// RUN: %clang_cc1 -fexperimental-new-constant-interpreter -verify -std=c++20 %s // RUN: %clang_cc1 -verify=ref -std=c++20 %s constexpr int a = 12; constexpr int f = [c = a]() { return c; }(); static_assert(f == a); constexpr int inc() { int a = 10; auto f = [&a]() { ++a; }; f();f(); return a; } static_assert(inc() == 12); constexpr int add(int a, int b) { auto doIt = [a, b](int c) { return a + b + c; }; return doIt(2); } static_assert(add(4, 5) == 11); constexpr int add2(int a, int b) { auto doIt = [a, b](int c) { auto bar = [a]() { return a; }; auto bar2 = [b]() { return b; }; return bar() + bar2() + c; }; return doIt(2); } static_assert(add2(4, 5) == 11); constexpr int div(int a, int b) { auto f = [=]() { return a / b; // expected-note {{division by zero}} \ // ref-note {{division by zero}} }; return f(); // expected-note {{in call to '&f->operator()()'}} \ // ref-note {{in call to 'f.operator()()'}} } static_assert(div(8, 2) == 4); static_assert(div(8, 0) == 4); // expected-error {{not an integral constant expression}} \ // expected-note {{in call to 'div(8, 0)'}} \ // ref-error {{not an integral constant expression}} \ // ref-note {{in call to 'div(8, 0)'}} struct F { float f; }; constexpr float captureStruct() { F someF = {1.0}; auto p = [someF]() { return someF.f; }; return p(); } static_assert(captureStruct() == 1.0); int constexpr FunCase() { return [x = 10] { decltype(x) y; // type int b/c not odr use // refers to original init-capture auto &z = x; // type const int & b/c odr use // refers to lambdas copy of x y = 10; // Ok //z = 10; // Ill-formed return y; }(); } constexpr int WC = FunCase(); namespace LambdaParams { template constexpr void callThis(T t) { return t(); } constexpr int foo() { int a = 0; auto f = [&a]() { ++a; }; callThis(f); return a; } /// FIXME: This should work in the new interpreter. static_assert(foo() == 1); // expected-error {{not an integral constant expression}} }