Make RNDISHost demo validate the set Packet Filter to ensure that it is being sent...
authorDean Camera <dean@fourwalledcubicle.com>
Tue, 17 Nov 2009 10:32:17 +0000 (10:32 +0000)
committerDean Camera <dean@fourwalledcubicle.com>
Tue, 17 Nov 2009 10:32:17 +0000 (10:32 +0000)
Add new (incomplete) StandaloneProgrammer project, using the ELM Petite FAT library to read files stored on the board's dataflash by the host.

26 files changed:
Demos/Device/ClassDriver/MassStorage/Lib/DataflashManager.h
Demos/Device/ClassDriver/MassStorage/MassStorage.h
Demos/Host/Incomplete/RNDISEthernetHost/Lib/RNDISCommands.c
Demos/Host/Incomplete/RNDISEthernetHost/Lib/RNDISCommands.h
Demos/Host/Incomplete/RNDISEthernetHost/RNDISEthernetHost.c
LUFA.pnproj
LUFA/Drivers/USB/Class/Common/HID.h
LUFA/ManPages/FutureChanges.txt
Projects/Incomplete/StandaloneProgrammer/Descriptors.c [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Descriptors.h [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/DataflashManager.c [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/DataflashManager.h [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/00readme.txt [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/diskio.c [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/diskio.h [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/integer.h [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/pff.c [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/pff.h [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/ProgrammerConfig.c [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/ProgrammerConfig.h [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/SCSI.c [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Lib/SCSI.h [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/Standalone Programmer.inf [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/StandaloneProgrammer.c [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/StandaloneProgrammer.h [new file with mode: 0644]
Projects/Incomplete/StandaloneProgrammer/makefile [new file with mode: 0644]

index 3f477ed..2deac09 100644 (file)
                #include "MassStorage.h"\r
                #include "Descriptors.h"\r
 \r
                #include "MassStorage.h"\r
                #include "Descriptors.h"\r
 \r
-               #include <LUFA/Common/Common.h>              // Function Attribute, Atomic, Debug and ISR Macros\r
-               #include <LUFA/Drivers/USB/USB.h>            // USB Functionality\r
-               #include <LUFA/Drivers/Board/Dataflash.h>    // Dataflash chip driver\r
+               #include <LUFA/Common/Common.h>                 // Function Attribute, Atomic, Debug and ISR Macros\r
+               #include <LUFA/Drivers/USB/USB.h>               // USB Functionality\r
+               #include <LUFA/Drivers/USB/Class/MassStorage.h> // Mass Storage Class Driver\r
+               #include <LUFA/Drivers/Board/Dataflash.h>       // Dataflash chip driver\r
 \r
        /* Preprocessor Checks: */\r
                #if (DATAFLASH_PAGE_SIZE % 16)\r
 \r
        /* Preprocessor Checks: */\r
                #if (DATAFLASH_PAGE_SIZE % 16)\r
index 930e8f4..fca288d 100644 (file)
@@ -47,9 +47,7 @@
                #include "Lib/DataflashManager.h"\r
 \r
                #include <LUFA/Version.h>\r
                #include "Lib/DataflashManager.h"\r
 \r
                #include <LUFA/Version.h>\r
-               #include <LUFA/Drivers/Board/Joystick.h>\r
                #include <LUFA/Drivers/Board/LEDs.h>\r
                #include <LUFA/Drivers/Board/LEDs.h>\r
-               #include <LUFA/Drivers/Board/Buttons.h>\r
                #include <LUFA/Drivers/USB/USB.h>\r
                #include <LUFA/Drivers/USB/Class/MassStorage.h>
 \r
                #include <LUFA/Drivers/USB/USB.h>\r
                #include <LUFA/Drivers/USB/Class/MassStorage.h>
 \r
index 4802bed..b196614 100644 (file)
@@ -72,7 +72,7 @@ uint8_t RNDIS_GetEncapsulatedResponse(void* Buffer, uint16_t Length)
        return USB_Host_SendControlRequest(Buffer);\r
 }\r
 \r
        return USB_Host_SendControlRequest(Buffer);\r
 }\r
 \r
-uint8_t RNDIS_KeepAlive(void)\r
+uint8_t RNDIS_SendKeepAlive(void)\r
 {\r
        uint8_t ErrorCode;\r
 \r
 {\r
        uint8_t ErrorCode;\r
 \r
index af3e7cc..429b4c5 100644 (file)
                uint8_t RNDIS_SendEncapsulatedCommand(void* Buffer, uint16_t Length);\r
                uint8_t RNDIS_GetEncapsulatedResponse(void* Buffer, uint16_t Length);\r
 \r
                uint8_t RNDIS_SendEncapsulatedCommand(void* Buffer, uint16_t Length);\r
                uint8_t RNDIS_GetEncapsulatedResponse(void* Buffer, uint16_t Length);\r
 \r
-               uint8_t RNDIS_KeepAlive(void);\r
+               uint8_t RNDIS_SendKeepAlive(void);\r
                uint8_t RNDIS_InitializeDevice(uint16_t HostMaxPacketSize, uint16_t* DeviceMaxPacketSize);\r
                uint8_t RNDIS_SetRNDISProperty(uint32_t Oid, void* Buffer, uint16_t Length);\r
                uint8_t RNDIS_QueryRNDISProperty(uint32_t Oid, void* Buffer, uint16_t MaxLength);\r
                uint8_t RNDIS_InitializeDevice(uint16_t HostMaxPacketSize, uint16_t* DeviceMaxPacketSize);\r
                uint8_t RNDIS_SetRNDISProperty(uint32_t Oid, void* Buffer, uint16_t Length);\r
                uint8_t RNDIS_QueryRNDISProperty(uint32_t Oid, void* Buffer, uint16_t MaxLength);\r
index c84f0c0..f3252cd 100644 (file)
@@ -247,6 +247,24 @@ void RNDIS_Host_Task(void)
                                break;\r
                        }\r
 \r
                                break;\r
                        }\r
 \r
+                       uint32_t RetrievedPacketFilter;\r
+                       if ((ErrorCode = RNDIS_QueryRNDISProperty(OID_GEN_CURRENT_PACKET_FILTER,\r
+                                                                 &RetrievedPacketFilter, sizeof(RetrievedPacketFilter))) != HOST_SENDCONTROL_Successful)\r
+                       {\r
+                               printf_P(PSTR(ESC_FG_RED "Error Getting Packet Filter.\r\n"\r
+                                                        " -- Error Code: %d\r\n" ESC_FG_WHITE), ErrorCode);\r
+\r
+                               /* Indicate error via status LEDs */\r
+                               LEDs_SetAllLEDs(LEDMASK_USB_ERROR);\r
+\r
+                               /* Wait until USB device disconnected */\r
+                               USB_HostState = HOST_STATE_WaitForDeviceRemoval;\r
+                               break;\r
+                       }\r
+                       \r
+                       if (RetrievedPacketFilter != PacketFilter)\r
+                               printf("ERROR: Retrieved Packet Filter %08lx != Set Packet Filter %08lx!\r\n", RetrievedPacketFilter, PacketFilter);\r
+\r
                        uint32_t VendorID;\r
                        if ((ErrorCode = RNDIS_QueryRNDISProperty(OID_GEN_VENDOR_ID,\r
                                                                  &VendorID, sizeof(VendorID))) != HOST_SENDCONTROL_Successful)\r
                        uint32_t VendorID;\r
                        if ((ErrorCode = RNDIS_QueryRNDISProperty(OID_GEN_VENDOR_ID,\r
                                                                  &VendorID, sizeof(VendorID))) != HOST_SENDCONTROL_Successful)\r
index 645908b..b7be79c 100644 (file)
@@ -1 +1 @@
-<Project name="LUFA"><Folder name="Demos"><Folder name="Device"><Folder name="ClassDriver"><Folder name="AudioInput"><File path="Demos\Device\ClassDriver\AudioInput\AudioInput.c"></File><File path="Demos\Device\ClassDriver\AudioInput\AudioInput.h"></File><File path="Demos\Device\ClassDriver\AudioInput\AudioInput.txt"></File><File path="Demos\Device\ClassDriver\AudioInput\Descriptors.c"></File><File path="Demos\Device\ClassDriver\AudioInput\Descriptors.h"></File><File path="Demos\Device\ClassDriver\AudioInput\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\AudioInput\makefile"></File></Folder><Folder name="AudioOutput"><File path="Demos\Device\ClassDriver\AudioOutput\AudioOutput.c"></File><File path="Demos\Device\ClassDriver\AudioOutput\AudioOutput.h"></File><File path="Demos\Device\ClassDriver\AudioOutput\AudioOutput.txt"></File><File path="Demos\Device\ClassDriver\AudioOutput\Descriptors.c"></File><File path="Demos\Device\ClassDriver\AudioOutput\Descriptors.h"></File><File path="Demos\Device\ClassDriver\AudioOutput\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\AudioOutput\makefile"></File></Folder><Folder name="CDC"><File path="Demos\Device\ClassDriver\CDC\CDC.c"></File><File path="Demos\Device\ClassDriver\CDC\CDC.h"></File><File path="Demos\Device\ClassDriver\CDC\CDC.txt"></File><File path="Demos\Device\ClassDriver\CDC\Descriptors.c"></File><File path="Demos\Device\ClassDriver\CDC\Descriptors.h"></File><File path="Demos\Device\ClassDriver\CDC\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\CDC\LUFA CDC.inf"></File><File path="Demos\Device\ClassDriver\CDC\makefile"></File></Folder><Folder name="CDCMouse"><File path="Demos\Device\ClassDriver\CDCMouse\CDCMouse.c"></File><File path="Demos\Device\ClassDriver\CDCMouse\CDCMouse.h"></File><File path="Demos\Device\ClassDriver\CDCMouse\CDCMouse.txt"></File><File path="Demos\Device\ClassDriver\CDCMouse\Descriptors.c"></File><File path="Demos\Device\ClassDriver\CDCMouse\Descriptors.h"></File><File path="Demos\Device\ClassDriver\CDCMouse\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\CDCMouse\LUFA CDCMouse.inf"></File><File path="Demos\Device\ClassDriver\CDCMouse\makefile"></File></Folder><Folder name="DualCDC"><File path="Demos\Device\ClassDriver\DualCDC\Descriptors.c"></File><File path="Demos\Device\ClassDriver\DualCDC\Descriptors.h"></File><File path="Demos\Device\ClassDriver\DualCDC\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\DualCDC\DualCDC.c"></File><File path="Demos\Device\ClassDriver\DualCDC\DualCDC.h"></File><File path="Demos\Device\ClassDriver\DualCDC\DualCDC.txt"></File><File path="Demos\Device\ClassDriver\DualCDC\LUFA DualCDC.inf"></File><File path="Demos\Device\ClassDriver\DualCDC\makefile"></File></Folder><Folder name="GenericHID"><File path="Demos\Device\ClassDriver\GenericHID\Descriptors.c"></File><File path="Demos\Device\ClassDriver\GenericHID\Descriptors.h"></File><File path="Demos\Device\ClassDriver\GenericHID\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\GenericHID\GenericHID.c"></File><File path="Demos\Device\ClassDriver\GenericHID\GenericHID.h"></File><File path="Demos\Device\ClassDriver\GenericHID\GenericHID.txt"></File><File path="Demos\Device\ClassDriver\GenericHID\makefile"></File></Folder><Folder name="Joystick"><File path="Demos\Device\ClassDriver\Joystick\Descriptors.c"></File><File path="Demos\Device\ClassDriver\Joystick\Descriptors.h"></File><File path="Demos\Device\ClassDriver\Joystick\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\Joystick\Joystick.c"></File><File path="Demos\Device\ClassDriver\Joystick\Joystick.h"></File><File path="Demos\Device\ClassDriver\Joystick\Joystick.txt"></File><File path="Demos\Device\ClassDriver\Joystick\makefile"></File></Folder><Folder name="Keyboard"><File path="Demos\Device\ClassDriver\Keyboard\Descriptors.c"></File><File path="Demos\Device\ClassDriver\Keyboard\Descriptors.h"></File><File path="Demos\Device\ClassDriver\Keyboard\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\Keyboard\Keyboard.c"></File><File path="Demos\Device\ClassDriver\Keyboard\Keyboard.h"></File><File path="Demos\Device\ClassDriver\Keyboard\Keyboard.txt"></File><File path="Demos\Device\ClassDriver\Keyboard\makefile"></File></Folder><Folder name="KeyboardMouse"><File path="Demos\Device\ClassDriver\KeyboardMouse\Descriptors.c"></File><File path="Demos\Device\ClassDriver\KeyboardMouse\Descriptors.h"></File><File path="Demos\Device\ClassDriver\KeyboardMouse\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\KeyboardMouse\KeyboardMouse.c"></File><File path="Demos\Device\ClassDriver\KeyboardMouse\KeyboardMouse.h"></File><File path="Demos\Device\ClassDriver\KeyboardMouse\KeyboardMouse.txt"></File><File path="Demos\Device\ClassDriver\KeyboardMouse\makefile"></File></Folder><Folder name="MassStorage"><Folder name="Lib"><File path="Demos\Device\ClassDriver\MassStorage\Lib\DataflashManager.c"></File><File path="Demos\Device\ClassDriver\MassStorage\Lib\DataflashManager.h"></File><File path="Demos\Device\ClassDriver\MassStorage\Lib\SCSI.c"></File><File path="Demos\Device\ClassDriver\MassStorage\Lib\SCSI.h"></File></Folder><File path="Demos\Device\ClassDriver\MassStorage\Descriptors.c"></File><File path="Demos\Device\ClassDriver\MassStorage\Descriptors.h"></File><File path="Demos\Device\ClassDriver\MassStorage\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\MassStorage\makefile"></File><File path="Demos\Device\ClassDriver\MassStorage\MassStorage.c"></File><File path="Demos\Device\ClassDriver\MassStorage\MassStorage.h"></File><File path="Demos\Device\ClassDriver\MassStorage\MassStorage.txt"></File></Folder><Folder name="MassStorageKeyboard"><Folder name="Lib"><File path="Demos\Device\ClassDriver\MassStorageKeyboard\Lib\DataflashManager.c"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\Lib\DataflashManager.h"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\Lib\SCSI.c"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\Lib\SCSI.h"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\Lib\SCSI_Codes.h"></File></Folder><File path="Demos\Device\ClassDriver\MassStorageKeyboard\Descriptors.c"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\Descriptors.h"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\makefile"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\MassStorageKeyboard.c"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\MassStorageKeyboard.h"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\MassStorageKeyboard\MassStorageKeyboard.txt"></File></Folder><Folder name="MIDI"><File path="Demos\Device\ClassDriver\MIDI\Descriptors.c"></File><File path="Demos\Device\ClassDriver\MIDI\Descriptors.h"></File><File path="Demos\Device\ClassDriver\MIDI\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\MIDI\makefile"></File><File path="Demos\Device\ClassDriver\MIDI\MIDI.c"></File><File path="Demos\Device\ClassDriver\MIDI\MIDI.h"></File><File path="Demos\Device\ClassDriver\MIDI\MIDI.txt"></File></Folder><Folder name="Mouse"><File path="Demos\Device\ClassDriver\Mouse\Descriptors.c"></File><File path="Demos\Device\ClassDriver\Mouse\Descriptors.h"></File><File path="Demos\Device\ClassDriver\Mouse\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\Mouse\makefile"></File><File path="Demos\Device\ClassDriver\Mouse\Mouse.c"></File><File path="Demos\Device\ClassDriver\Mouse\Mouse.h"></File><File path="Demos\Device\ClassDriver\Mouse\Mouse.txt"></File></Folder><Folder name="RNDISEthernet"><Folder name="Lib"><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\Webserver.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\ARP.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\ARP.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\DHCP.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\DHCP.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\Ethernet.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\Ethernet.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\EthernetProtocols.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\ICMP.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\ICMP.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\IP.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\IP.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\ProtocolDecoders.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\ProtocolDecoders.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\TCP.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\TCP.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\UDP.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\UDP.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Lib\Webserver.c"></File></Folder><File path="Demos\Device\ClassDriver\RNDISEthernet\Descriptors.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Descriptors.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\Doxygen.conf"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\LUFA RNDIS.inf"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\makefile"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\RNDISEthernet.c"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\RNDISEthernet.h"></File><File path="Demos\Device\ClassDriver\RNDISEthernet\RNDISEthernet.txt"></File></Folder><File path="Demos\Device\ClassDriver\makefile"></File></Folder><Folder name="LowLevel"><Folder name="AudioInput"><File path="Demos\Device\LowLevel\AudioInput\AudioInput.c"></File><File path="Demos\Device\LowLevel\AudioInput\AudioInput.h"></File><File path="Demos\Device\LowLevel\AudioInput\AudioInput.txt"></File><File path="Demos\Device\LowLevel\AudioInput\Descriptors.c"></File><File path="Demos\Device\LowLevel\AudioInput\Descriptors.h"></File><File path="Demos\Device\LowLevel\AudioInput\Doxygen.conf"></File><File path="Demos\Device\LowLevel\AudioInput\makefile"></File></Folder><Folder name="AudioOutput"><File path="Demos\Device\LowLevel\AudioOutput\AudioOutput.c"></File><File path="Demos\Device\LowLevel\AudioOutput\AudioOutput.h"></File><File path="Demos\Device\LowLevel\AudioOutput\AudioOutput.txt"></File><File path="Demos\Device\LowLevel\AudioOutput\Descriptors.c"></File><File path="Demos\Device\LowLevel\AudioOutput\Descriptors.h"></File><File path="Demos\Device\LowLevel\AudioOutput\Doxygen.conf"></File><File path="Demos\Device\LowLevel\AudioOutput\makefile"></File></Folder><Folder name="CDC"><File path="Demos\Device\LowLevel\CDC\CDC.c"></File><File path="Demos\Device\LowLevel\CDC\CDC.h"></File><File path="Demos\Device\LowLevel\CDC\CDC.txt"></File><File path="Demos\Device\LowLevel\CDC\Descriptors.c"></File><File path="Demos\Device\LowLevel\CDC\Descriptors.h"></File><File path="Demos\Device\LowLevel\CDC\Doxygen.conf"></File><File path="Demos\Device\LowLevel\CDC\LUFA CDC.inf"></File><File path="Demos\Device\LowLevel\CDC\makefile"></File></Folder><Folder name="DualCDC"><File path="Demos\Device\LowLevel\DualCDC\Descriptors.c"></File><File path="Demos\Device\LowLevel\DualCDC\Descriptors.h"></File><File path="Demos\Device\LowLevel\DualCDC\Doxygen.conf"></File><File path="Demos\Device\LowLevel\DualCDC\DualCDC.c"></File><File path="Demos\Device\LowLevel\DualCDC\DualCDC.h"></File><File path="Demos\Device\LowLevel\DualCDC\DualCDC.txt"></File><File path="Demos\Device\LowLevel\DualCDC\LUFA DualCDC.inf"></File><File path="Demos\Device\LowLevel\DualCDC\makefile"></File></Folder><Folder name="GenericHID"><File path="Demos\Device\LowLevel\GenericHID\Descriptors.c"></File><File path="Demos\Device\LowLevel\GenericHID\Descriptors.h"></File><File path="Demos\Device\LowLevel\GenericHID\Doxygen.conf"></File><File path="Demos\Device\LowLevel\GenericHID\GenericHID.c"></File><File path="Demos\Device\LowLevel\GenericHID\GenericHID.h"></File><File path="Demos\Device\LowLevel\GenericHID\GenericHID.txt"></File><File path="Demos\Device\LowLevel\GenericHID\makefile"></File></Folder><Folder name="Joystick"><File path="Demos\Device\LowLevel\Joystick\Descriptors.c"></File><File path="Demos\Device\LowLevel\Joystick\Descriptors.h"></File><File path="Demos\Device\LowLevel\Joystick\Doxygen.conf"></File><File path="Demos\Device\LowLevel\Joystick\Joystick.c"></File><File path="Demos\Device\LowLevel\Joystick\Joystick.h"></File><File path="Demos\Device\LowLevel\Joystick\Joystick.txt"></File><File path="Demos\Device\LowLevel\Joystick\makefile"></File></Folder><Folder name="Keyboard"><File path="Demos\Device\LowLevel\Keyboard\Descriptors.c"></File><File path="Demos\Device\LowLevel\Keyboard\Descriptors.h"></File><File path="Demos\Device\LowLevel\Keyboard\Doxygen.conf"></File><File path="Demos\Device\LowLevel\Keyboard\Keyboard.c"></File><File path="Demos\Device\LowLevel\Keyboard\Keyboard.h"></File><File path="Demos\Device\LowLevel\Keyboard\Keyboard.txt"></File><File path="Demos\Device\LowLevel\Keyboard\makefile"></File></Folder><Folder name="KeyboardMouse"><File path="Demos\Device\LowLevel\KeyboardMouse\Descriptors.c"></File><File path="Demos\Device\LowLevel\KeyboardMouse\Descriptors.h"></File><File path="Demos\Device\LowLevel\KeyboardMouse\Doxygen.conf"></File><File path="Demos\Device\LowLevel\KeyboardMouse\KeyboardMouse.c"></File><File path="Demos\Device\LowLevel\KeyboardMouse\KeyboardMouse.h"></File><File path="Demos\Device\LowLevel\KeyboardMouse\KeyboardMouse.txt"></File><File path="Demos\Device\LowLevel\KeyboardMouse\makefile"></File></Folder><Folder name="MassStorage"><Folder name="Lib"><File path="Demos\Device\LowLevel\MassStorage\Lib\DataflashManager.c"></File><File path="Demos\Device\LowLevel\MassStorage\Lib\DataflashManager.h"></File><File path="Demos\Device\LowLevel\MassStorage\Lib\SCSI.c"></File><File path="Demos\Device\LowLevel\MassStorage\Lib\SCSI.h"></File><File path="Demos\Device\LowLevel\MassStorage\Lib\SCSI_Codes.h"></File></Folder><File path="Demos\Device\LowLevel\MassStorage\Descriptors.c"></File><File path="Demos\Device\LowLevel\MassStorage\Descriptors.h"></File><File path="Demos\Device\LowLevel\MassStorage\Doxygen.conf"></File><File path="Demos\Device\LowLevel\MassStorage\makefile"></File><File path="Demos\Device\LowLevel\MassStorage\MassStorage.c"></File><File path="Demos\Device\LowLevel\MassStorage\MassStorage.h"></File><File path="Demos\Device\LowLevel\MassStorage\MassStorage.txt"></File></Folder><Folder name="MIDI"><File path="Demos\Device\LowLevel\MIDI\Descriptors.c"></File><File path="Demos\Device\LowLevel\MIDI\Descriptors.h"></File><File path="Demos\Device\LowLevel\MIDI\Doxygen.conf"></File><File path="Demos\Device\LowLevel\MIDI\makefile"></File><File path="Demos\Device\LowLevel\MIDI\MIDI.c"></File><File path="Demos\Device\LowLevel\MIDI\MI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xt"></File></Folder><File path="Demos\Host\LowLevel\makefile"></File></Folder><Folder name="Incomplete"><Folder name="BluetoothHost"><Folder name="Lib"><File path="Demos\Host\Incomplete\BluetoothHost\Lib\BluetoothACLPackets.c"></File><File path="Demos\Host\Incomplete\BluetoothHost\Lib\BluetoothACLPackets.h"></File><File path="Demos\Host\Incomplete\BluetoothHost\Lib\BluetoothClassCodes.h"></File><File path="Demos\Host\Incomplete\BluetoothHost\Lib\BluetoothHCICommands.c"></File><File path="Demos\Host\Incomplete\BluetoothHost\Lib\BluetoothHCICommands.h"></File><File path="Demos\Host\Incomplete\BluetoothHost\Lib\BluetoothStack.c"></File><File path="Demos\Host\Incomplete\BluetoothHost\Lib\BluetoothStack.h"></File></Folder><File path="Demos\Host\Incomplete\BluetoothHost\makefile"></File><File path="Demos\Host\Incomplete\BluetoothHost\BluetoothHost.c"></File><File path="Demos\Host\Incomplete\BluetoothHost\BluetoothHost.h"></File><File path="Demos\Host\Incomplete\BluetoothHost\ConfigDescriptor.c"></File><File path="Demos\Host\Incomplete\BluetoothHost\ConfigDescriptor.h"></File><File path="Demos\Host\Incomplete\BluetoothHost\DeviceDescriptor.c"></File><File path="Demos\Host\Incomplete\BluetoothHost\DeviceDescriptor.h"></File></Folder><Folder name="RNDISEthernetHost"><Folder name="Lib"><File path="Demos\Host\Incomplete\RNDISEthernetHost\Lib\RNDISCommands.c"></File><File path="Demos\Host\Incomplete\RNDISEthernetHost\Lib\RNDISCommands.h"></File><File path="Demos\Host\Incomplete\RNDISEthernetHost\Lib\RNDISConstants.h"></File></Folder><File path="Demos\Host\Incomplete\RNDISEthernetHost\ConfigDescriptor.c"></File><File path="Demos\Host\Incomplete\RNDISEthernetHost\ConfigDescriptor.h"></File><File path="Demos\Host\Incomplete\RNDISEthernetHost\makefile"></File><File path="Demos\Host\Incomplete\RNDISEthernetHost\RNDISEthernetHost.c"></File><File path="Demos\Host\Incomplete\RNDISEthernetHost\RNDISEthernetHost.h"></File></Folder></Folder><File path="Demos\Host\makefile"></File></Folder><Folder name="DualRole"><Folder name="ClassDriver"><Folder name="MouseHostDevice"><File path="Demos\DualRole\ClassDriver\MouseHostDevice\Doxygen.conf"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\makefile"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\MouseHostDevice.c"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\MouseHostDevice.h"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\Descriptors.c"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\Descriptors.h"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\DeviceFunctions.c"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\HostFunctions.c"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\HostFunctions.h"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\DeviceFunctions.h"></File><File path="Demos\DualRole\ClassDriver\MouseHostDevice\MouseHostDevice.txt"></File></Folder><File path="Demos\DualRole\ClassDriver\makefile"></File></Folder><File path="Demos\DualRole\makefile"></File></Folder><File path="Demos\makefile"></File></Folder><Folder name="LUFA"><Folder name="Common"><File path="LUFA\Common\Common.h"></File><File path="LUFA\Common\FunctionAttributes.h"></File><File path="LUFA\Common\BoardTypes.h"></File></Folder><Folder name="Drivers"><Folder name="USB"><Folder name="LowLevel"><Folder name="Template"><File path="LUFA\Drivers\USB\LowLevel\Template\Template_Endpoint_RW.c"></File><File path="LUFA\Drivers\USB\LowLevel\Template\Template_Endpoint_Control_R.c"></File><File path="LUFA\Drivers\USB\LowLevel\Template\Template_Endpoint_Control_W.c"></File><File path="LUFA\Drivers\USB\LowLevel\Template\Template_Pipe_RW.c"></File></Folder><File path="LUFA\Drivers\USB\LowLevel\HostChapter9.h"></File><File path="LUFA\Drivers\USB\LowLevel\LowLevel.c"></File><File path="LUFA\Drivers\USB\LowLevel\LowLevel.h"></File><File path="LUFA\Drivers\USB\LowLevel\Pipe.c"></File><File path="LUFA\Drivers\USB\LowLevel\Pipe.h"></File><File path="LUFA\Drivers\USB\LowLevel\DevChapter9.c"></File><File path="LUFA\Drivers\USB\LowLevel\DevChapter9.h"></File><File path="LUFA\Drivers\USB\LowLevel\Device.h"></File><File path="LUFA\Drivers\USB\LowLevel\Endpoint.c"></File><File path="LUFA\Drivers\USB\LowLevel\Endpoint.h"></File><File path="LUFA\Drivers\USB\LowLevel\Host.c"></File><File path="LUFA\Drivers\USB\LowLevel\Host.h"></File><File path="LUFA\Drivers\USB\LowLevel\HostChapter9.c"></File><File path="LUFA\Drivers\USB\LowLevel\OTG.h"></File></Folder><Folder name="HighLevel"><File path="LUFA\Drivers\USB\HighLevel\USBTask.h"></File><File path="LUFA\Drivers\USB\HighLevel\Events.c"></File><File path="LUFA\Drivers\USB\HighLevel\Events.h"></File><File path="LUFA\Drivers\USB\HighLevel\USBInterrupt.c"></File><File path="LUFA\Drivers\USB\HighLevel\USBInterrupt.h"></File><File path="LUFA\Drivers\USB\HighLevel\USBTask.c"></File><File path="LUFA\Drivers\USB\HighLevel\StdDescriptors.h"></File><File path="LUFA\Drivers\USB\HighLevel\StdRequestType.h"></File><File path="LUFA\Drivers\USB\HighLevel\StreamCallbacks.h"></File><File path="LUFA\Drivers\USB\HighLevel\USBMode.h"></File><File path="LUFA\Drivers\USB\HighLevel\ConfigDescriptor.c"></File><File path="LUFA\Drivers\USB\HighLevel\ConfigDescriptor.h"></File></Folder><Folder name="Class"><Folder name="Device"><File path="LUFA\Drivers\USB\Class\Device\HID.c"></File><File path="LUFA\Drivers\USB\Class\Device\HID.h"></File><File path="LUFA\Drivers\USB\Class\Device\CDC.c"></File><File path="LUFA\Drivers\USB\Class\Device\CDC.h"></File><File path="LUFA\Drivers\USB\Class\Device\RNDIS.c"></File><File path="LUFA\Drivers\USB\Class\Device\RNDIS.h"></File><File path="LUFA\Drivers\USB\Class\Device\RNDISConstants.h"></File><File path="LUFA\Drivers\USB\Class\Device\MassStorage.c"></File><File path="LUFA\Drivers\USB\Class\Device\MassStorage.h"></File><File path="LUFA\Drivers\USB\Class\Device\Audio.c"></File><File path="LUFA\Drivers\USB\Class\Device\Audio.h"></File><File path="LUFA\Drivers\USB\Class\Device\MIDI.c"></File><File path="LUFA\Drivers\USB\Class\Device\MIDI.h"></File></Folder><Folder name="Host"><File path="LUFA\Drivers\USB\Class\Host\HIDParser.c"></File><File path="LUFA\Drivers\USB\Class\Host\HIDParser.h"></File><File path="LUFA\Drivers\USB\Class\Host\HIDReportData.h"></File><File path="LUFA\Drivers\USB\Class\Host\CDC.c"></File><File path="LUFA\Drivers\USB\Class\Host\CDC.h"></File><File path="LUFA\Drivers\USB\Class\Host\HID.c"></File><File path="LUFA\Drivers\USB\Class\Host\HID.h"></File><File path="LUFA\Drivers\USB\Class\Host\MassStorage.c"></File><File path="LUFA\Drivers\USB\Class\Host\MassStorage.h"></File><File path="LUFA\Drivers\USB\Class\Host\StillImage.c"></File><File path="LUFA\Drivers\USB\Class\Host\StillImage.h"></File><File path="LUFA\Drivers\USB\Class\Host\MIDI.c"></File><File path="LUFA\Drivers\USB\Class\Host\MIDI.h"></File><File path="LUFA\Drivers\USB\Class\Host\Printer.c"></File><File path="LUFA\Drivers\USB\Class\Host\Printer.h"></File></Folder><Folder name="Common"><File path="LUFA\Drivers\USB\Class\Common\Audio.h"></File><File path="LUFA\Drivers\USB\Class\Common\CDC.h"></File><File path="LUFA\Drivers\USB\Class\Common\HID.h"></File><File path="LUFA\Drivers\USB\Class\Common\MassStorage.h"></File><File path="LUFA\Drivers\USB\Class\Common\MIDI.h"></File><File path="LUFA\Drivers\USB\Class\Common\RNDIS.h"></File><File path="LUFA\Drivers\USB\Class\Common\StillImage.h"></File><File path="LUFA\Drivers\USB\Class\Common\Printer.h"></File></Folder><File path="LUFA\Drivers\USB\Class\Audio.h"></File><File path="LUFA\Drivers\USB\Class\CDC.h"></File><File path="LUFA\Drivers\USB\Class\HID.h"></File><File path="LUFA\Drivers\USB\Class\MassStorage.h"></File><File path="LUFA\Drivers\USB\Class\MIDI.h"></File><File path="LUFA\Drivers\USB\Class\RNDIS.h"></File><File path="LUFA\Drivers\USB\Class\StillImage.h"></File><File path="LUFA\Drivers\USB\Class\Printer.h"></File></Folder><File path="LUFA\Drivers\USB\USB.h"></File></Folder><Folder name="Misc"><File path="LUFA\Drivers\Misc\TerminalCodes.h"></File></Folder><Folder name="Board"><Folder name="USBKEY"><File path="LUFA\Drivers\Board\USBKEY\Dataflash.h"></File><File path="LUFA\Drivers\Board\USBKEY\Joystick.h"></File><File path="LUFA\Drivers\Board\USBKEY\AT45DB642D.h"></File><File path="LUFA\Drivers\Board\USBKEY\LEDs.h"></File><File path="LUFA\Drivers\Board\USBKEY\Buttons.h"></File></Folder><Folder name="STK526"><File path="LUFA\Drivers\Board\STK526\Dataflash.h"></File><File path="LUFA\Drivers\Board\STK526\Joystick.h"></File><File path="LUFA\Drivers\Board\STK526\AT45DB642D.h"></File><File path="LUFA\Drivers\Board\STK526\LEDs.h"></File><File path="LUFA\Drivers\Board\STK526\Buttons.h"></File></Folder><Folder name="STK525"><File path="LUFA\Drivers\Board\STK525\Dataflash.h"></File><File path="LUFA\Drivers\Board\STK525\Joystick.h"></File><File path="LUFA\Drivers\Board\STK525\AT45DB321C.h"></File><File path="LUFA\Drivers\Board\STK525\LEDs.h"></File><File path="LUFA\Drivers\Board\STK525\Buttons.h"></File></Folder><Folder name="RZUSBSTICK"><File path="LUFA\Drivers\Board\RZUSBSTICK\LEDs.h"></File></Folder><Folder name="ATAVRUSBRF01"><File path="LUFA\Drivers\Board\ATAVRUSBRF01\LEDs.h"></File><File path="LUFA\Drivers\Board\ATAVRUSBRF01\Buttons.h"></File></Folder><Folder name="BUMBLEB"><File path="LUFA\Drivers\Board\BUMBLEB\Buttons.h"></File><File path="LUFA\Drivers\Board\BUMBLEB\Joystick.h"></File><File path="LUFA\Drivers\Board\BUMBLEB\LEDs.h"></File></Folder><Folder name="XPLAIN"><File path="LUFA\Drivers\Board\XPLAIN\LEDs.h"></File></Folder><File path="LUFA\Drivers\Board\Temperature.h"></File><File path="LUFA\Drivers\Board\Dataflash.h"></File><File path="LUFA\Drivers\Board\Joystick.h"></File><File path="LUFA\Drivers\Board\Temperature.c"></File><File path="LUFA\Drivers\Board\LEDs.h"></File><File path="LUFA\Drivers\Board\Buttons.h"></File></Folder><Folder name="Peripheral"><Folder name="AVRU4U6U7"><File path="LUFA\Drivers\Peripheral\AVRU4U6U7\ADC.h"></File></Folder><File path="LUFA\Drivers\Peripheral\ADC.h"></File><File path="LUFA\Drivers\Peripheral\Serial.c"></File><File path="LUFA\Drivers\Peripheral\Serial.h"></File><File path="LUFA\Drivers\Peripheral\SPI.h"></File><File path="LUFA\Drivers\Peripheral\SerialStream.c"></File><File path="LUFA\Drivers\Peripheral\SerialStream.h"></File></Folder></Folder><Folder name="DriverStubs"><File path="LUFA\DriverStubs\Dataflash.h"></File><File path="LUFA\DriverStubs\Joystick.h"></File><File path="LUFA\DriverStubs\LEDs.h"></File><File path="LUFA\DriverStubs\Buttons.h"></File></Folder><Folder name="ManPages"><File path="LUFA\ManPages\AboutLUFA.txt"></File><File path="LUFA\ManPages\BuildingLinkableLibraries.txt"></File><File path="LUFA\ManPages\ChangeLog.txt"></File><File path="LUFA\ManPages\CompileTimeTokens.txt"></File><File path="LUFA\ManPages\DevelopingWithLUFA.txt"></File><File path="LUFA\ManPages\DeviceSupport.txt"></File><File path="LUFA\ManPages\DirectorySummaries.txt"></File><File path="LUFA\ManPages\Donating.txt"></File><File path="LUFA\ManPages\FutureChanges.txt"></File><File path="LUFA\ManPages\GettingStarted.txt"></File><File path="LUFA\ManPages\Groups.txt"></File><File path="LUFA\ManPages\LibraryResources.txt"></File><File path="LUFA\ManPages\LUFAPoweredProjects.txt"></File><File path="LUFA\ManPages\MainPage.txt"></File><File path="LUFA\ManPages\MigrationInformation.txt"></File><File path="LUFA\ManPages\VIDAndPIDValues.txt"></File><File path="LUFA\ManPages\WritingBoardDrivers.txt"></File><File path="LUFA\ManPages\ConfiguringApps.txt"></File><File path="LUFA\ManPages\CompilingApps.txt"></File><File path="LUFA\ManPages\ProgrammingApps.txt"></File><File path="LUFA\ManPages\LibraryApps.txt"></File><File path="LUFA\ManPages\Licence.txt"></File><File path="LUFA\ManPages\WhyUseLUFA.txt"></File><File path="LUFA\ManPages\LUFAvsAtmelStack.txt"></File></Folder><Folder name="Scheduler"><File path="LUFA\Scheduler\Scheduler.c"></File><File path="LUFA\Scheduler\Scheduler.h"></File></Folder><File path="LUFA\makefile"></File><File path="LUFA\Version.h"></File><File path="LUFA\Doxygen.conf"></File></Folder><Folder name="Projects"><Folder name="AVRISP"><Folder name="Lib"><File path="Projects\AVRISP\Lib\V2Protocol.c"></File><File path="Projects\AVRISP\Lib\V2Protocol.h"></File><File path="Projects\AVRISP\Lib\V2ProtocolConstants.h"></File><File path="Projects\AVRISP\Lib\V2ProtocolParams.c"></File><File path="Projects\AVRISP\Lib\V2ProtocolParams.h"></File><File path="Projects\AVRISP\Lib\V2ProtocolTarget.c"></File><File path="Projects\AVRISP\Lib\V2ProtocolTarget.h"></File></Folder><File path="Projects\AVRISP\AVRISP.c"></File><File path="Projects\AVRISP\AVRISP.h"></File><File path="Projects\AVRISP\AVRISP.txt"></File><File path="Projects\AVRISP\Descriptors.c"></File><File path="Projects\AVRISP\Descriptors.h"></File><File path="Projects\AVRISP\Doxygen.conf"></File><File path="Projects\AVRISP\makefile"></File></Folder><Folder name="Benito"><Folder name="Board"><File path="Projects\Benito\Board\LEDs.h"></File></Folder><Folder name="Lib"><File path="Projects\Benito\Lib\RingBuff.c"></File><File path="Projects\Benito\Lib\RingBuff.h"></File></Folder><File path="Projects\Benito\Benito.c"></File><File path="Projects\Benito\Benito.h"></File><File path="Projects\Benito\Descriptors.c"></File><File path="Projects\Benito\Descriptors.h"></File><File path="Projects\Benito\Doxygen.conf"></File><File path="Projects\Benito\makefile"></File><File path="Projects\Benito\Benito.txt"></File><File path="Projects\Benito\Benito Programmer.inf"></File></Folder><Folder name="MagStripe"><Folder name="Lib"><File path="Projects\Magstripe\Lib\CircularBitBuffer.c"></File><File path="Projects\Magstripe\Lib\CircularBitBuffer.h"></File><File path="Projects\Magstripe\Lib\MagstripeHW.h"></File></Folder><File path="Projects\Magstripe\Descriptors.c"></File><File path="Projects\Magstripe\Descriptors.h"></File><File path="Projects\Magstripe\Magstripe.c"></File><File path="Projects\Magstripe\Magstripe.h"></File><File path="Projects\Magstripe\makefile"></File><File path="Projects\Magstripe\Magstripe.txt"></File><File path="Projects\Magstripe\Doxygen.conf"></File></Folder><Folder name="MissileLauncher"><File path="Projects\MissileLauncher\ConfigDescriptor.c"></File><File path="Projects\MissileLauncher\ConfigDescriptor.h"></File><File path="Projects\MissileLauncher\Doxygen.conf"></File><File path="Projects\MissileLauncher\makefile"></File><File path="Projects\MissileLauncher\MissileLauncher.c"></File><File path="Projects\MissileLauncher\MissileLauncher.h"></File><File path="Projects\MissileLauncher\MissileLauncher.txt"></File></Folder><Folder name="USBtoSerial"><Folder name="Lib"><File path="Projects\USBtoSerial\Lib\RingBuff.c"></File><File path="Projects\USBtoSerial\Lib\RingBuff.h"></File></Folder><File path="Projects\USBtoSerial\Descriptors.c"></File><File path="Projects\USBtoSerial\Descriptors.h"></File><File path="Projects\USBtoSerial\Doxygen.conf"></File><File path="Projects\USBtoSerial\LUFA USBtoSerial.inf"></File><File path="Projects\USBtoSerial\makefile"></File><File path="Projects\USBtoSerial\USBtoSerial.c"></File><File path="Projects\USBtoSerial\USBtoSerial.h"></File><File path="Projects\USBtoSerial\USBtoSerial.txt"></File></Folder><Folder name="Incomplete"><Folder name="StandaloneProgrammer"><Folder name="Lib"><Folder name="PetiteFATFs"><File path="Projects\Incomplete\StandaloneProgrammer\Lib\PetiteFATFs\diskio.c"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\PetiteFATFs\diskio.h"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\PetiteFATFs\integer.h"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\PetiteFATFs\pff.c"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\PetiteFATFs\pff.h"></File></Folder><File path="Projects\Incomplete\StandaloneProgrammer\Lib\DataflashManager.c"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\DataflashManager.h"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\SCSI.c"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\SCSI.h"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\ProgrammerConfig.c"></File><File path="Projects\Incomplete\StandaloneProgrammer\Lib\ProgrammerConfig.h"></File></Folder><File path="Projects\Incomplete\StandaloneProgrammer\Descriptors.c"></File><File path="Projects\Incomplete\StandaloneProgrammer\Descriptors.h"></File><File path="Projects\Incomplete\StandaloneProgrammer\makefile"></File><File path="Projects\Incomplete\StandaloneProgrammer\StandaloneProgrammer.c"></File><File path="Projects\Incomplete\StandaloneProgrammer\StandaloneProgrammer.h"></File></Folder></Folder><File path="Projects\makefile"></File></Folder><Folder name="Bootloaders"><Folder name="DFU"><File path="Bootloaders\DFU\BootloaderDFU.c"></File><File path="Bootloaders\DFU\BootloaderDFU.h"></File><File path="Bootloaders\DFU\Descriptors.c"></File><File path="Bootloaders\DFU\Descriptors.h"></File><File path="Bootloaders\DFU\makefile"></File><File path="Bootloaders\DFU\BootloaderDFU.txt"></File><File path="Bootloaders\DFU\Doxygen.conf"></File></Folder><Folder name="CDC"><File path="Bootloaders\CDC\BootloaderCDC.c"></File><File path="Bootloaders\CDC\BootloaderCDC.h"></File><File path="Bootloaders\CDC\Descriptors.c"></File><File path="Bootloaders\CDC\Descriptors.h"></File><File path="Bootloaders\CDC\makefile"></File><File path="Bootloaders\CDC\LUFA CDC Bootloader.inf"></File><File path="Bootloaders\CDC\Doxygen.conf"></File><File path="Bootloaders\CDC\BootloaderCDC.txt"></File></Folder><Folder name="TeensyHID"><File path="Bootloaders\TeensyHID\Descriptors.c"></File><File path="Bootloaders\TeensyHID\Descriptors.h"></File><File path="Bootloaders\TeensyHID\makefile"></File><File path="Bootloaders\TeensyHID\TeensyHID.c"></File><File path="Bootloaders\TeensyHID\TeensyHID.h"></File><File path="Bootloaders\TeensyHID\TeensyHID.txt"></File></Folder><Folder name="Incomplete"><Folder name="MIDI"><Folder name="JavaHost"><File path="Bootloaders\Incomplete\MIDI\JavaHost\BIN2BOOT.java"></File><File path="Bootloaders\Incomplete\MIDI\JavaHost\MIDIMessageReceiver.java"></File></Folder><File path="Bootloaders\Incomplete\MIDI\BootloaderMIDI.c"></File><File path="Bootloaders\Incomplete\MIDI\BootloaderMIDI.h"></File><File path="Bootloaders\Incomplete\MIDI\Descriptors.c"></File><File path="Bootloaders\Incomplete\MIDI\Descriptors.h"></File><File path="Bootloaders\Incomplete\MIDI\Doxygen.conf"></File><File path="Bootloaders\Incomplete\MIDI\makefile"></File><File path="Bootloaders\Incomplete\MIDI\MIDI.c"></File></Folder></Folder><File path="Bootloaders\makefile"></File></Folder><File path="makefile"></File><File path="README.txt"></File></Project>
\ No newline at end of file
index d53b12f..f303317 100644 (file)
                #define HID_NON_BOOT_PROTOCOL        0x00\r
 \r
                /** Constant for the protocol value of a HID interface descriptor, indicating that the interface supports the\r
                #define HID_NON_BOOT_PROTOCOL        0x00\r
 \r
                /** Constant for the protocol value of a HID interface descriptor, indicating that the interface supports the\r
-                *  HID class Mouse boot protocol (see HID Class Specification).\r
-                */\r
-               #define HID_BOOT_MOUSE_PROTOCOL      0x02\r
-               \r
-               /** Constant for the protocol value of a HID interface descriptor, indicating that the interface supports the\r
                 *  HID class Keyboard boot protocol (see HID Class Specification).\r
                 */\r
                #define HID_BOOT_KEYBOARD_PROTOCOL   0x01\r
 \r
                 *  HID class Keyboard boot protocol (see HID Class Specification).\r
                 */\r
                #define HID_BOOT_KEYBOARD_PROTOCOL   0x01\r
 \r
+               /** Constant for the protocol value of a HID interface descriptor, indicating that the interface supports the\r
+                *  HID class Mouse boot protocol (see HID Class Specification).\r
+                */\r
+               #define HID_BOOT_MOUSE_PROTOCOL      0x02\r
+\r
        /* Type Defines: */\r
                /** Enum for the different types of HID reports. */\r
                enum HID_ReportItemTypes_t\r
        /* Type Defines: */\r
                /** Enum for the different types of HID reports. */\r
                enum HID_ReportItemTypes_t\r
index 5598473..20caca0 100644 (file)
@@ -29,6 +29,7 @@
   *  - Make new demos\r
   *      -# Keyboard/Mouse Dual Class Host\r
   *      -# Multiple-Report HID device\r
   *  - Make new demos\r
   *      -# Keyboard/Mouse Dual Class Host\r
   *      -# Multiple-Report HID device\r
+  *      -# Device/Host bridge\r
   *  - Port LUFA codebase\r
   *      -# AVR32 UC3B series microcontrollers\r
   *      -# Atmel ARM7 series microcontrollers\r
   *  - Port LUFA codebase\r
   *      -# AVR32 UC3B series microcontrollers\r
   *      -# Atmel ARM7 series microcontrollers\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Descriptors.c b/Projects/Incomplete/StandaloneProgrammer/Descriptors.c
new file mode 100644 (file)
index 0000000..71198e0
--- /dev/null
@@ -0,0 +1,325 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ *  USB Device Descriptors, for library use when in USB device mode. Descriptors are special \r
+ *  computer-readable structures which the host requests upon device enumeration, to determine\r
+ *  the device's capabilities and functions.  \r
+ */\r
+\r
+#include "Descriptors.h"\r
+\r
+/* On some devices, there is a factory set internal serial number which can be automatically sent to the host as\r
+ * the device's serial number when the Device Descriptor's .SerialNumStrIndex entry is set to USE_INTERNAL_SERIAL.\r
+ * This allows the host to track a device across insertions on different ports, allowing them to retain allocated\r
+ * resources like COM port numbers and drivers. On demos using this feature, give a warning on unsupported devices\r
+ * so that the user can supply their own serial number descriptor instead or remove the USE_INTERNAL_SERIAL value\r
+ * from the Device Descriptor (forcing the host to generate a serial number for each device from the VID, PID and\r
+ * port location).\r
+ */\r
+#if (USE_INTERNAL_SERIAL == NO_DESCRIPTOR)\r
+       #warning USE_INTERNAL_SERIAL is not available on this AVR - please manually construct a device serial descriptor.\r
+#endif\r
+\r
+/** Device descriptor structure. This descriptor, located in FLASH memory, describes the overall\r
+ *  device characteristics, including the supported USB version, control endpoint size and the\r
+ *  number of device configurations. The descriptor is read out by the USB host when the enumeration\r
+ *  process begins.\r
+ */\r
+USB_Descriptor_Device_t PROGMEM DeviceDescriptor =\r
+{\r
+       .Header                 = {.Size = sizeof(USB_Descriptor_Device_t), .Type = DTYPE_Device},\r
+               \r
+       .USBSpecification       = VERSION_BCD(01.10),\r
+       .Class                  = 0xEF,\r
+       .SubClass               = 0x02,\r
+       .Protocol               = 0x01,\r
+                               \r
+       .Endpoint0Size          = FIXED_CONTROL_ENDPOINT_SIZE,\r
+               \r
+       .VendorID               = 0x03EB,\r
+       .ProductID              = 0x2063,\r
+       .ReleaseNumber          = 0x0000,\r
+               \r
+       .ManufacturerStrIndex   = 0x01,\r
+       .ProductStrIndex        = 0x02,\r
+       .SerialNumStrIndex      = USE_INTERNAL_SERIAL,\r
+               \r
+       .NumberOfConfigurations = FIXED_NUM_CONFIGURATIONS\r
+};\r
+\r
+/** Configuration descriptor structure. This descriptor, located in FLASH memory, describes the usage\r
+ *  of the device in one of its supported configurations, including information about any device interfaces\r
+ *  and endpoints. The descriptor is read out by the USB host during the enumeration process when selecting\r
+ *  a configuration so that the host may correctly communicate with the USB device.\r
+ */\r
+USB_Descriptor_Configuration_t PROGMEM ConfigurationDescriptor =\r
+{\r
+       .Config = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Configuration_Header_t), .Type = DTYPE_Configuration},\r
+\r
+                       .TotalConfigurationSize = sizeof(USB_Descriptor_Configuration_t),\r
+                       .TotalInterfaces        = 3,\r
+                               \r
+                       .ConfigurationNumber    = 1,\r
+                       .ConfigurationStrIndex  = NO_DESCRIPTOR,\r
+                               \r
+                       .ConfigAttributes       = USB_CONFIG_ATTR_BUSPOWERED,\r
+                       \r
+                       .MaxPowerConsumption    = USB_CONFIG_POWER_MA(100)\r
+               },\r
+               \r
+       .CDC_IAD = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Interface_Association_t), .Type = DTYPE_InterfaceAssociation},\r
+\r
+                       .FirstInterfaceIndex    = 0,\r
+                       .TotalInterfaces        = 2,\r
+\r
+                       .Class                  = 0x02,\r
+                       .SubClass               = 0x02,\r
+                       .Protocol               = 0x01,\r
+\r
+                       .IADStrIndex            = NO_DESCRIPTOR\r
+               },\r
+\r
+       .CCI_Interface = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Interface_t), .Type = DTYPE_Interface},\r
+\r
+                       .InterfaceNumber        = 0,\r
+                       .AlternateSetting       = 0,\r
+                       \r
+                       .TotalEndpoints         = 1,\r
+                       \r
+                       .Class                  = 0x02,\r
+                       .SubClass               = 0x02,\r
+                       .Protocol               = 0x01,\r
+                       \r
+                       .InterfaceStrIndex      = NO_DESCRIPTOR\r
+               },\r
+\r
+       .CDC_Functional_IntHeader = \r
+               {\r
+                       .Header                 = {.Size = sizeof(CDC_FUNCTIONAL_DESCRIPTOR(2)), .Type = 0x24},\r
+                       .SubType                = 0x00,\r
+                       \r
+                       .Data                   = {0x01, 0x10}\r
+               },\r
+\r
+       .CDC_Functional_CallManagement = \r
+               {\r
+                       .Header                 = {.Size = sizeof(CDC_FUNCTIONAL_DESCRIPTOR(2)), .Type = 0x24},\r
+                       .SubType                = 0x01,\r
+                       \r
+                       .Data                   = {0x03, 0x01}\r
+               },\r
+\r
+       .CDC_Functional_AbstractControlManagement = \r
+               {\r
+                       .Header                 = {.Size = sizeof(CDC_FUNCTIONAL_DESCRIPTOR(1)), .Type = 0x24},\r
+                       .SubType                = 0x02,\r
+                       \r
+                       .Data                   = {0x06}\r
+               },\r
+               \r
+       .CDC_Functional_Union = \r
+               {\r
+                       .Header                 = {.Size = sizeof(CDC_FUNCTIONAL_DESCRIPTOR(2)), .Type = 0x24},\r
+                       .SubType                = 0x06,\r
+                       \r
+                       .Data                   = {0x00, 0x01}\r
+               },\r
+\r
+       .ManagementEndpoint = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Endpoint_t), .Type = DTYPE_Endpoint},\r
+                       \r
+                       .EndpointAddress        = (ENDPOINT_DESCRIPTOR_DIR_IN | CDC_NOTIFICATION_EPNUM),\r
+                       .Attributes             = (EP_TYPE_INTERRUPT | ENDPOINT_ATTR_NO_SYNC | ENDPOINT_USAGE_DATA),\r
+                       .EndpointSize           = CDC_NOTIFICATION_EPSIZE,\r
+                       .PollingIntervalMS      = 0xFF\r
+               },\r
+\r
+       .DCI_Interface = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Interface_t), .Type = DTYPE_Interface},\r
+\r
+                       .InterfaceNumber        = 1,\r
+                       .AlternateSetting       = 0,\r
+                       \r
+                       .TotalEndpoints         = 2,\r
+                               \r
+                       .Class                  = 0x0A,\r
+                       .SubClass               = 0x00,\r
+                       .Protocol               = 0x00,\r
+                               \r
+                       .InterfaceStrIndex      = NO_DESCRIPTOR\r
+               },\r
+\r
+       .DataOutEndpoint = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Endpoint_t), .Type = DTYPE_Endpoint},\r
+                       \r
+                       .EndpointAddress        = (ENDPOINT_DESCRIPTOR_DIR_OUT | CDC_RX_EPNUM),\r
+                       .Attributes             = (EP_TYPE_BULK | ENDPOINT_ATTR_NO_SYNC | ENDPOINT_USAGE_DATA),\r
+                       .EndpointSize           = CDC_TXRX_EPSIZE,\r
+                       .PollingIntervalMS      = 0x00\r
+               },\r
+               \r
+       .DataInEndpoint = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Endpoint_t), .Type = DTYPE_Endpoint},\r
+                       \r
+                       .EndpointAddress        = (ENDPOINT_DESCRIPTOR_DIR_IN | CDC_TX_EPNUM),\r
+                       .Attributes             = (EP_TYPE_BULK | ENDPOINT_ATTR_NO_SYNC | ENDPOINT_USAGE_DATA),\r
+                       .EndpointSize           = CDC_TXRX_EPSIZE,\r
+                       .PollingIntervalMS      = 0x00\r
+               },\r
+\r
+       .MSInterface = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Interface_t), .Type = DTYPE_Interface},\r
+\r
+                       .InterfaceNumber        = 2,\r
+                       .AlternateSetting       = 0,\r
+                       \r
+                       .TotalEndpoints         = 2,\r
+                               \r
+                       .Class                  = 0x08,\r
+                       .SubClass               = 0x06,\r
+                       .Protocol               = 0x50,\r
+                               \r
+                       .InterfaceStrIndex      = NO_DESCRIPTOR\r
+               },\r
+\r
+       .MSDataInEndpoint = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Endpoint_t), .Type = DTYPE_Endpoint},\r
+\r
+                       .EndpointAddress        = (ENDPOINT_DESCRIPTOR_DIR_IN | MASS_STORAGE_IN_EPNUM),\r
+                       .Attributes             = (EP_TYPE_BULK | ENDPOINT_ATTR_NO_SYNC | ENDPOINT_USAGE_DATA),\r
+                       .EndpointSize           = MASS_STORAGE_IO_EPSIZE,\r
+                       .PollingIntervalMS      = 0x00\r
+               },\r
+\r
+       .MSDataOutEndpoint = \r
+               {\r
+                       .Header                 = {.Size = sizeof(USB_Descriptor_Endpoint_t), .Type = DTYPE_Endpoint},\r
+\r
+                       .EndpointAddress        = (ENDPOINT_DESCRIPTOR_DIR_OUT | MASS_STORAGE_OUT_EPNUM),\r
+                       .Attributes             = (EP_TYPE_BULK | ENDPOINT_ATTR_NO_SYNC | ENDPOINT_USAGE_DATA),\r
+                       .EndpointSize           = MASS_STORAGE_IO_EPSIZE,\r
+                       .PollingIntervalMS      = 0x00\r
+               }\r
+};\r
+\r
+/** Language descriptor structure. This descriptor, located in FLASH memory, is returned when the host requests\r
+ *  the string descriptor with index 0 (the first index). It is actually an array of 16-bit integers, which indicate\r
+ *  via the language ID table available at USB.org what languages the device supports for its string descriptors.\r
+ */\r
+USB_Descriptor_String_t PROGMEM LanguageString =\r
+{\r
+       .Header                 = {.Size = USB_STRING_LEN(1), .Type = DTYPE_String},\r
+               \r
+       .UnicodeString          = {LANGUAGE_ID_ENG}\r
+};\r
+\r
+/** Manufacturer descriptor string. This is a Unicode string containing the manufacturer's details in human readable\r
+ *  form, and is read out upon request by the host when the appropriate string ID is requested, listed in the Device\r
+ *  Descriptor.\r
+ */\r
+USB_Descriptor_String_t PROGMEM ManufacturerString =\r
+{\r
+       .Header                 = {.Size = USB_STRING_LEN(11), .Type = DTYPE_String},\r
+               \r
+       .UnicodeString          = L"Dean Camera"\r
+};\r
+\r
+/** Product descriptor string. This is a Unicode string containing the product's details in human readable form,\r
+ *  and is read out upon request by the host when the appropriate string ID is requested, listed in the Device\r
+ *  Descriptor.\r
+ */\r
+USB_Descriptor_String_t PROGMEM ProductString =\r
+{\r
+       .Header                 = {.Size = USB_STRING_LEN(26), .Type = DTYPE_String},\r
+               \r
+       .UnicodeString          = L"LUFA Standalone Programmer"\r
+};\r
+\r
+/** This function is called by the library when in device mode, and must be overridden (see library "USB Descriptors"\r
+ *  documentation) by the application code so that the address and size of a requested descriptor can be given\r
+ *  to the USB library. When the device receives a Get Descriptor request on the control endpoint, this function\r
+ *  is called so that the descriptor details can be passed back and the appropriate descriptor sent back to the\r
+ *  USB host.\r
+ */\r
+uint16_t CALLBACK_USB_GetDescriptor(const uint16_t wValue, const uint8_t wIndex, void** const DescriptorAddress)\r
+{\r
+       const uint8_t  DescriptorType   = (wValue >> 8);\r
+       const uint8_t  DescriptorNumber = (wValue & 0xFF);\r
+\r
+       void*    Address = NULL;\r
+       uint16_t Size    = NO_DESCRIPTOR;\r
+\r
+       switch (DescriptorType)\r
+       {\r
+               case DTYPE_Device: \r
+                       Address = (void*)&DeviceDescriptor;\r
+                       Size    = sizeof(USB_Descriptor_Device_t);\r
+                       break;\r
+               case DTYPE_Configuration: \r
+                       Address = (void*)&ConfigurationDescriptor;\r
+                       Size    = sizeof(USB_Descriptor_Configuration_t);\r
+                       break;\r
+               case DTYPE_String: \r
+                       switch (DescriptorNumber)\r
+                       {\r
+                               case 0x00: \r
+                                       Address = (void*)&LanguageString;\r
+                                       Size    = pgm_read_byte(&LanguageString.Header.Size);\r
+                                       break;\r
+                               case 0x01: \r
+                                       Address = (void*)&ManufacturerString;\r
+                                       Size    = pgm_read_byte(&ManufacturerString.Header.Size);\r
+                                       break;\r
+                               case 0x02: \r
+                                       Address = (void*)&ProductString;\r
+                                       Size    = pgm_read_byte(&ProductString.Header.Size);\r
+                                       break;\r
+                       }\r
+                       \r
+                       break;\r
+       }\r
+       \r
+       *DescriptorAddress = Address;\r
+       return Size;\r
+}\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Descriptors.h b/Projects/Incomplete/StandaloneProgrammer/Descriptors.h
new file mode 100644 (file)
index 0000000..1f2627b
--- /dev/null
@@ -0,0 +1,98 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ *  Header file for Descriptors.c.\r
+ */\r
\r
+#ifndef _DESCRIPTORS_H_\r
+#define _DESCRIPTORS_H_\r
+\r
+       /* Includes: */\r
+               #include <avr/pgmspace.h>\r
+\r
+               #include <LUFA/Drivers/USB/USB.h>\r
+               #include <LUFA/Drivers/USB/Class/MassStorage.h>\r
+               #include <LUFA/Drivers/USB/Class/CDC.h>\r
+\r
+       /* Macros: */\r
+               /** Endpoint number of the CDC device-to-host notification IN endpoint. */\r
+               #define CDC_NOTIFICATION_EPNUM         5\r
+\r
+               /** Endpoint number of the CDC device-to-host data IN endpoint. */\r
+               #define CDC_TX_EPNUM                   1\r
+\r
+               /** Endpoint number of the CDC host-to-device data OUT endpoint. */\r
+               #define CDC_RX_EPNUM                   2\r
+\r
+               /** Size in bytes of the CDC device-to-host notification IN endpoint. */\r
+               #define CDC_NOTIFICATION_EPSIZE        8\r
+\r
+               /** Size in bytes of the CDC data IN and OUT endpoints. */\r
+               #define CDC_TXRX_EPSIZE                16\r
+\r
+               /** Endpoint number of the Mass Storage device-to-host data IN endpoint. */\r
+               #define MASS_STORAGE_IN_EPNUM          3        \r
+\r
+               /** Endpoint number of the Mass Storage host-to-device data OUT endpoint. */\r
+               #define MASS_STORAGE_OUT_EPNUM         4        \r
+\r
+               /** Size in bytes of the Mass Storage data endpoints. */\r
+               #define MASS_STORAGE_IO_EPSIZE         64\r
+               \r
+       /* Type Defines: */             \r
+               /** Type define for the device configuration descriptor structure. This must be defined in the\r
+                *  application code, as the configuration descriptor contains several sub-descriptors which\r
+                *  vary between devices, and which describe the device's usage to the host.\r
+                */\r
+               typedef struct\r
+               {\r
+                       USB_Descriptor_Configuration_Header_t    Config;\r
+                       USB_Descriptor_Interface_Association_t   CDC_IAD;\r
+                       USB_Descriptor_Interface_t               CCI_Interface;\r
+                       CDC_FUNCTIONAL_DESCRIPTOR(2)             CDC_Functional_IntHeader;\r
+                       CDC_FUNCTIONAL_DESCRIPTOR(2)             CDC_Functional_CallManagement;\r
+                       CDC_FUNCTIONAL_DESCRIPTOR(1)             CDC_Functional_AbstractControlManagement;\r
+                       CDC_FUNCTIONAL_DESCRIPTOR(2)             CDC_Functional_Union;\r
+                       USB_Descriptor_Endpoint_t                ManagementEndpoint;\r
+                       USB_Descriptor_Interface_t               DCI_Interface;\r
+                       USB_Descriptor_Endpoint_t                DataOutEndpoint;\r
+                       USB_Descriptor_Endpoint_t                DataInEndpoint;\r
+                       USB_Descriptor_Interface_t               MSInterface;\r
+                       USB_Descriptor_Endpoint_t                MSDataInEndpoint;\r
+                       USB_Descriptor_Endpoint_t                MSDataOutEndpoint;\r
+               } USB_Descriptor_Configuration_t;\r
+               \r
+       /* Function Prototypes: */\r
+               uint16_t CALLBACK_USB_GetDescriptor(const uint16_t wValue, const uint8_t wIndex, void** const DescriptorAddress)\r
+                                                                                       ATTR_WARN_UNUSED_RESULT ATTR_NON_NULL_PTR_ARG(3);\r
+\r
+#endif\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/DataflashManager.c b/Projects/Incomplete/StandaloneProgrammer/Lib/DataflashManager.c
new file mode 100644 (file)
index 0000000..6646278
--- /dev/null
@@ -0,0 +1,525 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ *  Functions to manage the physical dataflash media, including reading and writing of\r
+ *  blocks of data. These functions are called by the SCSI layer when data must be stored\r
+ *  or retrieved to/from the physical storage media. If a different media is used (such\r
+ *  as a SD card or EEPROM), functions similar to these will need to be generated.\r
+ */\r
+\r
+#define  INCLUDE_FROM_DATAFLASHMANAGER_C\r
+#include "DataflashManager.h"\r
+\r
+/** Writes blocks (OS blocks, not Dataflash pages) to the storage medium, the board dataflash IC(s), from\r
+ *  the pre-selected data OUT endpoint. This routine reads in OS sized blocks from the endpoint and writes\r
+ *  them to the dataflash in Dataflash page sized blocks.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to a structure containing a Mass Storage Class configuration and state\r
+ *  \param[in] BlockAddress  Data block starting address for the write sequence\r
+ *  \param[in] TotalBlocks   Number of blocks of data to write\r
+ */\r
+void DataflashManager_WriteBlocks(USB_ClassInfo_MS_Device_t* MSInterfaceInfo, const uint32_t BlockAddress, uint16_t TotalBlocks)\r
+{\r
+       uint16_t CurrDFPage          = ((BlockAddress * VIRTUAL_MEMORY_BLOCK_SIZE) / DATAFLASH_PAGE_SIZE);\r
+       uint16_t CurrDFPageByte      = ((BlockAddress * VIRTUAL_MEMORY_BLOCK_SIZE) % DATAFLASH_PAGE_SIZE);\r
+       uint8_t  CurrDFPageByteDiv16 = (CurrDFPageByte >> 4);\r
+       bool     UsingSecondBuffer   = false;\r
+\r
+       /* Select the correct starting Dataflash IC for the block requested */\r
+       Dataflash_SelectChipFromPage(CurrDFPage);\r
+\r
+#if (DATAFLASH_PAGE_SIZE > VIRTUAL_MEMORY_BLOCK_SIZE)\r
+       /* Copy selected dataflash's current page contents to the dataflash buffer */\r
+       Dataflash_SendByte(DF_CMD_MAINMEMTOBUFF1);\r
+       Dataflash_SendAddressBytes(CurrDFPage, 0);\r
+       Dataflash_WaitWhileBusy();\r
+#endif\r
+\r
+       /* Send the dataflash buffer write command */\r
+       Dataflash_SendByte(DF_CMD_BUFF1WRITE);\r
+       Dataflash_SendAddressBytes(0, CurrDFPageByte);\r
+\r
+       /* Wait until endpoint is ready before continuing */\r
+       if (Endpoint_WaitUntilReady())\r
+         return;\r
+\r
+       while (TotalBlocks)\r
+       {\r
+               uint8_t BytesInBlockDiv16 = 0;\r
+               \r
+               /* Write an endpoint packet sized data block to the dataflash */\r
+               while (BytesInBlockDiv16 < (VIRTUAL_MEMORY_BLOCK_SIZE >> 4))\r
+               {\r
+                       /* Check if the endpoint is currently empty */\r
+                       if (!(Endpoint_IsReadWriteAllowed()))\r
+                       {\r
+                               /* Clear the current endpoint bank */\r
+                               Endpoint_ClearOUT();\r
+                               \r
+                               /* Wait until the host has sent another packet */\r
+                               if (Endpoint_WaitUntilReady())\r
+                                 return;\r
+                       }\r
+\r
+                       /* Check if end of dataflash page reached */\r
+                       if (CurrDFPageByteDiv16 == (DATAFLASH_PAGE_SIZE >> 4))\r
+                       {\r
+                               /* Write the dataflash buffer contents back to the dataflash page */\r
+                               Dataflash_WaitWhileBusy();\r
+                               Dataflash_SendByte(UsingSecondBuffer ? DF_CMD_BUFF2TOMAINMEMWITHERASE : DF_CMD_BUFF1TOMAINMEMWITHERASE);\r
+                               Dataflash_SendAddressBytes(CurrDFPage, 0);\r
+\r
+                               /* Reset the dataflash buffer counter, increment the page counter */\r
+                               CurrDFPageByteDiv16 = 0;\r
+                               CurrDFPage++;\r
+\r
+                               /* Once all the dataflash ICs have had their first buffers filled, switch buffers to maintain throughput */\r
+                               if (Dataflash_GetSelectedChip() == DATAFLASH_CHIP_MASK(DATAFLASH_TOTALCHIPS))\r
+                                 UsingSecondBuffer = !(UsingSecondBuffer);\r
+\r
+                               /* Select the next dataflash chip based on the new dataflash page index */\r
+                               Dataflash_SelectChipFromPage(CurrDFPage);\r
+\r
+#if (DATAFLASH_PAGE_SIZE > VIRTUAL_MEMORY_BLOCK_SIZE)\r
+                               /* If less than one dataflash page remaining, copy over the existing page to preserve trailing data */\r
+                               if ((TotalBlocks * (VIRTUAL_MEMORY_BLOCK_SIZE >> 4)) < (DATAFLASH_PAGE_SIZE >> 4))\r
+                               {\r
+                                       /* Copy selected dataflash's current page contents to the dataflash buffer */\r
+                                       Dataflash_WaitWhileBusy();\r
+                                       Dataflash_SendByte(UsingSecondBuffer ? DF_CMD_MAINMEMTOBUFF2 : DF_CMD_MAINMEMTOBUFF1);\r
+                                       Dataflash_SendAddressBytes(CurrDFPage, 0);\r
+                                       Dataflash_WaitWhileBusy();\r
+                               }\r
+#endif\r
+\r
+                               /* Send the dataflash buffer write command */\r
+                               Dataflash_SendByte(UsingSecondBuffer ? DF_CMD_BUFF2WRITE : DF_CMD_BUFF1WRITE);\r
+                               Dataflash_SendAddressBytes(0, 0);                               \r
+                       }\r
+\r
+                       /* Write one 16-byte chunk of data to the dataflash */\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       Dataflash_SendByte(Endpoint_Read_Byte());\r
+                       \r
+                       /* Increment the dataflash page 16 byte block counter */\r
+                       CurrDFPageByteDiv16++;\r
+\r
+                       /* Increment the block 16 byte block counter */\r
+                       BytesInBlockDiv16++;\r
+\r
+                       /* Check if the current command is being aborted by the host */\r
+                       if (MSInterfaceInfo->State.IsMassStoreReset)\r
+                         return;                       \r
+               }\r
+                       \r
+               /* Decrement the blocks remaining counter and reset the sub block counter */\r
+               TotalBlocks--;\r
+       }\r
+\r
+       /* Write the dataflash buffer contents back to the dataflash page */\r
+       Dataflash_WaitWhileBusy();\r
+       Dataflash_SendByte(UsingSecondBuffer ? DF_CMD_BUFF2TOMAINMEMWITHERASE : DF_CMD_BUFF1TOMAINMEMWITHERASE);\r
+       Dataflash_SendAddressBytes(CurrDFPage, 0x00);\r
+       Dataflash_WaitWhileBusy();\r
+\r
+       /* If the endpoint is empty, clear it ready for the next packet from the host */\r
+       if (!(Endpoint_IsReadWriteAllowed()))\r
+         Endpoint_ClearOUT();\r
+\r
+       /* Deselect all dataflash chips */\r
+       Dataflash_DeselectChip();\r
+}\r
+\r
+/** Reads blocks (OS blocks, not Dataflash pages) from the storage medium, the board dataflash IC(s), into\r
+ *  the pre-selected data IN endpoint. This routine reads in Dataflash page sized blocks from the Dataflash\r
+ *  and writes them in OS sized blocks to the endpoint.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to a structure containing a Mass Storage Class configuration and state\r
+ *  \param[in] BlockAddress  Data block starting address for the read sequence\r
+ *  \param[in] TotalBlocks   Number of blocks of data to read\r
+ */\r
+void DataflashManager_ReadBlocks(USB_ClassInfo_MS_Device_t* MSInterfaceInfo, const uint32_t BlockAddress, uint16_t TotalBlocks)\r
+{\r
+       uint16_t CurrDFPage          = ((BlockAddress * VIRTUAL_MEMORY_BLOCK_SIZE) / DATAFLASH_PAGE_SIZE);\r
+       uint16_t CurrDFPageByte      = ((BlockAddress * VIRTUAL_MEMORY_BLOCK_SIZE) % DATAFLASH_PAGE_SIZE);\r
+       uint8_t  CurrDFPageByteDiv16 = (CurrDFPageByte >> 4);\r
+\r
+       /* Select the correct starting Dataflash IC for the block requested */\r
+       Dataflash_SelectChipFromPage(CurrDFPage);\r
+\r
+       /* Send the dataflash main memory page read command */\r
+       Dataflash_SendByte(DF_CMD_MAINMEMPAGEREAD);\r
+       Dataflash_SendAddressBytes(CurrDFPage, CurrDFPageByte);\r
+       Dataflash_SendByte(0x00);\r
+       Dataflash_SendByte(0x00);\r
+       Dataflash_SendByte(0x00);\r
+       Dataflash_SendByte(0x00);\r
+       \r
+       /* Wait until endpoint is ready before continuing */\r
+       if (Endpoint_WaitUntilReady())\r
+         return;\r
+       \r
+       while (TotalBlocks)\r
+       {\r
+               uint8_t BytesInBlockDiv16 = 0;\r
+               \r
+               /* Write an endpoint packet sized data block to the dataflash */\r
+               while (BytesInBlockDiv16 < (VIRTUAL_MEMORY_BLOCK_SIZE >> 4))\r
+               {\r
+                       /* Check if the endpoint is currently full */\r
+                       if (!(Endpoint_IsReadWriteAllowed()))\r
+                       {\r
+                               /* Clear the endpoint bank to send its contents to the host */\r
+                               Endpoint_ClearIN();\r
+                               \r
+                               /* Wait until the endpoint is ready for more data */\r
+                               if (Endpoint_WaitUntilReady())\r
+                                 return;\r
+                       }\r
+                       \r
+                       /* Check if end of dataflash page reached */\r
+                       if (CurrDFPageByteDiv16 == (DATAFLASH_PAGE_SIZE >> 4))\r
+                       {\r
+                               /* Reset the dataflash buffer counter, increment the page counter */\r
+                               CurrDFPageByteDiv16 = 0;\r
+                               CurrDFPage++;\r
+\r
+                               /* Select the next dataflash chip based on the new dataflash page index */\r
+                               Dataflash_SelectChipFromPage(CurrDFPage);\r
+                               \r
+                               /* Send the dataflash main memory page read command */\r
+                               Dataflash_SendByte(DF_CMD_MAINMEMPAGEREAD);\r
+                               Dataflash_SendAddressBytes(CurrDFPage, 0);\r
+                               Dataflash_SendByte(0x00);\r
+                               Dataflash_SendByte(0x00);\r
+                               Dataflash_SendByte(0x00);\r
+                               Dataflash_SendByte(0x00);\r
+                       }       \r
+\r
+                       /* Read one 16-byte chunk of data from the dataflash */\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       Endpoint_Write_Byte(Dataflash_ReceiveByte());\r
+                       \r
+                       /* Increment the dataflash page 16 byte block counter */\r
+                       CurrDFPageByteDiv16++;\r
+                       \r
+                       /* Increment the block 16 byte block counter */\r
+                       BytesInBlockDiv16++;\r
+\r
+                       /* Check if the current command is being aborted by the host */\r
+                       if (MSInterfaceInfo->State.IsMassStoreReset)\r
+                         return;\r
+               }\r
+               \r
+               /* Decrement the blocks remaining counter */\r
+               TotalBlocks--;\r
+       }\r
+       \r
+       /* If the endpoint is full, send its contents to the host */\r
+       if (!(Endpoint_IsReadWriteAllowed()))\r
+         Endpoint_ClearIN();\r
+\r
+       /* Deselect all dataflash chips */\r
+       Dataflash_DeselectChip();\r
+}\r
+\r
+/** Writes blocks (OS blocks, not Dataflash pages) to the storage medium, the board dataflash IC(s), from\r
+ *  the a given RAM buffer. This routine reads in OS sized blocks from the buffer and writes them to the\r
+ *  dataflash in Dataflash page sized blocks. This can be linked to FAT libraries to write files to the\r
+ *  dataflash.\r
+ *\r
+ *  \param[in] BlockAddress  Data block starting address for the write sequence\r
+ *  \param[in] TotalBlocks   Number of blocks of data to write\r
+ *  \param[in] BufferPtr     Pointer to the data source RAM buffer\r
+ */\r
+void DataflashManager_WriteBlocks_RAM(const uint32_t BlockAddress, uint16_t TotalBlocks, uint8_t* BufferPtr)\r
+{\r
+       uint16_t CurrDFPage          = ((BlockAddress * VIRTUAL_MEMORY_BLOCK_SIZE) / DATAFLASH_PAGE_SIZE);\r
+       uint16_t CurrDFPageByte      = ((BlockAddress * VIRTUAL_MEMORY_BLOCK_SIZE) % DATAFLASH_PAGE_SIZE);\r
+       uint8_t  CurrDFPageByteDiv16 = (CurrDFPageByte >> 4);\r
+       bool     UsingSecondBuffer   = false;\r
+\r
+       /* Select the correct starting Dataflash IC for the block requested */\r
+       Dataflash_SelectChipFromPage(CurrDFPage);\r
+\r
+#if (DATAFLASH_PAGE_SIZE > VIRTUAL_MEMORY_BLOCK_SIZE)\r
+       /* Copy selected dataflash's current page contents to the dataflash buffer */\r
+       Dataflash_SendByte(DF_CMD_MAINMEMTOBUFF1);\r
+       Dataflash_SendAddressBytes(CurrDFPage, 0);\r
+       Dataflash_WaitWhileBusy();\r
+#endif\r
+\r
+       /* Send the dataflash buffer write command */\r
+       Dataflash_SendByte(DF_CMD_BUFF1WRITE);\r
+       Dataflash_SendAddressBytes(0, CurrDFPageByte);\r
+       \r
+       while (TotalBlocks)\r
+       {\r
+               uint8_t BytesInBlockDiv16 = 0;\r
+               \r
+               /* Write an endpoint packet sized data block to the dataflash */\r
+               while (BytesInBlockDiv16 < (VIRTUAL_MEMORY_BLOCK_SIZE >> 4))\r
+               {\r
+                       /* Check if end of dataflash page reached */\r
+                       if (CurrDFPageByteDiv16 == (DATAFLASH_PAGE_SIZE >> 4))\r
+                       {\r
+                               /* Write the dataflash buffer contents back to the dataflash page */\r
+                               Dataflash_WaitWhileBusy();\r
+                               Dataflash_SendByte(UsingSecondBuffer ? DF_CMD_BUFF2TOMAINMEMWITHERASE : DF_CMD_BUFF1TOMAINMEMWITHERASE);\r
+                               Dataflash_SendAddressBytes(CurrDFPage, 0);\r
+\r
+                               /* Reset the dataflash buffer counter, increment the page counter */\r
+                               CurrDFPageByteDiv16 = 0;\r
+                               CurrDFPage++;\r
+\r
+                               /* Once all the dataflash ICs have had their first buffers filled, switch buffers to maintain throughput */\r
+                               if (Dataflash_GetSelectedChip() == DATAFLASH_CHIP_MASK(DATAFLASH_TOTALCHIPS))\r
+                                 UsingSecondBuffer = !(UsingSecondBuffer);\r
+\r
+                               /* Select the next dataflash chip based on the new dataflash page index */\r
+                               Dataflash_SelectChipFromPage(CurrDFPage);\r
+\r
+#if (DATAFLASH_PAGE_SIZE > VIRTUAL_MEMORY_BLOCK_SIZE)\r
+                               /* If less than one dataflash page remaining, copy over the existing page to preserve trailing data */\r
+                               if ((TotalBlocks * (VIRTUAL_MEMORY_BLOCK_SIZE >> 4)) < (DATAFLASH_PAGE_SIZE >> 4))\r
+                               {\r
+                                       /* Copy selected dataflash's current page contents to the dataflash buffer */\r
+                                       Dataflash_WaitWhileBusy();\r
+                                       Dataflash_SendByte(UsingSecondBuffer ? DF_CMD_MAINMEMTOBUFF2 : DF_CMD_MAINMEMTOBUFF1);\r
+                                       Dataflash_SendAddressBytes(CurrDFPage, 0);\r
+                                       Dataflash_WaitWhileBusy();\r
+                               }\r
+#endif\r
+\r
+                               /* Send the dataflash buffer write command */\r
+                               Dataflash_ToggleSelectedChipCS();\r
+                               Dataflash_SendByte(DF_CMD_BUFF1WRITE);\r
+                               Dataflash_SendAddressBytes(0, 0);\r
+                       }\r
+                       \r
+                       /* Write one 16-byte chunk of data to the dataflash */\r
+                       for (uint8_t ByteNum = 0; ByteNum < 16; ByteNum++)\r
+                         Dataflash_SendByte(*(BufferPtr++));\r
+                       \r
+                       /* Increment the dataflash page 16 byte block counter */\r
+                       CurrDFPageByteDiv16++;\r
+\r
+                       /* Increment the block 16 byte block counter */\r
+                       BytesInBlockDiv16++;            \r
+               }\r
+                       \r
+               /* Decrement the blocks remaining counter and reset the sub block counter */\r
+               TotalBlocks--;\r
+       }\r
+\r
+       /* Write the dataflash buffer contents back to the dataflash page */\r
+       Dataflash_WaitWhileBusy();\r
+       Dataflash_SendByte(UsingSecondBuffer ? DF_CMD_BUFF2TOMAINMEMWITHERASE : DF_CMD_BUFF1TOMAINMEMWITHERASE);\r
+       Dataflash_SendAddressBytes(CurrDFPage, 0x00);\r
+       Dataflash_WaitWhileBusy();\r
+\r
+       /* Deselect all dataflash chips */\r
+       Dataflash_DeselectChip();\r
+}\r
+\r
+/** Reads blocks (OS blocks, not Dataflash pages) from the storage medium, the board dataflash IC(s), into\r
+ *  the a preallocated RAM buffer. This routine reads in Dataflash page sized blocks from the Dataflash\r
+ *  and writes them in OS sized blocks to the given buffer. This can be linked to FAT libraries to read\r
+ *  the files stored on the dataflash.\r
+ *\r
+ *  \param[in] BlockAddress  Data block starting address for the read sequence\r
+ *  \param[in] TotalBlocks   Number of blocks of data to read\r
+ *  \param[out] BufferPtr    Pointer to the data destination RAM buffer\r
+ */\r
+void DataflashManager_ReadBlocks_RAM(const uint32_t BlockAddress, uint16_t TotalBlocks, uint8_t* BufferPtr)\r
+{\r
+       uint16_t CurrDFPage          = ((BlockAddress * VIRTUAL_MEMORY_BLOCK_SIZE) / DATAFLASH_PAGE_SIZE);\r
+       uint16_t CurrDFPageByte      = ((BlockAddress * VIRTUAL_MEMORY_BLOCK_SIZE) % DATAFLASH_PAGE_SIZE);\r
+       uint8_t  CurrDFPageByteDiv16 = (CurrDFPageByte >> 4);\r
+\r
+       /* Select the correct starting Dataflash IC for the block requested */\r
+       Dataflash_SelectChipFromPage(CurrDFPage);\r
+\r
+       /* Send the dataflash main memory page read command */\r
+       Dataflash_SendByte(DF_CMD_MAINMEMPAGEREAD);\r
+       Dataflash_SendAddressBytes(CurrDFPage, CurrDFPageByte);\r
+       Dataflash_SendByte(0x00);\r
+       Dataflash_SendByte(0x00);\r
+       Dataflash_SendByte(0x00);\r
+       Dataflash_SendByte(0x00);\r
+\r
+       while (TotalBlocks)\r
+       {\r
+               uint8_t BytesInBlockDiv16 = 0;\r
+               \r
+               /* Write an endpoint packet sized data block to the dataflash */\r
+               while (BytesInBlockDiv16 < (VIRTUAL_MEMORY_BLOCK_SIZE >> 4))\r
+               {\r
+                       /* Check if end of dataflash page reached */\r
+                       if (CurrDFPageByteDiv16 == (DATAFLASH_PAGE_SIZE >> 4))\r
+                       {\r
+                               /* Reset the dataflash buffer counter, increment the page counter */\r
+                               CurrDFPageByteDiv16 = 0;\r
+                               CurrDFPage++;\r
+\r
+                               /* Select the next dataflash chip based on the new dataflash page index */\r
+                               Dataflash_SelectChipFromPage(CurrDFPage);\r
+                               \r
+                               /* Send the dataflash main memory page read command */\r
+                               Dataflash_SendByte(DF_CMD_MAINMEMPAGEREAD);\r
+                               Dataflash_SendAddressBytes(CurrDFPage, 0);\r
+                               Dataflash_SendByte(0x00);\r
+                               Dataflash_SendByte(0x00);\r
+                               Dataflash_SendByte(0x00);\r
+                               Dataflash_SendByte(0x00);\r
+                       }       \r
+\r
+                       /* Read one 16-byte chunk of data from the dataflash */\r
+                       for (uint8_t ByteNum = 0; ByteNum < 16; ByteNum++)\r
+                         *(BufferPtr++) = Dataflash_ReceiveByte();\r
+                       \r
+                       /* Increment the dataflash page 16 byte block counter */\r
+                       CurrDFPageByteDiv16++;\r
+                       \r
+                       /* Increment the block 16 byte block counter */\r
+                       BytesInBlockDiv16++;\r
+               }\r
+               \r
+               /* Decrement the blocks remaining counter */\r
+               TotalBlocks--;\r
+       }\r
+\r
+       /* Deselect all dataflash chips */\r
+       Dataflash_DeselectChip();\r
+}\r
+\r
+/** Disables the dataflash memory write protection bits on the board Dataflash ICs, if enabled. */\r
+void DataflashManager_ResetDataflashProtections(void)\r
+{\r
+       /* Select first dataflash chip, send the read status register command */\r
+       Dataflash_SelectChip(DATAFLASH_CHIP1);\r
+       Dataflash_SendByte(DF_CMD_GETSTATUS);\r
+       \r
+       /* Check if sector protection is enabled */\r
+       if (Dataflash_ReceiveByte() & DF_STATUS_SECTORPROTECTION_ON)\r
+       {\r
+               Dataflash_ToggleSelectedChipCS();\r
+\r
+               /* Send the commands to disable sector protection */\r
+               Dataflash_SendByte(DF_CMD_SECTORPROTECTIONOFF[0]);\r
+               Dataflash_SendByte(DF_CMD_SECTORPROTECTIONOFF[1]);\r
+               Dataflash_SendByte(DF_CMD_SECTORPROTECTIONOFF[2]);\r
+               Dataflash_SendByte(DF_CMD_SECTORPROTECTIONOFF[3]);\r
+       }\r
+       \r
+       /* Select second dataflash chip (if present on selected board), send read status register command */\r
+       #if (DATAFLASH_TOTALCHIPS == 2)\r
+       Dataflash_SelectChip(DATAFLASH_CHIP2);\r
+       Dataflash_SendByte(DF_CMD_GETSTATUS);\r
+       \r
+       /* Check if sector protection is enabled */\r
+       if (Dataflash_ReceiveByte() & DF_STATUS_SECTORPROTECTION_ON)\r
+       {\r
+               Dataflash_ToggleSelectedChipCS();\r
+\r
+               /* Send the commands to disable sector protection */\r
+               Dataflash_SendByte(DF_CMD_SECTORPROTECTIONOFF[0]);\r
+               Dataflash_SendByte(DF_CMD_SECTORPROTECTIONOFF[1]);\r
+               Dataflash_SendByte(DF_CMD_SECTORPROTECTIONOFF[2]);\r
+               Dataflash_SendByte(DF_CMD_SECTORPROTECTIONOFF[3]);\r
+       }\r
+       #endif\r
+       \r
+       /* Deselect current dataflash chip */\r
+       Dataflash_DeselectChip();\r
+}\r
+\r
+/** Performs a simple test on the attached Dataflash IC(s) to ensure that they are working.\r
+ *\r
+ *  \return Boolean true if all media chips are working, false otherwise\r
+ */\r
+bool DataflashManager_CheckDataflashOperation(void)\r
+{\r
+       uint8_t ReturnByte;\r
+\r
+       /* Test first Dataflash IC is present and responding to commands */\r
+       Dataflash_SelectChip(DATAFLASH_CHIP1);\r
+       Dataflash_SendByte(DF_CMD_READMANUFACTURERDEVICEINFO);\r
+       ReturnByte = Dataflash_ReceiveByte();\r
+       Dataflash_DeselectChip();\r
+\r
+       /* If returned data is invalid, fail the command */\r
+       if (ReturnByte != DF_MANUFACTURER_ATMEL)\r
+         return false;\r
+\r
+       #if (DATAFLASH_TOTALCHIPS == 2)\r
+       /* Test second Dataflash IC is present and responding to commands */\r
+       Dataflash_SelectChip(DATAFLASH_CHIP2);\r
+       Dataflash_SendByte(DF_CMD_READMANUFACTURERDEVICEINFO);\r
+       ReturnByte = Dataflash_ReceiveByte();\r
+       Dataflash_DeselectChip();\r
+\r
+       /* If returned data is invalid, fail the command */\r
+       if (ReturnByte != DF_MANUFACTURER_ATMEL)\r
+         return false;\r
+       #endif\r
+       \r
+       return true;\r
+}\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/DataflashManager.h b/Projects/Incomplete/StandaloneProgrammer/Lib/DataflashManager.h
new file mode 100644 (file)
index 0000000..9b74b2e
--- /dev/null
@@ -0,0 +1,81 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ *  Header file for DataflashManager.c.\r
+ */\r
\r
+#ifndef _DATAFLASH_MANAGER_H\r
+#define _DATAFLASH_MANAGER_H\r
+\r
+       /* Includes: */\r
+               #include <avr/io.h>\r
+               \r
+               #include "StandaloneProgrammer.h"\r
+               #include "Descriptors.h"\r
+\r
+               #include <LUFA/Common/Common.h>                 // Function Attribute, Atomic, Debug and ISR Macros\r
+               #include <LUFA/Drivers/USB/USB.h>               // USB Functionality\r
+               #include <LUFA/Drivers/USB/Class/MassStorage.h> // Mass Storage Class Driver\r
+               #include <LUFA/Drivers/Board/Dataflash.h>       // Dataflash chip driver\r
+\r
+       /* Preprocessor Checks: */\r
+               #if (DATAFLASH_PAGE_SIZE % 16)\r
+                       #error Dataflash page size must be a multiple of 16 bytes.\r
+               #endif\r
+\r
+       /* Defines: */\r
+               /** Total number of bytes of the storage medium, comprised of one or more dataflash ICs. */\r
+               #define VIRTUAL_MEMORY_BYTES                ((uint32_t)DATAFLASH_PAGES * DATAFLASH_PAGE_SIZE * DATAFLASH_TOTALCHIPS)\r
+\r
+               /** Block size of the device. This is kept at 512 to remain compatible with the OS despite the underlying\r
+                *  storage media (Dataflash) using a different native block size. Do not change this value.\r
+                */\r
+               #define VIRTUAL_MEMORY_BLOCK_SIZE           512\r
+               \r
+               /** Total number of blocks of the virtual memory for reporting to the host as the device's total capacity. Do not\r
+                *  change this value; change VIRTUAL_MEMORY_BYTES instead to alter the media size.\r
+                */\r
+               #define VIRTUAL_MEMORY_BLOCKS               (VIRTUAL_MEMORY_BYTES / VIRTUAL_MEMORY_BLOCK_SIZE)\r
+               \r
+       /* Function Prototypes: */\r
+               void DataflashManager_WriteBlocks(USB_ClassInfo_MS_Device_t* MSInterfaceInfo, const uint32_t BlockAddress,\r
+                                                 uint16_t TotalBlocks);\r
+               void DataflashManager_ReadBlocks(USB_ClassInfo_MS_Device_t* MSInterfaceInfo, const uint32_t BlockAddress,\r
+                                                uint16_t TotalBlocks);\r
+               void DataflashManager_WriteBlocks_RAM(const uint32_t BlockAddress, uint16_t TotalBlocks,\r
+                                                     uint8_t* BufferPtr) ATTR_NON_NULL_PTR_ARG(3);\r
+               void DataflashManager_ReadBlocks_RAM(const uint32_t BlockAddress, uint16_t TotalBlocks,\r
+                                                    uint8_t* BufferPtr) ATTR_NON_NULL_PTR_ARG(3);\r
+               void DataflashManager_ResetDataflashProtections(void);\r
+               bool DataflashManager_CheckDataflashOperation(void);\r
+               \r
+#endif\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/00readme.txt b/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/00readme.txt
new file mode 100644 (file)
index 0000000..594b919
--- /dev/null
@@ -0,0 +1,36 @@
+Petit FatFs Module Source Files R0.01a                 (C)ChaN, 2009\r
+\r
+\r
+FILES\r
+\r
+  pff.h      Common include file for Petit FatFs and application module.\r
+  pff.c      Petit FatFs module.\r
+  diskio.h   Common include file for Petit FatFs and disk I/O module.\r
+  diskio.c   Skeleton of low level disk I/O module.\r
+  integer.h  Alternative type definitions for integer variables.\r
+\r
+  Low level disk I/O module is not included in this archive because the Petit\r
+  FatFs module is only a generic file system layer and not depend on any\r
+  specific storage device. You have to provide a low level disk I/O module that\r
+  written to control your storage device.\r
+\r
+\r
+\r
+AGREEMENTS\r
+\r
+ Petit FatFs module is an open source software to implement FAT file system to\r
+ small embedded systems. This is a free software and is opened for education,\r
+ research and commercial developments under license policy of following trems.\r
+\r
+  Copyright (C) 2009, ChaN, all right reserved.\r
+\r
+ * The Petit FatFs module is a free software and there is NO WARRANTY.\r
+ * No restriction on use. You can use, modify and redistribute it for\r
+   personal, non-profit or commercial use UNDER YOUR RESPONSIBILITY.\r
+ * Redistributions of source code must retain the above copyright notice.\r
+\r
+\r
+\r
+REVISION HISTORY\r
+\r
+  Jun 15, 2009  R0.01a  First release (Branched from FatFs R0.07b)\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/diskio.c b/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/diskio.c
new file mode 100644 (file)
index 0000000..0084fa5
--- /dev/null
@@ -0,0 +1,46 @@
+/*-----------------------------------------------------------------------*/\r
+/* Low level disk I/O module skeleton for Petit FatFs (C)ChaN, 2009      */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+#include "diskio.h"\r
+\r
+#include <string.h>\r
+#include "../DataflashManager.h"\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Initialize Disk Drive                                                 */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+DSTATUS disk_initialize (void)\r
+{\r
+       DSTATUS stat;\r
+\r
+       stat = RES_OK;\r
+\r
+       return stat;\r
+}\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Read Partial Sector                                                   */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+DRESULT disk_readp (\r
+       void* dest,                     /* Pointer to the destination object */\r
+       DWORD sector,           /* Sector number (LBA) */\r
+       WORD sofs,                      /* Offset in the sector */\r
+       WORD count                      /* Byte count (bit15:destination) */\r
+)\r
+{\r
+       DRESULT res;\r
+\r
+       uint8_t BlockTemp[512];\r
+       DataflashManager_ReadBlocks_RAM(sector, 1, BlockTemp);\r
+       memcpy(dest, &BlockTemp[sofs], count);\r
+\r
+       res = RES_OK;\r
+\r
+       return res;\r
+}\r
+\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/diskio.h b/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/diskio.h
new file mode 100644 (file)
index 0000000..c5ab064
--- /dev/null
@@ -0,0 +1,36 @@
+/*-----------------------------------------------------------------------\r
+/  PFF - Low level disk interface modlue include file    (C)ChaN, 2009\r
+/-----------------------------------------------------------------------*/\r
+\r
+#ifndef _DISKIO\r
+\r
+#include "integer.h"\r
+\r
+\r
+/* Status of Disk Functions */\r
+typedef BYTE   DSTATUS;\r
+\r
+\r
+/* Results of Disk Functions */\r
+typedef enum {\r
+       RES_OK = 0,             /* 0: Function succeeded */\r
+       RES_ERROR,              /* 1: Disk error */\r
+       RES_STRERR,             /* 2: Seream error */\r
+       RES_NOTRDY,             /* 3: Not ready */\r
+       RES_PARERR              /* 4: Invalid parameter */\r
+} DRESULT;\r
+\r
+\r
+/*---------------------------------------*/\r
+/* Prototypes for disk control functions */\r
+\r
+DSTATUS disk_initialize (void);\r
+DRESULT disk_readp (void*, DWORD, WORD, WORD);\r
+\r
+BOOL assign_drives (int argc, char *argv[]);\r
+\r
+#define STA_NOINIT             0x01    /* Drive not initialized */\r
+#define STA_NODISK             0x02    /* No medium in the drive */\r
+\r
+#define _DISKIO\r
+#endif\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/integer.h b/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/integer.h
new file mode 100644 (file)
index 0000000..1d6bac3
--- /dev/null
@@ -0,0 +1,37 @@
+/*-------------------------------------------*/\r
+/* Integer type definitions for FatFs module */\r
+/*-------------------------------------------*/\r
+\r
+#ifndef _INTEGER\r
+\r
+#if 0\r
+#include <windows.h>\r
+#else\r
+\r
+/* These types must be 16-bit, 32-bit or larger integer */\r
+typedef int                            INT;\r
+typedef unsigned int   UINT;\r
+\r
+/* These types must be 8-bit integer */\r
+typedef signed char            CHAR;\r
+typedef unsigned char  UCHAR;\r
+typedef unsigned char  BYTE;\r
+\r
+/* These types must be 16-bit integer */\r
+typedef short                  SHORT;\r
+typedef unsigned short USHORT;\r
+typedef unsigned short WORD;\r
+typedef unsigned short WCHAR;\r
+\r
+/* These types must be 32-bit integer */\r
+typedef long                   LONG;\r
+typedef unsigned long  ULONG;\r
+typedef unsigned long  DWORD;\r
+\r
+/* Boolean type */\r
+typedef enum { FALSE = 0, TRUE } BOOL;\r
+\r
+#endif\r
+\r
+#define _INTEGER\r
+#endif\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/pff.c b/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/pff.c
new file mode 100644 (file)
index 0000000..126d45f
--- /dev/null
@@ -0,0 +1,777 @@
+/*----------------------------------------------------------------------------/\r
+/  Petit FatFs - FAT file system module  R0.01a                (C)ChaN, 2009\r
+/-----------------------------------------------------------------------------/\r
+/ Petit FatFs module is an open source software to implement FAT file system to\r
+/ small embedded systems. This is a free software and is opened for education,\r
+/ research and commercial developments under license policy of following trems.\r
+/\r
+/  Copyright (C) 2009, ChaN, all right reserved.\r
+/\r
+/ * The Petit FatFs module is a free software and there is NO WARRANTY.\r
+/ * No restriction on use. You can use, modify and redistribute it for\r
+/   personal, non-profit or commercial use UNDER YOUR RESPONSIBILITY.\r
+/ * Redistributions of source code must retain the above copyright notice.\r
+/\r
+/-----------------------------------------------------------------------------/\r
+/ Jun 15,'09 R0.01a  Branched from FatFs R0.07b\r
+/----------------------------------------------------------------------------*/\r
+\r
+#include "pff.h"               /* Petit FatFs configurations and declarations */\r
+#include "diskio.h"            /* Declarations of low level disk I/O functions */\r
+\r
+\r
+/*--------------------------------------------------------------------------\r
+\r
+   Private Work Area\r
+\r
+---------------------------------------------------------------------------*/\r
+\r
+static\r
+FATFS *FatFs;  /* Pointer to the file system object (logical drive) */\r
+\r
+\r
+/*--------------------------------------------------------------------------\r
+\r
+   Private Functions\r
+\r
+---------------------------------------------------------------------------*/\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* String functions                                                      */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+/* Fill memory */\r
+static\r
+void mem_set (void* dst, int val, int cnt) {\r
+       char *d = (char*)dst;\r
+       while (cnt--) *d++ = (char)val;\r
+}\r
+\r
+/* Compare memory to memory */\r
+static\r
+int mem_cmp (const void* dst, const void* src, int cnt) {\r
+       const char *d = (const char *)dst, *s = (const char *)src;\r
+       int r = 0;\r
+       while (cnt-- && (r = *d++ - *s++) == 0) ;\r
+       return r;\r
+}\r
+\r
+/* Check if chr is contained in the string */\r
+static\r
+int chk_chr (const char* str, int chr) {\r
+       while (*str && *str != chr) str++;\r
+       return *str;\r
+}\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* FAT access - Read value of a FAT entry                                */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+static\r
+CLUST get_fat (        /* 1:IO error, Else:Cluster status */\r
+       CLUST clst      /* Cluster# to get the link information */\r
+)\r
+{\r
+       WORD wc, bc, ofs;\r
+       BYTE buf[4];\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       if (clst < 2 || clst >= fs->max_clust)  /* Range check */\r
+               return 1;\r
+\r
+       switch (fs->fs_type) {\r
+       case FS_FAT12 :\r
+               bc = (WORD)clst; bc += bc / 2;\r
+               ofs = bc % 512; bc /= 512;\r
+               if (ofs != 511) {\r
+                       if (disk_readp(buf, fs->fatbase + bc, ofs, 2)) break;\r
+               } else {\r
+                       if (disk_readp(buf, fs->fatbase + bc, 511, 1)) break;\r
+                       if (disk_readp(buf+1, fs->fatbase + bc + 1, 0, 1)) break;\r
+               }\r
+               wc = LD_WORD(buf);\r
+               return (clst & 1) ? (wc >> 4) : (wc & 0xFFF);\r
+\r
+       case FS_FAT16 :\r
+               if (disk_readp(buf, fs->fatbase + clst / 256, (WORD)(((WORD)clst % 256) * 2), 2)) break;\r
+               return LD_WORD(buf);\r
+#if _FS_FAT32\r
+       case FS_FAT32 :\r
+               if (disk_readp(buf, fs->fatbase + clst / 128, (WORD)(((WORD)clst % 128) * 4), 4)) break;\r
+               return LD_DWORD(buf) & 0x0FFFFFFF;\r
+#endif\r
+       }\r
+\r
+       return 1;       /* An error occured at the disk I/O layer */\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Get sector# from cluster#                                             */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+static\r
+DWORD clust2sect (     /* !=0: Sector number, 0: Failed - invalid cluster# */\r
+       CLUST clst              /* Cluster# to be converted */\r
+)\r
+{\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       clst -= 2;\r
+       if (clst >= (fs->max_clust - 2)) return 0;              /* Invalid cluster# */\r
+       return (DWORD)clst * fs->csize + fs->database;\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Directory handling - Rewind directory index                           */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+static\r
+FRESULT dir_rewind (\r
+       DIR *dj                 /* Pointer to directory object */\r
+)\r
+{\r
+       CLUST clst;\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       dj->index = 0;\r
+       clst = dj->sclust;\r
+       if (clst == 1 || clst >= fs->max_clust) /* Check start cluster range */\r
+               return FR_DISK_ERR;\r
+#if _FS_FAT32\r
+       if (!clst && fs->fs_type == FS_FAT32)   /* Replace cluster# 0 with root cluster# if in FAT32 */\r
+               clst = fs->dirbase;\r
+#endif\r
+       dj->clust = clst;                                               /* Current cluster */\r
+       dj->sect = clst ? clust2sect(clst) : fs->dirbase;       /* Current sector */\r
+\r
+       return FR_OK;   /* Seek succeeded */\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Directory handling - Move directory index next                        */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+static\r
+FRESULT dir_next (     /* FR_OK:Succeeded, FR_NO_FILE:End of table, FR_DENIED:EOT and could not streach */\r
+       DIR *dj                 /* Pointer to directory object */\r
+)\r
+{\r
+       CLUST clst;\r
+       WORD i;\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       i = dj->index + 1;\r
+       if (!i || !dj->sect)    /* Report EOT when index has reached 65535 */\r
+               return FR_NO_FILE;\r
+\r
+       if (!(i & (16-1))) {    /* Sector changed? */\r
+               dj->sect++;                     /* Next sector */\r
+\r
+               if (dj->clust == 0) {   /* Static table */\r
+                       if (i >= fs->n_rootdir) /* Report EOT when end of table */\r
+                               return FR_NO_FILE;\r
+               }\r
+               else {                                  /* Dynamic table */\r
+                       if (((i / 16) & (fs->csize-1)) == 0) {  /* Cluster changed? */\r
+                               clst = get_fat(dj->clust);              /* Get next cluster */\r
+                               if (clst <= 1) return FR_DISK_ERR;\r
+                               if (clst >= fs->max_clust)              /* When it reached end of dynamic table */\r
+                                       return FR_NO_FILE;                      /* Report EOT */\r
+                               dj->clust = clst;                               /* Initialize data for new cluster */\r
+                               dj->sect = clust2sect(clst);\r
+                       }\r
+               }\r
+       }\r
+\r
+       dj->index = i;\r
+\r
+       return FR_OK;\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Directory handling - Find an object in the directory                  */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+static\r
+FRESULT dir_find (\r
+       DIR *dj                 /* Pointer to the directory object linked to the file name */\r
+)\r
+{\r
+       FRESULT res;\r
+       BYTE c, *dir;\r
+\r
+\r
+       res = dir_rewind(dj);                   /* Rewind directory object */\r
+       if (res != FR_OK) return res;\r
+\r
+       dir = FatFs->buf;\r
+       do {\r
+               res = disk_readp(dir, dj->sect, (WORD)((dj->index % 16) * 32), 32)      /* Read an entry */\r
+                       ? FR_DISK_ERR : FR_OK;\r
+               if (res != FR_OK) break;\r
+               c = dir[DIR_Name];      /* First character */\r
+               if (c == 0) { res = FR_NO_FILE; break; }        /* Reached to end of table */\r
+               if (!(dir[DIR_Attr] & AM_VOL) && !mem_cmp(dir, dj->fn, 11)) /* Is it a valid entry? */\r
+                       break;\r
+               res = dir_next(dj);                                                     /* Next entry */\r
+       } while (res == FR_OK);\r
+\r
+       return res;\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Read an object from the directory                                     */\r
+/*-----------------------------------------------------------------------*/\r
+#if _USE_DIR\r
+static\r
+FRESULT dir_read (\r
+       DIR *dj                 /* Pointer to the directory object to store read object name */\r
+)\r
+{\r
+       FRESULT res;\r
+       BYTE a, c, *dir;\r
+\r
+\r
+       res = FR_NO_FILE;\r
+       while (dj->sect) {\r
+               dir = FatFs->buf;\r
+               res = disk_readp(dir, dj->sect, (WORD)((dj->index % 16) * 32), 32)      /* Read an entry */\r
+                       ? FR_DISK_ERR : FR_OK;\r
+               if (res != FR_OK) break;\r
+               c = dir[DIR_Name];\r
+               if (c == 0) { res = FR_NO_FILE; break; }        /* Reached to end of table */\r
+               a = dir[DIR_Attr] & AM_MASK;\r
+               if (c != 0xE5 && c != '.' && !(a & AM_VOL))     /* Is it a valid entry? */\r
+                       break;\r
+               res = dir_next(dj);                             /* Next entry */\r
+               if (res != FR_OK) break;\r
+       }\r
+\r
+       if (res != FR_OK) dj->sect = 0;\r
+\r
+       return res;\r
+}\r
+#endif\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Pick a segment and create the object name in directory form           */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+\r
+static\r
+FRESULT create_name (\r
+       DIR *dj,                        /* Pointer to the directory object */\r
+       const char **path       /* Pointer to pointer to the segment in the path string */\r
+)\r
+{\r
+       BYTE c, ni, si, i, *sfn;\r
+       const char *p;\r
+\r
+       /* Create file name in directory form */\r
+       sfn = dj->fn;\r
+       mem_set(sfn, ' ', 11);\r
+       si = i = 0; ni = 8;\r
+       p = *path;\r
+       for (;;) {\r
+               c = p[si++];\r
+               if (c < ' ' || c == '/') break; /* Break on end of segment */\r
+               if (c == '.' || i >= ni) {\r
+                       if (ni != 8 || c != '.') return FR_INVALID_NAME;\r
+                       i = 8; ni = 11;\r
+                       continue;\r
+               }\r
+               if (c >= 0x7F || chk_chr(" +,;[=\\]\"*:<>\?|", c))      /* Reject unallowable chrs for SFN */\r
+                       return FR_INVALID_NAME;\r
+               if (c >='a' && c <= 'z') c -= 0x20;\r
+               sfn[i++] = c;\r
+       }\r
+       if (!i) return FR_INVALID_NAME;         /* Reject null string */\r
+       *path = &p[si];                                         /* Rerurn pointer to the next segment */\r
+\r
+       sfn[11] = (c < ' ') ? 1 : 0;            /* Set last segment flag if end of path */\r
+\r
+       return FR_OK;\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Get file information from directory entry                             */\r
+/*-----------------------------------------------------------------------*/\r
+#if _USE_DIR\r
+static\r
+void get_fileinfo (            /* No return code */\r
+       DIR *dj,                        /* Pointer to the directory object */\r
+       FILINFO *fno            /* Pointer to store the file information */\r
+)\r
+{\r
+       BYTE i, c, *dir;\r
+       char *p;\r
+\r
+\r
+       p = fno->fname;\r
+       if (dj->sect) {\r
+               dir = FatFs->buf;\r
+               for (i = 0; i < 8; i++) {       /* Copy file name body */\r
+                       c = dir[i];\r
+                       if (c == ' ') break;\r
+                       if (c == 0x05) c = 0xE5;\r
+                       *p++ = c;\r
+               }\r
+               if (dir[8] != ' ') {            /* Copy file name extension */\r
+                       *p++ = '.';\r
+                       for (i = 8; i < 11; i++) {\r
+                               c = dir[i];\r
+                               if (c == ' ') break;\r
+                               *p++ = c;\r
+                       }\r
+               }\r
+               fno->fattrib = dir[DIR_Attr];                           /* Attribute */\r
+               fno->fsize = LD_DWORD(dir+DIR_FileSize);        /* Size */\r
+               fno->fdate = LD_WORD(dir+DIR_WrtDate);          /* Date */\r
+               fno->ftime = LD_WORD(dir+DIR_WrtTime);          /* Time */\r
+       }\r
+       *p = 0;\r
+}\r
+#endif /* _USE_DIR */\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Follow a file path                                                    */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+static\r
+FRESULT follow_path (  /* FR_OK(0): successful, !=0: error code */\r
+       DIR *dj,                        /* Directory object to return last directory and found object */\r
+       const char *path        /* Full-path string to find a file or directory */\r
+)\r
+{\r
+       FRESULT res;\r
+       BYTE *dir;\r
+\r
+\r
+       if (*path == '/') path++;                       /* Strip heading separator */\r
+       dj->sclust = 0;                                         /* Set start directory (always root dir) */\r
+\r
+       if ((BYTE)*path < ' ') {                        /* Null path means the root directory */\r
+               res = dir_rewind(dj);\r
+               FatFs->buf[0] = 0;\r
+\r
+       } else {                                                        /* Follow path */\r
+               for (;;) {\r
+                       res = create_name(dj, &path);   /* Get a segment */\r
+                       if (res != FR_OK) break;\r
+                       res = dir_find(dj);                             /* Find it */\r
+                       if (res != FR_OK) {                             /* Could not find the object */\r
+                               if (res == FR_NO_FILE && !*(dj->fn+11))\r
+                                       res = FR_NO_PATH;\r
+                               break;\r
+                       }\r
+                       if (*(dj->fn+11)) break;                /* Last segment match. Function completed. */\r
+                       dir = FatFs->buf;                               /* There is next segment. Follow the sub directory */\r
+                       if (!(dir[DIR_Attr] & AM_DIR)) { /* Cannot follow because it is a file */\r
+                               res = FR_NO_PATH; break;\r
+                       }\r
+                       dj->sclust =\r
+#if _FS_FAT32\r
+                               ((DWORD)LD_WORD(dir+DIR_FstClusHI) << 16) | \r
+#endif\r
+                               LD_WORD(dir+DIR_FstClusLO);\r
+               }\r
+       }\r
+\r
+       return res;\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Check a sector if it is an FAT boot record                            */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+static\r
+BYTE check_fs (        /* 0:The FAT boot record, 1:Valid boot record but not an FAT, 2:Not a boot record, 3:Error */\r
+       BYTE *buf,      /* Working buffer */\r
+       DWORD sect      /* Sector# (lba) to check if it is an FAT boot record or not */\r
+)\r
+{\r
+       if (disk_readp(buf, sect, 510, 2))              /* Read the boot sector */\r
+               return 3;\r
+       if (LD_WORD(buf) != 0xAA55)                             /* Check record signature */\r
+               return 2;\r
+\r
+       if (!disk_readp(buf, sect, BS_FilSysType, 2) && LD_WORD(buf) == 0x4146) /* Check FAT12/16 */\r
+               return 0;\r
+#if _FS_FAT32\r
+       if (!disk_readp(buf, sect, BS_FilSysType32, 2) && LD_WORD(buf) == 0x4146)       /* Check FAT32 */\r
+               return 0;\r
+#endif\r
+       return 1;\r
+}\r
+\r
+\r
+\r
+\r
+/*--------------------------------------------------------------------------\r
+\r
+   Public Functions\r
+\r
+--------------------------------------------------------------------------*/\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Mount/Unmount a Locical Drive                                         */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+FRESULT pf_mount (\r
+       FATFS *fs               /* Pointer to new file system object (NULL: Unmount) */\r
+)\r
+{\r
+       BYTE fmt, buf[36];\r
+       DWORD bsect, fsize, tsect, mclst;\r
+\r
+\r
+       FatFs = 0;\r
+       if (!fs) return FR_OK;                          /* Unregister fs object */\r
+\r
+       if (disk_initialize() & STA_NOINIT)     /* Check if the drive is ready or not */\r
+               return FR_NOT_READY;\r
+\r
+       /* Search FAT partition on the drive */\r
+       bsect = 0;\r
+       fmt = check_fs(buf, bsect);                     /* Check sector 0 as an SFD format */\r
+       if (fmt == 1) {                                         /* Not an FAT boot record, it may be FDISK format */\r
+               /* Check a partition listed in top of the partition table */\r
+               if (disk_readp(buf, bsect, MBR_Table, 16)) {    /* 1st partition entry */\r
+                       fmt = 3;\r
+               } else {\r
+                       if (buf[4]) {                                   /* Is the partition existing? */\r
+                               bsect = LD_DWORD(&buf[8]);      /* Partition offset in LBA */\r
+                               fmt = check_fs(buf, bsect);     /* Check the partition */\r
+                       }\r
+               }\r
+       }\r
+       if (fmt == 3) return FR_DISK_ERR;\r
+       if (fmt) return FR_NO_FILESYSTEM;       /* No valid FAT patition is found */\r
+\r
+       /* Initialize the file system object */\r
+       if (disk_readp(buf, bsect, 13, sizeof(buf))) return FR_DISK_ERR;\r
+\r
+       fsize = LD_WORD(buf+BPB_FATSz16-13);                            /* Number of sectors per FAT */\r
+       if (!fsize) fsize = LD_DWORD(buf+BPB_FATSz32-13);\r
+\r
+       fsize *= buf[BPB_NumFATs-13];                                           /* Number of sectors in FAT area */\r
+       fs->fatbase = bsect + LD_WORD(buf+BPB_RsvdSecCnt-13); /* FAT start sector (lba) */\r
+       fs->csize = buf[BPB_SecPerClus-13];                                     /* Number of sectors per cluster */\r
+       fs->n_rootdir = LD_WORD(buf+BPB_RootEntCnt-13);         /* Nmuber of root directory entries */\r
+       tsect = LD_WORD(buf+BPB_TotSec16-13);                           /* Number of sectors on the file system */\r
+       if (!tsect) tsect = LD_DWORD(buf+BPB_TotSec32-13);\r
+       mclst = (tsect                                          /* Last cluster# + 1 */\r
+               - LD_WORD(buf+BPB_RsvdSecCnt-13) - fsize - fs->n_rootdir / 16\r
+               ) / fs->csize + 2;\r
+       fs->max_clust = (CLUST)mclst;\r
+\r
+       fmt = FS_FAT12;                                                 /* Determine the FAT sub type */\r
+       if (mclst >= 0xFF7) fmt = FS_FAT16;             /* Number of clusters >= 0xFF5 */\r
+       if (mclst >= 0xFFF7)                                    /* Number of clusters >= 0xFFF5 */\r
+#if _FS_FAT32\r
+               fmt = FS_FAT32;\r
+#else\r
+               return FR_NO_FILESYSTEM;\r
+#endif\r
+\r
+       fs->fs_type = fmt;              /* FAT sub-type */\r
+#if _FS_FAT32\r
+       if (fmt == FS_FAT32)\r
+               fs->dirbase = LD_DWORD(buf+(BPB_RootClus-13));  /* Root directory start cluster */\r
+       else\r
+#endif\r
+               fs->dirbase = fs->fatbase + fsize;                              /* Root directory start sector (lba) */\r
+       fs->database = fs->fatbase + fsize + fs->n_rootdir / 16;        /* Data start sector (lba) */\r
+\r
+       fs->flag = 0;\r
+       FatFs = fs;\r
+\r
+       return FR_OK;\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Open or Create a File                                                 */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+FRESULT pf_open (\r
+       const char *path        /* Pointer to the file name */\r
+)\r
+{\r
+       FRESULT res;\r
+       DIR dj;\r
+       BYTE sp[12], dir[32];\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       if (!fs)                                                /* Check file system */\r
+               return FR_NOT_ENABLED;\r
+\r
+       fs->flag = 0;\r
+       fs->buf = dir;\r
+       dj.fn = sp;\r
+       res = follow_path(&dj, path);   /* Follow the file path */\r
+       if (res != FR_OK) return res;   /* Follow failed */\r
+       if (!dir[0] || (dir[DIR_Attr] & AM_DIR))        /* It is a directory */\r
+               return FR_NO_FILE;\r
+\r
+       fs->org_clust =                                         /* File start cluster */\r
+#if _FS_FAT32\r
+               ((DWORD)LD_WORD(dir+DIR_FstClusHI) << 16) |\r
+#endif\r
+               LD_WORD(dir+DIR_FstClusLO);\r
+       fs->fsize = LD_DWORD(dir+DIR_FileSize); /* File size */\r
+       fs->fptr = 0;                                           /* File pointer */\r
+       fs->flag = FA_READ;\r
+\r
+       return FR_OK;\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Read File                                                             */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+FRESULT pf_read (\r
+       void* dest,             /* Pointer to the destination object */\r
+       WORD btr,               /* Number of bytes to read (bit15:destination) */\r
+       WORD* br                /* Pointer to number of bytes read */\r
+)\r
+{\r
+       DRESULT dr;\r
+       CLUST clst;\r
+       DWORD sect, remain;\r
+       WORD rcnt;\r
+       BYTE *rbuff = dest;\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       *br = 0;\r
+       if (!fs) return FR_NOT_ENABLED;         /* Check file system */\r
+       if (!(fs->flag & FA_READ))\r
+                       return FR_INVALID_OBJECT;\r
+\r
+       remain = fs->fsize - fs->fptr;\r
+       if (btr > remain) btr = (UINT)remain;                   /* Truncate btr by remaining bytes */\r
+\r
+       for ( ;  btr;                                                                   /* Repeat until all data transferred */\r
+               rbuff += rcnt, fs->fptr += rcnt, *br += rcnt, btr -= rcnt) {\r
+               if ((fs->fptr % 512) == 0) {                            /* On the sector boundary? */\r
+                       if ((fs->fptr / 512 % fs->csize) == 0) {        /* On the cluster boundary? */\r
+                               clst = (fs->fptr == 0) ?                        /* On the top of the file? */\r
+                                       fs->org_clust : get_fat(fs->curr_clust);\r
+                               if (clst <= 1) {\r
+                                       fs->flag = 0; return FR_DISK_ERR;\r
+                               }\r
+                               fs->curr_clust = clst;                          /* Update current cluster */\r
+                               fs->csect = 0;                                          /* Reset sector offset in the cluster */\r
+                       }\r
+                       sect = clust2sect(fs->curr_clust);              /* Get current sector */\r
+                       if (!sect) {\r
+                               fs->flag = 0; return FR_DISK_ERR;\r
+                       }\r
+                       sect += fs->csect;\r
+                       fs->dsect = sect;\r
+                       fs->csect++;                                                    /* Next sector address in the cluster */\r
+               }\r
+               rcnt = 512 - ((WORD)fs->fptr % 512);            /* Get partial sector data from sector buffer */\r
+               if (rcnt > btr) rcnt = btr;\r
+               if (fs->flag & FA_STREAM) {\r
+                       dr = disk_readp(dest, fs->dsect, (WORD)(fs->fptr % 512), (WORD)(rcnt | 0x8000));\r
+               } else {\r
+                       dr = disk_readp(rbuff, fs->dsect, (WORD)(fs->fptr % 512), rcnt);\r
+               }\r
+               if (dr) {\r
+                       fs->flag = 0;\r
+                       return (dr == RES_STRERR) ? FR_STREAM_ERR : FR_DISK_ERR;\r
+               }\r
+       }\r
+\r
+       return FR_OK;\r
+}\r
+\r
+\r
+\r
+\r
+#if _USE_LSEEK\r
+/*-----------------------------------------------------------------------*/\r
+/* Seek File R/W Pointer                                                 */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+FRESULT pf_lseek (\r
+       DWORD ofs               /* File pointer from top of file */\r
+)\r
+{\r
+       CLUST clst;\r
+       DWORD bcs, nsect, ifptr;\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       if (!fs) return FR_NOT_ENABLED;         /* Check file system */\r
+       if (!(fs->flag & FA_READ))\r
+                       return FR_INVALID_OBJECT;\r
+\r
+       if (ofs > fs->fsize) ofs = fs->fsize;   /* Clip offset with the file size */\r
+       ifptr = fs->fptr;\r
+       fs->fptr = 0;\r
+       if (ofs > 0) {\r
+               bcs = (DWORD)fs->csize * 512;   /* Cluster size (byte) */\r
+               if (ifptr > 0 &&\r
+                       (ofs - 1) / bcs >= (ifptr - 1) / bcs) { /* When seek to same or following cluster, */\r
+                       fs->fptr = (ifptr - 1) & ~(bcs - 1);    /* start from the current cluster */\r
+                       ofs -= fs->fptr;\r
+                       clst = fs->curr_clust;\r
+               } else {                                                        /* When seek to back cluster, */\r
+                       clst = fs->org_clust;                   /* start from the first cluster */\r
+                       fs->curr_clust = clst;\r
+               }\r
+               while (ofs > bcs) {                             /* Cluster following loop */\r
+                               clst = get_fat(clst);   /* Follow cluster chain if not in write mode */\r
+                       if (clst <= 1 || clst >= fs->max_clust) {\r
+                               fs->flag = 0; return FR_DISK_ERR;\r
+                       }\r
+                       fs->curr_clust = clst;\r
+                       fs->fptr += bcs;\r
+                       ofs -= bcs;\r
+               }\r
+               fs->fptr += ofs;\r
+               fs->csect = (BYTE)(ofs / 512) + 1;      /* Sector offset in the cluster */\r
+               nsect = clust2sect(clst);       /* Current sector */\r
+               if (!nsect) {\r
+                       fs->flag = 0; return FR_DISK_ERR;\r
+               }\r
+               fs->dsect = nsect + fs->csect - 1;\r
+       }\r
+\r
+       return FR_OK;\r
+}\r
+#endif\r
+\r
+\r
+#if _USE_DIR\r
+/*-----------------------------------------------------------------------*/\r
+/* Create a Directroy Object                                             */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+FRESULT pf_opendir (\r
+       DIR *dj,                        /* Pointer to directory object to create */\r
+       const char *path        /* Pointer to the directory path */\r
+)\r
+{\r
+       FRESULT res;\r
+       BYTE sp[12], dir[32];\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       if (!fs) {                              /* Check file system */\r
+               res = FR_NOT_ENABLED;\r
+       } else {\r
+               fs->buf = dir;\r
+               dj->fn = sp;\r
+               res = follow_path(dj, path);                    /* Follow the path to the directory */\r
+               if (res == FR_OK) {                                             /* Follow completed */\r
+                       if (dir[0]) {                                           /* It is not the root dir */\r
+                               if (dir[DIR_Attr] & AM_DIR) {   /* The object is a directory */\r
+                                       dj->sclust =\r
+#if _FS_FAT32\r
+                                       ((DWORD)LD_WORD(dir+DIR_FstClusHI) << 16) |\r
+#endif\r
+                                       LD_WORD(dir+DIR_FstClusLO);\r
+                               } else {                                                /* The object is not a directory */\r
+                                       res = FR_NO_PATH;\r
+                               }\r
+                       }\r
+                       if (res == FR_OK) {\r
+                               res = dir_rewind(dj);                   /* Rewind dir */\r
+                       }\r
+               }\r
+               if (res == FR_NO_FILE) res = FR_NO_PATH;\r
+       }\r
+\r
+       return res;\r
+}\r
+\r
+\r
+\r
+\r
+/*-----------------------------------------------------------------------*/\r
+/* Read Directory Entry in Sequense                                      */\r
+/*-----------------------------------------------------------------------*/\r
+\r
+FRESULT pf_readdir (\r
+       DIR *dj,                        /* Pointer to the open directory object */\r
+       FILINFO *fno            /* Pointer to file information to return */\r
+)\r
+{\r
+       FRESULT res;\r
+       BYTE sp[12], dir[32];\r
+       FATFS *fs = FatFs;\r
+\r
+\r
+       if (!fs) {                              /* Check file system */\r
+               res = FR_NOT_ENABLED;\r
+       } else {\r
+               fs->buf = dir;\r
+               dj->fn = sp;\r
+               if (!fno) {\r
+                       res = dir_rewind(dj);\r
+               } else {\r
+                       res = dir_read(dj);\r
+                       if (res == FR_NO_FILE) {\r
+                               dj->sect = 0;\r
+                               res = FR_OK;\r
+                       }\r
+                       if (res == FR_OK) {                             /* A valid entry is found */\r
+                               get_fileinfo(dj, fno);          /* Get the object information */\r
+                               res = dir_next(dj);                     /* Increment index for next */\r
+                               if (res == FR_NO_FILE) {\r
+                                       dj->sect = 0;\r
+                                       res = FR_OK;\r
+                               }\r
+                       }\r
+               }\r
+       }\r
+\r
+       return res;\r
+}\r
+\r
+#endif /* _FS_DIR */\r
+\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/pff.h b/Projects/Incomplete/StandaloneProgrammer/Lib/PetiteFATFs/pff.h
new file mode 100644 (file)
index 0000000..b24339c
--- /dev/null
@@ -0,0 +1,237 @@
+/*---------------------------------------------------------------------------/\r
+/  Petit FatFs - FAT file system module include file  R0.01a   (C)ChaN, 2009\r
+/----------------------------------------------------------------------------/\r
+/ Petit FatFs module is an open source software to implement FAT file system to\r
+/ small embedded systems. This is a free software and is opened for education,\r
+/ research and commercial developments under license policy of following trems.\r
+/\r
+/  Copyright (C) 2009, ChaN, all right reserved.\r
+/\r
+/ * The Petit FatFs module is a free software and there is NO WARRANTY.\r
+/ * No restriction on use. You can use, modify and redistribute it for\r
+/   personal, non-profit or commercial use UNDER YOUR RESPONSIBILITY.\r
+/ * Redistributions of source code must retain the above copyright notice.\r
+/----------------------------------------------------------------------------*/\r
+\r
+#include "integer.h"\r
+\r
+/*---------------------------------------------------------------------------/\r
+/ Petit FatFs Configuration Options\r
+/\r
+/ CAUTION! Do not forget to make clean the project after any changes to\r
+/ the configuration options.\r
+/\r
+/----------------------------------------------------------------------------*/\r
+#ifndef _FATFS\r
+#define _FATFS\r
+\r
+#define _WORD_ACCESS   0\r
+/* The _WORD_ACCESS option defines which access method is used to the word\r
+/  data in the FAT structure.\r
+/\r
+/   0: Byte-by-byte access. Always compatible with all platforms.\r
+/   1: Word access. Do not choose this unless following condition is met.\r
+/\r
+/  When the byte order on the memory is big-endian or address miss-aligned\r
+/  word access results incorrect behavior, the _WORD_ACCESS must be set to 0.\r
+/  If it is not the case, the value can also be set to 1 to improve the\r
+/  performance and code efficiency. */\r
+\r
+\r
+#define        _USE_DIR        0\r
+/* To enable pf_opendir and pf_readdir function, set _USE_DIR to 1. */\r
+\r
+\r
+#define        _USE_LSEEK      0\r
+/* To enable pf_lseek function, set _USE_LSEEK to 1. */\r
+\r
+\r
+#define _FS_FAT32      0\r
+/* To enable FAT32 support, set _FS_FAT32 to 1. */\r
+\r
+\r
+/* End of configuration options. Do not change followings without care.     */\r
+/*--------------------------------------------------------------------------*/\r
+\r
+\r
+#if _FS_FAT32\r
+#define        CLUST   DWORD\r
+#else\r
+#define        CLUST   WORD\r
+#endif\r
+\r
+\r
+/* File system object structure */\r
+\r
+typedef struct _FATFS_ {\r
+       BYTE    fs_type;        /* FAT sub type */\r
+       BYTE    csize;          /* Number of sectors per cluster */\r
+       BYTE    flag;           /* File status flags */\r
+       BYTE    csect;          /* File sector address in the cluster */\r
+       WORD    n_rootdir;      /* Number of root directory entries (0 on FAT32) */\r
+       BYTE*   buf;            /* Pointer to the disk access buffer */\r
+       CLUST   max_clust;      /* Maximum cluster# + 1. Number of clusters is max_clust - 2 */\r
+       DWORD   fatbase;        /* FAT start sector */\r
+       DWORD   dirbase;        /* Root directory start sector (Cluster# on FAT32) */\r
+       DWORD   database;       /* Data start sector */\r
+       DWORD   fptr;           /* File R/W pointer */\r
+       DWORD   fsize;          /* File size */\r
+       CLUST   org_clust;      /* File start cluster */\r
+       CLUST   curr_clust;     /* File current cluster */\r
+       DWORD   dsect;          /* File current data sector */\r
+} FATFS;\r
+\r
+\r
+\r
+/* Directory object structure */\r
+\r
+typedef struct _DIR_ {\r
+       WORD    index;          /* Current read/write index number */\r
+       BYTE*   fn;                     /* Pointer to the SFN (in/out) {file[8],ext[3],status[1]} */\r
+       CLUST   sclust;         /* Table start cluster (0:Static table) */\r
+       CLUST   clust;          /* Current cluster */\r
+       DWORD   sect;           /* Current sector */\r
+} DIR;\r
+\r
+\r
+\r
+/* File status structure */\r
+\r
+typedef struct _FILINFO_ {\r
+       DWORD   fsize;          /* File size */\r
+       WORD    fdate;          /* Last modified date */\r
+       WORD    ftime;          /* Last modified time */\r
+       BYTE    fattrib;        /* Attribute */\r
+       char    fname[13];      /* File name */\r
+} FILINFO;\r
+\r
+\r
+\r
+/* File function return code (FRESULT) */\r
+\r
+typedef enum {\r
+       FR_OK = 0,                      /* 0 */\r
+       FR_DISK_ERR,            /* 1 */\r
+       FR_NOT_READY,           /* 2 */\r
+       FR_NO_FILE,                     /* 3 */\r
+       FR_NO_PATH,                     /* 4 */\r
+       FR_INVALID_NAME,        /* 5 */\r
+       FR_STREAM_ERR,          /* 6 */\r
+       FR_INVALID_OBJECT,      /* 7 */\r
+       FR_NOT_ENABLED,         /* 8 */\r
+       FR_NO_FILESYSTEM        /* 9 */\r
+} FRESULT;\r
+\r
+\r
+\r
+/*--------------------------------------------------------------*/\r
+/* Petit FatFs module application interface                     */\r
+\r
+FRESULT pf_mount (FATFS*);                             /* Mount/Unmount a logical drive */\r
+FRESULT pf_open (const char*);                 /* Open a file */\r
+FRESULT pf_read (void*, WORD, WORD*);  /* Read data from a file */\r
+FRESULT pf_lseek (DWORD);                              /* Move file pointer of a file object */\r
+FRESULT pf_opendir (DIR*, const char*);        /* Open an existing directory */\r
+FRESULT pf_readdir (DIR*, FILINFO*);   /* Read a directory item */\r
+\r
+\r
+\r
+/*--------------------------------------------------------------*/\r
+/* Flags and offset address                                     */\r
+\r
+/* File status flag (FATFS.flag) */\r
+\r
+#define        FA_READ         0x01\r
+#define        FA_STREAM       0x40\r
+#define        FA__ERROR       0x80\r
+\r
+\r
+/* FAT sub type (FATFS.fs_type) */\r
+\r
+#define FS_FAT12       1\r
+#define FS_FAT16       2\r
+#define FS_FAT32       3\r
+\r
+\r
+/* File attribute bits for directory entry */\r
+\r
+#define        AM_RDO  0x01    /* Read only */\r
+#define        AM_HID  0x02    /* Hidden */\r
+#define        AM_SYS  0x04    /* System */\r
+#define        AM_VOL  0x08    /* Volume label */\r
+#define AM_LFN 0x0F    /* LFN entry */\r
+#define AM_DIR 0x10    /* Directory */\r
+#define AM_ARC 0x20    /* Archive */\r
+#define AM_MASK        0x3F    /* Mask of defined bits */\r
+\r
+\r
+/* FatFs refers the members in the FAT structures with byte offset instead\r
+/ of structure member because there are incompatibility of the packing option\r
+/ between various compilers. */\r
+\r
+#define BS_jmpBoot                     0\r
+#define BS_OEMName                     3\r
+#define BPB_BytsPerSec         11\r
+#define BPB_SecPerClus         13\r
+#define BPB_RsvdSecCnt         14\r
+#define BPB_NumFATs                    16\r
+#define BPB_RootEntCnt         17\r
+#define BPB_TotSec16           19\r
+#define BPB_Media                      21\r
+#define BPB_FATSz16                    22\r
+#define BPB_SecPerTrk          24\r
+#define BPB_NumHeads           26\r
+#define BPB_HiddSec                    28\r
+#define BPB_TotSec32           32\r
+#define BS_55AA                                510\r
+\r
+#define BS_DrvNum                      36\r
+#define BS_BootSig                     38\r
+#define BS_VolID                       39\r
+#define BS_VolLab                      43\r
+#define BS_FilSysType          54\r
+\r
+#define BPB_FATSz32                    36\r
+#define BPB_ExtFlags           40\r
+#define BPB_FSVer                      42\r
+#define BPB_RootClus           44\r
+#define BPB_FSInfo                     48\r
+#define BPB_BkBootSec          50\r
+#define BS_DrvNum32                    64\r
+#define BS_BootSig32           66\r
+#define BS_VolID32                     67\r
+#define BS_VolLab32                    71\r
+#define BS_FilSysType32                82\r
+\r
+#define MBR_Table                      446\r
+\r
+#define        DIR_Name                        0\r
+#define        DIR_Attr                        11\r
+#define        DIR_NTres                       12\r
+#define        DIR_CrtTime                     14\r
+#define        DIR_CrtDate                     16\r
+#define        DIR_FstClusHI           20\r
+#define        DIR_WrtTime                     22\r
+#define        DIR_WrtDate                     24\r
+#define        DIR_FstClusLO           26\r
+#define        DIR_FileSize            28\r
+\r
+\r
+\r
+/*--------------------------------*/\r
+/* Multi-byte word access macros  */\r
+\r
+#if _WORD_ACCESS == 1  /* Enable word access to the FAT structure */\r
+#define        LD_WORD(ptr)            (WORD)(*(WORD*)(BYTE*)(ptr))\r
+#define        LD_DWORD(ptr)           (DWORD)(*(DWORD*)(BYTE*)(ptr))\r
+#define        ST_WORD(ptr,val)        *(WORD*)(BYTE*)(ptr)=(WORD)(val)\r
+#define        ST_DWORD(ptr,val)       *(DWORD*)(BYTE*)(ptr)=(DWORD)(val)\r
+#else                                  /* Use byte-by-byte access to the FAT structure */\r
+#define        LD_WORD(ptr)            (WORD)(((WORD)*(BYTE*)((ptr)+1)<<8)|(WORD)*(BYTE*)(ptr))\r
+#define        LD_DWORD(ptr)           (DWORD)(((DWORD)*(BYTE*)((ptr)+3)<<24)|((DWORD)*(BYTE*)((ptr)+2)<<16)|((WORD)*(BYTE*)((ptr)+1)<<8)|*(BYTE*)(ptr))\r
+#define        ST_WORD(ptr,val)        *(BYTE*)(ptr)=(BYTE)(val); *(BYTE*)((ptr)+1)=(BYTE)((WORD)(val)>>8)\r
+#define        ST_DWORD(ptr,val)       *(BYTE*)(ptr)=(BYTE)(val); *(BYTE*)((ptr)+1)=(BYTE)((WORD)(val)>>8); *(BYTE*)((ptr)+2)=(BYTE)((DWORD)(val)>>16); *(BYTE*)((ptr)+3)=(BYTE)((DWORD)(val)>>24)\r
+#endif\r
+\r
+\r
+#endif /* _FATFS */\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/ProgrammerConfig.c b/Projects/Incomplete/StandaloneProgrammer/Lib/ProgrammerConfig.c
new file mode 100644 (file)
index 0000000..2f3d95b
--- /dev/null
@@ -0,0 +1,77 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+#include "ProgrammerConfig.h"\r
+\r
+struct\r
+{\r
+       uint16_t SigBytes[4];\r
+       bool EnforceSigBytes;\r
+       \r
+       uint32_t ProgrammingSpeed;\r
+} ProgrammerConfig;\r
+\r
+bool ProgrammerConfig_ProcessConfiguration(void)\r
+{\r
+       memset(&ProgrammerConfig, sizeof(ProgrammerConfig), 0x00);\r
+\r
+       if (!(pf_open("CONF.txt") == FR_OK))\r
+       {\r
+               fputs(" >> ERROR: CONF.txt File Not Found.\r\n", &USBSerialStream);\r
+               return false;\r
+       }\r
+       \r
+       char  LineBuff[100];\r
+       char* CurrentLine;\r
+                       \r
+       do\r
+       {\r
+               CurrentLine = fgets(LineBuff, sizeof(LineBuff), &DataflashStream);\r
+               \r
+               if (CurrentLine)\r
+               {\r
+                       sscanf(CurrentLine, "SIGNATURE = %02x %02x %02x %02x", &ProgrammerConfig.SigBytes[0],\r
+                                                                              &ProgrammerConfig.SigBytes[1],\r
+                                                                              &ProgrammerConfig.SigBytes[2],\r
+                                                                              &ProgrammerConfig.SigBytes[3]);\r
+\r
+                       sscanf(CurrentLine, "SPEED = %lu", &ProgrammerConfig.ProgrammingSpeed);\r
+               }\r
+       } while (CurrentLine);\r
+       \r
+       fprintf(&USBSerialStream, " >> *** Configuration: ***\r\n");\r
+       fprintf(&USBSerialStream, " >> Device Signature: 0x%02x 0x%02x 0x%02x 0x%02x\r\n", ProgrammerConfig.SigBytes[0],\r
+                                                                                                  ProgrammerConfig.SigBytes[1],\r
+                                                                                                  ProgrammerConfig.SigBytes[2],\r
+                                                                                                  ProgrammerConfig.SigBytes[3]);\r
+       fprintf(&USBSerialStream, " >> Programming Speed: %lu Hz\r\n", ProgrammerConfig.ProgrammingSpeed);\r
+       \r
+       return true;\r
+}\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/ProgrammerConfig.h b/Projects/Incomplete/StandaloneProgrammer/Lib/ProgrammerConfig.h
new file mode 100644 (file)
index 0000000..8067097
--- /dev/null
@@ -0,0 +1,44 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+#ifndef _PROGRAMMER_CONFIG_H_\r
+#define _PROGRAMMER_CONFIG_H_\r
+\r
+       /* Includes: */\r
+               #include <stdio.h>\r
+               #include <string.h>\r
+               #include <stdbool.h>\r
+               \r
+               #include "../StandaloneProgrammer.h"\r
+\r
+       /* Function Prototypes: */\r
+               bool ProgrammerConfig_ProcessConfiguration(void);\r
+\r
+#endif\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/SCSI.c b/Projects/Incomplete/StandaloneProgrammer/Lib/SCSI.c
new file mode 100644 (file)
index 0000000..6a97871
--- /dev/null
@@ -0,0 +1,281 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ *  SCSI command processing routines, for SCSI commands issued by the host. Mass Storage\r
+ *  devices use a thin "Bulk-Only Transport" protocol for issuing commands and status information,\r
+ *  which wrap around standard SCSI device commands for controlling the actual storage medium.\r
+ */\r
\r
+#define  INCLUDE_FROM_SCSI_C\r
+#include "SCSI.h"\r
+\r
+/** Structure to hold the SCSI response data to a SCSI INQUIRY command. This gives information about the device's\r
+ *  features and capabilities.\r
+ */\r
+SCSI_Inquiry_Response_t InquiryData = \r
+       {\r
+               .DeviceType          = DEVICE_TYPE_BLOCK,\r
+               .PeripheralQualifier = 0,\r
+                       \r
+               .Removable           = true,\r
+                       \r
+               .Version             = 0,\r
+                       \r
+               .ResponseDataFormat  = 2,\r
+               .NormACA             = false,\r
+               .TrmTsk              = false,\r
+               .AERC                = false,\r
+\r
+               .AdditionalLength    = 0x1F,\r
+                       \r
+               .SoftReset           = false,\r
+               .CmdQue              = false,\r
+               .Linked              = false,\r
+               .Sync                = false,\r
+               .WideBus16Bit        = false,\r
+               .WideBus32Bit        = false,\r
+               .RelAddr             = false,\r
+               \r
+               .VendorID            = "LUFA",\r
+               .ProductID           = "Dataflash Disk",\r
+               .RevisionID          = {'0','.','0','0'},\r
+       };\r
+\r
+/** Structure to hold the sense data for the last issued SCSI command, which is returned to the host after a SCSI REQUEST SENSE\r
+ *  command is issued. This gives information on exactly why the last command failed to complete.\r
+ */\r
+SCSI_Request_Sense_Response_t SenseData =\r
+       {\r
+               .ResponseCode        = 0x70,\r
+               .AdditionalLength    = 0x0A,\r
+       };\r
+\r
+\r
+/** Main routine to process the SCSI command located in the Command Block Wrapper read from the host. This dispatches\r
+ *  to the appropriate SCSI command handling routine if the issued command is supported by the device, else it returns\r
+ *  a command failure due to a ILLEGAL REQUEST.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to the Mass Storage class interface structure that the command is associated with\r
+ */\r
+bool SCSI_DecodeSCSICommand(USB_ClassInfo_MS_Device_t* MSInterfaceInfo)\r
+{\r
+       /* Set initial sense data, before the requested command is processed */\r
+       SCSI_SET_SENSE(SCSI_SENSE_KEY_GOOD,\r
+                      SCSI_ASENSE_NO_ADDITIONAL_INFORMATION,\r
+                      SCSI_ASENSEQ_NO_QUALIFIER);\r
+                                          \r
+       /* Run the appropriate SCSI command hander function based on the passed command */\r
+       switch (MSInterfaceInfo->State.CommandBlock.SCSICommandData[0])\r
+       {\r
+               case SCSI_CMD_INQUIRY:\r
+                       SCSI_Command_Inquiry(MSInterfaceInfo);                  \r
+                       break;\r
+               case SCSI_CMD_REQUEST_SENSE:\r
+                       SCSI_Command_Request_Sense(MSInterfaceInfo);\r
+                       break;\r
+               case SCSI_CMD_READ_CAPACITY_10:\r
+                       SCSI_Command_Read_Capacity_10(MSInterfaceInfo);                 \r
+                       break;\r
+               case SCSI_CMD_SEND_DIAGNOSTIC:\r
+                       SCSI_Command_Send_Diagnostic(MSInterfaceInfo);\r
+                       break;\r
+               case SCSI_CMD_WRITE_10:\r
+                       SCSI_Command_ReadWrite_10(MSInterfaceInfo, DATA_WRITE);\r
+                       break;\r
+               case SCSI_CMD_READ_10:\r
+                       SCSI_Command_ReadWrite_10(MSInterfaceInfo, DATA_READ);\r
+                       break;\r
+               case SCSI_CMD_TEST_UNIT_READY:\r
+               case SCSI_CMD_PREVENT_ALLOW_MEDIUM_REMOVAL:\r
+               case SCSI_CMD_VERIFY_10:\r
+                       /* These commands should just succeed, no handling required */\r
+                       MSInterfaceInfo->State.CommandBlock.DataTransferLength = 0;\r
+                       break;\r
+               default:\r
+                       /* Update the SENSE key to reflect the invalid command */\r
+                       SCSI_SET_SENSE(SCSI_SENSE_KEY_ILLEGAL_REQUEST,\r
+                                  SCSI_ASENSE_INVALID_COMMAND,\r
+                                  SCSI_ASENSEQ_NO_QUALIFIER);\r
+                       break;\r
+       }\r
+\r
+       return (SenseData.SenseKey == SCSI_SENSE_KEY_GOOD);\r
+}\r
+\r
+/** Command processing for an issued SCSI INQUIRY command. This command returns information about the device's features\r
+ *  and capabilities to the host.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to the Mass Storage class interface structure that the command is associated with\r
+ */\r
+static void SCSI_Command_Inquiry(USB_ClassInfo_MS_Device_t* MSInterfaceInfo)\r
+{\r
+       uint16_t AllocationLength  = (((uint16_t)MSInterfaceInfo->State.CommandBlock.SCSICommandData[3] << 8) |\r
+                                                MSInterfaceInfo->State.CommandBlock.SCSICommandData[4]);\r
+       uint16_t BytesTransferred  = (AllocationLength < sizeof(InquiryData))? AllocationLength :\r
+                                                                              sizeof(InquiryData);\r
+\r
+       /* Only the standard INQUIRY data is supported, check if any optional INQUIRY bits set */\r
+       if ((MSInterfaceInfo->State.CommandBlock.SCSICommandData[1] & ((1 << 0) | (1 << 1))) ||\r
+            MSInterfaceInfo->State.CommandBlock.SCSICommandData[2])\r
+       {\r
+               /* Optional but unsupported bits set - update the SENSE key and fail the request */\r
+               SCSI_SET_SENSE(SCSI_SENSE_KEY_ILLEGAL_REQUEST,\r
+                              SCSI_ASENSE_INVALID_FIELD_IN_CDB,\r
+                              SCSI_ASENSEQ_NO_QUALIFIER);\r
+\r
+               return;\r
+       }\r
+       \r
+       Endpoint_Write_Stream_LE(&InquiryData, BytesTransferred, NO_STREAM_CALLBACK);\r
+\r
+       uint8_t PadBytes[AllocationLength - BytesTransferred];\r
+       \r
+       /* Pad out remaining bytes with 0x00 */\r
+       Endpoint_Write_Stream_LE(&PadBytes, (AllocationLength - BytesTransferred), NO_STREAM_CALLBACK);\r
+\r
+       /* Finalize the stream transfer to send the last packet */\r
+       Endpoint_ClearIN();\r
+\r
+       /* Succeed the command and update the bytes transferred counter */\r
+       MSInterfaceInfo->State.CommandBlock.DataTransferLength -= BytesTransferred;\r
+}\r
+\r
+/** Command processing for an issued SCSI REQUEST SENSE command. This command returns information about the last issued command,\r
+ *  including the error code and additional error information so that the host can determine why a command failed to complete.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to the Mass Storage class interface structure that the command is associated with\r
+ */\r
+static void SCSI_Command_Request_Sense(USB_ClassInfo_MS_Device_t* MSInterfaceInfo)\r
+{\r
+       uint8_t  AllocationLength = MSInterfaceInfo->State.CommandBlock.SCSICommandData[4];\r
+       uint8_t  BytesTransferred = (AllocationLength < sizeof(SenseData))? AllocationLength : sizeof(SenseData);\r
+       \r
+       uint8_t PadBytes[AllocationLength - BytesTransferred];\r
+\r
+       Endpoint_Write_Stream_LE(&SenseData, BytesTransferred, NO_STREAM_CALLBACK);\r
+       Endpoint_Write_Stream_LE(&PadBytes, (AllocationLength - BytesTransferred), NO_STREAM_CALLBACK);\r
+       Endpoint_ClearIN();\r
+\r
+       /* Succeed the command and update the bytes transferred counter */\r
+       MSInterfaceInfo->State.CommandBlock.DataTransferLength -= BytesTransferred;\r
+}\r
+\r
+/** Command processing for an issued SCSI READ CAPACITY (10) command. This command returns information about the device's capacity\r
+ *  on the selected Logical Unit (drive), as a number of OS-sized blocks.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to the Mass Storage class interface structure that the command is associated with\r
+ */\r
+static void SCSI_Command_Read_Capacity_10(USB_ClassInfo_MS_Device_t* MSInterfaceInfo)\r
+{\r
+       uint32_t LastBlockAddressInLUN = (VIRTUAL_MEMORY_BLOCKS - 1);\r
+       uint32_t MediaBlockSize        = VIRTUAL_MEMORY_BLOCK_SIZE;\r
+\r
+       Endpoint_Write_Stream_BE(&LastBlockAddressInLUN, sizeof(LastBlockAddressInLUN), NO_STREAM_CALLBACK);\r
+       Endpoint_Write_Stream_BE(&MediaBlockSize, sizeof(MediaBlockSize), NO_STREAM_CALLBACK);\r
+       Endpoint_ClearIN();\r
+       \r
+       /* Succeed the command and update the bytes transferred counter */\r
+       MSInterfaceInfo->State.CommandBlock.DataTransferLength -= 8;\r
+}\r
+\r
+/** Command processing for an issued SCSI SEND DIAGNOSTIC command. This command performs a quick check of the Dataflash ICs on the\r
+ *  board, and indicates if they are present and functioning correctly. Only the Self-Test portion of the diagnostic command is\r
+ *  supported.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to the Mass Storage class interface structure that the command is associated with\r
+ */\r
+static void SCSI_Command_Send_Diagnostic(USB_ClassInfo_MS_Device_t* MSInterfaceInfo)\r
+{\r
+       /* Check to see if the SELF TEST bit is not set */\r
+       if (!(MSInterfaceInfo->State.CommandBlock.SCSICommandData[1] & (1 << 2)))\r
+       {\r
+               /* Only self-test supported - update SENSE key and fail the command */\r
+               SCSI_SET_SENSE(SCSI_SENSE_KEY_ILLEGAL_REQUEST,\r
+                              SCSI_ASENSE_INVALID_FIELD_IN_CDB,\r
+                              SCSI_ASENSEQ_NO_QUALIFIER);\r
+\r
+               return;\r
+       }\r
+       \r
+       /* Check to see if all attached Dataflash ICs are functional */\r
+       if (!(DataflashManager_CheckDataflashOperation()))\r
+       {\r
+               /* Update SENSE key with a hardware error condition and return command fail */\r
+               SCSI_SET_SENSE(SCSI_SENSE_KEY_HARDWARE_ERROR,\r
+                              SCSI_ASENSE_NO_ADDITIONAL_INFORMATION,\r
+                              SCSI_ASENSEQ_NO_QUALIFIER);      \r
+       \r
+               return;\r
+       }\r
+       \r
+       /* Succeed the command and update the bytes transferred counter */\r
+       MSInterfaceInfo->State.CommandBlock.DataTransferLength = 0;\r
+}\r
+\r
+/** Command processing for an issued SCSI READ (10) or WRITE (10) command. This command reads in the block start address\r
+ *  and total number of blocks to process, then calls the appropriate low-level dataflash routine to handle the actual\r
+ *  reading and writing of the data.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to the Mass Storage class interface structure that the command is associated with\r
+ *  \param[in] IsDataRead  Indicates if the command is a READ (10) command or WRITE (10) command (DATA_READ or DATA_WRITE)\r
+ */\r
+static void SCSI_Command_ReadWrite_10(USB_ClassInfo_MS_Device_t* MSInterfaceInfo, const bool IsDataRead)\r
+{\r
+       uint32_t BlockAddress;\r
+       uint16_t TotalBlocks;\r
+       \r
+       /* Load in the 32-bit block address (SCSI uses big-endian, so have to reverse the byte order) */\r
+       BlockAddress = SwapEndian_32(*(uint32_t*)&MSInterfaceInfo->State.CommandBlock.SCSICommandData[2]);\r
+\r
+       /* Load in the 16-bit total blocks (SCSI uses big-endian, so have to reverse the byte order) */\r
+       TotalBlocks  = SwapEndian_16(*(uint32_t*)&MSInterfaceInfo->State.CommandBlock.SCSICommandData[7]);\r
+       \r
+       /* Check if the block address is outside the maximum allowable value for the LUN */\r
+       if (BlockAddress >= VIRTUAL_MEMORY_BLOCKS)\r
+       {\r
+               /* Block address is invalid, update SENSE key and return command fail */\r
+               SCSI_SET_SENSE(SCSI_SENSE_KEY_ILLEGAL_REQUEST,\r
+                              SCSI_ASENSE_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE,\r
+                              SCSI_ASENSEQ_NO_QUALIFIER);\r
+\r
+               return;\r
+       }\r
+       \r
+       /* Determine if the packet is a READ (10) or WRITE (10) command, call appropriate function */\r
+       if (IsDataRead == DATA_READ)\r
+         DataflashManager_ReadBlocks(MSInterfaceInfo, BlockAddress, TotalBlocks);\r
+       else\r
+         DataflashManager_WriteBlocks(MSInterfaceInfo, BlockAddress, TotalBlocks);\r
+\r
+       /* Update the bytes transferred counter and succeed the command */\r
+       MSInterfaceInfo->State.CommandBlock.DataTransferLength -= ((uint32_t)TotalBlocks * VIRTUAL_MEMORY_BLOCK_SIZE);\r
+}\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Lib/SCSI.h b/Projects/Incomplete/StandaloneProgrammer/Lib/SCSI.h
new file mode 100644 (file)
index 0000000..91ba77d
--- /dev/null
@@ -0,0 +1,146 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ *  Header file for SCSI.c.\r
+ */\r
\r
+#ifndef _SCSI_H_\r
+#define _SCSI_H_\r
+\r
+       /* Includes: */\r
+               #include <avr/io.h>\r
+               #include <avr/pgmspace.h>\r
+\r
+               #include <LUFA/Drivers/USB/USB.h>\r
+               #include <LUFA/Drivers/USB/Class/MassStorage.h>\r
+\r
+               #include "Descriptors.h"\r
+               #include "DataflashManager.h"\r
+       \r
+       /* Macros: */\r
+               /** Macro to set the current SCSI sense data to the given key, additional sense code and additional sense qualifier. This\r
+                *  is for convenience, as it allows for all three sense values (returned upon request to the host to give information about\r
+                *  the last command failure) in a quick and easy manner.\r
+                *\r
+                *  \param[in] key    New SCSI sense key to set the sense code to\r
+                *  \param[in] acode  New SCSI additional sense key to set the additional sense code to\r
+                *  \param[in] aqual  New SCSI additional sense key qualifier to set the additional sense qualifier code to\r
+                */\r
+               #define SCSI_SET_SENSE(key, acode, aqual)  MACROS{ SenseData.SenseKey = key;              \\r
+                                                                  SenseData.AdditionalSenseCode = acode; \\r
+                                                                  SenseData.AdditionalSenseQualifier = aqual; }MACROE\r
+\r
+               /** Macro for the SCSI_Command_ReadWrite_10() function, to indicate that data is to be read from the storage medium. */\r
+               #define DATA_READ           true\r
+\r
+               /** Macro for the SCSI_Command_ReadWrite_10() function, to indicate that data is to be written to the storage medium. */\r
+               #define DATA_WRITE          false\r
+\r
+               /** Value for the DeviceType entry in the SCSI_Inquiry_Response_t enum, indicating a Block Media device. */\r
+               #define DEVICE_TYPE_BLOCK   0x00\r
+               \r
+               /** Value for the DeviceType entry in the SCSI_Inquiry_Response_t enum, indicating a CD-ROM device. */\r
+               #define DEVICE_TYPE_CDROM   0x05\r
+\r
+       /* Type Defines: */\r
+               /** Type define for a SCSI response structure to a SCSI INQUIRY command. For details of the\r
+                *  structure contents, refer to the SCSI specifications.\r
+                */\r
+               typedef struct\r
+               {\r
+                       unsigned char DeviceType          : 5;\r
+                       unsigned char PeripheralQualifier : 3;\r
+                       \r
+                       unsigned char _RESERVED1          : 7;\r
+                       unsigned char Removable           : 1;\r
+                       \r
+                       uint8_t      Version;\r
+                       \r
+                       unsigned char ResponseDataFormat  : 4;\r
+                       unsigned char _RESERVED2          : 1;\r
+                       unsigned char NormACA             : 1;\r
+                       unsigned char TrmTsk              : 1;\r
+                       unsigned char AERC                : 1;\r
+\r
+                       uint8_t      AdditionalLength;\r
+                       uint8_t      _RESERVED3[2];\r
+\r
+                       unsigned char SoftReset           : 1;\r
+                       unsigned char CmdQue              : 1;\r
+                       unsigned char _RESERVED4          : 1;\r
+                       unsigned char Linked              : 1;\r
+                       unsigned char Sync                : 1;\r
+                       unsigned char WideBus16Bit        : 1;\r
+                       unsigned char WideBus32Bit        : 1;\r
+                       unsigned char RelAddr             : 1;\r
+                       \r
+                       uint8_t      VendorID[8];\r
+                       uint8_t      ProductID[16];\r
+                       uint8_t      RevisionID[4];\r
+               } SCSI_Inquiry_Response_t;\r
+               \r
+               /** Type define for a SCSI sense structure to a SCSI REQUEST SENSE command. For details of the\r
+                *  structure contents, refer to the SCSI specifications.\r
+                */\r
+               typedef struct\r
+               {\r
+                       uint8_t       ResponseCode;\r
+                       \r
+                       uint8_t       SegmentNumber;\r
+                       \r
+                       unsigned char SenseKey            : 4;\r
+                       unsigned char _RESERVED1          : 1;\r
+                       unsigned char ILI                 : 1;\r
+                       unsigned char EOM                 : 1;\r
+                       unsigned char FileMark            : 1;\r
+                       \r
+                       uint8_t      Information[4];\r
+                       uint8_t      AdditionalLength;\r
+                       uint8_t      CmdSpecificInformation[4];\r
+                       uint8_t      AdditionalSenseCode;\r
+                       uint8_t      AdditionalSenseQualifier;\r
+                       uint8_t      FieldReplaceableUnitCode;\r
+                       uint8_t      SenseKeySpecific[3];\r
+               } SCSI_Request_Sense_Response_t;\r
+               \r
+       /* Function Prototypes: */\r
+               bool SCSI_DecodeSCSICommand(USB_ClassInfo_MS_Device_t* MSInterfaceInfo);\r
+               \r
+               #if defined(INCLUDE_FROM_SCSI_C)\r
+                       static void SCSI_Command_Inquiry(USB_ClassInfo_MS_Device_t* MSInterfaceInfo);\r
+                       static void SCSI_Command_Request_Sense(USB_ClassInfo_MS_Device_t* MSInterfaceInfo);\r
+                       static void SCSI_Command_Read_Capacity_10(USB_ClassInfo_MS_Device_t* MSInterfaceInfo);\r
+                       static void SCSI_Command_Send_Diagnostic(USB_ClassInfo_MS_Device_t* MSInterfaceInfo);\r
+                       static void SCSI_Command_ReadWrite_10(USB_ClassInfo_MS_Device_t* MSInterfaceInfo, const bool IsDataRead);\r
+               #endif\r
+               \r
+#endif\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/Standalone Programmer.inf b/Projects/Incomplete/StandaloneProgrammer/Standalone Programmer.inf
new file mode 100644 (file)
index 0000000..9881abc
--- /dev/null
@@ -0,0 +1,106 @@
+;************************************************************\r
+; Windows USB CDC ACM Setup File\r
+; Copyright (c) 2000 Microsoft Corporation\r
+\r
+\r
+[Version]\r
+Signature="$Windows NT$"\r
+Class=Ports\r
+ClassGuid={4D36E978-E325-11CE-BFC1-08002BE10318}\r
+Provider=%MFGNAME%\r
+LayoutFile=layout.inf\r
+CatalogFile=%MFGFILENAME%.cat\r
+DriverVer=11/15/2007,5.1.2600.0\r
+\r
+[Manufacturer]\r
+%MFGNAME%=DeviceList, NTamd64\r
+\r
+[DestinationDirs]\r
+DefaultDestDir=12\r
+\r
+\r
+;------------------------------------------------------------------------------\r
+;  Windows 2000/XP/Vista-32bit Sections\r
+;------------------------------------------------------------------------------\r
+\r
+[DriverInstall.nt]\r
+include=mdmcpq.inf\r
+CopyFiles=DriverCopyFiles.nt\r
+AddReg=DriverInstall.nt.AddReg\r
+\r
+[DriverCopyFiles.nt]\r
+usbser.sys,,,0x20\r
+\r
+[DriverInstall.nt.AddReg]\r
+HKR,,DevLoader,,*ntkern\r
+HKR,,NTMPDriver,,%DRIVERFILENAME%.sys\r
+HKR,,EnumPropPages32,,"MsPorts.dll,SerialPortPropPageProvider"\r
+\r
+[DriverInstall.nt.Services]\r
+AddService=usbser, 0x00000002, DriverService.nt\r
+\r
+[DriverService.nt]\r
+DisplayName=%SERVICE%\r
+ServiceType=1\r
+StartType=3\r
+ErrorControl=1\r
+ServiceBinary=%12%\%DRIVERFILENAME%.sys\r
+\r
+;------------------------------------------------------------------------------\r
+;  Vista-64bit Sections\r
+;------------------------------------------------------------------------------\r
+\r
+[DriverInstall.NTamd64]\r
+include=mdmcpq.inf\r
+CopyFiles=DriverCopyFiles.NTamd64\r
+AddReg=DriverInstall.NTamd64.AddReg\r
+\r
+[DriverCopyFiles.NTamd64]\r
+%DRIVERFILENAME%.sys,,,0x20\r
+\r
+[DriverInstall.NTamd64.AddReg]\r
+HKR,,DevLoader,,*ntkern\r
+HKR,,NTMPDriver,,%DRIVERFILENAME%.sys\r
+HKR,,EnumPropPages32,,"MsPorts.dll,SerialPortPropPageProvider"\r
+\r
+[DriverInstall.NTamd64.Services]\r
+AddService=usbser, 0x00000002, DriverService.NTamd64\r
+\r
+[DriverService.NTamd64]\r
+DisplayName=%SERVICE%\r
+ServiceType=1\r
+StartType=3\r
+ErrorControl=1\r
+ServiceBinary=%12%\%DRIVERFILENAME%.sys\r
+\r
+\r
+;------------------------------------------------------------------------------\r
+;  Vendor and Product ID Definitions\r
+;------------------------------------------------------------------------------\r
+; When developing your USB device, the VID and PID used in the PC side\r
+; application program and the firmware on the microcontroller must match.\r
+; Modify the below line to use your VID and PID.  Use the format as shown below.\r
+; Note: One INF file can be used for multiple devices with different VID and PIDs.\r
+; For each supported device, append ",USB\VID_xxxx&PID_yyyy" to the end of the line.\r
+;------------------------------------------------------------------------------\r
+[SourceDisksFiles]\r
+[SourceDisksNames]\r
+[DeviceList]\r
+%DESCRIPTION%=DriverInstall, USB\VID_03EB&PID_2063&MI_00\r
+\r
+[DeviceList.NTamd64]\r
+%DESCRIPTION%=DriverInstall, USB\VID_03EB&PID_2063&MI_00\r
+\r
+\r
+;------------------------------------------------------------------------------\r
+;  String Definitions\r
+;------------------------------------------------------------------------------\r
+;Modify these strings to customize your device\r
+;------------------------------------------------------------------------------\r
+[Strings]\r
+MFGFILENAME="CDC_vista"\r
+DRIVERFILENAME ="usbser"\r
+MFGNAME="CCS, Inc."\r
+INSTDISK="LUFA Benito Programmer Driver Installer"\r
+DESCRIPTION="Communications Port"\r
+SERVICE="USB RS-232 Emulation Driver"
\ No newline at end of file
diff --git a/Projects/Incomplete/StandaloneProgrammer/StandaloneProgrammer.c b/Projects/Incomplete/StandaloneProgrammer/StandaloneProgrammer.c
new file mode 100644 (file)
index 0000000..655d13a
--- /dev/null
@@ -0,0 +1,234 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ *  Main source file for the Standalone Programmer project. This file contains the main tasks of\r
+ *  the demo and is responsible for the initial application hardware configuration.\r
+ */\r
+\r
+#define  INCLUDE_FROM_STANDALONEPROG_C\r
+#include "StandaloneProgrammer.h"\r
+\r
+/** LUFA Mass Storage Class driver interface configuration and state information. This structure is\r
+ *  passed to all Mass Storage Class driver functions, so that multiple instances of the same class\r
+ *  within a device can be differentiated from one another.\r
+ */\r
+USB_ClassInfo_MS_Device_t Disk_MS_Interface =\r
+       {\r
+               .Config =\r
+                       {\r
+                               .InterfaceNumber           = 0,\r
+\r
+                               .DataINEndpointNumber      = MASS_STORAGE_IN_EPNUM,\r
+                               .DataINEndpointSize        = MASS_STORAGE_IO_EPSIZE,\r
+                               .DataINEndpointDoubleBank  = false,\r
+\r
+                               .DataOUTEndpointNumber     = MASS_STORAGE_OUT_EPNUM,\r
+                               .DataOUTEndpointSize       = MASS_STORAGE_IO_EPSIZE,\r
+                               .DataOUTEndpointDoubleBank = false,\r
+\r
+                               .TotalLUNs                 = 1,\r
+                       },\r
+       };\r
+       \r
+/** LUFA CDC Class driver interface configuration and state information. This structure is\r
+ *  passed to all CDC Class driver functions, so that multiple instances of the same class\r
+ *  within a device can be differentiated from one another.\r
+ */\r
+USB_ClassInfo_CDC_Device_t VirtualSerial_CDC_Interface =\r
+       {\r
+               .Config =\r
+                       {\r
+                               .ControlInterfaceNumber         = 0,\r
+\r
+                               .DataINEndpointNumber           = CDC_TX_EPNUM,\r
+                               .DataINEndpointSize             = CDC_TXRX_EPSIZE,\r
+                               .DataINEndpointDoubleBank       = false,\r
+\r
+                               .DataOUTEndpointNumber          = CDC_RX_EPNUM,\r
+                               .DataOUTEndpointSize            = CDC_TXRX_EPSIZE,\r
+                               .DataOUTEndpointDoubleBank      = false,\r
+\r
+                               .NotificationEndpointNumber     = CDC_NOTIFICATION_EPNUM,\r
+                               .NotificationEndpointSize       = CDC_NOTIFICATION_EPSIZE,\r
+                               .NotificationEndpointDoubleBank = false,\r
+                       },\r
+       };\r
+\r
+/** Standard file stream for the CDC interface when set up, so that the virtual CDC COM port can be\r
+ *  used like any regular character stream in the C APIs\r
+ */\r
+FILE USBSerialStream;\r
+\r
+/** Standard file stream for the currently open file on the dataflash disk. */\r
+FILE DataflashStream = FDEV_SETUP_STREAM(NULL, Dataflash_getchar, _FDEV_SETUP_READ);\r
+\r
+/** Petite FAT Fs structure to hold the internal state of the FAT driver for the dataflash contents. */\r
+FATFS DataflashData;\r
+\r
+\r
+/** Stream character fetching routine for the FAT driver so that characters from the currently open file can be\r
+ *  readin sequence when applied to a stdio stream.\r
+ */\r
+static int Dataflash_getchar(FILE* Stream)\r
+{\r
+       char ReadByte;\r
+       WORD ByteWasRead;\r
+\r
+       if (pf_read(&ReadByte, 1, &ByteWasRead) != FR_OK)\r
+         return _FDEV_ERR;\r
+\r
+       return (ByteWasRead ? ReadByte : _FDEV_EOF);\r
+}\r
+\r
+/** Task to determine if the user is wishes to start the programming sequence, and if so executes the \r
+ *  required functions to program the attached target (if any) with the files loaded to the dataflash.\r
+ */\r
+void Programmer_Task(void)\r
+{\r
+       static bool HasAttempted = false;\r
+\r
+       if (Buttons_GetStatus() & BUTTONS_BUTTON1)\r
+       {\r
+               if (!(HasAttempted))\r
+                       HasAttempted = true;\r
+               else\r
+                       return;\r
+               \r
+               fputs("==== PROGRAMMING CYCLE STARTED ====\r\n", &USBSerialStream);\r
+\r
+               fputs("Reading Configuration File...\r\n", &USBSerialStream);\r
+               \r
+               if (!(ProgrammerConfig_ProcessConfiguration()))\r
+                 goto EndOfProgCycle;\r
+\r
+               EndOfProgCycle:\r
+               fputs("==== PROGRAMMING CYCLE FINISHED ====\r\n", &USBSerialStream);\r
+       }\r
+       else\r
+       {\r
+               HasAttempted = false;\r
+       }\r
+}\r
+\r
+/** Main program entry point. This routine contains the overall program flow, including initial\r
+ *  setup of all components and the main program loop.\r
+ */\r
+int main(void)\r
+{\r
+       SetupHardware();\r
+\r
+       /* Create a regular character stream for the interface so that it can be used with the stdio.h functions */\r
+       CDC_Device_CreateStream(&VirtualSerial_CDC_Interface, &USBSerialStream);\r
+\r
+       LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);\r
+\r
+       for (;;)\r
+       {\r
+               Programmer_Task();\r
+                 \r
+               /* Must throw away unused bytes from the host, or it will lock up while waiting for the device */\r
+               while (CDC_Device_BytesReceived(&VirtualSerial_CDC_Interface))\r
+                 CDC_Device_ReceiveByte(&VirtualSerial_CDC_Interface);\r
+\r
+               CDC_Device_USBTask(&VirtualSerial_CDC_Interface);\r
+               MS_Device_USBTask(&Disk_MS_Interface);\r
+               USB_USBTask();\r
+       }\r
+}\r
+\r
+/** Configures the board hardware and chip peripherals for the demo's functionality. */\r
+void SetupHardware(void)\r
+{\r
+       /* Disable watchdog if enabled by bootloader/fuses */\r
+       MCUSR &= ~(1 << WDRF);\r
+       wdt_disable();\r
+\r
+       /* Disable clock division */\r
+       clock_prescale_set(clock_div_1);\r
+\r
+       /* Hardware Initialization */\r
+       LEDs_Init();\r
+       SPI_Init(SPI_SPEED_FCPU_DIV_2 | SPI_SCK_LEAD_FALLING | SPI_SAMPLE_TRAILING | SPI_MODE_MASTER);\r
+       Dataflash_Init();\r
+       USB_Init();\r
+       Buttons_Init();\r
+       pf_mount(&DataflashData);\r
+\r
+       /* Clear Dataflash sector protections, if enabled */\r
+       DataflashManager_ResetDataflashProtections();\r
+}\r
+\r
+/** Event handler for the library USB Connection event. */\r
+void EVENT_USB_Device_Connect(void)\r
+{\r
+       LEDs_SetAllLEDs(LEDMASK_USB_ENUMERATING);\r
+}\r
+\r
+/** Event handler for the library USB Disconnection event. */\r
+void EVENT_USB_Device_Disconnect(void)\r
+{\r
+       LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);\r
+}\r
+\r
+/** Event handler for the library USB Configuration Changed event. */\r
+void EVENT_USB_Device_ConfigurationChanged(void)\r
+{\r
+       LEDs_SetAllLEDs(LEDMASK_USB_READY);\r
+\r
+       if (!(MS_Device_ConfigureEndpoints(&Disk_MS_Interface)))\r
+         LEDs_SetAllLEDs(LEDMASK_USB_ERROR);\r
+\r
+       if (!(CDC_Device_ConfigureEndpoints(&VirtualSerial_CDC_Interface)))\r
+         LEDs_SetAllLEDs(LEDMASK_USB_ERROR);\r
+}\r
+\r
+/** Event handler for the library USB Unhandled Control Request event. */\r
+void EVENT_USB_Device_UnhandledControlRequest(void)\r
+{\r
+       MS_Device_ProcessControlRequest(&Disk_MS_Interface);\r
+       CDC_Device_ProcessControlRequest(&VirtualSerial_CDC_Interface);\r
+}\r
+\r
+/** Mass Storage class driver callback function the reception of SCSI commands from the host, which must be processed.\r
+ *\r
+ *  \param[in] MSInterfaceInfo  Pointer to the Mass Storage class interface configuration structure being referenced\r
+ */\r
+bool CALLBACK_MS_Device_SCSICommandReceived(USB_ClassInfo_MS_Device_t* MSInterfaceInfo)\r
+{\r
+       bool CommandSuccess;\r
+       \r
+       LEDs_SetAllLEDs(LEDMASK_USB_BUSY);\r
+       CommandSuccess = SCSI_DecodeSCSICommand(MSInterfaceInfo);\r
+       LEDs_SetAllLEDs(LEDMASK_USB_READY);\r
+       \r
+       return CommandSuccess;\r
+}\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/StandaloneProgrammer.h b/Projects/Incomplete/StandaloneProgrammer/StandaloneProgrammer.h
new file mode 100644 (file)
index 0000000..196b7ca
--- /dev/null
@@ -0,0 +1,94 @@
+/*\r
+             LUFA Library\r
+     Copyright (C) Dean Camera, 2009.\r
+              \r
+  dean [at] fourwalledcubicle [dot] com\r
+      www.fourwalledcubicle.com\r
+*/\r
+\r
+/*\r
+  Copyright 2009  Dean Camera (dean [at] fourwalledcubicle [dot] com)\r
+\r
+  Permission to use, copy, modify, and distribute this software\r
+  and its documentation for any purpose and without fee is hereby\r
+  granted, provided that the above copyright notice appear in all\r
+  copies and that both that the copyright notice and this\r
+  permission notice and warranty disclaimer appear in supporting\r
+  documentation, and that the name of the author not be used in\r
+  advertising or publicity pertaining to distribution of the\r
+  software without specific, written prior permission.\r
+\r
+  The author disclaim all warranties with regard to this\r
+  software, including all implied warranties of merchantability\r
+  and fitness.  In no event shall the author be liable for any\r
+  special, indirect or consequential damages or any damages\r
+  whatsoever resulting from loss of use, data or profits, whether\r
+  in an action of contract, negligence or other tortious action,\r
+  arising out of or in connection with the use or performance of\r
+  this software.\r
+*/\r
+\r
+/** \file\r
+ *\r
+ *  Header file for StandaloneProgrammer.c.\r
+ */\r
+\r
+#ifndef _STANDALONE_PROG_H_\r
+#define _STANDALONE_PROG_H_\r
+\r
+       /* Includes: */\r
+               #include <avr/io.h>\r
+               #include <avr/wdt.h>\r
+               #include <avr/power.h>\r
+               #include <stdio.h>\r
+\r
+               #include "Descriptors.h"\r
+\r
+               #include "Lib/SCSI.h"\r
+               #include "Lib/DataflashManager.h"\r
+               #include "Lib/ProgrammerConfig.h"\r
+               #include "Lib/PetiteFATFs/pff.h"\r
+\r
+               #include <LUFA/Version.h>\r
+               #include <LUFA/Drivers/Board/LEDs.h>\r
+               #include <LUFA/Drivers/Board/Buttons.h>\r
+               #include <LUFA/Drivers/USB/USB.h>\r
+               #include <LUFA/Drivers/USB/Class/MassStorage.h>
+               #include <LUFA/Drivers/USB/Class/CDC.h>\r
+\r
+       /* Macros: */\r
+               /** LED mask for the library LED driver, to indicate that the USB interface is not ready. */\r
+               #define LEDMASK_USB_NOTREADY      LEDS_LED1\r
+\r
+               /** LED mask for the library LED driver, to indicate that the USB interface is enumerating. */\r
+               #define LEDMASK_USB_ENUMERATING  (LEDS_LED2 | LEDS_LED3)\r
+\r
+               /** LED mask for the library LED driver, to indicate that the USB interface is ready. */\r
+               #define LEDMASK_USB_READY        (LEDS_LED2 | LEDS_LED4)\r
+\r
+               /** LED mask for the library LED driver, to indicate that an error has occurred in the USB interface. */\r
+               #define LEDMASK_USB_ERROR        (LEDS_LED1 | LEDS_LED3)\r
+\r
+               /** LED mask for the library LED driver, to indicate that the USB interface is busy. */\r
+               #define LEDMASK_USB_BUSY         (LEDS_LED2)\r
+               \r
+       /* External Variables: */\r
+               extern FILE USBSerialStream;\r
+               extern FILE DataflashStream;\r
+       \r
+       /* Function Prototypes: */\r
+               #if defined(INCLUDE_FROM_STANDALONEPROG_C)\r
+                       static int Dataflash_getchar(FILE* Stream);\r
+               #endif\r
+               \r
+               void SetupHardware(void);\r
+               void Programmer_Task(void);\r
+\r
+               void EVENT_USB_Device_Connect(void);\r
+               void EVENT_USB_Device_Disconnect(void);\r
+               void EVENT_USB_Device_ConfigurationChanged(void);\r
+               void EVENT_USB_Device_UnhandledControlRequest(void);\r
+\r
+               bool CALLBACK_MS_Device_SCSICommandReceived(USB_ClassInfo_MS_Device_t* MSInterfaceInfo);\r
+\r
+#endif\r
diff --git a/Projects/Incomplete/StandaloneProgrammer/makefile b/Projects/Incomplete/StandaloneProgrammer/makefile
new file mode 100644 (file)
index 0000000..242a7e7
--- /dev/null
@@ -0,0 +1,746 @@
+# Hey Emacs, this is a -*- makefile -*-\r
+#----------------------------------------------------------------------------\r
+# WinAVR Makefile Template written by Eric B. Weddington, Jörg Wunsch, et al.\r
+#  >> Modified for use with the LUFA project. <<\r
+#\r
+# Released to the Public Domain\r
+#\r
+# Additional material for this makefile was written by:\r
+# Peter Fleury\r
+# Tim Henigan\r
+# Colin O'Flynn\r
+# Reiner Patommel\r
+# Markus Pfaff\r
+# Sander Pool\r
+# Frederik Rouleau\r
+# Carlos Lamas\r
+# Dean Camera\r
+# Opendous Inc.\r
+# Denver Gingerich\r
+#\r
+#----------------------------------------------------------------------------\r
+# On command line:\r
+#\r
+# make all = Make software.\r
+#\r
+# make clean = Clean out built project files.\r
+#\r
+# make coff = Convert ELF to AVR COFF.\r
+#\r
+# make extcoff = Convert ELF to AVR Extended COFF.\r
+#\r
+# make program = Download the hex file to the device, using avrdude.\r
+#                Please customize the avrdude settings below first!\r
+#\r
+# make dfu = Download the hex file to the device, using dfu-programmer (must\r
+#            have dfu-programmer installed).\r
+#\r
+# make flip = Download the hex file to the device, using Atmel FLIP (must\r
+#             have Atmel FLIP installed).\r
+#\r
+# make dfu-ee = Download the eeprom file to the device, using dfu-programmer\r
+#               (must have dfu-programmer installed).\r
+#\r
+# make flip-ee = Download the eeprom file to the device, using Atmel FLIP\r
+#                (must have Atmel FLIP installed).\r
+#\r
+# make doxygen = Generate DoxyGen documentation for the project (must have\r
+#                DoxyGen installed)\r
+#\r
+# make debug = Start either simulavr or avarice as specified for debugging, \r
+#              with avr-gdb or avr-insight as the front end for debugging.\r
+#\r
+# make filename.s = Just compile filename.c into the assembler code only.\r
+#\r
+# make filename.i = Create a preprocessed source file for use in submitting\r
+#                   bug reports to the GCC project.\r
+#\r
+# To rebuild project do "make clean" then "make all".\r
+#----------------------------------------------------------------------------\r
+\r
+\r
+# MCU name\r
+MCU = at90usb1287\r
+\r
+\r
+# Target board (see library "Board Types" documentation, USER or blank for projects not requiring\r
+# LUFA board drivers). If USER is selected, put custom board drivers in a directory called \r
+# "Board" inside the application directory.\r
+BOARD  = USBKEY\r
+\r
+\r
+# Processor frequency.\r
+#     This will define a symbol, F_CPU, in all source code files equal to the \r
+#     processor frequency in Hz. You can then use this symbol in your source code to \r
+#     calculate timings. Do NOT tack on a 'UL' at the end, this will be done\r
+#     automatically to create a 32-bit value in your source code.\r
+#\r
+#     This will be an integer division of F_CLOCK below, as it is sourced by\r
+#     F_CLOCK after it has run through any CPU prescalers. Note that this value\r
+#     does not *change* the processor frequency - it should merely be updated to\r
+#     reflect the processor speed set externally so that the code can use accurate\r
+#     software delays.\r
+F_CPU = 8000000\r
+\r
+\r
+# Input clock frequency.\r
+#     This will define a symbol, F_CLOCK, in all source code files equal to the \r
+#     input clock frequency (before any prescaling is performed) in Hz. This value may\r
+#     differ from F_CPU if prescaling is used on the latter, and is required as the\r
+#     raw input clock is fed directly to the PLL sections of the AVR for high speed\r
+#     clock generation for the USB and other AVR subsections. Do NOT tack on a 'UL'\r
+#     at the end, this will be done automatically to create a 32-bit value in your\r
+#     source code.\r
+#\r
+#     If no clock division is performed on the input clock inside the AVR (via the\r
+#     CPU clock adjust registers or the clock division fuses), this will be equal to F_CPU.\r
+F_CLOCK = $(F_CPU)\r
+\r
+\r
+# Output format. (can be srec, ihex, binary)\r
+FORMAT = ihex\r
+\r
+\r
+# Target file name (without extension).\r
+TARGET = StandaloneProgrammer\r
+\r
+\r
+# Object files directory\r
+#     To put object files in current directory, use a dot (.), do NOT make\r
+#     this an empty or blank macro!\r
+OBJDIR = .\r
+\r
+\r
+# Path to the LUFA library\r
+LUFA_PATH = ../../../\r
+\r
+\r
+# LUFA library compile-time options\r
+LUFA_OPTS  = -D USB_DEVICE_ONLY\r
+LUFA_OPTS += -D FIXED_CONTROL_ENDPOINT_SIZE=8\r
+LUFA_OPTS += -D FIXED_NUM_CONFIGURATIONS=1\r
+LUFA_OPTS += -D USE_FLASH_DESCRIPTORS\r
+LUFA_OPTS += -D USE_STATIC_OPTIONS="(USB_DEVICE_OPT_FULLSPEED | USB_OPT_REG_ENABLED | USB_OPT_AUTO_PLL)"\r
+LUFA_OPTS += -D INTERRUPT_CONTROL_ENDPOINT\r
+\r
+\r
+# List C source files here. (C dependencies are automatically generated.)\r
+SRC = $(TARGET).c                                                 \\r
+         Descriptors.c                                               \\r
+         Lib/SCSI.c                                                  \\r
+         Lib/DataflashManager.c                                      \\r
+         Lib/ProgrammerConfig.c                                      \\r
+         Lib/PetiteFATFs/diskio.c                                    \\r
+         Lib/PetiteFATFs/pff.c                                       \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/LowLevel/DevChapter9.c        \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/LowLevel/Endpoint.c           \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/LowLevel/Host.c               \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/LowLevel/HostChapter9.c       \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/LowLevel/LowLevel.c           \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/LowLevel/Pipe.c               \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/HighLevel/Events.c            \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/HighLevel/USBInterrupt.c      \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/HighLevel/USBTask.c           \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/HighLevel/ConfigDescriptor.c  \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/Class/Device/MassStorage.c    \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/Class/Host/MassStorage.c      \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/Class/Device/CDC.c            \\r
+         $(LUFA_PATH)/LUFA/Drivers/USB/Class/Host/CDC.c              \\r
+\r
+\r
+# List C++ source files here. (C dependencies are automatically generated.)\r
+CPPSRC = \r
+\r
+\r
+# List Assembler source files here.\r
+#     Make them always end in a capital .S.  Files ending in a lowercase .s\r
+#     will not be considered source files but generated files (assembler\r
+#     output from the compiler), and will be deleted upon "make clean"!\r
+#     Even though the DOS/Win* filesystem matches both .s and .S the same,\r
+#     it will preserve the spelling of the filenames, and gcc itself does\r
+#     care about how the name is spelled on its command-line.\r
+ASRC =\r
+\r
+\r
+# Optimization level, can be [0, 1, 2, 3, s]. \r
+#     0 = turn off optimization. s = optimize for size.\r
+#     (Note: 3 is not always the best optimization level. See avr-libc FAQ.)\r
+OPT = s\r
+\r
+\r
+# Debugging format.\r
+#     Native formats for AVR-GCC's -g are dwarf-2 [default] or stabs.\r
+#     AVR Studio 4.10 requires dwarf-2.\r
+#     AVR [Extended] COFF format requires stabs, plus an avr-objcopy run.\r
+DEBUG = dwarf-2\r
+\r
+\r
+# List any extra directories to look for include files here.\r
+#     Each directory must be seperated by a space.\r
+#     Use forward slashes for directory separators.\r
+#     For a directory that has spaces, enclose it in quotes.\r
+EXTRAINCDIRS = $(LUFA_PATH)/\r
+\r
+\r
+# Compiler flag to set the C Standard level.\r
+#     c89   = "ANSI" C\r
+#     gnu89 = c89 plus GCC extensions\r
+#     c99   = ISO C99 standard (not yet fully implemented)\r
+#     gnu99 = c99 plus GCC extensions\r
+CSTANDARD = -std=gnu99\r
+\r
+\r
+# Place -D or -U options here for C sources\r
+CDEFS  = -DF_CPU=$(F_CPU)UL -DF_CLOCK=$(F_CLOCK)UL -DBOARD=BOARD_$(BOARD) $(LUFA_OPTS)\r
+\r
+\r
+# Place -D or -U options here for ASM sources\r
+ADEFS = -DF_CPU=$(F_CPU)\r
+\r
+\r
+# Place -D or -U options here for C++ sources\r
+CPPDEFS = -DF_CPU=$(F_CPU)UL\r
+#CPPDEFS += -D__STDC_LIMIT_MACROS\r
+#CPPDEFS += -D__STDC_CONSTANT_MACROS\r
+\r
+\r
+\r
+#---------------- Compiler Options C ----------------\r
+#  -g*:          generate debugging information\r
+#  -O*:          optimization level\r
+#  -f...:        tuning, see GCC manual and avr-libc documentation\r
+#  -Wall...:     warning level\r
+#  -Wa,...:      tell GCC to pass this to the assembler.\r
+#    -adhlns...: create assembler listing\r
+CFLAGS = -g$(DEBUG)\r
+CFLAGS += $(CDEFS)\r
+CFLAGS += -O$(OPT)\r
+CFLAGS += -funsigned-char\r
+CFLAGS += -funsigned-bitfields\r
+CFLAGS += -ffunction-sections\r
+CFLAGS += -fno-inline-small-functions\r
+CFLAGS += -fpack-struct\r
+CFLAGS += -fshort-enums\r
+CFLAGS += -Wall\r
+CFLAGS += -Wstrict-prototypes\r
+CFLAGS += -Wundef\r
+#CFLAGS += -fno-unit-at-a-time\r
+#CFLAGS += -Wunreachable-code\r
+#CFLAGS += -Wsign-compare\r
+CFLAGS += -Wa,-adhlns=$(<:%.c=$(OBJDIR)/%.lst)\r
+CFLAGS += $(patsubst %,-I%,$(EXTRAINCDIRS))\r
+CFLAGS += $(CSTANDARD)\r
+\r
+\r
+#---------------- Compiler Options C++ ----------------\r
+#  -g*:          generate debugging information\r
+#  -O*:          optimization level\r
+#  -f...:        tuning, see GCC manual and avr-libc documentation\r
+#  -Wall...:     warning level\r
+#  -Wa,...:      tell GCC to pass this to the assembler.\r
+#    -adhlns...: create assembler listing\r
+CPPFLAGS = -g$(DEBUG)\r
+CPPFLAGS += $(CPPDEFS)\r
+CPPFLAGS += -O$(OPT)\r
+CPPFLAGS += -funsigned-char\r
+CPPFLAGS += -funsigned-bitfields\r
+CPPFLAGS += -fpack-struct\r
+CPPFLAGS += -fshort-enums\r
+CPPFLAGS += -fno-exceptions\r
+CPPFLAGS += -Wall\r
+CFLAGS += -Wundef\r
+#CPPFLAGS += -mshort-calls\r
+#CPPFLAGS += -fno-unit-at-a-time\r
+#CPPFLAGS += -Wstrict-prototypes\r
+#CPPFLAGS += -Wunreachable-code\r
+#CPPFLAGS += -Wsign-compare\r
+CPPFLAGS += -Wa,-adhlns=$(<:%.cpp=$(OBJDIR)/%.lst)\r
+CPPFLAGS += $(patsubst %,-I%,$(EXTRAINCDIRS))\r
+#CPPFLAGS += $(CSTANDARD)\r
+\r
+\r
+#---------------- Assembler Options ----------------\r
+#  -Wa,...:   tell GCC to pass this to the assembler.\r
+#  -adhlns:   create listing\r
+#  -gstabs:   have the assembler create line number information; note that\r
+#             for use in COFF files, additional information about filenames\r
+#             and function names needs to be present in the assembler source\r
+#             files -- see avr-libc docs [FIXME: not yet described there]\r
+#  -listing-cont-lines: Sets the maximum number of continuation lines of hex \r
+#       dump that will be displayed for a given single line of source input.\r
+ASFLAGS = $(ADEFS) -Wa,-adhlns=$(<:%.S=$(OBJDIR)/%.lst),-gstabs,--listing-cont-lines=100\r
+\r
+\r
+#---------------- Library Options ----------------\r
+# Minimalistic printf version\r
+PRINTF_LIB_MIN = -Wl,-u,vfprintf -lprintf_min\r
+\r
+# Floating point printf version (requires MATH_LIB = -lm below)\r
+PRINTF_LIB_FLOAT = -Wl,-u,vfprintf -lprintf_flt\r
+\r
+# If this is left blank, then it will use the Standard printf version.\r
+PRINTF_LIB = \r
+#PRINTF_LIB = $(PRINTF_LIB_MIN)\r
+#PRINTF_LIB = $(PRINTF_LIB_FLOAT)\r
+\r
+\r
+# Minimalistic scanf version\r
+SCANF_LIB_MIN = -Wl,-u,vfscanf -lscanf_min\r
+\r
+# Floating point + %[ scanf version (requires MATH_LIB = -lm below)\r
+SCANF_LIB_FLOAT = -Wl,-u,vfscanf -lscanf_flt\r
+\r
+# If this is left blank, then it will use the Standard scanf version.\r
+SCANF_LIB = \r
+#SCANF_LIB = $(SCANF_LIB_MIN)\r
+#SCANF_LIB = $(SCANF_LIB_FLOAT)\r
+\r
+\r
+MATH_LIB = -lm\r
+\r
+\r
+# List any extra directories to look for libraries here.\r
+#     Each directory must be seperated by a space.\r
+#     Use forward slashes for directory separators.\r
+#     For a directory that has spaces, enclose it in quotes.\r
+EXTRALIBDIRS = \r
+\r
+\r
+\r
+#---------------- External Memory Options ----------------\r
+\r
+# 64 KB of external RAM, starting after internal RAM (ATmega128!),\r
+# used for variables (.data/.bss) and heap (malloc()).\r
+#EXTMEMOPTS = -Wl,-Tdata=0x801100,--defsym=__heap_end=0x80ffff\r
+\r
+# 64 KB of external RAM, starting after internal RAM (ATmega128!),\r
+# only used for heap (malloc()).\r
+#EXTMEMOPTS = -Wl,--section-start,.data=0x801100,--defsym=__heap_end=0x80ffff\r
+\r
+EXTMEMOPTS =\r
+\r
+\r
+\r
+#---------------- Linker Options ----------------\r
+#  -Wl,...:     tell GCC to pass this to linker.\r
+#    -Map:      create map file\r
+#    --cref:    add cross reference to  map file\r
+LDFLAGS = -Wl,-Map=$(TARGET).map,--cref\r
+LDFLAGS += -Wl,--relax \r
+LDFLAGS += -Wl,--gc-sections\r
+LDFLAGS += $(EXTMEMOPTS)\r
+LDFLAGS += $(patsubst %,-L%,$(EXTRALIBDIRS))\r
+LDFLAGS += $(PRINTF_LIB) $(SCANF_LIB) $(MATH_LIB)\r
+#LDFLAGS += -T linker_script.x\r
+\r
+\r
+\r
+#---------------- Programming Options (avrdude) ----------------\r
+\r
+# Programming hardware: alf avr910 avrisp bascom bsd \r
+# dt006 pavr picoweb pony-stk200 sp12 stk200 stk500\r
+#\r
+# Type: avrdude -c ?\r
+# to get a full listing.\r
+#\r
+AVRDUDE_PROGRAMMER = jtagmkII\r
+\r
+# com1 = serial port. Use lpt1 to connect to parallel port.\r
+AVRDUDE_PORT = usb\r
+\r
+AVRDUDE_WRITE_FLASH = -U flash:w:$(TARGET).hex\r
+#AVRDUDE_WRITE_EEPROM = -U eeprom:w:$(TARGET).eep\r
+\r
+\r
+# Uncomment the following if you want avrdude's erase cycle counter.\r
+# Note that this counter needs to be initialized first using -Yn,\r
+# see avrdude manual.\r
+#AVRDUDE_ERASE_COUNTER = -y\r
+\r
+# Uncomment the following if you do /not/ wish a verification to be\r
+# performed after programming the device.\r
+#AVRDUDE_NO_VERIFY = -V\r
+\r
+# Increase verbosity level.  Please use this when submitting bug\r
+# reports about avrdude. See <http://savannah.nongnu.org/projects/avrdude> \r
+# to submit bug reports.\r
+#AVRDUDE_VERBOSE = -v -v\r
+\r
+AVRDUDE_FLAGS = -p $(MCU) -P $(AVRDUDE_PORT) -c $(AVRDUDE_PROGRAMMER)\r
+AVRDUDE_FLAGS += $(AVRDUDE_NO_VERIFY)\r
+AVRDUDE_FLAGS += $(AVRDUDE_VERBOSE)\r
+AVRDUDE_FLAGS += $(AVRDUDE_ERASE_COUNTER)\r
+\r
+\r
+\r
+#---------------- Debugging Options ----------------\r
+\r
+# For simulavr only - target MCU frequency.\r
+DEBUG_MFREQ = $(F_CPU)\r
+\r
+# Set the DEBUG_UI to either gdb or insight.\r
+# DEBUG_UI = gdb\r
+DEBUG_UI = insight\r
+\r
+# Set the debugging back-end to either avarice, simulavr.\r
+DEBUG_BACKEND = avarice\r
+#DEBUG_BACKEND = simulavr\r
+\r
+# GDB Init Filename.\r
+GDBINIT_FILE = __avr_gdbinit\r
+\r
+# When using avarice settings for the JTAG\r
+JTAG_DEV = /dev/com1\r
+\r
+# Debugging port used to communicate between GDB / avarice / simulavr.\r
+DEBUG_PORT = 4242\r
+\r
+# Debugging host used to communicate between GDB / avarice / simulavr, normally\r
+#     just set to localhost unless doing some sort of crazy debugging when \r
+#     avarice is running on a different computer.\r
+DEBUG_HOST = localhost\r
+\r
+\r
+\r
+#============================================================================\r
+\r
+\r
+# Define programs and commands.\r
+SHELL = sh\r
+CC = avr-gcc\r
+OBJCOPY = avr-objcopy\r
+OBJDUMP = avr-objdump\r
+SIZE = avr-size\r
+AR = avr-ar rcs\r
+NM = avr-nm\r
+AVRDUDE = avrdude\r
+REMOVE = rm -f\r
+REMOVEDIR = rm -rf\r
+COPY = cp\r
+WINSHELL = cmd\r
+\r
+# Define Messages\r
+# English\r
+MSG_ERRORS_NONE = Errors: none\r
+MSG_BEGIN = -------- begin --------\r
+MSG_END = --------  end  --------\r
+MSG_SIZE_BEFORE = Size before: \r
+MSG_SIZE_AFTER = Size after:\r
+MSG_COFF = Converting to AVR COFF:\r
+MSG_EXTENDED_COFF = Converting to AVR Extended COFF:\r
+MSG_FLASH = Creating load file for Flash:\r
+MSG_EEPROM = Creating load file for EEPROM:\r
+MSG_EXTENDED_LISTING = Creating Extended Listing:\r
+MSG_SYMBOL_TABLE = Creating Symbol Table:\r
+MSG_LINKING = Linking:\r
+MSG_COMPILING = Compiling C:\r
+MSG_COMPILING_CPP = Compiling C++:\r
+MSG_ASSEMBLING = Assembling:\r
+MSG_CLEANING = Cleaning project:\r
+MSG_CREATING_LIBRARY = Creating library:\r
+\r
+\r
+\r
+\r
+# Define all object files.\r
+OBJ = $(SRC:%.c=$(OBJDIR)/%.o) $(CPPSRC:%.cpp=$(OBJDIR)/%.o) $(ASRC:%.S=$(OBJDIR)/%.o) \r
+\r
+# Define all listing files.\r
+LST = $(SRC:%.c=$(OBJDIR)/%.lst) $(CPPSRC:%.cpp=$(OBJDIR)/%.lst) $(ASRC:%.S=$(OBJDIR)/%.lst) \r
+\r
+\r
+# Compiler flags to generate dependency files.\r
+GENDEPFLAGS = -MMD -MP -MF .dep/$(@F).d\r
+\r
+\r
+# Combine all necessary flags and optional flags.\r
+# Add target processor to flags.\r
+ALL_CFLAGS = -mmcu=$(MCU) -I. $(CFLAGS) $(GENDEPFLAGS)\r
+ALL_CPPFLAGS = -mmcu=$(MCU) -I. -x c++ $(CPPFLAGS) $(GENDEPFLAGS)\r
+ALL_ASFLAGS = -mmcu=$(MCU) -I. -x assembler-with-cpp $(ASFLAGS)\r
+\r
+\r
+\r
+\r
+\r
+# Default target.\r
+all: begin gccversion sizebefore build checkinvalidevents showliboptions showtarget sizeafter end\r
+\r
+# Change the build target to build a HEX file or a library.\r
+build: elf hex eep lss sym\r
+#build: lib\r
+\r
+\r
+elf: $(TARGET).elf\r
+hex: $(TARGET).hex\r
+eep: $(TARGET).eep\r
+lss: $(TARGET).lss\r
+sym: $(TARGET).sym\r
+LIBNAME=lib$(TARGET).a\r
+lib: $(LIBNAME)\r
+\r
+\r
+\r
+# Eye candy.\r
+# AVR Studio 3.x does not check make's exit code but relies on\r
+# the following magic strings to be generated by the compile job.\r
+begin:\r
+       @echo\r
+       @echo $(MSG_BEGIN)\r
+\r
+end:\r
+       @echo $(MSG_END)\r
+       @echo\r
+\r
+\r
+# Display size of file.\r
+HEXSIZE = $(SIZE) --target=$(FORMAT) $(TARGET).hex\r
+ELFSIZE = $(SIZE) $(MCU_FLAG) $(FORMAT_FLAG) $(TARGET).elf\r
+MCU_FLAG = $(shell $(SIZE) --help | grep -- --mcu > /dev/null && echo --mcu=$(MCU) )\r
+FORMAT_FLAG = $(shell $(SIZE) --help | grep -- --format=.*avr > /dev/null && echo --format=avr )\r
+\r
+sizebefore:\r
+       @if test -f $(TARGET).elf; then echo; echo $(MSG_SIZE_BEFORE); $(ELFSIZE); \\r
+       2>/dev/null; echo; fi\r
+\r
+sizeafter:\r
+       @if test -f $(TARGET).elf; then echo; echo $(MSG_SIZE_AFTER); $(ELFSIZE); \\r
+       2>/dev/null; echo; fi\r
+\r
+$(LUFA_PATH)/LUFA/LUFA_Events.lst:\r
+       @make -C $(LUFA_PATH)/LUFA/ LUFA_Events.lst\r
+\r
+checkinvalidevents: $(LUFA_PATH)/LUFA/LUFA_Events.lst\r
+       @echo\r
+       @echo Checking for invalid events...\r
+       @$(shell) avr-nm $(OBJ) | sed -n -e 's/^.*EVENT_/EVENT_/p' | \\r
+                        grep -F -v --file=$(LUFA_PATH)/LUFA/LUFA_Events.lst > InvalidEvents.tmp || true\r
+       @sed -n -e 's/^/  WARNING - INVALID EVENT NAME: /p' InvalidEvents.tmp\r
+       @if test -s InvalidEvents.tmp; then exit 1; fi\r
+\r
+showliboptions:\r
+       @echo\r
+       @echo ---- Compile Time Library Options ----\r
+       @for i in $(LUFA_OPTS:-D%=%); do \\r
+               echo $$i; \\r
+       done\r
+       @echo --------------------------------------\r
+\r
+showtarget:\r
+       @echo\r
+       @echo --------- Target Information ---------\r
+       @echo AVR Model: $(MCU)\r
+       @echo Board:     $(BOARD)\r
+       @echo Clock:     $(F_CPU)Hz CPU, $(F_CLOCK)Hz Master\r
+       @echo --------------------------------------\r
+       \r
+\r
+# Display compiler version information.\r
+gccversion : \r
+       @$(CC) --version\r
+\r
+\r
+# Program the device.  \r
+program: $(TARGET).hex $(TARGET).eep\r
+       $(AVRDUDE) $(AVRDUDE_FLAGS) $(AVRDUDE_WRITE_FLASH) $(AVRDUDE_WRITE_EEPROM)\r
+\r
+flip: $(TARGET).hex\r
+       batchisp -hardware usb -device $(MCU) -operation erase f\r
+       batchisp -hardware usb -device $(MCU) -operation loadbuffer $(TARGET).hex program\r
+       batchisp -hardware usb -device $(MCU) -operation start reset 0\r
+\r
+dfu: $(TARGET).hex\r
+       dfu-programmer $(MCU) erase\r
+       dfu-programmer $(MCU) flash --debug 1 $(TARGET).hex\r
+       dfu-programmer $(MCU) reset\r
+\r
+flip-ee: $(TARGET).hex $(TARGET).eep\r
+       $(COPY) $(TARGET).eep $(TARGET)eep.hex\r
+       batchisp -hardware usb -device $(MCU) -operation memory EEPROM erase\r
+       batchisp -hardware usb -device $(MCU) -operation memory EEPROM loadbuffer $(TARGET)eep.hex program\r
+       batchisp -hardware usb -device $(MCU) -operation start reset 0\r
+       $(REMOVE) $(TARGET)eep.hex\r
+\r
+dfu-ee: $(TARGET).hex $(TARGET).eep\r
+       dfu-programmer $(MCU) flash-eeprom --debug 1 --suppress-bootloader-mem $(TARGET).eep\r
+       dfu-programmer $(MCU) reset\r
+\r
+\r
+# Generate avr-gdb config/init file which does the following:\r
+#     define the reset signal, load the target file, connect to target, and set \r
+#     a breakpoint at main().\r
+gdb-config: \r
+       @$(REMOVE) $(GDBINIT_FILE)\r
+       @echo define reset >> $(GDBINIT_FILE)\r
+       @echo SIGNAL SIGHUP >> $(GDBINIT_FILE)\r
+       @echo end >> $(GDBINIT_FILE)\r
+       @echo file $(TARGET).elf >> $(GDBINIT_FILE)\r
+       @echo target remote $(DEBUG_HOST):$(DEBUG_PORT)  >> $(GDBINIT_FILE)\r
+ifeq ($(DEBUG_BACKEND),simulavr)\r
+       @echo load  >> $(GDBINIT_FILE)\r
+endif\r
+       @echo break main >> $(GDBINIT_FILE)\r
+\r
+debug: gdb-config $(TARGET).elf\r
+ifeq ($(DEBUG_BACKEND), avarice)\r
+       @echo Starting AVaRICE - Press enter when "waiting to connect" message displays.\r
+       @$(WINSHELL) /c start avarice --jtag $(JTAG_DEV) --erase --program --file \\r
+       $(TARGET).elf $(DEBUG_HOST):$(DEBUG_PORT)\r
+       @$(WINSHELL) /c pause\r
+\r
+else\r
+       @$(WINSHELL) /c start simulavr --gdbserver --device $(MCU) --clock-freq \\r
+       $(DEBUG_MFREQ) --port $(DEBUG_PORT)\r
+endif\r
+       @$(WINSHELL) /c start avr-$(DEBUG_UI) --command=$(GDBINIT_FILE)\r
+\r
+\r
+\r
+\r
+# Convert ELF to COFF for use in debugging / simulating in AVR Studio or VMLAB.\r
+COFFCONVERT = $(OBJCOPY) --debugging\r
+COFFCONVERT += --change-section-address .data-0x800000\r
+COFFCONVERT += --change-section-address .bss-0x800000\r
+COFFCONVERT += --change-section-address .noinit-0x800000\r
+COFFCONVERT += --change-section-address .eeprom-0x810000\r
+\r
+\r
+\r
+coff: $(TARGET).elf\r
+       @echo\r
+       @echo $(MSG_COFF) $(TARGET).cof\r
+       $(COFFCONVERT) -O coff-avr $< $(TARGET).cof\r
+\r
+\r
+extcoff: $(TARGET).elf\r
+       @echo\r
+       @echo $(MSG_EXTENDED_COFF) $(TARGET).cof\r
+       $(COFFCONVERT) -O coff-ext-avr $< $(TARGET).cof\r
+\r
+\r
+\r
+# Create final output files (.hex, .eep) from ELF output file.\r
+%.hex: %.elf\r
+       @echo\r
+       @echo $(MSG_FLASH) $@\r
+       $(OBJCOPY) -O $(FORMAT) -R .eeprom $< $@\r
+\r
+%.eep: %.elf\r
+       @echo\r
+       @echo $(MSG_EEPROM) $@\r
+       -$(OBJCOPY) -j .eeprom --set-section-flags=.eeprom="alloc,load" \\r
+       --change-section-lma .eeprom=0 --no-change-warnings -O $(FORMAT) $< $@ || exit 0\r
+\r
+# Create extended listing file from ELF output file.\r
+%.lss: %.elf\r
+       @echo\r
+       @echo $(MSG_EXTENDED_LISTING) $@\r
+       $(OBJDUMP) -h -z -S $< > $@\r
+\r
+# Create a symbol table from ELF output file.\r
+%.sym: %.elf\r
+       @echo\r
+       @echo $(MSG_SYMBOL_TABLE) $@\r
+       $(NM) -n $< > $@\r
+\r
+\r
+\r
+# Create library from object files.\r
+.SECONDARY : $(TARGET).a\r
+.PRECIOUS : $(OBJ)\r
+%.a: $(OBJ)\r
+       @echo\r
+       @echo $(MSG_CREATING_LIBRARY) $@\r
+       $(AR) $@ $(OBJ)\r
+\r
+\r
+# Link: create ELF output file from object files.\r
+.SECONDARY : $(TARGET).elf\r
+.PRECIOUS : $(OBJ)\r
+%.elf: $(OBJ)\r
+       @echo\r
+       @echo $(MSG_LINKING) $@\r
+       $(CC) $(ALL_CFLAGS) $^ --output $@ $(LDFLAGS)\r
+\r
+\r
+# Compile: create object files from C source files.\r
+$(OBJDIR)/%.o : %.c\r
+       @echo\r
+       @echo $(MSG_COMPILING) $<\r
+       $(CC) -c $(ALL_CFLAGS) $< -o $@ \r
+\r
+\r
+# Compile: create object files from C++ source files.\r
+$(OBJDIR)/%.o : %.cpp\r
+       @echo\r
+       @echo $(MSG_COMPILING_CPP) $<\r
+       $(CC) -c $(ALL_CPPFLAGS) $< -o $@ \r
+\r
+\r
+# Compile: create assembler files from C source files.\r
+%.s : %.c\r
+       $(CC) -S $(ALL_CFLAGS) $< -o $@\r
+\r
+\r
+# Compile: create assembler files from C++ source files.\r
+%.s : %.cpp\r
+       $(CC) -S $(ALL_CPPFLAGS) $< -o $@\r
+\r
+\r
+# Assemble: create object files from assembler source files.\r
+$(OBJDIR)/%.o : %.S\r
+       @echo\r
+       @echo $(MSG_ASSEMBLING) $<\r
+       $(CC) -c $(ALL_ASFLAGS) $< -o $@\r
+\r
+\r
+# Create preprocessed source for use in sending a bug report.\r
+%.i : %.c\r
+       $(CC) -E -mmcu=$(MCU) -I. $(CFLAGS) $< -o $@ \r
+       \r
+\r
+# Target: clean project.\r
+clean: begin clean_list clean_binary end\r
+\r
+clean_binary:\r
+       $(REMOVE) $(TARGET).hex\r
+       \r
+clean_list:\r
+       @echo $(MSG_CLEANING)\r
+       $(REMOVE) $(TARGET).eep\r
+       $(REMOVE) $(TARGET)eep.hex\r
+       $(REMOVE) $(TARGET).cof\r
+       $(REMOVE) $(TARGET).elf\r
+       $(REMOVE) $(TARGET).map\r
+       $(REMOVE) $(TARGET).sym\r
+       $(REMOVE) $(TARGET).lss\r
+       $(REMOVE) $(SRC:%.c=$(OBJDIR)/%.o)\r
+       $(REMOVE) $(SRC:%.c=$(OBJDIR)/%.lst)\r
+       $(REMOVE) $(SRC:.c=.s)\r
+       $(REMOVE) $(SRC:.c=.d)\r
+       $(REMOVE) $(SRC:.c=.i)\r
+       $(REMOVE) InvalidEvents.tmp\r
+       $(REMOVEDIR) .dep\r
+\r
+doxygen:\r
+       @echo Generating Project Documentation...\r
+       @doxygen Doxygen.conf\r
+       @echo Documentation Generation Complete.\r
+\r
+clean_doxygen:\r
+       rm -rf Documentation\r
+\r
+# Create object files directory\r
+$(shell mkdir $(OBJDIR) 2>/dev/null)\r
+\r
+\r
+# Include the dependency files.\r
+-include $(shell mkdir .dep 2>/dev/null) $(wildcard .dep/*)\r
+\r
+\r
+# Listing of phony targets.\r
+.PHONY : all checkinvalidevents showliboptions    \\r
+showtarget begin finish end sizebefore sizeafter  \\r
+gccversion build elf hex eep lss sym coff extcoff \\r
+program dfu flip flip-ee dfu-ee clean debug       \\r
+clean_list clean_binary gdb-config doxygen
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