{
struct fsl_edma_chan *fsl_chan = to_fsl_edma_chan(chan);
- fsl_chan->fsc.dir = cfg->direction;
- if (cfg->direction == DMA_DEV_TO_MEM) {
- fsl_chan->fsc.dev_addr = cfg->src_addr;
- fsl_chan->fsc.addr_width = cfg->src_addr_width;
- fsl_chan->fsc.burst = cfg->src_maxburst;
- fsl_chan->fsc.attr = fsl_edma_get_tcd_attr(cfg->src_addr_width);
- } else if (cfg->direction == DMA_MEM_TO_DEV) {
- fsl_chan->fsc.dev_addr = cfg->dst_addr;
- fsl_chan->fsc.addr_width = cfg->dst_addr_width;
- fsl_chan->fsc.burst = cfg->dst_maxburst;
- fsl_chan->fsc.attr = fsl_edma_get_tcd_attr(cfg->dst_addr_width);
- } else
- return -EINVAL;
+ memcpy(&fsl_chan->cfg, cfg, sizeof(*cfg));
return 0;
}
struct fsl_edma_desc *edesc = fsl_chan->edesc;
struct edma_regs *regs = &fsl_chan->edma->regs;
u32 ch = fsl_chan->vchan.chan.chan_id;
- enum dma_transfer_direction dir = fsl_chan->fsc.dir;
+ enum dma_transfer_direction dir = edesc->dirn;
dma_addr_t cur_addr, dma_addr;
size_t len, size;
int i;
u32 src_addr, dst_addr, last_sg, nbytes;
u16 soff, doff, iter;
- if (!is_slave_direction(fsl_chan->fsc.dir))
+ if (!is_slave_direction(direction))
return NULL;
sg_len = buf_len / period_len;
if (!fsl_desc)
return NULL;
fsl_desc->iscyclic = true;
+ fsl_desc->dirn = direction;
dma_buf_next = dma_addr;
- nbytes = fsl_chan->fsc.addr_width * fsl_chan->fsc.burst;
+ if (direction == DMA_MEM_TO_DEV) {
+ fsl_chan->attr =
+ fsl_edma_get_tcd_attr(fsl_chan->cfg.dst_addr_width);
+ nbytes = fsl_chan->cfg.dst_addr_width *
+ fsl_chan->cfg.dst_maxburst;
+ } else {
+ fsl_chan->attr =
+ fsl_edma_get_tcd_attr(fsl_chan->cfg.src_addr_width);
+ nbytes = fsl_chan->cfg.src_addr_width *
+ fsl_chan->cfg.src_maxburst;
+ }
+
iter = period_len / nbytes;
for (i = 0; i < sg_len; i++) {
/* get next sg's physical address */
last_sg = fsl_desc->tcd[(i + 1) % sg_len].ptcd;
- if (fsl_chan->fsc.dir == DMA_MEM_TO_DEV) {
+ if (direction == DMA_MEM_TO_DEV) {
src_addr = dma_buf_next;
- dst_addr = fsl_chan->fsc.dev_addr;
- soff = fsl_chan->fsc.addr_width;
+ dst_addr = fsl_chan->cfg.dst_addr;
+ soff = fsl_chan->cfg.dst_addr_width;
doff = 0;
} else {
- src_addr = fsl_chan->fsc.dev_addr;
+ src_addr = fsl_chan->cfg.src_addr;
dst_addr = dma_buf_next;
soff = 0;
- doff = fsl_chan->fsc.addr_width;
+ doff = fsl_chan->cfg.src_addr_width;
}
fsl_edma_fill_tcd(fsl_desc->tcd[i].vtcd, src_addr, dst_addr,
- fsl_chan->fsc.attr, soff, nbytes, 0, iter,
+ fsl_chan->attr, soff, nbytes, 0, iter,
iter, doff, last_sg, true, false, true);
dma_buf_next += period_len;
}
u16 soff, doff, iter;
int i;
- if (!is_slave_direction(fsl_chan->fsc.dir))
+ if (!is_slave_direction(direction))
return NULL;
fsl_desc = fsl_edma_alloc_desc(fsl_chan, sg_len);
if (!fsl_desc)
return NULL;
fsl_desc->iscyclic = false;
+ fsl_desc->dirn = direction;
+
+ if (direction == DMA_MEM_TO_DEV) {
+ fsl_chan->attr =
+ fsl_edma_get_tcd_attr(fsl_chan->cfg.dst_addr_width);
+ nbytes = fsl_chan->cfg.dst_addr_width *
+ fsl_chan->cfg.dst_maxburst;
+ } else {
+ fsl_chan->attr =
+ fsl_edma_get_tcd_attr(fsl_chan->cfg.src_addr_width);
+ nbytes = fsl_chan->cfg.src_addr_width *
+ fsl_chan->cfg.src_maxburst;
+ }
- nbytes = fsl_chan->fsc.addr_width * fsl_chan->fsc.burst;
for_each_sg(sgl, sg, sg_len, i) {
/* get next sg's physical address */
last_sg = fsl_desc->tcd[(i + 1) % sg_len].ptcd;
- if (fsl_chan->fsc.dir == DMA_MEM_TO_DEV) {
+ if (direction == DMA_MEM_TO_DEV) {
src_addr = sg_dma_address(sg);
- dst_addr = fsl_chan->fsc.dev_addr;
- soff = fsl_chan->fsc.addr_width;
+ dst_addr = fsl_chan->cfg.dst_addr;
+ soff = fsl_chan->cfg.dst_addr_width;
doff = 0;
} else {
- src_addr = fsl_chan->fsc.dev_addr;
+ src_addr = fsl_chan->cfg.src_addr;
dst_addr = sg_dma_address(sg);
soff = 0;
- doff = fsl_chan->fsc.addr_width;
+ doff = fsl_chan->cfg.src_addr_width;
}
iter = sg_dma_len(sg) / nbytes;
if (i < sg_len - 1) {
last_sg = fsl_desc->tcd[(i + 1)].ptcd;
fsl_edma_fill_tcd(fsl_desc->tcd[i].vtcd, src_addr,
- dst_addr, fsl_chan->fsc.attr, soff,
+ dst_addr, fsl_chan->attr, soff,
nbytes, 0, iter, iter, doff, last_sg,
false, false, true);
} else {
last_sg = 0;
fsl_edma_fill_tcd(fsl_desc->tcd[i].vtcd, src_addr,
- dst_addr, fsl_chan->fsc.attr, soff,
+ dst_addr, fsl_chan->attr, soff,
nbytes, 0, iter, iter, doff, last_sg,
true, true, false);
}