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Merge pull request #1361 from ellisonbg/nbissues...
Merge pull request #1361 from ellisonbg/nbissues A number of bug fixes for notebook issues that had crept up recently with all the major improvements done on multiple fronts. In closing #1359, we've changed slightly how Math() works: it now unconditionally surrounds its input with $$...$$, so that it always appears in displayed math mode. We have also introduced a new display object, Latex(), which does *not* add any latex markup, for other constructs beyond simple math expressions. This change makes Math() friendlier to use in simple cases and means that Math(sympy.latex(foo)) will produce the expected displayed math results without the user having to add any $ markup. Summary of fixes: Fixes #1344: Ctrl + M + L does not toggle line numbering in htmlnotebook. Fixes #1337: Tab in the notebook after `(` should not indent, only give a tooltip. Fixes #1339: Notebook printing broken. Fixes #1348: `Ctrl-m-Ctrl-m` does not switch to markdown cell Fixes #1359: [sympyprinting] MathJax can't render \root{m}{n}

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test_formatters.py
74 lines | 1.8 KiB | text/x-python | PythonLexer
"""Tests for the Formatters.
"""
from math import pi
try:
import numpy
except:
numpy = None
import nose.tools as nt
from IPython.core.formatters import FormatterABC, PlainTextFormatter
class A(object):
def __repr__(self):
return 'A()'
class B(A):
def __repr__(self):
return 'B()'
def foo_printer(obj, pp, cycle):
pp.text('foo')
def test_pretty():
f = PlainTextFormatter()
f.for_type(A, foo_printer)
nt.assert_equals(f(A()), 'foo')
nt.assert_equals(f(B()), 'foo')
f.pprint = False
nt.assert_equals(f(A()), 'A()')
nt.assert_equals(f(B()), 'B()')
def test_deferred():
f = PlainTextFormatter()
def test_precision():
"""test various values for float_precision."""
f = PlainTextFormatter()
nt.assert_equals(f(pi), repr(pi))
f.float_precision = 0
if numpy:
po = numpy.get_printoptions()
nt.assert_equals(po['precision'], 0)
nt.assert_equals(f(pi), '3')
f.float_precision = 2
if numpy:
po = numpy.get_printoptions()
nt.assert_equals(po['precision'], 2)
nt.assert_equals(f(pi), '3.14')
f.float_precision = '%g'
if numpy:
po = numpy.get_printoptions()
nt.assert_equals(po['precision'], 2)
nt.assert_equals(f(pi), '3.14159')
f.float_precision = '%e'
nt.assert_equals(f(pi), '3.141593e+00')
f.float_precision = ''
if numpy:
po = numpy.get_printoptions()
nt.assert_equals(po['precision'], 8)
nt.assert_equals(f(pi), repr(pi))
def test_bad_precision():
"""test various invalid values for float_precision."""
f = PlainTextFormatter()
def set_fp(p):
f.float_precision=p
nt.assert_raises(ValueError, set_fp, '%')
nt.assert_raises(ValueError, set_fp, '%.3f%i')
nt.assert_raises(ValueError, set_fp, 'foo')
nt.assert_raises(ValueError, set_fp, -1)