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-rw-r--r--doc/README.mpc8313erdb83
-rw-r--r--doc/README.mpc8641hpcn11
-rw-r--r--doc/README.nand7
-rw-r--r--doc/README.sbc856053
4 files changed, 91 insertions, 63 deletions
diff --git a/doc/README.mpc8313erdb b/doc/README.mpc8313erdb
new file mode 100644
index 0000000..7ad4cc7
--- /dev/null
+++ b/doc/README.mpc8313erdb
@@ -0,0 +1,83 @@
+Freescale MPC8313ERDB Board
+-----------------------------------------
+
+1. Board Switches and Jumpers
+
+ SW3 is used to set CFG_RESET_SOURCE.
+
+ To boot the image at 0xFE000000 in NOR flash, use these DIP
+ switche settings for SW3 SW4:
+
+ +------+ +------+
+ | | | **** |
+ | **** | | |
+ +------+ ON +------+ ON
+ 4321 4321
+ (where the '*' indicates the position of the tab of the switch.)
+
+2. Memory Map
+ The memory map looks like this:
+
+ 0x0000_0000 0x07ff_ffff DDR 128M
+ 0x8000_0000 0x8fff_ffff PCI MEM 256M
+ 0x9000_0000 0x9fff_ffff PCI_MMIO 256M
+ 0xe000_0000 0xe00f_ffff IMMR 1M
+ 0xe200_0000 0xe20f_ffff PCI IO 16M
+ 0xe280_0000 0xe280_7fff NAND FLASH (CS1) 32K
+ 0xf000_0000 0xf001_ffff VSC7385 (CS2) 128K
+ 0xfa00_0000 0xfa00_7fff Board Status/ 32K
+ LED Control (CS3)
+ 0xfe00_0000 0xfe7f_ffff NOR FLASH (CS0) 8M
+
+3. Definitions
+
+3.1 Explanation of NEW definitions in:
+
+ include/configs/MPC8313ERDB.h
+
+ CONFIG_MPC83xx MPC83xx family
+ CONFIG_MPC831x MPC831x specific
+ CONFIG_MPC8313ERDB MPC8313ERDB board specific
+
+4. Compilation
+
+ Assuming you're using BASH (or similar) as your shell:
+
+ export CROSS_COMPILE=your-cross-compiler-prefix-
+ make distclean
+ make MPC8313ERDB_33_config
+ (or make MPC8313ERDB_66_config, depending on the speed of
+ the oscillator on your board)
+ make
+
+5. Downloading and Flashing Images
+
+5.1 Reflash U-boot Image using U-boot
+
+ =>run tftpflash
+
+ You may want to try
+ =>tftpboot $loadaddr $uboot
+ first, to make sure that the TFTP load will succeed before it
+ goes ahead and wipes out your current firmware. And of course,
+ have an alternate means of programming the flash available
+ if the new u-boot doesn't boot.
+
+5.2 Downloading and Booting Linux Kernel
+
+ Ensure that all networking-related environment variables are set
+ properly (including ipaddr, serverip, gatewayip (if needed),
+ netmask, ethaddr, eth1addr, rootpath (if using NFS root),
+ fdtfile, and bootfile).
+
+ Then, do one of the following, depending on whether you
+ want an NFS root or a ramdisk root:
+
+ =>run nfsboot
+ or
+ =>run ramboot
+
+6 Notes
+
+ Booting from NAND flash is not yet supported.
+ The console baudrate for MPC8313ERDB is 115200bps.
diff --git a/doc/README.mpc8641hpcn b/doc/README.mpc8641hpcn
index 3b88f8b..ac56cca 100644
--- a/doc/README.mpc8641hpcn
+++ b/doc/README.mpc8641hpcn
@@ -96,14 +96,17 @@ To Flash U-Boot into the booting bank (0xFFC00000 - 0xFFFFFFFF):
tftp 1000000 u-boot.bin
protect off all
- erase fff00000 ffffffff
- cp.b 1000000 fff00100 80000
+ erase fff00000 +$filesize
+ cp.b 1000000 fff00000 $filesize
+
+or use tftpflash command:
+ run tftpflash
To Flash U-boot into the alternative bank (0xFF800000 - 0xFFBFFFFF):
tftp 1000000 u-boot.bin
- erase ffb00000 ffbfffff
- cp.b 1000000 ffb00100 80000
+ erase ffb00000 +$filesize
+ cp.b 1000000 ffb00000 $filesize
4. Memory Map
diff --git a/doc/README.nand b/doc/README.nand
index b5171f4..5c31845 100644
--- a/doc/README.nand
+++ b/doc/README.nand
@@ -192,12 +192,7 @@ The old NAND handling code has been re-factored and is now confined
to only board-specific files and - unfortunately - to the DoC code
(see below). A new configuration variable has been introduced:
CFG_NAND_LEGACY, which has to be defined in the board config file if
-that board uses legacy code. If CFG_NAND_LEGACY is defined, the board
-specific config.mk file should also have "BOARDLIBS =
-drivers/nand_legacy/libnand_legacy.a". For boards using the new NAND
-approach (PPChameleon and netstar at the moment) no variable is
-necessary, but the config.mk should have "BOARDLIBS =
-drivers/nand/libnand.a".
+that board uses legacy code.
The necessary changes have been made to all affected boards, and no
build breakage has been introduced, except for NETTA and NETTA_ISDN
diff --git a/doc/README.sbc8560 b/doc/README.sbc8560
deleted file mode 100644
index 52592e3..0000000
--- a/doc/README.sbc8560
+++ /dev/null
@@ -1,53 +0,0 @@
-The port was tested on Wind River System Sbc8560 board <www.windriver.com>.
-U-Boot was installed on the flash memory of the CPU card (no the SODIMM).
-
-NOTE: Please configure uboot compile to the proper PCI frequency and
-setup the appropriate DIP switch settings.
-
-SBC8560 board:
-
-Make sure boards switches are set to their appropriate conditions.
-Refer to the Engineering Reference Guide ERG-00300-002. Of particular
-importance are: 1)Tthe settings for JP4 (JP4 1-3 and 2-4), which
-select the on-board FLASH device (Intel 28F128Jx); 2) The settings
-for the Clock SW9 (33 MHz or 66 MHz).
-
- Note: SW9 Settings: 66 MHz
- 4:1 ratio CCB clocks:SYSCLK
- 3:1 ration e500 Core:CCB
- pos1 - on, pos2 - on, pos3 - off, pos4 - on, pos5 - off, pos6 - on
- Note: SW9 Settings: 33 MHz
- 8:1 ratio CCB clocks:SYSCLK
- 3:1 ration e500 Core:CCB
- pos1 - on, pos2 - on, pos3 - on, pos4 - off, pos5 - off, pos6 - on
-
-
-Flashing the FLASH device with the "Wind River ICE":
-
-1) Properly connect and configure the Wind River ICE to the
- target JTAG port. This includes running the SBC8560 register script.
- Make sure target memory can be read and written.
-
-2) Build the u-boot image:
- make distclean
- make SBC8560_66_config or SBC8560_33_config
- make CROSS_COMPILE=.../ELDK3.0/ppc_8xx-/ all
-
- Note: reference is made to the ELDK3.0 compiler but any 85xx cross-compiler
- should suffice.
-
-3) Convert the uboot (.elf) file to a uboot.bin file (using visionClick converter).
- The bin file should be converted from fffc0000 to ffffffff
-
-4) Setup the Flash Utility (tools menu) for:
-
- Determine the clock speed of the PCI bus and set SW9 accordingly
- Note: the speed of the PCI bus defaults to the slowest PCI card
- PlayBack the "default" register file for the SBC8560
- Select the uboot.bin file with zero bias
- Select the initialize Target prior to programming
- Select the V28F640Jx (8192 x 8) 1 device FLASH Algorithm
- Select the erase base address from FFFC0000 to FFFFFFFF
- Select the start address from 0 with size of 4000
-
-5) Erase and Program