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Make TPI programming protocol program in words, not bytes to satisfy the datasheet conditions.
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@ -156,7 +156,7 @@
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*
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*
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* <b><sup>1</sup></b> <i>Optional, see \ref SSec_Options section - for USB AVRs with ADC modules only</i> \n
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* <b><sup>1</sup></b> <i>Optional, see \ref SSec_Options section - for USB AVRs with ADC modules only</i> \n
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* <b><sup>2</sup></b> <i>When XPROG_VIA_HARDWARE_USART is set, the AVR's Tx and Rx become the DATA line when connected together
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* <b><sup>2</sup></b> <i>When XPROG_VIA_HARDWARE_USART is set, the AVR's Tx and Rx become the DATA line when connected together
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* via a pair of 300 ohm resistors, and the AVR's XCK pin becomes CLOCK.</i> \n
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* via a pair of 220 ohm resistors, and the AVR's XCK pin becomes CLOCK.</i> \n
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* <b><sup>3</sup></b> <i>See AUX line related tokens in the \ref SSec_Options section</i>
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* <b><sup>3</sup></b> <i>See AUX line related tokens in the \ref SSec_Options section</i>
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*
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*
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* \section Sec_TPI TPI Connections
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* \section Sec_TPI TPI Connections
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@ -202,7 +202,7 @@
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*
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*
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* <b><sup>1</sup></b> <i>Optional, see \ref SSec_Options section - for USB AVRs with ADC modules only</i> \n
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* <b><sup>1</sup></b> <i>Optional, see \ref SSec_Options section - for USB AVRs with ADC modules only</i> \n
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* <b><sup>2</sup></b> <i>When XPROG_VIA_HARDWARE_USART is set, the AVR's Tx and Rx become the DATA line when connected together
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* <b><sup>2</sup></b> <i>When XPROG_VIA_HARDWARE_USART is set, the AVR's Tx and Rx become the DATA line when connected together
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* via a pair of 300 ohm resistors, and the AVR's XCK pin becomes CLOCK.</i> \n
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* via a pair of 220 ohm resistors, and the AVR's XCK pin becomes CLOCK.</i> \n
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* <b><sup>3</sup></b> <i>See AUX line related tokens in the \ref SSec_Options section</i>
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* <b><sup>3</sup></b> <i>See AUX line related tokens in the \ref SSec_Options section</i>
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*
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*
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* \section SSec_Options Project Options
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* \section SSec_Options Project Options
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@ -141,11 +141,11 @@ bool TINYNVM_ReadMemory(const uint16_t ReadAddress, uint8_t* ReadBuffer, uint16_
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return true;
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return true;
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}
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}
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/** Writes byte addressed memory to the target's memory spaces.
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/** Writes word addressed memory to the target's memory spaces.
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*
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*
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* \param[in] WriteAddress Start address to write to within the target's address space
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* \param[in] WriteAddress Start address to write to within the target's address space
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* \param[in] WriteBuffer Buffer to source data from
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* \param[in] WriteBuffer Buffer to source data from
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* \param[in] WriteLength Total number of bytes to write to the device
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* \param[in] WriteLength Total number of bytes to write to the device (must be an integer multiple of 2)
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*
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*
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* \return Boolean true if the command sequence complete successfully
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* \return Boolean true if the command sequence complete successfully
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*/
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*/
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@ -155,6 +155,10 @@ bool TINYNVM_WriteMemory(const uint16_t WriteAddress, const uint8_t* WriteBuffer
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if (!(TINYNVM_WaitWhileNVMControllerBusy()))
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if (!(TINYNVM_WaitWhileNVMControllerBusy()))
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return false;
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return false;
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/* Must have an integer number of words to write - if extra bytes, abort programming */
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if (WriteLength & 0x01)
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return false;
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/* Set the NVM control register to the WORD WRITE command for memory reading */
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/* Set the NVM control register to the WORD WRITE command for memory reading */
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TINYNVM_SendWriteNVMRegister(XPROG_Param_NVMCMDRegAddr);
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TINYNVM_SendWriteNVMRegister(XPROG_Param_NVMCMDRegAddr);
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XPROGTarget_SendByte(TINY_NVM_CMD_WORDWRITE);
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XPROGTarget_SendByte(TINY_NVM_CMD_WORDWRITE);
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@ -162,11 +166,22 @@ bool TINYNVM_WriteMemory(const uint16_t WriteAddress, const uint8_t* WriteBuffer
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/* Send the address of the location to write to */
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/* Send the address of the location to write to */
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TINYNVM_SendPointerAddress(WriteAddress);
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TINYNVM_SendPointerAddress(WriteAddress);
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while (WriteLength--)
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while (WriteLength)
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{
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{
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/* Write the byte of data to the target */
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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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/* Write the low byte of data to the target */
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XPROGTarget_SendByte(TPI_CMD_SST | TPI_POINTER_INDIRECT_PI);
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XPROGTarget_SendByte(TPI_CMD_SST | TPI_POINTER_INDIRECT_PI);
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XPROGTarget_SendByte(*(WriteBuffer++));
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XPROGTarget_SendByte(*(WriteBuffer++));
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/* Write the high byte of data to the target */
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XPROGTarget_SendByte(TPI_CMD_SST | TPI_POINTER_INDIRECT_PI);
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XPROGTarget_SendByte(*(WriteBuffer++));
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/* Need to decrement the write length twice, since we read out a whole word */
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WriteLength -= 2;
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}
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}
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return true;
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return true;
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@ -67,9 +67,9 @@ MIME_Type_t PROGMEM MIMETypes[] =
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{.Extension = "gif", .MIMEType = "image/gif"},
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{.Extension = "gif", .MIMEType = "image/gif"},
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{.Extension = "bmp", .MIMEType = "image/bmp"},
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{.Extension = "bmp", .MIMEType = "image/bmp"},
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{.Extension = "png", .MIMEType = "image/png"},
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{.Extension = "png", .MIMEType = "image/png"},
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{.Extension = "ico", .MIMEType = "image/x-icon"},
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{.Extension = "exe", .MIMEType = "application/octet-stream"},
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{.Extension = "exe", .MIMEType = "application/octet-stream"},
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{.Extension = "gz", .MIMEType = "application/x-gzip"},
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{.Extension = "gz", .MIMEType = "application/x-gzip"},
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{.Extension = "ico", .MIMEType = "image/x-icon"},
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{.Extension = "zip", .MIMEType = "application/zip"},
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{.Extension = "zip", .MIMEType = "application/zip"},
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{.Extension = "pdf", .MIMEType = "application/pdf"},
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{.Extension = "pdf", .MIMEType = "application/pdf"},
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};
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};
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@ -125,7 +125,7 @@ void WebserverApp_Callback(void)
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AppState->CurrentState = AppState->NextState;
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AppState->CurrentState = AppState->NextState;
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}
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}
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if (uip_rexmit() || uip_newdata() || uip_acked() || uip_connected() || uip_poll())
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if (uip_rexmit() || uip_acked() || uip_newdata() || uip_connected() || uip_poll())
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{
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{
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switch (AppState->CurrentState)
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switch (AppState->CurrentState)
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{
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{
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