import fnmatch
import sys
import threading
import os
import weakref
from contextlib import contextmanager
from inspect import CO_GENERATOR, CO_COROUTINE, CO_ASYNC_GENERATOR
__all__ = ["BdbQuit", "Bdb", "Breakpoint"]
GENERATOR_AND_COROUTINE_FLAGS = CO_GENERATOR | CO_COROUTINE | CO_ASYNC_GENERATOR
class BdbQuit(Exception):
E = sys.monitoring.events
class _MonitoringTracer:
EVENT_CALLBACK_MAP = {
E.PY_START: 'call',
E.PY_RESUME: 'call',
E.PY_THROW: 'call',
E.LINE: 'line',
E.JUMP: 'jump',
E.PY_RETURN: 'return',
E.PY_YIELD: 'return',
E.PY_UNWIND: 'unwind',
E.RAISE: 'exception',
E.STOP_ITERATION: 'exception',
E.INSTRUCTION: 'opcode',
}
GLOBAL_EVENTS = E.PY_START | E.PY_RESUME | E.PY_THROW | E.PY_UNWIND | E.RAISE
LOCAL_EVENTS = E.LINE | E.JUMP | E.PY_RETURN | E.PY_YIELD | E.STOP_ITERATION
def __init__(self):
self._tool_id = sys.monitoring.DEBUGGER_ID
self._name = 'bdbtracer'
self._tracefunc = None
self._disable_current_event = False
self._tracing_thread = None
self._enabled = False
def start_trace(self, tracefunc):
self._tracefunc = tracefunc
self._tracing_thread = threading.current_thread()
curr_tool = sys.monitoring.get_tool(self._tool_id)
if curr_tool is None:
sys.monitoring.use_tool_id(self._tool_id, self._name)
elif curr_tool == self._name:
sys.monitoring.clear_tool_id(self._tool_id)
else:
raise ValueError('Another debugger is using the monitoring tool')
E = sys.monitoring.events
all_events = 0
for event, cb_name in self.EVENT_CALLBACK_MAP.items():
callback = self.callback_wrapper(getattr(self, f'{cb_name}_callback'), event)
sys.monitoring.register_callback(self._tool_id, event, callback)
if event != E.INSTRUCTION:
all_events |= event
self.update_local_events()
sys.monitoring.set_events(self._tool_id, self.GLOBAL_EVENTS)
self._enabled = True
def stop_trace(self):
self._enabled = False
self._tracing_thread = None
curr_tool = sys.monitoring.get_tool(self._tool_id)
if curr_tool != self._name:
return
sys.monitoring.clear_tool_id(self._tool_id)
sys.monitoring.free_tool_id(self._tool_id)
def disable_current_event(self):
self._disable_current_event = True
def restart_events(self):
if sys.monitoring.get_tool(self._tool_id) == self._name:
sys.monitoring.restart_events()
def callback_wrapper(self, func, event):
import functools
@functools.wraps(func)
def wrapper(*args):
if self._tracing_thread != threading.current_thread():
return
try:
frame = sys._getframe().f_back
ret = func(frame, *args)
if self._enabled and frame.f_trace:
self.update_local_events()
if (
self._disable_current_event
and event not in (E.PY_THROW, E.PY_UNWIND, E.RAISE)
):
return sys.monitoring.DISABLE
else:
return ret
except BaseException:
self.stop_trace()
sys._getframe().f_back.f_trace = None
raise
finally:
self._disable_current_event = False
return wrapper
def call_callback(self, frame, code, *args):
local_tracefunc = self._tracefunc(frame, 'call', None)
if local_tracefunc is not None:
frame.f_trace = local_tracefunc
if self._enabled:
sys.monitoring.set_local_events(self._tool_id, code, self.LOCAL_EVENTS)
def return_callback(self, frame, code, offset, retval):
if frame.f_trace:
frame.f_trace(frame, 'return', retval)
def unwind_callback(self, frame, code, *args):
if frame.f_trace:
frame.f_trace(frame, 'return', None)
def line_callback(self, frame, code, *args):
if frame.f_trace and frame.f_trace_lines:
frame.f_trace(frame, 'line', None)
def jump_callback(self, frame, code, inst_offset, dest_offset):
if dest_offset > inst_offset:
return sys.monitoring.DISABLE
inst_lineno = self._get_lineno(code, inst_offset)
dest_lineno = self._get_lineno(code, dest_offset)
if inst_lineno != dest_lineno:
return sys.monitoring.DISABLE
if frame.f_trace and frame.f_trace_lines:
frame.f_trace(frame, 'line', None)
def exception_callback(self, frame, code, offset, exc):
if frame.f_trace:
if exc.__traceback__ and hasattr(exc.__traceback__, 'tb_frame'):
tb = exc.__traceback__
while tb:
if tb.tb_frame.f_locals.get('self') is self:
return
tb = tb.tb_next
frame.f_trace(frame, 'exception', (type(exc), exc, exc.__traceback__))
def opcode_callback(self, frame, code, offset):
if frame.f_trace and frame.f_trace_opcodes:
frame.f_trace(frame, 'opcode', None)
def update_local_events(self, frame=None):
if sys.monitoring.get_tool(self._tool_id) != self._name:
return
if frame is None:
frame = sys._getframe().f_back
while frame is not None:
if frame.f_trace is not None:
if frame.f_trace_opcodes:
events = self.LOCAL_EVENTS | E.INSTRUCTION
else:
events = self.LOCAL_EVENTS
sys.monitoring.set_local_events(self._tool_id, frame.f_code, events)
frame = frame.f_back
def _get_lineno(self, code, offset):
import dis
last_lineno = None
for start, lineno in dis.findlinestarts(code):
if offset < start:
return last_lineno
last_lineno = lineno
return last_lineno
class Bdb:
def __init__(self, skip=None, backend='settrace'):
self.skip = set(skip) if skip else None
self.breaks = {}
self.fncache = {}
self.frame_trace_lines_opcodes = {}
self.frame_returning = None
self.trace_opcodes = False
self.enterframe = None
self.cmdframe = None
self.cmdlineno = None
self.code_linenos = weakref.WeakKeyDictionary()
self.backend = backend
if backend == 'monitoring':
self.monitoring_tracer = _MonitoringTracer()
elif backend == 'settrace':
self.monitoring_tracer = None
else:
raise ValueError(f"Invalid backend '{backend}'")
self._load_breaks()
def canonic(self, filename):
if filename == "<" + filename[1:-1] + ">":
return filename
canonic = self.fncache.get(filename)
if not canonic:
canonic = os.path.abspath(filename)
canonic = os.path.normcase(canonic)
self.fncache[filename] = canonic
return canonic
def start_trace(self):
if self.monitoring_tracer:
self.monitoring_tracer.start_trace(self.trace_dispatch)
else:
sys.settrace(self.trace_dispatch)
def stop_trace(self):
if self.monitoring_tracer:
self.monitoring_tracer.stop_trace()
else:
sys.settrace(None)
def reset(self):
import linecache
linecache.checkcache()
self.botframe = None
self._set_stopinfo(None, None)
@contextmanager
def set_enterframe(self, frame):
self.enterframe = frame
yield
self.enterframe = None
def trace_dispatch(self, frame, event, arg):
with self.set_enterframe(frame):
if self.quitting:
return if event == 'line':
return self.dispatch_line(frame)
if event == 'call':
return self.dispatch_call(frame, arg)
if event == 'return':
return self.dispatch_return(frame, arg)
if event == 'exception':
return self.dispatch_exception(frame, arg)
if event == 'c_call':
return self.trace_dispatch
if event == 'c_exception':
return self.trace_dispatch
if event == 'c_return':
return self.trace_dispatch
if event == 'opcode':
return self.dispatch_opcode(frame, arg)
print('bdb.Bdb.dispatch: unknown debugging event:', repr(event))
return self.trace_dispatch
def dispatch_line(self, frame):
if (self.stop_here(frame) or self.break_here(frame)) and not (
self.cmdframe == frame and self.cmdlineno == frame.f_lineno
):
self.user_line(frame)
self.restart_events()
if self.quitting: raise BdbQuit
elif not self.get_break(frame.f_code.co_filename, frame.f_lineno):
self.disable_current_event()
return self.trace_dispatch
def dispatch_call(self, frame, arg):
if self.botframe is None:
self.botframe = frame.f_back return self.trace_dispatch
if not (self.stop_here(frame) or self.break_anywhere(frame)):
self.disable_current_event()
return if self.stopframe and frame.f_code.co_flags & GENERATOR_AND_COROUTINE_FLAGS:
return self.trace_dispatch
self.user_call(frame, arg)
self.restart_events()
if self.quitting: raise BdbQuit
return self.trace_dispatch
def dispatch_return(self, frame, arg):
if self.stop_here(frame) or frame == self.returnframe:
if self.stopframe and frame.f_code.co_flags & GENERATOR_AND_COROUTINE_FLAGS:
self._set_caller_tracefunc(frame)
return self.trace_dispatch
try:
self.frame_returning = frame
self.user_return(frame, arg)
self.restart_events()
finally:
self.frame_returning = None
if self.quitting: raise BdbQuit
if self.stopframe is frame and self.stoplineno != -1:
self._set_stopinfo(None, None)
if self.stoplineno != -1:
self._set_caller_tracefunc(frame)
return self.trace_dispatch
def dispatch_exception(self, frame, arg):
if self.stop_here(frame):
if not (frame.f_code.co_flags & GENERATOR_AND_COROUTINE_FLAGS
and arg[0] is StopIteration and arg[2] is None):
self.user_exception(frame, arg)
self.restart_events()
if self.quitting: raise BdbQuit
elif (self.stopframe and frame is not self.stopframe
and self.stopframe.f_code.co_flags & GENERATOR_AND_COROUTINE_FLAGS
and arg[0] in (StopIteration, GeneratorExit)):
self.user_exception(frame, arg)
self.restart_events()
if self.quitting: raise BdbQuit
return self.trace_dispatch
def dispatch_opcode(self, frame, arg):
self.user_opcode(frame)
self.restart_events()
if self.quitting: raise BdbQuit
return self.trace_dispatch
def is_skipped_module(self, module_name):
"Return True if module_name matches any skip pattern."
if module_name is None: return False
for pattern in self.skip:
if fnmatch.fnmatch(module_name, pattern):
return True
return False
def stop_here(self, frame):
"Return True if frame is below the starting frame in the stack."
if self.skip and \
self.is_skipped_module(frame.f_globals.get('__name__')):
return False
if frame is self.stopframe:
if self.stoplineno == -1:
return False
return frame.f_lineno >= self.stoplineno
if not self.stopframe:
return True
return False
def break_here(self, frame):
filename = self.canonic(frame.f_code.co_filename)
if filename not in self.breaks:
return False
lineno = frame.f_lineno
if lineno not in self.breaks[filename]:
lineno = frame.f_code.co_firstlineno
if lineno not in self.breaks[filename]:
return False
(bp, flag) = effective(filename, lineno, frame)
if bp:
self.currentbp = bp.number
if (flag and bp.temporary):
self.do_clear(str(bp.number))
return True
else:
return False
def do_clear(self, arg):
raise NotImplementedError("subclass of bdb must implement do_clear()")
def break_anywhere(self, frame):
filename = self.canonic(frame.f_code.co_filename)
if filename not in self.breaks:
return False
for lineno in self.breaks[filename]:
if self._lineno_in_frame(lineno, frame):
return True
return False
def _lineno_in_frame(self, lineno, frame):
code = frame.f_code
if lineno < code.co_firstlineno:
return False
if code not in self.code_linenos:
self.code_linenos[code] = set(lineno for _, _, lineno in code.co_lines())
return lineno in self.code_linenos[code]
def user_call(self, frame, argument_list):
pass
def user_line(self, frame):
pass
def user_return(self, frame, return_value):
pass
def user_exception(self, frame, exc_info):
pass
def user_opcode(self, frame):
pass
def _set_trace_opcodes(self, trace_opcodes):
if trace_opcodes != self.trace_opcodes:
self.trace_opcodes = trace_opcodes
frame = self.enterframe
while frame is not None:
frame.f_trace_opcodes = trace_opcodes
if frame is self.botframe:
break
frame = frame.f_back
if self.monitoring_tracer:
self.monitoring_tracer.update_local_events()
def _set_stopinfo(self, stopframe, returnframe, stoplineno=0, opcode=False,
cmdframe=None, cmdlineno=None):
self.stopframe = stopframe
self.returnframe = returnframe
self.quitting = False
self.stoplineno = stoplineno
self.cmdframe = cmdframe
self.cmdlineno = cmdlineno
self._set_trace_opcodes(opcode)
def _set_caller_tracefunc(self, current_frame):
caller_frame = current_frame.f_back
if caller_frame and not caller_frame.f_trace and caller_frame is not self.botframe:
caller_frame.f_trace = self.trace_dispatch
def set_until(self, frame, lineno=None):
if lineno is None:
lineno = frame.f_lineno + 1
self._set_stopinfo(frame, frame, lineno)
def set_step(self):
self._set_stopinfo(None, None, cmdframe=self.enterframe,
cmdlineno=getattr(self.enterframe, 'f_lineno', None))
def set_stepinstr(self):
self._set_stopinfo(None, None, opcode=True)
def set_next(self, frame):
self._set_stopinfo(frame, None, cmdframe=frame, cmdlineno=frame.f_lineno)
def set_return(self, frame):
if frame.f_code.co_flags & GENERATOR_AND_COROUTINE_FLAGS:
self._set_stopinfo(frame, frame, -1)
else:
self._set_stopinfo(frame.f_back, frame)
def set_trace(self, frame=None):
self.stop_trace()
if frame is None:
frame = sys._getframe().f_back
self.reset()
with self.set_enterframe(frame):
while frame:
frame.f_trace = self.trace_dispatch
self.botframe = frame
self.frame_trace_lines_opcodes[frame] = (frame.f_trace_lines, frame.f_trace_opcodes)
frame.f_trace_lines = True
frame = frame.f_back
self.set_stepinstr()
self.enterframe = None
self.start_trace()
def set_continue(self):
self._set_stopinfo(self.botframe, None, -1)
if not self.breaks:
self.stop_trace()
frame = sys._getframe().f_back
while frame and frame is not self.botframe:
del frame.f_trace
frame = frame.f_back
for frame, (trace_lines, trace_opcodes) in self.frame_trace_lines_opcodes.items():
frame.f_trace_lines, frame.f_trace_opcodes = trace_lines, trace_opcodes
if self.backend == 'monitoring':
self.monitoring_tracer.update_local_events()
self.frame_trace_lines_opcodes = {}
def set_quit(self):
self.stopframe = self.botframe
self.returnframe = None
self.quitting = True
self.stop_trace()
def _add_to_breaks(self, filename, lineno):
bp_linenos = self.breaks.setdefault(filename, [])
if lineno not in bp_linenos:
bp_linenos.append(lineno)
def set_break(self, filename, lineno, temporary=False, cond=None,
funcname=None):
filename = self.canonic(filename)
import linecache line = linecache.getline(filename, lineno)
if not line:
return 'Line %s:%d does not exist' % (filename, lineno)
self._add_to_breaks(filename, lineno)
bp = Breakpoint(filename, lineno, temporary, cond, funcname)
frame = self.enterframe
while frame:
if self.break_anywhere(frame):
frame.f_trace = self.trace_dispatch
frame = frame.f_back
return None
def _load_breaks(self):
for (filename, lineno) in Breakpoint.bplist.keys():
self._add_to_breaks(filename, lineno)
def _prune_breaks(self, filename, lineno):
if (filename, lineno) not in Breakpoint.bplist:
self.breaks[filename].remove(lineno)
if not self.breaks[filename]:
del self.breaks[filename]
def clear_break(self, filename, lineno):
filename = self.canonic(filename)
if filename not in self.breaks:
return 'There are no breakpoints in %s' % filename
if lineno not in self.breaks[filename]:
return 'There is no breakpoint at %s:%d' % (filename, lineno)
for bp in Breakpoint.bplist[filename, lineno][:]:
bp.deleteMe()
self._prune_breaks(filename, lineno)
return None
def clear_bpbynumber(self, arg):
try:
bp = self.get_bpbynumber(arg)
except ValueError as err:
return str(err)
bp.deleteMe()
self._prune_breaks(bp.file, bp.line)
return None
def clear_all_file_breaks(self, filename):
filename = self.canonic(filename)
if filename not in self.breaks:
return 'There are no breakpoints in %s' % filename
for line in self.breaks[filename]:
blist = Breakpoint.bplist[filename, line]
for bp in blist:
bp.deleteMe()
del self.breaks[filename]
return None
def clear_all_breaks(self):
if not self.breaks:
return 'There are no breakpoints'
for bp in Breakpoint.bpbynumber:
if bp:
bp.deleteMe()
self.breaks = {}
return None
def get_bpbynumber(self, arg):
if not arg:
raise ValueError('Breakpoint number expected')
try:
number = int(arg)
except ValueError:
raise ValueError('Non-numeric breakpoint number %s' % arg) from None
try:
bp = Breakpoint.bpbynumber[number]
except IndexError:
raise ValueError('Breakpoint number %d out of range' % number) from None
if bp is None:
raise ValueError('Breakpoint %d already deleted' % number)
return bp
def get_break(self, filename, lineno):
filename = self.canonic(filename)
return filename in self.breaks and \
lineno in self.breaks[filename]
def get_breaks(self, filename, lineno):
filename = self.canonic(filename)
return filename in self.breaks and \
lineno in self.breaks[filename] and \
Breakpoint.bplist[filename, lineno] or []
def get_file_breaks(self, filename):
filename = self.canonic(filename)
if filename in self.breaks:
return self.breaks[filename]
else:
return []
def get_all_breaks(self):
return self.breaks
def get_stack(self, f, t):
stack = []
if t and t.tb_frame is f:
t = t.tb_next
while f is not None:
stack.append((f, f.f_lineno))
if f is self.botframe:
break
f = f.f_back
stack.reverse()
i = max(0, len(stack) - 1)
while t is not None:
stack.append((t.tb_frame, t.tb_lineno))
t = t.tb_next
if f is None:
i = max(0, len(stack) - 1)
return stack, i
def format_stack_entry(self, frame_lineno, lprefix=': '):
import linecache, reprlib
frame, lineno = frame_lineno
filename = self.canonic(frame.f_code.co_filename)
s = '%s(%r)' % (filename, lineno)
if frame.f_code.co_name:
s += frame.f_code.co_name
else:
s += "<lambda>"
s += '()'
if '__return__' in frame.f_locals:
rv = frame.f_locals['__return__']
s += '->'
s += reprlib.repr(rv)
if lineno is not None:
line = linecache.getline(filename, lineno, frame.f_globals)
if line:
s += lprefix + line.strip()
else:
s += f'{lprefix}Warning: lineno is None'
return s
def disable_current_event(self):
if self.backend == 'monitoring':
self.monitoring_tracer.disable_current_event()
def restart_events(self):
if self.backend == 'monitoring':
self.monitoring_tracer.restart_events()
def run(self, cmd, globals=None, locals=None):
if globals is None:
import __main__
globals = __main__.__dict__
if locals is None:
locals = globals
self.reset()
if isinstance(cmd, str):
cmd = compile(cmd, "<string>", "exec")
self.start_trace()
try:
exec(cmd, globals, locals)
except BdbQuit:
pass
finally:
self.quitting = True
self.stop_trace()
def runeval(self, expr, globals=None, locals=None):
if globals is None:
import __main__
globals = __main__.__dict__
if locals is None:
locals = globals
self.reset()
self.start_trace()
try:
return eval(expr, globals, locals)
except BdbQuit:
pass
finally:
self.quitting = True
self.stop_trace()
def runctx(self, cmd, globals, locals):
self.run(cmd, globals, locals)
def runcall(self, func, /, *args, **kwds):
self.reset()
self.start_trace()
res = None
try:
res = func(*args, **kwds)
except BdbQuit:
pass
finally:
self.quitting = True
self.stop_trace()
return res
def set_trace():
Bdb().set_trace()
class Breakpoint:
next = 1 bplist = {} bpbynumber = [None]
def __init__(self, file, line, temporary=False, cond=None, funcname=None):
self.funcname = funcname
self.func_first_executable_line = None
self.file = file self.line = line
self.temporary = temporary
self.cond = cond
self.enabled = True
self.ignore = 0
self.hits = 0
self.number = Breakpoint.next
Breakpoint.next += 1
self.bpbynumber.append(self)
if (file, line) in self.bplist:
self.bplist[file, line].append(self)
else:
self.bplist[file, line] = [self]
@staticmethod
def clearBreakpoints():
Breakpoint.next = 1
Breakpoint.bplist = {}
Breakpoint.bpbynumber = [None]
def deleteMe(self):
index = (self.file, self.line)
self.bpbynumber[self.number] = None self.bplist[index].remove(self)
if not self.bplist[index]:
del self.bplist[index]
def enable(self):
self.enabled = True
def disable(self):
self.enabled = False
def bpprint(self, out=None):
if out is None:
out = sys.stdout
print(self.bpformat(), file=out)
def bpformat(self):
if self.temporary:
disp = 'del '
else:
disp = 'keep '
if self.enabled:
disp = disp + 'yes '
else:
disp = disp + 'no '
ret = '%-4dbreakpoint %s at %s:%d' % (self.number, disp,
self.file, self.line)
if self.cond:
ret += '\n\tstop only if %s' % (self.cond,)
if self.ignore:
ret += '\n\tignore next %d hits' % (self.ignore,)
if self.hits:
if self.hits > 1:
ss = 's'
else:
ss = ''
ret += '\n\tbreakpoint already hit %d time%s' % (self.hits, ss)
return ret
def __str__(self):
"Return a condensed description of the breakpoint."
return 'breakpoint %s at %s:%s' % (self.number, self.file, self.line)
def checkfuncname(b, frame):
if not b.funcname:
if b.line != frame.f_lineno:
return False
return True
if frame.f_code.co_name != b.funcname:
return False
if not b.func_first_executable_line:
b.func_first_executable_line = frame.f_lineno
if b.func_first_executable_line != frame.f_lineno:
return False
return True
def effective(file, line, frame):
possibles = Breakpoint.bplist[file, line]
for b in possibles:
if not b.enabled:
continue
if not checkfuncname(b, frame):
continue
b.hits += 1
if not b.cond:
if b.ignore > 0:
b.ignore -= 1
continue
else:
return (b, True)
else:
try:
val = eval(b.cond, frame.f_globals, frame.f_locals)
if val:
if b.ignore > 0:
b.ignore -= 1
else:
return (b, True)
except:
return (b, False)
return (None, None)
class Tdb(Bdb):
def user_call(self, frame, args):
name = frame.f_code.co_name
if not name: name = '???'
print('+++ call', name, args)
def user_line(self, frame):
import linecache
name = frame.f_code.co_name
if not name: name = '???'
fn = self.canonic(frame.f_code.co_filename)
line = linecache.getline(fn, frame.f_lineno, frame.f_globals)
print('+++', fn, frame.f_lineno, name, ':', line.strip())
def user_return(self, frame, retval):
print('+++ return', retval)
def user_exception(self, frame, exc_stuff):
print('+++ exception', exc_stuff)
self.set_continue()
def foo(n):
print('foo(', n, ')')
x = bar(n*10)
print('bar returned', x)
def bar(a):
print('bar(', a, ')')
return a/2
def test():
t = Tdb()
t.run('import bdb; bdb.foo(10)')