Z3_func_decl f = Z3_mk_func_decl(m_ctx, str_symbol(name), 2, args, range);
4048 check_error();
4049 return func_decl(*this, f);
4050 }
4051
4052 inline func_decl context::function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & range) {
4054 Z3_sort args[3] = { d1, d2, d3 };
4055 Z3_func_decl f = Z3_mk_func_decl(m_ctx, str_symbol(name), 3, args, range);
4056 check_error();
4057 return func_decl(*this, f);
4058 }
4059
4060 inline func_decl context::function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & d4, sort const & range) {
4062 Z3_sort args[4] = { d1, d2, d3, d4 };
4063 Z3_func_decl f = Z3_mk_func_decl(m_ctx, str_symbol(name), 4, args, range);
4064 check_error();
4065 return func_decl(*this, f);
4066 }
4067
4068 inline func_decl context::function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & d4, sort const & d5, sort const & range) {
4070 Z3_sort args[5] = { d1, d2, d3, d4, d5 };
4071 Z3_func_decl f = Z3_mk_func_decl(m_ctx, str_symbol(name), 5, args, range);
4072 check_error();
4073 return func_decl(*this, f);
4074 }
4075
4076 inline func_decl context::recfun(symbol const & name, unsigned arity, sort const * domain, sort const & range) {
4077 array<Z3_sort> args(arity);
4078 for (unsigned i = 0; i < arity; ++i) {
4079 check_context(domain[i], range);
4080 args[i] = domain[i];
4081 }
4082 Z3_func_decl f = Z3_mk_rec_func_decl(m_ctx, name, arity, args.ptr(), range);
4083 check_error();
4084 return func_decl(*this, f);
4085
4086 }
4087
4088 inline func_decl context::recfun(symbol const & name, sort_vector const& domain, sort const & range) {
4089 check_context(domain, range);
4090 array<Z3_sort> domain1(domain);
4091 Z3_func_decl f = Z3_mk_rec_func_decl(m_ctx, name, domain1.size(), domain1.ptr(), range);
4092 check_error();
4093 return func_decl(*this, f);
4094 }
4095
4096 inline func_decl context::recfun(char const * name, sort_vector const& domain, sort const & range) {
4097 return recfun(str_symbol(name), domain, range);
4098
4099 }
4100
4101 inline func_decl context::recfun(char const * name, unsigned arity, sort const * domain, sort const & range) {
4102 return recfun(str_symbol(name), arity, domain, range);
4103 }
4104
4105 inline func_decl context::recfun(char const * name, sort const& d1, sort const & range) {
4106 return recfun(str_symbol(name), 1, &d1, range);
4107 }
4108
4109 inline func_decl context::recfun(char const * name, sort const& d1, sort const& d2, sort const & range) {
4110 sort dom[2] = { d1, d2 };
4111 return recfun(str_symbol(name), 2, dom, range);
4112 }
4113
4114 inline void context::recdef(func_decl f, expr_vector const& args, expr const& body) {
4115 check_context(f, args); check_context(f, body);
4116 array<Z3_ast> vars(args);
4117 Z3_add_rec_def(f.ctx(), f, vars.size(), vars.ptr(), body);
4118 }
4119
4120 inline func_decl context::user_propagate_function(symbol const& name, sort_vector const& domain, sort const& range) {
4121 check_context(domain, range);
4122 array<Z3_sort> domain1(domain);
4123 Z3_func_decl f = Z3_solver_propagate_declare(range.ctx(), name, domain1.size(), domain1.ptr(), range);
4124 check_error();
4125 return func_decl(*this, f);
4126 }
4127
4128 inline expr context::constant(symbol const & name, sort const & s) {
4129 Z3_ast r = Z3_mk_const(m_ctx, name, s);
4130 check_error();
4131 return expr(*this, r);
4132 }
4133 inline expr context::constant(char const * name, sort const & s) { return constant(str_symbol(name), s); }
4134 inline expr context::variable(unsigned idx, sort const& s) {
4135 Z3_ast r = Z3_mk_bound(m_ctx, idx, s);
4136 check_error();
4137 return expr(*this, r);
4138 }
4139 inline expr context::bool_const(char const * name) { return constant(name, bool_sort()); }
4140 inline expr context::int_const(char const * name) { return constant(name, int_sort()); }
4141 inline expr context::real_const(char const * name) { return constant(name, real_sort()); }
4142 inline expr context::string_const(char const * name) { return constant(name, string_sort()); }
4143 inline expr context::bv_const(char const * name, unsigned sz) { return constant(name, bv_sort(sz)); }
4144 inline expr context::fpa_const(char const * name, unsigned ebits, unsigned sbits) { return constant(name, fpa_sort(ebits, sbits)); }
4145
4146 template<size_t precision>
4147 inline expr context::fpa_const(char const * name) { return constant(name, fpa_sort<precision>()); }
4148
4149 inline void context::set_rounding_mode(rounding_mode rm) { m_rounding_mode = rm; }
4150
4152 switch (m_rounding_mode) {
4153 case RNA: return expr(*this, Z3_mk_fpa_rna(m_ctx));
4154 case RNE: return expr(*this, Z3_mk_fpa_rne(m_ctx));
4155 case RTP: return expr(*this, Z3_mk_fpa_rtp(m_ctx));
4156 case RTN: return expr(*this, Z3_mk_fpa_rtn(m_ctx));
4157 case RTZ: return expr(*this, Z3_mk_fpa_rtz(m_ctx));
4158 }
4159 }
4160
4161 inline expr context::bool_val(bool b) { return b ? expr(*this, Z3_mk_true(m_ctx)) : expr(*this, Z3_mk_false(m_ctx)); }
4162
4163 inline expr context::int_val(int n) { Z3_ast r = Z3_mk_int(m_ctx, n, int_sort()); check_error(); return expr(*this, r); }
4164 inline expr context::int_val(unsigned n) { Z3_ast r = Z3_mk_unsigned_int(m_ctx, n, int_sort()); check_error(); return expr(*this, r); }
4165 inline expr context::int_val(int64_t n) { Z3_ast r = Z3_mk_int64(m_ctx, n, int_sort()); check_error(); return expr(*this, r); }
4166 inline expr context::int_val(uint64_t n) { Z3_ast r = Z3_mk_unsigned_int64(m_ctx, n, int_sort()); check_error(); return expr(*this, r); }
4167 inline expr context::int_val(char const * n) { Z3_ast r = Z3_mk_numeral(m_ctx, n, int_sort()); check_error(); return expr(*this, r); }
4168
4169 inline expr context::real_val(int64_t n, int64_t d) { Z3_ast r = Z3_mk_real_int64(m_ctx, n, d); check_error(); return expr(*this, r); }
4170 inline expr context::real_val(int n) { Z3_ast r = Z3_mk_int(m_ctx, n, real_sort()); check_error(); return expr(*this, r); }
4171 inline expr context::real_val(unsigned n) { Z3_ast r = Z3_mk_unsigned_int(m_ctx, n, real_sort()); check_error(); return expr(*this, r); }
4172 inline expr context::real_val(int64_t n) { Z3_ast r = Z3_mk_int64(m_ctx, n, real_sort()); check_error(); return expr(*this, r); }
4173 inline expr context::real_val(uint64_t n) { Z3_ast r = Z3_mk_unsigned_int64(m_ctx, n, real_sort()); check_error(); return expr(*this, r); }
4174 inline expr context::real_val(char const * n) { Z3_ast r = Z3_mk_numeral(m_ctx, n, real_sort()); check_error(); return expr(*this, r); }
4175
4176 inline expr context::bv_val(int n, unsigned sz) { sort s = bv_sort(sz); Z3_ast r = Z3_mk_int(m_ctx, n, s); check_error(); return expr(*this, r); }
4177 inline expr context::bv_val(unsigned n, unsigned sz) { sort s = bv_sort(sz); Z3_ast r = Z3_mk_unsigned_int(m_ctx, n, s); check_error(); return expr(*this, r); }
4178 inline expr context::bv_val(int64_t n, unsigned sz) { sort s = bv_sort(sz); Z3_ast r = Z3_mk_int64(m_ctx, n, s); check_error(); return expr(*this, r); }
4179 inline expr context::bv_val(uint64_t n, unsigned sz) { sort s = bv_sort(sz); Z3_ast r = Z3_mk_unsigned_int64(m_ctx, n, s); check_error(); return expr(*this, r); }
4180 inline expr context::bv_val(char const * n, unsigned sz) { sort s = bv_sort(sz); Z3_ast r = Z3_mk_numeral(m_ctx, n, s); check_error(); return expr(*this, r); }
4181 inline expr context::bv_val(unsigned n, bool const* bits) {
4182 array<bool> _bits(n);
4183 for (unsigned i = 0; i < n; ++i) _bits[i] = bits[i] ? 1 : 0;
4184 Z3_ast r = Z3_mk_bv_numeral(m_ctx, n, _bits.ptr()); check_error(); return expr(*this, r);
4185 }
4186
4187 inline expr context::fpa_val(double n) { sort s = fpa_sort<64>(); Z3_ast r = Z3_mk_fpa_numeral_double(m_ctx, n, s); check_error(); return expr(*this, r); }
4188 inline expr context::fpa_val(float n) { sort s = fpa_sort<32>(); Z3_ast r = Z3_mk_fpa_numeral_float(m_ctx, n, s); check_error(); return expr(*this, r); }
4189 inline expr context::fpa_nan(sort const & s) { Z3_ast r = Z3_mk_fpa_nan(m_ctx, s); check_error(); return expr(*this, r); }
4190 inline expr context::fpa_inf(sort const & s, bool sgn) { Z3_ast r = Z3_mk_fpa_inf(m_ctx, s, sgn); check_error(); return expr(*this, r); }
4191
4192 inline expr context::string_val(char const* s, unsigned n) { Z3_ast r = Z3_mk_lstring(m_ctx, n, s); check_error(); return expr(*this, r); }
4193 inline expr context::string_val(char const* s) { Z3_ast r = Z3_mk_string(m_ctx, s); check_error(); return expr(*this, r); }
4194 inline expr context::string_val(std::string const& s) { Z3_ast r = Z3_mk_string(m_ctx, s.c_str()); check_error(); return expr(*this, r); }
4195 inline expr context::string_val(std::u32string const& s) { Z3_ast r = Z3_mk_u32string(m_ctx, (unsigned)s.size(), (unsigned const*)s.c_str()); check_error(); return expr(*this, r); }
4196
4197 inline expr context::num_val(int n, sort const & s) { Z3_ast r = Z3_mk_int(m_ctx, n, s); check_error(); return expr(*this, r); }
4198
4199 inline expr func_decl::operator()(unsigned n, expr const * args) const {
4200 array<Z3_ast> _args(n);
4201 for (unsigned i = 0; i < n; ++i) {
4202 check_context(*this, args[i]);
4203 _args[i] = args[i];
4204 }
4205 Z3_ast r = Z3_mk_app(ctx(), *this, n, _args.ptr());
4206 check_error();
4207 return expr(ctx(), r);
4208
4209 }
4210 inline expr func_decl::operator()(expr_vector const& args) const {
4211 array<Z3_ast> _args(args.size());
4212 for (unsigned i = 0; i < args.size(); ++i) {
4213 check_context(*this, args[i]);
4214 _args[i] = args[i];
4215 }
4216 Z3_ast r = Z3_mk_app(ctx(), *this, args.size(), _args.ptr());
4217 check_error();
4218 return expr(ctx(), r);
4219 }
4221 Z3_ast r = Z3_mk_app(ctx(), *this, 0, 0);
4222 ctx().check_error();
4223 return expr(ctx(), r);
4224 }
4225 inline expr func_decl::operator()(expr const & a) const {
4226 check_context(*this, a);
4227 Z3_ast args[1] = { a };
4228 Z3_ast r = Z3_mk_app(ctx(), *this, 1, args);
4229 ctx().check_error();
4230 return expr(ctx(), r);
4231 }
4232 inline expr func_decl::operator()(int a) const {
4233 Z3_ast args[1] = { ctx().num_val(a, domain(0)) };
4234 Z3_ast r = Z3_mk_app(ctx(), *this, 1, args);
4235 ctx().check_error();
4236 return expr(ctx(), r);
4237 }
4238 inline expr func_decl::operator()(expr const & a1, expr const & a2) const {
4239 check_context(*this, a1); check_context(*this, a2);
4240 Z3_ast args[2] = { a1, a2 };
4241 Z3_ast r = Z3_mk_app(ctx(), *this, 2, args);
4242 ctx().check_error();
4243 return expr(ctx(), r);
4244 }
4245 inline expr func_decl::operator()(expr const & a1, int a2) const {
4246 check_context(*this, a1);
4247 Z3_ast args[2] = { a1, ctx().num_val(a2, domain(1)) };
4248 Z3_ast r = Z3_mk_app(ctx(), *this, 2, args);
4249 ctx().check_error();
4250 return expr(ctx(), r);
4251 }
4252 inline expr func_decl::operator()(int a1, expr const & a2) const {
4253 check_context(*this, a2);
4254 Z3_ast args[2] = { ctx().num_val(a1, domain(0)), a2 };
4255 Z3_ast r = Z3_mk_app(ctx(), *this, 2, args);
4256 ctx().check_error();
4257 return expr(ctx(), r);
4258 }
4259 inline expr func_decl::operator()(expr const & a1, expr const & a2, expr const & a3) const {
4260 check_context(*this, a1); check_context(*this, a2); check_context(*this, a3);
4261 Z3_ast args[3] = { a1, a2, a3 };
4262 Z3_ast r = Z3_mk_app(ctx(), *this, 3, args);
4263 ctx().check_error();
4264 return expr(ctx(), r);
4265 }
4266 inline expr func_decl::operator()(expr const & a1, expr const & a2, expr const & a3, expr const & a4) const {
4267 check_context(*this, a1); check_context(*this, a2); check_context(*this, a3); check_context(*this, a4);
4268 Z3_ast args[4] = { a1, a2, a3, a4 };
4269 Z3_ast r = Z3_mk_app(ctx(), *this, 4, args);
4270 ctx().check_error();
4271 return expr(ctx(), r);
4272 }
4273 inline expr func_decl::operator()(expr const & a1, expr const & a2, expr const & a3, expr const & a4, expr const & a5) const {
4274 check_context(*this, a1); check_context(*this, a2); check_context(*this, a3); check_context(*this, a4); check_context(*this, a5);
4275 Z3_ast args[5] = { a1, a2, a3, a4, a5 };
4276 Z3_ast r = Z3_mk_app(ctx(), *this, 5, args);
4277 ctx().check_error();
4278 return expr(ctx(), r);
4279 }
4280
4281 inline expr to_real(expr const & a) { Z3_ast r = Z3_mk_int2real(a.ctx(), a); a.check_error(); return expr(a.ctx(), r); }
4282
4283 inline func_decl function(symbol const & name, unsigned arity, sort const * domain, sort const & range) {
4284 return range.ctx().function(name, arity, domain, range);
4285 }
4286 inline func_decl function(char const * name, unsigned arity, sort const * domain, sort const & range) {
4287 return range.ctx().function(name, arity, domain, range);
4288 }
4289 inline func_decl function(char const * name, sort const & domain, sort const & range) {
4290 return range.ctx().function(name, domain, range);
4291 }
4292 inline func_decl function(char const * name, sort const & d1, sort const & d2, sort const & range) {
4293 return range.ctx().function(name, d1, d2, range);
4294 }
4295 inline func_decl function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & range) {
4296 return range.ctx().function(name, d1, d2, d3, range);
4297 }
4298 inline func_decl function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & d4, sort const & range) {
4299 return range.ctx().function(name, d1, d2, d3, d4, range);
4300 }
4301 inline func_decl function(char const * name, sort const & d1, sort const & d2, sort const & d3, sort const & d4, sort const & d5, sort const & range) {
4302 return range.ctx().function(name, d1, d2, d3, d4, d5, range);
4303 }
4304 inline func_decl function(char const* name, sort_vector const& domain, sort const& range) {
4305 return range.ctx().function(name, domain, range);
4306 }
4307 inline func_decl function(std::string const& name, sort_vector const& domain, sort const& range) {
4308 return range.ctx().function(name.c_str(), domain, range);
4309 }
4310
4311 inline func_decl recfun(symbol const & name, unsigned arity, sort const * domain, sort const & range) {
4312 return range.ctx().recfun(name, arity, domain, range);
4313 }
4314 inline func_decl recfun(char const * name, unsigned arity, sort const * domain, sort const & range) {
4315 return range.ctx().recfun(name, arity, domain, range);
4316 }
4317 inline func_decl recfun(char const * name, sort const& d1, sort const & range) {
4318 return range.ctx().recfun(name, d1, range);
4319 }
4320 inline func_decl recfun(char const * name, sort const& d1, sort const& d2, sort const & range) {
4321 return range.ctx().recfun(name, d1, d2, range);
4322 }
4323
4324 inline expr select(expr const & a, expr const & i) {
4325 check_context(a, i);
4326 Z3_ast r = Z3_mk_select(a.ctx(), a, i);
4327 a.check_error();
4328 return expr(a.ctx(), r);
4329 }
4330 inline expr select(expr const & a, int i) {
4331 return select(a, a.ctx().num_val(i, a.get_sort().array_domain()));
4332 }
4333 inline expr select(expr const & a, expr_vector const & i) {
4334 check_context(a, i);
4335 array<Z3_ast> idxs(i);
4336 Z3_ast r = Z3_mk_select_n(a.ctx(), a, idxs.size(), idxs.ptr());
4337 a.check_error();
4338 return expr(a.ctx(), r);
4339 }
4340
4341 inline expr store(expr const & a, expr const & i, expr const & v) {
4342 check_context(a, i); check_context(a, v);
4343 Z3_ast r = Z3_mk_store(a.ctx(), a, i, v);
4344 a.check_error();
4345 return expr(a.ctx(), r);
4346 }
4347
4348 inline expr store(expr const & a, int i, expr const & v) { return store(a, a.ctx().num_val(i, a.get_sort().array_domain()), v); }
4349 inline expr store(expr const & a, expr i, int v) { return store(a, i, a.ctx().num_val(v, a.get_sort().array_range())); }
4350 inline expr store(expr const & a, int i, int v) {
4351 return store(a, a.ctx().num_val(i, a.get_sort().array_domain()), a.ctx().num_val(v, a.get_sort().array_range()));
4352 }
4353 inline expr store(expr const & a, expr_vector const & i, expr const & v) {
4354 check_context(a, i); check_context(a, v);
4355 array<Z3_ast> idxs(i);
4356 Z3_ast r = Z3_mk_store_n(a.ctx(), a, idxs.size(), idxs.ptr(), v);
4357 a.check_error();
4358 return expr(a.ctx(), r);
4359 }
4360
4362 Z3_ast r = Z3_mk_as_array(f.ctx(), f);
4363 f.check_error();
4364 return expr(f.ctx(), r);
4365 }
4366
4367 inline expr array_default(expr const & a) {
4368 Z3_ast r = Z3_mk_array_default(a.ctx(), a);
4369 a.check_error();
4370 return expr(a.ctx(), r);
4371 }
4372
4373 inline expr array_ext(expr const & a, expr const & b) {
4374 check_context(a, b);
4375 Z3_ast r = Z3_mk_array_ext(a.ctx(), a, b);
4376 a.check_error();
4377 return expr(a.ctx(), r);
4378 }
4379
4380#define MK_EXPR1(_fn, _arg) \
4381 Z3_ast r = _fn(_arg.ctx(), _arg); \
4382 _arg.check_error(); \
4383 return expr(_arg.ctx(), r);
4384
4385#define MK_EXPR2(_fn, _arg1, _arg2) \
4386 check_context(_arg1, _arg2); \
4387 Z3_ast r = _fn(_arg1.ctx(), _arg1, _arg2); \
4388 _arg1.check_error(); \
4389 return expr(_arg1.ctx(), r);
4390
4391 inline expr const_array(sort const & d, expr const & v) {
4393 }
4394
4395 inline expr empty_set(sort const& s) {
4397 }
4398
4399 inline expr full_set(sort const& s) {
4401 }
4402
4403 inline expr set_add(expr const& s, expr const& e) {
4404 MK_EXPR2(Z3_mk_set_add, s, e);
4405 }
4406
4407 inline expr set_del(expr const& s, expr const& e) {
4408 MK_EXPR2(Z3_mk_set_del, s, e);
4409 }
4410
4411 inline expr set_union(expr const& a, expr const& b) {
4412 check_context(a, b);
4413 Z3_ast es[2] = { a, b };
4414 Z3_ast r = Z3_mk_set_union(a.ctx(), 2, es);
4415 a.check_error();
4416 return expr(a.ctx(), r);
4417 }
4418
4419 inline expr set_intersect(expr const& a, expr const& b) {
4420 check_context(a, b);
4421 Z3_ast es[2] = { a, b };
4422 Z3_ast r = Z3_mk_set_intersect(a.ctx(), 2, es);
4423 a.check_error();
4424 return expr(a.ctx(), r);
4425 }
4426
4427 inline expr set_difference(expr const& a, expr const& b) {
4429 }
4430
4431 inline expr set_complement(expr const& a) {
4433 }
4434
4435 inline expr set_member(expr const& s, expr const& e) {
4437 }
4438
4439 inline expr set_subset(expr const& a, expr const& b) {
4441 }
4442
4443 // finite set operations
4444
4445 inline expr finite_set_empty(sort const& s) {
4446 Z3_ast r = Z3_mk_finite_set_empty(s.ctx(), s);
4447 s.check_error();
4448 return expr(s.ctx(), r);
4449 }
4450
4454
4455 inline expr finite_set_union(expr const& a, expr const& b) {
4457 }
4458
4459 inline expr finite_set_intersect(expr const& a, expr const& b) {
4461 }
4462
4463 inline expr finite_set_difference(expr const& a, expr const& b) {
4465 }
4466
4467 inline expr finite_set_member(expr const& e, expr const& s) {
4469 }
4470
4471 inline expr finite_set_size(expr const& s) {
4473 }
4474
4475 inline expr finite_set_subset(expr const& a, expr const& b) {
4477 }
4478
4479 inline expr finite_set_map(expr const& f, expr const& s) {
4481 }
4482
4483 inline expr finite_set_filter(expr const& f, expr const& s) {
4485 }
4486
4487 inline expr finite_set_range(expr const& low, expr const& high) {
4488 MK_EXPR2(Z3_mk_finite_set_range, low, high);
4489 }
4490
4491 // sequence and regular expression operations.
4492 // union is +
4493 // concat is overloaded to handle sequences and regular expressions
4494
4495 inline expr empty(sort const& s) {
4496 Z3_ast r = Z3_mk_seq_empty(s.ctx(), s);
4497 s.check_error();
4498 return expr(s.ctx(), r);
4499 }
4500 inline expr suffixof(expr const& a, expr const& b) {
4501 check_context(a, b);
4502 Z3_ast r = Z3_mk_seq_suffix(a.ctx(), a, b);
4503 a.check_error();
4504 return expr(a.ctx(), r);
4505 }
4506 inline expr prefixof(expr const& a, expr const& b) {
4507 check_context(a, b);
4508 Z3_ast r = Z3_mk_seq_prefix(a.ctx(), a, b);
4509 a.check_error();
4510 return expr(a.ctx(), r);
4511 }
4512 inline expr indexof(expr const& s, expr const& substr, expr const& offset) {
4513 check_context(s, substr); check_context(s, offset);
4514 Z3_ast r = Z3_mk_seq_index(s.ctx(), s, substr, offset);
4515 s.check_error();
4516 return expr(s.ctx(), r);
4517 }
4518 inline expr last_indexof(expr const& s, expr const& substr) {
4519 check_context(s, substr);
4520 Z3_ast r = Z3_mk_seq_last_index(s.ctx(), s, substr);
4521 s.check_error();
4522 return expr(s.ctx(), r);
4523 }
4524 inline expr to_re(expr const& s) {
4526 }
4527 inline expr in_re(expr const& s, expr const& re) {
4528 MK_EXPR2(Z3_mk_seq_in_re, s, re);
4529 }
4530 inline expr plus(expr const& re) {
4532 }
4533 inline expr option(expr const& re) {
4535 }
4536 inline expr star(expr const& re) {
4538 }
4539 inline expr re_empty(sort const& s) {
4540 Z3_ast r = Z3_mk_re_empty(s.ctx(), s);
4541 s.check_error();
4542 return expr(s.ctx(), r);
4543 }
4544 inline expr re_full(sort const& s) {
4545 Z3_ast r = Z3_mk_re_full(s.ctx(), s);
4546 s.check_error();
4547 return expr(s.ctx(), r);
4548 }
4549 inline expr re_intersect(expr_vector const& args) {
4550 assert(args.size() > 0);
4551 context& ctx = args[0u].ctx();
4552 array<Z3_ast> _args(args);
4553 Z3_ast r = Z3_mk_re_intersect(ctx, _args.size(), _args.ptr());
4554 ctx.check_error();
4555 return expr(ctx, r);
4556 }
4557 inline expr re_diff(expr const& a, expr const& b) {
4558 check_context(a, b);
4559 context& ctx = a.ctx();
4560 Z3_ast r = Z3_mk_re_diff(ctx, a, b);
4561 ctx.check_error();
4562 return expr(ctx, r);
4563 }
4564 inline expr re_complement(expr const& a) {
4566 }
4567 inline expr range(expr const& lo, expr const& hi) {
4569 Z3_ast r = Z3_mk_re_range(lo.ctx(), lo, hi);
4570 lo.check_error();
4571 return expr(lo.ctx(), r);
4572 }
4573
4574
4575
4576
4577
4578 inline expr_vector context::parse_string(char const* s) {
4579 Z3_ast_vector r = Z3_parse_smtlib2_string(*this, s, 0, 0, 0, 0, 0, 0);
4580 check_error();
4581 return expr_vector(*this, r);
4582
4583 }
4584 inline expr_vector context::parse_file(char const* s) {
4585 Z3_ast_vector r = Z3_parse_smtlib2_file(*this, s, 0, 0, 0, 0, 0, 0);
4586 check_error();
4587 return expr_vector(*this, r);
4588 }
4589
4590 inline expr_vector context::parse_string(char const* s, sort_vector const& sorts, func_decl_vector const& decls) {
4591 array<Z3_symbol> sort_names(sorts.size());
4592 array<Z3_symbol> decl_names(decls.size());
4593 array<Z3_sort> sorts1(sorts);
4594 array<Z3_func_decl> decls1(decls);
4595 for (unsigned i = 0; i < sorts.size(); ++i) {
4596 sort_names[i] = sorts[i].name();
4597 }
4598 for (unsigned i = 0; i < decls.size(); ++i) {
4599 decl_names[i] = decls[i].name();
4600 }
4601
4602 Z3_ast_vector r = Z3_parse_smtlib2_string(*this, s, sorts.size(), sort_names.ptr(), sorts1.ptr(), decls.size(), decl_names.ptr(), decls1.ptr());
4603 check_error();
4604 return expr_vector(*this, r);
4605 }
4606
4607 inline expr_vector context::parse_file(char const* s, sort_vector const& sorts, func_decl_vector const& decls) {
4608 array<Z3_symbol> sort_names(sorts.size());
4609 array<Z3_symbol> decl_names(decls.size());
4610 array<Z3_sort> sorts1(sorts);
4611 array<Z3_func_decl> decls1(decls);
4612 for (unsigned i = 0; i < sorts.size(); ++i) {
4613 sort_names[i] = sorts[i].name();
4614 }
4615 for (unsigned i = 0; i < decls.size(); ++i) {
4616 decl_names[i] = decls[i].name();
4617 }
4618 Z3_ast_vector r = Z3_parse_smtlib2_file(*this, s, sorts.size(), sort_names.ptr(), sorts1.ptr(), decls.size(), decl_names.ptr(), decls1.ptr());
4619 check_error();
4620 return expr_vector(*this, r);
4621 }
4622
4624 assert(is_datatype());
4625 func_decl_vector cs(ctx());
4626 unsigned n = Z3_get_datatype_sort_num_constructors(ctx(), *this);
4627 for (unsigned i = 0; i < n; ++i)
4629 return cs;
4630 }
4631
4633 assert(is_datatype());
4634 func_decl_vector rs(ctx());
4635 unsigned n = Z3_get_datatype_sort_num_constructors(ctx(), *this);
4636 for (unsigned i = 0; i < n; ++i)
4638 return rs;
4639 }
4640
4642 sort s = range();
4643 assert(s.is_datatype());
4644 unsigned n = Z3_get_datatype_sort_num_constructors(ctx(), s);
4645 unsigned idx = 0;
4646 for (; idx < n; ++idx) {
4648 if (id() == f.id())
4649 break;
4650 }
4651 assert(idx < n);
4652 n = arity();
4653 func_decl_vector as(ctx());
4654 for (unsigned i = 0; i < n; ++i)
4656 return as;
4657 }
4658
4659
4660 inline expr expr::substitute(expr_vector const& src, expr_vector const& dst) {
4661 assert(src.size() == dst.size());
4662 array<Z3_ast> _src(src.size());
4663 array<Z3_ast> _dst(dst.size());
4664 for (unsigned i = 0; i < src.size(); ++i) {
4665 _src[i] = src[i];
4666 _dst[i] = dst[i];
4667 }
4668 Z3_ast r = Z3_substitute(ctx(), m_ast, src.size(), _src.ptr(), _dst.ptr());
4669 check_error();
4670 return expr(ctx(), r);
4671 }
4672
4673 inline expr expr::substitute(expr_vector const& dst) {
4674 array<Z3_ast> _dst(dst.size());
4675 for (unsigned i = 0; i < dst.size(); ++i) {
4676 _dst[i] = dst[i];
4677 }
4678 Z3_ast r = Z3_substitute_vars(ctx(), m_ast, dst.size(), _dst.ptr());
4679 check_error();
4680 return expr(ctx(), r);
4681 }
4682
4683 inline expr expr::substitute(func_decl_vector const& funs, expr_vector const& dst) {
4684 array<Z3_ast> _dst(dst.size());
4685 array<Z3_func_decl> _funs(funs.size());
4686 if (dst.size() != funs.size()) {
4687 Z3_THROW(exception("length of argument lists don't align"));
4688 return expr(ctx(), nullptr);
4689 }
4690 for (unsigned i = 0; i < dst.size(); ++i) {
4691 _dst[i] = dst[i];
4692 _funs[i] = funs[i];
4693 }
4694 Z3_ast r = Z3_substitute_funs(ctx(), m_ast, dst.size(), _funs.ptr(), _dst.ptr());
4695 check_error();
4696 return expr(ctx(), r);
4697 }
4698
4699 inline expr expr::update(expr_vector const& args) const {
4700 array<Z3_ast> _args(args.size());
4701 for (unsigned i = 0; i < args.size(); ++i) {
4702 _args[i] = args[i];
4703 }
4704 Z3_ast r = Z3_update_term(ctx(), m_ast, args.size(), _args.ptr());
4705 check_error();
4706 return expr(ctx(), r);
4707 }
4708
4709 inline expr expr::update_field(func_decl const& field_access, expr const& new_value) const {
4710 assert(is_datatype());
4711 Z3_ast r = Z3_datatype_update_field(ctx(), field_access, m_ast, new_value);
4712 check_error();
4713 return expr(ctx(), r);
4714 }
4715
4716 typedef std::function<void(expr const& proof, std::vector<unsigned> const& deps, expr_vector const& clause)> on_clause_eh_t;
4717
4719 context& c;
4720 on_clause_eh_t m_on_clause;
4721
4722 static void _on_clause_eh(void* _ctx, Z3_ast _proof, unsigned n, unsigned const* dep, Z3_ast_vector _literals) {
4723 on_clause* ctx = static_cast<on_clause*>(_ctx);
4724 expr_vector lits(ctx->c, _literals);
4725 expr proof(ctx->c, _proof);
4726 std::vector<unsigned> deps;
4727 for (unsigned i = 0; i < n; ++i)
4728 deps.push_back(dep[i]);
4729 ctx->m_on_clause(proof, deps, lits);
4730 }
4731 public:
4732 on_clause(solver& s, on_clause_eh_t& on_clause_eh): c(s.ctx()) {
4733 m_on_clause = on_clause_eh;
4734 Z3_solver_register_on_clause(c, s, this, _on_clause_eh);
4735 c.check_error();
4736 }
4737 };
4738
4740
4741 typedef std::function<void(expr const&, expr const&)> fixed_eh_t;
4742 typedef std::function<void(void)> final_eh_t;
4743 typedef std::function<void(expr const&, expr const&)> eq_eh_t;
4744 typedef std::function<void(expr const&)> created_eh_t;
4745 typedef std::function<void(expr, unsigned, bool)> decide_eh_t;
4746 typedef std::function<bool(expr const&, expr const&)> on_binding_eh_t;
4747
4748 final_eh_t m_final_eh;
4749 eq_eh_t m_eq_eh;
4750 fixed_eh_t m_fixed_eh;
4751 created_eh_t m_created_eh;
4752 decide_eh_t m_decide_eh;
4753 on_binding_eh_t m_on_binding_eh;
4754 solver* s;
4755 context* c;
4756 std::vector<z3::context*> subcontexts;
4757
4758 unsigned m_callbackNesting = 0;
4759 Z3_solver_callback cb { nullptr };
4760
4761 struct scoped_cb {
4763 scoped_cb(void* _p, Z3_solver_callback cb):p(*static_cast<user_propagator_base*>(_p)) {
4764 p.cb = cb;
4765 p.m_callbackNesting++;
4766 }
4767 ~scoped_cb() {
4768 if (--p.m_callbackNesting == 0)
4769 p.cb = nullptr;
4770 }
4771 };
4772
4773 static void push_eh(void* _p, Z3_solver_callback cb) {
4774 user_propagator_base* p = static_cast<user_propagator_base*>(_p);
4775 scoped_cb _cb(p, cb);
4776 static_cast<user_propagator_base*>(p)->push();
4777 }
4778
4779 static void pop_eh(void* _p, Z3_solver_callback cb, unsigned num_scopes) {
4780 user_propagator_base* p = static_cast<user_propagator_base*>(_p);
4781 scoped_cb _cb(p, cb);
4782 static_cast<user_propagator_base*>(_p)->pop(num_scopes);
4783 }
4784
4785 static void* fresh_eh(void* _p, Z3_context ctx) {
4786 user_propagator_base* p = static_cast<user_propagator_base*>(_p);
4787 context* c = new context(ctx);
4788 p->subcontexts.push_back(c);
4789 return p->fresh(*c);
4790 }
4791
4792 static void fixed_eh(void* _p, Z3_solver_callback cb, Z3_ast _var, Z3_ast _value) {
4793 user_propagator_base* p = static_cast<user_propagator_base*>(_p);
4794 scoped_cb _cb(p, cb);
4795 expr value(p->ctx(), _value);
4796 expr var(p->ctx(), _var);
4797 p->m_fixed_eh(var, value);
4798 }
4799
4800 static void eq_eh(void* _p, Z3_solver_callback cb, Z3_ast _x, Z3_ast _y) {
4801 user_propagator_base* p = static_cast<user_propagator_base*>(_p);
4802 scoped_cb _cb(p, cb);
4803 expr x(p->ctx(), _x), y(p->ctx(), _y);
4804 p->m_eq_eh(x, y);
4805 }
4806
4807 static void final_eh(void* p, Z3_solver_callback cb) {
4808 scoped_cb _cb(p, cb);
4809 static_cast<user_propagator_base*>(p)->m_final_eh();
4810 }
4811
4812 static void created_eh(void* _p, Z3_solver_callback cb, Z3_ast _e) {
4813 user_propagator_base* p = static_cast<user_propagator_base*>(_p);
4814 scoped_cb _cb(p, cb);
4815 expr e(p->ctx(), _e);
4816 p->m_created_eh(e);
4817 }
4818
4819 static void decide_eh(void* _p, Z3_solver_callback cb, Z3_ast _val, unsigned bit, bool is_pos) {
4820 user_propagator_base* p = static_cast<user_propagator_base*>(_p);
4821 scoped_cb _cb(p, cb);
4822 expr val(p->ctx(), _val);
4823 p->m_decide_eh(val, bit, is_pos);
4824 }
4825
4826 static bool on_binding_eh(void* _p, Z3_solver_callback cb, Z3_ast _q, Z3_ast _inst) {
4827 user_propagator_base* p = static_cast<user_propagator_base*>(_p);
4828 scoped_cb _cb(p, cb);
4829 expr q(p->ctx(), _q), inst(p->ctx(), _inst);
4830 return p->m_on_binding_eh(q, inst);
4831 }
4832
4833 public:
4834 user_propagator_base(context& c) : s(nullptr), c(&c) {}
4835
4836 user_propagator_base(solver* s): s(s), c(nullptr) {
4837 Z3_solver_propagate_init(ctx(), *s, this, push_eh, pop_eh, fresh_eh);
4838 }
4839
4840 virtual void push() = 0;
4841 virtual void pop(unsigned num_scopes) = 0;
4842
4844 for (auto& subcontext : subcontexts) {
4845 subcontext->detach(); // detach first; the subcontexts will be freed internally!
4846 delete subcontext;
4847 }
4848 }
4849
4851 return c ? *c : s->ctx();
4852 }
4853
4863
4869
4870 void register_fixed(fixed_eh_t& f) {
4871 m_fixed_eh = f;
4872 if (s) {
4873 Z3_solver_propagate_fixed(ctx(), *s, fixed_eh);
4874 }
4875 }
4876
4878 m_fixed_eh = [this](expr const &id, expr const &e) {
4879 fixed(id, e);
4880 };
4881 if (s) {
4882 Z3_solver_propagate_fixed(ctx(), *s, fixed_eh);
4883 }
4884 }
4885
4886 void register_eq(eq_eh_t& f) {
4887 m_eq_eh = f;
4888 if (s) {
4889 Z3_solver_propagate_eq(ctx(), *s, eq_eh);
4890 }
4891 }
4892
4894 m_eq_eh = [this](expr const& x, expr const& y) {
4895 eq(x, y);
4896 };
4897 if (s) {
4898 Z3_solver_propagate_eq(ctx(), *s, eq_eh);
4899 }
4900 }
4901
4909
4910 void register_final(final_eh_t& f) {
4911 m_final_eh = f;
4912 if (s) {
4913 Z3_solver_propagate_final(ctx(), *s, final_eh);
4914 }
4915 }
4916
4918 m_final_eh = [this]() {
4919 final();
4920 };
4921 if (s) {
4922 Z3_solver_propagate_final(ctx(), *s, final_eh);
4923 }
4924 }
4925
4926 void register_created(created_eh_t& c) {
4927 m_created_eh = c;
4928 if (s) {
4929 Z3_solver_propagate_created(ctx(), *s, created_eh);
4930 }
4931 }
4932
4934 m_created_eh = [this](expr const& e) {
4935 created(e);
4936 };
4937 if (s) {
4938 Z3_solver_propagate_created(ctx(), *s, created_eh);
4939 }
4940 }
4941
4942 void register_decide(decide_eh_t& c) {
4943 m_decide_eh = c;
4944 if (s) {
4945 Z3_solver_propagate_decide(ctx(), *s, decide_eh);
4946 }
4947 }
4948
4950 m_decide_eh = [this](expr val, unsigned bit, bool is_pos) {
4951 decide(val, bit, is_pos);
4952 };
4953 if (s) {
4954 Z3_solver_propagate_decide(ctx(), *s, decide_eh);
4955 }
4956 }
4957
4959 m_on_binding_eh = [this](expr const& q, expr const& inst) {
4960 return on_binding(q, inst);
4961 };
4962 if (s)
4963 Z3_solver_propagate_on_binding(ctx(), *s, on_binding_eh);
4964 }
4965
4966 virtual void fixed(expr const& /*id*/, expr const& /*e*/) { }
4967
4968 virtual void eq(expr const& /*x*/, expr const& /*y*/) { }
4969
4970 virtual void final() { }
4971
4972 virtual void created(expr const& /*e*/) {}
4973
4974 virtual void decide(expr const& /*val*/, unsigned /*bit*/, bool /*is_pos*/) {}
4975
4976 virtual bool on_binding(expr const& /*q*/, expr const& /*inst*/) { return true; }
4977
4978 bool next_split(expr const& e, unsigned idx, Z3_lbool phase) {
4979 assert(cb);
4980 return Z3_solver_next_split(ctx(), cb, e, idx, phase);
4981 }
4982
4996
4997 void add(expr const& e) {
4998 if (cb)
5000 else if (s)
5002 else
5003 assert(false);
5004 }
5005
5007 assert(cb);
5008 expr conseq = ctx().bool_val(false);
5009 array<Z3_ast> _fixed(fixed);
5010 Z3_solver_propagate_consequence(ctx(), cb, fixed.size(), _fixed.ptr(), 0, nullptr, nullptr, conseq);
5011 }
5012
5013 void conflict(expr_vector const& fixed, expr_vector const& lhs, expr_vector const& rhs) {
5014 assert(cb);
5015 assert(lhs.size() == rhs.size());
5016 expr conseq = ctx().bool_val(false);
5017 array<Z3_ast> _fixed(fixed);
5018 array<Z3_ast> _lhs(lhs);
5019 array<Z3_ast> _rhs(rhs);
5020 Z3_solver_propagate_consequence(ctx(), cb, fixed.size(), _fixed.ptr(), lhs.size(), _lhs.ptr(), _rhs.ptr(), conseq);
5021 }
5022
5023 bool propagate(expr_vector const& fixed, expr const& conseq) {
5024 assert(cb);
5025 assert((Z3_context)conseq.ctx() == (Z3_context)ctx());
5026 array<Z3_ast> _fixed(fixed);
5027 return Z3_solver_propagate_consequence(ctx(), cb, _fixed.size(), _fixed.ptr(), 0, nullptr, nullptr, conseq);
5028 }
5029
5031 expr_vector const& lhs, expr_vector const& rhs,
5032 expr const& conseq) {
5033 assert(cb);
5034 assert((Z3_context)conseq.ctx() == (Z3_context)ctx());
5035 assert(lhs.size() == rhs.size());
5036 array<Z3_ast> _fixed(fixed);
5037 array<Z3_ast> _lhs(lhs);
5038 array<Z3_ast> _rhs(rhs);
5039
5040 return Z3_solver_propagate_consequence(ctx(), cb, _fixed.size(), _fixed.ptr(), lhs.size(), _lhs.ptr(), _rhs.ptr(), conseq);
5041 }
5042 };
5043
5053 class rcf_num {
5054 Z3_context m_ctx;
5055 Z3_rcf_num m_num;
5056
5057 void check_context(rcf_num const& other) const {
5058 if (m_ctx != other.m_ctx) {
5059 Z3_THROW(exception("rcf_num objects from different contexts"));
5060 }
5061 }
5062
5063 public:
5064 rcf_num(context& c, Z3_rcf_num n): m_ctx(c), m_num(n) {}
5065
5066 rcf_num(context& c, int val): m_ctx(c) {
5067 m_num = Z3_rcf_mk_small_int(c, val);
5068 }
5069
5070 rcf_num(context& c, char const* val): m_ctx(c) {
5071 m_num = Z3_rcf_mk_rational(c, val);
5072 }
5073
5074 rcf_num(rcf_num const& other): m_ctx(other.m_ctx) {
5075 // Create a copy by converting to string and back
5076 std::string str = Z3_rcf_num_to_string(m_ctx, other.m_num, false, false);
5077 m_num = Z3_rcf_mk_rational(m_ctx, str.c_str());
5078 }
5079
5080 rcf_num& operator=(rcf_num const& other) {
5081 if (this != &other) {
5082 Z3_rcf_del(m_ctx, m_num);
5083 m_ctx = other.m_ctx;
5084 std::string str = Z3_rcf_num_to_string(m_ctx, other.m_num, false, false);
5085 m_num = Z3_rcf_mk_rational(m_ctx, str.c_str());
5086 }
5087 return *this;
5088 }
5089
5091 Z3_rcf_del(m_ctx, m_num);
5092 }
5093
5094 operator Z3_rcf_num() const { return m_num; }
5095 Z3_context ctx() const { return m_ctx; }
5096
5100 std::string to_string(bool compact = false) const {
5101 return std::string(Z3_rcf_num_to_string(m_ctx, m_num, compact, false));
5102 }
5103
5107 std::string to_decimal(unsigned precision = 10) const {
5108 return std::string(Z3_rcf_num_to_decimal_string(m_ctx, m_num, precision));
5109 }
5110
5111 // Arithmetic operations
5112 rcf_num operator+(rcf_num const& other) const {
5113 check_context(other);
5114 return rcf_num(*const_cast<context*>(reinterpret_cast<context const*>(&m_ctx)),
5115 Z3_rcf_add(m_ctx, m_num, other.m_num));
5116 }
5117
5118 rcf_num operator-(rcf_num const& other) const {
5119 check_context(other);
5120 return rcf_num(*const_cast<context*>(reinterpret_cast<context const*>(&m_ctx)),
5121 Z3_rcf_sub(m_ctx, m_num, other.m_num));
5122 }
5123
5124 rcf_num operator*(rcf_num const& other) const {
5125 check_context(other);
5126 return rcf_num(*const_cast<context*>(reinterpret_cast<context const*>(&m_ctx)),
5127 Z3_rcf_mul(m_ctx, m_num, other.m_num));
5128 }
5129
5130 rcf_num operator/(rcf_num const& other) const {
5131 check_context(other);
5132 return rcf_num(*const_cast<context*>(reinterpret_cast<context const*>(&m_ctx)),
5133 Z3_rcf_div(m_ctx, m_num, other.m_num));
5134 }
5135
5137 return rcf_num(*const_cast<context*>(reinterpret_cast<context const*>(&m_ctx)),
5138 Z3_rcf_neg(m_ctx, m_num));
5139 }
5140
5144 rcf_num power(unsigned k) const {
5145 return rcf_num(*const_cast<context*>(reinterpret_cast<context const*>(&m_ctx)),
5146 Z3_rcf_power(m_ctx, m_num, k));
5147 }
5148
5152 rcf_num inv() const {
5153 return rcf_num(*const_cast<context*>(reinterpret_cast<context const*>(&m_ctx)),
5154 Z3_rcf_inv(m_ctx, m_num));
5155 }
5156
5157 // Comparison operations
5158 bool operator<(rcf_num const& other) const {
5159 check_context(other);
5160 return Z3_rcf_lt(m_ctx, m_num, other.m_num);
5161 }
5162
5163 bool operator>(rcf_num const& other) const {
5164 check_context(other);
5165 return Z3_rcf_gt(m_ctx, m_num, other.m_num);
5166 }
5167
5168 bool operator<=(rcf_num const& other) const {
5169 check_context(other);
5170 return Z3_rcf_le(m_ctx, m_num, other.m_num);
5171 }
5172
5173 bool operator>=(rcf_num const& other) const {
5174 check_context(other);
5175 return Z3_rcf_ge(m_ctx, m_num, other.m_num);
5176 }
5177
5178 bool operator==(rcf_num const& other) const {
5179 check_context(other);
5180 return Z3_rcf_eq(m_ctx, m_num, other.m_num);
5181 }
5182
5183 bool operator!=(rcf_num const& other) const {
5184 check_context(other);
5185 return Z3_rcf_neq(m_ctx, m_num, other.m_num);
5186 }
5187
5188 // Type queries
5189 bool is_rational() const {
5190 return Z3_rcf_is_rational(m_ctx, m_num);
5191 }
5192
5193 bool is_algebraic() const {
5194 return Z3_rcf_is_algebraic(m_ctx, m_num);
5195 }
5196
5197 bool is_infinitesimal() const {
5198 return Z3_rcf_is_infinitesimal(m_ctx, m_num);
5199 }
5200
5201 bool is_transcendental() const {
5202 return Z3_rcf_is_transcendental(m_ctx, m_num);
5203 }
5204
5205 friend std::ostream& operator<<(std::ostream& out, rcf_num const& n) {
5206 return out << n.to_string();
5207 }
5208 };
5209
5214 return rcf_num(c, Z3_rcf_mk_pi(c));
5215 }
5216
5220 inline rcf_num rcf_e(context& c) {
5221 return rcf_num(c, Z3_rcf_mk_e(c));
5222 }
5223
5228 return rcf_num(c, Z3_rcf_mk_infinitesimal(c));
5229 }
5230
5237 inline std::vector<rcf_num> rcf_roots(context& c, std::vector<rcf_num> const& coeffs) {
5238 if (coeffs.empty()) {
5239 Z3_THROW(exception("polynomial coefficients cannot be empty"));
5240 }
5241
5242 unsigned n = static_cast<unsigned>(coeffs.size());
5243 std::vector<Z3_rcf_num> a(n);
5244 std::vector<Z3_rcf_num> roots(n);
5245
5246 for (unsigned i = 0; i < n; ++i) {
5247 a[i] = coeffs[i];
5248 }
5249
5250 unsigned num_roots = Z3_rcf_mk_roots(c, n, a.data(), roots.data());
5251
5252 std::vector<rcf_num> result;
5253 result.reserve(num_roots);
5254 for (unsigned i = 0; i < num_roots; ++i) {
5255 result.push_back(rcf_num(c, roots[i]));
5256 }
5257
5258 return result;
5259 }
5260
5261}
5262
5265#undef Z3_THROW
unsigned size() const
Definition z3++.h:3413
apply_result & operator=(apply_result const &s)
Definition z3++.h:3406
apply_result(context &c, Z3_apply_result s)
Definition z3++.h:3402
goal operator[](int i) const
Definition z3++.h:3414
friend std::ostream & operator<<(std::ostream &out, apply_result const &r)
Definition z3++.h:3417
~apply_result() override
Definition z3++.h:3404
apply_result(apply_result const &s)
Definition z3++.h:3403
unsigned size() const
Definition z3++.h:547
void resize(unsigned sz)
Definition z3++.h:546
T const & operator[](int i) const
Definition z3++.h:549
array(unsigned sz)
Definition z3++.h:543
T const * ptr() const
Definition z3++.h:550
T * ptr()
Definition z3++.h:551
T & operator[](int i)
Definition z3++.h:548
A map from ASTs to ASTs.
Definition z3++.h:743
unsigned size() const
Definition z3++.h:785
void erase(ast const &k)
Definition z3++.h:779
ast_map(context &c, Z3_ast_map m)
Definition z3++.h:751
ast_vector keys() const
Definition z3++.h:790
ast_map(context &c)
Definition z3++.h:750
ast_map & operator=(ast_map const &s)
Definition z3++.h:755
ast find(ast const &k) const
Definition z3++.h:768
void reset()
Definition z3++.h:784
void insert(ast const &k, ast const &v)
Definition z3++.h:774
~ast_map() override
Definition z3++.h:753
ast_map(ast_map const &s)
Definition z3++.h:752
bool contains(ast const &k) const
Definition z3++.h:762
iterator(ast_vector_tpl const *v, unsigned i)
Definition z3++.h:714
bool operator==(iterator const &other) const noexcept
Definition z3++.h:716
iterator operator++(int) noexcept
Definition z3++.h:730
bool operator!=(iterator const &other) const noexcept
Definition z3++.h:720
iterator & operator++() noexcept
Definition z3++.h:723
void pop_back()
Definition z3++.h:689
friend std::ostream & operator<<(std::ostream &out, ast_vector_tpl const &v)
Definition z3++.h:736
unsigned size() const
Definition z3++.h:684
void resize(unsigned sz)
Definition z3++.h:687
ast_vector_tpl & operator=(ast_vector_tpl const &s)
Definition z3++.h:691
~ast_vector_tpl() override
Definition z3++.h:682
ast_vector_tpl(ast_vector_tpl const &s)
Definition z3++.h:679
bool empty() const
Definition z3++.h:690
iterator end() const
Definition z3++.h:735
ast_vector_tpl(context &c, Z3_ast_vector v)
Definition z3++.h:678
void push_back(T const &e)
Definition z3++.h:686
T back() const
Definition z3++.h:688
std::string to_string() const
Definition z3++.h:737
T operator[](unsigned i) const
Definition z3++.h:685
ast_vector_tpl & set(unsigned idx, ast &a)
Definition z3++.h:698
ast_vector_tpl(context &c, ast_vector_tpl const &src)
Definition z3++.h:680
ast_vector_tpl(context &c)
Definition z3++.h:677
iterator begin() const noexcept
Definition z3++.h:734
friend std::ostream & operator<<(std::ostream &out, ast const &n)
Definition z3++.h:666
ast(ast const &s)
Definition z3++.h:643
~ast() override
Definition z3++.h:644
ast & operator=(ast const &s)
Definition z3++.h:647
friend bool eq(ast const &a, ast const &b)
Return true if the ASTs are structurally identical.
Definition z3++.h:670
Z3_ast_kind kind() const
Definition z3++.h:655
Z3_ast m_ast
Definition z3++.h:639
ast(context &c)
Definition z3++.h:641
std::string to_string() const
Definition z3++.h:658
ast(context &c, Z3_ast n)
Definition z3++.h:642
unsigned hash() const
Definition z3++.h:656
ast operator()(context &c, Z3_ast a)
Definition z3++.h:2511
expr operator()(context &c, Z3_ast a)
Definition z3++.h:2516
func_decl operator()(context &c, Z3_ast a)
Definition z3++.h:2535
sort operator()(context &c, Z3_ast a)
Definition z3++.h:2527
Z3 global configuration object.
Definition z3++.h:141
~config()
Definition z3++.h:147
void set(char const *param, int value)
Set global parameter param with integer value.
Definition z3++.h:160
void set(char const *param, char const *value)
Set global parameter param with string value.
Definition z3++.h:152
config()
Definition z3++.h:146
void set(char const *param, bool value)
Set global parameter param with Boolean value.
Definition z3++.h:156
constructor_list(constructors const &cs)
Definition z3++.h:3942
void query(unsigned i, func_decl &constructor, func_decl &test, func_decl_vector &accs)
Definition z3++.h:3923
unsigned size() const
Definition z3++.h:3921
friend class constructor_list
Definition z3++.h:3898
constructors(context &ctx)
Definition z3++.h:3903
Z3_constructor operator[](unsigned i) const
Definition z3++.h:3919
void add(symbol const &name, symbol const &rec, unsigned n, symbol const *names, sort const *fields)
Definition z3++.h:3910
A Context manages all other Z3 objects, global configuration options, etc.
Definition z3++.h:191
symbol str_symbol(char const *s)
Create a Z3 symbol based on the given string.
Definition z3++.h:3831
void recdef(func_decl decl, expr_vector const &args, expr const &body)
add function definition body to declaration decl. decl needs to be declared using context::recfun.
Definition z3++.h:4114
expr num_val(int n, sort const &s)
Definition z3++.h:4197
expr fpa_rounding_mode()
Definition z3++.h:4151
std::string simplifier_name(unsigned i) const
Definition z3++.h:277
context()
Definition z3++.h:215
expr bv_val(int n, unsigned sz)
Definition z3++.h:4176
func_decl recfun(symbol const &name, unsigned arity, sort const *domain, sort const &range)
Definition z3++.h:4076
expr bool_val(bool b)
Definition z3++.h:4161
expr fpa_const(char const *name, unsigned ebits, unsigned sbits)
Definition z3++.h:4144
expr string_val(char const *s)
Definition z3++.h:4193
sort real_sort()
Return the Real sort.
Definition z3++.h:3836
Z3_error_code check_error() const
Auxiliary method used to check for API usage errors.
Definition z3++.h:241
expr bv_const(char const *name, unsigned sz)
Definition z3++.h:4143
expr string_const(char const *name)
Definition z3++.h:4142
sort array_sort(sort d, sort r)
Return an array sort for arrays from d to r.
Definition z3++.h:3859
void set_enable_exceptions(bool f)
The C++ API uses by defaults exceptions on errors. For applications that don't work well with excepti...
Definition z3++.h:259
sort string_sort()
Return the sort for Unicode strings.
Definition z3++.h:3838
sort re_sort(sort &seq_sort)
Return a regular expression sort over sequences seq_sort.
Definition z3++.h:3841
sort uninterpreted_sort(char const *name)
create an uninterpreted sort with the name given by the string or symbol.
Definition z3++.h:3997
sort enumeration_sort(char const *name, unsigned n, char const *const *enum_names, func_decl_vector &cs, func_decl_vector &ts)
Return an enumeration sort: enum_names[0], ..., enum_names[n-1]. cs and ts are output parameters....
Definition z3++.h:3864
void set(char const *param, int value)
Update global parameter param with Integer value.
Definition z3++.h:290
sort bool_sort()
Return the Boolean sort.
Definition z3++.h:3834
void set(char const *param, char const *value)
Update global parameter param with string value.
Definition z3++.h:266
~context()
Definition z3++.h:235
context & operator=(context &&other) noexcept
Definition z3++.h:225
unsigned num_simplifiers() const
Definition z3++.h:272
sort fpa_sort(unsigned ebits, unsigned sbits)
Return a floating point sort. ebits is a number of exponent bits, sbits is a number of significand bi...
Definition z3++.h:3843
expr bool_const(char const *name)
create uninterpreted constants of a given sort.
Definition z3++.h:4139
context(context &&other) noexcept
Definition z3++.h:218
void check_parser_error() const
Definition z3++.h:248
expr variable(unsigned index, sort const &s)
create a de-Bruijn variable.
Definition z3++.h:4134
expr_vector parse_string(char const *s)
parsing
Definition z3++.h:4578
sort fpa_sort()
Definition z3++.h:3846
symbol int_symbol(int n)
Create a Z3 symbol based on the given integer.
Definition z3++.h:3832
expr real_const(char const *name)
Definition z3++.h:4141
sort datatype(symbol const &name, constructors const &cs)
Create a recursive datatype over a single sort. name is the name of the recursive datatype n - the nu...
Definition z3++.h:3949
expr int_const(char const *name)
Definition z3++.h:4140
expr fpa_nan(sort const &s)
Definition z3++.h:4189
expr fpa_val(double n)
Definition z3++.h:4187
bool enable_exceptions() const
Definition z3++.h:261
sort bv_sort(unsigned sz)
Return the Bit-vector sort of size sz. That is, the sort for bit-vectors of size sz.
Definition z3++.h:3837
expr int_val(int n)
Definition z3++.h:4163
expr fpa_inf(sort const &s, bool sgn)
Definition z3++.h:4190
func_decl function(symbol const &name, unsigned arity, sort const *domain, sort const &range)
Definition z3++.h:4005
sort fpa_rounding_mode_sort()
Return a RoundingMode sort.
Definition z3++.h:3857
expr_vector parse_file(char const *file)
Definition z3++.h:4584
expr constant(symbol const &name, sort const &s)
create an uninterpreted constant.
Definition z3++.h:4128
sort finite_set_sort(sort &s)
Return a finite set sort over element sort s.
Definition z3++.h:3842
sort char_sort()
Return the sort for Unicode characters.
Definition z3++.h:3839
func_decl tuple_sort(char const *name, unsigned n, char const *const *names, sort const *sorts, func_decl_vector &projs)
Return a tuple constructor. name is the name of the returned constructor, n are the number of argumen...
Definition z3++.h:3875
void set(char const *param, bool value)
Update global parameter param with Boolean value.
Definition z3++.h:270
sort int_sort()
Return the integer sort.
Definition z3++.h:3835
void interrupt()
Interrupt the current procedure being executed by any object managed by this context....
Definition z3++.h:299
void set_rounding_mode(rounding_mode rm)
Sets RoundingMode of FloatingPoints.
Definition z3++.h:4149
func_decl user_propagate_function(symbol const &name, sort_vector const &domain, sort const &range)
Definition z3++.h:4120
sort fpa_sort()
Return a FloatingPoint sort with given precision bitwidth (16, 32, 64 or 128).
expr real_val(int n)
Definition z3++.h:4170
std::string simplifier_description(char const *name) const
Definition z3++.h:282
sort_vector datatypes(unsigned n, symbol const *names, constructor_list *const *cons)
Create a set of mutually recursive datatypes. n - number of recursive datatypes names - array of name...
Definition z3++.h:3967
friend class user_propagator_base
Definition z3++.h:193
sort datatype_sort(symbol const &name)
a reference to a recursively defined datatype. Expect that it gets defined as a datatype.
Definition z3++.h:3983
context(config &c)
Definition z3++.h:216
sort seq_sort(sort &s)
Return a sequence sort over base sort s.
Definition z3++.h:3840
Exception used to sign API usage errors.
Definition z3++.h:119
char const * what() const
Definition z3++.h:125
virtual ~exception()=default
friend std::ostream & operator<<(std::ostream &out, exception const &e)
Definition z3++.h:128
char const * msg() const
Definition z3++.h:124
exception(char const *msg)
Definition z3++.h:123
bool operator==(iterator const &other) const noexcept
Definition z3++.h:1811
iterator operator++(int)
Definition z3++.h:1819
iterator(expr &e, unsigned i)
Definition z3++.h:1810
expr operator*() const
Definition z3++.h:1817
iterator & operator++()
Definition z3++.h:1818
bool operator!=(iterator const &other) const noexcept
Definition z3++.h:1814
A Z3 expression is used to represent formulas and terms. For Z3, a formula is any expression of sort ...
Definition z3++.h:993
bool is_lambda() const
Return true if this expression is a lambda expression.
Definition z3++.h:1102
expr numerator() const
Definition z3++.h:1319
friend expr pw(expr const &a, expr const &b)
Definition z3++.h:1842
friend expr sbv_to_fpa(expr const &t, sort s)
Conversion of a signed bit-vector term into a floating-point.
Definition z3++.h:2266
friend expr bvneg_no_overflow(expr const &a)
Definition z3++.h:2467
expr loop(unsigned lo, unsigned hi)
Definition z3++.h:1760
expr body() const
Return the 'body' of this quantifier.
Definition z3++.h:1431
friend expr bvadd_no_underflow(expr const &a, expr const &b)
Definition z3++.h:2455
expr ubvtos() const
Definition z3++.h:1720
friend expr sum(expr_vector const &args)
Definition z3++.h:2664
expr substitute(expr_vector const &src, expr_vector const &dst)
Apply substitution. Replace src expressions by dst.
Definition z3++.h:4660
bool is_quantifier() const
Return true if this expression is a quantifier.
Definition z3++.h:1089
bool is_exists() const
Return true if this expression is an existential quantifier.
Definition z3++.h:1098
bool is_numeral_u64(uint64_t &i) const
Definition z3++.h:1065
bool is_int() const
Return true if this is an integer expression.
Definition z3++.h:1010
friend expr operator/(expr const &a, expr const &b)
Definition z3++.h:2008
friend expr fp_eq(expr const &a, expr const &b)
Definition z3++.h:2227
friend expr concat(expr const &a, expr const &b)
Definition z3++.h:2682
friend expr bvmul_no_underflow(expr const &a, expr const &b)
Definition z3++.h:2473
int64_t get_numeral_int64() const
Return int64_t value of numeral, throw if result cannot fit in int64_t.
Definition z3++.h:1287
bool is_app() const
Return true if this expression is an application.
Definition z3++.h:1081
friend expr fpa_to_fpa(expr const &t, sort s)
Conversion of a floating-point term into another floating-point.
Definition z3++.h:2280
friend expr operator&&(expr const &a, expr const &b)
Return an expression representing a and b.
Definition z3++.h:1886
friend expr operator!=(expr const &a, expr const &b)
Definition z3++.h:1922
friend expr operator+(expr const &a, expr const &b)
Definition z3++.h:1934
std::string get_string() const
for a string value expression return an escaped string value.
Definition z3++.h:1346
bool is_numeral(std::string &s) const
Definition z3++.h:1068
expr char_to_int() const
Definition z3++.h:1730
bool is_var() const
Return true if this expression is a variable.
Definition z3++.h:1107
bool is_numeral_u(unsigned &i) const
Definition z3++.h:1067
friend expr min(expr const &a, expr const &b)
Definition z3++.h:2156
expr at(expr const &index) const
Definition z3++.h:1693
expr_vector args() const
Return a vector of all the arguments of this application. This method assumes the expression is an ap...
Definition z3++.h:1397
expr ext_rotate_left(expr const &n) const
Definition z3++.h:1610
expr denominator() const
Definition z3++.h:1327
bool is_real() const
Return true if this is a real expression.
Definition z3++.h:1014
bool is_numeral_i(int &i) const
Definition z3++.h:1066
friend expr operator>(expr const &a, expr const &b)
Definition z3++.h:2119
expr mk_is_nan() const
Return Boolean expression to test for whether an FP expression is a NaN.
Definition z3++.h:1131
int get_numeral_int() const
Return int value of numeral, throw if result cannot fit in machine int.
Definition z3++.h:1251
expr is_digit() const
Definition z3++.h:1745
friend expr bv2int(expr const &a, bool is_signed)
bit-vector and integer conversions.
Definition z3++.h:2446
friend expr operator~(expr const &a)
Definition z3++.h:2234
unsigned num_args() const
Return the number of arguments in this application. This method assumes the expression is an applicat...
Definition z3++.h:1382
friend expr nor(expr const &a, expr const &b)
Definition z3++.h:2154
friend expr fpa_fp(expr const &sgn, expr const &exp, expr const &sig)
Create an expression of FloatingPoint sort from three bit-vector expressions.
Definition z3++.h:2244
expr arg(unsigned i) const
Return the i-th argument of this application. This method assumes the expression is an application.
Definition z3++.h:1390
expr mk_is_normal() const
Return Boolean expression to test for whether an FP expression is a normal.
Definition z3++.h:1141
friend expr bvsub_no_underflow(expr const &a, expr const &b, bool is_signed)
Definition z3++.h:2461
expr repeat(unsigned i) const
Definition z3++.h:1612
bool is_true() const
Definition z3++.h:1497
expr(context &c)
Definition z3++.h:995
friend expr mk_xor(expr_vector const &args)
Definition z3++.h:2766
bool is_numeral(std::string &s, unsigned precision) const
Definition z3++.h:1069
unsigned get_numeral_uint() const
Return uint value of numeral, throw if result cannot fit in machine uint.
Definition z3++.h:1270
bool is_distinct() const
Definition z3++.h:1506
bool is_numeral(double &d) const
Definition z3++.h:1070
expr rotate_left(unsigned i) const
Definition z3++.h:1608
friend expr operator*(expr const &a, expr const &b)
Definition z3++.h:1964
sort get_sort() const
Return the sort of this expression.
Definition z3++.h:1001
friend expr nand(expr const &a, expr const &b)
Definition z3++.h:2153
bool is_and() const
Definition z3++.h:1500
friend expr fpa_to_ubv(expr const &t, unsigned sz)
Conversion of a floating-point term into an unsigned bit-vector.
Definition z3++.h:2259
friend expr bvredor(expr const &a)
Definition z3++.h:2188
expr extract(unsigned hi, unsigned lo) const
Definition z3++.h:1622
expr rotate_right(unsigned i) const
Definition z3++.h:1609
friend expr int2bv(unsigned n, expr const &a)
Definition z3++.h:2447
expr ext_rotate_right(expr const &n) const
Definition z3++.h:1611
friend expr max(expr const &a, expr const &b)
Definition z3++.h:2172
bool is_relation() const
Return true if this is a Relation expression.
Definition z3++.h:1034
friend expr xnor(expr const &a, expr const &b)
Definition z3++.h:2155
friend expr abs(expr const &a)
Definition z3++.h:2200
friend expr pbge(expr_vector const &es, int const *coeffs, int bound)
Definition z3++.h:2632
bool is_well_sorted() const
Return true if this expression is well sorted (aka type correct).
Definition z3++.h:1116
bool is_or() const
Definition z3++.h:1501
friend expr round_fpa_to_closest_integer(expr const &t)
Round a floating-point term into its closest integer.
Definition z3++.h:2287
friend expr distinct(expr_vector const &args)
Definition z3++.h:2673
friend expr bvmul_no_overflow(expr const &a, expr const &b, bool is_signed)
Definition z3++.h:2470
friend expr bvsub_no_overflow(expr const &a, expr const &b)
Definition z3++.h:2458
bool is_const() const
Return true if this expression is a constant (i.e., an application with 0 arguments).
Definition z3++.h:1085
expr length() const
Definition z3++.h:1705
friend expr mod(expr const &a, expr const &b)
Definition z3++.h:1846
friend expr fma(expr const &a, expr const &b, expr const &c, expr const &rm)
FloatingPoint fused multiply-add.
Definition z3++.h:2236
bool is_bool() const
Return true if this is a Boolean expression.
Definition z3++.h:1006
expr update(expr_vector const &args) const
Update the arguments of this application. Return a new expression with the same function declaration ...
Definition z3++.h:4699
friend expr mk_or(expr_vector const &args)
Definition z3++.h:2754
expr contains(expr const &s) const
Definition z3++.h:1687
friend expr ite(expr const &c, expr const &t, expr const &e)
Create the if-then-else expression ite(c, t, e).
Definition z3++.h:2299
expr algebraic_lower(unsigned precision) const
Definition z3++.h:1202
unsigned hi() const
Definition z3++.h:1625
expr simplify() const
Return a simplified version of this expression.
Definition z3++.h:1784
bool is_arith() const
Return true if this is an integer or real expression.
Definition z3++.h:1018
expr mk_is_inf() const
Return Boolean expression to test for whether an FP expression is inf.
Definition z3++.h:1121
expr stoi() const
Definition z3++.h:1710
expr_vector algebraic_poly() const
Return coefficients for p of an algebraic number (root-obj p i).
Definition z3++.h:1219
bool is_ite() const
Definition z3++.h:1505
bool is_bv() const
Return true if this is a Bit-vector expression.
Definition z3++.h:1022
friend expr pbeq(expr_vector const &es, int const *coeffs, int bound)
Definition z3++.h:2640
friend expr operator^(expr const &a, expr const &b)
Definition z3++.h:2145
friend expr operator<=(expr const &a, expr const &b)
Definition z3++.h:2072
friend expr operator>=(expr const &a, expr const &b)
Definition z3++.h:1988
friend expr sqrt(expr const &a, expr const &rm)
Definition z3++.h:2220
friend expr pble(expr_vector const &es, int const *coeffs, int bound)
Definition z3++.h:2624
friend expr operator==(expr const &a, expr const &b)
Definition z3++.h:1911
bool is_finite_domain() const
Return true if this is a Finite-domain expression.
Definition z3++.h:1052
expr operator[](expr_vector const &index) const
Definition z3++.h:1777
bool is_forall() const
Return true if this expression is a universal quantifier.
Definition z3++.h:1094
bool is_implies() const
Definition z3++.h:1503
uint64_t as_uint64() const
Definition z3++.h:1074
friend expr implies(expr const &a, expr const &b)
Definition z3++.h:1834
expr mk_is_subnormal() const
Return Boolean expression to test for whether an FP expression is a subnormal.
Definition z3++.h:1151
uint64_t get_numeral_uint64() const
Return uint64_t value of numeral, throw if result cannot fit in uint64_t.
Definition z3++.h:1304
expr(context &c, Z3_ast n)
Definition z3++.h:996
friend expr bvadd_no_overflow(expr const &a, expr const &b, bool is_signed)
bit-vector overflow/underflow checks
Definition z3++.h:2452
bool is_datatype() const
Return true if this is a Datatype expression.
Definition z3++.h:1030
bool is_not() const
Definition z3++.h:1499
bool is_string_value() const
Return true if this expression is a string literal. The string can be accessed using get_string() and...
Definition z3++.h:1339
expr simplify(params const &p) const
Return a simplified version of this expression. The parameter p is a set of parameters for the Z3 sim...
Definition z3++.h:1788
expr loop(unsigned lo)
create a looping regular expression.
Definition z3++.h:1755
expr sbvtos() const
Definition z3++.h:1725
expr mk_from_ieee_bv(sort const &s) const
Convert this IEEE BV into a fpa.
Definition z3++.h:1181
friend expr bvredand(expr const &a)
Definition z3++.h:2194
friend expr operator&(expr const &a, expr const &b)
Definition z3++.h:2141
friend expr operator-(expr const &a)
Definition z3++.h:2030
friend expr bvsdiv_no_overflow(expr const &a, expr const &b)
Definition z3++.h:2464
expr extract(expr const &offset, expr const &length) const
sequence and regular expression operations.
Definition z3++.h:1672
bool is_eq() const
Definition z3++.h:1504
expr unit() const
Definition z3++.h:1682
bool is_re() const
Return true if this is a regular expression.
Definition z3++.h:1042
bool is_numeral_i64(int64_t &i) const
Definition z3++.h:1064
bool as_binary(std::string &s) const
Definition z3++.h:1071
unsigned id() const
retrieve unique identifier for expression.
Definition z3++.h:1239
friend expr rem(expr const &a, expr const &b)
Definition z3++.h:1862
friend expr operator!(expr const &a)
Return an expression representing not(a).
Definition z3++.h:1880
bool is_algebraic() const
Return true if expression is an algebraic number.
Definition z3++.h:1111
friend expr mk_and(expr_vector const &args)
Definition z3++.h:2760
expr itos() const
Definition z3++.h:1715
bool is_false() const
Definition z3++.h:1498
int64_t as_int64() const
Definition z3++.h:1075
double as_double() const
Definition z3++.h:1073
iterator end()
Definition z3++.h:1823
expr mk_is_zero() const
Return Boolean expression to test for whether an FP expression is a zero.
Definition z3++.h:1161
std::u32string get_u32string() const
for a string value expression return an unespaced string value.
Definition z3++.h:1358
std::string get_decimal_string(int precision) const
Return string representation of numeral or algebraic number This method assumes the expression is num...
Definition z3++.h:1194
Z3_lbool bool_value() const
Definition z3++.h:1315
expr replace(expr const &src, expr const &dst) const
Definition z3++.h:1676
iterator begin()
Definition z3++.h:1822
friend expr operator||(expr const &a, expr const &b)
Return an expression representing a or b.
Definition z3++.h:1898
bool is_array() const
Return true if this is a Array expression.
Definition z3++.h:1026
bool is_xor() const
Definition z3++.h:1502
unsigned algebraic_i() const
Return i of an algebraic number (root-obj p i).
Definition z3++.h:1229
expr update_field(func_decl const &field_access, expr const &new_value) const
Update a datatype field. Return a new datatype expression with the specified field updated to the new...
Definition z3++.h:4709
unsigned lo() const
Definition z3++.h:1624
friend expr ubv_to_fpa(expr const &t, sort s)
Conversion of an unsigned bit-vector term into a floating-point.
Definition z3++.h:2273
expr nth(expr const &index) const
Definition z3++.h:1699
friend expr fpa_to_sbv(expr const &t, unsigned sz)
Conversion of a floating-point term into a signed bit-vector.
Definition z3++.h:2252
bool is_seq() const
Return true if this is a sequence expression.
Definition z3++.h:1038
friend expr operator|(expr const &a, expr const &b)
Definition z3++.h:2149
expr bit2bool(unsigned i) const
Definition z3++.h:1623
friend expr atmost(expr_vector const &es, unsigned bound)
Definition z3++.h:2648
friend expr range(expr const &lo, expr const &hi)
Definition z3++.h:4567
expr char_from_bv() const
Definition z3++.h:1740
friend expr atleast(expr_vector const &es, unsigned bound)
Definition z3++.h:2656
friend expr operator<(expr const &a, expr const &b)
Definition z3++.h:2097
expr mk_to_ieee_bv() const
Convert this fpa into an IEEE BV.
Definition z3++.h:1171
expr operator[](expr const &index) const
Definition z3++.h:1769
expr algebraic_upper(unsigned precision) const
Definition z3++.h:1209
bool is_numeral() const
Return true if this expression is a numeral. Specialized functions also return representations for th...
Definition z3++.h:1063
bool is_fpa() const
Return true if this is a FloatingPoint expression. .
Definition z3++.h:1056
func_decl decl() const
Return the declaration associated with this application. This method assumes the expression is an app...
Definition z3++.h:1375
expr char_to_bv() const
Definition z3++.h:1735
std::string to_string(expr_vector const &queries)
Definition z3++.h:3806
std::string help() const
Definition z3++.h:3803
fixedpoint & operator=(fixedpoint const &o)
Definition z3++.h:3761
expr_vector from_string(char const *s)
Definition z3++.h:3769
void add_fact(func_decl &f, unsigned *args)
Definition z3++.h:3780
void add_cover(int level, func_decl &p, expr &property)
Definition z3++.h:3797
expr_vector rules() const
Definition z3++.h:3801
stats statistics() const
Definition z3++.h:3798
expr get_answer()
Definition z3++.h:3788
~fixedpoint() override
Definition z3++.h:3760
expr get_cover_delta(int level, func_decl &p)
Definition z3++.h:3792
fixedpoint(context &c)
Definition z3++.h:3758
std::string reason_unknown()
Definition z3++.h:3789
check_result query(func_decl_vector &relations)
Definition z3++.h:3782
void register_relation(func_decl &p)
Definition z3++.h:3799
std::string to_string()
Definition z3++.h:3805
check_result query(expr &q)
Definition z3++.h:3781
param_descrs get_param_descrs()
Definition z3++.h:3804
expr_vector from_file(char const *s)
Definition z3++.h:3774
void update_rule(expr &rule, symbol const &name)
Definition z3++.h:3790
expr_vector assertions() const
Definition z3++.h:3800
fixedpoint(fixedpoint const &o)
Definition z3++.h:3759
unsigned get_num_levels(func_decl &p)
Definition z3++.h:3791
void add_rule(expr &rule, symbol const &name)
Definition z3++.h:3779
void set(params const &p)
Definition z3++.h:3802
Function declaration (aka function definition). It is the signature of interpreted and uninterpreted ...
Definition z3++.h:904
func_decl transitive_closure(func_decl const &)
Definition z3++.h:923
func_decl(context &c, Z3_func_decl n)
Definition z3++.h:907
symbol name() const
Definition z3++.h:918
expr operator()() const
Definition z3++.h:4220
bool is_const() const
Definition z3++.h:927
func_decl_vector accessors()
Definition z3++.h:4641
sort range() const
Definition z3++.h:917
func_decl(context &c)
Definition z3++.h:906
Z3_decl_kind decl_kind() const
Definition z3++.h:919
sort domain(unsigned i) const
Definition z3++.h:916
unsigned id() const
retrieve unique identifier for func_decl.
Definition z3++.h:913
unsigned num_parameters() const
Definition z3++.h:920
unsigned arity() const
Definition z3++.h:915
Definition z3++.h:2776
unsigned num_args() const
Definition z3++.h:2795
expr arg(unsigned i) const
Definition z3++.h:2796
~func_entry() override
Definition z3++.h:2785
func_entry(context &c, Z3_func_entry e)
Definition z3++.h:2783
expr value() const
Definition z3++.h:2794
func_entry & operator=(func_entry const &s)
Definition z3++.h:2787
func_entry(func_entry const &s)
Definition z3++.h:2784
expr else_value() const
Definition z3++.h:2817
void set_else(expr &value)
Definition z3++.h:2824
func_interp(context &c, Z3_func_interp e)
Definition z3++.h:2806
func_interp(func_interp const &s)
Definition z3++.h:2807
func_entry entry(unsigned i) const
Definition z3++.h:2819
void add_entry(expr_vector const &args, expr &value)
Definition z3++.h:2820
unsigned num_entries() const
Definition z3++.h:2818
func_interp & operator=(func_interp const &s)
Definition z3++.h:2810
~func_interp() override
Definition z3++.h:2808
void add(expr const &f)
Definition z3++.h:3355
unsigned size() const
Definition z3++.h:3357
Z3_goal_prec precision() const
Definition z3++.h:3359
model convert_model(model const &m) const
Definition z3++.h:3366
bool is_decided_unsat() const
Definition z3++.h:3365
goal(goal const &s)
Definition z3++.h:3345
bool inconsistent() const
Definition z3++.h:3360
~goal() override
Definition z3++.h:3346
model get_model() const
Definition z3++.h:3372
std::string dimacs(bool include_names=true) const
Definition z3++.h:3390
unsigned num_exprs() const
Definition z3++.h:3363
goal(context &c, Z3_goal s)
Definition z3++.h:3344
goal(context &c, bool models=true, bool unsat_cores=false, bool proofs=false)
Definition z3++.h:3343
void add(expr_vector const &v)
Definition z3++.h:3356
goal & operator=(goal const &s)
Definition z3++.h:3348
void reset()
Definition z3++.h:3362
friend std::ostream & operator<<(std::ostream &out, goal const &g)
Definition z3++.h:3393
unsigned depth() const
Definition z3++.h:3361
bool is_decided_sat() const
Definition z3++.h:3364
expr as_expr() const
Definition z3++.h:3377
expr operator[](int i) const
Definition z3++.h:3358
expr eval(expr const &n, bool model_completion=false) const
Definition z3++.h:2852
unsigned size() const
Definition z3++.h:2866
sort get_sort(unsigned i) const
Return the uninterpreted sort at position i.
Definition z3++.h:2916
expr get_const_interp(func_decl c) const
Definition z3++.h:2875
unsigned num_consts() const
Definition z3++.h:2862
model & operator=(model const &s)
Definition z3++.h:2844
unsigned num_funcs() const
Definition z3++.h:2863
expr_vector sort_universe(sort const &s) const
Definition z3++.h:2922
func_interp get_func_interp(func_decl f) const
Definition z3++.h:2881
func_decl get_func_decl(unsigned i) const
Definition z3++.h:2865
func_interp add_func_interp(func_decl &f, expr &else_val)
Definition z3++.h:2895
func_decl operator[](int i) const
Definition z3++.h:2867
friend std::ostream & operator<<(std::ostream &out, model const &m)
Definition z3++.h:2981
~model() override
Definition z3++.h:2842
model(model const &s)
Definition z3++.h:2840
unsigned num_sorts() const
Definition z3++.h:2906
model(context &c)
Definition z3++.h:2838
void add_const_interp(func_decl &f, expr &value)
Definition z3++.h:2901
func_decl get_const_decl(unsigned i) const
Definition z3++.h:2864
bool has_interp(func_decl f) const
Definition z3++.h:2890
std::string to_string() const
Definition z3++.h:2931
model(model &src, context &dst, translate)
Definition z3++.h:2841
model(context &c, Z3_model m)
Definition z3++.h:2839
context * m_ctx
Definition z3++.h:556
Z3_error_code check_error() const
Definition z3++.h:561
context & ctx() const
Definition z3++.h:560
object(context &c)
Definition z3++.h:558
friend void check_context(object const &a, object const &b)
Definition z3++.h:564
virtual ~object()=default
on_clause(solver &s, on_clause_eh_t &on_clause_eh)
Definition z3++.h:4732
handle(unsigned h)
Definition z3++.h:3631
unsigned h() const
Definition z3++.h:3632
std::string help() const
Definition z3++.h:3751
handle add_soft(expr const &e, char const *weight)
Definition z3++.h:3680
expr_vector lower_as_vector(handle const &h) const
Definition z3++.h:3730
friend std::ostream & operator<<(std::ostream &out, optimize const &s)
Definition z3++.h:3753
~optimize() override
Definition z3++.h:3658
void add(expr const &e, expr const &t)
Definition z3++.h:3667
expr lower(handle const &h)
Definition z3++.h:3725
void pop()
Definition z3++.h:3707
expr_vector objectives() const
Definition z3++.h:3746
void add(expr_vector const &es)
Definition z3++.h:3664
void add(expr const &e, char const *p)
Definition z3++.h:3671
void set_initial_value(expr const &var, expr const &value)
Definition z3++.h:3687
model get_model() const
Definition z3++.h:3722
handle add(expr const &e, unsigned weight)
Definition z3++.h:3684
check_result check()
Definition z3++.h:3710
check_result check(expr_vector const &asms)
Definition z3++.h:3711
stats statistics() const
Definition z3++.h:3747
expr_vector upper_as_vector(handle const &h) const
Definition z3++.h:3740
void add(expr const &e)
Definition z3++.h:3660
void set_initial_value(expr const &var, int i)
Definition z3++.h:3691
void push()
Definition z3++.h:3704
void set_initial_value(expr const &var, bool b)
Definition z3++.h:3694
optimize(context &c, optimize const &src, translate)
Definition z3++.h:3635
handle add_soft(expr const &e, unsigned weight)
Definition z3++.h:3675
handle maximize(expr const &e)
Definition z3++.h:3698
optimize(optimize const &o)
Definition z3++.h:3641
void from_file(char const *filename)
Definition z3++.h:3749
expr_vector assertions() const
Definition z3++.h:3745
optimize & operator=(optimize const &o)
Definition z3++.h:3651
void from_string(char const *constraints)
Definition z3++.h:3750
expr upper(handle const &h)
Definition z3++.h:3735
optimize(context &c, optimize &src)
Definition z3++.h:3644
handle minimize(expr const &e)
Definition z3++.h:3701
optimize(context &c)
Definition z3++.h:3634
void set(params const &p)
Definition z3++.h:3724
expr_vector unsat_core() const
Definition z3++.h:3723
param_descrs(param_descrs const &o)
Definition z3++.h:590
param_descrs(context &c, Z3_param_descrs d)
Definition z3++.h:589
Z3_param_kind kind(symbol const &s)
Definition z3++.h:604
std::string documentation(symbol const &s)
Definition z3++.h:605
symbol name(unsigned i)
Definition z3++.h:603
static param_descrs simplify_param_descrs(context &c)
Definition z3++.h:599
unsigned size()
Definition z3++.h:602
std::string to_string() const
Definition z3++.h:606
~param_descrs() override
Definition z3++.h:598
param_descrs & operator=(param_descrs const &o)
Definition z3++.h:591
static param_descrs global_param_descrs(context &c)
Definition z3++.h:600
int get_int() const
Definition z3++.h:3054
func_decl get_decl() const
Definition z3++.h:3050
sort get_sort() const
Definition z3++.h:3049
std::string get_rational() const
Definition z3++.h:3052
symbol get_symbol() const
Definition z3++.h:3051
Z3_parameter_kind kind() const
Definition z3++.h:3047
double get_double() const
Definition z3++.h:3053
parameter(func_decl const &d, unsigned idx)
Definition z3++.h:3037
expr get_expr() const
Definition z3++.h:3048
parameter(expr const &e, unsigned idx)
Definition z3++.h:3042
void set(char const *k, char const *s)
Definition z3++.h:629
params(context &c)
Definition z3++.h:614
params(params const &s)
Definition z3++.h:615
~params() override
Definition z3++.h:616
void set(char const *k, bool b)
Definition z3++.h:625
void set(char const *k, unsigned n)
Definition z3++.h:626
void set(char const *k, symbol const &s)
Definition z3++.h:628
params & operator=(params const &s)
Definition z3++.h:618
void set(char const *k, double n)
Definition z3++.h:627
friend std::ostream & operator<<(std::ostream &out, params const &p)
Definition z3++.h:633
~parser_context() override
Definition z3++.h:949
expr_vector parse_string(const char *s)
Parse a string of SMTLIB2 commands. Return assertions.
Definition z3++.h:976
void add_sort(const func_decl &f)
Add a function declaration.
Definition z3++.h:971
parser_context(context &c)
Definition z3++.h:948
parser_context & operator=(const parser_context &o)
Definition z3++.h:953
void add_sort(const sort &s)
Add a sort declaration.
Definition z3++.h:966
parser_context(const parser_context &o)
Definition z3++.h:952
probe & operator=(probe const &s)
Definition z3++.h:3559
friend probe operator<(probe const &p1, probe const &p2)
Definition z3++.h:3598
double operator()(goal const &g) const
Definition z3++.h:3567
friend probe operator==(probe const &p1, probe const &p2)
Definition z3++.h:3608
friend probe operator<=(probe const &p1, probe const &p2)
Definition z3++.h:3588
probe(context &c, Z3_probe s)
Definition z3++.h:3555
probe(context &c, double val)
Definition z3++.h:3554
probe(context &c, char const *name)
Definition z3++.h:3553
friend probe operator&&(probe const &p1, probe const &p2)
Definition z3++.h:3613
probe(probe const &s)
Definition z3++.h:3556
~probe() override
Definition z3++.h:3557
friend probe operator!(probe const &p)
Definition z3++.h:3619
double apply(goal const &g) const
Definition z3++.h:3566
friend probe operator>=(probe const &p1, probe const &p2)
Definition z3++.h:3593
friend probe operator>(probe const &p1, probe const &p2)
Definition z3++.h:3603
friend probe operator||(probe const &p1, probe const &p2)
Definition z3++.h:3616
Wrapper for Z3 Real Closed Field (RCF) numerals.
Definition z3++.h:5053
bool operator==(rcf_num const &other) const
Definition z3++.h:5178
bool is_transcendental() const
Definition z3++.h:5201
bool operator<=(rcf_num const &other) const
Definition z3++.h:5168
std::string to_decimal(unsigned precision=10) const
Return decimal string representation with given precision.
Definition z3++.h:5107
std::string to_string(bool compact=false) const
Return string representation of the RCF numeral.
Definition z3++.h:5100
rcf_num(rcf_num const &other)
Definition z3++.h:5074
rcf_num(context &c, Z3_rcf_num n)
Definition z3++.h:5064
bool operator>(rcf_num const &other) const
Definition z3++.h:5163
rcf_num operator*(rcf_num const &other) const
Definition z3++.h:5124
rcf_num operator/(rcf_num const &other) const
Definition z3++.h:5130
rcf_num inv() const
Return the multiplicative inverse (1/this).
Definition z3++.h:5152
rcf_num power(unsigned k) const
Return the power of this number raised to k.
Definition z3++.h:5144
rcf_num & operator=(rcf_num const &other)
Definition z3++.h:5080
friend std::ostream & operator<<(std::ostream &out, rcf_num const &n)
Definition z3++.h:5205
bool is_rational() const
Definition z3++.h:5189
rcf_num(context &c, int val)
Definition z3++.h:5066
bool is_algebraic() const
Definition z3++.h:5193
rcf_num(context &c, char const *val)
Definition z3++.h:5070
Z3_context ctx() const
Definition z3++.h:5095
bool is_infinitesimal() const
Definition z3++.h:5197
bool operator!=(rcf_num const &other) const
Definition z3++.h:5183
rcf_num operator-() const
Definition z3++.h:5136
bool operator>=(rcf_num const &other) const
Definition z3++.h:5173
rcf_num operator-(rcf_num const &other) const
Definition z3++.h:5118
bool operator<(rcf_num const &other) const
Definition z3++.h:5158
rcf_num operator+(rcf_num const &other) const
Definition z3++.h:5112
std::string help() const
Definition z3++.h:3524
~simplifier() override
Definition z3++.h:3515
simplifier(context &c, char const *name)
Definition z3++.h:3512
friend simplifier with(simplifier const &t, params const &p)
Definition z3++.h:3540
simplifier(context &c, Z3_simplifier s)
Definition z3++.h:3513
simplifier(simplifier const &s)
Definition z3++.h:3514
param_descrs get_param_descrs()
Definition z3++.h:3527
simplifier & operator=(simplifier const &s)
Definition z3++.h:3517
friend simplifier operator&(simplifier const &t1, simplifier const &t2)
Definition z3++.h:3533
cube_iterator end()
Definition z3++.h:3326
cube_generator(solver &s, expr_vector &vars)
Definition z3++.h:3318
cube_iterator begin()
Definition z3++.h:3325
cube_generator(solver &s)
Definition z3++.h:3311
void set_cutoff(unsigned c) noexcept
Definition z3++.h:3327
expr_vector const * operator->() const
Definition z3++.h:3293
bool operator==(cube_iterator const &other) const noexcept
Definition z3++.h:3296
cube_iterator operator++(int)
Definition z3++.h:3292
cube_iterator & operator++()
Definition z3++.h:3282
bool operator!=(cube_iterator const &other) const noexcept
Definition z3++.h:3299
cube_iterator(solver &s, expr_vector &vars, unsigned &cutoff, bool end)
Definition z3++.h:3270
expr_vector const & operator*() const noexcept
Definition z3++.h:3294
void from_string(char const *s)
Definition z3++.h:3118
expr proof() const
Definition z3++.h:3215
cube_generator cubes(expr_vector &vars)
Definition z3++.h:3331
friend std::ostream & operator<<(std::ostream &out, solver const &s)
Definition z3++.h:3334
solver(context &c, solver const &src, translate)
Definition z3++.h:3072
expr_vector non_units() const
Definition z3++.h:3152
solver(context &c, simple)
Definition z3++.h:3069
solver(context &c, Z3_solver s)
Definition z3++.h:3070
solver(context &c, char const *logic)
Definition z3++.h:3071
void set(char const *k, bool v)
Definition z3++.h:3085
void add(expr const &e, expr const &p)
Definition z3++.h:3104
void add(expr const &e, char const *p)
Definition z3++.h:3109
check_result consequences(expr_vector &assumptions, expr_vector &vars, expr_vector &conseq)
Definition z3++.h:3143
void set_initial_value(expr const &var, expr const &value)
Definition z3++.h:3184
void set(char const *k, char const *v)
Definition z3++.h:3089
check_result check(unsigned n, expr *const assumptions)
Definition z3++.h:3121
expr congruence_explain(expr const &a, expr const &b) const
Definition z3++.h:3177
model get_model() const
Definition z3++.h:3142
std::string dimacs(bool include_names=true) const
Definition z3++.h:3238
void import_model_converter(solver const &src)
Definition z3++.h:3209
check_result check()
Definition z3++.h:3120
expr congruence_next(expr const &t) const
Definition z3++.h:3171
stats statistics() const
Definition z3++.h:3149
expr_vector units() const
Definition z3++.h:3153
expr_vector trail() const
Definition z3++.h:3154
void add(expr const &e)
Definition z3++.h:3103
void set_initial_value(expr const &var, int i)
Definition z3++.h:3188
solver & operator=(solver const &s)
Definition z3++.h:3077
void set(char const *k, double v)
Definition z3++.h:3087
void pop(unsigned n=1)
Definition z3++.h:3101
void push()
Create a backtracking point.
Definition z3++.h:3100
void set_initial_value(expr const &var, bool b)
Definition z3++.h:3191
~solver() override
Definition z3++.h:3075
std::string to_smt2(char const *status="unknown")
Definition z3++.h:3218
solver(context &c)
Definition z3++.h:3068
param_descrs get_param_descrs()
Definition z3++.h:3240
void set(char const *k, unsigned v)
Definition z3++.h:3086
void add(expr_vector const &v)
Definition z3++.h:3112
expr_vector assertions() const
Definition z3++.h:3151
void from_file(char const *file)
Definition z3++.h:3117
expr_vector trail(array< unsigned > &levels) const
Definition z3++.h:3155
void reset()
Definition z3++.h:3102
void solve_for(expr_vector const &vars, expr_vector &terms, expr_vector &guards)
Definition z3++.h:3195
std::string reason_unknown() const
Definition z3++.h:3148
void set(params const &p)
Definition z3++.h:3084
expr_vector cube(expr_vector &vars, unsigned cutoff)
Definition z3++.h:3243
cube_generator cubes()
Definition z3++.h:3330
expr_vector unsat_core() const
Definition z3++.h:3150
expr congruence_root(expr const &t) const
Definition z3++.h:3165
solver(solver const &s)
Definition z3++.h:3073
void set(char const *k, symbol const &v)
Definition z3++.h:3088
check_result check(expr_vector const &assumptions)
Definition z3++.h:3131
A Z3 sort (aka type). Every expression (i.e., formula or term) in Z3 has a sort.
Definition z3++.h:801
sort(context &c, Z3_sort s)
Definition z3++.h:804
func_decl_vector constructors()
Definition z3++.h:4623
Z3_sort_kind sort_kind() const
Return the internal sort kind.
Definition z3++.h:816
unsigned bv_size() const
Return the size of this Bit-vector sort.
Definition z3++.h:875
bool is_int() const
Return true if this sort is the Integer sort.
Definition z3++.h:828
sort(context &c)
Definition z3++.h:803
bool is_real() const
Return true if this sort is the Real sort.
Definition z3++.h:832
sort(context &c, Z3_ast a)
Definition z3++.h:805
friend std::ostream & operator<<(std::ostream &out, sort const &s)
Definition z3++.h:893
func_decl_vector recognizers()
Definition z3++.h:4632
symbol name() const
Return name of sort.
Definition z3++.h:820
bool is_relation() const
Return true if this sort is a Relation sort.
Definition z3++.h:852
unsigned fpa_ebits() const
Definition z3++.h:877
sort array_range() const
Return the range of this Array sort.
Definition z3++.h:891
bool is_bool() const
Return true if this sort is the Boolean sort.
Definition z3++.h:824
bool is_arith() const
Return true if this sort is the Integer or Real sort.
Definition z3++.h:836
bool is_bv() const
Return true if this sort is a Bit-vector sort.
Definition z3++.h:840
sort array_domain() const
Return the domain of this Array sort.
Definition z3++.h:885
bool is_finite_domain() const
Return true if this sort is a Finite domain sort.
Definition z3++.h:864
bool is_datatype() const
Return true if this sort is a Datatype sort.
Definition z3++.h:848
bool is_re() const
Return true if this sort is a regular expression sort.
Definition z3++.h:860
unsigned id() const
retrieve unique identifier for func_decl.
Definition z3++.h:811
bool is_array() const
Return true if this sort is a Array sort.
Definition z3++.h:844
bool is_seq() const
Return true if this sort is a Sequence sort.
Definition z3++.h:856
unsigned fpa_sbits() const
Definition z3++.h:879
bool is_fpa() const
Return true if this sort is a Floating point sort.
Definition z3++.h:868
stats & operator=(stats const &s)
Definition z3++.h:2995
unsigned size() const
Definition z3++.h:3002
bool is_uint(unsigned i) const
Definition z3++.h:3004
bool is_double(unsigned i) const
Definition z3++.h:3005
~stats() override
Definition z3++.h:2993
stats(stats const &s)
Definition z3++.h:2992
double double_value(unsigned i) const
Definition z3++.h:3007
unsigned uint_value(unsigned i) const
Definition z3++.h:3006
stats(context &c, Z3_stats e)
Definition z3++.h:2991
friend std::ostream & operator<<(std::ostream &out, stats const &s)
Definition z3++.h:3010
std::string key(unsigned i) const
Definition z3++.h:3003
stats(context &c)
Definition z3++.h:2990
Z3_symbol_kind kind() const
Definition z3++.h:571
symbol(context &c, Z3_symbol s)
Definition z3++.h:569
int to_int() const
Definition z3++.h:573
friend std::ostream & operator<<(std::ostream &out, symbol const &s)
Definition z3++.h:577
std::string str() const
Definition z3++.h:572
friend tactic par_or(unsigned n, tactic const *tactics)
Definition z3++.h:3489
friend tactic par_and_then(tactic const &t1, tactic const &t2)
Definition z3++.h:3498
std::string help() const
Definition z3++.h:3448
solver mk_solver() const
Definition z3++.h:3438
tactic(context &c, char const *name)
Definition z3++.h:3426
tactic(context &c, Z3_tactic s)
Definition z3++.h:3427
friend tactic repeat(tactic const &t, unsigned max)
Definition z3++.h:3473
friend tactic with(tactic const &t, params const &p)
Definition z3++.h:3479
apply_result apply(goal const &g) const
Definition z3++.h:3439
friend tactic operator&(tactic const &t1, tactic const &t2)
Definition z3++.h:3459
friend tactic try_for(tactic const &t, unsigned ms)
Definition z3++.h:3484
param_descrs get_param_descrs()
Definition z3++.h:3456
~tactic() override
Definition z3++.h:3429
tactic & operator=(tactic const &s)
Definition z3++.h:3431
apply_result operator()(goal const &g) const
Definition z3++.h:3445
tactic(tactic const &s)
Definition z3++.h:3428
friend tactic operator|(tactic const &t1, tactic const &t2)
Definition z3++.h:3466
void register_decide(decide_eh_t &c)
Definition z3++.h:4942
bool propagate(expr_vector const &fixed, expr_vector const &lhs, expr_vector const &rhs, expr const &conseq)
Definition z3++.h:5030
void register_created(created_eh_t &c)
Definition z3++.h:4926
virtual ~user_propagator_base()
Definition z3++.h:4843
virtual void decide(expr const &, unsigned, bool)
Definition z3++.h:4974
virtual void eq(expr const &, expr const &)
Definition z3++.h:4968
void register_eq(eq_eh_t &f)
Definition z3++.h:4886
void add(expr const &e)
tracks e by a unique identifier that is returned by the call.
Definition z3++.h:4997
virtual void created(expr const &)
Definition z3++.h:4972
virtual void push()=0
void register_final(final_eh_t &f)
register a callback on final-check. During the final check stage, all propagations have been processe...
Definition z3++.h:4910
virtual void pop(unsigned num_scopes)=0
virtual bool on_binding(expr const &, expr const &)
Definition z3++.h:4976
virtual void fixed(expr const &, expr const &)
Definition z3++.h:4966
void conflict(expr_vector const &fixed)
Definition z3++.h:5006
bool propagate(expr_vector const &fixed, expr const &conseq)
Definition z3++.h:5023
user_propagator_base(solver *s)
Definition z3++.h:4836
virtual user_propagator_base * fresh(context &ctx)=0
user_propagators created using fresh() are created during search and their lifetimes are restricted t...
user_propagator_base(context &c)
Definition z3++.h:4834
void conflict(expr_vector const &fixed, expr_vector const &lhs, expr_vector const &rhs)
Definition z3++.h:5013
bool next_split(expr const &e, unsigned idx, Z3_lbool phase)
Definition z3++.h:4978
void register_fixed(fixed_eh_t &f)
register callbacks. Callbacks can only be registered with user_propagators that were created using a ...
Definition z3++.h:4870
Z3_ast Z3_API Z3_mk_exists_const(Z3_context c, unsigned weight, unsigned num_bound, Z3_app const bound[], unsigned num_patterns, Z3_pattern const patterns[], Z3_ast body)
Similar to Z3_mk_forall_const.
void Z3_API Z3_solver_propagate_on_binding(Z3_context c, Z3_solver s, Z3_on_binding_eh on_binding_eh)
register a callback when the solver instantiates a quantifier. If the callback returns false,...
Z3_ast Z3_API Z3_mk_pbeq(Z3_context c, unsigned num_args, Z3_ast const args[], int const coeffs[], int k)
Pseudo-Boolean relations.
Z3_ast_vector Z3_API Z3_optimize_get_assertions(Z3_context c, Z3_optimize o)
Return the set of asserted formulas on the optimization context.
Z3_ast_kind
The different kinds of Z3 AST (abstract syntax trees). That is, terms, formulas and types.
Definition z3_api.h:142
Z3_ast Z3_API Z3_model_get_const_interp(Z3_context c, Z3_model m, Z3_func_decl a)
Return the interpretation (i.e., assignment) of constant a in the model m. Return NULL,...
Z3_sort Z3_API Z3_mk_int_sort(Z3_context c)
Create the integer type.
Z3_simplifier Z3_API Z3_simplifier_and_then(Z3_context c, Z3_simplifier t1, Z3_simplifier t2)
Return a simplifier that applies t1 to a given goal and t2 to every subgoal produced by t1.
Z3_ast Z3_API Z3_mk_fpa_is_infinite(Z3_context c, Z3_ast t)
Predicate indicating whether t is a floating-point number representing +oo or -oo.
Z3_probe Z3_API Z3_probe_lt(Z3_context x, Z3_probe p1, Z3_probe p2)
Return a probe that evaluates to "true" when the value returned by p1 is less than the value returned...
Z3_sort Z3_API Z3_mk_array_sort_n(Z3_context c, unsigned n, Z3_sort const *domain, Z3_sort range)
Create an array type with N arguments.
Z3_ast Z3_API Z3_mk_bvxnor(Z3_context c, Z3_ast t1, Z3_ast t2)
Bitwise xnor.
Z3_string Z3_API Z3_get_error_msg(Z3_context c, Z3_error_code err)
Return a string describing the given error code.
Z3_parameter_kind Z3_API Z3_get_decl_parameter_kind(Z3_context c, Z3_func_decl d, unsigned idx)
Return the parameter type associated with a declaration.
bool Z3_API Z3_is_seq_sort(Z3_context c, Z3_sort s)
Check if s is a sequence sort.
Z3_ast Z3_API Z3_mk_bvnor(Z3_context c, Z3_ast t1, Z3_ast t2)
Bitwise nor.
Z3_ast Z3_API Z3_get_denominator(Z3_context c, Z3_ast a)
Return the denominator (as a numeral AST) of a numeral AST of sort Real.
Z3_probe Z3_API Z3_probe_not(Z3_context x, Z3_probe p)
Return a probe that evaluates to "true" when p does not evaluate to true.
Z3_decl_kind Z3_API Z3_get_decl_kind(Z3_context c, Z3_func_decl d)
Return declaration kind corresponding to declaration.
void Z3_API Z3_solver_assert_and_track(Z3_context c, Z3_solver s, Z3_ast a, Z3_ast p)
Assert a constraint a into the solver, and track it (in the unsat) core using the Boolean constant p.
Z3_ast Z3_API Z3_func_interp_get_else(Z3_context c, Z3_func_interp f)
Return the 'else' value of the given function interpretation.
Z3_ast Z3_API Z3_mk_char_to_bv(Z3_context c, Z3_ast ch)
Create a bit-vector (code point) from character.
Z3_ast Z3_API Z3_mk_bvsge(Z3_context c, Z3_ast t1, Z3_ast t2)
Two's complement signed greater than or equal to.
void Z3_API Z3_ast_map_inc_ref(Z3_context c, Z3_ast_map m)
Increment the reference counter of the given AST map.
void Z3_API Z3_fixedpoint_inc_ref(Z3_context c, Z3_fixedpoint d)
Increment the reference counter of the given fixedpoint context.
Z3_tactic Z3_API Z3_tactic_using_params(Z3_context c, Z3_tactic t, Z3_params p)
Return a tactic that applies t using the given set of parameters.
Z3_ast Z3_API Z3_mk_const_array(Z3_context c, Z3_sort domain, Z3_ast v)
Create the constant array.
Z3_rcf_num Z3_API Z3_rcf_div(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return the value a / b.
void Z3_API Z3_simplifier_inc_ref(Z3_context c, Z3_simplifier t)
Increment the reference counter of the given simplifier.
unsigned Z3_API Z3_rcf_mk_roots(Z3_context c, unsigned n, Z3_rcf_num const a[], Z3_rcf_num roots[])
Store in roots the roots of the polynomial a[n-1]*x^{n-1} + ... + a[0]. The output vector roots must ...
void Z3_API Z3_fixedpoint_add_rule(Z3_context c, Z3_fixedpoint d, Z3_ast rule, Z3_symbol name)
Add a universal Horn clause as a named rule. The horn_rule should be of the form:
Z3_probe Z3_API Z3_probe_eq(Z3_context x, Z3_probe p1, Z3_probe p2)
Return a probe that evaluates to "true" when the value returned by p1 is equal to the value returned ...
Z3_ast_vector Z3_API Z3_optimize_get_unsat_core(Z3_context c, Z3_optimize o)
Retrieve the unsat core for the last Z3_optimize_check The unsat core is a subset of the assumptions ...
Z3_sort Z3_API Z3_mk_char_sort(Z3_context c)
Create a sort for unicode characters.
Z3_ast Z3_API Z3_mk_unsigned_int(Z3_context c, unsigned v, Z3_sort ty)
Create a numeral of a int, bit-vector, or finite-domain sort.
Z3_ast Z3_API Z3_mk_re_option(Z3_context c, Z3_ast re)
Create the regular language [re].
Z3_ast Z3_API Z3_mk_bvsle(Z3_context c, Z3_ast t1, Z3_ast t2)
Two's complement signed less than or equal to.
void Z3_API Z3_query_constructor(Z3_context c, Z3_constructor constr, unsigned num_fields, Z3_func_decl *constructor, Z3_func_decl *tester, Z3_func_decl accessors[])
Query constructor for declared functions.
Z3_func_decl Z3_API Z3_get_app_decl(Z3_context c, Z3_app a)
Return the declaration of a constant or function application.
void Z3_API Z3_optimize_set_initial_value(Z3_context c, Z3_optimize o, Z3_ast v, Z3_ast val)
provide an initialization hint to the solver. The initialization hint is used to calibrate an initial...
void Z3_API Z3_del_context(Z3_context c)
Delete the given logical context.
Z3_ast Z3_API Z3_substitute(Z3_context c, Z3_ast a, unsigned num_exprs, Z3_ast const from[], Z3_ast const to[])
Substitute every occurrence of from[i] in a with to[i], for i smaller than num_exprs....
Z3_ast Z3_API Z3_mk_mul(Z3_context c, unsigned num_args, Z3_ast const args[])
Create an AST node representing args[0] * ... * args[num_args-1].
Z3_func_decl Z3_API Z3_get_decl_func_decl_parameter(Z3_context c, Z3_func_decl d, unsigned idx)
Return the expression value associated with an expression parameter.
Z3_goal_prec
Z3 custom error handler (See Z3_set_error_handler).
Definition z3_api.h:1429
Z3_ast Z3_API Z3_mk_fpa_to_fp_bv(Z3_context c, Z3_ast bv, Z3_sort s)
Conversion of a single IEEE 754-2008 bit-vector into a floating-point number.
Z3_ast Z3_API Z3_ast_map_find(Z3_context c, Z3_ast_map m, Z3_ast k)
Return the value associated with the key k.
Z3_ast Z3_API Z3_mk_seq_replace(Z3_context c, Z3_ast s, Z3_ast src, Z3_ast dst)
Replace the first occurrence of src with dst in s.
Z3_string Z3_API Z3_param_descrs_to_string(Z3_context c, Z3_param_descrs p)
Convert a parameter description set into a string. This function is mainly used for printing the cont...
Z3_ast_vector Z3_API Z3_polynomial_subresultants(Z3_context c, Z3_ast p, Z3_ast q, Z3_ast x)
Return the nonzero subresultants of p and q with respect to the "variable" x.
Z3_ast Z3_API Z3_mk_zero_ext(Z3_context c, unsigned i, Z3_ast t1)
Extend the given bit-vector with zeros to the (unsigned) equivalent bit-vector of size m+i,...
void Z3_API Z3_solver_set_params(Z3_context c, Z3_solver s, Z3_params p)
Set the given solver using the given parameters.
Z3_ast Z3_API Z3_mk_set_intersect(Z3_context c, unsigned num_args, Z3_ast const args[])
Take the intersection of a list of sets.
Z3_params Z3_API Z3_mk_params(Z3_context c)
Create a Z3 (empty) parameter set. Starting at Z3 4.0, parameter sets are used to configure many comp...
Z3_ast Z3_API Z3_mk_fpa_is_subnormal(Z3_context c, Z3_ast t)
Predicate indicating whether t is a subnormal floating-point number.
unsigned Z3_API Z3_get_decl_num_parameters(Z3_context c, Z3_func_decl d)
Return the number of parameters associated with a declaration.
Z3_ast Z3_API Z3_mk_set_subset(Z3_context c, Z3_ast arg1, Z3_ast arg2)
Check for subsetness of sets.
Z3_ast Z3_API Z3_simplify(Z3_context c, Z3_ast a)
Interface to simplifier.
Z3_ast Z3_API Z3_mk_int(Z3_context c, int v, Z3_sort ty)
Create a numeral of an int, bit-vector, or finite-domain sort.
Z3_ast Z3_API Z3_mk_fpa_to_ieee_bv(Z3_context c, Z3_ast t)
Conversion of a floating-point term into a bit-vector term in IEEE 754-2008 format.
Z3_lbool Z3_API Z3_solver_get_consequences(Z3_context c, Z3_solver s, Z3_ast_vector assumptions, Z3_ast_vector variables, Z3_ast_vector consequences)
retrieve consequences from solver that determine values of the supplied function symbols.
Z3_ast_vector Z3_API Z3_fixedpoint_from_file(Z3_context c, Z3_fixedpoint f, Z3_string s)
Parse an SMT-LIB2 file with fixedpoint rules. Add the rules to the current fixedpoint context....
void Z3_API Z3_get_string_contents(Z3_context c, Z3_ast s, unsigned length, unsigned contents[])
Retrieve the unescaped string constant stored in s.
Z3_ast Z3_API Z3_mk_bvule(Z3_context c, Z3_ast t1, Z3_ast t2)
Unsigned less than or equal to.
Z3_ast Z3_API Z3_mk_full_set(Z3_context c, Z3_sort domain)
Create the full set.
Z3_rcf_num Z3_API Z3_rcf_mk_rational(Z3_context c, Z3_string val)
Return a RCF rational using the given string.
Z3_param_kind Z3_API Z3_param_descrs_get_kind(Z3_context c, Z3_param_descrs p, Z3_symbol n)
Return the kind associated with the given parameter name n.
Z3_ast Z3_API Z3_mk_fpa_to_fp_signed(Z3_context c, Z3_ast rm, Z3_ast t, Z3_sort s)
Conversion of a 2's complement signed bit-vector term into a term of FloatingPoint sort.
bool Z3_API Z3_get_numeral_int64(Z3_context c, Z3_ast v, int64_t *i)
Similar to Z3_get_numeral_string, but only succeeds if the value can fit in a machine int64_t int....
Z3_ast_vector Z3_API Z3_optimize_get_upper_as_vector(Z3_context c, Z3_optimize o, unsigned idx)
Retrieve upper bound value or approximation for the i'th optimization objective.
void Z3_API Z3_add_rec_def(Z3_context c, Z3_func_decl f, unsigned n, Z3_ast args[], Z3_ast body)
Define the body of a recursive function.
Z3_param_descrs Z3_API Z3_solver_get_param_descrs(Z3_context c, Z3_solver s)
Return the parameter description set for the given solver object.
Z3_ast Z3_API Z3_mk_fpa_to_sbv(Z3_context c, Z3_ast rm, Z3_ast t, unsigned sz)
Conversion of a floating-point term into a signed bit-vector.
Z3_ast Z3_API Z3_mk_true(Z3_context c)
Create an AST node representing true.
Z3_ast Z3_API Z3_optimize_get_lower(Z3_context c, Z3_optimize o, unsigned idx)
Retrieve lower bound value or approximation for the i'th optimization objective.
Z3_ast Z3_API Z3_mk_set_union(Z3_context c, unsigned num_args, Z3_ast const args[])
Take the union of a list of sets.
Z3_model Z3_API Z3_optimize_get_model(Z3_context c, Z3_optimize o)
Retrieve the model for the last Z3_optimize_check.
Z3_ast Z3_API Z3_mk_finite_set_empty(Z3_context c, Z3_sort set_sort)
Create an empty finite set of the given sort.
void Z3_API Z3_apply_result_inc_ref(Z3_context c, Z3_apply_result r)
Increment the reference counter of the given Z3_apply_result object.
Z3_func_interp Z3_API Z3_add_func_interp(Z3_context c, Z3_model m, Z3_func_decl f, Z3_ast default_value)
Create a fresh func_interp object, add it to a model for a specified function. It has reference count...
Z3_ast Z3_API Z3_mk_bvsdiv_no_overflow(Z3_context c, Z3_ast t1, Z3_ast t2)
Create a predicate that checks that the bit-wise signed division of t1 and t2 does not overflow.
Z3_decl_kind
The different kinds of interpreted function kinds.
Definition z3_api.h:988
void Z3_API Z3_parser_context_add_decl(Z3_context c, Z3_parser_context pc, Z3_func_decl f)
Add a function declaration.
unsigned Z3_API Z3_get_arity(Z3_context c, Z3_func_decl d)
Alias for Z3_get_domain_size.
void Z3_API Z3_ast_vector_set(Z3_context c, Z3_ast_vector v, unsigned i, Z3_ast a)
Update position i of the AST vector v with the AST a.
Z3_ast Z3_API Z3_mk_bvxor(Z3_context c, Z3_ast t1, Z3_ast t2)
Bitwise exclusive-or.
Z3_string Z3_API Z3_stats_to_string(Z3_context c, Z3_stats s)
Convert a statistics into a string.
Z3_param_descrs Z3_API Z3_fixedpoint_get_param_descrs(Z3_context c, Z3_fixedpoint f)
Return the parameter description set for the given fixedpoint object.
Z3_sort Z3_API Z3_mk_real_sort(Z3_context c)
Create the real type.
void Z3_API Z3_optimize_from_file(Z3_context c, Z3_optimize o, Z3_string s)
Parse an SMT-LIB2 file with assertions, soft constraints and optimization objectives....
Z3_ast Z3_API Z3_mk_le(Z3_context c, Z3_ast t1, Z3_ast t2)
Create less than or equal to.
Z3_string Z3_API Z3_simplifier_get_help(Z3_context c, Z3_simplifier t)
Return a string containing a description of parameters accepted by the given simplifier.
bool Z3_API Z3_goal_inconsistent(Z3_context c, Z3_goal g)
Return true if the given goal contains the formula false.
Z3_ast Z3_API Z3_mk_lambda_const(Z3_context c, unsigned num_bound, Z3_app const bound[], Z3_ast body)
Create a lambda expression using a list of constants that form the set of bound variables.
Z3_tactic Z3_API Z3_tactic_par_and_then(Z3_context c, Z3_tactic t1, Z3_tactic t2)
Return a tactic that applies t1 to a given goal and then t2 to every subgoal produced by t1....
void Z3_API Z3_fixedpoint_update_rule(Z3_context c, Z3_fixedpoint d, Z3_ast a, Z3_symbol name)
Update a named rule. A rule with the same name must have been previously created.
void Z3_API Z3_solver_dec_ref(Z3_context c, Z3_solver s)
Decrement the reference counter of the given solver.
Z3_ast Z3_API Z3_mk_bvslt(Z3_context c, Z3_ast t1, Z3_ast t2)
Two's complement signed less than.
Z3_func_decl Z3_API Z3_model_get_func_decl(Z3_context c, Z3_model m, unsigned i)
Return the declaration of the i-th function in the given model.
bool Z3_API Z3_ast_map_contains(Z3_context c, Z3_ast_map m, Z3_ast k)
Return true if the map m contains the AST key k.
Z3_ast Z3_API Z3_mk_seq_length(Z3_context c, Z3_ast s)
Return the length of the sequence s.
Z3_ast Z3_API Z3_mk_numeral(Z3_context c, Z3_string numeral, Z3_sort ty)
Create a numeral of a given sort.
Z3_ast Z3_API Z3_mk_finite_set_difference(Z3_context c, Z3_ast s1, Z3_ast s2)
Create the set difference of two finite sets.
unsigned Z3_API Z3_func_entry_get_num_args(Z3_context c, Z3_func_entry e)
Return the number of arguments in a Z3_func_entry object.
Z3_ast Z3_API Z3_simplify_ex(Z3_context c, Z3_ast a, Z3_params p)
Interface to simplifier.
Z3_rcf_num Z3_API Z3_rcf_add(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return the value a + b.
Z3_symbol Z3_API Z3_get_decl_symbol_parameter(Z3_context c, Z3_func_decl d, unsigned idx)
Return the double value associated with an double parameter.
void Z3_API Z3_solver_from_string(Z3_context c, Z3_solver s, Z3_string str)
load solver assertions from a string.
Z3_ast Z3_API Z3_get_numerator(Z3_context c, Z3_ast a)
Return the numerator (as a numeral AST) of a numeral AST of sort Real.
Z3_ast Z3_API Z3_mk_unary_minus(Z3_context c, Z3_ast arg)
Create an AST node representing - arg.
Z3_ast Z3_API Z3_mk_fpa_rna(Z3_context c)
Create a numeral of RoundingMode sort which represents the NearestTiesToAway rounding mode.
Z3_probe Z3_API Z3_probe_ge(Z3_context x, Z3_probe p1, Z3_probe p2)
Return a probe that evaluates to "true" when the value returned by p1 is greater than or equal to the...
Z3_ast Z3_API Z3_mk_and(Z3_context c, unsigned num_args, Z3_ast const args[])
Create an AST node representing args[0] and ... and args[num_args-1].
Z3_ast Z3_API Z3_mk_finite_set_subset(Z3_context c, Z3_ast s1, Z3_ast s2)
Check if one finite set is a subset of another.
void Z3_API Z3_simplifier_dec_ref(Z3_context c, Z3_simplifier g)
Decrement the reference counter of the given simplifier.
void Z3_API Z3_interrupt(Z3_context c)
Interrupt the execution of a Z3 procedure. This procedure can be used to interrupt: solvers,...
Z3_ast Z3_API Z3_mk_str_to_int(Z3_context c, Z3_ast s)
Convert string to integer.
Z3_ast Z3_API Z3_mk_fpa_sub(Z3_context c, Z3_ast rm, Z3_ast t1, Z3_ast t2)
Floating-point subtraction.
void Z3_API Z3_goal_assert(Z3_context c, Z3_goal g, Z3_ast a)
Add a new formula a to the given goal. The formula is split according to the following procedure that...
Z3_symbol Z3_API Z3_param_descrs_get_name(Z3_context c, Z3_param_descrs p, unsigned i)
Return the name of the parameter at given index i.
Z3_sort Z3_API Z3_mk_polymorphic_datatype(Z3_context c, Z3_symbol name, unsigned num_parameters, Z3_sort parameters[], unsigned num_constructors, Z3_constructor constructors[])
Create a parametric datatype with explicit type parameters.
Z3_ast Z3_API Z3_func_entry_get_value(Z3_context c, Z3_func_entry e)
Return the value of this point.
bool Z3_API Z3_is_quantifier_exists(Z3_context c, Z3_ast a)
Determine if ast is an existential quantifier.
Z3_ast_vector Z3_API Z3_fixedpoint_from_string(Z3_context c, Z3_fixedpoint f, Z3_string s)
Parse an SMT-LIB2 string with fixedpoint rules. Add the rules to the current fixedpoint context....
Z3_sort Z3_API Z3_mk_uninterpreted_sort(Z3_context c, Z3_symbol s)
Create a free (uninterpreted) type using the given name (symbol).
void Z3_API Z3_optimize_pop(Z3_context c, Z3_optimize d)
Backtrack one level.
Z3_ast Z3_API Z3_mk_fpa_is_normal(Z3_context c, Z3_ast t)
Predicate indicating whether t is a normal floating-point number.
Z3_ast Z3_API Z3_mk_false(Z3_context c)
Create an AST node representing false.
Z3_sort Z3_API Z3_mk_datatype(Z3_context c, Z3_symbol name, unsigned num_constructors, Z3_constructor constructors[])
Create datatype, such as lists, trees, records, enumerations or unions of records....
Z3_ast_vector Z3_API Z3_ast_map_keys(Z3_context c, Z3_ast_map m)
Return the keys stored in the given map.
Z3_lbool Z3_API Z3_solver_check(Z3_context c, Z3_solver s)
Check whether the assertions in a given solver are consistent or not.
Z3_ast Z3_API Z3_mk_fpa_to_ubv(Z3_context c, Z3_ast rm, Z3_ast t, unsigned sz)
Conversion of a floating-point term into an unsigned bit-vector.
Z3_ast Z3_API Z3_mk_rotate_right(Z3_context c, unsigned i, Z3_ast t1)
Rotate bits of t1 to the right i times.
Z3_ast Z3_API Z3_mk_bvmul(Z3_context c, Z3_ast t1, Z3_ast t2)
Standard two's complement multiplication.
Z3_ast Z3_API Z3_mk_seq_at(Z3_context c, Z3_ast s, Z3_ast index)
Retrieve from s the unit sequence positioned at position index. The sequence is empty if the index is...
Z3_model Z3_API Z3_goal_convert_model(Z3_context c, Z3_goal g, Z3_model m)
Convert a model of the formulas of a goal to a model of an original goal. The model may be null,...
void Z3_API Z3_del_constructor(Z3_context c, Z3_constructor constr)
Reclaim memory allocated to constructor.
Z3_ast Z3_API Z3_mk_bvsgt(Z3_context c, Z3_ast t1, Z3_ast t2)
Two's complement signed greater than.
Z3_string Z3_API Z3_ast_to_string(Z3_context c, Z3_ast a)
Convert the given AST node into a string.
Z3_ast Z3_API Z3_mk_re_complement(Z3_context c, Z3_ast re)
Create the complement of the regular language re.
bool Z3_API Z3_rcf_eq(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return true if a == b.
Z3_ast_vector Z3_API Z3_fixedpoint_get_assertions(Z3_context c, Z3_fixedpoint f)
Retrieve set of background assertions from fixedpoint context.
Z3_context Z3_API Z3_mk_context_rc(Z3_config c)
Create a context using the given configuration. This function is similar to Z3_mk_context....
unsigned Z3_API Z3_fpa_get_ebits(Z3_context c, Z3_sort s)
Retrieves the number of bits reserved for the exponent in a FloatingPoint sort.
Z3_ast_vector Z3_API Z3_solver_get_assertions(Z3_context c, Z3_solver s)
Return the set of asserted formulas on the solver.
Z3_string Z3_API Z3_get_full_version(void)
Return a string that fully describes the version of Z3 in use.
void Z3_API Z3_enable_trace(Z3_string tag)
Enable tracing messages tagged as tag when Z3 is compiled in debug mode. It is a NOOP otherwise.
Z3_solver Z3_API Z3_mk_solver_from_tactic(Z3_context c, Z3_tactic t)
Create a new solver that is implemented using the given tactic. The solver supports the commands Z3_s...
Z3_ast Z3_API Z3_mk_set_complement(Z3_context c, Z3_ast arg)
Take the complement of a set.
bool Z3_API Z3_stats_is_uint(Z3_context c, Z3_stats s, unsigned idx)
Return true if the given statistical data is a unsigned integer.
bool Z3_API Z3_stats_is_double(Z3_context c, Z3_stats s, unsigned idx)
Return true if the given statistical data is a double.
Z3_ast Z3_API Z3_mk_fpa_rtn(Z3_context c)
Create a numeral of RoundingMode sort which represents the TowardNegative rounding mode.
unsigned Z3_API Z3_model_get_num_consts(Z3_context c, Z3_model m)
Return the number of constants assigned by the given model.
Z3_ast Z3_API Z3_get_algebraic_number_lower(Z3_context c, Z3_ast a, unsigned precision)
Return a lower bound for the given real algebraic number. The interval isolating the number is smalle...
bool Z3_API Z3_rcf_lt(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return true if a < b.
Z3_ast Z3_API Z3_mk_extract(Z3_context c, unsigned high, unsigned low, Z3_ast t1)
Extract the bits high down to low from a bit-vector of size m to yield a new bit-vector of size n,...
Z3_ast Z3_API Z3_mk_mod(Z3_context c, Z3_ast arg1, Z3_ast arg2)
Create an AST node representing arg1 mod arg2.
Z3_ast Z3_API Z3_mk_bvredand(Z3_context c, Z3_ast t1)
Take conjunction of bits in vector, return vector of length 1.
Z3_ast Z3_API Z3_mk_set_add(Z3_context c, Z3_ast set, Z3_ast elem)
Add an element to a set.
Z3_ast Z3_API Z3_mk_ge(Z3_context c, Z3_ast t1, Z3_ast t2)
Create greater than or equal to.
Z3_ast Z3_API Z3_mk_bvadd_no_underflow(Z3_context c, Z3_ast t1, Z3_ast t2)
Create a predicate that checks that the bit-wise signed addition of t1 and t2 does not underflow.
Z3_ast Z3_API Z3_mk_fpa_rtp(Z3_context c)
Create a numeral of RoundingMode sort which represents the TowardPositive rounding mode.
void Z3_API Z3_update_param_value(Z3_context c, Z3_string param_id, Z3_string param_value)
Set a value of a context parameter.
Z3_ast Z3_API Z3_mk_bvadd_no_overflow(Z3_context c, Z3_ast t1, Z3_ast t2, bool is_signed)
Create a predicate that checks that the bit-wise addition of t1 and t2 does not overflow.
void Z3_API Z3_set_ast_print_mode(Z3_context c, Z3_ast_print_mode mode)
Select mode for the format used for pretty-printing AST nodes.
bool Z3_API Z3_solver_propagate_consequence(Z3_context c, Z3_solver_callback cb, unsigned num_fixed, Z3_ast const *fixed, unsigned num_eqs, Z3_ast const *eq_lhs, Z3_ast const *eq_rhs, Z3_ast conseq)
propagate a consequence based on fixed values and equalities. A client may invoke it during the pro...
unsigned Z3_API Z3_fpa_get_sbits(Z3_context c, Z3_sort s)
Retrieves the number of bits reserved for the significand in a FloatingPoint sort.
Z3_ast_vector Z3_API Z3_optimize_get_lower_as_vector(Z3_context c, Z3_optimize o, unsigned idx)
Retrieve lower bound value or approximation for the i'th optimization objective. The returned vector ...
Z3_rcf_num Z3_API Z3_rcf_inv(Z3_context c, Z3_rcf_num a)
Return the value 1/a.
Z3_ast Z3_API Z3_mk_array_default(Z3_context c, Z3_ast array)
Access the array default value. Produces the default range value, for arrays that can be represented ...
Z3_ast Z3_API Z3_datatype_update_field(Z3_context c, Z3_func_decl field_access, Z3_ast t, Z3_ast value)
Update record field with a value.
Z3_ast Z3_API Z3_mk_forall_const(Z3_context c, unsigned weight, unsigned num_bound, Z3_app const bound[], unsigned num_patterns, Z3_pattern const patterns[], Z3_ast body)
Create a universal quantifier using a list of constants that will form the set of bound variables.
unsigned Z3_API Z3_model_get_num_sorts(Z3_context c, Z3_model m)
Return the number of uninterpreted sorts that m assigns an interpretation to.
Z3_param_kind
The different kinds of parameters that can be associated with parameter sets. (see Z3_mk_params).
Definition z3_api.h:1346
bool Z3_API Z3_rcf_gt(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return true if a > b.
const char * Z3_string
Z3 string type. It is just an alias for const char *.
Definition z3_api.h:50
void Z3_API Z3_parser_context_dec_ref(Z3_context c, Z3_parser_context pc)
Decrement the reference counter of the given Z3_parser_context object.
Z3_param_descrs Z3_API Z3_tactic_get_param_descrs(Z3_context c, Z3_tactic t)
Return the parameter description set for the given tactic object.
Z3_sort Z3_API Z3_mk_tuple_sort(Z3_context c, Z3_symbol mk_tuple_name, unsigned num_fields, Z3_symbol const field_names[], Z3_sort const field_sorts[], Z3_func_decl *mk_tuple_decl, Z3_func_decl proj_decl[])
Create a tuple type.
Z3_ast_vector Z3_API Z3_ast_vector_translate(Z3_context s, Z3_ast_vector v, Z3_context t)
Translate the AST vector v from context s into an AST vector in context t.
void Z3_API Z3_func_entry_inc_ref(Z3_context c, Z3_func_entry e)
Increment the reference counter of the given Z3_func_entry object.
Z3_ast Z3_API Z3_mk_bvsub_no_overflow(Z3_context c, Z3_ast t1, Z3_ast t2)
Create a predicate that checks that the bit-wise signed subtraction of t1 and t2 does not overflow.
Z3_sort_kind
The different kinds of Z3 types (See Z3_get_sort_kind).
Definition z3_api.h:110
void Z3_API Z3_solver_push(Z3_context c, Z3_solver s)
Create a backtracking point.
Z3_ast Z3_API Z3_mk_bvsub_no_underflow(Z3_context c, Z3_ast t1, Z3_ast t2, bool is_signed)
Create a predicate that checks that the bit-wise subtraction of t1 and t2 does not underflow.
Z3_rcf_num Z3_API Z3_rcf_sub(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return the value a - b.
Z3_ast Z3_API Z3_mk_fpa_max(Z3_context c, Z3_ast t1, Z3_ast t2)
Maximum of floating-point numbers.
void Z3_API Z3_optimize_assert_and_track(Z3_context c, Z3_optimize o, Z3_ast a, Z3_ast t)
Assert tracked hard constraint to the optimization context.
unsigned Z3_API Z3_optimize_assert_soft(Z3_context c, Z3_optimize o, Z3_ast a, Z3_string weight, Z3_symbol id)
Assert soft constraint to the optimization context.
Z3_app Z3_API Z3_to_app(Z3_context c, Z3_ast a)
Convert an ast into an APP_AST. This is just type casting.
Z3_ast Z3_API Z3_mk_bvudiv(Z3_context c, Z3_ast t1, Z3_ast t2)
Unsigned division.
Z3_string Z3_API Z3_ast_vector_to_string(Z3_context c, Z3_ast_vector v)
Convert AST vector into a string.
Z3_ast_vector Z3_API Z3_solver_get_trail(Z3_context c, Z3_solver s)
Return the trail modulo model conversion, in order of decision level The decision level can be retrie...
bool Z3_API Z3_rcf_le(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return true if a <= b.
Z3_ast Z3_API Z3_mk_bvshl(Z3_context c, Z3_ast t1, Z3_ast t2)
Shift left.
Z3_func_decl Z3_API Z3_mk_tree_order(Z3_context c, Z3_sort a, unsigned id)
create a tree ordering relation over signature a identified using index id.
Z3_ast Z3_API Z3_mk_finite_set_filter(Z3_context c, Z3_ast f, Z3_ast set)
Filter a finite set using a predicate.
Z3_ast Z3_API Z3_mk_bvsrem(Z3_context c, Z3_ast t1, Z3_ast t2)
Two's complement signed remainder (sign follows dividend).
Z3_ast Z3_API Z3_solver_congruence_next(Z3_context c, Z3_solver s, Z3_ast a)
retrieve the next expression in the congruence class. The set of congruent siblings form a cyclic lis...
Z3_func_decl Z3_API Z3_mk_func_decl(Z3_context c, Z3_symbol s, unsigned domain_size, Z3_sort const domain[], Z3_sort range)
Declare a constant or function.
unsigned Z3_API Z3_goal_num_exprs(Z3_context c, Z3_goal g)
Return the number of formulas, subformulas and terms in the given goal.
Z3_solver Z3_API Z3_mk_solver_for_logic(Z3_context c, Z3_symbol logic)
Create a new solver customized for the given logic. It behaves like Z3_mk_solver if the logic is unkn...
Z3_ast Z3_API Z3_mk_is_int(Z3_context c, Z3_ast t1)
Check if a real number is an integer.
void Z3_API Z3_params_set_bool(Z3_context c, Z3_params p, Z3_symbol k, bool v)
Add a Boolean parameter k with value v to the parameter set p.
unsigned Z3_API Z3_apply_result_get_num_subgoals(Z3_context c, Z3_apply_result r)
Return the number of subgoals in the Z3_apply_result object returned by Z3_tactic_apply.
bool Z3_API Z3_rcf_is_infinitesimal(Z3_context c, Z3_rcf_num a)
Return true if a represents an infinitesimal.
Z3_ast Z3_API Z3_mk_ite(Z3_context c, Z3_ast t1, Z3_ast t2, Z3_ast t3)
Create an AST node representing an if-then-else: ite(t1, t2, t3).
Z3_ast Z3_API Z3_mk_select(Z3_context c, Z3_ast a, Z3_ast i)
Array read. The argument a is the array and i is the index of the array that gets read.
Z3_ast Z3_API Z3_mk_sign_ext(Z3_context c, unsigned i, Z3_ast t1)
Sign-extend of the given bit-vector to the (signed) equivalent bit-vector of size m+i,...
Z3_ast Z3_API Z3_mk_seq_unit(Z3_context c, Z3_ast a)
Create a unit sequence of a.
Z3_ast Z3_API Z3_mk_re_intersect(Z3_context c, unsigned n, Z3_ast const args[])
Create the intersection of the regular languages.
Z3_ast Z3_API Z3_mk_finite_set_member(Z3_context c, Z3_ast elem, Z3_ast set)
Check if an element is a member of a finite set.
Z3_ast_vector Z3_API Z3_solver_cube(Z3_context c, Z3_solver s, Z3_ast_vector vars, unsigned backtrack_level)
extract a next cube for a solver. The last cube is the constant true or false. The number of (non-con...
Z3_ast Z3_API Z3_mk_u32string(Z3_context c, unsigned len, unsigned const chars[])
Create a string constant out of the string that is passed in It takes the length of the string as wel...
void Z3_API Z3_fixedpoint_add_fact(Z3_context c, Z3_fixedpoint d, Z3_func_decl r, unsigned num_args, unsigned args[])
Add a Database fact.
unsigned Z3_API Z3_goal_size(Z3_context c, Z3_goal g)
Return the number of formulas in the given goal.
Z3_func_decl Z3_API Z3_solver_propagate_declare(Z3_context c, Z3_symbol name, unsigned n, Z3_sort *domain, Z3_sort range)
void Z3_API Z3_stats_inc_ref(Z3_context c, Z3_stats s)
Increment the reference counter of the given statistics object.
Z3_ast Z3_API Z3_mk_select_n(Z3_context c, Z3_ast a, unsigned n, Z3_ast const *idxs)
n-ary Array read. The argument a is the array and idxs are the indices of the array that gets read.
Z3_ast_vector Z3_API Z3_algebraic_get_poly(Z3_context c, Z3_ast a)
Return the coefficients of the defining polynomial.
Z3_ast Z3_API Z3_mk_div(Z3_context c, Z3_ast arg1, Z3_ast arg2)
Create an AST node representing arg1 div arg2.
Z3_ast Z3_API Z3_mk_pbge(Z3_context c, unsigned num_args, Z3_ast const args[], int const coeffs[], int k)
Pseudo-Boolean relations.
Z3_sort Z3_API Z3_mk_re_sort(Z3_context c, Z3_sort seq)
Create a regular expression sort out of a sequence sort.
Z3_ast Z3_API Z3_mk_pble(Z3_context c, unsigned num_args, Z3_ast const args[], int const coeffs[], int k)
Pseudo-Boolean relations.
void Z3_API Z3_optimize_inc_ref(Z3_context c, Z3_optimize d)
Increment the reference counter of the given optimize context.
void Z3_API Z3_model_dec_ref(Z3_context c, Z3_model m)
Decrement the reference counter of the given model.
Z3_sort Z3_API Z3_mk_datatype_sort(Z3_context c, Z3_symbol name, unsigned num_params, Z3_sort const params[])
create a forward reference to a recursive datatype being declared. The forward reference can be used ...
Z3_ast Z3_API Z3_mk_fpa_inf(Z3_context c, Z3_sort s, bool negative)
Create a floating-point infinity of sort s.
void Z3_API Z3_func_interp_inc_ref(Z3_context c, Z3_func_interp f)
Increment the reference counter of the given Z3_func_interp object.
Z3_func_decl Z3_API Z3_mk_piecewise_linear_order(Z3_context c, Z3_sort a, unsigned id)
create a piecewise linear ordering relation over signature a and index id.
Z3_rcf_num Z3_API Z3_rcf_mk_infinitesimal(Z3_context c)
Return a new infinitesimal that is smaller than all elements in the Z3 field.
void Z3_API Z3_params_set_double(Z3_context c, Z3_params p, Z3_symbol k, double v)
Add a double parameter k with value v to the parameter set p.
Z3_string Z3_API Z3_param_descrs_get_documentation(Z3_context c, Z3_param_descrs p, Z3_symbol s)
Retrieve documentation string corresponding to parameter name s.
Z3_ast Z3_API Z3_mk_finite_set_union(Z3_context c, Z3_ast s1, Z3_ast s2)
Create the union of two finite sets.
Z3_solver Z3_API Z3_mk_solver(Z3_context c)
Create a new solver. This solver is a "combined solver" (see combined_solver module) that internally ...
Z3_model Z3_API Z3_solver_get_model(Z3_context c, Z3_solver s)
Retrieve the model for the last Z3_solver_check or Z3_solver_check_assumptions.
int Z3_API Z3_get_symbol_int(Z3_context c, Z3_symbol s)
Return the symbol int value.
Z3_ast Z3_API Z3_mk_ext_rotate_left(Z3_context c, Z3_ast t1, Z3_ast t2)
Rotate bits of t1 to the left t2 times.
void Z3_API Z3_goal_inc_ref(Z3_context c, Z3_goal g)
Increment the reference counter of the given goal.
Z3_string Z3_API Z3_simplifier_get_descr(Z3_context c, Z3_string name)
Return a string containing a description of the simplifier with the given name.
Z3_tactic Z3_API Z3_tactic_par_or(Z3_context c, unsigned num, Z3_tactic const ts[])
Return a tactic that applies the given tactics in parallel.
Z3_ast Z3_API Z3_mk_implies(Z3_context c, Z3_ast t1, Z3_ast t2)
Create an AST node representing t1 implies t2.
Z3_ast Z3_API Z3_mk_fpa_nan(Z3_context c, Z3_sort s)
Create a floating-point NaN of sort s.
unsigned Z3_API Z3_get_datatype_sort_num_constructors(Z3_context c, Z3_sort t)
Return number of constructors for datatype.
Z3_ast Z3_API Z3_optimize_get_upper(Z3_context c, Z3_optimize o, unsigned idx)
Retrieve upper bound value or approximation for the i'th optimization objective.
void Z3_API Z3_params_set_uint(Z3_context c, Z3_params p, Z3_symbol k, unsigned v)
Add a unsigned parameter k with value v to the parameter set p.
Z3_lbool Z3_API Z3_solver_check_assumptions(Z3_context c, Z3_solver s, unsigned num_assumptions, Z3_ast const assumptions[])
Check whether the assertions in the given solver and optional assumptions are consistent or not.
Z3_ast Z3_API Z3_mk_fpa_gt(Z3_context c, Z3_ast t1, Z3_ast t2)
Floating-point greater than.
Z3_sort Z3_API Z3_model_get_sort(Z3_context c, Z3_model m, unsigned i)
Return a uninterpreted sort that m assigns an interpretation.
Z3_ast Z3_API Z3_mk_bvashr(Z3_context c, Z3_ast t1, Z3_ast t2)
Arithmetic shift right.
Z3_simplifier Z3_API Z3_simplifier_using_params(Z3_context c, Z3_simplifier t, Z3_params p)
Return a simplifier that applies t using the given set of parameters.
Z3_ast Z3_API Z3_mk_bv2int(Z3_context c, Z3_ast t1, bool is_signed)
Create an integer from the bit-vector argument t1. If is_signed is false, then the bit-vector t1 is t...
Z3_ast Z3_API Z3_mk_sbv_to_str(Z3_context c, Z3_ast s)
Signed bit-vector to string conversion.
void Z3_API Z3_solver_import_model_converter(Z3_context ctx, Z3_solver src, Z3_solver dst)
Ad-hoc method for importing model conversion from solver.
Z3_ast Z3_API Z3_mk_fpa_is_zero(Z3_context c, Z3_ast t)
Predicate indicating whether t is a floating-point number with zero value, i.e., +zero or -zero.
bool Z3_API Z3_rcf_ge(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return true if a >= b.
Z3_ast Z3_API Z3_mk_set_del(Z3_context c, Z3_ast set, Z3_ast elem)
Remove an element to a set.
Z3_ast Z3_API Z3_mk_bvmul_no_overflow(Z3_context c, Z3_ast t1, Z3_ast t2, bool is_signed)
Create a predicate that checks that the bit-wise multiplication of t1 and t2 does not overflow.
Z3_ast Z3_API Z3_mk_re_union(Z3_context c, unsigned n, Z3_ast const args[])
Create the union of the regular languages.
Z3_param_descrs Z3_API Z3_simplifier_get_param_descrs(Z3_context c, Z3_simplifier t)
Return the parameter description set for the given simplifier object.
void Z3_API Z3_optimize_set_params(Z3_context c, Z3_optimize o, Z3_params p)
Set parameters on optimization context, including parameters for the underlying SMT solver.
Z3_ast Z3_API Z3_mk_finite_set_intersect(Z3_context c, Z3_ast s1, Z3_ast s2)
Create the intersection of two finite sets.
Z3_ast Z3_API Z3_mk_bvor(Z3_context c, Z3_ast t1, Z3_ast t2)
Bitwise or.
int Z3_API Z3_get_decl_int_parameter(Z3_context c, Z3_func_decl d, unsigned idx)
Return the integer value associated with an integer parameter.
unsigned Z3_API Z3_get_num_simplifiers(Z3_context c)
Return the number of builtin simplifiers available in Z3.
Z3_func_decl Z3_API Z3_get_datatype_sort_constructor(Z3_context c, Z3_sort t, unsigned idx)
Return idx'th constructor.
void Z3_API Z3_ast_vector_resize(Z3_context c, Z3_ast_vector v, unsigned n)
Resize the AST vector v.
Z3_lbool
Lifted Boolean type: false, undefined, true.
Definition z3_api.h:58
Z3_ast Z3_API Z3_mk_seq_empty(Z3_context c, Z3_sort seq)
Create an empty sequence of the sequence sort seq.
Z3_probe Z3_API Z3_mk_probe(Z3_context c, Z3_string name)
Return a probe associated with the given name. The complete list of probes may be obtained using the ...
Z3_tactic Z3_API Z3_tactic_when(Z3_context c, Z3_probe p, Z3_tactic t)
Return a tactic that applies t to a given goal is the probe p evaluates to true. If p evaluates to fa...
Z3_ast Z3_API Z3_mk_seq_suffix(Z3_context c, Z3_ast suffix, Z3_ast s)
Check if suffix is a suffix of s.
Z3_symbol_kind Z3_API Z3_get_symbol_kind(Z3_context c, Z3_symbol s)
Return Z3_INT_SYMBOL if the symbol was constructed using Z3_mk_int_symbol, and Z3_STRING_SYMBOL if th...
void Z3_API Z3_solver_set_initial_value(Z3_context c, Z3_solver s, Z3_ast v, Z3_ast val)
provide an initialization hint to the solver. The initialization hint is used to calibrate an initial...
bool Z3_API Z3_is_lambda(Z3_context c, Z3_ast a)
Determine if ast is a lambda expression.
Z3_solver Z3_API Z3_solver_translate(Z3_context source, Z3_solver s, Z3_context target)
Copy a solver s from the context source to the context target.
void Z3_API Z3_optimize_push(Z3_context c, Z3_optimize d)
Create a backtracking point.
unsigned Z3_API Z3_stats_get_uint_value(Z3_context c, Z3_stats s, unsigned idx)
Return the unsigned value of the given statistical data.
void Z3_API Z3_probe_inc_ref(Z3_context c, Z3_probe p)
Increment the reference counter of the given probe.
Z3_sort Z3_API Z3_get_array_sort_domain(Z3_context c, Z3_sort t)
Return the domain of the given array sort. In the case of a multi-dimensional array,...
Z3_ast Z3_API Z3_mk_fpa_eq(Z3_context c, Z3_ast t1, Z3_ast t2)
Floating-point equality.
void Z3_API Z3_solver_propagate_register_cb(Z3_context c, Z3_solver_callback cb, Z3_ast e)
register an expression to propagate on with the solver. Only expressions of type Bool and type Bit-Ve...
Z3_ast Z3_API Z3_mk_bvmul_no_underflow(Z3_context c, Z3_ast t1, Z3_ast t2)
Create a predicate that checks that the bit-wise signed multiplication of t1 and t2 does not underflo...
bool Z3_API Z3_get_numeral_uint64(Z3_context c, Z3_ast v, uint64_t *u)
Similar to Z3_get_numeral_string, but only succeeds if the value can fit in a machine uint64_t int....
void Z3_API Z3_add_const_interp(Z3_context c, Z3_model m, Z3_func_decl f, Z3_ast a)
Add a constant interpretation.
Z3_string Z3_API Z3_sort_to_string(Z3_context c, Z3_sort s)
Z3_ast Z3_API Z3_mk_bvadd(Z3_context c, Z3_ast t1, Z3_ast t2)
Standard two's complement addition.
unsigned Z3_API Z3_algebraic_get_i(Z3_context c, Z3_ast a)
Return which root of the polynomial the algebraic number represents.
void Z3_API Z3_params_dec_ref(Z3_context c, Z3_params p)
Decrement the reference counter of the given parameter set.
void Z3_API Z3_fixedpoint_dec_ref(Z3_context c, Z3_fixedpoint d)
Decrement the reference counter of the given fixedpoint context.
Z3_ast Z3_API Z3_get_app_arg(Z3_context c, Z3_app a, unsigned i)
Return the i-th argument of the given application.
Z3_ast Z3_API Z3_solver_congruence_root(Z3_context c, Z3_solver s, Z3_ast a)
retrieve the congruence closure root of an expression. The root is retrieved relative to the state wh...
Z3_string Z3_API Z3_model_to_string(Z3_context c, Z3_model m)
Convert the given model into a string.
unsigned Z3_API Z3_get_string_length(Z3_context c, Z3_ast s)
Retrieve the length of the unescaped string constant stored in s.
Z3_string Z3_API Z3_tactic_get_help(Z3_context c, Z3_tactic t)
Return a string containing a description of parameters accepted by the given tactic.
void Z3_API Z3_solver_propagate_final(Z3_context c, Z3_solver s, Z3_final_eh final_eh)
register a callback on final check. This provides freedom to the propagator to delay actions or imple...
unsigned Z3_API Z3_ast_map_size(Z3_context c, Z3_ast_map m)
Return the size of the given map.
unsigned Z3_API Z3_param_descrs_size(Z3_context c, Z3_param_descrs p)
Return the number of parameters in the given parameter description set.
Z3_parameter_kind
The different kinds of parameters that can be associated with function symbols.
Definition z3_api.h:94
Z3_ast_vector Z3_API Z3_parse_smtlib2_string(Z3_context c, Z3_string str, unsigned num_sorts, Z3_symbol const sort_names[], Z3_sort const sorts[], unsigned num_decls, Z3_symbol const decl_names[], Z3_func_decl const decls[])
Parse the given string using the SMT-LIB2 parser.
Z3_ast Z3_API Z3_mk_fpa_geq(Z3_context c, Z3_ast t1, Z3_ast t2)
Floating-point greater than or equal.
Z3_ast Z3_API Z3_mk_bit2bool(Z3_context c, unsigned i, Z3_ast t1)
Extracts the bit at position i of a bit-vector and yields a boolean.
void Z3_API Z3_solver_register_on_clause(Z3_context c, Z3_solver s, void *user_context, Z3_on_clause_eh on_clause_eh)
register a callback to that retrieves assumed, inferred and deleted clauses during search.
Z3_string Z3_API Z3_goal_to_dimacs_string(Z3_context c, Z3_goal g, bool include_names)
Convert a goal into a DIMACS formatted string. The goal must be in CNF. You can convert a goal to CNF...
Z3_ast Z3_API Z3_mk_lt(Z3_context c, Z3_ast t1, Z3_ast t2)
Create less than.
double Z3_API Z3_stats_get_double_value(Z3_context c, Z3_stats s, unsigned idx)
Return the double value of the given statistical data.
Z3_ast Z3_API Z3_mk_fpa_numeral_float(Z3_context c, float v, Z3_sort ty)
Create an expression of FloatingPoint sort from three bit-vector expressions.
Z3_ast Z3_API Z3_mk_bvugt(Z3_context c, Z3_ast t1, Z3_ast t2)
Unsigned greater than.
Z3_lbool Z3_API Z3_fixedpoint_query(Z3_context c, Z3_fixedpoint d, Z3_ast query)
Pose a query against the asserted rules.
unsigned Z3_API Z3_goal_depth(Z3_context c, Z3_goal g)
Return the depth of the given goal. It tracks how many transformations were applied to it.
Z3_ast Z3_API Z3_update_term(Z3_context c, Z3_ast a, unsigned num_args, Z3_ast const args[])
Update the arguments of term a using the arguments args. The number of arguments num_args should coin...
Z3_ast Z3_API Z3_mk_fpa_rtz(Z3_context c)
Create a numeral of RoundingMode sort which represents the TowardZero rounding mode.
Z3_string Z3_API Z3_get_symbol_string(Z3_context c, Z3_symbol s)
Return the symbol name.
Z3_lbool Z3_API Z3_get_bool_value(Z3_context c, Z3_ast a)
Return Z3_L_TRUE if a is true, Z3_L_FALSE if it is false, and Z3_L_UNDEF otherwise.
Z3_simplifier Z3_API Z3_mk_simplifier(Z3_context c, Z3_string name)
Return a simplifier associated with the given name. The complete list of simplifiers may be obtained ...
Z3_ast Z3_API Z3_mk_bvnot(Z3_context c, Z3_ast t1)
Bitwise negation.
Z3_ast Z3_API Z3_mk_bvurem(Z3_context c, Z3_ast t1, Z3_ast t2)
Unsigned remainder.
Z3_ast Z3_API Z3_mk_seq_foldli(Z3_context c, Z3_ast f, Z3_ast i, Z3_ast a, Z3_ast s)
Create a fold with index tracking of the function f over the sequence s with accumulator a starting a...
void Z3_API Z3_mk_datatypes(Z3_context c, unsigned num_sorts, Z3_symbol const sort_names[], Z3_sort sorts[], Z3_constructor_list constructor_lists[])
Create mutually recursive datatypes.
Z3_ast_vector Z3_API Z3_solver_get_non_units(Z3_context c, Z3_solver s)
Return the set of non units in the solver state.
Z3_ast Z3_API Z3_mk_seq_to_re(Z3_context c, Z3_ast seq)
Create a regular expression that accepts the sequence seq.
Z3_ast Z3_API Z3_mk_bvsub(Z3_context c, Z3_ast t1, Z3_ast t2)
Standard two's complement subtraction.
Z3_ast_vector Z3_API Z3_optimize_get_objectives(Z3_context c, Z3_optimize o)
Return objectives on the optimization context. If the objective function is a max-sat objective it is...
Z3_ast Z3_API Z3_mk_seq_index(Z3_context c, Z3_ast s, Z3_ast substr, Z3_ast offset)
Return index of the first occurrence of substr in s starting from offset offset. If s does not contai...
Z3_ast Z3_API Z3_get_algebraic_number_upper(Z3_context c, Z3_ast a, unsigned precision)
Return a upper bound for the given real algebraic number. The interval isolating the number is smalle...
Z3_ast Z3_API Z3_mk_power(Z3_context c, Z3_ast arg1, Z3_ast arg2)
Create an AST node representing arg1 ^ arg2.
Z3_ast Z3_API Z3_mk_seq_concat(Z3_context c, unsigned n, Z3_ast const args[])
Concatenate sequences.
Z3_sort Z3_API Z3_mk_enumeration_sort(Z3_context c, Z3_symbol name, unsigned n, Z3_symbol const enum_names[], Z3_func_decl enum_consts[], Z3_func_decl enum_testers[])
Create a enumeration sort.
Z3_ast Z3_API Z3_mk_re_range(Z3_context c, Z3_ast lo, Z3_ast hi)
Create the range regular expression over two sequences of length 1.
unsigned Z3_API Z3_get_bv_sort_size(Z3_context c, Z3_sort t)
Return the size of the given bit-vector sort.
Z3_ast_vector Z3_API Z3_fixedpoint_get_rules(Z3_context c, Z3_fixedpoint f)
Retrieve set of rules from fixedpoint context.
Z3_ast Z3_API Z3_mk_set_member(Z3_context c, Z3_ast elem, Z3_ast set)
Check for set membership.
void Z3_API Z3_ast_vector_dec_ref(Z3_context c, Z3_ast_vector v)
Decrement the reference counter of the given AST vector.
Z3_tactic Z3_API Z3_tactic_fail_if(Z3_context c, Z3_probe p)
Return a tactic that fails if the probe p evaluates to false.
void Z3_API Z3_goal_reset(Z3_context c, Z3_goal g)
Erase all formulas from the given goal.
void Z3_API Z3_func_interp_dec_ref(Z3_context c, Z3_func_interp f)
Decrement the reference counter of the given Z3_func_interp object.
void Z3_API Z3_probe_dec_ref(Z3_context c, Z3_probe p)
Decrement the reference counter of the given probe.
void Z3_API Z3_params_inc_ref(Z3_context c, Z3_params p)
Increment the reference counter of the given parameter set.
void Z3_API Z3_set_error_handler(Z3_context c, Z3_error_handler h)
Register a Z3 error handler.
Z3_ast Z3_API Z3_mk_distinct(Z3_context c, unsigned num_args, Z3_ast const args[])
Create an AST node representing distinct(args[0], ..., args[num_args-1]).
Z3_string Z3_API Z3_rcf_num_to_decimal_string(Z3_context c, Z3_rcf_num a, unsigned prec)
Convert the RCF numeral into a string in decimal notation.
Z3_ast Z3_API Z3_mk_seq_prefix(Z3_context c, Z3_ast prefix, Z3_ast s)
Check if prefix is a prefix of s.
Z3_config Z3_API Z3_mk_config(void)
Create a configuration object for the Z3 context object.
void Z3_API Z3_set_param_value(Z3_config c, Z3_string param_id, Z3_string param_value)
Set a configuration parameter.
Z3_rcf_num Z3_API Z3_rcf_power(Z3_context c, Z3_rcf_num a, unsigned k)
Return the value a^k.
Z3_ast Z3_API Z3_solver_congruence_explain(Z3_context c, Z3_solver s, Z3_ast a, Z3_ast b)
retrieve explanation for congruence.
Z3_sort Z3_API Z3_mk_bv_sort(Z3_context c, unsigned sz)
Create a bit-vector type of the given size.
Z3_ast Z3_API Z3_mk_fpa_rem(Z3_context c, Z3_ast t1, Z3_ast t2)
Floating-point remainder.
Z3_ast Z3_API Z3_mk_bvult(Z3_context c, Z3_ast t1, Z3_ast t2)
Unsigned less than.
Z3_probe Z3_API Z3_probe_or(Z3_context x, Z3_probe p1, Z3_probe p2)
Return a probe that evaluates to "true" when p1 or p2 evaluates to true.
void Z3_API Z3_ast_map_dec_ref(Z3_context c, Z3_ast_map m)
Decrement the reference counter of the given AST map.
Z3_fixedpoint Z3_API Z3_mk_fixedpoint(Z3_context c)
Create a new fixedpoint context.
Z3_string Z3_API Z3_params_to_string(Z3_context c, Z3_params p)
Convert a parameter set into a string. This function is mainly used for printing the contents of a pa...
Z3_param_descrs Z3_API Z3_get_global_param_descrs(Z3_context c)
Retrieve description of global parameters.
void Z3_API Z3_solver_propagate_init(Z3_context c, Z3_solver s, void *user_context, Z3_push_eh push_eh, Z3_pop_eh pop_eh, Z3_fresh_eh fresh_eh)
register a user-propagator with the solver.
Z3_func_decl Z3_API Z3_model_get_const_decl(Z3_context c, Z3_model m, unsigned i)
Return the i-th constant in the given model.
void Z3_API Z3_tactic_dec_ref(Z3_context c, Z3_tactic g)
Decrement the reference counter of the given tactic.
Z3_ast Z3_API Z3_mk_bvnand(Z3_context c, Z3_ast t1, Z3_ast t2)
Bitwise nand.
Z3_solver Z3_API Z3_mk_simple_solver(Z3_context c)
Create a new incremental solver.
Z3_sort Z3_API Z3_get_range(Z3_context c, Z3_func_decl d)
Return the range of the given declaration.
void Z3_API Z3_global_param_set(Z3_string param_id, Z3_string param_value)
Set a global (or module) parameter. This setting is shared by all Z3 contexts.
void Z3_API Z3_optimize_assert(Z3_context c, Z3_optimize o, Z3_ast a)
Assert hard constraint to the optimization context.
Z3_ast_vector Z3_API Z3_model_get_sort_universe(Z3_context c, Z3_model m, Z3_sort s)
Return the finite set of distinct values that represent the interpretation for sort s.
Z3_string Z3_API Z3_benchmark_to_smtlib_string(Z3_context c, Z3_string name, Z3_string logic, Z3_string status, Z3_string attributes, unsigned num_assumptions, Z3_ast const assumptions[], Z3_ast formula)
Convert the given benchmark into SMT-LIB formatted string.
Z3_ast Z3_API Z3_mk_re_star(Z3_context c, Z3_ast re)
Create the regular language re*.
Z3_ast Z3_API Z3_mk_bv_numeral(Z3_context c, unsigned sz, bool const *bits)
create a bit-vector numeral from a vector of Booleans.
void Z3_API Z3_func_entry_dec_ref(Z3_context c, Z3_func_entry e)
Decrement the reference counter of the given Z3_func_entry object.
unsigned Z3_API Z3_stats_size(Z3_context c, Z3_stats s)
Return the number of statistical data in s.
Z3_string Z3_API Z3_optimize_to_string(Z3_context c, Z3_optimize o)
Print the current context as a string.
Z3_ast Z3_API Z3_get_quantifier_body(Z3_context c, Z3_ast a)
Return body of quantifier.
void Z3_API Z3_param_descrs_dec_ref(Z3_context c, Z3_param_descrs p)
Decrement the reference counter of the given parameter description set.
Z3_ast Z3_API Z3_mk_re_full(Z3_context c, Z3_sort re)
Create an universal regular expression of sort re.
Z3_ast Z3_API Z3_mk_fpa_min(Z3_context c, Z3_ast t1, Z3_ast t2)
Minimum of floating-point numbers.
Z3_model Z3_API Z3_mk_model(Z3_context c)
Create a fresh model object. It has reference count 0.
Z3_symbol Z3_API Z3_get_decl_name(Z3_context c, Z3_func_decl d)
Return the constant declaration name as a symbol.
Z3_ast Z3_API Z3_mk_seq_mapi(Z3_context c, Z3_ast f, Z3_ast i, Z3_ast s)
Create a map of the function f over the sequence s starting at index i.
Z3_ast Z3_API Z3_mk_bvneg_no_overflow(Z3_context c, Z3_ast t1)
Check that bit-wise negation does not overflow when t1 is interpreted as a signed bit-vector.
Z3_ast Z3_API Z3_mk_fpa_round_to_integral(Z3_context c, Z3_ast rm, Z3_ast t)
Floating-point roundToIntegral. Rounds a floating-point number to the closest integer,...
Z3_rcf_num Z3_API Z3_rcf_mk_small_int(Z3_context c, int val)
Return a RCF small integer.
Z3_string Z3_API Z3_stats_get_key(Z3_context c, Z3_stats s, unsigned idx)
Return the key (a string) for a particular statistical data.
Z3_ast Z3_API Z3_mk_re_diff(Z3_context c, Z3_ast re1, Z3_ast re2)
Create the difference of regular expressions.
unsigned Z3_API Z3_fixedpoint_get_num_levels(Z3_context c, Z3_fixedpoint d, Z3_func_decl pred)
Query the PDR engine for the maximal levels properties are known about predicate.
Z3_ast Z3_API Z3_mk_int64(Z3_context c, int64_t v, Z3_sort ty)
Create a numeral of a int, bit-vector, or finite-domain sort.
Z3_symbol_kind
The different kinds of symbol. In Z3, a symbol can be represented using integers and strings (See Z3_...
Definition z3_api.h:72
Z3_ast Z3_API Z3_mk_re_empty(Z3_context c, Z3_sort re)
Create an empty regular expression of sort re.
Z3_ast Z3_API Z3_mk_fpa_add(Z3_context c, Z3_ast rm, Z3_ast t1, Z3_ast t2)
Floating-point addition.
Z3_ast Z3_API Z3_mk_bvand(Z3_context c, Z3_ast t1, Z3_ast t2)
Bitwise and.
Z3_param_descrs Z3_API Z3_simplify_get_param_descrs(Z3_context c)
Return the parameter description set for the simplify procedure.
bool Z3_API Z3_goal_is_decided_unsat(Z3_context c, Z3_goal g)
Return true if the goal contains false, and it is precise or the product of an over approximation.
Z3_ast Z3_API Z3_mk_add(Z3_context c, unsigned num_args, Z3_ast const args[])
Create an AST node representing args[0] + ... + args[num_args-1].
Z3_ast_kind Z3_API Z3_get_ast_kind(Z3_context c, Z3_ast a)
Return the kind of the given AST.
Z3_ast_vector Z3_API Z3_parse_smtlib2_file(Z3_context c, Z3_string file_name, unsigned num_sorts, Z3_symbol const sort_names[], Z3_sort const sorts[], unsigned num_decls, Z3_symbol const decl_names[], Z3_func_decl const decls[])
Similar to Z3_parse_smtlib2_string, but reads the benchmark from a file.
Z3_ast Z3_API Z3_mk_bvsmod(Z3_context c, Z3_ast t1, Z3_ast t2)
Two's complement signed remainder (sign follows divisor).
Z3_tactic Z3_API Z3_tactic_cond(Z3_context c, Z3_probe p, Z3_tactic t1, Z3_tactic t2)
Return a tactic that applies t1 to a given goal if the probe p evaluates to true, and t2 if p evaluat...
Z3_model Z3_API Z3_model_translate(Z3_context c, Z3_model m, Z3_context dst)
translate model from context c to context dst.
Z3_string Z3_API Z3_fixedpoint_to_string(Z3_context c, Z3_fixedpoint f, unsigned num_queries, Z3_ast queries[])
Print the current rules and background axioms as a string.
void Z3_API Z3_solver_get_levels(Z3_context c, Z3_solver s, Z3_ast_vector literals, unsigned sz, unsigned levels[])
retrieve the decision depth of Boolean literals (variables or their negations). Assumes a check-sat c...
void Z3_API Z3_get_version(unsigned *major, unsigned *minor, unsigned *build_number, unsigned *revision_number)
Return Z3 version number information.
Z3_ast Z3_API Z3_fixedpoint_get_cover_delta(Z3_context c, Z3_fixedpoint d, int level, Z3_func_decl pred)
Z3_ast Z3_API Z3_mk_fpa_to_fp_unsigned(Z3_context c, Z3_ast rm, Z3_ast t, Z3_sort s)
Conversion of a 2's complement unsigned bit-vector term into a term of FloatingPoint sort.
Z3_ast Z3_API Z3_mk_int2bv(Z3_context c, unsigned n, Z3_ast t1)
Create an n bit bit-vector from the integer argument t1.
void Z3_API Z3_solver_assert(Z3_context c, Z3_solver s, Z3_ast a)
Assert a constraint into the solver.
Z3_tactic Z3_API Z3_mk_tactic(Z3_context c, Z3_string name)
Return a tactic associated with the given name. The complete list of tactics may be obtained using th...
Z3_ast Z3_API Z3_mk_fpa_abs(Z3_context c, Z3_ast t)
Floating-point absolute value.
unsigned Z3_API Z3_ast_vector_size(Z3_context c, Z3_ast_vector v)
Return the size of the given AST vector.
Z3_optimize Z3_API Z3_mk_optimize(Z3_context c)
Create a new optimize context.
void Z3_API Z3_parser_context_add_sort(Z3_context c, Z3_parser_context pc, Z3_sort s)
Add a sort declaration.
bool Z3_API Z3_model_eval(Z3_context c, Z3_model m, Z3_ast t, bool model_completion, Z3_ast *v)
Evaluate the AST node t in the given model. Return true if succeeded, and store the result in v.
Z3_sort Z3_API Z3_get_array_sort_range(Z3_context c, Z3_sort t)
Return the range of the given array sort.
void Z3_API Z3_del_constructor_list(Z3_context c, Z3_constructor_list clist)
Reclaim memory allocated for constructor list.
Z3_ast Z3_API Z3_mk_bound(Z3_context c, unsigned index, Z3_sort ty)
Create a variable.
unsigned Z3_API Z3_get_app_num_args(Z3_context c, Z3_app a)
Return the number of argument of an application. If t is an constant, then the number of arguments is...
Z3_ast Z3_API Z3_substitute_funs(Z3_context c, Z3_ast a, unsigned num_funs, Z3_func_decl const from[], Z3_ast const to[])
Substitute functions in from with new expressions in to.
Z3_ast Z3_API Z3_func_entry_get_arg(Z3_context c, Z3_func_entry e, unsigned i)
Return an argument of a Z3_func_entry object.
Z3_error_code
Z3 error codes (See Z3_get_error_code).
Definition z3_api.h:1388
Z3_ast Z3_API Z3_mk_eq(Z3_context c, Z3_ast l, Z3_ast r)
Create an AST node representing l = r.
Z3_ast Z3_API Z3_mk_atleast(Z3_context c, unsigned num_args, Z3_ast const args[], unsigned k)
Pseudo-Boolean relations.
void Z3_API Z3_ast_vector_inc_ref(Z3_context c, Z3_ast_vector v)
Increment the reference counter of the given AST vector.
unsigned Z3_API Z3_model_get_num_funcs(Z3_context c, Z3_model m)
Return the number of function interpretations in the given model.
void Z3_API Z3_parser_context_inc_ref(Z3_context c, Z3_parser_context pc)
Increment the reference counter of the given Z3_parser_context object.
void Z3_API Z3_dec_ref(Z3_context c, Z3_ast a)
Decrement the reference counter of the given AST. The context c should have been created using Z3_mk_...
Z3_ast_vector Z3_API Z3_solver_get_unsat_core(Z3_context c, Z3_solver s)
Retrieve the unsat core for the last Z3_solver_check_assumptions The unsat core is a subset of the as...
Z3_ast_vector Z3_API Z3_mk_ast_vector(Z3_context c)
Return an empty AST vector.
Z3_string Z3_API Z3_get_simplifier_name(Z3_context c, unsigned i)
Return the name of the idx simplifier.
void Z3_API Z3_optimize_dec_ref(Z3_context c, Z3_optimize d)
Decrement the reference counter of the given optimize context.
Z3_string Z3_API Z3_get_string(Z3_context c, Z3_ast s)
Retrieve the string constant stored in s. Characters outside the basic printable ASCII range are esca...
Z3_ast Z3_API Z3_mk_fpa_is_nan(Z3_context c, Z3_ast t)
Predicate indicating whether t is a NaN.
bool Z3_API Z3_get_numeral_int(Z3_context c, Z3_ast v, int *i)
Similar to Z3_get_numeral_string, but only succeeds if the value can fit in a machine int....
Z3_string Z3_API Z3_rcf_num_to_string(Z3_context c, Z3_rcf_num a, bool compact, bool html)
Convert the RCF numeral into a string.
Z3_error_code Z3_API Z3_get_error_code(Z3_context c)
Return the error code for the last API call.
Z3_func_decl Z3_API Z3_mk_partial_order(Z3_context c, Z3_sort a, unsigned id)
create a partial ordering relation over signature a and index id.
Z3_ast Z3_API Z3_mk_empty_set(Z3_context c, Z3_sort domain)
Create the empty set.
bool Z3_API Z3_rcf_neq(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return true if a != b.
void Z3_API Z3_solver_solve_for(Z3_context c, Z3_solver s, Z3_ast_vector variables, Z3_ast_vector terms, Z3_ast_vector guards)
retrieve a 'solution' for variables as defined by equalities in maintained by solvers....
bool Z3_API Z3_is_string(Z3_context c, Z3_ast s)
Determine if s is a string constant.
Z3_ast Z3_API Z3_mk_re_loop(Z3_context c, Z3_ast r, unsigned lo, unsigned hi)
Create a regular expression loop. The supplied regular expression r is repeated between lo and hi tim...
Z3_ast Z3_API Z3_mk_char_to_int(Z3_context c, Z3_ast ch)
Create an integer (code point) from character.
Z3_ast Z3_API Z3_mk_fpa_neg(Z3_context c, Z3_ast t)
Floating-point negation.
Z3_ast Z3_API Z3_mk_repeat(Z3_context c, unsigned i, Z3_ast t1)
Repeat the given bit-vector up length i.
void Z3_API Z3_rcf_del(Z3_context c, Z3_rcf_num a)
Delete a RCF numeral created using the RCF API.
Z3_ast Z3_API Z3_mk_re_plus(Z3_context c, Z3_ast re)
Create the regular language re+.
Z3_goal_prec Z3_API Z3_goal_precision(Z3_context c, Z3_goal g)
Return the "precision" of the given goal. Goals can be transformed using over and under approximation...
void Z3_API Z3_solver_pop(Z3_context c, Z3_solver s, unsigned n)
Backtrack n backtracking points.
void Z3_API Z3_ast_map_erase(Z3_context c, Z3_ast_map m, Z3_ast k)
Erase a key from the map.
Z3_ast Z3_API Z3_mk_int2real(Z3_context c, Z3_ast t1)
Coerce an integer to a real.
Z3_goal Z3_API Z3_mk_goal(Z3_context c, bool models, bool unsat_cores, bool proofs)
Create a goal (aka problem). A goal is essentially a set of formulas, that can be solved and/or trans...
double Z3_API Z3_get_decl_double_parameter(Z3_context c, Z3_func_decl d, unsigned idx)
Return the double value associated with an double parameter.
unsigned Z3_API Z3_get_ast_hash(Z3_context c, Z3_ast a)
Return a hash code for the given AST. The hash code is structural but two different AST objects can m...
Z3_ast Z3_API Z3_mk_fpa_lt(Z3_context c, Z3_ast t1, Z3_ast t2)
Floating-point less than.
Z3_ast Z3_API Z3_mk_unsigned_int64(Z3_context c, uint64_t v, Z3_sort ty)
Create a numeral of a int, bit-vector, or finite-domain sort.
Z3_rcf_num Z3_API Z3_rcf_mk_pi(Z3_context c)
Return Pi.
Z3_string Z3_API Z3_optimize_get_help(Z3_context c, Z3_optimize t)
Return a string containing a description of parameters accepted by optimize.
Z3_symbol Z3_API Z3_get_sort_name(Z3_context c, Z3_sort d)
Return the sort name as a symbol.
Z3_func_decl Z3_API Z3_get_datatype_sort_recognizer(Z3_context c, Z3_sort t, unsigned idx)
Return idx'th recognizer.
void Z3_API Z3_global_param_reset_all(void)
Restore the value of all global (and module) parameters. This command will not affect already created...
Z3_ast Z3_API Z3_mk_gt(Z3_context c, Z3_ast t1, Z3_ast t2)
Create greater than.
Z3_stats Z3_API Z3_optimize_get_statistics(Z3_context c, Z3_optimize d)
Retrieve statistics information from the last call to Z3_optimize_check.
Z3_ast Z3_API Z3_mk_store(Z3_context c, Z3_ast a, Z3_ast i, Z3_ast v)
Array update.
Z3_probe Z3_API Z3_probe_gt(Z3_context x, Z3_probe p1, Z3_probe p2)
Return a probe that evaluates to "true" when the value returned by p1 is greater than the value retur...
Z3_ast Z3_API Z3_solver_get_proof(Z3_context c, Z3_solver s)
Retrieve the proof for the last Z3_solver_check or Z3_solver_check_assumptions.
Z3_string Z3_API Z3_get_decl_rational_parameter(Z3_context c, Z3_func_decl d, unsigned idx)
Return the rational value, as a string, associated with a rational parameter.
unsigned Z3_API Z3_optimize_minimize(Z3_context c, Z3_optimize o, Z3_ast t)
Add a minimization constraint.
Z3_stats Z3_API Z3_fixedpoint_get_statistics(Z3_context c, Z3_fixedpoint d)
Retrieve statistics information from the last call to Z3_fixedpoint_query.
bool Z3_API Z3_model_has_interp(Z3_context c, Z3_model m, Z3_func_decl a)
Test if there exists an interpretation (i.e., assignment) for a in the model m.
void Z3_API Z3_ast_vector_push(Z3_context c, Z3_ast_vector v, Z3_ast a)
Add the AST a in the end of the AST vector v. The size of v is increased by one.
bool Z3_API Z3_is_eq_ast(Z3_context c, Z3_ast t1, Z3_ast t2)
Compare terms.
bool Z3_API Z3_is_quantifier_forall(Z3_context c, Z3_ast a)
Determine if an ast is a universal quantifier.
void Z3_API Z3_tactic_inc_ref(Z3_context c, Z3_tactic t)
Increment the reference counter of the given tactic.
Z3_parser_context Z3_API Z3_mk_parser_context(Z3_context c)
Create a parser context.
Z3_ast Z3_API Z3_mk_real_int64(Z3_context c, int64_t num, int64_t den)
Create a real from a fraction of int64.
Z3_ast_map Z3_API Z3_mk_ast_map(Z3_context c)
Return an empty mapping from AST to AST.
void Z3_API Z3_solver_from_file(Z3_context c, Z3_solver s, Z3_string file_name)
load solver assertions from a file.
Z3_ast Z3_API Z3_mk_seq_last_index(Z3_context c, Z3_ast s, Z3_ast substr)
Return index of the last occurrence of substr in s. If s does not contain substr, then the value is -...
Z3_ast Z3_API Z3_mk_xor(Z3_context c, Z3_ast t1, Z3_ast t2)
Create an AST node representing t1 xor t2.
void Z3_API Z3_solver_propagate_eq(Z3_context c, Z3_solver s, Z3_eq_eh eq_eh)
register a callback on expression equalities.
Z3_ast Z3_API Z3_mk_string(Z3_context c, Z3_string s)
Create a string constant out of the string that is passed in The string may contain escape encoding f...
Z3_func_decl Z3_API Z3_mk_transitive_closure(Z3_context c, Z3_func_decl f)
create transitive closure of binary relation.
Z3_tactic Z3_API Z3_tactic_try_for(Z3_context c, Z3_tactic t, unsigned ms)
Return a tactic that applies t to a given goal for ms milliseconds. If t does not terminate in ms mil...
Z3_ast Z3_API Z3_mk_rotate_left(Z3_context c, unsigned i, Z3_ast t1)
Rotate bits of t1 to the left i times.
void Z3_API Z3_apply_result_dec_ref(Z3_context c, Z3_apply_result r)
Decrement the reference counter of the given Z3_apply_result object.
Z3_ast Z3_API Z3_mk_finite_set_singleton(Z3_context c, Z3_ast elem)
Create a singleton finite set.
Z3_sort Z3_API Z3_mk_seq_sort(Z3_context c, Z3_sort s)
Create a sequence sort out of the sort for the elements.
unsigned Z3_API Z3_optimize_maximize(Z3_context c, Z3_optimize o, Z3_ast t)
Add a maximization constraint.
Z3_ast_vector Z3_API Z3_solver_get_units(Z3_context c, Z3_solver s)
Return the set of units modulo model conversion.
Z3_ast Z3_API Z3_mk_const(Z3_context c, Z3_symbol s, Z3_sort ty)
Declare and create a constant.
Z3_symbol Z3_API Z3_mk_string_symbol(Z3_context c, Z3_string s)
Create a Z3 symbol using a C string.
void Z3_API Z3_param_descrs_inc_ref(Z3_context c, Z3_param_descrs p)
Increment the reference counter of the given parameter description set.
Z3_goal Z3_API Z3_apply_result_get_subgoal(Z3_context c, Z3_apply_result r, unsigned i)
Return one of the subgoals in the Z3_apply_result object returned by Z3_tactic_apply.
Z3_probe Z3_API Z3_probe_le(Z3_context x, Z3_probe p1, Z3_probe p2)
Return a probe that evaluates to "true" when the value returned by p1 is less than or equal to the va...
void Z3_API Z3_stats_dec_ref(Z3_context c, Z3_stats s)
Decrement the reference counter of the given statistics object.
Z3_rcf_num Z3_API Z3_rcf_neg(Z3_context c, Z3_rcf_num a)
Return the value -a.
Z3_ast Z3_API Z3_mk_array_ext(Z3_context c, Z3_ast arg1, Z3_ast arg2)
Create array extensionality index given two arrays with the same sort. The meaning is given by the ax...
Z3_ast Z3_API Z3_mk_re_concat(Z3_context c, unsigned n, Z3_ast const args[])
Create the concatenation of the regular languages.
Z3_func_entry Z3_API Z3_func_interp_get_entry(Z3_context c, Z3_func_interp f, unsigned i)
Return a "point" of the given function interpretation. It represents the value of f in a particular p...
Z3_func_decl Z3_API Z3_mk_rec_func_decl(Z3_context c, Z3_symbol s, unsigned domain_size, Z3_sort const domain[], Z3_sort range)
Declare a recursive function.
unsigned Z3_API Z3_get_ast_id(Z3_context c, Z3_ast t)
Return a unique identifier for t. The identifier is unique up to structural equality....
Z3_ast Z3_API Z3_mk_concat(Z3_context c, Z3_ast t1, Z3_ast t2)
Concatenate the given bit-vectors.
Z3_ast Z3_API Z3_mk_fpa_to_fp_float(Z3_context c, Z3_ast rm, Z3_ast t, Z3_sort s)
Conversion of a FloatingPoint term into another term of different FloatingPoint sort.
Z3_sort Z3_API Z3_get_decl_sort_parameter(Z3_context c, Z3_func_decl d, unsigned idx)
Return the sort value associated with a sort parameter.
Z3_constructor_list Z3_API Z3_mk_constructor_list(Z3_context c, unsigned num_constructors, Z3_constructor const constructors[])
Create list of constructors.
Z3_apply_result Z3_API Z3_tactic_apply(Z3_context c, Z3_tactic t, Z3_goal g)
Apply tactic t to the goal g.
Z3_ast Z3_API Z3_mk_fpa_leq(Z3_context c, Z3_ast t1, Z3_ast t2)
Floating-point less than or equal.
Z3_ast Z3_API Z3_mk_finite_set_map(Z3_context c, Z3_ast f, Z3_ast set)
Apply a function to all elements of a finite set.
void Z3_API Z3_solver_propagate_created(Z3_context c, Z3_solver s, Z3_created_eh created_eh)
register a callback when a new expression with a registered function is used by the solver The regist...
bool Z3_API Z3_rcf_is_algebraic(Z3_context c, Z3_rcf_num a)
Return true if a represents an algebraic number.
Z3_ast Z3_API Z3_mk_fpa_numeral_double(Z3_context c, double v, Z3_sort ty)
Create a numeral of FloatingPoint sort from a double.
unsigned Z3_API Z3_get_sort_id(Z3_context c, Z3_sort s)
Return a unique identifier for s.
Z3_ast Z3_API Z3_mk_fpa_mul(Z3_context c, Z3_ast rm, Z3_ast t1, Z3_ast t2)
Floating-point multiplication.
Z3_ast_vector Z3_API Z3_parser_context_from_string(Z3_context c, Z3_parser_context pc, Z3_string s)
Parse a string of SMTLIB2 commands. Return assertions.
Z3_ast Z3_API Z3_mk_app(Z3_context c, Z3_func_decl d, unsigned num_args, Z3_ast const args[])
Create a constant or function application.
Z3_sort_kind Z3_API Z3_get_sort_kind(Z3_context c, Z3_sort t)
Return the sort kind (e.g., array, tuple, int, bool, etc).
Z3_stats Z3_API Z3_solver_get_statistics(Z3_context c, Z3_solver s)
Return statistics for the given solver.
Z3_ast Z3_API Z3_mk_bvneg(Z3_context c, Z3_ast t1)
Standard two's complement unary minus.
Z3_ast Z3_API Z3_mk_store_n(Z3_context c, Z3_ast a, unsigned n, Z3_ast const *idxs, Z3_ast v)
n-ary Array update.
Z3_string Z3_API Z3_fixedpoint_get_reason_unknown(Z3_context c, Z3_fixedpoint d)
Retrieve a string that describes the last status returned by Z3_fixedpoint_query.
Z3_func_decl Z3_API Z3_mk_linear_order(Z3_context c, Z3_sort a, unsigned id)
create a linear ordering relation over signature a. The relation is identified by the index id.
Z3_string Z3_API Z3_fixedpoint_get_help(Z3_context c, Z3_fixedpoint f)
Return a string describing all fixedpoint available parameters.
Z3_sort Z3_API Z3_get_domain(Z3_context c, Z3_func_decl d, unsigned i)
Return the sort of the i-th parameter of the given function declaration.
Z3_ast Z3_API Z3_mk_seq_in_re(Z3_context c, Z3_ast seq, Z3_ast re)
Check if seq is in the language generated by the regular expression re.
Z3_sort Z3_API Z3_mk_bool_sort(Z3_context c)
Create the Boolean type.
Z3_ast Z3_API Z3_mk_sub(Z3_context c, unsigned num_args, Z3_ast const args[])
Create an AST node representing args[0] - ... - args[num_args - 1].
Z3_sort Z3_API Z3_mk_finite_set_sort(Z3_context c, Z3_sort elem_sort)
Create a finite set sort.
void Z3_API Z3_params_set_symbol(Z3_context c, Z3_params p, Z3_symbol k, Z3_symbol v)
Add a symbol parameter k with value v to the parameter set p.
Z3_ast Z3_API Z3_ast_vector_get(Z3_context c, Z3_ast_vector v, unsigned i)
Return the AST at position i in the AST vector v.
Z3_string Z3_API Z3_solver_to_dimacs_string(Z3_context c, Z3_solver s, bool include_names)
Convert a solver into a DIMACS formatted string.
Z3_ast Z3_API Z3_mk_finite_set_size(Z3_context c, Z3_ast set)
Get the size (cardinality) of a finite set.
unsigned Z3_API Z3_get_func_decl_id(Z3_context c, Z3_func_decl f)
Return a unique identifier for f.
Z3_ast Z3_API Z3_mk_set_difference(Z3_context c, Z3_ast arg1, Z3_ast arg2)
Take the set difference between two sets.
void Z3_API Z3_solver_propagate_decide(Z3_context c, Z3_solver s, Z3_decide_eh decide_eh)
register a callback when the solver decides to split on a registered expression. The callback may cha...
Z3_ast Z3_API Z3_mk_lstring(Z3_context c, unsigned len, Z3_string s)
Create a string constant out of the string that is passed in It takes the length of the string as wel...
Z3_ast Z3_API Z3_mk_bvsdiv(Z3_context c, Z3_ast t1, Z3_ast t2)
Two's complement signed division.
Z3_ast Z3_API Z3_mk_bvlshr(Z3_context c, Z3_ast t1, Z3_ast t2)
Logical shift right.
Z3_ast Z3_API Z3_get_decl_ast_parameter(Z3_context c, Z3_func_decl d, unsigned idx)
Return the expression value associated with an expression parameter.
Z3_ast Z3_API Z3_mk_finite_set_range(Z3_context c, Z3_ast low, Z3_ast high)
Create a finite set of integers in the range [low, high].
double Z3_API Z3_probe_apply(Z3_context c, Z3_probe p, Z3_goal g)
Execute the probe over the goal. The probe always produce a double value. "Boolean" probes return 0....
bool Z3_API Z3_rcf_is_transcendental(Z3_context c, Z3_rcf_num a)
Return true if a represents a transcendental number.
void Z3_API Z3_func_interp_set_else(Z3_context c, Z3_func_interp f, Z3_ast else_value)
Return the 'else' value of the given function interpretation.
void Z3_API Z3_goal_dec_ref(Z3_context c, Z3_goal g)
Decrement the reference counter of the given goal.
Z3_ast Z3_API Z3_mk_not(Z3_context c, Z3_ast a)
Create an AST node representing not(a).
void Z3_API Z3_solver_propagate_register(Z3_context c, Z3_solver s, Z3_ast e)
register an expression to propagate on with the solver. Only expressions of type Bool and type Bit-Ve...
Z3_ast Z3_API Z3_substitute_vars(Z3_context c, Z3_ast a, unsigned num_exprs, Z3_ast const to[])
Substitute the variables in a with the expressions in to. For every i smaller than num_exprs,...
Z3_ast Z3_API Z3_mk_or(Z3_context c, unsigned num_args, Z3_ast const args[])
Create an AST node representing args[0] or ... or args[num_args-1].
Z3_sort Z3_API Z3_mk_array_sort(Z3_context c, Z3_sort domain, Z3_sort range)
Create an array type.
Z3_tactic Z3_API Z3_tactic_or_else(Z3_context c, Z3_tactic t1, Z3_tactic t2)
Return a tactic that first applies t1 to a given goal, if it fails then returns the result of t2 appl...
void Z3_API Z3_model_inc_ref(Z3_context c, Z3_model m)
Increment the reference counter of the given model.
Z3_ast Z3_API Z3_mk_seq_extract(Z3_context c, Z3_ast s, Z3_ast offset, Z3_ast length)
Extract subsequence starting at offset of length.
Z3_ast Z3_API Z3_mk_fpa_div(Z3_context c, Z3_ast rm, Z3_ast t1, Z3_ast t2)
Floating-point division.
Z3_sort Z3_API Z3_mk_fpa_sort(Z3_context c, unsigned ebits, unsigned sbits)
Create a FloatingPoint sort.
Z3_ast Z3_API Z3_mk_fpa_sqrt(Z3_context c, Z3_ast rm, Z3_ast t)
Floating-point square root.
bool Z3_API Z3_goal_is_decided_sat(Z3_context c, Z3_goal g)
Return true if the goal is empty, and it is precise or the product of a under approximation.
void Z3_API Z3_fixedpoint_set_params(Z3_context c, Z3_fixedpoint f, Z3_params p)
Set parameters on fixedpoint context.
void Z3_API Z3_optimize_from_string(Z3_context c, Z3_optimize o, Z3_string s)
Parse an SMT-LIB2 string with assertions, soft constraints and optimization objectives....
Z3_solver Z3_API Z3_solver_add_simplifier(Z3_context c, Z3_solver solver, Z3_simplifier simplifier)
Attach simplifier to a solver. The solver will use the simplifier for incremental pre-processing.
Z3_ast Z3_API Z3_mk_rem(Z3_context c, Z3_ast arg1, Z3_ast arg2)
Create an AST node representing arg1 rem arg2.
Z3_ast Z3_API Z3_fixedpoint_get_answer(Z3_context c, Z3_fixedpoint d)
Retrieve a formula that encodes satisfying answers to the query.
Z3_ast Z3_API Z3_mk_int_to_str(Z3_context c, Z3_ast s)
Integer to string conversion.
bool Z3_API Z3_get_numeral_uint(Z3_context c, Z3_ast v, unsigned *u)
Similar to Z3_get_numeral_string, but only succeeds if the value can fit in a machine unsigned int....
Z3_string Z3_API Z3_get_numeral_string(Z3_context c, Z3_ast a)
Return numeral value, as a decimal string of a numeric constant term.
bool Z3_API Z3_rcf_is_rational(Z3_context c, Z3_rcf_num a)
Return true if a represents a rational number.
void Z3_API Z3_solver_propagate_fixed(Z3_context c, Z3_solver s, Z3_fixed_eh fixed_eh)
register a callback for when an expression is bound to a fixed value. The supported expression types ...
Z3_ast Z3_API Z3_mk_seq_map(Z3_context c, Z3_ast f, Z3_ast s)
Create a map of the function f over the sequence s.
void Z3_API Z3_fixedpoint_register_relation(Z3_context c, Z3_fixedpoint d, Z3_func_decl f)
Register relation as Fixedpoint defined. Fixedpoint defined relations have least-fixedpoint semantics...
Z3_ast Z3_API Z3_mk_char_is_digit(Z3_context c, Z3_ast ch)
Create a check if the character is a digit.
void Z3_API Z3_fixedpoint_add_cover(Z3_context c, Z3_fixedpoint d, int level, Z3_func_decl pred, Z3_ast property)
Add property about the predicate pred. Add a property of predicate pred at level. It gets pushed forw...
void Z3_API Z3_func_interp_add_entry(Z3_context c, Z3_func_interp fi, Z3_ast_vector args, Z3_ast value)
add a function entry to a function interpretation.
bool Z3_API Z3_is_well_sorted(Z3_context c, Z3_ast t)
Return true if the given expression t is well sorted.
Z3_ast Z3_API Z3_mk_bvuge(Z3_context c, Z3_ast t1, Z3_ast t2)
Unsigned greater than or equal to.
Z3_lbool Z3_API Z3_fixedpoint_query_relations(Z3_context c, Z3_fixedpoint d, unsigned num_relations, Z3_func_decl const relations[])
Pose multiple queries against the asserted rules.
Z3_ast Z3_API Z3_mk_as_array(Z3_context c, Z3_func_decl f)
Create array with the same interpretation as a function. The array satisfies the property (f x) = (se...
Z3_string Z3_API Z3_apply_result_to_string(Z3_context c, Z3_apply_result r)
Convert the Z3_apply_result object returned by Z3_tactic_apply into a string.
Z3_string Z3_API Z3_solver_to_string(Z3_context c, Z3_solver s)
Convert a solver into a string.
Z3_ast Z3_API Z3_mk_seq_foldl(Z3_context c, Z3_ast f, Z3_ast a, Z3_ast s)
Create a fold of the function f over the sequence s with accumulator a.
Z3_string Z3_API Z3_solver_get_reason_unknown(Z3_context c, Z3_solver s)
Return a brief justification for an "unknown" result (i.e., Z3_L_UNDEF) for the commands Z3_solver_ch...
Z3_ast Z3_API Z3_mk_fpa_fma(Z3_context c, Z3_ast rm, Z3_ast t1, Z3_ast t2, Z3_ast t3)
Floating-point fused multiply-add.
Z3_string Z3_API Z3_get_numeral_binary_string(Z3_context c, Z3_ast a)
Return numeral value, as a binary string of a numeric constant term.
Z3_rcf_num Z3_API Z3_rcf_mk_e(Z3_context c)
Return e (Euler's constant).
void Z3_API Z3_disable_trace(Z3_string tag)
Disable tracing messages tagged as tag when Z3 is compiled in debug mode. It is a NOOP otherwise.
Z3_tactic Z3_API Z3_tactic_repeat(Z3_context c, Z3_tactic t, unsigned max)
Return a tactic that keeps applying t until the goal is not modified anymore or the maximum number of...
Z3_ast Z3_API Z3_goal_formula(Z3_context c, Z3_goal g, unsigned idx)
Return a formula from the given goal.
Z3_lbool Z3_API Z3_optimize_check(Z3_context c, Z3_optimize o, unsigned num_assumptions, Z3_ast const assumptions[])
Check consistency and produce optimal values.
Z3_symbol Z3_API Z3_mk_int_symbol(Z3_context c, int i)
Create a Z3 symbol using an integer.
Z3_ast Z3_API Z3_mk_char_from_bv(Z3_context c, Z3_ast bv)
Create a character from a bit-vector (code point).
unsigned Z3_API Z3_func_interp_get_num_entries(Z3_context c, Z3_func_interp f)
Return the number of entries in the given function interpretation.
void Z3_API Z3_ast_map_insert(Z3_context c, Z3_ast_map m, Z3_ast k, Z3_ast v)
Store/Replace a new key, value pair in the given map.
Z3_probe Z3_API Z3_probe_const(Z3_context x, double val)
Return a probe that always evaluates to val.
Z3_constructor Z3_API Z3_mk_constructor(Z3_context c, Z3_symbol name, Z3_symbol recognizer, unsigned num_fields, Z3_symbol const field_names[], Z3_sort const sorts[], unsigned sort_refs[])
Create a constructor.
Z3_sort Z3_API Z3_mk_fpa_rounding_mode_sort(Z3_context c)
Create the RoundingMode sort.
Z3_string Z3_API Z3_goal_to_string(Z3_context c, Z3_goal g)
Convert a goal into a string.
Z3_ast Z3_API Z3_mk_fpa_rne(Z3_context c)
Create a numeral of RoundingMode sort which represents the NearestTiesToEven rounding mode.
Z3_ast Z3_API Z3_mk_atmost(Z3_context c, unsigned num_args, Z3_ast const args[], unsigned k)
Pseudo-Boolean relations.
void Z3_API Z3_del_config(Z3_config c)
Delete the given configuration object.
double Z3_API Z3_get_numeral_double(Z3_context c, Z3_ast a)
Return numeral as a double.
void Z3_API Z3_inc_ref(Z3_context c, Z3_ast a)
Increment the reference counter of the given AST. The context c should have been created using Z3_mk_...
Z3_tactic Z3_API Z3_tactic_and_then(Z3_context c, Z3_tactic t1, Z3_tactic t2)
Return a tactic that applies t1 to a given goal and t2 to every subgoal produced by t1.
Z3_optimize Z3_API Z3_optimize_translate(Z3_context c, Z3_optimize o, Z3_context target)
Copy an optimization context from a source to a target context.
Z3_func_interp Z3_API Z3_model_get_func_interp(Z3_context c, Z3_model m, Z3_func_decl f)
Return the interpretation of the function f in the model m. Return NULL, if the model does not assign...
void Z3_API Z3_solver_inc_ref(Z3_context c, Z3_solver s)
Increment the reference counter of the given solver.
bool Z3_API Z3_is_app(Z3_context c, Z3_ast a)
bool Z3_API Z3_solver_next_split(Z3_context c, Z3_solver_callback cb, Z3_ast t, unsigned idx, Z3_lbool phase)
Z3_probe Z3_API Z3_probe_and(Z3_context x, Z3_probe p1, Z3_probe p2)
Return a probe that evaluates to "true" when p1 and p2 evaluates to true.
bool Z3_API Z3_is_re_sort(Z3_context c, Z3_sort s)
Check if s is a regular expression sort.
Z3_ast Z3_API Z3_mk_ubv_to_str(Z3_context c, Z3_ast s)
Unsigned bit-vector to string conversion.
Z3_sort Z3_API Z3_mk_string_sort(Z3_context c)
Create a sort for unicode strings.
Z3_ast Z3_API Z3_mk_ext_rotate_right(Z3_context c, Z3_ast t1, Z3_ast t2)
Rotate bits of t1 to the right t2 times.
Z3_string Z3_API Z3_get_numeral_decimal_string(Z3_context c, Z3_ast a, unsigned precision)
Return numeral as a string in decimal notation. The result has at most precision decimal places.
Z3_rcf_num Z3_API Z3_rcf_mul(Z3_context c, Z3_rcf_num a, Z3_rcf_num b)
Return the value a * b.
Z3_sort Z3_API Z3_get_sort(Z3_context c, Z3_ast a)
Return the sort of an AST node.
Z3_func_decl Z3_API Z3_get_datatype_sort_constructor_accessor(Z3_context c, Z3_sort t, unsigned idx_c, unsigned idx_a)
Return idx_a'th accessor for the idx_c'th constructor.
Z3_ast Z3_API Z3_mk_bvredor(Z3_context c, Z3_ast t1)
Take disjunction of bits in vector, return vector of length 1.
Z3_ast Z3_API Z3_mk_seq_nth(Z3_context c, Z3_ast s, Z3_ast index)
Retrieve from s the element positioned at position index. The function is under-specified if the inde...
Z3_ast Z3_API Z3_mk_seq_contains(Z3_context c, Z3_ast container, Z3_ast containee)
Check if container contains containee.
void Z3_API Z3_ast_map_reset(Z3_context c, Z3_ast_map m)
Remove all keys from the given map.
void Z3_API Z3_solver_reset(Z3_context c, Z3_solver s)
Remove all assertions from the solver.
bool Z3_API Z3_is_algebraic_number(Z3_context c, Z3_ast a)
Return true if the given AST is a real algebraic number.
@ Z3_PRINT_SMTLIB2_COMPLIANT
Definition z3_api.h:1366
@ Z3_APP_AST
Definition z3_api.h:144
@ Z3_VAR_AST
Definition z3_api.h:145
@ Z3_SORT_AST
Definition z3_api.h:147
@ Z3_NUMERAL_AST
Definition z3_api.h:143
@ Z3_FUNC_DECL_AST
Definition z3_api.h:148
@ Z3_QUANTIFIER_AST
Definition z3_api.h:146
@ Z3_OP_DISTINCT
Definition z3_api.h:993
@ Z3_OP_AND
Definition z3_api.h:995
@ Z3_OP_FALSE
Definition z3_api.h:991
@ Z3_OP_XOR
Definition z3_api.h:998
@ Z3_OP_IMPLIES
Definition z3_api.h:1000
@ Z3_OP_ITE
Definition z3_api.h:994
@ Z3_OP_EQ
Definition z3_api.h:992
@ Z3_OP_OR
Definition z3_api.h:996
@ Z3_OP_NOT
Definition z3_api.h:999
@ Z3_OP_TRUE
Definition z3_api.h:990
@ Z3_RELATION_SORT
Definition z3_api.h:118
@ Z3_BOOL_SORT
Definition z3_api.h:112
@ Z3_BV_SORT
Definition z3_api.h:115
@ Z3_DATATYPE_SORT
Definition z3_api.h:117
@ Z3_INT_SORT
Definition z3_api.h:113
@ Z3_FINITE_DOMAIN_SORT
Definition z3_api.h:119
@ Z3_RE_SORT
Definition z3_api.h:123
@ Z3_FLOATING_POINT_SORT
Definition z3_api.h:120
@ Z3_ARRAY_SORT
Definition z3_api.h:116
@ Z3_REAL_SORT
Definition z3_api.h:114
@ Z3_SEQ_SORT
Definition z3_api.h:122
@ Z3_L_TRUE
Definition z3_api.h:61
@ Z3_L_FALSE
Definition z3_api.h:59
@ Z3_STRING_SYMBOL
Definition z3_api.h:74
@ Z3_INT_SYMBOL
Definition z3_api.h:73
@ Z3_OK
Definition z3_api.h:1389
Z3 C++ namespace.
Definition z3++.h:50
expr set_intersect(expr const &a, expr const &b)
Definition z3++.h:4419
expr re_intersect(expr_vector const &args)
Definition z3++.h:4549
expr store(expr const &a, expr const &i, expr const &v)
Definition z3++.h:4341
expr pw(expr const &a, expr const &b)
Definition z3++.h:1842
expr sbv_to_fpa(expr const &t, sort s)
Definition z3++.h:2266
expr bvneg_no_overflow(expr const &a)
Definition z3++.h:2467
expr finite_set_difference(expr const &a, expr const &b)
Definition z3++.h:4463
expr indexof(expr const &s, expr const &substr, expr const &offset)
Definition z3++.h:4512
tactic par_or(unsigned n, tactic const *tactics)
Definition z3++.h:3489
tactic par_and_then(tactic const &t1, tactic const &t2)
Definition z3++.h:3498
expr srem(expr const &a, expr const &b)
signed remainder operator for bitvectors
Definition z3++.h:2399
expr bvadd_no_underflow(expr const &a, expr const &b)
Definition z3++.h:2455
expr prefixof(expr const &a, expr const &b)
Definition z3++.h:4506
expr sum(expr_vector const &args)
Definition z3++.h:2664
expr ugt(expr const &a, expr const &b)
unsigned greater than operator for bitvectors.
Definition z3++.h:2378
expr operator/(expr const &a, expr const &b)
Definition z3++.h:2008
expr exists(expr const &x, expr const &b)
Definition z3++.h:2575
expr fp_eq(expr const &a, expr const &b)
Definition z3++.h:2227
func_decl tree_order(sort const &a, unsigned index)
Definition z3++.h:2492
expr concat(expr const &a, expr const &b)
Definition z3++.h:2682
expr bvmul_no_underflow(expr const &a, expr const &b)
Definition z3++.h:2473
expr lambda(expr const &x, expr const &b)
Definition z3++.h:2599
ast_vector_tpl< func_decl > func_decl_vector
Definition z3++.h:79
expr fpa_to_fpa(expr const &t, sort s)
Definition z3++.h:2280
expr qe_model_project(model const &m, expr_vector const &bounds, expr const &body)
Definition z3++.h:2951
void reset_params()
Definition z3++.h:84
expr operator&&(expr const &a, expr const &b)
Definition z3++.h:1886
std::function< void(expr const &proof, std::vector< unsigned > const &deps, expr_vector const &clause)> on_clause_eh_t
Definition z3++.h:4716
expr operator!=(expr const &a, expr const &b)
Definition z3++.h:1922
expr operator+(expr const &a, expr const &b)
Definition z3++.h:1934
expr set_complement(expr const &a)
Definition z3++.h:4431
check_result
Definition z3++.h:166
@ unknown
Definition z3++.h:167
@ sat
Definition z3++.h:167
@ unsat
Definition z3++.h:167
std::string get_full_version()
Return a string that fully describes the version of Z3 in use.
Definition z3++.h:96
bool eq(ast const &a, ast const &b)
Definition z3++.h:670
func_decl recfun(symbol const &name, unsigned arity, sort const *domain, sort const &range)
Definition z3++.h:4311
expr const_array(sort const &d, expr const &v)
Definition z3++.h:4391
expr min(expr const &a, expr const &b)
Definition z3++.h:2156
expr set_difference(expr const &a, expr const &b)
Definition z3++.h:4427
expr forall(expr const &x, expr const &b)
Definition z3++.h:2551
expr array_default(expr const &a)
Definition z3++.h:4367
expr array_ext(expr const &a, expr const &b)
Definition z3++.h:4373
expr qe_lite(expr_vector const &vars, expr const &body)
Definition z3++.h:2934
expr operator>(expr const &a, expr const &b)
Definition z3++.h:2119
sort to_sort(context &c, Z3_sort s)
Definition z3++.h:2321
expr finite_set_map(expr const &f, expr const &s)
Definition z3++.h:4479
expr to_expr(context &c, Z3_ast a)
Wraps a Z3_ast as an expr object. It also checks for errors. This function allows the user to use the...
Definition z3++.h:2312
expr bv2int(expr const &a, bool is_signed)
bit-vector and integer conversions.
Definition z3++.h:2446
expr operator%(expr const &a, expr const &b)
Definition z3++.h:1857
expr operator~(expr const &a)
Definition z3++.h:2234
expr sle(expr const &a, expr const &b)
signed less than or equal to operator for bitvectors.
Definition z3++.h:2334
expr nor(expr const &a, expr const &b)
Definition z3++.h:2154
expr fpa_fp(expr const &sgn, expr const &exp, expr const &sig)
Definition z3++.h:2244
expr bvsub_no_underflow(expr const &a, expr const &b, bool is_signed)
Definition z3++.h:2461
expr finite_set_singleton(expr const &e)
Definition z3++.h:4451
expr mk_xor(expr_vector const &args)
Definition z3++.h:2766
expr lshr(expr const &a, expr const &b)
logic shift right operator for bitvectors
Definition z3++.h:2427
expr operator*(expr const &a, expr const &b)
Definition z3++.h:1964
expr nand(expr const &a, expr const &b)
Definition z3++.h:2153
expr fpa_to_ubv(expr const &t, unsigned sz)
Definition z3++.h:2259
expr bvredor(expr const &a)
Definition z3++.h:2188
ast_vector_tpl< sort > sort_vector
Definition z3++.h:78
expr finite_set_subset(expr const &a, expr const &b)
Definition z3++.h:4475
func_decl piecewise_linear_order(sort const &a, unsigned index)
Definition z3++.h:2489
expr slt(expr const &a, expr const &b)
signed less than operator for bitvectors.
Definition z3++.h:2340
tactic when(probe const &p, tactic const &t)
Definition z3++.h:3818
expr last_indexof(expr const &s, expr const &substr)
Definition z3++.h:4518
expr int2bv(unsigned n, expr const &a)
Definition z3++.h:2447
expr max(expr const &a, expr const &b)
Definition z3++.h:2172
expr xnor(expr const &a, expr const &b)
Definition z3++.h:2155
expr udiv(expr const &a, expr const &b)
unsigned division operator for bitvectors.
Definition z3++.h:2392
expr abs(expr const &a)
Definition z3++.h:2200
expr pbge(expr_vector const &es, int const *coeffs, int bound)
Definition z3++.h:2632
void disable_trace(char const *tag)
Disable tracing messages tagged as tag when Z3 is compiled in debug mode. It is a NOOP otherwise.
Definition z3++.h:112
expr round_fpa_to_closest_integer(expr const &t)
Definition z3++.h:2287
expr distinct(expr_vector const &args)
Definition z3++.h:2673
expr ashr(expr const &a, expr const &b)
arithmetic shift right operator for bitvectors
Definition z3++.h:2434
expr bvmul_no_overflow(expr const &a, expr const &b, bool is_signed)
Definition z3++.h:2470
expr bvsub_no_overflow(expr const &a, expr const &b)
Definition z3++.h:2458
expr star(expr const &re)
Definition z3++.h:4536
expr urem(expr const &a, expr const &b)
unsigned reminder operator for bitvectors
Definition z3++.h:2413
tactic repeat(tactic const &t, unsigned max=UINT_MAX)
Definition z3++.h:3473
expr mod(expr const &a, expr const &b)
Definition z3++.h:1846
expr fma(expr const &a, expr const &b, expr const &c, expr const &rm)
Definition z3++.h:2236
void get_version(unsigned &major, unsigned &minor, unsigned &build_number, unsigned &revision_number)
Return Z3 version number information.
Definition z3++.h:89
check_result to_check_result(Z3_lbool l)
Definition z3++.h:178
expr mk_or(expr_vector const &args)
Definition z3++.h:2754
expr to_re(expr const &s)
Definition z3++.h:4524
void check_context(object const &a, object const &b)
Definition z3++.h:564
expr_vector polynomial_subresultants(expr const &p, expr const &q, expr const &x)
Return the nonzero subresultants of p and q with respect to the "variable" x.
Definition z3++.h:2502
std::ostream & operator<<(std::ostream &out, exception const &e)
Definition z3++.h:128
expr ule(expr const &a, expr const &b)
unsigned less than or equal to operator for bitvectors.
Definition z3++.h:2360
func_decl to_func_decl(context &c, Z3_func_decl f)
Definition z3++.h:2326
tactic with(tactic const &t, params const &p)
Definition z3++.h:3479
expr ite(expr const &c, expr const &t, expr const &e)
Create the if-then-else expression ite(c, t, e).
Definition z3++.h:2299
expr finite_set_filter(expr const &f, expr const &s)
Definition z3++.h:4483
expr ult(expr const &a, expr const &b)
unsigned less than operator for bitvectors.
Definition z3++.h:2366
expr finite_set_union(expr const &a, expr const &b)
Definition z3++.h:4455
expr qe_model_project_skolem(model const &m, expr_vector const &bounds, expr const &body, ast_map &map)
Project variables and write the introduced Skolem terms to map.
Definition z3++.h:2962
expr pbeq(expr_vector const &es, int const *coeffs, int bound)
Definition z3++.h:2640
expr operator^(expr const &a, expr const &b)
Definition z3++.h:2145
expr operator<=(expr const &a, expr const &b)
Definition z3++.h:2072
expr set_union(expr const &a, expr const &b)
Definition z3++.h:4411
expr operator>=(expr const &a, expr const &b)
Definition z3++.h:1988
func_decl linear_order(sort const &a, unsigned index)
Definition z3++.h:2483
expr sqrt(expr const &a, expr const &rm)
Definition z3++.h:2220
expr pble(expr_vector const &es, int const *coeffs, int bound)
Definition z3++.h:2624
expr operator==(expr const &a, expr const &b)
Definition z3++.h:1911
expr foldli(expr const &f, expr const &i, expr const &a, expr const &list)
Definition z3++.h:2747
expr full_set(sort const &s)
Definition z3++.h:4399
std::vector< rcf_num > rcf_roots(context &c, std::vector< rcf_num > const &coeffs)
Find roots of a polynomial with given coefficients.
Definition z3++.h:5237
expr smod(expr const &a, expr const &b)
signed modulus operator for bitvectors
Definition z3++.h:2406
expr implies(expr const &a, expr const &b)
Definition z3++.h:1834
expr finite_set_range(expr const &low, expr const &high)
Definition z3++.h:4487
expr empty_set(sort const &s)
Definition z3++.h:4395
expr in_re(expr const &s, expr const &re)
Definition z3++.h:4527
expr finite_set_member(expr const &e, expr const &s)
Definition z3++.h:4467
expr bvadd_no_overflow(expr const &a, expr const &b, bool is_signed)
bit-vector overflow/underflow checks
Definition z3++.h:2452
expr suffixof(expr const &a, expr const &b)
Definition z3++.h:4500
expr re_diff(expr const &a, expr const &b)
Definition z3++.h:4557
expr set_add(expr const &s, expr const &e)
Definition z3++.h:4403
rcf_num rcf_e(context &c)
Create an RCF numeral representing e (Euler's constant).
Definition z3++.h:5220
expr plus(expr const &re)
Definition z3++.h:4530
expr set_subset(expr const &a, expr const &b)
Definition z3++.h:4439
expr select(expr const &a, expr const &i)
forward declarations
Definition z3++.h:4324
expr bvredand(expr const &a)
Definition z3++.h:2194
expr operator&(expr const &a, expr const &b)
Definition z3++.h:2141
expr operator-(expr const &a)
Definition z3++.h:2030
expr set_member(expr const &s, expr const &e)
Definition z3++.h:4435
expr bvsdiv_no_overflow(expr const &a, expr const &b)
Definition z3++.h:2464
tactic try_for(tactic const &t, unsigned ms)
Definition z3++.h:3484
void set_param(char const *param, char const *value)
Definition z3++.h:81
expr finite_set_size(expr const &s)
Definition z3++.h:4471
expr sdiv(expr const &a, expr const &b)
signed division operator for bitvectors.
Definition z3++.h:2385
func_decl function(symbol const &name, unsigned arity, sort const *domain, sort const &range)
Definition z3++.h:4283
func_decl partial_order(sort const &a, unsigned index)
Definition z3++.h:2486
ast_vector_tpl< expr > expr_vector
Definition z3++.h:77
expr rem(expr const &a, expr const &b)
Definition z3++.h:1862
expr sge(expr const &a, expr const &b)
signed greater than or equal to operator for bitvectors.
Definition z3++.h:2346
expr is_int(expr const &e)
Definition z3++.h:1882
expr operator!(expr const &a)
Definition z3++.h:1880
expr re_empty(sort const &s)
Definition z3++.h:4539
expr foldl(expr const &f, expr const &a, expr const &list)
Definition z3++.h:2740
rcf_num rcf_pi(context &c)
Create an RCF numeral representing pi.
Definition z3++.h:5213
expr mk_and(expr_vector const &args)
Definition z3++.h:2760
rounding_mode
Definition z3++.h:170
@ RNE
Definition z3++.h:172
@ RNA
Definition z3++.h:171
@ RTZ
Definition z3++.h:175
@ RTN
Definition z3++.h:174
@ RTP
Definition z3++.h:173
expr finite_set_empty(sort const &s)
Definition z3++.h:4445
expr sext(expr const &a, unsigned i)
Sign-extend of the given bit-vector to the (signed) equivalent bitvector of size m+i,...
Definition z3++.h:2481
expr to_real(expr const &a)
Definition z3++.h:4281
expr shl(expr const &a, expr const &b)
shift left operator for bitvectors
Definition z3++.h:2420
std::vector< Z3_app > to_apps(expr_vector const &bounds)
Definition z3++.h:2941
expr operator||(expr const &a, expr const &b)
Definition z3++.h:1898
expr finite_set_intersect(expr const &a, expr const &b)
Definition z3++.h:4459
expr set_del(expr const &s, expr const &e)
Definition z3++.h:4407
expr ubv_to_fpa(expr const &t, sort s)
Definition z3++.h:2273
expr map(expr const &f, expr const &list)
Definition z3++.h:2726
tactic cond(probe const &p, tactic const &t1, tactic const &t2)
Definition z3++.h:3824
expr as_array(func_decl &f)
Definition z3++.h:4361
expr sgt(expr const &a, expr const &b)
signed greater than operator for bitvectors.
Definition z3++.h:2352
expr fpa_to_sbv(expr const &t, unsigned sz)
Definition z3++.h:2252
ast_vector_tpl< ast > ast_vector
Definition z3++.h:76
void enable_trace(char const *tag)
Enable tracing messages tagged as tag when Z3 is compiled in debug mode. It is a NOOP otherwise.
Definition z3++.h:104
expr operator|(expr const &a, expr const &b)
Definition z3++.h:2149
expr atmost(expr_vector const &es, unsigned bound)
Definition z3++.h:2648
expr range(expr const &lo, expr const &hi)
Definition z3++.h:4567
expr zext(expr const &a, unsigned i)
Extend the given bit-vector with zeros to the (unsigned) equivalent bitvector of size m+i,...
Definition z3++.h:2441
expr atleast(expr_vector const &es, unsigned bound)
Definition z3++.h:2656
expr qe_model_project_with_witness(model const &m, expr_vector const &bounds, expr const &body, ast_map &map)
Project variables and write the introduced witnesses to map.
Definition z3++.h:2973
expr uge(expr const &a, expr const &b)
unsigned greater than or equal to operator for bitvectors.
Definition z3++.h:2372
expr mapi(expr const &f, expr const &i, expr const &list)
Definition z3++.h:2733
expr operator<(expr const &a, expr const &b)
Definition z3++.h:2097
expr option(expr const &re)
Definition z3++.h:4533
expr re_full(sort const &s)
Definition z3++.h:4544
expr re_complement(expr const &a)
Definition z3++.h:4564
expr empty(sort const &s)
Definition z3++.h:4495
rcf_num rcf_infinitesimal(context &c)
Create an RCF numeral representing an infinitesimal.
Definition z3++.h:5227
tactic fail_if(probe const &p)
Definition z3++.h:3813
#define _Z3_MK_BIN_(a, b, binop)
Definition z3++.h:1827
#define MK_EXPR1(_fn, _arg)
Definition z3++.h:4380
#define MK_EXPR2(_fn, _arg1, _arg2)
Definition z3++.h:4385
#define Z3_THROW(x)
Definition z3++.h:134
#define _Z3_MK_UN_(a, mkun)
Definition z3++.h:1874