forked from mfulz_github/qmk_firmware
Fix AVRISP-MKII clone project's TPI Chip Erase command processing - ensure erase location is the high byte in the given address space, check NVMBUSY for completion rather than the NVM Bus Enable bit.
Change If-Else chains over to switch statements in XPROGProtocol.c for clarity.
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@ -13,7 +13,6 @@
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* - Series 7 USB AVRs
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* - Series 6 USB AVRs
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* - Series 4 USB AVRs
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* - Series 2 USB AVRs
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*
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* \section SSec_Info USB Information:
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*
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@ -13,7 +13,6 @@
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* - Series 7 USB AVRs
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* - Series 6 USB AVRs
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* - Series 4 USB AVRs
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* - Series 2 USB AVRs
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*
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* \section SSec_Info USB Information:
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*
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@ -104,12 +104,13 @@
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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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* masks.
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* masks. This value is updated each time \ref CDC_Device_USBTask() is called.
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*/
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uint8_t DeviceToHost; /**< Control line states from the device to host, as a set of CDC_CONTROL_LINE_IN_*
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* masks.
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* masks - to notify the host of changes to these values, call the
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* \ref CDC_Device_SendControlLineStateChange() function.
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*/
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} ControlLineStates;
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} ControlLineStates; /**< Current states of the virtual serial port's control lines between the device and host. */
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struct
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{
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@ -121,7 +122,9 @@
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* CDCDevice_LineCodingParity_t enum
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*/
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uint8_t DataBits; /**< Bits of data per character of the virtual serial port */
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} LineEncoding;
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} LineEncoding; /** Line encoding used in the virtual serial port, for the device's information. This is generally
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* only used if the virtual serial port data is to be reconstructed on a physical UART.
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*/
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} State; /**< State data for the USB class interface within the device. All elements in this section
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* are reset to their defaults when the interface is enumerated.
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*/
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@ -92,12 +92,13 @@
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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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* masks.
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* masks - to notify the device of changes to these values, call the
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* \ref CDC_Host_SendControlLineStateChange() function.
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*/
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uint8_t DeviceToHost; /**< Control line states from the device to host, as a set of CDC_CONTROL_LINE_IN_*
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* masks.
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* masks. This value is updated each time \ref CDC_Host_USBTask() is called.
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*/
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} ControlLineStates;
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} ControlLineStates; /**< Current states of the virtual serial port's control lines between the device and host. */
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struct
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{
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@ -109,7 +110,11 @@
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* CDCDevice_LineCodingParity_t enum
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*/
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uint8_t DataBits; /**< Bits of data per character of the virtual serial port */
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} LineEncoding;
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} LineEncoding; /** Line encoding used in the virtual serial port, for the device's information. This is generally
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* only used if the virtual serial port data is to be reconstructed on a physical UART. When set
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* by the host application, the \ref CDC_Host_SetLineEncoding() function must be called to push
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* the changes to the device.
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*/
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} State; /**< State data for the USB class interface within the device. All elements in this section
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* <b>may</b> be set to initial values, but may also be ignored to default to sane values when
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* the interface is enumerated.
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@ -193,7 +193,7 @@
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* 0x204D
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* </td>
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* <td>
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* Keyboard and Mouse Combination Demo Application
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* Combined Keyboard and Mouse Demo Application
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* </td>
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* </tr>
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*
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@ -204,13 +204,13 @@ bool TINYNVM_EraseMemory(const uint8_t EraseCommand, const uint16_t Address)
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TINYNVM_SendWriteNVMRegister(XPROG_Param_NVMCMDRegAddr);
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XPROGTarget_SendByte(EraseCommand);
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/* Write to a location within the target address space to start the erase process */
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TINYNVM_SendPointerAddress(Address);
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/* Write to a high byte location within the target address space to start the erase process */
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TINYNVM_SendPointerAddress(Address | 0x0001);
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XPROGTarget_SendByte(TPI_CMD_SST | TPI_POINTER_INDIRECT);
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XPROGTarget_SendByte(0x00);
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/* Wait until the NVM bus is ready again */
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if (!(TINYNVM_WaitWhileNVMBusBusy()))
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/* Wait until the NVM controller is no longer busy */
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if (!(TINYNVM_WaitWhileNVMControllerBusy()))
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return false;
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return true;
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@ -63,6 +63,7 @@
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/* Function Prototypes: */
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bool TINYNVM_WaitWhileNVMBusBusy(void);
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bool TINYNVM_WaitWhileNVMControllerBusy(void);
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bool TINYNVM_ReadMemory(const uint16_t ReadAddress, uint8_t* ReadBuffer, uint16_t ReadLength);
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bool TINYNVM_WriteMemory(const uint16_t WriteAddress, uint8_t* WriteBuffer, uint16_t WriteLength);
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bool TINYNVM_EraseMemory(const uint8_t EraseCommand, const uint16_t Address);
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@ -208,27 +208,38 @@ static void XPROGProtocol_Erase(void)
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Endpoint_ClearOUT();
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_IN);
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uint8_t EraseCommand = XMEGA_NVM_CMD_NOOP;
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if (XPROG_SelectedProtocol == XPRG_PROTOCOL_PDI)
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{
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uint8_t EraseCommand = XMEGA_NVM_CMD_NOOP;
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/* Determine which NVM command to send to the device depending on the memory to erase */
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if (Erase_XPROG_Params.MemoryType == XPRG_ERASE_CHIP)
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switch (Erase_XPROG_Params.MemoryType)
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{
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case XPRG_ERASE_CHIP:
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EraseCommand = XMEGA_NVM_CMD_CHIPERASE;
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else if (Erase_XPROG_Params.MemoryType == XPRG_ERASE_APP)
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break;
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case XPRG_ERASE_APP:
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EraseCommand = XMEGA_NVM_CMD_ERASEAPPSEC;
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else if (Erase_XPROG_Params.MemoryType == XPRG_ERASE_BOOT)
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break;
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case XPRG_ERASE_BOOT:
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EraseCommand = XMEGA_NVM_CMD_ERASEBOOTSEC;
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else if (Erase_XPROG_Params.MemoryType == XPRG_ERASE_EEPROM)
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break;
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case XPRG_ERASE_EEPROM:
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EraseCommand = XMEGA_NVM_CMD_ERASEEEPROM;
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else if (Erase_XPROG_Params.MemoryType == XPRG_ERASE_APP_PAGE)
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break;
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case XPRG_ERASE_APP_PAGE:
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EraseCommand = XMEGA_NVM_CMD_ERASEAPPSECPAGE;
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else if (Erase_XPROG_Params.MemoryType == XPRG_ERASE_BOOT_PAGE)
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break;
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case XPRG_ERASE_BOOT_PAGE:
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EraseCommand = XMEGA_NVM_CMD_ERASEBOOTSECPAGE;
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else if (Erase_XPROG_Params.MemoryType == XPRG_ERASE_EEPROM_PAGE)
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break;
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case XPRG_ERASE_EEPROM_PAGE:
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EraseCommand = XMEGA_NVM_CMD_ERASEEEPROMPAGE;
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else if (Erase_XPROG_Params.MemoryType == XPRG_ERASE_USERSIG)
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break;
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case XPRG_ERASE_USERSIG:
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EraseCommand = XMEGA_NVM_CMD_ERASEUSERSIG;
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break;
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}
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/* Erase the target memory, indicate timeout if ocurred */
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if (!(XMEGANVM_EraseMemory(EraseCommand, Erase_XPROG_Params.Address)))
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@ -278,35 +289,32 @@ static void XPROGProtocol_WriteMemory(void)
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uint8_t EraseBuffCommand = XMEGA_NVM_CMD_ERASEFLASHPAGEBUFF;
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bool PagedMemory = true;
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if (WriteMemory_XPROG_Params.MemoryType == XPRG_MEM_TYPE_APPL)
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switch (WriteMemory_XPROG_Params.MemoryType)
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{
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case XPRG_MEM_TYPE_APPL:
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WriteCommand = XMEGA_NVM_CMD_WRITEAPPSECPAGE;
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}
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else if (WriteMemory_XPROG_Params.MemoryType == XPRG_MEM_TYPE_BOOT)
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{
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break;
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case XPRG_MEM_TYPE_BOOT:
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WriteCommand = XMEGA_NVM_CMD_WRITEBOOTSECPAGE;
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}
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else if (WriteMemory_XPROG_Params.MemoryType == XPRG_MEM_TYPE_EEPROM)
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{
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break;
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case XPRG_MEM_TYPE_EEPROM:
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WriteCommand = XMEGA_NVM_CMD_WRITEEEPROMPAGE;
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WriteBuffCommand = XMEGA_NVM_CMD_LOADEEPROMPAGEBUFF;
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EraseBuffCommand = XMEGA_NVM_CMD_ERASEEEPROMPAGEBUFF;
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}
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else if (WriteMemory_XPROG_Params.MemoryType == XPRG_MEM_TYPE_USERSIG)
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{
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break;
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case XPRG_MEM_TYPE_USERSIG:
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/* User signature is paged, but needs us to manually indicate the mode bits since the host doesn't set them */
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WriteMemory_XPROG_Params.PageMode = (XPRG_PAGEMODE_ERASE | XPRG_PAGEMODE_WRITE);
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WriteCommand = XMEGA_NVM_CMD_WRITEUSERSIG;
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}
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else if (WriteMemory_XPROG_Params.MemoryType == XPRG_MEM_TYPE_FUSE)
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{
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break;
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case XPRG_MEM_TYPE_FUSE:
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WriteCommand = XMEGA_NVM_CMD_WRITEFUSE;
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PagedMemory = false;
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}
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else if (WriteMemory_XPROG_Params.MemoryType == XPRG_MEM_TYPE_LOCKBITS)
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{
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break;
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case XPRG_MEM_TYPE_LOCKBITS:
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WriteCommand = XMEGA_NVM_CMD_WRITELOCK;
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PagedMemory = false;
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break;
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}
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/* Send the appropriate memory write commands to the device, indicate timeout if occurred */
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@ -394,21 +402,29 @@ static void XPROGProtocol_ReadCRC(void)
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} ReadCRC_XPROG_Params;
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Endpoint_Read_Stream_LE(&ReadCRC_XPROG_Params, sizeof(ReadCRC_XPROG_Params), NO_STREAM_CALLBACK);
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Endpoint_ClearOUT();
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_IN);
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uint8_t CRCCommand = XMEGA_NVM_CMD_NOOP;
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uint32_t MemoryCRC;
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if (XPROG_SelectedProtocol == XPRG_PROTOCOL_PDI)
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{
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uint8_t CRCCommand;
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/* Determine which NVM command to send to the device depending on the memory to CRC */
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if (ReadCRC_XPROG_Params.CRCType == XPRG_CRC_APP)
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switch (ReadCRC_XPROG_Params.CRCType)
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{
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case XPRG_CRC_APP:
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CRCCommand = XMEGA_NVM_CMD_APPCRC;
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else if (ReadCRC_XPROG_Params.CRCType == XPRG_CRC_BOOT)
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break;
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case XPRG_CRC_BOOT:
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CRCCommand = XMEGA_NVM_CMD_BOOTCRC;
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else
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break;
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default:
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CRCCommand = XMEGA_NVM_CMD_FLASHCRC;
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break;
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}
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/* Perform and retrieve the memory CRC, indicate timeout if occurred */
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if (!(XMEGANVM_GetMemoryCRC(CRCCommand, &MemoryCRC)))
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@ -131,7 +131,7 @@
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#define TPI_NVMENABLE_KEY (uint8_t[]){0x12, 0x89, 0xAB, 0x45, 0xCD, 0xD8, 0x88, 0xFF}
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#define TPI_POINTER_INDIRECT 0
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#define TPI_POINTER_INDIRECT_PI (1 << 2)
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#define TPI_POINTER_INDIRECT_PI 4
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/* Function Prototypes: */
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void XPROGTarget_EnableTargetPDI(void);
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