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fbdev: atafb: Add support for SuperVidel's SuperBlitter
The SuperVidel graphics FPGA includes a hardware blitter (bit block transfer engine) operating within the SuperVidel DDR2 video RAM. Two versions of this blitter exist. Later versions (>= 9) of the SuperVidel firmware support an asynchronous command FIFO, older versions must be polled for command completion. Add hardware-accelerated copyarea, fillrect and imageblit fb operations (falling back to the non-accelerated versions for anything that exceeds blitter capabilities). Signed-off-by: Miro Kropacek <miro.kropacek@gmail.com> Reviewed-by: Michael Schmitz <schmitzmic@gmail.com> Signed-off-by: Michael Schmitz <schmitzmic@gmail.com> Link: https://lists.debian.org/debian-68k/2026/08/msg00000.html Signed-off-by: Helge Deller <deller@gmx.de>
This commit is contained in:
committed by
Helge Deller
parent
51df976c32
commit
d463633d63
@@ -2303,6 +2303,185 @@ static int ext_detect(struct fb_info *info)
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return 1;
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}
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/* ------------------- SuperVidel SuperBlitter ---------------------- */
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/*
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* Hardware blitter in the SuperVidel FPGA, operating within SV DDR2 RAM.
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* FW revision >= 9 provides a command FIFO (async operation); older
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* revisions are programmed directly with busy-polling.
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*/
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#define SVBLIT_REGS_PHYS 0x80010000
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#define SVBLIT_SRC1 0x58 /* bits 26:0 */
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#define SVBLIT_SRC2 0x5c
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#define SVBLIT_DST 0x60
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#define SVBLIT_COUNT 0x64 /* bytes per line - 1 */
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#define SVBLIT_SRC1_OFFSET 0x68 /* line start to next line start */
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#define SVBLIT_SRC2_OFFSET 0x6c
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#define SVBLIT_DST_OFFSET 0x70
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#define SVBLIT_MASK_AND_LINES 0x74 /* bits 11:0: number of lines */
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#define SVBLIT_CONTROL 0x78 /* bit 0: busy/start, bits 4:1: mode */
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#define SVBLIT_VERSION 0x7c /* bits 9:0: FW revision */
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#define SVBLIT_FIFO 0x80 /* wr: data; rd: bit 0 empty, bit 1 full */
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/*
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* SuperBlitter bug: Instead of declared 2048 bytes, 2032 is the real maximum.
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*/
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#define SVBLIT_MAX_SPAN 2032
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static void __iomem *svblit_regs;
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static int svblit_fw;
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static inline u32 svblit_rd(unsigned int reg)
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{
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return __raw_readl(svblit_regs + reg);
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}
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static inline void svblit_wr(unsigned int reg, u32 val)
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{
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__raw_writel(val, svblit_regs + reg);
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}
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/* wait until all queued blits have finished */
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static void svblit_wait(void)
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{
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if (svblit_fw >= 9)
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/* FIFO empty flag = fewer than 9 longwords queued */
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while (!(svblit_rd(SVBLIT_FIFO) & 1))
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cpu_relax();
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while (svblit_rd(SVBLIT_CONTROL) & 1)
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cpu_relax();
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}
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/*
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* FW >= 9 queues commands through the 512-longword FIFO: a command is
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* 9 longwords (registers 0x58..0x78 in order), executed whenever >= 9
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* words are queued and the blitter is idle. The full flag rises at
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* >= 500 queued words, so below it there is always room for a whole
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* command — one flag check per command prevents overflow (dropped
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* words would desync the 9-word framing until an SV reinit, which is
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* exactly what overflowing did before this guard existed). Older FW
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* is programmed directly with busy-polling.
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*
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* The line byte count field is 11 bits but see SVBLIT_MAX_SPAN.
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*/
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static void svblit_copy(u32 src, u32 dst, u32 nbytes, u32 src_offset,
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u32 dst_offset, u32 lines)
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{
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while (nbytes) {
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u32 chunk = min(nbytes, SVBLIT_MAX_SPAN);
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if (svblit_fw >= 9) {
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while (svblit_rd(SVBLIT_FIFO) & 2)
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cpu_relax();
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svblit_wr(SVBLIT_FIFO, src);
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svblit_wr(SVBLIT_FIFO, 0);
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svblit_wr(SVBLIT_FIFO, dst);
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svblit_wr(SVBLIT_FIFO, chunk - 1);
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svblit_wr(SVBLIT_FIFO, src_offset);
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svblit_wr(SVBLIT_FIFO, 0);
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svblit_wr(SVBLIT_FIFO, dst_offset);
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svblit_wr(SVBLIT_FIFO, lines);
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svblit_wr(SVBLIT_FIFO, 0x01);
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} else {
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while (svblit_rd(SVBLIT_CONTROL) & 1)
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cpu_relax();
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svblit_wr(SVBLIT_SRC1, src);
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svblit_wr(SVBLIT_SRC2, 0);
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svblit_wr(SVBLIT_DST, dst);
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svblit_wr(SVBLIT_COUNT, chunk - 1);
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svblit_wr(SVBLIT_SRC1_OFFSET, src_offset);
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svblit_wr(SVBLIT_SRC2_OFFSET, 0);
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svblit_wr(SVBLIT_DST_OFFSET, dst_offset);
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svblit_wr(SVBLIT_MASK_AND_LINES, lines);
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svblit_wr(SVBLIT_CONTROL, 0x01);
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}
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src += chunk;
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dst += chunk;
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nbytes -= chunk;
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}
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}
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static int svblit_sync(struct fb_info *info)
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{
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svblit_wait();
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return 0;
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}
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static void svblit_copyarea(struct fb_info *info,
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const struct fb_copyarea *area)
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{
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u32 bytespp = info->var.bits_per_pixel / 8;
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u32 pitch = info->fix.line_length;
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/*
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* The blitter walks lines in ascending order, so overlapping
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* moves down/right would read already overwritten data. Those
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* are rare for fbcon (scrolling backwards); leave them and
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* oversized areas to the CPU.
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*/
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if (area->height > 4095 ||
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area->dy > area->sy ||
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(area->dy == area->sy && area->dx > area->sx)) {
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svblit_wait();
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cfb_copyarea(info, area);
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return;
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}
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svblit_copy(external_addr + area->sy * pitch + area->sx * bytespp,
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external_addr + area->dy * pitch + area->dx * bytespp,
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area->width * bytespp, pitch, pitch, area->height);
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/* async: every CPU access to the fb goes through svblit_wait() */
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}
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static void svblit_fillrect(struct fb_info *info,
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const struct fb_fillrect *rect)
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{
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u32 bytespp = info->var.bits_per_pixel / 8;
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u32 pitch = info->fix.line_length;
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u8 *line;
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u32 pix;
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svblit_wait(); /* the CPU is about to touch the fb */
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if (rect->rop != ROP_COPY || rect->height <= 1 ||
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rect->height > 4096) {
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cfb_fillrect(info, rect);
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return;
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}
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pix = (info->fix.visual == FB_VISUAL_TRUECOLOR) ?
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((u32 *)info->pseudo_palette)[rect->color] : rect->color;
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/* draw the first line with the CPU ... */
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line = (u8 *)info->screen_base + rect->dy * pitch +
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rect->dx * bytespp;
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switch (bytespp) {
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case 1:
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memset(line, pix, rect->width);
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break;
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case 2:
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memset16((u16 *)line, pix, rect->width);
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break;
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default:
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memset32((u32 *)line, pix, rect->width);
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break;
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}
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/* ... and let the blitter replicate it into the other lines */
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svblit_copy(external_addr + rect->dy * pitch + rect->dx * bytespp,
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external_addr + (rect->dy + 1) * pitch +
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rect->dx * bytespp,
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rect->width * bytespp, 0, pitch, rect->height - 1);
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}
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static void svblit_imageblit(struct fb_info *info,
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const struct fb_image *image)
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{
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svblit_wait(); /* CPU rendering must not race queued blits */
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cfb_imageblit(info, image);
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}
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#endif /* ATAFB_EXT */
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/* ------ This is the same for most hardware types -------- */
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@@ -3179,6 +3358,24 @@ static int __init atafb_probe(struct platform_device *pdev)
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phys_screen_base = external_addr;
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screen_len = external_len & PAGE_MASK;
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memset (screen_base, 0, external_len);
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/* framebuffer in SV RAM: enable the SuperBlitter */
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if (external_addr >= 0xa0000000) {
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svblit_regs = ioremap(SVBLIT_REGS_PHYS, 0x100);
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if (svblit_regs) {
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svblit_fw = svblit_rd(SVBLIT_VERSION) & 0x1ff;
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atafb_ops.fb_fillrect = svblit_fillrect;
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atafb_ops.fb_copyarea = svblit_copyarea;
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atafb_ops.fb_imageblit = svblit_imageblit;
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atafb_ops.fb_sync = svblit_sync;
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fb_info->flags |= FBINFO_HWACCEL_COPYAREA |
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FBINFO_HWACCEL_FILLRECT;
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dev_info(&pdev->dev,
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"SuperBlitter enabled, FW revision %d (%s)\n",
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svblit_fw, svblit_fw >= 9 ?
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"async FIFO" : "sync");
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}
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}
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}
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#endif /* ATAFB_EXT */
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