| 194 |  |  | 
| 195 |  | for (j = 0; j < rm->ncols; j++) | 
| 196 |  | for (k = rm->ncomp; k-- > 0; ) | 
| 197 | < | if (fscanf(fp, "%lf", drp++) != 1) | 
| 197 | > | if (fscanf(fp, rmx_scanfmt, drp++) != 1) | 
| 198 |  | return(0); | 
| 199 |  | return(1); | 
| 200 |  | } | 
| 202 |  | static int | 
| 203 |  | rmx_load_float(rmx_dtype *drp, const RMATRIX *rm, FILE *fp) | 
| 204 |  | { | 
| 205 | + | #if DTrmx_native==DTfloat | 
| 206 | + | if (getbinary(drp, sizeof(*drp)*rm->ncomp, rm->ncols, fp) != rm->ncols) | 
| 207 | + | return(0); | 
| 208 | + | if (rm->pflags & RMF_SWAPIN) | 
| 209 | + | swap32((char *)drp, rm->ncols*rm->ncomp); | 
| 210 | + | #else | 
| 211 |  | int     j, k; | 
| 212 | < | float   val[100]; | 
| 212 | > | float   val[MAXCOMP]; | 
| 213 |  |  | 
| 214 | < | if (rm->ncomp > 100) { | 
| 214 | > | if (rm->ncomp > MAXCOMP) { | 
| 215 |  | fputs("Unsupported # components in rmx_load_float()\n", stderr); | 
| 216 |  | exit(1); | 
| 217 |  | } | 
| 223 |  | for (k = 0; k < rm->ncomp; k++) | 
| 224 |  | *drp++ = val[k]; | 
| 225 |  | } | 
| 226 | + | #endif | 
| 227 |  | return(1); | 
| 228 |  | } | 
| 229 |  |  | 
| 230 |  | static int | 
| 231 |  | rmx_load_double(rmx_dtype *drp, const RMATRIX *rm, FILE *fp) | 
| 232 |  | { | 
| 233 | + | #if DTrmx_native==DTdouble | 
| 234 |  | if (getbinary(drp, sizeof(*drp)*rm->ncomp, rm->ncols, fp) != rm->ncols) | 
| 235 |  | return(0); | 
| 236 |  | if (rm->pflags & RMF_SWAPIN) | 
| 237 |  | swap64((char *)drp, rm->ncols*rm->ncomp); | 
| 238 | + | #else | 
| 239 | + | int     j, k; | 
| 240 | + | double  val[MAXCOMP]; | 
| 241 | + |  | 
| 242 | + | if (rm->ncomp > MAXCOMP) { | 
| 243 | + | fputs("Unsupported # components in rmx_load_double()\n", stderr); | 
| 244 | + | exit(1); | 
| 245 | + | } | 
| 246 | + | for (j = 0; j < rm->ncols; j++) { | 
| 247 | + | if (getbinary(val, sizeof(val[0]), rm->ncomp, fp) != rm->ncomp) | 
| 248 | + | return(0); | 
| 249 | + | if (rm->pflags & RMF_SWAPIN) | 
| 250 | + | swap64((char *)val, rm->ncomp); | 
| 251 | + | for (k = 0; k < rm->ncomp; k++) | 
| 252 | + | *drp++ = (float)val[k]; | 
| 253 | + | } | 
| 254 | + | #endif | 
| 255 |  | return(1); | 
| 256 |  | } | 
| 257 |  |  | 
| 281 |  | static int | 
| 282 |  | rmx_load_spec(rmx_dtype *drp, const RMATRIX *rm, FILE *fp) | 
| 283 |  | { | 
| 284 | < | uby8    *scan; | 
| 285 | < | SCOLOR  scol; | 
| 284 | > | COLRV   *scan; | 
| 285 | > | COLORV  scol[MAXCOMP]; | 
| 286 |  | int     j, k; | 
| 287 |  |  | 
| 288 | < | if ((rm->ncomp < 3) | (rm->ncomp > MAXCSAMP)) | 
| 288 | > | if ((rm->ncomp < 3) | (rm->ncomp > MAXCOMP)) | 
| 289 |  | return(0); | 
| 290 | < | scan = (uby8 *)tempbuffer((rm->ncomp+1)*rm->ncols); | 
| 290 | > | scan = (COLRV *)tempbuffer((rm->ncomp+1)*rm->ncols); | 
| 291 |  | if (!scan) | 
| 292 |  | return(0); | 
| 293 |  | if (freadscolrs(scan, rm->ncomp, rm->ncols, fp) < 0) | 
| 389 |  |  | 
| 390 |  | /* Load matrix from supported file type */ | 
| 391 |  | RMATRIX * | 
| 392 | < | rmx_load(const char *inspec, RMPref rmp) | 
| 392 | > | rmx_load(const char *inspec) | 
| 393 |  | { | 
| 394 |  | FILE            *fp; | 
| 395 |  | RMATRIX         *dnew; | 
| 403 |  | fp = stdin; | 
| 404 |  | else if (inspec[0] == '!') | 
| 405 |  | fp = popen(inspec+1, "r"); | 
| 406 | < | else {                                  /* check suffix */ | 
| 382 | < | const char      *sp = strrchr(inspec, '.'); | 
| 383 | < | if (sp > inspec && !strcasecmp(sp+1, "XML")) {  /* BSDF? */ | 
| 384 | < | CMATRIX *cm = rmp==RMPnone ? (CMATRIX *)NULL : | 
| 385 | < | rmp==RMPtrans ? cm_loadBTDF(inspec) : | 
| 386 | < | cm_loadBRDF(inspec, rmp==RMPreflB) ; | 
| 387 | < | if (!cm) | 
| 388 | < | return(NULL); | 
| 389 | < | dnew = rmx_from_cmatrix(cm); | 
| 390 | < | cm_free(cm); | 
| 391 | < | dnew->dtype = DTascii; | 
| 392 | < | return(dnew);           /* return here */ | 
| 393 | < | }                               /* else open it ourselves */ | 
| 406 | > | else | 
| 407 |  | fp = fopen(inspec, "r"); | 
| 395 | – | } | 
| 408 |  | if (!fp) { | 
| 409 |  | fprintf(stderr, "Cannot open for reading: %s\n", inspec); | 
| 410 |  | return(NULL); | 
| 424 |  |  | 
| 425 |  | if (fp != stdin) {                      /* close input stream */ | 
| 426 |  | if (inspec[0] == '!') | 
| 427 | < | pclose(fp); | 
| 427 | > | ok &= pclose(fp)==0; | 
| 428 |  | else | 
| 429 |  | fclose(fp); | 
| 430 |  | } | 
| 440 |  | /* undo exposure? */ | 
| 441 |  | if ((dnew->cexp[0] != 1.f) | | 
| 442 |  | (dnew->cexp[1] != 1.f) | (dnew->cexp[2] != 1.f)) { | 
| 443 | < | double  cmlt[MAXCSAMP]; | 
| 443 | > | double  cmlt[MAXCOMP]; | 
| 444 |  | int     i; | 
| 445 | < | if (dnew->ncomp > MAXCSAMP) { | 
| 445 | > | if (dnew->ncomp > MAXCOMP) { | 
| 446 |  | fprintf(stderr, "Excess spectral components in: %s\n", | 
| 447 |  | inspec); | 
| 448 |  | rmx_free(dnew); | 
| 459 |  | return(dnew); | 
| 460 |  | } | 
| 461 |  |  | 
| 462 | + | #if DTrmx_native==DTdouble | 
| 463 |  | static int | 
| 464 | < | rmx_write_ascii(const rmx_dtype *dp, int nc, int len, FILE *fp) | 
| 464 | > | rmx_write_float(const rmx_dtype *dp, int len, FILE *fp) | 
| 465 |  | { | 
| 466 | < | while (len-- > 0) { | 
| 467 | < | int     k = nc; | 
| 468 | < | while (k-- > 0) | 
| 469 | < | fprintf(fp, " %.7e", *dp++); | 
| 470 | < | fputc('\t', fp); | 
| 466 | > | float   val; | 
| 467 | > |  | 
| 468 | > | while (len--) { | 
| 469 | > | val = (float)*dp++; | 
| 470 | > | if (putbinary(&val, sizeof(val), 1, fp) != 1) | 
| 471 | > | return(0); | 
| 472 |  | } | 
| 473 | < | return(fputc('\n', fp) != EOF); | 
| 473 | > | return(1); | 
| 474 |  | } | 
| 475 | < |  | 
| 475 | > | #else | 
| 476 |  | static int | 
| 477 | < | rmx_write_float(const rmx_dtype *dp, int len, FILE *fp) | 
| 477 | > | rmx_write_double(const rmx_dtype *dp, int len, FILE *fp) | 
| 478 |  | { | 
| 479 | < | float   val; | 
| 479 | > | double  val; | 
| 480 |  |  | 
| 481 |  | while (len--) { | 
| 482 |  | val = *dp++; | 
| 483 | < | if (putbinary(&val, sizeof(float), 1, fp) != 1) | 
| 483 | > | if (putbinary(&val, sizeof(val), 1, fp) != 1) | 
| 484 |  | return(0); | 
| 485 |  | } | 
| 486 |  | return(1); | 
| 487 |  | } | 
| 488 | + | #endif | 
| 489 |  |  | 
| 490 |  | static int | 
| 491 | + | rmx_write_ascii(const rmx_dtype *dp, int nc, int len, FILE *fp) | 
| 492 | + | { | 
| 493 | + | while (len-- > 0) { | 
| 494 | + | int     k = nc; | 
| 495 | + | while (k-- > 0) | 
| 496 | + | fprintf(fp, " %.7e", *dp++); | 
| 497 | + | fputc('\t', fp); | 
| 498 | + | } | 
| 499 | + | return(fputc('\n', fp) != EOF); | 
| 500 | + | } | 
| 501 | + |  | 
| 502 | + | static int | 
| 503 |  | rmx_write_rgbe(const rmx_dtype *dp, int nc, int len, FILE *fp) | 
| 504 |  | { | 
| 505 |  | COLR    *scan; | 
| 521 |  | static int | 
| 522 |  | rmx_write_spec(const rmx_dtype *dp, int nc, int len, FILE *fp) | 
| 523 |  | { | 
| 524 | < | uby8    *scan; | 
| 525 | < | SCOLOR  scol; | 
| 524 | > | COLRV   *scan; | 
| 525 | > | COLORV  scol[MAXCOMP]; | 
| 526 |  | int     j, k; | 
| 527 |  |  | 
| 528 | < | if ((nc < 3) | (nc > MAXCSAMP)) return(0); | 
| 529 | < | scan = (uby8 *)tempbuffer((nc+1)*len); | 
| 528 | > | if ((nc < 3) | (nc > MAXCOMP)) return(0); | 
| 529 | > | scan = (COLRV *)tempbuffer((nc+1)*len); | 
| 530 |  | if (!scan) return(0); | 
| 531 |  | for (j = 0; j < len; j++, dp += nc) { | 
| 532 |  | for (k = nc; k--; ) | 
| 561 |  | return(0); | 
| 562 |  | if (rm->info) | 
| 563 |  | fputs(rm->info, fp); | 
| 564 | < | if (dtype == DTfromHeader) | 
| 564 | > | if (dtype == DTfromHeader) { | 
| 565 |  | dtype = rm->dtype; | 
| 566 | < | else if (dtype == DTrgbe && (rm->dtype == DTxyze || | 
| 566 | > | #if DTrmx_native==DTfloat | 
| 567 | > | if (dtype == DTdouble)          /* but stored as float? */ | 
| 568 | > | dtype = DTfloat; | 
| 569 | > | #endif | 
| 570 | > | } else if (dtype == DTrgbe && (rm->dtype == DTxyze || | 
| 571 |  | findCIEprims(rm->info))) | 
| 572 |  | dtype = DTxyze; | 
| 573 |  | else if ((dtype == DTxyze) & (rm->dtype == DTrgbe)) | 
| 614 |  | rmx_write_data(const rmx_dtype *dp, int nc, int len, int dtype, FILE *fp) | 
| 615 |  | { | 
| 616 |  | switch (dtype) { | 
| 617 | < | case DTascii: | 
| 587 | < | return(rmx_write_ascii(dp, nc, len, fp)); | 
| 617 | > | #if DTrmx_native==DTdouble | 
| 618 |  | case DTfloat: | 
| 619 |  | return(rmx_write_float(dp, nc*len, fp)); | 
| 620 | + | #else | 
| 621 | + | case DTdouble: | 
| 622 | + | return(rmx_write_double(dp, nc*len, fp)); | 
| 623 | + | #endif | 
| 624 |  | case DTrmx_native: | 
| 625 |  | return(putbinary(dp, sizeof(*dp)*nc, len, fp) == len); | 
| 626 | + | case DTascii: | 
| 627 | + | return(rmx_write_ascii(dp, nc, len, fp)); | 
| 628 |  | case DTrgbe: | 
| 629 |  | case DTxyze: | 
| 630 |  | return(rmx_write_rgbe(dp, nc, len, fp)); | 
| 712 |  | int | 
| 713 |  | rmx_transfer_data(RMATRIX *rdst, RMATRIX *rsrc, int dometa) | 
| 714 |  | { | 
| 715 | < | if (!rdst | !rsrc || (rdst->nrows != rsrc->nrows) | | 
| 680 | < | (rdst->ncols != rsrc->ncols) | | 
| 681 | < | (rdst->ncomp != rsrc->ncomp)) | 
| 715 | > | if (!rdst | !rsrc) | 
| 716 |  | return(0); | 
| 683 | – |  | 
| 717 |  | if (dometa) {           /* transfer everything? */ | 
| 718 |  | rmx_reset(rdst); | 
| 719 |  | *rdst = *rsrc; | 
| 720 |  | rsrc->info = NULL; rsrc->mapped = NULL; rsrc->mtx = NULL; | 
| 721 |  | return(1); | 
| 722 |  | } | 
| 723 | < | #ifdef MAP_FILE                 /* just matrix data -- leave metadata */ | 
| 723 | > | /* just matrix data -- leave metadata */ | 
| 724 | > | if ((rdst->nrows != rsrc->nrows) | | 
| 725 | > | (rdst->ncols != rsrc->ncols) | | 
| 726 | > | (rdst->ncomp != rsrc->ncomp)) | 
| 727 | > | return(0); | 
| 728 | > | #ifdef MAP_FILE | 
| 729 |  | if (rdst->mapped) | 
| 730 |  | munmap(rdst->mapped, rmx_mapped_size(rdst)); | 
| 731 |  | else | 
| 741 |  | return(1); | 
| 742 |  | } | 
| 743 |  |  | 
| 744 | < | /* Allocate and assign transposed matrix */ | 
| 745 | < | RMATRIX * | 
| 746 | < | rmx_transpose(const RMATRIX *rm) | 
| 744 | > | /* Transpose the given matrix */ | 
| 745 | > | int | 
| 746 | > | rmx_transpose(RMATRIX *rm) | 
| 747 |  | { | 
| 748 | < | RMATRIX *dnew; | 
| 749 | < | int     i, j; | 
| 748 | > | uby8            *bmap; | 
| 749 | > | rmx_dtype       val[MAXCOMP]; | 
| 750 | > | RMATRIX         dold; | 
| 751 | > | int             i, j; | 
| 752 |  |  | 
| 753 | < | if (!rm || !rm->mtx) | 
| 753 | > | if (!rm || !rm->mtx | (rm->ncomp > MAXCOMP)) | 
| 754 |  | return(0); | 
| 755 | < | if ((rm->nrows == 1) | (rm->ncols == 1)) { | 
| 756 | < | dnew = rmx_copy(rm); | 
| 757 | < | if (!dnew) | 
| 758 | < | return(NULL); | 
| 759 | < | dnew->nrows = rm->ncols; | 
| 760 | < | dnew->ncols = rm->nrows; | 
| 761 | < | return(dnew); | 
| 755 | > | if (rm->info) | 
| 756 | > | rmx_addinfo(rm, "Transposed rows and columns\n"); | 
| 757 | > | if ((rm->nrows == 1) | (rm->ncols == 1)) { /* vector? */ | 
| 758 | > | j = rm->ncols; | 
| 759 | > | rm->ncols = rm->nrows; | 
| 760 | > | rm->nrows = j; | 
| 761 | > | return(1); | 
| 762 |  | } | 
| 763 | < | dnew = rmx_alloc(rm->ncols, rm->nrows, rm->ncomp); | 
| 764 | < | if (!dnew) | 
| 765 | < | return(NULL); | 
| 766 | < | if (rm->info) { | 
| 767 | < | rmx_addinfo(dnew, rm->info); | 
| 768 | < | rmx_addinfo(dnew, "Transposed rows and columns\n"); | 
| 763 | > | if (rm->nrows == rm->ncols) {   /* square matrix case */ | 
| 764 | > | for (i = rm->nrows; --i > 0; ) | 
| 765 | > | for (j = i; j-- > 0; ) { | 
| 766 | > | memcpy(val, rmx_val(rm,i,j), | 
| 767 | > | sizeof(rmx_dtype)*rm->ncomp); | 
| 768 | > | memcpy(rmx_lval(rm,i,j), rmx_val(rm,j,i), | 
| 769 | > | sizeof(rmx_dtype)*rm->ncomp); | 
| 770 | > | memcpy(rmx_lval(rm,j,i), val, | 
| 771 | > | sizeof(rmx_dtype)*rm->ncomp); | 
| 772 | > | } | 
| 773 | > | return(1); | 
| 774 |  | } | 
| 775 | < | dnew->dtype = rm->dtype; | 
| 776 | < | copycolor(dnew->cexp, rm->cexp); | 
| 777 | < | memcpy(dnew->wlpart, rm->wlpart, sizeof(dnew->wlpart)); | 
| 778 | < | for (j = dnew->ncols; j--; ) | 
| 779 | < | for (i = dnew->nrows; i--; ) | 
| 780 | < | memcpy(rmx_lval(dnew,i,j), rmx_val(rm,j,i), | 
| 781 | < | sizeof(rmx_dtype)*dnew->ncomp); | 
| 782 | < | return(dnew); | 
| 775 | > | #define bmbyte(r,c)     bmap[((r)*rm->ncols+(c))>>3] | 
| 776 | > | #define bmbit(r,c)      (1 << ((r)*rm->ncols+(c) & 7)) | 
| 777 | > | #define bmop(r,c, op)   (bmbyte(r,c) op bmbit(r,c)) | 
| 778 | > | #define bmtest(r,c)     bmop(r,c,&) | 
| 779 | > | #define bmset(r,c)      bmop(r,c,|=) | 
| 780 | > | /* loop completion bitmap */ | 
| 781 | > | bmap = (uby8 *)calloc(((size_t)rm->nrows*rm->ncols+7)>>3, 1); | 
| 782 | > | if (!bmap) | 
| 783 | > | return(0); | 
| 784 | > | dold = *rm; | 
| 785 | > | rm->ncols = dold.nrows; rm->nrows = dold.ncols; | 
| 786 | > | for (i = rm->nrows; i--; )      /* try every starting point */ | 
| 787 | > | for (j = rm->ncols; j--; ) { | 
| 788 | > | int     i0, j0; | 
| 789 | > | int     i1 = i; | 
| 790 | > | size_t  j1 = j; | 
| 791 | > | if (bmtest(i, j)) | 
| 792 | > | continue;       /* traversed loop earlier */ | 
| 793 | > | memcpy(val, rmx_val(rm,i,j), | 
| 794 | > | sizeof(rmx_dtype)*rm->ncomp); | 
| 795 | > | for ( ; ; ) {           /* new transpose loop */ | 
| 796 | > | const rmx_dtype     *ds; | 
| 797 | > | i0 = i1; j0 = j1; | 
| 798 | > | ds = rmx_val(&dold, j0, i0); | 
| 799 | > | j1 = (ds - dold.mtx)/dold.ncomp; | 
| 800 | > | i1 = j1 / rm->ncols; | 
| 801 | > | j1 -= (size_t)i1*rm->ncols; | 
| 802 | > | bmset(i1, j1);      /* mark as done */ | 
| 803 | > | if ((i1 == i) & (j1 == j)) | 
| 804 | > | break;          /* back at start */ | 
| 805 | > | memcpy(rmx_lval(rm,i0,j0), ds, | 
| 806 | > | sizeof(rmx_dtype)*rm->ncomp); | 
| 807 | > | }                       /* complete the loop */ | 
| 808 | > | memcpy(rmx_lval(rm,i0,j0), val, | 
| 809 | > | sizeof(rmx_dtype)*rm->ncomp); | 
| 810 | > | } | 
| 811 | > | free(bmap);                     /* all done! */ | 
| 812 | > | return(1); | 
| 813 | > | #undef  bmbyte | 
| 814 | > | #undef  bmbit | 
| 815 | > | #undef  bmop | 
| 816 | > | #undef  bmtest | 
| 817 | > | #undef  bmset | 
| 818 |  | } | 
| 819 |  |  | 
| 820 |  | /* Multiply (concatenate) two matrices and allocate the result */ | 
| 838 |  | for (i = mres->nrows; i--; ) | 
| 839 |  | for (j = mres->ncols; j--; ) | 
| 840 |  | for (k = mres->ncomp; k--; ) { | 
| 841 | < | rmx_dtype   d = 0; | 
| 841 | > | double      d = 0; | 
| 842 |  | for (h = m1->ncols; h--; ) | 
| 843 | < | d += rmx_val(m1,i,h)[k] * rmx_val(m2,h,j)[k]; | 
| 844 | < | rmx_lval(mres,i,j)[k] = d; | 
| 843 | > | d += (double)rmx_val(m1,i,h)[k] * | 
| 844 | > | rmx_val(m2,h,j)[k]; | 
| 845 | > | rmx_lval(mres,i,j)[k] = (rmx_dtype)d; | 
| 846 |  | } | 
| 847 |  | return(mres); | 
| 848 |  | } | 
| 934 |  | const rmx_dtype *da = rmx_val(madd,i,j); | 
| 935 |  | rmx_dtype       *ds = rmx_lval(msum,i,j); | 
| 936 |  | for (k = msum->ncomp; k--; ) | 
| 937 | < | ds[k] += sf[k] * da[k]; | 
| 937 | > | ds[k] += (rmx_dtype)sf[k] * da[k]; | 
| 938 |  | } | 
| 939 |  | if (mysf) | 
| 940 |  | free(mysf); | 
| 953 |  | for (j = rm->ncols; j--; ) { | 
| 954 |  | rmx_dtype       *dp = rmx_lval(rm,i,j); | 
| 955 |  | for (k = rm->ncomp; k--; ) | 
| 956 | < | dp[k] *= sf[k]; | 
| 956 | > | dp[k] *= (rmx_dtype)sf[k]; | 
| 957 |  | } | 
| 958 |  | if (rm->info) | 
| 959 |  | rmx_addinfo(rm, "Applied scalar\n"); | 
| 985 |  | for (j = dnew->ncols; j--; ) { | 
| 986 |  | const rmx_dtype *ds = rmx_val(msrc,i,j); | 
| 987 |  | for (kd = dnew->ncomp; kd--; ) { | 
| 988 | < | rmx_dtype   d = 0; | 
| 988 | > | double      d = 0; | 
| 989 |  | for (ks = msrc->ncomp; ks--; ) | 
| 990 |  | d += cmat[kd*msrc->ncomp + ks] * ds[ks]; | 
| 991 | < | rmx_lval(dnew,i,j)[kd] = d; | 
| 991 | > | rmx_lval(dnew,i,j)[kd] = (rmx_dtype)d; | 
| 992 |  | } | 
| 993 |  | } | 
| 994 |  | return(dnew); | 
| 995 |  | } | 
| 996 |  |  | 
| 916 | – | /* Convert a color matrix to newly allocated RMATRIX buffer */ | 
| 917 | – | RMATRIX * | 
| 918 | – | rmx_from_cmatrix(const CMATRIX *cm) | 
| 919 | – | { | 
| 920 | – | int     i, j; | 
| 921 | – | RMATRIX *dnew; | 
| 922 | – |  | 
| 923 | – | if (!cm) | 
| 924 | – | return(NULL); | 
| 925 | – | dnew = rmx_alloc(cm->nrows, cm->ncols, 3); | 
| 926 | – | if (!dnew) | 
| 927 | – | return(NULL); | 
| 928 | – | dnew->dtype = DTfloat; | 
| 929 | – | for (i = dnew->nrows; i--; ) | 
| 930 | – | for (j = dnew->ncols; j--; ) { | 
| 931 | – | const COLORV    *cv = cm_lval(cm,i,j); | 
| 932 | – | rmx_dtype       *dp = rmx_lval(dnew,i,j); | 
| 933 | – | dp[0] = cv[0]; | 
| 934 | – | dp[1] = cv[1]; | 
| 935 | – | dp[2] = cv[2]; | 
| 936 | – | } | 
| 937 | – | return(dnew); | 
| 938 | – | } | 
| 939 | – |  | 
| 940 | – | /* Convert general matrix to newly allocated CMATRIX buffer */ | 
| 941 | – | CMATRIX * | 
| 942 | – | cm_from_rmatrix(const RMATRIX *rm) | 
| 943 | – | { | 
| 944 | – | int     i, j; | 
| 945 | – | CMATRIX *cnew; | 
| 946 | – |  | 
| 947 | – | if (!rm || !rm->mtx | (rm->ncomp == 2) | (rm->ncomp > MAXCSAMP)) | 
| 948 | – | return(NULL); | 
| 949 | – | cnew = cm_alloc(rm->nrows, rm->ncols); | 
| 950 | – | if (!cnew) | 
| 951 | – | return(NULL); | 
| 952 | – | for (i = cnew->nrows; i--; ) | 
| 953 | – | for (j = cnew->ncols; j--; ) { | 
| 954 | – | const rmx_dtype *dp = rmx_val(rm,i,j); | 
| 955 | – | COLORV          *cv = cm_lval(cnew,i,j); | 
| 956 | – | switch (rm->ncomp) { | 
| 957 | – | case 3: | 
| 958 | – | setcolor(cv, dp[0], dp[1], dp[2]); | 
| 959 | – | break; | 
| 960 | – | case 1: | 
| 961 | – | setcolor(cv, dp[0], dp[0], dp[0]); | 
| 962 | – | break; | 
| 963 | – | default: { | 
| 964 | – | SCOLOR  scol; | 
| 965 | – | int     k; | 
| 966 | – | for (k = rm->ncomp; k--; ) | 
| 967 | – | scol[k] = dp[k]; | 
| 968 | – | scolor2color(cv, scol, rm->ncomp, rm->wlpart); | 
| 969 | – | } break; | 
| 970 | – | } | 
| 971 | – | } | 
| 972 | – | return(cnew); | 
| 973 | – | } |