| OLD | NEW |
| 1 // Copyright (c) 2013 The Chromium Authors. All rights reserved. | 1 // Copyright (c) 2013 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 "ash/common/display/display_info.h" | 5 #include "ui/display/manager/managed_display_info.h" |
| 6 | 6 |
| 7 #include <stdio.h> | 7 #include <stdio.h> |
| 8 | 8 |
| 9 #include <algorithm> | 9 #include <algorithm> |
| 10 #include <string> | 10 #include <string> |
| 11 #include <vector> | 11 #include <vector> |
| 12 | 12 |
| 13 #include "base/logging.h" | 13 #include "base/logging.h" |
| 14 #include "base/strings/string_number_conversions.h" | 14 #include "base/strings/string_number_conversions.h" |
| 15 #include "base/strings/string_split.h" | 15 #include "base/strings/string_split.h" |
| 16 #include "base/strings/string_util.h" | 16 #include "base/strings/string_util.h" |
| 17 #include "base/strings/stringprintf.h" | 17 #include "base/strings/stringprintf.h" |
| 18 #include "ui/display/display.h" | 18 #include "ui/display/display.h" |
| 19 #include "ui/gfx/geometry/size_conversions.h" | 19 #include "ui/gfx/geometry/size_conversions.h" |
| 20 #include "ui/gfx/geometry/size_f.h" | 20 #include "ui/gfx/geometry/size_f.h" |
| 21 | 21 |
| 22 #if defined(OS_WIN) | 22 #if defined(OS_WIN) |
| 23 #include <windows.h> | 23 #include <windows.h> |
| 24 #include "ui/display/win/dpi.h" | 24 #include "ui/display/win/dpi.h" |
| 25 #endif | 25 #endif |
| 26 | 26 |
| 27 namespace ash { | 27 namespace ui { |
| 28 namespace { | 28 namespace { |
| 29 | 29 |
| 30 // Use larger than max int to catch overflow early. | 30 // Use larger than max int to catch overflow early. |
| 31 const int64_t kSynthesizedDisplayIdStart = 2200000000LL; | 31 const int64_t kSynthesizedDisplayIdStart = 2200000000LL; |
| 32 | 32 |
| 33 int64_t synthesized_display_id = kSynthesizedDisplayIdStart; | 33 int64_t synthesized_display_id = kSynthesizedDisplayIdStart; |
| 34 | 34 |
| 35 const float kDpi96 = 96.0; | 35 const float kDpi96 = 96.0; |
| 36 bool use_125_dsf_for_ui_scaling = true; | 36 bool use_125_dsf_for_ui_scaling = true; |
| 37 | 37 |
| (...skipping 16 matching lines...) Expand all Loading... |
| 54 return false; | 54 return false; |
| 55 } | 55 } |
| 56 | 56 |
| 57 // Display mode list is sorted by: | 57 // Display mode list is sorted by: |
| 58 // * the area in pixels in ascending order | 58 // * the area in pixels in ascending order |
| 59 // * refresh rate in descending order | 59 // * refresh rate in descending order |
| 60 struct ManagedDisplayModeSorter { | 60 struct ManagedDisplayModeSorter { |
| 61 explicit ManagedDisplayModeSorter(bool is_internal) | 61 explicit ManagedDisplayModeSorter(bool is_internal) |
| 62 : is_internal(is_internal) {} | 62 : is_internal(is_internal) {} |
| 63 | 63 |
| 64 bool operator()(const scoped_refptr<ManagedDisplayMode>& a, | 64 bool operator()(const scoped_refptr<ui::ManagedDisplayMode>& a, |
| 65 const scoped_refptr<ManagedDisplayMode>& b) { | 65 const scoped_refptr<ui::ManagedDisplayMode>& b) { |
| 66 gfx::Size size_a_dip = a->GetSizeInDIP(is_internal); | 66 gfx::Size size_a_dip = a->GetSizeInDIP(is_internal); |
| 67 gfx::Size size_b_dip = b->GetSizeInDIP(is_internal); | 67 gfx::Size size_b_dip = b->GetSizeInDIP(is_internal); |
| 68 if (size_a_dip.GetArea() == size_b_dip.GetArea()) | 68 if (size_a_dip.GetArea() == size_b_dip.GetArea()) |
| 69 return (a->refresh_rate() > b->refresh_rate()); | 69 return (a->refresh_rate() > b->refresh_rate()); |
| 70 return (size_a_dip.GetArea() < size_b_dip.GetArea()); | 70 return (size_a_dip.GetArea() < size_b_dip.GetArea()); |
| 71 } | 71 } |
| 72 | 72 |
| 73 bool is_internal; | 73 bool is_internal; |
| 74 }; | 74 }; |
| 75 | 75 |
| (...skipping 46 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 122 // DSF=1.25 is special on internal display. The screen is drawn with DSF=1.25 | 122 // DSF=1.25 is special on internal display. The screen is drawn with DSF=1.25 |
| 123 // but it doesn't affect the screen size computation. | 123 // but it doesn't affect the screen size computation. |
| 124 if (use_125_dsf_for_ui_scaling && is_internal && | 124 if (use_125_dsf_for_ui_scaling && is_internal && |
| 125 device_scale_factor_ == 1.25f) | 125 device_scale_factor_ == 1.25f) |
| 126 return gfx::ToFlooredSize(size_dip); | 126 return gfx::ToFlooredSize(size_dip); |
| 127 size_dip.Scale(1.0f / device_scale_factor_); | 127 size_dip.Scale(1.0f / device_scale_factor_); |
| 128 return gfx::ToFlooredSize(size_dip); | 128 return gfx::ToFlooredSize(size_dip); |
| 129 } | 129 } |
| 130 | 130 |
| 131 bool ManagedDisplayMode::IsEquivalent( | 131 bool ManagedDisplayMode::IsEquivalent( |
| 132 const scoped_refptr<ManagedDisplayMode>& other) const { | 132 const scoped_refptr<ui::ManagedDisplayMode>& other) const { |
| 133 const float kEpsilon = 0.0001f; | 133 const float kEpsilon = 0.0001f; |
| 134 return size_ == other->size_ && | 134 return size_ == other->size_ && |
| 135 std::abs(ui_scale_ - other->ui_scale_) < kEpsilon && | 135 std::abs(ui_scale_ - other->ui_scale_) < kEpsilon && |
| 136 std::abs(device_scale_factor_ - other->device_scale_factor_) < | 136 std::abs(device_scale_factor_ - other->device_scale_factor_) < |
| 137 kEpsilon; | 137 kEpsilon; |
| 138 } | 138 } |
| 139 | 139 |
| 140 // static | 140 // static |
| 141 DisplayInfo DisplayInfo::CreateFromSpec(const std::string& spec) { | 141 ManagedDisplayInfo ManagedDisplayInfo::CreateFromSpec(const std::string& spec) { |
| 142 return CreateFromSpecWithID(spec, display::Display::kInvalidDisplayID); | 142 return CreateFromSpecWithID(spec, display::Display::kInvalidDisplayID); |
| 143 } | 143 } |
| 144 | 144 |
| 145 // static | 145 // static |
| 146 DisplayInfo DisplayInfo::CreateFromSpecWithID(const std::string& spec, | 146 ManagedDisplayInfo ManagedDisplayInfo::CreateFromSpecWithID( |
| 147 int64_t id) { | 147 const std::string& spec, |
| 148 int64_t id) { |
| 148 #if defined(OS_WIN) | 149 #if defined(OS_WIN) |
| 149 gfx::Rect bounds_in_native( | 150 gfx::Rect bounds_in_native( |
| 150 gfx::Size(GetSystemMetrics(SM_CXSCREEN), GetSystemMetrics(SM_CYSCREEN))); | 151 gfx::Size(GetSystemMetrics(SM_CXSCREEN), GetSystemMetrics(SM_CYSCREEN))); |
| 151 #else | 152 #else |
| 152 // Default bounds for a display. | 153 // Default bounds for a display. |
| 153 const int kDefaultHostWindowX = 200; | 154 const int kDefaultHostWindowX = 200; |
| 154 const int kDefaultHostWindowY = 200; | 155 const int kDefaultHostWindowY = 200; |
| 155 const int kDefaultHostWindowWidth = 1366; | 156 const int kDefaultHostWindowWidth = 1366; |
| 156 const int kDefaultHostWindowHeight = 768; | 157 const int kDefaultHostWindowHeight = 768; |
| 157 gfx::Rect bounds_in_native(kDefaultHostWindowX, kDefaultHostWindowY, | 158 gfx::Rect bounds_in_native(kDefaultHostWindowX, kDefaultHostWindowY, |
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| 232 // Use mode with largest area and highest refresh rate as native. | 233 // Use mode with largest area and highest refresh rate as native. |
| 233 largest_area = size.GetArea(); | 234 largest_area = size.GetArea(); |
| 234 highest_refresh_rate = refresh_rate; | 235 highest_refresh_rate = refresh_rate; |
| 235 native_mode = i; | 236 native_mode = i; |
| 236 } | 237 } |
| 237 display_modes.push_back(make_scoped_refptr( | 238 display_modes.push_back(make_scoped_refptr( |
| 238 new ManagedDisplayMode(size, refresh_rate, is_interlaced, false, | 239 new ManagedDisplayMode(size, refresh_rate, is_interlaced, false, |
| 239 1.0, device_scale_factor))); | 240 1.0, device_scale_factor))); |
| 240 } | 241 } |
| 241 } | 242 } |
| 242 scoped_refptr<ManagedDisplayMode> dm = display_modes[native_mode]; | 243 scoped_refptr<ui::ManagedDisplayMode> dm = display_modes[native_mode]; |
| 243 display_modes[native_mode] = new ManagedDisplayMode( | 244 display_modes[native_mode] = new ManagedDisplayMode( |
| 244 dm->size(), dm->refresh_rate(), dm->is_interlaced(), true, | 245 dm->size(), dm->refresh_rate(), dm->is_interlaced(), true, |
| 245 dm->ui_scale(), dm->device_scale_factor()); | 246 dm->ui_scale(), dm->device_scale_factor()); |
| 246 } | 247 } |
| 247 | 248 |
| 248 if (id == display::Display::kInvalidDisplayID) | 249 if (id == display::Display::kInvalidDisplayID) |
| 249 id = synthesized_display_id++; | 250 id = synthesized_display_id++; |
| 250 DisplayInfo display_info( | 251 ui::ManagedDisplayInfo display_info( |
| 251 id, base::StringPrintf("Display-%d", static_cast<int>(id)), has_overscan); | 252 id, base::StringPrintf("Display-%d", static_cast<int>(id)), has_overscan); |
| 252 display_info.set_device_scale_factor(device_scale_factor); | 253 display_info.set_device_scale_factor(device_scale_factor); |
| 253 display_info.SetRotation(rotation, display::Display::ROTATION_SOURCE_ACTIVE); | 254 display_info.SetRotation(rotation, display::Display::ROTATION_SOURCE_ACTIVE); |
| 254 display_info.set_configured_ui_scale(ui_scale); | 255 display_info.set_configured_ui_scale(ui_scale); |
| 255 display_info.SetBounds(bounds_in_native); | 256 display_info.SetBounds(bounds_in_native); |
| 256 display_info.SetManagedDisplayModes(display_modes); | 257 display_info.SetManagedDisplayModes(display_modes); |
| 257 | 258 |
| 258 // To test the overscan, it creates the default 5% overscan. | 259 // To test the overscan, it creates the default 5% overscan. |
| 259 if (has_overscan) { | 260 if (has_overscan) { |
| 260 int width = bounds_in_native.width() / device_scale_factor / 40; | 261 int width = bounds_in_native.width() / device_scale_factor / 40; |
| 261 int height = bounds_in_native.height() / device_scale_factor / 40; | 262 int height = bounds_in_native.height() / device_scale_factor / 40; |
| 262 display_info.SetOverscanInsets(gfx::Insets(height, width, height, width)); | 263 display_info.SetOverscanInsets(gfx::Insets(height, width, height, width)); |
| 263 display_info.UpdateDisplaySize(); | 264 display_info.UpdateDisplaySize(); |
| 264 } | 265 } |
| 265 | 266 |
| 266 DVLOG(1) << "DisplayInfoFromSpec info=" << display_info.ToString() | 267 DVLOG(1) << "DisplayInfoFromSpec info=" << display_info.ToString() |
| 267 << ", spec=" << spec; | 268 << ", spec=" << spec; |
| 268 return display_info; | 269 return display_info; |
| 269 } | 270 } |
| 270 | 271 |
| 271 // static | 272 // static |
| 272 void DisplayInfo::SetUse125DSFForUIScalingForTest(bool enable) { | 273 void ManagedDisplayInfo::SetUse125DSFForUIScalingForTest(bool enable) { |
| 273 use_125_dsf_for_ui_scaling = enable; | 274 use_125_dsf_for_ui_scaling = enable; |
| 274 } | 275 } |
| 275 | 276 |
| 276 DisplayInfo::DisplayInfo() | 277 ManagedDisplayInfo::ManagedDisplayInfo() |
| 277 : id_(display::Display::kInvalidDisplayID), | 278 : id_(display::Display::kInvalidDisplayID), |
| 278 has_overscan_(false), | 279 has_overscan_(false), |
| 279 active_rotation_source_(display::Display::ROTATION_SOURCE_UNKNOWN), | 280 active_rotation_source_(display::Display::ROTATION_SOURCE_UNKNOWN), |
| 280 touch_support_(display::Display::TOUCH_SUPPORT_UNKNOWN), | 281 touch_support_(display::Display::TOUCH_SUPPORT_UNKNOWN), |
| 281 device_scale_factor_(1.0f), | 282 device_scale_factor_(1.0f), |
| 282 device_dpi_(kDpi96), | 283 device_dpi_(kDpi96), |
| 283 overscan_insets_in_dip_(0, 0, 0, 0), | 284 overscan_insets_in_dip_(0, 0, 0, 0), |
| 284 configured_ui_scale_(1.0f), | 285 configured_ui_scale_(1.0f), |
| 285 native_(false), | 286 native_(false), |
| 286 is_aspect_preserving_scaling_(false), | 287 is_aspect_preserving_scaling_(false), |
| 287 clear_overscan_insets_(false), | 288 clear_overscan_insets_(false), |
| 288 color_profile_(ui::COLOR_PROFILE_STANDARD) {} | 289 color_profile_(ui::COLOR_PROFILE_STANDARD) {} |
| 289 | 290 |
| 290 DisplayInfo::DisplayInfo(int64_t id, const std::string& name, bool has_overscan) | 291 ManagedDisplayInfo::ManagedDisplayInfo(int64_t id, |
| 292 const std::string& name, |
| 293 bool has_overscan) |
| 291 : id_(id), | 294 : id_(id), |
| 292 name_(name), | 295 name_(name), |
| 293 has_overscan_(has_overscan), | 296 has_overscan_(has_overscan), |
| 294 active_rotation_source_(display::Display::ROTATION_SOURCE_UNKNOWN), | 297 active_rotation_source_(display::Display::ROTATION_SOURCE_UNKNOWN), |
| 295 touch_support_(display::Display::TOUCH_SUPPORT_UNKNOWN), | 298 touch_support_(display::Display::TOUCH_SUPPORT_UNKNOWN), |
| 296 device_scale_factor_(1.0f), | 299 device_scale_factor_(1.0f), |
| 297 device_dpi_(kDpi96), | 300 device_dpi_(kDpi96), |
| 298 overscan_insets_in_dip_(0, 0, 0, 0), | 301 overscan_insets_in_dip_(0, 0, 0, 0), |
| 299 configured_ui_scale_(1.0f), | 302 configured_ui_scale_(1.0f), |
| 300 native_(false), | 303 native_(false), |
| 301 is_aspect_preserving_scaling_(false), | 304 is_aspect_preserving_scaling_(false), |
| 302 clear_overscan_insets_(false), | 305 clear_overscan_insets_(false), |
| 303 color_profile_(ui::COLOR_PROFILE_STANDARD) {} | 306 color_profile_(ui::COLOR_PROFILE_STANDARD) {} |
| 304 | 307 |
| 305 DisplayInfo::DisplayInfo(const DisplayInfo& other) = default; | 308 ManagedDisplayInfo::ManagedDisplayInfo(const ManagedDisplayInfo& other) = |
| 309 default; |
| 306 | 310 |
| 307 DisplayInfo::~DisplayInfo() {} | 311 ManagedDisplayInfo::~ManagedDisplayInfo() {} |
| 308 | 312 |
| 309 void DisplayInfo::SetRotation(display::Display::Rotation rotation, | 313 void ManagedDisplayInfo::SetRotation(display::Display::Rotation rotation, |
| 310 display::Display::RotationSource source) { | 314 display::Display::RotationSource source) { |
| 311 rotations_[source] = rotation; | 315 rotations_[source] = rotation; |
| 312 rotations_[display::Display::ROTATION_SOURCE_ACTIVE] = rotation; | 316 rotations_[display::Display::ROTATION_SOURCE_ACTIVE] = rotation; |
| 313 active_rotation_source_ = source; | 317 active_rotation_source_ = source; |
| 314 } | 318 } |
| 315 | 319 |
| 316 display::Display::Rotation DisplayInfo::GetActiveRotation() const { | 320 display::Display::Rotation ManagedDisplayInfo::GetActiveRotation() const { |
| 317 return GetRotation(display::Display::ROTATION_SOURCE_ACTIVE); | 321 return GetRotation(display::Display::ROTATION_SOURCE_ACTIVE); |
| 318 } | 322 } |
| 319 | 323 |
| 320 display::Display::Rotation DisplayInfo::GetRotation( | 324 display::Display::Rotation ManagedDisplayInfo::GetRotation( |
| 321 display::Display::RotationSource source) const { | 325 display::Display::RotationSource source) const { |
| 322 if (rotations_.find(source) == rotations_.end()) | 326 if (rotations_.find(source) == rotations_.end()) |
| 323 return display::Display::ROTATE_0; | 327 return display::Display::ROTATE_0; |
| 324 return rotations_.at(source); | 328 return rotations_.at(source); |
| 325 } | 329 } |
| 326 | 330 |
| 327 void DisplayInfo::Copy(const DisplayInfo& native_info) { | 331 void ManagedDisplayInfo::Copy(const ManagedDisplayInfo& native_info) { |
| 328 DCHECK(id_ == native_info.id_); | 332 DCHECK(id_ == native_info.id_); |
| 329 name_ = native_info.name_; | 333 name_ = native_info.name_; |
| 330 has_overscan_ = native_info.has_overscan_; | 334 has_overscan_ = native_info.has_overscan_; |
| 331 | 335 |
| 332 active_rotation_source_ = native_info.active_rotation_source_; | 336 active_rotation_source_ = native_info.active_rotation_source_; |
| 333 touch_support_ = native_info.touch_support_; | 337 touch_support_ = native_info.touch_support_; |
| 334 input_devices_ = native_info.input_devices_; | 338 input_devices_ = native_info.input_devices_; |
| 335 device_scale_factor_ = native_info.device_scale_factor_; | 339 device_scale_factor_ = native_info.device_scale_factor_; |
| 336 DCHECK(!native_info.bounds_in_native_.IsEmpty()); | 340 DCHECK(!native_info.bounds_in_native_.IsEmpty()); |
| 337 bounds_in_native_ = native_info.bounds_in_native_; | 341 bounds_in_native_ = native_info.bounds_in_native_; |
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| 352 overscan_insets_in_dip_.Set(0, 0, 0, 0); | 356 overscan_insets_in_dip_.Set(0, 0, 0, 0); |
| 353 else if (!native_info.overscan_insets_in_dip_.IsEmpty()) | 357 else if (!native_info.overscan_insets_in_dip_.IsEmpty()) |
| 354 overscan_insets_in_dip_ = native_info.overscan_insets_in_dip_; | 358 overscan_insets_in_dip_ = native_info.overscan_insets_in_dip_; |
| 355 | 359 |
| 356 rotations_ = native_info.rotations_; | 360 rotations_ = native_info.rotations_; |
| 357 configured_ui_scale_ = native_info.configured_ui_scale_; | 361 configured_ui_scale_ = native_info.configured_ui_scale_; |
| 358 color_profile_ = native_info.color_profile(); | 362 color_profile_ = native_info.color_profile(); |
| 359 } | 363 } |
| 360 } | 364 } |
| 361 | 365 |
| 362 void DisplayInfo::SetBounds(const gfx::Rect& new_bounds_in_native) { | 366 void ManagedDisplayInfo::SetBounds(const gfx::Rect& new_bounds_in_native) { |
| 363 bounds_in_native_ = new_bounds_in_native; | 367 bounds_in_native_ = new_bounds_in_native; |
| 364 size_in_pixel_ = new_bounds_in_native.size(); | 368 size_in_pixel_ = new_bounds_in_native.size(); |
| 365 UpdateDisplaySize(); | 369 UpdateDisplaySize(); |
| 366 } | 370 } |
| 367 | 371 |
| 368 float DisplayInfo::GetEffectiveDeviceScaleFactor() const { | 372 float ManagedDisplayInfo::GetEffectiveDeviceScaleFactor() const { |
| 369 if (Use125DSFForUIScaling() && device_scale_factor_ == 1.25f) | 373 if (Use125DSFForUIScaling() && device_scale_factor_ == 1.25f) |
| 370 return (configured_ui_scale_ == 0.8f) ? 1.25f : 1.0f; | 374 return (configured_ui_scale_ == 0.8f) ? 1.25f : 1.0f; |
| 371 if (device_scale_factor_ == configured_ui_scale_) | 375 if (device_scale_factor_ == configured_ui_scale_) |
| 372 return 1.0f; | 376 return 1.0f; |
| 373 return device_scale_factor_; | 377 return device_scale_factor_; |
| 374 } | 378 } |
| 375 | 379 |
| 376 float DisplayInfo::GetEffectiveUIScale() const { | 380 float ManagedDisplayInfo::GetEffectiveUIScale() const { |
| 377 if (Use125DSFForUIScaling() && device_scale_factor_ == 1.25f) | 381 if (Use125DSFForUIScaling() && device_scale_factor_ == 1.25f) |
| 378 return (configured_ui_scale_ == 0.8f) ? 1.0f : configured_ui_scale_; | 382 return (configured_ui_scale_ == 0.8f) ? 1.0f : configured_ui_scale_; |
| 379 if (device_scale_factor_ == configured_ui_scale_) | 383 if (device_scale_factor_ == configured_ui_scale_) |
| 380 return 1.0f; | 384 return 1.0f; |
| 381 return configured_ui_scale_; | 385 return configured_ui_scale_; |
| 382 } | 386 } |
| 383 | 387 |
| 384 void DisplayInfo::UpdateDisplaySize() { | 388 void ManagedDisplayInfo::UpdateDisplaySize() { |
| 385 size_in_pixel_ = bounds_in_native_.size(); | 389 size_in_pixel_ = bounds_in_native_.size(); |
| 386 if (!overscan_insets_in_dip_.IsEmpty()) { | 390 if (!overscan_insets_in_dip_.IsEmpty()) { |
| 387 gfx::Insets insets_in_pixel = | 391 gfx::Insets insets_in_pixel = |
| 388 overscan_insets_in_dip_.Scale(device_scale_factor_); | 392 overscan_insets_in_dip_.Scale(device_scale_factor_); |
| 389 size_in_pixel_.Enlarge(-insets_in_pixel.width(), -insets_in_pixel.height()); | 393 size_in_pixel_.Enlarge(-insets_in_pixel.width(), -insets_in_pixel.height()); |
| 390 } else { | 394 } else { |
| 391 overscan_insets_in_dip_.Set(0, 0, 0, 0); | 395 overscan_insets_in_dip_.Set(0, 0, 0, 0); |
| 392 } | 396 } |
| 393 | 397 |
| 394 if (GetActiveRotation() == display::Display::ROTATE_90 || | 398 if (GetActiveRotation() == display::Display::ROTATE_90 || |
| 395 GetActiveRotation() == display::Display::ROTATE_270) { | 399 GetActiveRotation() == display::Display::ROTATE_270) { |
| 396 size_in_pixel_.SetSize(size_in_pixel_.height(), size_in_pixel_.width()); | 400 size_in_pixel_.SetSize(size_in_pixel_.height(), size_in_pixel_.width()); |
| 397 } | 401 } |
| 398 gfx::SizeF size_f(size_in_pixel_); | 402 gfx::SizeF size_f(size_in_pixel_); |
| 399 size_f.Scale(GetEffectiveUIScale()); | 403 size_f.Scale(GetEffectiveUIScale()); |
| 400 size_in_pixel_ = gfx::ToFlooredSize(size_f); | 404 size_in_pixel_ = gfx::ToFlooredSize(size_f); |
| 401 } | 405 } |
| 402 | 406 |
| 403 void DisplayInfo::SetOverscanInsets(const gfx::Insets& insets_in_dip) { | 407 void ManagedDisplayInfo::SetOverscanInsets(const gfx::Insets& insets_in_dip) { |
| 404 overscan_insets_in_dip_ = insets_in_dip; | 408 overscan_insets_in_dip_ = insets_in_dip; |
| 405 } | 409 } |
| 406 | 410 |
| 407 gfx::Insets DisplayInfo::GetOverscanInsetsInPixel() const { | 411 gfx::Insets ManagedDisplayInfo::GetOverscanInsetsInPixel() const { |
| 408 return overscan_insets_in_dip_.Scale(device_scale_factor_); | 412 return overscan_insets_in_dip_.Scale(device_scale_factor_); |
| 409 } | 413 } |
| 410 | 414 |
| 411 void DisplayInfo::SetManagedDisplayModes( | 415 void ManagedDisplayInfo::SetManagedDisplayModes( |
| 412 const ManagedDisplayModeList& display_modes) { | 416 const ManagedDisplayModeList& display_modes) { |
| 413 display_modes_ = display_modes; | 417 display_modes_ = display_modes; |
| 414 std::sort( | 418 std::sort( |
| 415 display_modes_.begin(), display_modes_.end(), | 419 display_modes_.begin(), display_modes_.end(), |
| 416 ManagedDisplayModeSorter(display::Display::IsInternalDisplayId(id_))); | 420 ManagedDisplayModeSorter(display::Display::IsInternalDisplayId(id_))); |
| 417 } | 421 } |
| 418 | 422 |
| 419 gfx::Size DisplayInfo::GetNativeModeSize() const { | 423 gfx::Size ManagedDisplayInfo::GetNativeModeSize() const { |
| 420 for (size_t i = 0; i < display_modes_.size(); ++i) { | 424 for (size_t i = 0; i < display_modes_.size(); ++i) { |
| 421 if (display_modes_[i]->native()) | 425 if (display_modes_[i]->native()) |
| 422 return display_modes_[i]->size(); | 426 return display_modes_[i]->size(); |
| 423 } | 427 } |
| 424 return gfx::Size(); | 428 return gfx::Size(); |
| 425 } | 429 } |
| 426 | 430 |
| 427 std::string DisplayInfo::ToString() const { | 431 std::string ManagedDisplayInfo::ToString() const { |
| 428 int rotation_degree = static_cast<int>(GetActiveRotation()) * 90; | 432 int rotation_degree = static_cast<int>(GetActiveRotation()) * 90; |
| 429 std::string devices_str; | 433 std::string devices_str; |
| 430 | 434 |
| 431 for (size_t i = 0; i < input_devices_.size(); ++i) { | 435 for (size_t i = 0; i < input_devices_.size(); ++i) { |
| 432 devices_str += base::IntToString(input_devices_[i]); | 436 devices_str += base::IntToString(input_devices_[i]); |
| 433 if (i != input_devices_.size() - 1) | 437 if (i != input_devices_.size() - 1) |
| 434 devices_str += ", "; | 438 devices_str += ", "; |
| 435 } | 439 } |
| 436 | 440 |
| 437 std::string result = base::StringPrintf( | 441 std::string result = base::StringPrintf( |
| 438 "DisplayInfo[%lld] native bounds=%s, size=%s, scale=%f, " | 442 "ManagedDisplayInfo[%lld] native bounds=%s, size=%s, scale=%f, " |
| 439 "overscan=%s, rotation=%d, ui-scale=%f, touchscreen=%s, " | 443 "overscan=%s, rotation=%d, ui-scale=%f, touchscreen=%s, " |
| 440 "input_devices=[%s]", | 444 "input_devices=[%s]", |
| 441 static_cast<long long int>(id_), bounds_in_native_.ToString().c_str(), | 445 static_cast<long long int>(id_), bounds_in_native_.ToString().c_str(), |
| 442 size_in_pixel_.ToString().c_str(), device_scale_factor_, | 446 size_in_pixel_.ToString().c_str(), device_scale_factor_, |
| 443 overscan_insets_in_dip_.ToString().c_str(), rotation_degree, | 447 overscan_insets_in_dip_.ToString().c_str(), rotation_degree, |
| 444 configured_ui_scale_, | 448 configured_ui_scale_, |
| 445 touch_support_ == display::Display::TOUCH_SUPPORT_AVAILABLE | 449 touch_support_ == display::Display::TOUCH_SUPPORT_AVAILABLE |
| 446 ? "yes" | 450 ? "yes" |
| 447 : touch_support_ == display::Display::TOUCH_SUPPORT_UNAVAILABLE | 451 : touch_support_ == display::Display::TOUCH_SUPPORT_UNAVAILABLE |
| 448 ? "no" | 452 ? "no" |
| 449 : "unknown", | 453 : "unknown", |
| 450 devices_str.c_str()); | 454 devices_str.c_str()); |
| 451 | 455 |
| 452 return result; | 456 return result; |
| 453 } | 457 } |
| 454 | 458 |
| 455 std::string DisplayInfo::ToFullString() const { | 459 std::string ManagedDisplayInfo::ToFullString() const { |
| 456 std::string display_modes_str; | 460 std::string display_modes_str; |
| 457 ManagedDisplayModeList::const_iterator iter = display_modes_.begin(); | 461 ManagedDisplayModeList::const_iterator iter = display_modes_.begin(); |
| 458 for (; iter != display_modes_.end(); ++iter) { | 462 for (; iter != display_modes_.end(); ++iter) { |
| 459 scoped_refptr<ManagedDisplayMode> m(*iter); | 463 scoped_refptr<ManagedDisplayMode> m(*iter); |
| 460 if (!display_modes_str.empty()) | 464 if (!display_modes_str.empty()) |
| 461 display_modes_str += ","; | 465 display_modes_str += ","; |
| 462 base::StringAppendF(&display_modes_str, "(%dx%d@%f%c%s)", m->size().width(), | 466 base::StringAppendF(&display_modes_str, "(%dx%d@%f%c%s)", m->size().width(), |
| 463 m->size().height(), m->refresh_rate(), | 467 m->size().height(), m->refresh_rate(), |
| 464 m->is_interlaced() ? 'I' : 'P', | 468 m->is_interlaced() ? 'I' : 'P', |
| 465 m->native() ? "(N)" : ""); | 469 m->native() ? "(N)" : ""); |
| 466 } | 470 } |
| 467 return ToString() + ", display_modes==" + display_modes_str; | 471 return ToString() + ", display_modes==" + display_modes_str; |
| 468 } | 472 } |
| 469 | 473 |
| 470 void DisplayInfo::SetColorProfile(ui::ColorCalibrationProfile profile) { | 474 void ManagedDisplayInfo::SetColorProfile(ui::ColorCalibrationProfile profile) { |
| 471 if (IsColorProfileAvailable(profile)) | 475 if (IsColorProfileAvailable(profile)) |
| 472 color_profile_ = profile; | 476 color_profile_ = profile; |
| 473 } | 477 } |
| 474 | 478 |
| 475 bool DisplayInfo::IsColorProfileAvailable( | 479 bool ManagedDisplayInfo::IsColorProfileAvailable( |
| 476 ui::ColorCalibrationProfile profile) const { | 480 ui::ColorCalibrationProfile profile) const { |
| 477 return std::find(available_color_profiles_.begin(), | 481 return std::find(available_color_profiles_.begin(), |
| 478 available_color_profiles_.end(), | 482 available_color_profiles_.end(), |
| 479 profile) != available_color_profiles_.end(); | 483 profile) != available_color_profiles_.end(); |
| 480 } | 484 } |
| 481 | 485 |
| 482 bool DisplayInfo::Use125DSFForUIScaling() const { | 486 bool ManagedDisplayInfo::Use125DSFForUIScaling() const { |
| 483 return use_125_dsf_for_ui_scaling && | 487 return use_125_dsf_for_ui_scaling && |
| 484 display::Display::IsInternalDisplayId(id_); | 488 display::Display::IsInternalDisplayId(id_); |
| 485 } | 489 } |
| 486 | 490 |
| 487 void DisplayInfo::AddInputDevice(int id) { | 491 void ManagedDisplayInfo::AddInputDevice(int id) { |
| 488 input_devices_.push_back(id); | 492 input_devices_.push_back(id); |
| 489 } | 493 } |
| 490 | 494 |
| 491 void DisplayInfo::ClearInputDevices() { | 495 void ManagedDisplayInfo::ClearInputDevices() { |
| 492 input_devices_.clear(); | 496 input_devices_.clear(); |
| 493 } | 497 } |
| 494 | 498 |
| 495 void ResetDisplayIdForTest() { | 499 void ResetDisplayIdForTest() { |
| 496 synthesized_display_id = kSynthesizedDisplayIdStart; | 500 synthesized_display_id = kSynthesizedDisplayIdStart; |
| 497 } | 501 } |
| 498 | 502 |
| 499 } // namespace ash | 503 } // namespace ui |
| OLD | NEW |