mirror of
https://github.com/RinCat/RTL88x2BU-Linux-Driver.git
synced 2024-12-27 02:21:35 +00:00
438 lines
15 KiB
C
438 lines
15 KiB
C
/******************************************************************************
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*
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* Copyright(c) 2007 - 2017 Realtek Corporation.
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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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*****************************************************************************/
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#ifndef __HAL_COMMON_LED_H_
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#define __HAL_COMMON_LED_H_
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#define NO_LED 0
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#define HW_LED 1
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#ifdef CONFIG_RTW_LED
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#define MSECS(t) (HZ * ((t) / 1000) + (HZ * ((t) % 1000)) / 1000)
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/* ********************************************************************************
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* LED Behavior Constant.
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* ********************************************************************************
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* Default LED behavior.
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* */
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#define LED_BLINK_NORMAL_INTERVAL 100
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#define LED_BLINK_SLOWLY_INTERVAL 200
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#define LED_BLINK_LONG_INTERVAL 400
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#define LED_INITIAL_INTERVAL 1800
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/* LED Customerization */
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/* NETTRONIX */
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#define LED_BLINK_NORMAL_INTERVAL_NETTRONIX 100
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#define LED_BLINK_SLOWLY_INTERVAL_NETTRONIX 2000
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/* PORNET */
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#define LED_BLINK_SLOWLY_INTERVAL_PORNET 1000
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#define LED_BLINK_NORMAL_INTERVAL_PORNET 100
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#define LED_BLINK_FAST_INTERVAL_BITLAND 30
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/* AzWave. */
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#define LED_CM2_BLINK_ON_INTERVAL 250
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#define LED_CM2_BLINK_OFF_INTERVAL 4750
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#define LED_CM8_BLINK_OFF_INTERVAL 3750 /* for QMI */
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/* RunTop */
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#define LED_RunTop_BLINK_INTERVAL 300
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/* ALPHA */
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#define LED_BLINK_NO_LINK_INTERVAL_ALPHA 1000
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#define LED_BLINK_NO_LINK_INTERVAL_ALPHA_500MS 500 /* add by ylb 20121012 for customer led for alpha */
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#define LED_BLINK_LINK_INTERVAL_ALPHA 500 /* 500 */
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#define LED_BLINK_SCAN_INTERVAL_ALPHA 180 /* 150 */
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#define LED_BLINK_FASTER_INTERVAL_ALPHA 50
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#define LED_BLINK_WPS_SUCESS_INTERVAL_ALPHA 5000
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/* 111122 by hpfan: Customized for Xavi */
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#define LED_CM11_BLINK_INTERVAL 300
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#define LED_CM11_LINK_ON_INTERVEL 3000
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/* Netgear */
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#define LED_BLINK_LINK_INTERVAL_NETGEAR 500
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#define LED_BLINK_LINK_SLOWLY_INTERVAL_NETGEAR 1000
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#define LED_WPS_BLINK_OFF_INTERVAL_NETGEAR 100
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#define LED_WPS_BLINK_ON_INTERVAL_NETGEAR 500
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/* Belkin AC950 */
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#define LED_BLINK_LINK_INTERVAL_ON_BELKIN 200
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#define LED_BLINK_LINK_INTERVAL_OFF_BELKIN 100
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#define LED_BLINK_ERROR_INTERVAL_BELKIN 100
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/* by chiyokolin for Azurewave */
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#define LED_CM12_BLINK_INTERVAL_5Mbps 160
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#define LED_CM12_BLINK_INTERVAL_10Mbps 80
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#define LED_CM12_BLINK_INTERVAL_20Mbps 50
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#define LED_CM12_BLINK_INTERVAL_40Mbps 40
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#define LED_CM12_BLINK_INTERVAL_80Mbps 30
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#define LED_CM12_BLINK_INTERVAL_MAXMbps 25
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/* Dlink */
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#define LED_BLINK_NO_LINK_INTERVAL 1000
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#define LED_BLINK_LINK_IDEL_INTERVAL 100
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#define LED_BLINK_SCAN_ON_INTERVAL 30
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#define LED_BLINK_SCAN_OFF_INTERVAL 300
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#define LED_WPS_BLINK_ON_INTERVAL_DLINK 30
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#define LED_WPS_BLINK_OFF_INTERVAL_DLINK 300
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#define LED_WPS_BLINK_LINKED_ON_INTERVAL_DLINK 5000
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/* ********************************************************************************
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* LED object.
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* ******************************************************************************** */
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typedef enum _LED_CTL_MODE {
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LED_CTL_POWER_ON = 1,
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LED_CTL_LINK = 2,
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LED_CTL_NO_LINK = 3,
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LED_CTL_TX = 4, /* unspecific data TX, including single & group addressed */
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LED_CTL_RX = 5, /* unspecific data RX, including single & group addressed */
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LED_CTL_UC_TX = 6, /* single addressed data TX */
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LED_CTL_UC_RX = 7, /* single addressed data RX */
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LED_CTL_BMC_TX = 8, /* group addressed data TX */
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LED_CTL_BMC_RX = 9, /* group addressed data RX */
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LED_CTL_SITE_SURVEY = 10,
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LED_CTL_POWER_OFF = 11,
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LED_CTL_START_TO_LINK = 12,
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LED_CTL_START_WPS = 13,
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LED_CTL_STOP_WPS = 14,
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LED_CTL_START_WPS_BOTTON = 15, /* added for runtop */
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LED_CTL_STOP_WPS_FAIL = 16, /* added for ALPHA */
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LED_CTL_STOP_WPS_FAIL_OVERLAP = 17, /* added for BELKIN */
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LED_CTL_CONNECTION_NO_TRANSFER = 18,
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} LED_CTL_MODE;
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typedef enum _LED_STATE {
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LED_UNKNOWN = 0,
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RTW_LED_ON = 1,
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RTW_LED_OFF = 2,
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LED_BLINK_NORMAL = 3,
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LED_BLINK_SLOWLY = 4,
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LED_BLINK_POWER_ON = 5,
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LED_BLINK_SCAN = 6, /* LED is blinking during scanning period, the # of times to blink is depend on time for scanning. */
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LED_BLINK_NO_LINK = 7, /* LED is blinking during no link state. */
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LED_BLINK_StartToBlink = 8, /* Customzied for Sercomm Printer Server case */
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LED_BLINK_TXRX = 9,
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LED_BLINK_WPS = 10, /* LED is blinkg during WPS communication */
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LED_BLINK_WPS_STOP = 11, /* for ALPHA */
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LED_BLINK_WPS_STOP_OVERLAP = 12, /* for BELKIN */
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LED_BLINK_RUNTOP = 13, /* Customized for RunTop */
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LED_BLINK_CAMEO = 14,
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LED_BLINK_XAVI = 15,
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LED_BLINK_ALWAYS_ON = 16,
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LED_BLINK_LINK_IN_PROCESS = 17, /* Customized for Belkin AC950 */
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LED_BLINK_AUTH_ERROR = 18, /* Customized for Belkin AC950 */
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LED_BLINK_Azurewave_5Mbps = 19,
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LED_BLINK_Azurewave_10Mbps = 20,
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LED_BLINK_Azurewave_20Mbps = 21,
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LED_BLINK_Azurewave_40Mbps = 22,
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LED_BLINK_Azurewave_80Mbps = 23,
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LED_BLINK_Azurewave_MAXMbps = 24,
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LED_BLINK_LINK_IDEL = 25,
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LED_BLINK_WPS_LINKED = 26,
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} LED_STATE;
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typedef enum _LED_PIN {
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LED_PIN_GPIO0,
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LED_PIN_LED0,
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LED_PIN_LED1,
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LED_PIN_LED2
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} LED_PIN;
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/* ********************************************************************************
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* PCIE LED Definition.
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* ******************************************************************************** */
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#ifdef CONFIG_PCI_HCI
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typedef enum _LED_STRATEGY_PCIE {
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/* start from 2 */
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SW_LED_MODE_UC_TRX_ONLY = 2,
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SW_LED_MODE0, /* SW control 1 LED via GPIO0. It is default option. */
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SW_LED_MODE1, /* SW control for PCI Express */
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SW_LED_MODE2, /* SW control for Cameo. */
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SW_LED_MODE3, /* SW contorl for RunTop. */
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SW_LED_MODE4, /* SW control for Netcore */
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SW_LED_MODE5, /* added by vivi, for led new mode, DLINK */
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SW_LED_MODE6, /* added by vivi, for led new mode, PRONET */
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SW_LED_MODE7, /* added by chiyokolin, for Lenovo, PCI Express Minicard Spec Rev.1.2 spec */
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SW_LED_MODE8, /* added by chiyokolin, for QMI */
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SW_LED_MODE9, /* added by chiyokolin, for BITLAND-LENOVO, PCI Express Minicard Spec Rev.1.1 */
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SW_LED_MODE10, /* added by chiyokolin, for Edimax-ASUS */
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SW_LED_MODE11, /* added by hpfan, for Xavi */
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SW_LED_MODE12, /* added by chiyokolin, for Azurewave */
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} LED_STRATEGY_PCIE, *PLED_STRATEGY_PCIE;
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typedef struct _LED_PCIE {
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PADAPTER padapter;
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LED_PIN LedPin; /* Identify how to implement this SW led. */
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LED_STATE CurrLedState; /* Current LED state. */
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BOOLEAN bLedOn; /* TRUE if LED is ON, FALSE if LED is OFF. */
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BOOLEAN bLedBlinkInProgress; /* TRUE if it is blinking, FALSE o.w.. */
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BOOLEAN bLedWPSBlinkInProgress; /* TRUE if it is blinking, FALSE o.w.. */
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BOOLEAN bLedSlowBlinkInProgress;/* added by vivi, for led new mode */
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u32 BlinkTimes; /* Number of times to toggle led state for blinking. */
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LED_STATE BlinkingLedState; /* Next state for blinking, either LED_ON or LED_OFF are. */
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_timer BlinkTimer; /* Timer object for led blinking. */
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} LED_PCIE, *PLED_PCIE;
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typedef struct _LED_PCIE LED_DATA, *PLED_DATA;
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typedef enum _LED_STRATEGY_PCIE LED_STRATEGY, *PLED_STRATEGY;
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void
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LedControlPCIE(
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PADAPTER Adapter,
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LED_CTL_MODE LedAction
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);
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void
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gen_RefreshLedState(
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PADAPTER Adapter);
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/* ********************************************************************************
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* USB LED Definition.
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* ******************************************************************************** */
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#elif defined(CONFIG_USB_HCI)
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#define IS_LED_WPS_BLINKING(_LED_USB) (((PLED_USB)_LED_USB)->CurrLedState == LED_BLINK_WPS \
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|| ((PLED_USB)_LED_USB)->CurrLedState == LED_BLINK_WPS_STOP \
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|| ((PLED_USB)_LED_USB)->bLedWPSBlinkInProgress)
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#define IS_LED_BLINKING(_LED_USB) (((PLED_USB)_LED_USB)->bLedWPSBlinkInProgress \
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|| ((PLED_USB)_LED_USB)->bLedScanBlinkInProgress)
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typedef enum _LED_STRATEGY_USB {
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/* start from 2 */
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SW_LED_MODE_UC_TRX_ONLY = 2,
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SW_LED_MODE0, /* SW control 1 LED via GPIO0. It is default option. */
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SW_LED_MODE1, /* 2 LEDs, through LED0 and LED1. For ALPHA. */
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SW_LED_MODE2, /* SW control 1 LED via GPIO0, customized for AzWave 8187 minicard. */
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SW_LED_MODE3, /* SW control 1 LED via GPIO0, customized for Sercomm Printer Server case. */
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SW_LED_MODE4, /* for Edimax / Belkin */
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SW_LED_MODE5, /* for Sercomm / Belkin */
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SW_LED_MODE6, /* for 88CU minicard, porting from ce SW_LED_MODE7 */
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SW_LED_MODE7, /* for Netgear special requirement */
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SW_LED_MODE8, /* for LC */
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SW_LED_MODE9, /* for Belkin AC950 */
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SW_LED_MODE10, /* for Netgear A6200V2 */
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SW_LED_MODE11, /* for Edimax / ASUS */
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SW_LED_MODE12, /* for WNC/NEC */
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SW_LED_MODE13, /* for Netgear A6100, 8811Au */
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SW_LED_MODE14, /* for Buffalo, DNI, 8811Au */
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SW_LED_MODE15, /* for DLINK, 8811Au/8812AU */
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} LED_STRATEGY_USB, *PLED_STRATEGY_USB;
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typedef struct _LED_USB {
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PADAPTER padapter;
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LED_PIN LedPin; /* Identify how to implement this SW led. */
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LED_STATE CurrLedState; /* Current LED state. */
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BOOLEAN bLedOn; /* TRUE if LED is ON, FALSE if LED is OFF. */
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BOOLEAN bSWLedCtrl;
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BOOLEAN bLedBlinkInProgress; /* TRUE if it is blinking, FALSE o.w.. */
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/* ALPHA, added by chiyoko, 20090106 */
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BOOLEAN bLedNoLinkBlinkInProgress;
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BOOLEAN bLedLinkBlinkInProgress;
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BOOLEAN bLedStartToLinkBlinkInProgress;
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BOOLEAN bLedScanBlinkInProgress;
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BOOLEAN bLedWPSBlinkInProgress;
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u32 BlinkTimes; /* Number of times to toggle led state for blinking. */
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u8 BlinkCounter; /* Added for turn off overlap led after blinking a while, by page, 20120821 */
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LED_STATE BlinkingLedState; /* Next state for blinking, either LED_ON or LED_OFF are. */
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_timer BlinkTimer; /* Timer object for led blinking. */
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_workitem BlinkWorkItem; /* Workitem used by BlinkTimer to manipulate H/W to blink LED.' */
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} LED_USB, *PLED_USB;
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typedef struct _LED_USB LED_DATA, *PLED_DATA;
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typedef enum _LED_STRATEGY_USB LED_STRATEGY, *PLED_STRATEGY;
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#ifdef CONFIG_RTW_SW_LED
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void
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LedControlUSB(
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PADAPTER Adapter,
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LED_CTL_MODE LedAction
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);
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#endif
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/* ********************************************************************************
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* SDIO LED Definition.
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* ******************************************************************************** */
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#elif defined(CONFIG_SDIO_HCI) || defined(CONFIG_GSPI_HCI)
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#define IS_LED_WPS_BLINKING(_LED_SDIO) (((PLED_SDIO)_LED_SDIO)->CurrLedState == LED_BLINK_WPS \
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|| ((PLED_SDIO)_LED_SDIO)->CurrLedState == LED_BLINK_WPS_STOP \
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|| ((PLED_SDIO)_LED_SDIO)->bLedWPSBlinkInProgress)
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#define IS_LED_BLINKING(_LED_SDIO) (((PLED_SDIO)_LED_SDIO)->bLedWPSBlinkInProgress \
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|| ((PLED_SDIO)_LED_SDIO)->bLedScanBlinkInProgress)
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typedef enum _LED_STRATEGY_SDIO {
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/* start from 2 */
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SW_LED_MODE_UC_TRX_ONLY = 2,
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SW_LED_MODE0, /* SW control 1 LED via GPIO0. It is default option. */
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SW_LED_MODE1, /* 2 LEDs, through LED0 and LED1. For ALPHA. */
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SW_LED_MODE2, /* SW control 1 LED via GPIO0, customized for AzWave 8187 minicard. */
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SW_LED_MODE3, /* SW control 1 LED via GPIO0, customized for Sercomm Printer Server case. */
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SW_LED_MODE4, /* for Edimax / Belkin */
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SW_LED_MODE5, /* for Sercomm / Belkin */
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SW_LED_MODE6, /* for 88CU minicard, porting from ce SW_LED_MODE7 */
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} LED_STRATEGY_SDIO, *PLED_STRATEGY_SDIO;
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typedef struct _LED_SDIO {
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PADAPTER padapter;
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LED_PIN LedPin; /* Identify how to implement this SW led. */
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LED_STATE CurrLedState; /* Current LED state. */
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BOOLEAN bLedOn; /* TRUE if LED is ON, FALSE if LED is OFF. */
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BOOLEAN bSWLedCtrl;
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BOOLEAN bLedBlinkInProgress; /* TRUE if it is blinking, FALSE o.w.. */
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/* ALPHA, added by chiyoko, 20090106 */
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BOOLEAN bLedNoLinkBlinkInProgress;
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BOOLEAN bLedLinkBlinkInProgress;
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BOOLEAN bLedStartToLinkBlinkInProgress;
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BOOLEAN bLedScanBlinkInProgress;
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BOOLEAN bLedWPSBlinkInProgress;
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u32 BlinkTimes; /* Number of times to toggle led state for blinking. */
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LED_STATE BlinkingLedState; /* Next state for blinking, either LED_ON or LED_OFF are. */
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_timer BlinkTimer; /* Timer object for led blinking. */
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_workitem BlinkWorkItem; /* Workitem used by BlinkTimer to manipulate H/W to blink LED. */
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} LED_SDIO, *PLED_SDIO;
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typedef struct _LED_SDIO LED_DATA, *PLED_DATA;
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typedef enum _LED_STRATEGY_SDIO LED_STRATEGY, *PLED_STRATEGY;
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void
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LedControlSDIO(
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PADAPTER Adapter,
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LED_CTL_MODE LedAction
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);
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#endif
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struct led_priv {
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LED_STRATEGY LedStrategy;
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#ifdef CONFIG_RTW_SW_LED
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LED_DATA SwLed0;
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LED_DATA SwLed1;
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LED_DATA SwLed2;
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u8 bRegUseLed;
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u8 iface_en_mask;
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u32 ctl_en_mask[CONFIG_IFACE_NUMBER];
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void (*LedControlHandler)(_adapter *padapter, LED_CTL_MODE LedAction);
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void (*SwLedOn)(_adapter *padapter, PLED_DATA pLed);
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void (*SwLedOff)(_adapter *padapter, PLED_DATA pLed);
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#endif
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};
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#define SwLedOn(adapter, pLed) \
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do { \
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if (adapter_to_led(adapter)->SwLedOn) \
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adapter_to_led(adapter)->SwLedOn((adapter), (pLed)); \
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} while (0)
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#define SwLedOff(adapter, pLed) \
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do { \
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if (adapter_to_led(adapter)->SwLedOff) \
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adapter_to_led(adapter)->SwLedOff((adapter), (pLed)); \
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} while (0)
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void BlinkTimerCallback(void *data);
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void BlinkWorkItemCallback(_workitem *work);
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void ResetLedStatus(PLED_DATA pLed);
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void
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InitLed(
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_adapter *padapter,
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PLED_DATA pLed,
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LED_PIN LedPin
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);
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void
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DeInitLed(
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PLED_DATA pLed
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);
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/* hal... */
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extern void BlinkHandler(PLED_DATA pLed);
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void dump_led_config(void *sel, _adapter *adapter);
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void rtw_led_set_strategy(_adapter *adapter, u8 strategy);
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#endif /* CONFIG_RTW_LED */
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#if defined(CONFIG_RTW_LED)
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#define rtw_led_get_strategy(adapter) (adapter_to_led(adapter)->LedStrategy)
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#else
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#define rtw_led_get_strategy(adapter) NO_LED
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#endif
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#define IS_NO_LED_STRATEGY(s) ((s) == NO_LED)
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#define IS_HW_LED_STRATEGY(s) ((s) == HW_LED)
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#define IS_SW_LED_STRATEGY(s) ((s) != NO_LED && (s) != HW_LED)
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#if defined(CONFIG_RTW_LED) && defined(CONFIG_RTW_SW_LED)
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#ifndef CONFIG_RTW_SW_LED_TRX_DA_CLASSIFY
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#define CONFIG_RTW_SW_LED_TRX_DA_CLASSIFY 0
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#endif
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#if CONFIG_RTW_SW_LED_TRX_DA_CLASSIFY
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void rtw_sw_led_blink_uc_trx_only(LED_DATA *led);
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void rtw_sw_led_ctl_mode_uc_trx_only(_adapter *adapter, LED_CTL_MODE ctl);
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#endif
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void rtw_led_control(_adapter *adapter, LED_CTL_MODE ctl);
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void rtw_led_tx_control(_adapter *adapter, const u8 *da);
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void rtw_led_rx_control(_adapter *adapter, const u8 *da);
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void rtw_led_set_iface_en(_adapter *adapter, u8 en);
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void rtw_led_set_iface_en_mask(_adapter *adapter, u8 mask);
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void rtw_led_set_ctl_en_mask(_adapter *adapter, u32 ctl_mask);
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void rtw_led_set_ctl_en_mask_primary(_adapter *adapter);
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void rtw_led_set_ctl_en_mask_virtual(_adapter *adapter);
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#else
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#define rtw_led_control(adapter, ctl) do {} while (0)
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#define rtw_led_tx_control(adapter, da) do {} while (0)
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#define rtw_led_rx_control(adapter, da) do {} while (0)
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#define rtw_led_set_iface_en(adapter, en) do {} while (0)
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#define rtw_led_set_iface_en_mask(adapter, mask) do {} while (0)
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#define rtw_led_set_ctl_en_mask(adapter, ctl_mask) do {} while (0)
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#define rtw_led_set_ctl_en_mask_primary(adapter) do {} while (0)
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#define rtw_led_set_ctl_en_mask_virtual(adapter) do {} while (0)
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#endif /* defined(CONFIG_RTW_LED) && defined(CONFIG_RTW_SW_LED) */
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#endif /*__HAL_COMMON_LED_H_*/
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