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https://github.com/ipxe/ipxe
synced 2025-12-15 00:12:19 +03:00
[png] Remove userptr_t from PNG image parsing
Signed-off-by: Michael Brown <mcb30@ipxe.org>
This commit is contained in:
177
src/image/png.c
177
src/image/png.c
@@ -197,12 +197,12 @@ static size_t png_scanline_len ( struct png_context *png,
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*/
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static int png_image_header ( struct image *image, struct png_context *png,
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size_t len ) {
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struct png_image_header ihdr;
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const struct png_image_header *ihdr;
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struct png_interlace interlace;
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unsigned int pass;
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/* Sanity check */
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if ( len != sizeof ( ihdr ) ) {
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if ( len != sizeof ( *ihdr ) ) {
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DBGC ( image, "PNG %s invalid IHDR length %zd\n",
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image->name, len );
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return -EINVAL;
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@@ -213,32 +213,32 @@ static int png_image_header ( struct image *image, struct png_context *png,
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}
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/* Extract image header */
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copy_from_user ( &ihdr, image->data, png->offset, len );
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ihdr = ( image->data + png->offset );
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DBGC ( image, "PNG %s %dx%d depth %d type %d compression %d filter %d "
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"interlace %d\n", image->name, ntohl ( ihdr.width ),
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ntohl ( ihdr.height ), ihdr.depth, ihdr.colour_type,
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ihdr.compression, ihdr.filter, ihdr.interlace );
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"interlace %d\n", image->name, ntohl ( ihdr->width ),
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ntohl ( ihdr->height ), ihdr->depth, ihdr->colour_type,
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ihdr->compression, ihdr->filter, ihdr->interlace );
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/* Sanity checks */
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if ( ihdr.compression >= PNG_COMPRESSION_UNKNOWN ) {
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if ( ihdr->compression >= PNG_COMPRESSION_UNKNOWN ) {
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DBGC ( image, "PNG %s unknown compression method %d\n",
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image->name, ihdr.compression );
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image->name, ihdr->compression );
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return -ENOTSUP;
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}
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if ( ihdr.filter >= PNG_FILTER_UNKNOWN ) {
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if ( ihdr->filter >= PNG_FILTER_UNKNOWN ) {
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DBGC ( image, "PNG %s unknown filter method %d\n",
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image->name, ihdr.filter );
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image->name, ihdr->filter );
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return -ENOTSUP;
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}
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if ( ihdr.interlace >= PNG_INTERLACE_UNKNOWN ) {
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if ( ihdr->interlace >= PNG_INTERLACE_UNKNOWN ) {
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DBGC ( image, "PNG %s unknown interlace method %d\n",
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image->name, ihdr.interlace );
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image->name, ihdr->interlace );
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return -ENOTSUP;
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}
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/* Allocate pixel buffer */
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png->pixbuf = alloc_pixbuf ( ntohl ( ihdr.width ),
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ntohl ( ihdr.height ) );
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png->pixbuf = alloc_pixbuf ( ntohl ( ihdr->width ),
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ntohl ( ihdr->height ) );
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if ( ! png->pixbuf ) {
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DBGC ( image, "PNG %s could not allocate pixel buffer\n",
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image->name );
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@@ -246,7 +246,7 @@ static int png_image_header ( struct image *image, struct png_context *png,
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}
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/* Extract bit depth */
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png->depth = ihdr.depth;
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png->depth = ihdr->depth;
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if ( ( png->depth == 0 ) ||
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( ( png->depth & ( png->depth - 1 ) ) != 0 ) ) {
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DBGC ( image, "PNG %s invalid depth %d\n",
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@@ -255,17 +255,17 @@ static int png_image_header ( struct image *image, struct png_context *png,
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}
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/* Calculate number of channels */
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png->colour_type = ihdr.colour_type;
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png->colour_type = ihdr->colour_type;
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png->channels = 1;
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if ( ! ( ihdr.colour_type & PNG_COLOUR_TYPE_PALETTE ) ) {
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if ( ihdr.colour_type & PNG_COLOUR_TYPE_RGB )
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if ( ! ( ihdr->colour_type & PNG_COLOUR_TYPE_PALETTE ) ) {
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if ( ihdr->colour_type & PNG_COLOUR_TYPE_RGB )
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png->channels += 2;
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if ( ihdr.colour_type & PNG_COLOUR_TYPE_ALPHA )
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if ( ihdr->colour_type & PNG_COLOUR_TYPE_ALPHA )
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png->channels += 1;
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}
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/* Calculate number of interlace passes */
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png->passes = png_interlace_passes[ihdr.interlace];
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png->passes = png_interlace_passes[ihdr->interlace];
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/* Calculate length of raw data buffer */
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for ( pass = 0 ; pass < png->passes ; pass++ ) {
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@@ -297,30 +297,28 @@ static int png_image_header ( struct image *image, struct png_context *png,
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*/
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static int png_palette ( struct image *image, struct png_context *png,
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size_t len ) {
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size_t offset = png->offset;
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struct png_palette_entry palette;
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const struct png_palette_entry *palette;
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unsigned int i;
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/* Populate palette */
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palette = ( image->data + png->offset );
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for ( i = 0 ; i < ( sizeof ( png->palette ) /
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sizeof ( png->palette[0] ) ) ; i++ ) {
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/* Stop when we run out of palette data */
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if ( len < sizeof ( palette ) )
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if ( len < sizeof ( *palette ) )
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break;
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/* Extract palette entry */
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copy_from_user ( &palette, image->data, offset,
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sizeof ( palette ) );
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png->palette[i] = ( ( palette.red << 16 ) |
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( palette.green << 8 ) |
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( palette.blue << 0 ) );
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png->palette[i] = ( ( palette->red << 16 ) |
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( palette->green << 8 ) |
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( palette->blue << 0 ) );
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DBGC2 ( image, "PNG %s palette entry %d is %#06x\n",
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image->name, i, png->palette[i] );
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/* Move to next entry */
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offset += sizeof ( palette );
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len -= sizeof ( palette );
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palette++;
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len -= sizeof ( *palette );
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}
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return 0;
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@@ -503,17 +501,16 @@ static struct png_filter png_filters[] = {
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*/
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static int png_unfilter_pass ( struct image *image, struct png_context *png,
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struct png_interlace *interlace ) {
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size_t offset = png->raw.offset;
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size_t pixel_len = png_pixel_len ( png );
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size_t scanline_len = png_scanline_len ( png, interlace );
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uint8_t *data = ( png->raw.data + png->raw.offset );
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struct png_filter *filter;
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unsigned int scanline;
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unsigned int byte;
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uint8_t filter_type;
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uint8_t left;
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uint8_t above;
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uint8_t above_left;
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uint8_t current;
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unsigned int filter_type;
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unsigned int left;
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unsigned int above;
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unsigned int above_left;
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/* On the first scanline of a pass, above bytes are assumed to
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* be zero.
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@@ -524,8 +521,7 @@ static int png_unfilter_pass ( struct image *image, struct png_context *png,
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for ( scanline = 0 ; scanline < interlace->height ; scanline++ ) {
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/* Extract filter byte and determine filter type */
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copy_from_user ( &filter_type, png->raw.data, offset++,
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sizeof ( filter_type ) );
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filter_type = *(data++);
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if ( filter_type >= ( sizeof ( png_filters ) /
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sizeof ( png_filters[0] ) ) ) {
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DBGC ( image, "PNG %s unknown filter type %d\n",
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@@ -547,35 +543,24 @@ static int png_unfilter_pass ( struct image *image, struct png_context *png,
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for ( byte = 0 ; byte < ( scanline_len - 1 ) ; byte++ ) {
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/* Extract predictor bytes, if applicable */
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if ( byte >= pixel_len ) {
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copy_from_user ( &left, png->raw.data,
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( offset - pixel_len ),
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sizeof ( left ) );
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}
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if ( scanline > 0 ) {
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copy_from_user ( &above, png->raw.data,
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( offset - scanline_len ),
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sizeof ( above ) );
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}
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if ( byte >= pixel_len )
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left = *( data - pixel_len );
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if ( scanline > 0 )
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above = *( data - scanline_len );
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if ( ( scanline > 0 ) && ( byte >= pixel_len ) ) {
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copy_from_user ( &above_left, png->raw.data,
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( offset - scanline_len -
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pixel_len ),
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sizeof ( above_left ) );
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above_left = *( data - scanline_len -
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pixel_len );
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}
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/* Unfilter current byte */
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copy_from_user ( ¤t, png->raw.data,
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offset, sizeof ( current ) );
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current = filter->unfilter ( current, left, above,
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above_left );
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copy_to_user ( png->raw.data, offset++,
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¤t, sizeof ( current ) );
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*data = filter->unfilter ( *data, left, above,
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above_left );
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data++;
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}
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}
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/* Update offset */
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png->raw.offset = offset;
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png->raw.offset = ( ( ( void * ) data ) - png->raw.data );
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return 0;
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}
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@@ -650,16 +635,16 @@ static inline unsigned int png_pixel ( unsigned int raw, unsigned int alpha,
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static void png_pixels_pass ( struct image *image,
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struct png_context *png,
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struct png_interlace *interlace ) {
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size_t raw_offset = png->raw.offset;
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uint8_t channel[png->channels];
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int is_indexed = ( png->colour_type & PNG_COLOUR_TYPE_PALETTE );
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int is_rgb = ( png->colour_type & PNG_COLOUR_TYPE_RGB );
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int has_alpha = ( png->colour_type & PNG_COLOUR_TYPE_ALPHA );
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size_t pixbuf_y_offset;
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size_t pixbuf_offset;
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size_t pixbuf_x_stride;
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size_t pixbuf_y_stride;
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size_t raw_stride;
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const uint8_t *data = ( png->raw.data + png->raw.offset );
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size_t data_stride;
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unsigned int pixbuf_y_index;
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unsigned int pixbuf_index;
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unsigned int pixbuf_x_stride;
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unsigned int pixbuf_y_stride;
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unsigned int y;
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unsigned int x;
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unsigned int c;
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@@ -676,17 +661,16 @@ static void png_pixels_pass ( struct image *image,
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* as a bit depth of 8 with a stride of more than one.
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*/
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depth = png->depth;
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raw_stride = ( ( depth + 7 ) / 8 );
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data_stride = ( ( depth + 7 ) / 8 );
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if ( depth > 8 )
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depth = 8;
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max = ( ( 1 << depth ) - 1 );
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/* Calculate pixel buffer offset and strides */
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pixbuf_y_offset = ( ( ( interlace->y_indent * png->pixbuf->width ) +
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interlace->x_indent ) * sizeof ( pixel ) );
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pixbuf_x_stride = ( interlace->x_stride * sizeof ( pixel ) );
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pixbuf_y_stride = ( interlace->y_stride * png->pixbuf->width *
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sizeof ( pixel ) );
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pixbuf_y_index = ( ( ( interlace->y_indent * png->pixbuf->width ) +
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interlace->x_indent ) );
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pixbuf_x_stride = interlace->x_stride;
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pixbuf_y_stride = ( interlace->y_stride * png->pixbuf->width );
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DBGC2 ( image, "PNG %s pass %d %dx%d at (%d,%d) stride (%d,%d)\n",
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image->name, interlace->pass, interlace->width,
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interlace->height, interlace->x_indent, interlace->y_indent,
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@@ -696,11 +680,11 @@ static void png_pixels_pass ( struct image *image,
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for ( y = 0 ; y < interlace->height ; y++ ) {
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/* Skip filter byte */
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raw_offset++;
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data++;
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/* Iterate over each pixel in turn */
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bits = depth;
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pixbuf_offset = pixbuf_y_offset;
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pixbuf_index = pixbuf_y_index;
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for ( x = 0 ; x < interlace->width ; x++ ) {
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/* Extract sample value */
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@@ -710,11 +694,8 @@ static void png_pixels_pass ( struct image *image,
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current <<= depth;
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bits -= depth;
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if ( ! bits ) {
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copy_from_user ( ¤t,
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png->raw.data,
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raw_offset,
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sizeof ( current ) );
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raw_offset += raw_stride;
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current = *data;
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data += data_stride;
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bits = 8;
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}
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@@ -745,17 +726,16 @@ static void png_pixels_pass ( struct image *image,
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}
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/* Store pixel */
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copy_to_user ( png->pixbuf->data, pixbuf_offset,
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&pixel, sizeof ( pixel ) );
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pixbuf_offset += pixbuf_x_stride;
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png->pixbuf->data[pixbuf_index] = pixel;
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pixbuf_index += pixbuf_x_stride;
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}
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/* Move to next output row */
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pixbuf_y_offset += pixbuf_y_stride;
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pixbuf_y_index += pixbuf_y_stride;
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}
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/* Update offset */
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png->raw.offset = raw_offset;
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png->raw.offset = ( ( ( const void * ) data ) - png->raw.data );
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}
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/**
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@@ -903,8 +883,8 @@ static int png_chunk ( struct image *image, struct png_context *png,
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*/
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static int png_pixbuf ( struct image *image, struct pixel_buffer **pixbuf ) {
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struct png_context *png;
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struct png_chunk_header header;
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struct png_chunk_footer footer;
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const struct png_chunk_header *header;
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const struct png_chunk_footer *footer;
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size_t remaining;
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size_t chunk_len;
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int rc;
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@@ -923,20 +903,19 @@ static int png_pixbuf ( struct image *image, struct pixel_buffer **pixbuf ) {
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/* Extract chunk header */
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remaining = ( image->len - png->offset );
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if ( remaining < ( sizeof ( header ) + sizeof ( footer ) ) ) {
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if ( remaining < ( sizeof ( *header ) + sizeof ( *footer ) ) ){
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DBGC ( image, "PNG %s truncated chunk header/footer "
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"at offset %zd\n", image->name, png->offset );
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rc = -EINVAL;
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goto err_truncated;
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}
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copy_from_user ( &header, image->data, png->offset,
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sizeof ( header ) );
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png->offset += sizeof ( header );
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header = ( image->data + png->offset );
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png->offset += sizeof ( *header );
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/* Validate chunk length */
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chunk_len = ntohl ( header.len );
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if ( chunk_len > ( remaining - sizeof ( header ) -
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sizeof ( footer ) ) ) {
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chunk_len = ntohl ( header->len );
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if ( chunk_len > ( remaining - sizeof ( *header ) -
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sizeof ( *footer ) ) ) {
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DBGC ( image, "PNG %s truncated chunk data at offset "
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"%zd\n", image->name, png->offset );
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rc = -EINVAL;
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@@ -944,17 +923,17 @@ static int png_pixbuf ( struct image *image, struct pixel_buffer **pixbuf ) {
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}
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/* Handle chunk */
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if ( ( rc = png_chunk ( image, png, header.type,
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if ( ( rc = png_chunk ( image, png, header->type,
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chunk_len ) ) != 0 )
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goto err_chunk;
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/* Move to next chunk */
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png->offset += ( chunk_len + sizeof ( footer ) );
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png->offset += ( chunk_len + sizeof ( *footer ) );
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} while ( png->offset < image->len );
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/* Check that we finished with an IEND chunk */
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if ( header.type != htonl ( PNG_TYPE_IEND ) ) {
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if ( header->type != htonl ( PNG_TYPE_IEND ) ) {
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DBGC ( image, "PNG %s did not finish with IEND\n",
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image->name );
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rc = -EINVAL;
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@@ -984,17 +963,17 @@ static int png_pixbuf ( struct image *image, struct pixel_buffer **pixbuf ) {
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* @ret rc Return status code
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*/
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static int png_probe ( struct image *image ) {
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struct png_signature signature;
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const struct png_signature *signature;
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/* Sanity check */
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if ( image->len < sizeof ( signature ) ) {
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if ( image->len < sizeof ( *signature ) ) {
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DBGC ( image, "PNG %s is too short\n", image->name );
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return -ENOEXEC;
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}
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/* Check signature */
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copy_from_user ( &signature, image->data, 0, sizeof ( signature ) );
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if ( memcmp ( &signature, &png_signature, sizeof ( signature ) ) != 0 ){
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signature = image->data;
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if ( memcmp ( signature, &png_signature, sizeof ( *signature ) ) != 0 ){
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DBGC ( image, "PNG %s has invalid signature\n", image->name );
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return -ENOEXEC;
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}
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