"""
Sphinx directive to support embedded IPython code.
IPython provides an extension for `Sphinx <http://www.sphinx-doc.org/>`_ to
highlight and run code.
This directive allows pasting of entire interactive IPython sessions, prompts
and all, and their code will actually get re-executed at doc build time, with
all prompts renumbered sequentially. It also allows you to input code as a pure
python input by giving the argument python to the directive. The output looks
like an interactive ipython section.
Here is an example of how the IPython directive can
**run** python code, at build time.
.. ipython::
In [1]: 1+1
In [1]: import datetime
...: datetime.date.fromisoformat('2022-02-22')
It supports IPython construct that plain
Python does not understand (like magics):
.. ipython::
In [0]: import time
In [0]: %pdoc time.sleep
This will also support top-level async when using IPython 7.0+
.. ipython::
In [2]: import asyncio
...: print('before')
...: await asyncio.sleep(1)
...: print('after')
The namespace will persist across multiple code chucks, Let's define a variable:
.. ipython::
In [0]: who = "World"
And now say hello:
.. ipython::
In [0]: print('Hello,', who)
If the current section raises an exception, you can add the ``:okexcept:`` flag
to the current block, otherwise the build will fail.
.. ipython::
:okexcept:
In [1]: 1/0
IPython Sphinx directive module
===============================
To enable this directive, simply list it in your Sphinx ``conf.py`` file
(making sure the directory where you placed it is visible to sphinx, as is
needed for all Sphinx directives). For example, to enable syntax highlighting
and the IPython directive::
extensions = ['IPython.sphinxext.ipython_console_highlighting',
'IPython.sphinxext.ipython_directive']
The IPython directive outputs code-blocks with the language 'ipython'. So
if you do not have the syntax highlighting extension enabled as well, then
all rendered code-blocks will be uncolored. By default this directive assumes
that your prompts are unchanged IPython ones, but this can be customized.
The configurable options that can be placed in conf.py are:
ipython_savefig_dir:
The directory in which to save the figures. This is relative to the
Sphinx source directory. The default is `html_static_path`.
ipython_rgxin:
The compiled regular expression to denote the start of IPython input
lines. The default is ``re.compile('In \\[(\\d+)\\]:\\s?(.*)\\s*')``. You
shouldn't need to change this.
ipython_warning_is_error: [default to True]
Fail the build if something unexpected happen, for example if a block raise
an exception but does not have the `:okexcept:` flag. The exact behavior of
what is considered strict, may change between the sphinx directive version.
ipython_rgxout:
The compiled regular expression to denote the start of IPython output
lines. The default is ``re.compile('Out\\[(\\d+)\\]:\\s?(.*)\\s*')``. You
shouldn't need to change this.
ipython_promptin:
The string to represent the IPython input prompt in the generated ReST.
The default is ``'In [%d]:'``. This expects that the line numbers are used
in the prompt.
ipython_promptout:
The string to represent the IPython prompt in the generated ReST. The
default is ``'Out [%d]:'``. This expects that the line numbers are used
in the prompt.
ipython_mplbackend:
The string which specifies if the embedded Sphinx shell should import
Matplotlib and set the backend. The value specifies a backend that is
passed to `matplotlib.use()` before any lines in `ipython_execlines` are
executed. If not specified in conf.py, then the default value of 'agg' is
used. To use the IPython directive without matplotlib as a dependency, set
the value to `None`. It may end up that matplotlib is still imported
if the user specifies so in `ipython_execlines` or makes use of the
@savefig pseudo decorator.
ipython_execlines:
A list of strings to be exec'd in the embedded Sphinx shell. Typical
usage is to make certain packages always available. Set this to an empty
list if you wish to have no imports always available. If specified in
``conf.py`` as `None`, then it has the effect of making no imports available.
If omitted from conf.py altogether, then the default value of
['import numpy as np', 'import matplotlib.pyplot as plt'] is used.
ipython_holdcount
When the @suppress pseudo-decorator is used, the execution count can be
incremented or not. The default behavior is to hold the execution count,
corresponding to a value of `True`. Set this to `False` to increment
the execution count after each suppressed command.
As an example, to use the IPython directive when `matplotlib` is not available,
one sets the backend to `None`::
ipython_mplbackend = None
An example usage of the directive is:
.. code-block:: rst
.. ipython::
In [1]: x = 1
In [2]: y = x**2
In [3]: print(y)
See http://matplotlib.org/sampledoc/ipython_directive.html for additional
documentation.
Pseudo-Decorators
=================
Note: Only one decorator is supported per input. If more than one decorator
is specified, then only the last one is used.
In addition to the Pseudo-Decorators/options described at the above link,
several enhancements have been made. The directive will emit a message to the
console at build-time if code-execution resulted in an exception or warning.
You can suppress these on a per-block basis by specifying the :okexcept:
or :okwarning: options:
.. code-block:: rst
.. ipython::
:okexcept:
:okwarning:
In [1]: 1/0
In [2]: # raise warning.
To Do
=====
- Turn the ad-hoc test() function into a real test suite.
- Break up ipython-specific functionality from matplotlib stuff into better
separated code.
"""
import atexit
import errno
import os
import pathlib
import re
import sys
import tempfile
import ast
import warnings
import shutil
from io import StringIO
from typing import Any, Dict, Set
from docutils.parsers.rst import directives
from docutils.parsers.rst import Directive
from sphinx.util import logging
from traitlets.config import Config
from IPython import InteractiveShell
from IPython.core.profiledir import ProfileDir
use_matplotlib = False
try:
import matplotlib
use_matplotlib = True
except Exception:
pass
COMMENT, INPUT, OUTPUT = range(3)
PSEUDO_DECORATORS = ["suppress", "verbatim", "savefig", "doctest"]
def block_parser(part, rgxin, rgxout, fmtin, fmtout):
"""
part is a string of ipython text, comprised of at most one
input, one output, comments, and blank lines. The block parser
parses the text into a list of::
blocks = [ (TOKEN0, data0), (TOKEN1, data1), ...]
where TOKEN is one of [COMMENT | INPUT | OUTPUT ] and
data is, depending on the type of token::
COMMENT : the comment string
INPUT: the (DECORATOR, INPUT_LINE, REST) where
DECORATOR: the input decorator (or None)
INPUT_LINE: the input as string (possibly multi-line)
REST : any stdout generated by the input line (not OUTPUT)
OUTPUT: the output string, possibly multi-line
"""
block = []
lines = part.split('\n')
N = len(lines)
i = 0
decorator = None
while 1:
if i==N:
break
line = lines[i]
i += 1
line_stripped = line.strip()
if line_stripped.startswith('#'):
block.append((COMMENT, line))
continue
if any(
line_stripped.startswith("@" + pseudo_decorator)
for pseudo_decorator in PSEUDO_DECORATORS
):
if decorator:
raise RuntimeError(
"Applying multiple pseudo-decorators on one line is not supported"
)
else:
decorator = line_stripped
continue
matchin = rgxin.match(line)
if matchin:
lineno, inputline = int(matchin.group(1)), matchin.group(2)
continuation = ' %s:'%''.join(['.']*(len(str(lineno))+2))
Nc = len(continuation)
rest = []
while i<N:
nextline = lines[i]
matchout = rgxout.match(nextline)
if matchout or nextline.startswith('#'):
break
elif nextline.startswith(continuation):
nextline = nextline[Nc:]
if nextline and nextline[0] == ' ':
nextline = nextline[1:]
inputline += '\n' + nextline
else:
rest.append(nextline)
i+= 1
block.append((INPUT, (decorator, inputline, '\n'.join(rest))))
continue
matchout = rgxout.match(line)
if matchout:
lineno, output = int(matchout.group(1)), matchout.group(2)
if i<N-1:
output = '\n'.join([output] + lines[i:])
block.append((OUTPUT, output))
break
return block
class EmbeddedSphinxShell(object):
"""An embedded IPython instance to run inside Sphinx"""
def __init__(self, exec_lines=None):
self.cout = StringIO()
if exec_lines is None:
exec_lines = []
config = Config()
config.HistoryManager.hist_file = ':memory:'
config.InteractiveShell.autocall = False
config.InteractiveShell.autoindent = False
config.InteractiveShell.colors = 'NoColor'
tmp_profile_dir = tempfile.mkdtemp(prefix='profile_')
profname = 'auto_profile_sphinx_build'
pdir = os.path.join(tmp_profile_dir,profname)
profile = ProfileDir.create_profile_dir(pdir)
IP = InteractiveShell.instance(config=config, profile_dir=profile)
atexit.register(self.cleanup)
self.IP = IP
self.user_ns = self.IP.user_ns
self.user_global_ns = self.IP.user_global_ns
self.input = ''
self.output = ''
self.tmp_profile_dir = tmp_profile_dir
self.is_verbatim = False
self.is_doctest = False
self.is_suppress = False
self.directive = None
self._pyplot_imported = False
for line in exec_lines:
self.process_input_line(line, store_history=False)
def cleanup(self):
shutil.rmtree(self.tmp_profile_dir, ignore_errors=True)
def clear_cout(self):
self.cout.seek(0)
self.cout.truncate(0)
def process_input_line(self, line, store_history):
return self.process_input_lines([line], store_history=store_history)
def process_input_lines(self, lines, store_history=True):
"""process the input, capturing stdout"""
stdout = sys.stdout
source_raw = '\n'.join(lines)
try:
sys.stdout = self.cout
self.IP.run_cell(source_raw, store_history=store_history)
finally:
sys.stdout = stdout
def process_image(self, decorator):
"""
# build out an image directive like
# .. image:: somefile.png
# :width 4in
#
# from an input like
# savefig somefile.png width=4in
"""
savefig_dir = self.savefig_dir
source_dir = self.source_dir
saveargs = decorator.split(' ')
filename = saveargs[1]
path = pathlib.Path(savefig_dir, filename)
outfile = '/' + path.relative_to(source_dir).as_posix()
imagerows = ['.. image:: %s' % outfile]
for kwarg in saveargs[2:]:
arg, val = kwarg.split('=')
arg = arg.strip()
val = val.strip()
imagerows.append(' :%s: %s'%(arg, val))
image_file = os.path.basename(outfile)
image_directive = '\n'.join(imagerows)
return image_file, image_directive
def process_input(self, data, input_prompt, lineno):
"""
Process data block for INPUT token.
"""
decorator, input, rest = data
image_file = None
image_directive = None
is_verbatim = decorator=='@verbatim' or self.is_verbatim
is_doctest = (decorator is not None and \
decorator.startswith('@doctest')) or self.is_doctest
is_suppress = decorator=='@suppress' or self.is_suppress
is_okexcept = decorator=='@okexcept' or self.is_okexcept
is_okwarning = decorator=='@okwarning' or self.is_okwarning
is_savefig = decorator is not None and \
decorator.startswith('@savefig')
input_lines = input.split('\n')
if len(input_lines) > 1:
if input_lines[-1] != "":
input_lines.append('')
continuation = ' %s:'%''.join(['.']*(len(str(lineno))+2))
if is_savefig:
image_file, image_directive = self.process_image(decorator)
ret = []
is_semicolon = False
if is_suppress and self.hold_count:
store_history = False
else:
store_history = True
with warnings.catch_warnings(record=True) as ws:
if input_lines[0].endswith(';'):
is_semicolon = True
if is_verbatim:
self.process_input_lines([''])
self.IP.execution_count += 1
else:
self.process_input_lines(input_lines, store_history=store_history)
if not is_suppress:
for i, line in enumerate(input_lines):
if i == 0:
formatted_line = '%s %s'%(input_prompt, line)
else:
formatted_line = '%s %s'%(continuation, line)
ret.append(formatted_line)
if not is_suppress and len(rest.strip()) and is_verbatim:
ret.append(rest)
self.cout.seek(0)
processed_output = self.cout.read()
if not is_suppress and not is_semicolon:
ret.append(processed_output)
elif is_semicolon:
ret.append('')
filename = "Unknown"
lineno = 0
if self.directive.state:
filename = self.directive.state.document.current_source
lineno = self.directive.state.document.current_line
logger = logging.getLogger(__name__)
if not is_okexcept and (
("Traceback" in processed_output) or ("SyntaxError" in processed_output)
):
s = "\n>>>" + ("-" * 73) + "\n"
s += "Exception in %s at block ending on line %s\n" % (filename, lineno)
s += "Specify :okexcept: as an option in the ipython:: block to suppress this message\n"
s += processed_output + "\n"
s += "<<<" + ("-" * 73)
logger.warning(s)
if self.warning_is_error:
raise RuntimeError(
"Unexpected exception in `{}` line {}".format(filename, lineno)
)
if not is_okwarning:
for w in ws:
s = "\n>>>" + ("-" * 73) + "\n"
s += "Warning in %s at block ending on line %s\n" % (filename, lineno)
s += "Specify :okwarning: as an option in the ipython:: block to suppress this message\n"
s += ("-" * 76) + "\n"
s += warnings.formatwarning(
w.message, w.category, w.filename, w.lineno, w.line
)
s += "<<<" + ("-" * 73)
logger.warning(s)
if self.warning_is_error:
raise RuntimeError(
"Unexpected warning in `{}` line {}".format(filename, lineno)
)
self.clear_cout()
return (ret, input_lines, processed_output,
is_doctest, decorator, image_file, image_directive)
def process_output(self, data, output_prompt, input_lines, output,
is_doctest, decorator, image_file):
"""
Process data block for OUTPUT token.
"""
TAB = ' ' * 4
if is_doctest and output is not None:
found = output
found = found.strip()
submitted = data.strip()
if self.directive is None:
source = 'Unavailable'
content = 'Unavailable'
else:
source = self.directive.state.document.current_source
content = self.directive.content
content = '\n'.join([TAB + line for line in content])
ind = found.find(output_prompt)
if ind < 0:
e = ('output does not contain output prompt\n\n'
'Document source: {0}\n\n'
'Raw content: \n{1}\n\n'
'Input line(s):\n{TAB}{2}\n\n'
'Output line(s):\n{TAB}{3}\n\n')
e = e.format(source, content, '\n'.join(input_lines),
repr(found), TAB=TAB)
raise RuntimeError(e)
found = found[len(output_prompt):].strip()
if decorator.strip() == '@doctest':
if found != submitted:
e = ('doctest failure\n\n'
'Document source: {0}\n\n'
'Raw content: \n{1}\n\n'
'On input line(s):\n{TAB}{2}\n\n'
'we found output:\n{TAB}{3}\n\n'
'instead of the expected:\n{TAB}{4}\n\n')
e = e.format(source, content, '\n'.join(input_lines),
repr(found), repr(submitted), TAB=TAB)
raise RuntimeError(e)
else:
self.custom_doctest(decorator, input_lines, found, submitted)
out_data = []
is_verbatim = decorator=='@verbatim' or self.is_verbatim
if is_verbatim and data.strip():
out_data.append("{0} {1}\n".format(output_prompt, data))
return out_data
def process_comment(self, data):
"""Process data fPblock for COMMENT token."""
if not self.is_suppress:
return [data]
def save_image(self, image_file):
"""
Saves the image file to disk.
"""
self.ensure_pyplot()
command = 'plt.gcf().savefig("%s")'%image_file
self.process_input_line('bookmark ipy_thisdir', store_history=False)
self.process_input_line('cd -b ipy_savedir', store_history=False)
self.process_input_line(command, store_history=False)
self.process_input_line('cd -b ipy_thisdir', store_history=False)
self.process_input_line('bookmark -d ipy_thisdir', store_history=False)
self.clear_cout()
def process_block(self, block):
"""
process block from the block_parser and return a list of processed lines
"""
ret = []
output = None
input_lines = None
lineno = self.IP.execution_count
input_prompt = self.promptin % lineno
output_prompt = self.promptout % lineno
image_file = None
image_directive = None
found_input = False
for token, data in block:
if token == COMMENT:
out_data = self.process_comment(data)
elif token == INPUT:
found_input = True
(out_data, input_lines, output, is_doctest,
decorator, image_file, image_directive) = \
self.process_input(data, input_prompt, lineno)
elif token == OUTPUT:
if not found_input:
TAB = ' ' * 4
linenumber = 0
source = 'Unavailable'
content = 'Unavailable'
if self.directive:
linenumber = self.directive.state.document.current_line
source = self.directive.state.document.current_source
content = self.directive.content
content = '\n'.join([TAB + line for line in content])
e = ('\n\nInvalid block: Block contains an output prompt '
'without an input prompt.\n\n'
'Document source: {0}\n\n'
'Content begins at line {1}: \n\n{2}\n\n'
'Problematic block within content: \n\n{TAB}{3}\n\n')
e = e.format(source, linenumber, content, block, TAB=TAB)
sys.stdout.write(e)
raise RuntimeError('An invalid block was detected.')
out_data = \
self.process_output(data, output_prompt, input_lines,
output, is_doctest, decorator,
image_file)
if out_data:
assert(ret[-1] == '')
del ret[-1]
if out_data:
ret.extend(out_data)
if image_file is not None:
self.save_image(image_file)
return ret, image_directive
def ensure_pyplot(self):
"""
Ensures that pyplot has been imported into the embedded IPython shell.
Also, makes sure to set the backend appropriately if not set already.
"""
if not self._pyplot_imported:
if 'matplotlib.backends' not in sys.modules:
import matplotlib
matplotlib.use('agg')
self.process_input_line('import matplotlib.pyplot as plt',
store_history=False)
self._pyplot_imported = True
def process_pure_python(self, content):
"""
content is a list of strings. it is unedited directive content
This runs it line by line in the InteractiveShell, prepends
prompts as needed capturing stderr and stdout, then returns
the content as a list as if it were ipython code
"""
output = []
savefig = False
multiline = False
multiline_start = None
fmtin = self.promptin
ct = 0
for lineno, line in enumerate(content):
line_stripped = line.strip()
if not len(line):
output.append(line)
continue
if any(
line_stripped.startswith("@" + pseudo_decorator)
for pseudo_decorator in PSEUDO_DECORATORS
):
output.extend([line])
if 'savefig' in line:
savefig = True
continue
if line_stripped.startswith('#'):
output.extend([line])
continue
continuation = u' %s:'% ''.join(['.']*(len(str(ct))+2))
if not multiline:
modified = u"%s %s" % (fmtin % ct, line_stripped)
output.append(modified)
ct += 1
try:
ast.parse(line_stripped)
output.append(u'')
except Exception:
multiline = True
multiline_start = lineno
else:
modified = u'%s %s' % (continuation, line)
output.append(modified)
if len(content) > lineno + 1:
nextline = content[lineno + 1]
if len(nextline) - len(nextline.lstrip()) > 3:
continue
try:
mod = ast.parse(
'\n'.join(content[multiline_start:lineno+1]))
if isinstance(mod.body[0], ast.FunctionDef):
for element in mod.body[0].body:
if isinstance(element, ast.Return):
multiline = False
else:
output.append(u'')
multiline = False
except Exception:
pass
if savefig:
self.ensure_pyplot()
self.process_input_line('plt.clf()', store_history=False)
self.clear_cout()
savefig = False
return output
def custom_doctest(self, decorator, input_lines, found, submitted):
"""
Perform a specialized doctest.
"""
from .custom_doctests import doctests
args = decorator.split()
doctest_type = args[1]
if doctest_type in doctests:
doctests[doctest_type](self, args, input_lines, found, submitted)
else:
e = "Invalid option to @doctest: {0}".format(doctest_type)
raise Exception(e)
class IPythonDirective(Directive):
has_content: bool = True
required_arguments: int = 0
optional_arguments: int = 4
final_argumuent_whitespace: bool = True
option_spec: Dict[str, Any] = {
"python": directives.unchanged,
"suppress": directives.flag,
"verbatim": directives.flag,
"doctest": directives.flag,
"okexcept": directives.flag,
"okwarning": directives.flag,
}
shell = None
seen_docs: Set = set()
def get_config_options(self):
config = self.state.document.settings.env.config
savefig_dir = config.ipython_savefig_dir
source_dir = self.state.document.settings.env.srcdir
savefig_dir = os.path.join(source_dir, savefig_dir)
rgxin = config.ipython_rgxin
rgxout = config.ipython_rgxout
warning_is_error= config.ipython_warning_is_error
promptin = config.ipython_promptin
promptout = config.ipython_promptout
mplbackend = config.ipython_mplbackend
exec_lines = config.ipython_execlines
hold_count = config.ipython_holdcount
return (savefig_dir, source_dir, rgxin, rgxout,
promptin, promptout, mplbackend, exec_lines, hold_count, warning_is_error)
def setup(self):
(savefig_dir, source_dir, rgxin, rgxout, promptin, promptout,
mplbackend, exec_lines, hold_count, warning_is_error) = self.get_config_options()
try:
os.makedirs(savefig_dir)
except OSError as e:
if e.errno != errno.EEXIST:
raise
if self.shell is None:
if mplbackend and 'matplotlib.backends' not in sys.modules and use_matplotlib:
import matplotlib
matplotlib.use(mplbackend)
self.shell = EmbeddedSphinxShell(exec_lines)
self.shell.directive = self
if not self.state.document.current_source in self.seen_docs:
self.shell.IP.history_manager.reset()
self.shell.IP.execution_count = 1
self.seen_docs.add(self.state.document.current_source)
self.shell.rgxin = rgxin
self.shell.rgxout = rgxout
self.shell.promptin = promptin
self.shell.promptout = promptout
self.shell.savefig_dir = savefig_dir
self.shell.source_dir = source_dir
self.shell.hold_count = hold_count
self.shell.warning_is_error = warning_is_error
self.shell.process_input_line(
'bookmark ipy_savedir "%s"' % savefig_dir, store_history=False
)
self.shell.clear_cout()
return rgxin, rgxout, promptin, promptout
def teardown(self):
self.shell.process_input_line('bookmark -d ipy_savedir',
store_history=False)
self.shell.clear_cout()
def run(self):
debug = False
rgxin, rgxout, promptin, promptout = self.setup()
options = self.options
self.shell.is_suppress = 'suppress' in options
self.shell.is_doctest = 'doctest' in options
self.shell.is_verbatim = 'verbatim' in options
self.shell.is_okexcept = 'okexcept' in options
self.shell.is_okwarning = 'okwarning' in options
if 'python' in self.arguments:
content = self.content
self.content = self.shell.process_pure_python(content)
parts = '\n'.join(self.content).split('\n\n')
lines = ['.. code-block:: ipython', '']
figures = []
logger = logging.getLogger(__name__)
for part in parts:
block = block_parser(part, rgxin, rgxout, promptin, promptout)
if len(block):
rows, figure = self.shell.process_block(block)
for row in rows:
lines.extend([' {0}'.format(line)
for line in row.split('\n')])
if figure is not None:
figures.append(figure)
else:
message = 'Code input with no code at {}, line {}'\
.format(
self.state.document.current_source,
self.state.document.current_line)
if self.shell.warning_is_error:
raise RuntimeError(message)
else:
logger.warning(message)
for figure in figures:
lines.append('')
lines.extend(figure.split('\n'))
lines.append('')
if len(lines) > 2:
if debug:
print('\n'.join(lines))
else:
self.state_machine.insert_input(
lines, self.state_machine.input_lines.source(0))
self.teardown()
return []
def setup(app):
setup.app = app
app.add_directive('ipython', IPythonDirective)
app.add_config_value('ipython_savefig_dir', 'savefig', 'env')
app.add_config_value('ipython_warning_is_error', True, 'env')
app.add_config_value('ipython_rgxin',
re.compile(r'In \[(\d+)\]:\s?(.*)\s*'), 'env')
app.add_config_value('ipython_rgxout',
re.compile(r'Out\[(\d+)\]:\s?(.*)\s*'), 'env')
app.add_config_value('ipython_promptin', 'In [%d]:', 'env')
app.add_config_value('ipython_promptout', 'Out[%d]:', 'env')
app.add_config_value('ipython_mplbackend', 'agg', 'env')
execlines = ['import numpy as np']
if use_matplotlib:
execlines.append('import matplotlib.pyplot as plt')
app.add_config_value('ipython_execlines', execlines, 'env')
app.add_config_value('ipython_holdcount', True, 'env')
metadata = {'parallel_read_safe': True, 'parallel_write_safe': True}
return metadata
def test():
examples = [
r"""
In [9]: pwd
Out[9]: '/home/jdhunter/py4science/book'
In [10]: cd bookdata/
/home/jdhunter/py4science/book/bookdata
In [2]: from pylab import *
In [2]: ion()
In [3]: im = imread('stinkbug.png')
@savefig mystinkbug.png width=4in
In [4]: imshow(im)
Out[4]: <matplotlib.image.AxesImage object at 0x39ea850>
""",
r"""
In [1]: x = 'hello world'
# string methods can be
# used to alter the string
@doctest
In [2]: x.upper()
Out[2]: 'HELLO WORLD'
@verbatim
In [3]: x.st<TAB>
x.startswith x.strip
""",
r"""
In [130]: url = 'http://ichart.finance.yahoo.com/table.csv?s=CROX\
.....: &d=9&e=22&f=2009&g=d&a=1&br=8&c=2006&ignore=.csv'
In [131]: print url.split('&')
['http://ichart.finance.yahoo.com/table.csv?s=CROX', 'd=9', 'e=22', 'f=2009', 'g=d', 'a=1', 'b=8', 'c=2006', 'ignore=.csv']
In [60]: import urllib
""",
r"""\
In [133]: import numpy.random
@suppress
In [134]: numpy.random.seed(2358)
@doctest
In [135]: numpy.random.rand(10,2)
Out[135]:
array([[ 0.64524308, 0.59943846],
[ 0.47102322, 0.8715456 ],
[ 0.29370834, 0.74776844],
[ 0.99539577, 0.1313423 ],
[ 0.16250302, 0.21103583],
[ 0.81626524, 0.1312433 ],
[ 0.67338089, 0.72302393],
[ 0.7566368 , 0.07033696],
[ 0.22591016, 0.77731835],
[ 0.0072729 , 0.34273127]])
""",
r"""
In [106]: print x
jdh
In [109]: for i in range(10):
.....: print i
.....:
.....:
0
1
2
3
4
5
6
7
8
9
""",
r"""
In [144]: from pylab import *
In [145]: ion()
# use a semicolon to suppress the output
@savefig test_hist.png width=4in
In [151]: hist(np.random.randn(10000), 100);
@savefig test_plot.png width=4in
In [151]: plot(np.random.randn(10000), 'o');
""",
r"""
# use a semicolon to suppress the output
In [151]: plt.clf()
@savefig plot_simple.png width=4in
In [151]: plot([1,2,3])
@savefig hist_simple.png width=4in
In [151]: hist(np.random.randn(10000), 100);
""",
r"""
# update the current fig
In [151]: ylabel('number')
In [152]: title('normal distribution')
@savefig hist_with_text.png
In [153]: grid(True)
@doctest float
In [154]: 0.1 + 0.2
Out[154]: 0.3
@doctest float
In [155]: np.arange(16).reshape(4,4)
Out[155]:
array([[ 0, 1, 2, 3],
[ 4, 5, 6, 7],
[ 8, 9, 10, 11],
[12, 13, 14, 15]])
In [1]: x = np.arange(16, dtype=float).reshape(4,4)
In [2]: x[0,0] = np.inf
In [3]: x[0,1] = np.nan
@doctest float
In [4]: x
Out[4]:
array([[ inf, nan, 2., 3.],
[ 4., 5., 6., 7.],
[ 8., 9., 10., 11.],
[ 12., 13., 14., 15.]])
""",
]
examples = examples[1:]
options = {}
for example in examples:
content = example.split('\n')
IPythonDirective('debug', arguments=None, options=options,
content=content, lineno=0,
content_offset=None, block_text=None,
state=None, state_machine=None,
)
if __name__=='__main__':
if not os.path.isdir('_static'):
os.mkdir('_static')
test()
print('All OK? Check figures in _static/')