mirror of
https://git.FreeBSD.org/src.git
synced 2024-12-19 10:53:58 +00:00
646 lines
15 KiB
Plaintext
646 lines
15 KiB
Plaintext
set remotebaud 38400
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set remotetimeout 1
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set complaints 1
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set print pretty
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define xi
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x/10i $eip
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end
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define xs
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x/12x $esp
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end
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define xb
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x/12x $ebp
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end
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define z
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ni
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x/1i $eip
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end
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define zs
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si
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x/1i $eip
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end
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define xp
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printf " esp: "
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output/x $esp
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echo (
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output (((int)$ebp)-(int)$esp)/4-4
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printf " words on stack)\n ebp: "
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output/x $ebp
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printf "\n eip: "
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x/1i $eip
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printf "Saved ebp: "
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output/x *(int*)$ebp
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printf " (maximum of "
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output ((*(int*)$ebp)-(int)$ebp)/4-4
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printf " parameters possible)\nSaved eip: "
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x/1i *(int*)($ebp+4)
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printf "\nParm 1 at "
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output/x (int) ($ebp+8)
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printf ": "
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output (char*) *(int*)($ebp+8)
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printf "\nParm 2 at "
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output/x (int) ($ebp+12)
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printf ": "
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output (char*) *(int*)($ebp+12)
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printf "\nParm 3 at "
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output/x (int) ($ebp+16)
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printf ": "
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output (char*) *(int*)($ebp+16)
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printf "\nParm 4 at "
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output/x (int) ($ebp+20)
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printf ": "
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output (char*) *(int*)($ebp+20)
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echo \n
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end
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document xp
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Show the register contents and the first four parameter
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words of the current frame.
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end
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define xxp
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printf " esp: "
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output/x $esp
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printf "\n ebp: "
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output/x $ebp
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printf "\n eip: "
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x/1i $eip
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printf "Saved ebp: "
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output/x *(int*)$ebp
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printf " (maximum of "
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output ((*(int*)$ebp)-(int)$ebp)/4-4
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printf " parameters possible)\nSaved eip: "
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x/1i *(int*)($ebp+4)
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printf "\nParm 1 at "
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output/x (int) ($ebp+8)
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printf ": "
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output (char*) *(int*)($ebp+8)
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printf "\nParm 2 at "
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output/x (int) ($ebp+12)
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printf ": "
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output (char*) *(int*)($ebp+12)
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printf "\nParm 3 at "
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output/x (int) ($ebp+16)
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printf ": "
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output (char*) *(int*)($ebp+16)
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printf "\nParm 4 at "
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output/x (int) ($ebp+20)
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printf ": "
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output (char*) *(int*)($ebp+20)
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printf "\nParm 5 at "
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output/x (int) ($ebp+24)
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printf ": "
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output (char*) *(int*)($ebp+24)
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printf "\nParm 6 at "
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output/x (int) ($ebp+28)
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printf ": "
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output (char*) *(int*)($ebp+28)
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printf "\nParm 7 at "
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output/x (int) ($ebp+32)
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printf ": "
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output (char*) *(int*)($ebp+32)
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printf "\nParm 8 at "
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output/x (int) ($ebp+36)
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printf ": "
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output (char*) *(int*)($ebp+36)
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printf "\nParm 9 at "
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output/x (int) ($ebp+40)
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printf ": "
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output (char*) *(int*)($ebp+40)
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printf "\nParm 10 at "
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output/x (int) ($ebp+44)
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printf ": "
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output (char*) *(int*)($ebp+44)
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echo \n
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end
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document xxp
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Show the register contents and the first ten parameter
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words of the current frame.
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end
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define xp0
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x/12x *(int*)$esp
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p *(int*)$esp
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p (char*)*$esp
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end
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define xp1
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x/12x *(int*)($ebp+4)
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p *(int*)($ebp+4)
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p (char**)($ebp+4)
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end
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define xp2
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x/12x *(int*)($ebp+8)
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p *(int*)($ebp+8)
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p *(char**)($ebp+8)
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end
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define xp3
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x/12x *(int*)($ebp+12)
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p *(int*)($ebp+12)
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p (char**)($ebp+12)
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end
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define xp4
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x/12x *(int*)($ebp+16)
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p *(int*)($ebp+16)
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p (char**)($ebp+16)
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end
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document xp0
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Show the first parameter of current stack frame in various formats
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end
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document xp1
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Show the second parameter of current stack frame in various formats
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end
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document xp2
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Show the third parameter of current stack frame in various formats
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end
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document xp3
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Show the fourth parameter of current stack frame in various formats
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end
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document xp4
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Show the fifth parameter of current stack frame in various formats
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end
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define f0
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f 0
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xp
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end
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define f1
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f 1
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xp
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end
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define f2
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f 2
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xp
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end
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define f3
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f 3
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xp
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end
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define f4
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f 4
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xp
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end
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define f5
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f 5
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xp
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end
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document f0
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Select stack frame 0 and show assembler-level details
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end
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document f1
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Select stack frame 1 and show assembler-level details
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end
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document f2
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Select stack frame 2 and show assembler-level details
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end
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document f3
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Select stack frame 3 and show assembler-level details
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end
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document f4
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Select stack frame 4 and show assembler-level details
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end
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document f5
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Select stack frame 5 and show assembler-level details
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end
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document z
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Single step 1 instruction (over calls) and show next instruction.
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end
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document zs
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Single step 1 instruction (through calls) and show next instruction.
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end
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document xi
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List the next 10 instructions from the current IP value
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end
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document xs
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Show the last 12 words on stack in hex
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end
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document xb
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Show 12 words starting at current BP value in hex
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end
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define tr
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target remote /dev/cuaa1
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end
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document tr
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Attach to a remote kernel via /dev/cuaa0
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end
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set output-radix 16
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define pname
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p (char *)curproc->p_comm
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end
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document pname
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Print the command name of the current process
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end
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define bpp
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set $bp = (struct buf *) $arg0
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if $bp->b_dev
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printf " Buffer at 0x%x: dev 0x%x data 0x%x bcount 0x%x blkno 0x%x resid 0x%x\n", \
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$bp, \
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$bp->b_dev->si_udev, \
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$bp->b_data, \
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$bp->b_bcount, \
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$bp->b_blkno, \
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$bp->b_resid
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else
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printf " Buffer at 0x%x: dev (none) data 0x%x bcount 0x%x blkno 0x%x resid 0x%x\n", \
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$bp, \
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$bp->b_data, \
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$bp->b_bcount, \
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$bp->b_blkno, \
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$bp->b_resid
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end
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printf " flags 0x%x: ", $bp->b_flags
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if $bp->b_flags & 0x10
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printf "busy "
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end
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if $bp->b_flags & 0x40
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printf "call "
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end
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if $bp->b_flags & 0x200
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printf "done "
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end
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if $bp->b_flags & 0x800
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printf "error "
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end
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if $bp->b_flags & 0x40000
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printf "phys "
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end
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if $bp->b_flags & 0x100000
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printf "read "
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end
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printf "\n"
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end
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define bpl
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set $bp = (struct buf *) $arg0
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printf "b_proc: "
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output $bp->b_proc
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printf "\nb_flags: "
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output $bp->b_flags
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printf "\nb_qindex: "
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output $bp->b_qindex
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printf "\nb_usecount: "
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output $bp->b_usecount
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printf "\nb_error: "
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output $bp->b_error
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printf "\nb_bufsize: "
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output $bp->b_bufsize
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printf "\nb_bcount: "
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output $bp->b_bcount
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printf "\nb_resid: "
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output $bp->b_resid
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printf "\nb_dev: "
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output $bp->b_dev
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printf "\nb_data: "
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output $bp->b_data
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printf "\nb_kvasize: "
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output $bp->b_kvasize
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printf "\nb_lblkno: "
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output $bp->b_lblkno
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printf "\nb_blkno: "
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output $bp->b_blkno
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printf "\nb_iodone: "
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output $bp->b_iodone
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printf "\nb_vp: "
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output $bp->b_vp
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printf "\nb_dirtyoff: "
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output $bp->b_dirtyoff
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printf "\nb_dirtyend: "
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output $bp->b_dirtyend
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printf "\nb_generation: "
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output $bp->b_generation
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printf "\nb_rcred: "
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output $bp->b_rcred
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printf "\nb_wcred: "
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output $bp->b_wcred
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printf "\nb_validoff: "
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output $bp->b_validoff
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printf "\nb_validend: "
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output $bp->b_validend
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printf "\nb_pblkno: "
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output $bp->b_pblkno
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printf "\nb_saveaddr: "
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output $bp->b_saveaddr
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printf "\nb_savekva: "
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output $bp->b_savekva
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printf "\nb_driver1: "
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output $bp->b_driver1
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printf "\nb_driver2: "
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output $bp->b_driver2
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printf "\nb_spc: "
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output $bp->b_spc
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printf "\nb_npages: "
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output $bp->b_npages
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printf "\n"
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end
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define bp
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bpp bp
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end
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define bpd
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printf "Buffer data:\n%s", (char *) bp->b_data
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end
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document bpd
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Show the contents (char*) of bp->data in the current frame.
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end
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document bp
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Show information about the buffer header pointed to by the
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variable bp in the current frame.
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end
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document bpp
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Show summary information about the buffer header (struct bp) pointed
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at by the parameter.
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end
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document bpl
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Show detailled information about the buffer header (struct bp) pointed
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at by the parameter.
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end
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document bpl
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Show detailled information about the buffer header (struct bp) pointed
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at by the local variable bp.
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end
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define bx
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printf "\n b_vnbufs "
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output/x bp->b_vnbufs
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printf "\n b_freelist "
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output/x bp->b_freelist
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printf "\n b_act "
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output/x bp->b_act
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printf "\n b_flags "
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output/x bp->b_flags
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printf "\n b_qindex "
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output/x bp->b_qindex
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printf "\n b_usecount "
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output/x bp->b_usecount
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printf "\n b_error "
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output/x bp->b_error
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printf "\n b_bufsize "
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output/x bp->b_bufsize
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printf "\n b_bcount "
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output/x bp->b_bcount
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printf "\n b_resid "
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output/x bp->b_resid
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printf "\n b_dev "
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output/x bp->b_dev
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printf "\n b_data "
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output/x bp->b_data
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printf "\n b_kvasize "
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output/x bp->b_kvasize
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printf "\n b_blkno "
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output/x bp->b_blkno
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printf "\n b_iodone_chain "
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output/x bp->b_iodone_chain
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printf "\n b_vp "
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output/x bp->b_vp
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printf "\n b_dirtyoff "
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output/x bp->b_dirtyoff
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printf "\n b_validoff "
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output/x bp->b_validoff
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echo \n
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end
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define ddb
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set boothowto=0x80000000
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s
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end
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document ddb
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Switch back to ddb.
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end
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define ps
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set $nproc = nprocs
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set $aproc = allproc.lh_first
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set $proc = allproc.lh_first
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printf " pid proc addr uid ppid pgrp flag stat comm wchan\n"
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while (--$nproc >= 0)
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set $pptr = $proc.p_pptr
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if ($pptr == 0)
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set $pptr = $proc
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end
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if ($proc.p_stat)
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printf "%5d %08x %08x %4d %5d %5d %06x %d %-10s ", \
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$proc.p_pid, $aproc, \
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$proc.p_addr, $proc.p_cred->p_ruid, $pptr->p_pid, \
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$proc.p_pgrp->pg_id, $proc.p_flag, $proc.p_stat, \
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&$proc.p_comm[0]
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if ($proc.p_wchan)
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if ($proc.p_wmesg)
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printf "%s ", $proc.p_wmesg
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end
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printf "%x", $proc.p_wchan
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end
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printf "\n"
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end
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set $aproc = $proc.p_list.le_next
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if ($aproc == 0 && $nproc > 0)
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set $aproc = zombproc
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end
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set $proc = $aproc
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end
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end
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document ps
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"ps" -- when kernel debugging, type out a ps-like listing of active processes.
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end
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define pcb
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set $nproc = nprocs
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set $aproc = allproc.lh_first
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set $proc = allproc.lh_first
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while (--$nproc >= 0)
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set $pptr = $proc.p_pptr
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if ($proc->p_pid == $arg0)
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set $pcba = $pptr->p_addr->u_pcb
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printf "ip: %08x sp: %08x bp: %08x bx: %08x\n", $pcba->pcb_eip, $pcba->pcb_esp, $pcba->pcb_ebp, $pcba->pcb_ebx
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x/1i $pcba->pcb_eip
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set $nproc = 0
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end
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set $aproc = $proc.p_list.le_next
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if ($aproc == 0 && $nproc > 0)
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set $aproc = zombproc
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end
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set $proc = $aproc
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end
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end
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document pcb
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Show some pcb contents of process whose pid is specified.
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end
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define btr
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set $frame = $arg0
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set $fno = 0
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while (*(int *) $frame > 0xc0000000)
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set $myebp = *(int *) $frame
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set $myeip = *(int *) ($frame + 4)
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printf " frame %d at %p: ebp %8x, eip ", $fno, $frame, $myebp
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x/1i $myeip
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set $frame = $myebp
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set $fno = $fno + 1
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end
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end
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document btr
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Show a backtrace from the ebp address specified. This can be used to
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get a backtrace from any stack resident in memory.
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end
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define btp
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set $nproc = nprocs
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set $aproc = allproc.lh_first
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set $proc = allproc.lh_first
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while (--$nproc >= 0)
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if ($proc->p_pid == $arg0)
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btr $proc->p_addr->u_pcb->pcb_ebp
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set $nproc = 0
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else
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set $aproc = $proc.p_list.le_next
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if ($aproc == 0 && $nproc > 0)
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set $aproc = zombproc
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end
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set $proc = $aproc
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end
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end
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end
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document btp
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Show a backtrace for the process whose pid is specified as a parameter.
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end
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define btpa
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set $nproc = nprocs
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set $aproc = allproc.lh_first
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set $proc = allproc.lh_first
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printf " pid proc addr uid ppid pgrp flag stat comm wchan\n"
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while (--$nproc >= 0)
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set $pptr = $proc.p_pptr
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if ($pptr == 0)
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set $pptr = $proc
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end
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if ($proc.p_stat)
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printf "%5d %08x %08x %4d %5d %5d %06x %d %-10s ", \
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$proc.p_pid, $aproc, \
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$proc.p_addr, $proc.p_cred->p_ruid, $pptr->p_pid, \
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$proc.p_pgrp->pg_id, $proc.p_flag, $proc.p_stat, \
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&$proc.p_comm[0]
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if ($proc.p_wchan)
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if ($proc.p_wmesg)
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printf "%s ", $proc.p_wmesg
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end
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printf "%x", $proc.p_wchan
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end
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printf "\n"
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if ($proc->p_flag & 4)
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btr $proc->p_addr->u_pcb->pcb_ebp
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else
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echo (not loaded)\n
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end
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end
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set $aproc = $proc.p_list.le_next
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if ($aproc == 0 && $nproc > 0)
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set $aproc = zombproc
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end
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set $proc = $aproc
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end
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end
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document btpa
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Show backtraces for all processes in the system.
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end
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define btpp
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if ($myvectorproc->p_flag & 4)
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btr $myvectorproc->p_addr->u_pcb->pcb_ebp
|
|
else
|
|
echo (not loaded)\n
|
|
end
|
|
end
|
|
document btpp
|
|
Show a backtrace for the process previously selected with 'defproc'.
|
|
end
|
|
define defproc
|
|
set $nproc = nprocs
|
|
set $aproc = allproc.lh_first
|
|
set $proc = allproc.lh_first
|
|
while (--$nproc >= 0)
|
|
if ($proc->p_pid == $arg0)
|
|
set $pptr = $proc.p_pptr
|
|
if ($pptr == 0)
|
|
set $pptr = $proc
|
|
end
|
|
set $myvectorproc = $proc
|
|
if ($proc.p_stat)
|
|
printf "%5d %08x %08x %4d %5d %5d %06x %d %-10s ", \
|
|
$proc.p_pid, $aproc, \
|
|
$proc.p_addr, $proc.p_cred->p_ruid, $pptr->p_pid, \
|
|
$proc.p_pgrp->pg_id, $proc.p_flag, $proc.p_stat, \
|
|
&$proc.p_comm[0]
|
|
if ($proc.p_wchan)
|
|
if ($proc.p_wmesg)
|
|
printf "%s ", $proc.p_wmesg
|
|
end
|
|
printf "%x", $proc.p_wchan
|
|
end
|
|
printf "\n"
|
|
end
|
|
btpp
|
|
set $nproc = 0
|
|
else
|
|
set $proc = $proc.p_list.le_next
|
|
end
|
|
end
|
|
end
|
|
document defproc
|
|
Specify a process for btpp and fr commands.
|
|
end
|
|
define fr
|
|
set $fno = 0
|
|
set $searching = 1
|
|
if ($myvectorproc->p_flag & 4)
|
|
set $frame = $myvectorproc->p_addr->u_pcb->pcb_ebp
|
|
while (($searching == 1) && (*(int *) $frame > 0xc0000000))
|
|
set $myebp = *(int *) $frame
|
|
set $myeip = *(int *) ($frame + 4)
|
|
if ($fno == $arg0)
|
|
printf " frame %d at %p: ebp %8x, eip ", $fno, $frame, $myebp
|
|
x/1i $myeip
|
|
printf "Called from %8x, stack frame at %8x\n", *(int *) ($myebp+4), *(int *) $myebp
|
|
printf "last 20 local variables:\n"
|
|
x/20x ($myebp-80)
|
|
printf "call parameters:\n"
|
|
x/8x ($myebp+8)
|
|
set $searching = 0
|
|
else
|
|
set $frame = $myebp
|
|
set $fno = $fno + 1
|
|
end
|
|
end
|
|
if ($searching == 1)
|
|
echo frame not found\n
|
|
end
|
|
else
|
|
printf "process %d is not loaded in memory\n", $myvectorproc->p_pid
|
|
end
|
|
end
|
|
document fr
|
|
Show the frame of the stack of the process previously selected with 'defproc'.
|
|
end
|
|
set height 70
|
|
set width 120
|
|
define vdev
|
|
if (vp->v_type == VBLK)
|
|
p *vp->v_un.vu_spec.vu_specinfo
|
|
printf "numoutput: %d\n", vp->v_numoutput
|
|
else
|
|
echo "Not a block device"
|
|
end
|
|
end
|
|
document vdev
|
|
Show some information of the vnode pointed to by the local variable vp.
|
|
end
|
|
define y
|
|
echo Check your .gdbinit, it contains a y command\n
|
|
end
|
|
define kldstat
|
|
set $file = files.tqh_first
|
|
printf "Id Refs Address Size Name\n"
|
|
while ($file != 0)
|
|
printf "%2d %4d 0x%8x %8x %s\n", \
|
|
$file->id, \
|
|
$file->refs, \
|
|
$file->address, \
|
|
$file->size, \
|
|
$file->filename
|
|
set $file = $file->link.tqe_next
|
|
end
|
|
end
|
|
document kldstat
|
|
Equivalent of the kldstat(9) command, without options.
|
|
end
|
|
define msgbuf
|
|
printf "%s", msgbufp->msg_ptr
|
|
end
|
|
document msgbuf
|
|
Print the system message buffer (dmesg). This can take a long time due to the time it takes to transmit the data across a serial line.
|
|
end
|