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dmaengine: sh: rz-dmac: Use virt-dma APIs for channel descriptor processing
The driver used a mix of virt-dma APIs and driver specific logic to process descriptors. It maintained three internal queues: ld_free, ld_queue, and ld_active as follows: - ld_free: stores the descriptors pre-allocated at probe time - ld_queue: stores descriptors after they are taken from ld_free and prepared. At the same time, vchan_tx_prep() queues them to vc->desc_allocated. The vc->desc_allocated list is then checked in rz_dmac_issue_pending() and rz_dmac_irq_handler_thread() before starting a new transfer via rz_dmac_xfer_desc(). In turn, rz_dmac_xfer_desc() grabs the next descriptor from vc->desc_issued and submits it for transfer - ld_active: stores the descriptors currently being transferred The interrupt handler moved a completed descriptor to ld_free before invoking its completion callback. Once returned to ld_free, the descriptor can be reused to prepare a new transfer. In theory, this means the descriptor could be re-prepared before its completion callback is called. Commit fully back the driver by the virt-dma APIs. With this, only ld_free need to be kept to track how many free descriptors are available. This is now done as follows: - the prepare stage removes the first descriptor from the ld_free and prepares it - the completion calls for it vc->desc_free() (rz_dmac_virt_desc_free()) which re-adds the descriptor at the end of ld_free With this, the critical areas in prepare callbacks were minimized to only getting the descriptor from the ld_free list. Introduce struct rz_dmac_chan::desc to keep track of the currently transferred descriptor. It is cleared in rz_dmac_terminate_all(), referenced from rz_dmac_issue_pending() to determine whether a new transfer can be started, and from rz_dmac_irq_handler_thread() once a descriptor has completed. Finally, the rz_dmac_device_synchronize() was updated with vchan_synchronize() call to ensure the terminated descriptor is freed and the tasklet is killed. With this, residue computation is also simplified, as it can now be handled entirely through the virt-dma APIs. The spin_lock/unlock operations from rz_dmac_irq_handler_thread() were replaced by guard as the final code after rework is simpler this way. As subsequent commits will set the Link End bit on the last descriptor of a transfer, rz_dmac_enable_hw() is also adjusted as part of the full conversion to virt-dma APIs. It no longer checks the channel enable status itself; instead, its callers verify whether the channel is enabled and whether the previous transfer has completed before starting a new one. Tested-by: John Madieu <john.madieu.xa@bp.renesas.com> Signed-off-by: Claudiu Beznea <claudiu.beznea.uj@bp.renesas.com> Tested-by: Tommaso Merciai <tommaso.merciai.xr@bp.renesas.com> Link: https://patch.msgid.link/20260526084710.3491480-10-claudiu.beznea@kernel.org Signed-off-by: Vinod Koul <vkoul@kernel.org>
This commit is contained in:
committed by
Vinod Koul
parent
1dddc864df
commit
daa6d4617b
@@ -79,8 +79,6 @@ struct rz_dmac_chan {
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int mid_rid;
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struct list_head ld_free;
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struct list_head ld_queue;
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struct list_head ld_active;
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struct {
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struct rz_lmdesc *base;
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@@ -299,7 +297,6 @@ static void rz_dmac_enable_hw(struct rz_dmac_chan *channel)
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struct rz_dmac *dmac = to_rz_dmac(chan->device);
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u32 nxla;
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u32 chctrl;
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u32 chstat;
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dev_dbg(dmac->dev, "%s channel %d\n", __func__, channel->index);
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@@ -307,14 +304,11 @@ static void rz_dmac_enable_hw(struct rz_dmac_chan *channel)
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nxla = rz_dmac_lmdesc_addr(channel, channel->lmdesc.head);
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chstat = rz_dmac_ch_readl(channel, CHSTAT, 1);
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if (!(chstat & CHSTAT_EN)) {
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chctrl = (channel->chctrl | CHCTRL_SETEN);
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rz_dmac_ch_writel(channel, nxla, NXLA, 1);
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rz_dmac_ch_writel(channel, channel->chcfg, CHCFG, 1);
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rz_dmac_ch_writel(channel, CHCTRL_SWRST, CHCTRL, 1);
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rz_dmac_ch_writel(channel, chctrl, CHCTRL, 1);
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}
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chctrl = (channel->chctrl | CHCTRL_SETEN);
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rz_dmac_ch_writel(channel, nxla, NXLA, 1);
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rz_dmac_ch_writel(channel, channel->chcfg, CHCFG, 1);
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rz_dmac_ch_writel(channel, CHCTRL_SWRST, CHCTRL, 1);
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rz_dmac_ch_writel(channel, chctrl, CHCTRL, 1);
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}
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static void rz_dmac_disable_hw(struct rz_dmac_chan *channel)
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@@ -426,18 +420,20 @@ static void rz_dmac_prepare_descs_for_slave_sg(struct rz_dmac_chan *channel)
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channel->chctrl = CHCTRL_SETEN;
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}
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static int rz_dmac_xfer_desc(struct rz_dmac_chan *chan)
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static void rz_dmac_xfer_desc(struct rz_dmac_chan *chan)
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{
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struct rz_dmac_desc *d = chan->desc;
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struct virt_dma_desc *vd;
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vd = vchan_next_desc(&chan->vc);
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if (!vd)
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return 0;
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if (!vd) {
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chan->desc = NULL;
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return;
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}
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list_del(&vd->node);
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chan->desc = to_rz_dmac_desc(vd);
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switch (d->type) {
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switch (chan->desc->type) {
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case RZ_DMAC_DESC_MEMCPY:
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rz_dmac_prepare_desc_for_memcpy(chan);
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break;
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@@ -445,14 +441,9 @@ static int rz_dmac_xfer_desc(struct rz_dmac_chan *chan)
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case RZ_DMAC_DESC_SLAVE_SG:
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rz_dmac_prepare_descs_for_slave_sg(chan);
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break;
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default:
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return -EINVAL;
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}
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rz_dmac_enable_hw(chan);
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return 0;
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}
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/*
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@@ -494,8 +485,6 @@ static void rz_dmac_free_chan_resources(struct dma_chan *chan)
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rz_lmdesc_setup(channel, channel->lmdesc.base);
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rz_dmac_disable_hw(channel);
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list_splice_tail_init(&channel->ld_active, &channel->ld_free);
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list_splice_tail_init(&channel->ld_queue, &channel->ld_free);
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if (channel->mid_rid >= 0) {
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clear_bit(channel->mid_rid, dmac->modules);
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@@ -504,13 +493,19 @@ static void rz_dmac_free_chan_resources(struct dma_chan *chan)
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spin_unlock_irqrestore(&channel->vc.lock, flags);
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vchan_free_chan_resources(&channel->vc);
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spin_lock_irqsave(&channel->vc.lock, flags);
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list_for_each_entry_safe(desc, _desc, &channel->ld_free, node) {
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list_del(&desc->node);
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kfree(desc);
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channel->descs_allocated--;
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}
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INIT_LIST_HEAD(&channel->ld_free);
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vchan_free_chan_resources(&channel->vc);
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spin_unlock_irqrestore(&channel->vc.lock, flags);
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}
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static struct dma_async_tx_descriptor *
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@@ -529,15 +524,15 @@ rz_dmac_prep_dma_memcpy(struct dma_chan *chan, dma_addr_t dest, dma_addr_t src,
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if (!desc)
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return NULL;
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desc->type = RZ_DMAC_DESC_MEMCPY;
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desc->src = src;
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desc->dest = dest;
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desc->len = len;
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desc->direction = DMA_MEM_TO_MEM;
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list_move_tail(channel->ld_free.next, &channel->ld_queue);
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list_del(&desc->node);
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}
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desc->type = RZ_DMAC_DESC_MEMCPY;
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desc->src = src;
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desc->dest = dest;
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desc->len = len;
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desc->direction = DMA_MEM_TO_MEM;
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return vchan_tx_prep(&channel->vc, &desc->vd, flags);
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}
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@@ -558,23 +553,23 @@ rz_dmac_prep_slave_sg(struct dma_chan *chan, struct scatterlist *sgl,
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if (!desc)
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return NULL;
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for_each_sg(sgl, sg, sg_len, i)
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dma_length += sg_dma_len(sg);
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desc->type = RZ_DMAC_DESC_SLAVE_SG;
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desc->sg = sgl;
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desc->sgcount = sg_len;
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desc->len = dma_length;
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desc->direction = direction;
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if (direction == DMA_DEV_TO_MEM)
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desc->src = channel->src_per_address;
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else
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desc->dest = channel->dst_per_address;
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list_move_tail(channel->ld_free.next, &channel->ld_queue);
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list_del(&desc->node);
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}
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for_each_sg(sgl, sg, sg_len, i)
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dma_length += sg_dma_len(sg);
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desc->type = RZ_DMAC_DESC_SLAVE_SG;
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desc->sg = sgl;
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desc->sgcount = sg_len;
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desc->len = dma_length;
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desc->direction = direction;
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if (direction == DMA_DEV_TO_MEM)
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desc->src = channel->src_per_address;
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else
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desc->dest = channel->dst_per_address;
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return vchan_tx_prep(&channel->vc, &desc->vd, flags);
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}
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@@ -588,8 +583,11 @@ static int rz_dmac_terminate_all(struct dma_chan *chan)
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rz_dmac_disable_hw(channel);
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rz_lmdesc_setup(channel, channel->lmdesc.base);
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list_splice_tail_init(&channel->ld_active, &channel->ld_free);
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list_splice_tail_init(&channel->ld_queue, &channel->ld_free);
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if (channel->desc) {
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vchan_terminate_vdesc(&channel->desc->vd);
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channel->desc = NULL;
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}
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vchan_get_all_descriptors(&channel->vc, &head);
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spin_unlock_irqrestore(&channel->vc.lock, flags);
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vchan_dma_desc_free_list(&channel->vc, &head);
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@@ -600,25 +598,16 @@ static int rz_dmac_terminate_all(struct dma_chan *chan)
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static void rz_dmac_issue_pending(struct dma_chan *chan)
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{
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struct rz_dmac_chan *channel = to_rz_dmac_chan(chan);
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struct rz_dmac *dmac = to_rz_dmac(chan->device);
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struct rz_dmac_desc *desc;
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unsigned long flags;
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spin_lock_irqsave(&channel->vc.lock, flags);
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if (!list_empty(&channel->ld_queue)) {
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desc = list_first_entry(&channel->ld_queue,
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struct rz_dmac_desc, node);
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channel->desc = desc;
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if (vchan_issue_pending(&channel->vc)) {
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if (rz_dmac_xfer_desc(channel) < 0)
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dev_warn(dmac->dev, "ch: %d couldn't issue DMA xfer\n",
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channel->index);
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else
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list_move_tail(channel->ld_queue.next,
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&channel->ld_active);
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}
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}
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/*
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* Issue the descriptor. If another transfer is already in progress, the
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* issued descriptor will be handled after the current transfer finishes.
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*/
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if (vchan_issue_pending(&channel->vc) && !channel->desc)
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rz_dmac_xfer_desc(channel);
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spin_unlock_irqrestore(&channel->vc.lock, flags);
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}
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@@ -676,13 +665,13 @@ static int rz_dmac_config(struct dma_chan *chan,
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static void rz_dmac_virt_desc_free(struct virt_dma_desc *vd)
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{
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/*
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* Place holder
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* Descriptor allocation is done during alloc_chan_resources and
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* get freed during free_chan_resources.
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* list is used to manage the descriptors and avoid any memory
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* allocation/free during DMA read/write.
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*/
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struct rz_dmac_chan *channel = to_rz_dmac_chan(vd->tx.chan);
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struct virt_dma_chan *vc = to_virt_chan(vd->tx.chan);
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struct rz_dmac_desc *desc = to_rz_dmac_desc(vd);
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guard(spinlock_irqsave)(&vc->lock);
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list_add_tail(&desc->node, &channel->ld_free);
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}
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static void rz_dmac_device_synchronize(struct dma_chan *chan)
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@@ -692,6 +681,8 @@ static void rz_dmac_device_synchronize(struct dma_chan *chan)
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u32 chstat;
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int ret;
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vchan_synchronize(&channel->vc);
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ret = read_poll_timeout(rz_dmac_ch_readl, chstat, !(chstat & CHSTAT_EN),
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100, 100000, false, channel, CHSTAT, 1);
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if (ret < 0)
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@@ -739,58 +730,22 @@ static u32 rz_dmac_calculate_residue_bytes_in_vd(struct rz_dmac_chan *channel,
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static u32 rz_dmac_chan_get_residue(struct rz_dmac_chan *channel,
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dma_cookie_t cookie)
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{
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struct rz_dmac_desc *current_desc, *desc;
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enum dma_status status;
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struct rz_dmac_desc *desc = NULL;
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struct virt_dma_desc *vd;
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u32 crla, crtb, i;
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/* Get current processing virtual descriptor */
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current_desc = list_first_entry_or_null(&channel->ld_active,
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struct rz_dmac_desc, node);
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if (!current_desc)
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return 0;
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vd = vchan_find_desc(&channel->vc, cookie);
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if (vd) {
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/* Descriptor has been issued but not yet processed. */
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desc = to_rz_dmac_desc(vd);
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return desc->len;
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} else if (channel->desc && channel->desc->vd.tx.cookie == cookie) {
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/* Descriptor is currently processed. */
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desc = channel->desc;
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}
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/*
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* If the cookie corresponds to a descriptor that has been completed
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* there is no residue. The same check has already been performed by the
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* caller but without holding the channel lock, so the descriptor could
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* now be complete.
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*/
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status = dma_cookie_status(&channel->vc.chan, cookie, NULL);
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if (status == DMA_COMPLETE)
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return 0;
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/*
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* If the cookie doesn't correspond to the currently processing virtual
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* descriptor then the descriptor hasn't been processed yet, and the
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* residue is equal to the full descriptor size. Also, a client driver
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* is possible to call this function before rz_dmac_irq_handler_thread()
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* runs. In this case, the running descriptor will be the next
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* descriptor, and will appear in the done list. So, if the argument
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* cookie matches the done list's cookie, we can assume the residue is
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* zero.
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*/
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if (cookie != current_desc->vd.tx.cookie) {
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list_for_each_entry(desc, &channel->ld_free, node) {
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if (cookie == desc->vd.tx.cookie)
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return 0;
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}
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list_for_each_entry(desc, &channel->ld_queue, node) {
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if (cookie == desc->vd.tx.cookie)
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return desc->len;
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}
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list_for_each_entry(desc, &channel->ld_active, node) {
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if (cookie == desc->vd.tx.cookie)
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return desc->len;
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}
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/*
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* No descriptor found for the cookie, there's thus no residue.
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* This shouldn't happen if the calling driver passes a correct
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* cookie value.
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*/
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WARN(1, "No descriptor for cookie!");
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if (!desc) {
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/* Descriptor was not found. May be already completed by now. */
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return 0;
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}
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@@ -813,7 +768,7 @@ static u32 rz_dmac_chan_get_residue(struct rz_dmac_chan *channel,
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* Calculate number of bytes transferred in processing virtual descriptor.
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* One virtual descriptor can have many lmdesc.
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*/
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return crtb + rz_dmac_calculate_residue_bytes_in_vd(channel, current_desc, crla);
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return crtb + rz_dmac_calculate_residue_bytes_in_vd(channel, desc, crla);
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}
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static enum dma_status rz_dmac_tx_status(struct dma_chan *chan,
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@@ -824,21 +779,17 @@ static enum dma_status rz_dmac_tx_status(struct dma_chan *chan,
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enum dma_status status;
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u32 residue;
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status = dma_cookie_status(chan, cookie, txstate);
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if (status == DMA_COMPLETE || !txstate)
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return status;
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scoped_guard(spinlock_irqsave, &channel->vc.lock) {
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status = dma_cookie_status(chan, cookie, txstate);
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if (status == DMA_COMPLETE || !txstate)
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return status;
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residue = rz_dmac_chan_get_residue(channel, cookie);
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if (rz_dmac_chan_is_paused(channel))
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if (status == DMA_IN_PROGRESS && rz_dmac_chan_is_paused(channel))
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status = DMA_PAUSED;
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}
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/* if there's no residue and no paused, the cookie is complete */
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if (!residue && status != DMA_PAUSED)
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return DMA_COMPLETE;
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dma_set_residue(txstate, residue);
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return status;
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@@ -918,28 +869,18 @@ static irqreturn_t rz_dmac_irq_handler(int irq, void *dev_id)
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static irqreturn_t rz_dmac_irq_handler_thread(int irq, void *dev_id)
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{
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struct rz_dmac_chan *channel = dev_id;
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struct rz_dmac_desc *desc = NULL;
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unsigned long flags;
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struct rz_dmac_desc *desc;
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spin_lock_irqsave(&channel->vc.lock, flags);
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guard(spinlock_irqsave)(&channel->vc.lock);
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if (list_empty(&channel->ld_active)) {
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/* Someone might have called terminate all */
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goto out;
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}
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desc = channel->desc;
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if (!desc)
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return IRQ_HANDLED;
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desc = list_first_entry(&channel->ld_active, struct rz_dmac_desc, node);
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vchan_cookie_complete(&desc->vd);
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list_move_tail(channel->ld_active.next, &channel->ld_free);
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if (!list_empty(&channel->ld_queue)) {
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desc = list_first_entry(&channel->ld_queue, struct rz_dmac_desc,
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node);
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channel->desc = desc;
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if (rz_dmac_xfer_desc(channel) == 0)
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list_move_tail(channel->ld_queue.next, &channel->ld_active);
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}
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out:
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spin_unlock_irqrestore(&channel->vc.lock, flags);
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channel->desc = NULL;
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rz_dmac_xfer_desc(channel);
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return IRQ_HANDLED;
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}
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@@ -1021,9 +962,7 @@ static int rz_dmac_chan_probe(struct rz_dmac *dmac,
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channel->vc.desc_free = rz_dmac_virt_desc_free;
|
||||
vchan_init(&channel->vc, &dmac->engine);
|
||||
INIT_LIST_HEAD(&channel->ld_queue);
|
||||
INIT_LIST_HEAD(&channel->ld_free);
|
||||
INIT_LIST_HEAD(&channel->ld_active);
|
||||
|
||||
/* Initialize register for each channel */
|
||||
rz_dmac_disable_hw(channel);
|
||||
|
||||
Reference in New Issue
Block a user