skills/xperia-firmware-upgrade/5g-policyman/efs2.py
James Coleman d31efd3352 Make efs2.py a CLI with ls/pull/push/backup
Replace the library-style main() with argparse subcommands: ls, stat,
pull, push (writes then verifies read-back), and backup (recursive
directory download). Drops the hardcoded scratchpad paths. Update the
SKILL.md notes to the new commands.

Claude-Session: https://claude.ai/code/session_01Ctisr9uXe4H8XsscZ2exGE
2026-08-27 16:32:59 -05:00

358 lines
12 KiB
Python

#!/usr/bin/env python3
"""Minimal Qualcomm DIAG EFS2 client over a serial diag port.
Command-line tool to list, pull, push and back up files in a rooted phone's
modem EFS. Packet layouts and opcodes replicate JohnBel/EfsTools exactly.
Originally written to back up and replace the policyman RF-band config on a
Sony Xperia 1 VI. Run with -h for usage.
"""
import sys, os, time, struct, glob, argparse, serial
DIAG_SUBSYS = 0x4B
SUBSYS_EFS = 19
# EFS opcodes (EfsTools QcdmEfsCommand)
HELLO, QUERY, OPEN, CLOSE, READ, WRITE = 0, 1, 2, 3, 4, 5
UNLINK, MKDIR, OPENDIR, READDIR, CLOSEDIR, STAT = 8, 9, 11, 12, 13, 15
# open flags
O_WRONLY, O_RDONLY, O_CREAT = 0o1, 0o0, 0o100
# CRC-16 CCITT reflected (HDLC FCS-16)
_TAB = []
for _i in range(256):
_c = _i
for _ in range(8):
_c = (_c >> 1) ^ 0x8408 if (_c & 1) else (_c >> 1)
_TAB.append(_c)
def fcs16(data):
fcs = 0xFFFF
for b in data:
fcs = (fcs >> 8) ^ _TAB[(fcs ^ b) & 0xFF]
return (~fcs) & 0xFFFF
def hdlc_encode(payload):
crc = fcs16(payload)
frame = bytes(payload) + struct.pack("<H", crc)
out = bytearray()
for b in frame:
if b == 0x7E: out += b"\x7d\x5e"
elif b == 0x7D: out += b"\x7d\x5d"
else: out.append(b)
out.append(0x7E)
return bytes(out)
def hdlc_decode(frame):
frame = frame.rstrip(b"\x7e")
out = bytearray(); esc = False
for b in frame:
if esc: out.append(b ^ 0x20); esc = False
elif b == 0x7D: esc = True
else: out.append(b)
return bytes(out)
def _responds_to_diag(port, timeout=1.0):
"""Return True if port answers a DIAG version request (cmd 0x00)."""
try:
s = serial.Serial(port, 115200, timeout=0.3)
except Exception:
return False
try:
s.reset_input_buffer()
s.write(hdlc_encode([0x00]))
buf, deadline = bytearray(), time.time() + timeout
while time.time() < deadline:
b = s.read(1)
if not b:
continue
if b[0] == 0x7E:
if buf:
dec = hdlc_decode(bytes(buf))
buf = bytearray()
if len(dec) >= 3 and dec[0] == 0x00 and \
fcs16(dec[:-2]) == struct.unpack("<H", dec[-2:])[0]:
return True
else:
buf.append(b[0])
return False
finally:
s.close()
def find_diag_port():
"""Find the DIAG serial port. DIAGPORT wins; otherwise probe candidates,
interface 0 (-if00-) first, and return the one that answers DIAG."""
env = os.environ.get("DIAGPORT")
if env:
return env
candidates = (sorted(glob.glob("/dev/serial/by-id/*-if00-port0")) +
sorted(glob.glob("/dev/serial/by-id/*")) +
sorted(glob.glob("/dev/ttyUSB*")))
seen = set()
for p in candidates:
real = os.path.realpath(p)
if real in seen:
continue
seen.add(real)
if _responds_to_diag(p):
return p
raise IOError("no responding DIAG port found; is the phone in diag mode "
"(setprop sys.usb.config diag,serial_cdev,rmnet,adb)?")
class Diag:
def __init__(self, port=None):
self.port = port or find_diag_port()
self.s = serial.Serial(self.port, 115200, timeout=0.4)
self.s.reset_input_buffer()
def _read_frame(self, timeout=4.0):
buf = bytearray(); deadline = time.time() + timeout
while time.time() < deadline:
b = self.s.read(1)
if not b:
continue
if b[0] == 0x7E:
if not buf:
continue # leading terminator
dec = hdlc_decode(bytes(buf))
buf = bytearray()
if len(dec) < 3:
continue
payload, crc = dec[:-2], struct.unpack("<H", dec[-2:])[0]
if fcs16(payload) != crc:
continue # corrupt / partial, keep reading
return payload
else:
buf.append(b[0])
raise TimeoutError("no diag frame")
def subsys(self, efs_cmd, body=b"", timeout=4.0):
"""Send an EFS2 subsystem command, return matching response payload."""
req = struct.pack("<BBH", DIAG_SUBSYS, SUBSYS_EFS, efs_cmd) + body
self.s.write(hdlc_encode(req))
deadline = time.time() + timeout
while time.time() < deadline:
p = self._read_frame(timeout=timeout)
if len(p) >= 4 and p[0] == DIAG_SUBSYS and p[1] == SUBSYS_EFS \
and struct.unpack("<H", p[2:4])[0] == efs_cmd:
return p
# otherwise async log/event frame -> ignore
raise TimeoutError("no matching response for efs cmd %d" % efs_cmd)
# ---- EFS operations ----
def hello(self):
win, wbyte, ver = 0x100000, 0x100000, 1
body = struct.pack("<IIIIIIiii", win, wbyte, win, wbyte, win, wbyte, ver, ver, ver)
body += b"\xff\xff\xff\xff"
p = self.subsys(HELLO, body)
return struct.unpack("<i", p[28:32])[0] # version
def stat(self, name):
p = self.subsys(STAT, name.encode() + b"\x00")
err = struct.unpack("<i", p[4:8])[0]
mode = struct.unpack("<i", p[8:12])[0]
size = struct.unpack("<i", p[12:16])[0]
return err, mode, size
def opendir(self, name):
p = self.subsys(OPENDIR, name.encode() + b"\x00")
d = struct.unpack("<i", p[4:8])[0]
err = struct.unpack("<i", p[8:12])[0]
return d, err
def readdir(self, d, seq):
p = self.subsys(READDIR, struct.pack("<ii", d, seq))
err = struct.unpack("<i", p[12:16])[0]
etype = struct.unpack("<i", p[16:20])[0]
size = struct.unpack("<i", p[24:28])[0]
name = p[40:].split(b"\x00", 1)[0].decode("ascii", "replace")
return err, etype, size, name
def closedir(self, d):
self.subsys(CLOSEDIR, struct.pack("<i", d))
def listdir(self, path):
d, err = self.opendir(path)
if err != 0 or d < 0:
raise IOError("opendir %s err=%d" % (path, err))
entries = []; seq = 1
while True:
err, etype, size, name = self.readdir(d, seq)
if err != 0 or not name:
break
entries.append((name, etype, size)); seq += 1
self.closedir(d)
return entries
def open(self, name, flags, perm):
body = struct.pack("<ii", flags, perm) + name.encode() + b"\x00"
p = self.subsys(OPEN, body)
fd = struct.unpack("<i", p[4:8])[0]
err = struct.unpack("<i", p[8:12])[0]
return fd, err
def close(self, fd):
self.subsys(CLOSE, struct.pack("<i", fd))
def read(self, fd, size, offset):
p = self.subsys(READ, struct.pack("<iII", fd, size, offset))
nread = struct.unpack("<i", p[12:16])[0]
err = struct.unpack("<i", p[16:20])[0]
return err, p[20:20 + nread]
def write(self, fd, offset, chunk):
body = struct.pack("<iI", fd, offset) + chunk
p = self.subsys(WRITE, body)
nwr = struct.unpack("<i", p[12:16])[0]
err = struct.unpack("<i", p[16:20])[0]
return err, nwr
def unlink(self, name):
p = self.subsys(UNLINK, name.encode() + b"\x00")
return struct.unpack("<i", p[4:8])[0]
def read_file(self, name):
err, mode, size = self.stat(name)
if err != 0:
raise IOError("stat %s err=%d" % (name, err))
fd, err = self.open(name, O_RDONLY, 0)
if err != 0 or fd < 0:
raise IOError("open(r) %s err=%d" % (name, err))
data = bytearray(); off = 0
while off < size:
err, chunk = self.read(fd, min(1024, size - off), off)
if err != 0:
self.close(fd); raise IOError("read %s err=%d" % (name, err))
if not chunk:
break
data += chunk; off += len(chunk)
self.close(fd)
return bytes(data)
def write_file(self, name, data):
# replicate EfsTools: delete existing, then create+write
err, mode, size = self.stat(name)
if err == 0:
self.unlink(name)
fd, err = self.open(name, O_WRONLY | O_CREAT, 0o777)
if err != 0 or fd < 0:
raise IOError("open(w) %s err=%d" % (name, err))
off = 0
while off < len(data):
chunk = data[off:off + 1024]
err, nwr = self.write(fd, off, chunk)
if err != 0 or nwr <= 0:
self.close(fd); raise IOError("write %s err=%d nwr=%d" % (name, err, nwr))
off += nwr
self.close(fd)
return off
TYPE_NAMES = {0: "file", 1: "dir", 2: "link", 3: "immovable", 15: "item"}
def cmd_ls(d, args):
entries = d.listdir(args.path)
for name, etype, size in entries:
print("%-42s %-9s %8d" % (name, TYPE_NAMES.get(etype, str(etype)), size))
print("%d entries in %s" % (len(entries), args.path))
def cmd_stat(d, args):
err, mode, size = d.stat(args.path)
if err:
raise SystemExit("stat %s: efs error %d" % (args.path, err))
print("%s mode=%o size=%d" % (args.path, mode & 0xffff, size))
def cmd_pull(d, args):
local = args.local or os.path.basename(args.path.rstrip("/"))
data = d.read_file(args.path)
with open(local, "wb") as f:
f.write(data)
print("pulled %s -> %s (%d bytes)" % (args.path, local, len(data)))
def cmd_push(d, args):
with open(args.local, "rb") as f:
data = f.read()
n = d.write_file(args.path, data)
verified = d.read_file(args.path) == data
print("pushed %s -> %s (%d bytes), read-back %s"
% (args.local, args.path, n, "matches" if verified else "MISMATCH"))
if not verified:
raise SystemExit(2)
def cmd_backup(d, args):
written = [0]
def walk(efs_dir, local_dir):
os.makedirs(local_dir, exist_ok=True)
for name, etype, size in d.listdir(efs_dir):
efs_path = efs_dir.rstrip("/") + "/" + name
local_path = os.path.join(local_dir, name)
if etype == 1: # directory
walk(efs_path, local_path)
elif etype in (0, 15): # regular file or item file
try:
data = d.read_file(efs_path)
except Exception as e:
sys.stderr.write(" skip %s: %s\n" % (efs_path, e))
continue
with open(local_path, "wb") as f:
f.write(data)
written[0] += 1
print(" %s (%d bytes)" % (efs_path, len(data)))
walk(args.path, args.dest)
print("backed up %d files from %s to %s" % (written[0], args.path, args.dest))
def build_parser():
p = argparse.ArgumentParser(
prog="efs2.py",
description="Minimal Qualcomm DIAG EFS2 client: list, pull, push and "
"back up files in a rooted phone's modem EFS.",
epilog="Put the phone in diag mode first (adb shell su -c 'setprop "
"sys.usb.config diag,serial_cdev,rmnet,adb') and bind the option "
"driver. The diag port is auto-detected; override with --port or "
"the DIAGPORT env var.")
p.add_argument("-p", "--port", help="diag serial port (default: auto-detect)")
sub = p.add_subparsers(dest="command", required=True)
s = sub.add_parser("ls", help="list an EFS directory")
s.add_argument("path")
s.set_defaults(func=cmd_ls)
s = sub.add_parser("stat", help="stat an EFS file")
s.add_argument("path")
s.set_defaults(func=cmd_stat)
s = sub.add_parser("pull", help="download one EFS file")
s.add_argument("path", help="EFS path, e.g. /policyman/band_set_01.xml")
s.add_argument("local", nargs="?", help="local path (default: the basename)")
s.set_defaults(func=cmd_pull)
s = sub.add_parser("push", help="upload/overwrite one EFS file, then verify")
s.add_argument("local", help="local file to upload")
s.add_argument("path", help="destination EFS path")
s.set_defaults(func=cmd_push)
s = sub.add_parser("backup", help="recursively download an EFS directory")
s.add_argument("path", help="EFS directory, e.g. /policyman")
s.add_argument("dest", help="local directory to write into")
s.set_defaults(func=cmd_backup)
return p
def main():
args = build_parser().parse_args()
d = Diag(args.port)
sys.stderr.write("using diag port %s (efs v%d)\n" % (d.port, d.hello()))
try:
args.func(d, args)
finally:
d.s.close()
if __name__ == "__main__":
main()