test(kernel/metavar): add metavar tests
Signed-off-by: Leonardo de Moura <leonardo@microsoft.com>
This commit is contained in:
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1 changed files with 18 additions and 598 deletions
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@ -14,19 +14,6 @@ Author: Leonardo de Moura
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#include "kernel/metavar.h"
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#include "kernel/instantiate.h"
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#include "kernel/abstract.h"
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// #include "kernel/free_vars.h"
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// #include "kernel/normalizer.h"
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// #include "kernel/environment.h"
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// #include "kernel/type_checker.h"
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// #include "kernel/kernel_exception.h"
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// #include "kernel/kernel.h"
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// #include "kernel/io_state.h"
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// #include "library/printer.h"
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// #include "library/io_state_stream.h"
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// #include "library/placeholder.h"
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// #include "library/arith/arith.h"
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// #include "frontends/lean/frontend.h"
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// #include "frontends/lua/register_modules.h"
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using namespace lean;
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void collect_assumptions(justification const & j, buffer<unsigned> & r) {
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@ -117,608 +104,41 @@ static void tst2() {
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check_assumptions(p1.second, {1, 2});
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lean_assert(check_assumptions(s.get_assignment(m1)->second, {1}));
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lean_assert(p1.first == g(f(g(a))));
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auto p2 = s.d_instantiate_metavars(g(m1));
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auto p2 = s.d_instantiate_metavars(g(m1, m3));
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check_assumptions(p2.second, {1, 2});
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std::cout << p2.first << "\n";
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std::cout << s << "\n";
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lean_assert(check_assumptions(s.get_assignment(m1)->second, {1, 2}));
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}
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#if 0
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static void tst2() {
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metavar_env menv;
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expr f = Const("f");
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expr g = Const("g");
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expr h = Const("h");
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expr a = Const("a");
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x", T}, {"y", T}}));
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expr m2 = menv->mk_metavar(context({{"x", T}, {"y", T}}));
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// move m1 to a different context, and store new metavariable + context in m11
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std::cout << "---------------------\n";
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expr m11 = add_inst(m1, 0, f(a, m2));
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std::cout << m11 << "\n";
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menv->assign(m1, f(Var(0)));
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std::cout << menv->instantiate_metavars(m11) << "\n";
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menv->assign(m2, g(a, Var(1)));
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std::cout << menv->instantiate_metavars(h(m11)) << "\n";
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lean_assert_eq(menv->instantiate_metavars(h(m11)), h(f(f(a, g(a, Var(1))))));
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lean_assert(p2.first == g(f(g(a)), m3));
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s.assign(m3, f(m1, m2), mk_assumption_justification(3));
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auto p3 = s.instantiate_metavars(g(m1, m3));
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lean_assert(check_assumptions(p3.second, {1, 2, 3}));
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std::cout << p3.first << "\n";
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std::cout << p3.second << "\n";
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std::cout << s << "\n";
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lean_assert_eq(p3.first, g(f(g(a)), f(f(g(a)), g(a))));
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}
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static void tst3() {
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metavar_env menv;
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expr f = Const("f");
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expr g = Const("g");
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expr h = Const("h");
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expr a = Const("a");
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expr x = Const("x");
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x", T}, {"y", T}, {"z", T}}));
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expr F = Fun({x, T}, f(m1, x));
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menv->assign(m1, h(Var(0), Var(2)));
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std::cout << instantiate(abst_body(F), g(a)) << "\n";
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lean_assert(menv->instantiate_metavars(instantiate(abst_body(F), g(a))) == f(h(g(a), Var(1)), g(a)));
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std::cout << instantiate(menv->instantiate_metavars(abst_body(F)), g(a)) << "\n";
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lean_assert(instantiate(menv->instantiate_metavars(abst_body(F)), g(a)) ==
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menv->instantiate_metavars(instantiate(abst_body(F), g(a))));
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}
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static void tst4() {
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metavar_env menv;
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expr f = Const("f");
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expr g = Const("g");
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expr h = Const("h");
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expr a = Const("a");
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x", T}, {"y", T}}));
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expr F = f(m1, Var(2));
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menv->assign(m1, h(Var(1)));
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std::cout << instantiate(F, {g(Var(0)), h(a)}) << "\n";
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std::cout << menv->instantiate_metavars(instantiate(F, {g(Var(0)), h(a)})) << "\n";
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}
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static void tst5() {
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return;
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}
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static void tst6() {
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expr N = Const("N");
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expr m1 = mk_metavar("m1", Bool >> (Bool >> Bool));
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substitution s;
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expr f = Const("f");
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expr g = Const("g");
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expr x = Const("x");
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expr y = Const("y");
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expr a = Const("a");
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expr g = Const("g");
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expr h = Const("h");
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metavar_env menv;
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}}));
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expr m2 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}}));
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expr t = f(Var(0), Fun({x, N}, f(Var(1), x, Fun({y, N}, f(Var(2), x, y)))));
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expr r = instantiate(t, g(m1, m2));
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std::cout << r << std::endl;
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menv->assign(m2, Var(2));
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r = menv->instantiate_metavars(r);
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std::cout << r << std::endl;
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menv->assign(m1, h(Var(3)));
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r = menv->instantiate_metavars(r);
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std::cout << r << std::endl;
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lean_assert(r == f(g(h(Var(3)), Var(2)), Fun({x, N}, f(g(h(Var(4)), Var(3)), x, Fun({y, N}, f(g(h(Var(5)), Var(4)), x, y))))));
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}
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static void tst7() {
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expr f = Const("f");
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expr g = Const("g");
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expr a = Const("a");
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metavar_env menv;
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x", T}}));
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expr t = f(m1, Var(0));
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expr r = instantiate(t, a);
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menv->assign(m1, g(Var(0)));
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r = menv->instantiate_metavars(r);
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std::cout << r << std::endl;
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lean_assert(r == f(g(a), a));
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}
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static void tst8() {
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expr f = Const("f");
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expr g = Const("g");
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expr a = Const("a");
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metavar_env menv;
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}}));
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expr t = f(m1, Var(0), Var(2));
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expr r = instantiate(t, a);
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menv->assign(m1, g(Var(0), Var(1)));
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r = menv->instantiate_metavars(r);
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std::cout << r << std::endl;
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lean_assert(r == f(g(a, Var(0)), a, Var(1)));
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}
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static void tst9() {
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expr f = Const("f");
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expr g = Const("g");
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expr a = Const("a");
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metavar_env menv;
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}}));
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expr t = f(m1, Var(1), Var(2));
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expr r = lift_free_vars(t, 1, 2);
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std::cout << r << std::endl;
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r = instantiate(r, a);
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std::cout << r << std::endl;
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menv->assign(m1, g(Var(0), Var(1)));
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r = menv->instantiate_metavars(r);
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std::cout << r << std::endl;
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lean_assert(r == f(g(a, Var(2)), Var(2), Var(3)));
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}
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static void tst10() {
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expr N = Const("N");
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expr f = Const("f");
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expr x = Const("x");
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expr y = Const("y");
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expr a = Const("a");
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expr g = Const("g");
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expr h = Const("h");
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metavar_env menv;
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}}));
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expr m2 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}}));
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expr t = f(Var(0), Fun({x, N}, f(Var(1), Var(2), x, Fun({y, N}, f(Var(2), x, y)))));
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expr r = instantiate(t, g(m1));
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std::cout << r << std::endl;
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r = instantiate(r, h(m2));
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std::cout << r << std::endl;
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menv->assign(m1, f(Var(0)));
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menv->assign(m2, Var(2));
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r = menv->instantiate_metavars(r);
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std::cout << r << std::endl;
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lean_assert(r == f(g(f(h(Var(2)))), Fun({x, N}, f(g(f(h(Var(3)))), h(Var(3)), x, Fun({y, N}, f(g(f(h(Var(4)))), x, y))))));
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}
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static void tst11() {
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metavar_env menv;
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unsigned t1 = menv->get_timestamp();
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expr m = menv->mk_metavar();
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unsigned t2 = menv->get_timestamp();
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lean_assert(t2 > t1);
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lean_assert(!menv->is_assigned(m));
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lean_assert(menv->get_timestamp() == t2);
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menv->assign(m, Const("a"));
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lean_assert(menv->get_timestamp() > t2);
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}
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static void tst12() {
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metavar_env menv;
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expr T = Const("T");
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expr m = menv->mk_metavar(context({{"x1", T}, {"x2", T}}));
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expr f = Const("f");
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std::cout << instantiate(f(m), {Var(0), Var(1)}) << "\n";
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std::cout << instantiate(f(m), {Var(1), Var(0)}) << "\n";
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}
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static void tst13() {
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environment env;
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metavar_env menv;
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expr T = Const("T");
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expr m = menv->mk_metavar(context({{"x", T}}));
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env->add_var("N", Type());
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expr N = Const("N");
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env->add_var("f", N >> N);
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expr f = Const("f");
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env->add_var("a", N);
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expr a = Const("a");
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expr x = Const("x");
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expr F = Fun({x, N}, f(m))(a);
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normalizer norm(env);
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std::cout << norm(F) << "\n";
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menv->assign(m, Var(0));
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std::cout << norm(menv->instantiate_metavars(F)) << "\n";
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lean_assert(norm(menv->instantiate_metavars(F)) ==
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menv->instantiate_metavars(norm(F)));
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}
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static void tst14() {
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environment env;
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metavar_env menv;
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}, {"x5", T}}));
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expr m2 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}, {"x5", T}}));
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expr N = Const("N");
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expr f = Const("f");
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expr h = Const("h");
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expr a = Const("a");
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expr b = Const("b");
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expr x = Const("x");
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expr y = Const("y");
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env->add_var("h", Pi({N, Type()}, N >> (N >> N)));
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expr F1 = Fun({{N, Type()}, {a, N}, {f, N >> N}},
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(Fun({{x, N}, {y, N}}, mk_eq(N, f(m1), y)))(a));
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metavar_env menv2 = menv.copy();
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menv2->assign(m1, h(Var(4), Var(1), Var(3)));
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normalizer norm(env);
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env->add_var("M", Type());
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expr M = Const("M");
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std::cout << norm(F1) << "\n";
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std::cout << menv2->instantiate_metavars(norm(F1)) << "\n";
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std::cout << menv2->instantiate_metavars(F1) << "\n";
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std::cout << norm(menv2->instantiate_metavars(F1)) << "\n";
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lean_assert(menv2->instantiate_metavars(norm(F1)) ==
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norm(menv2->instantiate_metavars(F1)));
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}
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static void tst15() {
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environment env;
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metavar_env menv;
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normalizer norm(env);
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}}));
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expr f = Const("f");
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expr x = Const("x");
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expr y = Const("y");
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expr z = Const("z");
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expr N = Const("N");
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env->add_var("N", Type());
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env->add_var("f", Type() >> Type());
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expr F = Fun({z, Type()}, Fun({{x, Type()}, {y, Type()}}, f(m1))(N, N));
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menv->assign(m1, Var(2));
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std::cout << norm(F) << "\n";
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std::cout << menv->instantiate_metavars(norm(F)) << "\n";
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std::cout << norm(menv->instantiate_metavars(F)) << "\n";
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lean_assert(menv->instantiate_metavars(norm(F)) ==
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norm(menv->instantiate_metavars(F)));
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}
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static void tst16() {
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environment env;
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metavar_env menv;
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normalizer norm(env);
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context ctx;
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ctx = extend(ctx, "w", Type());
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}, {"x5", T}}));
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expr f = Const("f");
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expr x = Const("x");
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expr y = Const("y");
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expr z = Const("z");
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expr N = Const("N");
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env->add_var("N", Type());
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expr F = Fun({z, Type()}, Fun({{x, Type()}, {y, Type()}}, m1)(N, N));
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menv->assign(m1, Var(3));
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std::cout << norm(F, ctx) << "\n";
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std::cout << menv->instantiate_metavars(norm(F, ctx)) << "\n";
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std::cout << norm(menv->instantiate_metavars(F), ctx) << "\n";
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}
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static void tst17() {
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environment env;
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metavar_env menv;
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normalizer norm(env);
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context ctx;
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ctx = extend(ctx, "w1", Type());
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ctx = extend(ctx, "w2", Type());
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ctx = extend(ctx, "w3", Type());
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ctx = extend(ctx, "w4", Type());
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expr T = Const("T");
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expr m1 = menv->mk_metavar(context({{"x1", T}, {"x2", T}, {"x3", T}, {"x4", T}}));
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expr f = Const("f");
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expr x = Const("x");
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expr y = Const("y");
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expr z = Const("z");
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expr N = Const("N");
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env->add_var("N", Type());
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expr F = Fun({z, Type()}, Fun({{x, Type()}, {y, Type()}}, m1)(N, N));
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metavar_env menv2 = menv.copy();
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menv->assign(m1, Var(3));
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std::cout << norm(F, ctx) << "\n";
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std::cout << menv->instantiate_metavars(norm(F, ctx)) << "\n";
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std::cout << norm(menv->instantiate_metavars(F), ctx) << "\n";
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F = Fun({z, Type()}, Fun({{x, Type()}, {y, Type()}, {x, Type()}, {y, Type()}, {x, Type()}}, m1)(N, N, N, N, N));
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lean_assert(menv->instantiate_metavars(norm(F, ctx)) ==
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norm(menv->instantiate_metavars(F), ctx));
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std::cout << "----------------------\n";
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menv2->assign(m1, Var(8));
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std::cout << norm(F, ctx) << "\n";
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std::cout << menv2->instantiate_metavars(norm(F, ctx)) << "\n";
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std::cout << norm(menv2->instantiate_metavars(F), ctx) << "\n";
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lean_assert(menv2->instantiate_metavars(norm(F, ctx)) ==
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norm(menv2->instantiate_metavars(F), ctx));
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}
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static void tst18() {
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environment env;
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metavar_env menv;
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normalizer norm(env);
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expr f = Const("f");
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expr g = Const("g");
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expr h = Const("h");
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expr x = Const("x");
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expr y = Const("y");
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expr z = Const("z");
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expr N = Const("N");
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expr a = Const("a");
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context ctx({{"x1", N}});
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env->add_var("N", Type());
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env->add_var("a", N);
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env->add_var("g", N >> N);
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env->add_var("h", N >> (N >> N));
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expr m1 = menv->mk_metavar(context({{"x1", N}, {"z", Type()}, {"f", N >> N}, {"y", Type()}}));
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expr m2 = menv->mk_metavar(context({{"x1", N}, {"z", Type()}, {"x", N}}));
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expr F = Fun({z, Type()}, Fun({{f, N >> N}, {y, Type()}}, m1)(Fun({x, N}, g(z, x, m2)), N));
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std::cout << norm(F, ctx) << "\n";
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metavar_env menv2 = menv.copy();
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menv2->assign(m1, Var(1));
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menv2->assign(m2, h(Var(2), Var(1)));
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std::cout << menv2->instantiate_metavars(norm(F, ctx)) << "\n";
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std::cout << menv2->instantiate_metavars(F) << "\n";
|
||||
lean_assert_eq(menv2->instantiate_metavars(norm(F, ctx, menv2)),
|
||||
norm(menv2->instantiate_metavars(F), ctx, menv2));
|
||||
std::cout << "norm(F...): " << norm(F, ctx, menv2) << "\n";
|
||||
lean_assert(menv2->is_assigned(m1));
|
||||
lean_assert(menv2->is_assigned(m2));
|
||||
lean_assert_eq(menv2->instantiate_metavars(norm(F, ctx, menv2)),
|
||||
Fun({{z, Type()}, {x, N}}, g(z, x, h(Var(2), z))));
|
||||
}
|
||||
|
||||
static void tst19() {
|
||||
environment env;
|
||||
metavar_env menv;
|
||||
normalizer norm(env);
|
||||
context ctx;
|
||||
ctx = extend(ctx, "w1", Type());
|
||||
ctx = extend(ctx, "w2", Type());
|
||||
expr x = Const("x");
|
||||
expr y = Const("y");
|
||||
expr N = Const("N");
|
||||
expr m1 = menv->mk_metavar(context({{"N", Type()}, {"x", N}, {"y", N}}));
|
||||
expr F = Fun({{N, Type()}, {x, N}, {y, N}}, m1);
|
||||
std::cout << norm(F) << "\n";
|
||||
std::cout << norm(F, ctx) << "\n";
|
||||
lean_assert_eq(norm(F, context(), menv), F);
|
||||
lean_assert_eq(norm(F, ctx, menv), F);
|
||||
}
|
||||
|
||||
static void tst20() {
|
||||
environment env;
|
||||
metavar_env menv;
|
||||
normalizer norm(env);
|
||||
context ctx;
|
||||
ctx = extend(ctx, "w1", Type());
|
||||
ctx = extend(ctx, "w2", Type());
|
||||
expr x = Const("x");
|
||||
expr y = Const("y");
|
||||
expr z = Const("z");
|
||||
expr N = Const("N");
|
||||
expr a = Const("a");
|
||||
expr b = Const("b");
|
||||
expr m1 = menv->mk_metavar(context({{"x", N}, {"y", N}, {"z", N}, {"x", N}, {"y", N}}));
|
||||
env->add_var("N", Type());
|
||||
env->add_var("a", N);
|
||||
env->add_var("b", N);
|
||||
expr F = Fun({{x, N}, {y, N}, {z, N}}, Fun({{x, N}, {y, N}}, m1)(a, b));
|
||||
std::cout << norm(F) << "\n";
|
||||
std::cout << norm(F, ctx) << "\n";
|
||||
}
|
||||
|
||||
static void tst21() {
|
||||
metavar_env menv;
|
||||
expr m1 = menv->mk_metavar();
|
||||
expr l = add_lift(add_lift(m1, 0, 1), 1, 1);
|
||||
expr r = add_lift(m1, 0, 2);
|
||||
std::cout << menv->get_type(l) << " " << menv->get_type(r) << "\n";
|
||||
#if 0
|
||||
// Leo: I disabled the lift over lift optimization since it was
|
||||
// negatively impacting the heuristics
|
||||
lean_assert_eq(l, r);
|
||||
lean_assert_eq(add_lift(add_lift(m1, 1, 2), 3, 4),
|
||||
add_lift(m1, 1, 6));
|
||||
lean_assert_eq(add_lift(add_lift(m1, 1, 3), 3, 4),
|
||||
add_lift(m1, 1, 7));
|
||||
lean_assert_ne(add_lift(add_lift(m1, 0, 3), 3, 4),
|
||||
add_lift(m1, 1, 7));
|
||||
#endif
|
||||
}
|
||||
|
||||
#define _ mk_placeholder()
|
||||
|
||||
static void tst22() {
|
||||
metavar_env menv;
|
||||
expr f = Const("f");
|
||||
expr x = Const("x");
|
||||
expr N = Const("N");
|
||||
expr F = f(Fun({x, N}, f(_, x)), _);
|
||||
std::cout << F << "\n";
|
||||
std::cout << replace_placeholders_with_metavars(F, menv) << "\n";
|
||||
}
|
||||
|
||||
static void tst23() {
|
||||
environment env;
|
||||
metavar_env menv;
|
||||
type_checker checker(env);
|
||||
expr N = Const("N");
|
||||
expr f = Const("f");
|
||||
expr a = Const("a");
|
||||
env->add_var("N", Type());
|
||||
env->add_var("f", N >> (N >> N));
|
||||
env->add_var("a", N);
|
||||
expr x = Const("x");
|
||||
expr F0 = f(Fun({x, N}, f(_, x))(a), _);
|
||||
expr F1 = replace_placeholders_with_metavars(F0, menv);
|
||||
buffer<unification_constraint> up;
|
||||
std::cout << F1 << "\n";
|
||||
try {
|
||||
std::cout << checker.check(F1, context(), menv, up) << "\n";
|
||||
} catch (kernel_exception & ex) {
|
||||
formatter fmt = mk_simple_formatter();
|
||||
io_state st(options(), fmt);
|
||||
regular(st) << ex << "\n";
|
||||
}
|
||||
std::cout << up << "\n";
|
||||
}
|
||||
|
||||
static void tst24() {
|
||||
metavar_env menv;
|
||||
expr m1 = menv->mk_metavar();
|
||||
expr m2 = menv->mk_metavar();
|
||||
expr f = Const("f");
|
||||
expr a = Const("a");
|
||||
menv->assign(m1, f(m2));
|
||||
menv->assign(m2, a);
|
||||
lean_assert(menv->instantiate_metavars(f(m1)) == f(f(a)));
|
||||
std::cout << menv->instantiate_metavars(f(m1)) << "\n";
|
||||
}
|
||||
|
||||
static void tst25() {
|
||||
environment env;
|
||||
metavar_env menv;
|
||||
buffer<unification_constraint> up;
|
||||
type_checker checker(env);
|
||||
expr N = Const("N");
|
||||
expr a = Const("a");
|
||||
expr b = Const("b");
|
||||
env->add_var("N", Type());
|
||||
env->add_var("a", N);
|
||||
env->add_var("b", N);
|
||||
expr m = menv->mk_metavar();
|
||||
expr F = m(a, b);
|
||||
std::cout << checker.check(F, context(), menv, up) << "\n";
|
||||
std::cout << menv << "\n";
|
||||
std::cout << up << "\n";
|
||||
}
|
||||
|
||||
static void tst26() {
|
||||
/*
|
||||
Encoding the following problem
|
||||
|
||||
Variable list : Type -> Type
|
||||
Variable nil {A : Type} : list A
|
||||
Variable cons {A : Type} (head : A) (tail : list A) : list A
|
||||
Variables a b : Int
|
||||
Variables n m : Nat
|
||||
Definition l2 : list Int := cons a (cons n (cons b nil))
|
||||
*/
|
||||
std::cout << "\ntst26\n";
|
||||
environment env;
|
||||
init_test_frontend(env);
|
||||
metavar_env menv;
|
||||
buffer<unification_constraint> up;
|
||||
type_checker checker(env);
|
||||
expr list = Const("list");
|
||||
expr nil = Const("nil");
|
||||
expr cons = Const("cons");
|
||||
expr A = Const("A");
|
||||
env->add_var("list", Type() >> Type());
|
||||
env->add_var("nil", Pi({A, Type()}, list(A)));
|
||||
env->add_var("cons", Pi({A, Type()}, A >> (list(A) >> list(A))));
|
||||
env->add_var("a", Int);
|
||||
env->add_var("b", Int);
|
||||
env->add_var("n", Nat);
|
||||
env->add_var("m", Nat);
|
||||
expr a = Const("a");
|
||||
expr b = Const("b");
|
||||
expr n = Const("n");
|
||||
expr m = Const("m");
|
||||
expr m1 = menv->mk_metavar();
|
||||
expr m2 = menv->mk_metavar();
|
||||
expr m3 = menv->mk_metavar();
|
||||
expr A1 = menv->mk_metavar();
|
||||
expr A2 = menv->mk_metavar();
|
||||
expr A3 = menv->mk_metavar();
|
||||
expr A4 = menv->mk_metavar();
|
||||
expr F = cons(A1, m1(a), cons(A2, m2(n), cons(A3, m3(b), nil(A4))));
|
||||
std::cout << F << "\n";
|
||||
std::cout << checker.check(F, context(), menv, up) << "\n";
|
||||
std::cout << menv << "\n";
|
||||
std::cout << up << "\n";
|
||||
s.assign(m1, Fun({{x, Bool}, {y, Bool}}, f(y, x)));
|
||||
lean_assert_eq(s.instantiate_metavars(m1(a, b, g(a))).first, f(b, a, g(a)));
|
||||
lean_assert_eq(s.instantiate_metavars(m1(a)).first, Fun({y, Bool}, f(y, a)));
|
||||
lean_assert_eq(s.instantiate_metavars(m1(a, b)).first, f(b, a));
|
||||
std::cout << s.instantiate_metavars(m1(a, b, g(a))).first << "\n";
|
||||
}
|
||||
|
||||
static void tst27() {
|
||||
/*
|
||||
Variable f {A : Type} (a b : A) : Bool
|
||||
Variable a : Int
|
||||
Variable b : Real
|
||||
Definition tst : Bool := (fun x y, f x y) a b
|
||||
*/
|
||||
std::cout << "\ntst27\n";
|
||||
environment env;
|
||||
init_test_frontend(env);
|
||||
metavar_env menv;
|
||||
buffer<unification_constraint> up;
|
||||
type_checker checker(env);
|
||||
expr A = Const("A");
|
||||
expr f = Const("f");
|
||||
expr a = Const("a");
|
||||
expr b = Const("b");
|
||||
expr x = Const("x");
|
||||
expr y = Const("y");
|
||||
env->add_var("f", Pi({A, Type()}, A >> (A >> Bool)));
|
||||
env->add_var("a", Int);
|
||||
env->add_var("b", Real);
|
||||
expr T1 = menv->mk_metavar();
|
||||
expr T2 = menv->mk_metavar(context({{"x", T1}}));
|
||||
expr A1 = menv->mk_metavar(context({{"x", T1}, {"y", T2}}));
|
||||
expr m1 = menv->mk_metavar(context({{"x", T1}, {"y", T2}}));
|
||||
expr m2 = menv->mk_metavar(context({{"x", T1}, {"y", T2}}));
|
||||
expr F = Fun({{x, T1}, {y, T2}}, f(A1, x, y))(m1(a), m2(b));
|
||||
std::cout << F << "\n";
|
||||
std::cout << checker.check(F, context(), menv, up) << "\n";
|
||||
std::cout << menv << "\n";
|
||||
std::cout << up << "\n";
|
||||
}
|
||||
|
||||
static void tst28() {
|
||||
metavar_env menv;
|
||||
expr f = Const("f");
|
||||
expr a = Const("a");
|
||||
expr m1 = menv->mk_metavar();
|
||||
lean_assert(add_inst(m1, 0, f(a), menv) == m1);
|
||||
lean_assert(add_inst(m1, 1, f(a), menv) == m1);
|
||||
lean_assert(add_lift(m1, 0, 2, menv) == m1);
|
||||
lean_assert(add_lift(m1, 1, 2, menv) == m1);
|
||||
expr m2 = menv->mk_metavar(context({{"x", Bool}, {"y", Bool}}));
|
||||
lean_assert(add_inst(m2, 0, f(a), menv) != m2);
|
||||
lean_assert(add_inst(m2, 0, f(a), menv) == add_inst(m2, 0, f(a)));
|
||||
lean_assert(add_inst(m2, 1, f(a), menv) != m2);
|
||||
lean_assert(add_inst(m2, 2, f(a), menv) == m2);
|
||||
lean_assert(add_lift(m2, 0, 2, menv) != m2);
|
||||
lean_assert(add_lift(m2, 0, 2, menv) == add_lift(m2, 0, 2));
|
||||
lean_assert(add_lift(m2, 1, 2, menv) != m2);
|
||||
lean_assert(add_lift(m2, 2, 2, menv) == m2);
|
||||
lean_assert(add_lift(m2, 2, 2, menv) != add_lift(m2, 2, 2));
|
||||
}
|
||||
#endif
|
||||
|
||||
int main() {
|
||||
save_stack_info();
|
||||
tst1();
|
||||
tst2();
|
||||
#if 0
|
||||
tst3();
|
||||
tst4();
|
||||
tst5();
|
||||
tst6();
|
||||
tst7();
|
||||
tst8();
|
||||
tst9();
|
||||
tst10();
|
||||
tst11();
|
||||
tst12();
|
||||
tst13();
|
||||
tst14();
|
||||
tst15();
|
||||
tst16();
|
||||
tst17();
|
||||
tst18();
|
||||
tst19();
|
||||
tst20();
|
||||
tst21();
|
||||
tst22();
|
||||
tst23();
|
||||
tst24();
|
||||
tst25();
|
||||
tst26();
|
||||
tst27();
|
||||
tst28();
|
||||
#endif
|
||||
return has_violations() ? 1 : 0;
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue