#ifndef __INC_HALCOMLED_H #define __INC_HALCOMLED_H /*++ Copyright (c) Realtek Semiconductor Corp. All rights reserved. Module Name: HalComLed.h Abstract: LED related data structure and interface to manipulate LED. Major Change History: When Who What ---------- --------------- ------------------------------- 2012-12-23 Isaiah Create. --*/ //================================================================================ // LED Behavior Constant. //================================================================================ // Default LED behavior. // #define LED_BLINK_NORMAL_INTERVAL 100 #define LED_BLINK_SLOWLY_INTERVAL 200 #define LED_BLINK_LONG_INTERVAL 400 #define LED_INITIAL_INTERVAL 1800 // LED Customerization //NETTRONIX #define LED_BLINK_NORMAL_INTERVAL_NETTRONIX 100 #define LED_BLINK_SLOWLY_INTERVAL_NETTRONIX 2000 //PORNET #define LED_BLINK_SLOWLY_INTERVAL_PORNET 1000 #define LED_BLINK_NORMAL_INTERVAL_PORNET 100 #define LED_BLINK_FAST_INTERVAL_BITLAND 30 //AzWave. #define LED_CM2_BLINK_ON_INTERVAL 250 #define LED_CM2_BLINK_OFF_INTERVAL 4750 #define LED_CM8_BLINK_OFF_INTERVAL 3750 //for QMI //RunTop #define LED_RunTop_BLINK_INTERVAL 300 //ALPHA #define LED_BLINK_NO_LINK_INTERVAL_ALPHA 1000 #define LED_BLINK_NO_LINK_INTERVAL_ALPHA_500MS 500 //add by ylb 20121012 for customer led for alpha #define LED_BLINK_LINK_INTERVAL_ALPHA 500 //500 #define LED_BLINK_SCAN_INTERVAL_ALPHA 180 //150 #define LED_BLINK_FASTER_INTERVAL_ALPHA 50 #define LED_BLINK_WPS_SUCESS_INTERVAL_ALPHA 5000 // 111122 by hpfan: Customized for Xavi #define LED_CM11_BLINK_INTERVAL 300 #define LED_CM11_LINK_ON_INTERVEL 3000 //Netgear #define LED_BLINK_LINK_INTERVAL_NETGEAR 500 #define LED_BLINK_LINK_SLOWLY_INTERVAL_NETGEAR 1000 #define LED_WPS_BLINK_OFF_INTERVAL_NETGEAR 100 #define LED_WPS_BLINK_ON_INTERVAL_NETGEAR 500 //Belkin AC950 #define LED_BLINK_LINK_INTERVAL_ON_BELKIN 200 #define LED_BLINK_LINK_INTERVAL_OFF_BELKIN 100 #define LED_BLINK_ERROR_INTERVAL_BELKIN 100 //by chiyokolin for Azurewave #define LED_CM12_BLINK_INTERVAL_5Mbps 160 #define LED_CM12_BLINK_INTERVAL_10Mbps 80 #define LED_CM12_BLINK_INTERVAL_20Mbps 50 #define LED_CM12_BLINK_INTERVAL_40Mbps 40 #define LED_CM12_BLINK_INTERVAL_80Mbps 30 #define LED_CM12_BLINK_INTERVAL_MAXMbps 25 //ECS #define LED_BLINK_INTERVAL_OVER_2Mbps 500 #define LED_BLINK_INTERVAL_OVER_1Mbps 1000 //Dlink #define LED_BLINK_NO_LINK_INTERVAL 1000 #define LED_BLINK_LINK_IDEL_INTERVAL 100 #define LED_BLINK_SCAN_ON_INTERVAL 30 #define LED_BLINK_SCAN_OFF_INTERVAL 300 #define LED_WPS_BLINK_ON_INTERVAL_DLINK 30 #define LED_WPS_BLINK_OFF_INTERVAL_DLINK 300 #define LED_WPS_BLINK_LINKED_ON_INTERVAL_DLINK 5000 //Mitac #define LED_BLINK_TRX_INYERVAL_MITAC 500 #define LED_BLINK_ON_OFF_INYERVAL_MITAC 100 //ELECOM #define LED_BLINK_WPS_INTERVAL_ELECOM 500 #define LED_BLINK_TRX_INTERVAL_ELECOM 100 //================================================================================ // LED object. //================================================================================ typedef enum _LED_STATE{ LED_UNKNOWN = 0, LED_ON = 1, LED_OFF = 2, LED_BLINK_NORMAL = 3, LED_BLINK_SLOWLY = 4, LED_POWER_ON_BLINK = 5, LED_SCAN_BLINK = 6, // LED is blinking during scanning period, the # of times to blink is depend on time for scanning. LED_NO_LINK_BLINK = 7, // LED is blinking during no link state. LED_BLINK_StartToBlink = 8, // Customzied for Sercomm Printer Server case LED_BLINK_TXRX = 9, LED_BLINK_WPS = 10, // LED is blinkg during WPS communication LED_BLINK_WPS_STOP = 11, //for ALPHA LED_BLINK_WPS_STOP_OVERLAP = 12, //for BELKIN LED_BLINK_RUNTOP = 13, // Customized for RunTop LED_BLINK_CAMEO = 14, LED_BLINK_XAVI = 15, LED_BLINK_ALWAYS_ON = 16, LED_BLINK_LINK_IN_PROCESS = 17, //Customized for Belkin AC950 LED_BLINK_AUTH_ERROR = 18, //Customized for Belkin AC950 LED_BLINK_Azurewave_5Mbps = 19, LED_BLINK_Azurewave_10Mbps = 20, LED_BLINK_Azurewave_20Mbps = 21, LED_BLINK_Azurewave_40Mbps = 22, LED_BLINK_Azurewave_80Mbps = 23, LED_BLINK_Azurewave_MAXMbps = 24, LED_BLINK_LINK_IDEL = 25, LED_BLINK_WPS_LINKED = 26, LED_BLINK_TIME_BY_REG = 27, LED_BLINK_ECS_Below_1Mbps = 28, LED_BLINK_ECS_Over_1Mbps = 29, LED_BLINK_ECS_Over_2Mbps = 30, }LED_STATE; typedef enum _LED_PIN{ LED_PIN_GPIO0, LED_PIN_LED0, LED_PIN_LED1, LED_PIN_LED2, LED_PIN_LED3, LED_PIN_LED_ALL }LED_PIN; //================================================================================ // SDIO LED Definition. //================================================================================ #define IS_LED_WPS_BLINKING(_LED_SDIO) (((PLED_SDIO)_LED_SDIO)->CurrLedState==LED_BLINK_WPS \ || ((PLED_SDIO)_LED_SDIO)->CurrLedState==LED_BLINK_WPS_STOP \ || ((PLED_SDIO)_LED_SDIO)->bLedWPSBlinkInProgress) #define IS_LED_BLINKING(_LED_SDIO) (((PLED_SDIO)_LED_SDIO)->bLedWPSBlinkInProgress \ ||((PLED_SDIO)_LED_SDIO)->bLedScanBlinkInProgress) typedef enum _LED_STRATEGY_SDIO{ SW_LED_MODE0, // SW control 1 LED via GPIO0. It is default option. SW_LED_MODE1, // 2 LEDs, through LED0 and LED1. For ALPHA. SW_LED_MODE2, // SW control 1 LED via GPIO0, customized for AzWave 8187 minicard. SW_LED_MODE3, // SW control 1 LED via GPIO0, customized for Sercomm Printer Server case. SW_LED_MODE4, //for Edimax / Belkin SW_LED_MODE5, //for Sercomm / Belkin SW_LED_MODE6, //for 88CU minicard, porting from ce SW_LED_MODE7 SW_LED_MODE7, //for ECS HW_LED, // HW control 2 LEDs, LED0 and LED1 (there are 4 different control modes, see MAC.CONFIG1 for details.) }LED_STRATEGY_SDIO, *PLED_STRATEGY_SDIO; typedef struct _LED_SDIO{ PVOID pAdapter; LED_PIN LedPin; // Identify how to implement this SW led. LED_STATE CurrLedState; // Current LED state. BOOLEAN bLedOn; // TRUE if LED is ON, FALSE if LED is OFF. BOOLEAN bSWLedCtrl; BOOLEAN bLedBlinkInProgress; // TRUE if it is blinking, FALSE o.w.. // ALPHA, added by chiyoko, 20090106 BOOLEAN bLedNoLinkBlinkInProgress; BOOLEAN bLedLinkBlinkInProgress; BOOLEAN bLedStartToLinkBlinkInProgress; BOOLEAN bLedScanBlinkInProgress; BOOLEAN bLedWPSBlinkInProgress; u4Byte BlinkTimes; // Number of times to toggle led state for blinking. LED_STATE BlinkingLedState; // Next state for blinking, either LED_ON or LED_OFF are. RT_TIMER BlinkTimer; // Timer object for led blinking. RT_WORK_ITEM BlinkWorkItem; // Workitem used by BlinkTimer to manipulate H/W to blink LED. } LED_SDIO, *PLED_SDIO; VOID LedControlSDIO( IN PADAPTER Adapter, IN LED_CTL_MODE LedAction ); //================================================================================ // Interface to manipulate LED objects. //================================================================================ #define SwLedOn(_Adapter, _pLed) \ if(IS_HARDWARE_TYPE_8814A(_Adapter)) \ SwLedOn_8814A(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_JAGUAR(_Adapter)) \ IS_HARDWARE_TYPE_8821(_Adapter) ? SwLedOn_8821A(_Adapter, _pLed) : SwLedOn_8812A(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_8723B(_Adapter)||IS_HARDWARE_TYPE_8192E(_Adapter)) \ IS_HARDWARE_TYPE_8192E(_Adapter) ? SwLedOn_8192E(_Adapter, _pLed) : SwLedOn_8723B(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_8821B(_Adapter)) \ SwLedOn_8821B(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_8822B(_Adapter)) \ SwLedOn_8822B(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_8703B(_Adapter)) \ SwLedOn_8703B(_Adapter,_pLed); \ else if(IS_HARDWARE_TYPE_8188F(_Adapter)) \ SwLedOn_8188F(_Adapter,_pLed); \ else if(IS_HARDWARE_TYPE_8723D(_Adapter)) \ SwLedOn_8723D(_Adapter,_pLed); \ else \ IS_HARDWARE_TYPE_8188E(_Adapter) ? SwLedOn_8188E(_Adapter, _pLed) : SwLedOn_Dummy(_Adapter, _pLed) #define SwLedOff(_Adapter, _pLed) \ if(IS_HARDWARE_TYPE_8814A(_Adapter)) \ SwLedOff_8814A(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_JAGUAR(_Adapter)) \ IS_HARDWARE_TYPE_8821(_Adapter) ? SwLedOff_8821A(_Adapter, _pLed) : SwLedOff_8812A(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_8723B(_Adapter)||IS_HARDWARE_TYPE_8192E(_Adapter)) \ IS_HARDWARE_TYPE_8192E(_Adapter) ? SwLedOff_8192E(_Adapter, _pLed) : SwLedOff_8723B(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_8821B(_Adapter)) \ SwLedOff_8821B(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_8822B(_Adapter)) \ SwLedOff_8822B(_Adapter, _pLed); \ else if(IS_HARDWARE_TYPE_8703B(_Adapter)) \ SwLedOff_8703B(_Adapter,_pLed); \ else if(IS_HARDWARE_TYPE_8188F(_Adapter)) \ SwLedOff_8188F(_Adapter,_pLed); \ else if(IS_HARDWARE_TYPE_8723D(_Adapter)) \ SwLedOff_8723D(_Adapter,_pLed); \ else \ IS_HARDWARE_TYPE_8188E(_Adapter) ? SwLedOff_8188E(_Adapter, _pLed) : SwLedOff_Dummy(_Adapter, _pLed) VOID InitSwLeds( IN PADAPTER Adapter ); VOID DeInitSwLeds( IN PADAPTER Adapter ); VOID SwLedOn_Dummy( IN PADAPTER Adapter, IN PVOID pLed ); VOID SwLedOff_Dummy( IN PADAPTER Adapter, IN PVOID pLed ); #endif /*__INC_HALCOMLED_H*/