| Index: chrome/browser/ui/views/omnibox/omnibox_result_view.cc
|
| diff --git a/chrome/browser/ui/views/omnibox/omnibox_result_view.cc b/chrome/browser/ui/views/omnibox/omnibox_result_view.cc
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| index 4ba9ae390740e529075d10e4cc1f32b994ca19df..f7b8e27a4cf324f721fa4224d467d680746e7956 100644
|
| --- a/chrome/browser/ui/views/omnibox/omnibox_result_view.cc
|
| +++ b/chrome/browser/ui/views/omnibox/omnibox_result_view.cc
|
| @@ -357,213 +357,58 @@ int OmniboxResultView::DrawString(
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| }
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| }
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|
|
| - // Split the text into visual runs. We do this first so that we don't need to
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| - // worry about whether our eliding might change the visual display in
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| - // unintended ways, e.g. by removing directional markings or by adding an
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| - // ellipsis that's not enclosed in appropriate markings.
|
| - base::i18n::BiDiLineIterator bidi_line;
|
| - if (!bidi_line.Open(text, base::i18n::IsRTL(), is_url))
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| - return x;
|
| - const int num_runs = bidi_line.CountRuns();
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| - ScopedVector<gfx::RenderText> render_texts;
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| - Runs runs;
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| - for (int run = 0; run < num_runs; ++run) {
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| - int run_start_int = 0, run_length_int = 0;
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| - // The index we pass to GetVisualRun corresponds to the position of the run
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| - // in the displayed text. For example, the string "Google in HEBREW" (where
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| - // HEBREW is text in the Hebrew language) has two runs: "Google in " which
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| - // is an LTR run, and "HEBREW" which is an RTL run. In an LTR context, the
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| - // run "Google in " has the index 0 (since it is the leftmost run
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| - // displayed). In an RTL context, the same run has the index 1 because it
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| - // is the rightmost run. This is why the order in which we traverse the
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| - // runs is different depending on the locale direction.
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| - const UBiDiDirection run_direction = bidi_line.GetVisualRun(
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| - (base::i18n::IsRTL() && !is_url) ? (num_runs - run - 1) : run,
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| - &run_start_int, &run_length_int);
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| - DCHECK_GT(run_length_int, 0);
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| - runs.push_back(RunData());
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| - RunData* current_run = &runs.back();
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| - current_run->run_start = run_start_int;
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| - const size_t run_end = current_run->run_start + run_length_int;
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| - current_run->visual_order = run;
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| - current_run->is_rtl = !is_url && (run_direction == UBIDI_RTL);
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| -
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| - // Compute classifications for this run.
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| - for (size_t i = 0; i < classifications.size(); ++i) {
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| - const size_t text_start =
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| - std::max(classifications[i].offset, current_run->run_start);
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| - if (text_start >= run_end)
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| - break; // We're past the last classification in the run.
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| -
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| - const size_t text_end = (i < (classifications.size() - 1)) ?
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| - std::min(classifications[i + 1].offset, run_end) : run_end;
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| - if (text_end <= current_run->run_start)
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| - continue; // We haven't reached the first classification in the run.
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| -
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| - render_texts.push_back(gfx::RenderText::CreateInstance());
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| - gfx::RenderText* render_text = render_texts.back();
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| - current_run->classifications.push_back(render_text);
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| - render_text->SetText(text.substr(text_start, text_end - text_start));
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| - render_text->SetFontList(font_list_);
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| -
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| - // Calculate style-related data.
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| - if (classifications[i].style & ACMatchClassification::MATCH)
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| - render_text->SetStyle(gfx::BOLD, true);
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| - const ResultViewState state = GetState();
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| - if (classifications[i].style & ACMatchClassification::URL)
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| - render_text->SetColor(GetColor(state, URL));
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| - else if (classifications[i].style & ACMatchClassification::DIM)
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| - render_text->SetColor(GetColor(state, DIMMED_TEXT));
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| - else
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| - render_text->SetColor(GetColor(state, force_dim ? DIMMED_TEXT : TEXT));
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| -
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| - current_run->pixel_width += render_text->GetStringSize().width();
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| - }
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| - DCHECK(!current_run->classifications.empty());
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| - }
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| - DCHECK(!runs.empty());
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| -
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| - // Sort into logical order so we can elide logically.
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| - std::sort(runs.begin(), runs.end(), &SortRunsLogically);
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| -
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| - // Now determine what to elide, if anything. Several subtle points:
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| - // * Because we have the run data, we can get edge cases correct, like
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| - // whether to place an ellipsis before or after the end of a run when the
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| - // text needs to be elided at the run boundary.
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| - // * The "or one before it" comments below refer to cases where an earlier
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| - // classification fits completely, but leaves too little space for an
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| - // ellipsis that turns out to be needed later. These cases are commented
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| - // more completely in Elide().
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| - int remaining_width = mirroring_context_->remaining_width(x);
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| - for (Runs::iterator i(runs.begin()); i != runs.end(); ++i) {
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| - if (i->pixel_width > remaining_width) {
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| - // This run or one before it needs to be elided.
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| - for (Classifications::iterator j(i->classifications.begin());
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| - j != i->classifications.end(); ++j) {
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| - const int width = (*j)->GetStringSize().width();
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| - if (width > remaining_width) {
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| - // This classification or one before it needs to be elided. Erase all
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| - // further classifications and runs so Elide() can simply reverse-
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| - // iterate over everything to find the specific classification to
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| - // elide.
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| - i->classifications.erase(++j, i->classifications.end());
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| - runs.erase(++i, runs.end());
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| - Elide(&runs, remaining_width);
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| - break;
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| - }
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| - remaining_width -= width;
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| - }
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| + scoped_ptr<gfx::RenderText> render_text(gfx::RenderText::CreateInstance());
|
| + const size_t text_length = text.length();
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| + render_text->SetText(text);
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| + render_text->SetFontList(font_list_);
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| + render_text->SetMultiline(false);
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| + render_text->SetCursorEnabled(false);
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| + if (is_url)
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| + render_text->SetDirectionalityMode(gfx::DIRECTIONALITY_FORCE_LTR);
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| +
|
| + // Apply classifications.
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| + for (size_t i = 0; i < classifications.size(); ++i) {
|
| + const size_t text_start = classifications[i].offset;
|
| + if (text_start >= text_length)
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| break;
|
| - }
|
| - remaining_width -= i->pixel_width;
|
| - }
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|
|
| - // Sort back into visual order so we can display the runs correctly.
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| - std::sort(runs.begin(), runs.end(), &SortRunsVisually);
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| -
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| - // Draw the runs.
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| - for (Runs::iterator i(runs.begin()); i != runs.end(); ++i) {
|
| - const bool reverse_visible_order = (i->is_rtl != base::i18n::IsRTL());
|
| - if (reverse_visible_order)
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| - std::reverse(i->classifications.begin(), i->classifications.end());
|
| - for (Classifications::const_iterator j(i->classifications.begin());
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| - j != i->classifications.end(); ++j) {
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| - const gfx::Size size = (*j)->GetStringSize();
|
| - // Align the text runs to a common baseline.
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| - const gfx::Rect rect(
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| - mirroring_context_->mirrored_left_coord(x, x + size.width()), y,
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| - size.width(), height());
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| - (*j)->SetDisplayRect(rect);
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| - (*j)->Draw(canvas);
|
| - x += size.width();
|
| - }
|
| + const size_t text_end = (i < (classifications.size() - 1)) ?
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| + std::min(classifications[i + 1].offset, text_length) : text_length;
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| + const gfx::Range current_range(text_start, text_end);
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| +
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| + // Calculate style-related data.
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| + if (classifications[i].style & ACMatchClassification::MATCH)
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| + render_text->ApplyStyle(gfx::BOLD, true, current_range);
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| +
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| + ColorKind colorKind = TEXT;
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| + if (classifications[i].style & ACMatchClassification::URL)
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| + colorKind = URL;
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| + else if (force_dim ||
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| + (classifications[i].style & ACMatchClassification::DIM))
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| + colorKind = DIMMED_TEXT;
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| + render_text->ApplyColor(GetColor(GetState(), colorKind), current_range);
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| }
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|
|
| - return x;
|
| -}
|
| + int remaining_width = mirroring_context_->remaining_width(x);
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|
|
| -void OmniboxResultView::Elide(Runs* runs, int remaining_width) const {
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| - // The complexity of this function is due to edge cases like the following:
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| - // We have 100 px of available space, an initial classification that takes 86
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| - // px, and a font that has a 15 px wide ellipsis character. Now if the first
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| - // classification is followed by several very narrow classifications (e.g. 3
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| - // px wide each), we don't know whether we need to elide or not at the time we
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| - // see the first classification -- it depends on how many subsequent
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| - // classifications follow, and some of those may be in the next run (or
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| - // several runs!). This is why instead we let our caller move forward until
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| - // we know we definitely need to elide, and then in this function we move
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| - // backward again until we find a string that we can successfully do the
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| - // eliding on.
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| - bool on_trailing_classification = true;
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| - for (Runs::reverse_iterator i(runs->rbegin()); i != runs->rend(); ++i) {
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| - for (Classifications::reverse_iterator j(i->classifications.rbegin());
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| - j != i->classifications.rend(); ++j) {
|
| - if (!on_trailing_classification) {
|
| - // We also add this classification's width (sans ellipsis) back to the
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| - // available width since we want to consider the available space we'll
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| - // have when we draw this classification.
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| - remaining_width += (*j)->GetStringSize().width();
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| -
|
| - // If we reached here, we couldn't fit an ellipsis in the space taken by
|
| - // the previous classifications we looped over (see comments at bottom
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| - // of loop). Append one here to represent those elided portions.
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| - (*j)->SetText((*j)->text() + kEllipsis);
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| - }
|
| - on_trailing_classification = false;
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| -
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| - // Can we fit at least an ellipsis?
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| - gfx::Font font((*j)->GetStyle(gfx::BOLD) ?
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| - (*j)->GetPrimaryFont().DeriveFont(0, gfx::Font::BOLD) :
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| - (*j)->GetPrimaryFont());
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| - string16 elided_text(
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| - gfx::ElideText((*j)->text(), font, remaining_width,
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| - gfx::ELIDE_AT_END));
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| - Classifications::reverse_iterator prior(j + 1);
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| - const bool on_leading_classification =
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| - (prior == i->classifications.rend());
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| - if (elided_text.empty() && (remaining_width >= ellipsis_width_) &&
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| - on_leading_classification) {
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| - // Edge case: This classification is bold, we can't fit a bold ellipsis
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| - // but we can fit a normal one, and this is the first classification in
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| - // the run. We should display a lone normal ellipsis, because appending
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| - // one to the end of the previous run might put it in the wrong visual
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| - // location (if the previous run is reversed from the normal visual
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| - // order).
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| - // NOTE: If this isn't the first classification in the run, we don't
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| - // need to bother with this; see note below.
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| - elided_text = kEllipsis;
|
| - }
|
| - if (!elided_text.empty()) {
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| - // Success. Elide this classification and stop.
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| - (*j)->SetText(elided_text);
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| -
|
| - // If we could only fit an ellipsis, then only make it bold if there was
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| - // an immediate prior classification in this run that was also bold, or
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| - // it will look orphaned.
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| - if ((*j)->GetStyle(gfx::BOLD) && (elided_text.length() == 1) &&
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| - (on_leading_classification || !(*prior)->GetStyle(gfx::BOLD)))
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| - (*j)->SetStyle(gfx::BOLD, false);
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| -
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| - // Erase any other classifications that come after the elided one.
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| - i->classifications.erase(j.base(), i->classifications.end());
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| - runs->erase(i.base(), runs->end());
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| - return;
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| - }
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| -
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| - // We couldn't fit an ellipsis. Move back one classification,
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| - // append an ellipsis, and try again.
|
| - // NOTE: In the edge case that a bold ellipsis doesn't fit but a
|
| - // normal one would, and we reach here, then there is a previous
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| - // classification in this run, and so either:
|
| - // * It's normal, and will be able to draw successfully with the
|
| - // ellipsis we'll append to it, or
|
| - // * It is also bold, in which case we don't want to fall back
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| - // to a normal ellipsis anyway (see comment above).
|
| - }
|
| + // No need to try anything if we can't even show a solitary character.
|
| + if ((text_length == 1) &&
|
| + (remaining_width < render_text->GetContentWidth())) {
|
| + return x;
|
| }
|
|
|
| - // We couldn't draw anything.
|
| - runs->clear();
|
| + if (render_text->GetContentWidth() > remaining_width)
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| + render_text->SetElideBehavior(gfx::ELIDE_AT_END);
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| +
|
| + // Set the display rect to trigger eliding.
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| + render_text->SetDisplayRect(gfx::Rect(
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| + mirroring_context_->mirrored_left_coord(x, x + remaining_width), y,
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| + remaining_width, height()));
|
| + render_text->set_clip_to_display_rect(true);
|
| + render_text->Draw(canvas);
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| +
|
| + // Need to call GetContentWidth again as the SetDisplayRect may modify it.
|
| + return x + render_text->GetContentWidth();
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| }
|
|
|
| void OmniboxResultView::Layout() {
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|
|