warped_autocorrelation_FIX.c 4.7 KB

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  1. /***********************************************************************
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  3. Redistribution and use in source and binary forms, with or without
  4. modification, are permitted provided that the following conditions
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  7. this list of conditions and the following disclaimer.
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  13. products derived from this software without specific prior written
  14. permission.
  15. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  16. AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  17. IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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  19. LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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  24. ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  25. POSSIBILITY OF SUCH DAMAGE.
  26. ***********************************************************************/
  27. #ifdef HAVE_CONFIG_H
  28. #include "config.h"
  29. #endif
  30. #include "main_FIX.h"
  31. #define QC 10
  32. #define QS 14
  33. #if defined(MIPSr1_ASM)
  34. #include "mips/warped_autocorrelation_FIX_mipsr1.h"
  35. #endif
  36. #ifndef OVERRIDE_silk_warped_autocorrelation_FIX
  37. /* Autocorrelations for a warped frequency axis */
  38. void silk_warped_autocorrelation_FIX(
  39. opus_int32 *corr, /* O Result [order + 1] */
  40. opus_int *scale, /* O Scaling of the correlation vector */
  41. const opus_int16 *input, /* I Input data to correlate */
  42. const opus_int warping_Q16, /* I Warping coefficient */
  43. const opus_int length, /* I Length of input */
  44. const opus_int order /* I Correlation order (even) */
  45. )
  46. {
  47. opus_int n, i, lsh;
  48. opus_int32 tmp1_QS, tmp2_QS;
  49. opus_int32 state_QS[ MAX_SHAPE_LPC_ORDER + 1 ] = { 0 };
  50. opus_int64 corr_QC[ MAX_SHAPE_LPC_ORDER + 1 ] = { 0 };
  51. /* Order must be even */
  52. silk_assert( ( order & 1 ) == 0 );
  53. silk_assert( 2 * QS - QC >= 0 );
  54. /* Loop over samples */
  55. for( n = 0; n < length; n++ ) {
  56. tmp1_QS = silk_LSHIFT32( (opus_int32)input[ n ], QS );
  57. /* Loop over allpass sections */
  58. for( i = 0; i < order; i += 2 ) {
  59. /* Output of allpass section */
  60. tmp2_QS = silk_SMLAWB( state_QS[ i ], state_QS[ i + 1 ] - tmp1_QS, warping_Q16 );
  61. state_QS[ i ] = tmp1_QS;
  62. corr_QC[ i ] += silk_RSHIFT64( silk_SMULL( tmp1_QS, state_QS[ 0 ] ), 2 * QS - QC );
  63. /* Output of allpass section */
  64. tmp1_QS = silk_SMLAWB( state_QS[ i + 1 ], state_QS[ i + 2 ] - tmp2_QS, warping_Q16 );
  65. state_QS[ i + 1 ] = tmp2_QS;
  66. corr_QC[ i + 1 ] += silk_RSHIFT64( silk_SMULL( tmp2_QS, state_QS[ 0 ] ), 2 * QS - QC );
  67. }
  68. state_QS[ order ] = tmp1_QS;
  69. corr_QC[ order ] += silk_RSHIFT64( silk_SMULL( tmp1_QS, state_QS[ 0 ] ), 2 * QS - QC );
  70. }
  71. lsh = silk_CLZ64( corr_QC[ 0 ] ) - 35;
  72. lsh = silk_LIMIT( lsh, -12 - QC, 30 - QC );
  73. *scale = -( QC + lsh );
  74. silk_assert( *scale >= -30 && *scale <= 12 );
  75. if( lsh >= 0 ) {
  76. for( i = 0; i < order + 1; i++ ) {
  77. corr[ i ] = (opus_int32)silk_CHECK_FIT32( silk_LSHIFT64( corr_QC[ i ], lsh ) );
  78. }
  79. } else {
  80. for( i = 0; i < order + 1; i++ ) {
  81. corr[ i ] = (opus_int32)silk_CHECK_FIT32( silk_RSHIFT64( corr_QC[ i ], -lsh ) );
  82. }
  83. }
  84. silk_assert( corr_QC[ 0 ] >= 0 ); /* If breaking, decrease QC*/
  85. }
  86. #endif /* OVERRIDE_silk_warped_autocorrelation_FIX */