194 lines
5.6 KiB
C
194 lines
5.6 KiB
C
/*
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$Log$
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Revision 1.15 2004/06/26 03:50:14 markster
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Merge source cleanups (bug #1911)
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Revision 1.14 2003/02/12 13:59:15 matteo
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mer feb 12 14:56:57 CET 2003
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Revision 1.1.1.1 2003/02/12 13:59:15 matteo
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mer feb 12 14:56:57 CET 2003
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Revision 1.2 2000/01/05 08:20:39 markster
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Some OSS fixes and a few lpc changes to make it actually work
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* Revision 1.1 1996/08/19 22:32:00 jaf
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* Initial revision
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*
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*/
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/* -- translated by f2c (version 19951025).
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You must link the resulting object file with the libraries:
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-lf2c -lm (in that order)
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*/
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#include "f2c.h"
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#ifdef P_R_O_T_O_T_Y_P_E_S
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extern int invert_(integer *order, real *phi, real *psi, real *rc);
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#endif
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/* **************************************************************** */
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/* INVERT Version 45G */
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/* $Log$
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* Revision 1.15 2004/06/26 03:50:14 markster
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* Merge source cleanups (bug #1911)
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*
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* Revision 1.14 2003/02/12 13:59:15 matteo
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* mer feb 12 14:56:57 CET 2003
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*
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* Revision 1.1.1.1 2003/02/12 13:59:15 matteo
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* mer feb 12 14:56:57 CET 2003
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*
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* Revision 1.2 2000/01/05 08:20:39 markster
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* Some OSS fixes and a few lpc changes to make it actually work
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*
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* Revision 1.1 1996/08/19 22:32:00 jaf
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* Initial revision
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* */
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/* Revision 1.3 1996/03/18 20:52:47 jaf */
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/* Just added a few comments about which array indices of the arguments */
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/* are used, and mentioning that this subroutine has no local state. */
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/* Revision 1.2 1996/03/13 16:51:32 jaf */
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/* Comments added explaining that none of the local variables of this */
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/* subroutine need to be saved from one invocation to the next. */
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/* Eliminated a comment from the original, describing a local array X */
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/* that appeared nowhere in the code. */
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/* Revision 1.1 1996/02/07 14:47:20 jaf */
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/* Initial revision */
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/* **************************************************************** */
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/* Invert a covariance matrix using Choleski decomposition method. */
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/* Input: */
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/* ORDER - Analysis order */
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/* PHI(ORDER,ORDER) - Covariance matrix */
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/* Indices (I,J) read, where ORDER .GE. I .GE. J .GE. 1.*/
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/* All other indices untouched. */
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/* PSI(ORDER) - Column vector to be predicted */
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/* Indices 1 through ORDER read. */
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/* Output: */
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/* RC(ORDER) - Pseudo reflection coefficients */
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/* Indices 1 through ORDER written, and then possibly read.
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*/
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/* Internal: */
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/* V(ORDER,ORDER) - Temporary matrix */
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/* Same indices written as read from PHI. */
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/* Many indices may be read and written again after */
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/* initially being copied from PHI, but all indices */
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/* are written before being read. */
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/* NOTE: Temporary matrix V is not needed and may be replaced */
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/* by PHI if the original PHI values do not need to be preserved. */
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/* Subroutine */ int invert_(integer *order, real *phi, real *psi, real *rc)
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{
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/* System generated locals */
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unsigned i__2;
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integer phi_dim1, phi_offset, i__1, i__3;
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real r__1, r__2;
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/* Local variables */
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real save;
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integer i__, j, k;
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real v[100] /* was [10][10] */;
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/* Arguments */
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/* $Log$
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* Revision 1.15 2004/06/26 03:50:14 markster
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* Merge source cleanups (bug #1911)
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*
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* Revision 1.14 2003/02/12 13:59:15 matteo
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* mer feb 12 14:56:57 CET 2003
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*
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* Revision 1.1.1.1 2003/02/12 13:59:15 matteo
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* mer feb 12 14:56:57 CET 2003
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*
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* Revision 1.2 2000/01/05 08:20:39 markster
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* Some OSS fixes and a few lpc changes to make it actually work
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*
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* Revision 1.1 1996/08/19 22:32:00 jaf
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* Initial revision
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* */
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/* Revision 1.3 1996/03/29 22:03:47 jaf */
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/* Removed definitions for any constants that were no longer used. */
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/* Revision 1.2 1996/03/26 19:34:33 jaf */
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/* Added comments indicating which constants are not needed in an */
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/* application that uses the LPC-10 coder. */
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/* Revision 1.1 1996/02/07 14:43:51 jaf */
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/* Initial revision */
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/* LPC Configuration parameters: */
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/* Frame size, Prediction order, Pitch period */
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/* Parameters/constants */
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/* Local variables that need not be saved */
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/* Decompose PHI into V * D * V' where V is a triangular matrix whose */
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/* main diagonal elements are all 1, V' is the transpose of V, and */
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/* D is a vector. Here D(n) is stored in location V(n,n). */
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/* Parameter adjustments */
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--rc;
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--psi;
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phi_dim1 = *order;
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phi_offset = phi_dim1 + 1;
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phi -= phi_offset;
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/* Function Body */
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i__1 = *order;
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for (j = 1; j <= i__1; ++j) {
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i__2 = *order;
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for (i__ = j; i__ <= i__2; ++i__) {
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v[i__ + j * 10 - 11] = phi[i__ + j * phi_dim1];
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}
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i__2 = j - 1;
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for (k = 1; k <= i__2; ++k) {
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save = v[j + k * 10 - 11] * v[k + k * 10 - 11];
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i__3 = *order;
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for (i__ = j; i__ <= i__3; ++i__) {
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v[i__ + j * 10 - 11] -= v[i__ + k * 10 - 11] * save;
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}
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}
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/* Compute intermediate results, which are similar to RC's */
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if ((r__1 = v[j + j * 10 - 11], abs(r__1)) < 1e-10f) {
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goto L100;
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}
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rc[j] = psi[j];
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i__2 = j - 1;
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for (k = 1; k <= i__2; ++k) {
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rc[j] -= rc[k] * v[j + k * 10 - 11];
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}
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v[j + j * 10 - 11] = 1.f / v[j + j * 10 - 11];
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rc[j] *= v[j + j * 10 - 11];
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/* Computing MAX */
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/* Computing MIN */
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r__2 = rc[j];
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r__1 = min(r__2,.999f);
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rc[j] = max(r__1,-.999f);
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}
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return 0;
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/* Zero out higher order RC's if algorithm terminated early */
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L100:
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i__1 = *order;
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for (i__ = j; i__ <= i__1; ++i__) {
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rc[i__] = 0.f;
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}
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/* Back substitute for PC's (if needed) */
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/* 110 DO J = ORDER,1,-1 */
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/* PC(J) = RC(J) */
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/* DO I = 1,J-1 */
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/* PC(J) = PC(J) - PC(I)*V(J,I) */
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/* END DO */
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/* END DO */
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return 0;
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} /* invert_ */
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