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/** \file
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*
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* This file contains special DoxyGen information for the generation of the main page and other special
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* documentation pages. It is not a project source file.
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*/
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/** \mainpage Mass Storage Class USB AVR Bootloader
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*
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* \section Sec_Compat Demo Compatibility:
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*
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* The following list indicates what microcontrollers are compatible with this demo.
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*
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* \li Series 7 USB AVRs (AT90USBxxx7)
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* \li Series 6 USB AVRs (AT90USBxxx6)
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*
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* \section Sec_Info USB Information:
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*
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* The following table gives a rundown of the USB utilization of this demo.
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*
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* <table>
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* <tr>
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* <td><b>USB Mode:</b></td>
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* <td>Device</td>
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* </tr>
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* <tr>
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* <td><b>USB Class:</b></td>
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* <td>Mass Storage Device</td>
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* </tr>
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* <tr>
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* <td><b>USB Subclass:</b></td>
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* <td>Bulk-Only Transport</td>
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* </tr>
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* <tr>
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* <td><b>Relevant Standards:</b></td>
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* <td>USBIF Mass Storage Standard \n
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* USB Bulk-Only Transport Standard \n
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* SCSI Primary Commands Specification \n
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* SCSI Block Commands Specification</td>
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* </tr>
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* <tr>
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* <td><b>Supported USB Speeds:</b></td>
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* <td>Full Speed Mode</td>
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* </tr>
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* </table>
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*
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* \section Sec_Description Project Description:
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*
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* This bootloader enumerates to the host as a Mass Storage device, capable of reading and writing a new binary
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* firmware image file, to load firmware onto the AVR.
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*
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* Out of the box this bootloader builds for the AT90USB1287 with an 8KB bootloader section size, and will fit
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* into 8KB of bootloader space. If you wish to alter this size and/or change the AVR model, you will need to
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* edit the MCU, FLASH_SIZE_KB and BOOT_SECTION_SIZE_KB values in the accompanying makefile.
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*
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* When the bootloader is running, the board's LED(s) will flash at regular intervals to distinguish the
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* bootloader from the normal user application.
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*
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* \section Sec_Installation Driver Installation
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*
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* This bootloader uses the Mass Storage drivers inbuilt into all modern operating systems, thus no additional
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* drivers need to be supplied for correct operation.
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*
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* \section Sec_HostApp Host Controller Application
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*
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* This bootloader is compatible with all operating systems that support the FAT12 file system format. To reprogram the
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* device, overwrite a file stored on the virtual FAT filesystem with a new binary (BIN format) image. Remember to safely
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* remove your device from the host using the host OS's ejection APIs, to ensure all data is correctly flushed to the
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* bootloader's virtual filesystem and not cached in the OS's file system driver.
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*
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* The current device firmware can be read from the device by reading a file from the virtual FAT filesystem.
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*
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* \section Sec_API User Application API
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*
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* Several user application functions for FLASH and other special memory area manipulations are exposed by the bootloader,
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* allowing the user application to call into the bootloader at runtime to read and write FLASH data.
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*
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* By default, the bootloader API jump table is located 32 bytes from the end of the device's FLASH memory, and follows the
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* following layout:
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*
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* \code
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* #define BOOTLOADER_API_TABLE_SIZE 32
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* #define BOOTLOADER_API_TABLE_START ((FLASHEND + 1UL) - BOOTLOADER_API_TABLE_SIZE)
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* #define BOOTLOADER_API_CALL(Index) (void*)((BOOTLOADER_API_TABLE_START + (Index * 2)) / 2)
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*
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* void (*BootloaderAPI_ErasePage)(uint32_t Address) = BOOTLOADER_API_CALL(0);
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* void (*BootloaderAPI_WritePage)(uint32_t Address) = BOOTLOADER_API_CALL(1);
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* void (*BootloaderAPI_FillWord)(uint32_t Address, uint16_t Word) = BOOTLOADER_API_CALL(2);
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* uint8_t (*BootloaderAPI_ReadSignature)(uint16_t Address) = BOOTLOADER_API_CALL(3);
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* uint8_t (*BootloaderAPI_ReadFuse)(uint16_t Address) = BOOTLOADER_API_CALL(4);
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* uint8_t (*BootloaderAPI_ReadLock)(void) = BOOTLOADER_API_CALL(5);
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* void (*BootloaderAPI_WriteLock)(uint8_t LockBits) = BOOTLOADER_API_CALL(6);
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*
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* #define BOOTLOADER_MAGIC_SIGNATURE_START (BOOTLOADER_API_TABLE_START + (BOOTLOADER_API_TABLE_SIZE - 2))
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* #define BOOTLOADER_MAGIC_SIGNATURE 0xDCFB
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*
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* #define BOOTLOADER_CLASS_SIGNATURE_START (BOOTLOADER_API_TABLE_START + (BOOTLOADER_API_TABLE_SIZE - 4))
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* #define BOOTLOADER_MASS_STORAGE_SIGNATURE 0xDF30
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*
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* #define BOOTLOADER_ADDRESS_START (BOOTLOADER_API_TABLE_START + (BOOTLOADER_API_TABLE_SIZE - 8))
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* #define BOOTLOADER_ADDRESS_LENGTH 4
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* \endcode
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*
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* \subsection SSec_API_MemLayout Device Memory Map
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* The following illustration indicates the final memory map of the device when loaded with the bootloader.
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*
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* \verbatim
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* +----------------------------+ 0x0000
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* | |
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* | |
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* | |
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* | |
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* | |
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* | |
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* | |
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* | |
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* | User Application |
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* | |
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* | |
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* | |
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* | |
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* | |
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* | |
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* | |
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* +----------------------------+ FLASHEND - BOOT_SECTION_SIZE
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* | |
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* | Bootloader Application |
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* | (Not User App. Accessible) |
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* | |
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* +----------------------------+ FLASHEND - 96
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* | API Table Trampolines |
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* | (Not User App. Accessible) |
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* +----------------------------+ FLASHEND - 32
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* | Bootloader API Table |
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* | (User App. Accessible) |
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* +----------------------------+ FLASHEND - 8
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* | Bootloader ID Constants |
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* | (User App. Accessible) |
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* +----------------------------+ FLASHEND
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* \endverbatim
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*
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* Bootloaders reporting a device release revision number of 1.00 or greater are bootloader API enabled. From the application
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* the API support of the bootloader can be detected by reading the FLASH memory bytes located at address \c BOOTLOADER_MAGIC_SIGNATURE_START
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* and comparing them to the value \c BOOTLOADER_MAGIC_SIGNATURE. The class of bootloader can be determined by reading the
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* FLASH memory bytes located at address \c BOOTLOADER_CLASS_SIGNATURE_START and comparing them to the value \c BOOTLOADER_MASS_STORAGE_SIGNATURE.
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* The start address of the bootloader can be retrieved by reading the bytes of FLASH memory starting from address \c BOOTLOADER_ADDRESS_START.
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*
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* \section Sec_Options Project Options
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*
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* The following defines can be found in this demo, which can control the demo behaviour when defined, or changed in value.
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*
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* <table>
|
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* <tr>
|
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* <td>
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* None
|
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* </td>
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* </tr>
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* </table>
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*/
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