Is there an easy way in PowerShell to format numbers and the like in another locale? I'm currently writing a few functions to ease SVG generation for me and SVG uses .
as a decimal separator, while PowerShell honors my locale settings (de-DE
) when converting floating-point numbers to strings.
Is there an easy way to set another locale for a function or so without sticking
.ToString((New-Object Globalization.CultureInfo ""))
after every double
variable?
Note: This is about the locale used for formatting, not the format string.
(Side question: Should I use the invariant culture in that case or rather en-US
?)
ETA: Well, what I'm trying here is something like the following:
function New-SvgWave([int]$HalfWaves, [double]$Amplitude, [switch]$Upwards) {
"<path d='M0,0q0.5,{0} 1,0{1}v1q-0.5,{2} -1,0{3}z'/>" -f (
$(if ($Upwards) {-$Amplitude} else {$Amplitude}),
("t1,0" * ($HalfWaves - 1)),
$(if ($Upwards -xor ($HalfWaves % 2 -eq 0)) {-$Amplitude} else {$Amplitude}),
("t-1,0" * ($HalfWaves - 1))
)
}
Just a little automation for stuff I tend to write all the time and the double values need to use the decimal point instead of a comma (which they use in my locale).
ETA2: Interesting trivia to add:
PS Home:> $d=1.23
PS Home:> $d
1,23
PS Home:> "$d"
1.23
By putting the variable into a string the set locale doesn't seem to apply, somehow.
If you already have the culture loaded in your environment,
#>Get-Culture
LCID Name DisplayName
---- ---- -----------
1031 de-DE German (Germany)
#>Get-UICulture
LCID Name DisplayName
---- ---- -----------
1033 en-US English (United States)
it is possible to resolve this problem:
PS Home:> $d=1.23
PS Home:> $d
1,23
like this:
$d.ToString([cultureinfo]::CurrentUICulture)
1.23
Of course you need to keep in mind that if other users run the script with a different locale setting, the results may not turn out as originally intended.
Nevertheless, this solution could come in useful. Have fun!
While Keith Hill's helpful answer shows you how to change a script's current culture on demand (more modern alternative as of PSv3+ and .NET framework v4.6+:[cultureinfo]::CurrentCulture = [cultureinfo]::InvariantCulture
), there is no need to change the culture, because - as you've discovered in your second update to the question - PowerShell's string interpolation - as opposed to using the -f
operator - always uses the invariant rather than the current culture:
In other words:
If you replace 'val: {0}' -f 1.2
with "val: $(1.2)"
, the number literal 1.2
is not formatted according to the rules of the current culture.
You can verify in the console by running (on a single line; PSv3+, .NET framework v4.6+):
PS> [cultureinfo]::currentculture = 'de-DE'; 'val: {0}' -f 1.2; "val: $(1.2)"
val: 1,2 # -f operator: GERMAN culture applies, where ',' is the decimal mark
val: 1.2 # string interpolation: INVARIANT culture applies, where '.' is the decimal mark.
Note: In PowerShell (Core) 7+, the change to a different culture remains in effect for the remainder of the session (as it arguably should for Windows PowerShell too, but doesn't).
Background:
By design,[1] but perhaps surprisingly, PowerShell applies the invariant rather than the current culture in the following string-related contexts, if the type at hand supports culture-specific conversion to and from strings:
As explained in this in-depth answer, PowerShell explicitly requests culture-invariant processing, if possible - by passing the [cultureinfo]::InvariantCulture
instance - in the following scenarios (the stringification PowerShell performs is the equivalent of calling .psobject.ToString([NullString]::Value, [cultureinfo]::InvariantCulture)
on a value):
When string-interpolating: if the object's type implements the IFormattable
interface.
When casting:
to a string, including implicit conversion when binding to a [string]
-typed parameter: if the source type implements the [IFormattable]
interface.
from a string: if the target type's static .Parse()
method has an overload with an [IFormatProvider]
-typed parameter (which is an interface implemented by [cultureinfo]
).
When string-comparing (-eq
, -lt
, -gt
) , using a String.Compare()
overload that accepts a CultureInfo
parameter.
Others?
Note that, separately, custom stringification is applied in casts / implicit stringification for the following .NET types:
Arrays and, more generally, similar list-like collection types that PowerShell enumerates in the pipeline (see the bottom section of this answer for what those types are).
The (stringified) elements of such types are concatenated with spaces (strictly speaking: with the string specified in the rarely used $OFS
preference variable); the stringification of the elements is recursively subject to the rules described here.
E.g, [string] (1, 2)
yields '1 2'
[pscustomobject]
Such instances result in a hashtable-like string format described in this answer; e.g.:
# -> '@{foo=1; bar=2.2}'; values are formatted with the *invariant* culture
[string] ([pscustomobject] @{ foo = 1; bar = 2.2 })
The fact that calling .ToString()
directly on a [pscustomobject]
instance does not yield this representation and instead returns the empty string should be considered a bug - see GitHub issue #6163.
Others?
As for the purpose of the invariant culture:
The invariant culture is culture-insensitive; it is associated with the English language but not with any country/region.
[...]
Unlike culture-sensitive data, which is subject to change by user customization or by updates to the .NET Framework or the operating system, invariant culture data is stable over time and across installed cultures and cannot be customized by users. This makes the invariant culture particularly useful for operations that require culture-independent results, such as formatting and parsing operations that persist formatted data, or sorting and ordering operations that require that data be displayed in a fixed order regardless of culture.
Presumably, it is the stability across cultures that motivated PowerShell's designers to consistently use the invariant culture when implicitly converting to and from strings.
For instance, if you hard-code a date string such as '7/21/2017'
into a script and later try to convert it to date with a [date]
cast, PowerShell's culture-invariant behavior ensures that the script doesn't break even when run while a culture other than US-English is in effect - fortunately, the invariant culture also recognizes ISO 8601-format date and time strings;
e.g., [datetime] '2017-07-21'
works too.
On the flip side, if you do want to convert to and from current-culture-appropriate strings, you must do so explicitly.
To summarize:
Converting to strings:
"..."
yields a culture-invariant representation ([double]
or [datetime]
are examples of such types)..ToString()
explicitly or use -f
), the formatting operator (possibly inside "..."
via an enclosing $(...)
).Converting from strings:
A direct cast ([<type>] ...
) only ever recognizes culture-invariant string representations.
To convert from a current-culture-appropriate string representation (or a specific culture's representation), use the target type's static ::Parse()
method explicitly (optionally with an explicit [cultureinfo]
instance to represent a specific culture).
string interpolation and casts:
"$(1/10)"
and [string] 1/10
0.1
, with decimal mark .
, irrespective of the current culture.Similarly, casts from strings are culture-invariant; e.g., [double] '1.2'
.
is always recognized as the decimal mark, irrespective of the current culture.[double] 1.2
is not translated to the culture-sensitive-by-default method overload [double]::Parse('1.2')
, but to the culture-invariant [double]::Parse('1.2', [cultureinfo]::InvariantCulture)
string comparison (assume that [cultureinfo]::CurrentCulture='tr-TR'
is in effect - Turkish, where i
is NOT a lowercase representation of I
)
[string]::Equals('i', 'I', 'CurrentCultureIgnoreCase')
$false
with the Turkish culture in effect.'i'.ToUpper()
shows that in the Turkish culture the uppercase is İ
, not I
.'i' -eq 'I'
$true
, because the invariant culture is applied.[string]::Equals('i', 'I', 'InvariantCultureIgnoreCase')
The current culture IS respected in the following cases:
With -f
, the string-formatting operator (as noted above):
[cultureinfo]::currentculture = 'de-DE'; '{0}' -f 1.2
yields 1,2
-f
must be enclosed in (...)
in order to be recognized as such:
'{0}' -f 1/10
is evaluated as if ('{0}' -f 1) / 10
had been specified;'{0}' -f (1/10)
instead.Default output to the console:
e.g., [cultureinfo]::CurrentCulture = 'de-DE'; 1.2
yields 1,2
The same applies to output from cmdlets; e.g.,[cultureinfo]::CurrentCulture = 'de-DE'; Get-Date '2017-01-01'
yieldsSonntag, 1. Januar 2017 00:00:00
Caveat: In certain scenarios, literals passed to a script block as unconstrained parameters can result in culture-invariant default output - see GitHub issue #4557 and GitHub issue #4558.
In (all?) cmdlets:
Those that that perform equality comparisons:
Select-Object
with the -Unique
switch; also note that - unusually - case-sensitive comparison is performed, and as of PowerShell 7.2.4 case-insensitivity isn't even available as an opt-in - see GitHub issue #12059.Select-Object
Compare-Object
Those that write to files:
Set-Content
and Add-Content
Out-File
and therefore its virtual alias, >
(and >>
)
[cultureinfo]::CurrentCulture = 'de-DE'; 1.2 > tmp.txt; Get-Content tmp.txt
yields 1,2
Due to .NET's logic, when using the static ::Parse()
/ ::TryParse()
methods on number types such as [double]
while passing only the string to parse; e.g., with culture fr-FR
in effect (where ,
is the decimal mark), [double]::Parse('1,2')
returns double 1.2
(i.e., 1 + 2/10
).
0
is also accepted; e.g., in the en-US
culture (where ,
is the thousands separator), [double]::Parse('0,18')
perhaps surprisingly succeeds and yields 18
.
[double]::Parse('0,18', 'Float')
, via the NumberStyles
parameter
Unintentional culture-sensitivity that won't be corrected to preserve backward compatibility:
-as
operator - see GitHub issue #8129.[hashtable]
key lookups - see this answer and GitHub issue #8280.-replace
operations - see GitHub issue #10948.Others?
[1] The aim is to support programmatic processing using representations that do not vary by culture and do not change over time. See the linked quote from the docs later in the answer.
This is a PowerShell function I use for testing script in other cultures. I believe it could be used for what you are after:
function Using-Culture ([System.Globalization.CultureInfo]$culture =(throw "USAGE: Using-Culture -Culture culture -Script {scriptblock}"),
[ScriptBlock]$script=(throw "USAGE: Using-Culture -Culture culture -Script {scriptblock}"))
{
$OldCulture = [System.Threading.Thread]::CurrentThread.CurrentCulture
$OldUICulture = [System.Threading.Thread]::CurrentThread.CurrentUICulture
try {
[System.Threading.Thread]::CurrentThread.CurrentCulture = $culture
[System.Threading.Thread]::CurrentThread.CurrentUICulture = $culture
Invoke-Command $script
}
finally {
[System.Threading.Thread]::CurrentThread.CurrentCulture = $OldCulture
[System.Threading.Thread]::CurrentThread.CurrentUICulture = $OldUICulture
}
}
PS> $res = Using-Culture fr-FR { 1.1 }
PS> $res
1.1
I was thinking about how to make it easy and came up with accelerators:
Add-type -typedef @"
using System;
public class InvFloat
{
double _f = 0;
private InvFloat (double f) {
_f = f;
}
private InvFloat(string f) {
_f = Double.Parse(f, System.Globalization.CultureInfo.InvariantCulture);
}
public static implicit operator InvFloat (double f) {
return new InvFloat(f);
}
public static implicit operator double(InvFloat f) {
return f._f;
}
public static explicit operator InvFloat (string f) {
return new InvFloat (f);
}
public override string ToString() {
return _f.ToString(System.Globalization.CultureInfo.InvariantCulture);
}
}
"@
$acce = [type]::gettype("System.Management.Automation.TypeAccelerators")
$acce::Add('f', [InvFloat])
$y = 1.5.ToString()
$z = ([f]1.5).ToString()
I hope it will help.
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