4965.c 64.8 KB
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/******************************************************************************
 *
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 * Copyright(c) 2003 - 2011 Intel Corporation. All rights reserved.
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 *
 * This program is free software; you can redistribute it and/or modify it
 * under the terms of version 2 of the GNU General Public License as
 * published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
 * more details.
 *
 * You should have received a copy of the GNU General Public License along with
 * this program; if not, write to the Free Software Foundation, Inc.,
 * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
 *
 * The full GNU General Public License is included in this distribution in the
 * file called LICENSE.
 *
 * Contact Information:
 *  Intel Linux Wireless <ilw@linux.intel.com>
 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
 *
 *****************************************************************************/

#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/init.h>
#include <linux/pci.h>
#include <linux/dma-mapping.h>
#include <linux/delay.h>
#include <linux/sched.h>
#include <linux/skbuff.h>
#include <linux/netdevice.h>
#include <net/mac80211.h>
#include <linux/etherdevice.h>
#include <asm/unaligned.h>

#include "iwl-eeprom.h"
#include "iwl-dev.h"
#include "iwl-core.h"
#include "iwl-io.h"
#include "iwl-helpers.h"
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#include "iwl-4965-calib.h"
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#include "iwl-sta.h"
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#include "iwl-4965.h"
#include "iwl-4965-debugfs.h"
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#define IL_AC_UNSET -1

/**
 * il_verify_inst_sparse - verify runtime uCode image in card vs. host,
 *   using sample data 100 bytes apart.  If these sample points are good,
 *   it's a pretty good bet that everything between them is good, too.
 */
static int
il4965_verify_inst_sparse(struct il_priv *il, __le32 *image, u32 len)
{
	u32 val;
	int ret = 0;
	u32 errcnt = 0;
	u32 i;

	D_INFO("ucode inst image size is %u\n", len);

	for (i = 0; i < len; i += 100, image += 100/sizeof(u32)) {
		/* read data comes through single port, auto-incr addr */
		/* NOTE: Use the debugless read so we don't flood kernel log
		 * if IL_DL_IO is set */
		il_wr(il, HBUS_TARG_MEM_RADDR,
			i + IL4965_RTC_INST_LOWER_BOUND);
		val = _il_rd(il, HBUS_TARG_MEM_RDAT);
		if (val != le32_to_cpu(*image)) {
			ret = -EIO;
			errcnt++;
			if (errcnt >= 3)
				break;
		}
	}

	return ret;
}

/**
 * il4965_verify_inst_full - verify runtime uCode image in card vs. host,
 *     looking at all data.
 */
static int il4965_verify_inst_full(struct il_priv *il, __le32 *image,
				 u32 len)
{
	u32 val;
	u32 save_len = len;
	int ret = 0;
	u32 errcnt;

	D_INFO("ucode inst image size is %u\n", len);

	il_wr(il, HBUS_TARG_MEM_RADDR,
			   IL4965_RTC_INST_LOWER_BOUND);

	errcnt = 0;
	for (; len > 0; len -= sizeof(u32), image++) {
		/* read data comes through single port, auto-incr addr */
		/* NOTE: Use the debugless read so we don't flood kernel log
		 * if IL_DL_IO is set */
		val = _il_rd(il, HBUS_TARG_MEM_RDAT);
		if (val != le32_to_cpu(*image)) {
			IL_ERR("uCode INST section is invalid at "
				  "offset 0x%x, is 0x%x, s/b 0x%x\n",
				  save_len - len, val, le32_to_cpu(*image));
			ret = -EIO;
			errcnt++;
			if (errcnt >= 20)
				break;
		}
	}

	if (!errcnt)
		D_INFO(
		    "ucode image in INSTRUCTION memory is good\n");

	return ret;
}

/**
 * il4965_verify_ucode - determine which instruction image is in SRAM,
 *    and verify its contents
 */
int il4965_verify_ucode(struct il_priv *il)
{
	__le32 *image;
	u32 len;
	int ret;

	/* Try bootstrap */
	image = (__le32 *)il->ucode_boot.v_addr;
	len = il->ucode_boot.len;
	ret = il4965_verify_inst_sparse(il, image, len);
	if (!ret) {
		D_INFO("Bootstrap uCode is good in inst SRAM\n");
		return 0;
	}

	/* Try initialize */
	image = (__le32 *)il->ucode_init.v_addr;
	len = il->ucode_init.len;
	ret = il4965_verify_inst_sparse(il, image, len);
	if (!ret) {
		D_INFO("Initialize uCode is good in inst SRAM\n");
		return 0;
	}

	/* Try runtime/protocol */
	image = (__le32 *)il->ucode_code.v_addr;
	len = il->ucode_code.len;
	ret = il4965_verify_inst_sparse(il, image, len);
	if (!ret) {
		D_INFO("Runtime uCode is good in inst SRAM\n");
		return 0;
	}

	IL_ERR("NO VALID UCODE IMAGE IN INSTRUCTION SRAM!!\n");

	/* Since nothing seems to match, show first several data entries in
	 * instruction SRAM, so maybe visual inspection will give a clue.
	 * Selection of bootstrap image (vs. other images) is arbitrary. */
	image = (__le32 *)il->ucode_boot.v_addr;
	len = il->ucode_boot.len;
	ret = il4965_verify_inst_full(il, image, len);

	return ret;
}

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/******************************************************************************
 *
 * EEPROM related functions
 *
******************************************************************************/

/*
 * The device's EEPROM semaphore prevents conflicts between driver and uCode
 * when accessing the EEPROM; each access is a series of pulses to/from the
 * EEPROM chip, not a single event, so even reads could conflict if they
 * weren't arbitrated by the semaphore.
 */
int il4965_eeprom_acquire_semaphore(struct il_priv *il)
{
	u16 count;
	int ret;

	for (count = 0; count < EEPROM_SEM_RETRY_LIMIT; count++) {
		/* Request semaphore */
		il_set_bit(il, CSR_HW_IF_CONFIG_REG,
			    CSR_HW_IF_CONFIG_REG_BIT_EEPROM_OWN_SEM);

		/* See if we got it */
		ret = _il_poll_bit(il, CSR_HW_IF_CONFIG_REG,
				CSR_HW_IF_CONFIG_REG_BIT_EEPROM_OWN_SEM,
				CSR_HW_IF_CONFIG_REG_BIT_EEPROM_OWN_SEM,
				EEPROM_SEM_TIMEOUT);
		if (ret >= 0)
			return ret;
	}

	return ret;
}

void il4965_eeprom_release_semaphore(struct il_priv *il)
{
	il_clear_bit(il, CSR_HW_IF_CONFIG_REG,
		CSR_HW_IF_CONFIG_REG_BIT_EEPROM_OWN_SEM);

}

int il4965_eeprom_check_version(struct il_priv *il)
{
	u16 eeprom_ver;
	u16 calib_ver;

	eeprom_ver = il_eeprom_query16(il, EEPROM_VERSION);
	calib_ver = il_eeprom_query16(il,
			EEPROM_4965_CALIB_VERSION_OFFSET);

	if (eeprom_ver < il->cfg->eeprom_ver ||
	    calib_ver < il->cfg->eeprom_calib_ver)
		goto err;

	IL_INFO("device EEPROM VER=0x%x, CALIB=0x%x\n",
		 eeprom_ver, calib_ver);

	return 0;
err:
	IL_ERR("Unsupported (too old) EEPROM VER=0x%x < 0x%x "
		  "CALIB=0x%x < 0x%x\n",
		  eeprom_ver, il->cfg->eeprom_ver,
		  calib_ver,  il->cfg->eeprom_calib_ver);
	return -EINVAL;

}

void il4965_eeprom_get_mac(const struct il_priv *il, u8 *mac)
{
	const u8 *addr = il_eeprom_query_addr(il,
					EEPROM_MAC_ADDRESS);
	memcpy(mac, addr, ETH_ALEN);
}

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/* Send led command */
static int
il4965_send_led_cmd(struct il_priv *il, struct il_led_cmd *led_cmd)
{
	struct il_host_cmd cmd = {
		.id = REPLY_LEDS_CMD,
		.len = sizeof(struct il_led_cmd),
		.data = led_cmd,
		.flags = CMD_ASYNC,
		.callback = NULL,
	};
	u32 reg;

	reg = _il_rd(il, CSR_LED_REG);
	if (reg != (reg & CSR_LED_BSM_CTRL_MSK))
		_il_wr(il, CSR_LED_REG, reg & CSR_LED_BSM_CTRL_MSK);

	return il_send_cmd(il, &cmd);
}

/* Set led register off */
void il4965_led_enable(struct il_priv *il)
{
	_il_wr(il, CSR_LED_REG, CSR_LED_REG_TRUN_ON);
}

const struct il_led_ops il4965_led_ops = {
	.cmd = il4965_send_led_cmd,
};

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static int il4965_send_tx_power(struct il_priv *il);
static int il4965_hw_get_temperature(struct il_priv *il);
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/* Highest firmware API version supported */
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#define IL4965_UCODE_API_MAX 2
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/* Lowest firmware API version supported */
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#define IL4965_UCODE_API_MIN 2
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#define IL4965_FW_PRE "iwlwifi-4965-"
#define _IL4965_MODULE_FIRMWARE(api) IL4965_FW_PRE #api ".ucode"
#define IL4965_MODULE_FIRMWARE(api) _IL4965_MODULE_FIRMWARE(api)
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/* check contents of special bootstrap uCode SRAM */
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static int il4965_verify_bsm(struct il_priv *il)
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{
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	__le32 *image = il->ucode_boot.v_addr;
	u32 len = il->ucode_boot.len;
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	u32 reg;
	u32 val;

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	D_INFO("Begin verify bsm\n");
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	/* verify BSM SRAM contents */
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	val = il_rd_prph(il, BSM_WR_DWCOUNT_REG);
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	for (reg = BSM_SRAM_LOWER_BOUND;
	     reg < BSM_SRAM_LOWER_BOUND + len;
	     reg += sizeof(u32), image++) {
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		val = il_rd_prph(il, reg);
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		if (val != le32_to_cpu(*image)) {
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			IL_ERR("BSM uCode verification failed at "
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				  "addr 0x%08X+%u (of %u), is 0x%x, s/b 0x%x\n",
				  BSM_SRAM_LOWER_BOUND,
				  reg - BSM_SRAM_LOWER_BOUND, len,
				  val, le32_to_cpu(*image));
			return -EIO;
		}
	}

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	D_INFO("BSM bootstrap uCode image OK\n");
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	return 0;
}

/**
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 * il4965_load_bsm - Load bootstrap instructions
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 *
 * BSM operation:
 *
 * The Bootstrap State Machine (BSM) stores a short bootstrap uCode program
 * in special SRAM that does not power down during RFKILL.  When powering back
 * up after power-saving sleeps (or during initial uCode load), the BSM loads
 * the bootstrap program into the on-board processor, and starts it.
 *
 * The bootstrap program loads (via DMA) instructions and data for a new
 * program from host DRAM locations indicated by the host driver in the
 * BSM_DRAM_* registers.  Once the new program is loaded, it starts
 * automatically.
 *
 * When initializing the NIC, the host driver points the BSM to the
 * "initialize" uCode image.  This uCode sets up some internal data, then
 * notifies host via "initialize alive" that it is complete.
 *
 * The host then replaces the BSM_DRAM_* pointer values to point to the
 * normal runtime uCode instructions and a backup uCode data cache buffer
 * (filled initially with starting data values for the on-board processor),
 * then triggers the "initialize" uCode to load and launch the runtime uCode,
 * which begins normal operation.
 *
 * When doing a power-save shutdown, runtime uCode saves data SRAM into
 * the backup data cache in DRAM before SRAM is powered down.
 *
 * When powering back up, the BSM loads the bootstrap program.  This reloads
 * the runtime uCode instructions and the backup data cache into SRAM,
 * and re-launches the runtime uCode from where it left off.
 */
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static int il4965_load_bsm(struct il_priv *il)
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{
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	__le32 *image = il->ucode_boot.v_addr;
	u32 len = il->ucode_boot.len;
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	dma_addr_t pinst;
	dma_addr_t pdata;
	u32 inst_len;
	u32 data_len;
	int i;
	u32 done;
	u32 reg_offset;
	int ret;

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	D_INFO("Begin load bsm\n");
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	il->ucode_type = UCODE_RT;
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	/* make sure bootstrap program is no larger than BSM's SRAM size */
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	if (len > IL49_MAX_BSM_SIZE)
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		return -EINVAL;

	/* Tell bootstrap uCode where to find the "Initialize" uCode
	 *   in host DRAM ... host DRAM physical address bits 35:4 for 4965.
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	 * NOTE:  il_init_alive_start() will replace these values,
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	 *        after the "initialize" uCode has run, to point to
	 *        runtime/protocol instructions and backup data cache.
	 */
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	pinst = il->ucode_init.p_addr >> 4;
	pdata = il->ucode_init_data.p_addr >> 4;
	inst_len = il->ucode_init.len;
	data_len = il->ucode_init_data.len;
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	il_wr_prph(il, BSM_DRAM_INST_PTR_REG, pinst);
	il_wr_prph(il, BSM_DRAM_DATA_PTR_REG, pdata);
	il_wr_prph(il, BSM_DRAM_INST_BYTECOUNT_REG, inst_len);
	il_wr_prph(il, BSM_DRAM_DATA_BYTECOUNT_REG, data_len);
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	/* Fill BSM memory with bootstrap instructions */
	for (reg_offset = BSM_SRAM_LOWER_BOUND;
	     reg_offset < BSM_SRAM_LOWER_BOUND + len;
	     reg_offset += sizeof(u32), image++)
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		_il_wr_prph(il, reg_offset, le32_to_cpu(*image));
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	ret = il4965_verify_bsm(il);
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	if (ret)
		return ret;

	/* Tell BSM to copy from BSM SRAM into instruction SRAM, when asked */
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	il_wr_prph(il, BSM_WR_MEM_SRC_REG, 0x0);
	il_wr_prph(il,
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			BSM_WR_MEM_DST_REG, IL49_RTC_INST_LOWER_BOUND);
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	il_wr_prph(il, BSM_WR_DWCOUNT_REG, len / sizeof(u32));
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	/* Load bootstrap code into instruction SRAM now,
	 *   to prepare to load "initialize" uCode */
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	il_wr_prph(il, BSM_WR_CTRL_REG, BSM_WR_CTRL_REG_BIT_START);
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	/* Wait for load of bootstrap uCode to finish */
	for (i = 0; i < 100; i++) {
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		done = il_rd_prph(il, BSM_WR_CTRL_REG);
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		if (!(done & BSM_WR_CTRL_REG_BIT_START))
			break;
		udelay(10);
	}
	if (i < 100)
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		D_INFO("BSM write complete, poll %d iterations\n", i);
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	else {
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		IL_ERR("BSM write did not complete!\n");
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		return -EIO;
	}

	/* Enable future boot loads whenever power management unit triggers it
	 *   (e.g. when powering back up after power-save shutdown) */
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	il_wr_prph(il,
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			BSM_WR_CTRL_REG, BSM_WR_CTRL_REG_BIT_START_EN);
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	return 0;
}

/**
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 * il4965_set_ucode_ptrs - Set uCode address location
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 *
 * Tell initialization uCode where to find runtime uCode.
 *
 * BSM registers initially contain pointers to initialization uCode.
 * We need to replace them to load runtime uCode inst and data,
 * and to save runtime data when powering down.
 */
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static int il4965_set_ucode_ptrs(struct il_priv *il)
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{
	dma_addr_t pinst;
	dma_addr_t pdata;
	int ret = 0;

	/* bits 35:4 for 4965 */
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	pinst = il->ucode_code.p_addr >> 4;
	pdata = il->ucode_data_backup.p_addr >> 4;
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	/* Tell bootstrap uCode where to find image to load */
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	il_wr_prph(il, BSM_DRAM_INST_PTR_REG, pinst);
	il_wr_prph(il, BSM_DRAM_DATA_PTR_REG, pdata);
	il_wr_prph(il, BSM_DRAM_DATA_BYTECOUNT_REG,
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				 il->ucode_data.len);
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	/* Inst byte count must be last to set up, bit 31 signals uCode
	 *   that all new ptr/size info is in place */
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	il_wr_prph(il, BSM_DRAM_INST_BYTECOUNT_REG,
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				 il->ucode_code.len | BSM_DRAM_INST_LOAD);
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	D_INFO("Runtime uCode pointers are set.\n");
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	return ret;
}

/**
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 * il4965_init_alive_start - Called after REPLY_ALIVE notification received
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 *
 * Called after REPLY_ALIVE notification received from "initialize" uCode.
 *
 * The 4965 "initialize" ALIVE reply contains calibration data for:
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 *   Voltage, temperature, and MIMO tx gain correction, now stored in il
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 *   (3945 does not contain this data).
 *
 * Tell "initialize" uCode to go ahead and load the runtime uCode.
*/
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static void il4965_init_alive_start(struct il_priv *il)
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{
	/* Bootstrap uCode has loaded initialize uCode ... verify inst image.
	 * This is a paranoid check, because we would not have gotten the
	 * "initialize" alive if code weren't properly loaded.  */
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	if (il4965_verify_ucode(il)) {
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		/* Runtime instruction load was bad;
		 * take it all the way back down so we can try again */
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		D_INFO("Bad \"initialize\" uCode load.\n");
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		goto restart;
	}

	/* Calculate temperature */
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	il->temperature = il4965_hw_get_temperature(il);
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	/* Send pointers to protocol/runtime uCode image ... init code will
	 * load and launch runtime uCode, which will send us another "Alive"
	 * notification. */
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	D_INFO("Initialization Alive received.\n");
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	if (il4965_set_ucode_ptrs(il)) {
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		/* Runtime instruction load won't happen;
		 * take it all the way back down so we can try again */
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		D_INFO("Couldn't set up uCode pointers.\n");
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		goto restart;
	}
	return;

restart:
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	queue_work(il->workqueue, &il->restart);
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}

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static bool iw4965_is_ht40_channel(__le32 rxon_flags)
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{
	int chan_mod = le32_to_cpu(rxon_flags & RXON_FLG_CHANNEL_MODE_MSK)
				    >> RXON_FLG_CHANNEL_MODE_POS;
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	return (chan_mod == CHANNEL_MODE_PURE_40 ||
		chan_mod == CHANNEL_MODE_MIXED);
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}

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static void il4965_nic_config(struct il_priv *il)
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{
	unsigned long flags;
	u16 radio_cfg;

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	spin_lock_irqsave(&il->lock, flags);
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	radio_cfg = il_eeprom_query16(il, EEPROM_RADIO_CONFIG);
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	/* write radio config values to register */
	if (EEPROM_RF_CFG_TYPE_MSK(radio_cfg) == EEPROM_4965_RF_CFG_TYPE_MAX)
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		il_set_bit(il, CSR_HW_IF_CONFIG_REG,
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			    EEPROM_RF_CFG_TYPE_MSK(radio_cfg) |
			    EEPROM_RF_CFG_STEP_MSK(radio_cfg) |
			    EEPROM_RF_CFG_DASH_MSK(radio_cfg));

	/* set CSR_HW_CONFIG_REG for uCode use */
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	il_set_bit(il, CSR_HW_IF_CONFIG_REG,
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		    CSR_HW_IF_CONFIG_REG_BIT_RADIO_SI |
		    CSR_HW_IF_CONFIG_REG_BIT_MAC_SI);

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	il->calib_info = (struct il_eeprom_calib_info *)
		il_eeprom_query_addr(il,
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				EEPROM_4965_CALIB_TXPOWER_OFFSET);
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	spin_unlock_irqrestore(&il->lock, flags);
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}

/* Reset differential Rx gains in NIC to prepare for chain noise calibration.
 * Called after every association, but this runs only once!
 *  ... once chain noise is calibrated the first time, it's good forever.  */
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static void il4965_chain_noise_reset(struct il_priv *il)
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{
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	struct il_chain_noise_data *data = &(il->chain_noise_data);
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	if (data->state == IL_CHAIN_NOISE_ALIVE &&
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	    il_is_any_associated(il)) {
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		struct il_calib_diff_gain_cmd cmd;
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		/* clear data for chain noise calibration algorithm */
		data->chain_noise_a = 0;
		data->chain_noise_b = 0;
		data->chain_noise_c = 0;
		data->chain_signal_a = 0;
		data->chain_signal_b = 0;
		data->chain_signal_c = 0;
		data->beacon_count = 0;

		memset(&cmd, 0, sizeof(cmd));
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		cmd.hdr.op_code = IL_PHY_CALIBRATE_DIFF_GAIN_CMD;
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		cmd.diff_gain_a = 0;
		cmd.diff_gain_b = 0;
		cmd.diff_gain_c = 0;
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		if (il_send_cmd_pdu(il, REPLY_PHY_CALIBRATION_CMD,
573
				 sizeof(cmd), &cmd))
574
			IL_ERR(
575
				"Could not send REPLY_PHY_CALIBRATION_CMD\n");
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		data->state = IL_CHAIN_NOISE_ACCUMULATE;
577
		D_CALIB("Run chain_noise_calibrate\n");
578 579 580
	}
}

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static struct il_sensitivity_ranges il4965_sensitivity = {
582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607
	.min_nrg_cck = 97,
	.max_nrg_cck = 0, /* not used, set to 0 */

	.auto_corr_min_ofdm = 85,
	.auto_corr_min_ofdm_mrc = 170,
	.auto_corr_min_ofdm_x1 = 105,
	.auto_corr_min_ofdm_mrc_x1 = 220,

	.auto_corr_max_ofdm = 120,
	.auto_corr_max_ofdm_mrc = 210,
	.auto_corr_max_ofdm_x1 = 140,
	.auto_corr_max_ofdm_mrc_x1 = 270,

	.auto_corr_min_cck = 125,
	.auto_corr_max_cck = 200,
	.auto_corr_min_cck_mrc = 200,
	.auto_corr_max_cck_mrc = 400,

	.nrg_th_cck = 100,
	.nrg_th_ofdm = 100,

	.barker_corr_th_min = 190,
	.barker_corr_th_min_mrc = 390,
	.nrg_th_cca = 62,
};

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static void il4965_set_ct_threshold(struct il_priv *il)
609 610
{
	/* want Kelvin */
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	il->hw_params.ct_kill_threshold =
612 613 614 615
		CELSIUS_TO_KELVIN(CT_KILL_THRESHOLD_LEGACY);
}

/**
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 * il4965_hw_set_hw_params
617 618 619
 *
 * Called when initializing driver
 */
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static int il4965_hw_set_hw_params(struct il_priv *il)
621
{
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	if (il->cfg->mod_params->num_of_queues >= IL_MIN_NUM_QUEUES &&
623
	    il->cfg->mod_params->num_of_queues <= IL49_NUM_QUEUES)
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		il->cfg->base_params->num_of_queues =
			il->cfg->mod_params->num_of_queues;

	il->hw_params.max_txq_num = il->cfg->base_params->num_of_queues;
	il->hw_params.dma_chnl_num = FH49_TCSR_CHNL_NUM;
	il->hw_params.scd_bc_tbls_size =
			il->cfg->base_params->num_of_queues *
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			sizeof(struct il4965_scd_bc_tbl);
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	il->hw_params.tfd_size = sizeof(struct il_tfd);
633
	il->hw_params.max_stations = IL4965_STATION_COUNT;
634
	il->ctx.bcast_sta_id = IL4965_BROADCAST_ID;
635 636
	il->hw_params.max_data_size = IL49_RTC_DATA_SIZE;
	il->hw_params.max_inst_size = IL49_RTC_INST_SIZE;
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	il->hw_params.max_bsm_size = BSM_SRAM_SIZE;
	il->hw_params.ht40_channel = BIT(IEEE80211_BAND_5GHZ);
639

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	il->hw_params.rx_wrt_ptr_reg = FH_RSCSR_CHNL0_WPTR;
641

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	il->hw_params.tx_chains_num = il4965_num_of_ant(il->cfg->valid_tx_ant);
	il->hw_params.rx_chains_num = il4965_num_of_ant(il->cfg->valid_rx_ant);
	il->hw_params.valid_tx_ant = il->cfg->valid_tx_ant;
	il->hw_params.valid_rx_ant = il->cfg->valid_rx_ant;
646

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	il4965_set_ct_threshold(il);
648

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	il->hw_params.sens = &il4965_sensitivity;
650
	il->hw_params.beacon_time_tsf_bits = IL4965_EXT_BEACON_TIME_POS;
651 652 653 654

	return 0;
}

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static s32 il4965_math_div_round(s32 num, s32 denom, s32 *res)
656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673
{
	s32 sign = 1;

	if (num < 0) {
		sign = -sign;
		num = -num;
	}
	if (denom < 0) {
		sign = -sign;
		denom = -denom;
	}
	*res = 1;
	*res = ((num * 2 + denom) / (denom * 2)) * sign;

	return 1;
}

/**
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 * il4965_get_voltage_compensation - Power supply voltage comp for txpower
675 676
 *
 * Determines power supply voltage compensation for txpower calculations.
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 * Returns number of 1/2-dB steps to subtract from gain table idx,
678 679 680 681
 * to compensate for difference between power supply voltage during
 * factory measurements, vs. current power supply voltage.
 *
 * Voltage indication is higher for lower voltage.
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 * Lower voltage requires more gain (lower gain table idx).
683
 */
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static s32 il4965_get_voltage_compensation(s32 eeprom_voltage,
685 686 687 688
					    s32 current_voltage)
{
	s32 comp = 0;

689 690
	if (TX_POWER_IL_ILLEGAL_VOLTAGE == eeprom_voltage ||
	    TX_POWER_IL_ILLEGAL_VOLTAGE == current_voltage)
691 692
		return 0;

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	il4965_math_div_round(current_voltage - eeprom_voltage,
			       TX_POWER_IL_VOLTAGE_CODES_PER_03V, &comp);
695 696 697 698 699 700 701 702 703

	if (current_voltage > eeprom_voltage)
		comp *= 2;
	if ((comp < -2) || (comp > 2))
		comp = 0;

	return comp;
}

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static s32 il4965_get_tx_atten_grp(u16 channel)
705
{
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	if (channel >= CALIB_IL_TX_ATTEN_GR5_FCH &&
	    channel <= CALIB_IL_TX_ATTEN_GR5_LCH)
708 709
		return CALIB_CH_GROUP_5;

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	if (channel >= CALIB_IL_TX_ATTEN_GR1_FCH &&
	    channel <= CALIB_IL_TX_ATTEN_GR1_LCH)
712 713
		return CALIB_CH_GROUP_1;

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	if (channel >= CALIB_IL_TX_ATTEN_GR2_FCH &&
	    channel <= CALIB_IL_TX_ATTEN_GR2_LCH)
716 717
		return CALIB_CH_GROUP_2;

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	if (channel >= CALIB_IL_TX_ATTEN_GR3_FCH &&
	    channel <= CALIB_IL_TX_ATTEN_GR3_LCH)
720 721
		return CALIB_CH_GROUP_3;

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	if (channel >= CALIB_IL_TX_ATTEN_GR4_FCH &&
	    channel <= CALIB_IL_TX_ATTEN_GR4_LCH)
724 725
		return CALIB_CH_GROUP_4;

726
	return -EINVAL;
727 728
}

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static u32 il4965_get_sub_band(const struct il_priv *il, u32 channel)
730 731 732 733
{
	s32 b = -1;

	for (b = 0; b < EEPROM_TX_POWER_BANDS; b++) {
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		if (il->calib_info->band_info[b].ch_from == 0)
735 736
			continue;

737 738
		if (channel >= il->calib_info->band_info[b].ch_from &&
		    channel <= il->calib_info->band_info[b].ch_to)
739 740 741 742 743 744
			break;
	}

	return b;
}

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static s32 il4965_interpolate_value(s32 x, s32 x1, s32 y1, s32 x2, s32 y2)
746 747 748 749 750 751
{
	s32 val;

	if (x2 == x1)
		return y1;
	else {
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		il4965_math_div_round((x2 - x) * (y1 - y2), (x2 - x1), &val);
753 754 755 756 757
		return val + y2;
	}
}

/**
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 * il4965_interpolate_chan - Interpolate factory measurements for one channel
759 760 761 762 763 764
 *
 * Interpolates factory measurements from the two sample channels within a
 * sub-band, to apply to channel of interest.  Interpolation is proportional to
 * differences in channel frequencies, which is proportional to differences
 * in channel number.
 */
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static int il4965_interpolate_chan(struct il_priv *il, u32 channel,
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				    struct il_eeprom_calib_ch_info *chan_info)
767 768 769 770
{
	s32 s = -1;
	u32 c;
	u32 m;
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	const struct il_eeprom_calib_measure *m1;
	const struct il_eeprom_calib_measure *m2;
	struct il_eeprom_calib_measure *omeas;
774 775 776
	u32 ch_i1;
	u32 ch_i2;

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	s = il4965_get_sub_band(il, channel);
778
	if (s >= EEPROM_TX_POWER_BANDS) {
779
		IL_ERR("Tx Power can not find channel %d\n", channel);
780 781 782
		return -1;
	}

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	ch_i1 = il->calib_info->band_info[s].ch1.ch_num;
	ch_i2 = il->calib_info->band_info[s].ch2.ch_num;
785 786
	chan_info->ch_num = (u8) channel;

787
	D_TXPOWER("channel %d subband %d factory cal ch %d & %d\n",
788 789 790 791
			  channel, s, ch_i1, ch_i2);

	for (c = 0; c < EEPROM_TX_POWER_TX_CHAINS; c++) {
		for (m = 0; m < EEPROM_TX_POWER_MEASUREMENTS; m++) {
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			m1 = &(il->calib_info->band_info[s].ch1.
793
			       measurements[c][m]);
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			m2 = &(il->calib_info->band_info[s].ch2.
795 796 797 798
			       measurements[c][m]);
			omeas = &(chan_info->measurements[c][m]);

			omeas->actual_pow =
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			    (u8) il4965_interpolate_value(channel, ch_i1,
800 801 802 803
							   m1->actual_pow,
							   ch_i2,
							   m2->actual_pow);
			omeas->gain_idx =
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			    (u8) il4965_interpolate_value(channel, ch_i1,
805 806 807
							   m1->gain_idx, ch_i2,
							   m2->gain_idx);
			omeas->temperature =
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			    (u8) il4965_interpolate_value(channel, ch_i1,
809 810 811 812
							   m1->temperature,
							   ch_i2,
							   m2->temperature);
			omeas->pa_det =
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			    (s8) il4965_interpolate_value(channel, ch_i1,
814 815 816
							   m1->pa_det, ch_i2,
							   m2->pa_det);

817
			D_TXPOWER(
818 819
				"chain %d meas %d AP1=%d AP2=%d AP=%d\n", c, m,
				m1->actual_pow, m2->actual_pow, omeas->actual_pow);
820
			D_TXPOWER(
821 822
				"chain %d meas %d NI1=%d NI2=%d NI=%d\n", c, m,
				m1->gain_idx, m2->gain_idx, omeas->gain_idx);
823
			D_TXPOWER(
824 825
				"chain %d meas %d PA1=%d PA2=%d PA=%d\n", c, m,
				m1->pa_det, m2->pa_det, omeas->pa_det);
826
			D_TXPOWER(
827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847
				"chain %d meas %d  T1=%d  T2=%d  T=%d\n", c, m,
				m1->temperature, m2->temperature,
				omeas->temperature);
		}
	}

	return 0;
}

/* bit-rate-dependent table to prevent Tx distortion, in half-dB units,
 * for OFDM 6, 12, 18, 24, 36, 48, 54, 60 MBit, and CCK all rates. */
static s32 back_off_table[] = {
	10, 10, 10, 10, 10, 15, 17, 20,	/* OFDM SISO 20 MHz */
	10, 10, 10, 10, 10, 15, 17, 20,	/* OFDM MIMO 20 MHz */
	10, 10, 10, 10, 10, 15, 17, 20,	/* OFDM SISO 40 MHz */
	10, 10, 10, 10, 10, 15, 17, 20,	/* OFDM MIMO 40 MHz */
	10			/* CCK */
};

/* Thermal compensation values for txpower for various frequency ranges ...
 *   ratios from 3:1 to 4.5:1 of degrees (Celsius) per half-dB gain adjust */
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static struct il4965_txpower_comp_entry {
849 850 851 852 853 854 855 856 857 858
	s32 degrees_per_05db_a;
	s32 degrees_per_05db_a_denom;
} tx_power_cmp_tble[CALIB_CH_GROUP_MAX] = {
	{9, 2},			/* group 0 5.2, ch  34-43 */
	{4, 1},			/* group 1 5.2, ch  44-70 */
	{4, 1},			/* group 2 5.2, ch  71-124 */
	{4, 1},			/* group 3 5.2, ch 125-200 */
	{3, 1}			/* group 4 2.4, ch   all */
};

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static s32 get_min_power_idx(s32 rate_power_idx, u32 band)
860 861
{
	if (!band) {
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862
		if ((rate_power_idx & 7) <= 4)
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			return MIN_TX_GAIN_IDX_52GHZ_EXT;
864
	}
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	return MIN_TX_GAIN_IDX;
866 867 868 869 870 871 872 873
}

struct gain_entry {
	u8 dsp;
	u8 radio;
};

static const struct gain_entry gain_table[2][108] = {
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874
	/* 5.2GHz power gain idx table */
875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984
	{
	 {123, 0x3F},		/* highest txpower */
	 {117, 0x3F},
	 {110, 0x3F},
	 {104, 0x3F},
	 {98, 0x3F},
	 {110, 0x3E},
	 {104, 0x3E},
	 {98, 0x3E},
	 {110, 0x3D},
	 {104, 0x3D},
	 {98, 0x3D},
	 {110, 0x3C},
	 {104, 0x3C},
	 {98, 0x3C},
	 {110, 0x3B},
	 {104, 0x3B},
	 {98, 0x3B},
	 {110, 0x3A},
	 {104, 0x3A},
	 {98, 0x3A},
	 {110, 0x39},
	 {104, 0x39},
	 {98, 0x39},
	 {110, 0x38},
	 {104, 0x38},
	 {98, 0x38},
	 {110, 0x37},
	 {104, 0x37},
	 {98, 0x37},
	 {110, 0x36},
	 {104, 0x36},
	 {98, 0x36},
	 {110, 0x35},
	 {104, 0x35},
	 {98, 0x35},
	 {110, 0x34},
	 {104, 0x34},
	 {98, 0x34},
	 {110, 0x33},
	 {104, 0x33},
	 {98, 0x33},
	 {110, 0x32},
	 {104, 0x32},
	 {98, 0x32},
	 {110, 0x31},
	 {104, 0x31},
	 {98, 0x31},
	 {110, 0x30},
	 {104, 0x30},
	 {98, 0x30},
	 {110, 0x25},
	 {104, 0x25},
	 {98, 0x25},
	 {110, 0x24},
	 {104, 0x24},
	 {98, 0x24},
	 {110, 0x23},
	 {104, 0x23},
	 {98, 0x23},
	 {110, 0x22},
	 {104, 0x18},
	 {98, 0x18},
	 {110, 0x17},
	 {104, 0x17},
	 {98, 0x17},
	 {110, 0x16},
	 {104, 0x16},
	 {98, 0x16},
	 {110, 0x15},
	 {104, 0x15},
	 {98, 0x15},
	 {110, 0x14},
	 {104, 0x14},
	 {98, 0x14},
	 {110, 0x13},
	 {104, 0x13},
	 {98, 0x13},
	 {110, 0x12},
	 {104, 0x08},
	 {98, 0x08},
	 {110, 0x07},
	 {104, 0x07},
	 {98, 0x07},
	 {110, 0x06},
	 {104, 0x06},
	 {98, 0x06},
	 {110, 0x05},
	 {104, 0x05},
	 {98, 0x05},
	 {110, 0x04},
	 {104, 0x04},
	 {98, 0x04},
	 {110, 0x03},
	 {104, 0x03},
	 {98, 0x03},
	 {110, 0x02},
	 {104, 0x02},
	 {98, 0x02},
	 {110, 0x01},
	 {104, 0x01},
	 {98, 0x01},
	 {110, 0x00},
	 {104, 0x00},
	 {98, 0x00},
	 {93, 0x00},
	 {88, 0x00},
	 {83, 0x00},
	 {78, 0x00},
	 },
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	/* 2.4GHz power gain idx table */
986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097
	{
	 {110, 0x3f},		/* highest txpower */
	 {104, 0x3f},
	 {98, 0x3f},
	 {110, 0x3e},
	 {104, 0x3e},
	 {98, 0x3e},
	 {110, 0x3d},
	 {104, 0x3d},
	 {98, 0x3d},
	 {110, 0x3c},
	 {104, 0x3c},
	 {98, 0x3c},
	 {110, 0x3b},
	 {104, 0x3b},
	 {98, 0x3b},
	 {110, 0x3a},
	 {104, 0x3a},
	 {98, 0x3a},
	 {110, 0x39},
	 {104, 0x39},
	 {98, 0x39},
	 {110, 0x38},
	 {104, 0x38},
	 {98, 0x38},
	 {110, 0x37},
	 {104, 0x37},
	 {98, 0x37},
	 {110, 0x36},
	 {104, 0x36},
	 {98, 0x36},
	 {110, 0x35},
	 {104, 0x35},
	 {98, 0x35},
	 {110, 0x34},
	 {104, 0x34},
	 {98, 0x34},
	 {110, 0x33},
	 {104, 0x33},
	 {98, 0x33},
	 {110, 0x32},
	 {104, 0x32},
	 {98, 0x32},
	 {110, 0x31},
	 {104, 0x31},
	 {98, 0x31},
	 {110, 0x30},
	 {104, 0x30},
	 {98, 0x30},
	 {110, 0x6},
	 {104, 0x6},
	 {98, 0x6},
	 {110, 0x5},
	 {104, 0x5},
	 {98, 0x5},
	 {110, 0x4},
	 {104, 0x4},
	 {98, 0x4},
	 {110, 0x3},
	 {104, 0x3},
	 {98, 0x3},
	 {110, 0x2},
	 {104, 0x2},
	 {98, 0x2},
	 {110, 0x1},
	 {104, 0x1},
	 {98, 0x1},
	 {110, 0x0},
	 {104, 0x0},
	 {98, 0x0},
	 {97, 0},
	 {96, 0},
	 {95, 0},
	 {94, 0},
	 {93, 0},
	 {92, 0},
	 {91, 0},
	 {90, 0},
	 {89, 0},
	 {88, 0},
	 {87, 0},
	 {86, 0},
	 {85, 0},
	 {84, 0},
	 {83, 0},
	 {82, 0},
	 {81, 0},
	 {80, 0},
	 {79, 0},
	 {78, 0},
	 {77, 0},
	 {76, 0},
	 {75, 0},
	 {74, 0},
	 {73, 0},
	 {72, 0},
	 {71, 0},
	 {70, 0},
	 {69, 0},
	 {68, 0},
	 {67, 0},
	 {66, 0},
	 {65, 0},
	 {64, 0},
	 {63, 0},
	 {62, 0},
	 {61, 0},
	 {60, 0},
	 {59, 0},
	 }
};

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static int il4965_fill_txpower_tbl(struct il_priv *il, u8 band, u16 channel,
1099
				    u8 is_ht40, u8 ctrl_chan_high,
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Stanislaw Gruszka 已提交
1100
				    struct il4965_tx_power_db *tx_power_tbl)
1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111
{
	u8 saturation_power;
	s32 target_power;
	s32 user_target_power;
	s32 power_limit;
	s32 current_temp;
	s32 reg_limit;
	s32 current_regulatory;
	s32 txatten_grp = CALIB_CH_GROUP_MAX;
	int i;
	int c;
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1112 1113 1114
	const struct il_channel_info *ch_info = NULL;
	struct il_eeprom_calib_ch_info ch_eeprom_info;
	const struct il_eeprom_calib_measure *measurement;
1115 1116 1117 1118 1119 1120 1121
	s16 voltage;
	s32 init_voltage;
	s32 voltage_compensation;
	s32 degrees_per_05db_num;
	s32 degrees_per_05db_denom;
	s32 factory_temp;
	s32 temperature_comp[2];
S
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1122
	s32 factory_gain_idx[2];
1123
	s32 factory_actual_pwr[2];
S
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1124
	s32 power_idx;
1125 1126

	/* tx_power_user_lmt is in dBm, convert to half-dBm (half-dB units
S
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1127
	 *   are used for idxing into txpower table) */
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1128
	user_target_power = 2 * il->tx_power_user_lmt;
1129 1130

	/* Get current (RXON) channel, band, width */
1131
	D_TXPOWER("chan %d band %d is_ht40 %d\n", channel, band,
1132 1133
			  is_ht40);

S
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1134
	ch_info = il_get_channel_info(il, il->band, channel);
1135

S
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1136
	if (!il_is_channel_valid(ch_info))
1137 1138 1139 1140
		return -EINVAL;

	/* get txatten group, used to select 1) thermal txpower adjustment
	 *   and 2) mimo txpower balance between Tx chains. */
S
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1141
	txatten_grp = il4965_get_tx_atten_grp(channel);
1142
	if (txatten_grp < 0) {
1143
		IL_ERR("Can't find txatten group for channel %d.\n",
1144
			  channel);
1145
		return txatten_grp;
1146 1147
	}

1148
	D_TXPOWER("channel %d belongs to txatten group %d\n",
1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160
			  channel, txatten_grp);

	if (is_ht40) {
		if (ctrl_chan_high)
			channel -= 2;
		else
			channel += 2;
	}

	/* hardware txpower limits ...
	 * saturation (clipping distortion) txpowers are in half-dBm */
	if (band)
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		saturation_power = il->calib_info->saturation_power24;
1162
	else
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		saturation_power = il->calib_info->saturation_power52;
1164

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1165 1166
	if (saturation_power < IL_TX_POWER_SATURATION_MIN ||
	    saturation_power > IL_TX_POWER_SATURATION_MAX) {
1167
		if (band)
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1168
			saturation_power = IL_TX_POWER_DEFAULT_SATURATION_24;
1169
		else
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1170
			saturation_power = IL_TX_POWER_DEFAULT_SATURATION_52;
1171 1172 1173 1174 1175 1176 1177 1178 1179
	}

	/* regulatory txpower limits ... reg_limit values are in half-dBm,
	 *   max_power_avg values are in dBm, convert * 2 */
	if (is_ht40)
		reg_limit = ch_info->ht40_max_power_avg * 2;
	else
		reg_limit = ch_info->max_power_avg * 2;

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1180 1181
	if ((reg_limit < IL_TX_POWER_REGULATORY_MIN) ||
	    (reg_limit > IL_TX_POWER_REGULATORY_MAX)) {
1182
		if (band)
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			reg_limit = IL_TX_POWER_DEFAULT_REGULATORY_24;
1184
		else
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			reg_limit = IL_TX_POWER_DEFAULT_REGULATORY_52;
1186 1187 1188 1189
	}

	/* Interpolate txpower calibration values for this channel,
	 *   based on factory calibration tests on spaced channels. */
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	il4965_interpolate_chan(il, channel, &ch_eeprom_info);
1191 1192

	/* calculate tx gain adjustment based on power supply voltage */
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1193 1194
	voltage = le16_to_cpu(il->calib_info->voltage);
	init_voltage = (s32)le32_to_cpu(il->card_alive_init.voltage);
1195
	voltage_compensation =
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1196
	    il4965_get_voltage_compensation(voltage, init_voltage);
1197

1198
	D_TXPOWER("curr volt %d eeprom volt %d volt comp %d\n",
1199 1200 1201 1202
			  init_voltage,
			  voltage, voltage_compensation);

	/* get current temperature (Celsius) */
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	current_temp = max(il->temperature, IL_TX_POWER_TEMPERATURE_MIN);
	current_temp = min(il->temperature, IL_TX_POWER_TEMPERATURE_MAX);
1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220
	current_temp = KELVIN_TO_CELSIUS(current_temp);

	/* select thermal txpower adjustment params, based on channel group
	 *   (same frequency group used for mimo txatten adjustment) */
	degrees_per_05db_num =
	    tx_power_cmp_tble[txatten_grp].degrees_per_05db_a;
	degrees_per_05db_denom =
	    tx_power_cmp_tble[txatten_grp].degrees_per_05db_a_denom;

	/* get per-chain txpower values from factory measurements */
	for (c = 0; c < 2; c++) {
		measurement = &ch_eeprom_info.measurements[c][1];

		/* txgain adjustment (in half-dB steps) based on difference
		 *   between factory and current temperature */
		factory_temp = measurement->temperature;
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1221
		il4965_math_div_round((current_temp - factory_temp) *
1222 1223 1224 1225
				       degrees_per_05db_denom,
				       degrees_per_05db_num,
				       &temperature_comp[c]);

S
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1226
		factory_gain_idx[c] = measurement->gain_idx;
1227 1228
		factory_actual_pwr[c] = measurement->actual_pow;

1229 1230
		D_TXPOWER("chain = %d\n", c);
		D_TXPOWER("fctry tmp %d, "
1231 1232 1233 1234
				  "curr tmp %d, comp %d steps\n",
				  factory_temp, current_temp,
				  temperature_comp[c]);

1235
		D_TXPOWER("fctry idx %d, fctry pwr %d\n",
S
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				  factory_gain_idx[c],
1237 1238 1239 1240
				  factory_actual_pwr[c]);
	}

	/* for each of 33 bit-rates (including 1 for CCK) */
S
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1241
	for (i = 0; i < POWER_TBL_NUM_ENTRIES; i++) {
1242
		u8 is_mimo_rate;
S
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1243
		union il4965_tx_power_dual_stream tx_power;
1244 1245 1246 1247 1248 1249

		/* for mimo, reduce each chain's txpower by half
		 * (3dB, 6 steps), so total output power is regulatory
		 * compliant. */
		if (i & 0x8) {
			current_regulatory = reg_limit -
S
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1250
			    IL_TX_POWER_MIMO_REGULATORY_COMPENSATION;
1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267
			is_mimo_rate = 1;
		} else {
			current_regulatory = reg_limit;
			is_mimo_rate = 0;
		}

		/* find txpower limit, either hardware or regulatory */
		power_limit = saturation_power - back_off_table[i];
		if (power_limit > current_regulatory)
			power_limit = current_regulatory;

		/* reduce user's txpower request if necessary
		 * for this rate on this channel */
		target_power = user_target_power;
		if (target_power > power_limit)
			target_power = power_limit;

1268
		D_TXPOWER("rate %d sat %d reg %d usr %d tgt %d\n",
1269 1270 1271 1272 1273 1274 1275 1276 1277 1278
				  i, saturation_power - back_off_table[i],
				  current_regulatory, user_target_power,
				  target_power);

		/* for each of 2 Tx chains (radio transmitters) */
		for (c = 0; c < 2; c++) {
			s32 atten_value;

			if (is_mimo_rate)
				atten_value =
S
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				    (s32)le32_to_cpu(il->card_alive_init.
1280 1281 1282 1283
				    tx_atten[txatten_grp][c]);
			else
				atten_value = 0;

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1284 1285
			/* calculate idx; higher idx means lower txpower */
			power_idx = (u8) (factory_gain_idx[c] -
1286 1287 1288 1289 1290 1291
					    (target_power -
					     factory_actual_pwr[c]) -
					    temperature_comp[c] -
					    voltage_compensation +
					    atten_value);

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1292 1293
/*			D_TXPOWER("calculated txpower idx %d\n",
						power_idx); */
1294

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1295 1296
			if (power_idx < get_min_power_idx(i, band))
				power_idx = get_min_power_idx(i, band);
1297

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1298
			/* adjust 5 GHz idx to support negative idxes */
1299
			if (!band)
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1300
				power_idx += 9;
1301 1302

			/* CCK, rate 32, reduce txpower for CCK */
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1303
			if (i == POWER_TBL_CCK_ENTRY)
S
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1304
				power_idx +=
S
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1305
				    IL_TX_POWER_CCK_COMPENSATION_C_STEP;
1306 1307

			/* stay within the table! */
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1308 1309 1310 1311
			if (power_idx > 107) {
				IL_WARN("txpower idx %d > 107\n",
					    power_idx);
				power_idx = 107;
1312
			}
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1313 1314 1315 1316
			if (power_idx < 0) {
				IL_WARN("txpower idx %d < 0\n",
					    power_idx);
				power_idx = 0;
1317 1318 1319 1320
			}

			/* fill txpower command for this rate/chain */
			tx_power.s.radio_tx_gain[c] =
S
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1321
				gain_table[band][power_idx].radio;
1322
			tx_power.s.dsp_predis_atten[c] =
S
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1323
				gain_table[band][power_idx].dsp;
1324

S
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1325
			D_TXPOWER("chain %d mimo %d idx %d "
1326
					  "gain 0x%02x dsp %d\n",
S
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1327
					  c, atten_value, power_idx,
1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339
					tx_power.s.radio_tx_gain[c],
					tx_power.s.dsp_predis_atten[c]);
		} /* for each chain */

		tx_power_tbl->power_tbl[i].dw = cpu_to_le32(tx_power.dw);

	} /* for each rate */

	return 0;
}

/**
S
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1340
 * il4965_send_tx_power - Configure the TXPOWER level user limit
1341 1342
 *
 * Uses the active RXON for channel, band, and characteristics (ht40, high)
S
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1343
 * The power limit is taken from il->tx_power_user_lmt.
1344
 */
S
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1345
static int il4965_send_tx_power(struct il_priv *il)
1346
{
S
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1347
	struct il4965_txpowertable_cmd cmd = { 0 };
1348 1349 1350 1351
	int ret;
	u8 band = 0;
	bool is_ht40 = false;
	u8 ctrl_chan_high = 0;
1352
	struct il_rxon_context *ctx = &il->ctx;
1353

S
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1354
	if (WARN_ONCE(test_bit(STATUS_SCAN_HW, &il->status),
1355 1356 1357
		      "TX Power requested while scanning!\n"))
		return -EAGAIN;

S
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1358
	band = il->band == IEEE80211_BAND_2GHZ;
1359

1360
	is_ht40 = iw4965_is_ht40_channel(ctx->active.flags);
1361 1362 1363 1364 1365 1366 1367

	if (is_ht40 && (ctx->active.flags & RXON_FLG_CTRL_CHANNEL_LOC_HI_MSK))
		ctrl_chan_high = 1;

	cmd.band = band;
	cmd.channel = ctx->active.channel;

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1368
	ret = il4965_fill_txpower_tbl(il, band,
1369 1370 1371 1372 1373
				le16_to_cpu(ctx->active.channel),
				is_ht40, ctrl_chan_high, &cmd.tx_power);
	if (ret)
		goto out;

S
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1374
	ret = il_send_cmd_pdu(il,
S
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1375
			 REPLY_TX_PWR_TBL_CMD, sizeof(cmd), &cmd);
1376 1377 1378 1379 1380

out:
	return ret;
}

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1381
static int il4965_send_rxon_assoc(struct il_priv *il,
S
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1382
				   struct il_rxon_context *ctx)
1383 1384
{
	int ret = 0;
S
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1385 1386 1387
	struct il4965_rxon_assoc_cmd rxon_assoc;
	const struct il_rxon_cmd *rxon1 = &ctx->staging;
	const struct il_rxon_cmd *rxon2 = &ctx->active;
1388

1389 1390 1391 1392 1393 1394 1395 1396 1397
	if (rxon1->flags == rxon2->flags &&
	    rxon1->filter_flags == rxon2->filter_flags &&
	    rxon1->cck_basic_rates == rxon2->cck_basic_rates &&
	    rxon1->ofdm_ht_single_stream_basic_rates ==
		rxon2->ofdm_ht_single_stream_basic_rates &&
	    rxon1->ofdm_ht_dual_stream_basic_rates ==
		rxon2->ofdm_ht_dual_stream_basic_rates &&
	    rxon1->rx_chain == rxon2->rx_chain &&
	    rxon1->ofdm_basic_rates == rxon2->ofdm_basic_rates) {
1398
		D_INFO("Using current RXON_ASSOC.  Not resending.\n");
1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412
		return 0;
	}

	rxon_assoc.flags = ctx->staging.flags;
	rxon_assoc.filter_flags = ctx->staging.filter_flags;
	rxon_assoc.ofdm_basic_rates = ctx->staging.ofdm_basic_rates;
	rxon_assoc.cck_basic_rates = ctx->staging.cck_basic_rates;
	rxon_assoc.reserved = 0;
	rxon_assoc.ofdm_ht_single_stream_basic_rates =
	    ctx->staging.ofdm_ht_single_stream_basic_rates;
	rxon_assoc.ofdm_ht_dual_stream_basic_rates =
	    ctx->staging.ofdm_ht_dual_stream_basic_rates;
	rxon_assoc.rx_chain_select_flags = ctx->staging.rx_chain;

S
Stanislaw Gruszka 已提交
1413
	ret = il_send_cmd_pdu_async(il, REPLY_RXON_ASSOC,
1414 1415 1416 1417 1418
				     sizeof(rxon_assoc), &rxon_assoc, NULL);

	return ret;
}

S
Stanislaw Gruszka 已提交
1419
static int il4965_commit_rxon(struct il_priv *il, struct il_rxon_context *ctx)
1420 1421
{
	/* cast away the const for active_rxon in this function */
S
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1422
	struct il_rxon_cmd *active_rxon = (void *)&ctx->active;
1423 1424 1425 1426
	int ret;
	bool new_assoc =
		!!(ctx->staging.filter_flags & RXON_FILTER_ASSOC_MSK);

S
Stanislaw Gruszka 已提交
1427
	if (!il_is_alive(il))
1428 1429 1430 1431 1432 1433 1434 1435
		return -EBUSY;

	if (!ctx->is_active)
		return 0;

	/* always get timestamp with Rx frame */
	ctx->staging.flags |= RXON_FLG_TSF2HOST_MSK;

S
Stanislaw Gruszka 已提交
1436
	ret = il_check_rxon_cmd(il, ctx);
1437
	if (ret) {
1438
		IL_ERR("Invalid RXON configuration.  Not committing.\n");
1439 1440 1441 1442 1443 1444 1445
		return -EINVAL;
	}

	/*
	 * receive commit_rxon request
	 * abort any previous channel switch if still in process
	 */
S
Stanislaw Gruszka 已提交
1446
	if (test_bit(STATUS_CHANNEL_SWITCH_PENDING, &il->status) &&
1447
	    il->switch_channel != ctx->staging.channel) {
1448
		D_11H("abort channel switch on %d\n",
S
Stanislaw Gruszka 已提交
1449 1450
		      le16_to_cpu(il->switch_channel));
		il_chswitch_done(il, false);
1451 1452 1453
	}

	/* If we don't need to send a full RXON, we can use
S
Stanislaw Gruszka 已提交
1454
	 * il_rxon_assoc_cmd which is used to reconfigure filter
1455
	 * and other flags for the current radio configuration. */
S
Stanislaw Gruszka 已提交
1456 1457
	if (!il_full_rxon_required(il, ctx)) {
		ret = il_send_rxon_assoc(il, ctx);
1458
		if (ret) {
1459
			IL_ERR("Error setting RXON_ASSOC (%d)\n", ret);
1460 1461 1462 1463
			return ret;
		}

		memcpy(active_rxon, &ctx->staging, sizeof(*active_rxon));
S
Stanislaw Gruszka 已提交
1464
		il_print_rx_config_cmd(il, ctx);
1465 1466 1467 1468
		/*
		 * We do not commit tx power settings while channel changing,
		 * do it now if tx power changed.
		 */
S
Stanislaw Gruszka 已提交
1469
		il_set_tx_power(il, il->tx_power_next, false);
1470
		return 0;
1471 1472 1473 1474 1475 1476
	}

	/* If we are currently associated and the new config requires
	 * an RXON_ASSOC and the new config wants the associated mask enabled,
	 * we must clear the associated from the active configuration
	 * before we apply the new config */
S
Stanislaw Gruszka 已提交
1477
	if (il_is_associated_ctx(ctx) && new_assoc) {
1478
		D_INFO("Toggling associated bit on current RXON\n");
1479 1480
		active_rxon->filter_flags &= ~RXON_FILTER_ASSOC_MSK;

S
Stanislaw Gruszka 已提交
1481
		ret = il_send_cmd_pdu(il, ctx->rxon_cmd,
S
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1482
				       sizeof(struct il_rxon_cmd),
1483 1484 1485 1486 1487 1488
				       active_rxon);

		/* If the mask clearing failed then we set
		 * active_rxon back to what it was previously */
		if (ret) {
			active_rxon->filter_flags |= RXON_FILTER_ASSOC_MSK;
1489
			IL_ERR("Error clearing ASSOC_MSK (%d)\n", ret);
1490 1491
			return ret;
		}
S
Stanislaw Gruszka 已提交
1492 1493 1494
		il_clear_ucode_stations(il, ctx);
		il_restore_stations(il, ctx);
		ret = il4965_restore_default_wep_keys(il, ctx);
1495
		if (ret) {
1496
			IL_ERR("Failed to restore WEP keys (%d)\n", ret);
1497 1498 1499 1500
			return ret;
		}
	}

1501
	D_INFO("Sending RXON\n"
1502 1503 1504 1505 1506 1507 1508
		       "* with%s RXON_FILTER_ASSOC_MSK\n"
		       "* channel = %d\n"
		       "* bssid = %pM\n",
		       (new_assoc ? "" : "out"),
		       le16_to_cpu(ctx->staging.channel),
		       ctx->staging.bssid_addr);

S
Stanislaw Gruszka 已提交
1509 1510
	il_set_rxon_hwcrypto(il, ctx,
				!il->cfg->mod_params->sw_crypto);
1511 1512 1513 1514 1515 1516

	/* Apply the new configuration
	 * RXON unassoc clears the station table in uCode so restoration of
	 * stations is needed after it (the RXON command) completes
	 */
	if (!new_assoc) {
S
Stanislaw Gruszka 已提交
1517
		ret = il_send_cmd_pdu(il, ctx->rxon_cmd,
S
Stanislaw Gruszka 已提交
1518
			      sizeof(struct il_rxon_cmd), &ctx->staging);
1519
		if (ret) {
1520
			IL_ERR("Error setting new RXON (%d)\n", ret);
1521 1522
			return ret;
		}
1523
		D_INFO("Return from !new_assoc RXON.\n");
1524
		memcpy(active_rxon, &ctx->staging, sizeof(*active_rxon));
S
Stanislaw Gruszka 已提交
1525 1526 1527
		il_clear_ucode_stations(il, ctx);
		il_restore_stations(il, ctx);
		ret = il4965_restore_default_wep_keys(il, ctx);
1528
		if (ret) {
1529
			IL_ERR("Failed to restore WEP keys (%d)\n", ret);
1530 1531 1532 1533
			return ret;
		}
	}
	if (new_assoc) {
S
Stanislaw Gruszka 已提交
1534
		il->start_calib = 0;
1535 1536 1537
		/* Apply the new configuration
		 * RXON assoc doesn't clear the station table in uCode,
		 */
S
Stanislaw Gruszka 已提交
1538
		ret = il_send_cmd_pdu(il, ctx->rxon_cmd,
S
Stanislaw Gruszka 已提交
1539
			      sizeof(struct il_rxon_cmd), &ctx->staging);
1540
		if (ret) {
1541
			IL_ERR("Error setting new RXON (%d)\n", ret);
1542 1543 1544 1545
			return ret;
		}
		memcpy(active_rxon, &ctx->staging, sizeof(*active_rxon));
	}
S
Stanislaw Gruszka 已提交
1546
	il_print_rx_config_cmd(il, ctx);
1547

S
Stanislaw Gruszka 已提交
1548
	il4965_init_sensitivity(il);
1549 1550 1551

	/* If we issue a new RXON command which required a tune then we must
	 * send a new TXPOWER command or we won't be able to Tx any frames */
S
Stanislaw Gruszka 已提交
1552
	ret = il_set_tx_power(il, il->tx_power_next, true);
1553
	if (ret) {
1554
		IL_ERR("Error sending TX power (%d)\n", ret);
1555 1556 1557 1558 1559 1560
		return ret;
	}

	return 0;
}

S
Stanislaw Gruszka 已提交
1561
static int il4965_hw_channel_switch(struct il_priv *il,
1562 1563
				     struct ieee80211_channel_switch *ch_switch)
{
1564
	struct il_rxon_context *ctx = &il->ctx;
1565 1566 1567 1568
	int rc;
	u8 band = 0;
	bool is_ht40 = false;
	u8 ctrl_chan_high = 0;
S
Stanislaw Gruszka 已提交
1569 1570
	struct il4965_channel_switch_cmd cmd;
	const struct il_channel_info *ch_info;
1571 1572 1573 1574 1575 1576
	u32 switch_time_in_usec, ucode_switch_time;
	u16 ch;
	u32 tsf_low;
	u8 switch_count;
	u16 beacon_interval = le16_to_cpu(ctx->timing.beacon_interval);
	struct ieee80211_vif *vif = ctx->vif;
S
Stanislaw Gruszka 已提交
1577
	band = il->band == IEEE80211_BAND_2GHZ;
1578

1579
	is_ht40 = iw4965_is_ht40_channel(ctx->staging.flags);
1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596

	if (is_ht40 &&
	    (ctx->staging.flags & RXON_FLG_CTRL_CHANNEL_LOC_HI_MSK))
		ctrl_chan_high = 1;

	cmd.band = band;
	cmd.expect_beacon = 0;
	ch = ch_switch->channel->hw_value;
	cmd.channel = cpu_to_le16(ch);
	cmd.rxon_flags = ctx->staging.flags;
	cmd.rxon_filter_flags = ctx->staging.filter_flags;
	switch_count = ch_switch->count;
	tsf_low = ch_switch->timestamp & 0x0ffffffff;
	/*
	 * calculate the ucode channel switch time
	 * adding TSF as one of the factor for when to switch
	 */
1597
	if (il->ucode_beacon_time > tsf_low && beacon_interval) {
S
Stanislaw Gruszka 已提交
1598
		if (switch_count > ((il->ucode_beacon_time - tsf_low) /
1599
		    beacon_interval)) {
S
Stanislaw Gruszka 已提交
1600
			switch_count -= (il->ucode_beacon_time -
1601 1602 1603 1604 1605
				tsf_low) / beacon_interval;
		} else
			switch_count = 0;
	}
	if (switch_count <= 1)
S
Stanislaw Gruszka 已提交
1606
		cmd.switch_time = cpu_to_le32(il->ucode_beacon_time);
1607 1608 1609
	else {
		switch_time_in_usec =
			vif->bss_conf.beacon_int * switch_count * TIME_UNIT;
S
Stanislaw Gruszka 已提交
1610
		ucode_switch_time = il_usecs_to_beacons(il,
1611 1612
							 switch_time_in_usec,
							 beacon_interval);
S
Stanislaw Gruszka 已提交
1613 1614
		cmd.switch_time = il_add_beacon_time(il,
						      il->ucode_beacon_time,
1615 1616 1617
						      ucode_switch_time,
						      beacon_interval);
	}
1618
	D_11H("uCode time for the switch is 0x%x\n",
1619
		      cmd.switch_time);
S
Stanislaw Gruszka 已提交
1620
	ch_info = il_get_channel_info(il, il->band, ch);
1621
	if (ch_info)
S
Stanislaw Gruszka 已提交
1622
		cmd.expect_beacon = il_is_channel_radar(ch_info);
1623
	else {
1624
		IL_ERR("invalid channel switch from %u to %u\n",
1625 1626 1627 1628
			ctx->active.channel, ch);
		return -EFAULT;
	}

S
Stanislaw Gruszka 已提交
1629
	rc = il4965_fill_txpower_tbl(il, band, ch, is_ht40,
1630 1631
				      ctrl_chan_high, &cmd.tx_power);
	if (rc) {
1632
		D_11H("error:%d  fill txpower_tbl\n", rc);
1633 1634 1635
		return rc;
	}

S
Stanislaw Gruszka 已提交
1636
	return il_send_cmd_pdu(il,
1637
			 REPLY_CHANNEL_SWITCH, sizeof(cmd), &cmd);
1638 1639 1640
}

/**
S
Stanislaw Gruszka 已提交
1641
 * il4965_txq_update_byte_cnt_tbl - Set up entry in Tx byte-count array
1642
 */
S
Stanislaw Gruszka 已提交
1643
static void il4965_txq_update_byte_cnt_tbl(struct il_priv *il,
S
Stanislaw Gruszka 已提交
1644
					    struct il_tx_queue *txq,
1645 1646
					    u16 byte_cnt)
{
S
Stanislaw Gruszka 已提交
1647
	struct il4965_scd_bc_tbl *scd_bc_tbl = il->scd_bc_tbls.addr;
1648 1649
	int txq_id = txq->q.id;
	int write_ptr = txq->q.write_ptr;
S
Stanislaw Gruszka 已提交
1650
	int len = byte_cnt + IL_TX_CRC_SIZE + IL_TX_DELIMITER_SIZE;
1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665
	__le16 bc_ent;

	WARN_ON(len > 0xFFF || write_ptr >= TFD_QUEUE_SIZE_MAX);

	bc_ent = cpu_to_le16(len & 0xFFF);
	/* Set up byte count within first 256 entries */
	scd_bc_tbl[txq_id].tfd_offset[write_ptr] = bc_ent;

	/* If within first 64 entries, duplicate at end */
	if (write_ptr < TFD_QUEUE_SIZE_BC_DUP)
		scd_bc_tbl[txq_id].
			tfd_offset[TFD_QUEUE_SIZE_MAX + write_ptr] = bc_ent;
}

/**
S
Stanislaw Gruszka 已提交
1666
 * il4965_hw_get_temperature - return the calibrated temperature (in Kelvin)
S
Stanislaw Gruszka 已提交
1667
 * @stats: Provides the temperature reading from the uCode
1668
 *
S
Stanislaw Gruszka 已提交
1669
 * A return of <0 indicates bogus data in the stats
1670
 */
S
Stanislaw Gruszka 已提交
1671
static int il4965_hw_get_temperature(struct il_priv *il)
1672 1673 1674 1675 1676 1677
{
	s32 temperature;
	s32 vt;
	s32 R1, R2, R3;
	u32 R4;

S
Stanislaw Gruszka 已提交
1678
	if (test_bit(STATUS_TEMPERATURE, &il->status) &&
S
Stanislaw Gruszka 已提交
1679
	    (il->_4965.stats.flag &
1680
			STATISTICS_REPLY_FLG_HT40_MODE_MSK)) {
1681
		D_TEMP("Running HT40 temperature calibration\n");
S
Stanislaw Gruszka 已提交
1682 1683 1684 1685
		R1 = (s32)le32_to_cpu(il->card_alive_init.therm_r1[1]);
		R2 = (s32)le32_to_cpu(il->card_alive_init.therm_r2[1]);
		R3 = (s32)le32_to_cpu(il->card_alive_init.therm_r3[1]);
		R4 = le32_to_cpu(il->card_alive_init.therm_r4[1]);
1686
	} else {
1687
		D_TEMP("Running temperature calibration\n");
S
Stanislaw Gruszka 已提交
1688 1689 1690 1691
		R1 = (s32)le32_to_cpu(il->card_alive_init.therm_r1[0]);
		R2 = (s32)le32_to_cpu(il->card_alive_init.therm_r2[0]);
		R3 = (s32)le32_to_cpu(il->card_alive_init.therm_r3[0]);
		R4 = le32_to_cpu(il->card_alive_init.therm_r4[0]);
1692 1693 1694 1695 1696
	}

	/*
	 * Temperature is only 23 bits, so sign extend out to 32.
	 *
S
Stanislaw Gruszka 已提交
1697
	 * NOTE If we haven't received a stats notification yet
1698 1699 1700
	 * with an updated temperature, use R4 provided to us in the
	 * "initialize" ALIVE response.
	 */
S
Stanislaw Gruszka 已提交
1701
	if (!test_bit(STATUS_TEMPERATURE, &il->status))
1702 1703
		vt = sign_extend32(R4, 23);
	else
S
Stanislaw Gruszka 已提交
1704
		vt = sign_extend32(le32_to_cpu(il->_4965.stats.
1705 1706
				 general.common.temperature), 23);

1707
	D_TEMP("Calib values R[1-3]: %d %d %d R4: %d\n", R1, R2, R3, vt);
1708 1709

	if (R3 == R1) {
1710
		IL_ERR("Calibration conflict R1 == R3\n");
1711 1712 1713 1714 1715 1716 1717 1718 1719
		return -1;
	}

	/* Calculate temperature in degrees Kelvin, adjust by 97%.
	 * Add offset to center the adjustment around 0 degrees Centigrade. */
	temperature = TEMPERATURE_CALIB_A_VAL * (vt - R2);
	temperature /= (R3 - R1);
	temperature = (temperature * 97) / 100 + TEMPERATURE_CALIB_KELVIN_OFFSET;

1720
	D_TEMP("Calibrated temperature: %dK, %dC\n",
1721 1722 1723 1724 1725 1726
			temperature, KELVIN_TO_CELSIUS(temperature));

	return temperature;
}

/* Adjust Txpower only if temperature variance is greater than threshold. */
S
Stanislaw Gruszka 已提交
1727
#define IL_TEMPERATURE_THRESHOLD   3
1728 1729

/**
S
Stanislaw Gruszka 已提交
1730
 * il4965_is_temp_calib_needed - determines if new calibration is needed
1731 1732 1733 1734
 *
 * If the temperature changed has changed sufficiently, then a recalibration
 * is needed.
 *
S
Stanislaw Gruszka 已提交
1735
 * Assumes caller will replace il->last_temperature once calibration
1736 1737
 * executed.
 */
S
Stanislaw Gruszka 已提交
1738
static int il4965_is_temp_calib_needed(struct il_priv *il)
1739 1740 1741
{
	int temp_diff;

S
Stanislaw Gruszka 已提交
1742
	if (!test_bit(STATUS_STATISTICS, &il->status)) {
S
Stanislaw Gruszka 已提交
1743
		D_TEMP("Temperature not updated -- no stats.\n");
1744 1745 1746
		return 0;
	}

S
Stanislaw Gruszka 已提交
1747
	temp_diff = il->temperature - il->last_temperature;
1748 1749 1750

	/* get absolute value */
	if (temp_diff < 0) {
1751
		D_POWER("Getting cooler, delta %d\n", temp_diff);
1752 1753
		temp_diff = -temp_diff;
	} else if (temp_diff == 0)
1754
		D_POWER("Temperature unchanged\n");
1755
	else
1756
		D_POWER("Getting warmer, delta %d\n", temp_diff);
1757

S
Stanislaw Gruszka 已提交
1758
	if (temp_diff < IL_TEMPERATURE_THRESHOLD) {
1759
		D_POWER(" => thermal txpower calib not needed\n");
1760 1761 1762
		return 0;
	}

1763
	D_POWER(" => thermal txpower calib needed\n");
1764 1765 1766 1767

	return 1;
}

S
Stanislaw Gruszka 已提交
1768
static void il4965_temperature_calib(struct il_priv *il)
1769 1770 1771
{
	s32 temp;

S
Stanislaw Gruszka 已提交
1772
	temp = il4965_hw_get_temperature(il);
S
Stanislaw Gruszka 已提交
1773
	if (IL_TX_POWER_TEMPERATURE_OUT_OF_RANGE(temp))
1774 1775
		return;

S
Stanislaw Gruszka 已提交
1776 1777
	if (il->temperature != temp) {
		if (il->temperature)
1778
			D_TEMP("Temperature changed "
1779
				       "from %dC to %dC\n",
S
Stanislaw Gruszka 已提交
1780
				       KELVIN_TO_CELSIUS(il->temperature),
1781 1782
				       KELVIN_TO_CELSIUS(temp));
		else
1783
			D_TEMP("Temperature "
1784 1785 1786 1787
				       "initialized to %dC\n",
				       KELVIN_TO_CELSIUS(temp));
	}

S
Stanislaw Gruszka 已提交
1788 1789
	il->temperature = temp;
	set_bit(STATUS_TEMPERATURE, &il->status);
1790

S
Stanislaw Gruszka 已提交
1791 1792 1793 1794
	if (!il->disable_tx_power_cal &&
	     unlikely(!test_bit(STATUS_SCANNING, &il->status)) &&
	     il4965_is_temp_calib_needed(il))
		queue_work(il->workqueue, &il->txpower_work);
1795 1796
}

S
Stanislaw Gruszka 已提交
1797
static u16 il4965_get_hcmd_size(u8 cmd_id, u16 len)
1798 1799 1800
{
	switch (cmd_id) {
	case REPLY_RXON:
S
Stanislaw Gruszka 已提交
1801
		return (u16) sizeof(struct il4965_rxon_cmd);
1802 1803 1804 1805 1806
	default:
		return len;
	}
}

S
Stanislaw Gruszka 已提交
1807
static u16 il4965_build_addsta_hcmd(const struct il_addsta_cmd *cmd,
1808
								u8 *data)
1809
{
S
Stanislaw Gruszka 已提交
1810
	struct il4965_addsta_cmd *addsta = (struct il4965_addsta_cmd *)data;
1811 1812
	addsta->mode = cmd->mode;
	memcpy(&addsta->sta, &cmd->sta, sizeof(struct sta_id_modify));
S
Stanislaw Gruszka 已提交
1813
	memcpy(&addsta->key, &cmd->key, sizeof(struct il4965_keyinfo));
1814 1815 1816 1817 1818 1819 1820 1821 1822 1823
	addsta->station_flags = cmd->station_flags;
	addsta->station_flags_msk = cmd->station_flags_msk;
	addsta->tid_disable_tx = cmd->tid_disable_tx;
	addsta->add_immediate_ba_tid = cmd->add_immediate_ba_tid;
	addsta->remove_immediate_ba_tid = cmd->remove_immediate_ba_tid;
	addsta->add_immediate_ba_ssn = cmd->add_immediate_ba_ssn;
	addsta->sleep_tx_count = cmd->sleep_tx_count;
	addsta->reserved1 = cpu_to_le16(0);
	addsta->reserved2 = cpu_to_le16(0);

S
Stanislaw Gruszka 已提交
1824
	return (u16)sizeof(struct il4965_addsta_cmd);
1825 1826
}

S
Stanislaw Gruszka 已提交
1827
static inline u32 il4965_get_scd_ssn(struct il4965_tx_resp *tx_resp)
1828 1829 1830 1831 1832
{
	return le32_to_cpup(&tx_resp->u.status + tx_resp->frame_count) & MAX_SN;
}

/**
S
Stanislaw Gruszka 已提交
1833
 * il4965_tx_status_reply_tx - Handle Tx response for frames in aggregation queue
1834
 */
S
Stanislaw Gruszka 已提交
1835
static int il4965_tx_status_reply_tx(struct il_priv *il,
S
Stanislaw Gruszka 已提交
1836 1837
				      struct il_ht_agg *agg,
				      struct il4965_tx_resp *tx_resp,
1838 1839 1840 1841 1842 1843 1844 1845 1846 1847
				      int txq_id, u16 start_idx)
{
	u16 status;
	struct agg_tx_status *frame_status = tx_resp->u.agg_status;
	struct ieee80211_tx_info *info = NULL;
	struct ieee80211_hdr *hdr = NULL;
	u32 rate_n_flags = le32_to_cpu(tx_resp->rate_n_flags);
	int i, sh, idx;
	u16 seq;
	if (agg->wait_for_ba)
1848
		D_TX_REPLY("got tx response w/o block-ack\n");
1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860

	agg->frame_count = tx_resp->frame_count;
	agg->start_idx = start_idx;
	agg->rate_n_flags = rate_n_flags;
	agg->bitmap = 0;

	/* num frames attempted by Tx command */
	if (agg->frame_count == 1) {
		/* Only one frame was attempted; no block-ack will arrive */
		status = le16_to_cpu(frame_status[0].status);
		idx = start_idx;

1861
		D_TX_REPLY("FrameCnt = %d, StartIdx=%d idx=%d\n",
1862 1863
				   agg->frame_count, agg->start_idx, idx);

S
Stanislaw Gruszka 已提交
1864
		info = IEEE80211_SKB_CB(il->txq[txq_id].txb[idx].skb);
1865 1866
		info->status.rates[0].count = tx_resp->failure_frame + 1;
		info->flags &= ~IEEE80211_TX_CTL_AMPDU;
S
Stanislaw Gruszka 已提交
1867
		info->flags |= il4965_tx_status_to_mac80211(status);
S
Stanislaw Gruszka 已提交
1868
		il4965_hwrate_to_tx_control(il, rate_n_flags, info);
1869

1870
		D_TX_REPLY("1 Frame 0x%x failure :%d\n",
1871
				    status & 0xff, tx_resp->failure_frame);
1872
		D_TX_REPLY("Rate Info rate_n_flags=%x\n", rate_n_flags);
1873 1874 1875 1876 1877 1878 1879

		agg->wait_for_ba = 0;
	} else {
		/* Two or more frames were attempted; expect block-ack */
		u64 bitmap = 0;
		int start = agg->start_idx;

S
Stanislaw Gruszka 已提交
1880
		/* Construct bit-map of pending frames within Tx win */
1881 1882 1883 1884
		for (i = 0; i < agg->frame_count; i++) {
			u16 sc;
			status = le16_to_cpu(frame_status[i].status);
			seq  = le16_to_cpu(frame_status[i].sequence);
S
Stanislaw Gruszka 已提交
1885
			idx = SEQ_TO_IDX(seq);
1886 1887 1888 1889 1890 1891
			txq_id = SEQ_TO_QUEUE(seq);

			if (status & (AGG_TX_STATE_FEW_BYTES_MSK |
				      AGG_TX_STATE_ABORT_MSK))
				continue;

1892
			D_TX_REPLY("FrameCnt = %d, txq_id=%d idx=%d\n",
1893 1894
					   agg->frame_count, txq_id, idx);

S
Stanislaw Gruszka 已提交
1895
			hdr = il_tx_queue_get_hdr(il, txq_id, idx);
1896
			if (!hdr) {
1897
				IL_ERR(
1898 1899 1900 1901 1902 1903 1904
					"BUG_ON idx doesn't point to valid skb"
					" idx=%d, txq_id=%d\n", idx, txq_id);
				return -1;
			}

			sc = le16_to_cpu(hdr->seq_ctrl);
			if (idx != (SEQ_TO_SN(sc) & 0xff)) {
1905
				IL_ERR(
1906 1907 1908 1909 1910 1911
					"BUG_ON idx doesn't match seq control"
					" idx=%d, seq_idx=%d, seq=%d\n",
					idx, SEQ_TO_SN(sc), hdr->seq_ctrl);
				return -1;
			}

1912
			D_TX_REPLY("AGG Frame i=%d idx %d seq=%d\n",
1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929
					   i, idx, SEQ_TO_SN(sc));

			sh = idx - start;
			if (sh > 64) {
				sh = (start - idx) + 0xff;
				bitmap = bitmap << sh;
				sh = 0;
				start = idx;
			} else if (sh < -64)
				sh  = 0xff - (start - idx);
			else if (sh < 0) {
				sh = start - idx;
				start = idx;
				bitmap = bitmap << sh;
				sh = 0;
			}
			bitmap |= 1ULL << sh;
1930
			D_TX_REPLY("start=%d bitmap=0x%llx\n",
1931 1932 1933 1934 1935
					   start, (unsigned long long)bitmap);
		}

		agg->bitmap = bitmap;
		agg->start_idx = start;
1936
		D_TX_REPLY("Frames %d start_idx=%d bitmap=0x%llx\n",
1937 1938 1939 1940 1941 1942 1943 1944 1945
				   agg->frame_count, agg->start_idx,
				   (unsigned long long)agg->bitmap);

		if (bitmap)
			agg->wait_for_ba = 1;
	}
	return 0;
}

S
Stanislaw Gruszka 已提交
1946
static u8 il4965_find_station(struct il_priv *il, const u8 *addr)
1947 1948 1949
{
	int i;
	int start = 0;
S
Stanislaw Gruszka 已提交
1950
	int ret = IL_INVALID_STATION;
1951 1952
	unsigned long flags;

S
Stanislaw Gruszka 已提交
1953
	if ((il->iw_mode == NL80211_IFTYPE_ADHOC))
S
Stanislaw Gruszka 已提交
1954
		start = IL_STA_ID;
1955 1956

	if (is_broadcast_ether_addr(addr))
1957
		return il->ctx.bcast_sta_id;
1958

S
Stanislaw Gruszka 已提交
1959 1960 1961 1962
	spin_lock_irqsave(&il->sta_lock, flags);
	for (i = start; i < il->hw_params.max_stations; i++)
		if (il->stations[i].used &&
		    (!compare_ether_addr(il->stations[i].sta.sta.addr,
1963 1964 1965 1966 1967
					 addr))) {
			ret = i;
			goto out;
		}

1968
	D_ASSOC("can not find STA %pM total %d\n",
S
Stanislaw Gruszka 已提交
1969
			      addr, il->num_stations);
1970 1971 1972 1973 1974 1975 1976

 out:
	/*
	 * It may be possible that more commands interacting with stations
	 * arrive before we completed processing the adding of
	 * station
	 */
S
Stanislaw Gruszka 已提交
1977
	if (ret != IL_INVALID_STATION &&
S
Stanislaw Gruszka 已提交
1978 1979 1980
	    (!(il->stations[ret].used & IL_STA_UCODE_ACTIVE) ||
	     ((il->stations[ret].used & IL_STA_UCODE_ACTIVE) &&
	      (il->stations[ret].used & IL_STA_UCODE_INPROGRESS)))) {
1981
		IL_ERR("Requested station info for sta %d before ready.\n",
1982
			ret);
S
Stanislaw Gruszka 已提交
1983
		ret = IL_INVALID_STATION;
1984
	}
S
Stanislaw Gruszka 已提交
1985
	spin_unlock_irqrestore(&il->sta_lock, flags);
1986 1987 1988
	return ret;
}

S
Stanislaw Gruszka 已提交
1989
static int il4965_get_ra_sta_id(struct il_priv *il, struct ieee80211_hdr *hdr)
1990
{
S
Stanislaw Gruszka 已提交
1991
	if (il->iw_mode == NL80211_IFTYPE_STATION) {
S
Stanislaw Gruszka 已提交
1992
		return IL_AP_ID;
1993 1994
	} else {
		u8 *da = ieee80211_get_DA(hdr);
S
Stanislaw Gruszka 已提交
1995
		return il4965_find_station(il, da);
1996 1997 1998 1999
	}
}

/**
S
Stanislaw Gruszka 已提交
2000
 * il4965_rx_reply_tx - Handle standard (non-aggregation) Tx response
2001
 */
S
Stanislaw Gruszka 已提交
2002
static void il4965_rx_reply_tx(struct il_priv *il,
2003
				struct il_rx_buf *rxb)
2004
{
2005
	struct il_rx_pkt *pkt = rxb_addr(rxb);
2006 2007
	u16 sequence = le16_to_cpu(pkt->hdr.sequence);
	int txq_id = SEQ_TO_QUEUE(sequence);
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2008
	int idx = SEQ_TO_IDX(sequence);
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2009
	struct il_tx_queue *txq = &il->txq[txq_id];
2010 2011
	struct ieee80211_hdr *hdr;
	struct ieee80211_tx_info *info;
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2012
	struct il4965_tx_resp *tx_resp = (void *)&pkt->u.raw[0];
2013 2014 2015 2016 2017 2018 2019
	u32  status = le32_to_cpu(tx_resp->u.status);
	int uninitialized_var(tid);
	int sta_id;
	int freed;
	u8 *qc = NULL;
	unsigned long flags;

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2020 2021
	if (idx >= txq->q.n_bd || il_queue_used(&txq->q, idx) == 0) {
		IL_ERR("Read idx for DMA queue txq_id (%d) idx %d "
2022
			  "is out of range [0-%d] %d %d\n", txq_id,
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2023
			  idx, txq->q.n_bd, txq->q.write_ptr,
2024 2025 2026 2027 2028 2029 2030 2031
			  txq->q.read_ptr);
		return;
	}

	txq->time_stamp = jiffies;
	info = IEEE80211_SKB_CB(txq->txb[txq->q.read_ptr].skb);
	memset(&info->status, 0, sizeof(info->status));

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2032
	hdr = il_tx_queue_get_hdr(il, txq_id, idx);
2033 2034 2035 2036 2037
	if (ieee80211_is_data_qos(hdr->frame_control)) {
		qc = ieee80211_get_qos_ctl(hdr);
		tid = qc[0] & 0xf;
	}

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2038
	sta_id = il4965_get_ra_sta_id(il, hdr);
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2039
	if (txq->sched_retry && unlikely(sta_id == IL_INVALID_STATION)) {
2040
		IL_ERR("Station not known\n");
2041 2042 2043
		return;
	}

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2044
	spin_lock_irqsave(&il->sta_lock, flags);
2045
	if (txq->sched_retry) {
S
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2046 2047
		const u32 scd_ssn = il4965_get_scd_ssn(tx_resp);
		struct il_ht_agg *agg = NULL;
2048 2049
		WARN_ON(!qc);

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2050
		agg = &il->stations[sta_id].tid[tid].agg;
2051

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2052
		il4965_tx_status_reply_tx(il, agg, tx_resp, txq_id, idx);
2053 2054

		/* check if BAR is needed */
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2055
		if ((tx_resp->frame_count == 1) && !il4965_is_tx_success(status))
2056 2057 2058
			info->flags |= IEEE80211_TX_STAT_AMPDU_NO_BACK;

		if (txq->q.read_ptr != (scd_ssn & 0xff)) {
S
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2059
			idx = il_queue_dec_wrap(scd_ssn & 0xff,
2060
								txq->q.n_bd);
2061
			D_TX_REPLY("Retry scheduler reclaim scd_ssn "
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2062 2063
					   "%d idx %d\n", scd_ssn , idx);
			freed = il4965_tx_queue_reclaim(il, txq_id, idx);
2064
			if (qc)
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2065
				il4965_free_tfds_in_queue(il, sta_id,
2066 2067
						       tid, freed);

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2068
			if (il->mac80211_registered &&
2069 2070
			    il_queue_space(&txq->q) > txq->q.low_mark &&
			    agg->state != IL_EMPTYING_HW_QUEUE_DELBA)
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2071
				il_wake_queue(il, txq);
2072 2073 2074
		}
	} else {
		info->status.rates[0].count = tx_resp->failure_frame + 1;
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2075
		info->flags |= il4965_tx_status_to_mac80211(status);
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2076
		il4965_hwrate_to_tx_control(il,
2077 2078 2079
					le32_to_cpu(tx_resp->rate_n_flags),
					info);

2080
		D_TX_REPLY("TXQ %d status %s (0x%08x) "
2081 2082
				   "rate_n_flags 0x%x retries %d\n",
				   txq_id,
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2083
				   il4965_get_tx_fail_reason(status), status,
2084 2085 2086
				   le32_to_cpu(tx_resp->rate_n_flags),
				   tx_resp->failure_frame);

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2087
		freed = il4965_tx_queue_reclaim(il, txq_id, idx);
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2088
		if (qc && likely(sta_id != IL_INVALID_STATION))
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2089
			il4965_free_tfds_in_queue(il, sta_id, tid, freed);
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2090
		else if (sta_id == IL_INVALID_STATION)
2091
			D_TX_REPLY("Station not known\n");
2092

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2093
		if (il->mac80211_registered &&
2094
		    il_queue_space(&txq->q) > txq->q.low_mark)
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2095
			il_wake_queue(il, txq);
2096
	}
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2097
	if (qc && likely(sta_id != IL_INVALID_STATION))
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2098
		il4965_txq_check_empty(il, sta_id, tid, txq_id);
2099

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2100
	il4965_check_abort_status(il, tx_resp->frame_count, status);
2101

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2102
	spin_unlock_irqrestore(&il->sta_lock, flags);
2103 2104
}

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2105
static void il4965_rx_beacon_notif(struct il_priv *il,
2106
				    struct il_rx_buf *rxb)
2107
{
2108
	struct il_rx_pkt *pkt = rxb_addr(rxb);
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2109
	struct il4965_beacon_notif *beacon = (void *)pkt->u.raw;
2110
	u8 rate __maybe_unused =
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2111
		il4965_hw_get_rate(beacon->beacon_notify_hdr.rate_n_flags);
2112

2113
	D_RX("beacon status %#x, retries:%d ibssmgr:%d "
2114 2115 2116 2117 2118 2119 2120
		"tsf:0x%.8x%.8x rate:%d\n",
		le32_to_cpu(beacon->beacon_notify_hdr.u.status) & TX_STATUS_MSK,
		beacon->beacon_notify_hdr.failure_frame,
		le32_to_cpu(beacon->ibss_mgr_status),
		le32_to_cpu(beacon->high_tsf),
		le32_to_cpu(beacon->low_tsf), rate);

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2121
	il->ibss_manager = le32_to_cpu(beacon->ibss_mgr_status);
2122 2123 2124
}

/* Set up 4965-specific Rx frame reply handlers */
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2125
static void il4965_rx_handler_setup(struct il_priv *il)
2126 2127
{
	/* Legacy Rx frames */
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2128
	il->rx_handlers[REPLY_RX] = il4965_rx_reply_rx;
2129
	/* Tx response */
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2130 2131
	il->rx_handlers[REPLY_TX] = il4965_rx_reply_tx;
	il->rx_handlers[BEACON_NOTIFICATION] = il4965_rx_beacon_notif;
2132 2133
}

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2134 2135 2136 2137
static struct il_hcmd_ops il4965_hcmd = {
	.rxon_assoc = il4965_send_rxon_assoc,
	.commit_rxon = il4965_commit_rxon,
	.set_rxon_chain = il4965_set_rxon_chain,
2138 2139
};

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Stanislaw Gruszka 已提交
2140
static void il4965_post_scan(struct il_priv *il)
2141
{
2142
	struct il_rxon_context *ctx = &il->ctx;
2143 2144 2145 2146 2147 2148

	/*
	 * Since setting the RXON may have been deferred while
	 * performing the scan, fire one off if needed
	 */
	if (memcmp(&ctx->staging, &ctx->active, sizeof(ctx->staging)))
S
Stanislaw Gruszka 已提交
2149
		il_commit_rxon(il, ctx);
2150 2151
}

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2152
static void il4965_post_associate(struct il_priv *il)
2153
{
2154
	struct il_rxon_context *ctx = &il->ctx;
2155 2156 2157 2158
	struct ieee80211_vif *vif = ctx->vif;
	struct ieee80211_conf *conf = NULL;
	int ret = 0;

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Stanislaw Gruszka 已提交
2159
	if (!vif || !il->is_open)
2160 2161
		return;

S
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2162
	if (test_bit(STATUS_EXIT_PENDING, &il->status))
2163 2164
		return;

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2165
	il_scan_cancel_timeout(il, 200);
2166

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2167
	conf = il_ieee80211_get_hw_conf(il->hw);
2168 2169

	ctx->staging.filter_flags &= ~RXON_FILTER_ASSOC_MSK;
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2170
	il_commit_rxon(il, ctx);
2171

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2172
	ret = il_send_rxon_timing(il, ctx);
2173
	if (ret)
2174
		IL_WARN("RXON timing - "
2175 2176 2177 2178
			    "Attempting to continue.\n");

	ctx->staging.filter_flags |= RXON_FILTER_ASSOC_MSK;

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2179
	il_set_rxon_ht(il, &il->current_ht_config);
2180

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2181 2182
	if (il->cfg->ops->hcmd->set_rxon_chain)
		il->cfg->ops->hcmd->set_rxon_chain(il, ctx);
2183 2184 2185

	ctx->staging.assoc_id = cpu_to_le16(vif->bss_conf.aid);

2186
	D_ASSOC("assoc id %d beacon interval %d\n",
2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200
			vif->bss_conf.aid, vif->bss_conf.beacon_int);

	if (vif->bss_conf.use_short_preamble)
		ctx->staging.flags |= RXON_FLG_SHORT_PREAMBLE_MSK;
	else
		ctx->staging.flags &= ~RXON_FLG_SHORT_PREAMBLE_MSK;

	if (ctx->staging.flags & RXON_FLG_BAND_24G_MSK) {
		if (vif->bss_conf.use_short_slot)
			ctx->staging.flags |= RXON_FLG_SHORT_SLOT_MSK;
		else
			ctx->staging.flags &= ~RXON_FLG_SHORT_SLOT_MSK;
	}

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2201
	il_commit_rxon(il, ctx);
2202

2203
	D_ASSOC("Associated as %d to: %pM\n",
2204 2205 2206 2207 2208 2209
			vif->bss_conf.aid, ctx->active.bssid_addr);

	switch (vif->type) {
	case NL80211_IFTYPE_STATION:
		break;
	case NL80211_IFTYPE_ADHOC:
S
Stanislaw Gruszka 已提交
2210
		il4965_send_beacon_cmd(il);
2211 2212
		break;
	default:
2213
		IL_ERR("%s Should not be called in %d mode\n",
2214 2215 2216 2217 2218 2219 2220
			  __func__, vif->type);
		break;
	}

	/* the chain noise calibration will enabled PM upon completion
	 * If chain noise has already been run, then we need to enable
	 * power management here */
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2221 2222
	if (il->chain_noise_data.state == IL_CHAIN_NOISE_DONE)
		il_power_update_mode(il, false);
2223 2224

	/* Enable Rx differential gain and sensitivity calibrations */
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2225 2226
	il4965_chain_noise_reset(il);
	il->start_calib = 1;
2227 2228
}

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2229
static void il4965_config_ap(struct il_priv *il)
2230
{
2231
	struct il_rxon_context *ctx = &il->ctx;
2232 2233 2234
	struct ieee80211_vif *vif = ctx->vif;
	int ret = 0;

S
Stanislaw Gruszka 已提交
2235
	lockdep_assert_held(&il->mutex);
2236

S
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2237
	if (test_bit(STATUS_EXIT_PENDING, &il->status))
2238 2239 2240
		return;

	/* The following should be done only at AP bring up */
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Stanislaw Gruszka 已提交
2241
	if (!il_is_associated_ctx(ctx)) {
2242 2243 2244

		/* RXON - unassoc (to set timing command) */
		ctx->staging.filter_flags &= ~RXON_FILTER_ASSOC_MSK;
S
Stanislaw Gruszka 已提交
2245
		il_commit_rxon(il, ctx);
2246 2247

		/* RXON Timing */
S
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2248
		ret = il_send_rxon_timing(il, ctx);
2249
		if (ret)
2250
			IL_WARN("RXON timing failed - "
2251 2252 2253
					"Attempting to continue.\n");

		/* AP has all antennas */
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Stanislaw Gruszka 已提交
2254 2255 2256 2257 2258
		il->chain_noise_data.active_chains =
			il->hw_params.valid_rx_ant;
		il_set_rxon_ht(il, &il->current_ht_config);
		if (il->cfg->ops->hcmd->set_rxon_chain)
			il->cfg->ops->hcmd->set_rxon_chain(il, ctx);
2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277

		ctx->staging.assoc_id = 0;

		if (vif->bss_conf.use_short_preamble)
			ctx->staging.flags |=
				RXON_FLG_SHORT_PREAMBLE_MSK;
		else
			ctx->staging.flags &=
				~RXON_FLG_SHORT_PREAMBLE_MSK;

		if (ctx->staging.flags & RXON_FLG_BAND_24G_MSK) {
			if (vif->bss_conf.use_short_slot)
				ctx->staging.flags |=
					RXON_FLG_SHORT_SLOT_MSK;
			else
				ctx->staging.flags &=
					~RXON_FLG_SHORT_SLOT_MSK;
		}
		/* need to send beacon cmd before committing assoc RXON! */
S
Stanislaw Gruszka 已提交
2278
		il4965_send_beacon_cmd(il);
2279 2280
		/* restore RXON assoc */
		ctx->staging.filter_flags |= RXON_FILTER_ASSOC_MSK;
S
Stanislaw Gruszka 已提交
2281
		il_commit_rxon(il, ctx);
2282
	}
S
Stanislaw Gruszka 已提交
2283
	il4965_send_beacon_cmd(il);
2284 2285
}

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2286 2287 2288 2289 2290
static struct il_hcmd_utils_ops il4965_hcmd_utils = {
	.get_hcmd_size = il4965_get_hcmd_size,
	.build_addsta_hcmd = il4965_build_addsta_hcmd,
	.request_scan = il4965_request_scan,
	.post_scan = il4965_post_scan,
2291 2292
};

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2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305
static struct il_lib_ops il4965_lib = {
	.set_hw_params = il4965_hw_set_hw_params,
	.txq_update_byte_cnt_tbl = il4965_txq_update_byte_cnt_tbl,
	.txq_attach_buf_to_tfd = il4965_hw_txq_attach_buf_to_tfd,
	.txq_free_tfd = il4965_hw_txq_free_tfd,
	.txq_init = il4965_hw_tx_queue_init,
	.rx_handler_setup = il4965_rx_handler_setup,
	.is_valid_rtc_data_addr = il4965_hw_valid_rtc_data_addr,
	.init_alive_start = il4965_init_alive_start,
	.load_ucode = il4965_load_bsm,
	.dump_nic_error_log = il4965_dump_nic_error_log,
	.dump_fh = il4965_dump_fh,
	.set_channel_switch = il4965_hw_channel_switch,
2306
	.apm_ops = {
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Stanislaw Gruszka 已提交
2307 2308
		.init = il_apm_init,
		.config = il4965_nic_config,
2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319
	},
	.eeprom_ops = {
		.regulatory_bands = {
			EEPROM_REGULATORY_BAND_1_CHANNELS,
			EEPROM_REGULATORY_BAND_2_CHANNELS,
			EEPROM_REGULATORY_BAND_3_CHANNELS,
			EEPROM_REGULATORY_BAND_4_CHANNELS,
			EEPROM_REGULATORY_BAND_5_CHANNELS,
			EEPROM_4965_REGULATORY_BAND_24_HT40_CHANNELS,
			EEPROM_4965_REGULATORY_BAND_52_HT40_CHANNELS
		},
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Stanislaw Gruszka 已提交
2320 2321
		.acquire_semaphore = il4965_eeprom_acquire_semaphore,
		.release_semaphore = il4965_eeprom_release_semaphore,
2322
	},
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Stanislaw Gruszka 已提交
2323 2324
	.send_tx_power	= il4965_send_tx_power,
	.update_chain_flags = il4965_update_chain_flags,
2325
	.temp_ops = {
S
Stanislaw Gruszka 已提交
2326
		.temperature = il4965_temperature_calib,
2327 2328
	},
	.debugfs_ops = {
S
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2329 2330 2331
		.rx_stats_read = il4965_ucode_rx_stats_read,
		.tx_stats_read = il4965_ucode_tx_stats_read,
		.general_stats_read = il4965_ucode_general_stats_read,
2332 2333 2334
	},
};

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2335 2336 2337 2338 2339
static const struct il_legacy_ops il4965_legacy_ops = {
	.post_associate = il4965_post_associate,
	.config_ap = il4965_config_ap,
	.manage_ibss_station = il4965_manage_ibss_station,
	.update_bcast_stations = il4965_update_bcast_stations,
2340 2341
};

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2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361
struct ieee80211_ops il4965_hw_ops = {
	.tx = il4965_mac_tx,
	.start = il4965_mac_start,
	.stop = il4965_mac_stop,
	.add_interface = il_mac_add_interface,
	.remove_interface = il_mac_remove_interface,
	.change_interface = il_mac_change_interface,
	.config = il_mac_config,
	.configure_filter = il4965_configure_filter,
	.set_key = il4965_mac_set_key,
	.update_tkip_key = il4965_mac_update_tkip_key,
	.conf_tx = il_mac_conf_tx,
	.reset_tsf = il_mac_reset_tsf,
	.bss_info_changed = il_mac_bss_info_changed,
	.ampdu_action = il4965_mac_ampdu_action,
	.hw_scan = il_mac_hw_scan,
	.sta_add = il4965_mac_sta_add,
	.sta_remove = il_mac_sta_remove,
	.channel_switch = il4965_mac_channel_switch,
	.tx_last_beacon = il_mac_tx_last_beacon,
2362 2363
};

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Stanislaw Gruszka 已提交
2364 2365 2366 2367 2368 2369 2370
static const struct il_ops il4965_ops = {
	.lib = &il4965_lib,
	.hcmd = &il4965_hcmd,
	.utils = &il4965_hcmd_utils,
	.led = &il4965_led_ops,
	.legacy = &il4965_legacy_ops,
	.ieee80211_ops = &il4965_hw_ops,
2371 2372
};

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Stanislaw Gruszka 已提交
2373
static struct il_base_params il4965_base_params = {
2374 2375 2376
	.eeprom_size = IL4965_EEPROM_IMG_SIZE,
	.num_of_queues = IL49_NUM_QUEUES,
	.num_of_ampdu_queues = IL49_NUM_AMPDU_QUEUES,
2377 2378 2379 2380
	.pll_cfg_val = 0,
	.set_l0s = true,
	.use_bsm = true,
	.led_compensation = 61,
2381
	.chain_noise_num_beacons = IL4965_CAL_NUM_BEACONS,
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Stanislaw Gruszka 已提交
2382
	.wd_timeout = IL_DEF_WD_TIMEOUT,
2383 2384 2385 2386 2387 2388
	.temperature_kelvin = true,
	.ucode_tracing = true,
	.sensitivity_calib_by_driver = true,
	.chain_noise_calib_by_driver = true,
};

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Stanislaw Gruszka 已提交
2389
struct il_cfg il4965_cfg = {
2390
	.name = "Intel(R) Wireless WiFi Link 4965AGN",
2391 2392 2393
	.fw_name_pre = IL4965_FW_PRE,
	.ucode_api_max = IL4965_UCODE_API_MAX,
	.ucode_api_min = IL4965_UCODE_API_MIN,
S
Stanislaw Gruszka 已提交
2394
	.sku = IL_SKU_A|IL_SKU_G|IL_SKU_N,
2395 2396 2397 2398
	.valid_tx_ant = ANT_AB,
	.valid_rx_ant = ANT_ABC,
	.eeprom_ver = EEPROM_4965_EEPROM_VERSION,
	.eeprom_calib_ver = EEPROM_4965_TX_POWER_VERSION,
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Stanislaw Gruszka 已提交
2399 2400 2401 2402
	.ops = &il4965_ops,
	.mod_params = &il4965_mod_params,
	.base_params = &il4965_base_params,
	.led_mode = IL_LED_BLINK,
2403 2404 2405 2406 2407 2408 2409 2410
	/*
	 * Force use of chains B and C for scan RX on 5 GHz band
	 * because the device has off-channel reception on chain A.
	 */
	.scan_rx_antennas[IEEE80211_BAND_5GHZ] = ANT_BC,
};

/* Module firmware */
2411
MODULE_FIRMWARE(IL4965_MODULE_FIRMWARE(IL4965_UCODE_API_MAX));