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      1 /*
      2  * Copyright (C) 2013 The Android Open Source Project
      3  *
      4  * Licensed under the Apache License, Version 2.0 (the "License");
      5  * you may not use this file except in compliance with the License.
      6  * You may obtain a copy of the License at
      7  *
      8  *      http://www.apache.org/licenses/LICENSE-2.0
      9  *
     10  * Unless required by applicable law or agreed to in writing, software
     11  * distributed under the License is distributed on an "AS IS" BASIS,
     12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     13  * See the License for the specific language governing permissions and
     14  * limitations under the License.
     15  */
     16 
     17 #define LOG_TAG "Minikin"
     18 #include <cutils/log.h>
     19 
     20 #include <string>
     21 #include <vector>
     22 #include <algorithm>
     23 #include <fstream>
     24 #include <iostream>  // for debugging
     25 #include <stdio.h>  // ditto
     26 
     27 #include <utils/JenkinsHash.h>
     28 #include <utils/LruCache.h>
     29 #include <utils/Singleton.h>
     30 #include <utils/String16.h>
     31 
     32 #include <unicode/ubidi.h>
     33 #include <hb-icu.h>
     34 
     35 #include "MinikinInternal.h"
     36 #include <minikin/MinikinFontFreeType.h>
     37 #include <minikin/Layout.h>
     38 
     39 using std::string;
     40 using std::vector;
     41 
     42 namespace android {
     43 
     44 // TODO: these should move into the header file, but for now we don't want
     45 // to cause namespace collisions with TextLayout.h
     46 enum {
     47     kBidi_LTR = 0,
     48     kBidi_RTL = 1,
     49     kBidi_Default_LTR = 2,
     50     kBidi_Default_RTL = 3,
     51     kBidi_Force_LTR = 4,
     52     kBidi_Force_RTL = 5,
     53 
     54     kBidi_Mask = 0x7
     55 };
     56 
     57 const int kDirection_Mask = 0x1;
     58 
     59 struct LayoutContext {
     60     MinikinPaint paint;
     61     FontStyle style;
     62     std::vector<hb_font_t*> hbFonts;  // parallel to mFaces
     63 
     64     void clearHbFonts() {
     65         for (size_t i = 0; i < hbFonts.size(); i++) {
     66             hb_font_destroy(hbFonts[i]);
     67         }
     68         hbFonts.clear();
     69     }
     70 };
     71 
     72 // Layout cache datatypes
     73 
     74 class LayoutCacheKey {
     75 public:
     76     LayoutCacheKey(const FontCollection* collection, const MinikinPaint& paint, FontStyle style,
     77             const uint16_t* chars, size_t start, size_t count, size_t nchars, bool dir)
     78             : mStart(start), mCount(count), mId(collection->getId()), mStyle(style),
     79             mSize(paint.size), mScaleX(paint.scaleX), mSkewX(paint.skewX),
     80             mLetterSpacing(paint.letterSpacing),
     81             mPaintFlags(paint.paintFlags), mIsRtl(dir),
     82             mChars(chars), mNchars(nchars) {
     83     }
     84     bool operator==(const LayoutCacheKey &other) const;
     85     hash_t hash() const;
     86 
     87     void copyText() {
     88         uint16_t* charsCopy = new uint16_t[mNchars];
     89         memcpy(charsCopy, mChars, mNchars * sizeof(uint16_t));
     90         mChars = charsCopy;
     91     }
     92     void freeText() {
     93         delete[] mChars;
     94         mChars = NULL;
     95     }
     96 
     97     void doLayout(Layout* layout, LayoutContext* ctx, const FontCollection* collection) const {
     98         layout->setFontCollection(collection);
     99         layout->mAdvances.resize(mCount, 0);
    100         ctx->clearHbFonts();
    101         layout->doLayoutRun(mChars, mStart, mCount, mNchars, mIsRtl, ctx);
    102     }
    103 
    104 private:
    105     const uint16_t* mChars;
    106     size_t mNchars;
    107     size_t mStart;
    108     size_t mCount;
    109     uint32_t mId;  // for the font collection
    110     FontStyle mStyle;
    111     float mSize;
    112     float mScaleX;
    113     float mSkewX;
    114     float mLetterSpacing;
    115     int32_t mPaintFlags;
    116     bool mIsRtl;
    117     // Note: any fields added to MinikinPaint must also be reflected here.
    118     // TODO: language matching (possibly integrate into style)
    119 };
    120 
    121 class LayoutCache : private OnEntryRemoved<LayoutCacheKey, Layout*> {
    122 public:
    123     LayoutCache() : mCache(kMaxEntries) {
    124         mCache.setOnEntryRemovedListener(this);
    125     }
    126 
    127     void clear() {
    128         mCache.clear();
    129     }
    130 
    131     Layout* get(LayoutCacheKey& key, LayoutContext* ctx, const FontCollection* collection) {
    132         Layout* layout = mCache.get(key);
    133         if (layout == NULL) {
    134             key.copyText();
    135             layout = new Layout();
    136             key.doLayout(layout, ctx, collection);
    137             mCache.put(key, layout);
    138         }
    139         return layout;
    140     }
    141 
    142 private:
    143     // callback for OnEntryRemoved
    144     void operator()(LayoutCacheKey& key, Layout*& value) {
    145         key.freeText();
    146         delete value;
    147     }
    148 
    149     LruCache<LayoutCacheKey, Layout*> mCache;
    150 
    151     //static const size_t kMaxEntries = LruCache<LayoutCacheKey, Layout*>::kUnlimitedCapacity;
    152 
    153     // TODO: eviction based on memory footprint; for now, we just use a constant
    154     // number of strings
    155     static const size_t kMaxEntries = 5000;
    156 };
    157 
    158 class HbFaceCache : private OnEntryRemoved<int32_t, hb_face_t*> {
    159 public:
    160     HbFaceCache() : mCache(kMaxEntries) {
    161         mCache.setOnEntryRemovedListener(this);
    162     }
    163 
    164     // callback for OnEntryRemoved
    165     void operator()(int32_t& key, hb_face_t*& value) {
    166         hb_face_destroy(value);
    167     }
    168 
    169     LruCache<int32_t, hb_face_t*> mCache;
    170 private:
    171     static const size_t kMaxEntries = 100;
    172 };
    173 
    174 class LayoutEngine : public Singleton<LayoutEngine> {
    175 public:
    176     LayoutEngine() {
    177         hbBuffer = hb_buffer_create();
    178     }
    179 
    180     hb_buffer_t* hbBuffer;
    181     LayoutCache layoutCache;
    182     HbFaceCache hbFaceCache;
    183 };
    184 
    185 ANDROID_SINGLETON_STATIC_INSTANCE(LayoutEngine);
    186 
    187 bool LayoutCacheKey::operator==(const LayoutCacheKey& other) const {
    188     return mId == other.mId
    189             && mStart == other.mStart
    190             && mCount == other.mCount
    191             && mStyle == other.mStyle
    192             && mSize == other.mSize
    193             && mScaleX == other.mScaleX
    194             && mSkewX == other.mSkewX
    195             && mLetterSpacing == other.mLetterSpacing
    196             && mPaintFlags == other.mPaintFlags
    197             && mIsRtl == other.mIsRtl
    198             && mNchars == other.mNchars
    199             && !memcmp(mChars, other.mChars, mNchars * sizeof(uint16_t));
    200 }
    201 
    202 hash_t LayoutCacheKey::hash() const {
    203     uint32_t hash = JenkinsHashMix(0, mId);
    204     hash = JenkinsHashMix(hash, mStart);
    205     hash = JenkinsHashMix(hash, mCount);
    206     hash = JenkinsHashMix(hash, hash_type(mStyle));
    207     hash = JenkinsHashMix(hash, hash_type(mSize));
    208     hash = JenkinsHashMix(hash, hash_type(mScaleX));
    209     hash = JenkinsHashMix(hash, hash_type(mSkewX));
    210     hash = JenkinsHashMix(hash, hash_type(mLetterSpacing));
    211     hash = JenkinsHashMix(hash, hash_type(mPaintFlags));
    212     hash = JenkinsHashMix(hash, hash_type(mIsRtl));
    213     hash = JenkinsHashMixShorts(hash, mChars, mNchars);
    214     return JenkinsHashWhiten(hash);
    215 }
    216 
    217 hash_t hash_type(const LayoutCacheKey& key) {
    218     return key.hash();
    219 }
    220 
    221 Bitmap::Bitmap(int width, int height) : width(width), height(height) {
    222     buf = new uint8_t[width * height]();
    223 }
    224 
    225 Bitmap::~Bitmap() {
    226     delete[] buf;
    227 }
    228 
    229 void Bitmap::writePnm(std::ofstream &o) const {
    230     o << "P5" << std::endl;
    231     o << width << " " << height << std::endl;
    232     o << "255" << std::endl;
    233     o.write((const char *)buf, width * height);
    234     o.close();
    235 }
    236 
    237 void Bitmap::drawGlyph(const GlyphBitmap& bitmap, int x, int y) {
    238     int bmw = bitmap.width;
    239     int bmh = bitmap.height;
    240     x += bitmap.left;
    241     y -= bitmap.top;
    242     int x0 = std::max(0, x);
    243     int x1 = std::min(width, x + bmw);
    244     int y0 = std::max(0, y);
    245     int y1 = std::min(height, y + bmh);
    246     const unsigned char* src = bitmap.buffer + (y0 - y) * bmw + (x0 - x);
    247     uint8_t* dst = buf + y0 * width;
    248     for (int yy = y0; yy < y1; yy++) {
    249         for (int xx = x0; xx < x1; xx++) {
    250             int pixel = (int)dst[xx] + (int)src[xx - x];
    251             pixel = pixel > 0xff ? 0xff : pixel;
    252             dst[xx] = pixel;
    253         }
    254         src += bmw;
    255         dst += width;
    256     }
    257 }
    258 
    259 void MinikinRect::join(const MinikinRect& r) {
    260     if (isEmpty()) {
    261         set(r);
    262     } else if (!r.isEmpty()) {
    263         mLeft = std::min(mLeft, r.mLeft);
    264         mTop = std::min(mTop, r.mTop);
    265         mRight = std::max(mRight, r.mRight);
    266         mBottom = std::max(mBottom, r.mBottom);
    267     }
    268 }
    269 
    270 // Deprecated. Remove when callers are removed.
    271 void Layout::init() {
    272 }
    273 
    274 void Layout::reset() {
    275     mGlyphs.clear();
    276     mFaces.clear();
    277     mBounds.setEmpty();
    278     mAdvances.clear();
    279     mAdvance = 0;
    280 }
    281 
    282 void Layout::setFontCollection(const FontCollection* collection) {
    283     mCollection = collection;
    284 }
    285 
    286 hb_blob_t* referenceTable(hb_face_t* face, hb_tag_t tag, void* userData)  {
    287     MinikinFont* font = reinterpret_cast<MinikinFont*>(userData);
    288     size_t length = 0;
    289     bool ok = font->GetTable(tag, NULL, &length);
    290     if (!ok) {
    291         return 0;
    292     }
    293     char* buffer = reinterpret_cast<char*>(malloc(length));
    294     if (!buffer) {
    295         return 0;
    296     }
    297     ok = font->GetTable(tag, reinterpret_cast<uint8_t*>(buffer), &length);
    298     printf("referenceTable %c%c%c%c length=%d %d\n",
    299         (tag >>24) & 0xff, (tag>>16)&0xff, (tag>>8)&0xff, tag&0xff, length, ok);
    300     if (!ok) {
    301         free(buffer);
    302         return 0;
    303     }
    304     return hb_blob_create(const_cast<char*>(buffer), length,
    305         HB_MEMORY_MODE_WRITABLE, buffer, free);
    306 }
    307 
    308 static hb_bool_t harfbuzzGetGlyph(hb_font_t* hbFont, void* fontData, hb_codepoint_t unicode, hb_codepoint_t variationSelector, hb_codepoint_t* glyph, void* userData)
    309 {
    310     MinikinPaint* paint = reinterpret_cast<MinikinPaint*>(fontData);
    311     MinikinFont* font = paint->font;
    312     uint32_t glyph_id;
    313     /* HarfBuzz replaces broken input codepoints with (unsigned int) -1.
    314      * Skia expects valid Unicode.
    315      * Replace invalid codepoints with U+FFFD REPLACEMENT CHARACTER.
    316      */
    317     if (unicode > 0x10FFFF)
    318         unicode = 0xFFFD;
    319     bool ok = font->GetGlyph(unicode, &glyph_id);
    320     if (ok) {
    321         *glyph = glyph_id;
    322     }
    323     return ok;
    324 }
    325 
    326 static hb_position_t harfbuzzGetGlyphHorizontalAdvance(hb_font_t* hbFont, void* fontData, hb_codepoint_t glyph, void* userData)
    327 {
    328     MinikinPaint* paint = reinterpret_cast<MinikinPaint*>(fontData);
    329     MinikinFont* font = paint->font;
    330     float advance = font->GetHorizontalAdvance(glyph, *paint);
    331     return 256 * advance + 0.5;
    332 }
    333 
    334 static hb_bool_t harfbuzzGetGlyphHorizontalOrigin(hb_font_t* hbFont, void* fontData, hb_codepoint_t glyph, hb_position_t* x, hb_position_t* y, void* userData)
    335 {
    336     // Just return true, following the way that Harfbuzz-FreeType
    337     // implementation does.
    338     return true;
    339 }
    340 
    341 hb_font_funcs_t* getHbFontFuncs() {
    342     static hb_font_funcs_t* hbFontFuncs = 0;
    343 
    344     if (hbFontFuncs == 0) {
    345         hbFontFuncs = hb_font_funcs_create();
    346         hb_font_funcs_set_glyph_func(hbFontFuncs, harfbuzzGetGlyph, 0, 0);
    347         hb_font_funcs_set_glyph_h_advance_func(hbFontFuncs, harfbuzzGetGlyphHorizontalAdvance, 0, 0);
    348         hb_font_funcs_set_glyph_h_origin_func(hbFontFuncs, harfbuzzGetGlyphHorizontalOrigin, 0, 0);
    349         hb_font_funcs_make_immutable(hbFontFuncs);
    350     }
    351     return hbFontFuncs;
    352 }
    353 
    354 static hb_face_t* getHbFace(MinikinFont* minikinFont) {
    355     HbFaceCache& cache = LayoutEngine::getInstance().hbFaceCache;
    356     int32_t fontId = minikinFont->GetUniqueId();
    357     hb_face_t* face = cache.mCache.get(fontId);
    358     if (face == NULL) {
    359         face = hb_face_create_for_tables(referenceTable, minikinFont, NULL);
    360         cache.mCache.put(fontId, face);
    361     }
    362     return face;
    363 }
    364 
    365 static hb_font_t* create_hb_font(MinikinFont* minikinFont, MinikinPaint* minikinPaint) {
    366     hb_face_t* face = getHbFace(minikinFont);
    367     hb_font_t* font = hb_font_create(face);
    368     hb_font_set_funcs(font, getHbFontFuncs(), minikinPaint, 0);
    369     return font;
    370 }
    371 
    372 static float HBFixedToFloat(hb_position_t v)
    373 {
    374     return scalbnf (v, -8);
    375 }
    376 
    377 static hb_position_t HBFloatToFixed(float v)
    378 {
    379     return scalbnf (v, +8);
    380 }
    381 
    382 void Layout::dump() const {
    383     for (size_t i = 0; i < mGlyphs.size(); i++) {
    384         const LayoutGlyph& glyph = mGlyphs[i];
    385         std::cout << glyph.glyph_id << ": " << glyph.x << ", " << glyph.y << std::endl;
    386     }
    387 }
    388 
    389 int Layout::findFace(FakedFont face, LayoutContext* ctx) {
    390     unsigned int ix;
    391     for (ix = 0; ix < mFaces.size(); ix++) {
    392         if (mFaces[ix].font == face.font) {
    393             return ix;
    394         }
    395     }
    396     mFaces.push_back(face);
    397     // Note: ctx == NULL means we're copying from the cache, no need to create
    398     // corresponding hb_font object.
    399     if (ctx != NULL) {
    400         hb_font_t* font = create_hb_font(face.font, &ctx->paint);
    401         ctx->hbFonts.push_back(font);
    402     }
    403     return ix;
    404 }
    405 
    406 static hb_script_t codePointToScript(hb_codepoint_t codepoint) {
    407     static hb_unicode_funcs_t* u = 0;
    408     if (!u) {
    409         u = hb_icu_get_unicode_funcs();
    410     }
    411     return hb_unicode_script(u, codepoint);
    412 }
    413 
    414 static hb_codepoint_t decodeUtf16(const uint16_t* chars, size_t len, ssize_t* iter) {
    415     const uint16_t v = chars[(*iter)++];
    416     // test whether v in (0xd800..0xdfff), lead or trail surrogate
    417     if ((v & 0xf800) == 0xd800) {
    418         // test whether v in (0xd800..0xdbff), lead surrogate
    419         if (size_t(*iter) < len && (v & 0xfc00) == 0xd800) {
    420             const uint16_t v2 = chars[(*iter)++];
    421             // test whether v2 in (0xdc00..0xdfff), trail surrogate
    422             if ((v2 & 0xfc00) == 0xdc00) {
    423                 // (0xd800 0xdc00) in utf-16 maps to 0x10000 in ucs-32
    424                 const hb_codepoint_t delta = (0xd800 << 10) + 0xdc00 - 0x10000;
    425                 return (((hb_codepoint_t)v) << 10) + v2 - delta;
    426             }
    427             (*iter) -= 1;
    428             return 0xFFFDu;
    429         } else {
    430             return 0xFFFDu;
    431         }
    432     } else {
    433         return v;
    434     }
    435 }
    436 
    437 static hb_script_t getScriptRun(const uint16_t* chars, size_t len, ssize_t* iter) {
    438     if (size_t(*iter) == len) {
    439         return HB_SCRIPT_UNKNOWN;
    440     }
    441     uint32_t cp = decodeUtf16(chars, len, iter);
    442     hb_script_t current_script = codePointToScript(cp);
    443     for (;;) {
    444         if (size_t(*iter) == len)
    445             break;
    446         const ssize_t prev_iter = *iter;
    447         cp = decodeUtf16(chars, len, iter);
    448         const hb_script_t script = codePointToScript(cp);
    449         if (script != current_script) {
    450             if (current_script == HB_SCRIPT_INHERITED ||
    451                 current_script == HB_SCRIPT_COMMON) {
    452                 current_script = script;
    453             } else if (script == HB_SCRIPT_INHERITED ||
    454                 script == HB_SCRIPT_COMMON) {
    455                 continue;
    456             } else {
    457                 *iter = prev_iter;
    458                 break;
    459             }
    460         }
    461     }
    462     if (current_script == HB_SCRIPT_INHERITED) {
    463         current_script = HB_SCRIPT_COMMON;
    464     }
    465 
    466     return current_script;
    467 }
    468 
    469 /**
    470  * For the purpose of layout, a word break is a boundary with no
    471  * kerning or complex script processing. This is necessarily a
    472  * heuristic, but should be accurate most of the time.
    473  */
    474 static bool isWordBreak(int c) {
    475     if (c == ' ' || (c >= 0x2000 && c <= 0x200a) || c == 0x3000) {
    476         // spaces
    477         return true;
    478     }
    479     if ((c >= 0x3400 && c <= 0x9fff)) {
    480         // CJK ideographs (and yijing hexagram symbols)
    481         return true;
    482     }
    483     // Note: kana is not included, as sophisticated fonts may kern kana
    484     return false;
    485 }
    486 
    487 /**
    488  * Return offset of previous word break. It is either < offset or == 0.
    489  */
    490 static size_t getPrevWordBreak(const uint16_t* chars, size_t offset) {
    491     if (offset == 0) return 0;
    492     if (isWordBreak(chars[offset - 1])) {
    493         return offset - 1;
    494     }
    495     for (size_t i = offset - 1; i > 0; i--) {
    496         if (isWordBreak(chars[i - 1])) {
    497             return i;
    498         }
    499     }
    500     return 0;
    501 }
    502 
    503 /**
    504  * Return offset of next word break. It is either > offset or == len.
    505  */
    506 static size_t getNextWordBreak(const uint16_t* chars, size_t offset, size_t len) {
    507     if (offset >= len) return len;
    508     if (isWordBreak(chars[offset])) {
    509         return offset + 1;
    510     }
    511     for (size_t i = offset + 1; i < len; i++) {
    512         if (isWordBreak(chars[i])) {
    513             return i;
    514         }
    515     }
    516     return len;
    517 }
    518 
    519 void Layout::doLayout(const uint16_t* buf, size_t start, size_t count, size_t bufSize,
    520         int bidiFlags, const FontStyle &style, const MinikinPaint &paint) {
    521     AutoMutex _l(gMinikinLock);
    522 
    523     LayoutContext ctx;
    524     ctx.style = style;
    525     ctx.paint = paint;
    526 
    527     bool isRtl = (bidiFlags & kDirection_Mask) != 0;
    528     bool doSingleRun = true;
    529 
    530     reset();
    531     mAdvances.resize(count, 0);
    532 
    533     if (!(bidiFlags == kBidi_Force_LTR || bidiFlags == kBidi_Force_RTL)) {
    534         UBiDi* bidi = ubidi_open();
    535         if (bidi) {
    536             UErrorCode status = U_ZERO_ERROR;
    537             UBiDiLevel bidiReq = bidiFlags;
    538             if (bidiFlags == kBidi_Default_LTR) {
    539                 bidiReq = UBIDI_DEFAULT_LTR;
    540             } else if (bidiFlags == kBidi_Default_RTL) {
    541                 bidiReq = UBIDI_DEFAULT_RTL;
    542             }
    543             ubidi_setPara(bidi, buf, bufSize, bidiReq, NULL, &status);
    544             if (U_SUCCESS(status)) {
    545                 int paraDir = ubidi_getParaLevel(bidi) & kDirection_Mask;
    546                 ssize_t rc = ubidi_countRuns(bidi, &status);
    547                 if (!U_SUCCESS(status) || rc < 0) {
    548                     ALOGW("error counting bidi runs, status = %d", status);
    549                 }
    550                 if (!U_SUCCESS(status) || rc <= 1) {
    551                     isRtl = (paraDir == kBidi_RTL);
    552                 } else {
    553                     doSingleRun = false;
    554                     // iterate through runs
    555                     for (ssize_t i = 0; i < (ssize_t)rc; i++) {
    556                         int32_t startRun = -1;
    557                         int32_t lengthRun = -1;
    558                         UBiDiDirection runDir = ubidi_getVisualRun(bidi, i, &startRun, &lengthRun);
    559                         if (startRun == -1 || lengthRun == -1) {
    560                             ALOGE("invalid visual run");
    561                             // skip the invalid run
    562                             continue;
    563                         }
    564                         int32_t endRun = std::min(startRun + lengthRun, int32_t(start + count));
    565                         startRun = std::max(startRun, int32_t(start));
    566                         lengthRun = endRun - startRun;
    567                         if (lengthRun > 0) {
    568                             isRtl = (runDir == UBIDI_RTL);
    569                             doLayoutRunCached(buf, startRun, lengthRun, bufSize, isRtl, &ctx,
    570                                 start);
    571                         }
    572                     }
    573                 }
    574             } else {
    575                 ALOGE("error calling ubidi_setPara, status = %d", status);
    576             }
    577             ubidi_close(bidi);
    578         } else {
    579             ALOGE("error creating bidi object");
    580         }
    581     }
    582     if (doSingleRun) {
    583         doLayoutRunCached(buf, start, count, bufSize, isRtl, &ctx, start);
    584     }
    585     ctx.clearHbFonts();
    586 }
    587 
    588 void Layout::doLayoutRunCached(const uint16_t* buf, size_t start, size_t count, size_t bufSize,
    589         bool isRtl, LayoutContext* ctx, size_t dstStart) {
    590     if (!isRtl) {
    591         // left to right
    592         size_t wordstart = start == bufSize ? start : getPrevWordBreak(buf, start + 1);
    593         size_t wordend;
    594         for (size_t iter = start; iter < start + count; iter = wordend) {
    595             wordend = getNextWordBreak(buf, iter, bufSize);
    596             size_t wordcount = std::min(start + count, wordend) - iter;
    597             doLayoutWord(buf + wordstart, iter - wordstart, wordcount, wordend - wordstart,
    598                     isRtl, ctx, iter - dstStart);
    599             wordstart = wordend;
    600         }
    601     } else {
    602         // right to left
    603         size_t wordstart;
    604         size_t end = start + count;
    605         size_t wordend = end == 0 ? 0 : getNextWordBreak(buf, end - 1, bufSize);
    606         for (size_t iter = end; iter > start; iter = wordstart) {
    607             wordstart = getPrevWordBreak(buf, iter);
    608             size_t bufStart = std::max(start, wordstart);
    609             doLayoutWord(buf + wordstart, bufStart - wordstart, iter - bufStart,
    610                     wordend - wordstart, isRtl, ctx, bufStart - dstStart);
    611             wordend = wordstart;
    612         }
    613     }
    614 }
    615 
    616 void Layout::doLayoutWord(const uint16_t* buf, size_t start, size_t count, size_t bufSize,
    617         bool isRtl, LayoutContext* ctx, size_t bufStart) {
    618     LayoutCache& cache = LayoutEngine::getInstance().layoutCache;
    619     LayoutCacheKey key(mCollection, ctx->paint, ctx->style, buf, start, count, bufSize, isRtl);
    620     bool skipCache = ctx->paint.skipCache();
    621     if (skipCache) {
    622         Layout layout;
    623         key.doLayout(&layout, ctx, mCollection);
    624         appendLayout(&layout, bufStart);
    625     } else {
    626         Layout* layout = cache.get(key, ctx, mCollection);
    627         appendLayout(layout, bufStart);
    628     }
    629 }
    630 
    631 static void addFeatures(const string &str, vector<hb_feature_t>* features) {
    632     if (!str.size())
    633         return;
    634 
    635     const char* start = str.c_str();
    636     const char* end = start + str.size();
    637 
    638     while (start < end) {
    639         static hb_feature_t feature;
    640         const char* p = strchr(start, ',');
    641         if (!p)
    642             p = end;
    643         /* We do not allow setting features on ranges.  As such, reject any
    644          * setting that has non-universal range. */
    645         if (hb_feature_from_string (start, p - start, &feature)
    646                 && feature.start == 0 && feature.end == (unsigned int) -1)
    647             features->push_back(feature);
    648         start = p + 1;
    649     }
    650 }
    651 
    652 void Layout::doLayoutRun(const uint16_t* buf, size_t start, size_t count, size_t bufSize,
    653         bool isRtl, LayoutContext* ctx) {
    654     hb_buffer_t* buffer = LayoutEngine::getInstance().hbBuffer;
    655     vector<FontCollection::Run> items;
    656     mCollection->itemize(buf + start, count, ctx->style, &items);
    657     if (isRtl) {
    658         std::reverse(items.begin(), items.end());
    659     }
    660 
    661     vector<hb_feature_t> features;
    662     // Disable default-on non-required ligature features if letter-spacing
    663     // See http://dev.w3.org/csswg/css-text-3/#letter-spacing-property
    664     // "When the effective spacing between two characters is not zero (due to
    665     // either justification or a non-zero value of letter-spacing), user agents
    666     // should not apply optional ligatures."
    667     if (fabs(ctx->paint.letterSpacing) > 0.03)
    668     {
    669         static const hb_feature_t no_liga = { HB_TAG('l', 'i', 'g', 'a'), 0, 0, ~0u };
    670         static const hb_feature_t no_clig = { HB_TAG('c', 'l', 'i', 'g'), 0, 0, ~0u };
    671         features.push_back(no_liga);
    672         features.push_back(no_clig);
    673     }
    674     addFeatures(ctx->paint.fontFeatureSettings, &features);
    675 
    676     double size = ctx->paint.size;
    677     double scaleX = ctx->paint.scaleX;
    678     double letterSpace = ctx->paint.letterSpacing * size * scaleX;
    679     double letterSpaceHalfLeft;
    680     if ((ctx->paint.paintFlags & LinearTextFlag) == 0) {
    681         letterSpace = round(letterSpace);
    682         letterSpaceHalfLeft = floor(letterSpace * 0.5);
    683     } else {
    684         letterSpaceHalfLeft = letterSpace * 0.5;
    685     }
    686     double letterSpaceHalfRight = letterSpace - letterSpaceHalfLeft;
    687 
    688     float x = mAdvance;
    689     float y = 0;
    690     for (size_t run_ix = 0; run_ix < items.size(); run_ix++) {
    691         FontCollection::Run &run = items[run_ix];
    692         if (run.fakedFont.font == NULL) {
    693             ALOGE("no font for run starting u+%04x length %d", buf[run.start], run.end - run.start);
    694             continue;
    695         }
    696         int font_ix = findFace(run.fakedFont, ctx);
    697         ctx->paint.font = mFaces[font_ix].font;
    698         ctx->paint.fakery = mFaces[font_ix].fakery;
    699         hb_font_t* hbFont = ctx->hbFonts[font_ix];
    700 #ifdef VERBOSE
    701         std::cout << "Run " << run_ix << ", font " << font_ix <<
    702             " [" << run.start << ":" << run.end << "]" << std::endl;
    703 #endif
    704 
    705         hb_font_set_ppem(hbFont, size * scaleX, size);
    706         hb_font_set_scale(hbFont, HBFloatToFixed(size * scaleX), HBFloatToFixed(size));
    707 
    708         // TODO: if there are multiple scripts within a font in an RTL run,
    709         // we need to reorder those runs. This is unlikely with our current
    710         // font stack, but should be done for correctness.
    711         ssize_t srunend;
    712         for (ssize_t srunstart = run.start; srunstart < run.end; srunstart = srunend) {
    713             srunend = srunstart;
    714             hb_script_t script = getScriptRun(buf + start, run.end, &srunend);
    715 
    716             hb_buffer_reset(buffer);
    717             hb_buffer_set_script(buffer, script);
    718             hb_buffer_set_direction(buffer, isRtl? HB_DIRECTION_RTL : HB_DIRECTION_LTR);
    719             FontLanguage language = ctx->style.getLanguage();
    720             if (language) {
    721                 string lang = language.getString();
    722                 hb_buffer_set_language(buffer, hb_language_from_string(lang.c_str(), -1));
    723             }
    724             hb_buffer_add_utf16(buffer, buf, bufSize, srunstart + start, srunend - srunstart);
    725             hb_shape(hbFont, buffer, features.empty() ? NULL : &features[0], features.size());
    726             unsigned int numGlyphs;
    727             hb_glyph_info_t* info = hb_buffer_get_glyph_infos(buffer, &numGlyphs);
    728             hb_glyph_position_t* positions = hb_buffer_get_glyph_positions(buffer, NULL);
    729             if (numGlyphs)
    730             {
    731                 mAdvances[info[0].cluster - start] += letterSpaceHalfLeft;
    732                 x += letterSpaceHalfLeft;
    733             }
    734             for (unsigned int i = 0; i < numGlyphs; i++) {
    735     #ifdef VERBOSE
    736                 std::cout << positions[i].x_advance << " " << positions[i].y_advance << " " << positions[i].x_offset << " " << positions[i].y_offset << std::endl;            std::cout << "DoLayout " << info[i].codepoint <<
    737                 ": " << HBFixedToFloat(positions[i].x_advance) << "; " << positions[i].x_offset << ", " << positions[i].y_offset << std::endl;
    738     #endif
    739                 if (i > 0 && info[i - 1].cluster != info[i].cluster) {
    740                     mAdvances[info[i - 1].cluster - start] += letterSpaceHalfRight;
    741                     mAdvances[info[i].cluster - start] += letterSpaceHalfLeft;
    742                     x += letterSpace;
    743                 }
    744 
    745                 hb_codepoint_t glyph_ix = info[i].codepoint;
    746                 float xoff = HBFixedToFloat(positions[i].x_offset);
    747                 float yoff = -HBFixedToFloat(positions[i].y_offset);
    748                 xoff += yoff * ctx->paint.skewX;
    749                 LayoutGlyph glyph = {font_ix, glyph_ix, x + xoff, y + yoff};
    750                 mGlyphs.push_back(glyph);
    751                 float xAdvance = HBFixedToFloat(positions[i].x_advance);
    752                 if ((ctx->paint.paintFlags & LinearTextFlag) == 0) {
    753                     xAdvance = roundf(xAdvance);
    754                 }
    755                 MinikinRect glyphBounds;
    756                 ctx->paint.font->GetBounds(&glyphBounds, glyph_ix, ctx->paint);
    757                 glyphBounds.offset(x + xoff, y + yoff);
    758                 mBounds.join(glyphBounds);
    759                 mAdvances[info[i].cluster - start] += xAdvance;
    760                 x += xAdvance;
    761             }
    762             if (numGlyphs)
    763             {
    764                 mAdvances[info[numGlyphs - 1].cluster - start] += letterSpaceHalfRight;
    765                 x += letterSpaceHalfRight;
    766             }
    767         }
    768     }
    769     mAdvance = x;
    770 }
    771 
    772 void Layout::appendLayout(Layout* src, size_t start) {
    773     int fontMapStack[16];
    774     int* fontMap;
    775     if (src->mFaces.size() < sizeof(fontMapStack) / sizeof(fontMapStack[0])) {
    776         fontMap = fontMapStack;
    777     } else {
    778         fontMap = new int[src->mFaces.size()];
    779     }
    780     for (size_t i = 0; i < src->mFaces.size(); i++) {
    781         int font_ix = findFace(src->mFaces[i], NULL);
    782         fontMap[i] = font_ix;
    783     }
    784     int x0 = mAdvance;
    785     for (size_t i = 0; i < src->mGlyphs.size(); i++) {
    786         LayoutGlyph& srcGlyph = src->mGlyphs[i];
    787         int font_ix = fontMap[srcGlyph.font_ix];
    788         unsigned int glyph_id = srcGlyph.glyph_id;
    789         float x = x0 + srcGlyph.x;
    790         float y = srcGlyph.y;
    791         LayoutGlyph glyph = {font_ix, glyph_id, x, y};
    792         mGlyphs.push_back(glyph);
    793     }
    794     for (size_t i = 0; i < src->mAdvances.size(); i++) {
    795         mAdvances[i + start] = src->mAdvances[i];
    796     }
    797     MinikinRect srcBounds(src->mBounds);
    798     srcBounds.offset(x0, 0);
    799     mBounds.join(srcBounds);
    800     mAdvance += src->mAdvance;
    801 
    802     if (fontMap != fontMapStack) {
    803         delete[] fontMap;
    804     }
    805 }
    806 
    807 void Layout::draw(Bitmap* surface, int x0, int y0, float size) const {
    808     /*
    809     TODO: redo as MinikinPaint settings
    810     if (mProps.hasTag(minikinHinting)) {
    811         int hintflags = mProps.value(minikinHinting).getIntValue();
    812         if (hintflags & 1) load_flags |= FT_LOAD_NO_HINTING;
    813         if (hintflags & 2) load_flags |= FT_LOAD_NO_AUTOHINT;
    814     }
    815     */
    816     for (size_t i = 0; i < mGlyphs.size(); i++) {
    817         const LayoutGlyph& glyph = mGlyphs[i];
    818         MinikinFont* mf = mFaces[glyph.font_ix].font;
    819         MinikinFontFreeType* face = static_cast<MinikinFontFreeType*>(mf);
    820         GlyphBitmap glyphBitmap;
    821         MinikinPaint paint;
    822         paint.size = size;
    823         bool ok = face->Render(glyph.glyph_id, paint, &glyphBitmap);
    824         printf("glyphBitmap.width=%d, glyphBitmap.height=%d (%d, %d) x=%f, y=%f, ok=%d\n",
    825             glyphBitmap.width, glyphBitmap.height, glyphBitmap.left, glyphBitmap.top, glyph.x, glyph.y, ok);
    826         if (ok) {
    827             surface->drawGlyph(glyphBitmap,
    828                 x0 + int(floor(glyph.x + 0.5)), y0 + int(floor(glyph.y + 0.5)));
    829         }
    830     }
    831 }
    832 
    833 size_t Layout::nGlyphs() const {
    834     return mGlyphs.size();
    835 }
    836 
    837 MinikinFont* Layout::getFont(int i) const {
    838     const LayoutGlyph& glyph = mGlyphs[i];
    839     return mFaces[glyph.font_ix].font;
    840 }
    841 
    842 FontFakery Layout::getFakery(int i) const {
    843     const LayoutGlyph& glyph = mGlyphs[i];
    844     return mFaces[glyph.font_ix].fakery;
    845 }
    846 
    847 unsigned int Layout::getGlyphId(int i) const {
    848     const LayoutGlyph& glyph = mGlyphs[i];
    849     return glyph.glyph_id;
    850 }
    851 
    852 float Layout::getX(int i) const {
    853     const LayoutGlyph& glyph = mGlyphs[i];
    854     return glyph.x;
    855 }
    856 
    857 float Layout::getY(int i) const {
    858     const LayoutGlyph& glyph = mGlyphs[i];
    859     return glyph.y;
    860 }
    861 
    862 float Layout::getAdvance() const {
    863     return mAdvance;
    864 }
    865 
    866 void Layout::getAdvances(float* advances) {
    867     memcpy(advances, &mAdvances[0], mAdvances.size() * sizeof(float));
    868 }
    869 
    870 void Layout::getBounds(MinikinRect* bounds) {
    871     bounds->set(mBounds);
    872 }
    873 
    874 void Layout::purgeCaches() {
    875     AutoMutex _l(gMinikinLock);
    876     LayoutCache& layoutCache = LayoutEngine::getInstance().layoutCache;
    877     layoutCache.clear();
    878     HbFaceCache& hbCache = LayoutEngine::getInstance().hbFaceCache;
    879     hbCache.mCache.clear();
    880 }
    881 
    882 }  // namespace android
    883