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# encoding: utf-8
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"""
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Utilities for working with strings and text.
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"""
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#-----------------------------------------------------------------------------
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# Copyright (C) 2008-2009 The IPython Development Team
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#
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# Distributed under the terms of the BSD License. The full license is in
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# the file COPYING, distributed as part of this software.
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#-----------------------------------------------------------------------------
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#-----------------------------------------------------------------------------
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# Imports
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#-----------------------------------------------------------------------------
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import __main__
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import os
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import re
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import shutil
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import types
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from IPython.external.path import path
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from IPython.utils.io import nlprint
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from IPython.utils.data import flatten
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#-----------------------------------------------------------------------------
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# Code
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#-----------------------------------------------------------------------------
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StringTypes = types.StringTypes
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def unquote_ends(istr):
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"""Remove a single pair of quotes from the endpoints of a string."""
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if not istr:
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return istr
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if (istr[0]=="'" and istr[-1]=="'") or \
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(istr[0]=='"' and istr[-1]=='"'):
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return istr[1:-1]
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else:
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return istr
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class LSString(str):
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"""String derivative with a special access attributes.
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These are normal strings, but with the special attributes:
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.l (or .list) : value as list (split on newlines).
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.n (or .nlstr): original value (the string itself).
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.s (or .spstr): value as whitespace-separated string.
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.p (or .paths): list of path objects
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Any values which require transformations are computed only once and
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cached.
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Such strings are very useful to efficiently interact with the shell, which
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typically only understands whitespace-separated options for commands."""
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def get_list(self):
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try:
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return self.__list
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except AttributeError:
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self.__list = self.split('\n')
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return self.__list
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l = list = property(get_list)
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def get_spstr(self):
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try:
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return self.__spstr
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except AttributeError:
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self.__spstr = self.replace('\n',' ')
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return self.__spstr
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s = spstr = property(get_spstr)
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def get_nlstr(self):
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return self
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n = nlstr = property(get_nlstr)
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def get_paths(self):
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try:
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return self.__paths
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except AttributeError:
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self.__paths = [path(p) for p in self.split('\n') if os.path.exists(p)]
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return self.__paths
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p = paths = property(get_paths)
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# FIXME: We need to reimplement type specific displayhook and then add this
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# back as a custom printer. This should also be moved outside utils into the
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# core.
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# def print_lsstring(arg):
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# """ Prettier (non-repr-like) and more informative printer for LSString """
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# print "LSString (.p, .n, .l, .s available). Value:"
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# print arg
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#
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#
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# print_lsstring = result_display.when_type(LSString)(print_lsstring)
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class SList(list):
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"""List derivative with a special access attributes.
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These are normal lists, but with the special attributes:
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.l (or .list) : value as list (the list itself).
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.n (or .nlstr): value as a string, joined on newlines.
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.s (or .spstr): value as a string, joined on spaces.
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.p (or .paths): list of path objects
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Any values which require transformations are computed only once and
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cached."""
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def get_list(self):
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return self
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l = list = property(get_list)
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def get_spstr(self):
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try:
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return self.__spstr
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except AttributeError:
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self.__spstr = ' '.join(self)
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return self.__spstr
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s = spstr = property(get_spstr)
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def get_nlstr(self):
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try:
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return self.__nlstr
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except AttributeError:
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self.__nlstr = '\n'.join(self)
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return self.__nlstr
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n = nlstr = property(get_nlstr)
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def get_paths(self):
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try:
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return self.__paths
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except AttributeError:
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self.__paths = [path(p) for p in self if os.path.exists(p)]
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return self.__paths
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p = paths = property(get_paths)
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def grep(self, pattern, prune = False, field = None):
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""" Return all strings matching 'pattern' (a regex or callable)
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This is case-insensitive. If prune is true, return all items
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NOT matching the pattern.
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If field is specified, the match must occur in the specified
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whitespace-separated field.
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Examples::
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a.grep( lambda x: x.startswith('C') )
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a.grep('Cha.*log', prune=1)
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a.grep('chm', field=-1)
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"""
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def match_target(s):
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if field is None:
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return s
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parts = s.split()
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try:
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tgt = parts[field]
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return tgt
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except IndexError:
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return ""
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if isinstance(pattern, basestring):
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pred = lambda x : re.search(pattern, x, re.IGNORECASE)
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else:
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pred = pattern
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if not prune:
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return SList([el for el in self if pred(match_target(el))])
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else:
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return SList([el for el in self if not pred(match_target(el))])
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def fields(self, *fields):
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""" Collect whitespace-separated fields from string list
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Allows quick awk-like usage of string lists.
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Example data (in var a, created by 'a = !ls -l')::
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-rwxrwxrwx 1 ville None 18 Dec 14 2006 ChangeLog
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drwxrwxrwx+ 6 ville None 0 Oct 24 18:05 IPython
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a.fields(0) is ['-rwxrwxrwx', 'drwxrwxrwx+']
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a.fields(1,0) is ['1 -rwxrwxrwx', '6 drwxrwxrwx+']
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(note the joining by space).
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a.fields(-1) is ['ChangeLog', 'IPython']
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IndexErrors are ignored.
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Without args, fields() just split()'s the strings.
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"""
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if len(fields) == 0:
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return [el.split() for el in self]
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res = SList()
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for el in [f.split() for f in self]:
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lineparts = []
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for fd in fields:
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try:
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lineparts.append(el[fd])
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except IndexError:
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pass
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if lineparts:
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res.append(" ".join(lineparts))
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return res
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def sort(self,field= None, nums = False):
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""" sort by specified fields (see fields())
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Example::
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a.sort(1, nums = True)
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Sorts a by second field, in numerical order (so that 21 > 3)
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"""
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#decorate, sort, undecorate
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if field is not None:
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dsu = [[SList([line]).fields(field), line] for line in self]
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else:
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dsu = [[line, line] for line in self]
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if nums:
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for i in range(len(dsu)):
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numstr = "".join([ch for ch in dsu[i][0] if ch.isdigit()])
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try:
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n = int(numstr)
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except ValueError:
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n = 0;
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dsu[i][0] = n
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dsu.sort()
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return SList([t[1] for t in dsu])
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# FIXME: We need to reimplement type specific displayhook and then add this
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# back as a custom printer. This should also be moved outside utils into the
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# core.
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# def print_slist(arg):
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# """ Prettier (non-repr-like) and more informative printer for SList """
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# print "SList (.p, .n, .l, .s, .grep(), .fields(), sort() available):"
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# if hasattr(arg, 'hideonce') and arg.hideonce:
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# arg.hideonce = False
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# return
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#
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# nlprint(arg)
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#
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# print_slist = result_display.when_type(SList)(print_slist)
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def esc_quotes(strng):
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"""Return the input string with single and double quotes escaped out"""
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return strng.replace('"','\\"').replace("'","\\'")
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def make_quoted_expr(s):
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"""Return string s in appropriate quotes, using raw string if possible.
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XXX - example removed because it caused encoding errors in documentation
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generation. We need a new example that doesn't contain invalid chars.
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Note the use of raw string and padding at the end to allow trailing
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backslash.
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"""
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tail = ''
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tailpadding = ''
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raw = ''
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if "\\" in s:
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raw = 'r'
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if s.endswith('\\'):
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tail = '[:-1]'
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tailpadding = '_'
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if '"' not in s:
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quote = '"'
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elif "'" not in s:
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quote = "'"
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elif '"""' not in s and not s.endswith('"'):
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quote = '"""'
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elif "'''" not in s and not s.endswith("'"):
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quote = "'''"
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else:
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# give up, backslash-escaped string will do
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return '"%s"' % esc_quotes(s)
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res = raw + quote + s + tailpadding + quote + tail
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return res
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def qw(words,flat=0,sep=None,maxsplit=-1):
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"""Similar to Perl's qw() operator, but with some more options.
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qw(words,flat=0,sep=' ',maxsplit=-1) -> words.split(sep,maxsplit)
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words can also be a list itself, and with flat=1, the output will be
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recursively flattened.
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Examples:
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>>> qw('1 2')
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['1', '2']
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>>> qw(['a b','1 2',['m n','p q']])
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[['a', 'b'], ['1', '2'], [['m', 'n'], ['p', 'q']]]
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>>> qw(['a b','1 2',['m n','p q']],flat=1)
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['a', 'b', '1', '2', 'm', 'n', 'p', 'q']
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"""
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if type(words) in StringTypes:
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return [word.strip() for word in words.split(sep,maxsplit)
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if word and not word.isspace() ]
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if flat:
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return flatten(map(qw,words,[1]*len(words)))
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return map(qw,words)
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def qwflat(words,sep=None,maxsplit=-1):
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"""Calls qw(words) in flat mode. It's just a convenient shorthand."""
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return qw(words,1,sep,maxsplit)
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def qw_lol(indata):
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"""qw_lol('a b') -> [['a','b']],
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otherwise it's just a call to qw().
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We need this to make sure the modules_some keys *always* end up as a
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list of lists."""
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if type(indata) in StringTypes:
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return [qw(indata)]
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else:
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return qw(indata)
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def grep(pat,list,case=1):
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"""Simple minded grep-like function.
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grep(pat,list) returns occurrences of pat in list, None on failure.
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It only does simple string matching, with no support for regexps. Use the
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option case=0 for case-insensitive matching."""
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# This is pretty crude. At least it should implement copying only references
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# to the original data in case it's big. Now it copies the data for output.
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out=[]
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if case:
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for term in list:
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if term.find(pat)>-1: out.append(term)
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else:
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lpat=pat.lower()
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for term in list:
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if term.lower().find(lpat)>-1: out.append(term)
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if len(out): return out
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else: return None
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def dgrep(pat,*opts):
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"""Return grep() on dir()+dir(__builtins__).
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A very common use of grep() when working interactively."""
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return grep(pat,dir(__main__)+dir(__main__.__builtins__),*opts)
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def idgrep(pat):
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"""Case-insensitive dgrep()"""
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return dgrep(pat,0)
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def igrep(pat,list):
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"""Synonym for case-insensitive grep."""
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return grep(pat,list,case=0)
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def indent(str,nspaces=4,ntabs=0):
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"""Indent a string a given number of spaces or tabstops.
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indent(str,nspaces=4,ntabs=0) -> indent str by ntabs+nspaces.
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"""
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if str is None:
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return
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ind = '\t'*ntabs+' '*nspaces
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outstr = '%s%s' % (ind,str.replace(os.linesep,os.linesep+ind))
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if outstr.endswith(os.linesep+ind):
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return outstr[:-len(ind)]
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else:
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return outstr
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|
|
|
def native_line_ends(filename,backup=1):
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|
"""Convert (in-place) a file to line-ends native to the current OS.
|
|
|
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If the optional backup argument is given as false, no backup of the
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original file is left. """
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|
backup_suffixes = {'posix':'~','dos':'.bak','nt':'.bak','mac':'.bak'}
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bak_filename = filename + backup_suffixes[os.name]
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original = open(filename).read()
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shutil.copy2(filename,bak_filename)
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try:
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new = open(filename,'wb')
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new.write(os.linesep.join(original.splitlines()))
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new.write(os.linesep) # ALWAYS put an eol at the end of the file
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new.close()
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except:
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os.rename(bak_filename,filename)
|
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|
if not backup:
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try:
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os.remove(bak_filename)
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|
except:
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pass
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|
|
|
|
|
|
|
|
def list_strings(arg):
|
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"""Always return a list of strings, given a string or list of strings
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as input.
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|
|
|
|
|
:Examples:
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|
|
|
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|
In [7]: list_strings('A single string')
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Out[7]: ['A single string']
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|
In [8]: list_strings(['A single string in a list'])
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Out[8]: ['A single string in a list']
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In [9]: list_strings(['A','list','of','strings'])
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Out[9]: ['A', 'list', 'of', 'strings']
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"""
|
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|
|
|
if isinstance(arg,basestring): return [arg]
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else: return arg
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|
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|
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|
|
def marquee(txt='',width=78,mark='*'):
|
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|
"""Return the input string centered in a 'marquee'.
|
|
|
|
|
|
:Examples:
|
|
|
|
|
|
In [16]: marquee('A test',40)
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|
|
Out[16]: '**************** A test ****************'
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|
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|
In [17]: marquee('A test',40,'-')
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|
|
Out[17]: '---------------- A test ----------------'
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|
|
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|
In [18]: marquee('A test',40,' ')
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|
|
Out[18]: ' A test '
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|
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|
|
"""
|
|
|
if not txt:
|
|
|
return (mark*width)[:width]
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|
|
nmark = (width-len(txt)-2)/len(mark)/2
|
|
|
if nmark < 0: nmark =0
|
|
|
marks = mark*nmark
|
|
|
return '%s %s %s' % (marks,txt,marks)
|
|
|
|
|
|
|
|
|
ini_spaces_re = re.compile(r'^(\s+)')
|
|
|
|
|
|
def num_ini_spaces(strng):
|
|
|
"""Return the number of initial spaces in a string"""
|
|
|
|
|
|
ini_spaces = ini_spaces_re.match(strng)
|
|
|
if ini_spaces:
|
|
|
return ini_spaces.end()
|
|
|
else:
|
|
|
return 0
|
|
|
|
|
|
|