343 lines
9.4 KiB
C
343 lines
9.4 KiB
C
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/*
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* BT-AMP support routines
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*
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* Portions of this code are copyright (c) 2017 Cypress Semiconductor Corporation
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*
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* Copyright (C) 1999-2017, Broadcom Corporation
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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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*
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* <<Broadcom-WL-IPTag/Open:>>
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*
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* $Id: dhd_bta.c 514727 2014-11-12 03:02:48Z $
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*/
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#error "WLBTAMP is not defined"
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#include <typedefs.h>
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#include <osl.h>
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#include <bcmcdc.h>
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#include <bcmutils.h>
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#include <bcmendian.h>
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#include <proto/802.11.h>
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#include <proto/802.11_bta.h>
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#include <proto/bt_amp_hci.h>
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#include <dngl_stats.h>
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#include <dhd.h>
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#include <dhd_bus.h>
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#include <dhd_proto.h>
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#include <dhdioctl.h>
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#include <dhd_dbg.h>
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#include <dhd_bta.h>
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#ifdef SEND_HCI_CMD_VIA_IOCTL
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#define BTA_HCI_CMD_MAX_LEN HCI_CMD_PREAMBLE_SIZE + HCI_CMD_DATA_SIZE
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/* Send HCI cmd via wl iovar HCI_cmd to the dongle. */
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int
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dhd_bta_docmd(dhd_pub_t *pub, void *cmd_buf, uint cmd_len)
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{
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amp_hci_cmd_t *cmd = (amp_hci_cmd_t *)cmd_buf;
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uint8 buf[BTA_HCI_CMD_MAX_LEN + 16];
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uint len = sizeof(buf);
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wl_ioctl_t ioc;
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if (cmd_len < HCI_CMD_PREAMBLE_SIZE)
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return BCME_BADLEN;
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if ((uint)cmd->plen + HCI_CMD_PREAMBLE_SIZE > cmd_len)
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return BCME_BADLEN;
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len = bcm_mkiovar("HCI_cmd",
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(char *)cmd, (uint)cmd->plen + HCI_CMD_PREAMBLE_SIZE, (char *)buf, len);
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memset(&ioc, 0, sizeof(ioc));
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ioc.cmd = WLC_SET_VAR;
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ioc.buf = buf;
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ioc.len = len;
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ioc.set = TRUE;
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return dhd_wl_ioctl(pub, &ioc, ioc.buf, ioc.len);
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}
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#else /* !SEND_HCI_CMD_VIA_IOCTL */
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static void
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dhd_bta_flush_hcidata(dhd_pub_t *pub, uint16 llh)
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{
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int prec;
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struct pktq *q;
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uint count = 0;
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q = dhd_bus_txq(pub->bus);
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if (q == NULL)
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return;
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DHD_BTA(("dhd: flushing HCI ACL data for logical link %u...\n", llh));
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dhd_os_sdlock_txq(pub);
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/* Walk through the txq and toss all HCI ACL data packets */
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PKTQ_PREC_ITER(q, prec) {
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void *head_pkt = NULL;
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while (pktq_ppeek(q, prec) != head_pkt) {
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void *pkt = pktq_pdeq(q, prec);
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int ifidx;
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dhd_prot_hdrpull(pub, &ifidx, pkt, NULL, NULL);
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if (PKTLEN(pub->osh, pkt) >= RFC1042_HDR_LEN) {
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struct ether_header *eh =
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(struct ether_header *)PKTDATA(pub->osh, pkt);
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if (ntoh16(eh->ether_type) < ETHER_TYPE_MIN) {
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struct dot11_llc_snap_header *lsh =
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(struct dot11_llc_snap_header *)&eh[1];
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if (bcmp(lsh, BT_SIG_SNAP_MPROT,
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DOT11_LLC_SNAP_HDR_LEN - 2) == 0 &&
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ntoh16(lsh->type) == BTA_PROT_L2CAP) {
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amp_hci_ACL_data_t *ACL_data =
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(amp_hci_ACL_data_t *)&lsh[1];
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uint16 handle = ltoh16(ACL_data->handle);
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if (HCI_ACL_DATA_HANDLE(handle) == llh) {
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PKTFREE(pub->osh, pkt, TRUE);
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count ++;
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continue;
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}
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}
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}
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}
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dhd_prot_hdrpush(pub, ifidx, pkt);
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if (head_pkt == NULL)
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head_pkt = pkt;
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pktq_penq(q, prec, pkt);
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}
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}
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dhd_os_sdunlock_txq(pub);
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DHD_BTA(("dhd: flushed %u packet(s) for logical link %u...\n", count, llh));
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}
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/* Handle HCI cmd locally.
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* Return 0: continue to send the cmd across SDIO
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* < 0: stop, fail
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* > 0: stop, succuess
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*/
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static int
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_dhd_bta_docmd(dhd_pub_t *pub, amp_hci_cmd_t *cmd)
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{
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int status = 0;
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switch (ltoh16_ua((uint8 *)&cmd->opcode)) {
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case HCI_Enhanced_Flush: {
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eflush_cmd_parms_t *cmdparms = (eflush_cmd_parms_t *)cmd->parms;
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dhd_bta_flush_hcidata(pub, ltoh16_ua(cmdparms->llh));
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break;
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}
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default:
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break;
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}
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return status;
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}
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/* Send HCI cmd encapsulated in BT-SIG frame via data channel to the dongle. */
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int
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dhd_bta_docmd(dhd_pub_t *pub, void *cmd_buf, uint cmd_len)
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{
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amp_hci_cmd_t *cmd = (amp_hci_cmd_t *)cmd_buf;
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struct ether_header *eh;
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struct dot11_llc_snap_header *lsh;
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osl_t *osh = pub->osh;
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uint len;
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void *p;
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int status;
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if (cmd_len < HCI_CMD_PREAMBLE_SIZE) {
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DHD_ERROR(("dhd_bta_docmd: short command, cmd_len %u\n", cmd_len));
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return BCME_BADLEN;
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}
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if ((len = (uint)cmd->plen + HCI_CMD_PREAMBLE_SIZE) > cmd_len) {
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DHD_ERROR(("dhd_bta_docmd: malformed command, len %u cmd_len %u\n",
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len, cmd_len));
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/* return BCME_BADLEN; */
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}
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p = PKTGET(osh, pub->hdrlen + RFC1042_HDR_LEN + len, TRUE);
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if (p == NULL) {
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DHD_ERROR(("dhd_bta_docmd: out of memory\n"));
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return BCME_NOMEM;
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}
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/* intercept and handle the HCI cmd locally */
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if ((status = _dhd_bta_docmd(pub, cmd)) > 0)
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return 0;
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else if (status < 0)
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return status;
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/* copy in HCI cmd */
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PKTPULL(osh, p, pub->hdrlen + RFC1042_HDR_LEN);
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bcopy(cmd, PKTDATA(osh, p), len);
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/* copy in partial Ethernet header with BT-SIG LLC/SNAP header */
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PKTPUSH(osh, p, RFC1042_HDR_LEN);
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eh = (struct ether_header *)PKTDATA(osh, p);
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bzero(eh->ether_dhost, ETHER_ADDR_LEN);
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ETHER_SET_LOCALADDR(eh->ether_dhost);
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bcopy(&pub->mac, eh->ether_shost, ETHER_ADDR_LEN);
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eh->ether_type = hton16(len + DOT11_LLC_SNAP_HDR_LEN);
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lsh = (struct dot11_llc_snap_header *)&eh[1];
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bcopy(BT_SIG_SNAP_MPROT, lsh, DOT11_LLC_SNAP_HDR_LEN - 2);
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lsh->type = 0;
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return dhd_sendpkt(pub, 0, p);
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}
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#endif /* !SEND_HCI_CMD_VIA_IOCTL */
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/* Send HCI ACL data to dongle via data channel */
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int
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dhd_bta_tx_hcidata(dhd_pub_t *pub, void *data_buf, uint data_len)
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{
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amp_hci_ACL_data_t *data = (amp_hci_ACL_data_t *)data_buf;
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struct ether_header *eh;
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struct dot11_llc_snap_header *lsh;
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osl_t *osh = pub->osh;
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uint len;
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void *p;
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if (data_len < HCI_ACL_DATA_PREAMBLE_SIZE) {
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DHD_ERROR(("dhd_bta_tx_hcidata: short data_buf, data_len %u\n", data_len));
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return BCME_BADLEN;
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}
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if ((len = (uint)ltoh16(data->dlen) + HCI_ACL_DATA_PREAMBLE_SIZE) > data_len) {
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DHD_ERROR(("dhd_bta_tx_hcidata: malformed hci data, len %u data_len %u\n",
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len, data_len));
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/* return BCME_BADLEN; */
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}
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p = PKTGET(osh, pub->hdrlen + RFC1042_HDR_LEN + len, TRUE);
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if (p == NULL) {
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DHD_ERROR(("dhd_bta_tx_hcidata: out of memory\n"));
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return BCME_NOMEM;
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}
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/* copy in HCI ACL data header and HCI ACL data */
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PKTPULL(osh, p, pub->hdrlen + RFC1042_HDR_LEN);
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bcopy(data, PKTDATA(osh, p), len);
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/* copy in partial Ethernet header with BT-SIG LLC/SNAP header */
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PKTPUSH(osh, p, RFC1042_HDR_LEN);
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eh = (struct ether_header *)PKTDATA(osh, p);
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bzero(eh->ether_dhost, ETHER_ADDR_LEN);
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bcopy(&pub->mac, eh->ether_shost, ETHER_ADDR_LEN);
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eh->ether_type = hton16(len + DOT11_LLC_SNAP_HDR_LEN);
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lsh = (struct dot11_llc_snap_header *)&eh[1];
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bcopy(BT_SIG_SNAP_MPROT, lsh, DOT11_LLC_SNAP_HDR_LEN - 2);
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lsh->type = HTON16(BTA_PROT_L2CAP);
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return dhd_sendpkt(pub, 0, p);
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}
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/* txcomplete callback */
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void
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dhd_bta_tx_hcidata_complete(dhd_pub_t *dhdp, void *txp, bool success)
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{
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uint8 *pktdata = (uint8 *)PKTDATA(dhdp->osh, txp);
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amp_hci_ACL_data_t *ACL_data = (amp_hci_ACL_data_t *)(pktdata + RFC1042_HDR_LEN);
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uint16 handle = ltoh16(ACL_data->handle);
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uint16 llh = HCI_ACL_DATA_HANDLE(handle);
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wl_event_msg_t event;
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uint8 data[HCI_EVT_PREAMBLE_SIZE + sizeof(num_completed_data_blocks_evt_parms_t)];
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amp_hci_event_t *evt;
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num_completed_data_blocks_evt_parms_t *parms;
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uint16 len = HCI_EVT_PREAMBLE_SIZE + sizeof(num_completed_data_blocks_evt_parms_t);
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/* update the event struct */
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memset(&event, 0, sizeof(event));
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event.version = hton16(BCM_EVENT_MSG_VERSION);
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event.event_type = hton32(WLC_E_BTA_HCI_EVENT);
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event.status = 0;
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event.reason = 0;
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event.auth_type = 0;
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event.datalen = hton32(len);
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event.flags = 0;
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/* generate Number of Completed Blocks event */
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evt = (amp_hci_event_t *)data;
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evt->ecode = HCI_Number_of_Completed_Data_Blocks;
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evt->plen = sizeof(num_completed_data_blocks_evt_parms_t);
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parms = (num_completed_data_blocks_evt_parms_t *)evt->parms;
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htol16_ua_store(dhdp->maxdatablks, (uint8 *)&parms->num_blocks);
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parms->num_handles = 1;
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htol16_ua_store(llh, (uint8 *)&parms->completed[0].handle);
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parms->completed[0].pkts = 1;
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parms->completed[0].blocks = 1;
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dhd_sendup_event_common(dhdp, &event, data);
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}
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/* event callback */
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void
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dhd_bta_doevt(dhd_pub_t *dhdp, void *data_buf, uint data_len)
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{
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amp_hci_event_t *evt = (amp_hci_event_t *)data_buf;
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ASSERT(dhdp);
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ASSERT(evt);
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switch (evt->ecode) {
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case HCI_Command_Complete: {
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cmd_complete_parms_t *parms = (cmd_complete_parms_t *)evt->parms;
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switch (ltoh16_ua((uint8 *)&parms->opcode)) {
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case HCI_Read_Data_Block_Size: {
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read_data_block_size_evt_parms_t *parms2 =
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(read_data_block_size_evt_parms_t *)parms->parms;
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dhdp->maxdatablks = ltoh16_ua((uint8 *)&parms2->data_block_num);
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break;
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}
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}
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break;
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}
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case HCI_Flush_Occurred: {
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flush_occurred_evt_parms_t *evt_parms = (flush_occurred_evt_parms_t *)evt->parms;
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dhd_bta_flush_hcidata(dhdp, ltoh16_ua((uint8 *)&evt_parms->handle));
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break;
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}
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default:
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break;
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}
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}
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