42#include "MagickCore/studio.h"
43#include "MagickCore/blob.h"
44#include "MagickCore/blob-private.h"
45#include "MagickCore/cache.h"
46#include "MagickCore/exception.h"
47#include "MagickCore/exception-private.h"
48#include "MagickCore/image-private.h"
49#include "MagickCore/matrix.h"
50#include "MagickCore/matrix-private.h"
51#include "MagickCore/memory_.h"
52#include "MagickCore/memory-private.h"
53#include "MagickCore/nt-base-private.h"
54#include "MagickCore/pixel-accessor.h"
55#include "MagickCore/resource_.h"
56#include "MagickCore/semaphore.h"
57#include "MagickCore/thread-private.h"
58#include "MagickCore/utility.h"
59#include "MagickCore/utility-private.h"
82 path[MagickPathExtent];
128static void MatrixSignalHandler(
int magick_unused(status))
130 magick_unreferenced(status);
131 ThrowFatalException(CacheFatalError,
"UnableToExtendMatrixCache");
135static inline MagickOffsetType WriteMatrixElements(
136 const MatrixInfo *magick_restrict matrix_info,
const MagickOffsetType offset,
137 const MagickSizeType length,
const unsigned char *magick_restrict buffer)
145 LockSemaphoreInfo(matrix_info->semaphore);
146 if (lseek(matrix_info->file,offset,SEEK_SET) < 0)
148 UnlockSemaphoreInfo(matrix_info->semaphore);
149 return((MagickOffsetType) -1);
152 for (i=0; i < (MagickOffsetType) length; i+=count)
154 count=MagickWrite(matrix_info->file,buffer+i,(
size_t) MagickMin(length-
155 (MagickSizeType) i,(MagickSizeType) MagickMaxBufferExtent));
159 UnlockSemaphoreInfo(matrix_info->semaphore);
163static MagickBooleanType SetMatrixExtent(
164 MatrixInfo *magick_restrict matrix_info,MagickSizeType length)
171 if (length != (MagickSizeType) ((MagickOffsetType) length))
173 offset=(MagickOffsetType) lseek(matrix_info->file,0,SEEK_END);
176 if ((MagickSizeType) offset >= length)
178 extent=(MagickOffsetType) length-1;
179 count=WriteMatrixElements(matrix_info,extent,1,(
const unsigned char *)
"");
180#if defined(MAGICKCORE_HAVE_POSIX_FALLOCATE)
181 if (matrix_info->synchronize != MagickFalse)
182 (void) posix_fallocate(matrix_info->file,offset+1,extent-offset);
185 (void) signal(SIGBUS,MatrixSignalHandler);
187 return(count != (MagickOffsetType) 1 ? MagickFalse : MagickTrue);
190MagickExport MatrixInfo *AcquireMatrixInfo(
const size_t columns,
191 const size_t rows,
const size_t stride,ExceptionInfo *exception)
202 matrix_info=(MatrixInfo *) AcquireMagickMemory(
sizeof(*matrix_info));
203 if (matrix_info == (MatrixInfo *) NULL)
204 return((MatrixInfo *) NULL);
205 (void) memset(matrix_info,0,
sizeof(*matrix_info));
206 matrix_info->signature=MagickCoreSignature;
207 matrix_info->columns=columns;
208 matrix_info->rows=rows;
209 matrix_info->stride=stride;
210 matrix_info->semaphore=AcquireSemaphoreInfo();
211 synchronize=GetEnvironmentValue(
"MAGICK_SYNCHRONIZE");
212 if (synchronize != (
const char *) NULL)
214 matrix_info->synchronize=IsStringTrue(synchronize);
215 synchronize=DestroyString(synchronize);
217 matrix_info->length=(MagickSizeType) columns*rows*stride;
218 if (matrix_info->columns != (
size_t) (matrix_info->length/rows/stride))
220 (void) ThrowMagickException(exception,GetMagickModule(),CacheError,
221 "CacheResourcesExhausted",
"`%s'",
"matrix cache");
222 return(DestroyMatrixInfo(matrix_info));
224 matrix_info->type=MemoryCache;
225 status=AcquireMagickResource(AreaResource,matrix_info->length);
226 if ((status != MagickFalse) &&
227 (matrix_info->length == (MagickSizeType) ((
size_t) matrix_info->length)) &&
228 ((
size_t) matrix_info->length <= GetMaxMemoryRequest()))
230 status=AcquireMagickResource(MemoryResource,matrix_info->length);
231 if (status != MagickFalse)
233 matrix_info->mapped=MagickFalse;
234 matrix_info->elements=MagickAssumeAligned(AcquireAlignedMemory(1,
235 (
size_t) matrix_info->length));
236 if (matrix_info->elements == NULL)
238 matrix_info->mapped=MagickTrue;
239 matrix_info->elements=MapBlob(-1,IOMode,0,(
size_t)
240 matrix_info->length);
242 if (matrix_info->elements == (
unsigned short *) NULL)
243 RelinquishMagickResource(MemoryResource,matrix_info->length);
246 matrix_info->file=(-1);
247 if (matrix_info->elements == (
unsigned short *) NULL)
249 status=AcquireMagickResource(DiskResource,matrix_info->length);
250 if (status == MagickFalse)
252 (void) ThrowMagickException(exception,GetMagickModule(),CacheError,
253 "CacheResourcesExhausted",
"`%s'",
"matrix cache");
254 return(DestroyMatrixInfo(matrix_info));
256 matrix_info->type=DiskCache;
257 matrix_info->file=AcquireUniqueFileResource(matrix_info->path);
258 if (matrix_info->file == -1)
259 return(DestroyMatrixInfo(matrix_info));
260 status=AcquireMagickResource(MapResource,matrix_info->length);
261 if (status != MagickFalse)
263 status=SetMatrixExtent(matrix_info,matrix_info->length);
264 if (status != MagickFalse)
265 matrix_info->elements=(
void *) MapBlob(matrix_info->file,IOMode,0,
266 (
size_t) matrix_info->length);
267 if (matrix_info->elements != NULL)
268 matrix_info->type=MapCache;
270 RelinquishMagickResource(MapResource,matrix_info->length);
308MagickExport
double **AcquireMagickMatrix(
const size_t number_rows,
318 matrix=(
double **) AcquireQuantumMemory(number_rows,
sizeof(*matrix));
319 if (matrix == (
double **) NULL)
320 return((
double **) NULL);
321 for (i=0; i < (ssize_t) number_rows; i++)
323 matrix[i]=(
double *) AcquireQuantumMemory(size,
sizeof(*matrix[i]));
324 if (matrix[i] == (
double *) NULL)
326 for (j=0; j < i; j++)
327 matrix[j]=(
double *) RelinquishMagickMemory(matrix[j]);
328 matrix=(
double **) RelinquishMagickMemory(matrix);
329 return((
double **) NULL);
331 for (j=0; j < (ssize_t) size; j++)
360MagickExport MatrixInfo *DestroyMatrixInfo(MatrixInfo *matrix_info)
362 assert(matrix_info != (MatrixInfo *) NULL);
363 assert(matrix_info->signature == MagickCoreSignature);
364 LockSemaphoreInfo(matrix_info->semaphore);
365 switch (matrix_info->type)
369 if (matrix_info->mapped == MagickFalse)
370 matrix_info->elements=RelinquishAlignedMemory(matrix_info->elements);
373 (void) UnmapBlob(matrix_info->elements,(
size_t) matrix_info->length);
374 matrix_info->elements=(
unsigned short *) NULL;
376 RelinquishMagickResource(MemoryResource,matrix_info->length);
381 (void) UnmapBlob(matrix_info->elements,(
size_t) matrix_info->length);
382 matrix_info->elements=NULL;
383 RelinquishMagickResource(MapResource,matrix_info->length);
388 if (matrix_info->file != -1)
389 (void) close_utf8(matrix_info->file);
390 (void) RelinquishUniqueFileResource(matrix_info->path);
391 RelinquishMagickResource(DiskResource,matrix_info->length);
397 UnlockSemaphoreInfo(matrix_info->semaphore);
398 RelinquishSemaphoreInfo(&matrix_info->semaphore);
399 return((MatrixInfo *) RelinquishMagickMemory(matrix_info));
424MagickExport
size_t GetMatrixColumns(
const MatrixInfo *matrix_info)
426 assert(matrix_info != (MatrixInfo *) NULL);
427 assert(matrix_info->signature == MagickCoreSignature);
428 return(matrix_info->columns);
461static inline ssize_t EdgeX(
const ssize_t x,
const size_t columns)
465 if (x >= (ssize_t) columns)
466 return((ssize_t) (columns-1));
470static inline ssize_t EdgeY(
const ssize_t y,
const size_t rows)
474 if (y >= (ssize_t) rows)
475 return((ssize_t) (rows-1));
479static inline MagickOffsetType ReadMatrixElements(
480 const MatrixInfo *magick_restrict matrix_info,
const MagickOffsetType offset,
481 const MagickSizeType length,
unsigned char *magick_restrict buffer)
489 LockSemaphoreInfo(matrix_info->semaphore);
490 if (lseek(matrix_info->file,offset,SEEK_SET) < 0)
492 UnlockSemaphoreInfo(matrix_info->semaphore);
493 return((MagickOffsetType) -1);
496 for (i=0; i < (MagickOffsetType) length; i+=count)
498 count=MagickRead(matrix_info->file,buffer+i,(
size_t) MagickMin(length-i,
499 (MagickSizeType) MagickMaxBufferExtent));
503 UnlockSemaphoreInfo(matrix_info->semaphore);
507MagickExport MagickBooleanType GetMatrixElement(
const MatrixInfo *matrix_info,
508 const ssize_t x,
const ssize_t y,
void *value)
514 assert(matrix_info != (
const MatrixInfo *) NULL);
515 assert(matrix_info->signature == MagickCoreSignature);
516 i=EdgeY(y,matrix_info->rows)*(MagickOffsetType) matrix_info->columns+
517 EdgeX(x,matrix_info->columns);
518 if (matrix_info->type != DiskCache)
520 (void) memcpy(value,(
unsigned char *) matrix_info->elements+i*
521 (MagickOffsetType) matrix_info->stride,matrix_info->stride);
524 count=ReadMatrixElements(matrix_info,i*(MagickOffsetType) matrix_info->stride,
525 matrix_info->stride,(
unsigned char *) value);
526 if (count != (MagickOffsetType) matrix_info->stride)
553MagickExport
size_t GetMatrixRows(
const MatrixInfo *matrix_info)
555 assert(matrix_info != (
const MatrixInfo *) NULL);
556 assert(matrix_info->signature == MagickCoreSignature);
557 return(matrix_info->rows);
631MagickPrivate
void LeastSquaresAddTerms(
double **matrix,
double **vectors,
632 const double *terms,
const double *results,
const size_t rank,
633 const size_t number_vectors)
639 for (j=0; j < (ssize_t) rank; j++)
641 for (i=0; i < (ssize_t) rank; i++)
642 matrix[i][j]+=terms[i]*terms[j];
643 for (i=0; i < (ssize_t) number_vectors; i++)
644 vectors[i][j]+=results[i]*terms[j];
716MagickPrivate MagickBooleanType GaussJordanElimination(
double **matrix,
717 double **vectors,
const size_t rank,
const size_t number_vectors)
719#define GaussJordanSwap(x,y) \
725#define GaussJordanSwapLD(x,y) \
727 long double temp = (x); \
731#define ThrowGaussJordanException() \
733 for (i=0; i < (ssize_t) rank; i++) \
734 hp_matrix[i]=(long double *) RelinquishMagickMemory(hp_matrix[i]); \
735 hp_matrix=(long double **) RelinquishMagickMemory(hp_matrix); \
736 if (pivots != (ssize_t *) NULL) \
737 pivots=(ssize_t *) RelinquishMagickMemory(pivots); \
738 if (rows != (ssize_t *) NULL) \
739 rows=(ssize_t *) RelinquishMagickMemory(rows); \
740 if (columns != (ssize_t *) NULL) \
741 columns=(ssize_t *) RelinquishMagickMemory(columns); \
742 return(MagickFalse); \
746 **hp_matrix = (
long double **) NULL,
751 *columns = (ssize_t *) NULL,
754 *pivots = (ssize_t *) NULL,
756 *rows = (ssize_t *) NULL;
761 hp_matrix=(
long double **) AcquireQuantumMemory(rank,
sizeof(*hp_matrix));
762 if (hp_matrix == (
long double **) NULL)
764 for (i=0; i < (ssize_t) rank; i++)
766 hp_matrix[i]=(
long double *) AcquireQuantumMemory(rank,
767 sizeof(*hp_matrix[i]));
768 if (hp_matrix[i] == (
long double *) NULL)
769 ThrowGaussJordanException();
770 for (j=0; j < (ssize_t) rank; j++)
771 hp_matrix[i][j]=(
long double)matrix[i][j];
773 columns=(ssize_t *) AcquireQuantumMemory(rank,
sizeof(*columns));
774 rows=(ssize_t *) AcquireQuantumMemory(rank,
sizeof(*rows));
775 pivots=(ssize_t *) AcquireQuantumMemory(rank,
sizeof(*pivots));
776 if ((columns == (ssize_t *) NULL) || (rows == (ssize_t *) NULL) ||
777 (pivots == (ssize_t *) NULL))
778 ThrowGaussJordanException();
779 (void) memset(columns,0,rank*
sizeof(*columns));
780 (void) memset(rows,0,rank*
sizeof(*rows));
781 (void) memset(pivots,0,rank*
sizeof(*pivots));
782 for (i=0; i < (ssize_t) rank; i++)
796 for (j=0; j < (ssize_t) rank; j++)
798 for (k=0; k < (ssize_t) rank; k++)
799 if ((pivots[k] == 0) && (fabsl(hp_matrix[j][k]) > max))
801 max=fabsl(hp_matrix[j][k]);
805 if ((column == -1) || (row == -1) || (fabsl(max) < LDBL_MIN))
806 ThrowGaussJordanException();
810 for (k=0; k < (ssize_t) rank; k++)
811 GaussJordanSwapLD(hp_matrix[row][k],hp_matrix[column][k]);
812 for (k=0; k < (ssize_t) number_vectors; k++)
813 GaussJordanSwap(vectors[k][row],vectors[k][column]);
817 if (fabsl(hp_matrix[column][column]) < LDBL_MIN)
818 ThrowGaussJordanException();
819 scale=1.0L/hp_matrix[column][column];
820 hp_matrix[column][column]=1.0;
821 for (j=0; j < (ssize_t) rank; j++)
822 hp_matrix[column][j]*=scale;
823 for (j=0; j < (ssize_t) number_vectors; j++)
824 vectors[j][column]*=(
double) scale;
825 for (j=0; j < (ssize_t) rank; j++)
828 scale=hp_matrix[j][column];
829 hp_matrix[j][column]=0.0;
830 for (k=0; k < (ssize_t) rank; k++)
831 hp_matrix[j][k]-=scale*hp_matrix[column][k];
832 for (k=0; k < (ssize_t) number_vectors; k++)
833 vectors[k][j]-=(
double)(scale*(
long double) vectors[k][column]);
836 for (j=(ssize_t) rank-1; j >= 0; j--)
837 if (columns[j] != rows[j])
838 for (i=0; i < (ssize_t) rank; i++)
839 GaussJordanSwapLD(hp_matrix[i][columns[j]],hp_matrix[i][rows[j]]);
843 for (i=0; i < (ssize_t) rank; i++)
844 for (j=0; j < (ssize_t) rank; j++)
845 matrix[i][j]=(
double)hp_matrix[i][j];
849 for (i=0; i < (ssize_t) rank; i++)
850 hp_matrix[i]=(
long double *) RelinquishMagickMemory(hp_matrix[i]);
851 hp_matrix=(
long double **) RelinquishMagickMemory(hp_matrix);
852 pivots=(ssize_t *) RelinquishMagickMemory(pivots);
853 rows=(ssize_t *) RelinquishMagickMemory(rows);
854 columns=(ssize_t *) RelinquishMagickMemory(columns);
884MagickExport Image *MatrixToImage(
const MatrixInfo *matrix_info,
885 ExceptionInfo *exception)
904 assert(matrix_info != (
const MatrixInfo *) NULL);
905 assert(matrix_info->signature == MagickCoreSignature);
906 assert(exception != (ExceptionInfo *) NULL);
907 assert(exception->signature == MagickCoreSignature);
908 if (matrix_info->stride <
sizeof(
double))
909 return((Image *) NULL);
913 (void) GetMatrixElement(matrix_info,0,0,&min_value);
915 for (y=0; y < (ssize_t) matrix_info->rows; y++)
920 for (x=0; x < (ssize_t) matrix_info->columns; x++)
925 if (GetMatrixElement(matrix_info,x,y,&value) == MagickFalse)
927 if (value < min_value)
930 if (value > max_value)
934 if ((min_value == 0.0) && (max_value == 0.0))
937 if (min_value == max_value)
939 scale_factor=(double) QuantumRange/min_value;
943 scale_factor=(double) QuantumRange/(max_value-min_value);
947 image=AcquireImage((ImageInfo *) NULL,exception);
948 image->columns=matrix_info->columns;
949 image->rows=matrix_info->rows;
950 image->colorspace=GRAYColorspace;
952 image_view=AcquireAuthenticCacheView(image,exception);
953#if defined(MAGICKCORE_OPENMP_SUPPORT)
954 #pragma omp parallel for schedule(static) shared(status) \
955 magick_number_threads(image,image,image->rows,2)
957 for (y=0; y < (ssize_t) image->rows; y++)
968 if (status == MagickFalse)
970 q=QueueCacheViewAuthenticPixels(image_view,0,y,image->columns,1,exception);
971 if (q == (Quantum *) NULL)
976 for (x=0; x < (ssize_t) image->columns; x++)
978 if (GetMatrixElement(matrix_info,x,y,&value) == MagickFalse)
980 value=scale_factor*(value-min_value);
981 *q=ClampToQuantum(value);
982 q+=(ptrdiff_t) GetPixelChannels(image);
984 if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
987 image_view=DestroyCacheView(image_view);
988 if (status == MagickFalse)
989 image=DestroyImage(image);
1015MagickExport MagickBooleanType NullMatrix(MatrixInfo *matrix_info)
1027 assert(matrix_info != (
const MatrixInfo *) NULL);
1028 assert(matrix_info->signature == MagickCoreSignature);
1029 if (matrix_info->type != DiskCache)
1031 (void) memset(matrix_info->elements,0,(
size_t)
1032 matrix_info->length);
1036 (void) lseek(matrix_info->file,0,SEEK_SET);
1037 for (y=0; y < (ssize_t) matrix_info->rows; y++)
1039 for (x=0; x < (ssize_t) matrix_info->length; x++)
1041 count=MagickWrite(matrix_info->file,&value,
sizeof(value));
1042 if (count != (ssize_t)
sizeof(value))
1045 if (x < (ssize_t) matrix_info->length)
1048 return(y < (ssize_t) matrix_info->rows ? MagickFalse : MagickTrue);
1078MagickExport
double **RelinquishMagickMatrix(
double **matrix,
1079 const size_t number_rows)
1084 if (matrix == (
double **) NULL )
1086 for (i=0; i < (ssize_t) number_rows; i++)
1087 matrix[i]=(
double *) RelinquishMagickMemory(matrix[i]);
1088 matrix=(
double **) RelinquishMagickMemory(matrix);
1122MagickExport MagickBooleanType SetMatrixElement(
const MatrixInfo *matrix_info,
1123 const ssize_t x,
const ssize_t y,
const void *value)
1129 assert(matrix_info != (
const MatrixInfo *) NULL);
1130 assert(matrix_info->signature == MagickCoreSignature);
1131 i=y*(MagickOffsetType) matrix_info->columns+x;
1133 (((MagickSizeType) i*matrix_info->stride) >= matrix_info->length))
1134 return(MagickFalse);
1135 if (matrix_info->type != DiskCache)
1137 (void) memcpy((
unsigned char *) matrix_info->elements+i*
1138 (MagickOffsetType) matrix_info->stride,value,matrix_info->stride);
1141 count=WriteMatrixElements(matrix_info,i*(MagickOffsetType)
1142 matrix_info->stride,matrix_info->stride,(
unsigned char *) value);
1143 if (count != (MagickOffsetType) matrix_info->stride)
1144 return(MagickFalse);