149 lines
6.1 KiB
C++
149 lines
6.1 KiB
C++
// RUN: %clang_cc1 -std=c++14 -verify -fsyntax-only -Wshadow -D AVOID %s
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// RUN: %clang_cc1 -std=c++14 -verify -fsyntax-only -Wshadow -Wshadow-uncaptured-local %s
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// RUN: %clang_cc1 -std=c++14 -verify -fsyntax-only -Wshadow-all %s
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// RUN: %clang_cc1 -std=c++17 -verify -fsyntax-only -Wshadow-all %s
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void foo(int param) { // expected-note 1+ {{previous declaration is here}}
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int var = 0; // expected-note 1+ {{previous declaration is here}}
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// Avoid warnings for variables that aren't implicitly captured.
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{
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#ifdef AVOID
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auto f1 = [=] { int var = 1; }; // no warning
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auto f2 = [&] { int var = 2; }; // no warning
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auto f3 = [=] (int param) { ; }; // no warning
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auto f4 = [&] (int param) { ; }; // no warning
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#else
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auto f1 = [=] { int var = 1; }; // expected-warning {{declaration shadows a local variable}}
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auto f2 = [&] { int var = 2; }; // expected-warning {{declaration shadows a local variable}}
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auto f3 = [=] (int param) { ; }; // expected-warning {{declaration shadows a local variable}}
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auto f4 = [&] (int param) { ; }; // expected-warning {{declaration shadows a local variable}}
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#endif
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}
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// Warn for variables that are implicitly captured.
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{
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auto f1 = [=] () {
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{
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int var = 1; // expected-warning {{declaration shadows a local variable}}
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}
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int x = var; // expected-note {{variable 'var' is captured here}}
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};
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auto f2 = [&]
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#ifdef AVOID
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(int param) {
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#else
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(int param) { // expected-warning {{declaration shadows a local variable}}
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#endif
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int x = var; // expected-note {{variable 'var' is captured here}}
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int var = param; // expected-warning {{declaration shadows a local variable}}
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};
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}
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// Warn for variables that are explicitly captured when a lambda has a default
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// capture specifier.
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{
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auto f1 = [=, &var] () { // expected-note {{variable 'var' is captured here}}
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int x = param; // expected-note {{variable 'param' is captured here}}
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int var = 0; // expected-warning {{declaration shadows a local variable}}
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int param = 0; // expected-warning {{declaration shadows a local variable}}
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};
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}
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// Warn normally inside of lambdas.
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auto l1 = [] { // expected-note {{previous declaration is here}}
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int x = 1; // expected-note {{previous declaration is here}}
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{ int x = 2; } // expected-warning {{declaration shadows a local variable}}
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};
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auto l2 = [] (int x) { // expected-note {{previous declaration is here}}
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{ int x = 1; } // expected-warning {{declaration shadows a local variable}}
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};
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// Avoid warnings for variables that aren't explicitly captured.
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{
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#ifdef AVOID
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auto f1 = [] { int var = 1; }; // no warning
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auto f2 = [] (int param) { ; }; // no warning
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auto f3 = [param] () { int var = 1; }; // no warning
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auto f4 = [var] (int param) { ; }; // no warning
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#else
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auto f1 = [] { int var = 1; }; // expected-warning {{declaration shadows a local variable}}
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auto f2 = [] (int param) { ; }; // expected-warning {{declaration shadows a local variable}}
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auto f3 = [param] () { int var = 1; }; // expected-warning {{declaration shadows a local variable}}
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auto f4 = [var] (int param) { ; }; // expected-warning {{declaration shadows a local variable}}
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#endif
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};
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// Warn for variables that are explicitly captured.
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{
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auto f1 = [var] () { // expected-note {{variable 'var' is explicitly captured here}}
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int var = 1; // expected-warning {{declaration shadows a local variable}}
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};
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auto f2 = [param] // expected-note {{variable 'param' is explicitly captured here}}
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(int param) { ; }; // expected-error {{a lambda parameter cannot shadow an explicitly captured entity}}
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}
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// Warn for variables defined in the capture list.
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auto l3 = [z = var] { // expected-note {{previous declaration is here}}
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#ifdef AVOID
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int var = 1; // no warning
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#else
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int var = 1; // expected-warning {{declaration shadows a local variable}}
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#endif
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{ int z = 1; } // expected-warning {{declaration shadows a local variable}}
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};
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#ifdef AVOID
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auto l4 = [var = param] (int param) { ; }; // no warning
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#else
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auto l4 = [var = param] (int param) { ; }; // expected-warning {{declaration shadows a local variable}}
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#endif
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// Make sure that inner lambdas work as well.
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auto l5 = [var, l1] { // expected-note {{variable 'l1' is explicitly captured here}}
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auto l1 = [] { // expected-warning {{declaration shadows a local variable}}
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#ifdef AVOID
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int var = 1; // no warning
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#else
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int var = 1; // expected-warning {{declaration shadows a local variable}}
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#endif
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};
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#ifdef AVOID
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auto f1 = [] { int var = 1; }; // no warning
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auto f2 = [=] { int var = 1; }; // no warning
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#else
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auto f1 = [] { int var = 1; }; // expected-warning {{declaration shadows a local variable}}
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auto f2 = [=] { int var = 1; }; // expected-warning {{declaration shadows a local variable}}
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#endif
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auto f3 = [var] // expected-note {{variable 'var' is explicitly captured here}}
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{ int var = 1; }; // expected-warning {{declaration shadows a local variable}}
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auto f4 = [&] {
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int x = var; // expected-note {{variable 'var' is captured here}}
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int var = 2; // expected-warning {{declaration shadows a local variable}}
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};
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};
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auto l6 = [&] {
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auto f1 = [param] { // expected-note {{variable 'param' is explicitly captured here}}
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int param = 0; // expected-warning {{declaration shadows a local variable}}
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};
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};
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// Generic lambda arguments should work.
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#ifdef AVOID
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auto g1 = [](auto param) { ; }; // no warning
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auto g2 = [=](auto param) { ; }; // no warning
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#else
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auto g1 = [](auto param) { ; }; // expected-warning {{declaration shadows a local variable}}
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auto g2 = [=](auto param) { ; }; // expected-warning {{declaration shadows a local variable}}
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#endif
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auto g3 = [param] // expected-note {{variable 'param' is explicitly captured here}}
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(auto param) { ; }; // expected-error {{a lambda parameter cannot shadow an explicitly captured entity}}
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}
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void avoidWarningWhenRedefining() {
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int a = 1;
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auto l = [b = a] { // expected-note {{previous definition is here}}
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// Don't warn on redefinitions.
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int b = 0; // expected-error {{redefinition of 'b'}}
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};
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}
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