htc.c 72.8 KB
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/*
 * Copyright (c) 2007-2011 Atheros Communications Inc.
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 * Copyright (c) 2011-2012 Qualcomm Atheros, Inc.
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 *
 * Permission to use, copy, modify, and/or distribute this software for any
 * purpose with or without fee is hereby granted, provided that the above
 * copyright notice and this permission notice appear in all copies.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
 */

#include "core.h"
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#include "hif.h"
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#include "debug.h"
#include "hif-ops.h"
#include <asm/unaligned.h>

#define CALC_TXRX_PADDED_LEN(dev, len)  (__ALIGN_MASK((len), (dev)->block_mask))

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/* threshold to re-enable Tx bundling for an AC*/
#define TX_RESUME_BUNDLE_THRESHOLD	1500

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/* Functions for Tx credit handling */
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static void ath6kl_credit_deposit(struct ath6kl_htc_credit_info *cred_info,
				  struct htc_endpoint_credit_dist *ep_dist,
				  int credits)
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{
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	ath6kl_dbg(ATH6KL_DBG_CREDIT, "credit deposit ep %d credits %d\n",
		   ep_dist->endpoint, credits);

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	ep_dist->credits += credits;
	ep_dist->cred_assngd += credits;
	cred_info->cur_free_credits -= credits;
}

static void ath6kl_credit_init(struct ath6kl_htc_credit_info *cred_info,
			       struct list_head *ep_list,
			       int tot_credits)
{
	struct htc_endpoint_credit_dist *cur_ep_dist;
	int count;

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	ath6kl_dbg(ATH6KL_DBG_CREDIT, "credit init total %d\n", tot_credits);

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	cred_info->cur_free_credits = tot_credits;
	cred_info->total_avail_credits = tot_credits;

	list_for_each_entry(cur_ep_dist, ep_list, list) {
		if (cur_ep_dist->endpoint == ENDPOINT_0)
			continue;

		cur_ep_dist->cred_min = cur_ep_dist->cred_per_msg;

		if (tot_credits > 4) {
			if ((cur_ep_dist->svc_id == WMI_DATA_BK_SVC) ||
			    (cur_ep_dist->svc_id == WMI_DATA_BE_SVC)) {
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				ath6kl_credit_deposit(cred_info,
						      cur_ep_dist,
						      cur_ep_dist->cred_min);
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				cur_ep_dist->dist_flags |= HTC_EP_ACTIVE;
			}
		}

		if (cur_ep_dist->svc_id == WMI_CONTROL_SVC) {
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			ath6kl_credit_deposit(cred_info, cur_ep_dist,
					      cur_ep_dist->cred_min);
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			/*
			 * Control service is always marked active, it
			 * never goes inactive EVER.
			 */
			cur_ep_dist->dist_flags |= HTC_EP_ACTIVE;
		} else if (cur_ep_dist->svc_id == WMI_DATA_BK_SVC)
			/* this is the lowest priority data endpoint */
			/* FIXME: this looks fishy, check */
			cred_info->lowestpri_ep_dist = cur_ep_dist->list;

		/*
		 * Streams have to be created (explicit | implicit) for all
		 * kinds of traffic. BE endpoints are also inactive in the
		 * beginning. When BE traffic starts it creates implicit
		 * streams that redistributes credits.
		 *
		 * Note: all other endpoints have minimums set but are
		 * initially given NO credits. credits will be distributed
		 * as traffic activity demands
		 */
	}

	WARN_ON(cred_info->cur_free_credits <= 0);

	list_for_each_entry(cur_ep_dist, ep_list, list) {
		if (cur_ep_dist->endpoint == ENDPOINT_0)
			continue;

		if (cur_ep_dist->svc_id == WMI_CONTROL_SVC)
			cur_ep_dist->cred_norm = cur_ep_dist->cred_per_msg;
		else {
			/*
			 * For the remaining data endpoints, we assume that
			 * each cred_per_msg are the same. We use a simple
			 * calculation here, we take the remaining credits
			 * and determine how many max messages this can
			 * cover and then set each endpoint's normal value
			 * equal to 3/4 this amount.
			 */
			count = (cred_info->cur_free_credits /
				 cur_ep_dist->cred_per_msg)
				* cur_ep_dist->cred_per_msg;
			count = (count * 3) >> 2;
			count = max(count, cur_ep_dist->cred_per_msg);
			cur_ep_dist->cred_norm = count;

		}
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		ath6kl_dbg(ATH6KL_DBG_CREDIT,
			   "credit ep %d svc_id %d credits %d per_msg %d norm %d min %d\n",
			   cur_ep_dist->endpoint,
			   cur_ep_dist->svc_id,
			   cur_ep_dist->credits,
			   cur_ep_dist->cred_per_msg,
			   cur_ep_dist->cred_norm,
			   cur_ep_dist->cred_min);
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	}
}

/* initialize and setup credit distribution */
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int ath6kl_credit_setup(void *htc_handle,
			struct ath6kl_htc_credit_info *cred_info)
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{
	u16 servicepriority[5];

	memset(cred_info, 0, sizeof(struct ath6kl_htc_credit_info));

	servicepriority[0] = WMI_CONTROL_SVC;  /* highest */
	servicepriority[1] = WMI_DATA_VO_SVC;
	servicepriority[2] = WMI_DATA_VI_SVC;
	servicepriority[3] = WMI_DATA_BE_SVC;
	servicepriority[4] = WMI_DATA_BK_SVC; /* lowest */

	/* set priority list */
	ath6kl_htc_set_credit_dist(htc_handle, cred_info, servicepriority, 5);

	return 0;
}

/* reduce an ep's credits back to a set limit */
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static void ath6kl_credit_reduce(struct ath6kl_htc_credit_info *cred_info,
				 struct htc_endpoint_credit_dist *ep_dist,
				 int limit)
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{
	int credits;

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	ath6kl_dbg(ATH6KL_DBG_CREDIT, "credit reduce ep %d limit %d\n",
		   ep_dist->endpoint, limit);

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	ep_dist->cred_assngd = limit;

	if (ep_dist->credits <= limit)
		return;

	credits = ep_dist->credits - limit;
	ep_dist->credits -= credits;
	cred_info->cur_free_credits += credits;
}

static void ath6kl_credit_update(struct ath6kl_htc_credit_info *cred_info,
				 struct list_head *epdist_list)
{
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	struct htc_endpoint_credit_dist *cur_list;
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	list_for_each_entry(cur_list, epdist_list, list) {
		if (cur_list->endpoint == ENDPOINT_0)
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			continue;

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		if (cur_list->cred_to_dist > 0) {
			cur_list->credits += cur_list->cred_to_dist;
			cur_list->cred_to_dist = 0;

			if (cur_list->credits > cur_list->cred_assngd)
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				ath6kl_credit_reduce(cred_info,
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						     cur_list,
						     cur_list->cred_assngd);
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			if (cur_list->credits > cur_list->cred_norm)
				ath6kl_credit_reduce(cred_info, cur_list,
						     cur_list->cred_norm);
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			if (!(cur_list->dist_flags & HTC_EP_ACTIVE)) {
				if (cur_list->txq_depth == 0)
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					ath6kl_credit_reduce(cred_info,
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							     cur_list, 0);
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			}
		}
	}
}

/*
 * HTC has an endpoint that needs credits, ep_dist is the endpoint in
 * question.
 */
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static void ath6kl_credit_seek(struct ath6kl_htc_credit_info *cred_info,
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				struct htc_endpoint_credit_dist *ep_dist)
{
	struct htc_endpoint_credit_dist *curdist_list;
	int credits = 0;
	int need;

	if (ep_dist->svc_id == WMI_CONTROL_SVC)
		goto out;

	if ((ep_dist->svc_id == WMI_DATA_VI_SVC) ||
	    (ep_dist->svc_id == WMI_DATA_VO_SVC))
		if ((ep_dist->cred_assngd >= ep_dist->cred_norm))
			goto out;

	/*
	 * For all other services, we follow a simple algorithm of:
	 *
	 * 1. checking the free pool for credits
	 * 2. checking lower priority endpoints for credits to take
	 */

	credits = min(cred_info->cur_free_credits, ep_dist->seek_cred);

	if (credits >= ep_dist->seek_cred)
		goto out;

	/*
	 * We don't have enough in the free pool, try taking away from
	 * lower priority services The rule for taking away credits:
	 *
	 *   1. Only take from lower priority endpoints
	 *   2. Only take what is allocated above the minimum (never
	 *      starve an endpoint completely)
	 *   3. Only take what you need.
	 */

	list_for_each_entry_reverse(curdist_list,
				    &cred_info->lowestpri_ep_dist,
				    list) {
		if (curdist_list == ep_dist)
			break;

		need = ep_dist->seek_cred - cred_info->cur_free_credits;

		if ((curdist_list->cred_assngd - need) >=
		     curdist_list->cred_min) {
			/*
			 * The current one has been allocated more than
			 * it's minimum and it has enough credits assigned
			 * above it's minimum to fulfill our need try to
			 * take away just enough to fulfill our need.
			 */
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			ath6kl_credit_reduce(cred_info, curdist_list,
					     curdist_list->cred_assngd - need);
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			if (cred_info->cur_free_credits >=
			    ep_dist->seek_cred)
				break;
		}

		if (curdist_list->endpoint == ENDPOINT_0)
			break;
	}

	credits = min(cred_info->cur_free_credits, ep_dist->seek_cred);

out:
	/* did we find some credits? */
	if (credits)
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		ath6kl_credit_deposit(cred_info, ep_dist, credits);
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	ep_dist->seek_cred = 0;
}

/* redistribute credits based on activity change */
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static void ath6kl_credit_redistribute(struct ath6kl_htc_credit_info *info,
				       struct list_head *ep_dist_list)
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{
	struct htc_endpoint_credit_dist *curdist_list;

	list_for_each_entry(curdist_list, ep_dist_list, list) {
		if (curdist_list->endpoint == ENDPOINT_0)
			continue;

		if ((curdist_list->svc_id == WMI_DATA_BK_SVC)  ||
		    (curdist_list->svc_id == WMI_DATA_BE_SVC))
			curdist_list->dist_flags |= HTC_EP_ACTIVE;

		if ((curdist_list->svc_id != WMI_CONTROL_SVC) &&
		    !(curdist_list->dist_flags & HTC_EP_ACTIVE)) {
			if (curdist_list->txq_depth == 0)
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				ath6kl_credit_reduce(info, curdist_list, 0);
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			else
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				ath6kl_credit_reduce(info,
						     curdist_list,
						     curdist_list->cred_min);
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		}
	}
}

/*
 *
 * This function is invoked whenever endpoints require credit
 * distributions. A lock is held while this function is invoked, this
 * function shall NOT block. The ep_dist_list is a list of distribution
 * structures in prioritized order as defined by the call to the
 * htc_set_credit_dist() api.
 */
static void ath6kl_credit_distribute(struct ath6kl_htc_credit_info *cred_info,
				     struct list_head *ep_dist_list,
			      enum htc_credit_dist_reason reason)
{
	switch (reason) {
	case HTC_CREDIT_DIST_SEND_COMPLETE:
		ath6kl_credit_update(cred_info, ep_dist_list);
		break;
	case HTC_CREDIT_DIST_ACTIVITY_CHANGE:
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		ath6kl_credit_redistribute(cred_info, ep_dist_list);
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		break;
	default:
		break;
	}

	WARN_ON(cred_info->cur_free_credits > cred_info->total_avail_credits);
	WARN_ON(cred_info->cur_free_credits < 0);
}

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static void ath6kl_htc_tx_buf_align(u8 **buf, unsigned long len)
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{
	u8 *align_addr;

	if (!IS_ALIGNED((unsigned long) *buf, 4)) {
		align_addr = PTR_ALIGN(*buf - 4, 4);
		memmove(align_addr, *buf, len);
		*buf = align_addr;
	}
}

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static void ath6kl_htc_tx_prep_pkt(struct htc_packet *packet, u8 flags,
				   int ctrl0, int ctrl1)
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{
	struct htc_frame_hdr *hdr;

	packet->buf -= HTC_HDR_LENGTH;
	hdr =  (struct htc_frame_hdr *)packet->buf;

	/* Endianess? */
	put_unaligned((u16)packet->act_len, &hdr->payld_len);
	hdr->flags = flags;
	hdr->eid = packet->endpoint;
	hdr->ctrl[0] = ctrl0;
	hdr->ctrl[1] = ctrl1;
}

static void htc_reclaim_txctrl_buf(struct htc_target *target,
				   struct htc_packet *pkt)
{
	spin_lock_bh(&target->htc_lock);
	list_add_tail(&pkt->list, &target->free_ctrl_txbuf);
	spin_unlock_bh(&target->htc_lock);
}

static struct htc_packet *htc_get_control_buf(struct htc_target *target,
					      bool tx)
{
	struct htc_packet *packet = NULL;
	struct list_head *buf_list;

	buf_list = tx ? &target->free_ctrl_txbuf : &target->free_ctrl_rxbuf;

	spin_lock_bh(&target->htc_lock);

	if (list_empty(buf_list)) {
		spin_unlock_bh(&target->htc_lock);
		return NULL;
	}

	packet = list_first_entry(buf_list, struct htc_packet, list);
	list_del(&packet->list);
	spin_unlock_bh(&target->htc_lock);

	if (tx)
		packet->buf = packet->buf_start + HTC_HDR_LENGTH;

	return packet;
}

static void htc_tx_comp_update(struct htc_target *target,
			       struct htc_endpoint *endpoint,
			       struct htc_packet *packet)
{
	packet->completion = NULL;
	packet->buf += HTC_HDR_LENGTH;

	if (!packet->status)
		return;

	ath6kl_err("req failed (status:%d, ep:%d, len:%d creds:%d)\n",
		   packet->status, packet->endpoint, packet->act_len,
		   packet->info.tx.cred_used);

	/* on failure to submit, reclaim credits for this packet */
	spin_lock_bh(&target->tx_lock);
	endpoint->cred_dist.cred_to_dist +=
				packet->info.tx.cred_used;
	endpoint->cred_dist.txq_depth = get_queue_depth(&endpoint->txq);

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	ath6kl_dbg(ATH6KL_DBG_HTC, "htc tx ctxt 0x%p dist 0x%p\n",
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		   target->credit_info, &target->cred_dist_list);
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	ath6kl_credit_distribute(target->credit_info,
				 &target->cred_dist_list,
				 HTC_CREDIT_DIST_SEND_COMPLETE);
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	spin_unlock_bh(&target->tx_lock);
}

static void htc_tx_complete(struct htc_endpoint *endpoint,
			    struct list_head *txq)
{
	if (list_empty(txq))
		return;

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	ath6kl_dbg(ATH6KL_DBG_HTC,
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		   "htc tx complete ep %d pkts %d\n",
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		   endpoint->eid, get_queue_depth(txq));

	ath6kl_tx_complete(endpoint->target->dev->ar, txq);
}

static void htc_tx_comp_handler(struct htc_target *target,
				struct htc_packet *packet)
{
	struct htc_endpoint *endpoint = &target->endpoint[packet->endpoint];
	struct list_head container;

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	ath6kl_dbg(ATH6KL_DBG_HTC, "htc tx complete seqno %d\n",
		   packet->info.tx.seqno);

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	htc_tx_comp_update(target, endpoint, packet);
	INIT_LIST_HEAD(&container);
	list_add_tail(&packet->list, &container);
	/* do completion */
	htc_tx_complete(endpoint, &container);
}

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static void htc_async_tx_scat_complete(struct htc_target *target,
				       struct hif_scatter_req *scat_req)
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{
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	struct htc_endpoint *endpoint;
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	struct htc_packet *packet;
	struct list_head tx_compq;
	int i;

	INIT_LIST_HEAD(&tx_compq);

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	ath6kl_dbg(ATH6KL_DBG_HTC,
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		   "htc tx scat complete len %d entries %d\n",
		   scat_req->len, scat_req->scat_entries);
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	if (scat_req->status)
		ath6kl_err("send scatter req failed: %d\n", scat_req->status);

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	packet = scat_req->scat_list[0].packet;
	endpoint = &target->endpoint[packet->endpoint];

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	/* walk through the scatter list and process */
	for (i = 0; i < scat_req->scat_entries; i++) {
		packet = scat_req->scat_list[i].packet;
		if (!packet) {
			WARN_ON(1);
			return;
		}

		packet->status = scat_req->status;
		htc_tx_comp_update(target, endpoint, packet);
		list_add_tail(&packet->list, &tx_compq);
	}

	/* free scatter request */
	hif_scatter_req_add(target->dev->ar, scat_req);

	/* complete all packets */
	htc_tx_complete(endpoint, &tx_compq);
}

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static int ath6kl_htc_tx_issue(struct htc_target *target,
			       struct htc_packet *packet)
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{
	int status;
	bool sync = false;
	u32 padded_len, send_len;

	if (!packet->completion)
		sync = true;

	send_len = packet->act_len + HTC_HDR_LENGTH;

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	padded_len = CALC_TXRX_PADDED_LEN(target, send_len);
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	ath6kl_dbg(ATH6KL_DBG_HTC,
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		   "htc tx issue len %d seqno %d padded_len %d mbox 0x%X %s\n",
		   send_len, packet->info.tx.seqno, padded_len,
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		   target->dev->ar->mbox_info.htc_addr,
		   sync ? "sync" : "async");
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	if (sync) {
		status = hif_read_write_sync(target->dev->ar,
				target->dev->ar->mbox_info.htc_addr,
				 packet->buf, padded_len,
				 HIF_WR_SYNC_BLOCK_INC);

		packet->status = status;
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		packet->buf += HTC_HDR_LENGTH;
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	} else
		status = hif_write_async(target->dev->ar,
				target->dev->ar->mbox_info.htc_addr,
				packet->buf, padded_len,
				HIF_WR_ASYNC_BLOCK_INC, packet);

	return status;
}

static int htc_check_credits(struct htc_target *target,
			     struct htc_endpoint *ep, u8 *flags,
			     enum htc_endpoint_id eid, unsigned int len,
			     int *req_cred)
{

	*req_cred = (len > target->tgt_cred_sz) ?
		     DIV_ROUND_UP(len, target->tgt_cred_sz) : 1;

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	ath6kl_dbg(ATH6KL_DBG_CREDIT, "credit check need %d got %d\n",
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		   *req_cred, ep->cred_dist.credits);

	if (ep->cred_dist.credits < *req_cred) {
		if (eid == ENDPOINT_0)
			return -EINVAL;

		/* Seek more credits */
		ep->cred_dist.seek_cred = *req_cred - ep->cred_dist.credits;

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		ath6kl_credit_seek(target->credit_info, &ep->cred_dist);
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		ep->cred_dist.seek_cred = 0;

		if (ep->cred_dist.credits < *req_cred) {
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			ath6kl_dbg(ATH6KL_DBG_CREDIT,
				   "credit not found for ep %d\n",
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				   eid);
			return -EINVAL;
		}
	}

	ep->cred_dist.credits -= *req_cred;
	ep->ep_st.cred_cosumd += *req_cred;

	 /* When we are getting low on credits, ask for more */
	if (ep->cred_dist.credits < ep->cred_dist.cred_per_msg) {
		ep->cred_dist.seek_cred =
		ep->cred_dist.cred_per_msg - ep->cred_dist.credits;

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		ath6kl_credit_seek(target->credit_info, &ep->cred_dist);
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		/* see if we were successful in getting more */
		if (ep->cred_dist.credits < ep->cred_dist.cred_per_msg) {
			/* tell the target we need credits ASAP! */
			*flags |= HTC_FLAGS_NEED_CREDIT_UPDATE;
			ep->ep_st.cred_low_indicate += 1;
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			ath6kl_dbg(ATH6KL_DBG_CREDIT,
				   "credit we need credits asap\n");
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		}
	}

	return 0;
}

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static void ath6kl_htc_tx_pkts_get(struct htc_target *target,
				   struct htc_endpoint *endpoint,
				   struct list_head *queue)
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{
	int req_cred;
	u8 flags;
	struct htc_packet *packet;
	unsigned int len;

	while (true) {

		flags = 0;

		if (list_empty(&endpoint->txq))
			break;
		packet = list_first_entry(&endpoint->txq, struct htc_packet,
					  list);

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		ath6kl_dbg(ATH6KL_DBG_HTC,
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			   "htc tx got packet 0x%p queue depth %d\n",
			   packet, get_queue_depth(&endpoint->txq));
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		len = CALC_TXRX_PADDED_LEN(target,
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					   packet->act_len + HTC_HDR_LENGTH);

		if (htc_check_credits(target, endpoint, &flags,
				      packet->endpoint, len, &req_cred))
			break;

		/* now we can fully move onto caller's queue */
		packet = list_first_entry(&endpoint->txq, struct htc_packet,
					  list);
		list_move_tail(&packet->list, queue);

		/* save the number of credits this packet consumed */
		packet->info.tx.cred_used = req_cred;

		/* all TX packets are handled asynchronously */
		packet->completion = htc_tx_comp_handler;
		packet->context = target;
		endpoint->ep_st.tx_issued += 1;

		/* save send flags */
		packet->info.tx.flags = flags;
		packet->info.tx.seqno = endpoint->seqno;
		endpoint->seqno++;
	}
}

/* See if the padded tx length falls on a credit boundary */
static int htc_get_credit_padding(unsigned int cred_sz, int *len,
				  struct htc_endpoint *ep)
{
	int rem_cred, cred_pad;

	rem_cred = *len % cred_sz;

	/* No padding needed */
	if  (!rem_cred)
		return 0;

	if (!(ep->conn_flags & HTC_FLGS_TX_BNDL_PAD_EN))
		return -1;

	/*
	 * The transfer consumes a "partial" credit, this
	 * packet cannot be bundled unless we add
	 * additional "dummy" padding (max 255 bytes) to
	 * consume the entire credit.
	 */
	cred_pad = *len < cred_sz ? (cred_sz - *len) : rem_cred;

	if ((cred_pad > 0) && (cred_pad <= 255))
		*len += cred_pad;
	else
		/* The amount of padding is too large, send as non-bundled */
		return -1;

	return cred_pad;
}

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static int ath6kl_htc_tx_setup_scat_list(struct htc_target *target,
					 struct htc_endpoint *endpoint,
					 struct hif_scatter_req *scat_req,
					 int n_scat,
					 struct list_head *queue)
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{
	struct htc_packet *packet;
	int i, len, rem_scat, cred_pad;
	int status = 0;
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	u8 flags;
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	rem_scat = target->max_tx_bndl_sz;
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	for (i = 0; i < n_scat; i++) {
		scat_req->scat_list[i].packet = NULL;

		if (list_empty(queue))
			break;

		packet = list_first_entry(queue, struct htc_packet, list);
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		len = CALC_TXRX_PADDED_LEN(target,
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					   packet->act_len + HTC_HDR_LENGTH);

		cred_pad = htc_get_credit_padding(target->tgt_cred_sz,
						  &len, endpoint);
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		if (cred_pad < 0 || rem_scat < len) {
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			status = -ENOSPC;
			break;
		}

		rem_scat -= len;
		/* now remove it from the queue */
		list_del(&packet->list);

		scat_req->scat_list[i].packet = packet;
		/* prepare packet and flag message as part of a send bundle */
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		flags = packet->info.tx.flags | HTC_FLAGS_SEND_BUNDLE;
		ath6kl_htc_tx_prep_pkt(packet, flags,
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				       cred_pad, packet->info.tx.seqno);
705
		/* Make sure the buffer is 4-byte aligned */
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		ath6kl_htc_tx_buf_align(&packet->buf,
					packet->act_len + HTC_HDR_LENGTH);
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		scat_req->scat_list[i].buf = packet->buf;
		scat_req->scat_list[i].len = len;

		scat_req->len += len;
		scat_req->scat_entries++;
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		ath6kl_dbg(ATH6KL_DBG_HTC,
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			   "htc tx adding (%d) pkt 0x%p seqno %d len %d remaining %d\n",
			   i, packet, packet->info.tx.seqno, len, rem_scat);
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	}

	/* Roll back scatter setup in case of any failure */
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	if (scat_req->scat_entries < HTC_MIN_HTC_MSGS_TO_BUNDLE) {
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		for (i = scat_req->scat_entries - 1; i >= 0; i--) {
			packet = scat_req->scat_list[i].packet;
			if (packet) {
				packet->buf += HTC_HDR_LENGTH;
				list_add(&packet->list, queue);
			}
		}
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		return -EAGAIN;
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	}

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	return status;
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}

/*
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 * Drain a queue and send as bundles this function may return without fully
 * draining the queue when
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 *
 *    1. scatter resources are exhausted
 *    2. a message that will consume a partial credit will stop the
 *    bundling process early
 *    3. we drop below the minimum number of messages for a bundle
 */
742 743 744
static void ath6kl_htc_tx_bundle(struct htc_endpoint *endpoint,
				 struct list_head *queue,
				 int *sent_bundle, int *n_bundle_pkts)
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{
	struct htc_target *target = endpoint->target;
	struct hif_scatter_req *scat_req = NULL;
	int n_scat, n_sent_bundle = 0, tot_pkts_bundle = 0;
749
	int status;
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	u32 txb_mask;
	u8 ac = WMM_NUM_AC;

	if ((HTC_CTRL_RSVD_SVC != endpoint->svc_id) ||
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	    (WMI_CONTROL_SVC != endpoint->svc_id))
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		ac = target->dev->ar->ep2ac_map[endpoint->eid];
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	while (true) {
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		status = 0;
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		n_scat = get_queue_depth(queue);
		n_scat = min(n_scat, target->msg_per_bndl_max);

		if (n_scat < HTC_MIN_HTC_MSGS_TO_BUNDLE)
			/* not enough to bundle */
			break;

		scat_req = hif_scatter_req_get(target->dev->ar);

		if (!scat_req) {
			/* no scatter resources  */
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			ath6kl_dbg(ATH6KL_DBG_HTC,
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				   "htc tx no more scatter resources\n");
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			break;
		}

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		if ((ac < WMM_NUM_AC) && (ac != WMM_AC_BK)) {
			if (WMM_AC_BE == ac)
				/*
				 * BE, BK have priorities and bit
				 * positions reversed
				 */
				txb_mask = (1 << WMM_AC_BK);
			else
				/*
				 * any AC with priority lower than
				 * itself
				 */
				txb_mask = ((1 << ac) - 1);
		/*
		 * when the scatter request resources drop below a
		 * certain threshold, disable Tx bundling for all
		 * AC's with priority lower than the current requesting
		 * AC. Otherwise re-enable Tx bundling for them
		 */
		if (scat_req->scat_q_depth < ATH6KL_SCATTER_REQS)
			target->tx_bndl_mask &= ~txb_mask;
		else
			target->tx_bndl_mask |= txb_mask;
		}

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		ath6kl_dbg(ATH6KL_DBG_HTC, "htc tx pkts to scatter: %d\n",
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			   n_scat);

		scat_req->len = 0;
		scat_req->scat_entries = 0;

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		status = ath6kl_htc_tx_setup_scat_list(target, endpoint,
						       scat_req, n_scat,
						       queue);
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		if (status == -EAGAIN) {
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			hif_scatter_req_add(target->dev->ar, scat_req);
			break;
		}

		/* send path is always asynchronous */
		scat_req->complete = htc_async_tx_scat_complete;
		n_sent_bundle++;
		tot_pkts_bundle += scat_req->scat_entries;

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		ath6kl_dbg(ATH6KL_DBG_HTC,
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			   "htc tx scatter bytes %d entries %d\n",
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			   scat_req->len, scat_req->scat_entries);
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		ath6kl_hif_submit_scat_req(target->dev, scat_req, false);
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		if (status)
			break;
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	}

	*sent_bundle = n_sent_bundle;
	*n_bundle_pkts = tot_pkts_bundle;
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	ath6kl_dbg(ATH6KL_DBG_HTC, "htc tx bundle sent %d pkts\n",
		   n_sent_bundle);
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	return;
}

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static void ath6kl_htc_tx_from_queue(struct htc_target *target,
				     struct htc_endpoint *endpoint)
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{
	struct list_head txq;
	struct htc_packet *packet;
	int bundle_sent;
	int n_pkts_bundle;
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	u8 ac = WMM_NUM_AC;
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	spin_lock_bh(&target->tx_lock);

	endpoint->tx_proc_cnt++;
	if (endpoint->tx_proc_cnt > 1) {
		endpoint->tx_proc_cnt--;
		spin_unlock_bh(&target->tx_lock);
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		ath6kl_dbg(ATH6KL_DBG_HTC, "htc tx busy\n");
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		return;
	}

	/*
	 * drain the endpoint TX queue for transmission as long
	 * as we have enough credits.
	 */
	INIT_LIST_HEAD(&txq);

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	if ((HTC_CTRL_RSVD_SVC != endpoint->svc_id) ||
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	    (WMI_CONTROL_SVC != endpoint->svc_id))
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		ac = target->dev->ar->ep2ac_map[endpoint->eid];

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	while (true) {

		if (list_empty(&endpoint->txq))
			break;

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		ath6kl_htc_tx_pkts_get(target, endpoint, &txq);
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		if (list_empty(&txq))
			break;

		spin_unlock_bh(&target->tx_lock);

		bundle_sent = 0;
		n_pkts_bundle = 0;

		while (true) {
			/* try to send a bundle on each pass */
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			if ((target->tx_bndl_mask) &&
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			    (get_queue_depth(&txq) >=
			    HTC_MIN_HTC_MSGS_TO_BUNDLE)) {
				int temp1 = 0, temp2 = 0;

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				/* check if bundling is enabled for an AC */
				if (target->tx_bndl_mask & (1 << ac)) {
					ath6kl_htc_tx_bundle(endpoint, &txq,
							     &temp1, &temp2);
					bundle_sent += temp1;
					n_pkts_bundle += temp2;
				}
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			}

			if (list_empty(&txq))
				break;

			packet = list_first_entry(&txq, struct htc_packet,
						  list);
			list_del(&packet->list);

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			ath6kl_htc_tx_prep_pkt(packet, packet->info.tx.flags,
					       0, packet->info.tx.seqno);
			ath6kl_htc_tx_issue(target, packet);
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		}

		spin_lock_bh(&target->tx_lock);

		endpoint->ep_st.tx_bundles += bundle_sent;
		endpoint->ep_st.tx_pkt_bundled += n_pkts_bundle;
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		/*
		 * if an AC has bundling disabled and no tx bundling
		 * has occured continously for a certain number of TX,
		 * enable tx bundling for this AC
		 */
		if (!bundle_sent) {
			if (!(target->tx_bndl_mask & (1 << ac)) &&
920
			    (ac < WMM_NUM_AC)) {
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				if (++target->ac_tx_count[ac] >=
					TX_RESUME_BUNDLE_THRESHOLD) {
					target->ac_tx_count[ac] = 0;
					target->tx_bndl_mask |= (1 << ac);
				}
			}
		} else {
			/* tx bundling will reset the counter */
			if (ac < WMM_NUM_AC)
				target->ac_tx_count[ac] = 0;
		}
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	}

	endpoint->tx_proc_cnt = 0;
	spin_unlock_bh(&target->tx_lock);
}

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static bool ath6kl_htc_tx_try(struct htc_target *target,
			      struct htc_endpoint *endpoint,
			      struct htc_packet *tx_pkt)
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{
	struct htc_ep_callbacks ep_cb;
	int txq_depth;
	bool overflow = false;

	ep_cb = endpoint->ep_cb;

	spin_lock_bh(&target->tx_lock);
	txq_depth = get_queue_depth(&endpoint->txq);
	spin_unlock_bh(&target->tx_lock);

	if (txq_depth >= endpoint->max_txq_depth)
		overflow = true;

	if (overflow)
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		ath6kl_dbg(ATH6KL_DBG_HTC,
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			   "htc tx overflow ep %d depth %d max %d\n",
			   endpoint->eid, txq_depth,
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			   endpoint->max_txq_depth);

	if (overflow && ep_cb.tx_full) {
		if (ep_cb.tx_full(endpoint->target, tx_pkt) ==
		    HTC_SEND_FULL_DROP) {
			endpoint->ep_st.tx_dropped += 1;
			return false;
		}
	}

	spin_lock_bh(&target->tx_lock);
	list_add_tail(&tx_pkt->list, &endpoint->txq);
	spin_unlock_bh(&target->tx_lock);

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	ath6kl_htc_tx_from_queue(target, endpoint);
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	return true;
}

static void htc_chk_ep_txq(struct htc_target *target)
{
	struct htc_endpoint *endpoint;
	struct htc_endpoint_credit_dist *cred_dist;

	/*
	 * Run through the credit distribution list to see if there are
	 * packets queued. NOTE: no locks need to be taken since the
	 * distribution list is not dynamic (cannot be re-ordered) and we
	 * are not modifying any state.
	 */
	list_for_each_entry(cred_dist, &target->cred_dist_list, list) {
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		endpoint = cred_dist->htc_ep;
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		spin_lock_bh(&target->tx_lock);
		if (!list_empty(&endpoint->txq)) {
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			ath6kl_dbg(ATH6KL_DBG_HTC,
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				   "htc creds ep %d credits %d pkts %d\n",
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				   cred_dist->endpoint,
				   endpoint->cred_dist.credits,
				   get_queue_depth(&endpoint->txq));
			spin_unlock_bh(&target->tx_lock);
			/*
			 * Try to start the stalled queue, this list is
			 * ordered by priority. If there are credits
			 * available the highest priority queue will get a
			 * chance to reclaim credits from lower priority
			 * ones.
			 */
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			ath6kl_htc_tx_from_queue(target, endpoint);
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			spin_lock_bh(&target->tx_lock);
		}
		spin_unlock_bh(&target->tx_lock);
	}
}

static int htc_setup_tx_complete(struct htc_target *target)
{
	struct htc_packet *send_pkt = NULL;
	int status;

	send_pkt = htc_get_control_buf(target, true);

	if (!send_pkt)
		return -ENOMEM;

	if (target->htc_tgt_ver >= HTC_VERSION_2P1) {
		struct htc_setup_comp_ext_msg *setup_comp_ext;
		u32 flags = 0;

		setup_comp_ext =
		    (struct htc_setup_comp_ext_msg *)send_pkt->buf;
		memset(setup_comp_ext, 0, sizeof(*setup_comp_ext));
		setup_comp_ext->msg_id =
			cpu_to_le16(HTC_MSG_SETUP_COMPLETE_EX_ID);

		if (target->msg_per_bndl_max > 0) {
			/* Indicate HTC bundling to the target */
			flags |= HTC_SETUP_COMP_FLG_RX_BNDL_EN;
			setup_comp_ext->msg_per_rxbndl =
						target->msg_per_bndl_max;
		}

		memcpy(&setup_comp_ext->flags, &flags,
		       sizeof(setup_comp_ext->flags));
		set_htc_pkt_info(send_pkt, NULL, (u8 *) setup_comp_ext,
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				 sizeof(struct htc_setup_comp_ext_msg),
				 ENDPOINT_0, HTC_SERVICE_TX_PACKET_TAG);
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	} else {
		struct htc_setup_comp_msg *setup_comp;
		setup_comp = (struct htc_setup_comp_msg *)send_pkt->buf;
		memset(setup_comp, 0, sizeof(struct htc_setup_comp_msg));
		setup_comp->msg_id = cpu_to_le16(HTC_MSG_SETUP_COMPLETE_ID);
		set_htc_pkt_info(send_pkt, NULL, (u8 *) setup_comp,
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				 sizeof(struct htc_setup_comp_msg),
				 ENDPOINT_0, HTC_SERVICE_TX_PACKET_TAG);
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	}

	/* we want synchronous operation */
	send_pkt->completion = NULL;
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	ath6kl_htc_tx_prep_pkt(send_pkt, 0, 0, 0);
	status = ath6kl_htc_tx_issue(target, send_pkt);
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	if (send_pkt != NULL)
		htc_reclaim_txctrl_buf(target, send_pkt);

	return status;
}

1068
void ath6kl_htc_set_credit_dist(struct htc_target *target,
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				struct ath6kl_htc_credit_info *credit_info,
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				u16 srvc_pri_order[], int list_len)
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{
	struct htc_endpoint *endpoint;
	int i, ep;

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	target->credit_info = credit_info;
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	list_add_tail(&target->endpoint[ENDPOINT_0].cred_dist.list,
		      &target->cred_dist_list);

	for (i = 0; i < list_len; i++) {
		for (ep = ENDPOINT_1; ep < ENDPOINT_MAX; ep++) {
			endpoint = &target->endpoint[ep];
			if (endpoint->svc_id == srvc_pri_order[i]) {
				list_add_tail(&endpoint->cred_dist.list,
					      &target->cred_dist_list);
				break;
			}
		}
		if (ep >= ENDPOINT_MAX) {
			WARN_ON(1);
			return;
		}
	}
}

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int ath6kl_htc_tx(struct htc_target *target, struct htc_packet *packet)
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{
	struct htc_endpoint *endpoint;
	struct list_head queue;

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	ath6kl_dbg(ATH6KL_DBG_HTC,
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		   "htc tx ep id %d buf 0x%p len %d\n",
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		   packet->endpoint, packet->buf, packet->act_len);

	if (packet->endpoint >= ENDPOINT_MAX) {
		WARN_ON(1);
		return -EINVAL;
	}

	endpoint = &target->endpoint[packet->endpoint];

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	if (!ath6kl_htc_tx_try(target, endpoint, packet)) {
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		packet->status = (target->htc_flags & HTC_OP_STATE_STOPPING) ?
				 -ECANCELED : -ENOSPC;
		INIT_LIST_HEAD(&queue);
		list_add(&packet->list, &queue);
		htc_tx_complete(endpoint, &queue);
	}

	return 0;
}

/* flush endpoint TX queue */
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void ath6kl_htc_flush_txep(struct htc_target *target,
			   enum htc_endpoint_id eid, u16 tag)
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{
	struct htc_packet *packet, *tmp_pkt;
	struct list_head discard_q, container;
	struct htc_endpoint *endpoint = &target->endpoint[eid];

	if (!endpoint->svc_id) {
		WARN_ON(1);
		return;
	}

	/* initialize the discard queue */
	INIT_LIST_HEAD(&discard_q);

	spin_lock_bh(&target->tx_lock);

	list_for_each_entry_safe(packet, tmp_pkt, &endpoint->txq, list) {
		if ((tag == HTC_TX_PACKET_TAG_ALL) ||
		    (tag == packet->info.tx.tag))
			list_move_tail(&packet->list, &discard_q);
	}

	spin_unlock_bh(&target->tx_lock);

	list_for_each_entry_safe(packet, tmp_pkt, &discard_q, list) {
		packet->status = -ECANCELED;
		list_del(&packet->list);
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		ath6kl_dbg(ATH6KL_DBG_HTC,
1153 1154 1155
			   "htc tx flushing pkt 0x%p len %d  ep %d tag 0x%x\n",
			   packet, packet->act_len,
			   packet->endpoint, packet->info.tx.tag);
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		INIT_LIST_HEAD(&container);
		list_add_tail(&packet->list, &container);
		htc_tx_complete(endpoint, &container);
	}

}

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static void ath6kl_htc_flush_txep_all(struct htc_target *target)
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{
	struct htc_endpoint *endpoint;
	int i;

	dump_cred_dist_stats(target);

	for (i = ENDPOINT_0; i < ENDPOINT_MAX; i++) {
		endpoint = &target->endpoint[i];
		if (endpoint->svc_id == 0)
			/* not in use.. */
			continue;
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		ath6kl_htc_flush_txep(target, i, HTC_TX_PACKET_TAG_ALL);
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	}
}

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void ath6kl_htc_indicate_activity_change(struct htc_target *target,
					 enum htc_endpoint_id eid, bool active)
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{
	struct htc_endpoint *endpoint = &target->endpoint[eid];
	bool dist = false;

	if (endpoint->svc_id == 0) {
		WARN_ON(1);
		return;
	}

	spin_lock_bh(&target->tx_lock);

	if (active) {
		if (!(endpoint->cred_dist.dist_flags & HTC_EP_ACTIVE)) {
			endpoint->cred_dist.dist_flags |= HTC_EP_ACTIVE;
			dist = true;
		}
	} else {
		if (endpoint->cred_dist.dist_flags & HTC_EP_ACTIVE) {
			endpoint->cred_dist.dist_flags &= ~HTC_EP_ACTIVE;
			dist = true;
		}
	}

	if (dist) {
		endpoint->cred_dist.txq_depth =
			get_queue_depth(&endpoint->txq);

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		ath6kl_dbg(ATH6KL_DBG_HTC,
			   "htc tx activity ctxt 0x%p dist 0x%p\n",
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			   target->credit_info, &target->cred_dist_list);
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		ath6kl_credit_distribute(target->credit_info,
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					 &target->cred_dist_list,
					 HTC_CREDIT_DIST_ACTIVITY_CHANGE);
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	}

	spin_unlock_bh(&target->tx_lock);

	if (dist && !active)
		htc_chk_ep_txq(target);
}

/* HTC Rx */

1226 1227
static inline void ath6kl_htc_rx_update_stats(struct htc_endpoint *endpoint,
					      int n_look_ahds)
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{
	endpoint->ep_st.rx_pkts++;
	if (n_look_ahds == 1)
		endpoint->ep_st.rx_lkahds++;
	else if (n_look_ahds > 1)
		endpoint->ep_st.rx_bundle_lkahd++;
}

static inline bool htc_valid_rx_frame_len(struct htc_target *target,
					  enum htc_endpoint_id eid, int len)
{
	return (eid == target->dev->ar->ctrl_ep) ?
		len <= ATH6KL_BUFFER_SIZE : len <= ATH6KL_AMSDU_BUFFER_SIZE;
}

static int htc_add_rxbuf(struct htc_target *target, struct htc_packet *packet)
{
	struct list_head queue;

	INIT_LIST_HEAD(&queue);
	list_add_tail(&packet->list, &queue);
1249
	return ath6kl_htc_add_rxbuf_multiple(target, &queue);
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}

static void htc_reclaim_rxbuf(struct htc_target *target,
			      struct htc_packet *packet,
			      struct htc_endpoint *ep)
{
	if (packet->info.rx.rx_flags & HTC_RX_PKT_NO_RECYCLE) {
		htc_rxpkt_reset(packet);
		packet->status = -ECANCELED;
		ep->ep_cb.rx(ep->target, packet);
	} else {
		htc_rxpkt_reset(packet);
		htc_add_rxbuf((void *)(target), packet);
	}
}

static void reclaim_rx_ctrl_buf(struct htc_target *target,
				struct htc_packet *packet)
{
	spin_lock_bh(&target->htc_lock);
	list_add_tail(&packet->list, &target->free_ctrl_rxbuf);
	spin_unlock_bh(&target->htc_lock);
}

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static int ath6kl_htc_rx_packet(struct htc_target *target,
				struct htc_packet *packet,
				u32 rx_len)
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{
	struct ath6kl_device *dev = target->dev;
	u32 padded_len;
	int status;

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	padded_len = CALC_TXRX_PADDED_LEN(target, rx_len);
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	if (padded_len > packet->buf_len) {
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		ath6kl_err("not enough receive space for packet - padlen %d recvlen %d bufferlen %d\n",
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			   padded_len, rx_len, packet->buf_len);
		return -ENOMEM;
	}

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	ath6kl_dbg(ATH6KL_DBG_HTC,
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		   "htc rx 0x%p hdr x%x len %d mbox 0x%x\n",
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		   packet, packet->info.rx.exp_hdr,
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		   padded_len, dev->ar->mbox_info.htc_addr);
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	status = hif_read_write_sync(dev->ar,
				     dev->ar->mbox_info.htc_addr,
				     packet->buf, padded_len,
				     HIF_RD_SYNC_BLOCK_FIX);

	packet->status = status;

	return status;
}

/*
 * optimization for recv packets, we can indicate a
 * "hint" that there are more  single-packets to fetch
 * on this endpoint.
 */
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static void ath6kl_htc_rx_set_indicate(u32 lk_ahd,
				       struct htc_endpoint *endpoint,
				       struct htc_packet *packet)
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{
	struct htc_frame_hdr *htc_hdr = (struct htc_frame_hdr *)&lk_ahd;

	if (htc_hdr->eid == packet->endpoint) {
		if (!list_empty(&endpoint->rx_bufq))
			packet->info.rx.indicat_flags |=
					HTC_RX_FLAGS_INDICATE_MORE_PKTS;
	}
}

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static void ath6kl_htc_rx_chk_water_mark(struct htc_endpoint *endpoint)
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{
	struct htc_ep_callbacks ep_cb = endpoint->ep_cb;

	if (ep_cb.rx_refill_thresh > 0) {
		spin_lock_bh(&endpoint->target->rx_lock);
		if (get_queue_depth(&endpoint->rx_bufq)
		    < ep_cb.rx_refill_thresh) {
			spin_unlock_bh(&endpoint->target->rx_lock);
			ep_cb.rx_refill(endpoint->target, endpoint->eid);
			return;
		}
		spin_unlock_bh(&endpoint->target->rx_lock);
	}
}

/* This function is called with rx_lock held */
1340 1341 1342
static int ath6kl_htc_rx_setup(struct htc_target *target,
			       struct htc_endpoint *ep,
			       u32 *lk_ahds, struct list_head *queue, int n_msg)
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{
	struct htc_packet *packet;
	/* FIXME: type of lk_ahds can't be right */
	struct htc_frame_hdr *htc_hdr = (struct htc_frame_hdr *)lk_ahds;
	struct htc_ep_callbacks ep_cb;
	int status = 0, j, full_len;
	bool no_recycle;

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	full_len = CALC_TXRX_PADDED_LEN(target,
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					le16_to_cpu(htc_hdr->payld_len) +
					sizeof(*htc_hdr));

	if (!htc_valid_rx_frame_len(target, ep->eid, full_len)) {
1356 1357 1358
		ath6kl_warn("Rx buffer requested with invalid length htc_hdr:eid %d, flags 0x%x, len %d\n",
			    htc_hdr->eid, htc_hdr->flags,
			    le16_to_cpu(htc_hdr->payld_len));
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		return -EINVAL;
	}

	ep_cb = ep->ep_cb;
	for (j = 0; j < n_msg; j++) {

		/*
		 * Reset flag, any packets allocated using the
		 * rx_alloc() API cannot be recycled on
		 * cleanup,they must be explicitly returned.
		 */
		no_recycle = false;

		if (ep_cb.rx_allocthresh &&
		    (full_len > ep_cb.rx_alloc_thresh)) {
			ep->ep_st.rx_alloc_thresh_hit += 1;
			ep->ep_st.rxalloc_thresh_byte +=
				le16_to_cpu(htc_hdr->payld_len);

			spin_unlock_bh(&target->rx_lock);
			no_recycle = true;

			packet = ep_cb.rx_allocthresh(ep->target, ep->eid,
						      full_len);
			spin_lock_bh(&target->rx_lock);
		} else {
			/* refill handler is being used */
			if (list_empty(&ep->rx_bufq)) {
				if (ep_cb.rx_refill) {
					spin_unlock_bh(&target->rx_lock);
					ep_cb.rx_refill(ep->target, ep->eid);
					spin_lock_bh(&target->rx_lock);
				}
			}

			if (list_empty(&ep->rx_bufq))
				packet = NULL;
			else {
				packet = list_first_entry(&ep->rx_bufq,
						struct htc_packet, list);
				list_del(&packet->list);
			}
		}

		if (!packet) {
			target->rx_st_flags |= HTC_RECV_WAIT_BUFFERS;
			target->ep_waiting = ep->eid;
			return -ENOSPC;
		}

		/* clear flags */
		packet->info.rx.rx_flags = 0;
		packet->info.rx.indicat_flags = 0;
		packet->status = 0;

		if (no_recycle)
			/*
			 * flag that these packets cannot be
			 * recycled, they have to be returned to
			 * the user
			 */
			packet->info.rx.rx_flags |= HTC_RX_PKT_NO_RECYCLE;

		/* Caller needs to free this upon any failure */
		list_add_tail(&packet->list, queue);

		if (target->htc_flags & HTC_OP_STATE_STOPPING) {
			status = -ECANCELED;
			break;
		}

		if (j) {
			packet->info.rx.rx_flags |= HTC_RX_PKT_REFRESH_HDR;
			packet->info.rx.exp_hdr = 0xFFFFFFFF;
		} else
			/* set expected look ahead */
			packet->info.rx.exp_hdr = *lk_ahds;

		packet->act_len = le16_to_cpu(htc_hdr->payld_len) +
			HTC_HDR_LENGTH;
	}

	return status;
}

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static int ath6kl_htc_rx_alloc(struct htc_target *target,
			       u32 lk_ahds[], int msg,
			       struct htc_endpoint *endpoint,
			       struct list_head *queue)
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{
	int status = 0;
	struct htc_packet *packet, *tmp_pkt;
	struct htc_frame_hdr *htc_hdr;
	int i, n_msg;

	spin_lock_bh(&target->rx_lock);

	for (i = 0; i < msg; i++) {

		htc_hdr = (struct htc_frame_hdr *)&lk_ahds[i];

		if (htc_hdr->eid >= ENDPOINT_MAX) {
			ath6kl_err("invalid ep in look-ahead: %d\n",
				   htc_hdr->eid);
			status = -ENOMEM;
			break;
		}

		if (htc_hdr->eid != endpoint->eid) {
			ath6kl_err("invalid ep in look-ahead: %d should be : %d (index:%d)\n",
				   htc_hdr->eid, endpoint->eid, i);
			status = -ENOMEM;
			break;
		}

		if (le16_to_cpu(htc_hdr->payld_len) > HTC_MAX_PAYLOAD_LENGTH) {
			ath6kl_err("payload len %d exceeds max htc : %d !\n",
				   htc_hdr->payld_len,
				   (u32) HTC_MAX_PAYLOAD_LENGTH);
			status = -ENOMEM;
			break;
		}

		if (endpoint->svc_id == 0) {
			ath6kl_err("ep %d is not connected !\n", htc_hdr->eid);
			status = -ENOMEM;
			break;
		}

		if (htc_hdr->flags & HTC_FLG_RX_BNDL_CNT) {
			/*
			 * HTC header indicates that every packet to follow
			 * has the same padded length so that it can be
			 * optimally fetched as a full bundle.
			 */
			n_msg = (htc_hdr->flags & HTC_FLG_RX_BNDL_CNT) >>
				HTC_FLG_RX_BNDL_CNT_S;

			/* the count doesn't include the starter frame */
			n_msg++;
			if (n_msg > target->msg_per_bndl_max) {
				status = -ENOMEM;
				break;
			}

			endpoint->ep_st.rx_bundle_from_hdr += 1;
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			ath6kl_dbg(ATH6KL_DBG_HTC,
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				   "htc rx bundle pkts %d\n",
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				   n_msg);
		} else
			/* HTC header only indicates 1 message to fetch */
			n_msg = 1;

		/* Setup packet buffers for each message */
1513 1514
		status = ath6kl_htc_rx_setup(target, endpoint, &lk_ahds[i],
					     queue, n_msg);
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		/*
		 * This is due to unavailabilty of buffers to rx entire data.
		 * Return no error so that free buffers from queue can be used
		 * to receive partial data.
		 */
		if (status == -ENOSPC) {
			spin_unlock_bh(&target->rx_lock);
			return 0;
		}

		if (status)
			break;
	}

	spin_unlock_bh(&target->rx_lock);

	if (status) {
		list_for_each_entry_safe(packet, tmp_pkt, queue, list) {
			list_del(&packet->list);
			htc_reclaim_rxbuf(target, packet,
					  &target->endpoint[packet->endpoint]);
		}
	}

	return status;
}

static void htc_ctrl_rx(struct htc_target *context, struct htc_packet *packets)
{
	if (packets->endpoint != ENDPOINT_0) {
		WARN_ON(1);
		return;
	}

	if (packets->status == -ECANCELED) {
		reclaim_rx_ctrl_buf(context, packets);
		return;
	}

	if (packets->act_len > 0) {
		ath6kl_err("htc_ctrl_rx, got message with len:%zu\n",
1557
			   packets->act_len + HTC_HDR_LENGTH);
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		ath6kl_dbg_dump(ATH6KL_DBG_HTC,
				"htc rx unexpected endpoint 0 message", "",
1561 1562
				packets->buf - HTC_HDR_LENGTH,
				packets->act_len + HTC_HDR_LENGTH);
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	}

	htc_reclaim_rxbuf(context, packets, &context->endpoint[0]);
}

static void htc_proc_cred_rpt(struct htc_target *target,
			      struct htc_credit_report *rpt,
			      int n_entries,
			      enum htc_endpoint_id from_ep)
{
	struct htc_endpoint *endpoint;
	int tot_credits = 0, i;
	bool dist = false;

	spin_lock_bh(&target->tx_lock);

	for (i = 0; i < n_entries; i++, rpt++) {
		if (rpt->eid >= ENDPOINT_MAX) {
			WARN_ON(1);
			spin_unlock_bh(&target->tx_lock);
			return;
		}

		endpoint = &target->endpoint[rpt->eid];

1588 1589
		ath6kl_dbg(ATH6KL_DBG_CREDIT,
			   "credit report ep %d credits %d\n",
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			   rpt->eid, rpt->credits);
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		endpoint->ep_st.tx_cred_rpt += 1;
		endpoint->ep_st.cred_retnd += rpt->credits;

		if (from_ep == rpt->eid) {
			/*
			 * This credit report arrived on the same endpoint
			 * indicating it arrived in an RX packet.
			 */
			endpoint->ep_st.cred_from_rx += rpt->credits;
			endpoint->ep_st.cred_rpt_from_rx += 1;
		} else if (from_ep == ENDPOINT_0) {
			/* credit arrived on endpoint 0 as a NULL message */
			endpoint->ep_st.cred_from_ep0 += rpt->credits;
			endpoint->ep_st.cred_rpt_ep0 += 1;
		} else {
			endpoint->ep_st.cred_from_other += rpt->credits;
			endpoint->ep_st.cred_rpt_from_other += 1;
		}

1611
		if (rpt->eid == ENDPOINT_0)
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			/* always give endpoint 0 credits back */
			endpoint->cred_dist.credits += rpt->credits;
		else {
			endpoint->cred_dist.cred_to_dist += rpt->credits;
			dist = true;
		}

		/*
		 * Refresh tx depth for distribution function that will
		 * recover these credits NOTE: this is only valid when
		 * there are credits to recover!
		 */
		endpoint->cred_dist.txq_depth =
			get_queue_depth(&endpoint->txq);

		tot_credits += rpt->credits;
	}

	if (dist) {
		/*
		 * This was a credit return based on a completed send
		 * operations note, this is done with the lock held
		 */
1635
		ath6kl_credit_distribute(target->credit_info,
1636 1637
					 &target->cred_dist_list,
					 HTC_CREDIT_DIST_SEND_COMPLETE);
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	}

	spin_unlock_bh(&target->tx_lock);

	if (tot_credits)
		htc_chk_ep_txq(target);
}

static int htc_parse_trailer(struct htc_target *target,
			     struct htc_record_hdr *record,
			     u8 *record_buf, u32 *next_lk_ahds,
			     enum htc_endpoint_id endpoint,
			     int *n_lk_ahds)
{
	struct htc_bundle_lkahd_rpt *bundle_lkahd_rpt;
	struct htc_lookahead_report *lk_ahd;
	int len;

	switch (record->rec_id) {
	case HTC_RECORD_CREDITS:
		len = record->len / sizeof(struct htc_credit_report);
		if (!len) {
			WARN_ON(1);
			return -EINVAL;
		}

		htc_proc_cred_rpt(target,
				  (struct htc_credit_report *) record_buf,
				  len, endpoint);
		break;
	case HTC_RECORD_LOOKAHEAD:
		len = record->len / sizeof(*lk_ahd);
		if (!len) {
			WARN_ON(1);
			return -EINVAL;
		}

		lk_ahd = (struct htc_lookahead_report *) record_buf;
1676 1677
		if ((lk_ahd->pre_valid == ((~lk_ahd->post_valid) & 0xFF)) &&
		    next_lk_ahds) {
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			ath6kl_dbg(ATH6KL_DBG_HTC,
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				   "htc rx lk_ahd found pre_valid 0x%x post_valid 0x%x\n",
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				   lk_ahd->pre_valid, lk_ahd->post_valid);

			/* look ahead bytes are valid, copy them over */
			memcpy((u8 *)&next_lk_ahds[0], lk_ahd->lk_ahd, 4);

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			ath6kl_dbg_dump(ATH6KL_DBG_HTC,
					"htc rx next look ahead",
1688
					"", next_lk_ahds, 4);
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			*n_lk_ahds = 1;
		}
		break;
	case HTC_RECORD_LOOKAHEAD_BUNDLE:
		len = record->len / sizeof(*bundle_lkahd_rpt);
		if (!len || (len > HTC_HOST_MAX_MSG_PER_BUNDLE)) {
			WARN_ON(1);
			return -EINVAL;
		}

		if (next_lk_ahds) {
			int i;

			bundle_lkahd_rpt =
				(struct htc_bundle_lkahd_rpt *) record_buf;

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			ath6kl_dbg_dump(ATH6KL_DBG_HTC, "htc rx bundle lk_ahd",
1707
					"", record_buf, record->len);
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1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737

			for (i = 0; i < len; i++) {
				memcpy((u8 *)&next_lk_ahds[i],
				       bundle_lkahd_rpt->lk_ahd, 4);
				bundle_lkahd_rpt++;
			}

			*n_lk_ahds = i;
		}
		break;
	default:
		ath6kl_err("unhandled record: id:%d len:%d\n",
			   record->rec_id, record->len);
		break;
	}

	return 0;

}

static int htc_proc_trailer(struct htc_target *target,
			    u8 *buf, int len, u32 *next_lk_ahds,
			    int *n_lk_ahds, enum htc_endpoint_id endpoint)
{
	struct htc_record_hdr *record;
	int orig_len;
	int status;
	u8 *record_buf;
	u8 *orig_buf;

K
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1738 1739
	ath6kl_dbg(ATH6KL_DBG_HTC, "htc rx trailer len %d\n", len);
	ath6kl_dbg_dump(ATH6KL_DBG_HTC, NULL, "", buf, len);
K
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1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774

	orig_buf = buf;
	orig_len = len;
	status = 0;

	while (len > 0) {

		if (len < sizeof(struct htc_record_hdr)) {
			status = -ENOMEM;
			break;
		}
		/* these are byte aligned structs */
		record = (struct htc_record_hdr *) buf;
		len -= sizeof(struct htc_record_hdr);
		buf += sizeof(struct htc_record_hdr);

		if (record->len > len) {
			ath6kl_err("invalid record len: %d (id:%d) buf has: %d bytes left\n",
				   record->len, record->rec_id, len);
			status = -ENOMEM;
			break;
		}
		record_buf = buf;

		status = htc_parse_trailer(target, record, record_buf,
					   next_lk_ahds, endpoint, n_lk_ahds);

		if (status)
			break;

		/* advance buffer past this record for next time around */
		buf += record->len;
		len -= record->len;
	}

1775
	if (status)
K
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1776
		ath6kl_dbg_dump(ATH6KL_DBG_HTC, "htc rx bad trailer",
1777
				"", orig_buf, orig_len);
K
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1778 1779 1780 1781

	return status;
}

1782 1783 1784
static int ath6kl_htc_rx_process_hdr(struct htc_target *target,
				     struct htc_packet *packet,
				     u32 *next_lkahds, int *n_lkahds)
K
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1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832
{
	int status = 0;
	u16 payload_len;
	u32 lk_ahd;
	struct htc_frame_hdr *htc_hdr = (struct htc_frame_hdr *)packet->buf;

	if (n_lkahds != NULL)
		*n_lkahds = 0;

	/*
	 * NOTE: we cannot assume the alignment of buf, so we use the safe
	 * macros to retrieve 16 bit fields.
	 */
	payload_len = le16_to_cpu(get_unaligned(&htc_hdr->payld_len));

	memcpy((u8 *)&lk_ahd, packet->buf, sizeof(lk_ahd));

	if (packet->info.rx.rx_flags & HTC_RX_PKT_REFRESH_HDR) {
		/*
		 * Refresh the expected header and the actual length as it
		 * was unknown when this packet was grabbed as part of the
		 * bundle.
		 */
		packet->info.rx.exp_hdr = lk_ahd;
		packet->act_len = payload_len + HTC_HDR_LENGTH;

		/* validate the actual header that was refreshed  */
		if (packet->act_len > packet->buf_len) {
			ath6kl_err("refreshed hdr payload len (%d) in bundled recv is invalid (hdr: 0x%X)\n",
				   payload_len, lk_ahd);
			/*
			 * Limit this to max buffer just to print out some
			 * of the buffer.
			 */
			packet->act_len = min(packet->act_len, packet->buf_len);
			status = -ENOMEM;
			goto fail_rx;
		}

		if (packet->endpoint != htc_hdr->eid) {
			ath6kl_err("refreshed hdr ep (%d) does not match expected ep (%d)\n",
				   htc_hdr->eid, packet->endpoint);
			status = -ENOMEM;
			goto fail_rx;
		}
	}

	if (lk_ahd != packet->info.rx.exp_hdr) {
1833 1834
		ath6kl_err("%s(): lk_ahd mismatch! (pPkt:0x%p flags:0x%X)\n",
			   __func__, packet, packet->info.rx.rx_flags);
K
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1835
		ath6kl_dbg_dump(ATH6KL_DBG_HTC, "htc rx expected lk_ahd",
1836
				"", &packet->info.rx.exp_hdr, 4);
K
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1837
		ath6kl_dbg_dump(ATH6KL_DBG_HTC, "htc rx current header",
1838
				"", (u8 *)&lk_ahd, sizeof(lk_ahd));
K
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1839 1840 1841 1842 1843 1844 1845
		status = -ENOMEM;
		goto fail_rx;
	}

	if (htc_hdr->flags & HTC_FLG_RX_TRAILER) {
		if (htc_hdr->ctrl[0] < sizeof(struct htc_record_hdr) ||
		    htc_hdr->ctrl[0] > payload_len) {
1846 1847
			ath6kl_err("%s(): invalid hdr (payload len should be :%d, CB[0] is:%d)\n",
				   __func__, payload_len, htc_hdr->ctrl[0]);
K
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1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872
			status = -ENOMEM;
			goto fail_rx;
		}

		if (packet->info.rx.rx_flags & HTC_RX_PKT_IGNORE_LOOKAHEAD) {
			next_lkahds = NULL;
			n_lkahds = NULL;
		}

		status = htc_proc_trailer(target, packet->buf + HTC_HDR_LENGTH
					  + payload_len - htc_hdr->ctrl[0],
					  htc_hdr->ctrl[0], next_lkahds,
					   n_lkahds, packet->endpoint);

		if (status)
			goto fail_rx;

		packet->act_len -= htc_hdr->ctrl[0];
	}

	packet->buf += HTC_HDR_LENGTH;
	packet->act_len -= HTC_HDR_LENGTH;

fail_rx:
	if (status)
K
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1873 1874
		ath6kl_dbg_dump(ATH6KL_DBG_HTC, "htc rx bad packet",
				"", packet->buf, packet->act_len);
K
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1875 1876 1877 1878

	return status;
}

1879 1880
static void ath6kl_htc_rx_complete(struct htc_endpoint *endpoint,
				   struct htc_packet *packet)
K
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1881
{
K
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1882
		ath6kl_dbg(ATH6KL_DBG_HTC,
K
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1883
			   "htc rx complete ep %d packet 0x%p\n",
K
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1884 1885 1886 1887
			   endpoint->eid, packet);
		endpoint->ep_cb.rx(endpoint->target, packet);
}

1888 1889 1890 1891
static int ath6kl_htc_rx_bundle(struct htc_target *target,
				struct list_head *rxq,
				struct list_head *sync_compq,
				int *n_pkt_fetched, bool part_bundle)
K
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1892 1893 1894
{
	struct hif_scatter_req *scat_req;
	struct htc_packet *packet;
1895
	int rem_space = target->max_rx_bndl_sz;
K
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1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912
	int n_scat_pkt, status = 0, i, len;

	n_scat_pkt = get_queue_depth(rxq);
	n_scat_pkt = min(n_scat_pkt, target->msg_per_bndl_max);

	if ((get_queue_depth(rxq) - n_scat_pkt) > 0) {
		/*
		 * We were forced to split this bundle receive operation
		 * all packets in this partial bundle must have their
		 * lookaheads ignored.
		 */
		part_bundle = true;

		/*
		 * This would only happen if the target ignored our max
		 * bundle limit.
		 */
1913 1914
		ath6kl_warn("%s(): partial bundle detected num:%d , %d\n",
			    __func__, get_queue_depth(rxq), n_scat_pkt);
K
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1915 1916 1917 1918
	}

	len = 0;

K
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1919
	ath6kl_dbg(ATH6KL_DBG_HTC,
K
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1920 1921
		   "htc rx bundle depth %d pkts %d\n",
		   get_queue_depth(rxq), n_scat_pkt);
K
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1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933

	scat_req = hif_scatter_req_get(target->dev->ar);

	if (scat_req == NULL)
		goto fail_rx_pkt;

	for (i = 0; i < n_scat_pkt; i++) {
		int pad_len;

		packet = list_first_entry(rxq, struct htc_packet, list);
		list_del(&packet->list);

1934
		pad_len = CALC_TXRX_PADDED_LEN(target,
K
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1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967
						   packet->act_len);

		if ((rem_space - pad_len) < 0) {
			list_add(&packet->list, rxq);
			break;
		}

		rem_space -= pad_len;

		if (part_bundle || (i < (n_scat_pkt - 1)))
			/*
			 * Packet 0..n-1 cannot be checked for look-aheads
			 * since we are fetching a bundle the last packet
			 * however can have it's lookahead used
			 */
			packet->info.rx.rx_flags |=
			    HTC_RX_PKT_IGNORE_LOOKAHEAD;

		/* NOTE: 1 HTC packet per scatter entry */
		scat_req->scat_list[i].buf = packet->buf;
		scat_req->scat_list[i].len = pad_len;

		packet->info.rx.rx_flags |= HTC_RX_PKT_PART_OF_BUNDLE;

		list_add_tail(&packet->list, sync_compq);

		WARN_ON(!scat_req->scat_list[i].len);
		len += scat_req->scat_list[i].len;
	}

	scat_req->len = len;
	scat_req->scat_entries = i;

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	status = ath6kl_hif_submit_scat_req(target->dev, scat_req, true);
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1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980

	if (!status)
		*n_pkt_fetched = i;

	/* free scatter request */
	hif_scatter_req_add(target->dev->ar, scat_req);

fail_rx_pkt:

	return status;
}

1981 1982 1983 1984
static int ath6kl_htc_rx_process_packets(struct htc_target *target,
					 struct list_head *comp_pktq,
					 u32 lk_ahds[],
					 int *n_lk_ahd)
K
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1985 1986 1987 1988 1989 1990 1991 1992 1993
{
	struct htc_packet *packet, *tmp_pkt;
	struct htc_endpoint *ep;
	int status = 0;

	list_for_each_entry_safe(packet, tmp_pkt, comp_pktq, list) {
		ep = &target->endpoint[packet->endpoint];

		/* process header for each of the recv packet */
1994 1995
		status = ath6kl_htc_rx_process_hdr(target, packet, lk_ahds,
						   n_lk_ahd);
K
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1996 1997 1998
		if (status)
			return status;

1999 2000
		list_del(&packet->list);

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2001 2002 2003 2004 2005 2006
		if (list_empty(comp_pktq)) {
			/*
			 * Last packet's more packet flag is set
			 * based on the lookahead.
			 */
			if (*n_lk_ahd > 0)
2007 2008
				ath6kl_htc_rx_set_indicate(lk_ahds[0],
							   ep, packet);
K
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2009 2010 2011 2012 2013 2014 2015 2016
		} else
			/*
			 * Packets in a bundle automatically have
			 * this flag set.
			 */
			packet->info.rx.indicat_flags |=
				HTC_RX_FLAGS_INDICATE_MORE_PKTS;

2017
		ath6kl_htc_rx_update_stats(ep, *n_lk_ahd);
K
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2018 2019 2020 2021

		if (packet->info.rx.rx_flags & HTC_RX_PKT_PART_OF_BUNDLE)
			ep->ep_st.rx_bundl += 1;

2022
		ath6kl_htc_rx_complete(ep, packet);
K
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2023 2024 2025 2026 2027
	}

	return status;
}

2028 2029 2030
static int ath6kl_htc_rx_fetch(struct htc_target *target,
			       struct list_head *rx_pktq,
			       struct list_head *comp_pktq)
K
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2031 2032 2033 2034
{
	int fetched_pkts;
	bool part_bundle = false;
	int status = 0;
2035 2036
	struct list_head tmp_rxq;
	struct htc_packet *packet, *tmp_pkt;
K
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2037 2038 2039 2040 2041

	/* now go fetch the list of HTC packets */
	while (!list_empty(rx_pktq)) {
		fetched_pkts = 0;

2042 2043
		INIT_LIST_HEAD(&tmp_rxq);

K
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2044 2045 2046 2047 2048 2049
		if (target->rx_bndl_enable && (get_queue_depth(rx_pktq) > 1)) {
			/*
			 * There are enough packets to attempt a
			 * bundle transfer and recv bundling is
			 * allowed.
			 */
2050
			status = ath6kl_htc_rx_bundle(target, rx_pktq,
2051
						      &tmp_rxq,
2052 2053
						      &fetched_pkts,
						      part_bundle);
K
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2054
			if (status)
2055
				goto fail_rx;
K
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2056 2057 2058

			if (!list_empty(rx_pktq))
				part_bundle = true;
2059 2060

			list_splice_tail_init(&tmp_rxq, comp_pktq);
K
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2061 2062 2063 2064 2065 2066 2067 2068 2069 2070
		}

		if (!fetched_pkts) {

			packet = list_first_entry(rx_pktq, struct htc_packet,
						   list);

			/* fully synchronous */
			packet->completion = NULL;

2071
			if (!list_is_singular(rx_pktq))
K
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2072 2073 2074 2075 2076 2077 2078 2079 2080
				/*
				 * look_aheads in all packet
				 * except the last one in the
				 * bundle must be ignored
				 */
				packet->info.rx.rx_flags |=
					HTC_RX_PKT_IGNORE_LOOKAHEAD;

			/* go fetch the packet */
2081 2082
			status = ath6kl_htc_rx_packet(target, packet,
						      packet->act_len);
2083 2084 2085

			list_move_tail(&packet->list, &tmp_rxq);

K
Kalle Valo 已提交
2086
			if (status)
2087
				goto fail_rx;
K
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2088

2089
			list_splice_tail_init(&tmp_rxq, comp_pktq);
K
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2090 2091 2092
		}
	}

2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104
	return 0;

fail_rx:

	/*
	 * Cleanup any packets we allocated but didn't use to
	 * actually fetch any packets.
	 */

	list_for_each_entry_safe(packet, tmp_pkt, rx_pktq, list) {
		list_del(&packet->list);
		htc_reclaim_rxbuf(target, packet,
2105
				  &target->endpoint[packet->endpoint]);
2106 2107 2108 2109 2110
	}

	list_for_each_entry_safe(packet, tmp_pkt, &tmp_rxq, list) {
		list_del(&packet->list);
		htc_reclaim_rxbuf(target, packet,
2111
				  &target->endpoint[packet->endpoint]);
2112 2113
	}

K
Kalle Valo 已提交
2114 2115 2116
	return status;
}

2117
int ath6kl_htc_rxmsg_pending_handler(struct htc_target *target,
2118
				     u32 msg_look_ahead, int *num_pkts)
K
Kalle Valo 已提交
2119 2120 2121 2122 2123 2124 2125 2126 2127 2128
{
	struct htc_packet *packets, *tmp_pkt;
	struct htc_endpoint *endpoint;
	struct list_head rx_pktq, comp_pktq;
	int status = 0;
	u32 look_aheads[HTC_HOST_MAX_MSG_PER_BUNDLE];
	int num_look_ahead = 1;
	enum htc_endpoint_id id;
	int n_fetched = 0;

2129
	INIT_LIST_HEAD(&comp_pktq);
K
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2130 2131 2132 2133 2134 2135
	*num_pkts = 0;

	/*
	 * On first entry copy the look_aheads into our temp array for
	 * processing
	 */
2136
	look_aheads[0] = msg_look_ahead;
K
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2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160

	while (true) {

		/*
		 * First lookahead sets the expected endpoint IDs for all
		 * packets in a bundle.
		 */
		id = ((struct htc_frame_hdr *)&look_aheads[0])->eid;
		endpoint = &target->endpoint[id];

		if (id >= ENDPOINT_MAX) {
			ath6kl_err("MsgPend, invalid endpoint in look-ahead: %d\n",
				   id);
			status = -ENOMEM;
			break;
		}

		INIT_LIST_HEAD(&rx_pktq);
		INIT_LIST_HEAD(&comp_pktq);

		/*
		 * Try to allocate as many HTC RX packets indicated by the
		 * look_aheads.
		 */
2161 2162 2163
		status = ath6kl_htc_rx_alloc(target, look_aheads,
					     num_look_ahead, endpoint,
					     &rx_pktq);
K
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2164 2165 2166 2167 2168 2169 2170 2171
		if (status)
			break;

		if (get_queue_depth(&rx_pktq) >= 2)
			/*
			 * A recv bundle was detected, force IRQ status
			 * re-check again
			 */
2172
			target->chk_irq_status_cnt = 1;
K
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2173 2174 2175 2176 2177

		n_fetched += get_queue_depth(&rx_pktq);

		num_look_ahead = 0;

2178
		status = ath6kl_htc_rx_fetch(target, &rx_pktq, &comp_pktq);
K
Kalle Valo 已提交
2179 2180

		if (!status)
2181
			ath6kl_htc_rx_chk_water_mark(endpoint);
K
Kalle Valo 已提交
2182 2183

		/* Process fetched packets */
2184 2185 2186
		status = ath6kl_htc_rx_process_packets(target, &comp_pktq,
						       look_aheads,
						       &num_look_ahead);
K
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2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197

		if (!num_look_ahead || status)
			break;

		/*
		 * For SYNCH processing, if we get here, we are running
		 * through the loop again due to a detected lookahead. Set
		 * flag that we should re-check IRQ status registers again
		 * before leaving IRQ processing, this can net better
		 * performance in high throughput situations.
		 */
2198
		target->chk_irq_status_cnt = 1;
K
Kalle Valo 已提交
2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213
	}

	if (status) {
		ath6kl_err("failed to get pending recv messages: %d\n",
			   status);

		/* cleanup any packets in sync completion queue */
		list_for_each_entry_safe(packets, tmp_pkt, &comp_pktq, list) {
			list_del(&packets->list);
			htc_reclaim_rxbuf(target, packets,
					  &target->endpoint[packets->endpoint]);
		}

		if (target->htc_flags & HTC_OP_STATE_STOPPING) {
			ath6kl_warn("host is going to stop blocking receiver for htc_stop\n");
K
Kalle Valo 已提交
2214
			ath6kl_hif_rx_control(target->dev, false);
K
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2215 2216 2217 2218 2219 2220 2221 2222 2223
		}
	}

	/*
	 * Before leaving, check to see if host ran out of buffers and
	 * needs to stop the receiver.
	 */
	if (target->rx_st_flags & HTC_RECV_WAIT_BUFFERS) {
		ath6kl_warn("host has no rx buffers blocking receiver to prevent overrun\n");
K
Kalle Valo 已提交
2224
		ath6kl_hif_rx_control(target->dev, false);
K
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2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241
	}
	*num_pkts = n_fetched;

	return status;
}

/*
 * Synchronously wait for a control message from the target,
 * This function is used at initialization time ONLY.  At init messages
 * on ENDPOINT 0 are expected.
 */
static struct htc_packet *htc_wait_for_ctrl_msg(struct htc_target *target)
{
	struct htc_packet *packet = NULL;
	struct htc_frame_hdr *htc_hdr;
	u32 look_ahead;

K
Kalle Valo 已提交
2242
	if (ath6kl_hif_poll_mboxmsg_rx(target->dev, &look_ahead,
2243
				       HTC_TARGET_RESPONSE_TIMEOUT))
K
Kalle Valo 已提交
2244 2245
		return NULL;

K
Kalle Valo 已提交
2246
	ath6kl_dbg(ATH6KL_DBG_HTC,
2247
		   "htc rx wait ctrl look_ahead 0x%X\n", look_ahead);
K
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2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269

	htc_hdr = (struct htc_frame_hdr *)&look_ahead;

	if (htc_hdr->eid != ENDPOINT_0)
		return NULL;

	packet = htc_get_control_buf(target, false);

	if (!packet)
		return NULL;

	packet->info.rx.rx_flags = 0;
	packet->info.rx.exp_hdr = look_ahead;
	packet->act_len = le16_to_cpu(htc_hdr->payld_len) + HTC_HDR_LENGTH;

	if (packet->act_len > packet->buf_len)
		goto fail_ctrl_rx;

	/* we want synchronous operation */
	packet->completion = NULL;

	/* get the message from the device, this will block */
2270
	if (ath6kl_htc_rx_packet(target, packet, packet->act_len))
K
Kalle Valo 已提交
2271 2272 2273
		goto fail_ctrl_rx;

	/* process receive header */
2274
	packet->status = ath6kl_htc_rx_process_hdr(target, packet, NULL, NULL);
K
Kalle Valo 已提交
2275 2276

	if (packet->status) {
2277
		ath6kl_err("htc_wait_for_ctrl_msg, ath6kl_htc_rx_process_hdr failed (status = %d)\n",
K
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2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292
			   packet->status);
		goto fail_ctrl_rx;
	}

	return packet;

fail_ctrl_rx:
	if (packet != NULL) {
		htc_rxpkt_reset(packet);
		reclaim_rx_ctrl_buf(target, packet);
	}

	return NULL;
}

2293 2294
int ath6kl_htc_add_rxbuf_multiple(struct htc_target *target,
				  struct list_head *pkt_queue)
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2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310
{
	struct htc_endpoint *endpoint;
	struct htc_packet *first_pkt;
	bool rx_unblock = false;
	int status = 0, depth;

	if (list_empty(pkt_queue))
		return -ENOMEM;

	first_pkt = list_first_entry(pkt_queue, struct htc_packet, list);

	if (first_pkt->endpoint >= ENDPOINT_MAX)
		return status;

	depth = get_queue_depth(pkt_queue);

K
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2311
	ath6kl_dbg(ATH6KL_DBG_HTC,
2312
		   "htc rx add multiple ep id %d cnt %d len %d\n",
K
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2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323
		first_pkt->endpoint, depth, first_pkt->buf_len);

	endpoint = &target->endpoint[first_pkt->endpoint];

	if (target->htc_flags & HTC_OP_STATE_STOPPING) {
		struct htc_packet *packet, *tmp_pkt;

		/* walk through queue and mark each one canceled */
		list_for_each_entry_safe(packet, tmp_pkt, pkt_queue, list) {
			packet->status = -ECANCELED;
			list_del(&packet->list);
2324
			ath6kl_htc_rx_complete(endpoint, packet);
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		}

		return status;
	}

	spin_lock_bh(&target->rx_lock);

	list_splice_tail_init(pkt_queue, &endpoint->rx_bufq);

	/* check if we are blocked waiting for a new buffer */
	if (target->rx_st_flags & HTC_RECV_WAIT_BUFFERS) {
		if (target->ep_waiting == first_pkt->endpoint) {
K
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2337
			ath6kl_dbg(ATH6KL_DBG_HTC,
2338 2339
				   "htc rx blocked on ep %d, unblocking\n",
				   target->ep_waiting);
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			target->rx_st_flags &= ~HTC_RECV_WAIT_BUFFERS;
			target->ep_waiting = ENDPOINT_MAX;
			rx_unblock = true;
		}
	}

	spin_unlock_bh(&target->rx_lock);

	if (rx_unblock && !(target->htc_flags & HTC_OP_STATE_STOPPING))
		/* TODO : implement a buffer threshold count? */
K
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		ath6kl_hif_rx_control(target->dev, true);
K
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2351 2352 2353 2354

	return status;
}

2355
void ath6kl_htc_flush_rx_buf(struct htc_target *target)
K
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2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371
{
	struct htc_endpoint *endpoint;
	struct htc_packet *packet, *tmp_pkt;
	int i;

	for (i = ENDPOINT_0; i < ENDPOINT_MAX; i++) {
		endpoint = &target->endpoint[i];
		if (!endpoint->svc_id)
			/* not in use.. */
			continue;

		spin_lock_bh(&target->rx_lock);
		list_for_each_entry_safe(packet, tmp_pkt,
					 &endpoint->rx_bufq, list) {
			list_del(&packet->list);
			spin_unlock_bh(&target->rx_lock);
K
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2372
			ath6kl_dbg(ATH6KL_DBG_HTC,
K
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2373
				   "htc rx flush pkt 0x%p  len %d  ep %d\n",
K
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2374 2375
				   packet, packet->buf_len,
				   packet->endpoint);
2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390
			/*
			 * packets in rx_bufq of endpoint 0 have originally
			 * been queued from target->free_ctrl_rxbuf where
			 * packet and packet->buf_start are allocated
			 * separately using kmalloc(). For other endpoint
			 * rx_bufq, it is allocated as skb where packet is
			 * skb->head. Take care of this difference while freeing
			 * the memory.
			 */
			if (packet->endpoint == ENDPOINT_0) {
				kfree(packet->buf_start);
				kfree(packet);
			} else {
				dev_kfree_skb(packet->pkt_cntxt);
			}
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			spin_lock_bh(&target->rx_lock);
		}
		spin_unlock_bh(&target->rx_lock);
	}
}

2397 2398 2399
int ath6kl_htc_conn_service(struct htc_target *target,
			    struct htc_service_connect_req *conn_req,
			    struct htc_service_connect_resp *conn_resp)
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{
	struct htc_packet *rx_pkt = NULL;
	struct htc_packet *tx_pkt = NULL;
	struct htc_conn_service_resp *resp_msg;
	struct htc_conn_service_msg *conn_msg;
	struct htc_endpoint *endpoint;
	enum htc_endpoint_id assigned_ep = ENDPOINT_MAX;
	unsigned int max_msg_sz = 0;
	int status = 0;
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	u16 msg_id;
K
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2410

K
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	ath6kl_dbg(ATH6KL_DBG_HTC,
K
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2412
		   "htc connect service target 0x%p service id 0x%x\n",
K
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		   target, conn_req->svc_id);

	if (conn_req->svc_id == HTC_CTRL_RSVD_SVC) {
		/* special case for pseudo control service */
		assigned_ep = ENDPOINT_0;
		max_msg_sz = HTC_MAX_CTRL_MSG_LEN;
	} else {
		/* allocate a packet to send to the target */
		tx_pkt = htc_get_control_buf(target, true);

		if (!tx_pkt)
			return -ENOMEM;

		conn_msg = (struct htc_conn_service_msg *)tx_pkt->buf;
		memset(conn_msg, 0, sizeof(*conn_msg));
		conn_msg->msg_id = cpu_to_le16(HTC_MSG_CONN_SVC_ID);
		conn_msg->svc_id = cpu_to_le16(conn_req->svc_id);
		conn_msg->conn_flags = cpu_to_le16(conn_req->conn_flags);

		set_htc_pkt_info(tx_pkt, NULL, (u8 *) conn_msg,
				 sizeof(*conn_msg) + conn_msg->svc_meta_len,
				 ENDPOINT_0, HTC_SERVICE_TX_PACKET_TAG);

		/* we want synchronous operation */
		tx_pkt->completion = NULL;
2438 2439
		ath6kl_htc_tx_prep_pkt(tx_pkt, 0, 0, 0);
		status = ath6kl_htc_tx_issue(target, tx_pkt);
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		if (status)
			goto fail_tx;

		/* wait for response */
		rx_pkt = htc_wait_for_ctrl_msg(target);

		if (!rx_pkt) {
			status = -ENOMEM;
			goto fail_tx;
		}

		resp_msg = (struct htc_conn_service_resp *)rx_pkt->buf;
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		msg_id = le16_to_cpu(resp_msg->msg_id);
K
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K
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		if ((msg_id != HTC_MSG_CONN_SVC_RESP_ID) ||
2456
		    (rx_pkt->act_len < sizeof(*resp_msg))) {
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			status = -ENOMEM;
			goto fail_tx;
		}

		conn_resp->resp_code = resp_msg->status;
		/* check response status */
		if (resp_msg->status != HTC_SERVICE_SUCCESS) {
			ath6kl_err("target failed service 0x%X connect request (status:%d)\n",
				   resp_msg->svc_id, resp_msg->status);
			status = -ENOMEM;
			goto fail_tx;
		}

		assigned_ep = (enum htc_endpoint_id)resp_msg->eid;
		max_msg_sz = le16_to_cpu(resp_msg->max_msg_sz);
	}

	if (assigned_ep >= ENDPOINT_MAX || !max_msg_sz) {
		status = -ENOMEM;
		goto fail_tx;
	}

	endpoint = &target->endpoint[assigned_ep];
	endpoint->eid = assigned_ep;
	if (endpoint->svc_id) {
		status = -ENOMEM;
		goto fail_tx;
	}

	/* return assigned endpoint to caller */
	conn_resp->endpoint = assigned_ep;
	conn_resp->len_max = max_msg_sz;

	/* setup the endpoint */

	/* this marks the endpoint in use */
	endpoint->svc_id = conn_req->svc_id;

	endpoint->max_txq_depth = conn_req->max_txq_depth;
	endpoint->len_max = max_msg_sz;
	endpoint->ep_cb = conn_req->ep_cb;
	endpoint->cred_dist.svc_id = conn_req->svc_id;
2499
	endpoint->cred_dist.htc_ep = endpoint;
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	endpoint->cred_dist.endpoint = assigned_ep;
	endpoint->cred_dist.cred_sz = target->tgt_cred_sz;

2503 2504 2505 2506 2507 2508 2509 2510 2511
	switch (endpoint->svc_id) {
	case WMI_DATA_BK_SVC:
		endpoint->tx_drop_packet_threshold = MAX_DEF_COOKIE_NUM / 3;
		break;
	default:
		endpoint->tx_drop_packet_threshold = MAX_HI_COOKIE_NUM;
		break;
	}

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	if (conn_req->max_rxmsg_sz) {
		/*
		 * Override cred_per_msg calculation, this optimizes
		 * the credit-low indications since the host will actually
		 * issue smaller messages in the Send path.
		 */
		if (conn_req->max_rxmsg_sz > max_msg_sz) {
			status = -ENOMEM;
			goto fail_tx;
		}
		endpoint->cred_dist.cred_per_msg =
		    conn_req->max_rxmsg_sz / target->tgt_cred_sz;
	} else
		endpoint->cred_dist.cred_per_msg =
		    max_msg_sz / target->tgt_cred_sz;

	if (!endpoint->cred_dist.cred_per_msg)
		endpoint->cred_dist.cred_per_msg = 1;

	/* save local connection flags */
	endpoint->conn_flags = conn_req->flags;

fail_tx:
	if (tx_pkt)
		htc_reclaim_txctrl_buf(target, tx_pkt);

	if (rx_pkt) {
		htc_rxpkt_reset(rx_pkt);
		reclaim_rx_ctrl_buf(target, rx_pkt);
	}

	return status;
}

static void reset_ep_state(struct htc_target *target)
{
	struct htc_endpoint *endpoint;
	int i;

	for (i = ENDPOINT_0; i < ENDPOINT_MAX; i++) {
		endpoint = &target->endpoint[i];
		memset(&endpoint->cred_dist, 0, sizeof(endpoint->cred_dist));
		endpoint->svc_id = 0;
		endpoint->len_max = 0;
		endpoint->max_txq_depth = 0;
		memset(&endpoint->ep_st, 0,
		       sizeof(endpoint->ep_st));
		INIT_LIST_HEAD(&endpoint->rx_bufq);
		INIT_LIST_HEAD(&endpoint->txq);
		endpoint->target = target;
	}

	/* reset distribution list */
2565
	/* FIXME: free existing entries */
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	INIT_LIST_HEAD(&target->cred_dist_list);
}

2569 2570
int ath6kl_htc_get_rxbuf_num(struct htc_target *target,
			     enum htc_endpoint_id endpoint)
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{
	int num;

	spin_lock_bh(&target->rx_lock);
	num = get_queue_depth(&(target->endpoint[endpoint].rx_bufq));
	spin_unlock_bh(&target->rx_lock);
	return num;
}

static void htc_setup_msg_bndl(struct htc_target *target)
{
	/* limit what HTC can handle */
	target->msg_per_bndl_max = min(HTC_HOST_MAX_MSG_PER_BUNDLE,
				       target->msg_per_bndl_max);

2586
	if (ath6kl_hif_enable_scatter(target->dev->ar)) {
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		target->msg_per_bndl_max = 0;
		return;
	}

	/* limit bundle what the device layer can handle */
2592
	target->msg_per_bndl_max = min(target->max_scat_entries,
K
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				       target->msg_per_bndl_max);

K
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2595
	ath6kl_dbg(ATH6KL_DBG_BOOT,
K
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2596
		   "htc bundling allowed msg_per_bndl_max %d\n",
K
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		   target->msg_per_bndl_max);

	/* Max rx bundle size is limited by the max tx bundle size */
2600
	target->max_rx_bndl_sz = target->max_xfer_szper_scatreq;
K
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	/* Max tx bundle size if limited by the extended mbox address range */
2602
	target->max_tx_bndl_sz = min(HIF_MBOX0_EXT_WIDTH,
2603
				     target->max_xfer_szper_scatreq);
K
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2604

K
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	ath6kl_dbg(ATH6KL_DBG_BOOT, "htc max_rx_bndl_sz %d max_tx_bndl_sz %d\n",
2606
		   target->max_rx_bndl_sz, target->max_tx_bndl_sz);
K
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2608
	if (target->max_tx_bndl_sz)
2609 2610
		/* tx_bndl_mask is enabled per AC, each has 1 bit */
		target->tx_bndl_mask = (1 << WMM_NUM_AC) - 1;
K
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2611

2612
	if (target->max_rx_bndl_sz)
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		target->rx_bndl_enable = true;

2615
	if ((target->tgt_cred_sz % target->block_sz) != 0) {
K
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		ath6kl_warn("credit size: %d is not block aligned! Disabling send bundling\n",
			    target->tgt_cred_sz);

		/*
		 * Disallow send bundling since the credit size is
		 * not aligned to a block size the I/O block
		 * padding will spill into the next credit buffer
		 * which is fatal.
		 */
2625
		target->tx_bndl_mask = 0;
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	}
}

2629
int ath6kl_htc_wait_target(struct htc_target *target)
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{
	struct htc_packet *packet = NULL;
	struct htc_ready_ext_msg *rdy_msg;
	struct htc_service_connect_req connect;
	struct htc_service_connect_resp resp;
	int status;

2637 2638 2639 2640 2641 2642
	/* FIXME: remove once USB support is implemented */
	if (target->dev->ar->hif_type == ATH6KL_HIF_TYPE_USB) {
		ath6kl_err("HTC doesn't support USB yet. Patience!\n");
		return -EOPNOTSUPP;
	}

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2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665
	/* we should be getting 1 control message that the target is ready */
	packet = htc_wait_for_ctrl_msg(target);

	if (!packet)
		return -ENOMEM;

	/* we controlled the buffer creation so it's properly aligned */
	rdy_msg = (struct htc_ready_ext_msg *)packet->buf;

	if ((le16_to_cpu(rdy_msg->ver2_0_info.msg_id) != HTC_MSG_READY_ID) ||
	    (packet->act_len < sizeof(struct htc_ready_msg))) {
		status = -ENOMEM;
		goto fail_wait_target;
	}

	if (!rdy_msg->ver2_0_info.cred_cnt || !rdy_msg->ver2_0_info.cred_sz) {
		status = -ENOMEM;
		goto fail_wait_target;
	}

	target->tgt_creds = le16_to_cpu(rdy_msg->ver2_0_info.cred_cnt);
	target->tgt_cred_sz = le16_to_cpu(rdy_msg->ver2_0_info.cred_sz);

K
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	ath6kl_dbg(ATH6KL_DBG_BOOT,
K
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2667
		   "htc target ready credits %d size %d\n",
K
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		   target->tgt_creds, target->tgt_cred_sz);

	/* check if this is an extended ready message */
	if (packet->act_len >= sizeof(struct htc_ready_ext_msg)) {
		/* this is an extended message */
		target->htc_tgt_ver = rdy_msg->htc_ver;
		target->msg_per_bndl_max = rdy_msg->msg_per_htc_bndl;
	} else {
		/* legacy */
		target->htc_tgt_ver = HTC_VERSION_2P0;
		target->msg_per_bndl_max = 0;
	}

K
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	ath6kl_dbg(ATH6KL_DBG_BOOT, "htc using protocol %s (%d)\n",
2682 2683
		   (target->htc_tgt_ver == HTC_VERSION_2P0) ? "2.0" : ">= 2.1",
		   target->htc_tgt_ver);
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	if (target->msg_per_bndl_max > 0)
		htc_setup_msg_bndl(target);

	/* setup our pseudo HTC control endpoint connection */
	memset(&connect, 0, sizeof(connect));
	memset(&resp, 0, sizeof(resp));
	connect.ep_cb.rx = htc_ctrl_rx;
	connect.ep_cb.rx_refill = NULL;
	connect.ep_cb.tx_full = NULL;
	connect.max_txq_depth = NUM_CONTROL_BUFFERS;
	connect.svc_id = HTC_CTRL_RSVD_SVC;

	/* connect fake service */
2698
	status = ath6kl_htc_conn_service((void *)target, &connect, &resp);
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	if (status)
2701 2702 2703 2704
		/*
		 * FIXME: this call doesn't make sense, the caller should
		 * call ath6kl_htc_cleanup() when it wants remove htc
		 */
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		ath6kl_hif_cleanup_scatter(target->dev->ar);

fail_wait_target:
	if (packet) {
		htc_rxpkt_reset(packet);
		reclaim_rx_ctrl_buf(target, packet);
	}

	return status;
}

/*
 * Start HTC, enable interrupts and let the target know
 * host has finished setup.
 */
2720
int ath6kl_htc_start(struct htc_target *target)
K
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{
	struct htc_packet *packet;
	int status;

2725 2726 2727
	memset(&target->dev->irq_proc_reg, 0,
	       sizeof(target->dev->irq_proc_reg));

K
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	/* Disable interrupts at the chip level */
K
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	ath6kl_hif_disable_intrs(target->dev);
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	target->htc_flags = 0;
	target->rx_st_flags = 0;

	/* Push control receive buffers into htc control endpoint */
	while ((packet = htc_get_control_buf(target, false)) != NULL) {
		status = htc_add_rxbuf(target, packet);
		if (status)
			return status;
	}

	/* NOTE: the first entry in the distribution list is ENDPOINT_0 */
2742
	ath6kl_credit_init(target->credit_info, &target->cred_dist_list,
2743
			   target->tgt_creds);
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2744 2745 2746 2747 2748 2749 2750 2751 2752 2753

	dump_cred_dist_stats(target);

	/* Indicate to the target of the setup completion */
	status = htc_setup_tx_complete(target);

	if (status)
		return status;

	/* unmask interrupts */
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	status = ath6kl_hif_unmask_intrs(target->dev);
K
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	if (status)
2757
		ath6kl_htc_stop(target);
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	return status;
}

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static int ath6kl_htc_reset(struct htc_target *target)
{
	u32 block_size, ctrl_bufsz;
	struct htc_packet *packet;
	int i;

	reset_ep_state(target);

	block_size = target->dev->ar->mbox_info.block_size;

	ctrl_bufsz = (block_size > HTC_MAX_CTRL_MSG_LEN) ?
		      (block_size + HTC_HDR_LENGTH) :
		      (HTC_MAX_CTRL_MSG_LEN + HTC_HDR_LENGTH);

	for (i = 0; i < NUM_CONTROL_BUFFERS; i++) {
		packet = kzalloc(sizeof(*packet), GFP_KERNEL);
		if (!packet)
			return -ENOMEM;

		packet->buf_start = kzalloc(ctrl_bufsz, GFP_KERNEL);
		if (!packet->buf_start) {
			kfree(packet);
			return -ENOMEM;
		}

		packet->buf_len = ctrl_bufsz;
		if (i < NUM_CONTROL_RX_BUFFERS) {
			packet->act_len = 0;
			packet->buf = packet->buf_start;
			packet->endpoint = ENDPOINT_0;
			list_add_tail(&packet->list, &target->free_ctrl_rxbuf);
		} else
			list_add_tail(&packet->list, &target->free_ctrl_txbuf);
	}

	return 0;
}

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/* htc_stop: stop interrupt reception, and flush all queued buffers */
2801
void ath6kl_htc_stop(struct htc_target *target)
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{
	spin_lock_bh(&target->htc_lock);
	target->htc_flags |= HTC_OP_STATE_STOPPING;
	spin_unlock_bh(&target->htc_lock);

	/*
	 * Masking interrupts is a synchronous operation, when this
	 * function returns all pending HIF I/O has completed, we can
	 * safely flush the queues.
	 */
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	ath6kl_hif_mask_intrs(target->dev);
K
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2813

2814
	ath6kl_htc_flush_txep_all(target);
K
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2815

2816
	ath6kl_htc_flush_rx_buf(target);
K
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2817

K
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	ath6kl_htc_reset(target);
K
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}

2821
void *ath6kl_htc_create(struct ath6kl *ar)
K
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{
	struct htc_target *target = NULL;
K
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	int status = 0;
K
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	target = kzalloc(sizeof(*target), GFP_KERNEL);
	if (!target) {
		ath6kl_err("unable to allocate memory\n");
		return NULL;
	}

	target->dev = kzalloc(sizeof(*target->dev), GFP_KERNEL);
	if (!target->dev) {
		ath6kl_err("unable to allocate memory\n");
		status = -ENOMEM;
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		goto err_htc_cleanup;
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	}

	spin_lock_init(&target->htc_lock);
	spin_lock_init(&target->rx_lock);
	spin_lock_init(&target->tx_lock);

	INIT_LIST_HEAD(&target->free_ctrl_txbuf);
	INIT_LIST_HEAD(&target->free_ctrl_rxbuf);
	INIT_LIST_HEAD(&target->cred_dist_list);

	target->dev->ar = ar;
	target->dev->htc_cnxt = target;
	target->ep_waiting = ENDPOINT_MAX;

K
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	status = ath6kl_hif_setup(target->dev);
K
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2852
	if (status)
K
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		goto err_htc_cleanup;
K
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2854

K
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2855 2856 2857
	status = ath6kl_htc_reset(target);
	if (status)
		goto err_htc_cleanup;
K
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2858

K
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2859
	return target;
K
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2860

K
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err_htc_cleanup:
	ath6kl_htc_cleanup(target);
K
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2863

K
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	return NULL;
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}

/* cleanup the HTC instance */
2868
void ath6kl_htc_cleanup(struct htc_target *target)
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{
	struct htc_packet *packet, *tmp_packet;

2872 2873 2874
	/* FIXME: remove check once USB support is implemented */
	if (target->dev->ar->hif_type != ATH6KL_HIF_TYPE_USB)
		ath6kl_hif_cleanup_scatter(target->dev->ar);
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	list_for_each_entry_safe(packet, tmp_packet,
2877
				 &target->free_ctrl_txbuf, list) {
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		list_del(&packet->list);
		kfree(packet->buf_start);
		kfree(packet);
	}

	list_for_each_entry_safe(packet, tmp_packet,
2884
				 &target->free_ctrl_rxbuf, list) {
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		list_del(&packet->list);
		kfree(packet->buf_start);
		kfree(packet);
	}

	kfree(target->dev);
	kfree(target);
}