mirror of https://github.com/python/cpython.git
167 lines
5.7 KiB
Plaintext
167 lines
5.7 KiB
Plaintext
The Python Debugger
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===================
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To use the debugger in its simplest form:
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>>> import pdb
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>>> pdb.run('<a statement>')
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The debugger's prompt is '(Pdb) '. This will stop in the first
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function call in <a statement>.
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Alternatively, if a statement terminated with an unhandled exception,
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you can use pdb's post-mortem facility to inspect the contents of the
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traceback:
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>>> <a statement>
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<exception traceback>
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>>> import pdb
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>>> pdb.pm()
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The commands recognized by the debugger are listed in the next
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section. Most can be abbreviated as indicated; e.g., h(elp) means
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that 'help' can be typed as 'h' or 'help' (but not as 'he' or 'hel',
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nor as 'H' or 'Help' or 'HELP'). Optional arguments are enclosed in
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square brackets.
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A blank line repeats the previous command literally. (Except for
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'list', where it lists the next 11 lines.)
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Commands that the debugger doesn't recognize are assumed to be Python
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statements and are executed in the context of the program being
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debugged. Python statements can also be prefixed with an exclamation
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point ('!'). This is a powerful way to inspect the program being
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debugged; it is even possible to change variables. When an exception
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occurs in such a statement, the exception name is printed but the
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debugger's state is not changed.
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The debugger is not directly programmable; but it is implemented as a
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class from which you can derive your own debugger class, so you can
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make as fancy as you like.
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Debugger commands
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=================
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h(elp)
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Without argument, print the list of available commands.
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With a command name as argument, print help about that command
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(this is currently not implemented).
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w(here)
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Print a stack trace, with the most recent frame at the bottom.
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An arrow indicates the "current frame", which determines the
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context of most commands.
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d(own)
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Move the current frame one level down in the stack trace
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(to an older frame).
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u(p)
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Move the current frame one level up in the stack trace
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(to a newer frame).
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b(reak) [lineno | function]
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With a line number argument, set a break there in the current
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file. With a function name, set a break at the entry of that
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function. Without argument, list all breaks.
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cl(ear) [lineno]
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With a line number argument, clear that break in the current file.
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Without argument, clear all breaks (but first ask confirmation).
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s(tep)
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Execute the current line, stop at the first possible occasion
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(either in a function that is called or in the current function).
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n(ext)
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Continue execution until the next line in the current function
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is reached or it returns.
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r(eturn)
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Continue execution until the current function returns.
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c(ont(inue))
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Continue execution, only stop when a breakpoint is encountered.
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l(ist) [first [,last]]
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List source code for the current file.
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Without arguments, list 11 lines around the current line
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or continue the previous listing.
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With one argument, list 11 lines starting at that line.
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With two arguments, list the given range;
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if the second argument is less than the first, it is a count.
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a(rgs)
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Print the argument list of the current function.
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p expression
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Print the value of the expression.
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(!) statement
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Execute the (one-line) statement in the context of
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the current stack frame.
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The exclamation point can be omitted unless the first word
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of the statement resembles a debugger command.
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To assign to a global variable you must always prefix the
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command with a 'global' command, e.g.:
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(Pdb) global list_options; list_options = ['-l']
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(Pdb)
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q(uit)
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Quit from the debugger.
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The program being executed is aborted.
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How it works
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============
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Some changes were made to the interpreter:
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- sys.settrace(func) sets the global trace function
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- there can also a local trace function (see later)
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Trace functions have three arguments: (frame, event, arg)
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- frame is the current stack frame
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- event is a string: 'call', 'line', 'return' or 'exception'
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- arg is dependent on the event type
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A trace function should return a new trace function or None.
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Class methods are accepted (and most useful!) as trace methods.
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The events have the following meaning:
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'call': A function is called (or some other code block entered).
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The global trace function is called;
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arg is the argument list to the function;
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the return value specifies the local trace function.
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'line': The interpreter is about to execute a new line of code
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(sometimes multiple line events on one line exist).
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The local trace function is called; arg in None;
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the return value specifies the new local trace function.
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'return': A function (or other code block) is about to return.
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The local trace function is called;
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arg is the value that will be returned.
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The trace function's return value is ignored.
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'exception': An exception has occurred.
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The local trace function is called;
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arg is a triple (exception, value, traceback);
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the return value specifies the new local trace function
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Note that as an exception is propagated down the chain of callers, an
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'exception' event is generated at each level.
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Stack frame objects have the following read-only attributes:
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f_code: the code object being executed
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f_lineno: the current line number (-1 for 'call' events)
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f_back: the stack frame of the caller, or None
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f_locals: dictionary containing local name bindings
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f_globals: dictionary containing global name bindings
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Code objects have the following read-only attributes:
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co_code: the code string
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co_names: the list of names used by the code
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co_consts: the list of (literal) constants used by the code
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co_filename: the filename from which the code was compiled
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