private.h 8.2 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313
  1. /*
  2. * Copyright 1992 by Jutta Degener and Carsten Bormann, Technische
  3. * Universitaet Berlin. See the accompanying file "COPYRIGHT" for
  4. * details. THERE IS ABSOLUTELY NO WARRANTY FOR THIS SOFTWARE.
  5. */
  6. /*$Header$*/
  7. #ifndef PRIVATE_H
  8. #define PRIVATE_H
  9. typedef short word; /* 16 bit signed int */
  10. typedef long longword; /* 32 bit signed int */
  11. typedef unsigned short uword; /* unsigned word */
  12. typedef unsigned long ulongword; /* unsigned longword */
  13. struct gsm_state {
  14. word dp0[ 280 ];
  15. word z1; /* preprocessing.c, Offset_com. */
  16. longword L_z2; /* Offset_com. */
  17. int mp; /* Preemphasis */
  18. word u[8]; /* short_term_aly_filter.c */
  19. word LARpp[2][8]; /* */
  20. word j; /* */
  21. word ltp_cut; /* long_term.c, LTP crosscorr. */
  22. word nrp; /* 40 */ /* long_term.c, synthesis */
  23. word v[9]; /* short_term.c, synthesis */
  24. word msr; /* decoder.c, Postprocessing */
  25. char verbose; /* only used if !NDEBUG */
  26. char fast; /* only used if FAST */
  27. char wav_fmt; /* only used if WAV49 defined */
  28. unsigned char frame_index; /* odd/even chaining */
  29. unsigned char frame_chain; /* half-byte to carry forward */
  30. };
  31. #define MIN_WORD (-32767 - 1)
  32. #define MAX_WORD 32767
  33. #define MIN_LONGWORD (-2147483647 - 1)
  34. #define MAX_LONGWORD 2147483647
  35. #ifdef SASR /* flag: >> is a signed arithmetic shift right */
  36. #undef SASR
  37. #define SASR(x, by) ((x) >> (by))
  38. #else
  39. #define SASR(x, by) ((x) >= 0 ? (x) >> (by) : (~(-((x) + 1) >> (by))))
  40. #endif /* SASR */
  41. #include "proto.h"
  42. /*
  43. * Prototypes from add.c
  44. */
  45. extern word gsm_mult P((word a, word b));
  46. extern longword gsm_L_mult P((word a, word b));
  47. extern word gsm_mult_r P((word a, word b));
  48. extern word gsm_div P((word num, word denum));
  49. extern word gsm_add P(( word a, word b ));
  50. extern longword gsm_L_add P(( longword a, longword b ));
  51. extern word gsm_sub P((word a, word b));
  52. extern longword gsm_L_sub P((longword a, longword b));
  53. extern word gsm_abs P((word a));
  54. extern word gsm_norm P(( longword a ));
  55. extern longword gsm_L_asl P((longword a, int n));
  56. extern word gsm_asl P((word a, int n));
  57. extern longword gsm_L_asr P((longword a, int n));
  58. extern word gsm_asr P((word a, int n));
  59. /*
  60. * Inlined functions from add.h
  61. */
  62. /*
  63. * #define GSM_MULT_R(a, b) (* word a, word b, !(a == b == MIN_WORD) *) \
  64. * (0x0FFFF & SASR(((longword)(a) * (longword)(b) + 16384), 15))
  65. */
  66. #define GSM_MULT_R(a, b) /* word a, word b, !(a == b == MIN_WORD) */ \
  67. (SASR( ((longword)(a) * (longword)(b) + 16384), 15 ))
  68. # define GSM_MULT(a,b) /* word a, word b, !(a == b == MIN_WORD) */ \
  69. (SASR( ((longword)(a) * (longword)(b)), 15 ))
  70. # define GSM_L_MULT(a, b) /* word a, word b */ \
  71. (((longword)(a) * (longword)(b)) << 1)
  72. #if defined(__GNUC__) && defined(__i386__)
  73. static __inline__ int GSM_L_ADD(int a, int b)
  74. {
  75. __asm__ __volatile__(
  76. "addl %2,%0; jno 0f; movl $0x7fffffff,%0; adcl $0,%0; 0:"
  77. : "=&r" (a)
  78. : "0" (a), "ir" (b)
  79. : "cc"
  80. );
  81. return(a);
  82. }
  83. static __inline__ short GSM_ADD(short a, short b)
  84. {
  85. __asm__ __volatile__(
  86. "addw %2,%0; jno 0f; movw $0x7fff,%0; adcw $0,%0; 0:"
  87. : "=&r" (a)
  88. : "0" (a), "ir" (b)
  89. : "cc"
  90. );
  91. return(a);
  92. }
  93. static __inline__ short GSM_SUB(short a, short b)
  94. {
  95. __asm__ __volatile__(
  96. "subw %2,%0; jno 0f; movw $0x7fff,%0; adcw $0,%0; 0:"
  97. : "=&r" (a)
  98. : "0" (a), "ir" (b)
  99. : "cc"
  100. );
  101. return(a);
  102. }
  103. #else
  104. #ifdef WIN32
  105. #define inline __inline
  106. #define __inline__ __inline
  107. #endif
  108. # define GSM_L_ADD(a, b) \
  109. ( (a) < 0 ? ( (b) >= 0 ? (a) + (b) \
  110. : (utmp = (ulongword)-((a) + 1) + (ulongword)-((b) + 1)) \
  111. >= MAX_LONGWORD ? MIN_LONGWORD : -(longword)utmp-2 ) \
  112. : ((b) <= 0 ? (a) + (b) \
  113. : (utmp = (ulongword)(a) + (ulongword)(b)) >= MAX_LONGWORD \
  114. ? MAX_LONGWORD : utmp))
  115. static inline word GSM_ADD(longword a, longword b)
  116. {
  117. register longword ltmp;
  118. ltmp = a + b;
  119. return (word)((ulongword) (ltmp - MIN_WORD) > MAX_WORD - MIN_WORD ? (ltmp > 0 ? MAX_WORD : MIN_WORD) : ltmp);
  120. };
  121. static inline word GSM_SUB(longword a, longword b)
  122. {
  123. register longword ltmp;
  124. ltmp = a - b;
  125. return (word)(ltmp >= MAX_WORD ? MAX_WORD : ltmp <= MIN_WORD ? MIN_WORD : ltmp);
  126. };
  127. #endif
  128. # define GSM_ABS(a) ((a) < 0 ? ((a) == MIN_WORD ? MAX_WORD : -(a)) : (a))
  129. /* Use these if necessary:
  130. # define GSM_MULT_R(a, b) gsm_mult_r(a, b)
  131. # define GSM_MULT(a, b) gsm_mult(a, b)
  132. # define GSM_L_MULT(a, b) gsm_L_mult(a, b)
  133. # define GSM_L_ADD(a, b) gsm_L_add(a, b)
  134. # define GSM_ADD(a, b) gsm_add(a, b)
  135. # define GSM_SUB(a, b) gsm_sub(a, b)
  136. # define GSM_ABS(a) gsm_abs(a)
  137. */
  138. /*
  139. * More prototypes from implementations..
  140. */
  141. extern void Gsm_Coder P((
  142. struct gsm_state * S,
  143. word * s, /* [0..159] samples IN */
  144. word * LARc, /* [0..7] LAR coefficients OUT */
  145. word * Nc, /* [0..3] LTP lag OUT */
  146. word * bc, /* [0..3] coded LTP gain OUT */
  147. word * Mc, /* [0..3] RPE grid selection OUT */
  148. word * xmaxc,/* [0..3] Coded maximum amplitude OUT */
  149. word * xMc /* [13*4] normalized RPE samples OUT */));
  150. extern void Gsm_Long_Term_Predictor P(( /* 4x for 160 samples */
  151. struct gsm_state * S,
  152. word * d, /* [0..39] residual signal IN */
  153. word * dp, /* [-120..-1] d' IN */
  154. word * e, /* [0..40] OUT */
  155. word * dpp, /* [0..40] OUT */
  156. word * Nc, /* correlation lag OUT */
  157. word * bc /* gain factor OUT */));
  158. extern void Gsm_LPC_Analysis P((
  159. struct gsm_state * S,
  160. word * s, /* 0..159 signals IN/OUT */
  161. word * LARc)); /* 0..7 LARc's OUT */
  162. extern void Gsm_Preprocess P((
  163. struct gsm_state * S,
  164. word * s, word * so));
  165. extern void Gsm_Encoding P((
  166. struct gsm_state * S,
  167. word * e,
  168. word * ep,
  169. word * xmaxc,
  170. word * Mc,
  171. word * xMc));
  172. extern void Gsm_Short_Term_Analysis_Filter P((
  173. struct gsm_state * S,
  174. word * LARc, /* coded log area ratio [0..7] IN */
  175. word * d /* st res. signal [0..159] IN/OUT */));
  176. extern void Gsm_Decoder P((
  177. struct gsm_state * S,
  178. word * LARcr, /* [0..7] IN */
  179. word * Ncr, /* [0..3] IN */
  180. word * bcr, /* [0..3] IN */
  181. word * Mcr, /* [0..3] IN */
  182. word * xmaxcr, /* [0..3] IN */
  183. word * xMcr, /* [0..13*4] IN */
  184. word * s)); /* [0..159] OUT */
  185. extern void Gsm_Decoding P((
  186. struct gsm_state * S,
  187. word xmaxcr,
  188. word Mcr,
  189. word * xMcr, /* [0..12] IN */
  190. word * erp)); /* [0..39] OUT */
  191. extern void Gsm_Long_Term_Synthesis_Filtering P((
  192. struct gsm_state* S,
  193. word Ncr,
  194. word bcr,
  195. word * erp, /* [0..39] IN */
  196. word * drp)); /* [-120..-1] IN, [0..40] OUT */
  197. void Gsm_RPE_Decoding P((
  198. struct gsm_state *S,
  199. word xmaxcr,
  200. word Mcr,
  201. word * xMcr, /* [0..12], 3 bits IN */
  202. word * erp)); /* [0..39] OUT */
  203. void Gsm_RPE_Encoding P((
  204. struct gsm_state * S,
  205. word * e, /* -5..-1][0..39][40..44 IN/OUT */
  206. word * xmaxc, /* OUT */
  207. word * Mc, /* OUT */
  208. word * xMc)); /* [0..12] OUT */
  209. extern void Gsm_Short_Term_Synthesis_Filter P((
  210. struct gsm_state * S,
  211. word * LARcr, /* log area ratios [0..7] IN */
  212. word * drp, /* received d [0...39] IN */
  213. word * s)); /* signal s [0..159] OUT */
  214. extern void Gsm_Update_of_reconstructed_short_time_residual_signal P((
  215. word * dpp, /* [0...39] IN */
  216. word * ep, /* [0...39] IN */
  217. word * dp)); /* [-120...-1] IN/OUT */
  218. /*
  219. * Tables from table.c
  220. */
  221. #ifndef GSM_TABLE_C
  222. extern word gsm_A[8], gsm_B[8], gsm_MIC[8], gsm_MAC[8];
  223. extern word gsm_INVA[8];
  224. extern word gsm_DLB[4], gsm_QLB[4];
  225. extern word gsm_H[11];
  226. extern word gsm_NRFAC[8];
  227. extern word gsm_FAC[8];
  228. #endif /* GSM_TABLE_C */
  229. /*
  230. * Debugging
  231. */
  232. #ifdef NDEBUG
  233. # define gsm_debug_words(a, b, c, d) /* nil */
  234. # define gsm_debug_longwords(a, b, c, d) /* nil */
  235. # define gsm_debug_word(a, b) /* nil */
  236. # define gsm_debug_longword(a, b) /* nil */
  237. #else /* !NDEBUG => DEBUG */
  238. extern void gsm_debug_words P((char * name, int, int, word *));
  239. extern void gsm_debug_longwords P((char * name, int, int, longword *));
  240. extern void gsm_debug_longword P((char * name, longword));
  241. extern void gsm_debug_word P((char * name, word));
  242. #endif /* !NDEBUG */
  243. #include "unproto.h"
  244. #endif /* PRIVATE_H */