forked from mfulz_github/qmk_firmware
Fixed CDC and RNDIS host demos and class drivers - bidirectional endpoints should use two seperate pipes, not one half-duplex pipe.
This commit is contained in:
parent
74b6993d66
commit
431db89b00
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@ -145,10 +145,6 @@ uint8_t ProcessConfigurationDescriptor(void)
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/* Check if the endpoint is a bulk IN or bulk OUT endpoint */
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if (EndpointData->EndpointAddress & ENDPOINT_DESCRIPTOR_DIR_IN)
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{
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/* Kill the configured OUT pipe if the data endpoints are bidirectional */
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if (Pipe_IsEndpointBound(EndpointData->EndpointAddress))
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Pipe_DisablePipe();
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/* Configure the data IN pipe */
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Pipe_ConfigurePipe(RNDIS_DATAPIPE_IN, EP_TYPE_BULK, PIPE_TOKEN_IN,
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EndpointData->EndpointAddress, EndpointData->EndpointSize, PIPE_BANK_SINGLE);
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@ -158,13 +154,9 @@ uint8_t ProcessConfigurationDescriptor(void)
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}
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else
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{
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/* Only configure the OUT data pipe if the data endpoints have not shown to be bidirectional */
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if (!(Pipe_IsEndpointBound(EndpointData->EndpointAddress)))
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{
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/* Configure the data OUT pipe */
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Pipe_ConfigurePipe(RNDIS_DATAPIPE_OUT, EP_TYPE_BULK, PIPE_TOKEN_OUT,
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EndpointData->EndpointAddress, EndpointData->EndpointSize, PIPE_BANK_SINGLE);
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}
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/* Configure the data OUT pipe */
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Pipe_ConfigurePipe(RNDIS_DATAPIPE_OUT, EP_TYPE_BULK, PIPE_TOKEN_OUT,
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EndpointData->EndpointAddress, EndpointData->EndpointSize, PIPE_BANK_SINGLE);
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/* Set the flag indicating that the data OUT pipe has been found */
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FoundEndpoints |= (1 << RNDIS_DATAPIPE_OUT);
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@ -145,10 +145,6 @@ uint8_t ProcessConfigurationDescriptor(void)
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/* Check if the endpoint is a bulk IN or bulk OUT endpoint */
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if (EndpointData->EndpointAddress & ENDPOINT_DESCRIPTOR_DIR_IN)
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{
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/* Kill the configured OUT pipe if the data endpoints are bidirectional */
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if (Pipe_IsEndpointBound(EndpointData->EndpointAddress))
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Pipe_DisablePipe();
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/* Configure the data IN pipe */
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Pipe_ConfigurePipe(CDC_DATAPIPE_IN, EP_TYPE_BULK, PIPE_TOKEN_IN,
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EndpointData->EndpointAddress, EndpointData->EndpointSize, PIPE_BANK_SINGLE);
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@ -158,13 +154,9 @@ uint8_t ProcessConfigurationDescriptor(void)
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}
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else
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{
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/* Only configure the OUT data pipe if the data endpoints have not shown to be bidirectional */
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if (!(Pipe_IsEndpointBound(EndpointData->EndpointAddress)))
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{
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/* Configure the data OUT pipe */
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Pipe_ConfigurePipe(CDC_DATAPIPE_OUT, EP_TYPE_BULK, PIPE_TOKEN_OUT,
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EndpointData->EndpointAddress, EndpointData->EndpointSize, PIPE_BANK_SINGLE);
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}
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/* Configure the data OUT pipe */
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Pipe_ConfigurePipe(CDC_DATAPIPE_OUT, EP_TYPE_BULK, PIPE_TOKEN_OUT,
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EndpointData->EndpointAddress, EndpointData->EndpointSize, PIPE_BANK_SINGLE);
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/* Set the flag indicating that the data OUT pipe has been found */
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FoundEndpoints |= (1 << CDC_DATAPIPE_OUT);
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@ -218,7 +218,6 @@ void CDC_Host_Task(void)
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case HOST_STATE_Configured:
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/* Select the data IN pipe */
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Pipe_SelectPipe(CDC_DATAPIPE_IN);
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Pipe_SetPipeToken(PIPE_TOKEN_IN);
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Pipe_Unfreeze();
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/* Check to see if a packet has been received */
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@ -110,32 +110,20 @@ uint8_t CDC_Host_ConfigurePipes(USB_ClassInfo_CDC_Host_t* const CDCInterfaceInfo
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{
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if (EndpointData->EndpointAddress & ENDPOINT_DESCRIPTOR_DIR_IN)
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{
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if (Pipe_IsEndpointBound(EndpointData->EndpointAddress))
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{
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CDCInterfaceInfo->State.BidirectionalDataEndpoints = true;
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Pipe_DisablePipe();
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}
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Pipe_ConfigurePipe(CDCInterfaceInfo->Config.DataINPipeNumber, EP_TYPE_BULK, PIPE_TOKEN_IN,
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EndpointData->EndpointAddress, EndpointData->EndpointSize,
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CDCInterfaceInfo->Config.DataINPipeDoubleBank ? PIPE_BANK_DOUBLE : PIPE_BANK_SINGLE);
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CDCInterfaceInfo->State.DataINPipeSize = EndpointData->EndpointSize;
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FoundEndpoints |= CDC_FOUND_DATAPIPE_IN;
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}
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else
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{
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if (Pipe_IsEndpointBound(EndpointData->EndpointAddress))
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{
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CDCInterfaceInfo->State.BidirectionalDataEndpoints = true;
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}
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else
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{
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Pipe_ConfigurePipe(CDCInterfaceInfo->Config.DataOUTPipeNumber, EP_TYPE_BULK, PIPE_TOKEN_OUT,
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EndpointData->EndpointAddress, EndpointData->EndpointSize,
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CDCInterfaceInfo->Config.DataOUTPipeDoubleBank ? PIPE_BANK_DOUBLE : PIPE_BANK_SINGLE);
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}
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Pipe_ConfigurePipe(CDCInterfaceInfo->Config.DataOUTPipeNumber, EP_TYPE_BULK, PIPE_TOKEN_OUT,
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EndpointData->EndpointAddress, EndpointData->EndpointSize,
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CDCInterfaceInfo->Config.DataOUTPipeDoubleBank ? PIPE_BANK_DOUBLE : PIPE_BANK_SINGLE);
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CDCInterfaceInfo->State.DataOUTPipeSize = EndpointData->EndpointSize;
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FoundEndpoints |= CDC_FOUND_DATAPIPE_OUT;
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@ -277,22 +265,11 @@ uint8_t CDC_Host_SendString(USB_ClassInfo_CDC_Host_t* const CDCInterfaceInfo, ch
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uint8_t ErrorCode;
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if (CDCInterfaceInfo->State.BidirectionalDataEndpoints)
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{
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataINPipeNumber);
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Pipe_SetPipeToken(PIPE_TOKEN_OUT);
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}
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else
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{
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataOUTPipeNumber);
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}
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataOUTPipeNumber);
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Pipe_Unfreeze();
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ErrorCode = Pipe_Write_Stream_LE(Data, Length, NO_STREAM_CALLBACK);
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Pipe_Freeze();
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if (CDCInterfaceInfo->State.BidirectionalDataEndpoints)
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Pipe_SetPipeToken(PIPE_TOKEN_IN);
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return ErrorCode;
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}
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@ -304,16 +281,7 @@ uint8_t CDC_Host_SendByte(USB_ClassInfo_CDC_Host_t* const CDCInterfaceInfo, cons
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uint8_t ErrorCode;
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if (CDCInterfaceInfo->State.BidirectionalDataEndpoints)
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{
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataINPipeNumber);
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Pipe_SetPipeToken(PIPE_TOKEN_OUT);
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}
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else
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{
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataOUTPipeNumber);
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}
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataOUTPipeNumber);
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Pipe_Unfreeze();
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if (!(Pipe_IsReadWriteAllowed()))
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@ -326,9 +294,6 @@ uint8_t CDC_Host_SendByte(USB_ClassInfo_CDC_Host_t* const CDCInterfaceInfo, cons
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Pipe_Write_Byte(Data);
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Pipe_Freeze();
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if (CDCInterfaceInfo->State.BidirectionalDataEndpoints)
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Pipe_SetPipeToken(PIPE_TOKEN_IN);
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return PIPE_READYWAIT_NoError;
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}
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@ -381,16 +346,7 @@ uint8_t CDC_Host_Flush(USB_ClassInfo_CDC_Host_t* const CDCInterfaceInfo)
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uint8_t ErrorCode;
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if (CDCInterfaceInfo->State.BidirectionalDataEndpoints)
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{
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataINPipeNumber);
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Pipe_SetPipeToken(PIPE_TOKEN_OUT);
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}
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else
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{
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataOUTPipeNumber);
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}
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Pipe_SelectPipe(CDCInterfaceInfo->Config.DataOUTPipeNumber);
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Pipe_Unfreeze();
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if (!(Pipe_BytesInPipe()))
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@ -409,9 +365,6 @@ uint8_t CDC_Host_Flush(USB_ClassInfo_CDC_Host_t* const CDCInterfaceInfo)
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}
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Pipe_Freeze();
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if (CDCInterfaceInfo->State.BidirectionalDataEndpoints)
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Pipe_SetPipeToken(PIPE_TOKEN_IN);
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return PIPE_READYWAIT_NoError;
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}
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@ -89,11 +89,6 @@
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uint16_t DataOUTPipeSize; /**< Size in bytes of the CDC interface's OUT data pipe */
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uint16_t NotificationPipeSize; /**< Size in bytes of the CDC interface's IN notification pipe, if used */
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bool BidirectionalDataEndpoints; /**< Indicates if the attached CDC interface uses bidirectional data endpoints,
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* and this has only the IN pipe configured (with \ref Pipe_SetPipeToken()
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* used to switch the pipe's direction)
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*/
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struct
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{
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uint8_t HostToDevice; /**< Control line states from the host to device, as a set of CDC_CONTROL_LINE_OUT_*
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@ -110,12 +110,6 @@ uint8_t RNDIS_Host_ConfigurePipes(USB_ClassInfo_RNDIS_Host_t* const RNDISInterfa
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{
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if (EndpointData->EndpointAddress & ENDPOINT_DESCRIPTOR_DIR_IN)
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{
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if (Pipe_IsEndpointBound(EndpointData->EndpointAddress))
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{
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RNDISInterfaceInfo->State.BidirectionalDataEndpoints = true;
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Pipe_DisablePipe();
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}
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Pipe_ConfigurePipe(RNDISInterfaceInfo->Config.DataINPipeNumber, EP_TYPE_BULK, PIPE_TOKEN_IN,
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EndpointData->EndpointAddress, EndpointData->EndpointSize,
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RNDISInterfaceInfo->Config.DataINPipeDoubleBank ? PIPE_BANK_DOUBLE : PIPE_BANK_SINGLE);
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@ -125,17 +119,10 @@ uint8_t RNDIS_Host_ConfigurePipes(USB_ClassInfo_RNDIS_Host_t* const RNDISInterfa
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}
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else
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{
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if (Pipe_IsEndpointBound(EndpointData->EndpointAddress))
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{
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RNDISInterfaceInfo->State.BidirectionalDataEndpoints = true;
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}
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else
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{
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Pipe_ConfigurePipe(RNDISInterfaceInfo->Config.DataOUTPipeNumber, EP_TYPE_BULK, PIPE_TOKEN_OUT,
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EndpointData->EndpointAddress, EndpointData->EndpointSize,
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RNDISInterfaceInfo->Config.DataOUTPipeDoubleBank ? PIPE_BANK_DOUBLE : PIPE_BANK_SINGLE);
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}
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Pipe_ConfigurePipe(RNDISInterfaceInfo->Config.DataOUTPipeNumber, EP_TYPE_BULK, PIPE_TOKEN_OUT,
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EndpointData->EndpointAddress, EndpointData->EndpointSize,
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RNDISInterfaceInfo->Config.DataOUTPipeDoubleBank ? PIPE_BANK_DOUBLE : PIPE_BANK_SINGLE);
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RNDISInterfaceInfo->State.DataOUTPipeSize = EndpointData->EndpointSize;
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FoundEndpoints |= RNDIS_FOUND_DATAPIPE_OUT;
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@ -422,27 +409,11 @@ uint8_t RNDIS_Host_ReadPacket(USB_ClassInfo_RNDIS_Host_t* const RNDISInterfaceIn
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RNDIS_Packet_Message_t DeviceMessage;
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if (Pipe_BytesInPipe() < sizeof(RNDIS_Packet_Message_t))
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{
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printf("*SIZE YARG: %d*\r\n", Pipe_BytesInPipe());
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*PacketLength = 0;
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Pipe_ClearIN();
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return RNDIS_COMMAND_FAILED;
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}
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if ((ErrorCode = Pipe_Read_Stream_LE(&DeviceMessage, sizeof(RNDIS_Packet_Message_t),
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NO_STREAM_CALLBACK)) != PIPE_RWSTREAM_NoError)
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{
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return ErrorCode;
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}
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if (DeviceMessage.MessageType != REMOTE_NDIS_PACKET_MSG)
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{
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printf("****YARG****\r\n");
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*PacketLength = 0;
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Pipe_ClearIN();
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return RNDIS_COMMAND_FAILED;
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}
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*PacketLength = (uint16_t)DeviceMessage.DataLength;
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@ -466,16 +437,6 @@ uint8_t RNDIS_Host_SendPacket(USB_ClassInfo_RNDIS_Host_t* const RNDISInterfaceIn
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if ((USB_HostState != HOST_STATE_Configured) || !(RNDISInterfaceInfo->State.IsActive))
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return PIPE_READYWAIT_DeviceDisconnected;
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if (RNDISInterfaceInfo->State.BidirectionalDataEndpoints)
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{
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Pipe_SelectPipe(RNDISInterfaceInfo->Config.DataINPipeNumber);
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Pipe_SetPipeToken(PIPE_TOKEN_OUT);
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}
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else
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{
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Pipe_SelectPipe(RNDISInterfaceInfo->Config.DataOUTPipeNumber);
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}
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RNDIS_Packet_Message_t DeviceMessage;
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memset(&DeviceMessage, 0, sizeof(RNDIS_Packet_Message_t));
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@ -484,14 +445,12 @@ uint8_t RNDIS_Host_SendPacket(USB_ClassInfo_RNDIS_Host_t* const RNDISInterfaceIn
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DeviceMessage.DataOffset = (sizeof(RNDIS_Packet_Message_t) - sizeof(RNDIS_Message_Header_t));
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DeviceMessage.DataLength = PacketLength;
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Pipe_SelectPipe(RNDISInterfaceInfo->Config.DataOUTPipeNumber);
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Pipe_Unfreeze();
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if ((ErrorCode = Pipe_Write_Stream_LE(&DeviceMessage, sizeof(RNDIS_Packet_Message_t),
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NO_STREAM_CALLBACK)) != PIPE_RWSTREAM_NoError)
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{
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if (RNDISInterfaceInfo->State.BidirectionalDataEndpoints)
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Pipe_SetPipeToken(PIPE_TOKEN_IN);
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return ErrorCode;
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}
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@ -500,9 +459,6 @@ uint8_t RNDIS_Host_SendPacket(USB_ClassInfo_RNDIS_Host_t* const RNDISInterfaceIn
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Pipe_Freeze();
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if (RNDISInterfaceInfo->State.BidirectionalDataEndpoints)
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Pipe_SetPipeToken(PIPE_TOKEN_IN);
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return PIPE_RWSTREAM_NoError;
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}
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@ -90,12 +90,8 @@
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uint16_t DataINPipeSize; /**< Size in bytes of the RNDIS interface's IN data pipe */
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uint16_t DataOUTPipeSize; /**< Size in bytes of the RNDIS interface's OUT data pipe */
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uint16_t NotificationPipeSize; /**< Size in bytes of the RNDIS interface's IN notification pipe, if used */
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bool BidirectionalDataEndpoints; /**< Indicates if the attached RNDIS interface uses bidirectional data endpoints,
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* and this has only the IN pipe configured (with \ref Pipe_SetPipeToken()
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* used to switch the pipe's direction)
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*/
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uint16_t NotificationPipeSize; /**< Size in bytes of the RNDIS interface's IN notification pipe, if used */
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uint32_t DeviceMaxPacketSize; /**< Maximum size of a packet which can be buffered by the attached RNDIS device */
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uint32_t RequestID; /**< Request ID counter to give a unique ID for each command/response pair */
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@ -45,6 +45,7 @@
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* - Fixed Benito project not resetting the target AVR automatically when programming has completed
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* - Fixed DFU bootloader programming not discarding the correct number of filler bytes from the host when non-aligned programming
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* ranges are specified (thanks to Thomas Bleeker)
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* - Fixed CDC and RNDIS host demos and class drivers - bidirectional endpoints should use two seperate pipes, not one half-duplex pipe
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*
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* \section Sec_ChangeLog091223 Version 091223
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*
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@ -65,7 +65,8 @@ char PROGMEM HTTPPage[] =
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" <body>"
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" <h1>Hello from your USB AVR!</h1>"
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" <p>"
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" Hello! Welcome to the LUFA RNDIS Demo Webserver test page, running on your USB AVR via the LUFA library. This demonstrates the HTTP webserver, TCP/IP stack and RNDIS demo all running atop the LUFA USB stack."
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" Hello! Welcome to the LUFA RNDIS Demo Webserver test page, running on your USB AVR via the LUFA library and uIP TCP/IP network stack. This"
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" demonstrates a simple HTTP webserver serving out pages to HTTP clients."
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" <br /><br />"
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" <small>Project Information: <a href=\"http://www.fourwalledcubicle.com/LUFA.php\">http://www.fourwalledcubicle.com/LUFA.php</a>.</small>"
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" <hr />"
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@ -174,7 +174,7 @@ void ProcessIncommingPacket(void)
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LEDs_SetAllLEDs(LEDMASK_USB_BUSY);
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/* Read the incomming packet straight into the UIP packet buffer */
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printf("L=%d R=%d\r\n", uip_len, RNDIS_Host_ReadPacket(&Ethernet_RNDIS_Interface, &uip_buf[0], &uip_len));
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RNDIS_Host_ReadPacket(&Ethernet_RNDIS_Interface, &uip_buf[0], &uip_len);
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if (uip_len > 0)
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{
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