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"""Random variable generators.

    integers
    --------
           uniform within range

    sequences
    ---------
           pick random element
           pick random sample
           generate random permutation

    distributions on the real line:
    ------------------------------
           uniform
           triangular
           normal (Gaussian)
           lognormal
           negative exponential
           gamma
           beta
           pareto
           Weibull

    distributions on the circle (angles 0 to 2pi)
    ---------------------------------------------
           circular uniform
           von Mises

General notes on the underlying Mersenne Twister core generator:

* The period is 2**19937-1.
* It is one of the most extensively tested generators in existence.
* The random() method is implemented in C, executes in a single Python step,
  and is, therefore, threadsafe.

"""

from warnings import warn as _warn
from types import MethodType as _MethodType, BuiltinMethodType as _BuiltinMethodType
from math import log as _log, exp as _exp, pi as _pi, e as _e, ceil as _ceil
from math import sqrt as _sqrt, acos as _acos, cos as _cos, sin as _sin
from os import urandom as _urandom
from _collections_abc import Set as _Set, Sequence as _Sequence
from hashlib import sha512 as _sha512

__all__ = ["Random","seed","random","uniform","randint","choice","sample",
           "randrange","shuffle","normalvariate","lognormvariate",
           "expovariate","vonmisesvariate","gammavariate","triangular",
           "gauss","betavariate","paretovariate","weibullvariate",
           "getstate","setstate", "getrandbits",
           "SystemRandom"]

NV_MAGICCONST = 4 * _exp(-0.5)/_sqrt(2.0)
TWOPI = 2.0*_pi
LOG4 = _log(4.0)
SG_MAGICCONST = 1.0 + _log(4.5)
BPF = 53        # Number of bits in a float
RECIP_BPF = 2**-BPF


# Translated by Guido van Rossum from C source provided by
# Adrian Baddeley.  Adapted by Raymond Hettinger for use with
# the Mersenne Twister  and os.urandom() core generators.

import _random

class Random(_random.Random):
    """Random number generator base class used by bound module functions.

    Used to instantiate instances of Random to get generators that don't
    share state.

    Class Random can also be subclassed if you want to use a different basic
    generator of your own devising: in that case, override the following
    methods:  random(), seed(), getstate(), and setstate().
    Optionally, implement a getrandbits() method so that randrange()
    can cover arbitrarily large ranges.

    """

    VERSION = 3     # used by getstate/setstate

    def __init__(self, x=None):
        """Initialize an instance.

        Optional argument x controls seeding, as for Random.seed().
        """

        self.seed(x)
        self.gauss_next = None

    def seed(self, a=None, version=2):
        """Initialize internal state from hashable object.

        None or no argument seeds from current time or from an operating
        system specific randomness source if available.

        For version 2 (the default), all of the bits are used if *a* is a str,
        bytes, or bytearray.  For version 1, the hash() of *a* is used instead.

        If *a* is an int, all bits are used.

        """

        if a is None:
            try:
                # Seed with enough bytes to span the 19937 bit
                # state space for the Mersenne Twister
                a = int.from_bytes(_urandom(2500), 'big')
            except NotImplementedError:
                import time
                a = int(time.time() * 256) # use fractional seconds

        if version == 2:
            if isinstance(a, (str, bytes, bytearray)):
                if isinstance(a, str):
                    a = a.encode()
                a += _sha512(a).digest()
                a = int.from_bytes(a, 'big')

        super().seed(a)
        self.gauss_next = None

    def getstate(self):
        """Return internal state; can be passed to setstate() later."""
        return self.VERSION, super().getstate(), self.gauss_next

    def setstate(self, state):
        """Restore internal state from object returned by getstate()."""
        version = state[0]
        if version == 3:
            version, internalstate, self.gauss_next = state
            super().setstate(internalstate)
        elif version == 2:
            version, internalstate, self.gauss_next = state
            # In version 2, the state was saved as signed ints, which causes
            #   inconsistencies between 32/64-bit systems. The state is
            #   really unsigned 32-bit ints, so we convert negative ints from
            #   version 2 to positive longs for version 3.
            try:
                internalstate = tuple(x % (2**32) for x in internalstate)
            except ValueError as e:
                raise TypeError from e
            super().setstate(internalstate)
        else:
            raise ValueError("state with version %s passed to "
                             "Random.setstate() of version %s" %
                             (version, self.VERSION))

## ---- Methods below this point do not need to be overridden when
## ---- subclassing for the purpose of using a different core generator.

## -------------------- pickle support  -------------------

    # Issue 17489: Since __reduce__ was defined to fix #759889 this is no
    # longer called; we leave it here because it has been here since random was
    # rewritten back in 2001 and why risk breaking something.
    def __getstate__(self): # for pickle
        return self.getstate()

    def __setstate__(self, state):  # for pickle
        self.setstate(state)

    def __reduce__(self):
        return self.__class__, (), self.getstate()

## -------------------- integer methods  -------------------

    def randrange(self, start, stop=None, step=1, _int=int):
        """Choose a random item from range(start, stop[, step]).

        This fixes the problem with randint() which includes the
        endpoint; in Python this is usually not what you want.

        """

        # This code is a bit messy to make it fast for the
        # common case while still doing adequate error checking.
        istart = _int(start)
        if istart != start:
            raise ValueError("non-integer arg 1 for randrange()")
        if stop is None:
            if istart > 0:
                return self._randbelow(istart)
            raise ValueError("empty range for randrange()")

        # stop argument supplied.
        istop = _int(stop)
        if istop != stop:
            raise ValueError("non-integer stop for randrange()")
        width = istop - istart
        if step == 1 and width > 0:
            return istart + self._randbelow(width)
        if step == 1:
            raise ValueError("empty range for randrange() (%d,%d, %d)" % (istart, istop, width))

        # Non-unit step argument supplied.
        istep = _int(step)
        if istep != step:
            raise ValueError("non-integer step for randrange()")
        if istep > 0:
            n = (width + istep - 1) // istep
        elif istep < 0:
            n = (width + istep + 1) // istep
        else:
            raise ValueError("zero step for randrange()")

        if n <= 0:
            raise ValueError("empty range for randrange()")

        return istart + istep*self._randbelow(n)

    def randint(self, a, b):
        """Return random integer in range [a, b], including both end points.
        """

        return self.randrange(a, b+1)

    def _randbelow(self, n, int=int, maxsize=1<<BPF, type=type,
                   Method=_MethodType, BuiltinMethod=_BuiltinMethodType):
        "Return a random int in the range [0,n).  Raises ValueError if n==0."

        random = self.random
        getrandbits = self.getrandbits
        # Only call self.getrandbits if the original random() builtin method
        # has not been overridden or if a new getrandbits() was supplied.
        if type(random) is BuiltinMethod or type(getrandbits) is Method:
            k = n.bit_length()  # don't use (n-1) here because n can be 1
            r = getrandbits(k)          # 0 <= r < 2**k
            while r >= n:
                r = getrandbits(k)
            return r
        # There's an overriden random() method but no new getrandbits() method,
        # so we can only use random() from here.
        if n >= maxsize:
            _warn("Underlying random() generator does not supply \n"
                "enough bits to choose from a population range this large.\n"
                "To remove the range limitation, add a getrandbits() method.")
            return int(random() * n)
        rem = maxsize % n
        limit = (maxsize - rem) / maxsize   # int(limit * maxsize) % n == 0
        r = random()
        while r >= limit:
            r = random()
        return int(r*maxsize) % n

## -------------------- sequence methods  -------------------

    def choice(self, seq):
        """Choose a random element from a non-empty sequence."""
        try:
            i = self._randbelow(len(seq))
        except ValueError:
            raise IndexError('Cannot choose from an empty sequence')
        return seq[i]

    def shuffle(self, x, random=None):
        """Shuffle list x in place, and return None.

        Optional argument random is a 0-argument function returning a
        random float in [0.0, 1.0); if it is the default None, the
        standard random.random will be used.

        """

        if random is None:
            randbelow = self._randbelow
            for i in reversed(range(1, len(x))):
                # pick an element in x[:i+1] with which to exchange x[i]
                j = randbelow(i+1)
                x[i], x[j] = x[j], x[i]
        else:
            _int = int
            for i in reversed(range(1, len(x))):
                # pick an element in x[:i+1] with which to exchange x[i]
                j = _int(random() * (i+1))
                x[i], x[j] = x[j], x[i]

    def sample(self, population, k):
        """Chooses k unique random elements from a population sequence or set.

        Returns a new list containing elements from the population while
        leaving the original population unchanged.  The resulting list is
        in selection order so that all sub-slices will also be valid random
        samples.  This allows raffle winners (the sample) to be partitioned
        into grand prize and second place winners (the subslices).

        Members of the population need not be hashable or unique.  If the
        population contains repeats, then each occurrence is a possible
        selection in the sample.

        To choose a sample in a range of integers, use range as an argument.
        This is especially fast and space efficient for sampling from a
        large population:   sample(range(10000000), 60)
        """

        # Sampling without replacement entails tracking either potential
        # selections (the pool) in a list or previous selections in a set.

        # When the number of selections is small compared to the
        # population, then tracking selections is efficient, requiring
        # only a small set and an occasional reselection.  For
        # a larger number of selections, the pool tracking method is
        # preferred since the list takes less space than the
        # set and it doesn't suffer from frequent reselections.

        if isinstance(population, _Set):
            population = tuple(population)
        if not isinstance(population, _Sequence):
            raise TypeError("Population must be a sequence or set.  For dicts, use list(d).")
        randbelow = self._randbelow
        n = len(population)
        if not 0 <= k <= n:
            raise ValueError("Sample larger than population")
        result = [None] * k
        setsize = 21        # size of a small set minus size of an empty list
        if k > 5:
            setsize += 4 ** _ceil(_log(k * 3, 4)) # table size for big sets
        if n <= setsize:
            # An n-length list is smaller than a k-length set
            pool = list(population)
            for i in range(k):         # invariant:  non-selected at [0,n-i)
                j = randbelow(n-i)
                result[i] = pool[j]
                pool[j] = pool[n-i-1]   # move non-selected item into vacancy
        else:
            selected = set()
            selected_add = selected.add
            for i in range(k):
                j = randbelow(n)
                while j in selected:
                    j = randbelow(n)
                selected_add(j)
                result[i] = population[j]
        return result

## -------------------- real-valued distributions  -------------------

## -------------------- uniform distribution -------------------

    def uniform(self, a, b):
        "Get a random number in the range [a, b) or [a, b] depending on rounding."
        return a + (b-a) * self.random()

## -------------------- triangular --------------------

    def triangular(self, low=0.0, high=1.0, mode=None):
        """Triangular distribution.

        Continuous distribution bounded by given lower and upper limits,
        and having a given mode value in-between.

        http://en.wikipedia.org/wiki/Triangular_distribution

        """
        u = self.random()
        try:
            c = 0.5 if mode is None else (mode - low) / (high - low)
        except ZeroDivisionError:
            return low
        if u > c:
            u = 1.0 - u
            c = 1.0 - c
            low, high = high, low
        return low + (high - low) * (u * c) ** 0.5

## -------------------- normal distribution --------------------

    def normalvariate(self, mu, sigma):
        """Normal distribution.

        mu is the mean, and sigma is the standard deviation.

        """
        # mu = mean, sigma = standard deviation

        # Uses Kinderman and Monahan method. Reference: Kinderman,
        # A.J. and Monahan, J.F., "Computer generation of random
        # variables using the ratio of uniform deviates", ACM Trans
        # Math Software, 3, (1977), pp257-260.

        random = self.random
        while 1:
            u1 = random()
            u2 = 1.0 - random()
            z = NV_MAGICCONST*(u1-0.5)/u2
            zz = z*z/4.0
            if zz <= -_log(u2):
                break
        return mu + z*sigma

## -------------------- lognormal distribution --------------------

    def lognormvariate(self, mu, sigma):
        """Log normal distribution.

        If you take the natural logarithm of this distribution, you'll get a
        normal distribution with mean mu and standard deviation sigma.
        mu can have any value, and sigma must be greater than zero.

        """
        return _exp(self.normalvariate(mu, sigma))

## -------------------- exponential distribution --------------------

    def expovariate(self, lambd):
        """Exponential distribution.

        lambd is 1.0 divided by the desired mean.  It should be
        nonzero.  (The parameter would be called "lambda", but that is
        a reserved word in Python.)  Returned values range from 0 to
        positive infinity if lambd is positive, and from negative
        infinity to 0 if lambd is negative.

        """
        # lambd: rate lambd = 1/mean
        # ('lambda' is a Python reserved word)

        # we use 1-random() instead of random() to preclude the
        # possibility of taking the log of zero.
        return -_log(1.0 - self.random())/lambd

## -------------------- von Mises distribution --------------------

    def vonmisesvariate(self, mu, kappa):
        """Circular data distribution.

        mu is the mean angle, expressed in radians between 0 and 2*pi, and
        kappa is the concentration parameter, which must be greater than or
        equal to zero.  If kappa is equal to zero, this distribution reduces
        to a uniform random angle over the range 0 to 2*pi.

        """
        # mu:    mean angle (in radians between 0 and 2*pi)
        # kappa: concentration parameter kappa (>= 0)
        # if kappa = 0 generate uniform random angle

        # Based upon an algorithm published in: Fisher, N.I.,
        # "Statistical Analysis of Circular Data", Cambridge
        # University Press, 1993.

        # Thanks to Magnus Kessler for a correction to the
        # implementation of step 4.

        random = self.random
        if kappa <= 1e-6:
            return TWOPI * random()

        s = 0.5 / kappa
        r = s + _sqrt(1.0 + s * s)

        while 1:
            u1 = random()
            z = _cos(_pi * u1)

            d = z / (r + z)
            u2 = random()
            if u2 < 1.0 - d * d or u2 <= (1.0 - d) * _exp(d):
                break

        q = 1.0 / r
        f = (q + z) / (1.0 + q * z)
        u3 = random()
        if u3 > 0.5:
            theta = (mu + _acos(f)) % TWOPI
        else:
            theta = (mu - _acos(f)) % TWOPI

        return theta

## -------------------- gamma distribution --------------------

    def gammavariate(self, alpha, beta):
        """Gamma distribution.  Not the gamma function!

        Conditions on the parameters are alpha > 0 and beta > 0.

        The probability distribution function is:

                    x ** (alpha - 1) * math.exp(-x / beta)
          pdf(x) =  --------------------------------------
                      math.gamma(alpha) * beta ** alpha

        """

        # alpha > 0, beta > 0, mean is alpha*beta, variance is alpha*beta**2

        # Warning: a few older sources define the gamma distribution in terms
        # of alpha > -1.0
        if alpha <= 0.0 or beta <= 0.0:
            raise ValueError('gammavariate: alpha and beta must be > 0.0')

        random = self.random
        if alpha > 1.0:

            # Uses R.C.H. Cheng, "The generation of Gamma
            # variables with non-integral shape parameters",
            # Applied Statistics, (1977), 26, No. 1, p71-74

            ainv = _sqrt(2.0 * alpha - 1.0)
            bbb = alpha - LOG4
            ccc = alpha + ainv

            while 1:
                u1 = random()
                if not 1e-7 < u1 < .9999999:
                    continue
                u2 = 1.0 - random()
                v = _log(u1/(1.0-u1))/ainv
                x = alpha*_exp(v)
                z = u1*u1*u2
                r = bbb+ccc*v-x
                if r + SG_MAGICCONST - 4.5*z >= 0.0 or r >= _log(z):
                    return x * beta

        elif alpha == 1.0:
            # expovariate(1)
            u = random()
            while u <= 1e-7:
                u = random()
            return -_log(u) * beta

        else:   # alpha is between 0 and 1 (exclusive)

            # Uses ALGORITHM GS of Statistical Computing - Kennedy & Gentle

            while 1:
                u = random()
                b = (_e + alpha)/_e
                p = b*u
                if p <= 1.0:
                    x = p ** (1.0/alpha)
                else:
                    x = -_log((b-p)/alpha)
                u1 = random()
                if p > 1.0:
                    if u1 <= x ** (alpha - 1.0):
                        break
                elif u1 <= _exp(-x):
                    break
            return x * beta

## -------------------- Gauss (faster alternative) --------------------

    def gauss(self, mu, sigma):
        """Gaussian distribution.

        mu is the mean, and sigma is the standard deviation.  This is
        slightly faster than the normalvariate() function.

        Not thread-safe without a lock around calls.

        """

        # When x and y are two variables from [0, 1), uniformly
        # distributed, then
        #
        #    cos(2*pi*x)*sqrt(-2*log(1-y))
        #    sin(2*pi*x)*sqrt(-2*log(1-y))
        #
        # are two *independent* variables with normal distribution
        # (mu = 0, sigma = 1).
        # (Lambert Meertens)
        # (corrected version; bug discovered by Mike Miller, fixed by LM)

        # Multithreading note: When two threads call this function
        # simultaneously, it is possible that they will receive the
        # same return value.  The window is very small though.  To
        # avoid this, you have to use a lock around all calls.  (I
        # didn't want to slow this down in the serial case by using a
        # lock here.)

        random = self.random
        z = self.gauss_next
        self.gauss_next = None
        if z is None:
            x2pi = random() * TWOPI
            g2rad = _sqrt(-2.0 * _log(1.0 - random()))
            z = _cos(x2pi) * g2rad
            self.gauss_next = _sin(x2pi) * g2rad

        return mu + z*sigma

## -------------------- beta --------------------
## See
## http://mail.python.org/pipermail/python-bugs-list/2001-January/003752.html
## for Ivan Frohne's insightful analysis of why the original implementation:
##
##    def betavariate(self, alpha, beta):
##        # Discrete Event Simulation in C, pp 87-88.
##
##        y = self.expovariate(alpha)
##        z = self.expovariate(1.0/beta)
##        return z/(y+z)
##
## was dead wrong, and how it probably got that way.

    def betavariate(self, alpha, beta):
        """Beta distribution.

        Conditions on the parameters are alpha > 0 and beta > 0.
        Returned values range between 0 and 1.

        """

        # This version due to Janne Sinkkonen, and matches all the std
        # texts (e.g., Knuth Vol 2 Ed 3 pg 134 "the beta distribution").
        y = self.gammavariate(alpha, 1.)
        if y == 0:
            return 0.0
        else:
            return y / (y + self.gammavariate(beta, 1.))

## -------------------- Pareto --------------------

    def paretovariate(self, alpha):
        """Pareto distribution.  alpha is the shape parameter."""
        # Jain, pg. 495

        u = 1.0 - self.random()
        return 1.0 / u ** (1.0/alpha)

## -------------------- Weibull --------------------

    def weibullvariate(self, alpha, beta):
        """Weibull distribution.

        alpha is the scale parameter and beta is the shape parameter.

        """
        # Jain, pg. 499; bug fix courtesy Bill Arms

        u = 1.0 - self.random()
        return alpha * (-_log(u)) ** (1.0/beta)

## --------------- Operating System Random Source  ------------------

class SystemRandom(Random):
    """Alternate random number generator using sources provided
    by the operating system (such as /dev/urandom on Unix or
    CryptGenRandom on Windows).

     Not available on all systems (see os.urandom() for details).
    """

    def random(self):
        """Get the next random number in the range [0.0, 1.0)."""
        return (int.from_bytes(_urandom(7), 'big') >> 3) * RECIP_BPF

    def getrandbits(self, k):
        """getrandbits(k) -> x.  Generates an int with k random bits."""
        if k <= 0:
            raise ValueError('number of bits must be greater than zero')
        if k != int(k):
            raise TypeError('number of bits should be an integer')
        numbytes = (k + 7) // 8                       # bits / 8 and rounded up
        x = int.from_bytes(_urandom(numbytes), 'big')
        return x >> (numbytes * 8 - k)                # trim excess bits

    def seed(self, *args, **kwds):
        "Stub method.  Not used for a system random number generator."
        return None

    def _notimplemented(self, *args, **kwds):
        "Method should not be called for a system random number generator."
        raise NotImplementedError('System entropy source does not have state.')
    getstate = setstate = _notimplemented

## -------------------- test program --------------------

def _test_generator(n, func, args):
    import time
    print(n, 'times', func.__name__)
    total = 0.0
    sqsum = 0.0
    smallest = 1e10
    largest = -1e10
    t0 = time.time()
    for i in range(n):
        x = func(*args)
        total += x
        sqsum = sqsum + x*x
        smallest = min(x, smallest)
        largest = max(x, largest)
    t1 = time.time()
    print(round(t1-t0, 3), 'sec,', end=' ')
    avg = total/n
    stddev = _sqrt(sqsum/n - avg*avg)
    print('avg %g, stddev %g, min %g, max %g\n' % \
              (avg, stddev, smallest, largest))


def _test(N=2000):
    _test_generator(N, random, ())
    _test_generator(N, normalvariate, (0.0, 1.0))
    _test_generator(N, lognormvariate, (0.0, 1.0))
    _test_generator(N, vonmisesvariate, (0.0, 1.0))
    _test_generator(N, gammavariate, (0.01, 1.0))
    _test_generator(N, gammavariate, (0.1, 1.0))
    _test_generator(N, gammavariate, (0.1, 2.0))
    _test_generator(N, gammavariate, (0.5, 1.0))
    _test_generator(N, gammavariate, (0.9, 1.0))
    _test_generator(N, gammavariate, (1.0, 1.0))
    _test_generator(N, gammavariate, (2.0, 1.0))
    _test_generator(N, gammavariate, (20.0, 1.0))
    _test_generator(N, gammavariate, (200.0, 1.0))
    _test_generator(N, gauss, (0.0, 1.0))
    _test_generator(N, betavariate, (3.0, 3.0))
    _test_generator(N, triangular, (0.0, 1.0, 1.0/3.0))

# Create one instance, seeded from current time, and export its methods
# as module-level functions.  The functions share state across all uses
#(both in the user's code and in the Python libraries), but that's fine
# for most programs and is easier for the casual user than making them
# instantiate their own Random() instance.

_inst = Random()
seed = _inst.seed
random = _inst.random
uniform = _inst.uniform
triangular = _inst.triangular
randint = _inst.randint
choice = _inst.choice
randrange = _inst.randrange
sample = _inst.sample
shuffle = _inst.shuffle
normalvariate = _inst.normalvariate
lognormvariate = _inst.lognormvariate
expovariate = _inst.expovariate
vonmisesvariate = _inst.vonmisesvariate
gammavariate = _inst.gammavariate
gauss = _inst.gauss
betavariate = _inst.betavariate
paretovariate = _inst.paretovariate
weibullvariate = _inst.weibullvariate
getstate = _inst.getstate
setstate = _inst.setstate
getrandbits = _inst.getrandbits

if __name__ == '__main__':
    _test()
erbose (trace import statements); also PYTHONVERBOSE=x\n\ can be supplied multiple times to increase verbosity\n\ -V : print the Python version number and exit (also --version)\n\ when given twice, print more information about the build\n\ -W arg : warning control; arg is action:message:category:module:lineno\n\ also PYTHONWARNINGS=arg\n\ -x : skip first line of source, allowing use of non-Unix forms of #!cmd\n\ -X opt : set implementation-specific option. The following options are available:\n\ \n\ -X faulthandler: enable faulthandler\n\ -X oldparser: enable the traditional LL(1) parser; also PYTHONOLDPARSER\n\ -X showrefcount: output the total reference count and number of used\n\ memory blocks when the program finishes or after each statement in the\n\ interactive interpreter. This only works on debug builds\n\ -X tracemalloc: start tracing Python memory allocations using the\n\ tracemalloc module. By default, only the most recent frame is stored in a\n\ traceback of a trace. Use -X tracemalloc=NFRAME to start tracing with a\n\ traceback limit of NFRAME frames\n\ -X importtime: show how long each import takes. It shows module name,\n\ cumulative time (including nested imports) and self time (excluding\n\ nested imports). Note that its output may be broken in multi-threaded\n\ application. Typical usage is python3 -X importtime -c 'import asyncio'\n\ -X dev: enable CPython's \"development mode\", introducing additional runtime\n\ checks which are too expensive to be enabled by default. Effect of the\n\ developer mode:\n\ * Add default warning filter, as -W default\n\ * Install debug hooks on memory allocators: see the PyMem_SetupDebugHooks() C function\n\ * Enable the faulthandler module to dump the Python traceback on a crash\n\ * Enable asyncio debug mode\n\ * Set the dev_mode attribute of sys.flags to True\n\ * io.IOBase destructor logs close() exceptions\n\ -X utf8: enable UTF-8 mode for operating system interfaces, overriding the default\n\ locale-aware mode. -X utf8=0 explicitly disables UTF-8 mode (even when it would\n\ otherwise activate automatically)\n\ -X pycache_prefix=PATH: enable writing .pyc files to a parallel tree rooted at the\n\ given directory instead of to the code tree\n\ \n\ --check-hash-based-pycs always|default|never:\n\ control how Python invalidates hash-based .pyc files\n\ "; static const char usage_4[] = "\ file : program read from script file\n\ - : program read from stdin (default; interactive mode if a tty)\n\ arg ...: arguments passed to program in sys.argv[1:]\n\n\ Other environment variables:\n\ PYTHONSTARTUP: file executed on interactive startup (no default)\n\ PYTHONPATH : '%lc'-separated list of directories prefixed to the\n\ default module search path. The result is sys.path.\n\ "; static const char usage_5[] = "PYTHONHOME : alternate <prefix> directory (or <prefix>%lc<exec_prefix>).\n" " The default module search path uses %s.\n" "PYTHONPLATLIBDIR : override sys.platlibdir.\n" "PYTHONCASEOK : ignore case in 'import' statements (Windows).\n" "PYTHONUTF8: if set to 1, enable the UTF-8 mode.\n" "PYTHONIOENCODING: Encoding[:errors] used for stdin/stdout/stderr.\n" "PYTHONFAULTHANDLER: dump the Python traceback on fatal errors.\n"; static const char usage_6[] = "PYTHONHASHSEED: if this variable is set to 'random', a random value is used\n" " to seed the hashes of str and bytes objects. It can also be set to an\n" " integer in the range [0,4294967295] to get hash values with a\n" " predictable seed.\n" "PYTHONMALLOC: set the Python memory allocators and/or install debug hooks\n" " on Python memory allocators. Use PYTHONMALLOC=debug to install debug\n" " hooks.\n" "PYTHONCOERCECLOCALE: if this variable is set to 0, it disables the locale\n" " coercion behavior. Use PYTHONCOERCECLOCALE=warn to request display of\n" " locale coercion and locale compatibility warnings on stderr.\n" "PYTHONBREAKPOINT: if this variable is set to 0, it disables the default\n" " debugger. It can be set to the callable of your debugger of choice.\n" "PYTHONDEVMODE: enable the development mode.\n" "PYTHONPYCACHEPREFIX: root directory for bytecode cache (pyc) files.\n"; #if defined(MS_WINDOWS) # define PYTHONHOMEHELP "<prefix>\\python{major}{minor}" #else # define PYTHONHOMEHELP "<prefix>/lib/pythonX.X" #endif /* --- Global configuration variables ----------------------------- */ /* UTF-8 mode (PEP 540): if equals to 1, use the UTF-8 encoding, and change stdin and stdout error handler to "surrogateescape". */ int Py_UTF8Mode = 0; int Py_DebugFlag = 0; /* Needed by parser.c */ int Py_VerboseFlag = 0; /* Needed by import.c */ int Py_QuietFlag = 0; /* Needed by sysmodule.c */ int Py_InteractiveFlag = 0; /* Needed by Py_FdIsInteractive() below */ int Py_InspectFlag = 0; /* Needed to determine whether to exit at SystemExit */ int Py_OptimizeFlag = 0; /* Needed by compile.c */ int Py_NoSiteFlag = 0; /* Suppress 'import site' */ int Py_BytesWarningFlag = 0; /* Warn on str(bytes) and str(buffer) */ int Py_FrozenFlag = 0; /* Needed by getpath.c */ int Py_IgnoreEnvironmentFlag = 0; /* e.g. PYTHONPATH, PYTHONHOME */ int Py_DontWriteBytecodeFlag = 0; /* Suppress writing bytecode files (*.pyc) */ int Py_NoUserSiteDirectory = 0; /* for -s and site.py */ int Py_UnbufferedStdioFlag = 0; /* Unbuffered binary std{in,out,err} */ int Py_HashRandomizationFlag = 0; /* for -R and PYTHONHASHSEED */ int Py_IsolatedFlag = 0; /* for -I, isolate from user's env */ #ifdef MS_WINDOWS int Py_LegacyWindowsFSEncodingFlag = 0; /* Uses mbcs instead of utf-8 */ int Py_LegacyWindowsStdioFlag = 0; /* Uses FileIO instead of WindowsConsoleIO */ #endif static PyObject * _Py_GetGlobalVariablesAsDict(void) { PyObject *dict, *obj; dict = PyDict_New(); if (dict == NULL) { return NULL; } #define SET_ITEM(KEY, EXPR) \ do { \ obj = (EXPR); \ if (obj == NULL) { \ return NULL; \ } \ int res = PyDict_SetItemString(dict, (KEY), obj); \ Py_DECREF(obj); \ if (res < 0) { \ goto fail; \ } \ } while (0) #define SET_ITEM_INT(VAR) \ SET_ITEM(#VAR, PyLong_FromLong(VAR)) #define FROM_STRING(STR) \ ((STR != NULL) ? \ PyUnicode_FromString(STR) \ : (Py_INCREF(Py_None), Py_None)) #define SET_ITEM_STR(VAR) \ SET_ITEM(#VAR, FROM_STRING(VAR)) SET_ITEM_STR(Py_FileSystemDefaultEncoding); SET_ITEM_INT(Py_HasFileSystemDefaultEncoding); SET_ITEM_STR(Py_FileSystemDefaultEncodeErrors); SET_ITEM_INT(_Py_HasFileSystemDefaultEncodeErrors); SET_ITEM_INT(Py_UTF8Mode); SET_ITEM_INT(Py_DebugFlag); SET_ITEM_INT(Py_VerboseFlag); SET_ITEM_INT(Py_QuietFlag); SET_ITEM_INT(Py_InteractiveFlag); SET_ITEM_INT(Py_InspectFlag); SET_ITEM_INT(Py_OptimizeFlag); SET_ITEM_INT(Py_NoSiteFlag); SET_ITEM_INT(Py_BytesWarningFlag); SET_ITEM_INT(Py_FrozenFlag); SET_ITEM_INT(Py_IgnoreEnvironmentFlag); SET_ITEM_INT(Py_DontWriteBytecodeFlag); SET_ITEM_INT(Py_NoUserSiteDirectory); SET_ITEM_INT(Py_UnbufferedStdioFlag); SET_ITEM_INT(Py_HashRandomizationFlag); SET_ITEM_INT(Py_IsolatedFlag); #ifdef MS_WINDOWS SET_ITEM_INT(Py_LegacyWindowsFSEncodingFlag); SET_ITEM_INT(Py_LegacyWindowsStdioFlag); #endif return dict; fail: Py_DECREF(dict); return NULL; #undef FROM_STRING #undef SET_ITEM #undef SET_ITEM_INT #undef SET_ITEM_STR } /* --- PyStatus ----------------------------------------------- */ PyStatus PyStatus_Ok(void) { return _PyStatus_OK(); } PyStatus PyStatus_Error(const char *err_msg) { return (PyStatus){._type = _PyStatus_TYPE_ERROR, .err_msg = err_msg}; } PyStatus PyStatus_NoMemory(void) { return PyStatus_Error("memory allocation failed"); } PyStatus PyStatus_Exit(int exitcode) { return _PyStatus_EXIT(exitcode); } int PyStatus_IsError(PyStatus status) { return _PyStatus_IS_ERROR(status); } int PyStatus_IsExit(PyStatus status) { return _PyStatus_IS_EXIT(status); } int PyStatus_Exception(PyStatus status) { return _PyStatus_EXCEPTION(status); } /* --- PyWideStringList ------------------------------------------------ */ #ifndef NDEBUG int _PyWideStringList_CheckConsistency(const PyWideStringList *list) { assert(list->length >= 0); if (list->length != 0) { assert(list->items != NULL); } for (Py_ssize_t i = 0; i < list->length; i++) { assert(list->items[i] != NULL); } return 1; } #endif /* Py_DEBUG */ void _PyWideStringList_Clear(PyWideStringList *list) { assert(_PyWideStringList_CheckConsistency(list)); for (Py_ssize_t i=0; i < list->length; i++) { PyMem_RawFree(list->items[i]); } PyMem_RawFree(list->items); list->length = 0; list->items = NULL; } int _PyWideStringList_Copy(PyWideStringList *list, const PyWideStringList *list2) { assert(_PyWideStringList_CheckConsistency(list)); assert(_PyWideStringList_CheckConsistency(list2)); if (list2->length == 0) { _PyWideStringList_Clear(list); return 0; } PyWideStringList copy = _PyWideStringList_INIT; size_t size = list2->length * sizeof(list2->items[0]); copy.items = PyMem_RawMalloc(size); if (copy.items == NULL) { return -1; } for (Py_ssize_t i=0; i < list2->length; i++) { wchar_t *item = _PyMem_RawWcsdup(list2->items[i]); if (item == NULL) { _PyWideStringList_Clear(&copy); return -1; } copy.items[i] = item; copy.length = i + 1; } _PyWideStringList_Clear(list); *list = copy; return 0; } PyStatus PyWideStringList_Insert(PyWideStringList *list, Py_ssize_t index, const wchar_t *item) { Py_ssize_t len = list->length; if (len == PY_SSIZE_T_MAX) { /* length+1 would overflow */ return _PyStatus_NO_MEMORY(); } if (index < 0) { return _PyStatus_ERR("PyWideStringList_Insert index must be >= 0"); } if (index > len) { index = len; } wchar_t *item2 = _PyMem_RawWcsdup(item); if (item2 == NULL) { return _PyStatus_NO_MEMORY(); } size_t size = (len + 1) * sizeof(list->items[0]); wchar_t **items2 = (wchar_t **)PyMem_RawRealloc(list->items, size); if (items2 == NULL) { PyMem_RawFree(item2); return _PyStatus_NO_MEMORY(); } if (index < len) { memmove(&items2[index + 1], &items2[index], (len - index) * sizeof(items2[0])); } items2[index] = item2; list->items = items2; list->length++; return _PyStatus_OK(); } PyStatus PyWideStringList_Append(PyWideStringList *list, const wchar_t *item) { return PyWideStringList_Insert(list, list->length, item); } PyStatus _PyWideStringList_Extend(PyWideStringList *list, const PyWideStringList *list2) { for (Py_ssize_t i = 0; i < list2->length; i++) { PyStatus status = PyWideStringList_Append(list, list2->items[i]); if (_PyStatus_EXCEPTION(status)) { return status; } } return _PyStatus_OK(); } static int _PyWideStringList_Find(PyWideStringList *list, const wchar_t *item) { for (Py_ssize_t i = 0; i < list->length; i++) { if (wcscmp(list->items[i], item) == 0) { return 1; } } return 0; } PyObject* _PyWideStringList_AsList(const PyWideStringList *list) { assert(_PyWideStringList_CheckConsistency(list)); PyObject *pylist = PyList_New(list->length); if (pylist == NULL) { return NULL; } for (Py_ssize_t i = 0; i < list->length; i++) { PyObject *item = PyUnicode_FromWideChar(list->items[i], -1); if (item == NULL) { Py_DECREF(pylist); return NULL; } PyList_SET_ITEM(pylist, i, item); } return pylist; } /* --- Py_SetStandardStreamEncoding() ----------------------------- */ /* Helper to allow an embedding application to override the normal * mechanism that attempts to figure out an appropriate IO encoding */ static char *_Py_StandardStreamEncoding = NULL; static char *_Py_StandardStreamErrors = NULL; int Py_SetStandardStreamEncoding(const char *encoding, const char *errors) { if (Py_IsInitialized()) { /* This is too late to have any effect */ return -1; } int res = 0; /* Py_SetStandardStreamEncoding() can be called before Py_Initialize(), but Py_Initialize() can change the allocator. Use a known allocator to be able to release the memory later. */ PyMemAllocatorEx old_alloc; _PyMem_SetDefaultAllocator(PYMEM_DOMAIN_RAW, &old_alloc); /* Can't call PyErr_NoMemory() on errors, as Python hasn't been * initialised yet. * * However, the raw memory allocators are initialised appropriately * as C static variables, so _PyMem_RawStrdup is OK even though * Py_Initialize hasn't been called yet. */ if (encoding) { PyMem_RawFree(_Py_StandardStreamEncoding); _Py_StandardStreamEncoding = _PyMem_RawStrdup(encoding); if (!_Py_StandardStreamEncoding) { res = -2; goto done; } } if (errors) { PyMem_RawFree(_Py_StandardStreamErrors); _Py_StandardStreamErrors = _PyMem_RawStrdup(errors); if (!_Py_StandardStreamErrors) { PyMem_RawFree(_Py_StandardStreamEncoding); _Py_StandardStreamEncoding = NULL; res = -3; goto done; } } #ifdef MS_WINDOWS if (_Py_StandardStreamEncoding) { /* Overriding the stream encoding implies legacy streams */ Py_LegacyWindowsStdioFlag = 1; } #endif done: PyMem_SetAllocator(PYMEM_DOMAIN_RAW, &old_alloc); return res; } void _Py_ClearStandardStreamEncoding(void) { /* Use the same allocator than Py_SetStandardStreamEncoding() */ PyMemAllocatorEx old_alloc; _PyMem_SetDefaultAllocator(PYMEM_DOMAIN_RAW, &old_alloc); /* We won't need them anymore. */ if (_Py_StandardStreamEncoding) { PyMem_RawFree(_Py_StandardStreamEncoding); _Py_StandardStreamEncoding = NULL; } if (_Py_StandardStreamErrors) { PyMem_RawFree(_Py_StandardStreamErrors); _Py_StandardStreamErrors = NULL; } PyMem_SetAllocator(PYMEM_DOMAIN_RAW, &old_alloc); } /* --- Py_GetArgcArgv() ------------------------------------------- */ /* For Py_GetArgcArgv(); set by _Py_SetArgcArgv() */ static PyWideStringList orig_argv = {.length = 0, .items = NULL}; void _Py_ClearArgcArgv(void) { PyMemAllocatorEx old_alloc; _PyMem_SetDefaultAllocator(PYMEM_DOMAIN_RAW, &old_alloc); _PyWideStringList_Clear(&orig_argv); PyMem_SetAllocator(PYMEM_DOMAIN_RAW, &old_alloc); } static int _Py_SetArgcArgv(Py_ssize_t argc, wchar_t * const *argv) { const PyWideStringList argv_list = {.length = argc, .items = (wchar_t **)argv}; int res; PyMemAllocatorEx old_alloc; _PyMem_SetDefaultAllocator(PYMEM_DOMAIN_RAW, &old_alloc); res = _PyWideStringList_Copy(&orig_argv, &argv_list); PyMem_SetAllocator(PYMEM_DOMAIN_RAW, &old_alloc); return res; } void Py_GetArgcArgv(int *argc, wchar_t ***argv) { *argc = (int)orig_argv.length; *argv = orig_argv.items; } /* --- PyConfig ---------------------------------------------- */ #define DECODE_LOCALE_ERR(NAME, LEN) \ (((LEN) == -2) \ ? _PyStatus_ERR("cannot decode " NAME) \ : _PyStatus_NO_MEMORY()) /* Free memory allocated in config, but don't clear all attributes */ void PyConfig_Clear(PyConfig *config) { #define CLEAR(ATTR) \ do { \ PyMem_RawFree(ATTR); \ ATTR = NULL; \ } while (0) CLEAR(config->pycache_prefix); CLEAR(config->pythonpath_env); CLEAR(config->home); CLEAR(config->program_name); _PyWideStringList_Clear(&config->argv); _PyWideStringList_Clear(&config->warnoptions); _PyWideStringList_Clear(&config->xoptions); _PyWideStringList_Clear(&config->module_search_paths); config->module_search_paths_set = 0; CLEAR(config->executable); CLEAR(config->base_executable); CLEAR(config->prefix); CLEAR(config->base_prefix); CLEAR(config->exec_prefix); CLEAR(config->base_exec_prefix); CLEAR(config->platlibdir); CLEAR(config->filesystem_encoding); CLEAR(config->filesystem_errors); CLEAR(config->stdio_encoding); CLEAR(config->stdio_errors); CLEAR(config->run_command); CLEAR(config->run_module); CLEAR(config->run_filename); CLEAR(config->check_hash_pycs_mode); _PyWideStringList_Clear(&config->_orig_argv); #undef CLEAR } void _PyConfig_InitCompatConfig(PyConfig *config) { memset(config, 0, sizeof(*config)); config->_config_init = (int)_PyConfig_INIT_COMPAT; config->isolated = -1; config->use_environment = -1; config->dev_mode = -1; config->install_signal_handlers = 1; config->use_hash_seed = -1; config->faulthandler = -1; config->tracemalloc = -1; config->module_search_paths_set = 0; config->parse_argv = 0; config->site_import = -1; config->bytes_warning = -1; config->inspect = -1; config->interactive = -1; config->optimization_level = -1; config->parser_debug= -1; config->write_bytecode = -1; config->verbose = -1; config->quiet = -1; config->user_site_directory = -1; config->configure_c_stdio = 0; config->buffered_stdio = -1; config->_install_importlib = 1; config->check_hash_pycs_mode = NULL; config->pathconfig_warnings = -1; config->_init_main = 1; config->_isolated_interpreter = 0; #ifdef MS_WINDOWS config->legacy_windows_stdio = -1; #endif config->_use_peg_parser = 1; } static void config_init_defaults(PyConfig *config) { _PyConfig_InitCompatConfig(config); config->isolated = 0; config->use_environment = 1; config->site_import = 1; config->bytes_warning = 0; config->inspect = 0; config->interactive = 0; config->optimization_level = 0; config->parser_debug= 0; config->write_bytecode = 1; config->verbose = 0; config->quiet = 0; config->user_site_directory = 1; config->buffered_stdio = 1; config->pathconfig_warnings = 1; #ifdef MS_WINDOWS config->legacy_windows_stdio = 0; #endif } void PyConfig_InitPythonConfig(PyConfig *config) { config_init_defaults(config); config->_config_init = (int)_PyConfig_INIT_PYTHON; config->configure_c_stdio = 1; config->parse_argv = 1; } void PyConfig_InitIsolatedConfig(PyConfig *config) { config_init_defaults(config); config->_config_init = (int)_PyConfig_INIT_ISOLATED; config->isolated = 1; config->use_environment = 0; config->user_site_directory = 0; config->dev_mode = 0; config->install_signal_handlers = 0; config->use_hash_seed = 0; config->faulthandler = 0; config->tracemalloc = 0; config->pathconfig_warnings = 0; #ifdef MS_WINDOWS config->legacy_windows_stdio = 0; #endif } /* Copy str into *config_str (duplicate the string) */ PyStatus PyConfig_SetString(PyConfig *config, wchar_t **config_str, const wchar_t *str) { PyStatus status = _Py_PreInitializeFromConfig(config, NULL); if (_PyStatus_EXCEPTION(status)) { return status; } wchar_t *str2; if (str != NULL) { str2 = _PyMem_RawWcsdup(str); if (str2 == NULL) { return _PyStatus_NO_MEMORY(); } } else { str2 = NULL; } PyMem_RawFree(*config_str); *config_str = str2; return _PyStatus_OK(); } static PyStatus config_set_bytes_string(PyConfig *config, wchar_t **config_str, const char *str, const char *decode_err_msg) { PyStatus status = _Py_PreInitializeFromConfig(config, NULL); if (_PyStatus_EXCEPTION(status)) { return status; } wchar_t *str2; if (str != NULL) { size_t len; str2 = Py_DecodeLocale(str, &len); if (str2 == NULL) { if (len == (size_t)-2) { return _PyStatus_ERR(decode_err_msg); } else { return _PyStatus_NO_MEMORY(); } } } else { str2 = NULL; } PyMem_RawFree(*config_str); *config_str = str2; return _PyStatus_OK(); } #define CONFIG_SET_BYTES_STR(config, config_str, str, NAME) \ config_set_bytes_string(config, config_str, str, "cannot decode " NAME) /* Decode str using Py_DecodeLocale() and set the result into *config_str. Pre-initialize Python if needed to ensure that encodings are properly configured. */ PyStatus PyConfig_SetBytesString(PyConfig *config, wchar_t **config_str, const char *str) { return CONFIG_SET_BYTES_STR(config, config_str, str, "string"); } PyStatus _PyConfig_Copy(PyConfig *config, const PyConfig *config2) { PyStatus status; PyConfig_Clear(config); #define COPY_ATTR(ATTR) config->ATTR = config2->ATTR #define COPY_WSTR_ATTR(ATTR) \ do { \ status = PyConfig_SetString(config, &config->ATTR, config2->ATTR); \ if (_PyStatus_EXCEPTION(status)) { \ return status; \ } \ } while (0) #define COPY_WSTRLIST(LIST) \ do { \ if (_PyWideStringList_Copy(&config->LIST, &config2->LIST) < 0) { \ return _PyStatus_NO_MEMORY(); \ } \ } while (0) COPY_ATTR(_config_init); COPY_ATTR(isolated); COPY_ATTR(use_environment); COPY_ATTR(dev_mode); COPY_ATTR(_use_peg_parser); COPY_ATTR(install_signal_handlers); COPY_ATTR(use_hash_seed); COPY_ATTR(hash_seed); COPY_ATTR(_install_importlib); COPY_ATTR(faulthandler); COPY_ATTR(tracemalloc); COPY_ATTR(import_time); COPY_ATTR(show_ref_count); COPY_ATTR(dump_refs); COPY_ATTR(malloc_stats); COPY_WSTR_ATTR(pycache_prefix); COPY_WSTR_ATTR(pythonpath_env); COPY_WSTR_ATTR(home); COPY_WSTR_ATTR(program_name); COPY_ATTR(parse_argv); COPY_WSTRLIST(argv); COPY_WSTRLIST(warnoptions); COPY_WSTRLIST(xoptions); COPY_WSTRLIST(module_search_paths); COPY_ATTR(module_search_paths_set); COPY_WSTR_ATTR(executable); COPY_WSTR_ATTR(base_executable); COPY_WSTR_ATTR(prefix); COPY_WSTR_ATTR(base_prefix); COPY_WSTR_ATTR(exec_prefix); COPY_WSTR_ATTR(base_exec_prefix); COPY_WSTR_ATTR(platlibdir); COPY_ATTR(site_import); COPY_ATTR(bytes_warning); COPY_ATTR(inspect); COPY_ATTR(interactive); COPY_ATTR(optimization_level); COPY_ATTR(parser_debug); COPY_ATTR(write_bytecode); COPY_ATTR(verbose); COPY_ATTR(quiet); COPY_ATTR(user_site_directory); COPY_ATTR(configure_c_stdio); COPY_ATTR(buffered_stdio); COPY_WSTR_ATTR(filesystem_encoding); COPY_WSTR_ATTR(filesystem_errors); COPY_WSTR_ATTR(stdio_encoding); COPY_WSTR_ATTR(stdio_errors); #ifdef MS_WINDOWS COPY_ATTR(legacy_windows_stdio); #endif COPY_ATTR(skip_source_first_line); COPY_WSTR_ATTR(run_command); COPY_WSTR_ATTR(run_module); COPY_WSTR_ATTR(run_filename); COPY_WSTR_ATTR(check_hash_pycs_mode); COPY_ATTR(pathconfig_warnings); COPY_ATTR(_init_main); COPY_ATTR(_isolated_interpreter); COPY_WSTRLIST(_orig_argv); #undef COPY_ATTR #undef COPY_WSTR_ATTR #undef COPY_WSTRLIST return _PyStatus_OK(); } static PyObject * config_as_dict(const PyConfig *config) { PyObject *dict; dict = PyDict_New(); if (dict == NULL) { return NULL; } #define SET_ITEM(KEY, EXPR) \ do { \ PyObject *obj = (EXPR); \ if (obj == NULL) { \ goto fail; \ } \ int res = PyDict_SetItemString(dict, (KEY), obj); \ Py_DECREF(obj); \ if (res < 0) { \ goto fail; \ } \ } while (0) #define SET_ITEM_INT(ATTR) \ SET_ITEM(#ATTR, PyLong_FromLong(config->ATTR)) #define SET_ITEM_UINT(ATTR) \ SET_ITEM(#ATTR, PyLong_FromUnsignedLong(config->ATTR)) #define FROM_WSTRING(STR) \ ((STR != NULL) ? \ PyUnicode_FromWideChar(STR, -1) \ : (Py_INCREF(Py_None), Py_None)) #define SET_ITEM_WSTR(ATTR) \ SET_ITEM(#ATTR, FROM_WSTRING(config->ATTR)) #define SET_ITEM_WSTRLIST(LIST) \ SET_ITEM(#LIST, _PyWideStringList_AsList(&config->LIST)) SET_ITEM_INT(_config_init); SET_ITEM_INT(isolated); SET_ITEM_INT(use_environment); SET_ITEM_INT(dev_mode); SET_ITEM_INT(_use_peg_parser); SET_ITEM_INT(install_signal_handlers); SET_ITEM_INT(use_hash_seed); SET_ITEM_UINT(hash_seed); SET_ITEM_INT(faulthandler); SET_ITEM_INT(tracemalloc); SET_ITEM_INT(import_time); SET_ITEM_INT(show_ref_count); SET_ITEM_INT(dump_refs); SET_ITEM_INT(malloc_stats); SET_ITEM_WSTR(filesystem_encoding); SET_ITEM_WSTR(filesystem_errors); SET_ITEM_WSTR(pycache_prefix); SET_ITEM_WSTR(program_name); SET_ITEM_INT(parse_argv); SET_ITEM_WSTRLIST(argv); SET_ITEM_WSTRLIST(xoptions); SET_ITEM_WSTRLIST(warnoptions); SET_ITEM_WSTR(pythonpath_env); SET_ITEM_WSTR(home); SET_ITEM_WSTRLIST(module_search_paths); SET_ITEM_WSTR(executable); SET_ITEM_WSTR(base_executable); SET_ITEM_WSTR(prefix); SET_ITEM_WSTR(base_prefix); SET_ITEM_WSTR(exec_prefix); SET_ITEM_WSTR(base_exec_prefix); SET_ITEM_WSTR(platlibdir); SET_ITEM_INT(site_import); SET_ITEM_INT(bytes_warning); SET_ITEM_INT(inspect); SET_ITEM_INT(interactive); SET_ITEM_INT(optimization_level); SET_ITEM_INT(parser_debug); SET_ITEM_INT(write_bytecode); SET_ITEM_INT(verbose); SET_ITEM_INT(quiet); SET_ITEM_INT(user_site_directory); SET_ITEM_INT(configure_c_stdio); SET_ITEM_INT(buffered_stdio); SET_ITEM_WSTR(stdio_encoding); SET_ITEM_WSTR(stdio_errors); #ifdef MS_WINDOWS SET_ITEM_INT(legacy_windows_stdio); #endif SET_ITEM_INT(skip_source_first_line); SET_ITEM_WSTR(run_command); SET_ITEM_WSTR(run_module); SET_ITEM_WSTR(run_filename); SET_ITEM_INT(_install_importlib); SET_ITEM_WSTR(check_hash_pycs_mode); SET_ITEM_INT(pathconfig_warnings); SET_ITEM_INT(_init_main); SET_ITEM_INT(_isolated_interpreter); SET_ITEM_WSTRLIST(_orig_argv); return dict; fail: Py_DECREF(dict); return NULL; #undef FROM_WSTRING #undef SET_ITEM #undef SET_ITEM_INT #undef SET_ITEM_UINT #undef SET_ITEM_WSTR #undef SET_ITEM_WSTRLIST } static const char* config_get_env(const PyConfig *config, const char *name) { return _Py_GetEnv(config->use_environment, name); } /* Get a copy of the environment variable as wchar_t*. Return 0 on success, but *dest can be NULL. Return -1 on memory allocation failure. Return -2 on decoding error. */ static PyStatus config_get_env_dup(PyConfig *config, wchar_t **dest, wchar_t *wname, char *name, const char *decode_err_msg) { assert(*dest == NULL); assert(config->use_environment >= 0); if (!config->use_environment) { *dest = NULL; return _PyStatus_OK(); } #ifdef MS_WINDOWS const wchar_t *var = _wgetenv(wname); if (!var || var[0] == '\0') { *dest = NULL; return _PyStatus_OK(); } return PyConfig_SetString(config, dest, var); #else const char *var = getenv(name); if (!var || var[0] == '\0') { *dest = NULL; return _PyStatus_OK(); } return config_set_bytes_string(config, dest, var, decode_err_msg); #endif } #define CONFIG_GET_ENV_DUP(CONFIG, DEST, WNAME, NAME) \ config_get_env_dup(CONFIG, DEST, WNAME, NAME, "cannot decode " NAME) static void config_get_global_vars(PyConfig *config) { if (config->_config_init != _PyConfig_INIT_COMPAT) { /* Python and Isolated configuration ignore global variables */ return; } #define COPY_FLAG(ATTR, VALUE) \ if (config->ATTR == -1) { \ config->ATTR = VALUE; \ } #define COPY_NOT_FLAG(ATTR, VALUE) \ if (config->ATTR == -1) { \ config->ATTR = !(VALUE); \ } COPY_FLAG(isolated, Py_IsolatedFlag); COPY_NOT_FLAG(use_environment, Py_IgnoreEnvironmentFlag); COPY_FLAG(bytes_warning, Py_BytesWarningFlag); COPY_FLAG(inspect, Py_InspectFlag); COPY_FLAG(interactive, Py_InteractiveFlag); COPY_FLAG(optimization_level, Py_OptimizeFlag); COPY_FLAG(parser_debug, Py_DebugFlag); COPY_FLAG(verbose, Py_VerboseFlag); COPY_FLAG(quiet, Py_QuietFlag); #ifdef MS_WINDOWS COPY_FLAG(legacy_windows_stdio, Py_LegacyWindowsStdioFlag); #endif COPY_NOT_FLAG(pathconfig_warnings, Py_FrozenFlag); COPY_NOT_FLAG(buffered_stdio, Py_UnbufferedStdioFlag); COPY_NOT_FLAG(site_import, Py_NoSiteFlag); COPY_NOT_FLAG(write_bytecode, Py_DontWriteBytecodeFlag); COPY_NOT_FLAG(user_site_directory, Py_NoUserSiteDirectory); #undef COPY_FLAG #undef COPY_NOT_FLAG } /* Set Py_xxx global configuration variables from 'config' configuration. */ static void config_set_global_vars(const PyConfig *config) { #define COPY_FLAG(ATTR, VAR) \ if (config->ATTR != -1) { \ VAR = config->ATTR; \ } #define COPY_NOT_FLAG(ATTR, VAR) \ if (config->ATTR != -1) { \ VAR = !config->ATTR; \ } COPY_FLAG(isolated, Py_IsolatedFlag); COPY_NOT_FLAG(use_environment, Py_IgnoreEnvironmentFlag); COPY_FLAG(bytes_warning, Py_BytesWarningFlag); COPY_FLAG(inspect, Py_InspectFlag); COPY_FLAG(interactive, Py_InteractiveFlag); COPY_FLAG(optimization_level, Py_OptimizeFlag); COPY_FLAG(parser_debug, Py_DebugFlag); COPY_FLAG(verbose, Py_VerboseFlag); COPY_FLAG(quiet, Py_QuietFlag); #ifdef MS_WINDOWS COPY_FLAG(legacy_windows_stdio, Py_LegacyWindowsStdioFlag); #endif COPY_NOT_FLAG(pathconfig_warnings, Py_FrozenFlag); COPY_NOT_FLAG(buffered_stdio, Py_UnbufferedStdioFlag); COPY_NOT_FLAG(site_import, Py_NoSiteFlag); COPY_NOT_FLAG(write_bytecode, Py_DontWriteBytecodeFlag); COPY_NOT_FLAG(user_site_directory, Py_NoUserSiteDirectory); /* Random or non-zero hash seed */ Py_HashRandomizationFlag = (config->use_hash_seed == 0 || config->hash_seed != 0); #undef COPY_FLAG #undef COPY_NOT_FLAG } /* Get the program name: use PYTHONEXECUTABLE and __PYVENV_LAUNCHER__ environment variables on macOS if available. */ static PyStatus config_init_program_name(PyConfig *config) { PyStatus status; /* If Py_SetProgramName() was called, use its value */ const wchar_t *program_name = _Py_path_config.program_name; if (program_name != NULL) { config->program_name = _PyMem_RawWcsdup(program_name); if (config->program_name == NULL) { return _PyStatus_NO_MEMORY(); } return _PyStatus_OK(); } #ifdef __APPLE__ /* On MacOS X, when the Python interpreter is embedded in an application bundle, it gets executed by a bootstrapping script that does os.execve() with an argv[0] that's different from the actual Python executable. This is needed to keep the Finder happy, or rather, to work around Apple's overly strict requirements of the process name. However, we still need a usable sys.executable, so the actual executable path is passed in an environment variable. See Lib/plat-mac/bundlebuilder.py for details about the bootstrap script. */ const char *p = config_get_env(config, "PYTHONEXECUTABLE"); if (p != NULL) { status = CONFIG_SET_BYTES_STR(config, &config->program_name, p, "PYTHONEXECUTABLE environment variable"); if (_PyStatus_EXCEPTION(status)) { return status; } return _PyStatus_OK(); } #ifdef WITH_NEXT_FRAMEWORK else { const char* pyvenv_launcher = getenv("__PYVENV_LAUNCHER__"); if (pyvenv_launcher && *pyvenv_launcher) { /* Used by Mac/Tools/pythonw.c to forward * the argv0 of the stub executable */ status = CONFIG_SET_BYTES_STR(config, &config->program_name, pyvenv_launcher, "__PYVENV_LAUNCHER__ environment variable"); if (_PyStatus_EXCEPTION(status)) { return status; } /* * This environment variable is used to communicate between * the stub launcher and the real interpreter and isn't needed * beyond this point. * * Clean up to avoid problems when launching other programs * later on. */ (void)unsetenv("__PYVENV_LAUNCHER__"); return _PyStatus_OK(); } } #endif /* WITH_NEXT_FRAMEWORK */ #endif /* __APPLE__ */ /* Use argv[0] if available and non-empty */ const PyWideStringList *argv = &config->argv; if (argv->length >= 1 && argv->items[0][0] != L'\0') { config->program_name = _PyMem_RawWcsdup(argv->items[0]); if (config->program_name == NULL) { return _PyStatus_NO_MEMORY(); } return _PyStatus_OK(); } /* Last fall back: hardcoded name */ #ifdef MS_WINDOWS const wchar_t *default_program_name = L"python"; #else const wchar_t *default_program_name = L"python3"; #endif status = PyConfig_SetString(config, &config->program_name, default_program_name); if (_PyStatus_EXCEPTION(status)) { return status; } return _PyStatus_OK(); } static PyStatus config_init_executable(PyConfig *config) { assert(config->executable == NULL); /* If Py_SetProgramFullPath() was called, use its value */ const wchar_t *program_full_path = _Py_path_config.program_full_path; if (program_full_path != NULL) { PyStatus status = PyConfig_SetString(config, &config->executable, program_full_path); if (_PyStatus_EXCEPTION(status)) { return status; } return _PyStatus_OK(); } return _PyStatus_OK(); } static const wchar_t* config_get_xoption(const PyConfig *config, wchar_t *name) { return _Py_get_xoption(&config->xoptions, name); } static PyStatus config_init_home(PyConfig *config) { assert(config->home == NULL); /* If Py_SetPythonHome() was called, use its value */ wchar_t *home = _Py_path_config.home; if (home) { PyStatus status = PyConfig_SetString(config, &config->home, home); if (_PyStatus_EXCEPTION(status)) { return status; } return _PyStatus_OK(); } return CONFIG_GET_ENV_DUP(config, &config->home, L"PYTHONHOME", "PYTHONHOME"); } static PyStatus config_init_hash_seed(PyConfig *config) { const char *seed_text = config_get_env(config, "PYTHONHASHSEED"); Py_BUILD_ASSERT(sizeof(_Py_HashSecret_t) == sizeof(_Py_HashSecret.uc)); /* Convert a text seed to a numeric one */ if (seed_text && strcmp(seed_text, "random") != 0) { const char *endptr = seed_text; unsigned long seed; errno = 0; seed = strtoul(seed_text, (char **)&endptr, 10); if (*endptr != '\0' || seed > 4294967295UL || (errno == ERANGE && seed == ULONG_MAX)) { return _PyStatus_ERR("PYTHONHASHSEED must be \"random\" " "or an integer in range [0; 4294967295]"); } /* Use a specific hash */ config->use_hash_seed = 1; config->hash_seed = seed; } else { /* Use a random hash */ config->use_hash_seed = 0; config->hash_seed = 0; } return _PyStatus_OK(); } static int config_wstr_to_int(const wchar_t *wstr, int *result) { const wchar_t *endptr = wstr; errno = 0; long value = wcstol(wstr, (wchar_t **)&endptr, 10); if (*endptr != '\0' || errno == ERANGE) { return -1; } if (value < INT_MIN || value > INT_MAX) { return -1; } *result = (int)value; return 0; } static PyStatus config_read_env_vars(PyConfig *config) { PyStatus status; int use_env = config->use_environment; /* Get environment variables */ _Py_get_env_flag(use_env, &config->parser_debug, "PYTHONDEBUG"); _Py_get_env_flag(use_env, &config->verbose, "PYTHONVERBOSE"); _Py_get_env_flag(use_env, &config->optimization_level, "PYTHONOPTIMIZE"); _Py_get_env_flag(use_env, &config->inspect, "PYTHONINSPECT"); int dont_write_bytecode = 0; _Py_get_env_flag(use_env, &dont_write_bytecode, "PYTHONDONTWRITEBYTECODE"); if (dont_write_bytecode) { config->write_bytecode = 0; } int no_user_site_directory = 0; _Py_get_env_flag(use_env, &no_user_site_directory, "PYTHONNOUSERSITE"); if (no_user_site_directory) { config->user_site_directory = 0; } int unbuffered_stdio = 0; _Py_get_env_flag(use_env, &unbuffered_stdio, "PYTHONUNBUFFERED"); if (unbuffered_stdio) { config->buffered_stdio = 0; } #ifdef MS_WINDOWS _Py_get_env_flag(use_env, &config->legacy_windows_stdio, "PYTHONLEGACYWINDOWSSTDIO"); #endif if (config_get_env(config, "PYTHONDUMPREFS")) { config->dump_refs = 1; } if (config_get_env(config, "PYTHONMALLOCSTATS")) { config->malloc_stats = 1; } if (config->pythonpath_env == NULL) { status = CONFIG_GET_ENV_DUP(config, &config->pythonpath_env, L"PYTHONPATH", "PYTHONPATH"); if (_PyStatus_EXCEPTION(status)) { return status; } } if(config->platlibdir == NULL) { status = CONFIG_GET_ENV_DUP(config, &config->platlibdir, L"PYTHONPLATLIBDIR", "PYTHONPLATLIBDIR"); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->use_hash_seed < 0) { status = config_init_hash_seed(config); if (_PyStatus_EXCEPTION(status)) { return status; } } return _PyStatus_OK(); } static PyStatus config_init_tracemalloc(PyConfig *config) { int nframe; int valid; const char *env = config_get_env(config, "PYTHONTRACEMALLOC"); if (env) { if (!_Py_str_to_int(env, &nframe)) { valid = (nframe >= 0); } else { valid = 0; } if (!valid) { return _PyStatus_ERR("PYTHONTRACEMALLOC: invalid number of frames"); } config->tracemalloc = nframe; } const wchar_t *xoption = config_get_xoption(config, L"tracemalloc"); if (xoption) { const wchar_t *sep = wcschr(xoption, L'='); if (sep) { if (!config_wstr_to_int(sep + 1, &nframe)) { valid = (nframe >= 0); } else { valid = 0; } if (!valid) { return _PyStatus_ERR("-X tracemalloc=NFRAME: " "invalid number of frames"); } } else { /* -X tracemalloc behaves as -X tracemalloc=1 */ nframe = 1; } config->tracemalloc = nframe; } return _PyStatus_OK(); } static PyStatus config_init_pycache_prefix(PyConfig *config) { assert(config->pycache_prefix == NULL); const wchar_t *xoption = config_get_xoption(config, L"pycache_prefix"); if (xoption) { const wchar_t *sep = wcschr(xoption, L'='); if (sep && wcslen(sep) > 1) { config->pycache_prefix = _PyMem_RawWcsdup(sep + 1); if (config->pycache_prefix == NULL) { return _PyStatus_NO_MEMORY(); } } else { // PYTHONPYCACHEPREFIX env var ignored // if "-X pycache_prefix=" option is used config->pycache_prefix = NULL; } return _PyStatus_OK(); } return CONFIG_GET_ENV_DUP(config, &config->pycache_prefix, L"PYTHONPYCACHEPREFIX", "PYTHONPYCACHEPREFIX"); } static PyStatus config_read_complex_options(PyConfig *config) { /* More complex options configured by env var and -X option */ if (config->faulthandler < 0) { if (config_get_env(config, "PYTHONFAULTHANDLER") || config_get_xoption(config, L"faulthandler")) { config->faulthandler = 1; } } if (config_get_env(config, "PYTHONPROFILEIMPORTTIME") || config_get_xoption(config, L"importtime")) { config->import_time = 1; } if (config_get_env(config, "PYTHONOLDPARSER") || config_get_xoption(config, L"oldparser")) { config->_use_peg_parser = 0; } PyStatus status; if (config->tracemalloc < 0) { status = config_init_tracemalloc(config); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->pycache_prefix == NULL) { status = config_init_pycache_prefix(config); if (_PyStatus_EXCEPTION(status)) { return status; } } return _PyStatus_OK(); } static const wchar_t * config_get_stdio_errors(void) { #ifndef MS_WINDOWS const char *loc = setlocale(LC_CTYPE, NULL); if (loc != NULL) { /* surrogateescape is the default in the legacy C and POSIX locales */ if (strcmp(loc, "C") == 0 || strcmp(loc, "POSIX") == 0) { return L"surrogateescape"; } #ifdef PY_COERCE_C_LOCALE /* surrogateescape is the default in locale coercion target locales */ if (_Py_IsLocaleCoercionTarget(loc)) { return L"surrogateescape"; } #endif } return L"strict"; #else /* On Windows, always use surrogateescape by default */ return L"surrogateescape"; #endif } static PyStatus config_get_locale_encoding(PyConfig *config, wchar_t **locale_encoding) { #ifdef MS_WINDOWS char encoding[20]; PyOS_snprintf(encoding, sizeof(encoding), "cp%u", GetACP()); return PyConfig_SetBytesString(config, locale_encoding, encoding); #elif defined(_Py_FORCE_UTF8_LOCALE) return PyConfig_SetString(config, locale_encoding, L"utf-8"); #else const char *encoding = nl_langinfo(CODESET); if (!encoding || encoding[0] == '\0') { return _PyStatus_ERR("failed to get the locale encoding: " "nl_langinfo(CODESET) failed"); } /* nl_langinfo(CODESET) is decoded by Py_DecodeLocale() */ return CONFIG_SET_BYTES_STR(config, locale_encoding, encoding, "nl_langinfo(CODESET)"); #endif } static PyStatus config_init_stdio_encoding(PyConfig *config, const PyPreConfig *preconfig) { PyStatus status; /* If Py_SetStandardStreamEncoding() have been called, use these parameters. */ if (config->stdio_encoding == NULL && _Py_StandardStreamEncoding != NULL) { status = CONFIG_SET_BYTES_STR(config, &config->stdio_encoding, _Py_StandardStreamEncoding, "_Py_StandardStreamEncoding"); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->stdio_errors == NULL && _Py_StandardStreamErrors != NULL) { status = CONFIG_SET_BYTES_STR(config, &config->stdio_errors, _Py_StandardStreamErrors, "_Py_StandardStreamErrors"); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->stdio_encoding != NULL && config->stdio_errors != NULL) { return _PyStatus_OK(); } /* PYTHONIOENCODING environment variable */ const char *opt = config_get_env(config, "PYTHONIOENCODING"); if (opt) { char *pythonioencoding = _PyMem_RawStrdup(opt); if (pythonioencoding == NULL) { return _PyStatus_NO_MEMORY(); } char *errors = strchr(pythonioencoding, ':'); if (errors) { *errors = '\0'; errors++; if (!errors[0]) { errors = NULL; } } /* Does PYTHONIOENCODING contain an encoding? */ if (pythonioencoding[0]) { if (config->stdio_encoding == NULL) { status = CONFIG_SET_BYTES_STR(config, &config->stdio_encoding, pythonioencoding, "PYTHONIOENCODING environment variable"); if (_PyStatus_EXCEPTION(status)) { PyMem_RawFree(pythonioencoding); return status; } } /* If the encoding is set but not the error handler, use "strict" error handler by default. PYTHONIOENCODING=latin1 behaves as PYTHONIOENCODING=latin1:strict. */ if (!errors) { errors = "strict"; } } if (config->stdio_errors == NULL && errors != NULL) { status = CONFIG_SET_BYTES_STR(config, &config->stdio_errors, errors, "PYTHONIOENCODING environment variable"); if (_PyStatus_EXCEPTION(status)) { PyMem_RawFree(pythonioencoding); return status; } } PyMem_RawFree(pythonioencoding); } /* UTF-8 Mode uses UTF-8/surrogateescape */ if (preconfig->utf8_mode) { if (config->stdio_encoding == NULL) { status = PyConfig_SetString(config, &config->stdio_encoding, L"utf-8"); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->stdio_errors == NULL) { status = PyConfig_SetString(config, &config->stdio_errors, L"surrogateescape"); if (_PyStatus_EXCEPTION(status)) { return status; } } } /* Choose the default error handler based on the current locale. */ if (config->stdio_encoding == NULL) { status = config_get_locale_encoding(config, &config->stdio_encoding); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->stdio_errors == NULL) { const wchar_t *errors = config_get_stdio_errors(); assert(errors != NULL); status = PyConfig_SetString(config, &config->stdio_errors, errors); if (_PyStatus_EXCEPTION(status)) { return status; } } return _PyStatus_OK(); } static PyStatus config_init_fs_encoding(PyConfig *config, const PyPreConfig *preconfig) { PyStatus status; if (config->filesystem_encoding == NULL) { #ifdef _Py_FORCE_UTF8_FS_ENCODING status = PyConfig_SetString(config, &config->filesystem_encoding, L"utf-8"); #else #ifdef MS_WINDOWS if (preconfig->legacy_windows_fs_encoding) { /* Legacy Windows filesystem encoding: mbcs/replace */ status = PyConfig_SetString(config, &config->filesystem_encoding, L"mbcs"); } else #endif if (preconfig->utf8_mode) { status = PyConfig_SetString(config, &config->filesystem_encoding, L"utf-8"); } #ifndef MS_WINDOWS else if (_Py_GetForceASCII()) { status = PyConfig_SetString(config, &config->filesystem_encoding, L"ascii"); } #endif else { #ifdef MS_WINDOWS /* Windows defaults to utf-8/surrogatepass (PEP 529). */ status = PyConfig_SetString(config, &config->filesystem_encoding, L"utf-8"); #else status = config_get_locale_encoding(config, &config->filesystem_encoding); #endif } #endif /* !_Py_FORCE_UTF8_FS_ENCODING */ if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->filesystem_errors == NULL) { const wchar_t *errors; #ifdef MS_WINDOWS if (preconfig->legacy_windows_fs_encoding) { errors = L"replace"; } else { errors = L"surrogatepass"; } #else errors = L"surrogateescape"; #endif status = PyConfig_SetString(config, &config->filesystem_errors, errors); if (_PyStatus_EXCEPTION(status)) { return status; } } return _PyStatus_OK(); } static PyStatus config_read(PyConfig *config) { PyStatus status; const PyPreConfig *preconfig = &_PyRuntime.preconfig; if (config->use_environment) { status = config_read_env_vars(config); if (_PyStatus_EXCEPTION(status)) { return status; } } /* -X options */ if (config_get_xoption(config, L"showrefcount")) { config->show_ref_count = 1; } status = config_read_complex_options(config); if (_PyStatus_EXCEPTION(status)) { return status; } if (config->home == NULL) { status = config_init_home(config); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->executable == NULL) { status = config_init_executable(config); if (_PyStatus_EXCEPTION(status)) { return status; } } if(config->platlibdir == NULL) { status = CONFIG_SET_BYTES_STR(config, &config->platlibdir, PLATLIBDIR, "PLATLIBDIR macro"); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->_install_importlib) { status = _PyConfig_InitPathConfig(config); if (_PyStatus_EXCEPTION(status)) { return status; } } /* default values */ if (config->dev_mode) { if (config->faulthandler < 0) { config->faulthandler = 1; } } if (config->faulthandler < 0) { config->faulthandler = 0; } if (config->tracemalloc < 0) { config->tracemalloc = 0; } if (config->use_hash_seed < 0) { config->use_hash_seed = 0; config->hash_seed = 0; } if (config->filesystem_encoding == NULL || config->filesystem_errors == NULL) { status = config_init_fs_encoding(config, preconfig); if (_PyStatus_EXCEPTION(status)) { return status; } } status = config_init_stdio_encoding(config, preconfig); if (_PyStatus_EXCEPTION(status)) { return status; } if (config->argv.length < 1) { /* Ensure at least one (empty) argument is seen */ status = PyWideStringList_Append(&config->argv, L""); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->check_hash_pycs_mode == NULL) { status = PyConfig_SetString(config, &config->check_hash_pycs_mode, L"default"); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->configure_c_stdio < 0) { config->configure_c_stdio = 1; } return _PyStatus_OK(); } static void config_init_stdio(const PyConfig *config) { #if defined(MS_WINDOWS) || defined(__CYGWIN__) /* don't translate newlines (\r\n <=> \n) */ _setmode(fileno(stdin), O_BINARY); _setmode(fileno(stdout), O_BINARY); _setmode(fileno(stderr), O_BINARY); #endif if (!config->buffered_stdio) { #ifdef HAVE_SETVBUF setvbuf(stdin, (char *)NULL, _IONBF, BUFSIZ); setvbuf(stdout, (char *)NULL, _IONBF, BUFSIZ); setvbuf(stderr, (char *)NULL, _IONBF, BUFSIZ); #else /* !HAVE_SETVBUF */ setbuf(stdin, (char *)NULL); setbuf(stdout, (char *)NULL); setbuf(stderr, (char *)NULL); #endif /* !HAVE_SETVBUF */ } else if (config->interactive) { #ifdef MS_WINDOWS /* Doesn't have to have line-buffered -- use unbuffered */ /* Any set[v]buf(stdin, ...) screws up Tkinter :-( */ setvbuf(stdout, (char *)NULL, _IONBF, BUFSIZ); #else /* !MS_WINDOWS */ #ifdef HAVE_SETVBUF setvbuf(stdin, (char *)NULL, _IOLBF, BUFSIZ); setvbuf(stdout, (char *)NULL, _IOLBF, BUFSIZ); #endif /* HAVE_SETVBUF */ #endif /* !MS_WINDOWS */ /* Leave stderr alone - it should be unbuffered anyway. */ } } /* Write the configuration: - set Py_xxx global configuration variables - initialize C standard streams (stdin, stdout, stderr) */ PyStatus _PyConfig_Write(const PyConfig *config, _PyRuntimeState *runtime) { config_set_global_vars(config); if (config->configure_c_stdio) { config_init_stdio(config); } /* Write the new pre-configuration into _PyRuntime */ PyPreConfig *preconfig = &runtime->preconfig; preconfig->isolated = config->isolated; preconfig->use_environment = config->use_environment; preconfig->dev_mode = config->dev_mode; if (_Py_SetArgcArgv(config->_orig_argv.length, config->_orig_argv.items) < 0) { return _PyStatus_NO_MEMORY(); } return _PyStatus_OK(); } /* --- PyConfig command line parser -------------------------- */ static void config_usage(int error, const wchar_t* program) { FILE *f = error ? stderr : stdout; fprintf(f, usage_line, program); if (error) fprintf(f, "Try `python -h' for more information.\n"); else { fputs(usage_1, f); fputs(usage_2, f); fputs(usage_3, f); fprintf(f, usage_4, (wint_t)DELIM); fprintf(f, usage_5, (wint_t)DELIM, PYTHONHOMEHELP); fputs(usage_6, f); } } /* Parse the command line arguments */ static PyStatus config_parse_cmdline(PyConfig *config, PyWideStringList *warnoptions, Py_ssize_t *opt_index) { PyStatus status; const PyWideStringList *argv = &config->argv; int print_version = 0; const wchar_t* program = config->program_name; _PyOS_ResetGetOpt(); do { int longindex = -1; int c = _PyOS_GetOpt(argv->length, argv->items, &longindex); if (c == EOF) { break; } if (c == 'c') { if (config->run_command == NULL) { /* -c is the last option; following arguments that look like options are left for the command to interpret. */ size_t len = wcslen(_PyOS_optarg) + 1 + 1; wchar_t *command = PyMem_RawMalloc(sizeof(wchar_t) * len); if (command == NULL) { return _PyStatus_NO_MEMORY(); } memcpy(command, _PyOS_optarg, (len - 2) * sizeof(wchar_t)); command[len - 2] = '\n'; command[len - 1] = 0; config->run_command = command; } break; } if (c == 'm') { /* -m is the last option; following arguments that look like options are left for the module to interpret. */ if (config->run_module == NULL) { config->run_module = _PyMem_RawWcsdup(_PyOS_optarg); if (config->run_module == NULL) { return _PyStatus_NO_MEMORY(); } } break; } switch (c) { case 0: // Handle long option. assert(longindex == 0); // Only one long option now. if (wcscmp(_PyOS_optarg, L"always") == 0 || wcscmp(_PyOS_optarg, L"never") == 0 || wcscmp(_PyOS_optarg, L"default") == 0) { status = PyConfig_SetString(config, &config->check_hash_pycs_mode, _PyOS_optarg); if (_PyStatus_EXCEPTION(status)) { return status; } } else { fprintf(stderr, "--check-hash-based-pycs must be one of " "'default', 'always', or 'never'\n"); config_usage(1, program); return _PyStatus_EXIT(2); } break; case 'b': config->bytes_warning++; break; case 'd': config->parser_debug++; break; case 'i': config->inspect++; config->interactive++; break; case 'E': case 'I': case 'X': /* option handled by _PyPreCmdline_Read() */ break; /* case 'J': reserved for Jython */ case 'O': config->optimization_level++; break; case 'B': config->write_bytecode = 0; break; case 's': config->user_site_directory = 0; break; case 'S': config->site_import = 0; break; case 't': /* ignored for backwards compatibility */ break; case 'u': config->buffered_stdio = 0; break; case 'v': config->verbose++; break; case 'x': config->skip_source_first_line = 1; break; case 'h': case '?': config_usage(0, program); return _PyStatus_EXIT(0); case 'V': print_version++; break; case 'W': status = PyWideStringList_Append(warnoptions, _PyOS_optarg); if (_PyStatus_EXCEPTION(status)) { return status; } break; case 'q': config->quiet++; break; case 'R': config->use_hash_seed = 0; break; /* This space reserved for other options */ default: /* unknown argument: parsing failed */ config_usage(1, program); return _PyStatus_EXIT(2); } } while (1); if (print_version) { printf("Python %s\n", (print_version >= 2) ? Py_GetVersion() : PY_VERSION); return _PyStatus_EXIT(0); } if (config->run_command == NULL && config->run_module == NULL && _PyOS_optind < argv->length && wcscmp(argv->items[_PyOS_optind], L"-") != 0 && config->run_filename == NULL) { config->run_filename = _PyMem_RawWcsdup(argv->items[_PyOS_optind]); if (config->run_filename == NULL) { return _PyStatus_NO_MEMORY(); } } if (config->run_command != NULL || config->run_module != NULL) { /* Backup _PyOS_optind */ _PyOS_optind--; } *opt_index = _PyOS_optind; return _PyStatus_OK(); } #ifdef MS_WINDOWS # define WCSTOK wcstok_s #else # define WCSTOK wcstok #endif /* Get warning options from PYTHONWARNINGS environment variable. */ static PyStatus config_init_env_warnoptions(PyConfig *config, PyWideStringList *warnoptions) { PyStatus status; /* CONFIG_GET_ENV_DUP requires dest to be initialized to NULL */ wchar_t *env = NULL; status = CONFIG_GET_ENV_DUP(config, &env, L"PYTHONWARNINGS", "PYTHONWARNINGS"); if (_PyStatus_EXCEPTION(status)) { return status; } /* env var is not set or is empty */ if (env == NULL) { return _PyStatus_OK(); } wchar_t *warning, *context = NULL; for (warning = WCSTOK(env, L",", &context); warning != NULL; warning = WCSTOK(NULL, L",", &context)) { status = PyWideStringList_Append(warnoptions, warning); if (_PyStatus_EXCEPTION(status)) { PyMem_RawFree(env); return status; } } PyMem_RawFree(env); return _PyStatus_OK(); } static PyStatus warnoptions_append(PyConfig *config, PyWideStringList *options, const wchar_t *option) { /* config_init_warnoptions() add existing config warnoptions at the end: ensure that the new option is not already present in this list to prevent change the options order whne config_init_warnoptions() is called twice. */ if (_PyWideStringList_Find(&config->warnoptions, option)) { /* Already present: do nothing */ return _PyStatus_OK(); } if (_PyWideStringList_Find(options, option)) { /* Already present: do nothing */ return _PyStatus_OK(); } return PyWideStringList_Append(options, option); } static PyStatus warnoptions_extend(PyConfig *config, PyWideStringList *options, const PyWideStringList *options2) { const Py_ssize_t len = options2->length; wchar_t *const *items = options2->items; for (Py_ssize_t i = 0; i < len; i++) { PyStatus status = warnoptions_append(config, options, items[i]); if (_PyStatus_EXCEPTION(status)) { return status; } } return _PyStatus_OK(); } static PyStatus config_init_warnoptions(PyConfig *config, const PyWideStringList *cmdline_warnoptions, const PyWideStringList *env_warnoptions, const PyWideStringList *sys_warnoptions) { PyStatus status; PyWideStringList options = _PyWideStringList_INIT; /* Priority of warnings options, lowest to highest: * * - any implicit filters added by _warnings.c/warnings.py * - PyConfig.dev_mode: "default" filter * - PYTHONWARNINGS environment variable * - '-W' command line options * - PyConfig.bytes_warning ('-b' and '-bb' command line options): * "default::BytesWarning" or "error::BytesWarning" filter * - early PySys_AddWarnOption() calls * - PyConfig.warnoptions * * PyConfig.warnoptions is copied to sys.warnoptions. Since the warnings * module works on the basis of "the most recently added filter will be * checked first", we add the lowest precedence entries first so that later * entries override them. */ if (config->dev_mode) { status = warnoptions_append(config, &options, L"default"); if (_PyStatus_EXCEPTION(status)) { goto error; } } status = warnoptions_extend(config, &options, env_warnoptions); if (_PyStatus_EXCEPTION(status)) { goto error; } status = warnoptions_extend(config, &options, cmdline_warnoptions); if (_PyStatus_EXCEPTION(status)) { goto error; } /* If the bytes_warning_flag isn't set, bytesobject.c and bytearrayobject.c * don't even try to emit a warning, so we skip setting the filter in that * case. */ if (config->bytes_warning) { const wchar_t *filter; if (config->bytes_warning> 1) { filter = L"error::BytesWarning"; } else { filter = L"default::BytesWarning"; } status = warnoptions_append(config, &options, filter); if (_PyStatus_EXCEPTION(status)) { goto error; } } status = warnoptions_extend(config, &options, sys_warnoptions); if (_PyStatus_EXCEPTION(status)) { goto error; } /* Always add all PyConfig.warnoptions options */ status = _PyWideStringList_Extend(&options, &config->warnoptions); if (_PyStatus_EXCEPTION(status)) { goto error; } _PyWideStringList_Clear(&config->warnoptions); config->warnoptions = options; return _PyStatus_OK(); error: _PyWideStringList_Clear(&options); return status; } static PyStatus config_update_argv(PyConfig *config, Py_ssize_t opt_index) { const PyWideStringList *cmdline_argv = &config->argv; PyWideStringList config_argv = _PyWideStringList_INIT; /* Copy argv to be able to modify it (to force -c/-m) */ if (cmdline_argv->length <= opt_index) { /* Ensure at least one (empty) argument is seen */ PyStatus status = PyWideStringList_Append(&config_argv, L""); if (_PyStatus_EXCEPTION(status)) { return status; } } else { PyWideStringList slice; slice.length = cmdline_argv->length - opt_index; slice.items = &cmdline_argv->items[opt_index]; if (_PyWideStringList_Copy(&config_argv, &slice) < 0) { return _PyStatus_NO_MEMORY(); } } assert(config_argv.length >= 1); wchar_t *arg0 = NULL; if (config->run_command != NULL) { /* Force sys.argv[0] = '-c' */ arg0 = L"-c"; } else if (config->run_module != NULL) { /* Force sys.argv[0] = '-m'*/ arg0 = L"-m"; } if (arg0 != NULL) { arg0 = _PyMem_RawWcsdup(arg0); if (arg0 == NULL) { _PyWideStringList_Clear(&config_argv); return _PyStatus_NO_MEMORY(); } PyMem_RawFree(config_argv.items[0]); config_argv.items[0] = arg0; } _PyWideStringList_Clear(&config->argv); config->argv = config_argv; return _PyStatus_OK(); } static PyStatus core_read_precmdline(PyConfig *config, _PyPreCmdline *precmdline) { PyStatus status; if (config->parse_argv) { if (_PyWideStringList_Copy(&precmdline->argv, &config->argv) < 0) { return _PyStatus_NO_MEMORY(); } } PyPreConfig preconfig; status = _PyPreConfig_InitFromPreConfig(&preconfig, &_PyRuntime.preconfig); if (_PyStatus_EXCEPTION(status)) { return status; } _PyPreConfig_GetConfig(&preconfig, config); status = _PyPreCmdline_Read(precmdline, &preconfig); if (_PyStatus_EXCEPTION(status)) { return status; } status = _PyPreCmdline_SetConfig(precmdline, config); if (_PyStatus_EXCEPTION(status)) { return status; } return _PyStatus_OK(); } /* Get run_filename absolute path */ static PyStatus config_run_filename_abspath(PyConfig *config) { if (!config->run_filename) { return _PyStatus_OK(); } #ifndef MS_WINDOWS if (_Py_isabs(config->run_filename)) { /* path is already absolute */ return _PyStatus_OK(); } #endif wchar_t *abs_filename; if (_Py_abspath(config->run_filename, &abs_filename) < 0) { /* failed to get the absolute path of the command line filename: ignore the error, keep the relative path */ return _PyStatus_OK(); } if (abs_filename == NULL) { return _PyStatus_NO_MEMORY(); } PyMem_RawFree(config->run_filename); config->run_filename = abs_filename; return _PyStatus_OK(); } static PyStatus config_read_cmdline(PyConfig *config) { PyStatus status; PyWideStringList cmdline_warnoptions = _PyWideStringList_INIT; PyWideStringList env_warnoptions = _PyWideStringList_INIT; PyWideStringList sys_warnoptions = _PyWideStringList_INIT; if (config->parse_argv < 0) { config->parse_argv = 1; } if (config->program_name == NULL) { status = config_init_program_name(config); if (_PyStatus_EXCEPTION(status)) { return status; } } if (config->parse_argv) { Py_ssize_t opt_index; status = config_parse_cmdline(config, &cmdline_warnoptions, &opt_index); if (_PyStatus_EXCEPTION(status)) { goto done; } status = config_run_filename_abspath(config); if (_PyStatus_EXCEPTION(status)) { goto done; } status = config_update_argv(config, opt_index); if (_PyStatus_EXCEPTION(status)) { goto done; } } else { status = config_run_filename_abspath(config); if (_PyStatus_EXCEPTION(status)) { goto done; } } if (config->use_environment) { status = config_init_env_warnoptions(config, &env_warnoptions); if (_PyStatus_EXCEPTION(status)) { goto done; } } /* Handle early PySys_AddWarnOption() calls */ status = _PySys_ReadPreinitWarnOptions(&sys_warnoptions); if (_PyStatus_EXCEPTION(status)) { goto done; } status = config_init_warnoptions(config, &cmdline_warnoptions, &env_warnoptions, &sys_warnoptions); if (_PyStatus_EXCEPTION(status)) { goto done; } status = _PyStatus_OK(); done: _PyWideStringList_Clear(&cmdline_warnoptions); _PyWideStringList_Clear(&env_warnoptions); _PyWideStringList_Clear(&sys_warnoptions); return status; } PyStatus _PyConfig_SetPyArgv(PyConfig *config, const _PyArgv *args) { PyStatus status = _Py_PreInitializeFromConfig(config, args); if (_PyStatus_EXCEPTION(status)) { return status; } return _PyArgv_AsWstrList(args, &config->argv); } /* Set config.argv: decode argv using Py_DecodeLocale(). Pre-initialize Python if needed to ensure that encodings are properly configured. */ PyStatus PyConfig_SetBytesArgv(PyConfig *config, Py_ssize_t argc, char * const *argv) { _PyArgv args = { .argc = argc, .use_bytes_argv = 1, .bytes_argv = argv, .wchar_argv = NULL}; return _PyConfig_SetPyArgv(config, &args); } PyStatus PyConfig_SetArgv(PyConfig *config, Py_ssize_t argc, wchar_t * const *argv) { _PyArgv args = { .argc = argc, .use_bytes_argv = 0, .bytes_argv = NULL, .wchar_argv = argv}; return _PyConfig_SetPyArgv(config, &args); } PyStatus PyConfig_SetWideStringList(PyConfig *config, PyWideStringList *list, Py_ssize_t length, wchar_t **items) { PyStatus status = _Py_PreInitializeFromConfig(config, NULL); if (_PyStatus_EXCEPTION(status)) { return status; } PyWideStringList list2 = {.length = length, .items = items}; if (_PyWideStringList_Copy(list, &list2) < 0) { return _PyStatus_NO_MEMORY(); } return _PyStatus_OK(); } /* Read the configuration into PyConfig from: * Command line arguments * Environment variables * Py_xxx global configuration variables The only side effects are to modify config and to call _Py_SetArgcArgv(). */ PyStatus PyConfig_Read(PyConfig *config) { PyStatus status; status = _Py_PreInitializeFromConfig(config, NULL); if (_PyStatus_EXCEPTION(status)) { return status; } config_get_global_vars(config); if (config->_orig_argv.length == 0 && !(config->argv.length == 1 && wcscmp(config->argv.items[0], L"") == 0)) { if (_PyWideStringList_Copy(&config->_orig_argv, &config->argv) < 0) { return _PyStatus_NO_MEMORY(); } } _PyPreCmdline precmdline = _PyPreCmdline_INIT; status = core_read_precmdline(config, &precmdline); if (_PyStatus_EXCEPTION(status)) { goto done; } assert(config->isolated >= 0); if (config->isolated) { config->use_environment = 0; config->user_site_directory = 0; } status = config_read_cmdline(config); if (_PyStatus_EXCEPTION(status)) { goto done; } /* Handle early PySys_AddXOption() calls */ status = _PySys_ReadPreinitXOptions(config); if (_PyStatus_EXCEPTION(status)) { goto done; } status = config_read(config); if (_PyStatus_EXCEPTION(status)) { goto done; } /* Check config consistency */ assert(config->isolated >= 0); assert(config->use_environment >= 0); assert(config->dev_mode >= 0); assert(config->_use_peg_parser >= 0); assert(config->install_signal_handlers >= 0); assert(config->use_hash_seed >= 0); assert(config->faulthandler >= 0); assert(config->tracemalloc >= 0); assert(config->site_import >= 0); assert(config->bytes_warning >= 0); assert(config->inspect >= 0); assert(config->interactive >= 0); assert(config->optimization_level >= 0); assert(config->parser_debug >= 0); assert(config->write_bytecode >= 0); assert(config->verbose >= 0); assert(config->quiet >= 0); assert(config->user_site_directory >= 0); assert(config->parse_argv >= 0); assert(config->configure_c_stdio >= 0); assert(config->buffered_stdio >= 0); assert(config->program_name != NULL); assert(_PyWideStringList_CheckConsistency(&config->argv)); /* sys.argv must be non-empty: empty argv is replaced with [''] */ assert(config->argv.length >= 1); assert(_PyWideStringList_CheckConsistency(&config->xoptions)); assert(_PyWideStringList_CheckConsistency(&config->warnoptions)); assert(_PyWideStringList_CheckConsistency(&config->module_search_paths)); if (config->_install_importlib) { assert(config->module_search_paths_set != 0); /* don't check config->module_search_paths */ assert(config->executable != NULL); assert(config->base_executable != NULL); assert(config->prefix != NULL); assert(config->base_prefix != NULL); assert(config->exec_prefix != NULL); assert(config->base_exec_prefix != NULL); } assert(config->platlibdir != NULL); assert(config->filesystem_encoding != NULL); assert(config->filesystem_errors != NULL); assert(config->stdio_encoding != NULL); assert(config->stdio_errors != NULL); #ifdef MS_WINDOWS assert(config->legacy_windows_stdio >= 0); #endif /* -c and -m options are exclusive */ assert(!(config->run_command != NULL && config->run_module != NULL)); assert(config->check_hash_pycs_mode != NULL); assert(config->_install_importlib >= 0); assert(config->pathconfig_warnings >= 0); assert(_PyWideStringList_CheckConsistency(&config->_orig_argv)); status = _PyStatus_OK(); done: _PyPreCmdline_Clear(&precmdline); return status; } PyObject* _Py_GetConfigsAsDict(void) { PyObject *result = NULL; PyObject *dict = NULL; result = PyDict_New(); if (result == NULL) { goto error; } /* global result */ dict = _Py_GetGlobalVariablesAsDict(); if (dict == NULL) { goto error; } if (PyDict_SetItemString(result, "global_config", dict) < 0) { goto error; } Py_CLEAR(dict); /* pre config */ PyThreadState *tstate = _PyThreadState_GET(); const PyPreConfig *pre_config = &tstate->interp->runtime->preconfig; dict = _PyPreConfig_AsDict(pre_config); if (dict == NULL) { goto error; } if (PyDict_SetItemString(result, "pre_config", dict) < 0) { goto error; } Py_CLEAR(dict); /* core config */ const PyConfig *config = _PyInterpreterState_GetConfig(tstate->interp); dict = config_as_dict(config); if (dict == NULL) { goto error; } if (PyDict_SetItemString(result, "config", dict) < 0) { goto error; } Py_CLEAR(dict); return result; error: Py_XDECREF(result); Py_XDECREF(dict); return NULL; } static void init_dump_ascii_wstr(const wchar_t *str) { if (str == NULL) { PySys_WriteStderr("(not set)"); return; } PySys_WriteStderr("'"); for (; *str != L'\0'; str++) { unsigned int ch = (unsigned int)*str; if (ch == L'\'') { PySys_WriteStderr("\\'"); } else if (0x20 <= ch && ch < 0x7f) { PySys_WriteStderr("%c", ch); } else if (ch <= 0xff) { PySys_WriteStderr("\\x%02x", ch); } #if SIZEOF_WCHAR_T > 2 else if (ch > 0xffff) { PySys_WriteStderr("\\U%08x", ch); } #endif else { PySys_WriteStderr("\\u%04x", ch); } } PySys_WriteStderr("'"); } /* Dump the Python path configuration into sys.stderr */ void _Py_DumpPathConfig(PyThreadState *tstate) { PyObject *exc_type, *exc_value, *exc_tb; _PyErr_Fetch(tstate, &exc_type, &exc_value, &exc_tb); PySys_WriteStderr("Python path configuration:\n"); #define DUMP_CONFIG(NAME, FIELD) \ do { \ PySys_WriteStderr(" " NAME " = "); \ init_dump_ascii_wstr(config->FIELD); \ PySys_WriteStderr("\n"); \ } while (0) const PyConfig *config = _PyInterpreterState_GetConfig(tstate->interp); DUMP_CONFIG("PYTHONHOME", home); DUMP_CONFIG("PYTHONPATH", pythonpath_env); DUMP_CONFIG("program name", program_name); PySys_WriteStderr(" isolated = %i\n", config->isolated); PySys_WriteStderr(" environment = %i\n", config->use_environment); PySys_WriteStderr(" user site = %i\n", config->user_site_directory); PySys_WriteStderr(" import site = %i\n", config->site_import); #undef DUMP_CONFIG #define DUMP_SYS(NAME) \ do { \ obj = PySys_GetObject(#NAME); \ PySys_FormatStderr(" sys.%s = ", #NAME); \ if (obj != NULL) { \ PySys_FormatStderr("%A", obj); \ } \ else { \ PySys_WriteStderr("(not set)"); \ } \ PySys_FormatStderr("\n"); \ } while (0) PyObject *obj; DUMP_SYS(_base_executable); DUMP_SYS(base_prefix); DUMP_SYS(base_exec_prefix); DUMP_SYS(platlibdir); DUMP_SYS(executable); DUMP_SYS(prefix); DUMP_SYS(exec_prefix); #undef DUMP_SYS PyObject *sys_path = PySys_GetObject("path"); /* borrowed reference */ if (sys_path != NULL && PyList_Check(sys_path)) { PySys_WriteStderr(" sys.path = [\n"); Py_ssize_t len = PyList_GET_SIZE(sys_path); for (Py_ssize_t i=0; i < len; i++) { PyObject *path = PyList_GET_ITEM(sys_path, i); PySys_FormatStderr(" %A,\n", path); } PySys_WriteStderr(" ]\n"); } _PyErr_Restore(tstate, exc_type, exc_value, exc_tb); }