uint32_t tot_len;
size_t resplen;
uint32_t tmp;
+ int n;
+ uint32_t offset, length, color;
+ uint32_t xres, yres, xoffset, yoffset, bpp, pixo, alpha;
+ uint32_t *newxres = NULL, *newyres = NULL, *newxoffset = NULL,
+ *newyoffset = NULL, *newbpp = NULL, *newpixo = NULL, *newalpha = NULL;
value &= ~0xf;
/* base */
stl_le_phys(&s->dma_as, value + 12, 0);
/* size */
- stl_le_phys(&s->dma_as, value + 16, s->ram_size);
+ stl_le_phys(&s->dma_as, value + 16, s->fbdev->vcram_base);
+ resplen = 8;
+ break;
+ case 0x00010006: /* Get VC memory */
+ /* base */
+ stl_le_phys(&s->dma_as, value + 12, s->fbdev->vcram_base);
+ /* size */
+ stl_le_phys(&s->dma_as, value + 16, s->fbdev->vcram_size);
resplen = 8;
break;
case 0x00028001: /* Set power state */
resplen = 8;
break;
+ /* Frame buffer */
+
+ case 0x00040001: /* Allocate buffer */
+ stl_le_phys(&s->dma_as, value + 12, s->fbdev->base);
+ stl_le_phys(&s->dma_as, value + 16, s->fbdev->size);
+ resplen = 8;
+ break;
+ case 0x00048001: /* Release buffer */
+ resplen = 0;
+ break;
+ case 0x00040002: /* Blank screen */
+ resplen = 4;
+ break;
+ case 0x00040003: /* Get display width/height */
+ case 0x00040004:
+ stl_le_phys(&s->dma_as, value + 12, s->fbdev->xres);
+ stl_le_phys(&s->dma_as, value + 16, s->fbdev->yres);
+ resplen = 8;
+ break;
+ case 0x00044003: /* Test display width/height */
+ case 0x00044004:
+ resplen = 8;
+ break;
+ case 0x00048003: /* Set display width/height */
+ case 0x00048004:
+ xres = ldl_le_phys(&s->dma_as, value + 12);
+ newxres = &xres;
+ yres = ldl_le_phys(&s->dma_as, value + 16);
+ newyres = &yres;
+ resplen = 8;
+ break;
+ case 0x00040005: /* Get depth */
+ stl_le_phys(&s->dma_as, value + 12, s->fbdev->bpp);
+ resplen = 4;
+ break;
+ case 0x00044005: /* Test depth */
+ resplen = 4;
+ break;
+ case 0x00048005: /* Set depth */
+ bpp = ldl_le_phys(&s->dma_as, value + 12);
+ newbpp = &bpp;
+ resplen = 4;
+ break;
+ case 0x00040006: /* Get pixel order */
+ stl_le_phys(&s->dma_as, value + 12, s->fbdev->pixo);
+ resplen = 4;
+ break;
+ case 0x00044006: /* Test pixel order */
+ resplen = 4;
+ break;
+ case 0x00048006: /* Set pixel order */
+ pixo = ldl_le_phys(&s->dma_as, value + 12);
+ newpixo = &pixo;
+ resplen = 4;
+ break;
+ case 0x00040007: /* Get alpha */
+ stl_le_phys(&s->dma_as, value + 12, s->fbdev->alpha);
+ resplen = 4;
+ break;
+ case 0x00044007: /* Test pixel alpha */
+ resplen = 4;
+ break;
+ case 0x00048007: /* Set alpha */
+ alpha = ldl_le_phys(&s->dma_as, value + 12);
+ newalpha = α
+ resplen = 4;
+ break;
+ case 0x00040008: /* Get pitch */
+ stl_le_phys(&s->dma_as, value + 12, s->fbdev->pitch);
+ resplen = 4;
+ break;
+ case 0x00040009: /* Get virtual offset */
+ stl_le_phys(&s->dma_as, value + 12, s->fbdev->xoffset);
+ stl_le_phys(&s->dma_as, value + 16, s->fbdev->yoffset);
+ resplen = 8;
+ break;
+ case 0x00044009: /* Test virtual offset */
+ resplen = 8;
+ break;
+ case 0x00048009: /* Set virtual offset */
+ xoffset = ldl_le_phys(&s->dma_as, value + 12);
+ newxoffset = &xoffset;
+ yoffset = ldl_le_phys(&s->dma_as, value + 16);
+ newyoffset = &yoffset;
+ resplen = 8;
+ break;
+ case 0x0004000a: /* Get/Test/Set overscan */
+ case 0x0004400a:
+ case 0x0004800a:
+ stl_le_phys(&s->dma_as, value + 12, 0);
+ stl_le_phys(&s->dma_as, value + 16, 0);
+ stl_le_phys(&s->dma_as, value + 20, 0);
+ stl_le_phys(&s->dma_as, value + 24, 0);
+ resplen = 16;
+ break;
+ case 0x0004800b: /* Set palette */
+ offset = ldl_le_phys(&s->dma_as, value + 12);
+ length = ldl_le_phys(&s->dma_as, value + 16);
+ n = 0;
+ while (n < length - offset) {
+ color = ldl_le_phys(&s->dma_as, value + 20 + (n << 2));
+ stl_le_phys(&s->dma_as,
+ s->fbdev->vcram_base + ((offset + n) << 2), color);
+ n++;
+ }
+ stl_le_phys(&s->dma_as, value + 12, 0);
+ resplen = 4;
+ break;
case 0x00060001: /* Get DMA channels */
/* channels 2-5 */
value += bufsize + 12;
}
+ /* Reconfigure framebuffer if required */
+ if (newxres || newyres || newxoffset || newyoffset || newbpp || newpixo
+ || newalpha) {
+ bcm2835_fb_reconfigure(s->fbdev, newxres, newyres, newxoffset,
+ newyoffset, newbpp, newpixo, newalpha);
+ }
+
/* Buffer response code */
stl_le_phys(&s->dma_as, s->addr + 4, (1 << 31));
}
Object *obj;
Error *err = NULL;
+ obj = object_property_get_link(OBJECT(dev), "fb", &err);
+ if (obj == NULL) {
+ error_setg(errp, "%s: required fb link not found: %s",
+ __func__, error_get_pretty(err));
+ return;
+ }
+
+ s->fbdev = BCM2835_FB(obj);
+
obj = object_property_get_link(OBJECT(dev), "dma-mr", &err);
if (obj == NULL) {
error_setg(errp, "%s: required dma-mr link not found: %s",
static Property bcm2835_property_props[] = {
DEFINE_PROP_UINT32("board-rev", BCM2835PropertyState, board_rev, 0),
- DEFINE_PROP_UINT32("ram-size", BCM2835PropertyState, ram_size, 0),
DEFINE_PROP_END_OF_LIST()
};