tcl: add ASUS RT-N66U config
[fw/openocd] / tcl / tools / firmware-recovery.tcl
1 echo "\n\nFirmware recovery helpers"
2 echo "Use -c firmware_help to get help\n"
3
4 set known_boards {
5     "asus-rt-n16                ASUS RT-N16"
6     "asus-rt-n66u               ASUS RT-N66U"
7     "linksys-wrt54gl            Linksys WRT54GL v1.1"
8     "netgear-dg834v3            Netgear DG834G v3"
9     "bt-homehubv1               BT HomeHub v1"
10 }
11
12 proc firmware_help { } {
13     echo "
14 Your OpenOCD command should look like this:
15 openocd -f interface/<jtag adapter>.cfg -f tools/firmware-recovery.tcl -c \"<commands>*; shutdown\"
16
17 Where:
18 <jtag adapter> is one of the supported devices, e.g. ftdi/jtagkey2
19 <commands> are firmware-recovery commands separated by semicolon
20
21 Supported commands:
22 firmware_help                   get this help
23 list_boards                     list known boards and exit
24 board <name>                    select board you work with
25 list_partitions                 list partitions of the currently selected board
26 dump_part <name> <filename>     save partition's contents to a file
27 erase_part <name>               erase the given partition
28 flash_part <name> <filename>    erase, flash and verify the given partition
29 ram_boot <filename>             load binary file to RAM and run it
30 adapter_khz <freq>              set JTAG clock frequency in kHz
31
32 For example, to clear nvram and reflash CFE on an RT-N16 using TUMPA, run:
33 openocd -f interface/ftdi/tumpa.cfg -f tools/firmware-recovery.tcl \\
34         -c \"board asus-rt-n16; erase_part nvram; flash_part CFE cfe-n16.bin; shutdown\"
35 \n\n"
36     shutdown
37 }
38
39 # set default, can be overriden later
40 adapter_khz 1000
41
42 proc get_partition { name } {
43     global partition_list
44     dict get $partition_list $name
45 }
46
47 proc partition_desc { name } { lindex [get_partition $name] 0 }
48 proc partition_start { name } { lindex [get_partition $name] 1 }
49 proc partition_size { name } { lindex [get_partition $name] 2 }
50
51 proc list_boards { } {
52     global known_boards
53     echo "List of the supported boards:\n"
54     echo "Board name\t\tDescription"
55     echo "-----------------------------------"
56     foreach i $known_boards {
57         echo $i
58     }
59     echo "\n\n"
60 }
61
62 proc board { name } {
63     script [find board/$name.cfg]
64 }
65
66 proc list_partitions { } {
67     global partition_list
68     set fstr "%-16s%-14s%-14s%s"
69     echo "\nThe currently selected board is known to have these partitions:\n"
70     echo [format $fstr Name Start Size Description]
71     echo "-------------------------------------------------------"
72     for {set i 0} {$i < [llength $partition_list]} {incr i 2} {
73         set key [lindex $partition_list $i]
74         echo [format $fstr $key [partition_start $key] [partition_size $key] [partition_desc $key]]
75     }
76     echo "\n\n"
77 }
78
79 # Magic to work with any targets, including semi-functional
80 proc prepare_target { } {
81     init
82     catch {halt}
83     catch {reset init}
84     catch {halt}
85 }
86
87 proc dump_part { name filename } {
88     prepare_target
89     dump_image $filename [partition_start $name] [partition_size $name]
90 }
91
92 proc erase_part { name } {
93     prepare_target
94     flash erase_address [partition_start $name] [partition_size $name]
95 }
96
97 proc flash_part { name filename } {
98     prepare_target
99     flash write_image erase $filename [partition_start $name] bin
100     echo "Verifying:"
101     verify_image $filename [partition_start $name]
102 }
103
104 proc ram_boot { filename } {
105     global ram_boot_address
106     prepare_target
107     load_image $filename $ram_boot_address bin
108     resume $ram_boot_address
109 }
110
111 echo ""