if ( !m_f->Read(buf, WXSIZEOF(buf)) )
return false;
- m_f->SeekI(-(wxFileOffset)WXSIZEOF(buf), wxFromCurrent);
+ if ( m_f->SeekI(-(wxFileOffset)WXSIZEOF(buf), wxFromCurrent) == wxInvalidOffset )
+ return false;
return (memcmp(buf, "FORM", 4) == 0) && (memcmp(buf+8, "ILBM", 4) == 0);
}
#define IFFDEBUG 0
/*************************************************************************
- void decomprle(source, destination, source length, buffer size)
+void decomprle(source, destination, source length, buffer size)
- Decompress run-length encoded data from source to destination. Terminates
- when source is decoded completely or destination buffer is full.
+Decompress run-length encoded data from source to destination. Terminates
+when source is decoded completely or destination buffer is full.
- The decruncher is as optimized as I could make it, without risking
- safety in case of corrupt BODY chunks.
+The decruncher is as optimized as I could make it, without risking
+safety in case of corrupt BODY chunks.
**************************************************************************/
static void decomprle(const byte *sptr, byte *dptr, long slen, long dlen)
m_image = new IFFImage();
if (m_image == 0) {
- Destroy();
- return wxIFF_MEMERR;
+ Destroy();
+ return wxIFF_MEMERR;
}
// compute file length
wxFileOffset currentPos = m_f->TellI();
- m_f->SeekI(0, wxFromEnd);
+ if (m_f->SeekI(0, wxFromEnd) == wxInvalidOffset) {
+ Destroy();
+ return wxIFF_MEMERR;
+ }
+
long filesize = m_f->TellI();
- m_f->SeekI(currentPos, wxFromStart);
+ if (m_f->SeekI(currentPos, wxFromStart) == wxInvalidOffset) {
+ Destroy();
+ return wxIFF_MEMERR;
+ }
// allocate memory for complete file
if ((databuf = new byte[filesize]) == 0) {
- Destroy();
- return wxIFF_MEMERR;
+ Destroy();
+ return wxIFF_MEMERR;
}
m_f->Read(databuf, filesize);
// check for minmal size
if (dataptr + 12 > dataend) {
- Destroy();
- return wxIFF_INVFORMAT;
+ Destroy();
+ return wxIFF_INVFORMAT;
}
// check if we really got an IFF file
if (strncmp((char *)dataptr, "FORM", 4) != 0) {
- Destroy();
- return wxIFF_INVFORMAT;
+ Destroy();
+ return wxIFF_INVFORMAT;
}
dataptr = dataptr + 8; // skip ID and length of FORM
// check if the IFF file is an ILBM (picture) file
if (strncmp((char *) dataptr, "ILBM", 4) != 0) {
- Destroy();
- return wxIFF_INVFORMAT;
+ Destroy();
+ return wxIFF_INVFORMAT;
}
wxLogTrace(_T("iff"), _T("IFF ILBM file recognized"));
// get chunk length and make even
long chunkLen = (iff_getlong(dataptr + 4) + 1) & 0xfffffffe;
if (chunkLen < 0) { // format error?
- break;
+ break;
}
bool truncated = (dataptr + 8 + chunkLen > dataend);
int c = (col & 0x0f);
switch (col & 0x30) {
case 0x00: if (c >= 0 && c < colors) {
- rval = pal[3*c + 0];
- gval = pal[3*c + 1];
- bval = pal[3*c + 2];
- }
- break;
+ rval = pal[3*c + 0];
+ gval = pal[3*c + 1];
+ bval = pal[3*c + 2];
+ }
+ break;
case 0x10: bval = c * 17;
- break;
+ break;
case 0x20: rval = c * 17;
- break;
+ break;
case 0x30: gval = c * 17;
- break;
+ break;
}
} else if (fmt == ILBM_HAM8) {
int c = (col & 0x3f);
switch(col & 0xc0) {
case 0x00: if (c >= 0 && c < colors) {
- rval = pal[3*c + 0];
- gval = pal[3*c + 1];
- bval = pal[3*c + 2];
- }
- break;
+ rval = pal[3*c + 0];
+ gval = pal[3*c + 1];
+ bval = pal[3*c + 2];
+ }
+ break;
case 0x40: bval = (bval & 3) | (c << 2);
- break;
+ break;
case 0x80: rval = (rval & 3) | (c << 2);
- break;
+ break;
case 0xc0: gval = (rval & 3) | (c << 2);
}