summaryrefslogtreecommitdiffstats
diff options
context:
space:
mode:
authorRaymond Hettinger <python@rcn.com>2005-05-31 11:04:00 (GMT)
committerRaymond Hettinger <python@rcn.com>2005-05-31 11:04:00 (GMT)
commitdede3bdfa1f6c8dd7f27848c9f43c8a17ed50e9f (patch)
tree420fad636708cf292a307ad57c2f77c1922ba603
parent7bebbe76737f123759f840577c353fde7d104ab1 (diff)
downloadcpython-dede3bdfa1f6c8dd7f27848c9f43c8a17ed50e9f.zip
cpython-dede3bdfa1f6c8dd7f27848c9f43c8a17ed50e9f.tar.gz
cpython-dede3bdfa1f6c8dd7f27848c9f43c8a17ed50e9f.tar.bz2
SF bug #1209411: divmod documentation shd reference // not /
-rw-r--r--Doc/lib/libfuncs.tex2
-rw-r--r--Doc/lib/libstdtypes.tex2
2 files changed, 2 insertions, 2 deletions
diff --git a/Doc/lib/libfuncs.tex b/Doc/lib/libfuncs.tex
index 7b990e9..cd14865 100644
--- a/Doc/lib/libfuncs.tex
+++ b/Doc/lib/libfuncs.tex
@@ -297,7 +297,7 @@ class C:
consisting of their quotient and remainder when using long division. With
mixed operand types, the rules for binary arithmetic operators apply. For
plain and long integers, the result is the same as
- \code{(\var{a} / \var{b}, \var{a} \%{} \var{b})}.
+ \code{(\var{a} // \var{b}, \var{a} \%{} \var{b})}.
For floating point numbers the result is \code{(\var{q}, \var{a} \%{}
\var{b})}, where \var{q} is usually \code{math.floor(\var{a} /
\var{b})} but may be 1 less than that. In any case \code{\var{q} *
diff --git a/Doc/lib/libstdtypes.tex b/Doc/lib/libstdtypes.tex
index 113a9c4..d2ab808 100644
--- a/Doc/lib/libstdtypes.tex
+++ b/Doc/lib/libstdtypes.tex
@@ -256,7 +256,7 @@ comparison operations):
\lineiii{float(\var{x})}{\var{x} converted to floating point}{}
\lineiii{complex(\var{re},\var{im})}{a complex number with real part \var{re}, imaginary part \var{im}. \var{im} defaults to zero.}{}
\lineiii{\var{c}.conjugate()}{conjugate of the complex number \var{c}}{}
- \lineiii{divmod(\var{x}, \var{y})}{the pair \code{(\var{x} / \var{y}, \var{x} \%{} \var{y})}}{(3)(4)}
+ \lineiii{divmod(\var{x}, \var{y})}{the pair \code{(\var{x} // \var{y}, \var{x} \%{} \var{y})}}{(3)(4)}
\lineiii{pow(\var{x}, \var{y})}{\var{x} to the power \var{y}}{}
\lineiii{\var{x} ** \var{y}}{\var{x} to the power \var{y}}{}
\end{tableiii}