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[chromium-blink-merge.git] / ash / display / display_change_observer_chromeos.cc
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1 // Copyright 2013 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
5 #include "ash/display/display_change_observer_chromeos.h"
7 #include <algorithm>
8 #include <map>
9 #include <set>
10 #include <string>
11 #include <utility>
12 #include <vector>
14 #include "ash/ash_switches.h"
15 #include "ash/display/display_info.h"
16 #include "ash/display/display_layout_store.h"
17 #include "ash/display/display_manager.h"
18 #include "ash/display/display_util.h"
19 #include "ash/shell.h"
20 #include "ash/touch/touchscreen_util.h"
21 #include "base/command_line.h"
22 #include "base/logging.h"
23 #include "grit/ash_strings.h"
24 #include "ui/base/l10n/l10n_util.h"
25 #include "ui/base/user_activity/user_activity_detector.h"
26 #include "ui/compositor/dip_util.h"
27 #include "ui/display/types/display_mode.h"
28 #include "ui/display/types/display_snapshot.h"
29 #include "ui/display/util/display_util.h"
30 #include "ui/events/devices/device_data_manager.h"
31 #include "ui/events/devices/touchscreen_device.h"
32 #include "ui/gfx/display.h"
34 namespace ash {
36 using ui::DisplayConfigurator;
38 namespace {
40 // The DPI threshold to determine the device scale factor.
41 // DPI higher than |dpi| will use |device_scale_factor|.
42 struct DeviceScaleFactorDPIThreshold {
43 float dpi;
44 float device_scale_factor;
47 const DeviceScaleFactorDPIThreshold kThresholdTable[] = {
48 {200.0f, 2.0f},
49 {150.0f, 1.25f},
50 {0.0f, 1.0f},
53 // 1 inch in mm.
54 const float kInchInMm = 25.4f;
56 // The minimum pixel width whose monitor can be called as '4K'.
57 const int kMinimumWidthFor4K = 3840;
59 // The list of device scale factors (in addition to 1.0f) which is
60 // available in extrenal large monitors.
61 const float kAdditionalDeviceScaleFactorsFor4k[] = {1.25f, 2.0f};
63 } // namespace
65 // static
66 std::vector<DisplayMode> DisplayChangeObserver::GetInternalDisplayModeList(
67 const DisplayInfo& display_info,
68 const DisplayConfigurator::DisplayState& output) {
69 const ui::DisplayMode* ui_native_mode = output.display->native_mode();
70 DisplayMode native_mode(ui_native_mode->size(),
71 ui_native_mode->refresh_rate(),
72 ui_native_mode->is_interlaced(),
73 true);
74 native_mode.device_scale_factor = display_info.device_scale_factor();
76 return CreateInternalDisplayModeList(native_mode);
79 // static
80 std::vector<DisplayMode> DisplayChangeObserver::GetExternalDisplayModeList(
81 const DisplayConfigurator::DisplayState& output) {
82 typedef std::map<std::pair<int, int>, DisplayMode> DisplayModeMap;
83 DisplayModeMap display_mode_map;
85 DisplayMode native_mode;
86 for (std::vector<const ui::DisplayMode*>::const_iterator it =
87 output.display->modes().begin();
88 it != output.display->modes().end();
89 ++it) {
90 const ui::DisplayMode& mode_info = **it;
91 const std::pair<int, int> size(mode_info.size().width(),
92 mode_info.size().height());
93 const DisplayMode display_mode(mode_info.size(),
94 mode_info.refresh_rate(),
95 mode_info.is_interlaced(),
96 output.display->native_mode() == *it);
97 if (display_mode.native)
98 native_mode = display_mode;
100 // Add the display mode if it isn't already present and override interlaced
101 // display modes with non-interlaced ones.
102 DisplayModeMap::iterator display_mode_it = display_mode_map.find(size);
103 if (display_mode_it == display_mode_map.end())
104 display_mode_map.insert(std::make_pair(size, display_mode));
105 else if (display_mode_it->second.interlaced && !display_mode.interlaced)
106 display_mode_it->second = display_mode;
109 std::vector<DisplayMode> display_mode_list;
110 for (DisplayModeMap::const_iterator iter = display_mode_map.begin();
111 iter != display_mode_map.end();
112 ++iter) {
113 display_mode_list.push_back(iter->second);
116 if (output.display->native_mode()) {
117 const std::pair<int, int> size(native_mode.size.width(),
118 native_mode.size.height());
119 DisplayModeMap::iterator it = display_mode_map.find(size);
120 DCHECK(it != display_mode_map.end())
121 << "Native mode must be part of the mode list.";
123 // If the native mode was replaced re-add it.
124 if (!it->second.native)
125 display_mode_list.push_back(native_mode);
128 if (native_mode.size.width() >= kMinimumWidthFor4K) {
129 for (size_t i = 0; i < arraysize(kAdditionalDeviceScaleFactorsFor4k);
130 ++i) {
131 DisplayMode mode = native_mode;
132 mode.device_scale_factor = kAdditionalDeviceScaleFactorsFor4k[i];
133 mode.native = false;
134 display_mode_list.push_back(mode);
138 return display_mode_list;
141 DisplayChangeObserver::DisplayChangeObserver() {
142 Shell::GetInstance()->AddShellObserver(this);
143 ui::DeviceDataManager::GetInstance()->AddObserver(this);
146 DisplayChangeObserver::~DisplayChangeObserver() {
147 ui::DeviceDataManager::GetInstance()->RemoveObserver(this);
148 Shell::GetInstance()->RemoveShellObserver(this);
151 ui::MultipleDisplayState DisplayChangeObserver::GetStateForDisplayIds(
152 const std::vector<int64>& display_ids) const {
153 CHECK_EQ(2U, display_ids.size());
154 DisplayIdPair pair = std::make_pair(display_ids[0], display_ids[1]);
155 DisplayLayout layout = Shell::GetInstance()->display_manager()->
156 layout_store()->GetRegisteredDisplayLayout(pair);
157 return layout.mirrored ? ui::MULTIPLE_DISPLAY_STATE_DUAL_MIRROR :
158 ui::MULTIPLE_DISPLAY_STATE_DUAL_EXTENDED;
161 bool DisplayChangeObserver::GetResolutionForDisplayId(int64 display_id,
162 gfx::Size* size) const {
163 DisplayMode mode;
164 if (!Shell::GetInstance()->display_manager()->GetSelectedModeForDisplayId(
165 display_id, &mode))
166 return false;
168 *size = mode.size;
169 return true;
172 void DisplayChangeObserver::OnDisplayModeChanged(
173 const std::vector<DisplayConfigurator::DisplayState>& display_states) {
174 std::vector<DisplayInfo> displays;
175 std::set<int64> ids;
176 for (size_t i = 0; i < display_states.size(); ++i) {
177 const DisplayConfigurator::DisplayState& state = display_states[i];
179 if (state.display->type() == ui::DISPLAY_CONNECTION_TYPE_INTERNAL) {
180 if (gfx::Display::InternalDisplayId() ==
181 gfx::Display::kInvalidDisplayID) {
182 gfx::Display::SetInternalDisplayId(state.display->display_id());
183 } else {
184 #if defined(USE_OZONE)
185 // TODO(dnicoara) Remove when Ozone can properly perform the initial
186 // display configuration.
187 gfx::Display::SetInternalDisplayId(state.display->display_id());
188 #endif
189 DCHECK_EQ(gfx::Display::InternalDisplayId(),
190 state.display->display_id());
194 const ui::DisplayMode* mode_info = state.display->current_mode();
195 if (!mode_info)
196 continue;
198 float device_scale_factor = 1.0f;
199 if (state.display->type() == ui::DISPLAY_CONNECTION_TYPE_INTERNAL) {
200 if (!ui::IsDisplaySizeBlackListed(state.display->physical_size())) {
201 device_scale_factor =
202 FindDeviceScaleFactor((kInchInMm * mode_info->size().width() /
203 state.display->physical_size().width()));
205 } else {
206 DisplayMode mode;
207 if (Shell::GetInstance()->display_manager()->GetSelectedModeForDisplayId(
208 state.display->display_id(), &mode)) {
209 device_scale_factor = mode.device_scale_factor;
212 gfx::Rect display_bounds(state.display->origin(), mode_info->size());
214 std::string name =
215 state.display->type() == ui::DISPLAY_CONNECTION_TYPE_INTERNAL ?
216 l10n_util::GetStringUTF8(IDS_ASH_INTERNAL_DISPLAY_NAME) :
217 state.display->display_name();
218 if (name.empty())
219 name = l10n_util::GetStringUTF8(IDS_ASH_STATUS_TRAY_UNKNOWN_DISPLAY_NAME);
221 bool has_overscan = state.display->has_overscan();
222 int64 id = state.display->display_id();
223 ids.insert(id);
225 displays.push_back(DisplayInfo(id, name, has_overscan));
226 DisplayInfo& new_info = displays.back();
227 new_info.set_device_scale_factor(device_scale_factor);
228 new_info.SetBounds(display_bounds);
229 new_info.set_native(true);
230 new_info.set_is_aspect_preserving_scaling(
231 state.display->is_aspect_preserving_scaling());
233 std::vector<DisplayMode> display_modes =
234 (state.display->type() == ui::DISPLAY_CONNECTION_TYPE_INTERNAL) ?
235 GetInternalDisplayModeList(new_info, state) :
236 GetExternalDisplayModeList(state);
237 new_info.SetDisplayModes(display_modes);
239 new_info.set_available_color_profiles(
240 Shell::GetInstance()
241 ->display_configurator()
242 ->GetAvailableColorCalibrationProfiles(id));
245 AssociateTouchscreens(
246 &displays, ui::DeviceDataManager::GetInstance()->touchscreen_devices());
247 // DisplayManager can be null during the boot.
248 Shell::GetInstance()->display_manager()->OnNativeDisplaysChanged(displays);
250 // For the purposes of user activity detection, ignore synthetic mouse events
251 // that are triggered by screen resizes: http://crbug.com/360634
252 ui::UserActivityDetector* user_activity_detector =
253 ui::UserActivityDetector::Get();
254 if (user_activity_detector)
255 user_activity_detector->OnDisplayPowerChanging();
258 void DisplayChangeObserver::OnAppTerminating() {
259 #if defined(USE_ASH)
260 // Stop handling display configuration events once the shutdown
261 // process starts. crbug.com/177014.
262 Shell::GetInstance()->display_configurator()->PrepareForExit();
263 #endif
266 // static
267 float DisplayChangeObserver::FindDeviceScaleFactor(float dpi) {
268 for (size_t i = 0; i < arraysize(kThresholdTable); ++i) {
269 if (dpi > kThresholdTable[i].dpi)
270 return kThresholdTable[i].device_scale_factor;
272 return 1.0f;
275 void DisplayChangeObserver::OnTouchscreenDeviceConfigurationChanged() {
276 OnDisplayModeChanged(
277 Shell::GetInstance()->display_configurator()->cached_displays());
280 void DisplayChangeObserver::OnKeyboardDeviceConfigurationChanged() {
283 } // namespace ash