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342 lines
12 KiB
342 lines
12 KiB
# |
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# Copyright (C) 2015 The Android Open Source Project |
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# |
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# Licensed under the Apache License, Version 2.0 (the "License"); |
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# you may not use this file except in compliance with the License. |
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# You may obtain a copy of the License at |
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# |
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# http://www.apache.org/licenses/LICENSE-2.0 |
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# |
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# Unless required by applicable law or agreed to in writing, software |
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# distributed under the License is distributed on an "AS IS" BASIS, |
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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# See the License for the specific language governing permissions and |
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# limitations under the License. |
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# |
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"""Helpers used by both gdbclient.py and ndk-gdb.py.""" |
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import adb |
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import argparse |
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import atexit |
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import os |
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import subprocess |
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import sys |
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import tempfile |
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class ArgumentParser(argparse.ArgumentParser): |
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"""ArgumentParser subclass that provides adb device selection.""" |
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def __init__(self): |
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super(ArgumentParser, self).__init__() |
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self.add_argument( |
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"--adb", dest="adb_path", |
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help="use specific adb command") |
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group = self.add_argument_group(title="device selection") |
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group = group.add_mutually_exclusive_group() |
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group.add_argument( |
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"-a", action="store_const", dest="device", const="-a", |
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help="directs commands to all interfaces") |
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group.add_argument( |
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"-d", action="store_const", dest="device", const="-d", |
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help="directs commands to the only connected USB device") |
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group.add_argument( |
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"-e", action="store_const", dest="device", const="-e", |
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help="directs commands to the only connected emulator") |
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group.add_argument( |
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"-s", metavar="SERIAL", action="store", dest="serial", |
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help="directs commands to device/emulator with the given serial") |
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def parse_args(self, args=None, namespace=None): |
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result = super(ArgumentParser, self).parse_args(args, namespace) |
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adb_path = result.adb_path or "adb" |
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# Try to run the specified adb command |
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try: |
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subprocess.check_output([adb_path, "version"], |
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stderr=subprocess.STDOUT) |
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except (OSError, subprocess.CalledProcessError): |
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msg = "ERROR: Unable to run adb executable (tried '{}')." |
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if not result.adb_path: |
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msg += "\n Try specifying its location with --adb." |
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sys.exit(msg.format(adb_path)) |
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try: |
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if result.device == "-a": |
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result.device = adb.get_device(adb_path=adb_path) |
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elif result.device == "-d": |
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result.device = adb.get_usb_device(adb_path=adb_path) |
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elif result.device == "-e": |
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result.device = adb.get_emulator_device(adb_path=adb_path) |
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else: |
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result.device = adb.get_device(result.serial, adb_path=adb_path) |
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except (adb.DeviceNotFoundError, adb.NoUniqueDeviceError, RuntimeError): |
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# Don't error out if we can't find a device. |
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result.device = None |
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return result |
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def get_processes(device): |
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"""Return a dict from process name to list of running PIDs on the device.""" |
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# Some custom ROMs use busybox instead of toolbox for ps. Without -w, |
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# busybox truncates the output, and very long package names like |
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# com.exampleisverylongtoolongbyfar.plasma exceed the limit. |
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# |
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# Perform the check for this on the device to avoid an adb roundtrip |
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# Some devices might not have readlink or which, so we need to handle |
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# this as well. |
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# |
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# Gracefully handle [ or readlink being missing by always using `ps` if |
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# readlink is missing. (API 18 has [, but not readlink). |
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ps_script = """ |
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if $(ls /system/bin/readlink >/dev/null 2>&1); then |
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if [ $(readlink /system/bin/ps) == "toolbox" ]; then |
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ps; |
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else |
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ps -w; |
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fi |
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else |
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ps; |
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fi |
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""" |
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ps_script = " ".join([line.strip() for line in ps_script.splitlines()]) |
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output, _ = device.shell([ps_script]) |
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return parse_ps_output(output) |
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def parse_ps_output(output): |
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processes = dict() |
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output = adb.split_lines(output.replace("\r", "")) |
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columns = output.pop(0).split() |
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try: |
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pid_column = columns.index("PID") |
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except ValueError: |
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pid_column = 1 |
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while output: |
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columns = output.pop().split() |
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process_name = columns[-1] |
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pid = int(columns[pid_column]) |
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if process_name in processes: |
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processes[process_name].append(pid) |
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else: |
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processes[process_name] = [pid] |
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return processes |
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def get_pids(device, process_name): |
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processes = get_processes(device) |
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return processes.get(process_name, []) |
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def start_gdbserver(device, gdbserver_local_path, gdbserver_remote_path, |
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target_pid, run_cmd, debug_socket, port, run_as_cmd=None): |
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"""Start gdbserver in the background and forward necessary ports. |
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Args: |
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device: ADB device to start gdbserver on. |
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gdbserver_local_path: Host path to push gdbserver from, can be None. |
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gdbserver_remote_path: Device path to push gdbserver to. |
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target_pid: PID of device process to attach to. |
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run_cmd: Command to run on the device. |
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debug_socket: Device path to place gdbserver unix domain socket. |
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port: Host port to forward the debug_socket to. |
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run_as_cmd: run-as or su command to prepend to commands. |
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Returns: |
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Popen handle to the `adb shell` process gdbserver was started with. |
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""" |
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assert target_pid is None or run_cmd is None |
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# Push gdbserver to the target. |
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if gdbserver_local_path is not None: |
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device.push(gdbserver_local_path, gdbserver_remote_path) |
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# Run gdbserver. |
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gdbserver_cmd = [gdbserver_remote_path, "--once", |
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"+{}".format(debug_socket)] |
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if target_pid is not None: |
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gdbserver_cmd += ["--attach", str(target_pid)] |
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else: |
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gdbserver_cmd += run_cmd |
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forward_gdbserver_port(device, local=port, remote="localfilesystem:{}".format(debug_socket)) |
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if run_as_cmd: |
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gdbserver_cmd = run_as_cmd + gdbserver_cmd |
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gdbserver_output_path = os.path.join(tempfile.gettempdir(), |
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"gdbclient.log") |
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print("Redirecting gdbserver output to {}".format(gdbserver_output_path)) |
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gdbserver_output = file(gdbserver_output_path, 'w') |
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return device.shell_popen(gdbserver_cmd, stdout=gdbserver_output, |
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stderr=gdbserver_output) |
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def forward_gdbserver_port(device, local, remote): |
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"""Forwards local TCP port `port` to `remote` via `adb forward`.""" |
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device.forward("tcp:{}".format(local), remote) |
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atexit.register(lambda: device.forward_remove("tcp:{}".format(local))) |
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def find_file(device, executable_path, sysroot, run_as_cmd=None): |
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"""Finds a device executable file. |
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This function first attempts to find the local file which will |
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contain debug symbols. If that fails, it will fall back to |
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downloading the stripped file from the device. |
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Args: |
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device: the AndroidDevice object to use. |
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executable_path: absolute path to the executable or symlink. |
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sysroot: absolute path to the built symbol sysroot. |
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run_as_cmd: if necessary, run-as or su command to prepend |
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Returns: |
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A tuple containing (<open file object>, <was found locally>). |
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Raises: |
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RuntimeError: could not find the executable binary. |
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ValueError: |executable_path| is not absolute. |
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""" |
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if not os.path.isabs(executable_path): |
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raise ValueError("'{}' is not an absolute path".format(executable_path)) |
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def generate_files(): |
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"""Yields (<file name>, <found locally>) tuples.""" |
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# First look locally to avoid shelling into the device if possible. |
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# os.path.join() doesn't combine absolute paths, use + instead. |
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yield (sysroot + executable_path, True) |
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# Next check if the path is a symlink. |
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try: |
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target = device.shell(['readlink', '-e', '-n', executable_path])[0] |
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yield (sysroot + target, True) |
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except adb.ShellError: |
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pass |
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# Last, download the stripped executable from the device if necessary. |
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file_name = "gdbclient-binary-{}".format(os.getppid()) |
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remote_temp_path = "/data/local/tmp/{}".format(file_name) |
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local_path = os.path.join(tempfile.gettempdir(), file_name) |
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cmd = ["cat", executable_path, ">", remote_temp_path] |
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if run_as_cmd: |
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cmd = run_as_cmd + cmd |
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try: |
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device.shell(cmd) |
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except adb.ShellError: |
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raise RuntimeError("Failed to copy '{}' to temporary folder on " |
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"device".format(executable_path)) |
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device.pull(remote_temp_path, local_path) |
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yield (local_path, False) |
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for path, found_locally in generate_files(): |
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if os.path.isfile(path): |
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return (open(path, "r"), found_locally) |
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raise RuntimeError('Could not find executable {}'.format(executable_path)) |
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def find_executable_path(device, executable_name, run_as_cmd=None): |
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"""Find a device executable from its name |
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This function calls which on the device to retrieve the absolute path of |
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the executable. |
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Args: |
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device: the AndroidDevice object to use. |
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executable_name: the name of the executable to find. |
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run_as_cmd: if necessary, run-as or su command to prepend |
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Returns: |
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The absolute path of the executable. |
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Raises: |
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RuntimeError: could not find the executable. |
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""" |
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cmd = ["which", executable_name] |
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if run_as_cmd: |
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cmd = run_as_cmd + cmd |
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try: |
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output, _ = device.shell(cmd) |
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return output |
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except adb.ShellError: |
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raise RuntimeError("Could not find executable '{}' on " |
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"device".format(executable_name)) |
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def find_binary(device, pid, sysroot, run_as_cmd=None): |
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"""Finds a device executable file corresponding to |pid|.""" |
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return find_file(device, "/proc/{}/exe".format(pid), sysroot, run_as_cmd) |
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def get_binary_arch(binary_file): |
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"""Parse a binary's ELF header for arch.""" |
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try: |
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binary_file.seek(0) |
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binary = binary_file.read(0x14) |
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except IOError: |
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raise RuntimeError("failed to read binary file") |
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ei_class = ord(binary[0x4]) # 1 = 32-bit, 2 = 64-bit |
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ei_data = ord(binary[0x5]) # Endianness |
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assert ei_class == 1 or ei_class == 2 |
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if ei_data != 1: |
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raise RuntimeError("binary isn't little-endian?") |
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e_machine = ord(binary[0x13]) << 8 | ord(binary[0x12]) |
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if e_machine == 0x28: |
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assert ei_class == 1 |
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return "arm" |
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elif e_machine == 0xB7: |
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assert ei_class == 2 |
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return "arm64" |
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elif e_machine == 0x03: |
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assert ei_class == 1 |
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return "x86" |
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elif e_machine == 0x3E: |
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assert ei_class == 2 |
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return "x86_64" |
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elif e_machine == 0x08: |
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if ei_class == 1: |
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return "mips" |
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else: |
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return "mips64" |
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else: |
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raise RuntimeError("unknown architecture: 0x{:x}".format(e_machine)) |
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def start_gdb(gdb_path, gdb_commands, gdb_flags=None): |
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"""Start gdb in the background and block until it finishes. |
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Args: |
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gdb_path: Path of the gdb binary. |
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gdb_commands: Contents of GDB script to run. |
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gdb_flags: List of flags to append to gdb command. |
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""" |
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# Windows disallows opening the file while it's open for writing. |
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gdb_script_fd, gdb_script_path = tempfile.mkstemp() |
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os.write(gdb_script_fd, gdb_commands) |
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os.close(gdb_script_fd) |
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gdb_args = [gdb_path, "-x", gdb_script_path] + (gdb_flags or []) |
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kwargs = {} |
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if sys.platform.startswith("win"): |
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kwargs["creationflags"] = subprocess.CREATE_NEW_CONSOLE |
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gdb_process = subprocess.Popen(gdb_args, **kwargs) |
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while gdb_process.returncode is None: |
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try: |
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gdb_process.communicate() |
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except KeyboardInterrupt: |
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pass |
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os.unlink(gdb_script_path)
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