forked from mfulz_github/qmk_firmware
Added new USB_Host_ClearPipeStall() convenience function to clear a stall condition on an attached device's endpoint.
Added new USB_Host_GetDeviceDescriptor() convenience function to retrieve the attached device's Device descriptor. Make Pipe_ConfigurePipe() mask the given endpoint number against PIPE_EPNUM_MASK to ensure the endpoint IN direction bit is cleared to prevent endpoint type corruption. Fix documentation mentioning Pipe_GetCurrentToken() function when real name is Pipe_GetPipeToken().
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2b21a1552d
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@ -206,10 +206,6 @@ CFLAGS += -ffunction-sections
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CFLAGS += -fpack-struct
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CFLAGS += -fshort-enums
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CFLAGS += -fno-inline-small-functions
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CFLAGS += -fno-reorder-blocks
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CFLAGS += -fno-reorder-blocks-and-partition
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CFLAGS += -fno-reorder-functions
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CFLAGS += -fno-toplevel-reorder
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CFLAGS += -Wall
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CFLAGS += -Wstrict-prototypes
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CFLAGS += -Wundef
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@ -207,10 +207,6 @@ CFLAGS += -fdata-sections
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CFLAGS += -fpack-struct
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CFLAGS += -fshort-enums
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CFLAGS += -fno-inline-small-functions
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CFLAGS += -fno-reorder-blocks
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CFLAGS += -fno-reorder-blocks-and-partition
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CFLAGS += -fno-reorder-functions
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CFLAGS += -fno-toplevel-reorder
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CFLAGS += -Wall
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CFLAGS += -Wstrict-prototypes
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CFLAGS += -Wundef
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@ -206,10 +206,6 @@ CFLAGS += -ffunction-sections
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CFLAGS += -fpack-struct
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CFLAGS += -fshort-enums
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CFLAGS += -fno-inline-small-functions
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CFLAGS += -fno-reorder-blocks
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CFLAGS += -fno-reorder-blocks-and-partition
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CFLAGS += -fno-reorder-functions
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CFLAGS += -fno-toplevel-reorder
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CFLAGS += -Wall
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CFLAGS += -Wstrict-prototypes
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CFLAGS += -Wundef
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@ -134,7 +134,7 @@ static uint8_t MassStore_WaitForDataReceived(void)
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if (Pipe_IsStalled())
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{
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/* Clear the stall condition on the OUT pipe */
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MassStore_ClearPipeStall(MASS_STORE_DATA_OUT_PIPE);
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USB_Host_ClearPipeStall(MASS_STORE_DATA_OUT_PIPE);
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return PIPE_RWSTREAM_PipeStalled;
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}
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@ -147,7 +147,7 @@ static uint8_t MassStore_WaitForDataReceived(void)
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if (Pipe_IsStalled())
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{
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/* Clear the stall condition on the IN pipe */
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MassStore_ClearPipeStall(MASS_STORE_DATA_IN_PIPE);
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USB_Host_ClearPipeStall(MASS_STORE_DATA_IN_PIPE);
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return PIPE_RWSTREAM_PipeStalled;
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}
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@ -158,7 +158,6 @@
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static uint8_t MassStore_GetReturnedStatus(void);
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#endif
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uint8_t MassStore_ClearPipeStall(const uint8_t EndpointNum);
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uint8_t MassStore_MassStorageReset(void);
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uint8_t MassStore_GetMaxLUN(uint8_t* const MaxLUNIndex);
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uint8_t MassStore_RequestSense(const uint8_t LUNIndex, const SCSI_Request_Sense_Response_t* const SensePtr)
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@ -144,22 +144,12 @@ void Bluetooth_Management_Task(void)
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}
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puts_P(PSTR("Bluetooth Dongle Detected.\r\n"));
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/* Standard request to set the device configuration to configuration 1 */
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USB_ControlRequest = (USB_Request_Header_t)
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{
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bmRequestType: (REQDIR_HOSTTODEVICE | REQTYPE_STANDARD | REQREC_DEVICE),
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bRequest: REQ_SetConfiguration,
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wValue: 1,
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wIndex: 0,
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wLength: 0,
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};
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/* Select the control pipe for the request transfer */
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Pipe_SelectPipe(PIPE_CONTROLPIPE);
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/* Send the request, display error and wait for device detatch if request fails */
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if ((ErrorCode = USB_Host_SendControlRequest(NULL)) != HOST_SENDCONTROL_Successful)
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/* Set the device configuration to the first configuration (rarely do devices use multiple configurations) */
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if ((ErrorCode = USB_Host_SetDeviceConfiguration(1)) != HOST_SENDCONTROL_Successful)
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{
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puts_P(PSTR("Control Error (Set Configuration).\r\n"));
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printf_P(PSTR(" -- Error Code: %d\r\n"), ErrorCode);
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@ -134,7 +134,7 @@ static uint8_t MassStore_WaitForDataReceived(void)
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if (Pipe_IsStalled())
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{
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/* Clear the stall condition on the OUT pipe */
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MassStore_ClearPipeStall(MASS_STORE_DATA_OUT_PIPE);
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USB_Host_ClearPipeStall(MASS_STORE_DATA_OUT_PIPE);
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return PIPE_RWSTREAM_PipeStalled;
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}
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@ -147,7 +147,7 @@ static uint8_t MassStore_WaitForDataReceived(void)
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if (Pipe_IsStalled())
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{
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/* Clear the stall condition on the IN pipe */
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MassStore_ClearPipeStall(MASS_STORE_DATA_IN_PIPE);
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USB_Host_ClearPipeStall(MASS_STORE_DATA_IN_PIPE);
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return PIPE_RWSTREAM_PipeStalled;
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}
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@ -243,29 +243,6 @@ static uint8_t MassStore_GetReturnedStatus(void)
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return PIPE_RWSTREAM_NoError;
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}
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/** Clears the stall condition in the attached device on the nominated endpoint number.
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*
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* \param EndpointNum Endpoint number in the attached device whose stall condition is to be cleared
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*
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* \return A value from the USB_Host_SendControlErrorCodes_t enum
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*/
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uint8_t MassStore_ClearPipeStall(const uint8_t EndpointNum)
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{
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USB_ControlRequest = (USB_Request_Header_t)
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{
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.bmRequestType = (REQDIR_HOSTTODEVICE | REQTYPE_STANDARD | REQREC_ENDPOINT),
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.bRequest = REQ_ClearFeature,
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.wValue = FEATURE_ENDPOINT_HALT,
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.wIndex = EndpointNum,
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.wLength = 0,
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};
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/* Select the control pipe for the request transfer */
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Pipe_SelectPipe(PIPE_CONTROLPIPE);
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return USB_Host_SendControlRequest(NULL);
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}
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/** Issues a Mass Storage class specific request to reset the attached device's Mass Storage interface,
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* readying the device for the next CBW.
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*
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@ -158,7 +158,6 @@
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static uint8_t MassStore_GetReturnedStatus(void);
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#endif
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uint8_t MassStore_ClearPipeStall(const uint8_t EndpointNum);
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uint8_t MassStore_MassStorageReset(void);
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uint8_t MassStore_GetMaxLUN(uint8_t* const MaxLUNIndex);
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uint8_t MassStore_RequestSense(const uint8_t LUNIndex, const SCSI_Request_Sense_Response_t* const SensePtr)
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@ -116,6 +116,8 @@
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*
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* \note This global is only present if the user application can be a USB host.
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*
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* \see \ref USB_Host_States_t for a list of possible host states
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*
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* \ingroup Group_Host
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*/
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extern volatile uint8_t USB_HostState;
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@ -302,4 +302,39 @@ uint8_t USB_Host_SetDeviceConfiguration(uint8_t ConfigNumber)
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return USB_Host_SendControlRequest(NULL);
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}
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uint8_t USB_Host_GetDeviceDescriptor(USB_Descriptor_Device_t* DeviceDescriptorPtr)
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{
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USB_ControlRequest = (USB_Request_Header_t)
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{
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bmRequestType: (REQDIR_DEVICETOHOST | REQTYPE_STANDARD | REQREC_DEVICE),
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bRequest: REQ_GetDescriptor,
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wValue: (DTYPE_Device << 8),
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wIndex: 0,
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wLength: sizeof(USB_Descriptor_Device_t),
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};
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Pipe_SelectPipe(PIPE_CONTROLPIPE);
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return USB_Host_SendControlRequest(DeviceDescriptorPtr);
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}
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uint8_t USB_Host_ClearPipeStall(uint8_t EndpointNum)
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{
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if (Pipe_GetPipeToken() == PIPE_TOKEN_IN)
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EndpointNum |= (1 << 7);
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USB_ControlRequest = (USB_Request_Header_t)
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{
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.bmRequestType = (REQDIR_HOSTTODEVICE | REQTYPE_STANDARD | REQREC_ENDPOINT),
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.bRequest = REQ_ClearFeature,
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.wValue = FEATURE_ENDPOINT_HALT,
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.wIndex = EndpointNum,
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.wLength = 0,
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};
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Pipe_SelectPipe(PIPE_CONTROLPIPE);
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return USB_Host_SendControlRequest(NULL);
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}
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#endif
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@ -47,6 +47,8 @@
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#include "../../../Common/Common.h"
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#include "../HighLevel/USBInterrupt.h"
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#include "../HighLevel/StdDescriptors.h"
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#include "Pipe.h"
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/* Enable C linkage for C++ Compilers: */
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#if defined(__cplusplus)
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@ -185,6 +187,29 @@
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* \return A value from the \ref USB_Host_SendControlErrorCodes_t enum to indicate the result.
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*/
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uint8_t USB_Host_SetDeviceConfiguration(uint8_t ConfigNumber);
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/** Convenience function. This routine sends a GetDescriptor standard request to the attached
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* device, requesting the device descriptor. This can be used to easily retrieve information
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* about the device such as its VID, PID and power requirements.
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*
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* \note After this routine returns, the control pipe will be selected.
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*
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* \param DeviceDescriptorPtr Pointer to the destination device descriptor structure where
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* the read data is to be stored
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*
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* \return A value from the \ref USB_Host_SendControlErrorCodes_t enum to indicate the result.
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*/
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uint8_t USB_Host_GetDeviceDescriptor(USB_Descriptor_Device_t* DeviceDescriptorPtr);
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/** Clears a stall condition on the given pipe, via a ClearFeature request to the attached device.
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*
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* \note After this routine returns, the control pipe will be selected.
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*
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* \param EndpointIndex Index of the endpoint to clear
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*
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* \return A value from the \ref USB_Host_SendControlErrorCodes_t enum to indicate the result.
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*/
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uint8_t USB_Host_ClearPipeStall(uint8_t EndpointIndex);
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/* Enums: */
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/** Enum for the various states of the USB Host state machine. Only some states are
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@ -45,7 +45,7 @@ bool Pipe_ConfigurePipe(const uint8_t Number, const uint8_t Type, const uint8_t
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UPCFG1X = 0;
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UPCFG0X = ((Type << EPTYPE0) | Token | (EndpointNumber << PEPNUM0));
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UPCFG0X = ((Type << EPTYPE0) | Token | ((EndpointNumber & PIPE_EPNUM_MASK) << PEPNUM0));
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UPCFG1X = ((1 << ALLOC) | Banks | Pipe_BytesToEPSizeMask(Size));
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return Pipe_IsConfigured();
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@ -219,7 +219,7 @@
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*
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* \return The current pipe token, as a PIPE_TOKEN_* mask
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*/
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static inline uint8_t Pipe_GetCurrentToken(void);
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static inline uint8_t Pipe_GetPipeToken(void);
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/** Sets the token for the currently selected pipe to one of the tokens specified by the PIPE_TOKEN_*
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* masks. This can be used on CONTROL type pipes, to allow for bidirectional transfer of data during
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@ -20,8 +20,13 @@
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* internal control
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* - Added new USB_Host_SetDeviceConfiguration() convenience function for easy configuration selection of devices while in USB
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* host mode
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* - Added new USB_Host_ClearPipeStall() convenience function to clear a stall condition on an attached device's endpoint
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* - Added new USB_Host_GetDeviceDescriptor() convenience function to retrieve the attached device's Device descriptor
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* - Added USB Missle Launcher project, submitted by Dave Fletcher
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* - Pipe_GetErrorFlags() now returns additional error flags for overflow and underflow errors
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* - Make Pipe_ConfigurePipe() mask the given endpoint number against PIPE_EPNUM_MASK to ensure the endpoint IN direction bit is
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* cleared to prevent endpoint type corruption
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* - Fix documentation mentioning Pipe_GetCurrentToken() function when real name is Pipe_GetPipeToken()
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*
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*
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* \section Sec_ChangeLog090605 Version 090605
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@ -21,4 +21,7 @@
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* - Port LUFA to the Atmel ARM7 series microcontrollers
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* - Remake AVRStudio project files
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* - Master LUFA include file
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* - Debug mode for pipe/endpoint calls
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* - Device descriptor get routines
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* - Add ClearPipeStall host function
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*/
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