416 lines
18 KiB
Plaintext
416 lines
18 KiB
Plaintext
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This file contains basic information on the port of U-Boot to TQM8260.
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All the changes fit in the common U-Boot infrastructure, providing a
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new TQM8260-specific entry in makefiles. To build U-Boot for TQM8260,
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type "make TQM8260_config", edit the "include/config_TQM8260.h" file
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if necessary, then type "make".
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Common file modifications:
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--------------------------
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The following common files have been modified by this project:
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(starting from the ppcboot-0.9.3/ directory)
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MAKEALL - TQM8260 entry added
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Makefile - TQM8260_config entry added
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cpu/mpc8260/Makefile - soft_i2c.o module added
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cpu/mpc8260/ether_scc.c - TQM8260-specific definitions added, an obvious
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bug fixed (fcr -> scr)
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cpu/mpc8260/ether_fcc.c - TQM8260-specific definitions added
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include/flash.h - added definitions for the AM29LV640D Flash chip
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New files:
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----------
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The following new files have been added by this project:
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(starting from the ppcboot-0.9.3/ directory)
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board/tqm8260/ - board-specific directory
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board/tqm8260/Makefile - board-specific makefile
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board/tqm8260/config.mk - config file
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board/tqm8260/flash.c - flash driver (for AM29LV640D)
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board/tqm8260/ppcboot.lds - linker script
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board/tqm8260/tqm8260.c - ioport and memory initialization
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cpu/mpc8260/soft_i2c.c - software i2c EEPROM driver
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include/config_TQM8260.h - main configuration file
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New configuration options:
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--------------------------
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CONFIG_TQM8260
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Main board-specific option (should be defined for TQM8260).
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CONFIG_82xx_CONS_SMC1
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If defined, SMC1 will be used as the console
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CONFIG_82xx_CONS_SMC2
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If defined, SMC2 will be used as the console
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CFG_INIT_LOCAL_SDRAM
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If defined, the SDRAM on the local bus will be initialized and
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mapped at BR2.
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Acceptance criteria tests:
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--------------------------
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The following tests have been conducted to validate the port of U-Boot
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to TQM8260:
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1. Operation on serial console:
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With the CONFIG_82xx_CONS_SMC1 option defined in the main configuration file,
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the U-Boot output appeared on the serial terminal connected to COM1 as
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follows:
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------------------------------------------------------------------------------
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=> help
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go - start application at address 'addr'
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run - run commands in an environment variable
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bootm - boot application image from memory
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bootp - boot image via network using BootP/TFTP protocol
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tftpboot- boot image via network using TFTP protocol
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and env variables ipaddr and serverip
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rarpboot- boot image via network using RARP/TFTP protocol
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bootd - boot default, i.e., run 'bootcmd'
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loads - load S-Record file over serial line
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loadb - load binary file over serial line (kermit mode)
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md - memory display
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mm - memory modify (auto-incrementing)
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nm - memory modify (constant address)
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mw - memory write (fill)
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cp - memory copy
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cmp - memory compare
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crc32 - checksum calculation
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base - print or set address offset
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printenv- print environment variables
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setenv - set environment variables
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saveenv - save environment variables to persistent storage
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protect - enable or disable FLASH write protection
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erase - erase FLASH memory
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flinfo - print FLASH memory information
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bdinfo - print Board Info structure
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iminfo - print header information for application image
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coninfo - print console devices and informations
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eeprom - EEPROM sub-system
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loop - infinite loop on address range
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mtest - simple RAM test
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icache - enable or disable instruction cache
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dcache - enable or disable data cache
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reset - Perform RESET of the CPU
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echo - echo args to console
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version - print monitor version
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help - print online help
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? - alias for 'help'
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=>
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------------------------------------------------------------------------------
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2. Flash driver operation
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The following sequence was performed to test the "flinfo" command:
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------------------------------------------------------------------------------
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=> flinfo
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Bank # 1: AMD 29LV640D (64 M, uniform sector)
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Size: 32 MB in 128 Sectors
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Sector Start Addresses:
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40000000 40040000 (RO) 40080000 400C0000 40100000
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40140000 40180000 401C0000 40200000 40240000
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40280000 402C0000 40300000 40340000 40380000
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403C0000 40400000 40440000 40480000 404C0000
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40500000 40540000 40580000 405C0000 40600000
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40640000 40680000 406C0000 40700000 40740000
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40780000 407C0000 40800000 40840000 40880000
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408C0000 40900000 40940000 40980000 409C0000
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40A00000 40A40000 40A80000 40AC0000 40B00000
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40B40000 40B80000 40BC0000 40C00000 40C40000
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40C80000 40CC0000 40D00000 40D40000 40D80000
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40DC0000 40E00000 40E40000 40E80000 40EC0000
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40F00000 40F40000 40F80000 40FC0000 41000000
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41040000 41080000 410C0000 41100000 41140000
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41180000 411C0000 41200000 41240000 41280000
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412C0000 41300000 41340000 41380000 413C0000
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41400000 41440000 41480000 414C0000 41500000
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41540000 41580000 415C0000 41600000 41640000
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41680000 416C0000 41700000 41740000 41780000
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417C0000 41800000 41840000 41880000 418C0000
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41900000 41940000 41980000 419C0000 41A00000
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41A40000 41A80000 41AC0000 41B00000 41B40000
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41B80000 41BC0000 41C00000 41C40000 41C80000
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41CC0000 41D00000 41D40000 41D80000 41DC0000
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41E00000 41E40000 41E80000 41EC0000 41F00000
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41F40000 41F80000 41FC0000
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=>
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------------------------------------------------------------------------------
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The following sequence was performed to test the erase command:
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------------------------------------------------------------------------------
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=> cp 0 40080000 10
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Copy to Flash... done
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=> erase 40080000 400bffff
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Erase Flash from 0x40080000 to 0x400bffff
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.. done
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Erased 1 sectors
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=> md 40080000
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40080000: ffffffff ffffffff ffffffff ffffffff ................
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40080010: ffffffff ffffffff ffffffff ffffffff ................
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40080020: ffffffff ffffffff ffffffff ffffffff ................
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40080030: ffffffff ffffffff ffffffff ffffffff ................
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40080040: ffffffff ffffffff ffffffff ffffffff ................
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40080050: ffffffff ffffffff ffffffff ffffffff ................
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40080060: ffffffff ffffffff ffffffff ffffffff ................
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40080070: ffffffff ffffffff ffffffff ffffffff ................
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40080080: ffffffff ffffffff ffffffff ffffffff ................
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40080090: ffffffff ffffffff ffffffff ffffffff ................
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400800a0: ffffffff ffffffff ffffffff ffffffff ................
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400800b0: ffffffff ffffffff ffffffff ffffffff ................
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400800c0: ffffffff ffffffff ffffffff ffffffff ................
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400800d0: ffffffff ffffffff ffffffff ffffffff ................
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400800e0: ffffffff ffffffff ffffffff ffffffff ................
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400800f0: ffffffff ffffffff ffffffff ffffffff ................
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=> cp 0 40080000 10
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Copy to Flash... done
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=> erase 1:2
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Erase Flash Sectors 2-2 in Bank # 1
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.. done
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=> md 40080000
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40080000: ffffffff ffffffff ffffffff ffffffff ................
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40080010: ffffffff ffffffff ffffffff ffffffff ................
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40080020: ffffffff ffffffff ffffffff ffffffff ................
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40080030: ffffffff ffffffff ffffffff ffffffff ................
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40080040: ffffffff ffffffff ffffffff ffffffff ................
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40080050: ffffffff ffffffff ffffffff ffffffff ................
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40080060: ffffffff ffffffff ffffffff ffffffff ................
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40080070: ffffffff ffffffff ffffffff ffffffff ................
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40080080: ffffffff ffffffff ffffffff ffffffff ................
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40080090: ffffffff ffffffff ffffffff ffffffff ................
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400800a0: ffffffff ffffffff ffffffff ffffffff ................
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400800b0: ffffffff ffffffff ffffffff ffffffff ................
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400800c0: ffffffff ffffffff ffffffff ffffffff ................
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400800d0: ffffffff ffffffff ffffffff ffffffff ................
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400800e0: ffffffff ffffffff ffffffff ffffffff ................
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400800f0: ffffffff ffffffff ffffffff ffffffff ................
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=> cp 0 40080000 10
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Copy to Flash... done
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=> cp 0 400c0000 10
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Copy to Flash... done
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=> erase 1:2-3
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Erase Flash Sectors 2-3 in Bank # 1
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... done
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=> md 40080000
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40080000: ffffffff ffffffff ffffffff ffffffff ................
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40080010: ffffffff ffffffff ffffffff ffffffff ................
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40080020: ffffffff ffffffff ffffffff ffffffff ................
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40080030: ffffffff ffffffff ffffffff ffffffff ................
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40080040: ffffffff ffffffff ffffffff ffffffff ................
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40080050: ffffffff ffffffff ffffffff ffffffff ................
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40080060: ffffffff ffffffff ffffffff ffffffff ................
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40080070: ffffffff ffffffff ffffffff ffffffff ................
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40080080: ffffffff ffffffff ffffffff ffffffff ................
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40080090: ffffffff ffffffff ffffffff ffffffff ................
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400800a0: ffffffff ffffffff ffffffff ffffffff ................
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400800b0: ffffffff ffffffff ffffffff ffffffff ................
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400800c0: ffffffff ffffffff ffffffff ffffffff ................
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400800d0: ffffffff ffffffff ffffffff ffffffff ................
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400800e0: ffffffff ffffffff ffffffff ffffffff ................
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400800f0: ffffffff ffffffff ffffffff ffffffff ................
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=> md 400c0000
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400c0000: ffffffff ffffffff ffffffff ffffffff ................
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400c0010: ffffffff ffffffff ffffffff ffffffff ................
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400c0020: ffffffff ffffffff ffffffff ffffffff ................
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400c0030: ffffffff ffffffff ffffffff ffffffff ................
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400c0040: ffffffff ffffffff ffffffff ffffffff ................
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400c0050: ffffffff ffffffff ffffffff ffffffff ................
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400c0060: ffffffff ffffffff ffffffff ffffffff ................
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400c0070: ffffffff ffffffff ffffffff ffffffff ................
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400c0080: ffffffff ffffffff ffffffff ffffffff ................
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400c0090: ffffffff ffffffff ffffffff ffffffff ................
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400c00a0: ffffffff ffffffff ffffffff ffffffff ................
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400c00b0: ffffffff ffffffff ffffffff ffffffff ................
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400c00c0: ffffffff ffffffff ffffffff ffffffff ................
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400c00d0: ffffffff ffffffff ffffffff ffffffff ................
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400c00e0: ffffffff ffffffff ffffffff ffffffff ................
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400c00f0: ffffffff ffffffff ffffffff ffffffff ................
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=>
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------------------------------------------------------------------------------
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The following sequence was performed to test the Flash programming commands:
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------------------------------------------------------------------------------
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=> erase 40080000 400bffff
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Erase Flash from 0x40080000 to 0x400bffff
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.. done
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Erased 1 sectors
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=> cp 0 40080000 10
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Copy to Flash... done
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=> md 0
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00000000: 00000000 00000104 61100200 01000000 ........a.......
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00000010: 00000000 00000000 81140000 82000100 ................
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00000020: 01080000 00004000 22800000 00000600 ......@.".......
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00000030: 00200800 00000000 10000100 00008000 . ..............
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00000040: 00812000 00000200 00020000 80000000 .. .............
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00000050: 00028001 00001000 00040400 00000200 ................
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00000060: 20480000 00000000 20090000 00142000 H...... ..... .
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00000070: 00000000 00004000 24210000 10000000 ......@.$!......
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00000080: 02440002 10000000 00200008 00000000 .D....... ......
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00000090: 02440900 00000000 30a40000 00004400 .D......0.....D.
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000000a0: 04420800 00000000 00000040 00020000 .B.........@....
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000000b0: 05020000 00100000 00060000 00000000 ................
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000000c0: 00400000 00000000 00080000 00040000 .@..............
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000000d0: 10400000 00800004 00000000 00000200 .@..............
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000000e0: 80890000 00010004 00080000 00000020 ...............
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000000f0: 08000000 10000000 00010000 00000000 ................
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=> md 40080000
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40080000: 00000000 00000104 61100200 01000000 ........a.......
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40080010: 00000000 00000000 81140000 82000100 ................
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40080020: 01080000 00004000 22800000 00000600 ......@.".......
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40080030: 00200800 00000000 10000100 00008000 . ..............
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40080040: ffffffff ffffffff ffffffff ffffffff ................
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40080050: ffffffff ffffffff ffffffff ffffffff ................
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40080060: ffffffff ffffffff ffffffff ffffffff ................
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40080070: ffffffff ffffffff ffffffff ffffffff ................
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40080080: ffffffff ffffffff ffffffff ffffffff ................
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40080090: ffffffff ffffffff ffffffff ffffffff ................
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400800a0: ffffffff ffffffff ffffffff ffffffff ................
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400800b0: ffffffff ffffffff ffffffff ffffffff ................
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400800c0: ffffffff ffffffff ffffffff ffffffff ................
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400800d0: ffffffff ffffffff ffffffff ffffffff ................
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400800e0: ffffffff ffffffff ffffffff ffffffff ................
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400800f0: ffffffff ffffffff ffffffff ffffffff ................
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=>
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------------------------------------------------------------------------------
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The following sequence was performed to test storage of the environment
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variables in Flash:
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------------------------------------------------------------------------------
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=> setenv foo bar
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=> saveenv
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Un-Protected 1 sectors
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Erasing Flash...
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.. done
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Erased 1 sectors
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Saving Environment to Flash...
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Protected 1 sectors
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=> reset
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...
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=> printenv
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bootdelay=CONFIG_BOOTDELAY
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baudrate=9600
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ipaddr=192.168.4.7
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serverip=192.168.4.1
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ethaddr=66:55:44:33:22:11
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foo=bar
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stdin=serial
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stdout=serial
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stderr=serial
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Environment size: 170/262140 bytes
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=>
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------------------------------------------------------------------------------
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The following sequence was performed to test image download and run over
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Ethernet interface (both interfaces were tested):
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------------------------------------------------------------------------------
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=> tftpboot 40000 hello_world.bin
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ARP broadcast 1
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TFTP from server 192.168.2.2; our IP address is 192.168.2.7
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Filename 'hello_world.bin'.
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Load address: 0x40000
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Loading: #############
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done
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Bytes transferred = 65912 (10178 hex)
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=> go 40004
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## Starting application at 0x00040004 ...
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Hello World
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argc = 1
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argv[0] = "40004"
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argv[1] = "<NULL>"
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Hit any key to exit ...
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## Application terminated, rc = 0x0
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=>
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------------------------------------------------------------------------------
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The following sequence was performed to test eeprom read/write commands:
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------------------------------------------------------------------------------
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=> md 40000
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00040000: 00018148 9421ffe0 7c0802a6 bf61000c ...H.!..|....a..
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00040010: 90010024 48000005 7fc802a6 801effe8 ...$H...........
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00040020: 7fc0f214 7c7f1b78 813f004c 7c9c2378 ....|..x.?.L|.#x
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00040030: 807e8000 7cbd2b78 80090010 3b600000 .~..|.+x....;`..
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00040040: 7c0803a6 4e800021 813f004c 7f84e378 |...N..!.?.L...x
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00040050: 807e8004 80090010 7c0803a6 4e800021 .~......|...N..!
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00040060: 7c1be000 4181003c 80bd0000 813f004c |...A..<.....?.L
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00040070: 3bbd0004 2c050000 40820008 80be8008 ;...,...@.......
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00040080: 80090010 7f64db78 807e800c 3b7b0001 .....d.x.~..;{..
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00040090: 7c0803a6 4e800021 7c1be000 4081ffcc |...N..!|...@...
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000400a0: 813f004c 807e8010 80090010 7c0803a6 .?.L.~......|...
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000400b0: 4e800021 813f004c 80090004 7c0803a6 N..!.?.L....|...
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000400c0: 4e800021 2c030000 4182ffec 813f004c N..!,...A....?.L
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000400d0: 80090000 7c0803a6 4e800021 813f004c ....|...N..!.?.L
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000400e0: 807e8014 80090010 7c0803a6 4e800021 .~......|...N..!
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000400f0: 38600000 80010024 7c0803a6 bb61000c 8`.....$|....a..
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=> eeprom write 40000 0 40
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EEPROM write: addr 00040000 off 0000 count 64 ... done
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=> mw 50000 0 1000
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=> eeprom read 50000 0 40
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EEPROM read: addr 00050000 off 0000 count 64 ... done
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=> md 50000
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00050000: 00018148 9421ffe0 7c0802a6 bf61000c ...H.!..|....a..
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00050010: 90010024 48000005 7fc802a6 801effe8 ...$H...........
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00050020: 7fc0f214 7c7f1b78 813f004c 7c9c2378 ....|..x.?.L|.#x
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00050030: 807e8000 7cbd2b78 80090010 3b600000 .~..|.+x....;`..
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00050040: 00000000 00000000 00000000 00000000 ................
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00050050: 00000000 00000000 00000000 00000000 ................
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00050060: 00000000 00000000 00000000 00000000 ................
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00050070: 00000000 00000000 00000000 00000000 ................
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00050080: 00000000 00000000 00000000 00000000 ................
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00050090: 00000000 00000000 00000000 00000000 ................
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000500a0: 00000000 00000000 00000000 00000000 ................
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000500b0: 00000000 00000000 00000000 00000000 ................
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000500c0: 00000000 00000000 00000000 00000000 ................
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000500d0: 00000000 00000000 00000000 00000000 ................
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000500e0: 00000000 00000000 00000000 00000000 ................
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000500f0: 00000000 00000000 00000000 00000000 ................
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=>
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------------------------------------------------------------------------------
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Patch per Mon, 06 Aug 2001 17:57:27:
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- upgraded Flash support (added support for the following chips:
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AM29LV800T/B, AM29LV160T/B, AM29DL322T/B, AM29DL323T/B)
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- BCR tweakage for the 8260 bus mode
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- SIUMCR tweakage enabling the MI interrupt (IRQ7)
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To simplify switching between the bus modes, a new configuration
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option (CONFIG_BUSMODE_60x) has been added to the "config_TQM8260.h"
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file. If it is defined, BCR will be configured for the 60x mode,
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otherwise - for the 8260 mode.
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Concerning the SIUMCR modification: it's hard to predict whether it
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will induce any problems on the other (60x mode) board. However, the
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problems (if they appear) should be easy to notice - if the board
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does not boot, it's most likely caused by the DPPC configuration in
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SIUMCR.
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