048151487e
Signed-off-by: Leonardo de Moura <leonardo@microsoft.com>
121 lines
5.5 KiB
C++
121 lines
5.5 KiB
C++
/*
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Copyright (c) 2013 Microsoft Corporation. All rights reserved.
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Released under Apache 2.0 license as described in the file LICENSE.
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Author: Leonardo de Moura
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*/
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#include <string>
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#include "util/test.h"
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#include "util/interrupt.h"
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#include "kernel/builtin.h"
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#include "kernel/kernel_exception.h"
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#include "library/io_state_stream.h"
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#include "library/printer.h"
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#include "library/tactic/goal.h"
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#include "library/tactic/proof_builder.h"
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#include "library/tactic/proof_state.h"
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#include "library/tactic/tactic.h"
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#include "library/tactic/boolean_tactics.h"
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#include "frontends/lean/frontend.h"
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using namespace lean;
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tactic loop_tactic() {
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return mk_tactic1([=](ro_environment const &, io_state const &, proof_state const & s) -> proof_state {
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while (true) {
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check_interrupted();
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}
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return s;
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});
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}
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tactic set_tactic(atomic<bool> * flag) {
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return mk_tactic1([=](ro_environment const &, io_state const &, proof_state const & s) -> proof_state {
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*flag = true;
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return s;
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});
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}
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tactic show_opts_tactic() {
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return mk_tactic1([=](ro_environment const &, io_state const & io, proof_state const & s) -> proof_state {
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io.get_diagnostic_channel() << "options: " << io.get_options() << "\n";
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io.get_diagnostic_channel().get_stream().flush();
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return s;
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});
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}
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static void check_failure(tactic t, ro_environment const & env, io_state const & io, context const & ctx, expr const & ty) {
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solve_result r(t.solve(env, io, ctx, ty));
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lean_assert(r.kind() == solve_result_kind::Failure);
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}
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static void tst1() {
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environment env;
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io_state io(options(), mk_simple_formatter());
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init_test_frontend(env);
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env->add_var("p", Bool);
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env->add_var("q", Bool);
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expr p = Const("p");
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expr q = Const("q");
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context ctx;
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ctx = extend(ctx, "H1", p);
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ctx = extend(ctx, "H2", q);
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proof_state s = to_proof_state(env, ctx, p);
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std::cout << s.pp(mk_simple_formatter(), options()) << "\n";
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tactic t = then(assumption_tactic(), now_tactic());
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std::cout << "proof 1: " << t.solve(env, io, s).get_proof() << "\n";
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std::cout << "proof 2: " << t.solve(env, io, ctx, q).get_proof() << "\n";
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check_failure(now_tactic(), env, io, ctx, q);
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std::cout << "proof 2: " << orelse(fail_tactic(), t).solve(env, io, ctx, q).get_proof() << "\n";
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#if !defined(__APPLE__) && defined(LEAN_MULTI_THREAD)
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check_failure(try_for(loop_tactic(), 100), env, io, ctx, q);
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std::cout << "proof 1: " << try_for(t, 10000).solve(env, io, s).get_proof() << "\n";
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check_failure(try_for(orelse(try_for(loop_tactic(), 10000),
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trace_tactic(std::string("hello world"))),
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100),
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env, io, ctx, q);
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atomic<bool> flag1(false);
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check_failure(try_for(orelse(try_for(loop_tactic(), 10000),
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set_tactic(&flag1)),
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100),
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env, io, ctx, q);
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lean_assert(!flag1);
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std::cout << "Before nested try_for...\n";
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check_failure(orelse(try_for(try_for(loop_tactic(), 10000), 100),
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set_tactic(&flag1)),
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env, io, ctx, q);
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lean_assert(flag1);
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std::cout << "Before parallel 3 parallel tactics...\n";
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std::cout << "proof 2: " << par(loop_tactic(), par(loop_tactic(), t)).solve(env, io, ctx, q).get_proof() << "\n";
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#endif
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std::cout << "Before hello1 and 2...\n";
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std::cout << "proof 2: " << orelse(then(repeat_at_most(append(trace_tactic("hello1"), trace_tactic("hello2")), 5), fail_tactic()),
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t).solve(env, io, ctx, q).get_proof() << "\n";
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std::cout << "------------------\n";
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std::cout << "proof 2: " << ((trace_tactic("hello1.1") + trace_tactic("hello1.2") + trace_tactic("hello1.3") + trace_tactic("hello1.4")) <<
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(trace_tactic("hello2.1") + trace_tactic("hello2.2")) <<
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(trace_tactic("hello3.1") || trace_tactic("hello3.2")) <<
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assumption_tactic()).solve(env, io, ctx, q).get_proof() << "\n";
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std::cout << "------------------\n";
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std::cout << "proof 2: " << then(cond([](ro_environment const &, io_state const &, proof_state const &) { return true; },
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trace_tactic("then branch.1") + trace_tactic("then branch.2"),
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trace_tactic("else branch")),
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t).solve(env, io, ctx, q).get_proof() << "\n";
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std::cout << "proof 2: " << then(when([](ro_environment const &, io_state const &, proof_state const &) { return true; },
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trace_tactic("when branch.1") + trace_tactic("when branch.2")),
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t).solve(env, io, ctx, q).get_proof() << "\n";
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std::cout << "------------------\n";
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std::cout << "proof 2: " << (suppress_trace(trace_tactic("msg1") << trace_tactic("msg2")) <<
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trace_tactic("msg3") << t).solve(env, io, ctx, q).get_proof() << "\n";
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std::cout << "------------------\n";
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std::cout << "proof 2: " << (show_opts_tactic() << using_params(show_opts_tactic(), options(name({"pp", "colors"}), true)) <<
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show_opts_tactic() << t).solve(env, io, ctx, q).get_proof() << "\n";
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std::cout << "done\n";
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}
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int main() {
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save_stack_info();
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tst1();
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return has_violations() ? 1 : 0;
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}
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