mirror of
https://github.com/janet-lang/janet
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a0a980e0ef
Add .break and .step.
154 lines
3.6 KiB
Plaintext
154 lines
3.6 KiB
Plaintext
###
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### A useful debugger library for Janet. Should be used
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### inside a debug repl.
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###
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(defn .fiber
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"Get the current fiber being debugged."
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[]
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(if-let [entry (dyn '_fiber)]
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(entry :value)
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(dyn :fiber)))
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(defn .stack
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"Print the current fiber stack"
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[]
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(print)
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(debug/stacktrace (.fiber) "")
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(print))
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(defn .frame
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"Show a stack frame"
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[&opt n]
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(def stack (debug/stack (.fiber)))
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(in stack (or n 0)))
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(defn .fn
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"Get the current function"
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[&opt n]
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(in (.frame n) :function))
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(defn .slots
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"Get an array of slots in a stack frame"
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[&opt n]
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(in (.frame n) :slots))
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(defn .slot
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"Get the value of the nth slot."
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[&opt nth frame-idx]
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(in (.slots frame-idx) (or nth 0)))
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(defn .quit
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"Resume (dyn :fiber) with the value passed to it after exiting the debugger."
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[&opt val]
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(setdyn :exit true)
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(setdyn :resume-value val)
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nil)
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(defn .disasm
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"Gets the assembly for the current function."
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[&opt n]
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(def frame (.frame n))
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(def func (frame :function))
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(disasm func))
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(defn .bytecode
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"Get the bytecode for the current function."
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[&opt n]
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((.disasm n) 'bytecode))
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(defn .ppasm
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"Pretty prints the assembly for the current function"
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[&opt n]
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(def frame (.frame n))
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(def func (frame :function))
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(def dasm (disasm func))
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(def bytecode (dasm 'bytecode))
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(def pc (frame :pc))
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(def sourcemap (dasm 'sourcemap))
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(var last-loc [-2 -2])
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(print "\n function: " (dasm 'name) " [" (in dasm 'source "") "]")
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(when-let [constants (dasm 'constants)]
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(printf " constants: %.4Q\n" constants))
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(printf " slots: %.4Q\n\n" (frame :slots))
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(def padding (string/repeat " " 20))
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(loop [i :range [0 (length bytecode)]
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:let [instr (bytecode i)]]
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(prin (if (= (tuple/type instr) :brackets) "*" " "))
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(prin (if (= i pc) "> " " "))
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(printf "\e[33m%.20s\e[0m" (string (string/join (map string instr) " ") padding))
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(when sourcemap
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(let [[sl sc] (sourcemap i)
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loc [sl sc]]
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(when (not= loc last-loc)
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(set last-loc loc)
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(prin " # line " sl ", column " sc))))
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(print))
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(print))
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(defn .source
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"Show the source code for the function being debugged."
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[&opt n]
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(def frame (.frame n))
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(def s (frame :source))
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(def all-source (slurp s))
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(print "\n\e[33m" all-source "\e[0m\n"))
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(defn .breakall
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"Set breakpoints on all instructions in the current function."
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[&opt n]
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(def fun (.fn n))
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(def bytecode (.bytecode n))
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(for i 0 (length bytecode)
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(debug/fbreak fun i))
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(print "Set " (length bytecode) " breakpoints in " fun))
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(defn .clearall
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"Clear all breakpoints on the current function."
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[&opt n]
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(def fun (.fn n))
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(def bytecode (.bytecode n))
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(for i 0 (length bytecode)
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(debug/unfbreak fun i))
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(print "Cleared " (length bytecode) " breakpoints in " fun))
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(defn .break
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"Set breakpoint at the current pc."
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[]
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(def frame (.frame))
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(def fun (frame :function))
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(def pc (frame :pc))
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(debug/fbreak fun pc)
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(print "Set breakpoint in " fun " at pc=" pc))
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(defn .clear
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"Clear the current breakpoint"
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[]
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(def frame (.frame))
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(def fun (frame :function))
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(def pc (frame :pc))
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(debug/unfbreak fun pc)
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(print "Cleared breakpoint in " fun " at pc=" pc))
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(defn .next
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"Go to the next breakpoint."
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[&opt n]
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(var res nil)
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(for i 0 (or n 1)
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(set res (resume (.fiber))))
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res)
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(defn .nextc
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"Go to the next breakpoint, clearing the current breakpoint."
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[&opt n]
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(.clear)
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(.next n))
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(defn .step
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"Execute the next n instructions."
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[&opt n]
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(var res nil)
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(for i 0 (or n 1)
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(set res (debug/step (.fiber))))
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res)
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