1 // Copyright 2014 PDFium 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 // Original code copyright 2014 Foxit Software Inc. http://www.foxitsoftware.com 6 // Original code is licensed as follows: 7 /* 8 * Copyright 2008 ZXing authors 9 * 10 * Licensed under the Apache License, Version 2.0 (the "License"); 11 * you may not use this file except in compliance with the License. 12 * You may obtain a copy of the License at 13 * 14 * http://www.apache.org/licenses/LICENSE-2.0 15 * 16 * Unless required by applicable law or agreed to in writing, software 17 * distributed under the License is distributed on an "AS IS" BASIS, 18 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 19 * See the License for the specific language governing permissions and 20 * limitations under the License. 21 */ 22 23 #include "xfa/src/fxbarcode/barcode.h" 24 #include "xfa/src/fxbarcode/common/BC_CommonDecoderResult.h" 25 #include "xfa/src/fxbarcode/common/BC_CommonBitSource.h" 26 #include "BC_DataMatrixDecodedBitStreamParser.h" 27 const FX_CHAR CBC_DataMatrixDecodedBitStreamParser::C40_BASIC_SET_CHARS[] = { 28 '*', '*', '*', ' ', '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 29 'A', 'B', 'C', 'D', 'E', 'F', 'G', 'H', 'I', 'J', 'K', 'L', 'M', 'N', 30 'O', 'P', 'Q', 'R', 'S', 'T', 'U', 'V', 'W', 'X', 'Y', 'Z'}; 31 const FX_CHAR CBC_DataMatrixDecodedBitStreamParser::C40_SHIFT2_SET_CHARS[] = { 32 '!', '"', '#', '$', '%', '&', '\'', '(', ')', '*', '+', ',', '-', '.', 33 '/', ':', ';', '<', '=', '>', '?', '@', '[', '\\', ']', '^', '_'}; 34 const FX_CHAR CBC_DataMatrixDecodedBitStreamParser::TEXT_BASIC_SET_CHARS[] = { 35 '*', '*', '*', ' ', '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 36 'a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 37 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z'}; 38 const FX_CHAR CBC_DataMatrixDecodedBitStreamParser::TEXT_SHIFT3_SET_CHARS[] = { 39 '\'', 'A', 'B', 'C', 'D', 'E', 'F', 'G', 'H', 'I', 'J', 40 'K', 'L', 'M', 'N', 'O', 'P', 'Q', 'R', 'S', 'T', 'U', 41 'V', 'W', 'X', 'Y', 'Z', '{', '|', '}', '~', (FX_CHAR)127}; 42 const int32_t CBC_DataMatrixDecodedBitStreamParser::PAD_ENCODE = 0; 43 const int32_t CBC_DataMatrixDecodedBitStreamParser::ASCII_ENCODE = 1; 44 const int32_t CBC_DataMatrixDecodedBitStreamParser::C40_ENCODE = 2; 45 const int32_t CBC_DataMatrixDecodedBitStreamParser::TEXT_ENCODE = 3; 46 const int32_t CBC_DataMatrixDecodedBitStreamParser::ANSIX12_ENCODE = 4; 47 const int32_t CBC_DataMatrixDecodedBitStreamParser::EDIFACT_ENCODE = 5; 48 const int32_t CBC_DataMatrixDecodedBitStreamParser::BASE256_ENCODE = 6; 49 CBC_DataMatrixDecodedBitStreamParser::CBC_DataMatrixDecodedBitStreamParser() {} 50 CBC_DataMatrixDecodedBitStreamParser::~CBC_DataMatrixDecodedBitStreamParser() {} 51 CBC_CommonDecoderResult* CBC_DataMatrixDecodedBitStreamParser::Decode( 52 CFX_ByteArray& bytes, 53 int32_t& e) { 54 CBC_CommonBitSource bits(&bytes); 55 CFX_ByteString result; 56 CFX_ByteString resultTrailer; 57 CFX_Int32Array byteSegments; 58 int32_t mode = ASCII_ENCODE; 59 do { 60 if (mode == 1) { 61 mode = DecodeAsciiSegment(&bits, result, resultTrailer, e); 62 BC_EXCEPTION_CHECK_ReturnValue(e, NULL); 63 } else { 64 switch (mode) { 65 case 2: 66 DecodeC40Segment(&bits, result, e); 67 BC_EXCEPTION_CHECK_ReturnValue(e, NULL); 68 break; 69 case 3: 70 DecodeTextSegment(&bits, result, e); 71 BC_EXCEPTION_CHECK_ReturnValue(e, NULL); 72 break; 73 case 4: 74 DecodeAnsiX12Segment(&bits, result, e); 75 BC_EXCEPTION_CHECK_ReturnValue(e, NULL); 76 break; 77 case 5: 78 DecodeEdifactSegment(&bits, result, e); 79 BC_EXCEPTION_CHECK_ReturnValue(e, NULL); 80 break; 81 case 6: 82 DecodeBase256Segment(&bits, result, byteSegments, e); 83 BC_EXCEPTION_CHECK_ReturnValue(e, NULL); 84 break; 85 default: 86 NULL; 87 e = BCExceptionFormatException; 88 return NULL; 89 } 90 mode = ASCII_ENCODE; 91 } 92 } while (mode != PAD_ENCODE && bits.Available() > 0); 93 if (resultTrailer.GetLength() > 0) { 94 result += resultTrailer; 95 } 96 CBC_CommonDecoderResult* tempCp = new CBC_CommonDecoderResult(); 97 tempCp->Init(bytes, result, 98 (byteSegments.GetSize() <= 0) ? CFX_Int32Array() : byteSegments, 99 NULL, e); 100 BC_EXCEPTION_CHECK_ReturnValue(e, NULL); 101 return tempCp; 102 } 103 int32_t CBC_DataMatrixDecodedBitStreamParser::DecodeAsciiSegment( 104 CBC_CommonBitSource* bits, 105 CFX_ByteString& result, 106 CFX_ByteString& resultTrailer, 107 int32_t& e) { 108 FX_CHAR buffer[128]; 109 FX_BOOL upperShift = FALSE; 110 do { 111 int32_t oneByte = bits->ReadBits(8, e); 112 BC_EXCEPTION_CHECK_ReturnValue(e, 0); 113 if (oneByte == 0) { 114 e = BCExceptionFormatException; 115 return 0; 116 } else if (oneByte <= 128) { 117 oneByte = upperShift ? oneByte + 128 : oneByte; 118 upperShift = FALSE; 119 result += ((FX_CHAR)(oneByte - 1)); 120 return ASCII_ENCODE; 121 } else if (oneByte == 129) { 122 return PAD_ENCODE; 123 } else if (oneByte <= 229) { 124 int32_t value = oneByte - 130; 125 #if defined(_FX_WINAPI_PARTITION_APP_) 126 memset(buffer, 0, sizeof(FX_CHAR) * 128); 127 _itoa_s(value, buffer, 128, 10); 128 #else 129 FXSYS_itoa(value, buffer, 10); 130 #endif 131 if (value < 10) { 132 result += '0'; 133 buffer[1] = '\0'; 134 } else { 135 buffer[2] = '\0'; 136 } 137 result += buffer; 138 } else if (oneByte == 230) { 139 return C40_ENCODE; 140 } else if (oneByte == 231) { 141 return BASE256_ENCODE; 142 } else if (oneByte == 232 || oneByte == 233 || oneByte == 234) { 143 } else if (oneByte == 235) { 144 upperShift = TRUE; 145 } else if (oneByte == 236) { 146 result += "[)>"; 147 result += 0x1E; 148 result += "05"; 149 result += 0x1D; 150 resultTrailer.Insert(0, 0x1E); 151 resultTrailer.Insert(0 + 1, 0x04); 152 } else if (oneByte == 237) { 153 result += "[)>"; 154 result += 0x1E; 155 result += "06"; 156 result += 0x1D; 157 resultTrailer.Insert(0, 0x1E); 158 resultTrailer.Insert(0 + 1, 0x04); 159 } else if (oneByte == 238) { 160 return ANSIX12_ENCODE; 161 } else if (oneByte == 239) { 162 return TEXT_ENCODE; 163 } else if (oneByte == 240) { 164 return EDIFACT_ENCODE; 165 } else if (oneByte == 241) { 166 } else if (oneByte >= 242) { 167 if (oneByte == 254 && bits->Available() == 0) { 168 } else { 169 e = BCExceptionFormatException; 170 return 0; 171 } 172 } 173 } while (bits->Available() > 0); 174 return ASCII_ENCODE; 175 } 176 void CBC_DataMatrixDecodedBitStreamParser::DecodeC40Segment( 177 CBC_CommonBitSource* bits, 178 CFX_ByteString& result, 179 int32_t& e) { 180 FX_BOOL upperShift = FALSE; 181 CFX_Int32Array cValues; 182 cValues.SetSize(3); 183 do { 184 if (bits->Available() == 8) { 185 return; 186 } 187 int32_t firstByte = bits->ReadBits(8, e); 188 BC_EXCEPTION_CHECK_ReturnVoid(e); 189 if (firstByte == 254) { 190 return; 191 } 192 int32_t tempp = bits->ReadBits(8, e); 193 BC_EXCEPTION_CHECK_ReturnVoid(e); 194 ParseTwoBytes(firstByte, tempp, cValues); 195 int32_t shift = 0; 196 int32_t i; 197 for (i = 0; i < 3; i++) { 198 int32_t cValue = cValues[i]; 199 switch (shift) { 200 case 0: 201 if (cValue < 3) { 202 shift = cValue + 1; 203 } else if (cValue < 27) { 204 FX_CHAR c40char = C40_BASIC_SET_CHARS[cValue]; 205 if (upperShift) { 206 result += (FX_CHAR)(c40char + 128); 207 upperShift = FALSE; 208 } else { 209 result += c40char; 210 } 211 } else { 212 e = BCExceptionFormatException; 213 return; 214 } 215 break; 216 case 1: 217 if (upperShift) { 218 result += (FX_CHAR)(cValue + 128); 219 upperShift = FALSE; 220 } else { 221 result += cValue; 222 } 223 shift = 0; 224 break; 225 case 2: 226 if (cValue < 27) { 227 FX_CHAR c40char = C40_SHIFT2_SET_CHARS[cValue]; 228 if (upperShift) { 229 result += (FX_CHAR)(c40char + 128); 230 upperShift = FALSE; 231 } else { 232 result += c40char; 233 } 234 } else if (cValue == 27) { 235 e = BCExceptionFormatException; 236 return; 237 } else if (cValue == 30) { 238 upperShift = TRUE; 239 } else { 240 e = BCExceptionFormatException; 241 return; 242 } 243 shift = 0; 244 break; 245 case 3: 246 if (upperShift) { 247 result += (FX_CHAR)(cValue + 224); 248 upperShift = FALSE; 249 } else { 250 result += (FX_CHAR)(cValue + 96); 251 } 252 shift = 0; 253 break; 254 default: 255 break; 256 e = BCExceptionFormatException; 257 return; 258 } 259 } 260 } while (bits->Available() > 0); 261 } 262 void CBC_DataMatrixDecodedBitStreamParser::DecodeTextSegment( 263 CBC_CommonBitSource* bits, 264 CFX_ByteString& result, 265 int32_t& e) { 266 FX_BOOL upperShift = FALSE; 267 CFX_Int32Array cValues; 268 cValues.SetSize(3); 269 int32_t shift = 0; 270 do { 271 if (bits->Available() == 8) { 272 return; 273 } 274 int32_t firstByte = bits->ReadBits(8, e); 275 BC_EXCEPTION_CHECK_ReturnVoid(e); 276 if (firstByte == 254) { 277 return; 278 } 279 int32_t inTp = bits->ReadBits(8, e); 280 BC_EXCEPTION_CHECK_ReturnVoid(e); 281 ParseTwoBytes(firstByte, inTp, cValues); 282 for (int32_t i = 0; i < 3; i++) { 283 int32_t cValue = cValues[i]; 284 switch (shift) { 285 case 0: 286 if (cValue < 3) { 287 shift = cValue + 1; 288 } else if (cValue < 40) { 289 FX_CHAR textChar = TEXT_BASIC_SET_CHARS[cValue]; 290 if (upperShift) { 291 result += (FX_CHAR)(textChar + 128); 292 upperShift = FALSE; 293 } else { 294 result += textChar; 295 } 296 } else { 297 e = BCExceptionFormatException; 298 return; 299 } 300 break; 301 case 1: 302 if (upperShift) { 303 result += (FX_CHAR)(cValue + 128); 304 upperShift = FALSE; 305 } else { 306 result += cValue; 307 } 308 shift = 0; 309 break; 310 case 2: 311 if (cValue < 27) { 312 FX_CHAR c40char = C40_SHIFT2_SET_CHARS[cValue]; 313 if (upperShift) { 314 result += (FX_CHAR)(c40char + 128); 315 upperShift = FALSE; 316 } else { 317 result += c40char; 318 } 319 } else if (cValue == 27) { 320 e = BCExceptionFormatException; 321 return; 322 } else if (cValue == 30) { 323 upperShift = TRUE; 324 } else { 325 e = BCExceptionFormatException; 326 return; 327 } 328 shift = 0; 329 break; 330 case 3: 331 if (cValue < 19) { 332 FX_CHAR textChar = TEXT_SHIFT3_SET_CHARS[cValue]; 333 if (upperShift) { 334 result += (FX_CHAR)(textChar + 128); 335 upperShift = FALSE; 336 } else { 337 result += textChar; 338 } 339 shift = 0; 340 } else { 341 e = BCExceptionFormatException; 342 return; 343 } 344 break; 345 default: 346 break; 347 e = BCExceptionFormatException; 348 return; 349 } 350 } 351 } while (bits->Available() > 0); 352 } 353 void CBC_DataMatrixDecodedBitStreamParser::DecodeAnsiX12Segment( 354 CBC_CommonBitSource* bits, 355 CFX_ByteString& result, 356 int32_t& e) { 357 CFX_Int32Array cValues; 358 cValues.SetSize(3); 359 do { 360 if (bits->Available() == 8) { 361 return; 362 } 363 int32_t firstByte = bits->ReadBits(8, e); 364 BC_EXCEPTION_CHECK_ReturnVoid(e); 365 if (firstByte == 254) { 366 return; 367 } 368 int32_t iTemp1 = bits->ReadBits(8, e); 369 BC_EXCEPTION_CHECK_ReturnVoid(e); 370 ParseTwoBytes(firstByte, iTemp1, cValues); 371 int32_t i; 372 for (i = 0; i < 3; i++) { 373 int32_t cValue = cValues[i]; 374 if (cValue == 0) { 375 BC_FX_ByteString_Append(result, 1, '\r'); 376 } else if (cValue == 1) { 377 BC_FX_ByteString_Append(result, 1, '*'); 378 } else if (cValue == 2) { 379 BC_FX_ByteString_Append(result, 1, '>'); 380 } else if (cValue == 3) { 381 BC_FX_ByteString_Append(result, 1, ' '); 382 } else if (cValue < 14) { 383 BC_FX_ByteString_Append(result, 1, (FX_CHAR)(cValue + 44)); 384 } else if (cValue < 40) { 385 BC_FX_ByteString_Append(result, 1, (FX_CHAR)(cValue + 51)); 386 } else { 387 e = BCExceptionFormatException; 388 return; 389 } 390 } 391 } while (bits->Available() > 0); 392 } 393 void CBC_DataMatrixDecodedBitStreamParser::ParseTwoBytes( 394 int32_t firstByte, 395 int32_t secondByte, 396 CFX_Int32Array& result) { 397 int32_t fullBitValue = (firstByte << 8) + secondByte - 1; 398 int32_t temp = fullBitValue / 1600; 399 result[0] = temp; 400 fullBitValue -= temp * 1600; 401 temp = fullBitValue / 40; 402 result[1] = temp; 403 result[2] = fullBitValue - temp * 40; 404 } 405 void CBC_DataMatrixDecodedBitStreamParser::DecodeEdifactSegment( 406 CBC_CommonBitSource* bits, 407 CFX_ByteString& result, 408 int32_t& e) { 409 FX_CHAR buffer[128]; 410 FX_BOOL unlatch = FALSE; 411 do { 412 if (bits->Available() <= 16) { 413 return; 414 } 415 int32_t i; 416 for (i = 0; i < 4; i++) { 417 int32_t edifactValue = bits->ReadBits(6, e); 418 BC_EXCEPTION_CHECK_ReturnVoid(e); 419 if (edifactValue == 0x1F) { 420 unlatch = TRUE; 421 } 422 if (!unlatch) { 423 if ((edifactValue & 32) == 0) { 424 edifactValue |= 64; 425 } 426 #if defined(_FX_WINAPI_PARTITION_APP_) 427 memset(buffer, 0, sizeof(FX_CHAR) * 128); 428 _itoa_s(edifactValue, buffer, 128, 10); 429 result += buffer; 430 #else 431 result += FXSYS_itoa(edifactValue, buffer, 10); 432 #endif 433 } 434 } 435 } while (!unlatch && bits->Available() > 0); 436 } 437 void CBC_DataMatrixDecodedBitStreamParser::DecodeBase256Segment( 438 CBC_CommonBitSource* bits, 439 CFX_ByteString& result, 440 CFX_Int32Array& byteSegments, 441 int32_t& e) { 442 int32_t codewordPosition = 1 + bits->getByteOffset(); 443 int32_t iTmp = bits->ReadBits(8, e); 444 BC_EXCEPTION_CHECK_ReturnVoid(e); 445 int32_t d1 = Unrandomize255State(iTmp, codewordPosition++); 446 int32_t count; 447 if (d1 == 0) { 448 count = bits->Available() / 8; 449 } else if (d1 < 250) { 450 count = d1; 451 } else { 452 int32_t iTmp3 = bits->ReadBits(8, e); 453 BC_EXCEPTION_CHECK_ReturnVoid(e); 454 count = 250 * (d1 - 249) + Unrandomize255State(iTmp3, codewordPosition++); 455 } 456 if (count < 0) { 457 e = BCExceptionFormatException; 458 return; 459 } 460 CFX_ByteArray* bytes = new CFX_ByteArray(); 461 bytes->SetSize(count); 462 int32_t i; 463 for (i = 0; i < count; i++) { 464 if (bits->Available() < 8) { 465 e = BCExceptionFormatException; 466 delete bytes; 467 return; 468 } 469 int32_t iTemp5 = bits->ReadBits(8, e); 470 if (e != BCExceptionNO) { 471 delete bytes; 472 return; 473 } 474 bytes->SetAt(i, Unrandomize255State(iTemp5, codewordPosition++)); 475 } 476 BC_FX_ByteString_Append(result, *bytes); 477 delete bytes; 478 } 479 uint8_t CBC_DataMatrixDecodedBitStreamParser::Unrandomize255State( 480 int32_t randomizedBase256Codeword, 481 int32_t base256CodewordPosition) { 482 int32_t pseudoRandomNumber = ((149 * base256CodewordPosition) % 255) + 1; 483 int32_t tempVariable = randomizedBase256Codeword - pseudoRandomNumber; 484 return (uint8_t)(tempVariable >= 0 ? tempVariable : tempVariable + 256); 485 } 486