426 lines
12 KiB
C
Executable File
426 lines
12 KiB
C
Executable File
/*
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* DHD debug ring API and structures
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*
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* <<Broadcom-WL-IPTag/Open:>>
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*
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* Copyright (C) 1999-2019, Broadcom.
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*
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* Unless you and Broadcom execute a separate written software license
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* agreement governing use of this software, this software is licensed to you
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* under the terms of the GNU General Public License version 2 (the "GPL"),
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* available at http://www.broadcom.com/licenses/GPLv2.php, with the
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* following added to such license:
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*
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* As a special exception, the copyright holders of this software give you
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* permission to link this software with independent modules, and to copy and
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* distribute the resulting executable under terms of your choice, provided that
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* you also meet, for each linked independent module, the terms and conditions of
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* the license of that module. An independent module is a module which is not
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* derived from this software. The special exception does not apply to any
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* modifications of the software.
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*
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* Notwithstanding the above, under no circumstances may you combine this
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* software in any way with any other Broadcom software provided under a license
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* other than the GPL, without Broadcom's express prior written consent.
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*
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* $Id: dhd_dbg_ring.c 792099 2018-12-03 15:45:56Z $
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*/
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#include <typedefs.h>
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#include <osl.h>
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#include <bcmutils.h>
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#include <bcmendian.h>
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#include <dngl_stats.h>
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#include <dhd.h>
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#include <dhd_dbg.h>
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#include <dhd_dbg_ring.h>
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int
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dhd_dbg_ring_init(dhd_pub_t *dhdp, dhd_dbg_ring_t *ring, uint16 id, uint8 *name,
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uint32 ring_sz, void *allocd_buf, bool pull_inactive)
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{
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void *buf;
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unsigned long flags = 0;
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if (allocd_buf == NULL) {
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return BCME_NOMEM;
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} else {
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buf = allocd_buf;
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}
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ring->lock = DHD_DBG_RING_LOCK_INIT(dhdp->osh);
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if (!ring->lock)
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return BCME_NOMEM;
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DHD_DBG_RING_LOCK(ring->lock, flags);
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ring->id = id;
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strncpy(ring->name, name, DBGRING_NAME_MAX);
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ring->name[DBGRING_NAME_MAX - 1] = 0;
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ring->ring_size = ring_sz;
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ring->wp = ring->rp = 0;
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ring->ring_buf = buf;
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ring->threshold = DBGRING_FLUSH_THRESHOLD(ring);
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ring->state = RING_SUSPEND;
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ring->rem_len = 0;
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ring->sched_pull = TRUE;
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ring->pull_inactive = pull_inactive;
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return BCME_OK;
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}
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void
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dhd_dbg_ring_deinit(dhd_pub_t *dhdp, dhd_dbg_ring_t *ring)
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{
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unsigned long flags = 0;
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DHD_DBG_RING_LOCK(ring->lock, flags);
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ring->id = 0;
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ring->name[0] = 0;
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ring->wp = ring->rp = 0;
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memset(&ring->stat, 0, sizeof(ring->stat));
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ring->threshold = 0;
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ring->state = RING_STOP;
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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DHD_DBG_RING_LOCK_DEINIT(dhdp->osh, ring->lock);
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}
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void
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dhd_dbg_ring_sched_pull(dhd_dbg_ring_t *ring, uint32 pending_len,
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os_pullreq_t pull_fn, void *os_pvt, const int id)
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{
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unsigned long flags = 0;
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DHD_DBG_RING_LOCK(ring->lock, flags);
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/* if the current pending size is bigger than threshold and
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* threshold is set
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*/
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if (ring->threshold > 0 &&
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(pending_len >= ring->threshold) && ring->sched_pull) {
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/*
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* Update the state and release the lock before calling
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* the pull_fn. Do not transfer control to other layers
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* with locks held. If the call back again calls into
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* the same layer fro this context, can lead to deadlock.
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*/
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ring->sched_pull = FALSE;
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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pull_fn(os_pvt, id);
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} else {
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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}
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}
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uint32
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dhd_dbg_ring_get_pending_len(dhd_dbg_ring_t *ring)
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{
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uint32 pending_len = 0;
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unsigned long flags = 0;
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DHD_DBG_RING_LOCK(ring->lock, flags);
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if (ring->stat.written_bytes > ring->stat.read_bytes) {
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pending_len = ring->stat.written_bytes - ring->stat.read_bytes;
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} else if (ring->stat.written_bytes < ring->stat.read_bytes) {
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pending_len = PENDING_LEN_MAX - ring->stat.read_bytes + ring->stat.written_bytes;
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} else {
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pending_len = 0;
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}
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return pending_len;
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}
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int
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dhd_dbg_ring_push(dhd_dbg_ring_t *ring, dhd_dbg_ring_entry_t *hdr, void *data)
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{
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unsigned long flags;
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uint32 w_len;
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uint32 avail_size;
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dhd_dbg_ring_entry_t *w_entry, *r_entry;
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if (!ring || !hdr || !data) {
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return BCME_BADARG;
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}
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DHD_DBG_RING_LOCK(ring->lock, flags);
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if (ring->state != RING_ACTIVE) {
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return BCME_OK;
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}
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w_len = ENTRY_LENGTH(hdr);
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DHD_DBGIF(("%s: RING%d[%s] hdr->len=%u, w_len=%u, wp=%d, rp=%d, ring_start=0x%p;"
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" ring_size=%u\n",
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__FUNCTION__, ring->id, ring->name, hdr->len, w_len, ring->wp, ring->rp,
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ring->ring_buf, ring->ring_size));
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if (w_len > ring->ring_size) {
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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DHD_ERROR(("%s: RING%d[%s] w_len=%u, ring_size=%u,"
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" write size exceeds ring size !\n",
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__FUNCTION__, ring->id, ring->name, w_len, ring->ring_size));
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return BCME_BUFTOOLONG;
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}
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/* Claim the space */
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do {
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avail_size = DBG_RING_CHECK_WRITE_SPACE(ring->rp, ring->wp, ring->ring_size);
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if (avail_size <= w_len) {
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/* Prepare the space */
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if (ring->rp <= ring->wp) {
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ring->tail_padded = TRUE;
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ring->rem_len = ring->ring_size - ring->wp;
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DHD_DBGIF(("%s: RING%d[%s] Insuffient tail space,"
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" rp=%d, wp=%d, rem_len=%d, ring_size=%d,"
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" avail_size=%d, w_len=%d\n", __FUNCTION__,
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ring->id, ring->name, ring->rp, ring->wp,
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ring->rem_len, ring->ring_size, avail_size,
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w_len));
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/* 0 pad insufficient tail space */
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memset((uint8 *)ring->ring_buf + ring->wp, 0, ring->rem_len);
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/* If read pointer is still at the beginning, make some room */
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if (ring->rp == 0) {
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r_entry = (dhd_dbg_ring_entry_t *)((uint8 *)ring->ring_buf +
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ring->rp);
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ring->rp += ENTRY_LENGTH(r_entry);
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ring->stat.read_bytes += ENTRY_LENGTH(r_entry);
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DHD_DBGIF(("%s: rp at 0, move by one entry length"
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" (%u bytes)\n",
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__FUNCTION__, (uint32)ENTRY_LENGTH(r_entry)));
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}
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if (ring->rp == ring->wp) {
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ring->rp = 0;
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}
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ring->wp = 0;
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DHD_DBGIF(("%s: new rp=%u, wp=%u\n",
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__FUNCTION__, ring->rp, ring->wp));
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} else {
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/* Not enough space for new entry, free some up */
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r_entry = (dhd_dbg_ring_entry_t *)((uint8 *)ring->ring_buf +
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ring->rp);
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/* check bounds before incrementing read ptr */
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if (ring->rp + ENTRY_LENGTH(r_entry) >= ring->ring_size) {
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DHD_ERROR(("%s: RING%d[%s] rp points out of boundary, "
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"ring->wp=%u, ring->rp=%u, ring->ring_size=%d\n",
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__FUNCTION__, ring->id, ring->name, ring->wp,
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ring->rp, ring->ring_size));
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ASSERT(0);
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return BCME_BUFTOOSHORT;
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}
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ring->rp += ENTRY_LENGTH(r_entry);
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/* skip padding if there is one */
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if (ring->tail_padded &&
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((ring->rp + ring->rem_len) == ring->ring_size)) {
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DHD_DBGIF(("%s: RING%d[%s] Found padding,"
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" avail_size=%d, w_len=%d, set rp=0\n",
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__FUNCTION__, ring->id, ring->name,
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avail_size, w_len));
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ring->rp = 0;
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ring->tail_padded = FALSE;
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ring->rem_len = 0;
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}
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ring->stat.read_bytes += ENTRY_LENGTH(r_entry);
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DHD_DBGIF(("%s: RING%d[%s] read_bytes=%d, wp=%d, rp=%d\n",
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__FUNCTION__, ring->id, ring->name, ring->stat.read_bytes,
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ring->wp, ring->rp));
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}
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} else {
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break;
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}
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} while (TRUE);
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/* check before writing to the ring */
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if (ring->wp + w_len >= ring->ring_size) {
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DHD_ERROR(("%s: RING%d[%s] wp pointed out of ring boundary, "
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"wp=%d, ring_size=%d, w_len=%u\n", __FUNCTION__, ring->id,
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ring->name, ring->wp, ring->ring_size, w_len));
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ASSERT(0);
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return BCME_BUFTOOLONG;
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}
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w_entry = (dhd_dbg_ring_entry_t *)((uint8 *)ring->ring_buf + ring->wp);
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/* header */
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memcpy(w_entry, hdr, DBG_RING_ENTRY_SIZE);
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w_entry->len = hdr->len;
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/* payload */
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memcpy((char *)w_entry + DBG_RING_ENTRY_SIZE, data, w_entry->len);
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/* update write pointer */
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ring->wp += w_len;
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/* update statistics */
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ring->stat.written_records++;
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ring->stat.written_bytes += w_len;
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DHD_DBGIF(("%s : RING%d[%s] written_records %d, written_bytes %d, read_bytes=%d,"
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" ring->threshold=%d, wp=%d, rp=%d\n", __FUNCTION__, ring->id, ring->name,
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ring->stat.written_records, ring->stat.written_bytes, ring->stat.read_bytes,
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ring->threshold, ring->wp, ring->rp));
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return BCME_OK;
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}
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/*
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* This function folds ring->lock, so callers of this function
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* should not hold ring->lock.
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*/
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int
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dhd_dbg_ring_pull_single(dhd_dbg_ring_t *ring, void *data, uint32 buf_len, bool strip_header)
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{
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dhd_dbg_ring_entry_t *r_entry = NULL;
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uint32 rlen = 0;
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char *buf = NULL;
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unsigned long flags;
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if (!ring || !data || buf_len <= 0) {
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return 0;
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}
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DHD_DBG_RING_LOCK(ring->lock, flags);
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/* pull from ring is allowed for inactive (suspended) ring
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* in case of ecounters only, this is because, for ecounters
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* when a trap occurs the ring is suspended and data is then
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* pulled to dump it to a file. For other rings if ring is
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* not in active state return without processing (as before)
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*/
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if (!ring->pull_inactive && (ring->state != RING_ACTIVE)) {
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goto exit;
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}
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if (ring->rp == ring->wp) {
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goto exit;
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}
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DHD_DBGIF(("%s: RING%d[%s] buf_len=%u, wp=%d, rp=%d, ring_start=0x%p; ring_size=%u\n",
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__FUNCTION__, ring->id, ring->name, buf_len, ring->wp, ring->rp,
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ring->ring_buf, ring->ring_size));
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r_entry = (dhd_dbg_ring_entry_t *)((uint8 *)ring->ring_buf + ring->rp);
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/* Boundary Check */
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rlen = ENTRY_LENGTH(r_entry);
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if ((ring->rp + rlen) > ring->ring_size) {
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DHD_ERROR(("%s: entry len %d is out of boundary of ring size %d,"
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" current ring %d[%s] - rp=%d\n", __FUNCTION__, rlen,
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ring->ring_size, ring->id, ring->name, ring->rp));
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rlen = 0;
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goto exit;
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}
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if (strip_header) {
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rlen = r_entry->len;
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buf = (char *)r_entry + DBG_RING_ENTRY_SIZE;
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} else {
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rlen = ENTRY_LENGTH(r_entry);
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buf = (char *)r_entry;
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}
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if (rlen > buf_len) {
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DHD_ERROR(("%s: buf len %d is too small for entry len %d\n",
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__FUNCTION__, buf_len, rlen));
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DHD_ERROR(("%s: ring %d[%s] - ring size=%d, wp=%d, rp=%d\n",
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__FUNCTION__, ring->id, ring->name, ring->ring_size,
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ring->wp, ring->rp));
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ASSERT(0);
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rlen = 0;
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goto exit;
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}
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memcpy(data, buf, rlen);
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/* update ring context */
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ring->rp += ENTRY_LENGTH(r_entry);
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/* don't pass wp but skip padding if there is one */
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if (ring->rp != ring->wp &&
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ring->tail_padded && ((ring->rp + ring->rem_len) >= ring->ring_size)) {
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DHD_DBGIF(("%s: RING%d[%s] Found padding, rp=%d, wp=%d\n",
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__FUNCTION__, ring->id, ring->name, ring->rp, ring->wp));
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ring->rp = 0;
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ring->tail_padded = FALSE;
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ring->rem_len = 0;
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}
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if (ring->rp >= ring->ring_size) {
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DHD_ERROR(("%s: RING%d[%s] rp pointed out of ring boundary,"
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" rp=%d, ring_size=%d\n", __FUNCTION__, ring->id,
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ring->name, ring->rp, ring->ring_size));
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ASSERT(0);
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rlen = 0;
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goto exit;
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}
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ring->stat.read_bytes += ENTRY_LENGTH(r_entry);
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DHD_DBGIF(("%s RING%d[%s]read_bytes %d, wp=%d, rp=%d\n", __FUNCTION__,
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ring->id, ring->name, ring->stat.read_bytes, ring->wp, ring->rp));
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exit:
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return rlen;
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}
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int
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dhd_dbg_ring_pull(dhd_dbg_ring_t *ring, void *data, uint32 buf_len, bool strip_hdr)
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{
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int32 r_len, total_r_len = 0;
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unsigned long flags;
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if (!ring || !data)
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return 0;
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DHD_DBG_RING_LOCK(ring->lock, flags);
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if (!ring->pull_inactive && (ring->state != RING_ACTIVE)) {
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return 0;
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}
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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while (buf_len > 0) {
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r_len = dhd_dbg_ring_pull_single(ring, data, buf_len, strip_hdr);
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if (r_len == 0)
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break;
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data = (uint8 *)data + r_len;
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buf_len -= r_len;
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total_r_len += r_len;
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}
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return total_r_len;
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}
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int
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dhd_dbg_ring_config(dhd_dbg_ring_t *ring, int log_level, uint32 threshold)
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{
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unsigned long flags = 0;
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if (!ring)
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return BCME_BADADDR;
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if (ring->state == RING_STOP)
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return BCME_UNSUPPORTED;
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DHD_DBG_RING_LOCK(ring->lock, flags);
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if (log_level == 0)
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ring->state = RING_SUSPEND;
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else
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ring->state = RING_ACTIVE;
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ring->log_level = log_level;
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ring->threshold = MIN(threshold, DBGRING_FLUSH_THRESHOLD(ring));
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DHD_DBG_RING_UNLOCK(ring->lock, flags);
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return BCME_OK;
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}
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void
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dhd_dbg_ring_start(dhd_dbg_ring_t *ring)
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{
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if (!ring)
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return;
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/* Initialize the information for the ring */
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ring->state = RING_SUSPEND;
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ring->log_level = 0;
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ring->rp = ring->wp = 0;
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ring->threshold = 0;
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memset(&ring->stat, 0, sizeof(struct ring_statistics));
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memset(ring->ring_buf, 0, ring->ring_size);
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}
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