198 lines
8.1 KiB
C++
198 lines
8.1 KiB
C++
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/*
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* Copyright 2012 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#include "include/core/SkString.h"
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#include "tests/PathOpsDebug.h"
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#include "tests/PathOpsExtendedTest.h"
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#include "tests/PathOpsThreadedCommon.h"
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#include <atomic>
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// four rects, of four sizes
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// for 3 smaller sizes, tall, wide
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// top upper mid lower bottom aligned (3 bits, 5 values)
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// same with x (3 bits, 5 values)
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// not included, square, tall, wide (2 bits)
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// cw or ccw (1 bit)
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static int loopNo = 6;
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static std::atomic<int> gRectsTestNo{0};
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static void testPathOpsRectsMain(PathOpsThreadState* data)
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{
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SkASSERT(data);
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const SkPathFillType fts[] = { SkPathFillType::kWinding, SkPathFillType::kEvenOdd };
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PathOpsThreadState& state = *data;
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SkString pathStr;
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for (int a = 0 ; a < 6; ++a) {
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for (int b = a + 1 ; b < 7; ++b) {
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for (int c = 0 ; c < 6; ++c) {
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for (int d = c + 1 ; d < 7; ++d) {
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for (auto e : fts) {
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for (auto f : fts) {
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SkPath pathA, pathB;
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pathA.setFillType((SkPathFillType) e);
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pathA.addRect(SkIntToScalar(state.fA), SkIntToScalar(state.fA), SkIntToScalar(state.fB),
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SkIntToScalar(state.fB), SkPathDirection::kCW);
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pathA.addRect(SkIntToScalar(state.fC), SkIntToScalar(state.fC), SkIntToScalar(state.fD),
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SkIntToScalar(state.fD), SkPathDirection::kCW);
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pathA.close();
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pathB.setFillType((SkPathFillType) f);
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pathB.addRect(SkIntToScalar(a), SkIntToScalar(a), SkIntToScalar(b),
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SkIntToScalar(b), SkPathDirection::kCW);
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pathB.addRect(SkIntToScalar(c), SkIntToScalar(c), SkIntToScalar(d),
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SkIntToScalar(d), SkPathDirection::kCW);
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pathB.close();
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for (int op = 0 ; op <= kXOR_SkPathOp; ++op) {
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if (state.fReporter->verbose()) {
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pathStr.printf(
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"static void rects%d(skiatest::Reporter* reporter,"
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"const char* filename) {\n", loopNo);
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pathStr.appendf(" SkPath path, pathB;");
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pathStr.appendf(" path.setFillType(SkPathFillType::k%s);\n",
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e == SkPathFillType::kWinding ? "Winding" : e == SkPathFillType::kEvenOdd
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? "EvenOdd" : "?UNDEFINED");
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pathStr.appendf(" path.addRect(%d, %d, %d, %d,"
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" SkPathDirection::kCW);\n", state.fA, state.fA, state.fB, state.fB);
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pathStr.appendf(" path.addRect(%d, %d, %d, %d,"
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" SkPathDirection::kCW);\n", state.fC, state.fC, state.fD, state.fD);
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pathStr.appendf(" pathB.setFillType(SkPathFillType::k%s);\n",
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f == SkPathFillType::kWinding ? "Winding" : f == SkPathFillType::kEvenOdd
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? "EvenOdd" : "?UNDEFINED");
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pathStr.appendf(" pathB.addRect(%d, %d, %d, %d,"
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" SkPathDirection::kCW);\n", a, a, b, b);
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pathStr.appendf(" pathB.addRect(%d, %d, %d, %d,"
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" SkPathDirection::kCW);\n", c, c, d, d);
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pathStr.appendf(" testPathOp(reporter, path, pathB, %s, filename);\n",
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SkPathOpsDebug::OpStr((SkPathOp) op));
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pathStr.appendf("}\n\n");
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state.outputProgress(pathStr.c_str(), (SkPathOp) op);
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}
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SkString testName;
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testName.printf("thread_rects%d", ++gRectsTestNo);
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if (!testPathOp(state.fReporter, pathA, pathB, (SkPathOp) op, testName.c_str())) {
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if (state.fReporter->verbose()) {
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++loopNo;
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goto skipToNext;
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}
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}
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if (PathOpsDebug::gCheckForDuplicateNames) return;
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}
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}
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}
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skipToNext: ;
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}
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}
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}
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}
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}
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DEF_TEST(PathOpsRectsThreaded, reporter) {
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initializeTests(reporter, "testOp");
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PathOpsThreadedTestRunner testRunner(reporter);
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for (int a = 0; a < 6; ++a) { // outermost
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for (int b = a + 1; b < 7; ++b) {
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for (int c = 0 ; c < 6; ++c) {
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for (int d = c + 1; d < 7; ++d) {
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*testRunner.fRunnables.append() = new PathOpsThreadedRunnable(
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&testPathOpsRectsMain, a, b, c, d, &testRunner);
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}
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}
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if (!reporter->allowExtendedTest()) goto finish;
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}
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}
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finish:
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testRunner.render();
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}
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static std::atomic<int> gFastTestNo{0};
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static void testPathOpsFastMain(PathOpsThreadState* data)
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{
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SkASSERT(data);
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const SkPathFillType fts[] = {
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SkPathFillType::kWinding, SkPathFillType::kEvenOdd,
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SkPathFillType::kInverseWinding, SkPathFillType::kInverseEvenOdd
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};
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PathOpsThreadState& state = *data;
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SkString pathStr;
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int step = data->fReporter->allowExtendedTest() ? 2 : 5;
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for (bool a : { false, true } ) {
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for (bool b : { false, true } ) {
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for (int c = 0; c < 6; c += step) {
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for (int d = 0; d < 6; d += step) {
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for (auto e : fts) {
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for (auto f : fts) {
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SkPath pathA, pathB;
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pathA.setFillType(e);
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if (a) {
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pathA.addRect(SkIntToScalar(state.fA), SkIntToScalar(state.fA), SkIntToScalar(state.fB) + c,
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SkIntToScalar(state.fB), SkPathDirection::kCW);
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}
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pathA.close();
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pathB.setFillType(f);
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if (b) {
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pathB.addRect(SkIntToScalar(state.fC), SkIntToScalar(state.fC), SkIntToScalar(state.fD) + d,
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SkIntToScalar(state.fD), SkPathDirection::kCW);
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}
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pathB.close();
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const char* fillTypeStr[] = { "Winding", "EvenOdd", "InverseWinding", "InverseEvenOdd" };
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for (int op = 0; op <= kXOR_SkPathOp; ++op) {
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if (state.fReporter->verbose()) {
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pathStr.printf(
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"static void fast%d(skiatest::Reporter* reporter,"
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"const char* filename) {\n", loopNo);
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pathStr.appendf(" SkPath path, pathB;");
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pathStr.appendf(" path.setFillType(SkPathFillType::k%s);\n", fillTypeStr[(int)e]);
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if (a) {
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pathStr.appendf(" path.addRect(%d, %d, %d, %d,"
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" SkPathDirection::kCW);\n", state.fA, state.fA, state.fB + c, state.fB);
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}
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pathStr.appendf(" path.setFillType(SkPathFillType::k%s);\n", fillTypeStr[(int)f]);
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if (b) {
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pathStr.appendf(" path.addRect(%d, %d, %d, %d,"
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" SkPathDirection::kCW);\n", state.fC, state.fC, state.fD + d, state.fD);
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}
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pathStr.appendf(" testPathOp(reporter, path, pathB, %s, filename);\n",
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SkPathOpsDebug::OpStr((SkPathOp) op));
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pathStr.appendf("}\n\n");
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state.outputProgress(pathStr.c_str(), (SkPathOp) op);
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}
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SkString testName;
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testName.printf("fast%d", ++gFastTestNo);
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if (!testPathOp(state.fReporter, pathA, pathB, (SkPathOp) op, testName.c_str())) {
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if (state.fReporter->verbose()) {
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++loopNo;
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goto skipToNext;
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}
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}
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if (PathOpsDebug::gCheckForDuplicateNames) return;
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}
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}
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}
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skipToNext: ;
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}
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}
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}
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}
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}
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DEF_TEST(PathOpsFastThreaded, reporter) {
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initializeTests(reporter, "testOp");
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PathOpsThreadedTestRunner testRunner(reporter);
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int step = reporter->allowExtendedTest() ? 2 : 5;
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for (int a = 0; a < 6; a += step) { // outermost
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for (int b = a + 1; b < 7; b += step) {
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for (int c = 0 ; c < 6; c += step) {
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for (int d = c + 1; d < 7; d += step) {
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*testRunner.fRunnables.append() = new PathOpsThreadedRunnable(
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&testPathOpsFastMain, a, b, c, d, &testRunner);
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}
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}
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}
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}
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testRunner.render();
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}
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