| Index: resolution_selector.cc
|
| diff --git a/resolution_selector.cc b/resolution_selector.cc
|
| new file mode 100644
|
| index 0000000000000000000000000000000000000000..43c5d6fe9f191a2f2f6f70ac56715e637c453d19
|
| --- /dev/null
|
| +++ b/resolution_selector.cc
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| @@ -0,0 +1,89 @@
|
| +// Copyright (c) 2011 The Chromium OS Authors. All rights reserved.
|
| +// Use of this source code is governed by a BSD-style license that can be
|
| +// found in the LICENSE file.
|
| +
|
| +#include "power_manager/resolution_selector.h"
|
| +
|
| +#include "base/logging.h"
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| +
|
| +namespace power_manager {
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| +
|
| +using std::string;
|
| +using std::vector;
|
| +
|
| +const int ResolutionSelector::kMaxProjectorPixels = 1280 * 720;
|
| +
|
| +bool ResolutionSelector::FindBestResolutions(
|
| + const vector<Mode>& lcd_modes,
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| + const vector<Mode>& external_modes,
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| + Mode* lcd_resolution,
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| + Mode* external_resolution,
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| + Mode* screen_resolution) {
|
| + DCHECK(!lcd_modes.empty());
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| +
|
| + // If there's no external display, just use the highest resolution
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| + // available from the LCD.
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| + if (external_modes.empty()) {
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| + *lcd_resolution = *screen_resolution = lcd_modes[0];
|
| + external_resolution->name.clear();
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| + return true;
|
| + }
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| +
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| + const int max_lcd_size = lcd_modes[0].width * lcd_modes[0].height;
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| + const int max_external_size =
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| + external_modes[0].width * external_modes[0].height;
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| +
|
| + if (max_lcd_size >= max_external_size) {
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| + return FindNearestResolutions(
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| + lcd_modes, external_modes,
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| + lcd_resolution, external_resolution, screen_resolution);
|
| + } else {
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| + // If the external output is large enough that we think it's a monitor
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| + // (as opposed to a projector), then we just use its max resolution and
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| + // forget about trying to choose a screen size that'll fit on the
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| + // built-in display.
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| + if (max_external_size > kMaxProjectorPixels) {
|
| + *external_resolution = *screen_resolution = external_modes[0];
|
| + lcd_resolution->name.clear();
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| + return true;
|
| + }
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| + return FindNearestResolutions(
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| + external_modes, lcd_modes,
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| + external_resolution, lcd_resolution, screen_resolution);
|
| + }
|
| +}
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| +
|
| +bool ResolutionSelector::FindNearestResolutions(
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| + const vector<Mode>& larger_device_modes,
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| + const vector<Mode>& smaller_device_modes,
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| + Mode* larger_resolution,
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| + Mode* smaller_resolution,
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| + Mode* screen_resolution) {
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| + DCHECK(!larger_device_modes.empty());
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| + DCHECK(!smaller_device_modes.empty());
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| + DCHECK(larger_resolution);
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| + DCHECK(smaller_resolution);
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| + DCHECK(screen_resolution);
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| +
|
| + // Start with the best that the smaller device has to offer.
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| + *smaller_resolution = smaller_device_modes[0];
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| + *screen_resolution = *smaller_resolution;
|
| + int smaller_width = smaller_device_modes[0].width;
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| + int smaller_height = smaller_device_modes[0].height;
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| +
|
| + for (vector<Mode>::const_reverse_iterator it =
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| + larger_device_modes.rbegin();
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| + it != larger_device_modes.rend(); ++it) {
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| + if (it->width >= smaller_width && it->height >= smaller_height) {
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| + *larger_resolution = *it;
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| + return true;
|
| + }
|
| + }
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| +
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| + LOG(WARNING) << "Failed to find a resolution from larger device "
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| + << "exceeding chosen resolution from smaller device ("
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| + << smaller_resolution->name << ")";
|
| + return false;
|
| +}
|
| +
|
| +} // namespace power_manager
|
|
|