9eae88fa9a
The queue mapping is not only dynamic, it is also dependent on the uCode, as we can already see today with the dual-mode and non-dual-mode being different. Move the queue mapping out of the transport layer and let the higher layer manage it. Part of the transport configuration is how to set up the queues. Signed-off-by: Johannes Berg <johannes.berg@intel.com> Signed-off-by: Wey-Yi Guy <wey-yi.w.guy@intel.com> Signed-off-by: John W. Linville <linville@tuxdriver.com>
327 lines
9.9 KiB
C
327 lines
9.9 KiB
C
/******************************************************************************
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*
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* Copyright(c) 2008 - 2012 Intel Corporation. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of version 2 of the GNU General Public License as
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* published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License along with
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* this program; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
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*
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* The full GNU General Public License is included in this distribution in the
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* file called LICENSE.
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*
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* Contact Information:
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* Intel Linux Wireless <ilw@linux.intel.com>
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* Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
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*
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*****************************************************************************/
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#include <linux/kernel.h>
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#include <linux/module.h>
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#include <linux/init.h>
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#include <linux/delay.h>
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#include <linux/skbuff.h>
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#include <linux/netdevice.h>
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#include <net/mac80211.h>
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#include <linux/etherdevice.h>
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#include <asm/unaligned.h>
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#include <linux/stringify.h>
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#include "iwl-eeprom.h"
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#include "iwl-dev.h"
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#include "iwl-core.h"
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#include "iwl-io.h"
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#include "iwl-agn.h"
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#include "iwl-agn-hw.h"
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#include "iwl-shared.h"
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#include "iwl-cfg.h"
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/* Highest firmware API version supported */
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#define IWL2030_UCODE_API_MAX 6
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#define IWL2000_UCODE_API_MAX 6
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#define IWL105_UCODE_API_MAX 6
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#define IWL135_UCODE_API_MAX 6
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/* Oldest version we won't warn about */
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#define IWL2030_UCODE_API_OK 5
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#define IWL2000_UCODE_API_OK 5
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#define IWL105_UCODE_API_OK 5
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#define IWL135_UCODE_API_OK 5
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/* Lowest firmware API version supported */
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#define IWL2030_UCODE_API_MIN 5
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#define IWL2000_UCODE_API_MIN 5
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#define IWL105_UCODE_API_MIN 5
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#define IWL135_UCODE_API_MIN 5
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#define IWL2030_FW_PRE "iwlwifi-2030-"
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#define IWL2030_MODULE_FIRMWARE(api) IWL2030_FW_PRE __stringify(api) ".ucode"
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#define IWL2000_FW_PRE "iwlwifi-2000-"
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#define IWL2000_MODULE_FIRMWARE(api) IWL2000_FW_PRE __stringify(api) ".ucode"
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#define IWL105_FW_PRE "iwlwifi-105-"
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#define IWL105_MODULE_FIRMWARE(api) IWL105_FW_PRE __stringify(api) ".ucode"
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#define IWL135_FW_PRE "iwlwifi-135-"
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#define IWL135_MODULE_FIRMWARE(api) IWL135_FW_PRE __stringify(api) ".ucode"
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static void iwl2000_set_ct_threshold(struct iwl_priv *priv)
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{
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/* want Celsius */
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hw_params(priv).ct_kill_threshold = CT_KILL_THRESHOLD;
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hw_params(priv).ct_kill_exit_threshold = CT_KILL_EXIT_THRESHOLD;
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}
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/* NIC configuration for 2000 series */
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static void iwl2000_nic_config(struct iwl_priv *priv)
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{
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iwl_rf_config(priv);
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iwl_set_bit(trans(priv), CSR_GP_DRIVER_REG,
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CSR_GP_DRIVER_REG_BIT_RADIO_IQ_INVER);
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}
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static const struct iwl_sensitivity_ranges iwl2000_sensitivity = {
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.min_nrg_cck = 97,
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.auto_corr_min_ofdm = 80,
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.auto_corr_min_ofdm_mrc = 128,
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.auto_corr_min_ofdm_x1 = 105,
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.auto_corr_min_ofdm_mrc_x1 = 192,
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.auto_corr_max_ofdm = 145,
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.auto_corr_max_ofdm_mrc = 232,
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.auto_corr_max_ofdm_x1 = 110,
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.auto_corr_max_ofdm_mrc_x1 = 232,
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.auto_corr_min_cck = 125,
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.auto_corr_max_cck = 175,
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.auto_corr_min_cck_mrc = 160,
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.auto_corr_max_cck_mrc = 310,
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.nrg_th_cck = 97,
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.nrg_th_ofdm = 100,
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.barker_corr_th_min = 190,
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.barker_corr_th_min_mrc = 390,
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.nrg_th_cca = 62,
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};
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static void iwl2000_hw_set_hw_params(struct iwl_priv *priv)
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{
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hw_params(priv).ht40_channel = BIT(IEEE80211_BAND_2GHZ);
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hw_params(priv).tx_chains_num =
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num_of_ant(hw_params(priv).valid_tx_ant);
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if (cfg(priv)->rx_with_siso_diversity)
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hw_params(priv).rx_chains_num = 1;
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else
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hw_params(priv).rx_chains_num =
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num_of_ant(hw_params(priv).valid_rx_ant);
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iwl2000_set_ct_threshold(priv);
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/* Set initial sensitivity parameters */
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hw_params(priv).sens = &iwl2000_sensitivity;
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}
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static struct iwl_lib_ops iwl2000_lib = {
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.set_hw_params = iwl2000_hw_set_hw_params,
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.nic_config = iwl2000_nic_config,
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.eeprom_ops = {
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.regulatory_bands = {
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EEPROM_REG_BAND_1_CHANNELS,
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EEPROM_REG_BAND_2_CHANNELS,
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EEPROM_REG_BAND_3_CHANNELS,
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EEPROM_REG_BAND_4_CHANNELS,
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EEPROM_REG_BAND_5_CHANNELS,
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EEPROM_6000_REG_BAND_24_HT40_CHANNELS,
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EEPROM_REGULATORY_BAND_NO_HT40,
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},
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.enhanced_txpower = true,
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},
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.temperature = iwlagn_temperature,
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};
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static struct iwl_lib_ops iwl2030_lib = {
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.set_hw_params = iwl2000_hw_set_hw_params,
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.nic_config = iwl2000_nic_config,
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.eeprom_ops = {
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.regulatory_bands = {
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EEPROM_REG_BAND_1_CHANNELS,
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EEPROM_REG_BAND_2_CHANNELS,
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EEPROM_REG_BAND_3_CHANNELS,
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EEPROM_REG_BAND_4_CHANNELS,
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EEPROM_REG_BAND_5_CHANNELS,
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EEPROM_6000_REG_BAND_24_HT40_CHANNELS,
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EEPROM_REGULATORY_BAND_NO_HT40,
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},
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.enhanced_txpower = true,
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},
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.temperature = iwlagn_temperature,
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};
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static const struct iwl_base_params iwl2000_base_params = {
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.eeprom_size = OTP_LOW_IMAGE_SIZE,
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.num_of_queues = IWLAGN_NUM_QUEUES,
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.pll_cfg_val = 0,
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.max_ll_items = OTP_MAX_LL_ITEMS_2x00,
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.shadow_ram_support = true,
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.led_compensation = 51,
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.adv_thermal_throttle = true,
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.support_ct_kill_exit = true,
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.plcp_delta_threshold = IWL_MAX_PLCP_ERR_THRESHOLD_DEF,
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.chain_noise_scale = 1000,
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.wd_timeout = IWL_DEF_WD_TIMEOUT,
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.max_event_log_size = 512,
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.shadow_reg_enable = true,
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.hd_v2 = true,
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};
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static const struct iwl_base_params iwl2030_base_params = {
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.eeprom_size = OTP_LOW_IMAGE_SIZE,
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.num_of_queues = IWLAGN_NUM_QUEUES,
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.pll_cfg_val = 0,
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.max_ll_items = OTP_MAX_LL_ITEMS_2x00,
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.shadow_ram_support = true,
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.led_compensation = 57,
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.adv_thermal_throttle = true,
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.support_ct_kill_exit = true,
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.plcp_delta_threshold = IWL_MAX_PLCP_ERR_THRESHOLD_DEF,
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.chain_noise_scale = 1000,
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.wd_timeout = IWL_LONG_WD_TIMEOUT,
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.max_event_log_size = 512,
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.shadow_reg_enable = true,
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.hd_v2 = true,
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};
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static const struct iwl_ht_params iwl2000_ht_params = {
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.ht_greenfield_support = true,
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.use_rts_for_aggregation = true, /* use rts/cts protection */
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};
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static const struct iwl_bt_params iwl2030_bt_params = {
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/* Due to bluetooth, we transmit 2.4 GHz probes only on antenna A */
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.advanced_bt_coexist = true,
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.agg_time_limit = BT_AGG_THRESHOLD_DEF,
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.bt_init_traffic_load = IWL_BT_COEX_TRAFFIC_LOAD_NONE,
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.bt_prio_boost = IWLAGN_BT_PRIO_BOOST_DEFAULT,
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.bt_sco_disable = true,
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.bt_session_2 = true,
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};
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#define IWL_DEVICE_2000 \
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.fw_name_pre = IWL2000_FW_PRE, \
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.ucode_api_max = IWL2000_UCODE_API_MAX, \
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.ucode_api_ok = IWL2000_UCODE_API_OK, \
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.ucode_api_min = IWL2000_UCODE_API_MIN, \
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.max_inst_size = IWL60_RTC_INST_SIZE, \
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.max_data_size = IWL60_RTC_DATA_SIZE, \
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.eeprom_ver = EEPROM_2000_EEPROM_VERSION, \
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.eeprom_calib_ver = EEPROM_2000_TX_POWER_VERSION, \
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.lib = &iwl2000_lib, \
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.base_params = &iwl2000_base_params, \
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.need_temp_offset_calib = true, \
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.temp_offset_v2 = true, \
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.led_mode = IWL_LED_RF_STATE
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const struct iwl_cfg iwl2000_2bgn_cfg = {
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.name = "Intel(R) Centrino(R) Wireless-N 2200 BGN",
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IWL_DEVICE_2000,
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.ht_params = &iwl2000_ht_params,
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};
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const struct iwl_cfg iwl2000_2bgn_d_cfg = {
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.name = "Intel(R) Centrino(R) Wireless-N 2200D BGN",
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IWL_DEVICE_2000,
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.ht_params = &iwl2000_ht_params,
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};
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#define IWL_DEVICE_2030 \
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.fw_name_pre = IWL2030_FW_PRE, \
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.ucode_api_max = IWL2030_UCODE_API_MAX, \
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.ucode_api_ok = IWL2030_UCODE_API_OK, \
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.ucode_api_min = IWL2030_UCODE_API_MIN, \
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.max_inst_size = IWL60_RTC_INST_SIZE, \
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.max_data_size = IWL60_RTC_DATA_SIZE, \
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.eeprom_ver = EEPROM_2000_EEPROM_VERSION, \
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.eeprom_calib_ver = EEPROM_2000_TX_POWER_VERSION, \
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.lib = &iwl2030_lib, \
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.base_params = &iwl2030_base_params, \
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.bt_params = &iwl2030_bt_params, \
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.need_temp_offset_calib = true, \
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.temp_offset_v2 = true, \
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.led_mode = IWL_LED_RF_STATE, \
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.adv_pm = true
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const struct iwl_cfg iwl2030_2bgn_cfg = {
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.name = "Intel(R) Centrino(R) Wireless-N 2230 BGN",
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IWL_DEVICE_2030,
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.ht_params = &iwl2000_ht_params,
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};
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#define IWL_DEVICE_105 \
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.fw_name_pre = IWL105_FW_PRE, \
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.ucode_api_max = IWL105_UCODE_API_MAX, \
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.ucode_api_ok = IWL105_UCODE_API_OK, \
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.ucode_api_min = IWL105_UCODE_API_MIN, \
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.max_inst_size = IWL60_RTC_INST_SIZE, \
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.max_data_size = IWL60_RTC_DATA_SIZE, \
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.eeprom_ver = EEPROM_2000_EEPROM_VERSION, \
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.eeprom_calib_ver = EEPROM_2000_TX_POWER_VERSION, \
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.lib = &iwl2000_lib, \
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.base_params = &iwl2000_base_params, \
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.need_temp_offset_calib = true, \
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.temp_offset_v2 = true, \
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.led_mode = IWL_LED_RF_STATE, \
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.adv_pm = true, \
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.rx_with_siso_diversity = true
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const struct iwl_cfg iwl105_bgn_cfg = {
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.name = "Intel(R) Centrino(R) Wireless-N 105 BGN",
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IWL_DEVICE_105,
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.ht_params = &iwl2000_ht_params,
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};
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const struct iwl_cfg iwl105_bgn_d_cfg = {
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.name = "Intel(R) Centrino(R) Wireless-N 105D BGN",
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IWL_DEVICE_105,
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.ht_params = &iwl2000_ht_params,
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};
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#define IWL_DEVICE_135 \
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.fw_name_pre = IWL135_FW_PRE, \
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.ucode_api_max = IWL135_UCODE_API_MAX, \
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.ucode_api_ok = IWL135_UCODE_API_OK, \
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.ucode_api_min = IWL135_UCODE_API_MIN, \
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.max_inst_size = IWL60_RTC_INST_SIZE, \
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.max_data_size = IWL60_RTC_DATA_SIZE, \
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.eeprom_ver = EEPROM_2000_EEPROM_VERSION, \
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.eeprom_calib_ver = EEPROM_2000_TX_POWER_VERSION, \
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.lib = &iwl2030_lib, \
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.base_params = &iwl2030_base_params, \
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.bt_params = &iwl2030_bt_params, \
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.need_temp_offset_calib = true, \
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.temp_offset_v2 = true, \
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.led_mode = IWL_LED_RF_STATE, \
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.adv_pm = true, \
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.rx_with_siso_diversity = true
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const struct iwl_cfg iwl135_bgn_cfg = {
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.name = "Intel(R) Centrino(R) Wireless-N 135 BGN",
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IWL_DEVICE_135,
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.ht_params = &iwl2000_ht_params,
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};
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MODULE_FIRMWARE(IWL2000_MODULE_FIRMWARE(IWL2000_UCODE_API_MAX));
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MODULE_FIRMWARE(IWL2030_MODULE_FIRMWARE(IWL2030_UCODE_API_MAX));
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MODULE_FIRMWARE(IWL105_MODULE_FIRMWARE(IWL105_UCODE_API_MAX));
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MODULE_FIRMWARE(IWL135_MODULE_FIRMWARE(IWL135_UCODE_API_MAX));
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