1 // Copyright (c) 2012 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. 4 5 #include "chrome/browser/themes/browser_theme_pack.h" 6 7 #include <limits> 8 9 #include "base/files/file.h" 10 #include "base/memory/ref_counted_memory.h" 11 #include "base/memory/scoped_ptr.h" 12 #include "base/stl_util.h" 13 #include "base/strings/string_number_conversions.h" 14 #include "base/strings/string_util.h" 15 #include "base/strings/utf_string_conversions.h" 16 #include "base/threading/sequenced_worker_pool.h" 17 #include "base/threading/thread_restrictions.h" 18 #include "base/values.h" 19 #include "chrome/browser/themes/theme_properties.h" 20 #include "chrome/common/extensions/manifest_handlers/theme_handler.h" 21 #include "content/public/browser/browser_thread.h" 22 #include "extensions/common/id_util.h" 23 #include "grit/theme_resources.h" 24 #include "grit/ui_resources.h" 25 #include "third_party/skia/include/core/SkCanvas.h" 26 #include "ui/base/resource/data_pack.h" 27 #include "ui/base/resource/resource_bundle.h" 28 #include "ui/gfx/canvas.h" 29 #include "ui/gfx/codec/png_codec.h" 30 #include "ui/gfx/image/canvas_image_source.h" 31 #include "ui/gfx/image/image.h" 32 #include "ui/gfx/image/image_skia.h" 33 #include "ui/gfx/image/image_skia_operations.h" 34 #include "ui/gfx/screen.h" 35 #include "ui/gfx/size_conversions.h" 36 #include "ui/gfx/skia_util.h" 37 38 using content::BrowserThread; 39 using extensions::Extension; 40 41 namespace { 42 43 // Version number of the current theme pack. We just throw out and rebuild 44 // theme packs that aren't int-equal to this. Increment this number if you 45 // change default theme assets. 46 const int kThemePackVersion = 34; 47 48 // IDs that are in the DataPack won't clash with the positive integer 49 // uint16. kHeaderID should always have the maximum value because we want the 50 // "header" to be written last. That way we can detect whether the pack was 51 // successfully written and ignore and regenerate if it was only partially 52 // written (i.e. chrome crashed on a different thread while writing the pack). 53 const int kMaxID = 0x0000FFFF; // Max unsigned 16-bit int. 54 const int kHeaderID = kMaxID - 1; 55 const int kTintsID = kMaxID - 2; 56 const int kColorsID = kMaxID - 3; 57 const int kDisplayPropertiesID = kMaxID - 4; 58 const int kSourceImagesID = kMaxID - 5; 59 const int kScaleFactorsID = kMaxID - 6; 60 61 // The sum of kFrameBorderThickness and kNonClientRestoredExtraThickness from 62 // OpaqueBrowserFrameView. 63 const int kRestoredTabVerticalOffset = 15; 64 65 // Persistent constants for the main images that we need. These have the same 66 // names as their IDR_* counterparts but these values will always stay the 67 // same. 68 const int PRS_THEME_FRAME = 1; 69 const int PRS_THEME_FRAME_INACTIVE = 2; 70 const int PRS_THEME_FRAME_INCOGNITO = 3; 71 const int PRS_THEME_FRAME_INCOGNITO_INACTIVE = 4; 72 const int PRS_THEME_TOOLBAR = 5; 73 const int PRS_THEME_TAB_BACKGROUND = 6; 74 const int PRS_THEME_TAB_BACKGROUND_INCOGNITO = 7; 75 const int PRS_THEME_TAB_BACKGROUND_V = 8; 76 const int PRS_THEME_NTP_BACKGROUND = 9; 77 const int PRS_THEME_FRAME_OVERLAY = 10; 78 const int PRS_THEME_FRAME_OVERLAY_INACTIVE = 11; 79 const int PRS_THEME_BUTTON_BACKGROUND = 12; 80 const int PRS_THEME_NTP_ATTRIBUTION = 13; 81 const int PRS_THEME_WINDOW_CONTROL_BACKGROUND = 14; 82 83 struct PersistingImagesTable { 84 // A non-changing integer ID meant to be saved in theme packs. This ID must 85 // not change between versions of chrome. 86 int persistent_id; 87 88 // The IDR that depends on the whims of GRIT and therefore changes whenever 89 // someone adds a new resource. 90 int idr_id; 91 92 // String to check for when parsing theme manifests or NULL if this isn't 93 // supposed to be changeable by the user. 94 const char* key; 95 }; 96 97 // IDR_* resource names change whenever new resources are added; use persistent 98 // IDs when storing to a cached pack. 99 PersistingImagesTable kPersistingImages[] = { 100 { PRS_THEME_FRAME, IDR_THEME_FRAME, 101 "theme_frame" }, 102 { PRS_THEME_FRAME_INACTIVE, IDR_THEME_FRAME_INACTIVE, 103 "theme_frame_inactive" }, 104 { PRS_THEME_FRAME_INCOGNITO, IDR_THEME_FRAME_INCOGNITO, 105 "theme_frame_incognito" }, 106 { PRS_THEME_FRAME_INCOGNITO_INACTIVE, IDR_THEME_FRAME_INCOGNITO_INACTIVE, 107 "theme_frame_incognito_inactive" }, 108 { PRS_THEME_TOOLBAR, IDR_THEME_TOOLBAR, 109 "theme_toolbar" }, 110 { PRS_THEME_TAB_BACKGROUND, IDR_THEME_TAB_BACKGROUND, 111 "theme_tab_background" }, 112 { PRS_THEME_TAB_BACKGROUND_INCOGNITO, IDR_THEME_TAB_BACKGROUND_INCOGNITO, 113 "theme_tab_background_incognito" }, 114 { PRS_THEME_TAB_BACKGROUND_V, IDR_THEME_TAB_BACKGROUND_V, 115 "theme_tab_background_v"}, 116 { PRS_THEME_NTP_BACKGROUND, IDR_THEME_NTP_BACKGROUND, 117 "theme_ntp_background" }, 118 { PRS_THEME_FRAME_OVERLAY, IDR_THEME_FRAME_OVERLAY, 119 "theme_frame_overlay" }, 120 { PRS_THEME_FRAME_OVERLAY_INACTIVE, IDR_THEME_FRAME_OVERLAY_INACTIVE, 121 "theme_frame_overlay_inactive" }, 122 { PRS_THEME_BUTTON_BACKGROUND, IDR_THEME_BUTTON_BACKGROUND, 123 "theme_button_background" }, 124 { PRS_THEME_NTP_ATTRIBUTION, IDR_THEME_NTP_ATTRIBUTION, 125 "theme_ntp_attribution" }, 126 { PRS_THEME_WINDOW_CONTROL_BACKGROUND, IDR_THEME_WINDOW_CONTROL_BACKGROUND, 127 "theme_window_control_background"}, 128 129 // The rest of these entries have no key because they can't be overridden 130 // from the json manifest. 131 { 15, IDR_BACK, NULL }, 132 { 16, IDR_BACK_D, NULL }, 133 { 17, IDR_BACK_H, NULL }, 134 { 18, IDR_BACK_P, NULL }, 135 { 19, IDR_FORWARD, NULL }, 136 { 20, IDR_FORWARD_D, NULL }, 137 { 21, IDR_FORWARD_H, NULL }, 138 { 22, IDR_FORWARD_P, NULL }, 139 { 23, IDR_HOME, NULL }, 140 { 24, IDR_HOME_H, NULL }, 141 { 25, IDR_HOME_P, NULL }, 142 { 26, IDR_RELOAD, NULL }, 143 { 27, IDR_RELOAD_H, NULL }, 144 { 28, IDR_RELOAD_P, NULL }, 145 { 29, IDR_STOP, NULL }, 146 { 30, IDR_STOP_D, NULL }, 147 { 31, IDR_STOP_H, NULL }, 148 { 32, IDR_STOP_P, NULL }, 149 { 33, IDR_BROWSER_ACTIONS_OVERFLOW, NULL }, 150 { 34, IDR_BROWSER_ACTIONS_OVERFLOW_H, NULL }, 151 { 35, IDR_BROWSER_ACTIONS_OVERFLOW_P, NULL }, 152 { 36, IDR_TOOLS, NULL }, 153 { 37, IDR_TOOLS_H, NULL }, 154 { 38, IDR_TOOLS_P, NULL }, 155 { 39, IDR_MENU_DROPARROW, NULL }, 156 { 40, IDR_THROBBER, NULL }, 157 { 41, IDR_THROBBER_WAITING, NULL }, 158 { 42, IDR_THROBBER_LIGHT, NULL }, 159 { 43, IDR_TOOLBAR_BEZEL_HOVER, NULL }, 160 { 44, IDR_TOOLBAR_BEZEL_PRESSED, NULL }, 161 { 45, IDR_TOOLS_BAR, NULL }, 162 }; 163 const size_t kPersistingImagesLength = arraysize(kPersistingImages); 164 165 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 166 // Persistent theme ids for Windows. 167 const int PRS_THEME_FRAME_DESKTOP = 100; 168 const int PRS_THEME_FRAME_INACTIVE_DESKTOP = 101; 169 const int PRS_THEME_FRAME_INCOGNITO_DESKTOP = 102; 170 const int PRS_THEME_FRAME_INCOGNITO_INACTIVE_DESKTOP = 103; 171 const int PRS_THEME_TOOLBAR_DESKTOP = 104; 172 const int PRS_THEME_TAB_BACKGROUND_DESKTOP = 105; 173 const int PRS_THEME_TAB_BACKGROUND_INCOGNITO_DESKTOP = 106; 174 175 // Persistent theme to resource id mapping for Windows AURA. 176 PersistingImagesTable kPersistingImagesDesktopAura[] = { 177 { PRS_THEME_FRAME_DESKTOP, IDR_THEME_FRAME_DESKTOP, 178 "theme_frame" }, 179 { PRS_THEME_FRAME_INACTIVE_DESKTOP, IDR_THEME_FRAME_INACTIVE_DESKTOP, 180 "theme_frame_inactive" }, 181 { PRS_THEME_FRAME_INCOGNITO_DESKTOP, IDR_THEME_FRAME_INCOGNITO_DESKTOP, 182 "theme_frame_incognito" }, 183 { PRS_THEME_FRAME_INCOGNITO_INACTIVE_DESKTOP, 184 IDR_THEME_FRAME_INCOGNITO_INACTIVE_DESKTOP, 185 "theme_frame_incognito_inactive" }, 186 { PRS_THEME_TOOLBAR_DESKTOP, IDR_THEME_TOOLBAR_DESKTOP, 187 "theme_toolbar" }, 188 { PRS_THEME_TAB_BACKGROUND_DESKTOP, IDR_THEME_TAB_BACKGROUND_DESKTOP, 189 "theme_tab_background" }, 190 { PRS_THEME_TAB_BACKGROUND_INCOGNITO_DESKTOP, 191 IDR_THEME_TAB_BACKGROUND_INCOGNITO_DESKTOP, 192 "theme_tab_background_incognito" }, 193 }; 194 const size_t kPersistingImagesDesktopAuraLength = 195 arraysize(kPersistingImagesDesktopAura); 196 #endif 197 198 int GetPersistentIDByNameHelper(const std::string& key, 199 const PersistingImagesTable* image_table, 200 size_t image_table_size) { 201 for (size_t i = 0; i < image_table_size; ++i) { 202 if (image_table[i].key != NULL && 203 base::strcasecmp(key.c_str(), image_table[i].key) == 0) { 204 return image_table[i].persistent_id; 205 } 206 } 207 return -1; 208 } 209 210 int GetPersistentIDByName(const std::string& key) { 211 return GetPersistentIDByNameHelper(key, 212 kPersistingImages, 213 kPersistingImagesLength); 214 } 215 216 int GetPersistentIDByIDR(int idr) { 217 static std::map<int,int>* lookup_table = new std::map<int,int>(); 218 if (lookup_table->empty()) { 219 for (size_t i = 0; i < kPersistingImagesLength; ++i) { 220 int idr = kPersistingImages[i].idr_id; 221 int prs_id = kPersistingImages[i].persistent_id; 222 (*lookup_table)[idr] = prs_id; 223 } 224 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 225 for (size_t i = 0; i < kPersistingImagesDesktopAuraLength; ++i) { 226 int idr = kPersistingImagesDesktopAura[i].idr_id; 227 int prs_id = kPersistingImagesDesktopAura[i].persistent_id; 228 (*lookup_table)[idr] = prs_id; 229 } 230 #endif 231 } 232 std::map<int,int>::iterator it = lookup_table->find(idr); 233 return (it == lookup_table->end()) ? -1 : it->second; 234 } 235 236 // Returns true if the scales in |input| match those in |expected|. 237 // The order must match as the index is used in determining the raw id. 238 bool InputScalesValid(const base::StringPiece& input, 239 const std::vector<ui::ScaleFactor>& expected) { 240 size_t scales_size = static_cast<size_t>(input.size() / sizeof(float)); 241 if (scales_size != expected.size()) 242 return false; 243 scoped_ptr<float[]> scales(new float[scales_size]); 244 // Do a memcpy to avoid misaligned memory access. 245 memcpy(scales.get(), input.data(), input.size()); 246 for (size_t index = 0; index < scales_size; ++index) { 247 if (scales[index] != ui::GetScaleForScaleFactor(expected[index])) 248 return false; 249 } 250 return true; 251 } 252 253 // Returns |scale_factors| as a string to be written to disk. 254 std::string GetScaleFactorsAsString( 255 const std::vector<ui::ScaleFactor>& scale_factors) { 256 scoped_ptr<float[]> scales(new float[scale_factors.size()]); 257 for (size_t i = 0; i < scale_factors.size(); ++i) 258 scales[i] = ui::GetScaleForScaleFactor(scale_factors[i]); 259 std::string out_string = std::string( 260 reinterpret_cast<const char*>(scales.get()), 261 scale_factors.size() * sizeof(float)); 262 return out_string; 263 } 264 265 struct StringToIntTable { 266 const char* key; 267 ThemeProperties::OverwritableByUserThemeProperty id; 268 }; 269 270 // Strings used by themes to identify tints in the JSON. 271 StringToIntTable kTintTable[] = { 272 { "buttons", ThemeProperties::TINT_BUTTONS }, 273 { "frame", ThemeProperties::TINT_FRAME }, 274 { "frame_inactive", ThemeProperties::TINT_FRAME_INACTIVE }, 275 { "frame_incognito", ThemeProperties::TINT_FRAME_INCOGNITO }, 276 { "frame_incognito_inactive", 277 ThemeProperties::TINT_FRAME_INCOGNITO_INACTIVE }, 278 { "background_tab", ThemeProperties::TINT_BACKGROUND_TAB }, 279 }; 280 const size_t kTintTableLength = arraysize(kTintTable); 281 282 // Strings used by themes to identify colors in the JSON. 283 StringToIntTable kColorTable[] = { 284 { "frame", ThemeProperties::COLOR_FRAME }, 285 { "frame_inactive", ThemeProperties::COLOR_FRAME_INACTIVE }, 286 { "frame_incognito", ThemeProperties::COLOR_FRAME_INCOGNITO }, 287 { "frame_incognito_inactive", 288 ThemeProperties::COLOR_FRAME_INCOGNITO_INACTIVE }, 289 { "toolbar", ThemeProperties::COLOR_TOOLBAR }, 290 { "tab_text", ThemeProperties::COLOR_TAB_TEXT }, 291 { "tab_background_text", ThemeProperties::COLOR_BACKGROUND_TAB_TEXT }, 292 { "bookmark_text", ThemeProperties::COLOR_BOOKMARK_TEXT }, 293 { "ntp_background", ThemeProperties::COLOR_NTP_BACKGROUND }, 294 { "ntp_text", ThemeProperties::COLOR_NTP_TEXT }, 295 { "ntp_link", ThemeProperties::COLOR_NTP_LINK }, 296 { "ntp_link_underline", ThemeProperties::COLOR_NTP_LINK_UNDERLINE }, 297 { "ntp_header", ThemeProperties::COLOR_NTP_HEADER }, 298 { "ntp_section", ThemeProperties::COLOR_NTP_SECTION }, 299 { "ntp_section_text", ThemeProperties::COLOR_NTP_SECTION_TEXT }, 300 { "ntp_section_link", ThemeProperties::COLOR_NTP_SECTION_LINK }, 301 { "ntp_section_link_underline", 302 ThemeProperties::COLOR_NTP_SECTION_LINK_UNDERLINE }, 303 { "button_background", ThemeProperties::COLOR_BUTTON_BACKGROUND }, 304 }; 305 const size_t kColorTableLength = arraysize(kColorTable); 306 307 // Strings used by themes to identify display properties keys in JSON. 308 StringToIntTable kDisplayProperties[] = { 309 { "ntp_background_alignment", 310 ThemeProperties::NTP_BACKGROUND_ALIGNMENT }, 311 { "ntp_background_repeat", ThemeProperties::NTP_BACKGROUND_TILING }, 312 { "ntp_logo_alternate", ThemeProperties::NTP_LOGO_ALTERNATE }, 313 }; 314 const size_t kDisplayPropertiesSize = arraysize(kDisplayProperties); 315 316 int GetIntForString(const std::string& key, 317 StringToIntTable* table, 318 size_t table_length) { 319 for (size_t i = 0; i < table_length; ++i) { 320 if (base::strcasecmp(key.c_str(), table[i].key) == 0) { 321 return table[i].id; 322 } 323 } 324 325 return -1; 326 } 327 328 struct IntToIntTable { 329 int key; 330 int value; 331 }; 332 333 // Mapping used in CreateFrameImages() to associate frame images with the 334 // tint ID that should maybe be applied to it. 335 IntToIntTable kFrameTintMap[] = { 336 { PRS_THEME_FRAME, ThemeProperties::TINT_FRAME }, 337 { PRS_THEME_FRAME_INACTIVE, ThemeProperties::TINT_FRAME_INACTIVE }, 338 { PRS_THEME_FRAME_OVERLAY, ThemeProperties::TINT_FRAME }, 339 { PRS_THEME_FRAME_OVERLAY_INACTIVE, 340 ThemeProperties::TINT_FRAME_INACTIVE }, 341 { PRS_THEME_FRAME_INCOGNITO, ThemeProperties::TINT_FRAME_INCOGNITO }, 342 { PRS_THEME_FRAME_INCOGNITO_INACTIVE, 343 ThemeProperties::TINT_FRAME_INCOGNITO_INACTIVE }, 344 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 345 { PRS_THEME_FRAME_DESKTOP, ThemeProperties::TINT_FRAME }, 346 { PRS_THEME_FRAME_INACTIVE_DESKTOP, ThemeProperties::TINT_FRAME_INACTIVE }, 347 { PRS_THEME_FRAME_INCOGNITO_DESKTOP, ThemeProperties::TINT_FRAME_INCOGNITO }, 348 { PRS_THEME_FRAME_INCOGNITO_INACTIVE_DESKTOP, 349 ThemeProperties::TINT_FRAME_INCOGNITO_INACTIVE }, 350 #endif 351 }; 352 353 // Mapping used in GenerateTabBackgroundImages() to associate what frame image 354 // goes with which tab background. 355 IntToIntTable kTabBackgroundMap[] = { 356 { PRS_THEME_TAB_BACKGROUND, PRS_THEME_FRAME }, 357 { PRS_THEME_TAB_BACKGROUND_INCOGNITO, PRS_THEME_FRAME_INCOGNITO }, 358 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 359 { PRS_THEME_TAB_BACKGROUND_DESKTOP, PRS_THEME_FRAME_DESKTOP }, 360 { PRS_THEME_TAB_BACKGROUND_INCOGNITO_DESKTOP, 361 PRS_THEME_FRAME_INCOGNITO_DESKTOP }, 362 #endif 363 }; 364 365 struct CropEntry { 366 int prs_id; 367 368 // The maximum useful height of the image at |prs_id|. 369 int max_height; 370 371 // Whether cropping the image at |prs_id| should be skipped on OSes which 372 // have a frame border to the left and right of the web contents. 373 // This should be true for images which can be used to decorate the border to 374 // the left and the right of the web contents. 375 bool skip_if_frame_border; 376 }; 377 378 // The images which should be cropped before being saved to the data pack. The 379 // maximum heights are meant to be conservative as to give room for the UI to 380 // change without the maximum heights having to be modified. 381 // |kThemePackVersion| must be incremented if any of the maximum heights below 382 // are modified. 383 struct CropEntry kImagesToCrop[] = { 384 { PRS_THEME_FRAME, 120, true }, 385 { PRS_THEME_FRAME_INACTIVE, 120, true }, 386 { PRS_THEME_FRAME_INCOGNITO, 120, true }, 387 { PRS_THEME_FRAME_INCOGNITO_INACTIVE, 120, true }, 388 { PRS_THEME_FRAME_OVERLAY, 120, true }, 389 { PRS_THEME_FRAME_OVERLAY_INACTIVE, 120, true }, 390 { PRS_THEME_TOOLBAR, 200, false }, 391 { PRS_THEME_BUTTON_BACKGROUND, 60, false }, 392 { PRS_THEME_WINDOW_CONTROL_BACKGROUND, 50, false }, 393 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 394 { PRS_THEME_TOOLBAR_DESKTOP, 200, false } 395 #endif 396 }; 397 398 399 // A list of images that don't need tinting or any other modification and can 400 // be byte-copied directly into the finished DataPack. This should contain the 401 // persistent IDs for all themeable image IDs that aren't in kFrameTintMap, 402 // kTabBackgroundMap or kImagesToCrop. 403 const int kPreloadIDs[] = { 404 PRS_THEME_NTP_BACKGROUND, 405 PRS_THEME_NTP_ATTRIBUTION, 406 }; 407 408 // Returns true if this OS uses a browser frame which has a non zero width to 409 // the left and the right of the web contents. 410 bool HasFrameBorder() { 411 #if defined(OS_CHROMEOS) || defined(OS_MACOSX) 412 return false; 413 #else 414 return true; 415 #endif 416 } 417 418 // Returns a piece of memory with the contents of the file |path|. 419 base::RefCountedMemory* ReadFileData(const base::FilePath& path) { 420 if (!path.empty()) { 421 base::File file(path, base::File::FLAG_OPEN | base::File::FLAG_READ); 422 if (file.IsValid()) { 423 int64 length = file.GetLength(); 424 if (length > 0 && length < INT_MAX) { 425 int size = static_cast<int>(length); 426 std::vector<unsigned char> raw_data; 427 raw_data.resize(size); 428 char* data = reinterpret_cast<char*>(&(raw_data.front())); 429 if (file.ReadAtCurrentPos(data, size) == length) 430 return base::RefCountedBytes::TakeVector(&raw_data); 431 } 432 } 433 } 434 435 return NULL; 436 } 437 438 // Shifts an image's HSL values. The caller is responsible for deleting 439 // the returned image. 440 gfx::Image CreateHSLShiftedImage(const gfx::Image& image, 441 const color_utils::HSL& hsl_shift) { 442 const gfx::ImageSkia* src_image = image.ToImageSkia(); 443 return gfx::Image(gfx::ImageSkiaOperations::CreateHSLShiftedImage( 444 *src_image, hsl_shift)); 445 } 446 447 // Computes a bitmap at one scale from a bitmap at a different scale. 448 SkBitmap CreateLowQualityResizedBitmap(const SkBitmap& source_bitmap, 449 ui::ScaleFactor source_scale_factor, 450 ui::ScaleFactor desired_scale_factor) { 451 gfx::Size scaled_size = gfx::ToCeiledSize( 452 gfx::ScaleSize(gfx::Size(source_bitmap.width(), 453 source_bitmap.height()), 454 ui::GetScaleForScaleFactor(desired_scale_factor) / 455 ui::GetScaleForScaleFactor(source_scale_factor))); 456 SkBitmap scaled_bitmap; 457 scaled_bitmap.setConfig(SkBitmap::kARGB_8888_Config, 458 scaled_size.width(), 459 scaled_size.height()); 460 if (!scaled_bitmap.allocPixels()) 461 SK_CRASH(); 462 scaled_bitmap.eraseARGB(0, 0, 0, 0); 463 SkCanvas canvas(scaled_bitmap); 464 SkRect scaled_bounds = RectToSkRect(gfx::Rect(scaled_size)); 465 // Note(oshima): The following scaling code doesn't work with 466 // a mask image. 467 canvas.drawBitmapRect(source_bitmap, NULL, scaled_bounds); 468 return scaled_bitmap; 469 } 470 471 // A ImageSkiaSource that scales 100P image to the target scale factor 472 // if the ImageSkiaRep for the target scale factor isn't available. 473 class ThemeImageSource: public gfx::ImageSkiaSource { 474 public: 475 explicit ThemeImageSource(const gfx::ImageSkia& source) : source_(source) { 476 } 477 virtual ~ThemeImageSource() {} 478 479 virtual gfx::ImageSkiaRep GetImageForScale(float scale) OVERRIDE { 480 if (source_.HasRepresentation(scale)) 481 return source_.GetRepresentation(scale); 482 const gfx::ImageSkiaRep& rep_100p = source_.GetRepresentation(1.0f); 483 SkBitmap scaled_bitmap = CreateLowQualityResizedBitmap( 484 rep_100p.sk_bitmap(), 485 ui::SCALE_FACTOR_100P, 486 ui::GetSupportedScaleFactor(scale)); 487 return gfx::ImageSkiaRep(scaled_bitmap, scale); 488 } 489 490 private: 491 const gfx::ImageSkia source_; 492 493 DISALLOW_COPY_AND_ASSIGN(ThemeImageSource); 494 }; 495 496 // An ImageSkiaSource that delays decoding PNG data into bitmaps until 497 // needed. Missing data for a scale factor is computed by scaling data for an 498 // available scale factor. Computed bitmaps are stored for future look up. 499 class ThemeImagePngSource : public gfx::ImageSkiaSource { 500 public: 501 typedef std::map<ui::ScaleFactor, 502 scoped_refptr<base::RefCountedMemory> > PngMap; 503 504 explicit ThemeImagePngSource(const PngMap& png_map) : png_map_(png_map) {} 505 506 virtual ~ThemeImagePngSource() {} 507 508 private: 509 virtual gfx::ImageSkiaRep GetImageForScale(float scale) OVERRIDE { 510 ui::ScaleFactor scale_factor = ui::GetSupportedScaleFactor(scale); 511 // Look up the bitmap for |scale factor| in the bitmap map. If found 512 // return it. 513 BitmapMap::const_iterator exact_bitmap_it = bitmap_map_.find(scale_factor); 514 if (exact_bitmap_it != bitmap_map_.end()) 515 return gfx::ImageSkiaRep(exact_bitmap_it->second, scale); 516 517 // Look up the raw PNG data for |scale_factor| in the png map. If found, 518 // decode it, store the result in the bitmap map and return it. 519 PngMap::const_iterator exact_png_it = png_map_.find(scale_factor); 520 if (exact_png_it != png_map_.end()) { 521 SkBitmap bitmap; 522 if (!gfx::PNGCodec::Decode(exact_png_it->second->front(), 523 exact_png_it->second->size(), 524 &bitmap)) { 525 NOTREACHED(); 526 return gfx::ImageSkiaRep(); 527 } 528 bitmap_map_[scale_factor] = bitmap; 529 return gfx::ImageSkiaRep(bitmap, scale); 530 } 531 532 // Find an available PNG for another scale factor. We want to use the 533 // highest available scale factor. 534 PngMap::const_iterator available_png_it = png_map_.end(); 535 for (PngMap::const_iterator png_it = png_map_.begin(); 536 png_it != png_map_.end(); ++png_it) { 537 if (available_png_it == png_map_.end() || 538 ui::GetScaleForScaleFactor(png_it->first) > 539 ui::GetScaleForScaleFactor(available_png_it->first)) { 540 available_png_it = png_it; 541 } 542 } 543 if (available_png_it == png_map_.end()) 544 return gfx::ImageSkiaRep(); 545 ui::ScaleFactor available_scale_factor = available_png_it->first; 546 547 // Look up the bitmap for |available_scale_factor| in the bitmap map. 548 // If not found, decode the corresponging png data, store the result 549 // in the bitmap map. 550 BitmapMap::const_iterator available_bitmap_it = 551 bitmap_map_.find(available_scale_factor); 552 if (available_bitmap_it == bitmap_map_.end()) { 553 SkBitmap available_bitmap; 554 if (!gfx::PNGCodec::Decode(available_png_it->second->front(), 555 available_png_it->second->size(), 556 &available_bitmap)) { 557 NOTREACHED(); 558 return gfx::ImageSkiaRep(); 559 } 560 bitmap_map_[available_scale_factor] = available_bitmap; 561 available_bitmap_it = bitmap_map_.find(available_scale_factor); 562 } 563 564 // Scale the available bitmap to the desired scale factor, store the result 565 // in the bitmap map and return it. 566 SkBitmap scaled_bitmap = CreateLowQualityResizedBitmap( 567 available_bitmap_it->second, 568 available_scale_factor, 569 scale_factor); 570 bitmap_map_[scale_factor] = scaled_bitmap; 571 return gfx::ImageSkiaRep(scaled_bitmap, scale); 572 } 573 574 PngMap png_map_; 575 576 typedef std::map<ui::ScaleFactor, SkBitmap> BitmapMap; 577 BitmapMap bitmap_map_; 578 579 DISALLOW_COPY_AND_ASSIGN(ThemeImagePngSource); 580 }; 581 582 class TabBackgroundImageSource: public gfx::CanvasImageSource { 583 public: 584 TabBackgroundImageSource(const gfx::ImageSkia& image_to_tint, 585 const gfx::ImageSkia& overlay, 586 const color_utils::HSL& hsl_shift, 587 int vertical_offset) 588 : gfx::CanvasImageSource(image_to_tint.size(), false), 589 image_to_tint_(image_to_tint), 590 overlay_(overlay), 591 hsl_shift_(hsl_shift), 592 vertical_offset_(vertical_offset) { 593 } 594 595 virtual ~TabBackgroundImageSource() { 596 } 597 598 // Overridden from CanvasImageSource: 599 virtual void Draw(gfx::Canvas* canvas) OVERRIDE { 600 gfx::ImageSkia bg_tint = 601 gfx::ImageSkiaOperations::CreateHSLShiftedImage(image_to_tint_, 602 hsl_shift_); 603 canvas->TileImageInt(bg_tint, 0, vertical_offset_, 0, 0, 604 size().width(), size().height()); 605 606 // If they've provided a custom image, overlay it. 607 if (!overlay_.isNull()) { 608 canvas->TileImageInt(overlay_, 0, 0, size().width(), 609 overlay_.height()); 610 } 611 } 612 613 private: 614 const gfx::ImageSkia image_to_tint_; 615 const gfx::ImageSkia overlay_; 616 const color_utils::HSL hsl_shift_; 617 const int vertical_offset_; 618 619 DISALLOW_COPY_AND_ASSIGN(TabBackgroundImageSource); 620 }; 621 622 } // namespace 623 624 BrowserThemePack::~BrowserThemePack() { 625 if (!data_pack_.get()) { 626 delete header_; 627 delete [] tints_; 628 delete [] colors_; 629 delete [] display_properties_; 630 delete [] source_images_; 631 } 632 } 633 634 // static 635 scoped_refptr<BrowserThemePack> BrowserThemePack::BuildFromExtension( 636 const Extension* extension) { 637 DCHECK(BrowserThread::CurrentlyOn(BrowserThread::UI)); 638 DCHECK(extension); 639 DCHECK(extension->is_theme()); 640 641 scoped_refptr<BrowserThemePack> pack(new BrowserThemePack); 642 pack->BuildHeader(extension); 643 pack->BuildTintsFromJSON(extensions::ThemeInfo::GetTints(extension)); 644 pack->BuildColorsFromJSON(extensions::ThemeInfo::GetColors(extension)); 645 pack->BuildDisplayPropertiesFromJSON( 646 extensions::ThemeInfo::GetDisplayProperties(extension)); 647 648 // Builds the images. (Image building is dependent on tints). 649 FilePathMap file_paths; 650 pack->ParseImageNamesFromJSON( 651 extensions::ThemeInfo::GetImages(extension), 652 extension->path(), 653 &file_paths); 654 pack->BuildSourceImagesArray(file_paths); 655 656 if (!pack->LoadRawBitmapsTo(file_paths, &pack->images_on_ui_thread_)) 657 return NULL; 658 659 pack->CreateImages(&pack->images_on_ui_thread_); 660 661 // Make sure the |images_on_file_thread_| has bitmaps for supported 662 // scale factors before passing to FILE thread. 663 pack->images_on_file_thread_ = pack->images_on_ui_thread_; 664 for (ImageCache::iterator it = pack->images_on_file_thread_.begin(); 665 it != pack->images_on_file_thread_.end(); ++it) { 666 gfx::ImageSkia* image_skia = 667 const_cast<gfx::ImageSkia*>(it->second.ToImageSkia()); 668 image_skia->MakeThreadSafe(); 669 } 670 671 // Set ThemeImageSource on |images_on_ui_thread_| to resample the source 672 // image if a caller of BrowserThemePack::GetImageNamed() requests an 673 // ImageSkiaRep for a scale factor not specified by the theme author. 674 // Callers of BrowserThemePack::GetImageNamed() to be able to retrieve 675 // ImageSkiaReps for all supported scale factors. 676 for (ImageCache::iterator it = pack->images_on_ui_thread_.begin(); 677 it != pack->images_on_ui_thread_.end(); ++it) { 678 const gfx::ImageSkia source_image_skia = it->second.AsImageSkia(); 679 ThemeImageSource* source = new ThemeImageSource(source_image_skia); 680 // image_skia takes ownership of source. 681 gfx::ImageSkia image_skia(source, source_image_skia.size()); 682 it->second = gfx::Image(image_skia); 683 } 684 685 // Generate raw images (for new-tab-page attribution and background) for 686 // any missing scale from an available scale image. 687 for (size_t i = 0; i < arraysize(kPreloadIDs); ++i) { 688 pack->GenerateRawImageForAllSupportedScales(kPreloadIDs[i]); 689 } 690 691 // The BrowserThemePack is now in a consistent state. 692 return pack; 693 } 694 695 // static 696 scoped_refptr<BrowserThemePack> BrowserThemePack::BuildFromDataPack( 697 const base::FilePath& path, const std::string& expected_id) { 698 DCHECK(BrowserThread::CurrentlyOn(BrowserThread::UI)); 699 // Allow IO on UI thread due to deep-seated theme design issues. 700 // (see http://crbug.com/80206) 701 base::ThreadRestrictions::ScopedAllowIO allow_io; 702 scoped_refptr<BrowserThemePack> pack(new BrowserThemePack); 703 // Scale factor parameter is moot as data pack has image resources for all 704 // supported scale factors. 705 pack->data_pack_.reset( 706 new ui::DataPack(ui::SCALE_FACTOR_NONE)); 707 708 if (!pack->data_pack_->LoadFromPath(path)) { 709 LOG(ERROR) << "Failed to load theme data pack."; 710 return NULL; 711 } 712 713 base::StringPiece pointer; 714 if (!pack->data_pack_->GetStringPiece(kHeaderID, &pointer)) 715 return NULL; 716 pack->header_ = reinterpret_cast<BrowserThemePackHeader*>(const_cast<char*>( 717 pointer.data())); 718 719 if (pack->header_->version != kThemePackVersion) { 720 DLOG(ERROR) << "BuildFromDataPack failure! Version mismatch!"; 721 return NULL; 722 } 723 // TODO(erg): Check endianess once DataPack works on the other endian. 724 std::string theme_id(reinterpret_cast<char*>(pack->header_->theme_id), 725 extensions::id_util::kIdSize); 726 std::string truncated_id = 727 expected_id.substr(0, extensions::id_util::kIdSize); 728 if (theme_id != truncated_id) { 729 DLOG(ERROR) << "Wrong id: " << theme_id << " vs " << expected_id; 730 return NULL; 731 } 732 733 if (!pack->data_pack_->GetStringPiece(kTintsID, &pointer)) 734 return NULL; 735 pack->tints_ = reinterpret_cast<TintEntry*>(const_cast<char*>( 736 pointer.data())); 737 738 if (!pack->data_pack_->GetStringPiece(kColorsID, &pointer)) 739 return NULL; 740 pack->colors_ = 741 reinterpret_cast<ColorPair*>(const_cast<char*>(pointer.data())); 742 743 if (!pack->data_pack_->GetStringPiece(kDisplayPropertiesID, &pointer)) 744 return NULL; 745 pack->display_properties_ = reinterpret_cast<DisplayPropertyPair*>( 746 const_cast<char*>(pointer.data())); 747 748 if (!pack->data_pack_->GetStringPiece(kSourceImagesID, &pointer)) 749 return NULL; 750 pack->source_images_ = reinterpret_cast<int*>( 751 const_cast<char*>(pointer.data())); 752 753 if (!pack->data_pack_->GetStringPiece(kScaleFactorsID, &pointer)) 754 return NULL; 755 756 if (!InputScalesValid(pointer, pack->scale_factors_)) { 757 DLOG(ERROR) << "BuildFromDataPack failure! The pack scale factors differ " 758 << "from those supported by platform."; 759 return NULL; 760 } 761 return pack; 762 } 763 764 // static 765 void BrowserThemePack::GetThemeableImageIDRs(std::set<int>* result) { 766 if (!result) 767 return; 768 769 result->clear(); 770 for (size_t i = 0; i < kPersistingImagesLength; ++i) 771 result->insert(kPersistingImages[i].idr_id); 772 773 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 774 for (size_t i = 0; i < kPersistingImagesDesktopAuraLength; ++i) 775 result->insert(kPersistingImagesDesktopAura[i].idr_id); 776 #endif 777 } 778 779 bool BrowserThemePack::WriteToDisk(const base::FilePath& path) const { 780 // Add resources for each of the property arrays. 781 RawDataForWriting resources; 782 resources[kHeaderID] = base::StringPiece( 783 reinterpret_cast<const char*>(header_), sizeof(BrowserThemePackHeader)); 784 resources[kTintsID] = base::StringPiece( 785 reinterpret_cast<const char*>(tints_), 786 sizeof(TintEntry[kTintTableLength])); 787 resources[kColorsID] = base::StringPiece( 788 reinterpret_cast<const char*>(colors_), 789 sizeof(ColorPair[kColorTableLength])); 790 resources[kDisplayPropertiesID] = base::StringPiece( 791 reinterpret_cast<const char*>(display_properties_), 792 sizeof(DisplayPropertyPair[kDisplayPropertiesSize])); 793 794 int source_count = 1; 795 int* end = source_images_; 796 for (; *end != -1 ; end++) 797 source_count++; 798 resources[kSourceImagesID] = base::StringPiece( 799 reinterpret_cast<const char*>(source_images_), 800 source_count * sizeof(*source_images_)); 801 802 // Store results of GetScaleFactorsAsString() in std::string as 803 // base::StringPiece does not copy data in constructor. 804 std::string scale_factors_string = GetScaleFactorsAsString(scale_factors_); 805 resources[kScaleFactorsID] = scale_factors_string; 806 807 AddRawImagesTo(image_memory_, &resources); 808 809 RawImages reencoded_images; 810 RepackImages(images_on_file_thread_, &reencoded_images); 811 AddRawImagesTo(reencoded_images, &resources); 812 813 return ui::DataPack::WritePack(path, resources, ui::DataPack::BINARY); 814 } 815 816 bool BrowserThemePack::GetTint(int id, color_utils::HSL* hsl) const { 817 if (tints_) { 818 for (size_t i = 0; i < kTintTableLength; ++i) { 819 if (tints_[i].id == id) { 820 hsl->h = tints_[i].h; 821 hsl->s = tints_[i].s; 822 hsl->l = tints_[i].l; 823 return true; 824 } 825 } 826 } 827 828 return false; 829 } 830 831 bool BrowserThemePack::GetColor(int id, SkColor* color) const { 832 if (colors_) { 833 for (size_t i = 0; i < kColorTableLength; ++i) { 834 if (colors_[i].id == id) { 835 *color = colors_[i].color; 836 return true; 837 } 838 } 839 } 840 841 return false; 842 } 843 844 bool BrowserThemePack::GetDisplayProperty(int id, int* result) const { 845 if (display_properties_) { 846 for (size_t i = 0; i < kDisplayPropertiesSize; ++i) { 847 if (display_properties_[i].id == id) { 848 *result = display_properties_[i].property; 849 return true; 850 } 851 } 852 } 853 854 return false; 855 } 856 857 gfx::Image BrowserThemePack::GetImageNamed(int idr_id) { 858 int prs_id = GetPersistentIDByIDR(idr_id); 859 if (prs_id == -1) 860 return gfx::Image(); 861 862 // Check if the image is cached. 863 ImageCache::const_iterator image_iter = images_on_ui_thread_.find(prs_id); 864 if (image_iter != images_on_ui_thread_.end()) 865 return image_iter->second; 866 867 ThemeImagePngSource::PngMap png_map; 868 for (size_t i = 0; i < scale_factors_.size(); ++i) { 869 scoped_refptr<base::RefCountedMemory> memory = 870 GetRawData(idr_id, scale_factors_[i]); 871 if (memory.get()) 872 png_map[scale_factors_[i]] = memory; 873 } 874 if (!png_map.empty()) { 875 gfx::ImageSkia image_skia(new ThemeImagePngSource(png_map), 1.0f); 876 // |image_skia| takes ownership of ThemeImagePngSource. 877 gfx::Image ret = gfx::Image(image_skia); 878 images_on_ui_thread_[prs_id] = ret; 879 return ret; 880 } 881 882 return gfx::Image(); 883 } 884 885 base::RefCountedMemory* BrowserThemePack::GetRawData( 886 int idr_id, 887 ui::ScaleFactor scale_factor) const { 888 base::RefCountedMemory* memory = NULL; 889 int prs_id = GetPersistentIDByIDR(idr_id); 890 int raw_id = GetRawIDByPersistentID(prs_id, scale_factor); 891 892 if (raw_id != -1) { 893 if (data_pack_.get()) { 894 memory = data_pack_->GetStaticMemory(raw_id); 895 } else { 896 RawImages::const_iterator it = image_memory_.find(raw_id); 897 if (it != image_memory_.end()) { 898 memory = it->second.get(); 899 } 900 } 901 } 902 903 return memory; 904 } 905 906 bool BrowserThemePack::HasCustomImage(int idr_id) const { 907 int prs_id = GetPersistentIDByIDR(idr_id); 908 if (prs_id == -1) 909 return false; 910 911 int* img = source_images_; 912 for (; *img != -1; ++img) { 913 if (*img == prs_id) 914 return true; 915 } 916 917 return false; 918 } 919 920 // private: 921 922 BrowserThemePack::BrowserThemePack() 923 : CustomThemeSupplier(EXTENSION), 924 header_(NULL), 925 tints_(NULL), 926 colors_(NULL), 927 display_properties_(NULL), 928 source_images_(NULL) { 929 scale_factors_ = ui::GetSupportedScaleFactors(); 930 // On Windows HiDPI SCALE_FACTOR_100P may not be supported by default. 931 if (std::find(scale_factors_.begin(), scale_factors_.end(), 932 ui::SCALE_FACTOR_100P) == scale_factors_.end()) { 933 scale_factors_.push_back(ui::SCALE_FACTOR_100P); 934 } 935 } 936 937 void BrowserThemePack::BuildHeader(const Extension* extension) { 938 header_ = new BrowserThemePackHeader; 939 header_->version = kThemePackVersion; 940 941 // TODO(erg): Need to make this endian safe on other computers. Prerequisite 942 // is that ui::DataPack removes this same check. 943 #if defined(__BYTE_ORDER) 944 // Linux check 945 COMPILE_ASSERT(__BYTE_ORDER == __LITTLE_ENDIAN, 946 datapack_assumes_little_endian); 947 #elif defined(__BIG_ENDIAN__) 948 // Mac check 949 #error DataPack assumes little endian 950 #endif 951 header_->little_endian = 1; 952 953 const std::string& id = extension->id(); 954 memcpy(header_->theme_id, id.c_str(), extensions::id_util::kIdSize); 955 } 956 957 void BrowserThemePack::BuildTintsFromJSON( 958 const base::DictionaryValue* tints_value) { 959 tints_ = new TintEntry[kTintTableLength]; 960 for (size_t i = 0; i < kTintTableLength; ++i) { 961 tints_[i].id = -1; 962 tints_[i].h = -1; 963 tints_[i].s = -1; 964 tints_[i].l = -1; 965 } 966 967 if (!tints_value) 968 return; 969 970 // Parse the incoming data from |tints_value| into an intermediary structure. 971 std::map<int, color_utils::HSL> temp_tints; 972 for (base::DictionaryValue::Iterator iter(*tints_value); !iter.IsAtEnd(); 973 iter.Advance()) { 974 const base::ListValue* tint_list; 975 if (iter.value().GetAsList(&tint_list) && 976 (tint_list->GetSize() == 3)) { 977 color_utils::HSL hsl = { -1, -1, -1 }; 978 979 if (tint_list->GetDouble(0, &hsl.h) && 980 tint_list->GetDouble(1, &hsl.s) && 981 tint_list->GetDouble(2, &hsl.l)) { 982 int id = GetIntForString(iter.key(), kTintTable, kTintTableLength); 983 if (id != -1) { 984 temp_tints[id] = hsl; 985 } 986 } 987 } 988 } 989 990 // Copy data from the intermediary data structure to the array. 991 size_t count = 0; 992 for (std::map<int, color_utils::HSL>::const_iterator it = 993 temp_tints.begin(); 994 it != temp_tints.end() && count < kTintTableLength; 995 ++it, ++count) { 996 tints_[count].id = it->first; 997 tints_[count].h = it->second.h; 998 tints_[count].s = it->second.s; 999 tints_[count].l = it->second.l; 1000 } 1001 } 1002 1003 void BrowserThemePack::BuildColorsFromJSON( 1004 const base::DictionaryValue* colors_value) { 1005 colors_ = new ColorPair[kColorTableLength]; 1006 for (size_t i = 0; i < kColorTableLength; ++i) { 1007 colors_[i].id = -1; 1008 colors_[i].color = SkColorSetRGB(0, 0, 0); 1009 } 1010 1011 std::map<int, SkColor> temp_colors; 1012 if (colors_value) 1013 ReadColorsFromJSON(colors_value, &temp_colors); 1014 GenerateMissingColors(&temp_colors); 1015 1016 // Copy data from the intermediary data structure to the array. 1017 size_t count = 0; 1018 for (std::map<int, SkColor>::const_iterator it = temp_colors.begin(); 1019 it != temp_colors.end() && count < kColorTableLength; ++it, ++count) { 1020 colors_[count].id = it->first; 1021 colors_[count].color = it->second; 1022 } 1023 } 1024 1025 void BrowserThemePack::ReadColorsFromJSON( 1026 const base::DictionaryValue* colors_value, 1027 std::map<int, SkColor>* temp_colors) { 1028 // Parse the incoming data from |colors_value| into an intermediary structure. 1029 for (base::DictionaryValue::Iterator iter(*colors_value); !iter.IsAtEnd(); 1030 iter.Advance()) { 1031 const base::ListValue* color_list; 1032 if (iter.value().GetAsList(&color_list) && 1033 ((color_list->GetSize() == 3) || (color_list->GetSize() == 4))) { 1034 SkColor color = SK_ColorWHITE; 1035 int r, g, b; 1036 if (color_list->GetInteger(0, &r) && 1037 color_list->GetInteger(1, &g) && 1038 color_list->GetInteger(2, &b)) { 1039 if (color_list->GetSize() == 4) { 1040 double alpha; 1041 int alpha_int; 1042 if (color_list->GetDouble(3, &alpha)) { 1043 color = SkColorSetARGB(static_cast<int>(alpha * 255), r, g, b); 1044 } else if (color_list->GetInteger(3, &alpha_int) && 1045 (alpha_int == 0 || alpha_int == 1)) { 1046 color = SkColorSetARGB(alpha_int ? 255 : 0, r, g, b); 1047 } else { 1048 // Invalid entry for part 4. 1049 continue; 1050 } 1051 } else { 1052 color = SkColorSetRGB(r, g, b); 1053 } 1054 1055 int id = GetIntForString(iter.key(), kColorTable, kColorTableLength); 1056 if (id != -1) { 1057 (*temp_colors)[id] = color; 1058 } 1059 } 1060 } 1061 } 1062 } 1063 1064 void BrowserThemePack::GenerateMissingColors( 1065 std::map<int, SkColor>* colors) { 1066 // Generate link colors, if missing. (See GetColor()). 1067 if (!colors->count(ThemeProperties::COLOR_NTP_HEADER) && 1068 colors->count(ThemeProperties::COLOR_NTP_SECTION)) { 1069 (*colors)[ThemeProperties::COLOR_NTP_HEADER] = 1070 (*colors)[ThemeProperties::COLOR_NTP_SECTION]; 1071 } 1072 1073 if (!colors->count(ThemeProperties::COLOR_NTP_SECTION_LINK_UNDERLINE) && 1074 colors->count(ThemeProperties::COLOR_NTP_SECTION_LINK)) { 1075 SkColor color_section_link = 1076 (*colors)[ThemeProperties::COLOR_NTP_SECTION_LINK]; 1077 (*colors)[ThemeProperties::COLOR_NTP_SECTION_LINK_UNDERLINE] = 1078 SkColorSetA(color_section_link, SkColorGetA(color_section_link) / 3); 1079 } 1080 1081 if (!colors->count(ThemeProperties::COLOR_NTP_LINK_UNDERLINE) && 1082 colors->count(ThemeProperties::COLOR_NTP_LINK)) { 1083 SkColor color_link = (*colors)[ThemeProperties::COLOR_NTP_LINK]; 1084 (*colors)[ThemeProperties::COLOR_NTP_LINK_UNDERLINE] = 1085 SkColorSetA(color_link, SkColorGetA(color_link) / 3); 1086 } 1087 1088 // Generate frame colors, if missing. (See GenerateFrameColors()). 1089 SkColor frame; 1090 std::map<int, SkColor>::const_iterator it = 1091 colors->find(ThemeProperties::COLOR_FRAME); 1092 if (it != colors->end()) { 1093 frame = it->second; 1094 } else { 1095 frame = ThemeProperties::GetDefaultColor( 1096 ThemeProperties::COLOR_FRAME); 1097 } 1098 1099 if (!colors->count(ThemeProperties::COLOR_FRAME)) { 1100 (*colors)[ThemeProperties::COLOR_FRAME] = 1101 HSLShift(frame, GetTintInternal(ThemeProperties::TINT_FRAME)); 1102 } 1103 if (!colors->count(ThemeProperties::COLOR_FRAME_INACTIVE)) { 1104 (*colors)[ThemeProperties::COLOR_FRAME_INACTIVE] = 1105 HSLShift(frame, GetTintInternal( 1106 ThemeProperties::TINT_FRAME_INACTIVE)); 1107 } 1108 if (!colors->count(ThemeProperties::COLOR_FRAME_INCOGNITO)) { 1109 (*colors)[ThemeProperties::COLOR_FRAME_INCOGNITO] = 1110 HSLShift(frame, GetTintInternal( 1111 ThemeProperties::TINT_FRAME_INCOGNITO)); 1112 } 1113 if (!colors->count(ThemeProperties::COLOR_FRAME_INCOGNITO_INACTIVE)) { 1114 (*colors)[ThemeProperties::COLOR_FRAME_INCOGNITO_INACTIVE] = 1115 HSLShift(frame, GetTintInternal( 1116 ThemeProperties::TINT_FRAME_INCOGNITO_INACTIVE)); 1117 } 1118 } 1119 1120 void BrowserThemePack::BuildDisplayPropertiesFromJSON( 1121 const base::DictionaryValue* display_properties_value) { 1122 display_properties_ = new DisplayPropertyPair[kDisplayPropertiesSize]; 1123 for (size_t i = 0; i < kDisplayPropertiesSize; ++i) { 1124 display_properties_[i].id = -1; 1125 display_properties_[i].property = 0; 1126 } 1127 1128 if (!display_properties_value) 1129 return; 1130 1131 std::map<int, int> temp_properties; 1132 for (base::DictionaryValue::Iterator iter(*display_properties_value); 1133 !iter.IsAtEnd(); iter.Advance()) { 1134 int property_id = GetIntForString(iter.key(), kDisplayProperties, 1135 kDisplayPropertiesSize); 1136 switch (property_id) { 1137 case ThemeProperties::NTP_BACKGROUND_ALIGNMENT: { 1138 std::string val; 1139 if (iter.value().GetAsString(&val)) { 1140 temp_properties[ThemeProperties::NTP_BACKGROUND_ALIGNMENT] = 1141 ThemeProperties::StringToAlignment(val); 1142 } 1143 break; 1144 } 1145 case ThemeProperties::NTP_BACKGROUND_TILING: { 1146 std::string val; 1147 if (iter.value().GetAsString(&val)) { 1148 temp_properties[ThemeProperties::NTP_BACKGROUND_TILING] = 1149 ThemeProperties::StringToTiling(val); 1150 } 1151 break; 1152 } 1153 case ThemeProperties::NTP_LOGO_ALTERNATE: { 1154 int val = 0; 1155 if (iter.value().GetAsInteger(&val)) 1156 temp_properties[ThemeProperties::NTP_LOGO_ALTERNATE] = val; 1157 break; 1158 } 1159 } 1160 } 1161 1162 // Copy data from the intermediary data structure to the array. 1163 size_t count = 0; 1164 for (std::map<int, int>::const_iterator it = temp_properties.begin(); 1165 it != temp_properties.end() && count < kDisplayPropertiesSize; 1166 ++it, ++count) { 1167 display_properties_[count].id = it->first; 1168 display_properties_[count].property = it->second; 1169 } 1170 } 1171 1172 void BrowserThemePack::ParseImageNamesFromJSON( 1173 const base::DictionaryValue* images_value, 1174 const base::FilePath& images_path, 1175 FilePathMap* file_paths) const { 1176 if (!images_value) 1177 return; 1178 1179 for (base::DictionaryValue::Iterator iter(*images_value); !iter.IsAtEnd(); 1180 iter.Advance()) { 1181 if (iter.value().IsType(base::Value::TYPE_DICTIONARY)) { 1182 const base::DictionaryValue* inner_value = NULL; 1183 if (iter.value().GetAsDictionary(&inner_value)) { 1184 for (base::DictionaryValue::Iterator inner_iter(*inner_value); 1185 !inner_iter.IsAtEnd(); 1186 inner_iter.Advance()) { 1187 std::string name; 1188 ui::ScaleFactor scale_factor = ui::SCALE_FACTOR_NONE; 1189 if (GetScaleFactorFromManifestKey(inner_iter.key(), &scale_factor) && 1190 inner_iter.value().IsType(base::Value::TYPE_STRING) && 1191 inner_iter.value().GetAsString(&name)) { 1192 AddFileAtScaleToMap(iter.key(), 1193 scale_factor, 1194 images_path.AppendASCII(name), 1195 file_paths); 1196 } 1197 } 1198 } 1199 } else if (iter.value().IsType(base::Value::TYPE_STRING)) { 1200 std::string name; 1201 if (iter.value().GetAsString(&name)) { 1202 AddFileAtScaleToMap(iter.key(), 1203 ui::SCALE_FACTOR_100P, 1204 images_path.AppendASCII(name), 1205 file_paths); 1206 } 1207 } 1208 } 1209 } 1210 1211 void BrowserThemePack::AddFileAtScaleToMap(const std::string& image_name, 1212 ui::ScaleFactor scale_factor, 1213 const base::FilePath& image_path, 1214 FilePathMap* file_paths) const { 1215 int id = GetPersistentIDByName(image_name); 1216 if (id != -1) 1217 (*file_paths)[id][scale_factor] = image_path; 1218 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 1219 id = GetPersistentIDByNameHelper(image_name, 1220 kPersistingImagesDesktopAura, 1221 kPersistingImagesDesktopAuraLength); 1222 if (id != -1) 1223 (*file_paths)[id][scale_factor] = image_path; 1224 #endif 1225 } 1226 1227 void BrowserThemePack::BuildSourceImagesArray(const FilePathMap& file_paths) { 1228 std::vector<int> ids; 1229 for (FilePathMap::const_iterator it = file_paths.begin(); 1230 it != file_paths.end(); ++it) { 1231 ids.push_back(it->first); 1232 } 1233 1234 source_images_ = new int[ids.size() + 1]; 1235 std::copy(ids.begin(), ids.end(), source_images_); 1236 source_images_[ids.size()] = -1; 1237 } 1238 1239 bool BrowserThemePack::LoadRawBitmapsTo( 1240 const FilePathMap& file_paths, 1241 ImageCache* image_cache) { 1242 // Themes should be loaded on the file thread, not the UI thread. 1243 // http://crbug.com/61838 1244 base::ThreadRestrictions::ScopedAllowIO allow_io; 1245 1246 for (FilePathMap::const_iterator it = file_paths.begin(); 1247 it != file_paths.end(); ++it) { 1248 int prs_id = it->first; 1249 // Some images need to go directly into |image_memory_|. No modification is 1250 // necessary or desirable. 1251 bool is_copyable = false; 1252 for (size_t i = 0; i < arraysize(kPreloadIDs); ++i) { 1253 if (kPreloadIDs[i] == prs_id) { 1254 is_copyable = true; 1255 break; 1256 } 1257 } 1258 gfx::ImageSkia image_skia; 1259 for (int pass = 0; pass < 2; ++pass) { 1260 // Two passes: In the first pass, we process only scale factor 1261 // 100% and in the second pass all other scale factors. We 1262 // process scale factor 100% first because the first image added 1263 // in image_skia.AddRepresentation() determines the DIP size for 1264 // all representations. 1265 for (ScaleFactorToFileMap::const_iterator s2f = it->second.begin(); 1266 s2f != it->second.end(); ++s2f) { 1267 ui::ScaleFactor scale_factor = s2f->first; 1268 if ((pass == 0 && scale_factor != ui::SCALE_FACTOR_100P) || 1269 (pass == 1 && scale_factor == ui::SCALE_FACTOR_100P)) { 1270 continue; 1271 } 1272 scoped_refptr<base::RefCountedMemory> raw_data( 1273 ReadFileData(s2f->second)); 1274 if (!raw_data.get() || !raw_data->size()) { 1275 LOG(ERROR) << "Could not load theme image" 1276 << " prs_id=" << prs_id 1277 << " scale_factor_enum=" << scale_factor 1278 << " file=" << s2f->second.value() 1279 << (raw_data.get() ? " (zero size)" : " (read error)"); 1280 return false; 1281 } 1282 if (is_copyable) { 1283 int raw_id = GetRawIDByPersistentID(prs_id, scale_factor); 1284 image_memory_[raw_id] = raw_data; 1285 } else { 1286 SkBitmap bitmap; 1287 if (gfx::PNGCodec::Decode(raw_data->front(), raw_data->size(), 1288 &bitmap)) { 1289 image_skia.AddRepresentation( 1290 gfx::ImageSkiaRep(bitmap, 1291 ui::GetScaleForScaleFactor(scale_factor))); 1292 } else { 1293 NOTREACHED() << "Unable to decode theme image resource " 1294 << it->first; 1295 } 1296 } 1297 } 1298 } 1299 if (!is_copyable && !image_skia.isNull()) 1300 (*image_cache)[prs_id] = gfx::Image(image_skia); 1301 } 1302 1303 return true; 1304 } 1305 1306 void BrowserThemePack::CreateImages(ImageCache* images) const { 1307 CropImages(images); 1308 CreateFrameImages(images); 1309 CreateTintedButtons(GetTintInternal(ThemeProperties::TINT_BUTTONS), images); 1310 CreateTabBackgroundImages(images); 1311 } 1312 1313 void BrowserThemePack::CropImages(ImageCache* images) const { 1314 bool has_frame_border = HasFrameBorder(); 1315 for (size_t i = 0; i < arraysize(kImagesToCrop); ++i) { 1316 if (has_frame_border && kImagesToCrop[i].skip_if_frame_border) 1317 continue; 1318 1319 int prs_id = kImagesToCrop[i].prs_id; 1320 ImageCache::iterator it = images->find(prs_id); 1321 if (it == images->end()) 1322 continue; 1323 1324 int crop_height = kImagesToCrop[i].max_height; 1325 gfx::ImageSkia image_skia = it->second.AsImageSkia(); 1326 (*images)[prs_id] = gfx::Image(gfx::ImageSkiaOperations::ExtractSubset( 1327 image_skia, gfx::Rect(0, 0, image_skia.width(), crop_height))); 1328 } 1329 } 1330 1331 void BrowserThemePack::CreateFrameImages(ImageCache* images) const { 1332 ResourceBundle& rb = ResourceBundle::GetSharedInstance(); 1333 1334 // Create all the output images in a separate cache and move them back into 1335 // the input images because there can be name collisions. 1336 ImageCache temp_output; 1337 1338 for (size_t i = 0; i < arraysize(kFrameTintMap); ++i) { 1339 int prs_id = kFrameTintMap[i].key; 1340 gfx::Image frame; 1341 // If there's no frame image provided for the specified id, then load 1342 // the default provided frame. If that's not provided, skip this whole 1343 // thing and just use the default images. 1344 int prs_base_id = 0; 1345 1346 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 1347 if (prs_id == PRS_THEME_FRAME_INCOGNITO_INACTIVE_DESKTOP) { 1348 prs_base_id = images->count(PRS_THEME_FRAME_INCOGNITO_DESKTOP) ? 1349 PRS_THEME_FRAME_INCOGNITO_DESKTOP : PRS_THEME_FRAME_DESKTOP; 1350 } else if (prs_id == PRS_THEME_FRAME_INACTIVE_DESKTOP) { 1351 prs_base_id = PRS_THEME_FRAME_DESKTOP; 1352 } else if (prs_id == PRS_THEME_FRAME_INCOGNITO_DESKTOP && 1353 !images->count(PRS_THEME_FRAME_INCOGNITO_DESKTOP)) { 1354 prs_base_id = PRS_THEME_FRAME_DESKTOP; 1355 } 1356 #endif 1357 if (!prs_base_id) { 1358 if (prs_id == PRS_THEME_FRAME_INCOGNITO_INACTIVE) { 1359 prs_base_id = images->count(PRS_THEME_FRAME_INCOGNITO) ? 1360 PRS_THEME_FRAME_INCOGNITO : PRS_THEME_FRAME; 1361 } else if (prs_id == PRS_THEME_FRAME_OVERLAY_INACTIVE) { 1362 prs_base_id = PRS_THEME_FRAME_OVERLAY; 1363 } else if (prs_id == PRS_THEME_FRAME_INACTIVE) { 1364 prs_base_id = PRS_THEME_FRAME; 1365 } else if (prs_id == PRS_THEME_FRAME_INCOGNITO && 1366 !images->count(PRS_THEME_FRAME_INCOGNITO)) { 1367 prs_base_id = PRS_THEME_FRAME; 1368 } else { 1369 prs_base_id = prs_id; 1370 } 1371 } 1372 if (images->count(prs_id)) { 1373 frame = (*images)[prs_id]; 1374 } else if (prs_base_id != prs_id && images->count(prs_base_id)) { 1375 frame = (*images)[prs_base_id]; 1376 } else if (prs_base_id == PRS_THEME_FRAME_OVERLAY) { 1377 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 1378 if (images->count(PRS_THEME_FRAME_DESKTOP)) { 1379 #else 1380 if (images->count(PRS_THEME_FRAME)) { 1381 #endif 1382 // If there is no theme overlay, don't tint the default frame, 1383 // because it will overwrite the custom frame image when we cache and 1384 // reload from disk. 1385 frame = gfx::Image(); 1386 } 1387 } else { 1388 // If the theme doesn't specify an image, then apply the tint to 1389 // the default frame. 1390 frame = rb.GetImageNamed(IDR_THEME_FRAME); 1391 #if defined(USE_ASH) && !defined(OS_CHROMEOS) 1392 if (prs_id >= PRS_THEME_FRAME_DESKTOP && 1393 prs_id <= PRS_THEME_FRAME_INCOGNITO_INACTIVE_DESKTOP) { 1394 frame = rb.GetImageNamed(IDR_THEME_FRAME_DESKTOP); 1395 } 1396 #endif 1397 } 1398 if (!frame.IsEmpty()) { 1399 temp_output[prs_id] = CreateHSLShiftedImage( 1400 frame, GetTintInternal(kFrameTintMap[i].value)); 1401 } 1402 } 1403 MergeImageCaches(temp_output, images); 1404 } 1405 1406 void BrowserThemePack::CreateTintedButtons( 1407 const color_utils::HSL& button_tint, 1408 ImageCache* processed_images) const { 1409 if (button_tint.h != -1 || button_tint.s != -1 || button_tint.l != -1) { 1410 ResourceBundle& rb = ResourceBundle::GetSharedInstance(); 1411 const std::set<int>& idr_ids = 1412 ThemeProperties::GetTintableToolbarButtons(); 1413 for (std::set<int>::const_iterator it = idr_ids.begin(); 1414 it != idr_ids.end(); ++it) { 1415 int prs_id = GetPersistentIDByIDR(*it); 1416 DCHECK(prs_id > 0); 1417 1418 // Fetch the image by IDR... 1419 gfx::Image& button = rb.GetImageNamed(*it); 1420 1421 // but save a version with the persistent ID. 1422 (*processed_images)[prs_id] = 1423 CreateHSLShiftedImage(button, button_tint); 1424 } 1425 } 1426 } 1427 1428 void BrowserThemePack::CreateTabBackgroundImages(ImageCache* images) const { 1429 ImageCache temp_output; 1430 for (size_t i = 0; i < arraysize(kTabBackgroundMap); ++i) { 1431 int prs_id = kTabBackgroundMap[i].key; 1432 int prs_base_id = kTabBackgroundMap[i].value; 1433 1434 // We only need to generate the background tab images if we were provided 1435 // with a PRS_THEME_FRAME. 1436 ImageCache::const_iterator it = images->find(prs_base_id); 1437 if (it != images->end()) { 1438 gfx::ImageSkia image_to_tint = (it->second).AsImageSkia(); 1439 color_utils::HSL hsl_shift = GetTintInternal( 1440 ThemeProperties::TINT_BACKGROUND_TAB); 1441 int vertical_offset = images->count(prs_id) 1442 ? kRestoredTabVerticalOffset : 0; 1443 1444 gfx::ImageSkia overlay; 1445 ImageCache::const_iterator overlay_it = images->find(prs_id); 1446 if (overlay_it != images->end()) 1447 overlay = overlay_it->second.AsImageSkia(); 1448 1449 gfx::ImageSkiaSource* source = new TabBackgroundImageSource( 1450 image_to_tint, overlay, hsl_shift, vertical_offset); 1451 // ImageSkia takes ownership of |source|. 1452 temp_output[prs_id] = gfx::Image(gfx::ImageSkia(source, 1453 image_to_tint.size())); 1454 } 1455 } 1456 MergeImageCaches(temp_output, images); 1457 } 1458 1459 void BrowserThemePack::RepackImages(const ImageCache& images, 1460 RawImages* reencoded_images) const { 1461 for (ImageCache::const_iterator it = images.begin(); 1462 it != images.end(); ++it) { 1463 gfx::ImageSkia image_skia = *it->second.ToImageSkia(); 1464 1465 typedef std::vector<gfx::ImageSkiaRep> ImageSkiaReps; 1466 ImageSkiaReps image_reps = image_skia.image_reps(); 1467 if (image_reps.empty()) { 1468 NOTREACHED() << "No image reps for resource " << it->first << "."; 1469 } 1470 for (ImageSkiaReps::iterator rep_it = image_reps.begin(); 1471 rep_it != image_reps.end(); ++rep_it) { 1472 std::vector<unsigned char> bitmap_data; 1473 if (!gfx::PNGCodec::EncodeBGRASkBitmap(rep_it->sk_bitmap(), false, 1474 &bitmap_data)) { 1475 NOTREACHED() << "Image file for resource " << it->first 1476 << " could not be encoded."; 1477 } 1478 int raw_id = GetRawIDByPersistentID( 1479 it->first, 1480 ui::GetSupportedScaleFactor(rep_it->scale())); 1481 (*reencoded_images)[raw_id] = 1482 base::RefCountedBytes::TakeVector(&bitmap_data); 1483 } 1484 } 1485 } 1486 1487 void BrowserThemePack::MergeImageCaches( 1488 const ImageCache& source, ImageCache* destination) const { 1489 for (ImageCache::const_iterator it = source.begin(); it != source.end(); 1490 ++it) { 1491 (*destination)[it->first] = it->second; 1492 } 1493 } 1494 1495 void BrowserThemePack::AddRawImagesTo(const RawImages& images, 1496 RawDataForWriting* out) const { 1497 for (RawImages::const_iterator it = images.begin(); it != images.end(); 1498 ++it) { 1499 (*out)[it->first] = base::StringPiece( 1500 it->second->front_as<char>(), it->second->size()); 1501 } 1502 } 1503 1504 color_utils::HSL BrowserThemePack::GetTintInternal(int id) const { 1505 if (tints_) { 1506 for (size_t i = 0; i < kTintTableLength; ++i) { 1507 if (tints_[i].id == id) { 1508 color_utils::HSL hsl; 1509 hsl.h = tints_[i].h; 1510 hsl.s = tints_[i].s; 1511 hsl.l = tints_[i].l; 1512 return hsl; 1513 } 1514 } 1515 } 1516 1517 return ThemeProperties::GetDefaultTint(id); 1518 } 1519 1520 int BrowserThemePack::GetRawIDByPersistentID( 1521 int prs_id, 1522 ui::ScaleFactor scale_factor) const { 1523 if (prs_id < 0) 1524 return -1; 1525 1526 for (size_t i = 0; i < scale_factors_.size(); ++i) { 1527 if (scale_factors_[i] == scale_factor) 1528 return static_cast<int>(kPersistingImagesLength * i) + prs_id; 1529 } 1530 return -1; 1531 } 1532 1533 bool BrowserThemePack::GetScaleFactorFromManifestKey( 1534 const std::string& key, 1535 ui::ScaleFactor* scale_factor) const { 1536 int percent = 0; 1537 if (base::StringToInt(key, &percent)) { 1538 float scale = static_cast<float>(percent) / 100.0f; 1539 for (size_t i = 0; i < scale_factors_.size(); ++i) { 1540 if (fabs(ui::GetScaleForScaleFactor(scale_factors_[i]) - scale) 1541 < 0.001) { 1542 *scale_factor = scale_factors_[i]; 1543 return true; 1544 } 1545 } 1546 } 1547 return false; 1548 } 1549 1550 void BrowserThemePack::GenerateRawImageForAllSupportedScales(int prs_id) { 1551 // Compute (by scaling) bitmaps for |prs_id| for any scale factors 1552 // for which the theme author did not provide a bitmap. We compute 1553 // the bitmaps using the highest scale factor that theme author 1554 // provided. 1555 // Note: We use only supported scale factors. For example, if scale 1556 // factor 2x is supported by the current system, but 1.8x is not and 1557 // if the theme author did not provide an image for 2x but one for 1558 // 1.8x, we will not use the 1.8x image here. Here we will only use 1559 // images provided for scale factors supported by the current system. 1560 1561 // See if any image is missing. If not, we're done. 1562 bool image_missing = false; 1563 for (size_t i = 0; i < scale_factors_.size(); ++i) { 1564 int raw_id = GetRawIDByPersistentID(prs_id, scale_factors_[i]); 1565 if (image_memory_.find(raw_id) == image_memory_.end()) { 1566 image_missing = true; 1567 break; 1568 } 1569 } 1570 if (!image_missing) 1571 return; 1572 1573 // Find available scale factor with highest scale. 1574 ui::ScaleFactor available_scale_factor = ui::SCALE_FACTOR_NONE; 1575 for (size_t i = 0; i < scale_factors_.size(); ++i) { 1576 int raw_id = GetRawIDByPersistentID(prs_id, scale_factors_[i]); 1577 if ((available_scale_factor == ui::SCALE_FACTOR_NONE || 1578 (ui::GetScaleForScaleFactor(scale_factors_[i]) > 1579 ui::GetScaleForScaleFactor(available_scale_factor))) && 1580 image_memory_.find(raw_id) != image_memory_.end()) { 1581 available_scale_factor = scale_factors_[i]; 1582 } 1583 } 1584 // If no scale factor is available, we're done. 1585 if (available_scale_factor == ui::SCALE_FACTOR_NONE) 1586 return; 1587 1588 // Get bitmap for the available scale factor. 1589 int available_raw_id = GetRawIDByPersistentID(prs_id, available_scale_factor); 1590 RawImages::const_iterator it = image_memory_.find(available_raw_id); 1591 SkBitmap available_bitmap; 1592 if (!gfx::PNGCodec::Decode(it->second->front(), 1593 it->second->size(), 1594 &available_bitmap)) { 1595 NOTREACHED() << "Unable to decode theme image for prs_id=" 1596 << prs_id << " for scale_factor=" << available_scale_factor; 1597 return; 1598 } 1599 1600 // Fill in all missing scale factors by scaling the available bitmap. 1601 for (size_t i = 0; i < scale_factors_.size(); ++i) { 1602 int scaled_raw_id = GetRawIDByPersistentID(prs_id, scale_factors_[i]); 1603 if (image_memory_.find(scaled_raw_id) != image_memory_.end()) 1604 continue; 1605 SkBitmap scaled_bitmap = 1606 CreateLowQualityResizedBitmap(available_bitmap, 1607 available_scale_factor, 1608 scale_factors_[i]); 1609 std::vector<unsigned char> bitmap_data; 1610 if (!gfx::PNGCodec::EncodeBGRASkBitmap(scaled_bitmap, 1611 false, 1612 &bitmap_data)) { 1613 NOTREACHED() << "Unable to encode theme image for prs_id=" 1614 << prs_id << " for scale_factor=" << scale_factors_[i]; 1615 break; 1616 } 1617 image_memory_[scaled_raw_id] = 1618 base::RefCountedBytes::TakeVector(&bitmap_data); 1619 } 1620 } 1621