1 /* 2 * (C) 1999-2003 Lars Knoll (knoll (at) kde.org) 3 * Copyright (C) 2004, 2005, 2006, 2008 Apple Inc. All rights reserved. 4 * Copyright (C) 2007 Alexey Proskuryakov <ap (at) webkit.org> 5 * 6 * This library is free software; you can redistribute it and/or 7 * modify it under the terms of the GNU Library General Public 8 * License as published by the Free Software Foundation; either 9 * version 2 of the License, or (at your option) any later version. 10 * 11 * This library is distributed in the hope that it will be useful, 12 * but WITHOUT ANY WARRANTY; without even the implied warranty of 13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 14 * Library General Public License for more details. 15 * 16 * You should have received a copy of the GNU Library General Public License 17 * along with this library; see the file COPYING.LIB. If not, write to 18 * the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, 19 * Boston, MA 02110-1301, USA. 20 */ 21 22 #ifndef CSSPrimitiveValue_h 23 #define CSSPrimitiveValue_h 24 25 #include "core/CSSPropertyNames.h" 26 #include "core/CSSValueKeywords.h" 27 #include "core/css/CSSValue.h" 28 #include "platform/graphics/Color.h" 29 #include "wtf/Forward.h" 30 #include "wtf/MathExtras.h" 31 #include "wtf/PassRefPtr.h" 32 33 namespace blink { 34 35 class CSSBasicShape; 36 class CSSCalcValue; 37 class CSSToLengthConversionData; 38 class Counter; 39 class ExceptionState; 40 class Length; 41 class LengthSize; 42 class Pair; 43 class Quad; 44 class RGBColor; 45 class Rect; 46 class RenderStyle; 47 48 // Dimension calculations are imprecise, often resulting in values of e.g. 49 // 44.99998. We need to go ahead and round if we're really close to the next 50 // integer value. 51 template<typename T> inline T roundForImpreciseConversion(double value) 52 { 53 value += (value < 0) ? -0.01 : +0.01; 54 return ((value > std::numeric_limits<T>::max()) || (value < std::numeric_limits<T>::min())) ? 0 : static_cast<T>(value); 55 } 56 57 template<> inline float roundForImpreciseConversion(double value) 58 { 59 double ceiledValue = ceil(value); 60 double proximityToNextInt = ceiledValue - value; 61 if (proximityToNextInt <= 0.01 && value > 0) 62 return static_cast<float>(ceiledValue); 63 if (proximityToNextInt >= 0.99 && value < 0) 64 return static_cast<float>(floor(value)); 65 return static_cast<float>(value); 66 } 67 68 // CSSPrimitiveValues are immutable. This class has manual ref-counting 69 // of unioned types and does not have the code necessary 70 // to handle any kind of mutations. All DOM-exposed "setters" just throw 71 // exceptions. 72 class CSSPrimitiveValue : public CSSValue { 73 public: 74 enum UnitType { 75 CSS_UNKNOWN = 0, 76 CSS_NUMBER = 1, 77 CSS_PERCENTAGE = 2, 78 CSS_EMS = 3, 79 CSS_EXS = 4, 80 CSS_PX = 5, 81 CSS_CM = 6, 82 CSS_MM = 7, 83 CSS_IN = 8, 84 CSS_PT = 9, 85 CSS_PC = 10, 86 CSS_DEG = 11, 87 CSS_RAD = 12, 88 CSS_GRAD = 13, 89 CSS_MS = 14, 90 CSS_S = 15, 91 CSS_HZ = 16, 92 CSS_KHZ = 17, 93 CSS_DIMENSION = 18, 94 CSS_STRING = 19, 95 CSS_URI = 20, 96 CSS_IDENT = 21, 97 CSS_ATTR = 22, 98 CSS_COUNTER = 23, 99 CSS_RECT = 24, 100 CSS_RGBCOLOR = 25, 101 // From CSS Values and Units. Viewport-percentage Lengths (vw/vh/vmin/vmax). 102 CSS_VW = 26, 103 CSS_VH = 27, 104 CSS_VMIN = 28, 105 CSS_VMAX = 29, 106 CSS_DPPX = 30, 107 CSS_DPI = 31, 108 CSS_DPCM = 32, 109 CSS_FR = 33, 110 CSS_PAIR = 100, // We envision this being exposed as a means of getting computed style values for pairs (border-spacing/radius, background-position, etc.) 111 CSS_UNICODE_RANGE = 102, 112 113 // FIXME: This is only used in CSSParserValue, so it's probably better as part of the enum there 114 CSS_PARSER_HEXCOLOR = 105, 115 116 // These are from CSS3 Values and Units, but that isn't a finished standard yet 117 CSS_TURN = 107, 118 CSS_REMS = 108, 119 CSS_CHS = 109, 120 121 // This is used internally for counter names (as opposed to counter values) 122 CSS_COUNTER_NAME = 110, 123 124 // This is used by the CSS Shapes draft 125 CSS_SHAPE = 111, 126 127 // Used by border images. 128 CSS_QUAD = 112, 129 130 CSS_CALC = 113, 131 CSS_CALC_PERCENTAGE_WITH_NUMBER = 114, 132 CSS_CALC_PERCENTAGE_WITH_LENGTH = 115, 133 134 CSS_PROPERTY_ID = 117, 135 CSS_VALUE_ID = 118 136 }; 137 138 enum LengthUnitType { 139 UnitTypePixels = 0, 140 UnitTypePercentage, 141 UnitTypeFontSize, 142 UnitTypeFontXSize, 143 UnitTypeRootFontSize, 144 UnitTypeZeroCharacterWidth, 145 UnitTypeViewportWidth, 146 UnitTypeViewportHeight, 147 UnitTypeViewportMin, 148 UnitTypeViewportMax, 149 150 // This value must come after the last length unit type to enable iteration over the length unit types. 151 LengthUnitTypeCount, 152 }; 153 154 typedef Vector<double, CSSPrimitiveValue::LengthUnitTypeCount> CSSLengthArray; 155 void accumulateLengthArray(CSSLengthArray&, double multiplier = 1) const; 156 157 // This enum follows the BisonCSSParser::Units enum augmented with UNIT_FREQUENCY for frequencies. 158 enum UnitCategory { 159 UNumber, 160 UPercent, 161 ULength, 162 UAngle, 163 UTime, 164 UFrequency, 165 UResolution, 166 UOther 167 }; 168 static UnitCategory unitCategory(UnitType); 169 170 static UnitType fromName(const String& unit); 171 172 bool isAngle() const 173 { 174 return m_primitiveUnitType == CSS_DEG 175 || m_primitiveUnitType == CSS_RAD 176 || m_primitiveUnitType == CSS_GRAD 177 || m_primitiveUnitType == CSS_TURN; 178 } 179 bool isAttr() const { return m_primitiveUnitType == CSS_ATTR; } 180 bool isCounter() const { return m_primitiveUnitType == CSS_COUNTER; } 181 bool isFontIndependentLength() const { return m_primitiveUnitType >= CSS_PX && m_primitiveUnitType <= CSS_PC; } 182 bool isFontRelativeLength() const 183 { 184 return m_primitiveUnitType == CSS_EMS 185 || m_primitiveUnitType == CSS_EXS 186 || m_primitiveUnitType == CSS_REMS 187 || m_primitiveUnitType == CSS_CHS; 188 } 189 bool isViewportPercentageLength() const { return isViewportPercentageLength(static_cast<UnitType>(m_primitiveUnitType)); } 190 static bool isViewportPercentageLength(UnitType type) { return type >= CSS_VW && type <= CSS_VMAX; } 191 static bool isLength(UnitType type) 192 { 193 return (type >= CSS_EMS && type <= CSS_PC) || type == CSS_REMS || type == CSS_CHS || isViewportPercentageLength(type); 194 } 195 bool isLength() const { return isLength(primitiveType()); } 196 bool isNumber() const { return primitiveType() == CSS_NUMBER; } 197 bool isPercentage() const { return primitiveType() == CSS_PERCENTAGE; } 198 bool isPx() const { return primitiveType() == CSS_PX; } 199 bool isRect() const { return m_primitiveUnitType == CSS_RECT; } 200 bool isRGBColor() const { return m_primitiveUnitType == CSS_RGBCOLOR; } 201 bool isShape() const { return m_primitiveUnitType == CSS_SHAPE; } 202 bool isString() const { return m_primitiveUnitType == CSS_STRING; } 203 bool isTime() const { return m_primitiveUnitType == CSS_S || m_primitiveUnitType == CSS_MS; } 204 bool isURI() const { return m_primitiveUnitType == CSS_URI; } 205 bool isCalculated() const { return m_primitiveUnitType == CSS_CALC; } 206 bool isCalculatedPercentageWithNumber() const { return primitiveType() == CSS_CALC_PERCENTAGE_WITH_NUMBER; } 207 bool isCalculatedPercentageWithLength() const { return primitiveType() == CSS_CALC_PERCENTAGE_WITH_LENGTH; } 208 static bool isDotsPerInch(UnitType type) { return type == CSS_DPI; } 209 static bool isDotsPerPixel(UnitType type) { return type == CSS_DPPX; } 210 static bool isDotsPerCentimeter(UnitType type) { return type == CSS_DPCM; } 211 static bool isResolution(UnitType type) { return type >= CSS_DPPX && type <= CSS_DPCM; } 212 bool isFlex() const { return primitiveType() == CSS_FR; } 213 bool isValueID() const { return m_primitiveUnitType == CSS_VALUE_ID; } 214 bool colorIsDerivedFromElement() const; 215 216 static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> createIdentifier(CSSValueID valueID) 217 { 218 return adoptRefWillBeNoop(new CSSPrimitiveValue(valueID)); 219 } 220 static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> createIdentifier(CSSPropertyID propertyID) 221 { 222 return adoptRefWillBeNoop(new CSSPrimitiveValue(propertyID)); 223 } 224 static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> createColor(unsigned rgbValue) 225 { 226 return adoptRefWillBeNoop(new CSSPrimitiveValue(rgbValue, CSS_RGBCOLOR)); 227 } 228 static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> create(double value, UnitType type) 229 { 230 return adoptRefWillBeNoop(new CSSPrimitiveValue(value, type)); 231 } 232 static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> create(const String& value, UnitType type) 233 { 234 return adoptRefWillBeNoop(new CSSPrimitiveValue(value, type)); 235 } 236 static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> create(const Length& value, float zoom) 237 { 238 return adoptRefWillBeNoop(new CSSPrimitiveValue(value, zoom)); 239 } 240 static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> create(const LengthSize& value, const RenderStyle& style) 241 { 242 return adoptRefWillBeNoop(new CSSPrimitiveValue(value, style)); 243 } 244 template<typename T> static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> create(T value) 245 { 246 return adoptRefWillBeNoop(new CSSPrimitiveValue(value)); 247 } 248 249 // This value is used to handle quirky margins in reflow roots (body, td, and th) like WinIE. 250 // The basic idea is that a stylesheet can use the value __qem (for quirky em) instead of em. 251 // When the quirky value is used, if you're in quirks mode, the margin will collapse away 252 // inside a table cell. 253 static PassRefPtrWillBeRawPtr<CSSPrimitiveValue> createAllowingMarginQuirk(double value, UnitType type) 254 { 255 CSSPrimitiveValue* quirkValue = new CSSPrimitiveValue(value, type); 256 quirkValue->m_isQuirkValue = true; 257 return adoptRefWillBeNoop(quirkValue); 258 } 259 260 ~CSSPrimitiveValue(); 261 262 void cleanup(); 263 264 UnitType primitiveType() const; 265 266 double computeDegrees(); 267 double computeSeconds(); 268 269 /* 270 * Computes a length in pixels out of the given CSSValue 271 * 272 * The metrics have to be a bit different for screen and printer output. 273 * For screen output we assume 1 inch == 72 px, for printer we assume 300 dpi 274 * 275 * this is screen/printer dependent, so we probably need a config option for this, 276 * and some tool to calibrate. 277 */ 278 template<typename T> T computeLength(const CSSToLengthConversionData&); 279 280 // Converts to a Length, mapping various unit types appropriately. 281 template<int> Length convertToLength(const CSSToLengthConversionData&); 282 283 double getDoubleValue(UnitType, ExceptionState&) const; 284 double getDoubleValue(UnitType) const; 285 double getDoubleValue() const; 286 287 // setFloatValue(..., ExceptionState&) and setStringValue() must use unsigned short instead of UnitType to match IDL bindings. 288 void setFloatValue(unsigned short unitType, double floatValue, ExceptionState&); 289 float getFloatValue(unsigned short unitType, ExceptionState& exceptionState) const { return getValue<float>(static_cast<UnitType>(unitType), exceptionState); } 290 float getFloatValue(UnitType type) const { return getValue<float>(type); } 291 float getFloatValue() const { return getValue<float>(); } 292 293 int getIntValue(UnitType type, ExceptionState& exceptionState) const { return getValue<int>(type, exceptionState); } 294 int getIntValue(UnitType type) const { return getValue<int>(type); } 295 int getIntValue() const { return getValue<int>(); } 296 297 template<typename T> inline T getValue(UnitType type, ExceptionState& exceptionState) const { return clampTo<T>(getDoubleValue(type, exceptionState)); } 298 template<typename T> inline T getValue(UnitType type) const { return clampTo<T>(getDoubleValue(type)); } 299 template<typename T> inline T getValue() const { return clampTo<T>(getDoubleValue()); } 300 301 void setStringValue(unsigned short stringType, const String& stringValue, ExceptionState&); 302 String getStringValue(ExceptionState&) const; 303 String getStringValue() const; 304 305 Counter* getCounterValue(ExceptionState&) const; 306 Counter* getCounterValue() const { return m_primitiveUnitType != CSS_COUNTER ? 0 : m_value.counter; } 307 308 Rect* getRectValue(ExceptionState&) const; 309 Rect* getRectValue() const { return m_primitiveUnitType != CSS_RECT ? 0 : m_value.rect; } 310 311 Quad* getQuadValue(ExceptionState&) const; 312 Quad* getQuadValue() const { return m_primitiveUnitType != CSS_QUAD ? 0 : m_value.quad; } 313 314 PassRefPtrWillBeRawPtr<RGBColor> getRGBColorValue(ExceptionState&) const; 315 RGBA32 getRGBA32Value() const { return m_primitiveUnitType != CSS_RGBCOLOR ? 0 : m_value.rgbcolor; } 316 317 Pair* getPairValue(ExceptionState&) const; 318 Pair* getPairValue() const { return m_primitiveUnitType != CSS_PAIR ? 0 : m_value.pair; } 319 320 CSSBasicShape* getShapeValue() const { return m_primitiveUnitType != CSS_SHAPE ? 0 : m_value.shape; } 321 322 CSSCalcValue* cssCalcValue() const { return m_primitiveUnitType != CSS_CALC ? 0 : m_value.calc; } 323 324 CSSPropertyID getPropertyID() const { return m_primitiveUnitType == CSS_PROPERTY_ID ? m_value.propertyID : CSSPropertyInvalid; } 325 CSSValueID getValueID() const { return m_primitiveUnitType == CSS_VALUE_ID ? m_value.valueID : CSSValueInvalid; } 326 327 template<typename T> inline operator T() const; // Defined in CSSPrimitiveValueMappings.h 328 329 static const char* unitTypeToString(UnitType); 330 String customCSSText(CSSTextFormattingFlags = QuoteCSSStringIfNeeded) const; 331 332 bool isQuirkValue() { return m_isQuirkValue; } 333 334 PassRefPtrWillBeRawPtr<CSSPrimitiveValue> cloneForCSSOM() const; 335 void setCSSOMSafe() { m_isCSSOMSafe = true; } 336 337 bool equals(const CSSPrimitiveValue&) const; 338 339 void traceAfterDispatch(Visitor*); 340 341 static UnitType canonicalUnitTypeForCategory(UnitCategory); 342 static double conversionToCanonicalUnitsScaleFactor(UnitType); 343 344 // Returns true and populates lengthUnitType, if unitType is a length unit. Otherwise, returns false. 345 static bool unitTypeToLengthUnitType(UnitType, LengthUnitType&); 346 static UnitType lengthUnitTypeToUnitType(LengthUnitType); 347 348 private: 349 CSSPrimitiveValue(CSSValueID); 350 CSSPrimitiveValue(CSSPropertyID); 351 // int vs. unsigned is too subtle to distinguish types, so require a UnitType. 352 CSSPrimitiveValue(int parserOperator, UnitType); 353 CSSPrimitiveValue(unsigned color, UnitType); // RGB value 354 CSSPrimitiveValue(const Length&, float zoom); 355 CSSPrimitiveValue(const LengthSize&, const RenderStyle&); 356 CSSPrimitiveValue(const String&, UnitType); 357 CSSPrimitiveValue(double, UnitType); 358 359 template<typename T> CSSPrimitiveValue(T); // Defined in CSSPrimitiveValueMappings.h 360 template<typename T> CSSPrimitiveValue(T* val) 361 : CSSValue(PrimitiveClass) 362 { 363 init(PassRefPtrWillBeRawPtr<T>(val)); 364 } 365 366 template<typename T> CSSPrimitiveValue(PassRefPtrWillBeRawPtr<T> val) 367 : CSSValue(PrimitiveClass) 368 { 369 init(val); 370 } 371 372 static void create(int); // compile-time guard 373 static void create(unsigned); // compile-time guard 374 template<typename T> operator T*(); // compile-time guard 375 376 void init(const Length&); 377 void init(const LengthSize&, const RenderStyle&); 378 void init(PassRefPtrWillBeRawPtr<Counter>); 379 void init(PassRefPtrWillBeRawPtr<Rect>); 380 void init(PassRefPtrWillBeRawPtr<Pair>); 381 void init(PassRefPtrWillBeRawPtr<Quad>); 382 void init(PassRefPtrWillBeRawPtr<CSSBasicShape>); 383 void init(PassRefPtrWillBeRawPtr<CSSCalcValue>); 384 bool getDoubleValueInternal(UnitType targetUnitType, double* result) const; 385 386 double computeLengthDouble(const CSSToLengthConversionData&); 387 388 union { 389 CSSPropertyID propertyID; 390 CSSValueID valueID; 391 int parserOperator; 392 double num; 393 StringImpl* string; 394 unsigned rgbcolor; 395 // FIXME: oilpan: Should be members, but no support for members in unions. Just trace the raw ptr for now. 396 CSSBasicShape* shape; 397 CSSCalcValue* calc; 398 Counter* counter; 399 Pair* pair; 400 Rect* rect; 401 Quad* quad; 402 } m_value; 403 }; 404 405 typedef CSSPrimitiveValue::CSSLengthArray CSSLengthArray; 406 407 DEFINE_CSS_VALUE_TYPE_CASTS(CSSPrimitiveValue, isPrimitiveValue()); 408 409 } // namespace blink 410 411 #endif // CSSPrimitiveValue_h 412