如何将sys.stdout复制到日志文件?

问题:如何将sys.stdout复制到日志文件?

编辑:由于似乎没有解决方案,或者我正在做一些没人知道的非标准操作-我将修订我的问题,并问:当python应用正在制作日志时,完成记录的最佳方法是什么?很多系统调用?

我的应用程序有两种模式。在交互模式下,我希望所有输出都转到屏幕以及日志文件中,包括所有系统调用的输出。在守护程序模式下,所有输出进入日志。守护程序模式使用时效果很好os.dup2()。我找不到在不修改每个系统调用的情况下以交互方式将所有输出“发送”到日志的方法。


换句话说,我想要python应用程序生成的任何输出(包括系统调用output)的命令行“ tee”的功能。

澄清:

要重定向所有输出,我可以执行以下操作,并且效果很好:

# open our log file
so = se = open("%s.log" % self.name, 'w', 0)

# re-open stdout without buffering
sys.stdout = os.fdopen(sys.stdout.fileno(), 'w', 0)

# redirect stdout and stderr to the log file opened above
os.dup2(so.fileno(), sys.stdout.fileno())
os.dup2(se.fileno(), sys.stderr.fileno())

这样做的好处是,不需要其余代码即可进行特殊的打印调用。该代码还运行一些shell命令,因此不必分别处理它们的每个输出也很好。

简而言之,除了复制而不是重定向外,我想做同样的事情。

刚想到时,我认为只需反转即可dup2。为什么不呢?这是我的测试:

import os, sys

### my broken solution:
so = se = open("a.log", 'w', 0)
sys.stdout = os.fdopen(sys.stdout.fileno(), 'w', 0)

os.dup2(sys.stdout.fileno(), so.fileno())
os.dup2(sys.stderr.fileno(), se.fileno())
###

print("foo bar")

os.spawnve("P_WAIT", "/bin/ls", ["/bin/ls"], {})
os.execve("/bin/ls", ["/bin/ls"], os.environ)

文件“ a.log”应与屏幕上显示的相同。

Edit: Since it appears that there’s either no solution, or I’m doing something so non-standard that nobody knows – I’ll revise my question to also ask: What is the best way to accomplish logging when a python app is making a lot of system calls?

My app has two modes. In interactive mode, I want all output to go to the screen as well as to a log file, including output from any system calls. In daemon mode, all output goes to the log. Daemon mode works great using os.dup2(). I can’t find a way to “tee” all output to a log in interactive mode, without modifying each and every system call.


In other words, I want the functionality of the command line ‘tee’ for any output generated by a python app, including system call output.

To clarify:

To redirect all output I do something like this, and it works great:

# open our log file
so = se = open("%s.log" % self.name, 'w', 0)

# re-open stdout without buffering
sys.stdout = os.fdopen(sys.stdout.fileno(), 'w', 0)

# redirect stdout and stderr to the log file opened above
os.dup2(so.fileno(), sys.stdout.fileno())
os.dup2(se.fileno(), sys.stderr.fileno())

The nice thing about this is that it requires no special print calls from the rest of the code. The code also runs some shell commands, so it’s nice not having to deal with each of their output individually as well.

Simply, I want to do the same, except duplicating instead of redirecting.

At first thought, I thought that simply reversing the dup2‘s should work. Why doesn’t it? Here’s my test:

import os, sys

### my broken solution:
so = se = open("a.log", 'w', 0)
sys.stdout = os.fdopen(sys.stdout.fileno(), 'w', 0)

os.dup2(sys.stdout.fileno(), so.fileno())
os.dup2(sys.stderr.fileno(), se.fileno())
###

print("foo bar")

os.spawnve("P_WAIT", "/bin/ls", ["/bin/ls"], {})
os.execve("/bin/ls", ["/bin/ls"], os.environ)

The file “a.log” should be identical to what was displayed on the screen.


回答 0

由于您很习惯从代码中生成外部进程,因此可以使用tee它自己。我不知道有什么Unix系统调用可以完全做到这tee一点。

# Note this version was written circa Python 2.6, see below for
# an updated 3.3+-compatible version.
import subprocess, os, sys

# Unbuffer output (this ensures the output is in the correct order)
sys.stdout = os.fdopen(sys.stdout.fileno(), 'w', 0)

tee = subprocess.Popen(["tee", "log.txt"], stdin=subprocess.PIPE)
os.dup2(tee.stdin.fileno(), sys.stdout.fileno())
os.dup2(tee.stdin.fileno(), sys.stderr.fileno())

print "\nstdout"
print >>sys.stderr, "stderr"
os.spawnve("P_WAIT", "/bin/ls", ["/bin/ls"], {})
os.execve("/bin/ls", ["/bin/ls"], os.environ)

您还可以tee使用多处理程序包进行仿真(如果使用的是Python 2.5或更早版本,则可以使用处理程序)。

更新资料

这是与Python 3.3+兼容的版本:

import subprocess, os, sys

tee = subprocess.Popen(["tee", "log.txt"], stdin=subprocess.PIPE)
# Cause tee's stdin to get a copy of our stdin/stdout (as well as that
# of any child processes we spawn)
os.dup2(tee.stdin.fileno(), sys.stdout.fileno())
os.dup2(tee.stdin.fileno(), sys.stderr.fileno())

# The flush flag is needed to guarantee these lines are written before
# the two spawned /bin/ls processes emit any output
print("\nstdout", flush=True)
print("stderr", file=sys.stderr, flush=True)

# These child processes' stdin/stdout are 
os.spawnve("P_WAIT", "/bin/ls", ["/bin/ls"], {})
os.execve("/bin/ls", ["/bin/ls"], os.environ)

Since you’re comfortable spawning external processes from your code, you could use tee itself. I don’t know of any Unix system calls that do exactly what tee does.

# Note this version was written circa Python 2.6, see below for
# an updated 3.3+-compatible version.
import subprocess, os, sys

# Unbuffer output (this ensures the output is in the correct order)
sys.stdout = os.fdopen(sys.stdout.fileno(), 'w', 0)

tee = subprocess.Popen(["tee", "log.txt"], stdin=subprocess.PIPE)
os.dup2(tee.stdin.fileno(), sys.stdout.fileno())
os.dup2(tee.stdin.fileno(), sys.stderr.fileno())

print "\nstdout"
print >>sys.stderr, "stderr"
os.spawnve("P_WAIT", "/bin/ls", ["/bin/ls"], {})
os.execve("/bin/ls", ["/bin/ls"], os.environ)

You could also emulate tee using the multiprocessing package (or use processing if you’re using Python 2.5 or earlier).

Update

Here is a Python 3.3+-compatible version:

import subprocess, os, sys

tee = subprocess.Popen(["tee", "log.txt"], stdin=subprocess.PIPE)
# Cause tee's stdin to get a copy of our stdin/stdout (as well as that
# of any child processes we spawn)
os.dup2(tee.stdin.fileno(), sys.stdout.fileno())
os.dup2(tee.stdin.fileno(), sys.stderr.fileno())

# The flush flag is needed to guarantee these lines are written before
# the two spawned /bin/ls processes emit any output
print("\nstdout", flush=True)
print("stderr", file=sys.stderr, flush=True)

# These child processes' stdin/stdout are 
os.spawnve("P_WAIT", "/bin/ls", ["/bin/ls"], {})
os.execve("/bin/ls", ["/bin/ls"], os.environ)

回答 1

我之前也遇到过同样的问题,发现此片段非常有用:

class Tee(object):
    def __init__(self, name, mode):
        self.file = open(name, mode)
        self.stdout = sys.stdout
        sys.stdout = self
    def __del__(self):
        sys.stdout = self.stdout
        self.file.close()
    def write(self, data):
        self.file.write(data)
        self.stdout.write(data)
    def flush(self):
        self.file.flush()

来自:http : //mail.python.org/pipermail/python-list/2007-May/438106.html

I had this same issue before and found this snippet very useful:

class Tee(object):
    def __init__(self, name, mode):
        self.file = open(name, mode)
        self.stdout = sys.stdout
        sys.stdout = self
    def __del__(self):
        sys.stdout = self.stdout
        self.file.close()
    def write(self, data):
        self.file.write(data)
        self.stdout.write(data)
    def flush(self):
        self.file.flush()

from: http://mail.python.org/pipermail/python-list/2007-May/438106.html


回答 2

print语句将调用write()您分配给sys.stdout的任何对象的方法。

我会上一堂小课,一次写两个地方。

import sys

class Logger(object):
    def __init__(self):
        self.terminal = sys.stdout
        self.log = open("log.dat", "a")

    def write(self, message):
        self.terminal.write(message)
        self.log.write(message)  

sys.stdout = Logger()

现在,该print语句将在屏幕上回显并追加到您的日志文件中:

# prints "1 2" to <stdout> AND log.dat
print "%d %d" % (1,2)

这显然是很简单的。一些注意事项:

  • 您可能应该参数化日志文件名。
  • <stdout>如果在程序运行期间不进行日志记录,则可能应将sys.stdout还原为。
  • 您可能希望能够一次写入多个日志文件,或处理不同的日志级别等。

这些都非常简单,我很乐意将它们作为练习留给读者。这里的主要见解是,print仅调用分配给的“文件状对象” sys.stdout

The print statement will call the write() method of any object you assign to sys.stdout.

I would spin up a small class to write to two places at once…

import sys

class Logger(object):
    def __init__(self):
        self.terminal = sys.stdout
        self.log = open("log.dat", "a")

    def write(self, message):
        self.terminal.write(message)
        self.log.write(message)  

sys.stdout = Logger()

Now the print statement will both echo to the screen and append to your log file:

# prints "1 2" to <stdout> AND log.dat
print "%d %d" % (1,2)

This is obviously quick-and-dirty. Some notes:

  • You probably ought to parametize the log filename.
  • You should probably revert sys.stdout to <stdout> if you won’t be logging for the duration of the program.
  • You may want the ability to write to multiple log files at once, or handle different log levels, etc.

These are all straightforward enough that I’m comfortable leaving them as exercises for the reader. The key insight here is that print just calls a “file-like object” that’s assigned to sys.stdout.


回答 3

您真正想要的是logging标准库中的模块。创建一个记录器并附加两个处理程序,一个将写入文件,另一个将写入stdout或stderr。

有关详细信息,请参见 登录到多个目标

What you really want is logging module from standard library. Create a logger and attach two handlers, one would be writing to a file and the other to stdout or stderr.

See Logging to multiple destinations for details


回答 4

这是另一个解决方案,比其他解决方案更通用-支持将输出(写入sys.stdout)拆分为任意数量的类似文件的对象。不需要__stdout__包含它本身。

import sys

class multifile(object):
    def __init__(self, files):
        self._files = files
    def __getattr__(self, attr, *args):
        return self._wrap(attr, *args)
    def _wrap(self, attr, *args):
        def g(*a, **kw):
            for f in self._files:
                res = getattr(f, attr, *args)(*a, **kw)
            return res
        return g

# for a tee-like behavior, use like this:
sys.stdout = multifile([ sys.stdout, open('myfile.txt', 'w') ])

# all these forms work:
print 'abc'
print >>sys.stdout, 'line2'
sys.stdout.write('line3\n')

注意:这是一个概念证明。这里的实现是不完整的,因为它仅包装方法的类文件对象(例如write),留出成员/属性/ SETATTR等。但是,它可能是好的足以让大多数人,因为它目前为。

我喜欢它,比其共性外,就是它是干净的在这个意义上它没有任何直接调用writeflushos.dup2,等。

Here is another solution, which is more general than the others — it supports splitting output (written to sys.stdout) to any number of file-like objects. There’s no requirement that __stdout__ itself is included.

import sys

class multifile(object):
    def __init__(self, files):
        self._files = files
    def __getattr__(self, attr, *args):
        return self._wrap(attr, *args)
    def _wrap(self, attr, *args):
        def g(*a, **kw):
            for f in self._files:
                res = getattr(f, attr, *args)(*a, **kw)
            return res
        return g

# for a tee-like behavior, use like this:
sys.stdout = multifile([ sys.stdout, open('myfile.txt', 'w') ])

# all these forms work:
print 'abc'
print >>sys.stdout, 'line2'
sys.stdout.write('line3\n')

NOTE: This is a proof-of-concept. The implementation here is not complete, as it only wraps methods of the file-like objects (e.g. write), leaving out members/properties/setattr, etc. However, it is probably good enough for most people as it currently stands.

What I like about it, other than its generality, is that it is clean in the sense it doesn’t make any direct calls to write, flush, os.dup2, etc.


回答 5

如其他地方所述,也许最好的解决方案是直接使用日志记录模块:

import logging

logging.basicConfig(level=logging.DEBUG, filename='mylog.log')
logging.info('this should to write to the log file')

但是,在某些(很少)情况下,您确实要重定向标准输出。在扩展使用print的django的runserver命令时,我遇到了这种情况:我不想破解django源,但需要将print语句转到文件中。

这是使用日志记录模块将stdout和stderr从shell重定向到另一种方式:

import logging, sys

class LogFile(object):
    """File-like object to log text using the `logging` module."""

    def __init__(self, name=None):
        self.logger = logging.getLogger(name)

    def write(self, msg, level=logging.INFO):
        self.logger.log(level, msg)

    def flush(self):
        for handler in self.logger.handlers:
            handler.flush()

logging.basicConfig(level=logging.DEBUG, filename='mylog.log')

# Redirect stdout and stderr
sys.stdout = LogFile('stdout')
sys.stderr = LogFile('stderr')

print 'this should to write to the log file'

如果确实不能直接使用日志记录模块,则仅应使用此LogFile实现。

As described elsewhere, perhaps the best solution is to use the logging module directly:

import logging

logging.basicConfig(level=logging.DEBUG, filename='mylog.log')
logging.info('this should to write to the log file')

However, there are some (rare) occasions where you really want to redirect stdout. I had this situation when I was extending django’s runserver command which uses print: I didn’t want to hack the django source but needed the print statements to go to a file.

This is a way of redirecting stdout and stderr away from the shell using the logging module:

import logging, sys

class LogFile(object):
    """File-like object to log text using the `logging` module."""

    def __init__(self, name=None):
        self.logger = logging.getLogger(name)

    def write(self, msg, level=logging.INFO):
        self.logger.log(level, msg)

    def flush(self):
        for handler in self.logger.handlers:
            handler.flush()

logging.basicConfig(level=logging.DEBUG, filename='mylog.log')

# Redirect stdout and stderr
sys.stdout = LogFile('stdout')
sys.stderr = LogFile('stderr')

print 'this should to write to the log file'

You should only use this LogFile implementation if you really cannot use the logging module directly.


回答 6

tee()用Python 编写了一个在大多数情况下都可以使用的实现,并且在Windows上也可以使用。

https://github.com/pycontribs/tendo

另外,如果需要,可以将其与loggingPython模块结合使用。

I wrote a tee() implementation in Python that should work for most cases, and it works on Windows also.

https://github.com/pycontribs/tendo

Also, you can use it in combination with logging module from Python if you want.


回答 7

(嗯,只要重新阅读您的问题,看看这不太适用。)

这是一个使用python日志记录模块的示例程序。自2.3起,此日志记录模块已处于所有版本中。在此示例中,可以通过命令行选项配置日志记录。

在完全模式下,它将仅记录到文件,在正常模式下,它将记录到文件和控制台。

import os
import sys
import logging
from optparse import OptionParser

def initialize_logging(options):
    """ Log information based upon users options"""

    logger = logging.getLogger('project')
    formatter = logging.Formatter('%(asctime)s %(levelname)s\t%(message)s')
    level = logging.__dict__.get(options.loglevel.upper(),logging.DEBUG)
    logger.setLevel(level)

    # Output logging information to screen
    if not options.quiet:
        hdlr = logging.StreamHandler(sys.stderr)
        hdlr.setFormatter(formatter)
        logger.addHandler(hdlr)

    # Output logging information to file
    logfile = os.path.join(options.logdir, "project.log")
    if options.clean and os.path.isfile(logfile):
        os.remove(logfile)
    hdlr2 = logging.FileHandler(logfile)
    hdlr2.setFormatter(formatter)
    logger.addHandler(hdlr2)

    return logger

def main(argv=None):
    if argv is None:
        argv = sys.argv[1:]

    # Setup command line options
    parser = OptionParser("usage: %prog [options]")
    parser.add_option("-l", "--logdir", dest="logdir", default=".", help="log DIRECTORY (default ./)")
    parser.add_option("-v", "--loglevel", dest="loglevel", default="debug", help="logging level (debug, info, error)")
    parser.add_option("-q", "--quiet", action="store_true", dest="quiet", help="do not log to console")
    parser.add_option("-c", "--clean", dest="clean", action="store_true", default=False, help="remove old log file")

    # Process command line options
    (options, args) = parser.parse_args(argv)

    # Setup logger format and output locations
    logger = initialize_logging(options)

    # Examples
    logger.error("This is an error message.")
    logger.info("This is an info message.")
    logger.debug("This is a debug message.")

if __name__ == "__main__":
    sys.exit(main())

(Ah, just re-read your question and see that this doesn’t quite apply.)

Here is a sample program that makes uses the python logging module. This logging module has been in all versions since 2.3. In this sample the logging is configurable by command line options.

In quite mode it will only log to a file, in normal mode it will log to both a file and the console.

import os
import sys
import logging
from optparse import OptionParser

def initialize_logging(options):
    """ Log information based upon users options"""

    logger = logging.getLogger('project')
    formatter = logging.Formatter('%(asctime)s %(levelname)s\t%(message)s')
    level = logging.__dict__.get(options.loglevel.upper(),logging.DEBUG)
    logger.setLevel(level)

    # Output logging information to screen
    if not options.quiet:
        hdlr = logging.StreamHandler(sys.stderr)
        hdlr.setFormatter(formatter)
        logger.addHandler(hdlr)

    # Output logging information to file
    logfile = os.path.join(options.logdir, "project.log")
    if options.clean and os.path.isfile(logfile):
        os.remove(logfile)
    hdlr2 = logging.FileHandler(logfile)
    hdlr2.setFormatter(formatter)
    logger.addHandler(hdlr2)

    return logger

def main(argv=None):
    if argv is None:
        argv = sys.argv[1:]

    # Setup command line options
    parser = OptionParser("usage: %prog [options]")
    parser.add_option("-l", "--logdir", dest="logdir", default=".", help="log DIRECTORY (default ./)")
    parser.add_option("-v", "--loglevel", dest="loglevel", default="debug", help="logging level (debug, info, error)")
    parser.add_option("-q", "--quiet", action="store_true", dest="quiet", help="do not log to console")
    parser.add_option("-c", "--clean", dest="clean", action="store_true", default=False, help="remove old log file")

    # Process command line options
    (options, args) = parser.parse_args(argv)

    # Setup logger format and output locations
    logger = initialize_logging(options)

    # Examples
    logger.error("This is an error message.")
    logger.info("This is an info message.")
    logger.debug("This is a debug message.")

if __name__ == "__main__":
    sys.exit(main())

回答 8

要完成John T的答案:https : //stackoverflow.com/a/616686/395687

我添加了__enter____exit__方法来使用它作为带有with关键字的上下文管理器,它给出了这段代码

class Tee(object):
    def __init__(self, name, mode):
        self.file = open(name, mode)
        self.stdout = sys.stdout
        sys.stdout = self

    def __del__(self):
        sys.stdout = self.stdout
        self.file.close()

    def write(self, data):
        self.file.write(data)
        self.stdout.write(data)

    def __enter__(self):
        pass

    def __exit__(self, _type, _value, _traceback):
        pass

然后可以用作

with Tee('outfile.log', 'w'):
    print('I am written to both stdout and outfile.log')

To complete John T answer: https://stackoverflow.com/a/616686/395687

I added __enter__ and __exit__ methods to use it as a context manager with the with keyword, which gives this code

class Tee(object):
    def __init__(self, name, mode):
        self.file = open(name, mode)
        self.stdout = sys.stdout
        sys.stdout = self

    def __del__(self):
        sys.stdout = self.stdout
        self.file.close()

    def write(self, data):
        self.file.write(data)
        self.stdout.write(data)

    def __enter__(self):
        pass

    def __exit__(self, _type, _value, _traceback):
        pass

It can then be used as

with Tee('outfile.log', 'w'):
    print('I am written to both stdout and outfile.log')

回答 9

我知道这个问题已经被反复回答,但是为此,我从John T的答案中得到了主要答案并对其进行了修改,因此它包含建议的同花顺并遵循其链接的修订版本。我还添加了cladmi的答案中提到的enter和exit,可用于with语句。另外,文档提到使用刷新文件,os.fsync()因此我也添加了它。我不知道您是否真的需要,但是在那里。

import sys, os

class Logger(object):
    "Lumberjack class - duplicates sys.stdout to a log file and it's okay"
    #source: https://stackoverflow.com/q/616645
    def __init__(self, filename="Red.Wood", mode="a", buff=0):
        self.stdout = sys.stdout
        self.file = open(filename, mode, buff)
        sys.stdout = self

    def __del__(self):
        self.close()

    def __enter__(self):
        pass

    def __exit__(self, *args):
        self.close()

    def write(self, message):
        self.stdout.write(message)
        self.file.write(message)

    def flush(self):
        self.stdout.flush()
        self.file.flush()
        os.fsync(self.file.fileno())

    def close(self):
        if self.stdout != None:
            sys.stdout = self.stdout
            self.stdout = None

        if self.file != None:
            self.file.close()
            self.file = None

然后可以使用它

with Logger('My_best_girlie_by_my.side'):
    print("we'd sing sing sing")

要么

Log=Logger('Sleeps_all.night')
print('works all day')
Log.close()

I know this question has been answered repeatedly, but for this I’ve taken the main answer from John T’s answer and modified it so it contains the suggested flush and followed its linked revised version. I’ve also added the enter and exit as mentioned in cladmi’s answer for use with the with statement. In addition, the documentation mentions to flush files using os.fsync() so I’ve added that as well. I don’t know if you really need that but its there.

import sys, os

class Logger(object):
    "Lumberjack class - duplicates sys.stdout to a log file and it's okay"
    #source: https://stackoverflow.com/q/616645
    def __init__(self, filename="Red.Wood", mode="a", buff=0):
        self.stdout = sys.stdout
        self.file = open(filename, mode, buff)
        sys.stdout = self

    def __del__(self):
        self.close()

    def __enter__(self):
        pass

    def __exit__(self, *args):
        self.close()

    def write(self, message):
        self.stdout.write(message)
        self.file.write(message)

    def flush(self):
        self.stdout.flush()
        self.file.flush()
        os.fsync(self.file.fileno())

    def close(self):
        if self.stdout != None:
            sys.stdout = self.stdout
            self.stdout = None

        if self.file != None:
            self.file.close()
            self.file = None

You can then use it

with Logger('My_best_girlie_by_my.side'):
    print("we'd sing sing sing")

or

Log=Logger('Sleeps_all.night')
print('works all day')
Log.close()

回答 10

使用日志记录模块的另一个解决方案:

import logging
import sys

log = logging.getLogger('stdxxx')

class StreamLogger(object):

    def __init__(self, stream, prefix=''):
        self.stream = stream
        self.prefix = prefix
        self.data = ''

    def write(self, data):
        self.stream.write(data)
        self.stream.flush()

        self.data += data
        tmp = str(self.data)
        if '\x0a' in tmp or '\x0d' in tmp:
            tmp = tmp.rstrip('\x0a\x0d')
            log.info('%s%s' % (self.prefix, tmp))
            self.data = ''


logging.basicConfig(level=logging.INFO,
                    filename='text.log',
                    filemode='a')

sys.stdout = StreamLogger(sys.stdout, '[stdout] ')

print 'test for stdout'

another solution using logging module:

import logging
import sys

log = logging.getLogger('stdxxx')

class StreamLogger(object):

    def __init__(self, stream, prefix=''):
        self.stream = stream
        self.prefix = prefix
        self.data = ''

    def write(self, data):
        self.stream.write(data)
        self.stream.flush()

        self.data += data
        tmp = str(self.data)
        if '\x0a' in tmp or '\x0d' in tmp:
            tmp = tmp.rstrip('\x0a\x0d')
            log.info('%s%s' % (self.prefix, tmp))
            self.data = ''


logging.basicConfig(level=logging.INFO,
                    filename='text.log',
                    filemode='a')

sys.stdout = StreamLogger(sys.stdout, '[stdout] ')

print 'test for stdout'

回答 11

上面的答案似乎都无法真正回答所提出的问题。我知道这是一个旧线程,但是我认为这个问题要比每个人都简单得多:

class tee_err(object):

 def __init__(self):
    self.errout = sys.stderr

    sys.stderr = self

    self.log = 'logfile.log'
    log = open(self.log,'w')
    log.close()

 def write(self, line):

    log = open(self.log,'a')
    log.write(line)
    log.close()   

    self.errout.write(line)

现在,这将对正常的sys.stderr处理程序和您的文件重复所有操作。创建另一个类tee_outsys.stdout

None of the answers above really seems to answer the problem posed. I know this is an old thread, but I think this problem is a lot simpler than everyone is making it:

class tee_err(object):

 def __init__(self):
    self.errout = sys.stderr

    sys.stderr = self

    self.log = 'logfile.log'
    log = open(self.log,'w')
    log.close()

 def write(self, line):

    log = open(self.log,'a')
    log.write(line)
    log.close()   

    self.errout.write(line)

Now this will repeat everything to the normal sys.stderr handler and your file. Create another class tee_out for sys.stdout.


回答 12

根据@ user5359531在@John T的回答下的注释中的请求,这是该引用的帖子副本,该副本是该答案中链接讨论的修订版:

Issue of redirecting the stdout to both file and screen
Gabriel Genellina gagsl-py2 at yahoo.com.ar
Mon May 28 12:45:51 CEST 2007

    Previous message: Issue of redirecting the stdout to both file and screen
    Next message: Formal interfaces with Python
    Messages sorted by: [ date ] [ thread ] [ subject ] [ author ]

En Mon, 28 May 2007 06:17:39 -0300, 人言落日是天涯,望极天涯不见家
<kelvin.you at gmail.com> escribió:

> I wanna print the log to both the screen and file, so I simulatered a
> 'tee'
>
> class Tee(file):
>
>     def __init__(self, name, mode):
>         file.__init__(self, name, mode)
>         self.stdout = sys.stdout
>         sys.stdout = self
>
>     def __del__(self):
>         sys.stdout = self.stdout
>         self.close()
>
>     def write(self, data):
>         file.write(self, data)
>         self.stdout.write(data)
>
> Tee('logfile', 'w')
> print >>sys.stdout, 'abcdefg'
>
> I found that it only output to the file, nothing to screen. Why?
> It seems the 'write' function was not called when I *print* something.

You create a Tee instance and it is immediately garbage collected. I'd
restore sys.stdout on Tee.close, not __del__ (you forgot to call the
inherited __del__ method, btw).
Mmm, doesn't work. I think there is an optimization somewhere: if it looks
like a real file object, it uses the original file write method, not yours.
The trick would be to use an object that does NOT inherit from file:

import sys
class TeeNoFile(object):
     def __init__(self, name, mode):
         self.file = open(name, mode)
         self.stdout = sys.stdout
         sys.stdout = self
     def close(self):
         if self.stdout is not None:
             sys.stdout = self.stdout
             self.stdout = None
         if self.file is not None:
             self.file.close()
             self.file = None
     def write(self, data):
         self.file.write(data)
         self.stdout.write(data)
     def flush(self):
         self.file.flush()
         self.stdout.flush()
     def __del__(self):
         self.close()

tee=TeeNoFile('logfile', 'w')
print 'abcdefg'
print 'another line'
tee.close()
print 'screen only'
del tee # should do nothing

--
Gabriel Genellina

As per a request by @user5359531 in the comments under @John T’s answer, here’s a copy of the referenced post to the revised version of the linked discussion in that answer:

Issue of redirecting the stdout to both file and screen
Gabriel Genellina gagsl-py2 at yahoo.com.ar
Mon May 28 12:45:51 CEST 2007

    Previous message: Issue of redirecting the stdout to both file and screen
    Next message: Formal interfaces with Python
    Messages sorted by: [ date ] [ thread ] [ subject ] [ author ]

En Mon, 28 May 2007 06:17:39 -0300, 人言落日是天涯,望极天涯不见家
<kelvin.you at gmail.com> escribió:

> I wanna print the log to both the screen and file, so I simulatered a
> 'tee'
>
> class Tee(file):
>
>     def __init__(self, name, mode):
>         file.__init__(self, name, mode)
>         self.stdout = sys.stdout
>         sys.stdout = self
>
>     def __del__(self):
>         sys.stdout = self.stdout
>         self.close()
>
>     def write(self, data):
>         file.write(self, data)
>         self.stdout.write(data)
>
> Tee('logfile', 'w')
> print >>sys.stdout, 'abcdefg'
>
> I found that it only output to the file, nothing to screen. Why?
> It seems the 'write' function was not called when I *print* something.

You create a Tee instance and it is immediately garbage collected. I'd
restore sys.stdout on Tee.close, not __del__ (you forgot to call the
inherited __del__ method, btw).
Mmm, doesn't work. I think there is an optimization somewhere: if it looks
like a real file object, it uses the original file write method, not yours.
The trick would be to use an object that does NOT inherit from file:

import sys
class TeeNoFile(object):
     def __init__(self, name, mode):
         self.file = open(name, mode)
         self.stdout = sys.stdout
         sys.stdout = self
     def close(self):
         if self.stdout is not None:
             sys.stdout = self.stdout
             self.stdout = None
         if self.file is not None:
             self.file.close()
             self.file = None
     def write(self, data):
         self.file.write(data)
         self.stdout.write(data)
     def flush(self):
         self.file.flush()
         self.stdout.flush()
     def __del__(self):
         self.close()

tee=TeeNoFile('logfile', 'w')
print 'abcdefg'
print 'another line'
tee.close()
print 'screen only'
del tee # should do nothing

--
Gabriel Genellina

回答 13

我正在编写一个脚本来运行cmd行脚本。(因为在某些情况下,无法替代Linux命令,例如rsync。)

我真正想要的是在可能的每种情况下都使用默认的python日志记录机制,但是在出乎意料的错误发生时仍能捕获任何错误。

这段代码似乎可以解决问题。它可能不是特别优雅或高效(尽管它不使用string + = string,所以至少它没有那个特定的潜在瓶颈)。我将其发布,以防它给其他人任何有用的想法。

import logging
import os, sys
import datetime

# Get name of module, use as application name
try:
  ME=os.path.split(__file__)[-1].split('.')[0]
except:
  ME='pyExec_'

LOG_IDENTIFIER="uuu___( o O )___uuu "
LOG_IDR_LENGTH=len(LOG_IDENTIFIER)

class PyExec(object):

  # Use this to capture all possible error / output to log
  class SuperTee(object):
      # Original reference: http://mail.python.org/pipermail/python-list/2007-May/442737.html
      def __init__(self, name, mode):
          self.fl = open(name, mode)
          self.fl.write('\n')
          self.stdout = sys.stdout
          self.stdout.write('\n')
          self.stderr = sys.stderr

          sys.stdout = self
          sys.stderr = self

      def __del__(self):
          self.fl.write('\n')
          self.fl.flush()
          sys.stderr = self.stderr
          sys.stdout = self.stdout
          self.fl.close()

      def write(self, data):
          # If the data to write includes the log identifier prefix, then it is already formatted
          if data[0:LOG_IDR_LENGTH]==LOG_IDENTIFIER:
            self.fl.write("%s\n" % data[LOG_IDR_LENGTH:])
            self.stdout.write(data[LOG_IDR_LENGTH:])

          # Otherwise, we can give it a timestamp
          else:

            timestamp=str(datetime.datetime.now())
            if 'Traceback' == data[0:9]:
              data='%s: %s' % (timestamp, data)
              self.fl.write(data)
            else:
              self.fl.write(data)

            self.stdout.write(data)


  def __init__(self, aName, aCmd, logFileName='', outFileName=''):

    # Using name for 'logger' (context?), which is separate from the module or the function
    baseFormatter=logging.Formatter("%(asctime)s \t %(levelname)s \t %(name)s:%(module)s:%(lineno)d \t %(message)s")
    errorFormatter=logging.Formatter(LOG_IDENTIFIER + "%(asctime)s \t %(levelname)s \t %(name)s:%(module)s:%(lineno)d \t %(message)s")

    if logFileName:
      # open passed filename as append
      fl=logging.FileHandler("%s.log" % aName)
    else:
      # otherwise, use log filename as a one-time use file
      fl=logging.FileHandler("%s.log" % aName, 'w')

    fl.setLevel(logging.DEBUG)
    fl.setFormatter(baseFormatter)

    # This will capture stdout and CRITICAL and beyond errors

    if outFileName:
      teeFile=PyExec.SuperTee("%s_out.log" % aName)
    else:
      teeFile=PyExec.SuperTee("%s_out.log" % aName, 'w')

    fl_out=logging.StreamHandler( teeFile )
    fl_out.setLevel(logging.CRITICAL)
    fl_out.setFormatter(errorFormatter)

    # Set up logging
    self.log=logging.getLogger('pyExec_main')
    log=self.log

    log.addHandler(fl)
    log.addHandler(fl_out)

    print "Test print statement."

    log.setLevel(logging.DEBUG)

    log.info("Starting %s", ME)
    log.critical("Critical.")

    # Caught exception
    try:
      raise Exception('Exception test.')
    except Exception,e:
      log.exception(str(e))

    # Uncaught exception
    a=2/0


PyExec('test_pyExec',None)

显然,如果您不像我那样受困扰,请将LOG_IDENTIFIER替换为另一个您不希望有人看到日志的字符串。

I’m writing a script to run cmd-line scripts. ( Because in some cases, there just is no viable substitute for a Linux command — such as the case of rsync. )

What I really wanted was to use the default python logging mechanism in every case where it was possible to do so, but to still capture any error when something went wrong that was unanticipated.

This code seems to do the trick. It may not be particularly elegant or efficient ( although it doesn’t use string+=string, so at least it doesn’t have that particular potential bottle- neck ). I’m posting it in case it gives someone else any useful ideas.

import logging
import os, sys
import datetime

# Get name of module, use as application name
try:
  ME=os.path.split(__file__)[-1].split('.')[0]
except:
  ME='pyExec_'

LOG_IDENTIFIER="uuu___( o O )___uuu "
LOG_IDR_LENGTH=len(LOG_IDENTIFIER)

class PyExec(object):

  # Use this to capture all possible error / output to log
  class SuperTee(object):
      # Original reference: http://mail.python.org/pipermail/python-list/2007-May/442737.html
      def __init__(self, name, mode):
          self.fl = open(name, mode)
          self.fl.write('\n')
          self.stdout = sys.stdout
          self.stdout.write('\n')
          self.stderr = sys.stderr

          sys.stdout = self
          sys.stderr = self

      def __del__(self):
          self.fl.write('\n')
          self.fl.flush()
          sys.stderr = self.stderr
          sys.stdout = self.stdout
          self.fl.close()

      def write(self, data):
          # If the data to write includes the log identifier prefix, then it is already formatted
          if data[0:LOG_IDR_LENGTH]==LOG_IDENTIFIER:
            self.fl.write("%s\n" % data[LOG_IDR_LENGTH:])
            self.stdout.write(data[LOG_IDR_LENGTH:])

          # Otherwise, we can give it a timestamp
          else:

            timestamp=str(datetime.datetime.now())
            if 'Traceback' == data[0:9]:
              data='%s: %s' % (timestamp, data)
              self.fl.write(data)
            else:
              self.fl.write(data)

            self.stdout.write(data)


  def __init__(self, aName, aCmd, logFileName='', outFileName=''):

    # Using name for 'logger' (context?), which is separate from the module or the function
    baseFormatter=logging.Formatter("%(asctime)s \t %(levelname)s \t %(name)s:%(module)s:%(lineno)d \t %(message)s")
    errorFormatter=logging.Formatter(LOG_IDENTIFIER + "%(asctime)s \t %(levelname)s \t %(name)s:%(module)s:%(lineno)d \t %(message)s")

    if logFileName:
      # open passed filename as append
      fl=logging.FileHandler("%s.log" % aName)
    else:
      # otherwise, use log filename as a one-time use file
      fl=logging.FileHandler("%s.log" % aName, 'w')

    fl.setLevel(logging.DEBUG)
    fl.setFormatter(baseFormatter)

    # This will capture stdout and CRITICAL and beyond errors

    if outFileName:
      teeFile=PyExec.SuperTee("%s_out.log" % aName)
    else:
      teeFile=PyExec.SuperTee("%s_out.log" % aName, 'w')

    fl_out=logging.StreamHandler( teeFile )
    fl_out.setLevel(logging.CRITICAL)
    fl_out.setFormatter(errorFormatter)

    # Set up logging
    self.log=logging.getLogger('pyExec_main')
    log=self.log

    log.addHandler(fl)
    log.addHandler(fl_out)

    print "Test print statement."

    log.setLevel(logging.DEBUG)

    log.info("Starting %s", ME)
    log.critical("Critical.")

    # Caught exception
    try:
      raise Exception('Exception test.')
    except Exception,e:
      log.exception(str(e))

    # Uncaught exception
    a=2/0


PyExec('test_pyExec',None)

Obviously, if you’re not as subject to whimsy as I am, replace LOG_IDENTIFIER with another string that you’re not like to ever see someone write to a log.


回答 14

如果希望将所有输​​出记录到文件并将其输出到文本文件,则可以执行以下操作。有点hacky,但是可以用:

import logging
debug = input("Debug or not")
if debug == "1":
    logging.basicConfig(level=logging.DEBUG, filename='./OUT.txt')
    old_print = print
    def print(string):
        old_print(string)
        logging.info(string)
print("OMG it works!")

编辑:请注意,除非您将sys.stderr重定向到sys.stdout,否则这不会记录错误。

EDIT2:第二个问题是与内置函数不同,您必须传递1个参数。

EDIT3:在将stdin和stdout写入控制台和仅使用stderr的文件之前,请参见代码

import logging, sys
debug = input("Debug or not")
if debug == "1":
    old_input = input
    sys.stderr.write = logging.info
    def input(string=""):
        string_in = old_input(string)
        logging.info("STRING IN " + string_in)
        return string_in
    logging.basicConfig(level=logging.DEBUG, filename='./OUT.txt')
    old_print = print
    def print(string="", string2=""):
        old_print(string, string2)
        logging.info(string)
        logging.info(string2)
print("OMG")
b = input()
print(a) ## Deliberate error for testing

If you wish to log all output to a file AND output it to a text file then you can do the following. It’s a bit hacky but it works:

import logging
debug = input("Debug or not")
if debug == "1":
    logging.basicConfig(level=logging.DEBUG, filename='./OUT.txt')
    old_print = print
    def print(string):
        old_print(string)
        logging.info(string)
print("OMG it works!")

EDIT: Note that this does not log errors unless you redirect sys.stderr to sys.stdout

EDIT2: A second issue is that you have to pass 1 argument unlike with the builtin function.

EDIT3: See the code before to write stdin and stdout to console and file with stderr only going to file

import logging, sys
debug = input("Debug or not")
if debug == "1":
    old_input = input
    sys.stderr.write = logging.info
    def input(string=""):
        string_in = old_input(string)
        logging.info("STRING IN " + string_in)
        return string_in
    logging.basicConfig(level=logging.DEBUG, filename='./OUT.txt')
    old_print = print
    def print(string="", string2=""):
        old_print(string, string2)
        logging.info(string)
        logging.info(string2)
print("OMG")
b = input()
print(a) ## Deliberate error for testing

回答 15

我写了一个完整的替代品sys.stderr,只是重复了代码重命名stderrstdout以使其也可以替代sys.stdout

为此,我创建与current stderr和相同的对象类型stdout,并将所有方法转发到原始系统stderrstdout

import os
import sys
import logging

class StdErrReplament(object):
    """
        How to redirect stdout and stderr to logger in Python
        /programming/19425736/how-to-redirect-stdout-and-stderr-to-logger-in-python

        Set a Read-Only Attribute in Python?
        /programming/24497316/set-a-read-only-attribute-in-python
    """
    is_active = False

    @classmethod
    def lock(cls, logger):
        """
            Attach this singleton logger to the `sys.stderr` permanently.
        """
        global _stderr_singleton
        global _stderr_default
        global _stderr_default_class_type

        # On Sublime Text, `sys.__stderr__` is set to None, because they already replaced `sys.stderr`
        # by some `_LogWriter()` class, then just save the current one over there.
        if not sys.__stderr__:
            sys.__stderr__ = sys.stderr

        try:
            _stderr_default
            _stderr_default_class_type

        except NameError:
            _stderr_default = sys.stderr
            _stderr_default_class_type = type( _stderr_default )

        # Recreate the sys.stderr logger when it was reset by `unlock()`
        if not cls.is_active:
            cls.is_active = True
            _stderr_write = _stderr_default.write

            logger_call = logger.debug
            clean_formatter = logger.clean_formatter

            global _sys_stderr_write
            global _sys_stderr_write_hidden

            if sys.version_info <= (3,2):
                logger.file_handler.terminator = '\n'

            # Always recreate/override the internal write function used by `_sys_stderr_write`
            def _sys_stderr_write_hidden(*args, **kwargs):
                """
                    Suppress newline in Python logging module
                    /programming/7168790/suppress-newline-in-python-logging-module
                """

                try:
                    _stderr_write( *args, **kwargs )
                    file_handler = logger.file_handler

                    formatter = file_handler.formatter
                    terminator = file_handler.terminator

                    file_handler.formatter = clean_formatter
                    file_handler.terminator = ""

                    kwargs['extra'] = {'_duplicated_from_file': True}
                    logger_call( *args, **kwargs )

                    file_handler.formatter = formatter
                    file_handler.terminator = terminator

                except Exception:
                    logger.exception( "Could not write to the file_handler: %s(%s)", file_handler, logger )
                    cls.unlock()

            # Only create one `_sys_stderr_write` function pointer ever
            try:
                _sys_stderr_write

            except NameError:

                def _sys_stderr_write(*args, **kwargs):
                    """
                        Hides the actual function pointer. This allow the external function pointer to
                        be cached while the internal written can be exchanged between the standard
                        `sys.stderr.write` and our custom wrapper around it.
                    """
                    _sys_stderr_write_hidden( *args, **kwargs )

        try:
            # Only create one singleton instance ever
            _stderr_singleton

        except NameError:

            class StdErrReplamentHidden(_stderr_default_class_type):
                """
                    Which special methods bypasses __getattribute__ in Python?
                    /programming/12872695/which-special-methods-bypasses-getattribute-in-python
                """

                if hasattr( _stderr_default, "__abstractmethods__" ):
                    __abstractmethods__ = _stderr_default.__abstractmethods__

                if hasattr( _stderr_default, "__base__" ):
                    __base__ = _stderr_default.__base__

                if hasattr( _stderr_default, "__bases__" ):
                    __bases__ = _stderr_default.__bases__

                if hasattr( _stderr_default, "__basicsize__" ):
                    __basicsize__ = _stderr_default.__basicsize__

                if hasattr( _stderr_default, "__call__" ):
                    __call__ = _stderr_default.__call__

                if hasattr( _stderr_default, "__class__" ):
                    __class__ = _stderr_default.__class__

                if hasattr( _stderr_default, "__delattr__" ):
                    __delattr__ = _stderr_default.__delattr__

                if hasattr( _stderr_default, "__dict__" ):
                    __dict__ = _stderr_default.__dict__

                if hasattr( _stderr_default, "__dictoffset__" ):
                    __dictoffset__ = _stderr_default.__dictoffset__

                if hasattr( _stderr_default, "__dir__" ):
                    __dir__ = _stderr_default.__dir__

                if hasattr( _stderr_default, "__doc__" ):
                    __doc__ = _stderr_default.__doc__

                if hasattr( _stderr_default, "__eq__" ):
                    __eq__ = _stderr_default.__eq__

                if hasattr( _stderr_default, "__flags__" ):
                    __flags__ = _stderr_default.__flags__

                if hasattr( _stderr_default, "__format__" ):
                    __format__ = _stderr_default.__format__

                if hasattr( _stderr_default, "__ge__" ):
                    __ge__ = _stderr_default.__ge__

                if hasattr( _stderr_default, "__getattribute__" ):
                    __getattribute__ = _stderr_default.__getattribute__

                if hasattr( _stderr_default, "__gt__" ):
                    __gt__ = _stderr_default.__gt__

                if hasattr( _stderr_default, "__hash__" ):
                    __hash__ = _stderr_default.__hash__

                if hasattr( _stderr_default, "__init__" ):
                    __init__ = _stderr_default.__init__

                if hasattr( _stderr_default, "__init_subclass__" ):
                    __init_subclass__ = _stderr_default.__init_subclass__

                if hasattr( _stderr_default, "__instancecheck__" ):
                    __instancecheck__ = _stderr_default.__instancecheck__

                if hasattr( _stderr_default, "__itemsize__" ):
                    __itemsize__ = _stderr_default.__itemsize__

                if hasattr( _stderr_default, "__le__" ):
                    __le__ = _stderr_default.__le__

                if hasattr( _stderr_default, "__lt__" ):
                    __lt__ = _stderr_default.__lt__

                if hasattr( _stderr_default, "__module__" ):
                    __module__ = _stderr_default.__module__

                if hasattr( _stderr_default, "__mro__" ):
                    __mro__ = _stderr_default.__mro__

                if hasattr( _stderr_default, "__name__" ):
                    __name__ = _stderr_default.__name__

                if hasattr( _stderr_default, "__ne__" ):
                    __ne__ = _stderr_default.__ne__

                if hasattr( _stderr_default, "__new__" ):
                    __new__ = _stderr_default.__new__

                if hasattr( _stderr_default, "__prepare__" ):
                    __prepare__ = _stderr_default.__prepare__

                if hasattr( _stderr_default, "__qualname__" ):
                    __qualname__ = _stderr_default.__qualname__

                if hasattr( _stderr_default, "__reduce__" ):
                    __reduce__ = _stderr_default.__reduce__

                if hasattr( _stderr_default, "__reduce_ex__" ):
                    __reduce_ex__ = _stderr_default.__reduce_ex__

                if hasattr( _stderr_default, "__repr__" ):
                    __repr__ = _stderr_default.__repr__

                if hasattr( _stderr_default, "__setattr__" ):
                    __setattr__ = _stderr_default.__setattr__

                if hasattr( _stderr_default, "__sizeof__" ):
                    __sizeof__ = _stderr_default.__sizeof__

                if hasattr( _stderr_default, "__str__" ):
                    __str__ = _stderr_default.__str__

                if hasattr( _stderr_default, "__subclasscheck__" ):
                    __subclasscheck__ = _stderr_default.__subclasscheck__

                if hasattr( _stderr_default, "__subclasses__" ):
                    __subclasses__ = _stderr_default.__subclasses__

                if hasattr( _stderr_default, "__subclasshook__" ):
                    __subclasshook__ = _stderr_default.__subclasshook__

                if hasattr( _stderr_default, "__text_signature__" ):
                    __text_signature__ = _stderr_default.__text_signature__

                if hasattr( _stderr_default, "__weakrefoffset__" ):
                    __weakrefoffset__ = _stderr_default.__weakrefoffset__

                if hasattr( _stderr_default, "mro" ):
                    mro = _stderr_default.mro

                def __init__(self):
                    """
                        Override any super class `type( _stderr_default )` constructor, so we can 
                        instantiate any kind of `sys.stderr` replacement object, in case it was already 
                        replaced by something else like on Sublime Text with `_LogWriter()`.

                        Assures all attributes were statically replaced just above. This should happen in case
                        some new attribute is added to the python language.

                        This also ignores the only two methods which are not equal, `__init__()` and `__getattribute__()`.
                    """
                    different_methods = ("__init__", "__getattribute__")
                    attributes_to_check = set( dir( object ) + dir( type ) )

                    for attribute in attributes_to_check:

                        if attribute not in different_methods \
                                and hasattr( _stderr_default, attribute ):

                            base_class_attribute = super( _stderr_default_class_type, self ).__getattribute__( attribute )
                            target_class_attribute = _stderr_default.__getattribute__( attribute )

                            if base_class_attribute != target_class_attribute:
                                sys.stderr.write( "    The base class attribute `%s` is different from the target class:\n%s\n%s\n\n" % (
                                        attribute, base_class_attribute, target_class_attribute ) )

                def __getattribute__(self, item):

                    if item == 'write':
                        return _sys_stderr_write

                    try:
                        return _stderr_default.__getattribute__( item )

                    except AttributeError:
                        return super( _stderr_default_class_type, _stderr_default ).__getattribute__( item )

            _stderr_singleton = StdErrReplamentHidden()
            sys.stderr = _stderr_singleton

        return cls

    @classmethod
    def unlock(cls):
        """
            Detach this `stderr` writer from `sys.stderr` and allow the next call to `lock()` create
            a new writer for the stderr.
        """

        if cls.is_active:
            global _sys_stderr_write_hidden

            cls.is_active = False
            _sys_stderr_write_hidden = _stderr_default.write



class StdOutReplament(object):
    """
        How to redirect stdout and stderr to logger in Python
        /programming/19425736/how-to-redirect-stdout-and-stderr-to-logger-in-python

        Set a Read-Only Attribute in Python?
        /programming/24497316/set-a-read-only-attribute-in-python
    """
    is_active = False

    @classmethod
    def lock(cls, logger):
        """
            Attach this singleton logger to the `sys.stdout` permanently.
        """
        global _stdout_singleton
        global _stdout_default
        global _stdout_default_class_type

        # On Sublime Text, `sys.__stdout__` is set to None, because they already replaced `sys.stdout`
        # by some `_LogWriter()` class, then just save the current one over there.
        if not sys.__stdout__:
            sys.__stdout__ = sys.stdout

        try:
            _stdout_default
            _stdout_default_class_type

        except NameError:
            _stdout_default = sys.stdout
            _stdout_default_class_type = type( _stdout_default )

        # Recreate the sys.stdout logger when it was reset by `unlock()`
        if not cls.is_active:
            cls.is_active = True
            _stdout_write = _stdout_default.write

            logger_call = logger.debug
            clean_formatter = logger.clean_formatter

            global _sys_stdout_write
            global _sys_stdout_write_hidden

            if sys.version_info <= (3,2):
                logger.file_handler.terminator = '\n'

            # Always recreate/override the internal write function used by `_sys_stdout_write`
            def _sys_stdout_write_hidden(*args, **kwargs):
                """
                    Suppress newline in Python logging module
                    /programming/7168790/suppress-newline-in-python-logging-module
                """

                try:
                    _stdout_write( *args, **kwargs )
                    file_handler = logger.file_handler

                    formatter = file_handler.formatter
                    terminator = file_handler.terminator

                    file_handler.formatter = clean_formatter
                    file_handler.terminator = ""

                    kwargs['extra'] = {'_duplicated_from_file': True}
                    logger_call( *args, **kwargs )

                    file_handler.formatter = formatter
                    file_handler.terminator = terminator

                except Exception:
                    logger.exception( "Could not write to the file_handler: %s(%s)", file_handler, logger )
                    cls.unlock()

            # Only create one `_sys_stdout_write` function pointer ever
            try:
                _sys_stdout_write

            except NameError:

                def _sys_stdout_write(*args, **kwargs):
                    """
                        Hides the actual function pointer. This allow the external function pointer to
                        be cached while the internal written can be exchanged between the standard
                        `sys.stdout.write` and our custom wrapper around it.
                    """
                    _sys_stdout_write_hidden( *args, **kwargs )

        try:
            # Only create one singleton instance ever
            _stdout_singleton

        except NameError:

            class StdOutReplamentHidden(_stdout_default_class_type):
                """
                    Which special methods bypasses __getattribute__ in Python?
                    /programming/12872695/which-special-methods-bypasses-getattribute-in-python
                """

                if hasattr( _stdout_default, "__abstractmethods__" ):
                    __abstractmethods__ = _stdout_default.__abstractmethods__

                if hasattr( _stdout_default, "__base__" ):
                    __base__ = _stdout_default.__base__

                if hasattr( _stdout_default, "__bases__" ):
                    __bases__ = _stdout_default.__bases__

                if hasattr( _stdout_default, "__basicsize__" ):
                    __basicsize__ = _stdout_default.__basicsize__

                if hasattr( _stdout_default, "__call__" ):
                    __call__ = _stdout_default.__call__

                if hasattr( _stdout_default, "__class__" ):
                    __class__ = _stdout_default.__class__

                if hasattr( _stdout_default, "__delattr__" ):
                    __delattr__ = _stdout_default.__delattr__

                if hasattr( _stdout_default, "__dict__" ):
                    __dict__ = _stdout_default.__dict__

                if hasattr( _stdout_default, "__dictoffset__" ):
                    __dictoffset__ = _stdout_default.__dictoffset__

                if hasattr( _stdout_default, "__dir__" ):
                    __dir__ = _stdout_default.__dir__

                if hasattr( _stdout_default, "__doc__" ):
                    __doc__ = _stdout_default.__doc__

                if hasattr( _stdout_default, "__eq__" ):
                    __eq__ = _stdout_default.__eq__

                if hasattr( _stdout_default, "__flags__" ):
                    __flags__ = _stdout_default.__flags__

                if hasattr( _stdout_default, "__format__" ):
                    __format__ = _stdout_default.__format__

                if hasattr( _stdout_default, "__ge__" ):
                    __ge__ = _stdout_default.__ge__

                if hasattr( _stdout_default, "__getattribute__" ):
                    __getattribute__ = _stdout_default.__getattribute__

                if hasattr( _stdout_default, "__gt__" ):
                    __gt__ = _stdout_default.__gt__

                if hasattr( _stdout_default, "__hash__" ):
                    __hash__ = _stdout_default.__hash__

                if hasattr( _stdout_default, "__init__" ):
                    __init__ = _stdout_default.__init__

                if hasattr( _stdout_default, "__init_subclass__" ):
                    __init_subclass__ = _stdout_default.__init_subclass__

                if hasattr( _stdout_default, "__instancecheck__" ):
                    __instancecheck__ = _stdout_default.__instancecheck__

                if hasattr( _stdout_default, "__itemsize__" ):
                    __itemsize__ = _stdout_default.__itemsize__

                if hasattr( _stdout_default, "__le__" ):
                    __le__ = _stdout_default.__le__

                if hasattr( _stdout_default, "__lt__" ):
                    __lt__ = _stdout_default.__lt__

                if hasattr( _stdout_default, "__module__" ):
                    __module__ = _stdout_default.__module__

                if hasattr( _stdout_default, "__mro__" ):
                    __mro__ = _stdout_default.__mro__

                if hasattr( _stdout_default, "__name__" ):
                    __name__ = _stdout_default.__name__

                if hasattr( _stdout_default, "__ne__" ):
                    __ne__ = _stdout_default.__ne__

                if hasattr( _stdout_default, "__new__" ):
                    __new__ = _stdout_default.__new__

                if hasattr( _stdout_default, "__prepare__" ):
                    __prepare__ = _stdout_default.__prepare__

                if hasattr( _stdout_default, "__qualname__" ):
                    __qualname__ = _stdout_default.__qualname__

                if hasattr( _stdout_default, "__reduce__" ):
                    __reduce__ = _stdout_default.__reduce__

                if hasattr( _stdout_default, "__reduce_ex__" ):
                    __reduce_ex__ = _stdout_default.__reduce_ex__

                if hasattr( _stdout_default, "__repr__" ):
                    __repr__ = _stdout_default.__repr__

                if hasattr( _stdout_default, "__setattr__" ):
                    __setattr__ = _stdout_default.__setattr__

                if hasattr( _stdout_default, "__sizeof__" ):
                    __sizeof__ = _stdout_default.__sizeof__

                if hasattr( _stdout_default, "__str__" ):
                    __str__ = _stdout_default.__str__

                if hasattr( _stdout_default, "__subclasscheck__" ):
                    __subclasscheck__ = _stdout_default.__subclasscheck__

                if hasattr( _stdout_default, "__subclasses__" ):
                    __subclasses__ = _stdout_default.__subclasses__

                if hasattr( _stdout_default, "__subclasshook__" ):
                    __subclasshook__ = _stdout_default.__subclasshook__

                if hasattr( _stdout_default, "__text_signature__" ):
                    __text_signature__ = _stdout_default.__text_signature__

                if hasattr( _stdout_default, "__weakrefoffset__" ):
                    __weakrefoffset__ = _stdout_default.__weakrefoffset__

                if hasattr( _stdout_default, "mro" ):
                    mro = _stdout_default.mro

                def __init__(self):
                    """
                        Override any super class `type( _stdout_default )` constructor, so we can 
                        instantiate any kind of `sys.stdout` replacement object, in case it was already 
                        replaced by something else like on Sublime Text with `_LogWriter()`.

                        Assures all attributes were statically replaced just above. This should happen in case
                        some new attribute is added to the python language.

                        This also ignores the only two methods which are not equal, `__init__()` and `__getattribute__()`.
                    """
                    different_methods = ("__init__", "__getattribute__")
                    attributes_to_check = set( dir( object ) + dir( type ) )

                    for attribute in attributes_to_check:

                        if attribute not in different_methods \
                                and hasattr( _stdout_default, attribute ):

                            base_class_attribute = super( _stdout_default_class_type, self ).__getattribute__( attribute )
                            target_class_attribute = _stdout_default.__getattribute__( attribute )

                            if base_class_attribute != target_class_attribute:
                                sys.stdout.write( "    The base class attribute `%s` is different from the target class:\n%s\n%s\n\n" % (
                                        attribute, base_class_attribute, target_class_attribute ) )

                def __getattribute__(self, item):

                    if item == 'write':
                        return _sys_stdout_write

                    try:
                        return _stdout_default.__getattribute__( item )

                    except AttributeError:
                        return super( _stdout_default_class_type, _stdout_default ).__getattribute__( item )

            _stdout_singleton = StdOutReplamentHidden()
            sys.stdout = _stdout_singleton

        return cls

    @classmethod
    def unlock(cls):
        """
            Detach this `stdout` writer from `sys.stdout` and allow the next call to `lock()` create
            a new writer for the stdout.
        """

        if cls.is_active:
            global _sys_stdout_write_hidden

            cls.is_active = False
            _sys_stdout_write_hidden = _stdout_default.write

要使用此功能,您只需调用StdErrReplament::lock(logger)StdOutReplament::lock(logger) 传递要用于发送输出文本的记录器即可。例如:

import os
import sys
import logging

current_folder = os.path.dirname( os.path.realpath( __file__ ) )
log_file_path = os.path.join( current_folder, "my_log_file.txt" )

file_handler = logging.FileHandler( log_file_path, 'a' )
file_handler.formatter = logging.Formatter( "%(asctime)s %(name)s %(levelname)s - %(message)s", "%Y-%m-%d %H:%M:%S" )

log = logging.getLogger( __name__ )
log.setLevel( "DEBUG" )
log.addHandler( file_handler )

log.file_handler = file_handler
log.clean_formatter = logging.Formatter( "", "" )

StdOutReplament.lock( log )
StdErrReplament.lock( log )

log.debug( "I am doing usual logging debug..." )
sys.stderr.write( "Tests 1...\n" )
sys.stdout.write( "Tests 2...\n" )

运行此代码,您将在屏幕上看到:

并在文件内容上:

如果您还希望log.debug在屏幕上看到呼叫的内容,则需要在记录器中添加流处理程序。在这种情况下,将是这样的:

import os
import sys
import logging

class ContextFilter(logging.Filter):
    """ This filter avoids duplicated information to be displayed to the StreamHandler log. """
    def filter(self, record):
        return not "_duplicated_from_file" in record.__dict__

current_folder = os.path.dirname( os.path.realpath( __file__ ) )
log_file_path = os.path.join( current_folder, "my_log_file.txt" )

stream_handler = logging.StreamHandler()
file_handler = logging.FileHandler( log_file_path, 'a' )

formatter = logging.Formatter( "%(asctime)s %(name)s %(levelname)s - %(message)s", "%Y-%m-%d %H:%M:%S" )
file_handler.formatter = formatter
stream_handler.formatter = formatter
stream_handler.addFilter( ContextFilter() )

log = logging.getLogger( __name__ )
log.setLevel( "DEBUG" )
log.addHandler( file_handler )
log.addHandler( stream_handler )

log.file_handler = file_handler
log.stream_handler = stream_handler
log.clean_formatter = logging.Formatter( "", "" )

StdOutReplament.lock( log )
StdErrReplament.lock( log )

log.debug( "I am doing usual logging debug..." )
sys.stderr.write( "Tests 1...\n" )
sys.stdout.write( "Tests 2...\n" )

运行时将输出如下内容:

虽然它仍然会将其保存到文件中my_log_file.txt

当使用禁用此功能时StdErrReplament:unlock(),它将仅恢复stderr流的标准行为,因为附加的记录器永远都不会分离,因为其他人可以引用其旧版本。这就是为什么它是永远不会消失的全球单身人士的原因。因此,万一重新加载该模块imp或其他模块,它将永远不会重新捕获sys.stderr已注入到模块中的电流并在内部保存它。

I wrote a full replacement for sys.stderr and just duplicated the code renaming stderr to stdout to make it also available to replace sys.stdout.

To do this I create the same object type as the current stderr and stdout, and forward all methods to the original system stderr and stdout:

import os
import sys
import logging

class StdErrReplament(object):
    """
        How to redirect stdout and stderr to logger in Python
        https://stackoverflow.com/questions/19425736/how-to-redirect-stdout-and-stderr-to-logger-in-python

        Set a Read-Only Attribute in Python?
        https://stackoverflow.com/questions/24497316/set-a-read-only-attribute-in-python
    """
    is_active = False

    @classmethod
    def lock(cls, logger):
        """
            Attach this singleton logger to the `sys.stderr` permanently.
        """
        global _stderr_singleton
        global _stderr_default
        global _stderr_default_class_type

        # On Sublime Text, `sys.__stderr__` is set to None, because they already replaced `sys.stderr`
        # by some `_LogWriter()` class, then just save the current one over there.
        if not sys.__stderr__:
            sys.__stderr__ = sys.stderr

        try:
            _stderr_default
            _stderr_default_class_type

        except NameError:
            _stderr_default = sys.stderr
            _stderr_default_class_type = type( _stderr_default )

        # Recreate the sys.stderr logger when it was reset by `unlock()`
        if not cls.is_active:
            cls.is_active = True
            _stderr_write = _stderr_default.write

            logger_call = logger.debug
            clean_formatter = logger.clean_formatter

            global _sys_stderr_write
            global _sys_stderr_write_hidden

            if sys.version_info <= (3,2):
                logger.file_handler.terminator = '\n'

            # Always recreate/override the internal write function used by `_sys_stderr_write`
            def _sys_stderr_write_hidden(*args, **kwargs):
                """
                    Suppress newline in Python logging module
                    https://stackoverflow.com/questions/7168790/suppress-newline-in-python-logging-module
                """

                try:
                    _stderr_write( *args, **kwargs )
                    file_handler = logger.file_handler

                    formatter = file_handler.formatter
                    terminator = file_handler.terminator

                    file_handler.formatter = clean_formatter
                    file_handler.terminator = ""

                    kwargs['extra'] = {'_duplicated_from_file': True}
                    logger_call( *args, **kwargs )

                    file_handler.formatter = formatter
                    file_handler.terminator = terminator

                except Exception:
                    logger.exception( "Could not write to the file_handler: %s(%s)", file_handler, logger )
                    cls.unlock()

            # Only create one `_sys_stderr_write` function pointer ever
            try:
                _sys_stderr_write

            except NameError:

                def _sys_stderr_write(*args, **kwargs):
                    """
                        Hides the actual function pointer. This allow the external function pointer to
                        be cached while the internal written can be exchanged between the standard
                        `sys.stderr.write` and our custom wrapper around it.
                    """
                    _sys_stderr_write_hidden( *args, **kwargs )

        try:
            # Only create one singleton instance ever
            _stderr_singleton

        except NameError:

            class StdErrReplamentHidden(_stderr_default_class_type):
                """
                    Which special methods bypasses __getattribute__ in Python?
                    https://stackoverflow.com/questions/12872695/which-special-methods-bypasses-getattribute-in-python
                """

                if hasattr( _stderr_default, "__abstractmethods__" ):
                    __abstractmethods__ = _stderr_default.__abstractmethods__

                if hasattr( _stderr_default, "__base__" ):
                    __base__ = _stderr_default.__base__

                if hasattr( _stderr_default, "__bases__" ):
                    __bases__ = _stderr_default.__bases__

                if hasattr( _stderr_default, "__basicsize__" ):
                    __basicsize__ = _stderr_default.__basicsize__

                if hasattr( _stderr_default, "__call__" ):
                    __call__ = _stderr_default.__call__

                if hasattr( _stderr_default, "__class__" ):
                    __class__ = _stderr_default.__class__

                if hasattr( _stderr_default, "__delattr__" ):
                    __delattr__ = _stderr_default.__delattr__

                if hasattr( _stderr_default, "__dict__" ):
                    __dict__ = _stderr_default.__dict__

                if hasattr( _stderr_default, "__dictoffset__" ):
                    __dictoffset__ = _stderr_default.__dictoffset__

                if hasattr( _stderr_default, "__dir__" ):
                    __dir__ = _stderr_default.__dir__

                if hasattr( _stderr_default, "__doc__" ):
                    __doc__ = _stderr_default.__doc__

                if hasattr( _stderr_default, "__eq__" ):
                    __eq__ = _stderr_default.__eq__

                if hasattr( _stderr_default, "__flags__" ):
                    __flags__ = _stderr_default.__flags__

                if hasattr( _stderr_default, "__format__" ):
                    __format__ = _stderr_default.__format__

                if hasattr( _stderr_default, "__ge__" ):
                    __ge__ = _stderr_default.__ge__

                if hasattr( _stderr_default, "__getattribute__" ):
                    __getattribute__ = _stderr_default.__getattribute__

                if hasattr( _stderr_default, "__gt__" ):
                    __gt__ = _stderr_default.__gt__

                if hasattr( _stderr_default, "__hash__" ):
                    __hash__ = _stderr_default.__hash__

                if hasattr( _stderr_default, "__init__" ):
                    __init__ = _stderr_default.__init__

                if hasattr( _stderr_default, "__init_subclass__" ):
                    __init_subclass__ = _stderr_default.__init_subclass__

                if hasattr( _stderr_default, "__instancecheck__" ):
                    __instancecheck__ = _stderr_default.__instancecheck__

                if hasattr( _stderr_default, "__itemsize__" ):
                    __itemsize__ = _stderr_default.__itemsize__

                if hasattr( _stderr_default, "__le__" ):
                    __le__ = _stderr_default.__le__

                if hasattr( _stderr_default, "__lt__" ):
                    __lt__ = _stderr_default.__lt__

                if hasattr( _stderr_default, "__module__" ):
                    __module__ = _stderr_default.__module__

                if hasattr( _stderr_default, "__mro__" ):
                    __mro__ = _stderr_default.__mro__

                if hasattr( _stderr_default, "__name__" ):
                    __name__ = _stderr_default.__name__

                if hasattr( _stderr_default, "__ne__" ):
                    __ne__ = _stderr_default.__ne__

                if hasattr( _stderr_default, "__new__" ):
                    __new__ = _stderr_default.__new__

                if hasattr( _stderr_default, "__prepare__" ):
                    __prepare__ = _stderr_default.__prepare__

                if hasattr( _stderr_default, "__qualname__" ):
                    __qualname__ = _stderr_default.__qualname__

                if hasattr( _stderr_default, "__reduce__" ):
                    __reduce__ = _stderr_default.__reduce__

                if hasattr( _stderr_default, "__reduce_ex__" ):
                    __reduce_ex__ = _stderr_default.__reduce_ex__

                if hasattr( _stderr_default, "__repr__" ):
                    __repr__ = _stderr_default.__repr__

                if hasattr( _stderr_default, "__setattr__" ):
                    __setattr__ = _stderr_default.__setattr__

                if hasattr( _stderr_default, "__sizeof__" ):
                    __sizeof__ = _stderr_default.__sizeof__

                if hasattr( _stderr_default, "__str__" ):
                    __str__ = _stderr_default.__str__

                if hasattr( _stderr_default, "__subclasscheck__" ):
                    __subclasscheck__ = _stderr_default.__subclasscheck__

                if hasattr( _stderr_default, "__subclasses__" ):
                    __subclasses__ = _stderr_default.__subclasses__

                if hasattr( _stderr_default, "__subclasshook__" ):
                    __subclasshook__ = _stderr_default.__subclasshook__

                if hasattr( _stderr_default, "__text_signature__" ):
                    __text_signature__ = _stderr_default.__text_signature__

                if hasattr( _stderr_default, "__weakrefoffset__" ):
                    __weakrefoffset__ = _stderr_default.__weakrefoffset__

                if hasattr( _stderr_default, "mro" ):
                    mro = _stderr_default.mro

                def __init__(self):
                    """
                        Override any super class `type( _stderr_default )` constructor, so we can 
                        instantiate any kind of `sys.stderr` replacement object, in case it was already 
                        replaced by something else like on Sublime Text with `_LogWriter()`.

                        Assures all attributes were statically replaced just above. This should happen in case
                        some new attribute is added to the python language.

                        This also ignores the only two methods which are not equal, `__init__()` and `__getattribute__()`.
                    """
                    different_methods = ("__init__", "__getattribute__")
                    attributes_to_check = set( dir( object ) + dir( type ) )

                    for attribute in attributes_to_check:

                        if attribute not in different_methods \
                                and hasattr( _stderr_default, attribute ):

                            base_class_attribute = super( _stderr_default_class_type, self ).__getattribute__( attribute )
                            target_class_attribute = _stderr_default.__getattribute__( attribute )

                            if base_class_attribute != target_class_attribute:
                                sys.stderr.write( "    The base class attribute `%s` is different from the target class:\n%s\n%s\n\n" % (
                                        attribute, base_class_attribute, target_class_attribute ) )

                def __getattribute__(self, item):

                    if item == 'write':
                        return _sys_stderr_write

                    try:
                        return _stderr_default.__getattribute__( item )

                    except AttributeError:
                        return super( _stderr_default_class_type, _stderr_default ).__getattribute__( item )

            _stderr_singleton = StdErrReplamentHidden()
            sys.stderr = _stderr_singleton

        return cls

    @classmethod
    def unlock(cls):
        """
            Detach this `stderr` writer from `sys.stderr` and allow the next call to `lock()` create
            a new writer for the stderr.
        """

        if cls.is_active:
            global _sys_stderr_write_hidden

            cls.is_active = False
            _sys_stderr_write_hidden = _stderr_default.write



class StdOutReplament(object):
    """
        How to redirect stdout and stderr to logger in Python
        https://stackoverflow.com/questions/19425736/how-to-redirect-stdout-and-stderr-to-logger-in-python

        Set a Read-Only Attribute in Python?
        https://stackoverflow.com/questions/24497316/set-a-read-only-attribute-in-python
    """
    is_active = False

    @classmethod
    def lock(cls, logger):
        """
            Attach this singleton logger to the `sys.stdout` permanently.
        """
        global _stdout_singleton
        global _stdout_default
        global _stdout_default_class_type

        # On Sublime Text, `sys.__stdout__` is set to None, because they already replaced `sys.stdout`
        # by some `_LogWriter()` class, then just save the current one over there.
        if not sys.__stdout__:
            sys.__stdout__ = sys.stdout

        try:
            _stdout_default
            _stdout_default_class_type

        except NameError:
            _stdout_default = sys.stdout
            _stdout_default_class_type = type( _stdout_default )

        # Recreate the sys.stdout logger when it was reset by `unlock()`
        if not cls.is_active:
            cls.is_active = True
            _stdout_write = _stdout_default.write

            logger_call = logger.debug
            clean_formatter = logger.clean_formatter

            global _sys_stdout_write
            global _sys_stdout_write_hidden

            if sys.version_info <= (3,2):
                logger.file_handler.terminator = '\n'

            # Always recreate/override the internal write function used by `_sys_stdout_write`
            def _sys_stdout_write_hidden(*args, **kwargs):
                """
                    Suppress newline in Python logging module
                    https://stackoverflow.com/questions/7168790/suppress-newline-in-python-logging-module
                """

                try:
                    _stdout_write( *args, **kwargs )
                    file_handler = logger.file_handler

                    formatter = file_handler.formatter
                    terminator = file_handler.terminator

                    file_handler.formatter = clean_formatter
                    file_handler.terminator = ""

                    kwargs['extra'] = {'_duplicated_from_file': True}
                    logger_call( *args, **kwargs )

                    file_handler.formatter = formatter
                    file_handler.terminator = terminator

                except Exception:
                    logger.exception( "Could not write to the file_handler: %s(%s)", file_handler, logger )
                    cls.unlock()

            # Only create one `_sys_stdout_write` function pointer ever
            try:
                _sys_stdout_write

            except NameError:

                def _sys_stdout_write(*args, **kwargs):
                    """
                        Hides the actual function pointer. This allow the external function pointer to
                        be cached while the internal written can be exchanged between the standard
                        `sys.stdout.write` and our custom wrapper around it.
                    """
                    _sys_stdout_write_hidden( *args, **kwargs )

        try:
            # Only create one singleton instance ever
            _stdout_singleton

        except NameError:

            class StdOutReplamentHidden(_stdout_default_class_type):
                """
                    Which special methods bypasses __getattribute__ in Python?
                    https://stackoverflow.com/questions/12872695/which-special-methods-bypasses-getattribute-in-python
                """

                if hasattr( _stdout_default, "__abstractmethods__" ):
                    __abstractmethods__ = _stdout_default.__abstractmethods__

                if hasattr( _stdout_default, "__base__" ):
                    __base__ = _stdout_default.__base__

                if hasattr( _stdout_default, "__bases__" ):
                    __bases__ = _stdout_default.__bases__

                if hasattr( _stdout_default, "__basicsize__" ):
                    __basicsize__ = _stdout_default.__basicsize__

                if hasattr( _stdout_default, "__call__" ):
                    __call__ = _stdout_default.__call__

                if hasattr( _stdout_default, "__class__" ):
                    __class__ = _stdout_default.__class__

                if hasattr( _stdout_default, "__delattr__" ):
                    __delattr__ = _stdout_default.__delattr__

                if hasattr( _stdout_default, "__dict__" ):
                    __dict__ = _stdout_default.__dict__

                if hasattr( _stdout_default, "__dictoffset__" ):
                    __dictoffset__ = _stdout_default.__dictoffset__

                if hasattr( _stdout_default, "__dir__" ):
                    __dir__ = _stdout_default.__dir__

                if hasattr( _stdout_default, "__doc__" ):
                    __doc__ = _stdout_default.__doc__

                if hasattr( _stdout_default, "__eq__" ):
                    __eq__ = _stdout_default.__eq__

                if hasattr( _stdout_default, "__flags__" ):
                    __flags__ = _stdout_default.__flags__

                if hasattr( _stdout_default, "__format__" ):
                    __format__ = _stdout_default.__format__

                if hasattr( _stdout_default, "__ge__" ):
                    __ge__ = _stdout_default.__ge__

                if hasattr( _stdout_default, "__getattribute__" ):
                    __getattribute__ = _stdout_default.__getattribute__

                if hasattr( _stdout_default, "__gt__" ):
                    __gt__ = _stdout_default.__gt__

                if hasattr( _stdout_default, "__hash__" ):
                    __hash__ = _stdout_default.__hash__

                if hasattr( _stdout_default, "__init__" ):
                    __init__ = _stdout_default.__init__

                if hasattr( _stdout_default, "__init_subclass__" ):
                    __init_subclass__ = _stdout_default.__init_subclass__

                if hasattr( _stdout_default, "__instancecheck__" ):
                    __instancecheck__ = _stdout_default.__instancecheck__

                if hasattr( _stdout_default, "__itemsize__" ):
                    __itemsize__ = _stdout_default.__itemsize__

                if hasattr( _stdout_default, "__le__" ):
                    __le__ = _stdout_default.__le__

                if hasattr( _stdout_default, "__lt__" ):
                    __lt__ = _stdout_default.__lt__

                if hasattr( _stdout_default, "__module__" ):
                    __module__ = _stdout_default.__module__

                if hasattr( _stdout_default, "__mro__" ):
                    __mro__ = _stdout_default.__mro__

                if hasattr( _stdout_default, "__name__" ):
                    __name__ = _stdout_default.__name__

                if hasattr( _stdout_default, "__ne__" ):
                    __ne__ = _stdout_default.__ne__

                if hasattr( _stdout_default, "__new__" ):
                    __new__ = _stdout_default.__new__

                if hasattr( _stdout_default, "__prepare__" ):
                    __prepare__ = _stdout_default.__prepare__

                if hasattr( _stdout_default, "__qualname__" ):
                    __qualname__ = _stdout_default.__qualname__

                if hasattr( _stdout_default, "__reduce__" ):
                    __reduce__ = _stdout_default.__reduce__

                if hasattr( _stdout_default, "__reduce_ex__" ):
                    __reduce_ex__ = _stdout_default.__reduce_ex__

                if hasattr( _stdout_default, "__repr__" ):
                    __repr__ = _stdout_default.__repr__

                if hasattr( _stdout_default, "__setattr__" ):
                    __setattr__ = _stdout_default.__setattr__

                if hasattr( _stdout_default, "__sizeof__" ):
                    __sizeof__ = _stdout_default.__sizeof__

                if hasattr( _stdout_default, "__str__" ):
                    __str__ = _stdout_default.__str__

                if hasattr( _stdout_default, "__subclasscheck__" ):
                    __subclasscheck__ = _stdout_default.__subclasscheck__

                if hasattr( _stdout_default, "__subclasses__" ):
                    __subclasses__ = _stdout_default.__subclasses__

                if hasattr( _stdout_default, "__subclasshook__" ):
                    __subclasshook__ = _stdout_default.__subclasshook__

                if hasattr( _stdout_default, "__text_signature__" ):
                    __text_signature__ = _stdout_default.__text_signature__

                if hasattr( _stdout_default, "__weakrefoffset__" ):
                    __weakrefoffset__ = _stdout_default.__weakrefoffset__

                if hasattr( _stdout_default, "mro" ):
                    mro = _stdout_default.mro

                def __init__(self):
                    """
                        Override any super class `type( _stdout_default )` constructor, so we can 
                        instantiate any kind of `sys.stdout` replacement object, in case it was already 
                        replaced by something else like on Sublime Text with `_LogWriter()`.

                        Assures all attributes were statically replaced just above. This should happen in case
                        some new attribute is added to the python language.

                        This also ignores the only two methods which are not equal, `__init__()` and `__getattribute__()`.
                    """
                    different_methods = ("__init__", "__getattribute__")
                    attributes_to_check = set( dir( object ) + dir( type ) )

                    for attribute in attributes_to_check:

                        if attribute not in different_methods \
                                and hasattr( _stdout_default, attribute ):

                            base_class_attribute = super( _stdout_default_class_type, self ).__getattribute__( attribute )
                            target_class_attribute = _stdout_default.__getattribute__( attribute )

                            if base_class_attribute != target_class_attribute:
                                sys.stdout.write( "    The base class attribute `%s` is different from the target class:\n%s\n%s\n\n" % (
                                        attribute, base_class_attribute, target_class_attribute ) )

                def __getattribute__(self, item):

                    if item == 'write':
                        return _sys_stdout_write

                    try:
                        return _stdout_default.__getattribute__( item )

                    except AttributeError:
                        return super( _stdout_default_class_type, _stdout_default ).__getattribute__( item )

            _stdout_singleton = StdOutReplamentHidden()
            sys.stdout = _stdout_singleton

        return cls

    @classmethod
    def unlock(cls):
        """
            Detach this `stdout` writer from `sys.stdout` and allow the next call to `lock()` create
            a new writer for the stdout.
        """

        if cls.is_active:
            global _sys_stdout_write_hidden

            cls.is_active = False
            _sys_stdout_write_hidden = _stdout_default.write

To use this you can just call StdErrReplament::lock(logger) and StdOutReplament::lock(logger) passing the logger you want to use to send the output text. For example:

import os
import sys
import logging

current_folder = os.path.dirname( os.path.realpath( __file__ ) )
log_file_path = os.path.join( current_folder, "my_log_file.txt" )

file_handler = logging.FileHandler( log_file_path, 'a' )
file_handler.formatter = logging.Formatter( "%(asctime)s %(name)s %(levelname)s - %(message)s", "%Y-%m-%d %H:%M:%S" )

log = logging.getLogger( __name__ )
log.setLevel( "DEBUG" )
log.addHandler( file_handler )

log.file_handler = file_handler
log.clean_formatter = logging.Formatter( "", "" )

StdOutReplament.lock( log )
StdErrReplament.lock( log )

log.debug( "I am doing usual logging debug..." )
sys.stderr.write( "Tests 1...\n" )
sys.stdout.write( "Tests 2...\n" )

Running this code, you will see on the screen:

And on the file contents:

If you would like to also see the contents of the log.debug calls on the screen, you will need to add a stream handler to your logger. On this case it would be like this:

import os
import sys
import logging

class ContextFilter(logging.Filter):
    """ This filter avoids duplicated information to be displayed to the StreamHandler log. """
    def filter(self, record):
        return not "_duplicated_from_file" in record.__dict__

current_folder = os.path.dirname( os.path.realpath( __file__ ) )
log_file_path = os.path.join( current_folder, "my_log_file.txt" )

stream_handler = logging.StreamHandler()
file_handler = logging.FileHandler( log_file_path, 'a' )

formatter = logging.Formatter( "%(asctime)s %(name)s %(levelname)s - %(message)s", "%Y-%m-%d %H:%M:%S" )
file_handler.formatter = formatter
stream_handler.formatter = formatter
stream_handler.addFilter( ContextFilter() )

log = logging.getLogger( __name__ )
log.setLevel( "DEBUG" )
log.addHandler( file_handler )
log.addHandler( stream_handler )

log.file_handler = file_handler
log.stream_handler = stream_handler
log.clean_formatter = logging.Formatter( "", "" )

StdOutReplament.lock( log )
StdErrReplament.lock( log )

log.debug( "I am doing usual logging debug..." )
sys.stderr.write( "Tests 1...\n" )
sys.stdout.write( "Tests 2...\n" )

Which would output like this when running:

While it would still saving this to the file my_log_file.txt:

When disabling this with StdErrReplament:unlock(), it will only restore the standard behavior of the stderr stream, as the attached logger cannot be never detached because someone else can have a reference to its older version. This is why it is a global singleton which can never dies. Therefore, in case of reloading this module with imp or something else, it will never recapture the current sys.stderr as it was already injected on it and have it saved internally.