forked from mfulz_github/qmk_firmware
Added handler for the V2 Protocol SPI_MULTI command to the AVRISP Programmer project.
Added documentation of the makefile CDEFS values to the MagStripe project.
This commit is contained in:
parent
083d3615d3
commit
04354ffcad
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@ -53,7 +53,7 @@
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#endif
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#endif
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/* Type Defines: */
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/* Type Defines: */
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/* Type define for a pointer to a bit in a bit buffer. */
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/** Type define for a pointer to a bit in a bit buffer. */
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typedef struct
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typedef struct
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{
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{
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uint8_t* CurrentByte; /**< Pointer to the current byte in the buffer */
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uint8_t* CurrentByte; /**< Pointer to the current byte in the buffer */
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@ -110,5 +110,55 @@
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* <td>CircularBitBuffer.h</td>
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* <td>CircularBitBuffer.h</td>
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* <td>Gives the maximum number of bits per track which can be buffered by the device for later transmission to a host.</td>
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* <td>Gives the maximum number of bits per track which can be buffered by the device for later transmission to a host.</td>
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* </tr>
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* </tr>
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* <tr>
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* <td>MAG_T1_CLOCK</td>
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* <td>Makefile CDEFS</td>
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* <td>Mask for the magnetic card reader's CLOCK line for the reader's track 1 output.</td>
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* </tr>
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* <tr>
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* <td>MAG_T1_DATA</td>
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* <td>Makefile CDEFS</td>
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* <td>Mask for the magnetic card reader's DATA line for the reader's track 1 output.</td>
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* </tr>
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* <tr>
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* <td>MAG_T2_CLOCK</td>
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* <td>Makefile CDEFS</td>
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* <td>Mask for the magnetic card reader's CLOCK line for the reader's track 2 output.</td>
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* </tr>
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* <tr>
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* <td>MAG_T2_DATA</td>
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* <td>Makefile CDEFS</td>
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* <td>Mask for the magnetic card reader's DATA line for the reader's track 2 output.</td>
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* </tr>
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* <tr>
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* <td>MAG_T3_CLOCK</td>
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* <td>Makefile CDEFS</td>
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* <td>Mask for the magnetic card reader's CLOCK line for the reader's track 3 output.</td>
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* </tr>
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* <tr>
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* <td>MAG_T3_DATA</td>
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* <td>Makefile CDEFS</td>
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* <td>Mask for the magnetic card reader's DATA line for the reader's track 3 output.</td>
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* </tr>
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* <tr>
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* <td>MAG_CARDPRESENT</td>
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* <td>Makefile CDEFS</td>
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* <td>Mask for the magnetic card reader's card detection output.</td>
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* </tr>
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* <tr>
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* <td>MAG_PIN</td>
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* <td>Makefile CDEFS</td>
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* <td>PIN register that the magnetic card reader device is attached to.</td>
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* </tr>
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* <tr>
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* <td>MAG_PORT</td>
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* <td>Makefile CDEFS</td>
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* <td>PORT register that the magnetic card reader device is attached to.</td>
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* </tr>
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* <tr>
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* <td>MAG_DDR</td>
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* <td>Makefile CDEFS</td>
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* <td>DDR register that the magnetic card reader device is attached to.</td>
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* </tr>
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* </table>
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* </table>
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*/
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*/
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@ -43,6 +43,8 @@ int main(void)
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{
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{
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SetupHardware();
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SetupHardware();
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V2Protocol_ConfigureHardware();
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printf("AVRISP-MKII Clone\r\n");
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printf("AVRISP-MKII Clone\r\n");
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LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);
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LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);
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@ -67,6 +69,7 @@ void SetupHardware(void)
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/* Hardware Initialization */
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/* Hardware Initialization */
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SerialStream_Init(9600, false);
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SerialStream_Init(9600, false);
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SPI_Init(0, true);
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LEDs_Init();
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LEDs_Init();
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USB_Init();
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USB_Init();
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}
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}
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@ -47,6 +47,7 @@
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#include <LUFA/Version.h>
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#include <LUFA/Version.h>
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#include <LUFA/Drivers/Board/LEDs.h>
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#include <LUFA/Drivers/Board/LEDs.h>
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#include <LUFA/Drivers/Peripheral/SerialStream.h>
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#include <LUFA/Drivers/Peripheral/SerialStream.h>
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#include <LUFA/Drivers/Peripheral/SPI.h>
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#include <LUFA/Drivers/USB/USB.h>
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#include <LUFA/Drivers/USB/USB.h>
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#include "Lib/V2Protocol.h"
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#include "Lib/V2Protocol.h"
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@ -55,15 +55,38 @@
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* This device spoofs Atmel's official AVRISP-MKII device PID so that it remains compatible with Atmel's AVRISP-MKII
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* This device spoofs Atmel's official AVRISP-MKII device PID so that it remains compatible with Atmel's AVRISP-MKII
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* drivers. When promted, direct your OS to install Atmel's AVRISP-MKII drivers provided with AVRStudio.
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* drivers. When promted, direct your OS to install Atmel's AVRISP-MKII drivers provided with AVRStudio.
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*
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*
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* This demo contains both FLASH and EEPROM data, as compiled .HEX and .EEP files respectively. <b>Both</b> files must
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* be loaded into the device for it to perform correctly.
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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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*
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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 demo, which can control the demo behaviour when defined, or changed in value.
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*
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*
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* <table>
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* <table>
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* <tr>
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* <tr>
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* <td>
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* <td><b>Define Name:</b></td>
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* None
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* <td><b>Location:</b></td>
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* </td>
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* <td><b>Description:</b></td>
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* </tr>
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* <tr>
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* <td>RESET_LINE_PORT</td>
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* <td>Makefile CDEFS</td>
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* <td>PORT register for the programmer's target RESET line.</td>
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* </tr>
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* <tr>
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* <td>RESET_LINE_PIN</td>
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* <td>Makefile CDEFS</td>
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* <td>PIN register for the programmer's target RESET line.</td>
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* </tr>
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* <tr>
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* <td>RESET_LINE_DDR</td>
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* <td>Makefile CDEFS</td>
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* <td>DDR register for the programmer's target RESET line.</td>
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* </tr>
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* <tr>
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* <td>RESET_LINE_MASK</td>
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* <td>Makefile CDEFS</td>
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* <td>Mask for the programmer's target RESET line on the chosen port.</td>
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* </tr>
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* </tr>
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* </table>
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* </table>
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*/
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*/
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@ -59,6 +59,24 @@ ParameterItem_t ParameterTable[] EEMEM =
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{ .ParameterID = PARAM_DISCHARGEDELAY,
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{ .ParameterID = PARAM_DISCHARGEDELAY,
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.ParameterValue = 0x00 },
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.ParameterValue = 0x00 },
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};
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};
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void V2Protocol_ConfigureHardware(void)
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{
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#if F_CPU == 8000000
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uint8_t SPIMaskFromSCKDuration[] = {SPI_SPEED_FCPU_DIV_128, SPI_SPEED_FCPU_DIV_128, SPI_SPEED_FCPU_DIV_128,
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SPI_SPEED_FCPU_DIV_128, SPI_SPEED_FCPU_DIV_128, SPI_SPEED_FCPU_DIV_128};
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#else
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uint8_t SPIMaskFromSCKDuration[] = {SPI_SPEED_FCPU_DIV_128, SPI_SPEED_FCPU_DIV_128, SPI_SPEED_FCPU_DIV_128,
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SPI_SPEED_FCPU_DIV_128, SPI_SPEED_FCPU_DIV_128, SPI_SPEED_FCPU_DIV_128};
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#endif
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uint8_t SCKDuration = eeprom_read_byte(&V2Protocol_GetParameterItem(PARAM_SCK_DURATION)->ParameterValue);
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if (SCKDuration > sizeof(SPIMaskFromSCKDuration))
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SCKDuration = SPIMaskFromSCKDuration;
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SPI_Init(SPIMaskFromSCKDuration[SCKDuration], true);
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}
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void V2Protocol_ProcessCommand(void)
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void V2Protocol_ProcessCommand(void)
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{
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{
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case CMD_GET_PARAMETER:
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case CMD_GET_PARAMETER:
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V2Protocol_ProcessCmdGetSetParam(V2Command);
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V2Protocol_ProcessCmdGetSetParam(V2Command);
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break;
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break;
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case CMD_SPI_MULTI:
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V2Protocol_ProcessCmdSPIMulti();
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break;
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default:
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default:
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while (Endpoint_BytesInEndpoint() == AVRISP_DATA_EPSIZE)
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while (Endpoint_BytesInEndpoint() == AVRISP_DATA_EPSIZE)
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{
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{
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Endpoint_ClearOUT();
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Endpoint_ClearOUT();
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_IN);
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_IN);
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Endpoint_Write_Byte(V2Command);
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Endpoint_Write_Byte(STATUS_CMD_UNKNOWN);
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Endpoint_Write_Byte(STATUS_CMD_UNKNOWN);
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Endpoint_ClearIN();
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Endpoint_ClearIN();
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break;
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break;
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printf("COMMAND 0x%02x\r\n", V2Command);
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printf("COMMAND 0x%02x\r\n", V2Command);
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Endpoint_WaitUntilReady();
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Endpoint_WaitUntilReady();
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/* Reset Endpoint direction to OUT ready for next command */
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_OUT);
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_OUT);
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}
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}
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_IN);
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_IN);
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Endpoint_WaitUntilReady();
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Endpoint_WaitUntilReady();
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V2Protocol_ConfigureHardware();
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Endpoint_Write_Byte(CMD_SIGN_ON);
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Endpoint_Write_Byte(CMD_SIGN_ON);
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Endpoint_Write_Byte(STATUS_CMD_OK);
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Endpoint_Write_Byte(STATUS_CMD_OK);
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Endpoint_Write_Byte(PROGRAMMER_ID_LEN);
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Endpoint_Write_Byte(PROGRAMMER_ID_LEN);
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ParameterItem_t* ParameterItem = V2Protocol_GetParameterItem(ParamID);
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ParameterItem_t* ParameterItem = V2Protocol_GetParameterItem(ParamID);
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Endpoint_Write_Byte(V2Command);
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if (ParameterItem != NULL)
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if (ParameterItem != NULL)
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{
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{
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Endpoint_Write_Byte(V2Command);
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Endpoint_Write_Byte(STATUS_CMD_OK);
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Endpoint_Write_Byte(STATUS_CMD_OK);
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if (V2Command == CMD_SET_PARAMETER)
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if (V2Command == CMD_SET_PARAMETER)
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Endpoint_ClearIN();
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Endpoint_ClearIN();
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}
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}
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static void V2Protocol_ProcessCmdSPIMulti(void)
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{
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uint8_t TxBytes = Endpoint_Read_Byte();
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uint8_t RxBytes = Endpoint_Read_Byte();
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uint8_t RxStartAddr = Endpoint_Read_Byte();
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uint8_t TxData[255];
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Endpoint_Read_Stream_LE(TxData, TxBytes);
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Endpoint_ClearOUT();
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Endpoint_SetEndpointDirection(ENDPOINT_DIR_IN);
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Endpoint_WaitUntilReady();
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Endpoint_Write_Byte(CMD_SPI_MULTI);
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Endpoint_Write_Byte(STATUS_CMD_OK);
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uint8_t CurrTxPos = 0;
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uint8_t CurrRxPos = 0;
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while (CurrTxPos < RxStartAddr)
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{
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if (CurrTxPos < TxBytes)
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SPI_SendByte(TxData[CurrTxPos]);
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else
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SPI_SendByte(0);
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CurrTxPos++;
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}
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while (CurrRxPos < RxBytes)
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{
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if (CurrTxPos < TxBytes)
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{
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Endpoint_Write_Byte(SPI_TransferByte(TxData[CurrTxPos]));
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CurrTxPos++;
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}
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else
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{
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Endpoint_Write_Byte(SPI_ReceiveByte());
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}
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CurrRxPos++;
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}
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Endpoint_Write_Byte(STATUS_CMD_OK);
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Endpoint_ClearIN();
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}
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#include <avr/io.h>
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#include <avr/io.h>
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#include <LUFA/Drivers/USB/USB.h>
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#include <LUFA/Drivers/USB/USB.h>
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#include <LUFA/Drivers/Peripheral/SPI.h>
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#include "../Descriptors.h"
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#include "../Descriptors.h"
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#include "V2ProtocolConstants.h"
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#include "V2ProtocolConstants.h"
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uint8_t ParameterValue;
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uint8_t ParameterValue;
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} ParameterItem_t;
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} ParameterItem_t;
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/* Function Prototypes: */
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/* Function Prototypes: */
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void V2Protocol_ConfigureHardware(void);
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void V2Protocol_ProcessCommand(void);
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void V2Protocol_ProcessCommand(void);
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#if defined(INCLUDE_FROM_V2PROTOCOL_C)
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#if defined(INCLUDE_FROM_V2PROTOCOL_C)
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static ParameterItem_t* V2Protocol_GetParameterItem(uint8_t ParamID);
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static ParameterItem_t* V2Protocol_GetParameterItem(uint8_t ParamID);
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static void V2Protocol_ProcessCmdSignOn(void);
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static void V2Protocol_ProcessCmdSignOn(void);
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static void V2Protocol_ProcessCmdGetSetParam(uint8_t V2Command);
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static void V2Protocol_ProcessCmdGetSetParam(uint8_t V2Command);
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static void V2Protocol_ProcessCmdSPIMulti(void);
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#endif
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#endif
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#endif
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#endif
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# Place -D or -U options here for C sources
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# Place -D or -U options here for C sources
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CDEFS = -DF_CPU=$(F_CPU)UL -DF_CLOCK=$(F_CLOCK)UL -DBOARD=BOARD_$(BOARD) $(LUFA_OPTS)
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CDEFS = -DF_CPU=$(F_CPU)UL -DF_CLOCK=$(F_CLOCK)UL -DBOARD=BOARD_$(BOARD) $(LUFA_OPTS)
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CDEFS += -DRESET_LINE_PORT=PORTA
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CDEFS += -DRESET_LINE_PIN=PINA
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CDEFS += -DRESET_LINE_DDR=DDRA
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CDEFS += -DRESET_LINE_MASK="(1 << 0)"
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# Place -D or -U options here for ASM sources
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# Place -D or -U options here for ASM sources
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ADEFS = -DF_CPU=$(F_CPU)
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ADEFS = -DF_CPU=$(F_CPU)
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