forked from mfulz_github/qmk_firmware
Reduce the amount of inlining of core Endpoint functions for XMEGA, to reduce the compiled code size (size/speed tradeoff).
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70c59a7e42
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@ -48,6 +48,106 @@ volatile uint8_t USB_Endpoint_SelectedEndpoint;
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volatile USB_EP_t* USB_Endpoint_SelectedHandle;
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volatile Endpoint_FIFO_t* USB_Endpoint_SelectedFIFO;
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bool Endpoint_IsINReady(void)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint | ENDPOINT_DIR_IN);
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return ((USB_Endpoint_SelectedHandle->STATUS & USB_EP_BUSNACK0_bm) ? true : false);
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}
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bool Endpoint_IsOUTReceived(void)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint & ~ENDPOINT_DIR_IN);
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if (USB_Endpoint_SelectedHandle->STATUS & USB_EP_TRNCOMPL0_bm)
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{
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USB_Endpoint_SelectedFIFO->Length = USB_Endpoint_SelectedHandle->CNT;
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return true;
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}
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return false;
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}
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bool Endpoint_IsSETUPReceived(void)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint & ~ENDPOINT_DIR_IN);
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if (USB_Endpoint_SelectedHandle->STATUS & USB_EP_SETUP_bm)
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{
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USB_Endpoint_SelectedFIFO->Length = USB_Endpoint_SelectedHandle->CNT;
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return true;
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}
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return false;
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}
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void Endpoint_ClearSETUP(void)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint & ~ENDPOINT_DIR_IN);
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USB_Endpoint_SelectedHandle->STATUS &= ~(USB_EP_SETUP_bm | USB_EP_TRNCOMPL0_bm | USB_EP_BUSNACK0_bm | USB_EP_OVF_bm);
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USB_Endpoint_SelectedHandle->STATUS |= USB_EP_TOGGLE_bm;
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USB_Endpoint_SelectedFIFO->Position = 0;
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint | ENDPOINT_DIR_IN);
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USB_Endpoint_SelectedHandle->STATUS |= USB_EP_TOGGLE_bm;
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USB_Endpoint_SelectedFIFO->Position = 0;
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}
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void Endpoint_ClearIN(void)
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{
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USB_Endpoint_SelectedHandle->CNT = USB_Endpoint_SelectedFIFO->Position;
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USB_Endpoint_SelectedHandle->STATUS &= ~(USB_EP_TRNCOMPL0_bm | USB_EP_BUSNACK0_bm | USB_EP_OVF_bm);
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USB_Endpoint_SelectedFIFO->Position = 0;
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}
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void Endpoint_ClearOUT(void)
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{
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USB_Endpoint_SelectedHandle->STATUS &= ~(USB_EP_TRNCOMPL0_bm | USB_EP_BUSNACK0_bm | USB_EP_OVF_bm);
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USB_Endpoint_SelectedFIFO->Position = 0;
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}
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void Endpoint_StallTransaction(void)
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{
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USB_Endpoint_SelectedHandle->CTRL |= USB_EP_STALL_bm;
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if ((USB_Endpoint_SelectedHandle->CTRL & USB_EP_TYPE_gm) == USB_EP_TYPE_CONTROL_gc)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint ^ ENDPOINT_DIR_IN);
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USB_Endpoint_SelectedHandle->CTRL |= USB_EP_STALL_bm;
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}
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}
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uint8_t Endpoint_Read_8(void)
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{
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return USB_Endpoint_SelectedFIFO->Data[USB_Endpoint_SelectedFIFO->Position++];
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}
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void Endpoint_Write_8(const uint8_t Data)
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{
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USB_Endpoint_SelectedFIFO->Data[USB_Endpoint_SelectedFIFO->Position++] = Data;
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}
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void Endpoint_SelectEndpoint(const uint8_t Address)
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{
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uint8_t EndpointNumber = (Address & ENDPOINT_EPNUM_MASK);
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USB_Endpoint_SelectedEndpoint = Address;
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Endpoint_FIFOPair_t* EndpointFIFOPair = &USB_Endpoint_FIFOs[EndpointNumber];
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USB_EndpointTable_t* EndpointTable = (USB_EndpointTable_t*)USB.EPPTR;
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if (Address & ENDPOINT_DIR_IN)
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{
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USB_Endpoint_SelectedFIFO = &EndpointFIFOPair->IN;
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USB_Endpoint_SelectedHandle = &EndpointTable->Endpoints[EndpointNumber].IN;
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}
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else
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{
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USB_Endpoint_SelectedFIFO = &EndpointFIFOPair->OUT;
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USB_Endpoint_SelectedHandle = &EndpointTable->Endpoints[EndpointNumber].OUT;
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}
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}
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bool Endpoint_ConfigureEndpointTable(const USB_Endpoint_Table_t* const Table,
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const uint8_t Entries)
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{
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@ -192,24 +192,7 @@
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*
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* \param[in] Address Endpoint address to select.
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*/
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static inline void Endpoint_SelectEndpoint(const uint8_t Address);
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static inline void Endpoint_SelectEndpoint(const uint8_t Address)
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{
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uint8_t EndpointNumber = (Address & ENDPOINT_EPNUM_MASK);
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USB_Endpoint_SelectedEndpoint = Address;
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if (Address & ENDPOINT_DIR_IN)
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{
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USB_Endpoint_SelectedFIFO = &USB_Endpoint_FIFOs[EndpointNumber].IN;
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USB_Endpoint_SelectedHandle = &((USB_EndpointTable_t*)USB.EPPTR)->Endpoints[EndpointNumber].IN;
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}
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else
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{
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USB_Endpoint_SelectedFIFO = &USB_Endpoint_FIFOs[EndpointNumber].OUT;
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USB_Endpoint_SelectedHandle = &((USB_EndpointTable_t*)USB.EPPTR)->Endpoints[EndpointNumber].OUT;
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}
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}
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void Endpoint_SelectEndpoint(const uint8_t Address);
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/** Configures the specified endpoint address with the given endpoint type, direction, bank size
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* and banking mode. Once configured, the endpoint may be read from or written to, depending
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@ -369,13 +352,7 @@
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*
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* \return Boolean \c true if the current endpoint is ready for an IN packet, \c false otherwise.
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*/
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static inline bool Endpoint_IsINReady(void) ATTR_WARN_UNUSED_RESULT ATTR_ALWAYS_INLINE;
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static inline bool Endpoint_IsINReady(void)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint | ENDPOINT_DIR_IN);
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return ((USB_Endpoint_SelectedHandle->STATUS & USB_EP_BUSNACK0_bm) ? true : false);
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}
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bool Endpoint_IsINReady(void) ATTR_WARN_UNUSED_RESULT;
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/** Determines if the selected OUT endpoint has received new packet from the host.
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*
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@ -383,19 +360,7 @@
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*
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* \return Boolean \c true if current endpoint is has received an OUT packet, \c false otherwise.
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*/
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static inline bool Endpoint_IsOUTReceived(void) ATTR_WARN_UNUSED_RESULT ATTR_ALWAYS_INLINE;
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static inline bool Endpoint_IsOUTReceived(void)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint & ~ENDPOINT_DIR_IN);
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if (USB_Endpoint_SelectedHandle->STATUS & USB_EP_TRNCOMPL0_bm)
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{
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USB_Endpoint_SelectedFIFO->Length = USB_Endpoint_SelectedHandle->CNT;
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return true;
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}
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return false;
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}
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bool Endpoint_IsOUTReceived(void) ATTR_WARN_UNUSED_RESULT;
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/** Determines if the current CONTROL type endpoint has received a SETUP packet.
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*
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@ -403,19 +368,7 @@
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*
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* \return Boolean \c true if the selected endpoint has received a SETUP packet, \c false otherwise.
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*/
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static inline bool Endpoint_IsSETUPReceived(void) ATTR_WARN_UNUSED_RESULT ATTR_ALWAYS_INLINE;
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static inline bool Endpoint_IsSETUPReceived(void)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint & ~ENDPOINT_DIR_IN);
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if (USB_Endpoint_SelectedHandle->STATUS & USB_EP_SETUP_bm)
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{
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USB_Endpoint_SelectedFIFO->Length = USB_Endpoint_SelectedHandle->CNT;
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return true;
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}
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return false;
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}
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bool Endpoint_IsSETUPReceived(void) ATTR_WARN_UNUSED_RESULT;
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/** Clears a received SETUP packet on the currently selected CONTROL type endpoint, freeing up the
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* endpoint for the next packet.
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@ -424,43 +377,21 @@
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*
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* \note This is not applicable for non CONTROL type endpoints.
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*/
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static inline void Endpoint_ClearSETUP(void) ATTR_ALWAYS_INLINE;
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static inline void Endpoint_ClearSETUP(void)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint & ~ENDPOINT_DIR_IN);
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USB_Endpoint_SelectedHandle->STATUS &= ~(USB_EP_SETUP_bm | USB_EP_TRNCOMPL0_bm | USB_EP_BUSNACK0_bm | USB_EP_OVF_bm);
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USB_Endpoint_SelectedHandle->STATUS |= USB_EP_TOGGLE_bm;
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USB_Endpoint_SelectedFIFO->Position = 0;
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint | ENDPOINT_DIR_IN);
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USB_Endpoint_SelectedHandle->STATUS |= USB_EP_TOGGLE_bm;
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USB_Endpoint_SelectedFIFO->Position = 0;
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}
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void Endpoint_ClearSETUP(void);
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/** Sends an IN packet to the host on the currently selected endpoint, freeing up the endpoint for the
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* next packet and switching to the alternative endpoint bank if double banked.
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*
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* \ingroup Group_EndpointPacketManagement_XMEGA
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*/
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static inline void Endpoint_ClearIN(void) ATTR_ALWAYS_INLINE;
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static inline void Endpoint_ClearIN(void)
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{
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USB_Endpoint_SelectedHandle->CNT = USB_Endpoint_SelectedFIFO->Position;
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USB_Endpoint_SelectedHandle->STATUS &= ~(USB_EP_TRNCOMPL0_bm | USB_EP_BUSNACK0_bm | USB_EP_OVF_bm);
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USB_Endpoint_SelectedFIFO->Position = 0;
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}
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void Endpoint_ClearIN(void);
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/** Acknowledges an OUT packet to the host on the currently selected endpoint, freeing up the endpoint
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* for the next packet and switching to the alternative endpoint bank if double banked.
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*
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* \ingroup Group_EndpointPacketManagement_XMEGA
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*/
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static inline void Endpoint_ClearOUT(void) ATTR_ALWAYS_INLINE;
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static inline void Endpoint_ClearOUT(void)
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{
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USB_Endpoint_SelectedHandle->STATUS &= ~(USB_EP_TRNCOMPL0_bm | USB_EP_BUSNACK0_bm | USB_EP_OVF_bm);
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USB_Endpoint_SelectedFIFO->Position = 0;
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}
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void Endpoint_ClearOUT(void);
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/** Stalls the current endpoint, indicating to the host that a logical problem occurred with the
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* indicated endpoint and that the current transfer sequence should be aborted. This provides a
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@ -473,17 +404,7 @@
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*
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* \ingroup Group_EndpointPacketManagement_XMEGA
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*/
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static inline void Endpoint_StallTransaction(void) ATTR_ALWAYS_INLINE;
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static inline void Endpoint_StallTransaction(void)
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{
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USB_Endpoint_SelectedHandle->CTRL |= USB_EP_STALL_bm;
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if ((USB_Endpoint_SelectedHandle->CTRL & USB_EP_TYPE_gm) == USB_EP_TYPE_CONTROL_gc)
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{
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Endpoint_SelectEndpoint(USB_Endpoint_SelectedEndpoint ^ ENDPOINT_DIR_IN);
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USB_Endpoint_SelectedHandle->CTRL |= USB_EP_STALL_bm;
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}
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}
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void Endpoint_StallTransaction(void);
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/** Clears the STALL condition on the currently selected endpoint.
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*
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@ -530,11 +451,7 @@
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*
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* \return Next byte in the currently selected endpoint's FIFO buffer.
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*/
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static inline uint8_t Endpoint_Read_8(void) ATTR_WARN_UNUSED_RESULT ATTR_ALWAYS_INLINE;
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static inline uint8_t Endpoint_Read_8(void)
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{
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return USB_Endpoint_SelectedFIFO->Data[USB_Endpoint_SelectedFIFO->Position++];
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}
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uint8_t Endpoint_Read_8(void) ATTR_WARN_UNUSED_RESULT;
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/** Writes one byte to the currently selected endpoint's bank, for IN direction endpoints.
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*
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@ -542,11 +459,7 @@
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*
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* \param[in] Data Data to write into the the currently selected endpoint's FIFO buffer.
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*/
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static inline void Endpoint_Write_8(const uint8_t Data) ATTR_ALWAYS_INLINE;
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static inline void Endpoint_Write_8(const uint8_t Data)
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{
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USB_Endpoint_SelectedFIFO->Data[USB_Endpoint_SelectedFIFO->Position++] = Data;
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}
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void Endpoint_Write_8(const uint8_t Data);
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/** Discards one byte from the currently selected endpoint's bank, for OUT direction endpoints.
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*
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