Team Fortress 2 Source Code as on 22/4/2020
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  1. //========= Copyright Valve Corporation, All rights reserved. ============//
  2. //
  3. // Purpose:
  4. //
  5. //=============================================================================
  6. #if defined( WIN32) && !defined( _X360 )
  7. #include "winlite.h"
  8. #endif
  9. #include "tier0/platform.h"
  10. #include "MPAFile.h"
  11. // static variables
  12. const char *CMPAHeader::m_szLayers[] = { "Layer I", "Layer II", "Layer III" };
  13. const char *CMPAHeader::m_szMPEGVersions[] = {"MPEG 2.5", "", "MPEG 2", "MPEG 1" };
  14. const char *CMPAHeader::m_szChannelModes[] = { "Stereo", "Joint Stereo", "Dual Channel", "Single Channel" };
  15. const char *CMPAHeader::m_szEmphasis[] = { "None", "50/15ms", "", "CCIT J.17" };
  16. // tolerance range, look at expected offset +/- m_dwTolerance for subsequent frames
  17. const uint32 CMPAHeader::m_dwTolerance = 3; // 3 bytes
  18. // max. range where to look for frame sync
  19. const uint32 CMPAHeader::m_dwMaxRange = ( 256 * 1024 );
  20. // sampling rates in hertz: 1. index = MPEG Version ID, 2. index = sampling rate index
  21. const uint32 CMPAHeader::m_dwSamplingRates[4][3] =
  22. {
  23. {11025, 12000, 8000, }, // MPEG 2.5
  24. {0, 0, 0, }, // reserved
  25. {22050, 24000, 16000, }, // MPEG 2
  26. {44100, 48000, 32000 } // MPEG 1
  27. };
  28. // padding sizes in bytes for different layers: 1. index = layer
  29. const uint32 CMPAHeader::m_dwPaddingSizes[3] =
  30. {
  31. 4, // Layer1
  32. 1, // Layer2
  33. 1 // Layer3
  34. };
  35. // bitrates: 1. index = LSF, 2. index = Layer, 3. index = bitrate index
  36. const uint32 CMPAHeader::m_dwBitrates[2][3][15] =
  37. {
  38. { // MPEG 1
  39. {0,32,64,96,128,160,192,224,256,288,320,352,384,416,448,}, // Layer1
  40. {0,32,48,56, 64, 80, 96,112,128,160,192,224,256,320,384,}, // Layer2
  41. {0,32,40,48, 56, 64, 80, 96,112,128,160,192,224,256,320,} // Layer3
  42. },
  43. { // MPEG 2, 2.5
  44. {0,32,48,56,64,80,96,112,128,144,160,176,192,224,256,}, // Layer1
  45. {0,8,16,24,32,40,48,56,64,80,96,112,128,144,160,}, // Layer2
  46. {0,8,16,24,32,40,48,56,64,80,96,112,128,144,160,} // Layer3
  47. }
  48. };
  49. // Samples per Frame: 1. index = LSF, 2. index = Layer
  50. const uint32 CMPAHeader::m_dwSamplesPerFrames[2][3] =
  51. {
  52. { // MPEG 1
  53. 384, // Layer1
  54. 1152, // Layer2
  55. 1152 // Layer3
  56. },
  57. { // MPEG 2, 2.5
  58. 384, // Layer1
  59. 1152, // Layer2
  60. 576 // Layer3
  61. }
  62. };
  63. // Samples per Frame / 8
  64. const uint32 CMPAHeader::m_dwCoefficients[2][3] =
  65. {
  66. { // MPEG 1
  67. 48, // Layer1
  68. 144, // Layer2
  69. 144 // Layer3
  70. },
  71. { // MPEG 2, 2.5
  72. 48, // Layer1
  73. 144, // Layer2
  74. 72 // Layer3
  75. }
  76. };
  77. // needed later for CRC check
  78. // sideinformation size: 1.index = lsf, 2. index = layer, 3. index = mono
  79. const uint32 CMPAHeader::m_dwSideinfoSizes[2][3][2] =
  80. {
  81. { // MPEG 1 (not mono, mono
  82. {0,0}, // Layer1
  83. {0,0}, // Layer2
  84. {9,17} // Layer3
  85. },
  86. { // MPEG 2, 2.5
  87. {0,0}, // Layer1
  88. {0,0}, // Layer2
  89. {17,32} // Layer3
  90. }
  91. };
  92. // constructor (throws exception if no frame found)
  93. CMPAHeader::CMPAHeader( CMPAFile* pMPAFile, uint32 dwExpectedOffset, bool bSubsequentFrame, bool bReverse ) :
  94. m_pMPAFile( pMPAFile ), m_dwSyncOffset( dwExpectedOffset ), m_dwRealFrameSize( 0 )
  95. {
  96. // first check at expected offset (extended for not subsequent frames)
  97. HeaderError error = IsSync( m_dwSyncOffset, !bSubsequentFrame );
  98. int nStep=1;
  99. int nSyncOffset;
  100. while( error != noError )
  101. {
  102. // either look in tolerance range
  103. if( bSubsequentFrame )
  104. {
  105. if( nStep > m_dwTolerance )
  106. {
  107. // out of tolerance range
  108. throw CMPAException( CMPAException::NoFrameInTolerance, pMPAFile->GetFilename() ? pMPAFile->GetFilename() : "??" );
  109. }
  110. // look around dwExpectedOffset with increasing steps (+1,-1,+2,-2,...)
  111. if( m_dwSyncOffset <= dwExpectedOffset )
  112. {
  113. nSyncOffset = dwExpectedOffset + nStep;
  114. }
  115. else
  116. {
  117. nSyncOffset = dwExpectedOffset - nStep++;
  118. }
  119. }
  120. // just go forward/backward to find sync
  121. else
  122. {
  123. nSyncOffset = ((int)m_dwSyncOffset) + (bReverse?-1:+1);
  124. }
  125. // is new offset within valid range?
  126. if( nSyncOffset < 0 || nSyncOffset > (int)((pMPAFile->m_dwEnd - pMPAFile->m_dwBegin) - MPA_HEADER_SIZE) || abs( (long)(nSyncOffset-dwExpectedOffset) ) > m_dwMaxRange )
  127. {
  128. // out of tolerance range
  129. throw CMPAException( CMPAException::NoFrame, pMPAFile->GetFilename() ? pMPAFile->GetFilename() : "??" );
  130. }
  131. m_dwSyncOffset = nSyncOffset;
  132. // found sync?
  133. error = IsSync( m_dwSyncOffset, !bSubsequentFrame );
  134. }
  135. }
  136. // destructor
  137. CMPAHeader::~CMPAHeader()
  138. {
  139. }
  140. // skips first 32kbit/s or lower bitrate frames to estimate bitrate (returns true if bitrate is variable)
  141. bool CMPAHeader::SkipEmptyFrames()
  142. {
  143. if( m_dwBitrate > 32 )
  144. return false;
  145. uint32 dwHeader;
  146. try
  147. {
  148. while( m_dwBitrate <= 32 )
  149. {
  150. m_dwSyncOffset += m_dwComputedFrameSize + MPA_HEADER_SIZE;
  151. dwHeader = m_pMPAFile->ExtractBytes( m_dwSyncOffset, MPA_HEADER_SIZE, false );
  152. if( IsSync( dwHeader, false ) != noError )
  153. return false;
  154. }
  155. }
  156. catch(CMPAException& /*Exc*/) // just catch the exception and return false
  157. {
  158. return false;
  159. }
  160. return true;
  161. }
  162. // in dwHeader stands 32bit header in big-endian format: frame sync at the end!
  163. // because shifts do only work for integral types!!!
  164. CMPAHeader::HeaderError CMPAHeader::DecodeHeader( uint32 dwHeader, bool bSimpleDecode )
  165. {
  166. // Check SYNC bits (last eleven bits set)
  167. if( (dwHeader >> 24 != 0xff) || ((((dwHeader >> 16))&0xe0) != 0xe0) )
  168. return noSync;
  169. // get MPEG version
  170. m_Version = (MPAVersion)((dwHeader >> 19) & 0x03); // mask only the rightmost 2 bits
  171. if( m_Version == MPEGReserved )
  172. return headerCorrupt;
  173. if( m_Version == MPEG1 )
  174. m_bLSF = false;
  175. else
  176. m_bLSF = true;
  177. // get layer (0 = layer1, 2 = layer2, ...)
  178. m_Layer = (MPALayer)(3 - ((dwHeader >> 17) & 0x03));
  179. if( m_Layer == LayerReserved )
  180. return headerCorrupt;
  181. // protection bit (inverted)
  182. m_bCRC = !((dwHeader >> 16) & 0x01);
  183. // bitrate
  184. BYTE bIndex = (BYTE)((dwHeader >> 12) & 0x0F);
  185. if( bIndex == 0x0F ) // all bits set is reserved
  186. return headerCorrupt;
  187. m_dwBitrate = m_dwBitrates[m_bLSF][m_Layer][bIndex] * 1000; // convert from kbit to bit
  188. if( m_dwBitrate == 0 ) // means free bitrate (is unsupported yet)
  189. return freeBitrate;
  190. // sampling rate
  191. bIndex = (BYTE)((dwHeader >> 10) & 0x03);
  192. if( bIndex == 0x03 ) // all bits set is reserved
  193. return headerCorrupt;
  194. m_dwSamplesPerSec = m_dwSamplingRates[m_Version][bIndex];
  195. // padding bit
  196. m_dwPaddingSize = m_dwPaddingSizes[m_Layer] * ((dwHeader >> 9) & 0x01);
  197. // calculate frame size
  198. m_dwComputedFrameSize = (m_dwCoefficients[m_bLSF][m_Layer] * m_dwBitrate / m_dwSamplesPerSec) + m_dwPaddingSize;
  199. m_dwSamplesPerFrame = m_dwSamplesPerFrames[m_bLSF][m_Layer];
  200. if( !bSimpleDecode )
  201. {
  202. // private bit
  203. m_bPrivate = (dwHeader >> 8) & 0x01;
  204. // channel mode
  205. m_ChannelMode = (ChannelMode)((dwHeader >> 6) & 0x03);
  206. // mode extension (currently not used)
  207. m_ModeExt = (BYTE)((dwHeader >> 4) & 0x03);
  208. // copyright bit
  209. m_bCopyright = (dwHeader >> 3) & 0x01;
  210. // original bit
  211. m_bCopyright = (dwHeader >> 2) & 0x01;
  212. // emphasis
  213. m_Emphasis = (Emphasis)(dwHeader & 0x03);
  214. if( m_Emphasis == EmphReserved )
  215. return headerCorrupt;
  216. }
  217. return noError;
  218. }
  219. CMPAHeader::HeaderError CMPAHeader::IsSync( uint32 dwOffset, bool bExtended )
  220. {
  221. HeaderError error = noSync;
  222. uint32 dwHeader = m_pMPAFile->ExtractBytes( dwOffset, MPA_HEADER_SIZE, false );
  223. // sync bytes found?
  224. if( (dwHeader & 0xFFE00000) == 0xFFE00000 )
  225. {
  226. error = DecodeHeader( dwHeader );
  227. if( error == noError )
  228. {
  229. // enough buffer to do extended check?
  230. if( bExtended )
  231. {
  232. // recursive call (offset for next frame header)
  233. dwOffset = m_dwSyncOffset+m_dwComputedFrameSize;
  234. try
  235. {
  236. CMPAHeader m_SubsequentFrame( m_pMPAFile, dwOffset, true );
  237. m_dwRealFrameSize = m_SubsequentFrame.m_dwSyncOffset - m_dwSyncOffset;
  238. }
  239. catch( CMPAException& Exc )
  240. {
  241. // could not find any subsequent frame, assume it is the last frame
  242. if( Exc.GetErrorID() == CMPAException::NoFrame )
  243. {
  244. if( dwOffset + m_pMPAFile->m_dwBegin > m_pMPAFile->m_dwEnd )
  245. m_dwRealFrameSize = m_pMPAFile->m_dwEnd - m_pMPAFile->m_dwBegin - m_dwSyncOffset;
  246. else
  247. m_dwRealFrameSize = m_dwComputedFrameSize;
  248. error = noError;
  249. }
  250. else
  251. error = noSync;
  252. }
  253. }
  254. }
  255. }
  256. return error;
  257. }
  258. // CRC-16 lookup table
  259. const uint16 CMPAHeader::wCRC16Table[256] =
  260. {
  261. 0x0000, 0xC0C1, 0xC181, 0x0140, 0xC301, 0x03C0, 0x0280, 0xC241,
  262. 0xC601, 0x06C0, 0x0780, 0xC741, 0x0500, 0xC5C1, 0xC481, 0x0440,
  263. 0xCC01, 0x0CC0, 0x0D80, 0xCD41, 0x0F00, 0xCFC1, 0xCE81, 0x0E40,
  264. 0x0A00, 0xCAC1, 0xCB81, 0x0B40, 0xC901, 0x09C0, 0x0880, 0xC841,
  265. 0xD801, 0x18C0, 0x1980, 0xD941, 0x1B00, 0xDBC1, 0xDA81, 0x1A40,
  266. 0x1E00, 0xDEC1, 0xDF81, 0x1F40, 0xDD01, 0x1DC0, 0x1C80, 0xDC41,
  267. 0x1400, 0xD4C1, 0xD581, 0x1540, 0xD701, 0x17C0, 0x1680, 0xD641,
  268. 0xD201, 0x12C0, 0x1380, 0xD341, 0x1100, 0xD1C1, 0xD081, 0x1040,
  269. 0xF001, 0x30C0, 0x3180, 0xF141, 0x3300, 0xF3C1, 0xF281, 0x3240,
  270. 0x3600, 0xF6C1, 0xF781, 0x3740, 0xF501, 0x35C0, 0x3480, 0xF441,
  271. 0x3C00, 0xFCC1, 0xFD81, 0x3D40, 0xFF01, 0x3FC0, 0x3E80, 0xFE41,
  272. 0xFA01, 0x3AC0, 0x3B80, 0xFB41, 0x3900, 0xF9C1, 0xF881, 0x3840,
  273. 0x2800, 0xE8C1, 0xE981, 0x2940, 0xEB01, 0x2BC0, 0x2A80, 0xEA41,
  274. 0xEE01, 0x2EC0, 0x2F80, 0xEF41, 0x2D00, 0xEDC1, 0xEC81, 0x2C40,
  275. 0xE401, 0x24C0, 0x2580, 0xE541, 0x2700, 0xE7C1, 0xE681, 0x2640,
  276. 0x2200, 0xE2C1, 0xE381, 0x2340, 0xE101, 0x21C0, 0x2080, 0xE041,
  277. 0xA001, 0x60C0, 0x6180, 0xA141, 0x6300, 0xA3C1, 0xA281, 0x6240,
  278. 0x6600, 0xA6C1, 0xA781, 0x6740, 0xA501, 0x65C0, 0x6480, 0xA441,
  279. 0x6C00, 0xACC1, 0xAD81, 0x6D40, 0xAF01, 0x6FC0, 0x6E80, 0xAE41,
  280. 0xAA01, 0x6AC0, 0x6B80, 0xAB41, 0x6900, 0xA9C1, 0xA881, 0x6840,
  281. 0x7800, 0xB8C1, 0xB981, 0x7940, 0xBB01, 0x7BC0, 0x7A80, 0xBA41,
  282. 0xBE01, 0x7EC0, 0x7F80, 0xBF41, 0x7D00, 0xBDC1, 0xBC81, 0x7C40,
  283. 0xB401, 0x74C0, 0x7580, 0xB541, 0x7700, 0xB7C1, 0xB681, 0x7640,
  284. 0x7200, 0xB2C1, 0xB381, 0x7340, 0xB101, 0x71C0, 0x7080, 0xB041,
  285. 0x5000, 0x90C1, 0x9181, 0x5140, 0x9301, 0x53C0, 0x5280, 0x9241,
  286. 0x9601, 0x56C0, 0x5780, 0x9741, 0x5500, 0x95C1, 0x9481, 0x5440,
  287. 0x9C01, 0x5CC0, 0x5D80, 0x9D41, 0x5F00, 0x9FC1, 0x9E81, 0x5E40,
  288. 0x5A00, 0x9AC1, 0x9B81, 0x5B40, 0x9901, 0x59C0, 0x5880, 0x9841,
  289. 0x8801, 0x48C0, 0x4980, 0x8941, 0x4B00, 0x8BC1, 0x8A81, 0x4A40,
  290. 0x4E00, 0x8EC1, 0x8F81, 0x4F40, 0x8D01, 0x4DC0, 0x4C80, 0x8C41,
  291. 0x4400, 0x84C1, 0x8581, 0x4540, 0x8701, 0x47C0, 0x4680, 0x8641,
  292. 0x8201, 0x42C0, 0x4380, 0x8341, 0x4100, 0x81C1, 0x8081, 0x4040
  293. };