init.c 43.1 KB
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/*
 * Copyright (c) 2011 Atheros Communications Inc.
 *
 * 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.
 */

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#include <linux/moduleparam.h>
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#include <linux/errno.h>
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#include <linux/of.h>
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#include <linux/mmc/sdio_func.h>
#include "core.h"
#include "cfg80211.h"
#include "target.h"
#include "debug.h"
#include "hif-ops.h"

unsigned int debug_mask;
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static unsigned int testmode;
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static bool suspend_cutpower;
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static unsigned int uart_debug;
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module_param(debug_mask, uint, 0644);
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module_param(testmode, uint, 0644);
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module_param(suspend_cutpower, bool, 0444);
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module_param(uart_debug, uint, 0644);
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static const struct ath6kl_hw hw_list[] = {
	{
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		.id				= AR6003_HW_2_0_VERSION,
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		.name				= "ar6003 hw 2.0",
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		.dataset_patch_addr		= 0x57e884,
		.app_load_addr			= 0x543180,
		.board_ext_data_addr		= 0x57e500,
		.reserved_ram_size		= 6912,
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		.refclk_hz			= 26000000,
		.uarttx_pin			= 8,
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		/* hw2.0 needs override address hardcoded */
		.app_start_override_addr	= 0x944C00,
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		.fw = {
			.dir		= AR6003_HW_2_0_FW_DIR,
			.otp		= AR6003_HW_2_0_OTP_FILE,
			.fw		= AR6003_HW_2_0_FIRMWARE_FILE,
			.tcmd		= AR6003_HW_2_0_TCMD_FIRMWARE_FILE,
			.patch		= AR6003_HW_2_0_PATCH_FILE,
		},

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		.fw_board		= AR6003_HW_2_0_BOARD_DATA_FILE,
		.fw_default_board	= AR6003_HW_2_0_DEFAULT_BOARD_DATA_FILE,
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	},
	{
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		.id				= AR6003_HW_2_1_1_VERSION,
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		.name				= "ar6003 hw 2.1.1",
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		.dataset_patch_addr		= 0x57ff74,
		.app_load_addr			= 0x1234,
		.board_ext_data_addr		= 0x542330,
		.reserved_ram_size		= 512,
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		.refclk_hz			= 26000000,
		.uarttx_pin			= 8,
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		.fw = {
			.dir		= AR6003_HW_2_1_1_FW_DIR,
			.otp		= AR6003_HW_2_1_1_OTP_FILE,
			.fw		= AR6003_HW_2_1_1_FIRMWARE_FILE,
			.tcmd		= AR6003_HW_2_1_1_TCMD_FIRMWARE_FILE,
			.patch		= AR6003_HW_2_1_1_PATCH_FILE,
		},

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		.fw_board		= AR6003_HW_2_1_1_BOARD_DATA_FILE,
		.fw_default_board	= AR6003_HW_2_1_1_DEFAULT_BOARD_DATA_FILE,
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	},
	{
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		.id				= AR6004_HW_1_0_VERSION,
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		.name				= "ar6004 hw 1.0",
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		.dataset_patch_addr		= 0x57e884,
		.app_load_addr			= 0x1234,
		.board_ext_data_addr		= 0x437000,
		.reserved_ram_size		= 19456,
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		.board_addr			= 0x433900,
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		.refclk_hz			= 26000000,
		.uarttx_pin			= 11,
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		.fw = {
			.dir		= AR6004_HW_1_0_FW_DIR,
			.fw		= AR6004_HW_1_0_FIRMWARE_FILE,
		},

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		.fw_board		= AR6004_HW_1_0_BOARD_DATA_FILE,
		.fw_default_board	= AR6004_HW_1_0_DEFAULT_BOARD_DATA_FILE,
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	},
	{
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		.id				= AR6004_HW_1_1_VERSION,
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		.name				= "ar6004 hw 1.1",
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		.dataset_patch_addr		= 0x57e884,
		.app_load_addr			= 0x1234,
		.board_ext_data_addr		= 0x437000,
		.reserved_ram_size		= 11264,
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		.board_addr			= 0x43d400,
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		.refclk_hz			= 40000000,
		.uarttx_pin			= 11,
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		.fw = {
			.dir		= AR6004_HW_1_1_FW_DIR,
			.fw		= AR6004_HW_1_1_FIRMWARE_FILE,
		},

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		.fw_board		= AR6004_HW_1_1_BOARD_DATA_FILE,
		.fw_default_board	= AR6004_HW_1_1_DEFAULT_BOARD_DATA_FILE,
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	},
};

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/*
 * Include definitions here that can be used to tune the WLAN module
 * behavior. Different customers can tune the behavior as per their needs,
 * here.
 */

/*
 * This configuration item enable/disable keepalive support.
 * Keepalive support: In the absence of any data traffic to AP, null
 * frames will be sent to the AP at periodic interval, to keep the association
 * active. This configuration item defines the periodic interval.
 * Use value of zero to disable keepalive support
 * Default: 60 seconds
 */
#define WLAN_CONFIG_KEEP_ALIVE_INTERVAL 60

/*
 * This configuration item sets the value of disconnect timeout
 * Firmware delays sending the disconnec event to the host for this
 * timeout after is gets disconnected from the current AP.
 * If the firmware successly roams within the disconnect timeout
 * it sends a new connect event
 */
#define WLAN_CONFIG_DISCONNECT_TIMEOUT 10


#define ATH6KL_DATA_OFFSET    64
struct sk_buff *ath6kl_buf_alloc(int size)
{
	struct sk_buff *skb;
	u16 reserved;

	/* Add chacheline space at front and back of buffer */
	reserved = (2 * L1_CACHE_BYTES) + ATH6KL_DATA_OFFSET +
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		   sizeof(struct htc_packet) + ATH6KL_HTC_ALIGN_BYTES;
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	skb = dev_alloc_skb(size + reserved);

	if (skb)
		skb_reserve(skb, reserved - L1_CACHE_BYTES);
	return skb;
}

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void ath6kl_init_profile_info(struct ath6kl_vif *vif)
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{
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	vif->ssid_len = 0;
	memset(vif->ssid, 0, sizeof(vif->ssid));

	vif->dot11_auth_mode = OPEN_AUTH;
	vif->auth_mode = NONE_AUTH;
	vif->prwise_crypto = NONE_CRYPT;
	vif->prwise_crypto_len = 0;
	vif->grp_crypto = NONE_CRYPT;
	vif->grp_crypto_len = 0;
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	memset(vif->wep_key_list, 0, sizeof(vif->wep_key_list));
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	memset(vif->req_bssid, 0, sizeof(vif->req_bssid));
	memset(vif->bssid, 0, sizeof(vif->bssid));
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	vif->bss_ch = 0;
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}

static int ath6kl_set_host_app_area(struct ath6kl *ar)
{
	u32 address, data;
	struct host_app_area host_app_area;

	/* Fetch the address of the host_app_area_s
	 * instance in the host interest area */
	address = ath6kl_get_hi_item_addr(ar, HI_ITEM(hi_app_host_interest));
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	address = TARG_VTOP(ar->target_type, address);
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	if (ath6kl_diag_read32(ar, address, &data))
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		return -EIO;

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	address = TARG_VTOP(ar->target_type, data);
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	host_app_area.wmi_protocol_ver = cpu_to_le32(WMI_PROTOCOL_VERSION);
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	if (ath6kl_diag_write(ar, address, (u8 *) &host_app_area,
			      sizeof(struct host_app_area)))
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		return -EIO;

	return 0;
}

static inline void set_ac2_ep_map(struct ath6kl *ar,
				  u8 ac,
				  enum htc_endpoint_id ep)
{
	ar->ac2ep_map[ac] = ep;
	ar->ep2ac_map[ep] = ac;
}

/* connect to a service */
static int ath6kl_connectservice(struct ath6kl *ar,
				 struct htc_service_connect_req  *con_req,
				 char *desc)
{
	int status;
	struct htc_service_connect_resp response;

	memset(&response, 0, sizeof(response));

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	status = ath6kl_htc_conn_service(ar->htc_target, con_req, &response);
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	if (status) {
		ath6kl_err("failed to connect to %s service status:%d\n",
			   desc, status);
		return status;
	}

	switch (con_req->svc_id) {
	case WMI_CONTROL_SVC:
		if (test_bit(WMI_ENABLED, &ar->flag))
			ath6kl_wmi_set_control_ep(ar->wmi, response.endpoint);
		ar->ctrl_ep = response.endpoint;
		break;
	case WMI_DATA_BE_SVC:
		set_ac2_ep_map(ar, WMM_AC_BE, response.endpoint);
		break;
	case WMI_DATA_BK_SVC:
		set_ac2_ep_map(ar, WMM_AC_BK, response.endpoint);
		break;
	case WMI_DATA_VI_SVC:
		set_ac2_ep_map(ar, WMM_AC_VI, response.endpoint);
		break;
	case WMI_DATA_VO_SVC:
		set_ac2_ep_map(ar, WMM_AC_VO, response.endpoint);
		break;
	default:
		ath6kl_err("service id is not mapped %d\n", con_req->svc_id);
		return -EINVAL;
	}

	return 0;
}

static int ath6kl_init_service_ep(struct ath6kl *ar)
{
	struct htc_service_connect_req connect;

	memset(&connect, 0, sizeof(connect));

	/* these fields are the same for all service endpoints */
	connect.ep_cb.rx = ath6kl_rx;
	connect.ep_cb.rx_refill = ath6kl_rx_refill;
	connect.ep_cb.tx_full = ath6kl_tx_queue_full;

	/*
	 * Set the max queue depth so that our ath6kl_tx_queue_full handler
	 * gets called.
	*/
	connect.max_txq_depth = MAX_DEFAULT_SEND_QUEUE_DEPTH;
	connect.ep_cb.rx_refill_thresh = ATH6KL_MAX_RX_BUFFERS / 4;
	if (!connect.ep_cb.rx_refill_thresh)
		connect.ep_cb.rx_refill_thresh++;

	/* connect to control service */
	connect.svc_id = WMI_CONTROL_SVC;
	if (ath6kl_connectservice(ar, &connect, "WMI CONTROL"))
		return -EIO;

	connect.flags |= HTC_FLGS_TX_BNDL_PAD_EN;

	/*
	 * Limit the HTC message size on the send path, although e can
	 * receive A-MSDU frames of 4K, we will only send ethernet-sized
	 * (802.3) frames on the send path.
	 */
	connect.max_rxmsg_sz = WMI_MAX_TX_DATA_FRAME_LENGTH;

	/*
	 * To reduce the amount of committed memory for larger A_MSDU
	 * frames, use the recv-alloc threshold mechanism for larger
	 * packets.
	 */
	connect.ep_cb.rx_alloc_thresh = ATH6KL_BUFFER_SIZE;
	connect.ep_cb.rx_allocthresh = ath6kl_alloc_amsdu_rxbuf;

	/*
	 * For the remaining data services set the connection flag to
	 * reduce dribbling, if configured to do so.
	 */
	connect.conn_flags |= HTC_CONN_FLGS_REDUCE_CRED_DRIB;
	connect.conn_flags &= ~HTC_CONN_FLGS_THRESH_MASK;
	connect.conn_flags |= HTC_CONN_FLGS_THRESH_LVL_HALF;

	connect.svc_id = WMI_DATA_BE_SVC;

	if (ath6kl_connectservice(ar, &connect, "WMI DATA BE"))
		return -EIO;

	/* connect to back-ground map this to WMI LOW_PRI */
	connect.svc_id = WMI_DATA_BK_SVC;
	if (ath6kl_connectservice(ar, &connect, "WMI DATA BK"))
		return -EIO;

	/* connect to Video service, map this to to HI PRI */
	connect.svc_id = WMI_DATA_VI_SVC;
	if (ath6kl_connectservice(ar, &connect, "WMI DATA VI"))
		return -EIO;

	/*
	 * Connect to VO service, this is currently not mapped to a WMI
	 * priority stream due to historical reasons. WMI originally
	 * defined 3 priorities over 3 mailboxes We can change this when
	 * WMI is reworked so that priorities are not dependent on
	 * mailboxes.
	 */
	connect.svc_id = WMI_DATA_VO_SVC;
	if (ath6kl_connectservice(ar, &connect, "WMI DATA VO"))
		return -EIO;

	return 0;
}

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void ath6kl_init_control_info(struct ath6kl_vif *vif)
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{
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	ath6kl_init_profile_info(vif);
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	vif->def_txkey_index = 0;
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	memset(vif->wep_key_list, 0, sizeof(vif->wep_key_list));
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	vif->ch_hint = 0;
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}

/*
 * Set HTC/Mbox operational parameters, this can only be called when the
 * target is in the BMI phase.
 */
static int ath6kl_set_htc_params(struct ath6kl *ar, u32 mbox_isr_yield_val,
				 u8 htc_ctrl_buf)
{
	int status;
	u32 blk_size;

	blk_size = ar->mbox_info.block_size;

	if (htc_ctrl_buf)
		blk_size |=  ((u32)htc_ctrl_buf) << 16;

	/* set the host interest area for the block size */
	status = ath6kl_bmi_write(ar,
			ath6kl_get_hi_item_addr(ar,
			HI_ITEM(hi_mbox_io_block_sz)),
			(u8 *)&blk_size,
			4);
	if (status) {
		ath6kl_err("bmi_write_memory for IO block size failed\n");
		goto out;
	}

	ath6kl_dbg(ATH6KL_DBG_TRC, "block size set: %d (target addr:0x%X)\n",
		   blk_size,
		   ath6kl_get_hi_item_addr(ar, HI_ITEM(hi_mbox_io_block_sz)));

	if (mbox_isr_yield_val) {
		/* set the host interest area for the mbox ISR yield limit */
		status = ath6kl_bmi_write(ar,
				ath6kl_get_hi_item_addr(ar,
				HI_ITEM(hi_mbox_isr_yield_limit)),
				(u8 *)&mbox_isr_yield_val,
				4);
		if (status) {
			ath6kl_err("bmi_write_memory for yield limit failed\n");
			goto out;
		}
	}

out:
	return status;
}

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static int ath6kl_target_config_wlan_params(struct ath6kl *ar, int idx)
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{
	int status = 0;
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	int ret;
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	/*
	 * Configure the device for rx dot11 header rules. "0,0" are the
	 * default values. Required if checksum offload is needed. Set
	 * RxMetaVersion to 2.
	 */
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	if (ath6kl_wmi_set_rx_frame_format_cmd(ar->wmi, idx,
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					       ar->rx_meta_ver, 0, 0)) {
		ath6kl_err("unable to set the rx frame format\n");
		status = -EIO;
	}

	if (ar->conf_flags & ATH6KL_CONF_IGNORE_PS_FAIL_EVT_IN_SCAN)
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		if ((ath6kl_wmi_pmparams_cmd(ar->wmi, idx, 0, 1, 0, 0, 1,
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		     IGNORE_POWER_SAVE_FAIL_EVENT_DURING_SCAN)) != 0) {
			ath6kl_err("unable to set power save fail event policy\n");
			status = -EIO;
		}

	if (!(ar->conf_flags & ATH6KL_CONF_IGNORE_ERP_BARKER))
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		if ((ath6kl_wmi_set_lpreamble_cmd(ar->wmi, idx, 0,
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		     WMI_DONOT_IGNORE_BARKER_IN_ERP)) != 0) {
			ath6kl_err("unable to set barker preamble policy\n");
			status = -EIO;
		}

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	if (ath6kl_wmi_set_keepalive_cmd(ar->wmi, idx,
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			WLAN_CONFIG_KEEP_ALIVE_INTERVAL)) {
		ath6kl_err("unable to set keep alive interval\n");
		status = -EIO;
	}

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	if (ath6kl_wmi_disctimeout_cmd(ar->wmi, idx,
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			WLAN_CONFIG_DISCONNECT_TIMEOUT)) {
		ath6kl_err("unable to set disconnect timeout\n");
		status = -EIO;
	}

	if (!(ar->conf_flags & ATH6KL_CONF_ENABLE_TX_BURST))
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		if (ath6kl_wmi_set_wmm_txop(ar->wmi, idx, WMI_TXOP_DISABLED)) {
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			ath6kl_err("unable to set txop bursting\n");
			status = -EIO;
		}

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	if (ar->p2p && (ar->vif_max == 1 || idx)) {
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		ret = ath6kl_wmi_info_req_cmd(ar->wmi, idx,
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					      P2P_FLAG_CAPABILITIES_REQ |
					      P2P_FLAG_MACADDR_REQ |
					      P2P_FLAG_HMODEL_REQ);
		if (ret) {
			ath6kl_dbg(ATH6KL_DBG_TRC, "failed to request P2P "
				   "capabilities (%d) - assuming P2P not "
				   "supported\n", ret);
			ar->p2p = 0;
		}
	}

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	if (ar->p2p && (ar->vif_max == 1 || idx)) {
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		/* Enable Probe Request reporting for P2P */
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		ret = ath6kl_wmi_probe_report_req_cmd(ar->wmi, idx, true);
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		if (ret) {
			ath6kl_dbg(ATH6KL_DBG_TRC, "failed to enable Probe "
				   "Request reporting (%d)\n", ret);
		}
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	}

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	return status;
}

int ath6kl_configure_target(struct ath6kl *ar)
{
	u32 param, ram_reserved_size;
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	u8 fw_iftype, fw_mode = 0, fw_submode = 0;
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	int i, status;
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	param = uart_debug;
	if (ath6kl_bmi_write(ar, ath6kl_get_hi_item_addr(ar,
			     HI_ITEM(hi_serial_enable)), (u8 *)&param, 4)) {
		ath6kl_err("bmi_write_memory for uart debug failed\n");
		return -EIO;
	}

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	/*
	 * Note: Even though the firmware interface type is
	 * chosen as BSS_STA for all three interfaces, can
	 * be configured to IBSS/AP as long as the fw submode
	 * remains normal mode (0 - AP, STA and IBSS). But
	 * due to an target assert in firmware only one interface is
	 * configured for now.
	 */
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	fw_iftype = HI_OPTION_FW_MODE_BSS_STA;
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	for (i = 0; i < ar->vif_max; i++)
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		fw_mode |= fw_iftype << (i * HI_OPTION_FW_MODE_BITS);

	/*
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	 * By default, submodes :
	 *		vif[0] - AP/STA/IBSS
	 *		vif[1] - "P2P dev"/"P2P GO"/"P2P Client"
	 *		vif[2] - "P2P dev"/"P2P GO"/"P2P Client"
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	 */
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	for (i = 0; i < ar->max_norm_iface; i++)
		fw_submode |= HI_OPTION_FW_SUBMODE_NONE <<
			      (i * HI_OPTION_FW_SUBMODE_BITS);

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	for (i = ar->max_norm_iface; i < ar->vif_max; i++)
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		fw_submode |= HI_OPTION_FW_SUBMODE_P2PDEV <<
			      (i * HI_OPTION_FW_SUBMODE_BITS);
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	if (ar->p2p && ar->vif_max == 1)
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		fw_submode = HI_OPTION_FW_SUBMODE_P2PDEV;

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	param = HTC_PROTOCOL_VERSION;
	if (ath6kl_bmi_write(ar,
			     ath6kl_get_hi_item_addr(ar,
			     HI_ITEM(hi_app_host_interest)),
			     (u8 *)&param, 4) != 0) {
		ath6kl_err("bmi_write_memory for htc version failed\n");
		return -EIO;
	}

	/* set the firmware mode to STA/IBSS/AP */
	param = 0;

	if (ath6kl_bmi_read(ar,
			    ath6kl_get_hi_item_addr(ar,
			    HI_ITEM(hi_option_flag)),
			    (u8 *)&param, 4) != 0) {
		ath6kl_err("bmi_read_memory for setting fwmode failed\n");
		return -EIO;
	}

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	param |= (ar->vif_max << HI_OPTION_NUM_DEV_SHIFT);
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	param |= fw_mode << HI_OPTION_FW_MODE_SHIFT;
	param |= fw_submode << HI_OPTION_FW_SUBMODE_SHIFT;

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	param |= (0 << HI_OPTION_MAC_ADDR_METHOD_SHIFT);
	param |= (0 << HI_OPTION_FW_BRIDGE_SHIFT);

	if (ath6kl_bmi_write(ar,
			     ath6kl_get_hi_item_addr(ar,
			     HI_ITEM(hi_option_flag)),
			     (u8 *)&param,
			     4) != 0) {
		ath6kl_err("bmi_write_memory for setting fwmode failed\n");
		return -EIO;
	}

	ath6kl_dbg(ATH6KL_DBG_TRC, "firmware mode set\n");

	/*
	 * Hardcode the address use for the extended board data
	 * Ideally this should be pre-allocate by the OS at boot time
	 * But since it is a new feature and board data is loaded
	 * at init time, we have to workaround this from host.
	 * It is difficult to patch the firmware boot code,
	 * but possible in theory.
	 */

554 555
	param = ar->hw.board_ext_data_addr;
	ram_reserved_size = ar->hw.reserved_ram_size;
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557 558 559 560 561 562 563 564 565 566 567 568
	if (ath6kl_bmi_write(ar, ath6kl_get_hi_item_addr(ar,
					HI_ITEM(hi_board_ext_data)),
			     (u8 *)&param, 4) != 0) {
		ath6kl_err("bmi_write_memory for hi_board_ext_data failed\n");
		return -EIO;
	}

	if (ath6kl_bmi_write(ar, ath6kl_get_hi_item_addr(ar,
					HI_ITEM(hi_end_ram_reserve_sz)),
			     (u8 *)&ram_reserved_size, 4) != 0) {
		ath6kl_err("bmi_write_memory for hi_end_ram_reserve_sz failed\n");
		return -EIO;
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	}

	/* set the block size for the target */
	if (ath6kl_set_htc_params(ar, MBOX_YIELD_LIMIT, 0))
		/* use default number of control buffers */
		return -EIO;

576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593
	/* Configure GPIO AR600x UART */
	param = ar->hw.uarttx_pin;
	status = ath6kl_bmi_write(ar,
				ath6kl_get_hi_item_addr(ar,
				HI_ITEM(hi_dbg_uart_txpin)),
				(u8 *)&param, 4);
	if (status)
		return status;

	/* Configure target refclk_hz */
	param =  ar->hw.refclk_hz;
	status = ath6kl_bmi_write(ar,
				ath6kl_get_hi_item_addr(ar,
				HI_ITEM(hi_refclk_hz)),
				(u8 *)&param, 4);
	if (status)
		return status;

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	return 0;
}

597
void ath6kl_core_free(struct ath6kl *ar)
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{
599
	wiphy_free(ar->wiphy);
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}

602
void ath6kl_core_cleanup(struct ath6kl *ar)
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{
604 605
	ath6kl_hif_power_off(ar);

606
	destroy_workqueue(ar->ath6kl_wq);
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608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624
	if (ar->htc_target)
		ath6kl_htc_cleanup(ar->htc_target);

	ath6kl_cookie_cleanup(ar);

	ath6kl_cleanup_amsdu_rxbufs(ar);

	ath6kl_bmi_cleanup(ar);

	ath6kl_debug_cleanup(ar);

	kfree(ar->fw_board);
	kfree(ar->fw_otp);
	kfree(ar->fw);
	kfree(ar->fw_patch);

	ath6kl_deinit_ieee80211_hw(ar);
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}

/* firmware upload */
static int ath6kl_get_fw(struct ath6kl *ar, const char *filename,
			 u8 **fw, size_t *fw_len)
{
	const struct firmware *fw_entry;
	int ret;

	ret = request_firmware(&fw_entry, filename, ar->dev);
	if (ret)
		return ret;

	*fw_len = fw_entry->size;
	*fw = kmemdup(fw_entry->data, fw_entry->size, GFP_KERNEL);

	if (*fw == NULL)
		ret = -ENOMEM;

	release_firmware(fw_entry);

	return ret;
}

649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671
#ifdef CONFIG_OF
/*
 * Check the device tree for a board-id and use it to construct
 * the pathname to the firmware file.  Used (for now) to find a
 * fallback to the "bdata.bin" file--typically a symlink to the
 * appropriate board-specific file.
 */
static bool check_device_tree(struct ath6kl *ar)
{
	static const char *board_id_prop = "atheros,board-id";
	struct device_node *node;
	char board_filename[64];
	const char *board_id;
	int ret;

	for_each_compatible_node(node, NULL, "atheros,ath6kl") {
		board_id = of_get_property(node, board_id_prop, NULL);
		if (board_id == NULL) {
			ath6kl_warn("No \"%s\" property on %s node.\n",
				    board_id_prop, node->name);
			continue;
		}
		snprintf(board_filename, sizeof(board_filename),
672
			 "%s/bdata.%s.bin", ar->hw.fw.dir, board_id);
673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691

		ret = ath6kl_get_fw(ar, board_filename, &ar->fw_board,
				    &ar->fw_board_len);
		if (ret) {
			ath6kl_err("Failed to get DT board file %s: %d\n",
				   board_filename, ret);
			continue;
		}
		return true;
	}
	return false;
}
#else
static bool check_device_tree(struct ath6kl *ar)
{
	return false;
}
#endif /* CONFIG_OF */

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static int ath6kl_fetch_board_file(struct ath6kl *ar)
{
	const char *filename;
	int ret;

697 698 699
	if (ar->fw_board != NULL)
		return 0;

700 701 702 703
	if (WARN_ON(ar->hw.fw_board == NULL))
		return -EINVAL;

	filename = ar->hw.fw_board;
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	ret = ath6kl_get_fw(ar, filename, &ar->fw_board,
			    &ar->fw_board_len);
	if (ret == 0) {
		/* managed to get proper board file */
		return 0;
	}

712 713 714 715 716
	if (check_device_tree(ar)) {
		/* got board file from device tree */
		return 0;
	}

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	/* there was no proper board file, try to use default instead */
	ath6kl_warn("Failed to get board file %s (%d), trying to find default board file.\n",
		    filename, ret);

721
	filename = ar->hw.fw_default_board;
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	ret = ath6kl_get_fw(ar, filename, &ar->fw_board,
			    &ar->fw_board_len);
	if (ret) {
		ath6kl_err("Failed to get default board file %s: %d\n",
			   filename, ret);
		return ret;
	}

	ath6kl_warn("WARNING! No proper board file was not found, instead using a default board file.\n");
	ath6kl_warn("Most likely your hardware won't work as specified. Install correct board file!\n");

	return 0;
}

737 738
static int ath6kl_fetch_otp_file(struct ath6kl *ar)
{
739
	char filename[100];
740 741 742 743 744
	int ret;

	if (ar->fw_otp != NULL)
		return 0;

745
	if (ar->hw.fw.otp == NULL) {
746 747
		ath6kl_dbg(ATH6KL_DBG_BOOT,
			   "no OTP file configured for this hw\n");
748 749 750
		return 0;
	}

751 752
	snprintf(filename, sizeof(filename), "%s/%s",
		 ar->hw.fw.dir, ar->hw.fw.otp);
753

754 755 756 757 758 759 760 761 762 763 764 765 766
	ret = ath6kl_get_fw(ar, filename, &ar->fw_otp,
			    &ar->fw_otp_len);
	if (ret) {
		ath6kl_err("Failed to get OTP file %s: %d\n",
			   filename, ret);
		return ret;
	}

	return 0;
}

static int ath6kl_fetch_fw_file(struct ath6kl *ar)
{
767
	char filename[100];
768 769 770 771 772 773
	int ret;

	if (ar->fw != NULL)
		return 0;

	if (testmode) {
774
		if (ar->hw.fw.tcmd == NULL) {
775
			ath6kl_warn("testmode not supported\n");
776 777 778
			return -EOPNOTSUPP;
		}

779 780
		snprintf(filename, sizeof(filename), "%s/%s",
			 ar->hw.fw.dir, ar->hw.fw.tcmd);
781

782 783 784 785 786
		set_bit(TESTMODE, &ar->flag);

		goto get_fw;
	}

787 788
	/* FIXME: remove WARN_ON() as we won't support FW API 1 for long */
	if (WARN_ON(ar->hw.fw.fw == NULL))
789 790
		return -EINVAL;

791 792
	snprintf(filename, sizeof(filename), "%s/%s",
		 ar->hw.fw.dir, ar->hw.fw.fw);
793 794 795 796 797 798 799 800 801 802 803 804 805 806

get_fw:
	ret = ath6kl_get_fw(ar, filename, &ar->fw, &ar->fw_len);
	if (ret) {
		ath6kl_err("Failed to get firmware file %s: %d\n",
			   filename, ret);
		return ret;
	}

	return 0;
}

static int ath6kl_fetch_patch_file(struct ath6kl *ar)
{
807
	char filename[100];
808 809
	int ret;

810
	if (ar->fw_patch != NULL)
811 812
		return 0;

813
	if (ar->hw.fw.patch == NULL)
814 815
		return 0;

816 817
	snprintf(filename, sizeof(filename), "%s/%s",
		 ar->hw.fw.dir, ar->hw.fw.patch);
818 819 820 821 822 823 824

	ret = ath6kl_get_fw(ar, filename, &ar->fw_patch,
			    &ar->fw_patch_len);
	if (ret) {
		ath6kl_err("Failed to get patch file %s: %d\n",
			   filename, ret);
		return ret;
825 826 827 828 829
	}

	return 0;
}

830
static int ath6kl_fetch_fw_api1(struct ath6kl *ar)
831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847
{
	int ret;

	ret = ath6kl_fetch_otp_file(ar);
	if (ret)
		return ret;

	ret = ath6kl_fetch_fw_file(ar);
	if (ret)
		return ret;

	ret = ath6kl_fetch_patch_file(ar);
	if (ret)
		return ret;

	return 0;
}
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static int ath6kl_fetch_fw_apin(struct ath6kl *ar, const char *name)
850 851 852 853
{
	size_t magic_len, len, ie_len;
	const struct firmware *fw;
	struct ath6kl_fw_ie *hdr;
854
	char filename[100];
855
	const u8 *data;
856
	int ret, ie_id, i, index, bit;
857
	__le32 *val;
858

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	snprintf(filename, sizeof(filename), "%s/%s", ar->hw.fw.dir, name);
860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901

	ret = request_firmware(&fw, filename, ar->dev);
	if (ret)
		return ret;

	data = fw->data;
	len = fw->size;

	/* magic also includes the null byte, check that as well */
	magic_len = strlen(ATH6KL_FIRMWARE_MAGIC) + 1;

	if (len < magic_len) {
		ret = -EINVAL;
		goto out;
	}

	if (memcmp(data, ATH6KL_FIRMWARE_MAGIC, magic_len) != 0) {
		ret = -EINVAL;
		goto out;
	}

	len -= magic_len;
	data += magic_len;

	/* loop elements */
	while (len > sizeof(struct ath6kl_fw_ie)) {
		/* hdr is unaligned! */
		hdr = (struct ath6kl_fw_ie *) data;

		ie_id = le32_to_cpup(&hdr->id);
		ie_len = le32_to_cpup(&hdr->len);

		len -= sizeof(*hdr);
		data += sizeof(*hdr);

		if (len < ie_len) {
			ret = -EINVAL;
			goto out;
		}

		switch (ie_id) {
		case ATH6KL_FW_IE_OTP_IMAGE:
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			ath6kl_dbg(ATH6KL_DBG_BOOT, "found otp image ie (%zd B)\n",
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				ie_len);

905 906 907 908 909 910 911 912 913 914
			ar->fw_otp = kmemdup(data, ie_len, GFP_KERNEL);

			if (ar->fw_otp == NULL) {
				ret = -ENOMEM;
				goto out;
			}

			ar->fw_otp_len = ie_len;
			break;
		case ATH6KL_FW_IE_FW_IMAGE:
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			ath6kl_dbg(ATH6KL_DBG_BOOT, "found fw image ie (%zd B)\n",
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				ie_len);

918 919 920 921 922 923 924 925 926 927
			ar->fw = kmemdup(data, ie_len, GFP_KERNEL);

			if (ar->fw == NULL) {
				ret = -ENOMEM;
				goto out;
			}

			ar->fw_len = ie_len;
			break;
		case ATH6KL_FW_IE_PATCH_IMAGE:
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			ath6kl_dbg(ATH6KL_DBG_BOOT, "found patch image ie (%zd B)\n",
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				ie_len);

931 932 933 934 935 936 937 938 939
			ar->fw_patch = kmemdup(data, ie_len, GFP_KERNEL);

			if (ar->fw_patch == NULL) {
				ret = -ENOMEM;
				goto out;
			}

			ar->fw_patch_len = ie_len;
			break;
940 941 942
		case ATH6KL_FW_IE_RESERVED_RAM_SIZE:
			val = (__le32 *) data;
			ar->hw.reserved_ram_size = le32_to_cpup(val);
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			ath6kl_dbg(ATH6KL_DBG_BOOT,
				   "found reserved ram size ie 0x%d\n",
				   ar->hw.reserved_ram_size);
947
			break;
948
		case ATH6KL_FW_IE_CAPABILITIES:
949 950 951
			if (ie_len < DIV_ROUND_UP(ATH6KL_FW_CAPABILITY_MAX, 8))
				break;

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			ath6kl_dbg(ATH6KL_DBG_BOOT,
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				   "found firmware capabilities ie (%zd B)\n",
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				   ie_len);

956
			for (i = 0; i < ATH6KL_FW_CAPABILITY_MAX; i++) {
957
				index = i / 8;
958 959 960 961 962
				bit = i % 8;

				if (data[index] & (1 << bit))
					__set_bit(i, ar->fw_capabilities);
			}
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			ath6kl_dbg_dump(ATH6KL_DBG_BOOT, "capabilities", "",
					ar->fw_capabilities,
					sizeof(ar->fw_capabilities));
967
			break;
968 969 970 971 972 973
		case ATH6KL_FW_IE_PATCH_ADDR:
			if (ie_len != sizeof(*val))
				break;

			val = (__le32 *) data;
			ar->hw.dataset_patch_addr = le32_to_cpup(val);
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			ath6kl_dbg(ATH6KL_DBG_BOOT,
976
				   "found patch address ie 0x%x\n",
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				   ar->hw.dataset_patch_addr);
978
			break;
979 980 981 982 983 984 985 986 987 988 989
		case ATH6KL_FW_IE_BOARD_ADDR:
			if (ie_len != sizeof(*val))
				break;

			val = (__le32 *) data;
			ar->hw.board_addr = le32_to_cpup(val);

			ath6kl_dbg(ATH6KL_DBG_BOOT,
				   "found board address ie 0x%x\n",
				   ar->hw.board_addr);
			break;
990 991 992 993 994 995 996 997
		case ATH6KL_FW_IE_VIF_MAX:
			if (ie_len != sizeof(*val))
				break;

			val = (__le32 *) data;
			ar->vif_max = min_t(unsigned int, le32_to_cpup(val),
					    ATH6KL_VIF_MAX);

998 999 1000
			if (ar->vif_max > 1 && !ar->p2p)
				ar->max_norm_iface = 2;

1001 1002 1003
			ath6kl_dbg(ATH6KL_DBG_BOOT,
				   "found vif max ie %d\n", ar->vif_max);
			break;
1004
		default:
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			ath6kl_dbg(ATH6KL_DBG_BOOT, "Unknown fw ie: %u\n",
1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028
				   le32_to_cpup(&hdr->id));
			break;
		}

		len -= ie_len;
		data += ie_len;
	};

	ret = 0;
out:
	release_firmware(fw);

	return ret;
}

static int ath6kl_fetch_firmwares(struct ath6kl *ar)
{
	int ret;

	ret = ath6kl_fetch_board_file(ar);
	if (ret)
		return ret;

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	ret = ath6kl_fetch_fw_apin(ar, ATH6KL_FW_API3_FILE);
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	if (ret == 0) {
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		ar->fw_api = 3;
		goto out;
	}

	ret = ath6kl_fetch_fw_apin(ar, ATH6KL_FW_API2_FILE);
	if (ret == 0) {
		ar->fw_api = 2;
		goto out;
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	}
1040 1041 1042 1043 1044

	ret = ath6kl_fetch_fw_api1(ar);
	if (ret)
		return ret;

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	ar->fw_api = 1;

out:
	ath6kl_dbg(ATH6KL_DBG_BOOT, "using fw api %d\n", ar->fw_api);
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1050 1051 1052
	return 0;
}

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static int ath6kl_upload_board_file(struct ath6kl *ar)
{
	u32 board_address, board_ext_address, param;
1056
	u32 board_data_size, board_ext_data_size;
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	int ret;

1059 1060
	if (WARN_ON(ar->fw_board == NULL))
		return -ENOENT;
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1062 1063 1064 1065 1066
	/*
	 * Determine where in Target RAM to write Board Data.
	 * For AR6004, host determine Target RAM address for
	 * writing board data.
	 */
1067 1068
	if (ar->hw.board_addr != 0) {
		board_address = ar->hw.board_addr;
1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079
		ath6kl_bmi_write(ar,
				ath6kl_get_hi_item_addr(ar,
				HI_ITEM(hi_board_data)),
				(u8 *) &board_address, 4);
	} else {
		ath6kl_bmi_read(ar,
				ath6kl_get_hi_item_addr(ar,
				HI_ITEM(hi_board_data)),
				(u8 *) &board_address, 4);
	}

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	/* determine where in target ram to write extended board data */
	ath6kl_bmi_read(ar,
			ath6kl_get_hi_item_addr(ar,
			HI_ITEM(hi_board_ext_data)),
			(u8 *) &board_ext_address, 4);

1086 1087
	if (ar->target_type == TARGET_TYPE_AR6003 &&
	    board_ext_address == 0) {
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		ath6kl_err("Failed to get board file target address.\n");
		return -EINVAL;
	}

1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106
	switch (ar->target_type) {
	case TARGET_TYPE_AR6003:
		board_data_size = AR6003_BOARD_DATA_SZ;
		board_ext_data_size = AR6003_BOARD_EXT_DATA_SZ;
		break;
	case TARGET_TYPE_AR6004:
		board_data_size = AR6004_BOARD_DATA_SZ;
		board_ext_data_size = AR6004_BOARD_EXT_DATA_SZ;
		break;
	default:
		WARN_ON(1);
		return -EINVAL;
		break;
	}

1107 1108
	if (board_ext_address &&
	    ar->fw_board_len == (board_data_size + board_ext_data_size)) {
1109

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		/* write extended board data */
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		ath6kl_dbg(ATH6KL_DBG_BOOT,
			   "writing extended board data to 0x%x (%d B)\n",
			   board_ext_address, board_ext_data_size);

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		ret = ath6kl_bmi_write(ar, board_ext_address,
1116 1117
				       ar->fw_board + board_data_size,
				       board_ext_data_size);
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		if (ret) {
			ath6kl_err("Failed to write extended board data: %d\n",
				   ret);
			return ret;
		}

		/* record that extended board data is initialized */
1125 1126
		param = (board_ext_data_size << 16) | 1;

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		ath6kl_bmi_write(ar,
				 ath6kl_get_hi_item_addr(ar,
				 HI_ITEM(hi_board_ext_data_config)),
				 (unsigned char *) &param, 4);
	}

1133
	if (ar->fw_board_len < board_data_size) {
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		ath6kl_err("Too small board file: %zu\n", ar->fw_board_len);
		ret = -EINVAL;
		return ret;
	}

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	ath6kl_dbg(ATH6KL_DBG_BOOT, "writing board file to 0x%x (%d B)\n",
		   board_address, board_data_size);

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	ret = ath6kl_bmi_write(ar, board_address, ar->fw_board,
1143
			       board_data_size);
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	if (ret) {
		ath6kl_err("Board file bmi write failed: %d\n", ret);
		return ret;
	}

	/* record the fact that Board Data IS initialized */
	param = 1;
	ath6kl_bmi_write(ar,
			 ath6kl_get_hi_item_addr(ar,
			 HI_ITEM(hi_board_data_initialized)),
			 (u8 *)&param, 4);

	return ret;
}

static int ath6kl_upload_otp(struct ath6kl *ar)
{
	u32 address, param;
1163
	bool from_hw = false;
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1164 1165
	int ret;

1166 1167
	if (ar->fw_otp == NULL)
		return 0;
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1168

1169
	address = ar->hw.app_load_addr;
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1170

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1171
	ath6kl_dbg(ATH6KL_DBG_BOOT, "writing otp to 0x%x (%zd B)\n", address,
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1172 1173
		   ar->fw_otp_len);

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1174 1175 1176 1177 1178 1179 1180
	ret = ath6kl_bmi_fast_download(ar, address, ar->fw_otp,
				       ar->fw_otp_len);
	if (ret) {
		ath6kl_err("Failed to upload OTP file: %d\n", ret);
		return ret;
	}

1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191
	/* read firmware start address */
	ret = ath6kl_bmi_read(ar,
			      ath6kl_get_hi_item_addr(ar,
						      HI_ITEM(hi_app_start)),
			      (u8 *) &address, sizeof(address));

	if (ret) {
		ath6kl_err("Failed to read hi_app_start: %d\n", ret);
		return ret;
	}

1192 1193 1194 1195
	if (ar->hw.app_start_override_addr == 0) {
		ar->hw.app_start_override_addr = address;
		from_hw = true;
	}
1196

1197 1198
	ath6kl_dbg(ATH6KL_DBG_BOOT, "app_start_override_addr%s 0x%x\n",
		   from_hw ? " (from hw)" : "",
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1199 1200
		   ar->hw.app_start_override_addr);

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	/* execute the OTP code */
1202 1203
	ath6kl_dbg(ATH6KL_DBG_BOOT, "executing OTP at 0x%x\n",
		   ar->hw.app_start_override_addr);
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	param = 0;
1205
	ath6kl_bmi_execute(ar, ar->hw.app_start_override_addr, &param);
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1206 1207 1208 1209 1210 1211 1212 1213 1214

	return ret;
}

static int ath6kl_upload_firmware(struct ath6kl *ar)
{
	u32 address;
	int ret;

1215
	if (WARN_ON(ar->fw == NULL))
1216
		return 0;
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1217

1218
	address = ar->hw.app_load_addr;
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1219

K
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1220
	ath6kl_dbg(ATH6KL_DBG_BOOT, "writing firmware to 0x%x (%zd B)\n",
K
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1221 1222
		   address, ar->fw_len);

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1223 1224 1225 1226 1227 1228 1229
	ret = ath6kl_bmi_fast_download(ar, address, ar->fw, ar->fw_len);

	if (ret) {
		ath6kl_err("Failed to write firmware: %d\n", ret);
		return ret;
	}

1230 1231 1232 1233 1234
	/*
	 * Set starting address for firmware
	 * Don't need to setup app_start override addr on AR6004
	 */
	if (ar->target_type != TARGET_TYPE_AR6004) {
1235
		address = ar->hw.app_start_override_addr;
1236 1237
		ath6kl_bmi_set_app_start(ar, address);
	}
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	return ret;
}

static int ath6kl_upload_patch(struct ath6kl *ar)
{
	u32 address, param;
	int ret;

1246 1247
	if (ar->fw_patch == NULL)
		return 0;
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1248

1249
	address = ar->hw.dataset_patch_addr;
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1250

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1251
	ath6kl_dbg(ATH6KL_DBG_BOOT, "writing patch to 0x%x (%zd B)\n",
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1252 1253
		   address, ar->fw_patch_len);

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1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273
	ret = ath6kl_bmi_write(ar, address, ar->fw_patch, ar->fw_patch_len);
	if (ret) {
		ath6kl_err("Failed to write patch file: %d\n", ret);
		return ret;
	}

	param = address;
	ath6kl_bmi_write(ar,
			 ath6kl_get_hi_item_addr(ar,
			 HI_ITEM(hi_dset_list_head)),
			 (unsigned char *) &param, 4);

	return 0;
}

static int ath6kl_init_upload(struct ath6kl *ar)
{
	u32 param, options, sleep, address;
	int status = 0;

1274 1275
	if (ar->target_type != TARGET_TYPE_AR6003 &&
		ar->target_type != TARGET_TYPE_AR6004)
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1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306
		return -EINVAL;

	/* temporarily disable system sleep */
	address = MBOX_BASE_ADDRESS + LOCAL_SCRATCH_ADDRESS;
	status = ath6kl_bmi_reg_read(ar, address, &param);
	if (status)
		return status;

	options = param;

	param |= ATH6KL_OPTION_SLEEP_DISABLE;
	status = ath6kl_bmi_reg_write(ar, address, param);
	if (status)
		return status;

	address = RTC_BASE_ADDRESS + SYSTEM_SLEEP_ADDRESS;
	status = ath6kl_bmi_reg_read(ar, address, &param);
	if (status)
		return status;

	sleep = param;

	param |= SM(SYSTEM_SLEEP_DISABLE, 1);
	status = ath6kl_bmi_reg_write(ar, address, param);
	if (status)
		return status;

	ath6kl_dbg(ATH6KL_DBG_TRC, "old options: %d, old sleep: %d\n",
		   options, sleep);

	/* program analog PLL register */
1307 1308 1309 1310
	/* no need to control 40/44MHz clock on AR6004 */
	if (ar->target_type != TARGET_TYPE_AR6004) {
		status = ath6kl_bmi_reg_write(ar, ATH6KL_ANALOG_PLL_REGISTER,
					      0xF9104001);
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1311

1312 1313
		if (status)
			return status;
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1314

1315 1316 1317 1318 1319 1320 1321 1322
		/* Run at 80/88MHz by default */
		param = SM(CPU_CLOCK_STANDARD, 1);

		address = RTC_BASE_ADDRESS + CPU_CLOCK_ADDRESS;
		status = ath6kl_bmi_reg_write(ar, address, param);
		if (status)
			return status;
	}
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1323 1324 1325 1326 1327 1328 1329 1330 1331

	param = 0;
	address = RTC_BASE_ADDRESS + LPO_CAL_ADDRESS;
	param = SM(LPO_CAL_ENABLE, 1);
	status = ath6kl_bmi_reg_write(ar, address, param);
	if (status)
		return status;

	/* WAR to avoid SDIO CRC err */
1332
	if (ar->version.target_ver == AR6003_HW_2_0_VERSION) {
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1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391
		ath6kl_err("temporary war to avoid sdio crc error\n");

		param = 0x20;

		address = GPIO_BASE_ADDRESS + GPIO_PIN10_ADDRESS;
		status = ath6kl_bmi_reg_write(ar, address, param);
		if (status)
			return status;

		address = GPIO_BASE_ADDRESS + GPIO_PIN11_ADDRESS;
		status = ath6kl_bmi_reg_write(ar, address, param);
		if (status)
			return status;

		address = GPIO_BASE_ADDRESS + GPIO_PIN12_ADDRESS;
		status = ath6kl_bmi_reg_write(ar, address, param);
		if (status)
			return status;

		address = GPIO_BASE_ADDRESS + GPIO_PIN13_ADDRESS;
		status = ath6kl_bmi_reg_write(ar, address, param);
		if (status)
			return status;
	}

	/* write EEPROM data to Target RAM */
	status = ath6kl_upload_board_file(ar);
	if (status)
		return status;

	/* transfer One time Programmable data */
	status = ath6kl_upload_otp(ar);
	if (status)
		return status;

	/* Download Target firmware */
	status = ath6kl_upload_firmware(ar);
	if (status)
		return status;

	status = ath6kl_upload_patch(ar);
	if (status)
		return status;

	/* Restore system sleep */
	address = RTC_BASE_ADDRESS + SYSTEM_SLEEP_ADDRESS;
	status = ath6kl_bmi_reg_write(ar, address, sleep);
	if (status)
		return status;

	address = MBOX_BASE_ADDRESS + LOCAL_SCRATCH_ADDRESS;
	param = options | 0x20;
	status = ath6kl_bmi_reg_write(ar, address, param);
	if (status)
		return status;

	return status;
}

1392 1393
static int ath6kl_init_hw_params(struct ath6kl *ar)
{
1394 1395
	const struct ath6kl_hw *hw;
	int i;
1396

1397 1398
	for (i = 0; i < ARRAY_SIZE(hw_list); i++) {
		hw = &hw_list[i];
1399

1400 1401 1402 1403 1404
		if (hw->id == ar->version.target_ver)
			break;
	}

	if (i == ARRAY_SIZE(hw_list)) {
1405 1406 1407 1408 1409
		ath6kl_err("Unsupported hardware version: 0x%x\n",
			   ar->version.target_ver);
		return -EINVAL;
	}

1410 1411
	ar->hw = *hw;

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1412 1413 1414 1415 1416 1417 1418 1419
	ath6kl_dbg(ATH6KL_DBG_BOOT,
		   "target_ver 0x%x target_type 0x%x dataset_patch 0x%x app_load_addr 0x%x\n",
		   ar->version.target_ver, ar->target_type,
		   ar->hw.dataset_patch_addr, ar->hw.app_load_addr);
	ath6kl_dbg(ATH6KL_DBG_BOOT,
		   "app_start_override_addr 0x%x board_ext_data_addr 0x%x reserved_ram_size 0x%x",
		   ar->hw.app_start_override_addr, ar->hw.board_ext_data_addr,
		   ar->hw.reserved_ram_size);
1420 1421 1422
	ath6kl_dbg(ATH6KL_DBG_BOOT,
		   "refclk_hz %d uarttx_pin %d",
		   ar->hw.refclk_hz, ar->hw.uarttx_pin);
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1424 1425 1426
	return 0;
}

1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438
static const char *ath6kl_init_get_hif_name(enum ath6kl_hif_type type)
{
	switch (type) {
	case ATH6KL_HIF_TYPE_SDIO:
		return "sdio";
	case ATH6KL_HIF_TYPE_USB:
		return "usb";
	}

	return NULL;
}

1439
int ath6kl_init_hw_start(struct ath6kl *ar)
1440 1441 1442 1443
{
	long timeleft;
	int ret, i;

1444 1445
	ath6kl_dbg(ATH6KL_DBG_BOOT, "hw start\n");

1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498
	ret = ath6kl_hif_power_on(ar);
	if (ret)
		return ret;

	ret = ath6kl_configure_target(ar);
	if (ret)
		goto err_power_off;

	ret = ath6kl_init_upload(ar);
	if (ret)
		goto err_power_off;

	/* Do we need to finish the BMI phase */
	/* FIXME: return error from ath6kl_bmi_done() */
	if (ath6kl_bmi_done(ar)) {
		ret = -EIO;
		goto err_power_off;
	}

	/*
	 * The reason we have to wait for the target here is that the
	 * driver layer has to init BMI in order to set the host block
	 * size.
	 */
	if (ath6kl_htc_wait_target(ar->htc_target)) {
		ret = -EIO;
		goto err_power_off;
	}

	if (ath6kl_init_service_ep(ar)) {
		ret = -EIO;
		goto err_cleanup_scatter;
	}

	/* setup credit distribution */
	ath6kl_credit_setup(ar->htc_target, &ar->credit_state_info);

	/* start HTC */
	ret = ath6kl_htc_start(ar->htc_target);
	if (ret) {
		/* FIXME: call this */
		ath6kl_cookie_cleanup(ar);
		goto err_cleanup_scatter;
	}

	/* Wait for Wmi event to be ready */
	timeleft = wait_event_interruptible_timeout(ar->event_wq,
						    test_bit(WMI_READY,
							     &ar->flag),
						    WMI_TIMEOUT);

	ath6kl_dbg(ATH6KL_DBG_BOOT, "firmware booted\n");

1499 1500

	if (test_and_clear_bit(FIRST_BOOT, &ar->flag)) {
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		ath6kl_info("%s %s fw %s api %d%s\n",
1502 1503 1504
			    ar->hw.name,
			    ath6kl_init_get_hif_name(ar->hif_type),
			    ar->wiphy->fw_version,
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			    ar->fw_api,
1506 1507 1508
			    test_bit(TESTMODE, &ar->flag) ? " testmode" : "");
	}

1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528
	if (ar->version.abi_ver != ATH6KL_ABI_VERSION) {
		ath6kl_err("abi version mismatch: host(0x%x), target(0x%x)\n",
			   ATH6KL_ABI_VERSION, ar->version.abi_ver);
		ret = -EIO;
		goto err_htc_stop;
	}

	if (!timeleft || signal_pending(current)) {
		ath6kl_err("wmi is not ready or wait was interrupted\n");
		ret = -EIO;
		goto err_htc_stop;
	}

	ath6kl_dbg(ATH6KL_DBG_TRC, "%s: wmi is ready\n", __func__);

	/* communicate the wmi protocol verision to the target */
	/* FIXME: return error */
	if ((ath6kl_set_host_app_area(ar)) != 0)
		ath6kl_err("unable to set the host app area\n");

1529
	for (i = 0; i < ar->vif_max; i++) {
1530 1531 1532 1533 1534
		ret = ath6kl_target_config_wlan_params(ar, i);
		if (ret)
			goto err_htc_stop;
	}

1535 1536
	ar->state = ATH6KL_STATE_ON;

1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548
	return 0;

err_htc_stop:
	ath6kl_htc_stop(ar->htc_target);
err_cleanup_scatter:
	ath6kl_hif_cleanup_scatter(ar);
err_power_off:
	ath6kl_hif_power_off(ar);

	return ret;
}

1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564
int ath6kl_init_hw_stop(struct ath6kl *ar)
{
	int ret;

	ath6kl_dbg(ATH6KL_DBG_BOOT, "hw stop\n");

	ath6kl_htc_stop(ar->htc_target);

	ath6kl_hif_stop(ar);

	ath6kl_bmi_reset(ar);

	ret = ath6kl_hif_power_off(ar);
	if (ret)
		ath6kl_warn("failed to power off hif: %d\n", ret);

1565 1566
	ar->state = ATH6KL_STATE_OFF;

1567 1568 1569
	return 0;
}

1570
int ath6kl_core_init(struct ath6kl *ar)
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1571
{
1572
	struct ath6kl_bmi_target_info targ_info;
1573
	struct net_device *ndev;
1574
	int ret = 0, i;
K
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1575

1576 1577 1578 1579 1580 1581 1582 1583
	ar->ath6kl_wq = create_singlethread_workqueue("ath6kl");
	if (!ar->ath6kl_wq)
		return -ENOMEM;

	ret = ath6kl_bmi_init(ar);
	if (ret)
		goto err_wq;

1584 1585 1586 1587 1588
	/*
	 * Turn on power to get hardware (target) version and leave power
	 * on delibrately as we will boot the hardware anyway within few
	 * seconds.
	 */
1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617
	ret = ath6kl_hif_power_on(ar);
	if (ret)
		goto err_bmi_cleanup;

	ret = ath6kl_bmi_get_target_info(ar, &targ_info);
	if (ret)
		goto err_power_off;

	ar->version.target_ver = le32_to_cpu(targ_info.version);
	ar->target_type = le32_to_cpu(targ_info.type);
	ar->wiphy->hw_version = le32_to_cpu(targ_info.version);

	ret = ath6kl_init_hw_params(ar);
	if (ret)
		goto err_power_off;

	ar->htc_target = ath6kl_htc_create(ar);

	if (!ar->htc_target) {
		ret = -ENOMEM;
		goto err_power_off;
	}

	ret = ath6kl_fetch_firmwares(ar);
	if (ret)
		goto err_htc_cleanup;

	/* FIXME: we should free all firmwares in the error cases below */

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1618 1619
	/* Indicate that WMI is enabled (although not ready yet) */
	set_bit(WMI_ENABLED, &ar->flag);
1620
	ar->wmi = ath6kl_wmi_init(ar);
K
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1621 1622
	if (!ar->wmi) {
		ath6kl_err("failed to initialize wmi\n");
1623 1624
		ret = -EIO;
		goto err_htc_cleanup;
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1625 1626 1627 1628
	}

	ath6kl_dbg(ATH6KL_DBG_TRC, "%s: got wmi @ 0x%p.\n", __func__, ar->wmi);

1629 1630
	ret = ath6kl_register_ieee80211_hw(ar);
	if (ret)
1631 1632
		goto err_node_cleanup;

1633 1634
	ret = ath6kl_debug_init(ar);
	if (ret) {
1635 1636 1637 1638
		wiphy_unregister(ar->wiphy);
		goto err_node_cleanup;
	}

1639
	for (i = 0; i < ar->vif_max; i++)
1640 1641
		ar->avail_idx_map |= BIT(i);

1642 1643
	rtnl_lock();

1644
	/* Add an initial station interface */
1645 1646
	ndev = ath6kl_interface_add(ar, "wlan%d", NL80211_IFTYPE_STATION, 0,
				    INFRA_NETWORK);
1647 1648 1649

	rtnl_unlock();

1650 1651
	if (!ndev) {
		ath6kl_err("Failed to instantiate a network device\n");
1652
		ret = -ENOMEM;
1653 1654 1655 1656 1657 1658
		wiphy_unregister(ar->wiphy);
		goto err_debug_init;
	}


	ath6kl_dbg(ATH6KL_DBG_TRC, "%s: name=%s dev=0x%p, ar=0x%p\n",
1659
			__func__, ndev->name, ndev, ar);
1660

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1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678
	/* setup access class priority mappings */
	ar->ac_stream_pri_map[WMM_AC_BK] = 0; /* lowest  */
	ar->ac_stream_pri_map[WMM_AC_BE] = 1;
	ar->ac_stream_pri_map[WMM_AC_VI] = 2;
	ar->ac_stream_pri_map[WMM_AC_VO] = 3; /* highest */

	/* give our connected endpoints some buffers */
	ath6kl_rx_refill(ar->htc_target, ar->ctrl_ep);
	ath6kl_rx_refill(ar->htc_target, ar->ac2ep_map[WMM_AC_BE]);

	/* allocate some buffers that handle larger AMSDU frames */
	ath6kl_refill_amsdu_rxbufs(ar, ATH6KL_MAX_AMSDU_RX_BUFFERS);

	ath6kl_cookie_init(ar);

	ar->conf_flags = ATH6KL_CONF_IGNORE_ERP_BARKER |
			 ATH6KL_CONF_ENABLE_11N | ATH6KL_CONF_ENABLE_TX_BURST;

1679 1680 1681
	if (suspend_cutpower)
		ar->conf_flags |= ATH6KL_CONF_SUSPEND_CUTPOWER;

1682
	ar->wiphy->flags |= WIPHY_FLAG_SUPPORTS_FW_ROAM |
1683
			    WIPHY_FLAG_HAVE_AP_SME |
1684
			    WIPHY_FLAG_HAS_REMAIN_ON_CHANNEL |
1685 1686
			    WIPHY_FLAG_AP_PROBE_RESP_OFFLOAD;

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1687 1688 1689
	if (test_bit(ATH6KL_FW_CAPABILITY_SCHED_SCAN, ar->fw_capabilities))
		ar->wiphy->flags |= WIPHY_FLAG_SUPPORTS_SCHED_SCAN;

1690 1691 1692 1693 1694
	ar->wiphy->probe_resp_offload =
		NL80211_PROBE_RESP_OFFLOAD_SUPPORT_WPS |
		NL80211_PROBE_RESP_OFFLOAD_SUPPORT_WPS2 |
		NL80211_PROBE_RESP_OFFLOAD_SUPPORT_P2P |
		NL80211_PROBE_RESP_OFFLOAD_SUPPORT_80211U;
1695

1696 1697
	set_bit(FIRST_BOOT, &ar->flag);

1698 1699
	ndev->hw_features |= NETIF_F_IP_CSUM | NETIF_F_RXCSUM;

1700
	ret = ath6kl_init_hw_start(ar);
1701
	if (ret) {
1702
		ath6kl_err("Failed to start hardware: %d\n", ret);
1703
		goto err_rxbuf_cleanup;
1704
	}
1705 1706 1707 1708 1709 1710 1711

	/*
	 * Set mac address which is received in ready event
	 * FIXME: Move to ath6kl_interface_add()
	 */
	memcpy(ndev->dev_addr, ar->mac_addr, ETH_ALEN);

1712
	return ret;
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1713 1714

err_rxbuf_cleanup:
1715
	ath6kl_htc_flush_rx_buf(ar->htc_target);
K
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1716
	ath6kl_cleanup_amsdu_rxbufs(ar);
1717
	rtnl_lock();
1718
	ath6kl_deinit_if_data(netdev_priv(ndev));
1719
	rtnl_unlock();
1720 1721 1722
	wiphy_unregister(ar->wiphy);
err_debug_init:
	ath6kl_debug_cleanup(ar);
1723
err_node_cleanup:
K
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1724 1725 1726 1727
	ath6kl_wmi_shutdown(ar->wmi);
	clear_bit(WMI_ENABLED, &ar->flag);
	ar->wmi = NULL;
err_htc_cleanup:
1728
	ath6kl_htc_cleanup(ar->htc_target);
1729 1730
err_power_off:
	ath6kl_hif_power_off(ar);
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err_bmi_cleanup:
	ath6kl_bmi_cleanup(ar);
err_wq:
	destroy_workqueue(ar->ath6kl_wq);
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	return ret;
}

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void ath6kl_cleanup_vif(struct ath6kl_vif *vif, bool wmi_ready)
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{
	static u8 bcast_mac[] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
	bool discon_issued;

	netif_stop_queue(vif->ndev);

	clear_bit(WLAN_ENABLED, &vif->flags);

	if (wmi_ready) {
		discon_issued = test_bit(CONNECTED, &vif->flags) ||
				test_bit(CONNECT_PEND, &vif->flags);
		ath6kl_disconnect(vif);
		del_timer(&vif->disconnect_timer);

		if (discon_issued)
			ath6kl_disconnect_event(vif, DISCONNECT_CMD,
						(vif->nw_type & AP_NETWORK) ?
						bcast_mac : vif->bssid,
						0, NULL, 0);
	}

	if (vif->scan_req) {
		cfg80211_scan_done(vif->scan_req, true);
		vif->scan_req = NULL;
	}
}

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void ath6kl_stop_txrx(struct ath6kl *ar)
{
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	struct ath6kl_vif *vif, *tmp_vif;
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	set_bit(DESTROY_IN_PROGRESS, &ar->flag);

	if (down_interruptible(&ar->sem)) {
		ath6kl_err("down_interruptible failed\n");
		return;
	}

1778
	spin_lock_bh(&ar->list_lock);
1779 1780
	list_for_each_entry_safe(vif, tmp_vif, &ar->vif_list, list) {
		list_del(&vif->list);
1781
		spin_unlock_bh(&ar->list_lock);
1782
		ath6kl_cleanup_vif(vif, test_bit(WMI_READY, &ar->flag));
1783 1784 1785
		rtnl_lock();
		ath6kl_deinit_if_data(vif);
		rtnl_unlock();
1786
		spin_lock_bh(&ar->list_lock);
1787
	}
1788
	spin_unlock_bh(&ar->list_lock);
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	clear_bit(WMI_READY, &ar->flag);
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	/*
	 * After wmi_shudown all WMI events will be dropped. We
	 * need to cleanup the buffers allocated in AP mode and
	 * give disconnect notification to stack, which usually
	 * happens in the disconnect_event. Simulate the disconnect
	 * event by calling the function directly. Sometimes
	 * disconnect_event will be received when the debug logs
	 * are collected.
	 */
	ath6kl_wmi_shutdown(ar->wmi);
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	clear_bit(WMI_ENABLED, &ar->flag);
	if (ar->htc_target) {
		ath6kl_dbg(ATH6KL_DBG_TRC, "%s: shut down htc\n", __func__);
		ath6kl_htc_stop(ar->htc_target);
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	}

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	/*
	 * Try to reset the device if we can. The driver may have been
	 * configure NOT to reset the target during a debug session.
	 */
	ath6kl_dbg(ATH6KL_DBG_TRC,
			"attempting to reset target on instance destroy\n");
	ath6kl_reset_device(ar, ar->target_type, true, true);
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1817
	clear_bit(WLAN_ENABLED, &ar->flag);
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}