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43f02027e4
Now we delay allocating owning `NameAndLocation` instances until we construct a new tracker (because a tracker's lifetime can be significantly different from the underlying tracked-thing's name). This saves 4239 allocations (436948 -> 432709) when running `./tests/SelfTest -o /dev/null`, at some cost to code clarity due to introducing a new ref type, `NameAndLocationRef`.
255 lines
7.6 KiB
C++
255 lines
7.6 KiB
C++
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// Copyright Catch2 Authors
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// Distributed under the Boost Software License, Version 1.0.
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// (See accompanying file LICENSE.txt or copy at
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// https://www.boost.org/LICENSE_1_0.txt)
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// SPDX-License-Identifier: BSL-1.0
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#include <catch2/catch_test_macros.hpp>
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#include <catch2/generators/catch_generators.hpp>
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#include <catch2/internal/catch_test_case_tracker.hpp>
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using namespace Catch;
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namespace {
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Catch::TestCaseTracking::NameAndLocationRef makeNAL( StringRef name ) {
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return Catch::TestCaseTracking::NameAndLocationRef( name, Catch::SourceLineInfo("",0) );
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}
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}
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TEST_CASE( "Tracker" ) {
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TrackerContext ctx;
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ctx.startRun();
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ctx.startCycle();
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ITracker& testCase = SectionTracker::acquire( ctx, makeNAL( "Testcase" ) );
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REQUIRE( testCase.isOpen() );
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ITracker& s1 = SectionTracker::acquire( ctx, makeNAL( "S1" ) );
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REQUIRE( s1.isOpen() );
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SECTION( "successfully close one section" ) {
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s1.close();
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REQUIRE( s1.isSuccessfullyCompleted() );
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REQUIRE( testCase.isComplete() == false );
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testCase.close();
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REQUIRE( ctx.completedCycle() );
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REQUIRE( testCase.isSuccessfullyCompleted() );
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}
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SECTION( "fail one section" ) {
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s1.fail();
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REQUIRE( s1.isComplete() );
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REQUIRE( s1.isSuccessfullyCompleted() == false );
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REQUIRE( testCase.isComplete() == false );
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testCase.close();
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REQUIRE( ctx.completedCycle() );
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REQUIRE( testCase.isSuccessfullyCompleted() == false );
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SECTION( "re-enter after failed section" ) {
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ctx.startCycle();
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ITracker& testCase2 = SectionTracker::acquire( ctx, makeNAL( "Testcase" ) );
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REQUIRE( testCase2.isOpen() );
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ITracker& s1b = SectionTracker::acquire( ctx, makeNAL( "S1" ) );
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REQUIRE( s1b.isOpen() == false );
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testCase2.close();
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REQUIRE( ctx.completedCycle() );
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REQUIRE( testCase.isComplete() );
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REQUIRE( testCase.isSuccessfullyCompleted() );
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}
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SECTION( "re-enter after failed section and find next section" ) {
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ctx.startCycle();
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ITracker& testCase2 = SectionTracker::acquire( ctx, makeNAL( "Testcase" ) );
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REQUIRE( testCase2.isOpen() );
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ITracker& s1b = SectionTracker::acquire( ctx, makeNAL( "S1" ) );
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REQUIRE( s1b.isOpen() == false );
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ITracker& s2 = SectionTracker::acquire( ctx, makeNAL( "S2" ) );
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REQUIRE( s2.isOpen() );
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s2.close();
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REQUIRE( ctx.completedCycle() );
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testCase2.close();
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REQUIRE( testCase.isComplete() );
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REQUIRE( testCase.isSuccessfullyCompleted() );
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}
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}
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SECTION( "successfully close one section, then find another" ) {
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s1.close();
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ITracker& s2 = SectionTracker::acquire( ctx, makeNAL( "S2" ) );
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REQUIRE( s2.isOpen() == false );
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testCase.close();
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REQUIRE( testCase.isComplete() == false );
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SECTION( "Re-enter - skips S1 and enters S2" ) {
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ctx.startCycle();
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ITracker& testCase2 = SectionTracker::acquire( ctx, makeNAL( "Testcase" ) );
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REQUIRE( testCase2.isOpen() );
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ITracker& s1b = SectionTracker::acquire( ctx, makeNAL( "S1" ) );
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REQUIRE( s1b.isOpen() == false );
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ITracker& s2b = SectionTracker::acquire( ctx, makeNAL( "S2" ) );
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REQUIRE( s2b.isOpen() );
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REQUIRE( ctx.completedCycle() == false );
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SECTION ("Successfully close S2") {
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s2b.close();
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REQUIRE( ctx.completedCycle() );
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REQUIRE( s2b.isSuccessfullyCompleted() );
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REQUIRE( testCase2.isComplete() == false );
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testCase2.close();
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REQUIRE( testCase2.isSuccessfullyCompleted() );
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}
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SECTION ("fail S2") {
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s2b.fail();
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REQUIRE( ctx.completedCycle() );
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REQUIRE( s2b.isComplete() );
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REQUIRE( s2b.isSuccessfullyCompleted() == false );
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testCase2.close();
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REQUIRE( testCase2.isSuccessfullyCompleted() == false );
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// Need a final cycle
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ctx.startCycle();
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ITracker& testCase3 = SectionTracker::acquire( ctx, makeNAL( "Testcase" ) );
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REQUIRE( testCase3.isOpen() );
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ITracker& s1c = SectionTracker::acquire( ctx, makeNAL( "S1" ) );
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REQUIRE( s1c.isOpen() == false );
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ITracker& s2c = SectionTracker::acquire( ctx, makeNAL( "S2" ) );
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REQUIRE( s2c.isOpen() == false );
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testCase3.close();
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REQUIRE( testCase3.isSuccessfullyCompleted() );
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}
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}
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}
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SECTION( "open a nested section" ) {
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ITracker& s2 = SectionTracker::acquire( ctx, makeNAL( "S2" ) );
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REQUIRE( s2.isOpen() );
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s2.close();
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REQUIRE( s2.isComplete() );
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REQUIRE( s1.isComplete() == false );
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s1.close();
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REQUIRE( s1.isComplete() );
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REQUIRE( testCase.isComplete() == false );
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testCase.close();
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REQUIRE( testCase.isComplete() );
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}
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}
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static bool previouslyRun = false;
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static bool previouslyRunNested = false;
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TEST_CASE( "#1394", "[.][approvals][tracker]" ) {
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// -- Don't re-run after specified section is done
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REQUIRE(previouslyRun == false);
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SECTION( "RunSection" ) {
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previouslyRun = true;
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}
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SECTION( "SkipSection" ) {
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// cause an error if this section is called because it shouldn't be
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REQUIRE(1 == 0);
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}
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}
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TEST_CASE( "#1394 nested", "[.][approvals][tracker]" ) {
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REQUIRE(previouslyRunNested == false);
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SECTION( "NestedRunSection" ) {
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SECTION( "s1" ) {
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previouslyRunNested = true;
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}
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}
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SECTION( "NestedSkipSection" ) {
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// cause an error if this section is called because it shouldn't be
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REQUIRE(1 == 0);
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}
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}
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// Selecting a "not last" section inside a test case via -c "section" would
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// previously only run the first subsection, instead of running all of them.
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// This allows us to check that `"#1670 regression check" -c A` leads to
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// 2 successful assertions.
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TEST_CASE("#1670 regression check", "[.approvals][tracker]") {
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SECTION("A") {
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SECTION("1") SUCCEED();
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SECTION("2") SUCCEED();
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}
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SECTION("B") {
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SECTION("1") SUCCEED();
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SECTION("2") SUCCEED();
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}
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}
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// #1938 required a rework on how generator tracking works, so that `GENERATE`
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// supports being sandwiched between two `SECTION`s. The following tests check
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// various other scenarios through checking output in approval tests.
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TEST_CASE("#1938 - GENERATE after a section", "[.][regression][generators]") {
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SECTION("A") {
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SUCCEED("A");
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}
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auto m = GENERATE(1, 2, 3);
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SECTION("B") {
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REQUIRE(m);
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}
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}
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TEST_CASE("#1938 - flat generate", "[.][regression][generators]") {
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auto m = GENERATE(1, 2, 3);
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REQUIRE(m);
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}
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TEST_CASE("#1938 - nested generate", "[.][regression][generators]") {
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auto m = GENERATE(1, 2, 3);
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auto n = GENERATE(1, 2, 3);
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REQUIRE(m);
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REQUIRE(n);
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}
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TEST_CASE("#1938 - mixed sections and generates", "[.][regression][generators]") {
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auto i = GENERATE(1, 2);
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SECTION("A") {
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SUCCEED("A");
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}
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auto j = GENERATE(3, 4);
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SECTION("B") {
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SUCCEED("B");
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}
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auto k = GENERATE(5, 6);
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CAPTURE(i, j, k);
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SUCCEED();
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}
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TEST_CASE("#1938 - Section followed by flat generate", "[.][regression][generators]") {
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SECTION("A") {
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REQUIRE(1);
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}
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auto m = GENERATE(2, 3);
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REQUIRE(m);
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}
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