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mirror of https://github.com/trezor/trezor-firmware.git synced 2024-12-18 04:18:10 +00:00

Removed lib_linux (all platform-dependent handling is done by C modules).

This commit is contained in:
slush0 2016-04-28 23:43:53 +02:00 committed by Pavol Rusnak
parent f22511f036
commit b6cdaac364
No known key found for this signature in database
GPG Key ID: 91F3B339B9A02A3D
6 changed files with 0 additions and 735 deletions

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EPERM = 1 # Operation not permitted
ENOENT = 2 # No such file or directory
ESRCH = 3 # No such process
EINTR = 4 # Interrupted system call
EIO = 5 # I/O error
ENXIO = 6 # No such device or address
E2BIG = 7 # Argument list too long
ENOEXEC = 8 # Exec format error
EBADF = 9 # Bad file number
ECHILD = 10 # No child processes
EAGAIN = 11 # Try again
ENOMEM = 12 # Out of memory
EACCES = 13 # Permission denied
EFAULT = 14 # Bad address
ENOTBLK = 15 # Block device required
EBUSY = 16 # Device or resource busy
EEXIST = 17 # File exists
EXDEV = 18 # Cross-device link
ENODEV = 19 # No such device
ENOTDIR = 20 # Not a directory
EISDIR = 21 # Is a directory
EINVAL = 22 # Invalid argument
ENFILE = 23 # File table overflow
EMFILE = 24 # Too many open files
ENOTTY = 25 # Not a typewriter
ETXTBSY = 26 # Text file busy
EFBIG = 27 # File too large
ENOSPC = 28 # No space left on device
ESPIPE = 29 # Illegal seek
EROFS = 30 # Read-only file system
EMLINK = 31 # Too many links
EPIPE = 32 # Broken pipe
EDOM = 33 # Math argument out of domain of func
ERANGE = 34 # Math result not representable
EAFNOSUPPORT = 97 # Address family not supported by protocol
ECONNRESET = 104 # Connection timed out
ETIMEDOUT = 110 # Connection timed out
EINPROGRESS = 115 # Operation now in progress

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import sys
try:
import ffi
except ImportError:
ffi = None
_cache = {}
def open(name, maxver=10, extra=()):
if not ffi:
return None
try:
return _cache[name]
except KeyError:
pass
def libs():
if sys.platform == "linux":
yield '%s.so' % name
for i in range(maxver, -1, -1):
yield '%s.so.%u' % (name, i)
else:
for ext in ('dylib', 'dll'):
yield '%s.%s' % (name, ext)
for n in extra:
yield n
err = None
for n in libs():
try:
l = ffi.open(n)
_cache[name] = l
return l
except OSError as e:
err = e
raise err
def libc():
return open("libc", 6)
# Find out bitness of the platform, even if long ints are not supported
# TODO: All bitness differences should be removed from micropython-lib, and
# this snippet too.
bitness = 1
v = sys.maxsize
while v:
bitness += 1
v >>= 1

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import array
import ustruct as struct
import errno as errno_
import stat as stat_
import ffilib
import uos
R_OK = const(4)
W_OK = const(2)
X_OK = const(1)
F_OK = const(0)
O_ACCMODE = 0o0000003
O_RDONLY = 0o0000000
O_WRONLY = 0o0000001
O_RDWR = 0o0000002
O_CREAT = 0o0000100
O_EXCL = 0o0000200
O_NOCTTY = 0o0000400
O_TRUNC = 0o0001000
O_APPEND = 0o0002000
O_NONBLOCK = 0o0004000
error = OSError
name = "posix"
sep = "/"
curdir = "."
pardir = ".."
environ = {"WARNING": "NOT_IMPLEMENTED"}
libc = ffilib.libc()
if libc:
chdir_ = libc.func("i", "chdir", "s")
mkdir_ = libc.func("i", "mkdir", "si")
rename_ = libc.func("i", "rename", "ss")
unlink_ = libc.func("i", "unlink", "s")
rmdir_ = libc.func("i", "rmdir", "s")
getcwd_ = libc.func("s", "getcwd", "si")
opendir_ = libc.func("P", "opendir", "s")
readdir_ = libc.func("P", "readdir", "P")
open_ = libc.func("i", "open", "sii")
fdopen_ = libc.func("i", "fdopen", "sii")
fsync_ = libc.func("i", "fsync", "i")
#lseek = libc.func("i", "lseek", "iii")
read_ = libc.func("i", "read", "ipi")
write_ = libc.func("i", "write", "iPi")
close_ = libc.func("i", "close", "i")
dup_ = libc.func("i", "dup", "i")
access_ = libc.func("i", "access", "si")
fork_ = libc.func("i", "fork", "")
pipe_ = libc.func("i", "pipe", "p")
mkfifo_ = libc.func("i", "mkfifo", "si")
_exit_ = libc.func("v", "_exit", "i")
getpid_ = libc.func("i", "getpid", "")
waitpid_ = libc.func("i", "waitpid", "ipi")
system_ = libc.func("i", "system", "s")
execvp_ = libc.func("i", "execvp", "PP")
kill_ = libc.func("i", "kill", "ii")
getenv_ = libc.func("s", "getenv", "P")
def check_error(ret):
# Return True is error was EINTR (which usually means that OS call
# should be restarted).
if ret == -1:
e = uos.errno()
if e == errno_.EINTR:
return True
raise OSError(e)
def raise_error():
raise OSError(uos.errno())
stat = uos.stat
def getcwd():
buf = bytearray(512)
return getcwd_(buf, 512)
def mkdir(name, mode=0o777):
e = mkdir_(name, mode)
check_error(e)
def rename(old, new):
e = rename_(old, new)
check_error(e)
def unlink(name):
e = unlink_(name)
check_error(e)
def rmdir(name):
e = rmdir_(name)
check_error(e)
def makedirs(name, mode=0o777, exist_ok=False):
s = ""
comps = name.split("/")
if comps[-1] == "":
comps.pop()
for i, c in enumerate(comps):
s += c + "/"
try:
uos.mkdir(s)
except OSError as e:
if e.args[0] != errno_.EEXIST:
raise
if i == len(comps) - 1:
if exist_ok:
return
raise e
if hasattr(uos, "ilistdir"):
ilistdir = uos.ilistdir
else:
def ilistdir(path="."):
dir = opendir_(path)
if not dir:
raise_error()
res = []
dirent_fmt = "LLHB256s"
while True:
dirent = readdir_(dir)
if not dirent:
break
import uctypes
dirent = uctypes.bytes_at(dirent, struct.calcsize(dirent_fmt))
dirent = struct.unpack(dirent_fmt, dirent)
dirent = (dirent[-1].split(b'\0', 1)[0], dirent[-2], dirent[0])
yield dirent
def listdir(path="."):
is_str = type(path) is not bytes
res = []
for dirent in ilistdir(path):
fname = dirent[0]
if fname not in (b".", b"..", ".", ".."):
if is_str:
fname = fsdecode(fname)
res.append(fname)
return res
def walk(top, topdown=True):
files = []
dirs = []
for dirent in ilistdir_ex(top):
mode = dirent[3] << 12
fname = dirent[4].split(b'\0', 1)[0]
if stat_.S_ISDIR(mode):
if fname != b"." and fname != b"..":
dirs.append(fsdecode(fname))
else:
files.append(fsdecode(fname))
if topdown:
yield top, dirs, files
for d in dirs:
yield from walk(top + "/" + d, topdown)
if not topdown:
yield top, dirs, files
def open(n, flags, mode=0o777):
r = open_(n, flags, mode)
check_error(r)
return r
def fdopen(n, flags, mode=0o777):
r = fdopen_(n, flags, mode)
check_error(r)
return r
def read(fd, n):
buf = bytearray(n)
r = read_(fd, buf, n)
check_error(r)
return bytes(buf[:r])
def write(fd, buf):
r = write_(fd, buf, len(buf))
check_error(r)
return r
def fsync(fd):
r = fsync_(fd)
check_error(r)
return r
def close(fd):
r = close_(fd)
check_error(r)
return r
def dup(fd):
r = dup_(fd)
check_error(r)
return r
def access(path, mode):
return access_(path, mode) == 0
def chdir(dir):
r = chdir_(dir)
check_error(r)
def fork():
r = fork_()
check_error(r)
return r
def pipe():
a = array.array('i', [0, 0])
r = pipe_(a)
check_error(r)
return a[0], a[1]
def mkfifo(n, mode=0o777):
r = mkfifo_(n, mode)
check_error(r)
return r
def _exit(n):
_exit_(n)
def execvp(f, args):
import uctypes
args_ = array.array("P", [0] * (len(args) + 1))
i = 0
for a in args:
args_[i] = uctypes.addressof(a)
i += 1
r = execvp_(f, uctypes.addressof(args_))
check_error(r)
def getpid():
return getpid_()
def waitpid(pid, opts):
a = array.array('i', [0])
r = waitpid_(pid, a, opts)
check_error(r)
return (r, a[0])
def kill(pid, sig):
r = kill_(pid, sig)
check_error(r)
def system(command):
r = system_(command)
check_error(r)
return r
def getenv(var, default=None):
var = getenv_(var)
if var is None:
return default
return var
def fsencode(s):
if type(s) is bytes:
return s
return bytes(s, "utf-8")
def fsdecode(s):
if type(s) is str:
return s
return str(s, "utf-8")
def urandom(n):
import builtins
with builtins.open("/dev/urandom", "rb") as f:
return f.read(n)

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import ffi
import ustruct as struct
import os
import errno
import ffilib
libc = ffilib.libc()
#int epoll_create(int size);
epoll_create = libc.func("i", "epoll_create", "i")
#int epoll_ctl(int epfd, int op, int fd, struct epoll_event *event);
epoll_ctl = libc.func("i", "epoll_ctl", "iiiP")
#int epoll_wait(int epfd, struct epoll_event *events, int maxevents, int timeout);
epoll_wait = libc.func("i", "epoll_wait", "ipii")
EPOLLIN = 0x001
EPOLLPRI = 0x002
EPOLLOUT = 0x004
EPOLLERR = 0x008
EPOLLHUP = 0x010
EPOLLRDHUP = 0x2000
EPOLLONESHOT = 1 << 30
EPOLLET = 1 << 31
EPOLL_CTL_ADD = 1
EPOLL_CTL_DEL = 2
EPOLL_CTL_MOD = 3
# TODO: struct epoll_event's 2nd member is union of uint64_t, etc.
# On x86, uint64_t is 4-byte aligned, on many other platforms - 8-byte.
# Until uctypes module can assign native struct offset, use dirty hack
# below.
# TODO: Get rid of all this dirtiness, move it on C side
if ffilib.bitness > 32:
# On x86_64, epoll_event is packed struct
epoll_event = "<IO"
elif struct.calcsize("IQ") == 12:
epoll_event = "IO"
else:
epoll_event = "QO"
class Epoll:
def __init__(self, epfd):
self.epfd = epfd
self.evbuf = struct.pack(epoll_event, 0, None)
self.registry = {}
def register(self, fd, eventmask=EPOLLIN|EPOLLPRI|EPOLLOUT, retval=None):
"retval is extension to stdlib, value to use in results from .poll()."
if retval is None:
retval = fd
s = struct.pack(epoll_event, eventmask, retval)
r = epoll_ctl(self.epfd, EPOLL_CTL_ADD, fd, s)
if r == -1 and os.errno_() == errno.EEXIST:
r = epoll_ctl(self.epfd, EPOLL_CTL_MOD, fd, s)
os.check_error(r)
# We must keep reference to retval, or it may be GCed. And we must
# keep mapping from fd to retval to be able to get rid of this retval
# reference later.
self.registry[fd] = retval
def unregister(self, fd):
# Pass dummy event structure, to workaround kernel bug
r = epoll_ctl(self.epfd, EPOLL_CTL_DEL, fd, self.evbuf)
os.check_error(r)
del self.registry[fd]
def poll(self, timeout=-1):
s = bytearray(self.evbuf)
while True:
n = epoll_wait(self.epfd, s, 1, timeout)
if not os.check_error(n):
break
# TODO: what about timeout value?
res = []
if n > 0:
vals = struct.unpack(epoll_event, s)
res.append((vals[1], vals[0]))
return res
def close(self):
os.close(self.epfd)
def epoll(sizehint=4):
fd = epoll_create(sizehint)
os.check_error(fd)
return Epoll(fd)

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"""Constants/functions for interpreting results of os.stat() and os.lstat().
Suggested usage: from stat import *
"""
# Indices for stat struct members in the tuple returned by os.stat()
ST_MODE = 0
ST_INO = 1
ST_DEV = 2
ST_NLINK = 3
ST_UID = 4
ST_GID = 5
ST_SIZE = 6
ST_ATIME = 7
ST_MTIME = 8
ST_CTIME = 9
# Extract bits from the mode
def S_IMODE(mode):
"""Return the portion of the file's mode that can be set by
os.chmod().
"""
return mode & 0o7777
def S_IFMT(mode):
"""Return the portion of the file's mode that describes the
file type.
"""
return mode & 0o170000
# Constants used as S_IFMT() for various file types
# (not all are implemented on all systems)
S_IFDIR = 0o040000 # directory
S_IFCHR = 0o020000 # character device
S_IFBLK = 0o060000 # block device
S_IFREG = 0o100000 # regular file
S_IFIFO = 0o010000 # fifo (named pipe)
S_IFLNK = 0o120000 # symbolic link
S_IFSOCK = 0o140000 # socket file
# Functions to test for each file type
def S_ISDIR(mode):
"""Return True if mode is from a directory."""
return S_IFMT(mode) == S_IFDIR
def S_ISCHR(mode):
"""Return True if mode is from a character special device file."""
return S_IFMT(mode) == S_IFCHR
def S_ISBLK(mode):
"""Return True if mode is from a block special device file."""
return S_IFMT(mode) == S_IFBLK
def S_ISREG(mode):
"""Return True if mode is from a regular file."""
return S_IFMT(mode) == S_IFREG
def S_ISFIFO(mode):
"""Return True if mode is from a FIFO (named pipe)."""
return S_IFMT(mode) == S_IFIFO
def S_ISLNK(mode):
"""Return True if mode is from a symbolic link."""
return S_IFMT(mode) == S_IFLNK
def S_ISSOCK(mode):
"""Return True if mode is from a socket."""
return S_IFMT(mode) == S_IFSOCK
# Names for permission bits
S_ISUID = 0o4000 # set UID bit
S_ISGID = 0o2000 # set GID bit
S_ENFMT = S_ISGID # file locking enforcement
S_ISVTX = 0o1000 # sticky bit
S_IREAD = 0o0400 # Unix V7 synonym for S_IRUSR
S_IWRITE = 0o0200 # Unix V7 synonym for S_IWUSR
S_IEXEC = 0o0100 # Unix V7 synonym for S_IXUSR
S_IRWXU = 0o0700 # mask for owner permissions
S_IRUSR = 0o0400 # read by owner
S_IWUSR = 0o0200 # write by owner
S_IXUSR = 0o0100 # execute by owner
S_IRWXG = 0o0070 # mask for group permissions
S_IRGRP = 0o0040 # read by group
S_IWGRP = 0o0020 # write by group
S_IXGRP = 0o0010 # execute by group
S_IRWXO = 0o0007 # mask for others (not in group) permissions
S_IROTH = 0o0004 # read by others
S_IWOTH = 0o0002 # write by others
S_IXOTH = 0o0001 # execute by others
# Names for file flags
UF_NODUMP = 0x00000001 # do not dump file
UF_IMMUTABLE = 0x00000002 # file may not be changed
UF_APPEND = 0x00000004 # file may only be appended to
UF_OPAQUE = 0x00000008 # directory is opaque when viewed through a union stack
UF_NOUNLINK = 0x00000010 # file may not be renamed or deleted
UF_COMPRESSED = 0x00000020 # OS X: file is hfs-compressed
UF_HIDDEN = 0x00008000 # OS X: file should not be displayed
SF_ARCHIVED = 0x00010000 # file may be archived
SF_IMMUTABLE = 0x00020000 # file may not be changed
SF_APPEND = 0x00040000 # file may only be appended to
SF_NOUNLINK = 0x00100000 # file may not be renamed or deleted
SF_SNAPSHOT = 0x00200000 # file is a snapshot file
_filemode_table = (
((S_IFLNK, "l"),
(S_IFREG, "-"),
(S_IFBLK, "b"),
(S_IFDIR, "d"),
(S_IFCHR, "c"),
(S_IFIFO, "p")),
((S_IRUSR, "r"),),
((S_IWUSR, "w"),),
((S_IXUSR|S_ISUID, "s"),
(S_ISUID, "S"),
(S_IXUSR, "x")),
((S_IRGRP, "r"),),
((S_IWGRP, "w"),),
((S_IXGRP|S_ISGID, "s"),
(S_ISGID, "S"),
(S_IXGRP, "x")),
((S_IROTH, "r"),),
((S_IWOTH, "w"),),
((S_IXOTH|S_ISVTX, "t"),
(S_ISVTX, "T"),
(S_IXOTH, "x"))
)
def filemode(mode):
"""Convert a file's mode to a string of the form '-rwxrwxrwx'."""
perm = []
for table in _filemode_table:
for bit, char in table:
if mode & bit == bit:
perm.append(char)
break
else:
perm.append("-")
return "".join(perm)

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'''PipeTransport implements fake wire transport over local named pipe.
Use this transport for talking with trezor simulator.'''
import os
import ustruct
import uselect
from trezor import loop
read_fd = None
write_fd = None
poll = None
on_read = None
def init(filename):
global read_fd, write_fd, poll
filename_read = filename + '.to'
filename_write = filename + '.from'
os.mkfifo(filename_read, 0o600)
os.mkfifo(filename_write, 0o600)
write_fd = os.open(filename_write, os.O_RDWR, 0o600)
read_fd = os.open(filename_read, os.O_RDWR, 0o600)
poll = uselect.poll()
poll.register(read_fd, uselect.POLLIN)
# Setup polling
loop.call_soon(watch_read())
def set_notify(_on_read):
global on_read
on_read = _on_read
def close():
global read_fd, write_fd
os.close(read_fd)
os.close(write_fd)
def watch_read():
global on_read
sleep = loop.Sleep(10000) # 0.01s
while True:
if ready_to_read() and on_read:
on_read()
yield sleep
def ready_to_read():
global poll
return len(poll.poll(0)) > 0
def read():
"""
If there is data available to be read from the transport, reads the data and tries to parse it as a protobuf message. If the parsing succeeds, return a protobuf object.
Otherwise, returns None.
"""
if not ready_to_read():
return None
data = _read()
if data == None:
return None
return _parse_message(data)
def write(msg):
"""
Write mesage to tansport. msg should be a member of a valid `protobuf class <https://developers.google.com/protocol-buffers/docs/pythontutorial>`_ with a SerializeToString() method.
"""
ser = msg.SerializeToString()
header = ustruct.pack(">HL", mapping.get_type(msg), len(ser))
_write(b"##%s%s" % (header, ser))
def _parse_message(data):
(msg_type, _data) = data
if msg_type == 'protobuf':
return _data
else:
# inst = mapping.get_class(msg_type)()
# inst.ParseFromString(_data)
inst = _data
return inst
def _read_headers():
global read_fd
# Try to read headers until some sane value are detected
is_ok = False
while not is_ok:
# Align cursor to the beginning of the header ("##")
c = os.read(read_fd, 1)
i = 0
while c != b'#':
i += 1
if i >= 64:
# timeout
raise Exception("Timed out while waiting for the magic character")
# print "Aligning to magic characters"
c = os.read(read_fd, 1)
print(c)
if os.read(read_fd, 1) != b'#':
# Second character must be # to be valid header
raise Exception("Second magic character is broken")
# Now we're most likely on the beginning of the header
try:
headerlen = ustruct.calcsize(">HL")
(msg_type, datalen) = ustruct.unpack(">HL", os.read(read_fd, headerlen))
break
except:
raise Exception("Cannot parse header length")
return (msg_type, datalen)
def _write(msg):
global write_fd
try:
os.write(write_fd, msg)
# os.fsync(write_fd)
except OSError:
print("Error while writing to socket")
raise
def _read():
global read_fd
try:
(msg_type, datalen) = _read_headers()
return (msg_type, os.read(read_fd, datalen))
except:
print("Failed to read from device")
raise