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WSCompositor: Allow a compose to bypass the timer when it first happens
d66fa60fcf
introduced the use of a timer
to coalesce screen updates. This is OK, but it does introduce update
latency.
To help mitigate the impact of this, we now have a second (immediate)
timer. When a compose pass is first triggered, the immediate timer will
allow the compose to happen on the next spin of the event loop (so, only
coalescing updates across a single event loop pass). Any updates that
trigger while the delayed timer is running, though, will be delayed to
that (~60fps) timer.
This fixes #103.
This commit is contained in:
parent
8df3e2516f
commit
9b86eb9fad
Notes:
sideshowbarker
2024-07-19 13:55:46 +09:00
Author: https://github.com/rburchell Commit: https://github.com/SerenityOS/serenity/commit/9b86eb9fadc Pull-request: https://github.com/SerenityOS/serenity/pull/116
3 changed files with 32 additions and 5 deletions
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@ -30,12 +30,20 @@ WSCompositor::WSCompositor()
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m_compose_timer.on_timeout = [=]() {
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m_compose_timer.on_timeout = [=]() {
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#if defined(COMPOSITOR_DEBUG)
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#if defined(COMPOSITOR_DEBUG)
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dbgprintf("WSCompositor: frame callback\n");
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dbgprintf("WSCompositor: delayed frame callback: %d rects\n", m_dirty_rects.size());
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#endif
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#endif
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compose();
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compose();
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};
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};
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m_compose_timer.set_single_shot(true);
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m_compose_timer.set_single_shot(true);
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m_compose_timer.set_interval(1000 / 60);
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m_compose_timer.set_interval(1000 / 60);
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m_immediate_compose_timer.on_timeout = [=]() {
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#if defined(COMPOSITOR_DEBUG)
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dbgprintf("WSCompositor: immediate frame callback: %d rects\n", m_dirty_rects.size());
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#endif
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compose();
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};
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m_immediate_compose_timer.set_single_shot(true);
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m_immediate_compose_timer.set_interval(0);
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}
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}
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void WSCompositor::compose()
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void WSCompositor::compose()
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@ -43,6 +51,12 @@ void WSCompositor::compose()
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auto& wm = WSWindowManager::the();
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auto& wm = WSWindowManager::the();
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auto dirty_rects = move(m_dirty_rects);
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auto dirty_rects = move(m_dirty_rects);
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if (dirty_rects.size() == 0) {
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// nothing dirtied since the last compose pass.
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return;
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}
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dirty_rects.add(Rect::intersection(m_last_geometry_label_rect, WSScreen::the().rect()));
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dirty_rects.add(Rect::intersection(m_last_geometry_label_rect, WSScreen::the().rect()));
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dirty_rects.add(Rect::intersection(m_last_cursor_rect, WSScreen::the().rect()));
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dirty_rects.add(Rect::intersection(m_last_cursor_rect, WSScreen::the().rect()));
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dirty_rects.add(Rect::intersection(current_cursor_rect(), WSScreen::the().rect()));
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dirty_rects.add(Rect::intersection(current_cursor_rect(), WSScreen::the().rect()));
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@ -161,11 +175,22 @@ void WSCompositor::invalidate(const Rect& a_rect)
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if (rect.is_empty())
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if (rect.is_empty())
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return;
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return;
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#if defined(COMPOSITOR_DEBUG)
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dbgprintf("Invalidated: %dx%d %dx%d\n", a_rect.x(), a_rect.y(), a_rect.width(), a_rect.height());
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#endif
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m_dirty_rects.add(rect);
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m_dirty_rects.add(rect);
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m_compose_timer.start();
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// We delay composition by a timer interval, but to not affect latency too
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// much, if a pending compose is not already scheduled, we also schedule an
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// immediate compose the next spin of the event loop.
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if (!m_compose_timer.is_active()) {
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#if defined(COMPOSITOR_DEBUG)
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dbgprintf("Invalidated (starting immediate frame): %dx%d %dx%d\n", a_rect.x(), a_rect.y(), a_rect.width(), a_rect.height());
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#endif
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m_compose_timer.start();
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m_immediate_compose_timer.start();
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} else {
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#if defined(COMPOSITOR_DEBUG)
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dbgprintf("Invalidated (frame callback pending): %dx%d %dx%d\n", a_rect.x(), a_rect.y(), a_rect.width(), a_rect.height());
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#endif
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}
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}
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}
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bool WSCompositor::set_wallpaper(const String& path, Function<void(bool)>&& callback)
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bool WSCompositor::set_wallpaper(const String& path, Function<void(bool)>&& callback)
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@ -40,6 +40,7 @@ private:
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unsigned m_compose_count { 0 };
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unsigned m_compose_count { 0 };
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unsigned m_flush_count { 0 };
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unsigned m_flush_count { 0 };
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CTimer m_compose_timer;
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CTimer m_compose_timer;
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CTimer m_immediate_compose_timer;
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bool m_flash_flush { false };
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bool m_flash_flush { false };
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bool m_buffers_are_flipped { false };
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bool m_buffers_are_flipped { false };
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@ -12,6 +12,7 @@ public:
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void add(const Rect&);
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void add(const Rect&);
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bool is_empty() const { return m_rects.is_empty(); }
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bool is_empty() const { return m_rects.is_empty(); }
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int size() const { return m_rects.size(); }
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void clear() { m_rects.clear(); }
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void clear() { m_rects.clear(); }
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void clear_with_capacity() { m_rects.clear_with_capacity(); }
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void clear_with_capacity() { m_rects.clear_with_capacity(); }
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