ath6kl: Merge scatter gather setup functions for two method
Signed-off-by: Vasanthakumar Thiagarajan <vthiagar@qca.qualcomm.com> Signed-off-by: Kalle Valo <kvalo@qca.qualcomm.com>
This commit is contained in:

committed by
Kalle Valo

parent
18a0f93e53
commit
cfeab10b11
@@ -187,6 +187,7 @@ struct hif_scatter_req {
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struct hif_dev_scat_sup_info {
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int max_scat_entries;
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int max_xfer_szper_scatreq;
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bool virt_scat;
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};
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struct ath6kl_hif_ops {
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@@ -273,7 +273,7 @@ int ath6kldev_submit_scat_req(struct ath6kl_device *dev,
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scat_req->addr, !read ? "async" : "sync",
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(read) ? "rd" : "wr");
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if (!read && dev->virt_scat)
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if (!read && dev->hif_scat_info.virt_scat)
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status = ath6kldev_cp_scat_dma_buf(scat_req, false);
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if (status) {
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@@ -285,7 +285,7 @@ int ath6kldev_submit_scat_req(struct ath6kl_device *dev,
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return status;
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}
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if (dev->virt_scat)
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if (dev->hif_scat_info.virt_scat)
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status = ath6kldev_rw_scatter(dev->ar, scat_req);
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else
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status = ath6kl_hif_scat_req_rw(dev->ar, scat_req);
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@@ -293,7 +293,7 @@ int ath6kldev_submit_scat_req(struct ath6kl_device *dev,
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if (read) {
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/* in sync mode, we can touch the scatter request */
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scat_req->status = status;
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if (!status && dev->virt_scat)
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if (!status && dev->hif_scat_info.virt_scat)
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scat_req->status =
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ath6kldev_cp_scat_dma_buf(scat_req, true);
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}
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@@ -301,78 +301,9 @@ int ath6kldev_submit_scat_req(struct ath6kl_device *dev,
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return status;
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}
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/*
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* function to set up virtual scatter support if HIF
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* layer has not implemented the interface.
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*/
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static int ath6kldev_setup_virt_scat_sup(struct ath6kl_device *dev)
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{
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struct hif_scatter_req *scat_req;
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int buf_sz, scat_req_sz, scat_list_sz;
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int i, status = 0;
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u8 *virt_dma_buf;
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buf_sz = 2 * L1_CACHE_BYTES + ATH6KL_MAX_TRANSFER_SIZE_PER_SCATTER;
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scat_list_sz = (ATH6KL_SCATTER_ENTRIES_PER_REQ - 1) *
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sizeof(struct hif_scatter_item);
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scat_req_sz = sizeof(*scat_req) + scat_list_sz;
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for (i = 0; i < ATH6KL_SCATTER_REQS; i++) {
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scat_req = kzalloc(scat_req_sz, GFP_KERNEL);
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if (!scat_req) {
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status = -ENOMEM;
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break;
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}
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virt_dma_buf = kzalloc(buf_sz, GFP_KERNEL);
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if (!virt_dma_buf) {
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kfree(scat_req);
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status = -ENOMEM;
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break;
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}
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scat_req->virt_dma_buf =
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(u8 *)L1_CACHE_ALIGN((unsigned long)virt_dma_buf);
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/* we emulate a DMA bounce interface */
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hif_scatter_req_add(dev->ar, scat_req);
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}
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if (status)
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ath6kl_hif_cleanup_scatter(dev->ar);
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else {
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dev->hif_scat_info.max_scat_entries =
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ATH6KL_SCATTER_ENTRIES_PER_REQ;
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dev->hif_scat_info.max_xfer_szper_scatreq =
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ATH6KL_MAX_TRANSFER_SIZE_PER_SCATTER;
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dev->virt_scat = true;
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}
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return status;
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}
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int ath6kldev_setup_msg_bndl(struct ath6kl_device *dev, int max_msg_per_trans)
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{
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int status;
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status = ath6kl_hif_enable_scatter(dev->ar, &dev->hif_scat_info);
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if (status) {
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ath6kl_warn("hif does not support scatter requests (%d)\n",
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status);
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/* we can try to use a virtual DMA scatter mechanism */
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status = ath6kldev_setup_virt_scat_sup(dev);
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}
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if (!status)
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ath6kl_dbg(ATH6KL_DBG_ANY, "max scatter items:%d: maxlen:%d\n",
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dev->hif_scat_info.max_scat_entries,
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dev->hif_scat_info.max_xfer_szper_scatreq);
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return status;
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return ath6kl_hif_enable_scatter(dev->ar, &dev->hif_scat_info);
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}
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static int ath6kldev_proc_counter_intr(struct ath6kl_device *dev)
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@@ -87,7 +87,6 @@ struct ath6kl_device {
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int (*msg_pending) (struct htc_target *target, u32 lk_ahds[],
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int *npkts_fetched);
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struct hif_dev_scat_sup_info hif_scat_info;
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bool virt_scat;
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int max_rx_bndl_sz;
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int max_tx_bndl_sz;
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int chk_irq_status_cnt;
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@@ -275,13 +275,17 @@ static int ath6kl_sdio_alloc_prep_scat_req(struct ath6kl_sdio *ar_sdio,
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{
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struct hif_scatter_req *s_req;
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struct bus_request *bus_req;
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int i, scat_req_sz, scat_list_sz, sg_sz = 0;
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int i, scat_req_sz, scat_list_sz, sg_sz, buf_sz;
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u8 *virt_buf;
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scat_list_sz = (n_scat_entry - 1) * sizeof(struct hif_scatter_item);
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scat_req_sz = sizeof(*s_req) + scat_list_sz;
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if (!virt_scat)
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sg_sz = sizeof(struct scatterlist) * n_scat_entry;
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else
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buf_sz = 2 * L1_CACHE_BYTES +
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ATH6KL_MAX_TRANSFER_SIZE_PER_SCATTER;
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for (i = 0; i < n_scat_req; i++) {
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/* allocate the scatter request */
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@@ -289,7 +293,16 @@ static int ath6kl_sdio_alloc_prep_scat_req(struct ath6kl_sdio *ar_sdio,
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if (!s_req)
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return -ENOMEM;
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if (sg_sz) {
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if (virt_scat) {
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virt_buf = kzalloc(buf_sz, GFP_KERNEL);
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if (!virt_buf) {
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kfree(s_req);
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return -ENOMEM;
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}
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s_req->virt_dma_buf =
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(u8 *)L1_CACHE_ALIGN((unsigned long)virt_buf);
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} else {
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/* allocate sglist */
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s_req->sgentries = kzalloc(sg_sz, GFP_KERNEL);
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@@ -303,6 +316,7 @@ static int ath6kl_sdio_alloc_prep_scat_req(struct ath6kl_sdio *ar_sdio,
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bus_req = ath6kl_sdio_alloc_busreq(ar_sdio);
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if (!bus_req) {
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kfree(s_req->sgentries);
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kfree(s_req->virt_dma_buf);
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kfree(s_req);
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return -ENOMEM;
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}
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@@ -629,31 +643,58 @@ static int ath6kl_sdio_enable_scatter(struct ath6kl *ar,
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struct hif_dev_scat_sup_info *pinfo)
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{
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struct ath6kl_sdio *ar_sdio = ath6kl_sdio_priv(ar);
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int ret = 0;
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int ret;
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bool virt_scat = false;
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/* check if host supports scatter and it meets our requirements */
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if (ar_sdio->func->card->host->max_segs < MAX_SCATTER_ENTRIES_PER_REQ) {
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ath6kl_err("hif-scatter: host only supports scatter of : %d entries, need: %d\n",
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ath6kl_err("host only supports scatter of :%d entries, need: %d\n",
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ar_sdio->func->card->host->max_segs,
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MAX_SCATTER_ENTRIES_PER_REQ);
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return -EINVAL;
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virt_scat = true;
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}
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ath6kl_dbg(ATH6KL_DBG_ANY,
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"hif-scatter enabled: max scatter req : %d entries: %d\n",
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MAX_SCATTER_REQUESTS, MAX_SCATTER_ENTRIES_PER_REQ);
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if (!virt_scat) {
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ret = ath6kl_sdio_alloc_prep_scat_req(ar_sdio,
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MAX_SCATTER_ENTRIES_PER_REQ,
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MAX_SCATTER_REQUESTS, virt_scat);
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ret = ath6kl_sdio_alloc_prep_scat_req(ar_sdio,
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MAX_SCATTER_ENTRIES_PER_REQ,
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MAX_SCATTER_REQUESTS, 0);
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if (ret) {
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ath6kl_err("hif-scatter: failed to alloc scatter resources !\n");
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ath6kl_sdio_cleanup_scatter(ar);
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return ret;
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if (!ret) {
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ath6kl_dbg(ATH6KL_DBG_ANY,
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"hif-scatter enabled: max scatter req : %d entries: %d\n",
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MAX_SCATTER_REQUESTS,
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MAX_SCATTER_ENTRIES_PER_REQ);
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pinfo->max_scat_entries = MAX_SCATTER_ENTRIES_PER_REQ;
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pinfo->max_xfer_szper_scatreq =
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MAX_SCATTER_REQ_TRANSFER_SIZE;
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} else {
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ath6kl_sdio_cleanup_scatter(ar);
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ath6kl_warn("hif scatter resource setup failed, trying virtual scatter method\n");
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}
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}
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pinfo->max_scat_entries = MAX_SCATTER_ENTRIES_PER_REQ;
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pinfo->max_xfer_szper_scatreq = MAX_SCATTER_REQ_TRANSFER_SIZE;
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if (virt_scat || ret) {
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ret = ath6kl_sdio_alloc_prep_scat_req(ar_sdio,
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ATH6KL_SCATTER_ENTRIES_PER_REQ,
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ATH6KL_SCATTER_REQS, virt_scat);
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if (ret) {
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ath6kl_err("failed to alloc virtual scatter resources !\n");
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ath6kl_sdio_cleanup_scatter(ar);
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return ret;
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}
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ath6kl_dbg(ATH6KL_DBG_ANY,
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"Vitual scatter enabled, max_scat_req:%d, entries:%d\n",
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ATH6KL_SCATTER_REQS, ATH6KL_SCATTER_ENTRIES_PER_REQ);
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pinfo->max_scat_entries = ATH6KL_SCATTER_ENTRIES_PER_REQ;
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pinfo->max_xfer_szper_scatreq =
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ATH6KL_MAX_TRANSFER_SIZE_PER_SCATTER;
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}
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pinfo->virt_scat = virt_scat;
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return 0;
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}
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