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| 1 // Copyright (c) 2011 The Chromium Authors. All rights reserved. | 1 // Copyright (c) 2011 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "ui/gfx/render_text_win.h" | 5 #include "ui/gfx/render_text_win.h" |
| 6 | 6 |
| 7 #include <algorithm> | 7 #include <algorithm> |
| 8 #include <map> | 8 #include <map> |
| 9 | 9 |
| 10 #include "base/logging.h" | 10 #include "base/logging.h" |
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| 102 | 102 |
| 103 RenderTextWin::~RenderTextWin() { | 103 RenderTextWin::~RenderTextWin() { |
| 104 ScriptFreeCache(&script_cache_); | 104 ScriptFreeCache(&script_cache_); |
| 105 STLDeleteContainerPointers(runs_.begin(), runs_.end()); | 105 STLDeleteContainerPointers(runs_.begin(), runs_.end()); |
| 106 } | 106 } |
| 107 | 107 |
| 108 int RenderTextWin::GetStringWidth() { | 108 int RenderTextWin::GetStringWidth() { |
| 109 return string_width_; | 109 return string_width_; |
| 110 } | 110 } |
| 111 | 111 |
| 112 void RenderTextWin::Draw(Canvas* canvas) { | |
| 113 DrawSelection(canvas); | |
| 114 DrawVisualText(canvas); | |
| 115 DrawCursor(canvas); | |
| 116 } | |
| 117 | |
| 118 SelectionModel RenderTextWin::FindCursorPosition(const Point& point) { | 112 SelectionModel RenderTextWin::FindCursorPosition(const Point& point) { |
| 119 if (text().empty()) | 113 if (text().empty()) |
| 120 return SelectionModel(); | 114 return SelectionModel(); |
| 121 | 115 |
| 122 // Find the run that contains the point and adjust the argument location. | 116 // Find the run that contains the point and adjust the argument location. |
| 123 Point p(ToTextPoint(point)); | 117 Point p(ToTextPoint(point)); |
| 124 size_t run_index = GetRunContainingPoint(p); | 118 size_t run_index = GetRunContainingPoint(p); |
| 125 if (run_index == runs_.size()) | 119 if (run_index == runs_.size()) |
| 126 return (p.x() < 0) ? LeftEndSelectionModel() : RightEndSelectionModel(); | 120 return (p.x() < 0) ? LeftEndSelectionModel() : RightEndSelectionModel(); |
| 127 internal::TextRun* run = runs_[run_index]; | 121 internal::TextRun* run = runs_[run_index]; |
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| 236 return SelectionModel(0, 0, SelectionModel::LEADING); | 230 return SelectionModel(0, 0, SelectionModel::LEADING); |
| 237 size_t cursor = base::i18n::IsRTL() ? 0 : text().length(); | 231 size_t cursor = base::i18n::IsRTL() ? 0 : text().length(); |
| 238 internal::TextRun* run = runs_[visual_to_logical_[runs_.size() - 1]]; | 232 internal::TextRun* run = runs_[visual_to_logical_[runs_.size() - 1]]; |
| 239 bool rtl = run->script_analysis.fRTL; | 233 bool rtl = run->script_analysis.fRTL; |
| 240 size_t caret = rtl ? run->range.start() : run->range.end() - 1; | 234 size_t caret = rtl ? run->range.start() : run->range.end() - 1; |
| 241 SelectionModel::CaretPlacement placement = | 235 SelectionModel::CaretPlacement placement = |
| 242 rtl ? SelectionModel::LEADING : SelectionModel::TRAILING; | 236 rtl ? SelectionModel::LEADING : SelectionModel::TRAILING; |
| 243 return SelectionModel(cursor, caret, placement); | 237 return SelectionModel(cursor, caret, placement); |
| 244 } | 238 } |
| 245 | 239 |
| 246 std::vector<Rect> RenderTextWin::GetSubstringBounds(size_t from, size_t to) { | 240 void RenderTextWin::GetSubstringBounds(size_t from, |
| 241 size_t to, |
| 242 std::vector<Rect>* bounds) { |
| 247 ui::Range range(from, to); | 243 ui::Range range(from, to); |
| 248 DCHECK(ui::Range(0, text().length()).Contains(range)); | 244 DCHECK(ui::Range(0, text().length()).Contains(range)); |
| 249 Point display_offset(GetUpdatedDisplayOffset()); | 245 Point display_offset(GetUpdatedDisplayOffset()); |
| 250 std::vector<Rect> bounds; | |
| 251 HRESULT hr = 0; | 246 HRESULT hr = 0; |
| 247 bounds->clear(); |
| 252 | 248 |
| 253 // Add a Rect for each run/selection intersection. | 249 // Add a Rect for each run/selection intersection. |
| 254 // TODO(msw): The bounds should probably not always be leading the range ends. | 250 // TODO(msw): The bounds should probably not always be leading the range ends. |
| 255 for (size_t i = 0; i < runs_.size(); ++i) { | 251 for (size_t i = 0; i < runs_.size(); ++i) { |
| 256 internal::TextRun* run = runs_[visual_to_logical_[i]]; | 252 internal::TextRun* run = runs_[visual_to_logical_[i]]; |
| 257 ui::Range intersection = run->range.Intersect(range); | 253 ui::Range intersection = run->range.Intersect(range); |
| 258 if (intersection.IsValid()) { | 254 if (intersection.IsValid()) { |
| 259 DCHECK(!intersection.is_reversed()); | 255 DCHECK(!intersection.is_reversed()); |
| 260 int start_offset = 0; | 256 int start_offset = 0; |
| 261 hr = ScriptCPtoX(intersection.start() - run->range.start(), | 257 hr = ScriptCPtoX(intersection.start() - run->range.start(), |
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| 280 &end_offset); | 276 &end_offset); |
| 281 DCHECK(SUCCEEDED(hr)); | 277 DCHECK(SUCCEEDED(hr)); |
| 282 if (start_offset > end_offset) | 278 if (start_offset > end_offset) |
| 283 std::swap(start_offset, end_offset); | 279 std::swap(start_offset, end_offset); |
| 284 Rect rect(run->preceding_run_widths + start_offset, 0, | 280 Rect rect(run->preceding_run_widths + start_offset, 0, |
| 285 end_offset - start_offset, run->font.GetHeight()); | 281 end_offset - start_offset, run->font.GetHeight()); |
| 286 // Center the rect vertically in the display area. | 282 // Center the rect vertically in the display area. |
| 287 rect.Offset(0, (display_rect().height() - rect.height()) / 2); | 283 rect.Offset(0, (display_rect().height() - rect.height()) / 2); |
| 288 rect.set_origin(ToViewPoint(rect.origin())); | 284 rect.set_origin(ToViewPoint(rect.origin())); |
| 289 // Union this with the last rect if they're adjacent. | 285 // Union this with the last rect if they're adjacent. |
| 290 if (!bounds.empty() && rect.SharesEdgeWith(bounds.back())) { | 286 if (!bounds->empty() && rect.SharesEdgeWith(bounds->back())) { |
| 291 rect = rect.Union(bounds.back()); | 287 rect = rect.Union(bounds->back()); |
| 292 bounds.pop_back(); | 288 bounds->pop_back(); |
| 293 } | 289 } |
| 294 bounds.push_back(rect); | 290 bounds->push_back(rect); |
| 295 } | 291 } |
| 296 } | 292 } |
| 297 return bounds; | 293 return; |
| 298 } | 294 } |
| 299 | 295 |
| 300 bool RenderTextWin::IsCursorablePosition(size_t position) { | 296 bool RenderTextWin::IsCursorablePosition(size_t position) { |
| 301 if (position == 0 || position == text().length()) | 297 if (position == 0 || position == text().length()) |
| 302 return true; | 298 return true; |
| 303 | 299 |
| 304 size_t run_index = GetRunContainingPosition(position); | 300 size_t run_index = GetRunContainingPosition(position); |
| 305 if (run_index >= runs_.size()) | 301 if (run_index >= runs_.size()) |
| 306 return false; | 302 return false; |
| 307 | 303 |
| 308 internal::TextRun* run = runs_[run_index]; | 304 internal::TextRun* run = runs_[run_index]; |
| 309 size_t start = run->range.start(); | 305 size_t start = run->range.start(); |
| 310 if (position == start) | 306 if (position == start) |
| 311 return true; | 307 return true; |
| 312 return run->logical_clusters[position - start] != | 308 return run->logical_clusters[position - start] != |
| 313 run->logical_clusters[position - start - 1]; | 309 run->logical_clusters[position - start - 1]; |
| 314 } | 310 } |
| 315 | 311 |
| 316 void RenderTextWin::UpdateLayout() { | 312 void RenderTextWin::UpdateLayout() { |
| 317 // TODO(msw): Skip complex processing if ScriptIsComplex returns false. | 313 // TODO(msw): Skip complex processing if ScriptIsComplex returns false. |
| 318 ItemizeLogicalText(); | 314 ItemizeLogicalText(); |
| 319 HDC hdc = CreateCompatibleDC(NULL); | 315 HDC hdc = CreateCompatibleDC(NULL); |
| 320 LayoutVisualText(hdc); | 316 LayoutVisualText(hdc); |
| 321 DeleteDC(hdc); | 317 DeleteDC(hdc); |
| 322 } | 318 } |
| 323 | 319 |
| 320 void RenderTextWin::DrawVisualText(Canvas* canvas) { |
| 321 if (text().empty()) |
| 322 return; |
| 323 |
| 324 SkCanvas* canvas_skia = canvas->GetSkCanvas(); |
| 325 |
| 326 Point offset(ToViewPoint(Point())); |
| 327 // TODO(msw): Establish a vertical baseline for strings of mixed font heights. |
| 328 size_t height = default_style().font.GetHeight(); |
| 329 |
| 330 SkScalar x = SkIntToScalar(offset.x()); |
| 331 SkScalar y = SkIntToScalar(offset.y()); |
| 332 // Center the text vertically in the display area. |
| 333 y += (display_rect().height() - height) / 2; |
| 334 // Offset by the font size to account for Skia expecting y to be the bottom. |
| 335 y += default_style().font.GetFontSize(); |
| 336 |
| 337 SkPaint paint; |
| 338 paint.setTextEncoding(SkPaint::kGlyphID_TextEncoding); |
| 339 paint.setStyle(SkPaint::kFill_Style); |
| 340 paint.setAntiAlias(true); |
| 341 paint.setSubpixelText(true); |
| 342 paint.setLCDRenderText(true); |
| 343 |
| 344 std::vector<SkPoint> pos; |
| 345 for (size_t i = 0; i < runs_.size(); ++i) { |
| 346 // Get the run specified by the visual-to-logical map. |
| 347 internal::TextRun* run = runs_[visual_to_logical_[i]]; |
| 348 |
| 349 // TODO(msw): Font default/fallback and style integration. |
| 350 SkTypeface::Style style = SkTypeface::kNormal; |
| 351 SkTypeface* typeface = |
| 352 SkTypeface::CreateFromName(run->font.GetFontName().c_str(), style); |
| 353 if (typeface) { |
| 354 paint.setTypeface(typeface); |
| 355 // |paint| adds its own ref. Release the ref from CreateFromName. |
| 356 typeface->unref(); |
| 357 } |
| 358 paint.setTextSize(run->font.GetFontSize()); |
| 359 paint.setColor(run->foreground); |
| 360 |
| 361 SkScalar run_x = x; |
| 362 |
| 363 // Based on WebCore::skiaDrawText. |
| 364 pos.resize(run->glyph_count); |
| 365 for (int glyph = 0; glyph < run->glyph_count; glyph++) { |
| 366 pos[glyph].set(x + run->offsets[glyph].du, |
| 367 y + run->offsets[glyph].dv); |
| 368 x += SkIntToScalar(run->advance_widths[glyph]); |
| 369 } |
| 370 |
| 371 size_t byte_length = run->glyph_count * sizeof(WORD); |
| 372 canvas_skia->drawPosText(run->glyphs.get(), byte_length, &pos[0], paint); |
| 373 |
| 374 if (run->strike || run->underline) |
| 375 DrawTextRunDecorations(canvas_skia, paint, *run, run_x, y); |
| 376 } |
| 377 } |
| 378 |
| 324 size_t RenderTextWin::IndexOfAdjacentGrapheme(size_t index, bool next) { | 379 size_t RenderTextWin::IndexOfAdjacentGrapheme(size_t index, bool next) { |
| 325 size_t run_index = GetRunContainingPosition(index); | 380 size_t run_index = GetRunContainingPosition(index); |
| 326 internal::TextRun* run = run_index < runs_.size() ? runs_[run_index] : NULL; | 381 internal::TextRun* run = run_index < runs_.size() ? runs_[run_index] : NULL; |
| 327 int start = run ? run->range.start() : 0; | 382 int start = run ? run->range.start() : 0; |
| 328 int length = run ? run->range.length() : text().length(); | 383 int length = run ? run->range.length() : text().length(); |
| 329 int ch = index - start; | 384 int ch = index - start; |
| 330 WORD cluster = run ? run->logical_clusters[ch] : 0; | 385 WORD cluster = run ? run->logical_clusters[ch] : 0; |
| 331 | 386 |
| 332 if (!next) { | 387 if (!next) { |
| 333 do { | 388 do { |
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| 585 | 640 |
| 586 // The character is at the end of its run; go to the next visual run. | 641 // The character is at the end of its run; go to the next visual run. |
| 587 size_t visual_index = logical_to_visual_[run_index]; | 642 size_t visual_index = logical_to_visual_[run_index]; |
| 588 if (visual_index == runs_.size() - 1) | 643 if (visual_index == runs_.size() - 1) |
| 589 return RightEndSelectionModel(); | 644 return RightEndSelectionModel(); |
| 590 internal::TextRun* next = runs_[visual_to_logical_[visual_index + 1]]; | 645 internal::TextRun* next = runs_[visual_to_logical_[visual_index + 1]]; |
| 591 return next->script_analysis.fRTL ? LastSelectionModelInsideRun(next) : | 646 return next->script_analysis.fRTL ? LastSelectionModelInsideRun(next) : |
| 592 FirstSelectionModelInsideRun(next); | 647 FirstSelectionModelInsideRun(next); |
| 593 } | 648 } |
| 594 | 649 |
| 595 void RenderTextWin::DrawSelection(Canvas* canvas) { | |
| 596 std::vector<Rect> sel( | |
| 597 GetSubstringBounds(GetSelectionStart(), GetCursorPosition())); | |
| 598 SkColor color = focused() ? kFocusedSelectionColor : kUnfocusedSelectionColor; | |
| 599 for (std::vector<Rect>::const_iterator i = sel.begin(); i < sel.end(); ++i) | |
| 600 canvas->FillRect(color, *i); | |
| 601 } | |
| 602 | |
| 603 void RenderTextWin::DrawVisualText(Canvas* canvas) { | |
| 604 if (text().empty()) | |
| 605 return; | |
| 606 | |
| 607 SkCanvas* canvas_skia = canvas->GetSkCanvas(); | |
| 608 | |
| 609 Point offset(ToViewPoint(Point())); | |
| 610 // TODO(msw): Establish a vertical baseline for strings of mixed font heights. | |
| 611 size_t height = default_style().font.GetHeight(); | |
| 612 | |
| 613 SkScalar x = SkIntToScalar(offset.x()); | |
| 614 SkScalar y = SkIntToScalar(offset.y()); | |
| 615 // Center the text vertically in the display area. | |
| 616 y += (display_rect().height() - height) / 2; | |
| 617 // Offset by the font size to account for Skia expecting y to be the bottom. | |
| 618 y += default_style().font.GetFontSize(); | |
| 619 | |
| 620 SkPaint paint; | |
| 621 paint.setTextEncoding(SkPaint::kGlyphID_TextEncoding); | |
| 622 paint.setStyle(SkPaint::kFill_Style); | |
| 623 paint.setAntiAlias(true); | |
| 624 paint.setSubpixelText(true); | |
| 625 paint.setLCDRenderText(true); | |
| 626 | |
| 627 std::vector<SkPoint> pos; | |
| 628 for (size_t i = 0; i < runs_.size(); ++i) { | |
| 629 // Get the run specified by the visual-to-logical map. | |
| 630 internal::TextRun* run = runs_[visual_to_logical_[i]]; | |
| 631 | |
| 632 // TODO(msw): Font default/fallback and style integration. | |
| 633 SkTypeface::Style style = SkTypeface::kNormal; | |
| 634 SkTypeface* typeface = | |
| 635 SkTypeface::CreateFromName(run->font.GetFontName().c_str(), style); | |
| 636 if (typeface) { | |
| 637 paint.setTypeface(typeface); | |
| 638 // |paint| adds its own ref. Release the ref from CreateFromName. | |
| 639 typeface->unref(); | |
| 640 } | |
| 641 paint.setTextSize(run->font.GetFontSize()); | |
| 642 paint.setColor(run->foreground); | |
| 643 | |
| 644 SkScalar run_x = x; | |
| 645 | |
| 646 // Based on WebCore::skiaDrawText. | |
| 647 pos.resize(run->glyph_count); | |
| 648 for (int glyph = 0; glyph < run->glyph_count; glyph++) { | |
| 649 pos[glyph].set(x + run->offsets[glyph].du, | |
| 650 y + run->offsets[glyph].dv); | |
| 651 x += SkIntToScalar(run->advance_widths[glyph]); | |
| 652 } | |
| 653 | |
| 654 size_t byte_length = run->glyph_count * sizeof(WORD); | |
| 655 canvas_skia->drawPosText(run->glyphs.get(), byte_length, &pos[0], paint); | |
| 656 | |
| 657 if (run->strike || run->underline) | |
| 658 DrawTextRunDecorations(canvas_skia, paint, *run, run_x, y); | |
| 659 } | |
| 660 } | |
| 661 | |
| 662 void RenderTextWin::DrawCursor(Canvas* canvas) { | |
| 663 // Paint cursor. Replace cursor is drawn as rectangle for now. | |
| 664 // TODO(msw): Draw a better cursor with a better indication of association. | |
| 665 if (cursor_visible() && focused()) { | |
| 666 Rect r(GetUpdatedCursorBounds()); | |
| 667 canvas->DrawRectInt(kCursorColor, r.x(), r.y(), r.width(), r.height()); | |
| 668 } | |
| 669 } | |
| 670 | |
| 671 RenderText* RenderText::CreateRenderText() { | 650 RenderText* RenderText::CreateRenderText() { |
| 672 return new RenderTextWin; | 651 return new RenderTextWin; |
| 673 } | 652 } |
| 674 | 653 |
| 675 } // namespace gfx | 654 } // namespace gfx |
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