nsresult gfxGDIFontList::InitFontList() { Telemetry::AutoTimer<Telemetry::GDI_INITFONTLIST_TOTAL> timer; gfxFontCache *fc = gfxFontCache::GetCache(); if (fc) fc->AgeAllGenerations(); // reset font lists gfxPlatformFontList::InitFontList(); mFontSubstitutes.Clear(); mNonExistingFonts.Clear(); // iterate over available families LOGFONTW logfont; memset(&logfont, 0, sizeof(logfont)); logfont.lfCharSet = DEFAULT_CHARSET; AutoDC hdc; int result = EnumFontFamiliesExW(hdc.GetDC(), &logfont, (FONTENUMPROCW)&EnumFontFamExProc, 0, 0); GetFontSubstitutes(); StartLoader(kDelayBeforeLoadingFonts, kIntervalBetweenLoadingFonts); return NS_OK; }
nsresult gfxGDIFontList::InitFontList() { Telemetry::AutoTimer<Telemetry::GDI_INITFONTLIST_TOTAL> timer; // reset font lists gfxPlatformFontList::InitFontList(); mFontSubstitutes.Clear(); mNonExistingFonts.Clear(); // iterate over available families LOGFONTW logfont; memset(&logfont, 0, sizeof(logfont)); logfont.lfCharSet = DEFAULT_CHARSET; AutoDC hdc; int result = EnumFontFamiliesExW(hdc.GetDC(), &logfont, (FONTENUMPROCW)&EnumFontFamExProc, 0, 0); GetFontSubstitutes(); GetPrefsAndStartLoader(); return NS_OK; }
uint32_t gfxGDIFont::GetGlyph(uint32_t aUnicode, uint32_t aVarSelector) { // Callback used only for fonts that lack a 'cmap' table. // We don't support variation selector sequences or non-BMP characters // in the legacy bitmap, vector or postscript fonts that might use // this code path. if (aUnicode > 0xffff || aVarSelector) { return 0; } if (!mGlyphIDs) { mGlyphIDs = new nsDataHashtable<nsUint32HashKey,uint32_t>(64); } uint32_t gid; if (mGlyphIDs->Get(aUnicode, &gid)) { return gid; } wchar_t ch = aUnicode; WORD glyph; DWORD ret = ScriptGetCMap(nullptr, &mScriptCache, &ch, 1, 0, &glyph); if (ret != S_OK) { AutoDC dc; AutoSelectFont fs(dc.GetDC(), GetHFONT()); if (ret == E_PENDING) { // Try ScriptGetCMap again now that we've set up the font. ret = ScriptGetCMap(dc.GetDC(), &mScriptCache, &ch, 1, 0, &glyph); } if (ret != S_OK) { // If ScriptGetCMap still failed, fall back to GetGlyphIndicesW // (see bug 1105807). ret = GetGlyphIndicesW(dc.GetDC(), &ch, 1, &glyph, GGI_MARK_NONEXISTING_GLYPHS); if (ret == GDI_ERROR || glyph == 0xFFFF) { glyph = 0; } } } mGlyphIDs->Put(aUnicode, glyph); return glyph; }
nsresult GDIFontEntry::GetFontTable(uint32_t aTableTag, FallibleTArray<uint8_t>& aBuffer) { if (!IsTrueType()) { return NS_ERROR_FAILURE; } AutoDC dc; AutoSelectFont font(dc.GetDC(), &mLogFont); if (font.IsValid()) { uint32_t tableSize = ::GetFontData(dc.GetDC(), NS_SWAP32(aTableTag), 0, NULL, 0); if (tableSize != GDI_ERROR) { if (aBuffer.SetLength(tableSize)) { ::GetFontData(dc.GetDC(), NS_SWAP32(aTableTag), 0, aBuffer.Elements(), tableSize); return NS_OK; } return NS_ERROR_OUT_OF_MEMORY; } } return NS_ERROR_FAILURE; }
uint32_t gfxGDIFont::GetGlyph(uint32_t aUnicode, uint32_t aVarSelector) { // Callback used only for fonts that lack a 'cmap' table. // We don't support variation selector sequences or non-BMP characters // in the legacy bitmap, vector or postscript fonts that might use // this code path. if (aUnicode > 0xffff || aVarSelector) { return 0; } if (!mGlyphIDs) { mGlyphIDs = new nsDataHashtable<nsUint32HashKey,uint32_t>(64); } uint32_t gid; if (mGlyphIDs->Get(aUnicode, &gid)) { return gid; } wchar_t ch = aUnicode; WORD glyph; DWORD ret = ScriptGetCMap(nullptr, &mScriptCache, &ch, 1, 0, &glyph); if (ret == E_PENDING) { AutoDC dc; AutoSelectFont fs(dc.GetDC(), GetHFONT()); ret = ScriptGetCMap(dc.GetDC(), &mScriptCache, &ch, 1, 0, &glyph); } if (ret != S_OK) { glyph = 0; } mGlyphIDs->Put(aUnicode, glyph); return glyph; }
void gfxGDIFont::Initialize() { NS_ASSERTION(!mMetrics, "re-creating metrics? this will leak"); LOGFONTW logFont; // Figure out if we want to do synthetic oblique styling. GDIFontEntry* fe = static_cast<GDIFontEntry*>(GetFontEntry()); bool wantFakeItalic = (mStyle.style & (NS_FONT_STYLE_ITALIC | NS_FONT_STYLE_OBLIQUE)) && !fe->IsItalic(); // If the font's family has an actual italic face (but font matching // didn't choose it), we have to use a cairo transform instead of asking // GDI to italicize, because that would use a different face and result // in a possible glyph ID mismatch between shaping and rendering. // // We use the mFamilyHasItalicFace flag in the entry in case of user fonts, // where the *CSS* family may not know about italic faces that are present // in the *GDI* family, and which GDI would use if we asked it to perform // the "italicization". bool useCairoFakeItalic = wantFakeItalic && fe->mFamilyHasItalicFace; if (mAdjustedSize == 0.0) { mAdjustedSize = mStyle.size; if (mStyle.sizeAdjust != 0.0 && mAdjustedSize > 0.0) { // to implement font-size-adjust, we first create the "unadjusted" font FillLogFont(logFont, mAdjustedSize, wantFakeItalic && !useCairoFakeItalic); mFont = ::CreateFontIndirectW(&logFont); // initialize its metrics so we can calculate size adjustment Initialize(); // calculate the properly adjusted size, and then proceed // to recreate mFont and recalculate metrics gfxFloat aspect = mMetrics->xHeight / mMetrics->emHeight; mAdjustedSize = mStyle.GetAdjustedSize(aspect); // delete the temporary font and metrics ::DeleteObject(mFont); mFont = nullptr; delete mMetrics; mMetrics = nullptr; } } // (bug 724231) for local user fonts, we don't use GDI's synthetic bold, // as it could lead to a different, incompatible face being used // but instead do our own multi-striking if (mNeedsBold && GetFontEntry()->IsLocalUserFont()) { mApplySyntheticBold = true; } // this may end up being zero mAdjustedSize = ROUND(mAdjustedSize); FillLogFont(logFont, mAdjustedSize, wantFakeItalic && !useCairoFakeItalic); mFont = ::CreateFontIndirectW(&logFont); mMetrics = new gfxFont::Metrics; ::memset(mMetrics, 0, sizeof(*mMetrics)); AutoDC dc; SetGraphicsMode(dc.GetDC(), GM_ADVANCED); AutoSelectFont selectFont(dc.GetDC(), mFont); // Get font metrics if size > 0 if (mAdjustedSize > 0.0) { OUTLINETEXTMETRIC oMetrics; TEXTMETRIC& metrics = oMetrics.otmTextMetrics; if (0 < GetOutlineTextMetrics(dc.GetDC(), sizeof(oMetrics), &oMetrics)) { mMetrics->superscriptOffset = (double)oMetrics.otmptSuperscriptOffset.y; // Some fonts have wrong sign on their subscript offset, bug 410917. mMetrics->subscriptOffset = fabs((double)oMetrics.otmptSubscriptOffset.y); mMetrics->strikeoutSize = (double)oMetrics.otmsStrikeoutSize; mMetrics->strikeoutOffset = (double)oMetrics.otmsStrikeoutPosition; mMetrics->underlineSize = (double)oMetrics.otmsUnderscoreSize; mMetrics->underlineOffset = (double)oMetrics.otmsUnderscorePosition; const MAT2 kIdentityMatrix = { {0, 1}, {0, 0}, {0, 0}, {0, 1} }; GLYPHMETRICS gm; DWORD len = GetGlyphOutlineW(dc.GetDC(), PRUnichar('x'), GGO_METRICS, &gm, 0, nullptr, &kIdentityMatrix); if (len == GDI_ERROR || gm.gmptGlyphOrigin.y <= 0) { // 56% of ascent, best guess for true type mMetrics->xHeight = ROUND((double)metrics.tmAscent * DEFAULT_XHEIGHT_FACTOR); } else { mMetrics->xHeight = gm.gmptGlyphOrigin.y; } mMetrics->emHeight = metrics.tmHeight - metrics.tmInternalLeading; gfxFloat typEmHeight = (double)oMetrics.otmAscent - (double)oMetrics.otmDescent; mMetrics->emAscent = ROUND(mMetrics->emHeight * (double)oMetrics.otmAscent / typEmHeight); mMetrics->emDescent = mMetrics->emHeight - mMetrics->emAscent; if (oMetrics.otmEMSquare > 0) { mFUnitsConvFactor = float(mAdjustedSize / oMetrics.otmEMSquare); } } else { // Make a best-effort guess at extended metrics // this is based on general typographic guidelines // GetTextMetrics can fail if the font file has been removed // or corrupted recently. BOOL result = GetTextMetrics(dc.GetDC(), &metrics); if (!result) { NS_WARNING("Missing or corrupt font data, fasten your seatbelt"); mIsValid = false; memset(mMetrics, 0, sizeof(*mMetrics)); return; } mMetrics->xHeight = ROUND((float)metrics.tmAscent * DEFAULT_XHEIGHT_FACTOR); mMetrics->superscriptOffset = mMetrics->xHeight; mMetrics->subscriptOffset = mMetrics->xHeight; mMetrics->strikeoutSize = 1; mMetrics->strikeoutOffset = ROUND(mMetrics->xHeight * 0.5f); // 50% of xHeight mMetrics->underlineSize = 1; mMetrics->underlineOffset = -ROUND((float)metrics.tmDescent * 0.30f); // 30% of descent mMetrics->emHeight = metrics.tmHeight - metrics.tmInternalLeading; mMetrics->emAscent = metrics.tmAscent - metrics.tmInternalLeading; mMetrics->emDescent = metrics.tmDescent; } mMetrics->internalLeading = metrics.tmInternalLeading; mMetrics->externalLeading = metrics.tmExternalLeading; mMetrics->maxHeight = metrics.tmHeight; mMetrics->maxAscent = metrics.tmAscent; mMetrics->maxDescent = metrics.tmDescent; mMetrics->maxAdvance = metrics.tmMaxCharWidth; mMetrics->aveCharWidth = NS_MAX<gfxFloat>(1, metrics.tmAveCharWidth); // The font is monospace when TMPF_FIXED_PITCH is *not* set! // See http://msdn2.microsoft.com/en-us/library/ms534202(VS.85).aspx if (!(metrics.tmPitchAndFamily & TMPF_FIXED_PITCH)) { mMetrics->maxAdvance = mMetrics->aveCharWidth; } // Cache the width of a single space. SIZE size; GetTextExtentPoint32W(dc.GetDC(), L" ", 1, &size); mMetrics->spaceWidth = ROUND(size.cx); // Cache the width of digit zero. // XXX MSDN (http://msdn.microsoft.com/en-us/library/ms534223.aspx) // does not say what the failure modes for GetTextExtentPoint32 are - // is it safe to assume it will fail iff the font has no '0'? if (GetTextExtentPoint32W(dc.GetDC(), L"0", 1, &size)) { mMetrics->zeroOrAveCharWidth = ROUND(size.cx); } else { mMetrics->zeroOrAveCharWidth = mMetrics->aveCharWidth; } mSpaceGlyph = 0; if (metrics.tmPitchAndFamily & TMPF_TRUETYPE) { WORD glyph; DWORD ret = GetGlyphIndicesW(dc.GetDC(), L" ", 1, &glyph, GGI_MARK_NONEXISTING_GLYPHS); if (ret != GDI_ERROR && glyph != 0xFFFF) { mSpaceGlyph = glyph; } } SanitizeMetrics(mMetrics, GetFontEntry()->mIsBadUnderlineFont); } if (IsSyntheticBold()) { mMetrics->aveCharWidth += GetSyntheticBoldOffset(); mMetrics->maxAdvance += GetSyntheticBoldOffset(); } mFontFace = cairo_win32_font_face_create_for_logfontw_hfont(&logFont, mFont); cairo_matrix_t sizeMatrix, ctm; cairo_matrix_init_identity(&ctm); cairo_matrix_init_scale(&sizeMatrix, mAdjustedSize, mAdjustedSize); if (useCairoFakeItalic) { // Skew the matrix to do fake italic if it wasn't already applied // via the LOGFONT double skewfactor = OBLIQUE_SKEW_FACTOR; cairo_matrix_t style; cairo_matrix_init(&style, 1, //xx 0, //yx -1 * skewfactor, //xy 1, //yy 0, //x0 0); //y0 cairo_matrix_multiply(&sizeMatrix, &sizeMatrix, &style); } cairo_font_options_t *fontOptions = cairo_font_options_create(); if (mAntialiasOption != kAntialiasDefault) { cairo_font_options_set_antialias(fontOptions, GetCairoAntialiasOption(mAntialiasOption)); } mScaledFont = cairo_scaled_font_create(mFontFace, &sizeMatrix, &ctm, fontOptions); cairo_font_options_destroy(fontOptions); if (!mScaledFont || cairo_scaled_font_status(mScaledFont) != CAIRO_STATUS_SUCCESS) { #ifdef DEBUG char warnBuf[1024]; sprintf(warnBuf, "Failed to create scaled font: %s status: %d", NS_ConvertUTF16toUTF8(mFontEntry->Name()).get(), mScaledFont ? cairo_scaled_font_status(mScaledFont) : 0); NS_WARNING(warnBuf); #endif mIsValid = false; } else { mIsValid = true; } #if 0 printf("Font: %p (%s) size: %f adjusted size: %f valid: %s\n", this, NS_ConvertUTF16toUTF8(GetName()).get(), mStyle.size, mAdjustedSize, (mIsValid ? "yes" : "no")); printf(" emHeight: %f emAscent: %f emDescent: %f\n", mMetrics->emHeight, mMetrics->emAscent, mMetrics->emDescent); printf(" maxAscent: %f maxDescent: %f maxAdvance: %f\n", mMetrics->maxAscent, mMetrics->maxDescent, mMetrics->maxAdvance); printf(" internalLeading: %f externalLeading: %f\n", mMetrics->internalLeading, mMetrics->externalLeading); printf(" spaceWidth: %f aveCharWidth: %f xHeight: %f\n", mMetrics->spaceWidth, mMetrics->aveCharWidth, mMetrics->xHeight); printf(" uOff: %f uSize: %f stOff: %f stSize: %f supOff: %f subOff: %f\n", mMetrics->underlineOffset, mMetrics->underlineSize, mMetrics->strikeoutOffset, mMetrics->strikeoutSize, mMetrics->superscriptOffset, mMetrics->subscriptOffset); #endif }
void gfxGDIFont::Initialize() { NS_ASSERTION(!mMetrics, "re-creating metrics? this will leak"); LOGFONTW logFont; if (mAdjustedSize == 0.0) { mAdjustedSize = mStyle.size; if (mStyle.sizeAdjust != 0.0 && mAdjustedSize > 0.0) { // to implement font-size-adjust, we first create the "unadjusted" font FillLogFont(logFont, mAdjustedSize); mFont = ::CreateFontIndirectW(&logFont); // initialize its metrics so we can calculate size adjustment Initialize(); // calculate the properly adjusted size, and then proceed // to recreate mFont and recalculate metrics gfxFloat aspect = mMetrics->xHeight / mMetrics->emHeight; mAdjustedSize = mStyle.GetAdjustedSize(aspect); // delete the temporary font and metrics ::DeleteObject(mFont); mFont = nsnull; delete mMetrics; mMetrics = nsnull; } } FillLogFont(logFont, mAdjustedSize); mFont = ::CreateFontIndirectW(&logFont); mMetrics = new gfxFont::Metrics; ::memset(mMetrics, 0, sizeof(*mMetrics)); AutoDC dc; SetGraphicsMode(dc.GetDC(), GM_ADVANCED); AutoSelectFont selectFont(dc.GetDC(), mFont); // Get font metrics OUTLINETEXTMETRIC oMetrics; TEXTMETRIC& metrics = oMetrics.otmTextMetrics; if (0 < GetOutlineTextMetrics(dc.GetDC(), sizeof(oMetrics), &oMetrics)) { mMetrics->superscriptOffset = (double)oMetrics.otmptSuperscriptOffset.y; // Some fonts have wrong sign on their subscript offset, bug 410917. mMetrics->subscriptOffset = fabs((double)oMetrics.otmptSubscriptOffset.y); mMetrics->strikeoutSize = (double)oMetrics.otmsStrikeoutSize; mMetrics->strikeoutOffset = (double)oMetrics.otmsStrikeoutPosition; mMetrics->underlineSize = (double)oMetrics.otmsUnderscoreSize; mMetrics->underlineOffset = (double)oMetrics.otmsUnderscorePosition; const MAT2 kIdentityMatrix = { {0, 1}, {0, 0}, {0, 0}, {0, 1} }; GLYPHMETRICS gm; DWORD len = GetGlyphOutlineW(dc.GetDC(), PRUnichar('x'), GGO_METRICS, &gm, 0, nsnull, &kIdentityMatrix); if (len == GDI_ERROR || gm.gmptGlyphOrigin.y <= 0) { // 56% of ascent, best guess for true type mMetrics->xHeight = ROUND((double)metrics.tmAscent * DEFAULT_XHEIGHT_FACTOR); } else { mMetrics->xHeight = gm.gmptGlyphOrigin.y; } mMetrics->emHeight = metrics.tmHeight - metrics.tmInternalLeading; gfxFloat typEmHeight = (double)oMetrics.otmAscent - (double)oMetrics.otmDescent; mMetrics->emAscent = ROUND(mMetrics->emHeight * (double)oMetrics.otmAscent / typEmHeight); mMetrics->emDescent = mMetrics->emHeight - mMetrics->emAscent; if (oMetrics.otmEMSquare > 0) { mFUnitsConvFactor = float(GetAdjustedSize() / oMetrics.otmEMSquare); } } else { // Make a best-effort guess at extended metrics // this is based on general typographic guidelines // GetTextMetrics can fail if the font file has been removed // or corrupted recently. BOOL result = GetTextMetrics(dc.GetDC(), &metrics); if (!result) { NS_WARNING("Missing or corrupt font data, fasten your seatbelt"); mIsValid = PR_FALSE; memset(mMetrics, 0, sizeof(*mMetrics)); return; } mMetrics->xHeight = ROUND((float)metrics.tmAscent * DEFAULT_XHEIGHT_FACTOR); mMetrics->superscriptOffset = mMetrics->xHeight; mMetrics->subscriptOffset = mMetrics->xHeight; mMetrics->strikeoutSize = 1; mMetrics->strikeoutOffset = ROUND(mMetrics->xHeight * 0.5f); // 50% of xHeight mMetrics->underlineSize = 1; mMetrics->underlineOffset = -ROUND((float)metrics.tmDescent * 0.30f); // 30% of descent mMetrics->emHeight = metrics.tmHeight - metrics.tmInternalLeading; mMetrics->emAscent = metrics.tmAscent - metrics.tmInternalLeading; mMetrics->emDescent = metrics.tmDescent; } mMetrics->internalLeading = metrics.tmInternalLeading; mMetrics->externalLeading = metrics.tmExternalLeading; mMetrics->maxHeight = metrics.tmHeight; mMetrics->maxAscent = metrics.tmAscent; mMetrics->maxDescent = metrics.tmDescent; mMetrics->maxAdvance = metrics.tmMaxCharWidth; mMetrics->aveCharWidth = PR_MAX(1, metrics.tmAveCharWidth); // The font is monospace when TMPF_FIXED_PITCH is *not* set! // See http://msdn2.microsoft.com/en-us/library/ms534202(VS.85).aspx if (!(metrics.tmPitchAndFamily & TMPF_FIXED_PITCH)) { mMetrics->maxAdvance = mMetrics->aveCharWidth; } // Cache the width of a single space. SIZE size; GetTextExtentPoint32W(dc.GetDC(), L" ", 1, &size); mMetrics->spaceWidth = ROUND(size.cx); // Cache the width of digit zero. // XXX MSDN (http://msdn.microsoft.com/en-us/library/ms534223.aspx) // does not say what the failure modes for GetTextExtentPoint32 are - // is it safe to assume it will fail iff the font has no '0'? if (GetTextExtentPoint32W(dc.GetDC(), L"0", 1, &size)) { mMetrics->zeroOrAveCharWidth = ROUND(size.cx); } else { mMetrics->zeroOrAveCharWidth = mMetrics->aveCharWidth; } mSpaceGlyph = 0; if (metrics.tmPitchAndFamily & TMPF_TRUETYPE) { WORD glyph; DWORD ret = GetGlyphIndicesW(dc.GetDC(), L" ", 1, &glyph, GGI_MARK_NONEXISTING_GLYPHS); if (ret != GDI_ERROR && glyph != 0xFFFF) { mSpaceGlyph = glyph; } } SanitizeMetrics(mMetrics, GetFontEntry()->mIsBadUnderlineFont); mFontFace = cairo_win32_font_face_create_for_logfontw_hfont(&logFont, mFont); cairo_matrix_t sizeMatrix, ctm; cairo_matrix_init_identity(&ctm); cairo_matrix_init_scale(&sizeMatrix, mAdjustedSize, mAdjustedSize); cairo_font_options_t *fontOptions = cairo_font_options_create(); if (mAntialiasOption != kAntialiasDefault) { cairo_font_options_set_antialias(fontOptions, GetCairoAntialiasOption(mAntialiasOption)); } mScaledFont = cairo_scaled_font_create(mFontFace, &sizeMatrix, &ctm, fontOptions); cairo_font_options_destroy(fontOptions); if (!mScaledFont || cairo_scaled_font_status(mScaledFont) != CAIRO_STATUS_SUCCESS) { #ifdef DEBUG char warnBuf[1024]; sprintf(warnBuf, "Failed to create scaled font: %s status: %d", NS_ConvertUTF16toUTF8(mFontEntry->Name()).get(), mScaledFont ? cairo_scaled_font_status(mScaledFont) : 0); NS_WARNING(warnBuf); #endif } mIsValid = PR_TRUE; #if 0 printf("Font: %p (%s) size: %f\n", this, NS_ConvertUTF16toUTF8(GetName()).get(), mStyle.size); printf(" emHeight: %f emAscent: %f emDescent: %f\n", mMetrics.emHeight, mMetrics.emAscent, mMetrics.emDescent); printf(" maxAscent: %f maxDescent: %f maxAdvance: %f\n", mMetrics.maxAscent, mMetrics.maxDescent, mMetrics.maxAdvance); printf(" internalLeading: %f externalLeading: %f\n", mMetrics.internalLeading, mMetrics.externalLeading); printf(" spaceWidth: %f aveCharWidth: %f xHeight: %f\n", mMetrics.spaceWidth, mMetrics.aveCharWidth, mMetrics.xHeight); printf(" uOff: %f uSize: %f stOff: %f stSize: %f supOff: %f subOff: %f\n", mMetrics.underlineOffset, mMetrics.underlineSize, mMetrics.strikeoutOffset, mMetrics.strikeoutSize, mMetrics.superscriptOffset, mMetrics.subscriptOffset); #endif }
nsresult gfxDWriteFontEntry::CopyFontTable(uint32_t aTableTag, FallibleTArray<uint8_t> &aBuffer) { gfxDWriteFontList *pFontList = gfxDWriteFontList::PlatformFontList(); // Don't use GDI table loading for symbol fonts or for // italic fonts in Arabic-script system locales because of // potential cmap discrepancies, see bug 629386. // Ditto for Hebrew, bug 837498. if (mFont && pFontList->UseGDIFontTableAccess() && !(mItalic && UsingArabicOrHebrewScriptSystemLocale()) && !mFont->IsSymbolFont()) { LOGFONTW logfont = { 0 }; if (!InitLogFont(mFont, &logfont)) return NS_ERROR_FAILURE; AutoDC dc; AutoSelectFont font(dc.GetDC(), &logfont); if (font.IsValid()) { uint32_t tableSize = ::GetFontData(dc.GetDC(), NativeEndian::swapToBigEndian(aTableTag), 0, NULL, 0); if (tableSize != GDI_ERROR) { if (aBuffer.SetLength(tableSize)) { ::GetFontData(dc.GetDC(), NativeEndian::swapToBigEndian(aTableTag), 0, aBuffer.Elements(), aBuffer.Length()); return NS_OK; } return NS_ERROR_OUT_OF_MEMORY; } } return NS_ERROR_FAILURE; } nsRefPtr<IDWriteFontFace> fontFace; nsresult rv = CreateFontFace(getter_AddRefs(fontFace)); if (NS_FAILED(rv)) { return rv; } uint8_t *tableData; uint32_t len; void *tableContext = NULL; BOOL exists; HRESULT hr = fontFace->TryGetFontTable(NativeEndian::swapToBigEndian(aTableTag), (const void**)&tableData, &len, &tableContext, &exists); if (FAILED(hr) || !exists) { return NS_ERROR_FAILURE; } if (aBuffer.SetLength(len)) { memcpy(aBuffer.Elements(), tableData, len); rv = NS_OK; } else { rv = NS_ERROR_OUT_OF_MEMORY; } if (tableContext) { fontFace->ReleaseFontTable(&tableContext); } return rv; }
void gfxGDIFont::Initialize() { NS_ASSERTION(!mMetrics, "re-creating metrics? this will leak"); LOGFONTW logFont; // Figure out if we want to do synthetic oblique styling. GDIFontEntry* fe = static_cast<GDIFontEntry*>(GetFontEntry()); bool wantFakeItalic = mStyle.style != NS_FONT_STYLE_NORMAL && fe->IsUpright() && mStyle.allowSyntheticStyle; // If the font's family has an actual italic face (but font matching // didn't choose it), we have to use a cairo transform instead of asking // GDI to italicize, because that would use a different face and result // in a possible glyph ID mismatch between shaping and rendering. // // We use the mFamilyHasItalicFace flag in the entry in case of user fonts, // where the *CSS* family may not know about italic faces that are present // in the *GDI* family, and which GDI would use if we asked it to perform // the "italicization". bool useCairoFakeItalic = wantFakeItalic && fe->mFamilyHasItalicFace; if (mAdjustedSize == 0.0) { mAdjustedSize = mStyle.size; if (mStyle.sizeAdjust > 0.0 && mAdjustedSize > 0.0) { // to implement font-size-adjust, we first create the "unadjusted" font FillLogFont(logFont, mAdjustedSize, wantFakeItalic && !useCairoFakeItalic); mFont = ::CreateFontIndirectW(&logFont); // initialize its metrics so we can calculate size adjustment Initialize(); // Unless the font was so small that GDI metrics rounded to zero, // calculate the properly adjusted size, and then proceed // to recreate mFont and recalculate metrics if (mMetrics->xHeight > 0.0 && mMetrics->emHeight > 0.0) { gfxFloat aspect = mMetrics->xHeight / mMetrics->emHeight; mAdjustedSize = mStyle.GetAdjustedSize(aspect); } // delete the temporary font and metrics ::DeleteObject(mFont); mFont = nullptr; delete mMetrics; mMetrics = nullptr; } else if (mStyle.sizeAdjust == 0.0) { mAdjustedSize = 0.0; } } // (bug 724231) for local user fonts, we don't use GDI's synthetic bold, // as it could lead to a different, incompatible face being used // but instead do our own multi-striking if (mNeedsBold && GetFontEntry()->IsLocalUserFont()) { mApplySyntheticBold = true; } // this may end up being zero mAdjustedSize = ROUND(mAdjustedSize); FillLogFont(logFont, mAdjustedSize, wantFakeItalic && !useCairoFakeItalic); mFont = ::CreateFontIndirectW(&logFont); mMetrics = new gfxFont::Metrics; ::memset(mMetrics, 0, sizeof(*mMetrics)); if (!mFont) { NS_WARNING("Failed creating GDI font"); mIsValid = false; return; } AutoDC dc; SetGraphicsMode(dc.GetDC(), GM_ADVANCED); AutoSelectFont selectFont(dc.GetDC(), mFont); // Get font metrics if size > 0 if (mAdjustedSize > 0.0) { OUTLINETEXTMETRIC oMetrics; TEXTMETRIC& metrics = oMetrics.otmTextMetrics; if (0 < GetOutlineTextMetrics(dc.GetDC(), sizeof(oMetrics), &oMetrics)) { mMetrics->strikeoutSize = (double)oMetrics.otmsStrikeoutSize; mMetrics->strikeoutOffset = (double)oMetrics.otmsStrikeoutPosition; mMetrics->underlineSize = (double)oMetrics.otmsUnderscoreSize; mMetrics->underlineOffset = (double)oMetrics.otmsUnderscorePosition; const MAT2 kIdentityMatrix = { {0, 1}, {0, 0}, {0, 0}, {0, 1} }; GLYPHMETRICS gm; DWORD len = GetGlyphOutlineW(dc.GetDC(), char16_t('x'), GGO_METRICS, &gm, 0, nullptr, &kIdentityMatrix); if (len == GDI_ERROR || gm.gmptGlyphOrigin.y <= 0) { // 56% of ascent, best guess for true type mMetrics->xHeight = ROUND((double)metrics.tmAscent * DEFAULT_XHEIGHT_FACTOR); } else { mMetrics->xHeight = gm.gmptGlyphOrigin.y; } len = GetGlyphOutlineW(dc.GetDC(), char16_t('H'), GGO_METRICS, &gm, 0, nullptr, &kIdentityMatrix); if (len == GDI_ERROR || gm.gmptGlyphOrigin.y <= 0) { mMetrics->capHeight = metrics.tmAscent - metrics.tmInternalLeading; } else { mMetrics->capHeight = gm.gmptGlyphOrigin.y; } mMetrics->emHeight = metrics.tmHeight - metrics.tmInternalLeading; gfxFloat typEmHeight = (double)oMetrics.otmAscent - (double)oMetrics.otmDescent; mMetrics->emAscent = ROUND(mMetrics->emHeight * (double)oMetrics.otmAscent / typEmHeight); mMetrics->emDescent = mMetrics->emHeight - mMetrics->emAscent; if (oMetrics.otmEMSquare > 0) { mFUnitsConvFactor = float(mAdjustedSize / oMetrics.otmEMSquare); } } else { // Make a best-effort guess at extended metrics // this is based on general typographic guidelines // GetTextMetrics can fail if the font file has been removed // or corrupted recently. BOOL result = GetTextMetrics(dc.GetDC(), &metrics); if (!result) { NS_WARNING("Missing or corrupt font data, fasten your seatbelt"); mIsValid = false; memset(mMetrics, 0, sizeof(*mMetrics)); return; } mMetrics->xHeight = ROUND((float)metrics.tmAscent * DEFAULT_XHEIGHT_FACTOR); mMetrics->strikeoutSize = 1; mMetrics->strikeoutOffset = ROUND(mMetrics->xHeight * 0.5f); // 50% of xHeight mMetrics->underlineSize = 1; mMetrics->underlineOffset = -ROUND((float)metrics.tmDescent * 0.30f); // 30% of descent mMetrics->emHeight = metrics.tmHeight - metrics.tmInternalLeading; mMetrics->emAscent = metrics.tmAscent - metrics.tmInternalLeading; mMetrics->emDescent = metrics.tmDescent; mMetrics->capHeight = mMetrics->emAscent; } mMetrics->internalLeading = metrics.tmInternalLeading; mMetrics->externalLeading = metrics.tmExternalLeading; mMetrics->maxHeight = metrics.tmHeight; mMetrics->maxAscent = metrics.tmAscent; mMetrics->maxDescent = metrics.tmDescent; mMetrics->maxAdvance = metrics.tmMaxCharWidth; mMetrics->aveCharWidth = std::max<gfxFloat>(1, metrics.tmAveCharWidth); // The font is monospace when TMPF_FIXED_PITCH is *not* set! // See http://msdn2.microsoft.com/en-us/library/ms534202(VS.85).aspx if (!(metrics.tmPitchAndFamily & TMPF_FIXED_PITCH)) { mMetrics->maxAdvance = mMetrics->aveCharWidth; } // For fonts with USE_TYPO_METRICS set in the fsSelection field, // let the OS/2 sTypo* metrics override the previous values. // (see http://www.microsoft.com/typography/otspec/os2.htm#fss) // Using the equivalent values from oMetrics provides inconsistent // results with CFF fonts, so we instead rely on OS2Table. gfxFontEntry::AutoTable os2Table(mFontEntry, TRUETYPE_TAG('O','S','/','2')); if (os2Table) { uint32_t len; const OS2Table *os2 = reinterpret_cast<const OS2Table*>(hb_blob_get_data(os2Table, &len)); if (len >= offsetof(OS2Table, sTypoLineGap) + sizeof(int16_t)) { const uint16_t kUseTypoMetricsMask = 1 << 7; if ((uint16_t(os2->fsSelection) & kUseTypoMetricsMask)) { double ascent = int16_t(os2->sTypoAscender); double descent = int16_t(os2->sTypoDescender); double lineGap = int16_t(os2->sTypoLineGap); mMetrics->maxAscent = ROUND(ascent * mFUnitsConvFactor); mMetrics->maxDescent = -ROUND(descent * mFUnitsConvFactor); mMetrics->maxHeight = mMetrics->maxAscent + mMetrics->maxDescent; mMetrics->internalLeading = mMetrics->maxHeight - mMetrics->emHeight; gfxFloat lineHeight = ROUND((ascent - descent + lineGap) * mFUnitsConvFactor); lineHeight = std::max(lineHeight, mMetrics->maxHeight); mMetrics->externalLeading = lineHeight - mMetrics->maxHeight; } } // although sxHeight and sCapHeight are signed fields, we consider // negative values to be erroneous and just ignore them if (uint16_t(os2->version) >= 2) { // version 2 and later includes the x-height and cap-height fields if (len >= offsetof(OS2Table, sxHeight) + sizeof(int16_t) && int16_t(os2->sxHeight) > 0) { mMetrics->xHeight = ROUND(int16_t(os2->sxHeight) * mFUnitsConvFactor); } if (len >= offsetof(OS2Table, sCapHeight) + sizeof(int16_t) && int16_t(os2->sCapHeight) > 0) { mMetrics->capHeight = ROUND(int16_t(os2->sCapHeight) * mFUnitsConvFactor); } } } WORD glyph; SIZE size; DWORD ret = GetGlyphIndicesW(dc.GetDC(), L" ", 1, &glyph, GGI_MARK_NONEXISTING_GLYPHS); if (ret != GDI_ERROR && glyph != 0xFFFF) { mSpaceGlyph = glyph; // Cache the width of a single space. GetTextExtentPoint32W(dc.GetDC(), L" ", 1, &size); mMetrics->spaceWidth = ROUND(size.cx); } else { mMetrics->spaceWidth = mMetrics->aveCharWidth; } // Cache the width of digit zero, if available. ret = GetGlyphIndicesW(dc.GetDC(), L"0", 1, &glyph, GGI_MARK_NONEXISTING_GLYPHS); if (ret != GDI_ERROR && glyph != 0xFFFF) { GetTextExtentPoint32W(dc.GetDC(), L"0", 1, &size); mMetrics->zeroOrAveCharWidth = ROUND(size.cx); } else { mMetrics->zeroOrAveCharWidth = mMetrics->aveCharWidth; } SanitizeMetrics(mMetrics, GetFontEntry()->mIsBadUnderlineFont); } else { mFUnitsConvFactor = 0.0; // zero-sized font: all values scale to zero } if (IsSyntheticBold()) { mMetrics->aveCharWidth += GetSyntheticBoldOffset(); mMetrics->maxAdvance += GetSyntheticBoldOffset(); } mFontFace = cairo_win32_font_face_create_for_logfontw_hfont(&logFont, mFont); cairo_matrix_t sizeMatrix, ctm; cairo_matrix_init_identity(&ctm); cairo_matrix_init_scale(&sizeMatrix, mAdjustedSize, mAdjustedSize); if (useCairoFakeItalic) { // Skew the matrix to do fake italic if it wasn't already applied // via the LOGFONT double skewfactor = OBLIQUE_SKEW_FACTOR; cairo_matrix_t style; cairo_matrix_init(&style, 1, //xx 0, //yx -1 * skewfactor, //xy 1, //yy 0, //x0 0); //y0 cairo_matrix_multiply(&sizeMatrix, &sizeMatrix, &style); } cairo_font_options_t *fontOptions = cairo_font_options_create(); if (mAntialiasOption != kAntialiasDefault) { cairo_font_options_set_antialias(fontOptions, GetCairoAntialiasOption(mAntialiasOption)); } mScaledFont = cairo_scaled_font_create(mFontFace, &sizeMatrix, &ctm, fontOptions); cairo_font_options_destroy(fontOptions); if (!mScaledFont || cairo_scaled_font_status(mScaledFont) != CAIRO_STATUS_SUCCESS) { #ifdef DEBUG char warnBuf[1024]; SprintfLiteral(warnBuf, "Failed to create scaled font: %s status: %d", NS_ConvertUTF16toUTF8(mFontEntry->Name()).get(), mScaledFont ? cairo_scaled_font_status(mScaledFont) : 0); NS_WARNING(warnBuf); #endif mIsValid = false; } else { mIsValid = true; } #if 0 printf("Font: %p (%s) size: %f adjusted size: %f valid: %s\n", this, NS_ConvertUTF16toUTF8(GetName()).get(), mStyle.size, mAdjustedSize, (mIsValid ? "yes" : "no")); printf(" emHeight: %f emAscent: %f emDescent: %f\n", mMetrics->emHeight, mMetrics->emAscent, mMetrics->emDescent); printf(" maxAscent: %f maxDescent: %f maxAdvance: %f\n", mMetrics->maxAscent, mMetrics->maxDescent, mMetrics->maxAdvance); printf(" internalLeading: %f externalLeading: %f\n", mMetrics->internalLeading, mMetrics->externalLeading); printf(" spaceWidth: %f aveCharWidth: %f\n", mMetrics->spaceWidth, mMetrics->aveCharWidth); printf(" xHeight: %f capHeight: %f\n", mMetrics->xHeight, mMetrics->capHeight); printf(" uOff: %f uSize: %f stOff: %f stSize: %f\n", mMetrics->underlineOffset, mMetrics->underlineSize, mMetrics->strikeoutOffset, mMetrics->strikeoutSize); #endif }
nsresult gfxDWriteFontEntry::GetFontTable(PRUint32 aTableTag, FallibleTArray<PRUint8> &aBuffer) { gfxDWriteFontList *pFontList = gfxDWriteFontList::PlatformFontList(); // don't use GDI table loading for symbol fonts or for // italic fonts in Arabic-script system locales because of // potential cmap discrepancies, see bug 629386 if (mFont && pFontList->UseGDIFontTableAccess() && !(mItalic && UsingArabicScriptSystemLocale()) && !mFont->IsSymbolFont()) { LOGFONTW logfont = { 0 }; if (!InitLogFont(mFont, &logfont)) return NS_ERROR_FAILURE; AutoDC dc; AutoSelectFont font(dc.GetDC(), &logfont); if (font.IsValid()) { PRInt32 tableSize = ::GetFontData(dc.GetDC(), NS_SWAP32(aTableTag), 0, NULL, NULL); if (tableSize != GDI_ERROR) { if (aBuffer.SetLength(tableSize)) { ::GetFontData(dc.GetDC(), NS_SWAP32(aTableTag), 0, aBuffer.Elements(), aBuffer.Length()); return NS_OK; } return NS_ERROR_OUT_OF_MEMORY; } } return NS_ERROR_FAILURE; } HRESULT hr; nsresult rv; nsRefPtr<IDWriteFontFace> fontFace; rv = CreateFontFace(getter_AddRefs(fontFace)); if (NS_FAILED(rv)) { return rv; } PRUint8 *tableData; PRUint32 len; void *tableContext = NULL; BOOL exists; hr = fontFace->TryGetFontTable(NS_SWAP32(aTableTag), (const void**)&tableData, &len, &tableContext, &exists); if (FAILED(hr) || !exists) { return NS_ERROR_FAILURE; } if (!aBuffer.SetLength(len)) { return NS_ERROR_OUT_OF_MEMORY; } memcpy(aBuffer.Elements(), tableData, len); if (tableContext) { fontFace->ReleaseFontTable(&tableContext); } return NS_OK; }