f839c0359c
git-svn-id: http://skia.googlecode.com/svn/trunk@6159 2bbb7eff-a529-9590-31e7-b0007b416f81
98 lines
3.0 KiB
C++
98 lines
3.0 KiB
C++
#include "EdgeWalker_Test.h"
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#include "Intersection_Tests.h"
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#include "ShapeOps.h"
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bool gShowOriginal = true;
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struct curve {
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SkPath::Verb verb;
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SkPoint pts[4];
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};
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struct curve test1[] = {
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{SkPath::kQuad_Verb, {{366.608826f, 151.196014f}, {378.803101f, 136.674606f}, {398.164948f, 136.674606f}}},
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{SkPath::kLine_Verb, {{354.009216f, 208.816208f}, {393.291473f, 102.232819f}}},
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{SkPath::kQuad_Verb, {{359.978058f, 136.581512f}, {378.315979f, 136.581512f}, {388.322723f, 149.613556f}}},
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{SkPath::kQuad_Verb, {{364.390686f, 157.898193f}, {375.281769f, 136.674606f}, {396.039917f, 136.674606f}}},
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{SkPath::kLine_Verb, {{396.039917f, 136.674606f}, {350, 120}}},
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{SkPath::kDone_Verb}
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};
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struct curve test2[] = {
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{SkPath::kQuad_Verb, {{366.608826f, 151.196014f}, {378.803101f, 136.674606f}, {398.164948f, 136.674606f}}},
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{SkPath::kQuad_Verb, {{359.978058f, 136.581512f}, {378.315979f, 136.581512f}, {388.322723f, 149.613556f}}},
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{SkPath::kQuad_Verb, {{364.390686f, 157.898193f}, {375.281769f, 136.674606f}, {396.039917f, 136.674606f}}},
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{SkPath::kDone_Verb}
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};
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struct curve* testSet[] = {
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test2,
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test1
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};
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size_t testSet_count = sizeof(testSet) / sizeof(testSet[0]);
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static void construct() {
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for (size_t idx = 0; idx < testSet_count; ++idx) {
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const curve* test = testSet[idx];
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SkPath path;
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bool pathComplete = false;
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bool first = true;
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do {
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if (first) {
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path.moveTo(test->pts[0].fX, test->pts[0].fY);
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first = false;
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} else if (test->verb != SkPath::kDone_Verb) {
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path.lineTo(test->pts[0].fX, test->pts[0].fY);
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}
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switch (test->verb) {
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case SkPath::kDone_Verb:
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pathComplete = true;
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break;
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case SkPath::kLine_Verb:
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path.lineTo(test->pts[1].fX, test->pts[1].fY);
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break;
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case SkPath::kQuad_Verb:
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path.quadTo(test->pts[1].fX, test->pts[1].fY, test->pts[2].fX, test->pts[2].fY);
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break;
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case SkPath::kCubic_Verb:
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path.cubicTo(test->pts[1].fX, test->pts[1].fY, test->pts[2].fX, test->pts[2].fY, test->pts[3].fX, test->pts[3].fY);
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break;
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}
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test++;
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} while (!pathComplete);
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path.close();
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if (gShowOriginal) {
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showPath(path, NULL);
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SkDebugf("simplified:\n");
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}
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testSimplifyx(path);
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}
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}
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static void (*tests[])() = {
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construct,
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};
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static const size_t testCount = sizeof(tests) / sizeof(tests[0]);
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static void (*firstTest)() = 0;
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static bool skipAll = false;
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void MiniSimplify_Test() {
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if (skipAll) {
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return;
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}
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size_t index = 0;
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if (firstTest) {
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while (index < testCount && tests[index] != firstTest) {
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++index;
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}
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}
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bool firstTestComplete = false;
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for ( ; index < testCount; ++index) {
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(*tests[index])();
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firstTestComplete = true;
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}
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}
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