forked from mfulz_github/qmk_firmware
Speed up bit-banged USART code in the AVRISP project.
Fix project text files to refer to "project" instead of "demo".
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@ -6,9 +6,9 @@
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/** \mainpage AVRISP MKII Programmer Project
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*
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* \section SSec_Compat Demo Compatibility:
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* \section SSec_Compat Project Compatibility:
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*
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* The following list indicates what microcontrollers are compatible with this demo.
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* The following list indicates what microcontrollers are compatible with this project.
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*
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* - Series 7 USB AVRs
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* - Series 6 USB AVRs
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@ -17,7 +17,7 @@
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*
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* \section SSec_Info USB Information:
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*
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* The following table gives a rundown of the USB utilization of this demo.
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* The following table gives a rundown of the USB utilization of this project.
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*
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* <table>
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* <tr>
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@ -67,7 +67,7 @@
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* While this application can be compiled for USB AVRs with as little as 8KB of FLASH, for full functionality 16KB or more
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* of FLASH is required. On 8KB devices, either ISP or PDI programming support can be disabled to reduce program size.
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*
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*
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* \section Sec_ISP ISP Connections
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* Connections to the device for SPI programming (when enabled):
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*
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* <table>
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@ -111,7 +111,7 @@
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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>See \ref SSec_Options section</i>
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*
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*
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* \section Sec_PDI PDI Connections
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* Connections to the device for PDI programming<b><sup>1</sup></b> (when enabled):
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*
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* <table>
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@ -152,12 +152,12 @@
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* </tr>
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* </table>
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*
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* <b><sup>1</sup></b> When PDI_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.
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* <b><sup>1</sup></b> <i>When PDI_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>
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*
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* \section SSec_Options Project Options
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*
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* The following defines can be found in this demo, which can control the demo behaviour when defined, or changed in value.
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* The following defines can be found in this project, which can control the project behaviour when defined, or changed in value.
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*
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* <table>
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* <tr>
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@ -182,7 +182,6 @@ bool NVMTarget_ReadMemory(uint32_t ReadAddress, uint8_t* ReadBuffer, uint16_t Re
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* \param[in] WriteCommand Command to send to the device to write each memory byte
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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] WriteSize Number of bytes to write
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*
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* \return Boolean true if the command sequence complete successfully
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*/
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@ -45,9 +45,8 @@ volatile bool IsSending;
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/** Software USART raw frame bits for transmission/reception. */
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volatile uint16_t SoftUSART_Data;
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/** Bits remaining to be sent or received via the software USART. */
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volatile uint8_t SoftUSART_BitCount;
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/** Bits remaining to be sent or received via the software USART - set as a GPIOR for speed. */
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#define SoftUSART_BitCount GPIOR2
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/** ISR to manage the software USART when bit-banged USART mode is selected. */
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ISR(TIMER1_COMPA_vect, ISR_BLOCK)
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@ -59,21 +58,13 @@ ISR(TIMER1_COMPA_vect, ISR_BLOCK)
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if (!(SoftUSART_BitCount))
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return;
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/* Check to see if the current clock state is on the rising or falling edge */
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bool IsRisingEdge = (BITBANG_PDICLOCK_PORT & BITBANG_PDICLOCK_MASK);
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if (IsSending && !IsRisingEdge)
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{
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if (SoftUSART_Data & 0x01)
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BITBANG_PDIDATA_PORT |= BITBANG_PDIDATA_MASK;
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else
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BITBANG_PDIDATA_PORT &= ~BITBANG_PDIDATA_MASK;
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SoftUSART_Data >>= 1;
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SoftUSART_BitCount--;
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}
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else if (!IsSending && IsRisingEdge)
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/* Check to see if we are at a rising or falling edge of the clock */
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if (BITBANG_PDICLOCK_PORT & BITBANG_PDICLOCK_MASK)
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{
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/* If at rising clock edge and we are in send mode, abort */
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if (IsSending)
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return;
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/* Wait for the start bit when receiving */
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if ((SoftUSART_BitCount == BITS_IN_FRAME) && (BITBANG_PDIDATA_PIN & BITBANG_PDIDATA_MASK))
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return;
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@ -84,6 +75,20 @@ ISR(TIMER1_COMPA_vect, ISR_BLOCK)
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SoftUSART_Data >>= 1;
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SoftUSART_BitCount--;
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}
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else
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{
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/* If at falling clock edge and we are in receive mode, abort */
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if (!IsSending)
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return;
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if (SoftUSART_Data & 0x01)
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BITBANG_PDIDATA_PORT |= BITBANG_PDIDATA_MASK;
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else
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BITBANG_PDIDATA_PORT &= ~BITBANG_PDIDATA_MASK;
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SoftUSART_Data >>= 1;
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SoftUSART_BitCount--;
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}
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}
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#endif
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@ -120,7 +125,7 @@ void PDITarget_EnableTargetPDI(void)
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asm volatile ("NOP"::);
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/* Fire timer compare ISR every 100 cycles to manage the software USART */
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OCR1A = 100;
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OCR1A = 80;
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TCCR1B = (1 << WGM12) | (1 << CS10);
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TIMSK1 = (1 << OCIE1A);
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@ -66,7 +66,7 @@ MCU = at90usb1287
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# Target board (see library "Board Types" documentation, USER or blank for projects not requiring
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# LUFA board drivers). If USER is selected, put custom board drivers in a directory called
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# "Board" inside the application directory.
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BOARD = XPLAIN
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BOARD = USBKEY
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# Processor frequency.
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@ -6,9 +6,9 @@
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/** \mainpage Benito Arduino Programmer Project
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*
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* \section SSec_Compat Demo Compatibility:
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* \section SSec_Compat Project Compatibility:
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*
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* The following list indicates what microcontrollers are compatible with this demo.
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* The following list indicates what microcontrollers are compatible with this project.
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*
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* - Series 7 USB AVRs
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* - Series 6 USB AVRs
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@ -17,7 +17,7 @@
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*
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* \section SSec_Info USB Information:
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*
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* The following table gives a rundown of the USB utilization of this demo.
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* The following table gives a rundown of the USB utilization of this project.
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*
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* <table>
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* <tr>
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@ -58,7 +58,7 @@
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*
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* \section SSec_Options Project Options
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*
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* The following defines can be found in this demo, which can control the demo behaviour when defined, or changed in value.
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* The following defines can be found in this project, which can control the project behaviour when defined, or changed in value.
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*
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* <table>
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* <tr>
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@ -6,16 +6,16 @@
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/** \mainpage Denver Gingerich's USBSnoop Magnetic Card Reader Project
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*
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* \section SSec_Compat Demo Compatibility:
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* \section SSec_Compat Project Compatibility:
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*
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* The following list indicates what microcontrollers are compatible with this demo.
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* The following list indicates what microcontrollers are compatible with this project.
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*
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* - AT90USB1287
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* - AT90USB1286
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*
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* \section SSec_Info USB Information:
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*
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* The following table gives a rundown of the USB utilization of this demo.
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* The following table gives a rundown of the USB utilization of this project.
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*
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* <table>
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* <tr>
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@ -87,17 +87,17 @@
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* </tr>
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* </table>
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*
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* This project is based on the LUFA Keyboard demonstration application,
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* This project is based on the LUFA Keyboard projectnstration application,
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* written by Denver Gingerich.
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*
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* This application uses a keyboard HID driver to communicate the data collected
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* a TTL magnetic stripe reader to the connected computer. The raw bitstream
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* obtained from the magnetic stripe reader is "typed" through the keyboard
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* driver as 0's and 1's. After every card swipe, the demo will send a return key.
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* driver as 0's and 1's. After every card swipe, the project will send a return key.
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*
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* \section SSec_Options Project Options
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*
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* The following defines can be found in this demo, which can control the demo behaviour when defined, or changed in value.
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* The following defines can be found in this project, which can control the project behaviour when defined, or changed in value.
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*
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* <table>
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* <tr>
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@ -4,17 +4,17 @@
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* documentation pages. It is not a project source file.
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*/
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/** \mainpage Missile Launcher
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/** \mainpage David Fletcher's Missile Launcher
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*
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* \section SSec_Compat Demo Compatibility:
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* \section SSec_Compat Project Compatibility:
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*
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* The following list indicates what microcontrollers are compatible with this demo.
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* The following list indicates what microcontrollers are compatible with this project.
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*
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* - Series 7 USB AVRs
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*
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* \section SSec_Info USB Information:
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*
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* The following table gives a rundown of the USB utilization of this demo.
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* The following table gives a rundown of the USB utilization of this project.
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*
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* <table>
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* <tr>
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@ -47,7 +47,7 @@
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*
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* \section SSec_Options Project Options
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*
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* The following defines can be found in this demo, which can control the demo behaviour when defined, or changed in value.
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* The following defines can be found in this project, which can control the project behaviour when defined, or changed in value.
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*
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* <table>
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* <tr>
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@ -4,11 +4,11 @@
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* documentation pages. It is not a project source file.
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*/
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/** \mainpage USB to Serial Converter Project (via CDC-ACM class)
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/** \mainpage USB to Serial Converter Project
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*
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* \section SSec_Compat Demo Compatibility:
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* \section SSec_Compat Project Compatibility:
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*
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* The following list indicates what microcontrollers are compatible with this demo.
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* The following list indicates what microcontrollers are compatible with this project.
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*
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* - Series 7 USB AVRs
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* - Series 6 USB AVRs
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@ -17,7 +17,7 @@
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*
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* \section SSec_Info USB Information:
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*
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* The following table gives a rundown of the USB utilization of this demo.
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* The following table gives a rundown of the USB utilization of this project.
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*
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* <table>
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* <tr>
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@ -55,8 +55,8 @@
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* error rates at the AVR's clock speed, data lengths other than 6, 7 or 8 bits,
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* 1.5 stop bits, parity other than none, even or odd).
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*
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* After running this demo for the first time on a new computer,
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* you will need to supply the .INF file located in this demo
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* After running this project for the first time on a new computer,
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* you will need to supply the .INF file located in this project
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* project's directory as the device's driver when running under
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* Windows. This will enable Windows to use its inbuilt CDC drivers,
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* negating the need for custom drivers for the device. Other
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@ -65,7 +65,7 @@
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*
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* \section SSec_Options Project Options
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*
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* The following defines can be found in this demo, which can control the demo behaviour when defined, or changed in value.
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* The following defines can be found in this project, which can control the project behaviour when defined, or changed in value.
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*
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* <table>
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* <tr>
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@ -6,15 +6,15 @@
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/** \mainpage XPLAIN UART Bridge Project
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*
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* \section SSec_Compat Demo Compatibility:
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* \section SSec_Compat Project Compatibility:
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*
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* The following list indicates what microcontrollers are compatible with this demo.
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* The following list indicates what microcontrollers are compatible with this project.
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*
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* - AT90USB1287
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*
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* \section SSec_Info USB Information:
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*
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* The following table gives a rundown of the USB utilization of this demo.
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* The following table gives a rundown of the USB utilization of this project.
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*
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* <table>
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* <tr>
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@ -46,14 +46,14 @@
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* host. When inserted, the device will enumerate as a regular COM port on the host, which can then be opened and data exchanged
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* between the XMEGA and Host as if the XMEGA was connected directly to the host's serial port.
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*
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* After running this demo for the first time on a new computer, you will need to supply the .INF file located in this demo
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* After running this project for the first time on a new computer, you will need to supply the .INF file located in this project
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* project's directory as the device's driver when running under Windows. This will enable Windows to use its inbuilt CDC drivers,
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* negating the need for custom drivers for the device. Other Operating Systems should automatically use their own inbuilt CDC-ACM
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* drivers.
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*
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* \section SSec_Options Project Options
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*
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* The following defines can be found in this demo, which can control the demo behaviour when defined, or changed in value.
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* The following defines can be found in this project, which can control the project behaviour when defined, or changed in value.
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*
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* <table>
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* <tr>
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