This source file includes following definitions.
- TIFFjpeg_error_exit
- TIFFjpeg_output_message
- TIFFjpeg_create_compress
- TIFFjpeg_create_decompress
- TIFFjpeg_set_defaults
- TIFFjpeg_set_colorspace
- TIFFjpeg_set_quality
- TIFFjpeg_suppress_tables
- TIFFjpeg_start_compress
- TIFFjpeg_write_scanlines
- TIFFjpeg_write_raw_data
- TIFFjpeg_finish_compress
- TIFFjpeg_write_tables
- TIFFjpeg_read_header
- TIFFjpeg_start_decompress
- TIFFjpeg_read_scanlines
- TIFFjpeg_read_raw_data
- TIFFjpeg_finish_decompress
- TIFFjpeg_abort
- TIFFjpeg_destroy
- TIFFjpeg_alloc_sarray
- std_init_destination
- std_empty_output_buffer
- std_term_destination
- TIFFjpeg_data_dest
- tables_init_destination
- tables_empty_output_buffer
- tables_term_destination
- TIFFjpeg_tables_dest
- std_init_source
- std_fill_input_buffer
- std_skip_input_data
- std_term_source
- TIFFjpeg_data_src
- tables_init_source
- TIFFjpeg_tables_src
- alloc_downsampled_buffers
- JPEGFixupTags
- JPEGFixupTagsSubsampling
- JPEGFixupTagsSubsamplingSec
- JPEGFixupTagsSubsamplingReadByte
- JPEGFixupTagsSubsamplingReadWord
- JPEGFixupTagsSubsamplingSkip
- JPEGSetupDecode
- JPEGPreDecode
- JPEGDecode
- DecodeRowError
- JPEGDecodeRaw
- unsuppress_quant_table
- unsuppress_huff_table
- prepare_JPEGTables
- JPEGSetupEncode
- JPEGPreEncode
- JPEGEncode
- JPEGEncodeRaw
- JPEGPostEncode
- JPEGCleanup
- JPEGResetUpsampled
- JPEGVSetField
- JPEGVGetField
- JPEGPrintDir
- JPEGDefaultStripSize
- JPEGDefaultTileSize
- JPEGInitializeLibJPEG
- TIFFInitJPEG
#define WIN32_LEAN_AND_MEAN
#define VC_EXTRALEAN
#include "tiffiop.h"
#ifdef JPEG_SUPPORT
#include <setjmp.h>
int TIFFFillStrip(TIFF* tif, uint32 strip);
int TIFFFillTile(TIFF* tif, uint32 tile);
int TIFFReInitJPEG_12( TIFF *tif, int scheme, int is_encode );
#ifdef FAR
#undef FAR
#endif
#if defined(__BORLANDC__) || defined(__MINGW32__)
# define XMD_H 1
#endif
#if defined(__WIN32__) && !defined(__MINGW32__)
# ifndef __RPCNDR_H__
typedef unsigned char boolean;
# endif
# define HAVE_BOOLEAN
#endif
#include "jpeglib.h"
#include "jerror.h"
#if defined(JPEG_LIB_MK1)
# define JPEG_LIB_MK1_OR_12BIT 1
#elif BITS_IN_JSAMPLE == 12
# define JPEG_LIB_MK1_OR_12BIT 1
#endif
#if defined(D_MAX_DATA_UNITS_IN_MCU)
#define width_in_blocks width_in_data_units
#endif
#define SETJMP(jbuf) setjmp(jbuf)
#define LONGJMP(jbuf,code) longjmp(jbuf,code)
#define JMP_BUF jmp_buf
typedef struct jpeg_destination_mgr jpeg_destination_mgr;
typedef struct jpeg_source_mgr jpeg_source_mgr;
typedef struct jpeg_error_mgr jpeg_error_mgr;
typedef struct {
union {
struct jpeg_compress_struct c;
struct jpeg_decompress_struct d;
struct jpeg_common_struct comm;
} cinfo;
int cinfo_initialized;
jpeg_error_mgr err;
JMP_BUF exit_jmpbuf;
jpeg_destination_mgr dest;
jpeg_source_mgr src;
TIFF* tif;
uint16 photometric;
uint16 h_sampling;
uint16 v_sampling;
tmsize_t bytesperline;
JSAMPARRAY ds_buffer[MAX_COMPONENTS];
int scancount;
int samplesperclump;
TIFFVGetMethod vgetparent;
TIFFVSetMethod vsetparent;
TIFFPrintMethod printdir;
TIFFStripMethod defsparent;
TIFFTileMethod deftparent;
void* jpegtables;
uint32 jpegtables_length;
int jpegquality;
int jpegcolormode;
int jpegtablesmode;
int ycbcrsampling_fetched;
} JPEGState;
#define JState(tif) ((JPEGState*)(tif)->tif_data)
static int JPEGDecode(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s);
static int JPEGDecodeRaw(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s);
static int JPEGEncode(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s);
static int JPEGEncodeRaw(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s);
static int JPEGInitializeLibJPEG(TIFF * tif, int decode );
static int DecodeRowError(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s);
#define FIELD_JPEGTABLES (FIELD_CODEC+0)
static const TIFFField jpegFields[] = {
{ TIFFTAG_JPEGTABLES, -3, -3, TIFF_UNDEFINED, 0, TIFF_SETGET_C32_UINT8, TIFF_SETGET_C32_UINT8, FIELD_JPEGTABLES, FALSE, TRUE, "JPEGTables", NULL },
{ TIFFTAG_JPEGQUALITY, 0, 0, TIFF_ANY, 0, TIFF_SETGET_INT, TIFF_SETGET_UNDEFINED, FIELD_PSEUDO, TRUE, FALSE, "", NULL },
{ TIFFTAG_JPEGCOLORMODE, 0, 0, TIFF_ANY, 0, TIFF_SETGET_INT, TIFF_SETGET_UNDEFINED, FIELD_PSEUDO, FALSE, FALSE, "", NULL },
{ TIFFTAG_JPEGTABLESMODE, 0, 0, TIFF_ANY, 0, TIFF_SETGET_INT, TIFF_SETGET_UNDEFINED, FIELD_PSEUDO, FALSE, FALSE, "", NULL }
};
static void
TIFFjpeg_error_exit(j_common_ptr cinfo)
{
JPEGState *sp = (JPEGState *) cinfo;
char buffer[JMSG_LENGTH_MAX];
(*cinfo->err->format_message) (cinfo, buffer);
TIFFErrorExt(sp->tif->tif_clientdata, "JPEGLib", "%s", buffer);
jpeg_abort(cinfo);
LONGJMP(sp->exit_jmpbuf, 1);
}
static void
TIFFjpeg_output_message(j_common_ptr cinfo)
{
char buffer[JMSG_LENGTH_MAX];
(*cinfo->err->format_message) (cinfo, buffer);
TIFFWarningExt(((JPEGState *) cinfo)->tif->tif_clientdata, "JPEGLib", "%s", buffer);
}
#define CALLJPEG(sp, fail, op) (SETJMP((sp)->exit_jmpbuf) ? (fail) : (op))
#define CALLVJPEG(sp, op) CALLJPEG(sp, 0, ((op),1))
static int
TIFFjpeg_create_compress(JPEGState* sp)
{
sp->cinfo.c.err = jpeg_std_error(&sp->err);
sp->err.error_exit = TIFFjpeg_error_exit;
sp->err.output_message = TIFFjpeg_output_message;
return CALLVJPEG(sp, jpeg_create_compress(&sp->cinfo.c));
}
static int
TIFFjpeg_create_decompress(JPEGState* sp)
{
sp->cinfo.d.err = jpeg_std_error(&sp->err);
sp->err.error_exit = TIFFjpeg_error_exit;
sp->err.output_message = TIFFjpeg_output_message;
return CALLVJPEG(sp, jpeg_create_decompress(&sp->cinfo.d));
}
static int
TIFFjpeg_set_defaults(JPEGState* sp)
{
return CALLVJPEG(sp, jpeg_set_defaults(&sp->cinfo.c));
}
static int
TIFFjpeg_set_colorspace(JPEGState* sp, J_COLOR_SPACE colorspace)
{
return CALLVJPEG(sp, jpeg_set_colorspace(&sp->cinfo.c, colorspace));
}
static int
TIFFjpeg_set_quality(JPEGState* sp, int quality, boolean force_baseline)
{
return CALLVJPEG(sp,
jpeg_set_quality(&sp->cinfo.c, quality, force_baseline));
}
static int
TIFFjpeg_suppress_tables(JPEGState* sp, boolean suppress)
{
return CALLVJPEG(sp, jpeg_suppress_tables(&sp->cinfo.c, suppress));
}
static int
TIFFjpeg_start_compress(JPEGState* sp, boolean write_all_tables)
{
return CALLVJPEG(sp,
jpeg_start_compress(&sp->cinfo.c, write_all_tables));
}
static int
TIFFjpeg_write_scanlines(JPEGState* sp, JSAMPARRAY scanlines, int num_lines)
{
return CALLJPEG(sp, -1, (int) jpeg_write_scanlines(&sp->cinfo.c,
scanlines, (JDIMENSION) num_lines));
}
static int
TIFFjpeg_write_raw_data(JPEGState* sp, JSAMPIMAGE data, int num_lines)
{
return CALLJPEG(sp, -1, (int) jpeg_write_raw_data(&sp->cinfo.c,
data, (JDIMENSION) num_lines));
}
static int
TIFFjpeg_finish_compress(JPEGState* sp)
{
return CALLVJPEG(sp, jpeg_finish_compress(&sp->cinfo.c));
}
static int
TIFFjpeg_write_tables(JPEGState* sp)
{
return CALLVJPEG(sp, jpeg_write_tables(&sp->cinfo.c));
}
static int
TIFFjpeg_read_header(JPEGState* sp, boolean require_image)
{
return CALLJPEG(sp, -1, jpeg_read_header(&sp->cinfo.d, require_image));
}
static int
TIFFjpeg_start_decompress(JPEGState* sp)
{
return CALLVJPEG(sp, jpeg_start_decompress(&sp->cinfo.d));
}
static int
TIFFjpeg_read_scanlines(JPEGState* sp, JSAMPARRAY scanlines, int max_lines)
{
return CALLJPEG(sp, -1, (int) jpeg_read_scanlines(&sp->cinfo.d,
scanlines, (JDIMENSION) max_lines));
}
static int
TIFFjpeg_read_raw_data(JPEGState* sp, JSAMPIMAGE data, int max_lines)
{
return CALLJPEG(sp, -1, (int) jpeg_read_raw_data(&sp->cinfo.d,
data, (JDIMENSION) max_lines));
}
static int
TIFFjpeg_finish_decompress(JPEGState* sp)
{
return CALLJPEG(sp, -1, (int) jpeg_finish_decompress(&sp->cinfo.d));
}
static int
TIFFjpeg_abort(JPEGState* sp)
{
return CALLVJPEG(sp, jpeg_abort(&sp->cinfo.comm));
}
static int
TIFFjpeg_destroy(JPEGState* sp)
{
return CALLVJPEG(sp, jpeg_destroy(&sp->cinfo.comm));
}
static JSAMPARRAY
TIFFjpeg_alloc_sarray(JPEGState* sp, int pool_id,
JDIMENSION samplesperrow, JDIMENSION numrows)
{
return CALLJPEG(sp, (JSAMPARRAY) NULL,
(*sp->cinfo.comm.mem->alloc_sarray)
(&sp->cinfo.comm, pool_id, samplesperrow, numrows));
}
static void
std_init_destination(j_compress_ptr cinfo)
{
JPEGState* sp = (JPEGState*) cinfo;
TIFF* tif = sp->tif;
sp->dest.next_output_byte = (JOCTET*) tif->tif_rawdata;
sp->dest.free_in_buffer = (size_t) tif->tif_rawdatasize;
}
static boolean
std_empty_output_buffer(j_compress_ptr cinfo)
{
JPEGState* sp = (JPEGState*) cinfo;
TIFF* tif = sp->tif;
tif->tif_rawcc = tif->tif_rawdatasize;
#ifdef IPPJ_HUFF
if ( sp->dest.free_in_buffer >= 0 ) {
tif->tif_rawcc = tif->tif_rawdatasize - sp->dest.free_in_buffer;
}
#endif
TIFFFlushData1(tif);
sp->dest.next_output_byte = (JOCTET*) tif->tif_rawdata;
sp->dest.free_in_buffer = (size_t) tif->tif_rawdatasize;
return (TRUE);
}
static void
std_term_destination(j_compress_ptr cinfo)
{
JPEGState* sp = (JPEGState*) cinfo;
TIFF* tif = sp->tif;
tif->tif_rawcp = (uint8*) sp->dest.next_output_byte;
tif->tif_rawcc =
tif->tif_rawdatasize - (tmsize_t) sp->dest.free_in_buffer;
}
static void
TIFFjpeg_data_dest(JPEGState* sp, TIFF* tif)
{
(void) tif;
sp->cinfo.c.dest = &sp->dest;
sp->dest.init_destination = std_init_destination;
sp->dest.empty_output_buffer = std_empty_output_buffer;
sp->dest.term_destination = std_term_destination;
}
static void
tables_init_destination(j_compress_ptr cinfo)
{
JPEGState* sp = (JPEGState*) cinfo;
sp->dest.next_output_byte = (JOCTET*) sp->jpegtables;
sp->dest.free_in_buffer = (size_t) sp->jpegtables_length;
}
static boolean
tables_empty_output_buffer(j_compress_ptr cinfo)
{
JPEGState* sp = (JPEGState*) cinfo;
void* newbuf;
newbuf = _TIFFrealloc((void*) sp->jpegtables,
(tmsize_t) (sp->jpegtables_length + 1000));
if (newbuf == NULL)
ERREXIT1(cinfo, JERR_OUT_OF_MEMORY, 100);
sp->dest.next_output_byte = (JOCTET*) newbuf + sp->jpegtables_length;
sp->dest.free_in_buffer = (size_t) 1000;
sp->jpegtables = newbuf;
sp->jpegtables_length += 1000;
return (TRUE);
}
static void
tables_term_destination(j_compress_ptr cinfo)
{
JPEGState* sp = (JPEGState*) cinfo;
sp->jpegtables_length -= (uint32) sp->dest.free_in_buffer;
}
static int
TIFFjpeg_tables_dest(JPEGState* sp, TIFF* tif)
{
(void) tif;
if (sp->jpegtables)
_TIFFfree(sp->jpegtables);
sp->jpegtables_length = 1000;
sp->jpegtables = (void*) _TIFFmalloc((tmsize_t) sp->jpegtables_length);
if (sp->jpegtables == NULL) {
sp->jpegtables_length = 0;
TIFFErrorExt(sp->tif->tif_clientdata, "TIFFjpeg_tables_dest", "No space for JPEGTables");
return (0);
}
sp->cinfo.c.dest = &sp->dest;
sp->dest.init_destination = tables_init_destination;
sp->dest.empty_output_buffer = tables_empty_output_buffer;
sp->dest.term_destination = tables_term_destination;
return (1);
}
static void
std_init_source(j_decompress_ptr cinfo)
{
JPEGState* sp = (JPEGState*) cinfo;
TIFF* tif = sp->tif;
sp->src.next_input_byte = (const JOCTET*) tif->tif_rawdata;
sp->src.bytes_in_buffer = (size_t) tif->tif_rawcc;
}
static boolean
std_fill_input_buffer(j_decompress_ptr cinfo)
{
JPEGState* sp = (JPEGState* ) cinfo;
static const JOCTET dummy_EOI[2] = { 0xFF, JPEG_EOI };
#ifdef IPPJ_HUFF
if( sp->src.bytes_in_buffer > 0 ) {
return (TRUE);
}
#endif
WARNMS(cinfo, JWRN_JPEG_EOF);
sp->src.next_input_byte = dummy_EOI;
sp->src.bytes_in_buffer = 2;
return (TRUE);
}
static void
std_skip_input_data(j_decompress_ptr cinfo, long num_bytes)
{
JPEGState* sp = (JPEGState*) cinfo;
if (num_bytes > 0) {
if ((size_t)num_bytes > sp->src.bytes_in_buffer) {
(void) std_fill_input_buffer(cinfo);
} else {
sp->src.next_input_byte += (size_t) num_bytes;
sp->src.bytes_in_buffer -= (size_t) num_bytes;
}
}
}
static void
std_term_source(j_decompress_ptr cinfo)
{
(void) cinfo;
}
static void
TIFFjpeg_data_src(JPEGState* sp, TIFF* tif)
{
(void) tif;
sp->cinfo.d.src = &sp->src;
sp->src.init_source = std_init_source;
sp->src.fill_input_buffer = std_fill_input_buffer;
sp->src.skip_input_data = std_skip_input_data;
sp->src.resync_to_restart = jpeg_resync_to_restart;
sp->src.term_source = std_term_source;
sp->src.bytes_in_buffer = 0;
sp->src.next_input_byte = NULL;
}
static void
tables_init_source(j_decompress_ptr cinfo)
{
JPEGState* sp = (JPEGState*) cinfo;
sp->src.next_input_byte = (const JOCTET*) sp->jpegtables;
sp->src.bytes_in_buffer = (size_t) sp->jpegtables_length;
}
static void
TIFFjpeg_tables_src(JPEGState* sp, TIFF* tif)
{
TIFFjpeg_data_src(sp, tif);
sp->src.init_source = tables_init_source;
}
static int
alloc_downsampled_buffers(TIFF* tif, jpeg_component_info* comp_info,
int num_components)
{
JPEGState* sp = JState(tif);
int ci;
jpeg_component_info* compptr;
JSAMPARRAY buf;
int samples_per_clump = 0;
for (ci = 0, compptr = comp_info; ci < num_components;
ci++, compptr++) {
samples_per_clump += compptr->h_samp_factor *
compptr->v_samp_factor;
buf = TIFFjpeg_alloc_sarray(sp, JPOOL_IMAGE,
compptr->width_in_blocks * DCTSIZE,
(JDIMENSION) (compptr->v_samp_factor*DCTSIZE));
if (buf == NULL)
return (0);
sp->ds_buffer[ci] = buf;
}
sp->samplesperclump = samples_per_clump;
return (1);
}
#ifdef CHECK_JPEG_YCBCR_SUBSAMPLING
#define JPEG_MARKER_SOF0 0xC0
#define JPEG_MARKER_SOF1 0xC1
#define JPEG_MARKER_SOF3 0xC3
#define JPEG_MARKER_DHT 0xC4
#define JPEG_MARKER_SOI 0xD8
#define JPEG_MARKER_SOS 0xDA
#define JPEG_MARKER_DQT 0xDB
#define JPEG_MARKER_DRI 0xDD
#define JPEG_MARKER_APP0 0xE0
#define JPEG_MARKER_COM 0xFE
struct JPEGFixupTagsSubsamplingData
{
TIFF* tif;
void* buffer;
uint32 buffersize;
uint8* buffercurrentbyte;
uint32 bufferbytesleft;
uint64 fileoffset;
uint64 filebytesleft;
uint8 filepositioned;
};
static void JPEGFixupTagsSubsampling(TIFF* tif);
static int JPEGFixupTagsSubsamplingSec(struct JPEGFixupTagsSubsamplingData* data);
static int JPEGFixupTagsSubsamplingReadByte(struct JPEGFixupTagsSubsamplingData* data, uint8* result);
static int JPEGFixupTagsSubsamplingReadWord(struct JPEGFixupTagsSubsamplingData* data, uint16* result);
static void JPEGFixupTagsSubsamplingSkip(struct JPEGFixupTagsSubsamplingData* data, uint16 skiplength);
#endif
static int
JPEGFixupTags(TIFF* tif)
{
#ifdef CHECK_JPEG_YCBCR_SUBSAMPLING
if ((tif->tif_dir.td_photometric==PHOTOMETRIC_YCBCR)&&
(tif->tif_dir.td_planarconfig==PLANARCONFIG_CONTIG)&&
(tif->tif_dir.td_samplesperpixel==3))
JPEGFixupTagsSubsampling(tif);
#endif
return(1);
}
#ifdef CHECK_JPEG_YCBCR_SUBSAMPLING
static void
JPEGFixupTagsSubsampling(TIFF* tif)
{
static const char module[] = "JPEGFixupTagsSubsampling";
struct JPEGFixupTagsSubsamplingData m;
_TIFFFillStriles( tif );
if( tif->tif_dir.td_stripbytecount == NULL
|| tif->tif_dir.td_stripbytecount[0] == 0 )
{
return;
}
m.tif=tif;
m.buffersize=2048;
m.buffer=_TIFFmalloc(m.buffersize);
if (m.buffer==NULL)
{
TIFFWarningExt(tif->tif_clientdata,module,
"Unable to allocate memory for auto-correcting of subsampling values; auto-correcting skipped");
return;
}
m.buffercurrentbyte=NULL;
m.bufferbytesleft=0;
m.fileoffset=tif->tif_dir.td_stripoffset[0];
m.filepositioned=0;
m.filebytesleft=tif->tif_dir.td_stripbytecount[0];
if (!JPEGFixupTagsSubsamplingSec(&m))
TIFFWarningExt(tif->tif_clientdata,module,
"Unable to auto-correct subsampling values, likely corrupt JPEG compressed data in first strip/tile; auto-correcting skipped");
_TIFFfree(m.buffer);
}
static int
JPEGFixupTagsSubsamplingSec(struct JPEGFixupTagsSubsamplingData* data)
{
static const char module[] = "JPEGFixupTagsSubsamplingSec";
uint8 m;
while (1)
{
while (1)
{
if (!JPEGFixupTagsSubsamplingReadByte(data,&m))
return(0);
if (m==255)
break;
}
while (1)
{
if (!JPEGFixupTagsSubsamplingReadByte(data,&m))
return(0);
if (m!=255)
break;
}
switch (m)
{
case JPEG_MARKER_SOI:
break;
case JPEG_MARKER_COM:
case JPEG_MARKER_APP0:
case JPEG_MARKER_APP0+1:
case JPEG_MARKER_APP0+2:
case JPEG_MARKER_APP0+3:
case JPEG_MARKER_APP0+4:
case JPEG_MARKER_APP0+5:
case JPEG_MARKER_APP0+6:
case JPEG_MARKER_APP0+7:
case JPEG_MARKER_APP0+8:
case JPEG_MARKER_APP0+9:
case JPEG_MARKER_APP0+10:
case JPEG_MARKER_APP0+11:
case JPEG_MARKER_APP0+12:
case JPEG_MARKER_APP0+13:
case JPEG_MARKER_APP0+14:
case JPEG_MARKER_APP0+15:
case JPEG_MARKER_DQT:
case JPEG_MARKER_SOS:
case JPEG_MARKER_DHT:
case JPEG_MARKER_DRI:
{
uint16 n;
if (!JPEGFixupTagsSubsamplingReadWord(data,&n))
return(0);
if (n<2)
return(0);
n-=2;
if (n>0)
JPEGFixupTagsSubsamplingSkip(data,n);
}
break;
case JPEG_MARKER_SOF0:
case JPEG_MARKER_SOF1:
{
uint16 n;
uint16 o;
uint8 p;
uint8 ph,pv;
if (!JPEGFixupTagsSubsamplingReadWord(data,&n))
return(0);
if (n!=8+data->tif->tif_dir.td_samplesperpixel*3)
return(0);
JPEGFixupTagsSubsamplingSkip(data,7);
if (!JPEGFixupTagsSubsamplingReadByte(data,&p))
return(0);
ph=(p>>4);
pv=(p&15);
JPEGFixupTagsSubsamplingSkip(data,1);
for (o=1; o<data->tif->tif_dir.td_samplesperpixel; o++)
{
JPEGFixupTagsSubsamplingSkip(data,1);
if (!JPEGFixupTagsSubsamplingReadByte(data,&p))
return(0);
if (p!=0x11)
{
TIFFWarningExt(data->tif->tif_clientdata,module,
"Subsampling values inside JPEG compressed data have no TIFF equivalent, auto-correction of TIFF subsampling values failed");
return(1);
}
JPEGFixupTagsSubsamplingSkip(data,1);
}
if (((ph!=1)&&(ph!=2)&&(ph!=4))||((pv!=1)&&(pv!=2)&&(pv!=4)))
{
TIFFWarningExt(data->tif->tif_clientdata,module,
"Subsampling values inside JPEG compressed data have no TIFF equivalent, auto-correction of TIFF subsampling values failed");
return(1);
}
if ((ph!=data->tif->tif_dir.td_ycbcrsubsampling[0])||(pv!=data->tif->tif_dir.td_ycbcrsubsampling[1]))
{
TIFFWarningExt(data->tif->tif_clientdata,module,
"Auto-corrected former TIFF subsampling values [%d,%d] to match subsampling values inside JPEG compressed data [%d,%d]",
(int)data->tif->tif_dir.td_ycbcrsubsampling[0],
(int)data->tif->tif_dir.td_ycbcrsubsampling[1],
(int)ph,(int)pv);
data->tif->tif_dir.td_ycbcrsubsampling[0]=ph;
data->tif->tif_dir.td_ycbcrsubsampling[1]=pv;
}
}
return(1);
default:
return(0);
}
}
}
static int
JPEGFixupTagsSubsamplingReadByte(struct JPEGFixupTagsSubsamplingData* data, uint8* result)
{
if (data->bufferbytesleft==0)
{
uint32 m;
if (data->filebytesleft==0)
return(0);
if (!data->filepositioned)
{
TIFFSeekFile(data->tif,data->fileoffset,SEEK_SET);
data->filepositioned=1;
}
m=data->buffersize;
if ((uint64)m>data->filebytesleft)
m=(uint32)data->filebytesleft;
assert(m<0x80000000UL);
if (TIFFReadFile(data->tif,data->buffer,(tmsize_t)m)!=(tmsize_t)m)
return(0);
data->buffercurrentbyte=data->buffer;
data->bufferbytesleft=m;
data->fileoffset+=m;
data->filebytesleft-=m;
}
*result=*data->buffercurrentbyte;
data->buffercurrentbyte++;
data->bufferbytesleft--;
return(1);
}
static int
JPEGFixupTagsSubsamplingReadWord(struct JPEGFixupTagsSubsamplingData* data, uint16* result)
{
uint8 ma;
uint8 mb;
if (!JPEGFixupTagsSubsamplingReadByte(data,&ma))
return(0);
if (!JPEGFixupTagsSubsamplingReadByte(data,&mb))
return(0);
*result=(ma<<8)|mb;
return(1);
}
static void
JPEGFixupTagsSubsamplingSkip(struct JPEGFixupTagsSubsamplingData* data, uint16 skiplength)
{
if ((uint32)skiplength<=data->bufferbytesleft)
{
data->buffercurrentbyte+=skiplength;
data->bufferbytesleft-=skiplength;
}
else
{
uint16 m;
m=skiplength-data->bufferbytesleft;
if (m<=data->filebytesleft)
{
data->bufferbytesleft=0;
data->fileoffset+=m;
data->filebytesleft-=m;
data->filepositioned=0;
}
else
{
data->bufferbytesleft=0;
data->filebytesleft=0;
}
}
}
#endif
static int
JPEGSetupDecode(TIFF* tif)
{
JPEGState* sp = JState(tif);
TIFFDirectory *td = &tif->tif_dir;
#if defined(JPEG_DUAL_MODE_8_12) && !defined(TIFFInitJPEG)
if( tif->tif_dir.td_bitspersample == 12 )
return TIFFReInitJPEG_12( tif, COMPRESSION_JPEG, 0 );
#endif
JPEGInitializeLibJPEG( tif, TRUE );
assert(sp != NULL);
assert(sp->cinfo.comm.is_decompressor);
if (TIFFFieldSet(tif,FIELD_JPEGTABLES)) {
TIFFjpeg_tables_src(sp, tif);
if(TIFFjpeg_read_header(sp,FALSE) != JPEG_HEADER_TABLES_ONLY) {
TIFFErrorExt(tif->tif_clientdata, "JPEGSetupDecode", "Bogus JPEGTables field");
return (0);
}
}
sp->photometric = td->td_photometric;
switch (sp->photometric) {
case PHOTOMETRIC_YCBCR:
sp->h_sampling = td->td_ycbcrsubsampling[0];
sp->v_sampling = td->td_ycbcrsubsampling[1];
break;
default:
sp->h_sampling = 1;
sp->v_sampling = 1;
break;
}
TIFFjpeg_data_src(sp, tif);
tif->tif_postdecode = _TIFFNoPostDecode;
return (1);
}
static int
JPEGPreDecode(TIFF* tif, uint16 s)
{
JPEGState *sp = JState(tif);
TIFFDirectory *td = &tif->tif_dir;
static const char module[] = "JPEGPreDecode";
uint32 segment_width, segment_height;
int downsampled_output;
int ci;
assert(sp != NULL);
if (sp->cinfo.comm.is_decompressor == 0)
{
tif->tif_setupdecode( tif );
}
assert(sp->cinfo.comm.is_decompressor);
if (!TIFFjpeg_abort(sp))
return (0);
if (TIFFjpeg_read_header(sp, TRUE) != JPEG_HEADER_OK)
return (0);
tif->tif_rawcp = (uint8*) sp->src.next_input_byte;
tif->tif_rawcc = sp->src.bytes_in_buffer;
segment_width = td->td_imagewidth;
segment_height = td->td_imagelength - tif->tif_row;
if (isTiled(tif)) {
segment_width = td->td_tilewidth;
segment_height = td->td_tilelength;
sp->bytesperline = TIFFTileRowSize(tif);
} else {
if (segment_height > td->td_rowsperstrip)
segment_height = td->td_rowsperstrip;
sp->bytesperline = TIFFScanlineSize(tif);
}
if (td->td_planarconfig == PLANARCONFIG_SEPARATE && s > 0) {
segment_width = TIFFhowmany_32(segment_width, sp->h_sampling);
segment_height = TIFFhowmany_32(segment_height, sp->v_sampling);
}
if (sp->cinfo.d.image_width < segment_width ||
sp->cinfo.d.image_height < segment_height) {
TIFFWarningExt(tif->tif_clientdata, module,
"Improper JPEG strip/tile size, "
"expected %dx%d, got %dx%d",
segment_width, segment_height,
sp->cinfo.d.image_width,
sp->cinfo.d.image_height);
}
if (sp->cinfo.d.image_width > segment_width ||
sp->cinfo.d.image_height > segment_height) {
TIFFErrorExt(tif->tif_clientdata, module,
"JPEG strip/tile size exceeds expected dimensions,"
" expected %dx%d, got %dx%d",
segment_width, segment_height,
sp->cinfo.d.image_width, sp->cinfo.d.image_height);
return (0);
}
if (sp->cinfo.d.num_components !=
(td->td_planarconfig == PLANARCONFIG_CONTIG ?
td->td_samplesperpixel : 1)) {
TIFFErrorExt(tif->tif_clientdata, module, "Improper JPEG component count");
return (0);
}
#ifdef JPEG_LIB_MK1
if (12 != td->td_bitspersample && 8 != td->td_bitspersample) {
TIFFErrorExt(tif->tif_clientdata, module, "Improper JPEG data precision");
return (0);
}
sp->cinfo.d.data_precision = td->td_bitspersample;
sp->cinfo.d.bits_in_jsample = td->td_bitspersample;
#else
if (sp->cinfo.d.data_precision != td->td_bitspersample) {
TIFFErrorExt(tif->tif_clientdata, module, "Improper JPEG data precision");
return (0);
}
#endif
if (td->td_planarconfig == PLANARCONFIG_CONTIG) {
if (sp->cinfo.d.comp_info[0].h_samp_factor != sp->h_sampling ||
sp->cinfo.d.comp_info[0].v_samp_factor != sp->v_sampling) {
TIFFErrorExt(tif->tif_clientdata, module,
"Improper JPEG sampling factors %d,%d\n"
"Apparently should be %d,%d.",
sp->cinfo.d.comp_info[0].h_samp_factor,
sp->cinfo.d.comp_info[0].v_samp_factor,
sp->h_sampling, sp->v_sampling);
return (0);
}
for (ci = 1; ci < sp->cinfo.d.num_components; ci++) {
if (sp->cinfo.d.comp_info[ci].h_samp_factor != 1 ||
sp->cinfo.d.comp_info[ci].v_samp_factor != 1) {
TIFFErrorExt(tif->tif_clientdata, module, "Improper JPEG sampling factors");
return (0);
}
}
} else {
if (sp->cinfo.d.comp_info[0].h_samp_factor != 1 ||
sp->cinfo.d.comp_info[0].v_samp_factor != 1) {
TIFFErrorExt(tif->tif_clientdata, module, "Improper JPEG sampling factors");
return (0);
}
}
downsampled_output = FALSE;
if (td->td_planarconfig == PLANARCONFIG_CONTIG &&
sp->photometric == PHOTOMETRIC_YCBCR &&
sp->jpegcolormode == JPEGCOLORMODE_RGB) {
sp->cinfo.d.jpeg_color_space = JCS_YCbCr;
sp->cinfo.d.out_color_space = JCS_RGB;
} else {
sp->cinfo.d.jpeg_color_space = JCS_UNKNOWN;
sp->cinfo.d.out_color_space = JCS_UNKNOWN;
if (td->td_planarconfig == PLANARCONFIG_CONTIG &&
(sp->h_sampling != 1 || sp->v_sampling != 1))
downsampled_output = TRUE;
}
if (downsampled_output) {
sp->cinfo.d.raw_data_out = TRUE;
tif->tif_decoderow = DecodeRowError;
tif->tif_decodestrip = JPEGDecodeRaw;
tif->tif_decodetile = JPEGDecodeRaw;
} else {
sp->cinfo.d.raw_data_out = FALSE;
tif->tif_decoderow = JPEGDecode;
tif->tif_decodestrip = JPEGDecode;
tif->tif_decodetile = JPEGDecode;
}
if (!TIFFjpeg_start_decompress(sp))
return (0);
if (downsampled_output) {
if (!alloc_downsampled_buffers(tif, sp->cinfo.d.comp_info,
sp->cinfo.d.num_components))
return (0);
sp->scancount = DCTSIZE;
}
return (1);
}
static int
JPEGDecode(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s)
{
JPEGState *sp = JState(tif);
tmsize_t nrows;
(void) s;
sp->src.next_input_byte = (const JOCTET*) tif->tif_rawcp;
sp->src.bytes_in_buffer = (size_t) tif->tif_rawcc;
if( sp->bytesperline == 0 )
return 0;
nrows = cc / sp->bytesperline;
if (cc % sp->bytesperline)
TIFFWarningExt(tif->tif_clientdata, tif->tif_name, "fractional scanline not read");
if( nrows > (tmsize_t) sp->cinfo.d.image_height )
nrows = sp->cinfo.d.image_height;
if (nrows)
{
JSAMPROW line_work_buf = NULL;
#if !defined(JPEG_LIB_MK1)
if( sp->cinfo.d.data_precision == 12 )
#endif
{
line_work_buf = (JSAMPROW)
_TIFFmalloc(sizeof(short) * sp->cinfo.d.output_width
* sp->cinfo.d.num_components );
}
do {
if( line_work_buf != NULL )
{
if (TIFFjpeg_read_scanlines(sp, &line_work_buf, 1) != 1)
return (0);
if( sp->cinfo.d.data_precision == 12 )
{
int value_pairs = (sp->cinfo.d.output_width
* sp->cinfo.d.num_components) / 2;
int iPair;
for( iPair = 0; iPair < value_pairs; iPair++ )
{
unsigned char *out_ptr =
((unsigned char *) buf) + iPair * 3;
JSAMPLE *in_ptr = line_work_buf + iPair * 2;
out_ptr[0] = (in_ptr[0] & 0xff0) >> 4;
out_ptr[1] = ((in_ptr[0] & 0xf) << 4)
| ((in_ptr[1] & 0xf00) >> 8);
out_ptr[2] = ((in_ptr[1] & 0xff) >> 0);
}
}
else if( sp->cinfo.d.data_precision == 8 )
{
int value_count = (sp->cinfo.d.output_width
* sp->cinfo.d.num_components);
int iValue;
for( iValue = 0; iValue < value_count; iValue++ )
{
((unsigned char *) buf)[iValue] =
line_work_buf[iValue] & 0xff;
}
}
}
else
{
JSAMPROW bufptr = (JSAMPROW)buf;
if (TIFFjpeg_read_scanlines(sp, &bufptr, 1) != 1)
return (0);
}
++tif->tif_row;
buf += sp->bytesperline;
cc -= sp->bytesperline;
} while (--nrows > 0);
if( line_work_buf != NULL )
_TIFFfree( line_work_buf );
}
tif->tif_rawcp = (uint8*) sp->src.next_input_byte;
tif->tif_rawcc = sp->src.bytes_in_buffer;
return sp->cinfo.d.output_scanline < sp->cinfo.d.output_height
|| TIFFjpeg_finish_decompress(sp);
}
static int
DecodeRowError(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s)
{
(void) buf;
(void) cc;
(void) s;
TIFFErrorExt(tif->tif_clientdata, "TIFFReadScanline",
"scanline oriented access is not supported for downsampled JPEG compressed images, consider enabling TIFF_JPEGCOLORMODE as JPEGCOLORMODE_RGB." );
return 0;
}
static int
JPEGDecodeRaw(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s)
{
JPEGState *sp = JState(tif);
tmsize_t nrows;
(void) s;
if ( (nrows = sp->cinfo.d.image_height) ) {
JDIMENSION clumps_per_line = sp->cinfo.d.comp_info[1].downsampled_width;
int samples_per_clump = sp->samplesperclump;
#if defined(JPEG_LIB_MK1_OR_12BIT)
unsigned short* tmpbuf = _TIFFmalloc(sizeof(unsigned short) *
sp->cinfo.d.output_width *
sp->cinfo.d.num_components);
if(tmpbuf==NULL) {
TIFFErrorExt(tif->tif_clientdata, "JPEGDecodeRaw",
"Out of memory");
return 0;
}
#endif
do {
jpeg_component_info *compptr;
int ci, clumpoffset;
if( cc < sp->bytesperline ) {
TIFFErrorExt(tif->tif_clientdata, "JPEGDecodeRaw",
"application buffer not large enough for all data.");
return 0;
}
if (sp->scancount >= DCTSIZE) {
int n = sp->cinfo.d.max_v_samp_factor * DCTSIZE;
if (TIFFjpeg_read_raw_data(sp, sp->ds_buffer, n) != n)
return (0);
sp->scancount = 0;
}
clumpoffset = 0;
for (ci = 0, compptr = sp->cinfo.d.comp_info;
ci < sp->cinfo.d.num_components;
ci++, compptr++) {
int hsamp = compptr->h_samp_factor;
int vsamp = compptr->v_samp_factor;
int ypos;
for (ypos = 0; ypos < vsamp; ypos++) {
JSAMPLE *inptr = sp->ds_buffer[ci][sp->scancount*vsamp + ypos];
JDIMENSION nclump;
#if defined(JPEG_LIB_MK1_OR_12BIT)
JSAMPLE *outptr = (JSAMPLE*)tmpbuf + clumpoffset;
#else
JSAMPLE *outptr = (JSAMPLE*)buf + clumpoffset;
if (cc < clumpoffset + samples_per_clump*(clumps_per_line-1) + hsamp) {
TIFFErrorExt(tif->tif_clientdata, "JPEGDecodeRaw",
"application buffer not large enough for all data, possible subsampling issue");
return 0;
}
#endif
if (hsamp == 1) {
for (nclump = clumps_per_line; nclump-- > 0; ) {
outptr[0] = *inptr++;
outptr += samples_per_clump;
}
} else {
int xpos;
for (nclump = clumps_per_line; nclump-- > 0; ) {
for (xpos = 0; xpos < hsamp; xpos++)
outptr[xpos] = *inptr++;
outptr += samples_per_clump;
}
}
clumpoffset += hsamp;
}
}
#if defined(JPEG_LIB_MK1_OR_12BIT)
{
if (sp->cinfo.d.data_precision == 8)
{
int i=0;
int len = sp->cinfo.d.output_width * sp->cinfo.d.num_components;
for (i=0; i<len; i++)
{
((unsigned char*)buf)[i] = tmpbuf[i] & 0xff;
}
}
else
{
int value_pairs = (sp->cinfo.d.output_width
* sp->cinfo.d.num_components) / 2;
int iPair;
for( iPair = 0; iPair < value_pairs; iPair++ )
{
unsigned char *out_ptr = ((unsigned char *) buf) + iPair * 3;
JSAMPLE *in_ptr = (JSAMPLE *) (tmpbuf + iPair * 2);
out_ptr[0] = (in_ptr[0] & 0xff0) >> 4;
out_ptr[1] = ((in_ptr[0] & 0xf) << 4)
| ((in_ptr[1] & 0xf00) >> 8);
out_ptr[2] = ((in_ptr[1] & 0xff) >> 0);
}
}
}
#endif
sp->scancount ++;
tif->tif_row += sp->v_sampling;
buf += sp->bytesperline;
cc -= sp->bytesperline;
nrows -= sp->v_sampling;
} while (nrows > 0);
#if defined(JPEG_LIB_MK1_OR_12BIT)
_TIFFfree(tmpbuf);
#endif
}
return sp->cinfo.d.output_scanline < sp->cinfo.d.output_height
|| TIFFjpeg_finish_decompress(sp);
}
static void
unsuppress_quant_table (JPEGState* sp, int tblno)
{
JQUANT_TBL* qtbl;
if ((qtbl = sp->cinfo.c.quant_tbl_ptrs[tblno]) != NULL)
qtbl->sent_table = FALSE;
}
static void
unsuppress_huff_table (JPEGState* sp, int tblno)
{
JHUFF_TBL* htbl;
if ((htbl = sp->cinfo.c.dc_huff_tbl_ptrs[tblno]) != NULL)
htbl->sent_table = FALSE;
if ((htbl = sp->cinfo.c.ac_huff_tbl_ptrs[tblno]) != NULL)
htbl->sent_table = FALSE;
}
static int
prepare_JPEGTables(TIFF* tif)
{
JPEGState* sp = JState(tif);
if (!TIFFjpeg_set_quality(sp, sp->jpegquality, FALSE))
return (0);
if (!TIFFjpeg_suppress_tables(sp, TRUE))
return (0);
if (sp->jpegtablesmode & JPEGTABLESMODE_QUANT) {
unsuppress_quant_table(sp, 0);
if (sp->photometric == PHOTOMETRIC_YCBCR)
unsuppress_quant_table(sp, 1);
}
if (sp->jpegtablesmode & JPEGTABLESMODE_HUFF) {
unsuppress_huff_table(sp, 0);
if (sp->photometric == PHOTOMETRIC_YCBCR)
unsuppress_huff_table(sp, 1);
}
if (!TIFFjpeg_tables_dest(sp, tif))
return (0);
if (!TIFFjpeg_write_tables(sp))
return (0);
return (1);
}
static int
JPEGSetupEncode(TIFF* tif)
{
JPEGState* sp = JState(tif);
TIFFDirectory *td = &tif->tif_dir;
static const char module[] = "JPEGSetupEncode";
#if defined(JPEG_DUAL_MODE_8_12) && !defined(TIFFInitJPEG)
if( tif->tif_dir.td_bitspersample == 12 )
return TIFFReInitJPEG_12( tif, COMPRESSION_JPEG, 1 );
#endif
JPEGInitializeLibJPEG( tif, FALSE );
assert(sp != NULL);
assert(!sp->cinfo.comm.is_decompressor);
sp->cinfo.c.in_color_space = JCS_UNKNOWN;
sp->cinfo.c.input_components = 1;
if (!TIFFjpeg_set_defaults(sp))
return (0);
sp->photometric = td->td_photometric;
switch (sp->photometric) {
case PHOTOMETRIC_YCBCR:
sp->h_sampling = td->td_ycbcrsubsampling[0];
sp->v_sampling = td->td_ycbcrsubsampling[1];
{
float *ref;
if (!TIFFGetField(tif, TIFFTAG_REFERENCEBLACKWHITE,
&ref)) {
float refbw[6];
long top = 1L << td->td_bitspersample;
refbw[0] = 0;
refbw[1] = (float)(top-1L);
refbw[2] = (float)(top>>1);
refbw[3] = refbw[1];
refbw[4] = refbw[2];
refbw[5] = refbw[1];
TIFFSetField(tif, TIFFTAG_REFERENCEBLACKWHITE,
refbw);
}
}
break;
case PHOTOMETRIC_PALETTE:
case PHOTOMETRIC_MASK:
TIFFErrorExt(tif->tif_clientdata, module,
"PhotometricInterpretation %d not allowed for JPEG",
(int) sp->photometric);
return (0);
default:
sp->h_sampling = 1;
sp->v_sampling = 1;
break;
}
#ifdef JPEG_LIB_MK1
if (td->td_bitspersample != 8 && td->td_bitspersample != 12)
#else
if (td->td_bitspersample != BITS_IN_JSAMPLE )
#endif
{
TIFFErrorExt(tif->tif_clientdata, module, "BitsPerSample %d not allowed for JPEG",
(int) td->td_bitspersample);
return (0);
}
sp->cinfo.c.data_precision = td->td_bitspersample;
#ifdef JPEG_LIB_MK1
sp->cinfo.c.bits_in_jsample = td->td_bitspersample;
#endif
if (isTiled(tif)) {
if ((td->td_tilelength % (sp->v_sampling * DCTSIZE)) != 0) {
TIFFErrorExt(tif->tif_clientdata, module,
"JPEG tile height must be multiple of %d",
sp->v_sampling * DCTSIZE);
return (0);
}
if ((td->td_tilewidth % (sp->h_sampling * DCTSIZE)) != 0) {
TIFFErrorExt(tif->tif_clientdata, module,
"JPEG tile width must be multiple of %d",
sp->h_sampling * DCTSIZE);
return (0);
}
} else {
if (td->td_rowsperstrip < td->td_imagelength &&
(td->td_rowsperstrip % (sp->v_sampling * DCTSIZE)) != 0) {
TIFFErrorExt(tif->tif_clientdata, module,
"RowsPerStrip must be multiple of %d for JPEG",
sp->v_sampling * DCTSIZE);
return (0);
}
}
if (sp->jpegtablesmode & (JPEGTABLESMODE_QUANT|JPEGTABLESMODE_HUFF)) {
if( sp->jpegtables == NULL
|| memcmp(sp->jpegtables,"\0\0\0\0\0\0\0\0\0",8) == 0 )
{
if (!prepare_JPEGTables(tif))
return (0);
tif->tif_flags |= TIFF_DIRTYDIRECT;
TIFFSetFieldBit(tif, FIELD_JPEGTABLES);
}
} else {
TIFFClrFieldBit(tif, FIELD_JPEGTABLES);
}
TIFFjpeg_data_dest(sp, tif);
return (1);
}
static int
JPEGPreEncode(TIFF* tif, uint16 s)
{
JPEGState *sp = JState(tif);
TIFFDirectory *td = &tif->tif_dir;
static const char module[] = "JPEGPreEncode";
uint32 segment_width, segment_height;
int downsampled_input;
assert(sp != NULL);
if (sp->cinfo.comm.is_decompressor == 1)
{
tif->tif_setupencode( tif );
}
assert(!sp->cinfo.comm.is_decompressor);
if (isTiled(tif)) {
segment_width = td->td_tilewidth;
segment_height = td->td_tilelength;
sp->bytesperline = TIFFTileRowSize(tif);
} else {
segment_width = td->td_imagewidth;
segment_height = td->td_imagelength - tif->tif_row;
if (segment_height > td->td_rowsperstrip)
segment_height = td->td_rowsperstrip;
sp->bytesperline = TIFFScanlineSize(tif);
}
if (td->td_planarconfig == PLANARCONFIG_SEPARATE && s > 0) {
segment_width = TIFFhowmany_32(segment_width, sp->h_sampling);
segment_height = TIFFhowmany_32(segment_height, sp->v_sampling);
}
if (segment_width > 65535 || segment_height > 65535) {
TIFFErrorExt(tif->tif_clientdata, module, "Strip/tile too large for JPEG");
return (0);
}
sp->cinfo.c.image_width = segment_width;
sp->cinfo.c.image_height = segment_height;
downsampled_input = FALSE;
if (td->td_planarconfig == PLANARCONFIG_CONTIG) {
sp->cinfo.c.input_components = td->td_samplesperpixel;
if (sp->photometric == PHOTOMETRIC_YCBCR) {
if (sp->jpegcolormode == JPEGCOLORMODE_RGB) {
sp->cinfo.c.in_color_space = JCS_RGB;
} else {
sp->cinfo.c.in_color_space = JCS_YCbCr;
if (sp->h_sampling != 1 || sp->v_sampling != 1)
downsampled_input = TRUE;
}
if (!TIFFjpeg_set_colorspace(sp, JCS_YCbCr))
return (0);
sp->cinfo.c.comp_info[0].h_samp_factor = sp->h_sampling;
sp->cinfo.c.comp_info[0].v_samp_factor = sp->v_sampling;
} else {
if ((td->td_photometric == PHOTOMETRIC_MINISWHITE || td->td_photometric == PHOTOMETRIC_MINISBLACK) && td->td_samplesperpixel == 1)
sp->cinfo.c.in_color_space = JCS_GRAYSCALE;
else if (td->td_photometric == PHOTOMETRIC_RGB)
sp->cinfo.c.in_color_space = JCS_RGB;
else if (td->td_photometric == PHOTOMETRIC_SEPARATED && td->td_samplesperpixel == 4)
sp->cinfo.c.in_color_space = JCS_CMYK;
else
sp->cinfo.c.in_color_space = JCS_UNKNOWN;
if (!TIFFjpeg_set_colorspace(sp, sp->cinfo.c.in_color_space))
return (0);
}
} else {
sp->cinfo.c.input_components = 1;
sp->cinfo.c.in_color_space = JCS_UNKNOWN;
if (!TIFFjpeg_set_colorspace(sp, JCS_UNKNOWN))
return (0);
sp->cinfo.c.comp_info[0].component_id = s;
if (sp->photometric == PHOTOMETRIC_YCBCR && s > 0) {
sp->cinfo.c.comp_info[0].quant_tbl_no = 1;
sp->cinfo.c.comp_info[0].dc_tbl_no = 1;
sp->cinfo.c.comp_info[0].ac_tbl_no = 1;
}
}
sp->cinfo.c.write_JFIF_header = FALSE;
sp->cinfo.c.write_Adobe_marker = FALSE;
if (!TIFFjpeg_set_quality(sp, sp->jpegquality, FALSE))
return (0);
if (! (sp->jpegtablesmode & JPEGTABLESMODE_QUANT)) {
unsuppress_quant_table(sp, 0);
unsuppress_quant_table(sp, 1);
}
if (sp->jpegtablesmode & JPEGTABLESMODE_HUFF)
sp->cinfo.c.optimize_coding = FALSE;
else
sp->cinfo.c.optimize_coding = TRUE;
if (downsampled_input) {
sp->cinfo.c.raw_data_in = TRUE;
tif->tif_encoderow = JPEGEncodeRaw;
tif->tif_encodestrip = JPEGEncodeRaw;
tif->tif_encodetile = JPEGEncodeRaw;
} else {
sp->cinfo.c.raw_data_in = FALSE;
tif->tif_encoderow = JPEGEncode;
tif->tif_encodestrip = JPEGEncode;
tif->tif_encodetile = JPEGEncode;
}
if (!TIFFjpeg_start_compress(sp, FALSE))
return (0);
if (downsampled_input) {
if (!alloc_downsampled_buffers(tif, sp->cinfo.c.comp_info,
sp->cinfo.c.num_components))
return (0);
}
sp->scancount = 0;
return (1);
}
static int
JPEGEncode(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s)
{
JPEGState *sp = JState(tif);
tmsize_t nrows;
JSAMPROW bufptr[1];
short *line16 = NULL;
int line16_count = 0;
(void) s;
assert(sp != NULL);
nrows = cc / sp->bytesperline;
if (cc % sp->bytesperline)
TIFFWarningExt(tif->tif_clientdata, tif->tif_name,
"fractional scanline discarded");
if( !isTiled(tif) && tif->tif_row+nrows > tif->tif_dir.td_imagelength )
nrows = tif->tif_dir.td_imagelength - tif->tif_row;
if( sp->cinfo.c.data_precision == 12 )
{
line16_count = (sp->bytesperline * 2) / 3;
line16 = (short *) _TIFFmalloc(sizeof(short) * line16_count);
}
while (nrows-- > 0) {
if( sp->cinfo.c.data_precision == 12 )
{
int value_pairs = line16_count / 2;
int iPair;
bufptr[0] = (JSAMPROW) line16;
for( iPair = 0; iPair < value_pairs; iPair++ )
{
unsigned char *in_ptr =
((unsigned char *) buf) + iPair * 3;
JSAMPLE *out_ptr = (JSAMPLE *) (line16 + iPair * 2);
out_ptr[0] = (in_ptr[0] << 4) | ((in_ptr[1] & 0xf0) >> 4);
out_ptr[1] = ((in_ptr[1] & 0x0f) << 8) | in_ptr[2];
}
}
else
{
bufptr[0] = (JSAMPROW) buf;
}
if (TIFFjpeg_write_scanlines(sp, bufptr, 1) != 1)
return (0);
if (nrows > 0)
tif->tif_row++;
buf += sp->bytesperline;
}
if( sp->cinfo.c.data_precision == 12 )
{
_TIFFfree( line16 );
}
return (1);
}
static int
JPEGEncodeRaw(TIFF* tif, uint8* buf, tmsize_t cc, uint16 s)
{
JPEGState *sp = JState(tif);
JSAMPLE* inptr;
JSAMPLE* outptr;
tmsize_t nrows;
JDIMENSION clumps_per_line, nclump;
int clumpoffset, ci, xpos, ypos;
jpeg_component_info* compptr;
int samples_per_clump = sp->samplesperclump;
tmsize_t bytesperclumpline;
(void) s;
assert(sp != NULL);
bytesperclumpline = (((sp->cinfo.c.image_width+sp->h_sampling-1)/sp->h_sampling)
*(sp->h_sampling*sp->v_sampling+2)*sp->cinfo.c.data_precision+7)
/8;
nrows = ( cc / bytesperclumpline ) * sp->v_sampling;
if (cc % bytesperclumpline)
TIFFWarningExt(tif->tif_clientdata, tif->tif_name, "fractional scanline discarded");
clumps_per_line = sp->cinfo.c.comp_info[1].downsampled_width;
while (nrows > 0) {
clumpoffset = 0;
for (ci = 0, compptr = sp->cinfo.c.comp_info;
ci < sp->cinfo.c.num_components;
ci++, compptr++) {
int hsamp = compptr->h_samp_factor;
int vsamp = compptr->v_samp_factor;
int padding = (int) (compptr->width_in_blocks * DCTSIZE -
clumps_per_line * hsamp);
for (ypos = 0; ypos < vsamp; ypos++) {
inptr = ((JSAMPLE*) buf) + clumpoffset;
outptr = sp->ds_buffer[ci][sp->scancount*vsamp + ypos];
if (hsamp == 1) {
for (nclump = clumps_per_line; nclump-- > 0; ) {
*outptr++ = inptr[0];
inptr += samples_per_clump;
}
} else {
for (nclump = clumps_per_line; nclump-- > 0; ) {
for (xpos = 0; xpos < hsamp; xpos++)
*outptr++ = inptr[xpos];
inptr += samples_per_clump;
}
}
for (xpos = 0; xpos < padding; xpos++) {
*outptr = outptr[-1];
outptr++;
}
clumpoffset += hsamp;
}
}
sp->scancount++;
if (sp->scancount >= DCTSIZE) {
int n = sp->cinfo.c.max_v_samp_factor * DCTSIZE;
if (TIFFjpeg_write_raw_data(sp, sp->ds_buffer, n) != n)
return (0);
sp->scancount = 0;
}
tif->tif_row += sp->v_sampling;
buf += bytesperclumpline;
nrows -= sp->v_sampling;
}
return (1);
}
static int
JPEGPostEncode(TIFF* tif)
{
JPEGState *sp = JState(tif);
if (sp->scancount > 0) {
int ci, ypos, n;
jpeg_component_info* compptr;
for (ci = 0, compptr = sp->cinfo.c.comp_info;
ci < sp->cinfo.c.num_components;
ci++, compptr++) {
int vsamp = compptr->v_samp_factor;
tmsize_t row_width = compptr->width_in_blocks * DCTSIZE
* sizeof(JSAMPLE);
for (ypos = sp->scancount * vsamp;
ypos < DCTSIZE * vsamp; ypos++) {
_TIFFmemcpy((void*)sp->ds_buffer[ci][ypos],
(void*)sp->ds_buffer[ci][ypos-1],
row_width);
}
}
n = sp->cinfo.c.max_v_samp_factor * DCTSIZE;
if (TIFFjpeg_write_raw_data(sp, sp->ds_buffer, n) != n)
return (0);
}
return (TIFFjpeg_finish_compress(JState(tif)));
}
static void
JPEGCleanup(TIFF* tif)
{
JPEGState *sp = JState(tif);
assert(sp != 0);
tif->tif_tagmethods.vgetfield = sp->vgetparent;
tif->tif_tagmethods.vsetfield = sp->vsetparent;
tif->tif_tagmethods.printdir = sp->printdir;
if( sp != NULL ) {
if( sp->cinfo_initialized )
TIFFjpeg_destroy(sp);
if (sp->jpegtables)
_TIFFfree(sp->jpegtables);
}
_TIFFfree(tif->tif_data);
tif->tif_data = NULL;
_TIFFSetDefaultCompressionState(tif);
}
static void
JPEGResetUpsampled( TIFF* tif )
{
JPEGState* sp = JState(tif);
TIFFDirectory* td = &tif->tif_dir;
tif->tif_flags &= ~TIFF_UPSAMPLED;
if (td->td_planarconfig == PLANARCONFIG_CONTIG) {
if (td->td_photometric == PHOTOMETRIC_YCBCR &&
sp->jpegcolormode == JPEGCOLORMODE_RGB) {
tif->tif_flags |= TIFF_UPSAMPLED;
} else {
#ifdef notdef
if (td->td_ycbcrsubsampling[0] != 1 ||
td->td_ycbcrsubsampling[1] != 1)
;
#endif
}
}
if( tif->tif_tilesize > 0 )
tif->tif_tilesize = isTiled(tif) ? TIFFTileSize(tif) : (tmsize_t)(-1);
if( tif->tif_scanlinesize > 0 )
tif->tif_scanlinesize = TIFFScanlineSize(tif);
}
static int
JPEGVSetField(TIFF* tif, uint32 tag, va_list ap)
{
JPEGState* sp = JState(tif);
const TIFFField* fip;
uint32 v32;
assert(sp != NULL);
switch (tag) {
case TIFFTAG_JPEGTABLES:
v32 = (uint32) va_arg(ap, uint32);
if (v32 == 0) {
return (0);
}
_TIFFsetByteArray(&sp->jpegtables, va_arg(ap, void*),
(long) v32);
sp->jpegtables_length = v32;
TIFFSetFieldBit(tif, FIELD_JPEGTABLES);
break;
case TIFFTAG_JPEGQUALITY:
sp->jpegquality = (int) va_arg(ap, int);
return (1);
case TIFFTAG_JPEGCOLORMODE:
sp->jpegcolormode = (int) va_arg(ap, int);
JPEGResetUpsampled( tif );
return (1);
case TIFFTAG_PHOTOMETRIC:
{
int ret_value = (*sp->vsetparent)(tif, tag, ap);
JPEGResetUpsampled( tif );
return ret_value;
}
case TIFFTAG_JPEGTABLESMODE:
sp->jpegtablesmode = (int) va_arg(ap, int);
return (1);
case TIFFTAG_YCBCRSUBSAMPLING:
sp->ycbcrsampling_fetched = 1;
return (*sp->vsetparent)(tif, tag, ap);
default:
return (*sp->vsetparent)(tif, tag, ap);
}
if ((fip = TIFFFieldWithTag(tif, tag))) {
TIFFSetFieldBit(tif, fip->field_bit);
} else {
return (0);
}
tif->tif_flags |= TIFF_DIRTYDIRECT;
return (1);
}
static int
JPEGVGetField(TIFF* tif, uint32 tag, va_list ap)
{
JPEGState* sp = JState(tif);
assert(sp != NULL);
switch (tag) {
case TIFFTAG_JPEGTABLES:
*va_arg(ap, uint32*) = sp->jpegtables_length;
*va_arg(ap, void**) = sp->jpegtables;
break;
case TIFFTAG_JPEGQUALITY:
*va_arg(ap, int*) = sp->jpegquality;
break;
case TIFFTAG_JPEGCOLORMODE:
*va_arg(ap, int*) = sp->jpegcolormode;
break;
case TIFFTAG_JPEGTABLESMODE:
*va_arg(ap, int*) = sp->jpegtablesmode;
break;
default:
return (*sp->vgetparent)(tif, tag, ap);
}
return (1);
}
static void
JPEGPrintDir(TIFF* tif, FILE* fd, long flags)
{
JPEGState* sp = JState(tif);
assert(sp != NULL);
(void) flags;
if( sp != NULL ) {
if (TIFFFieldSet(tif,FIELD_JPEGTABLES))
fprintf(fd, " JPEG Tables: (%lu bytes)\n",
(unsigned long) sp->jpegtables_length);
if (sp->printdir)
(*sp->printdir)(tif, fd, flags);
}
}
static uint32
JPEGDefaultStripSize(TIFF* tif, uint32 s)
{
JPEGState* sp = JState(tif);
TIFFDirectory *td = &tif->tif_dir;
s = (*sp->defsparent)(tif, s);
if (s < td->td_imagelength)
s = TIFFroundup_32(s, td->td_ycbcrsubsampling[1] * DCTSIZE);
return (s);
}
static void
JPEGDefaultTileSize(TIFF* tif, uint32* tw, uint32* th)
{
JPEGState* sp = JState(tif);
TIFFDirectory *td = &tif->tif_dir;
(*sp->deftparent)(tif, tw, th);
*tw = TIFFroundup_32(*tw, td->td_ycbcrsubsampling[0] * DCTSIZE);
*th = TIFFroundup_32(*th, td->td_ycbcrsubsampling[1] * DCTSIZE);
}
static int JPEGInitializeLibJPEG( TIFF * tif, int decompress )
{
JPEGState* sp = JState(tif);
if(sp->cinfo_initialized)
{
if( !decompress && sp->cinfo.comm.is_decompressor )
TIFFjpeg_destroy( sp );
else if( decompress && !sp->cinfo.comm.is_decompressor )
TIFFjpeg_destroy( sp );
else
return 1;
sp->cinfo_initialized = 0;
}
if ( decompress ) {
if (!TIFFjpeg_create_decompress(sp))
return (0);
} else {
if (!TIFFjpeg_create_compress(sp))
return (0);
}
sp->cinfo_initialized = TRUE;
return 1;
}
int
TIFFInitJPEG(TIFF* tif, int scheme)
{
JPEGState* sp;
assert(scheme == COMPRESSION_JPEG);
if (!_TIFFMergeFields(tif, jpegFields, TIFFArrayCount(jpegFields))) {
TIFFErrorExt(tif->tif_clientdata,
"TIFFInitJPEG",
"Merging JPEG codec-specific tags failed");
return 0;
}
tif->tif_data = (uint8*) _TIFFmalloc(sizeof (JPEGState));
if (tif->tif_data == NULL) {
TIFFErrorExt(tif->tif_clientdata,
"TIFFInitJPEG", "No space for JPEG state block");
return 0;
}
_TIFFmemset(tif->tif_data, 0, sizeof(JPEGState));
sp = JState(tif);
sp->tif = tif;
sp->vgetparent = tif->tif_tagmethods.vgetfield;
tif->tif_tagmethods.vgetfield = JPEGVGetField;
sp->vsetparent = tif->tif_tagmethods.vsetfield;
tif->tif_tagmethods.vsetfield = JPEGVSetField;
sp->printdir = tif->tif_tagmethods.printdir;
tif->tif_tagmethods.printdir = JPEGPrintDir;
sp->jpegtables = NULL;
sp->jpegtables_length = 0;
sp->jpegquality = 75;
sp->jpegcolormode = JPEGCOLORMODE_RAW;
sp->jpegtablesmode = JPEGTABLESMODE_QUANT | JPEGTABLESMODE_HUFF;
sp->ycbcrsampling_fetched = 0;
tif->tif_fixuptags = JPEGFixupTags;
tif->tif_setupdecode = JPEGSetupDecode;
tif->tif_predecode = JPEGPreDecode;
tif->tif_decoderow = JPEGDecode;
tif->tif_decodestrip = JPEGDecode;
tif->tif_decodetile = JPEGDecode;
tif->tif_setupencode = JPEGSetupEncode;
tif->tif_preencode = JPEGPreEncode;
tif->tif_postencode = JPEGPostEncode;
tif->tif_encoderow = JPEGEncode;
tif->tif_encodestrip = JPEGEncode;
tif->tif_encodetile = JPEGEncode;
tif->tif_cleanup = JPEGCleanup;
sp->defsparent = tif->tif_defstripsize;
tif->tif_defstripsize = JPEGDefaultStripSize;
sp->deftparent = tif->tif_deftilesize;
tif->tif_deftilesize = JPEGDefaultTileSize;
tif->tif_flags |= TIFF_NOBITREV;
sp->cinfo_initialized = FALSE;
if( tif->tif_diroff == 0 )
{
#define SIZE_OF_JPEGTABLES 2000
sp->jpegtables_length = SIZE_OF_JPEGTABLES;
sp->jpegtables = (void *) _TIFFmalloc(sp->jpegtables_length);
_TIFFmemset(sp->jpegtables, 0, SIZE_OF_JPEGTABLES);
#undef SIZE_OF_JPEGTABLES
}
return 1;
}
#endif