* commit '2c764b20e4a35c509f49e3d9430e135b4f3a0984': Fix for positioning of glyphs within a bitmap
492 lines
17 KiB
C++
492 lines
17 KiB
C++
/*
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* Copyright (C) 2012 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#define LOG_TAG "OpenGLRenderer"
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#define ATRACE_TAG ATRACE_TAG_VIEW
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#include <cutils/compiler.h>
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#include <utils/JenkinsHash.h>
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#include <utils/Trace.h>
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#include <SkGlyph.h>
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#include <SkGlyphCache.h>
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#include <SkUtils.h>
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#include "FontUtil.h"
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#include "Font.h"
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#include "../Debug.h"
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#include "../FontRenderer.h"
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#include "../PixelBuffer.h"
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#include "../Properties.h"
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namespace android {
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namespace uirenderer {
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///////////////////////////////////////////////////////////////////////////////
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// Font
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///////////////////////////////////////////////////////////////////////////////
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Font::Font(FontRenderer* state, const Font::FontDescription& desc) :
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mState(state), mDescription(desc) {
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}
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Font::FontDescription::FontDescription(const SkPaint* paint, const mat4& matrix) {
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mFontId = SkTypeface::UniqueID(paint->getTypeface());
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mFontSize = paint->getTextSize();
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mFlags = 0;
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if (paint->isFakeBoldText()) {
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mFlags |= Font::kFakeBold;
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}
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mItalicStyle = paint->getTextSkewX();
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mScaleX = paint->getTextScaleX();
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mStyle = paint->getStyle();
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mStrokeWidth = paint->getStrokeWidth();
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mAntiAliasing = paint->isAntiAlias();
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mHinting = paint->getHinting();
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mLookupTransform.reset();
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mLookupTransform[SkMatrix::kMScaleX] = roundf(fmaxf(1.0f, matrix[mat4::kScaleX]));
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mLookupTransform[SkMatrix::kMScaleY] = roundf(fmaxf(1.0f, matrix[mat4::kScaleY]));
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if (!mLookupTransform.invert(&mInverseLookupTransform)) {
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ALOGW("Could not query the inverse lookup transform for this font");
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}
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}
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Font::~Font() {
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mState->removeFont(this);
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for (uint32_t i = 0; i < mCachedGlyphs.size(); i++) {
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delete mCachedGlyphs.valueAt(i);
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}
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}
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hash_t Font::FontDescription::hash() const {
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uint32_t hash = JenkinsHashMix(0, mFontId);
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hash = JenkinsHashMix(hash, android::hash_type(mFontSize));
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hash = JenkinsHashMix(hash, android::hash_type(mFlags));
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hash = JenkinsHashMix(hash, android::hash_type(mItalicStyle));
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hash = JenkinsHashMix(hash, android::hash_type(mScaleX));
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hash = JenkinsHashMix(hash, android::hash_type(mStyle));
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hash = JenkinsHashMix(hash, android::hash_type(mStrokeWidth));
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hash = JenkinsHashMix(hash, int(mAntiAliasing));
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hash = JenkinsHashMix(hash, android::hash_type(mHinting));
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hash = JenkinsHashMix(hash, android::hash_type(mLookupTransform[SkMatrix::kMScaleX]));
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hash = JenkinsHashMix(hash, android::hash_type(mLookupTransform[SkMatrix::kMScaleY]));
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return JenkinsHashWhiten(hash);
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}
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int Font::FontDescription::compare(const Font::FontDescription& lhs,
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const Font::FontDescription& rhs) {
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int deltaInt = int(lhs.mFontId) - int(rhs.mFontId);
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if (deltaInt != 0) return deltaInt;
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if (lhs.mFontSize < rhs.mFontSize) return -1;
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if (lhs.mFontSize > rhs.mFontSize) return +1;
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if (lhs.mItalicStyle < rhs.mItalicStyle) return -1;
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if (lhs.mItalicStyle > rhs.mItalicStyle) return +1;
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deltaInt = int(lhs.mFlags) - int(rhs.mFlags);
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if (deltaInt != 0) return deltaInt;
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if (lhs.mScaleX < rhs.mScaleX) return -1;
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if (lhs.mScaleX > rhs.mScaleX) return +1;
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deltaInt = int(lhs.mStyle) - int(rhs.mStyle);
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if (deltaInt != 0) return deltaInt;
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if (lhs.mStrokeWidth < rhs.mStrokeWidth) return -1;
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if (lhs.mStrokeWidth > rhs.mStrokeWidth) return +1;
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deltaInt = int(lhs.mAntiAliasing) - int(rhs.mAntiAliasing);
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if (deltaInt != 0) return deltaInt;
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deltaInt = int(lhs.mHinting) - int(rhs.mHinting);
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if (deltaInt != 0) return deltaInt;
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if (lhs.mLookupTransform[SkMatrix::kMScaleX] <
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rhs.mLookupTransform[SkMatrix::kMScaleX]) return -1;
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if (lhs.mLookupTransform[SkMatrix::kMScaleX] >
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rhs.mLookupTransform[SkMatrix::kMScaleX]) return +1;
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if (lhs.mLookupTransform[SkMatrix::kMScaleY] <
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rhs.mLookupTransform[SkMatrix::kMScaleY]) return -1;
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if (lhs.mLookupTransform[SkMatrix::kMScaleY] >
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rhs.mLookupTransform[SkMatrix::kMScaleY]) return +1;
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return 0;
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}
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void Font::invalidateTextureCache(CacheTexture* cacheTexture) {
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for (uint32_t i = 0; i < mCachedGlyphs.size(); i++) {
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CachedGlyphInfo* cachedGlyph = mCachedGlyphs.valueAt(i);
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if (!cacheTexture || cachedGlyph->mCacheTexture == cacheTexture) {
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cachedGlyph->mIsValid = false;
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}
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}
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}
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void Font::measureCachedGlyph(CachedGlyphInfo *glyph, int x, int y,
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uint8_t* bitmap, uint32_t bitmapW, uint32_t bitmapH, Rect* bounds, const float* pos) {
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int nPenX = x + glyph->mBitmapLeft;
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int nPenY = y + glyph->mBitmapTop;
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int width = (int) glyph->mBitmapWidth;
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int height = (int) glyph->mBitmapHeight;
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if (bounds->bottom > nPenY) {
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bounds->bottom = nPenY;
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}
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if (bounds->left > nPenX) {
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bounds->left = nPenX;
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}
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if (bounds->right < nPenX + width) {
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bounds->right = nPenX + width;
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}
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if (bounds->top < nPenY + height) {
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bounds->top = nPenY + height;
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}
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}
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void Font::drawCachedGlyph(CachedGlyphInfo* glyph, int x, int y,
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uint8_t* bitmap, uint32_t bitmapW, uint32_t bitmapH, Rect* bounds, const float* pos) {
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float nPenX = x + glyph->mBitmapLeft;
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float nPenY = y + glyph->mBitmapTop + glyph->mBitmapHeight;
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float width = (float) glyph->mBitmapWidth;
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float height = (float) glyph->mBitmapHeight;
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float u1 = glyph->mBitmapMinU;
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float u2 = glyph->mBitmapMaxU;
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float v1 = glyph->mBitmapMinV;
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float v2 = glyph->mBitmapMaxV;
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mState->appendMeshQuad(nPenX, nPenY, u1, v2,
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nPenX + width, nPenY, u2, v2,
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nPenX + width, nPenY - height, u2, v1,
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nPenX, nPenY - height, u1, v1, glyph->mCacheTexture);
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}
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void Font::drawCachedGlyphTransformed(CachedGlyphInfo* glyph, int x, int y,
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uint8_t* bitmap, uint32_t bitmapW, uint32_t bitmapH, Rect* bounds, const float* pos) {
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SkPoint p[4];
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p[0].iset(glyph->mBitmapLeft, glyph->mBitmapTop + glyph->mBitmapHeight);
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p[1].iset(glyph->mBitmapLeft + glyph->mBitmapWidth, glyph->mBitmapTop + glyph->mBitmapHeight);
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p[2].iset(glyph->mBitmapLeft + glyph->mBitmapWidth, glyph->mBitmapTop);
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p[3].iset(glyph->mBitmapLeft, glyph->mBitmapTop);
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mDescription.mInverseLookupTransform.mapPoints(p, 4);
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p[0].offset(x, y);
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p[1].offset(x, y);
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p[2].offset(x, y);
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p[3].offset(x, y);
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float u1 = glyph->mBitmapMinU;
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float u2 = glyph->mBitmapMaxU;
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float v1 = glyph->mBitmapMinV;
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float v2 = glyph->mBitmapMaxV;
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mState->appendRotatedMeshQuad(
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p[0].x(), p[0].y(), u1, v2,
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p[1].x(), p[1].y(), u2, v2,
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p[2].x(), p[2].y(), u2, v1,
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p[3].x(), p[3].y(), u1, v1, glyph->mCacheTexture);
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}
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void Font::drawCachedGlyphBitmap(CachedGlyphInfo* glyph, int x, int y, uint8_t* bitmap,
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uint32_t bitmapWidth, uint32_t bitmapHeight, Rect* bounds, const float* pos) {
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int dstX = x + glyph->mBitmapLeft;
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int dstY = y + glyph->mBitmapTop;
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CacheTexture* cacheTexture = glyph->mCacheTexture;
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uint32_t cacheWidth = cacheTexture->getWidth();
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uint32_t startY = glyph->mStartY * cacheWidth;
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uint32_t endY = startY + (glyph->mBitmapHeight * cacheWidth);
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PixelBuffer* pixelBuffer = cacheTexture->getPixelBuffer();
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const uint8_t* cacheBuffer = pixelBuffer->map();
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for (uint32_t cacheY = startY, bitmapY = dstY * bitmapWidth; cacheY < endY;
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cacheY += cacheWidth, bitmapY += bitmapWidth) {
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memcpy(&bitmap[bitmapY + dstX], &cacheBuffer[cacheY + glyph->mStartX], glyph->mBitmapWidth);
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}
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}
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void Font::drawCachedGlyph(CachedGlyphInfo* glyph, float x, float hOffset, float vOffset,
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SkPathMeasure& measure, SkPoint* position, SkVector* tangent) {
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const float halfWidth = glyph->mBitmapWidth * 0.5f;
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const float height = glyph->mBitmapHeight;
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vOffset += glyph->mBitmapTop + height;
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SkPoint destination[4];
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bool ok = measure.getPosTan(x + hOffset + glyph->mBitmapLeft + halfWidth, position, tangent);
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if (!ok) {
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ALOGW("The path for drawTextOnPath is empty or null");
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}
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// Move along the tangent and offset by the normal
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destination[0].set(-tangent->fX * halfWidth - tangent->fY * vOffset,
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-tangent->fY * halfWidth + tangent->fX * vOffset);
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destination[1].set(tangent->fX * halfWidth - tangent->fY * vOffset,
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tangent->fY * halfWidth + tangent->fX * vOffset);
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destination[2].set(destination[1].fX + tangent->fY * height,
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destination[1].fY - tangent->fX * height);
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destination[3].set(destination[0].fX + tangent->fY * height,
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destination[0].fY - tangent->fX * height);
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const float u1 = glyph->mBitmapMinU;
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const float u2 = glyph->mBitmapMaxU;
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const float v1 = glyph->mBitmapMinV;
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const float v2 = glyph->mBitmapMaxV;
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mState->appendRotatedMeshQuad(
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position->x() + destination[0].x(),
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position->y() + destination[0].y(), u1, v2,
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position->x() + destination[1].x(),
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position->y() + destination[1].y(), u2, v2,
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position->x() + destination[2].x(),
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position->y() + destination[2].y(), u2, v1,
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position->x() + destination[3].x(),
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position->y() + destination[3].y(), u1, v1,
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glyph->mCacheTexture);
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}
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CachedGlyphInfo* Font::getCachedGlyph(const SkPaint* paint, glyph_t textUnit, bool precaching) {
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CachedGlyphInfo* cachedGlyph = mCachedGlyphs.valueFor(textUnit);
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if (cachedGlyph) {
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// Is the glyph still in texture cache?
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if (!cachedGlyph->mIsValid) {
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SkAutoGlyphCache autoCache(*paint, NULL, &mDescription.mLookupTransform);
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const SkGlyph& skiaGlyph = GET_METRICS(autoCache.getCache(), textUnit);
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updateGlyphCache(paint, skiaGlyph, autoCache.getCache(), cachedGlyph, precaching);
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}
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} else {
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cachedGlyph = cacheGlyph(paint, textUnit, precaching);
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}
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return cachedGlyph;
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}
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void Font::render(const SkPaint* paint, const char *text, uint32_t start, uint32_t len,
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int numGlyphs, int x, int y, const float* positions) {
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render(paint, text, start, len, numGlyphs, x, y, FRAMEBUFFER, NULL,
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0, 0, NULL, positions);
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}
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void Font::render(const SkPaint* paint, const char *text, uint32_t start, uint32_t len,
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int numGlyphs, const SkPath* path, float hOffset, float vOffset) {
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if (numGlyphs == 0 || text == NULL || len == 0) {
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return;
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}
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text += start;
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int glyphsCount = 0;
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SkFixed prevRsbDelta = 0;
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float penX = 0.0f;
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SkPoint position;
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SkVector tangent;
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SkPathMeasure measure(*path, false);
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float pathLength = SkScalarToFloat(measure.getLength());
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if (paint->getTextAlign() != SkPaint::kLeft_Align) {
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float textWidth = SkScalarToFloat(paint->measureText(text, len));
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float pathOffset = pathLength;
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if (paint->getTextAlign() == SkPaint::kCenter_Align) {
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textWidth *= 0.5f;
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pathOffset *= 0.5f;
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}
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penX += pathOffset - textWidth;
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}
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while (glyphsCount < numGlyphs && penX < pathLength) {
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glyph_t glyph = GET_GLYPH(text);
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if (IS_END_OF_STRING(glyph)) {
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break;
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}
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CachedGlyphInfo* cachedGlyph = getCachedGlyph(paint, glyph);
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penX += SkFixedToFloat(AUTO_KERN(prevRsbDelta, cachedGlyph->mLsbDelta));
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prevRsbDelta = cachedGlyph->mRsbDelta;
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if (cachedGlyph->mIsValid && cachedGlyph->mCacheTexture) {
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drawCachedGlyph(cachedGlyph, penX, hOffset, vOffset, measure, &position, &tangent);
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}
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penX += SkFixedToFloat(cachedGlyph->mAdvanceX);
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glyphsCount++;
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}
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}
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void Font::measure(const SkPaint* paint, const char* text, uint32_t start, uint32_t len,
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int numGlyphs, Rect *bounds, const float* positions) {
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if (bounds == NULL) {
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ALOGE("No return rectangle provided to measure text");
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return;
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}
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bounds->set(1e6, -1e6, -1e6, 1e6);
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render(paint, text, start, len, numGlyphs, 0, 0, MEASURE, NULL, 0, 0, bounds, positions);
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}
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void Font::precache(const SkPaint* paint, const char* text, int numGlyphs) {
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ATRACE_NAME("precacheText");
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if (numGlyphs == 0 || text == NULL) {
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return;
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}
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int glyphsCount = 0;
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while (glyphsCount < numGlyphs) {
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glyph_t glyph = GET_GLYPH(text);
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// Reached the end of the string
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if (IS_END_OF_STRING(glyph)) {
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break;
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}
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CachedGlyphInfo* cachedGlyph = getCachedGlyph(paint, glyph, true);
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glyphsCount++;
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}
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}
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void Font::render(const SkPaint* paint, const char* text, uint32_t start, uint32_t len,
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int numGlyphs, int x, int y, RenderMode mode, uint8_t *bitmap,
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uint32_t bitmapW, uint32_t bitmapH, Rect* bounds, const float* positions) {
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if (numGlyphs == 0 || text == NULL || len == 0) {
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return;
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}
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static RenderGlyph gRenderGlyph[] = {
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&android::uirenderer::Font::drawCachedGlyph,
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&android::uirenderer::Font::drawCachedGlyphTransformed,
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&android::uirenderer::Font::drawCachedGlyphBitmap,
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&android::uirenderer::Font::drawCachedGlyphBitmap,
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&android::uirenderer::Font::measureCachedGlyph,
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&android::uirenderer::Font::measureCachedGlyph
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};
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RenderGlyph render = gRenderGlyph[(mode << 1) + !mIdentityTransform];
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text += start;
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int glyphsCount = 0;
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const SkPaint::Align align = paint->getTextAlign();
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while (glyphsCount < numGlyphs) {
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glyph_t glyph = GET_GLYPH(text);
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// Reached the end of the string
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if (IS_END_OF_STRING(glyph)) {
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break;
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}
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CachedGlyphInfo* cachedGlyph = getCachedGlyph(paint, glyph);
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// If it's still not valid, we couldn't cache it, so we shouldn't
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// draw garbage; also skip empty glyphs (spaces)
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if (cachedGlyph->mIsValid && cachedGlyph->mCacheTexture) {
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int penX = x + (int) roundf(positions[(glyphsCount << 1)]);
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int penY = y + (int) roundf(positions[(glyphsCount << 1) + 1]);
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(*this.*render)(cachedGlyph, penX, penY,
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bitmap, bitmapW, bitmapH, bounds, positions);
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}
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glyphsCount++;
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}
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}
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void Font::updateGlyphCache(const SkPaint* paint, const SkGlyph& skiaGlyph,
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SkGlyphCache* skiaGlyphCache, CachedGlyphInfo* glyph, bool precaching) {
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glyph->mAdvanceX = skiaGlyph.fAdvanceX;
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glyph->mAdvanceY = skiaGlyph.fAdvanceY;
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glyph->mBitmapLeft = skiaGlyph.fLeft;
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glyph->mBitmapTop = skiaGlyph.fTop;
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glyph->mLsbDelta = skiaGlyph.fLsbDelta;
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glyph->mRsbDelta = skiaGlyph.fRsbDelta;
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uint32_t startX = 0;
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uint32_t startY = 0;
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// Get the bitmap for the glyph
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if (!skiaGlyph.fImage) {
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skiaGlyphCache->findImage(skiaGlyph);
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}
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mState->cacheBitmap(skiaGlyph, glyph, &startX, &startY, precaching);
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if (!glyph->mIsValid) {
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return;
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}
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uint32_t endX = startX + skiaGlyph.fWidth;
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uint32_t endY = startY + skiaGlyph.fHeight;
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glyph->mStartX = startX;
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glyph->mStartY = startY;
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glyph->mBitmapWidth = skiaGlyph.fWidth;
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glyph->mBitmapHeight = skiaGlyph.fHeight;
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bool empty = skiaGlyph.fWidth == 0 || skiaGlyph.fHeight == 0;
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if (!empty) {
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uint32_t cacheWidth = glyph->mCacheTexture->getWidth();
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uint32_t cacheHeight = glyph->mCacheTexture->getHeight();
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glyph->mBitmapMinU = startX / (float) cacheWidth;
|
|
glyph->mBitmapMinV = startY / (float) cacheHeight;
|
|
glyph->mBitmapMaxU = endX / (float) cacheWidth;
|
|
glyph->mBitmapMaxV = endY / (float) cacheHeight;
|
|
|
|
mState->setTextureDirty();
|
|
}
|
|
}
|
|
|
|
CachedGlyphInfo* Font::cacheGlyph(const SkPaint* paint, glyph_t glyph, bool precaching) {
|
|
CachedGlyphInfo* newGlyph = new CachedGlyphInfo();
|
|
mCachedGlyphs.add(glyph, newGlyph);
|
|
|
|
SkAutoGlyphCache autoCache(*paint, NULL, &mDescription.mLookupTransform);
|
|
const SkGlyph& skiaGlyph = GET_METRICS(autoCache.getCache(), glyph);
|
|
newGlyph->mIsValid = false;
|
|
newGlyph->mGlyphIndex = skiaGlyph.fID;
|
|
|
|
updateGlyphCache(paint, skiaGlyph, autoCache.getCache(), newGlyph, precaching);
|
|
|
|
return newGlyph;
|
|
}
|
|
|
|
Font* Font::create(FontRenderer* state, const SkPaint* paint, const mat4& matrix) {
|
|
FontDescription description(paint, matrix);
|
|
Font* font = state->mActiveFonts.get(description);
|
|
|
|
if (!font) {
|
|
font = new Font(state, description);
|
|
state->mActiveFonts.put(description, font);
|
|
}
|
|
font->mIdentityTransform = matrix.isIdentity();
|
|
|
|
return font;
|
|
}
|
|
|
|
}; // namespace uirenderer
|
|
}; // namespace android
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