c0bd9f9fe5
Current strategy: everything from the top Things to look at first are the manual changes: - added tools/rewrite_includes.py - removed -Idirectives from BUILD.gn - various compile.sh simplifications - tweak tools/embed_resources.py - update gn/find_headers.py to write paths from the top - update gn/gn_to_bp.py SkUserConfig.h layout so that #include "include/config/SkUserConfig.h" always gets the header we want. No-Presubmit: true Change-Id: I73a4b181654e0e38d229bc456c0d0854bae3363e Reviewed-on: https://skia-review.googlesource.com/c/skia/+/209706 Commit-Queue: Mike Klein <mtklein@google.com> Reviewed-by: Hal Canary <halcanary@google.com> Reviewed-by: Brian Osman <brianosman@google.com> Reviewed-by: Florin Malita <fmalita@chromium.org>
202 lines
5.1 KiB
C++
202 lines
5.1 KiB
C++
/*
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* Copyright 2015 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/SkRefCnt.h"
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#include "include/core/SkString.h"
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#include "include/private/SkChecksum.h"
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#include "include/private/SkTHash.h"
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#include "tests/Test.h"
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// Tests use of const foreach(). map.count() is of course the better way to do this.
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static int count(const SkTHashMap<int, double>& map) {
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int n = 0;
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map.foreach([&n](int, double) { n++; });
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return n;
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}
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DEF_TEST(HashMap, r) {
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SkTHashMap<int, double> map;
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map.set(3, 4.0);
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REPORTER_ASSERT(r, map.count() == 1);
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REPORTER_ASSERT(r, map.approxBytesUsed() > 0);
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double* found = map.find(3);
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REPORTER_ASSERT(r, found);
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REPORTER_ASSERT(r, *found == 4.0);
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map.foreach([](int key, double* d){ *d = -key; });
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REPORTER_ASSERT(r, count(map) == 1);
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found = map.find(3);
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REPORTER_ASSERT(r, found);
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REPORTER_ASSERT(r, *found == -3.0);
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REPORTER_ASSERT(r, !map.find(2));
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const int N = 20;
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for (int i = 0; i < N; i++) {
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map.set(i, 2.0*i);
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}
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for (int i = 0; i < N; i++) {
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double* found = map.find(i);
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REPORTER_ASSERT(r, found);
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REPORTER_ASSERT(r, *found == i*2.0);
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}
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for (int i = N; i < 2*N; i++) {
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REPORTER_ASSERT(r, !map.find(i));
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}
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REPORTER_ASSERT(r, map.count() == N);
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for (int i = 0; i < N/2; i++) {
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map.remove(i);
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}
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for (int i = 0; i < N; i++) {
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double* found = map.find(i);
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REPORTER_ASSERT(r, (found == nullptr) == (i < N/2));
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}
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REPORTER_ASSERT(r, map.count() == N/2);
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map.reset();
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REPORTER_ASSERT(r, map.count() == 0);
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{
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// Test that we don't leave dangling values in empty slots.
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SkTHashMap<int, sk_sp<SkRefCnt>> refMap;
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auto ref = sk_make_sp<SkRefCnt>();
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REPORTER_ASSERT(r, ref->unique());
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refMap.set(0, ref);
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REPORTER_ASSERT(r, refMap.count() == 1);
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REPORTER_ASSERT(r, !ref->unique());
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refMap.remove(0);
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REPORTER_ASSERT(r, refMap.count() == 0);
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REPORTER_ASSERT(r, ref->unique());
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}
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}
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DEF_TEST(HashSet, r) {
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SkTHashSet<SkString> set;
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set.add(SkString("Hello"));
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set.add(SkString("World"));
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REPORTER_ASSERT(r, set.count() == 2);
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REPORTER_ASSERT(r, set.contains(SkString("Hello")));
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REPORTER_ASSERT(r, set.contains(SkString("World")));
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REPORTER_ASSERT(r, !set.contains(SkString("Goodbye")));
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REPORTER_ASSERT(r, set.find(SkString("Hello")));
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REPORTER_ASSERT(r, *set.find(SkString("Hello")) == SkString("Hello"));
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set.remove(SkString("Hello"));
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REPORTER_ASSERT(r, !set.contains(SkString("Hello")));
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REPORTER_ASSERT(r, set.count() == 1);
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set.reset();
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REPORTER_ASSERT(r, set.count() == 0);
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}
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namespace {
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class CopyCounter {
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public:
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CopyCounter() : fID(0), fCounter(nullptr) {}
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CopyCounter(uint32_t id, uint32_t* counter) : fID(id), fCounter(counter) {}
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CopyCounter(const CopyCounter& other)
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: fID(other.fID)
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, fCounter(other.fCounter) {
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SkASSERT(fCounter);
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*fCounter += 1;
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}
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void operator=(const CopyCounter& other) {
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fID = other.fID;
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fCounter = other.fCounter;
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*fCounter += 1;
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}
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CopyCounter(CopyCounter&& other) { *this = std::move(other); }
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void operator=(CopyCounter&& other) {
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fID = other.fID;
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fCounter = other.fCounter;
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}
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bool operator==(const CopyCounter& other) const {
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return fID == other.fID;
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}
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private:
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uint32_t fID;
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uint32_t* fCounter;
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};
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struct HashCopyCounter {
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uint32_t operator()(const CopyCounter&) const {
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return 0; // let them collide, what do we care?
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}
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};
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}
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DEF_TEST(HashSetCopyCounter, r) {
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SkTHashSet<CopyCounter, HashCopyCounter> set;
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uint32_t globalCounter = 0;
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CopyCounter copyCounter1(1, &globalCounter);
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CopyCounter copyCounter2(2, &globalCounter);
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REPORTER_ASSERT(r, globalCounter == 0);
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set.add(copyCounter1);
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REPORTER_ASSERT(r, globalCounter == 1);
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REPORTER_ASSERT(r, set.contains(copyCounter1));
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REPORTER_ASSERT(r, globalCounter == 1);
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set.add(copyCounter1);
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// We allow copies for same-value adds for now.
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REPORTER_ASSERT(r, globalCounter == 2);
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set.add(copyCounter2);
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REPORTER_ASSERT(r, globalCounter == 3);
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REPORTER_ASSERT(r, set.contains(copyCounter1));
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REPORTER_ASSERT(r, set.contains(copyCounter2));
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REPORTER_ASSERT(r, globalCounter == 3);
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set.add(copyCounter1);
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set.add(copyCounter2);
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// We allow copies for same-value adds for now.
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REPORTER_ASSERT(r, globalCounter == 5);
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}
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DEF_TEST(HashFindOrNull, r) {
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struct Entry {
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int key = 0;
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int val = 0;
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};
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struct HashTraits {
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static int GetKey(const Entry* e) { return e->key; }
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static uint32_t Hash(int key) { return key; }
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};
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SkTHashTable<Entry*, int, HashTraits> table;
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REPORTER_ASSERT(r, nullptr == table.findOrNull(7));
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Entry seven = { 7, 24 };
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table.set(&seven);
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REPORTER_ASSERT(r, &seven == table.findOrNull(7));
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}
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