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@@ -23,352 +23,6 @@ void hal_get_permanent_address( struct hw_data * pHwData, u8 *pethernet_address
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memcpy( pethernet_address, pHwData->PermanentMacAddress, 6 );
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}
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-static void hal_led_control(unsigned long data)
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-{
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- struct wbsoft_priv *adapter = (struct wbsoft_priv *) data;
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- struct hw_data * pHwData = &adapter->sHwData;
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- struct wb35_reg *reg = &pHwData->reg;
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- u32 LEDSet = (pHwData->SoftwareSet & HAL_LED_SET_MASK) >> HAL_LED_SET_SHIFT;
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- u8 LEDgray[20] = { 0,3,4,6,8,10,11,12,13,14,15,14,13,12,11,10,8,6,4,2 };
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- u8 LEDgray2[30] = { 7,8,9,10,11,12,13,14,15,0,0,0,0,0,0,0,0,0,0,0,0,0,15,14,13,12,11,10,9,8 };
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- u32 TimeInterval = 500, ltmp, ltmp2;
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- ltmp=0;
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-
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- if( pHwData->SurpriseRemove ) return;
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-
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- if( pHwData->LED_control ) {
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- ltmp2 = pHwData->LED_control & 0xff;
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- if( ltmp2 == 5 ) // 5 is WPS mode
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- {
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- TimeInterval = 100;
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- ltmp2 = (pHwData->LED_control>>8) & 0xff;
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- switch( ltmp2 )
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- {
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- case 1: // [0.2 On][0.1 Off]...
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- pHwData->LED_Blinking %= 3;
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- ltmp = 0x1010; // Led 1 & 0 Green and Red
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- if( pHwData->LED_Blinking == 2 ) // Turn off
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- ltmp = 0;
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- break;
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- case 2: // [0.1 On][0.1 Off]...
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- pHwData->LED_Blinking %= 2;
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- ltmp = 0x0010; // Led 0 red color
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- if( pHwData->LED_Blinking ) // Turn off
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- ltmp = 0;
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- break;
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- case 3: // [0.1 On][0.1 Off][0.1 On][0.1 Off][0.1 On][0.1 Off][0.1 On][0.1 Off][0.1 On][0.1 Off][0.5 Off]...
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- pHwData->LED_Blinking %= 15;
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- ltmp = 0x0010; // Led 0 red color
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- if( (pHwData->LED_Blinking >= 9) || (pHwData->LED_Blinking%2) ) // Turn off 0.6 sec
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- ltmp = 0;
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- break;
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- case 4: // [300 On][ off ]
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- ltmp = 0x1000; // Led 1 Green color
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- if( pHwData->LED_Blinking >= 3000 )
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- ltmp = 0; // led maybe on after 300sec * 32bit counter overlap.
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- break;
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- }
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- pHwData->LED_Blinking++;
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-
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- reg->U1BC_LEDConfigure = ltmp;
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- if( LEDSet != 7 ) // Only 111 mode has 2 LEDs on PCB.
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- {
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- reg->U1BC_LEDConfigure |= (ltmp &0xff)<<8; // Copy LED result to each LED control register
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- reg->U1BC_LEDConfigure |= (ltmp &0xff00)>>8;
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- }
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure );
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- }
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- }
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- else if( pHwData->CurrentRadioSw || pHwData->CurrentRadioHw ) // If radio off
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- {
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- if( reg->U1BC_LEDConfigure & 0x1010 )
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- {
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- reg->U1BC_LEDConfigure &= ~0x1010;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure );
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- }
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- }
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- else
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- {
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- switch( LEDSet )
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- {
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- case 4: // [100] Only 1 Led be placed on PCB and use pin 21 of IC. Use LED_0 for showing
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- if( !pHwData->LED_LinkOn ) // Blink only if not Link On
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- {
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- // Blinking if scanning is on progress
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- if( pHwData->LED_Scanning )
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- {
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- if( pHwData->LED_Blinking == 0 )
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- {
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- reg->U1BC_LEDConfigure |= 0x10;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_0 On
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- pHwData->LED_Blinking = 1;
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- TimeInterval = 300;
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- }
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- else
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- {
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- reg->U1BC_LEDConfigure &= ~0x10;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_0 Off
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- pHwData->LED_Blinking = 0;
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- TimeInterval = 300;
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- }
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- }
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- else
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- {
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- //Turn Off LED_0
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- if( reg->U1BC_LEDConfigure & 0x10 )
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- {
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- reg->U1BC_LEDConfigure &= ~0x10;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_0 Off
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- }
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- }
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- }
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- else
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- {
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- // Turn On LED_0
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- if( (reg->U1BC_LEDConfigure & 0x10) == 0 )
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- {
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- reg->U1BC_LEDConfigure |= 0x10;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_0 Off
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- }
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- }
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- break;
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-
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- case 6: // [110] Only 1 Led be placed on PCB and use pin 21 of IC. Use LED_0 for showing
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- if( !pHwData->LED_LinkOn ) // Blink only if not Link On
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- {
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- // Blinking if scanning is on progress
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- if( pHwData->LED_Scanning )
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- {
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- if( pHwData->LED_Blinking == 0 )
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- {
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- reg->U1BC_LEDConfigure &= ~0xf;
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- reg->U1BC_LEDConfigure |= 0x10;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_0 On
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- pHwData->LED_Blinking = 1;
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- TimeInterval = 300;
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- }
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- else
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- {
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- reg->U1BC_LEDConfigure &= ~0x1f;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_0 Off
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- pHwData->LED_Blinking = 0;
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- TimeInterval = 300;
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- }
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- }
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- else
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- {
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- // 20060901 Gray blinking if in disconnect state and not scanning
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- ltmp = reg->U1BC_LEDConfigure;
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- reg->U1BC_LEDConfigure &= ~0x1f;
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- if( LEDgray2[(pHwData->LED_Blinking%30)] )
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- {
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- reg->U1BC_LEDConfigure |= 0x10;
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- reg->U1BC_LEDConfigure |= LEDgray2[ (pHwData->LED_Blinking%30) ];
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- }
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- pHwData->LED_Blinking++;
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- if( reg->U1BC_LEDConfigure != ltmp )
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_0 Off
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- TimeInterval = 100;
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- }
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- }
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- else
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- {
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- // Turn On LED_0
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- if( (reg->U1BC_LEDConfigure & 0x10) == 0 )
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- {
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- reg->U1BC_LEDConfigure |= 0x10;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_0 Off
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- }
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- }
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- break;
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-
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- case 5: // [101] Only 1 Led be placed on PCB and use LED_1 for showing
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- if( !pHwData->LED_LinkOn ) // Blink only if not Link On
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- {
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- // Blinking if scanning is on progress
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- if( pHwData->LED_Scanning )
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- {
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- if( pHwData->LED_Blinking == 0 )
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- {
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- reg->U1BC_LEDConfigure |= 0x1000;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_1 On
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- pHwData->LED_Blinking = 1;
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- TimeInterval = 300;
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- }
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- else
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- {
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- reg->U1BC_LEDConfigure &= ~0x1000;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_1 Off
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- pHwData->LED_Blinking = 0;
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- TimeInterval = 300;
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- }
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- }
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- else
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- {
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- //Turn Off LED_1
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- if( reg->U1BC_LEDConfigure & 0x1000 )
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- {
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- reg->U1BC_LEDConfigure &= ~0x1000;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_1 Off
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- }
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- }
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- }
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- else
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- {
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- // Is transmitting/receiving ??
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- if( (adapter->RxByteCount != pHwData->RxByteCountLast ) ||
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- (adapter->TxByteCount != pHwData->TxByteCountLast ) )
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- {
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- if( (reg->U1BC_LEDConfigure & 0x3000) != 0x3000 )
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- {
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- reg->U1BC_LEDConfigure |= 0x3000;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_1 On
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- }
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-
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- // Update variable
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- pHwData->RxByteCountLast = adapter->RxByteCount;
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- pHwData->TxByteCountLast = adapter->TxByteCount;
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- TimeInterval = 200;
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- }
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- else
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- {
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- // Turn On LED_1 and blinking if transmitting/receiving
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- if( (reg->U1BC_LEDConfigure & 0x3000) != 0x1000 )
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- {
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- reg->U1BC_LEDConfigure &= ~0x3000;
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- reg->U1BC_LEDConfigure |= 0x1000;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure ); // LED_1 On
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- }
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- }
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- }
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- break;
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-
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- default: // Default setting. 2 LED be placed on PCB. LED_0: Link On LED_1 Active
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- if( (reg->U1BC_LEDConfigure & 0x3000) != 0x3000 )
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- {
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- reg->U1BC_LEDConfigure |= 0x3000;// LED_1 is always on and event enable
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure );
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- }
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-
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- if( pHwData->LED_Blinking )
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- {
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- // Gray blinking
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- reg->U1BC_LEDConfigure &= ~0x0f;
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- reg->U1BC_LEDConfigure |= 0x10;
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- reg->U1BC_LEDConfigure |= LEDgray[ (pHwData->LED_Blinking-1)%20 ];
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure );
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-
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- pHwData->LED_Blinking += 2;
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- if( pHwData->LED_Blinking < 40 )
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- TimeInterval = 100;
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- else
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- {
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- pHwData->LED_Blinking = 0; // Stop blinking
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- reg->U1BC_LEDConfigure &= ~0x0f;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure );
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- }
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- break;
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- }
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-
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- if( pHwData->LED_LinkOn )
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- {
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- if( !(reg->U1BC_LEDConfigure & 0x10) ) // Check the LED_0
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- {
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- //Try to turn ON LED_0 after gray blinking
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- reg->U1BC_LEDConfigure |= 0x10;
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- pHwData->LED_Blinking = 1; //Start blinking
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- TimeInterval = 50;
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- }
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- }
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- else
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- {
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- if( reg->U1BC_LEDConfigure & 0x10 ) // Check the LED_0
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- {
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- reg->U1BC_LEDConfigure &= ~0x10;
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- Wb35Reg_Write( pHwData, 0x03bc, reg->U1BC_LEDConfigure );
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- }
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- }
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- break;
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- }
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-
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- //20060828.1 Active send null packet to avoid AP disconnect
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- if( pHwData->LED_LinkOn )
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- {
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- pHwData->NullPacketCount += TimeInterval;
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- if( pHwData->NullPacketCount >= DEFAULT_NULL_PACKET_COUNT )
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- {
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- pHwData->NullPacketCount = 0;
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- }
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- }
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- }
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-
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- pHwData->time_count += TimeInterval;
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- Wb35Tx_CurrentTime(adapter, pHwData->time_count); // 20060928 add
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- pHwData->LEDTimer.expires = jiffies + msecs_to_jiffies(TimeInterval);
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- add_timer(&pHwData->LEDTimer);
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-}
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-
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-u8 hal_init_hardware(struct ieee80211_hw *hw)
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-{
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- struct wbsoft_priv *priv = hw->priv;
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- struct hw_data * pHwData = &priv->sHwData;
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- u16 SoftwareSet;
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-
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- // Initial the variable
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- pHwData->MaxReceiveLifeTime = DEFAULT_MSDU_LIFE_TIME; // Setting Rx maximum MSDU life time
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- pHwData->FragmentThreshold = DEFAULT_FRAGMENT_THRESHOLD; // Setting default fragment threshold
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-
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- pHwData->InitialResource = 1;
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- if( Wb35Reg_initial(pHwData)) {
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- pHwData->InitialResource = 2;
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- if (Wb35Tx_initial(pHwData)) {
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- pHwData->InitialResource = 3;
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- if (Wb35Rx_initial(pHwData)) {
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- pHwData->InitialResource = 4;
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- init_timer(&pHwData->LEDTimer);
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- pHwData->LEDTimer.function = hal_led_control;
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- pHwData->LEDTimer.data = (unsigned long) priv;
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- pHwData->LEDTimer.expires = jiffies + msecs_to_jiffies(1000);
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- add_timer(&pHwData->LEDTimer);
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-
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- //
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- // For restrict to vendor's hardware
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- //
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- SoftwareSet = hal_software_set( pHwData );
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-
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- #ifdef Vendor2
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- // Try to make sure the EEPROM contain
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- SoftwareSet >>= 8;
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- if( SoftwareSet != 0x82 )
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- return false;
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- #endif
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-
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- Wb35Rx_start(hw);
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- Wb35Tx_EP2VM_start(priv);
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-
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- return true;
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- }
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- }
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- }
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-
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- pHwData->SurpriseRemove = 1;
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- return false;
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-}
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-
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-
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-void hal_halt(struct hw_data * pHwData, void *ppa_data)
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-{
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- switch( pHwData->InitialResource )
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- {
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- case 4:
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- case 3: del_timer_sync(&pHwData->LEDTimer);
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- msleep(100); // Wait for Timer DPC exit 940623.2
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- Wb35Rx_destroy( pHwData ); // Release the Rx
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- case 2: Wb35Tx_destroy( pHwData ); // Release the Tx
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- case 1: Wb35Reg_destroy( pHwData ); // Release the Wb35 Regisster resources
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- }
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-}
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-
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//---------------------------------------------------------------------------------------------------
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void hal_set_beacon_period( struct hw_data * pHwData, u16 beacon_period )
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{
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