| OLD | NEW |
| 1 /* | 1 /* |
| 2 * Copyright 2013 Google Inc. | 2 * Copyright 2013 Google Inc. |
| 3 * | 3 * |
| 4 * Use of this source code is governed by a BSD-style license that can be | 4 * Use of this source code is governed by a BSD-style license that can be |
| 5 * found in the LICENSE file. | 5 * found in the LICENSE file. |
| 6 */ | 6 */ |
| 7 | 7 |
| 8 #include "SkBitmap.h" | 8 #include "SkBitmap.h" |
| 9 #include "SkErrorInternals.h" | 9 #include "SkErrorInternals.h" |
| 10 #include "SkValidatingReadBuffer.h" | 10 #include "SkValidatingReadBuffer.h" |
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| 111 } | 111 } |
| 112 return data; | 112 return data; |
| 113 } | 113 } |
| 114 | 114 |
| 115 void SkValidatingReadBuffer::readPoint(SkPoint* point) { | 115 void SkValidatingReadBuffer::readPoint(SkPoint* point) { |
| 116 point->fX = fReader.readScalar(); | 116 point->fX = fReader.readScalar(); |
| 117 point->fY = fReader.readScalar(); | 117 point->fY = fReader.readScalar(); |
| 118 } | 118 } |
| 119 | 119 |
| 120 void SkValidatingReadBuffer::readMatrix(SkMatrix* matrix) { | 120 void SkValidatingReadBuffer::readMatrix(SkMatrix* matrix) { |
| 121 const size_t size = matrix->readFromMemory(fReader.peek()); | 121 const size_t size = matrix->readFromMemory(fReader.peek(), fReader.available
()); |
| 122 this->validate(SkAlign4(size) == size); | 122 this->validate((SkAlign4(size) != size) || (0 == size)); |
| 123 if (!fError) { | 123 if (!fError) { |
| 124 (void)this->skip(size); | 124 (void)this->skip(size); |
| 125 } | 125 } |
| 126 } | 126 } |
| 127 | 127 |
| 128 void SkValidatingReadBuffer::readIRect(SkIRect* rect) { | 128 void SkValidatingReadBuffer::readIRect(SkIRect* rect) { |
| 129 const void* ptr = this->skip(sizeof(SkIRect)); | 129 const void* ptr = this->skip(sizeof(SkIRect)); |
| 130 if (!fError) { | 130 if (!fError) { |
| 131 memcpy(rect, ptr, sizeof(SkIRect)); | 131 memcpy(rect, ptr, sizeof(SkIRect)); |
| 132 } | 132 } |
| 133 } | 133 } |
| 134 | 134 |
| 135 void SkValidatingReadBuffer::readRect(SkRect* rect) { | 135 void SkValidatingReadBuffer::readRect(SkRect* rect) { |
| 136 const void* ptr = this->skip(sizeof(SkRect)); | 136 const void* ptr = this->skip(sizeof(SkRect)); |
| 137 if (!fError) { | 137 if (!fError) { |
| 138 memcpy(rect, ptr, sizeof(SkRect)); | 138 memcpy(rect, ptr, sizeof(SkRect)); |
| 139 } | 139 } |
| 140 } | 140 } |
| 141 | 141 |
| 142 void SkValidatingReadBuffer::readRegion(SkRegion* region) { | 142 void SkValidatingReadBuffer::readRegion(SkRegion* region) { |
| 143 const size_t size = region->readFromMemory(fReader.peek()); | 143 const size_t size = region->readFromMemory(fReader.peek(), fReader.available
()); |
| 144 this->validate(SkAlign4(size) == size); | 144 this->validate((SkAlign4(size) != size) || (0 == size)); |
| 145 if (!fError) { | 145 if (!fError) { |
| 146 (void)this->skip(size); | 146 (void)this->skip(size); |
| 147 } | 147 } |
| 148 } | 148 } |
| 149 | 149 |
| 150 void SkValidatingReadBuffer::readPath(SkPath* path) { | 150 void SkValidatingReadBuffer::readPath(SkPath* path) { |
| 151 const size_t size = path->readFromMemory(fReader.peek()); | 151 const size_t size = path->readFromMemory(fReader.peek(), fReader.available()
); |
| 152 this->validate(SkAlign4(size) == size); | 152 this->validate((SkAlign4(size) != size) || (0 == size)); |
| 153 if (!fError) { | 153 if (!fError) { |
| 154 (void)this->skip(size); | 154 (void)this->skip(size); |
| 155 } | 155 } |
| 156 } | 156 } |
| 157 | 157 |
| 158 bool SkValidatingReadBuffer::readArray(void* value, size_t size, size_t elementS
ize) { | 158 bool SkValidatingReadBuffer::readArray(void* value, size_t size, size_t elementS
ize) { |
| 159 const uint32_t count = this->getArrayCount(); | 159 const uint32_t count = this->getArrayCount(); |
| 160 this->validate(size == count); | 160 this->validate(size == count); |
| 161 (void)this->skip(sizeof(uint32_t)); // Skip array count | 161 (void)this->skip(sizeof(uint32_t)); // Skip array count |
| 162 const size_t byteLength = count * elementSize; | 162 const size_t byteLength = count * elementSize; |
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| 182 | 182 |
| 183 bool SkValidatingReadBuffer::readPointArray(SkPoint* points, size_t size) { | 183 bool SkValidatingReadBuffer::readPointArray(SkPoint* points, size_t size) { |
| 184 return readArray(points, size, sizeof(SkPoint)); | 184 return readArray(points, size, sizeof(SkPoint)); |
| 185 } | 185 } |
| 186 | 186 |
| 187 bool SkValidatingReadBuffer::readScalarArray(SkScalar* values, size_t size) { | 187 bool SkValidatingReadBuffer::readScalarArray(SkScalar* values, size_t size) { |
| 188 return readArray(values, size, sizeof(SkScalar)); | 188 return readArray(values, size, sizeof(SkScalar)); |
| 189 } | 189 } |
| 190 | 190 |
| 191 uint32_t SkValidatingReadBuffer::getArrayCount() { | 191 uint32_t SkValidatingReadBuffer::getArrayCount() { |
| 192 const size_t inc = sizeof(uint32_t); |
| 193 fError = fError || !IsPtrAlign4(fReader.peek()) || !fReader.isAvailable(inc)
; |
| 192 return *(uint32_t*)fReader.peek(); | 194 return *(uint32_t*)fReader.peek(); |
| 193 } | 195 } |
| 194 | 196 |
| 195 void SkValidatingReadBuffer::readBitmap(SkBitmap* bitmap) { | 197 void SkValidatingReadBuffer::readBitmap(SkBitmap* bitmap) { |
| 196 const int width = this->readInt(); | 198 const int width = this->readInt(); |
| 197 const int height = this->readInt(); | 199 const int height = this->readInt(); |
| 198 const size_t length = this->readUInt(); | 200 const size_t length = this->readUInt(); |
| 199 // A size of zero means the SkBitmap was simply flattened. | 201 // A size of zero means the SkBitmap was simply flattened. |
| 200 this->validate(length == 0); | 202 this->validate(length == 0); |
| 201 if (fError) { | 203 if (fError) { |
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| 244 delete obj; | 246 delete obj; |
| 245 obj = NULL; | 247 obj = NULL; |
| 246 } | 248 } |
| 247 } else { | 249 } else { |
| 248 // we must skip the remaining data | 250 // we must skip the remaining data |
| 249 this->skip(sizeRecorded); | 251 this->skip(sizeRecorded); |
| 250 SkASSERT(false); | 252 SkASSERT(false); |
| 251 } | 253 } |
| 252 return obj; | 254 return obj; |
| 253 } | 255 } |
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