Compare commits

..

7 Commits

Author SHA1 Message Date
Dustin L. Howett
740f9f4452 Fix line endings 2024-07-17 18:30:05 -05:00
Dustin L. Howett
f96be52442 Merge remote-tracking branch 'origin/main' into dev/duhowett/applicableactions 2024-07-17 18:25:30 -05:00
Dustin L. Howett
8a0c03619d Merge remote-tracking branch 'origin/main' into dev/duhowett/applicableactions 2024-07-17 10:15:44 -05:00
Dustin L. Howett
9096325b36 The WithSelection buttons don't need their own UIDs...
(cherry picked from commit 346b1ae6e67d16f230bec8d8d7107faf02253a3a)
2023-06-16 13:47:51 -05:00
Dustin L. Howett
f13a40dae4 Update notes about Anchor
(cherry picked from commit 7d25a9a0844cba8b822cc84e3ede08c0681c1766)
2023-06-16 13:47:51 -05:00
Dustin L. Howett
ee30fc4ff1 Don't stash the position on the core, finish applicability
(cherry picked from commit d9bc198826780316b7b2822137203200381bfb43)
2023-06-16 13:47:51 -05:00
Dustin L. Howett
8481c409ad HAX: ApplicableActions
(cherry picked from commit da1b24a88267f7a9dea829dfc83bc5c057f0b6e7)
2023-06-16 13:47:51 -05:00
527 changed files with 58130 additions and 11881 deletions

View File

@@ -27,7 +27,6 @@ gje
godbolt
hyperlinking
hyperlinks
Kbds
kje
libfuzzer
liga
@@ -44,7 +43,6 @@ mkmk
mnt
mru
nje
NTMTo
notwrapped
ogonek
overlined

View File

@@ -65,8 +65,8 @@ GETTEXTLENGTH
Hashtable
HIGHCONTRASTON
HIGHCONTRASTW
HIGHQUALITYSCALE
hinternet
HIGHQUALITYSCALE
HINTERNET
hotkeys
href
@@ -155,7 +155,6 @@ NOTIFYBYPOS
NOTIFYICON
NOTIFYICONDATA
ntprivapi
NTSYSCALLAPI
numr
oaidl
ocidl
@@ -174,7 +173,6 @@ PALLOC
PATINVERT
PEXPLICIT
PICKFOLDERS
PINPUT
pmr
ptstr
QUERYENDSESSION

View File

@@ -128,4 +128,3 @@
^XamlStyler\.json$
ignore$
Resources/(?!en)
^\.vsconfig$

View File

@@ -1,15 +1,20 @@
AAAAA
AAAAAAAAAAAAA
AAAAAABBBBBBCCC
AAAAABBBBBBCCC
abcd
abcd
ABCDEFGHIJ
abcdefghijk
ABCDEFGHIJKLMNO
abcdefghijklmnop
ABCDEFGHIJKLMNOPQRS
ABCDEFGHIJKLMNOPQRST
ABCG
ABE
abf
BBBBB
BBBBBBBB
BBBBBCCC
BBBBCCCCC
BBGGRR
@@ -24,8 +29,10 @@ QQQQQQQQQQABCDEFGHIJKLMNOPQRSTQQQQQQQQQ
QQQQQQQQQQABCDEFGHIJKLMNOPQRSTQQQQQQQQQQ
QQQQQQQQQQABCDEFGHIJPQRST
QQQQQQQQQQABCDEFGHIJPQRSTQQQQQQQQQQ
qrstuvwxyz
qwerty
qwertyuiopasdfg
YYYYYYYDDDDDDDDDDD
ZAAZZ
ZABBZ
ZBAZZ

View File

@@ -9,6 +9,7 @@ ABORTIFHUNG
ACCESSTOKEN
acidev
ACIOSS
ACover
acp
actctx
ACTCTXW
@@ -16,6 +17,7 @@ ADDALIAS
ADDREF
ADDSTRING
ADDTOOL
AFew
AFill
AFX
AHelper
@@ -37,7 +39,6 @@ ANSISYS
ANSISYSRC
ANSISYSSC
answerback
ANSWERBACKMESSAGE
antialiasing
ANull
anycpu
@@ -52,7 +53,6 @@ appium
appletname
applicationmodel
APPLMODAL
Applocal
appmodel
APPWINDOW
APPXMANIFESTVERSION
@@ -65,6 +65,7 @@ ARRAYSIZE
ARROWKEYS
asan
ASBSET
asdfghjkl
ASetting
ASingle
ASYNCDONTCARE
@@ -86,7 +87,6 @@ Autowrap
AVerify
awch
azurecr
AZZ
backgrounded
Backgrounder
backgrounding
@@ -124,7 +124,6 @@ BKCOLOR
BKGND
Bksp
Blt
blu
BLUESCROLL
bmi
BODGY
@@ -143,8 +142,8 @@ BTNFACE
bufferout
buffersize
buflen
buildsystems
buildtransitive
burriter
BValue
bytebuffer
cac
@@ -180,6 +179,7 @@ CFuzz
cgscrn
chafa
changelists
charinfo
CHARSETINFO
chh
chshdng
@@ -208,6 +208,7 @@ cmw
CNL
cnn
Codeflow
codenav
codepages
codepath
coinit
@@ -263,6 +264,7 @@ consolegit
consolehost
CONSOLEIME
consoleinternal
Consoleroot
CONSOLESETFOREGROUND
consoletaeftemplates
consoleuwp
@@ -358,7 +360,6 @@ DBGFONTS
DBGOUTPUT
dbh
dblclk
Dcd
DColor
DCOLORVALUE
dcommon
@@ -376,7 +377,7 @@ DECALN
DECANM
DECARM
DECAUPSS
decawm
DECAWM
DECBI
DECBKM
DECCARA
@@ -384,7 +385,7 @@ DECCIR
DECCKM
DECCKSR
DECCOLM
deccra
DECCRA
DECCTR
DECDC
DECDHL
@@ -396,7 +397,7 @@ DECEKBD
DECERA
DECFI
DECFNK
decfra
DECFRA
DECGCI
DECGCR
DECGNL
@@ -418,7 +419,6 @@ DECPCCM
DECPCTERM
DECPS
DECRARA
decrc
DECRC
DECREQTPARM
DECRLM
@@ -434,7 +434,6 @@ DECRSPS
decrst
DECSACE
DECSASD
decsc
DECSC
DECSCA
DECSCNM
@@ -474,6 +473,7 @@ DEFPUSHBUTTON
defterm
DELAYLOAD
DELETEONRELEASE
Delt
depersist
deprioritized
deserializers
@@ -554,6 +554,7 @@ Efast
efghijklmn
EHsc
EINS
EJO
ELEMENTNOTAVAILABLE
EMPTYBOX
enabledelayedexpansion
@@ -623,6 +624,7 @@ FINDDOWN
FINDREGEX
FINDSTRINGEXACT
FINDUP
FIter
FITZPATRICK
FIXEDFILEINFO
Flg
@@ -719,12 +721,12 @@ GETWHEELSCROLLLINES
Gfun
gfx
GGI
GHgh
GHIJK
GHIJKL
gitcheckin
gitfilters
gitlab
gitmodules
gle
GLOBALFOCUS
GLYPHENTRY
@@ -913,7 +915,6 @@ Keymapping
keyscan
keystate
keyups
Kickstart
KILLACTIVE
KILLFOCUS
kinda
@@ -945,6 +946,7 @@ LCONTROL
LCTRL
lcx
LEFTALIGN
libpopcnt
libsancov
libtickit
licate
@@ -1019,6 +1021,7 @@ lstatus
lstrcmp
lstrcmpi
LTEXT
LTLTLTLTL
ltsc
LUID
luma
@@ -1041,6 +1044,7 @@ MAPBITMAP
MAPVIRTUALKEY
MAPVK
MAXDIMENSTRING
maxing
MAXSHORT
maxval
maxversiontested
@@ -1113,6 +1117,7 @@ msrc
MSVCRTD
MTSM
Munged
munges
murmurhash
muxes
myapplet
@@ -1214,6 +1219,7 @@ ntlpcapi
ntm
ntrtl
ntstatus
NTSYSCALLAPI
nttree
nturtl
ntuser
@@ -1229,7 +1235,6 @@ NUMSCROLL
NUnit
nupkg
NVIDIA
NVT
OACR
objbase
ocolor
@@ -1404,7 +1409,6 @@ processenv
processhost
PROCESSINFOCLASS
PRODEXT
Productize
PROPERTYID
PROPERTYKEY
propertyval
@@ -1498,6 +1502,7 @@ REGSTR
RELBINPATH
remoting
renamer
renderengine
rendersize
reparented
reparenting
@@ -1521,6 +1526,7 @@ rftp
rgbi
RGBQUAD
rgbs
rgci
rgfae
rgfte
rgn
@@ -1598,7 +1604,6 @@ SELECTALL
SELECTEDFONT
SELECTSTRING
Selfhosters
Serbo
SERVERDLL
SETACTIVE
SETBUDDYINT
@@ -1811,7 +1816,6 @@ TITLEISLINKNAME
TJson
TLambda
TLDP
tldr
TLEN
TMAE
TMPF
@@ -1827,6 +1831,8 @@ TOPDOWNDIB
TOpt
tosign
touchpad
Tpp
Tpqrst
tracelogging
traceviewpp
trackbar
@@ -1836,6 +1842,7 @@ Trd
TREX
triaged
triaging
Tribool
TRIMZEROHEADINGS
trx
tsa
@@ -1929,6 +1936,7 @@ uxtheme
Vanara
vararg
vclib
vcprintf
vcxitems
vectorize
VERCTRL
@@ -1951,6 +1959,7 @@ VPACKMANIFESTDIRECTORY
VPR
VREDRAW
vsc
vsconfig
vscprintf
VSCROLL
vsdevshell
@@ -1971,6 +1980,7 @@ vtio
vtmode
vtpipeterm
vtpt
vtrenderer
VTRGB
VTRGBTo
vtseq
@@ -2059,12 +2069,14 @@ Winperf
WInplace
winres
winrt
wintelnet
winternl
winuser
winuserp
WINVER
wistd
wmain
wmemory
WMSZ
wnd
WNDALLOC
@@ -2131,7 +2143,6 @@ XBUTTONDOWN
XBUTTONUP
XCast
XCENTER
xchar
xcopy
XCount
xdy
@@ -2159,15 +2170,16 @@ XTWINOPS
xunit
xutr
XVIRTUALSCREEN
XWalk
yact
YCast
YCENTER
YCount
yizz
YLimit
YPan
YSubstantial
YVIRTUALSCREEN
YWalk
Zab
zabcd
Zabcdefghijklmn
@@ -2175,6 +2187,6 @@ Zabcdefghijklmnopqrstuvwxyz
ZCmd
ZCtrl
ZWJs
zxcvbnm
ZYXWVU
ZYXWVUTd
zzf

View File

@@ -22,7 +22,6 @@ vcvars\w*
ROY\sG\.\sBIV
!(?:(?i)ESC)!\[
!(?:(?i)CSI)!(?:\d+(?:;\d+|)m|[ABCDF])
(?i)rgb:[a-z0-9]{2,4}/[a-z0-9]{2,4}/[a-z0-9]{2,4}
# SSE intrinsics like "_mm_subs_epu16"
\b_mm(?:|256|512)_\w+\b

33
.github/workflows/similarIssues.yml vendored Normal file
View File

@@ -0,0 +1,33 @@
name: GitGudSimilarIssues comments
on:
issues:
types: [opened]
jobs:
getSimilarIssues:
runs-on: ubuntu-latest
outputs:
message: ${{ steps.getBody.outputs.message }}
steps:
- id: getBody
uses: craigloewen-msft/GitGudSimilarIssues@main
with:
issueTitle: ${{ github.event.issue.title }}
issueBody: ${{ github.event.issue.body }}
repo: ${{ github.repository }}
similaritytolerance: "0.8"
add-comment:
needs: getSimilarIssues
runs-on: ubuntu-latest
permissions:
issues: write
if: needs.getSimilarIssues.outputs.message != ''
steps:
- name: Add comment
run: gh issue comment "$NUMBER" --repo "$REPO" --body "$BODY"
env:
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
NUMBER: ${{ github.event.issue.number }}
REPO: ${{ github.repository }}
BODY: ${{ needs.getSimilarIssues.outputs.message }}

3
.gitmodules vendored Normal file
View File

@@ -0,0 +1,3 @@
[submodule "dep/gsl"]
path = dep/gsl
url = https://github.com/microsoft/gsl

View File

@@ -1,51 +1,35 @@
{
"version": "1.0",
"components": [
"Microsoft.VisualStudio.Component.Roslyn.Compiler",
"Microsoft.Component.MSBuild",
"Microsoft.VisualStudio.Component.Roslyn.LanguageServices",
"Microsoft.VisualStudio.Component.SQL.LocalDB.Runtime",
"Microsoft.VisualStudio.Component.SQL.CLR",
"Microsoft.VisualStudio.Component.CoreEditor",
"Microsoft.VisualStudio.Workload.CoreEditor",
"Microsoft.Net.Component.4.8.SDK",
"Microsoft.Net.Component.4.7.2.TargetingPack",
"Microsoft.VisualStudio.Component.TextTemplating",
"Microsoft.VisualStudio.Component.NuGet",
"Microsoft.NetCore.Component.Runtime.8.0",
"Microsoft.NetCore.Component.SDK",
"Microsoft.VisualStudio.Component.AppInsights.Tools",
"Microsoft.Net.Component.4.8.TargetingPack",
"Microsoft.VisualStudio.Component.DiagnosticTools",
"Microsoft.NetCore.Component.Runtime.6.0",
"Microsoft.VisualStudio.Component.ClassDesigner",
"Microsoft.VisualStudio.Component.GraphDocument",
"Microsoft.VisualStudio.Component.CodeMap",
"Microsoft.VisualStudio.Component.VC.CoreIde",
"Microsoft.VisualStudio.Component.VC.Tools.x86.x64",
"Microsoft.VisualStudio.Component.Windows11SDK.22621",
"Microsoft.VisualStudio.ComponentGroup.MSIX.Packaging",
"Microsoft.VisualStudio.ComponentGroup.WindowsAppSDK.Cs",
"Microsoft.ComponentGroup.Blend",
"Microsoft.VisualStudio.ComponentGroup.ArchitectureTools.Native",
"Microsoft.VisualStudio.Component.VC.Redist.14.Latest",
"Microsoft.VisualStudio.ComponentGroup.NativeDesktop.Core",
"Microsoft.VisualStudio.ComponentGroup.WebToolsExtensions.CMake",
"Microsoft.VisualStudio.Component.Vcpkg",
"Microsoft.Component.NetFX.Native",
"Microsoft.VisualStudio.Component.Graphics",
"Microsoft.VisualStudio.ComponentGroup.UWP.Xamarin",
"Microsoft.VisualStudio.ComponentGroup.UWP.Support",
"Microsoft.VisualStudio.Component.VC.Tools.ARM64EC",
"Microsoft.VisualStudio.Component.UWP.VC.ARM64EC",
"Microsoft.VisualStudio.Component.VC.Tools.ARM64",
"Microsoft.VisualStudio.Component.UWP.VC.ARM64",
"Microsoft.VisualStudio.Component.VC.Tools.ARM",
"Microsoft.VisualStudio.ComponentGroup.UWP.VC",
"Microsoft.VisualStudio.Workload.Universal",
"Microsoft.VisualStudio.Workload.NativeDesktop",
"Microsoft.VisualStudio.ComponentGroup.WindowsAppDevelopment.Prerequisites",
"Microsoft.VisualStudio.ComponentGroup.UWP.NetCoreAndStandard",
"Microsoft.VisualStudio.Workload.Universal"
],
"extensions": []
"Microsoft.VisualStudio.Workload.ManagedDesktop",
"Microsoft.VisualStudio.Component.ManagedDesktop.Prerequisites",
"Microsoft.VisualStudio.Component.NuGet",
"Microsoft.VisualStudio.Component.Roslyn.Compiler",
"Microsoft.VisualStudio.Component.Roslyn.LanguageServices",
"Microsoft.Net.ComponentGroup.DevelopmentPrerequisites",
"Microsoft.Component.MSBuild",
"Microsoft.VisualStudio.Component.ManagedDesktop.Core",
"Microsoft.Net.Component.4.TargetingPack",
"Microsoft.Net.Component.4.5.TargetingPack",
"Microsoft.VisualStudio.Component.DiagnosticTools",
"Microsoft.VisualStudio.Component.Debugger.JustInTime",
"Microsoft.VisualStudio.Component.Windows11SDK.22621",
"Microsoft.VisualStudio.ComponentGroup.UWP.Support",
"Microsoft.VisualStudio.Component.VC.CoreIde",
"Microsoft.VisualStudio.ComponentGroup.NativeDesktop.Core",
"Microsoft.VisualStudio.Component.Graphics",
"Microsoft.VisualStudio.Component.VC.Redist.14.Latest",
"Microsoft.VisualStudio.Component.VC.Tools.x86.x64",
"Microsoft.VisualStudio.Component.VC.Tools.ARM64",
"Microsoft.VisualStudio.Component.VC.ASAN",
"Microsoft.VisualStudio.Component.VC.v143.x86.x64",
"Microsoft.VisualStudio.Component.VC.v143.ARM64",
"Microsoft.VisualStudio.ComponentGroup.UWP.VC",
"Microsoft.VisualStudio.ComponentGroup.UWP.VC.v143",
"Microsoft.VisualStudio.Component.UWP.VC.ARM64"
]
}

View File

@@ -1,34 +0,0 @@
{
"$version": "1.0.0",
"snippets":
[
{
"input": "bx\r",
"name": "Build project",
"description": "Build the project in the CWD"
},
{
"input": "bz\r",
"name": "Build solution, incremental",
"description": "Just build changes to the solution"
},
{
"input": "bcz\r",
"name": "Clean & build solution",
"icon": "\uE8e6",
"description": "Start over. Go get your coffee. "
},
{
"input": "nuget push -ApiKey az -source TerminalDependencies %userprofile%\\Downloads",
"name": "Upload package to nuget feed",
"icon": "\uE898",
"description": "Go download a .nupkg, put it in ~/Downloads, and use this to push to our private feed."
},
{
"input": "runut /name:**\u001b[D",
"name": "Run a test",
"icon": "",
"description": "Enter the name of a test to run"
}
]
}

View File

@@ -41,11 +41,6 @@
-->
<MSBuildCacheIdenticalDuplicateOutputPatterns>$(MSBuildCacheIdenticalDuplicateOutputPatterns);bin\**</MSBuildCacheIdenticalDuplicateOutputPatterns>
<!--
vcpkg is invoked for each and every vcxproj and each invocation uses the same base dir for logging, so allow these duplicate "outputs".
-->
<MSBuildCacheIdenticalDuplicateOutputPatterns>$(MSBuildCacheIdenticalDuplicateOutputPatterns);obj\*\vcpkg\**</MSBuildCacheIdenticalDuplicateOutputPatterns>
<!-- version of MSBuildCache is not part of the cache key -->
<PackagesConfigFile>$(MSBuildThisFileDirectory)\dep\nuget\packages.config</PackagesConfigFile>
<MSBuildCacheIgnoredInputPatterns>$(MSBuildCacheIgnoredInputPatterns);$(PackagesConfigFile)</MSBuildCacheIgnoredInputPatterns>

View File

@@ -84,6 +84,71 @@ THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
```
## kimwalisch/libpopcnt
**Source**: [https://github.com/kimwalisch/libpopcnt](https://github.com/kimwalisch/libpopcnt)
### License
```
BSD 2-Clause License
Copyright (c) 2016 - 2019, Kim Walisch
Copyright (c) 2016 - 2019, Wojciech Muła
All rights reserved.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are met:
1. Redistributions of source code must retain the above copyright notice, this
list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright notice,
this list of conditions and the following disclaimer in the documentation
and/or other materials provided with the distribution.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
```
## dynamic_bitset
**Source**: [https://github.com/pinam45/dynamic_bitset](https://github.com/pinam45/dynamic_bitset)
### License
```
MIT License
Copyright (c) 2019 Maxime Pinard
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.
```
## \{fmt\}
**Source**: [https://github.com/fmtlib/fmt](https://github.com/fmtlib/fmt)

View File

@@ -4,7 +4,7 @@
<clear />
<!-- Dependencies that we can turn on to force override for testing purposes before uploading. -->
<!--<add key="Static Package Dependencies" value="dep\packages" />-->
<add key="TerminalDependencies" value="https://pkgs.dev.azure.com/shine-oss/terminal/_packaging/TerminalDependencies/nuget/v3/index.json" />
<add key="TerminalDependencies" value="https://pkgs.dev.azure.com/ms/terminal/_packaging/TerminalDependencies/nuget/v3/index.json" />
</packageSources>
<disabledPackageSources>
<clear />

View File

@@ -131,6 +131,7 @@ EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "InteractivityWin32", "src\interactivity\win32\lib\win32.LIB.vcxproj", "{06EC74CB-9A12-429C-B551-8532EC964726}"
ProjectSection(ProjectDependencies) = postProject
{1C959542-BAC2-4E55-9A6D-13251914CBB9} = {1C959542-BAC2-4E55-9A6D-13251914CBB9}
{990F2657-8580-4828-943F-5DD657D11842} = {990F2657-8580-4828-943F-5DD657D11842}
{AF0A096A-8B3A-4949-81EF-7DF8F0FEE91F} = {AF0A096A-8B3A-4949-81EF-7DF8F0FEE91F}
EndProjectSection
EndProject
@@ -139,9 +140,14 @@ EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "InteractivityBase", "src\interactivity\base\lib\InteractivityBase.vcxproj", "{06EC74CB-9A12-429C-B551-8562EC964846}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "Interactivity.Win32.Tests.Unit", "src\interactivity\win32\ut_interactivity_win32\Interactivity.Win32.UnitTests.vcxproj", "{D3B92829-26CB-411A-BDA2-7F5DA3D25DD4}"
ProjectSection(ProjectDependencies) = postProject
{990F2657-8580-4828-943F-5DD657D11842} = {990F2657-8580-4828-943F-5DD657D11842}
EndProjectSection
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "CloseTest", "src\tools\closetest\CloseTest.vcxproj", "{C7A6A5D9-60BE-4AEB-A5F6-AFE352F86CBB}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "RendererVt", "src\renderer\vt\lib\vt.vcxproj", "{990F2657-8580-4828-943F-5DD657D11842}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "VtPipeTerm", "src\tools\vtpipeterm\VtPipeTerm.vcxproj", "{814DBDDE-894E-4327-A6E1-740504850098}"
ProjectSection(ProjectDependencies) = postProject
{9CBD7DFA-1754-4A9D-93D7-857A9D17CB1B} = {9CBD7DFA-1754-4A9D-93D7-857A9D17CB1B}
@@ -151,6 +157,8 @@ Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "ConEchoKey", "src\tools\ech
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "Types", "src\types\lib\types.vcxproj", "{18D09A24-8240-42D6-8CB6-236EEE820263}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "RendererVt.unittest", "src\renderer\vt\ut_lib\vt.unittest.vcxproj", "{990F2657-8580-4828-943F-5DD657D11843}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "BufferOut", "src\buffer\out\lib\bufferout.vcxproj", "{0CF235BD-2DA0-407E-90EE-C467E8BBC714}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "TerminalConnection", "src\cascadia\TerminalConnection\TerminalConnection.vcxproj", "{CA5CAD1A-C46D-4588-B1C0-40F31AE9100B}"
@@ -315,6 +323,8 @@ Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "TerminalAzBridge", "src\cas
{CA5CAD1A-C46D-4588-B1C0-40F31AE9100B} = {CA5CAD1A-C46D-4588-B1C0-40F31AE9100B}
EndProjectSection
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "fmt", "src\dep\fmt\fmt.vcxproj", "{6BAE5851-50D5-4934-8D5E-30361A8A40F3}"
EndProject
Project("{9A19103F-16F7-4668-BE54-9A1E7A4F7556}") = "WpfTerminalTestNetCore", "src\cascadia\WpfTerminalTestNetCore\WpfTerminalTestNetCore.csproj", "{1588FD7C-241E-4E7D-9113-43735F3E6BAD}"
ProjectSection(ProjectDependencies) = postProject
{CA5CAD1A-F542-4635-A069-7CAEFB930070} = {CA5CAD1A-F542-4635-A069-7CAEFB930070}
@@ -1109,6 +1119,29 @@ Global
{C7A6A5D9-60BE-4AEB-A5F6-AFE352F86CBB}.Release|x64.Build.0 = Release|x64
{C7A6A5D9-60BE-4AEB-A5F6-AFE352F86CBB}.Release|x86.ActiveCfg = Release|Win32
{C7A6A5D9-60BE-4AEB-A5F6-AFE352F86CBB}.Release|x86.Build.0 = Release|Win32
{990F2657-8580-4828-943F-5DD657D11842}.AuditMode|Any CPU.ActiveCfg = AuditMode|Win32
{990F2657-8580-4828-943F-5DD657D11842}.AuditMode|ARM64.ActiveCfg = Release|ARM64
{990F2657-8580-4828-943F-5DD657D11842}.AuditMode|x64.ActiveCfg = Release|x64
{990F2657-8580-4828-943F-5DD657D11842}.AuditMode|x86.ActiveCfg = Release|Win32
{990F2657-8580-4828-943F-5DD657D11842}.Debug|Any CPU.ActiveCfg = Debug|Win32
{990F2657-8580-4828-943F-5DD657D11842}.Debug|ARM64.ActiveCfg = Debug|ARM64
{990F2657-8580-4828-943F-5DD657D11842}.Debug|ARM64.Build.0 = Debug|ARM64
{990F2657-8580-4828-943F-5DD657D11842}.Debug|x64.ActiveCfg = Debug|x64
{990F2657-8580-4828-943F-5DD657D11842}.Debug|x64.Build.0 = Debug|x64
{990F2657-8580-4828-943F-5DD657D11842}.Debug|x86.ActiveCfg = Debug|Win32
{990F2657-8580-4828-943F-5DD657D11842}.Debug|x86.Build.0 = Debug|Win32
{990F2657-8580-4828-943F-5DD657D11842}.Fuzzing|Any CPU.ActiveCfg = Fuzzing|Win32
{990F2657-8580-4828-943F-5DD657D11842}.Fuzzing|ARM64.ActiveCfg = Fuzzing|ARM64
{990F2657-8580-4828-943F-5DD657D11842}.Fuzzing|x64.ActiveCfg = Fuzzing|x64
{990F2657-8580-4828-943F-5DD657D11842}.Fuzzing|x64.Build.0 = Fuzzing|x64
{990F2657-8580-4828-943F-5DD657D11842}.Fuzzing|x86.ActiveCfg = Fuzzing|Win32
{990F2657-8580-4828-943F-5DD657D11842}.Release|Any CPU.ActiveCfg = Release|Win32
{990F2657-8580-4828-943F-5DD657D11842}.Release|ARM64.ActiveCfg = Release|ARM64
{990F2657-8580-4828-943F-5DD657D11842}.Release|ARM64.Build.0 = Release|ARM64
{990F2657-8580-4828-943F-5DD657D11842}.Release|x64.ActiveCfg = Release|x64
{990F2657-8580-4828-943F-5DD657D11842}.Release|x64.Build.0 = Release|x64
{990F2657-8580-4828-943F-5DD657D11842}.Release|x86.ActiveCfg = Release|Win32
{990F2657-8580-4828-943F-5DD657D11842}.Release|x86.Build.0 = Release|Win32
{814DBDDE-894E-4327-A6E1-740504850098}.AuditMode|Any CPU.ActiveCfg = AuditMode|Win32
{814DBDDE-894E-4327-A6E1-740504850098}.AuditMode|ARM64.ActiveCfg = Release|ARM64
{814DBDDE-894E-4327-A6E1-740504850098}.AuditMode|x64.ActiveCfg = Release|x64
@@ -1179,6 +1212,28 @@ Global
{18D09A24-8240-42D6-8CB6-236EEE820263}.Release|x64.Build.0 = Release|x64
{18D09A24-8240-42D6-8CB6-236EEE820263}.Release|x86.ActiveCfg = Release|Win32
{18D09A24-8240-42D6-8CB6-236EEE820263}.Release|x86.Build.0 = Release|Win32
{990F2657-8580-4828-943F-5DD657D11843}.AuditMode|Any CPU.ActiveCfg = AuditMode|Win32
{990F2657-8580-4828-943F-5DD657D11843}.AuditMode|ARM64.ActiveCfg = Release|ARM64
{990F2657-8580-4828-943F-5DD657D11843}.AuditMode|x64.ActiveCfg = Release|x64
{990F2657-8580-4828-943F-5DD657D11843}.AuditMode|x86.ActiveCfg = Release|Win32
{990F2657-8580-4828-943F-5DD657D11843}.Debug|Any CPU.ActiveCfg = Debug|Win32
{990F2657-8580-4828-943F-5DD657D11843}.Debug|ARM64.ActiveCfg = Debug|ARM64
{990F2657-8580-4828-943F-5DD657D11843}.Debug|ARM64.Build.0 = Debug|ARM64
{990F2657-8580-4828-943F-5DD657D11843}.Debug|x64.ActiveCfg = Debug|x64
{990F2657-8580-4828-943F-5DD657D11843}.Debug|x64.Build.0 = Debug|x64
{990F2657-8580-4828-943F-5DD657D11843}.Debug|x86.ActiveCfg = Debug|Win32
{990F2657-8580-4828-943F-5DD657D11843}.Debug|x86.Build.0 = Debug|Win32
{990F2657-8580-4828-943F-5DD657D11843}.Fuzzing|Any CPU.ActiveCfg = Fuzzing|Win32
{990F2657-8580-4828-943F-5DD657D11843}.Fuzzing|ARM64.ActiveCfg = Fuzzing|ARM64
{990F2657-8580-4828-943F-5DD657D11843}.Fuzzing|x64.ActiveCfg = Fuzzing|x64
{990F2657-8580-4828-943F-5DD657D11843}.Fuzzing|x86.ActiveCfg = Fuzzing|Win32
{990F2657-8580-4828-943F-5DD657D11843}.Release|Any CPU.ActiveCfg = Release|Win32
{990F2657-8580-4828-943F-5DD657D11843}.Release|ARM64.ActiveCfg = Release|ARM64
{990F2657-8580-4828-943F-5DD657D11843}.Release|ARM64.Build.0 = Release|ARM64
{990F2657-8580-4828-943F-5DD657D11843}.Release|x64.ActiveCfg = Release|x64
{990F2657-8580-4828-943F-5DD657D11843}.Release|x64.Build.0 = Release|x64
{990F2657-8580-4828-943F-5DD657D11843}.Release|x86.ActiveCfg = Release|Win32
{990F2657-8580-4828-943F-5DD657D11843}.Release|x86.Build.0 = Release|Win32
{0CF235BD-2DA0-407E-90EE-C467E8BBC714}.AuditMode|Any CPU.ActiveCfg = AuditMode|Win32
{0CF235BD-2DA0-407E-90EE-C467E8BBC714}.AuditMode|ARM64.ActiveCfg = AuditMode|ARM64
{0CF235BD-2DA0-407E-90EE-C467E8BBC714}.AuditMode|ARM64.Build.0 = AuditMode|ARM64
@@ -1746,6 +1801,32 @@ Global
{067F0A06-FCB7-472C-96E9-B03B54E8E18D}.Release|x64.Build.0 = Release|x64
{067F0A06-FCB7-472C-96E9-B03B54E8E18D}.Release|x86.ActiveCfg = Release|Win32
{067F0A06-FCB7-472C-96E9-B03B54E8E18D}.Release|x86.Build.0 = Release|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|Any CPU.ActiveCfg = AuditMode|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|ARM64.ActiveCfg = AuditMode|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|ARM64.Build.0 = AuditMode|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|x64.ActiveCfg = AuditMode|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|x64.Build.0 = AuditMode|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|x86.ActiveCfg = AuditMode|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|x86.Build.0 = AuditMode|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|Any CPU.ActiveCfg = Debug|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|ARM64.ActiveCfg = Debug|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|ARM64.Build.0 = Debug|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|x64.ActiveCfg = Debug|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|x64.Build.0 = Debug|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|x86.ActiveCfg = Debug|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|x86.Build.0 = Debug|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|Any CPU.ActiveCfg = Fuzzing|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|ARM64.ActiveCfg = Fuzzing|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|x64.ActiveCfg = Fuzzing|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|x64.Build.0 = Fuzzing|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|x86.ActiveCfg = Fuzzing|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|Any CPU.ActiveCfg = Release|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|ARM64.ActiveCfg = Release|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|ARM64.Build.0 = Release|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|x64.ActiveCfg = Release|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|x64.Build.0 = Release|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|x86.ActiveCfg = Release|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|x86.Build.0 = Release|Win32
{1588FD7C-241E-4E7D-9113-43735F3E6BAD}.AuditMode|Any CPU.ActiveCfg = Debug|Any CPU
{1588FD7C-241E-4E7D-9113-43735F3E6BAD}.AuditMode|ARM64.ActiveCfg = Debug|Any CPU
{1588FD7C-241E-4E7D-9113-43735F3E6BAD}.AuditMode|x64.ActiveCfg = Debug|Any CPU
@@ -2391,9 +2472,11 @@ Global
{06EC74CB-9A12-429C-B551-8562EC964846} = {E8F24881-5E37-4362-B191-A3BA0ED7F4EB}
{D3B92829-26CB-411A-BDA2-7F5DA3D25DD4} = {E8F24881-5E37-4362-B191-A3BA0ED7F4EB}
{C7A6A5D9-60BE-4AEB-A5F6-AFE352F86CBB} = {A10C4720-DCA4-4640-9749-67F4314F527C}
{990F2657-8580-4828-943F-5DD657D11842} = {05500DEF-2294-41E3-AF9A-24E580B82836}
{814DBDDE-894E-4327-A6E1-740504850098} = {A10C4720-DCA4-4640-9749-67F4314F527C}
{814CBEEE-894E-4327-A6E1-740504850098} = {A10C4720-DCA4-4640-9749-67F4314F527C}
{18D09A24-8240-42D6-8CB6-236EEE820263} = {89CDCC5C-9F53-4054-97A4-639D99F169CD}
{990F2657-8580-4828-943F-5DD657D11843} = {05500DEF-2294-41E3-AF9A-24E580B82836}
{0CF235BD-2DA0-407E-90EE-C467E8BBC714} = {1E4A062E-293B-4817-B20D-BF16B979E350}
{CA5CAD1A-C46D-4588-B1C0-40F31AE9100B} = {59840756-302F-44DF-AA47-441A9D673202}
{CA5CAD1A-ABCD-429C-B551-8562EC954746} = {9921CA0A-320C-4460-8623-3A3196E7F4CB}
@@ -2426,6 +2509,7 @@ Global
{D3EF7B96-CD5E-47C9-B9A9-136259563033} = {04170EEF-983A-4195-BFEF-2321E5E38A1E}
{024052DE-83FB-4653-AEA4-90790D29D5BD} = {E8F24881-5E37-4362-B191-A3BA0ED7F4EB}
{067F0A06-FCB7-472C-96E9-B03B54E8E18D} = {61901E80-E97D-4D61-A9BB-E8F2FDA8B40C}
{6BAE5851-50D5-4934-8D5E-30361A8A40F3} = {81C352DB-1818-45B7-A284-18E259F1CC87}
{1588FD7C-241E-4E7D-9113-43735F3E6BAD} = {4DAF0299-495E-4CD1-A982-9BAC16A45932}
{506FD703-BAA7-4F6E-9361-64F550EC8FCA} = {61901E80-E97D-4D61-A9BB-E8F2FDA8B40C}
{416FD703-BAA7-4F6E-9361-64F550EC8FCA} = {61901E80-E97D-4D61-A9BB-E8F2FDA8B40C}

View File

@@ -1,7 +1,5 @@
![terminal-logos](https://github.com/microsoft/terminal/assets/91625426/333ddc76-8ab2-4eb4-a8c0-4d7b953b1179)
[![Terminal Build Status](https://dev.azure.com/shine-oss/terminal/_apis/build/status%2FTerminal%20CI?branchName=main)](https://dev.azure.com/shine-oss/terminal/_build/latest?definitionId=1&branchName=main)
# Welcome to the Windows Terminal, Console and Command-Line repo
This repository contains the source code for:
@@ -147,6 +145,15 @@ _Learn more about the [types of Windows Terminal distributions](https://learn.mi
The plan for the Windows Terminal [is described here](/doc/roadmap-2023.md) and
will be updated as the project proceeds.
## Project Build Status
Project|Build Status
---|---
Terminal|[![Terminal Build Status](https://dev.azure.com/ms/terminal/_apis/build/status/terminal%20CI?branchName=main)](https://dev.azure.com/ms/terminal/_build?definitionId=136)
ColorTool|![Colortool Build Status](https://microsoft.visualstudio.com/_apis/public/build/definitions/c93e867a-8815-43c1-92c4-e7dd5404f1e1/17023/badge)
---
## Terminal & Console Overview
Please take a few minutes to review the overview below before diving into the

View File

@@ -29,6 +29,8 @@ Project("{2150E333-8FDC-42A3-9474-1A3956D46DE8}") = "Common Props", "Common Prop
src\wap-common.build.pre.props = src\wap-common.build.pre.props
EndProjectSection
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "fmt", "src\dep\fmt\fmt.vcxproj", "{6BAE5851-50D5-4934-8D5E-30361A8A40F3}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "Types", "src\types\lib\types.vcxproj", "{18D09A24-8240-42D6-8CB6-236EEE820263}"
EndProject
Project("{2150E333-8FDC-42A3-9474-1A3956D46DE8}") = "dependencies", "dependencies", "{75AC9360-76FD-4ABC-AFEC-EF342BD2B3E9}"
@@ -157,6 +159,30 @@ Global
{B4427499-9FDE-4208-B456-5BC580637633}.Release|x64.Build.0 = Release|x64
{B4427499-9FDE-4208-B456-5BC580637633}.Release|x86.ActiveCfg = Release|Win32
{B4427499-9FDE-4208-B456-5BC580637633}.Release|x86.Build.0 = Release|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|ARM64.ActiveCfg = AuditMode|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|ARM64.Build.0 = AuditMode|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|x64.ActiveCfg = AuditMode|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|x64.Build.0 = AuditMode|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|x86.ActiveCfg = AuditMode|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.AuditMode|x86.Build.0 = AuditMode|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|ARM64.ActiveCfg = Debug|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|ARM64.Build.0 = Debug|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|x64.ActiveCfg = Debug|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|x64.Build.0 = Debug|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|x86.ActiveCfg = Debug|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Debug|x86.Build.0 = Debug|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|ARM64.ActiveCfg = Fuzzing|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|ARM64.Build.0 = Fuzzing|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|x64.ActiveCfg = Fuzzing|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|x64.Build.0 = Fuzzing|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|x86.ActiveCfg = Fuzzing|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Fuzzing|x86.Build.0 = Fuzzing|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|ARM64.ActiveCfg = Release|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|ARM64.Build.0 = Release|ARM64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|x64.ActiveCfg = Release|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|x64.Build.0 = Release|x64
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|x86.ActiveCfg = Release|Win32
{6BAE5851-50D5-4934-8D5E-30361A8A40F3}.Release|x86.Build.0 = Release|Win32
{18D09A24-8240-42D6-8CB6-236EEE820263}.AuditMode|ARM64.ActiveCfg = AuditMode|ARM64
{18D09A24-8240-42D6-8CB6-236EEE820263}.AuditMode|ARM64.Build.0 = AuditMode|ARM64
{18D09A24-8240-42D6-8CB6-236EEE820263}.AuditMode|x64.ActiveCfg = AuditMode|x64
@@ -186,6 +212,7 @@ Global
HideSolutionNode = FALSE
EndGlobalSection
GlobalSection(NestedProjects) = preSolution
{6BAE5851-50D5-4934-8D5E-30361A8A40F3} = {75AC9360-76FD-4ABC-AFEC-EF342BD2B3E9}
{18D09A24-8240-42D6-8CB6-236EEE820263} = {75AC9360-76FD-4ABC-AFEC-EF342BD2B3E9}
EndGlobalSection
GlobalSection(ExtensibilityGlobals) = postSolution

View File

@@ -56,15 +56,7 @@ Dies ist ein Open Source-Projekt, und wir freuen uns über die Teilnahme der Com
<ReleaseNotes>
Version __VERSION_NUMBER__
Wir haben umgeschrieben, wie Konsolenanwendungen im Terminal gehostet werden! Melden Sie alle auftretenden Fehler.
- Terminal unterstützt jetzt Sixels!
- Sie können jetzt ein angedocktes Fenster öffnen, das Ausschnitte von Befehlen enthält, die Sie gespeichert haben, um sie später zu verwenden.
- Für Benutzer der Eingabeaufforderung der neuesten Version von Windows 11 wird möglicherweise ein „Kurzer Tipp“-Symbol angezeigt, das installierbare Software von WinGet
vorschlägt
- Ausgewählter Text wird jetzt viel sichtbarer (und anpassbarer!)
- Eine Reihe von Zuverlässigkeitsfehlern, Komfortproblemen und Ärgernissen wurden behoben.
Weitere Informationen finden Sie auf unserer GitHub-Releaseseite.
Weitere Einzelheiten finden Sie auf der Seite der GitHub-Veröffentlichungen.
</ReleaseNotes>
<ScreenshotCaptions>
<!-- Valid length: 200 character limit, up to 9 elements per platform -->

View File

@@ -56,13 +56,6 @@ This is an open source project and we welcome community participation. To partic
<ReleaseNotes _locID="App_ReleaseNotes">
<!-- _locComment_text="{MaxLength=1500} {Locked=__VERSION_NUMBER__} App Release Note" -->Version __VERSION_NUMBER__
- We've rewritten how console applications are hosted inside Terminal! Please report any bugs you encounter.
- Terminal now supports Sixels!
- You can now open a docked panel containing snippets of commands you have saved to use later
- Command Prompt users on the latest Windows 11 release may see a "quick tip" icon that suggests installable software from WinGet
- Selected text will now be much more visible (and customizable!)
- A number of reliabilty bugs, convenience issues and annoyances have been fixed.
Please see our GitHub releases page for additional details.
</ReleaseNotes>
<ScreenshotCaptions>

View File

@@ -56,14 +56,7 @@ Este es un proyecto de fuente abierta y animamos a la comunidad a participar. Pa
<ReleaseNotes>
Versión __VERSION_NUMBER__
- Hemos reescrito cómo se hospedan las aplicaciones de consola en Terminal. Informe de los errores que encuentre.
- Terminal ahora admite sixeles.
- Ahora puede abrir un panel acoplado que contenga fragmentos de comandos que haya guardado para usarlos más adelante
- Los usuarios del símbolo del sistema de la versión más reciente de Windows 11 pueden ver un icono de "sugerencia rápida" que sugiere software instalable de WinGet
- El texto seleccionado ahora será mucho más visible (y personalizable)
- Se han corregido varios errores de fiabilidad, problemas de comodidad y molestias.
Consulte la página de versiones de GitHub para más información.
Para más información, consulte nuestra página de versiones de GitHub.
</ReleaseNotes>
<ScreenshotCaptions>
<!-- Valid length: 200 character limit, up to 9 elements per platform -->

View File

@@ -56,14 +56,7 @@ Il sagit dun projet open source et nous vous invitons à participer dans l
<ReleaseNotes>
Version __VERSION_NUMBER__
- Nous avons réécrit la manière dont les applications de console sont hébergées dans Terminal ! Veuillez signaler tout bug que vous rencontrez.
- Le terminal prend désormais en charge Sixels !
- Vous pouvez désormais ouvrir un panneau ancré contenant des extraits de commandes que vous avez enregistrées pour les utiliser ultérieurement
- Les utilisateurs de l'invite de commande sur la dernière version de Windows 11 peuvent voir une icône « astuce rapide » qui suggère un logiciel installable à partir de WinGet
- Le texte sélectionné sera désormais beaucoup plus visible (et personnalisable !)
- Un certain nombre de bugs de fiabilité, de problèmes de commodité et de désagréments ont été corrigés.
Veuillez consulter notre page de versions GitHub pour plus de détails.
Consultez la page des versions de GitHub pour plus dinformations.
</ReleaseNotes>
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</DevStudio>
<ReleaseNotes>
Versione __VERSION_NUMBER__
Versione __VERSION_NUMBER__
- È stato riscritto il modo in cui le applicazioni della console vengono ospitate all'interno di Terminale. Segnala eventuali bug riscontrati.
- Terminal supporta ora Sixel.
- È ora possibile aprire un pannello ancorato contenente frammenti di comandi salvati per usarli in seguito
- Gli utenti del prompt dei comandi nella versione più recente di Windows 11 potrebbero visualizzare un'icona di "suggerimento rapido" che consiglia il software installabile da WinGet
- Il testo selezionato sarà ora molto più visibile, oltre che personalizzabile.
- Sono stati risolti diversi bug di affidabilità, problemi di praticità e fastidi.
Per altri dettagli, vedi la pagina delle versioni di GitHub.
Per ulteriori dettagli, consulta la nostra pagina delle versioni di GitHub.
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<ReleaseNotes>
バージョン __VERSION_NUMBER__
- ターミナル内でのコンソール アプリケーションのホスト方法を書き換えました。発生したバグを報告してください。
- ターミナルで Sixels がサポートされるようになりました。
- 後で使用するために保存したコマンドのスニペットを含むドッキング パネルを開けるようになりました
- 最新の Windows 11 リリースのコマンド プロンプト ユーザーには、WinGet からインストール可能なソフトウェアを提案する "クイック ヒント" アイコンが表示される場合があります
- 選択したテキストが大幅に見やすくなりました (カスタマイズも可能です)
- 信頼性に関するバグ、利便性の問題、不快な問題の多くが修正されました。
詳細については、GitHub リリース ページをご覧ください。
詳細については、GitHub リリースのページをご覧ください。
</ReleaseNotes>
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<ReleaseNotes>
버전 __VERSION_NUMBER__
- 콘솔 애플리케이션이 터미널 내에서 호스팅되는 방법을 다시 작성했습니다! 발생한 버그를 보고하세요.
- 터미널에서 이제 Sixels를 지원합니다!
- 이제 나중에 사용하기 위해 저장한 명령 조각이 포함된 도킹된 패널을 열 수 있습니다.
- 최신 Windows 11 릴리스의 명령 프롬프트 사용자는 WinGet에서 설치 가능한 소프트웨어를 제안하는 "빠른 팁" 아이콘을 볼 수 있습니다.
- 이제 선택한 텍스트가 훨씬 더 잘 표시됩니다(사용자 지정도 가능!).
- 여러 신뢰성 버그, 편의 문제 및 성가신 사항이 수정되었습니다.
자세한 내용은 GitHub 릴리스 페이지를 참조하세요.
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<ReleaseNotes>
Versão __VERSION_NUMBER__
- Reescrevemos a forma como os aplicativos de console são hospedados no Terminal! Certifique-se de reportar os bugs que você encontrar.
- O terminal agora é compatível com o Sixels!
- Agora você pode abrir um painel acoplado contendo snippets de comandos que você salvou para usar mais tarde
- Os usuários do Prompt de Comando na versão mais recente do Windows 11 podem ver um ícone de "dica rápida", que sugere softwares instaláveis a partir do WinGet
- O texto selecionado agora ficará muito mais visível (e personalizável!)
- Vários bugs de confiabilidade, problemas de conveniência e incômodos foram resolvidos.
Confira nossa página de lançamentos no GitHub para obter mais detalhes.
Consulte nossa página de lançamentos do GitHub para obter detalhes adicionais.
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<ReleaseNotes>
Vėѓѕіöй __VERSION_NUMBER__ !!! !!! !
- Ẁē'νё ŕéẁѓĭτťёñ ћοώ ĉòπşõℓε άррℓіċªťįõпѕ αяе ĥθѕťэđ įŋšιďé Ţєямїńąℓ! Рļéаšė яёροřτ αņу ьϋģš ýõμ éпćŏџήţęя. !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!
- Ţëямΐʼnαļ ńóẃ ŝüррöятš Śїхέłś! !!! !!! !!!
- ¥оų ĉåи ńòŵ θρėñ д đбčĸэď ράńέļ ċőлŧăīņϊňģ śⁿіφφëťś оƒ ςōмmàⁿďş ŷŏũ ĥªν℮ şåνěđ τσ üśε łαťэŗ !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Ćοмmäлđ Рřōmφť üş℮ŗѕ öη τће ļāťëšτ Щīйđôώѕ 11 řёℓеаѕĕ måў ŝэε ά "qůïςκ ŧĭр" ιсôñ τĥдт šűğģєѕŧѕ ίńśŧăłłавļз šôƒţẁαгέ ƒґόm ЩĩйĞéţ !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Śєļèċťєď ţĕжт ωϊŀļ йǿẃ ьέ mџ¢н мǿѓε νĭŝϊъļė (άŋđ сŭŝтŏмΐżдьļē!) !!! !!! !!! !!! !!! !!! !
- Ä ņϋmъŗ ŏƒ ѓēŀїаъïļŧÿ ьüĝś, ςôⁿνėηĭ℮иć℮ îѕšůëş ăπð âлňбγдňçėŝ ћªνε ъēёп ƒΐ×еð. !!! !!! !!! !!! !!! !!! !!! !!!
Ρĺёàŝ℮ ŝез ǿúг ĢīťНŭъ řěłεαśèŝ φāğ℮ ƒóѓ дďδітĭøиąℓ ð℮тªїľŝ. !!! !!! !!! !!! !!! !!!
Рļєάśé ѕέę όüґ ĢίŧĦŭв řęļзąѕєš рαġè ƒőŗ äđδĭτíθņâℓ đέтαιľś. !!! !!! !!! !!! !!! !!!
</ReleaseNotes>
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<ReleaseNotes>
Vėѓѕіöй __VERSION_NUMBER__ !!! !!! !
- Ẁē'νё ŕéẁѓĭτťёñ ћοώ ĉòπşõℓε άррℓіċªťįõпѕ αяе ĥθѕťэđ įŋšιďé Ţєямїńąℓ! Рļéаšė яёροřτ αņу ьϋģš ýõμ éпćŏџήţęя. !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!
- Ţëямΐʼnαļ ńóẃ ŝüррöятš Śїхέłś! !!! !!! !!!
- ¥оų ĉåи ńòŵ θρėñ д đбčĸэď ράńέļ ċőлŧăīņϊňģ śⁿіφφëťś оƒ ςōмmàⁿďş ŷŏũ ĥªν℮ şåνěđ τσ üśε łαťэŗ !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Ćοмmäлđ Рřōmφť üş℮ŗѕ öη τће ļāťëšτ Щīйđôώѕ 11 řёℓеаѕĕ måў ŝэε ά "qůïςκ ŧĭр" ιсôñ τĥдт šűğģєѕŧѕ ίńśŧăłłавļз šôƒţẁαгέ ƒґόm ЩĩйĞéţ !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Śєļèċťєď ţĕжт ωϊŀļ йǿẃ ьέ mџ¢н мǿѓε νĭŝϊъļė (άŋđ сŭŝтŏмΐżдьļē!) !!! !!! !!! !!! !!! !!! !
- Ä ņϋmъŗ ŏƒ ѓēŀїаъïļŧÿ ьüĝś, ςôⁿνėηĭ℮иć℮ îѕšůëş ăπð âлňбγдňçėŝ ћªνε ъēёп ƒΐ×еð. !!! !!! !!! !!! !!! !!! !!! !!!
Ρĺёàŝ℮ ŝез ǿúг ĢīťНŭъ řěłεαśèŝ φāğ℮ ƒóѓ дďδітĭøиąℓ ð℮тªїľŝ. !!! !!! !!! !!! !!! !!!
Рļєάśé ѕέę όüґ ĢίŧĦŭв řęļзąѕєš рαġè ƒőŗ äđδĭτíθņâℓ đέтαιľś. !!! !!! !!! !!! !!! !!!
</ReleaseNotes>
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<ReleaseNotes>
Vėѓѕіöй __VERSION_NUMBER__ !!! !!! !
- Ẁē'νё ŕéẁѓĭτťёñ ћοώ ĉòπşõℓε άррℓіċªťįõпѕ αяе ĥθѕťэđ įŋšιďé Ţєямїńąℓ! Рļéаšė яёροřτ αņу ьϋģš ýõμ éпćŏџήţęя. !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!
- Ţëямΐʼnαļ ńóẃ ŝüррöятš Śїхέłś! !!! !!! !!!
- ¥оų ĉåи ńòŵ θρėñ д đбčĸэď ράńέļ ċőлŧăīņϊňģ śⁿіφφëťś оƒ ςōмmàⁿďş ŷŏũ ĥªν℮ şåνěđ τσ üśε łαťэŗ !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Ćοмmäлđ Рřōmφť üş℮ŗѕ öη τће ļāťëšτ Щīйđôώѕ 11 řёℓеаѕĕ måў ŝэε ά "qůïςκ ŧĭр" ιсôñ τĥдт šűğģєѕŧѕ ίńśŧăłłавļз šôƒţẁαгέ ƒґόm ЩĩйĞéţ !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Śєļèċťєď ţĕжт ωϊŀļ йǿẃ ьέ mџ¢н мǿѓε νĭŝϊъļė (άŋđ сŭŝтŏмΐżдьļē!) !!! !!! !!! !!! !!! !!! !
- Ä ņϋmъŗ ŏƒ ѓēŀїаъïļŧÿ ьüĝś, ςôⁿνėηĭ℮иć℮ îѕšůëş ăπð âлňбγдňçėŝ ћªνε ъēёп ƒΐ×еð. !!! !!! !!! !!! !!! !!! !!! !!!
Ρĺёàŝ℮ ŝез ǿúг ĢīťНŭъ řěłεαśèŝ φāğ℮ ƒóѓ дďδітĭøиąℓ ð℮тªїľŝ. !!! !!! !!! !!! !!! !!!
Рļєάśé ѕέę όüґ ĢίŧĦŭв řęļзąѕєš рαġè ƒőŗ äđδĭτíθņâℓ đέтαιľś. !!! !!! !!! !!! !!! !!!
</ReleaseNotes>
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<ReleaseNotes>
Версия __VERSION_NUMBER__
Мы переписали, как консольные приложения размещаются внутри Терминала! Сообщайте о любых ошибках, с которыми вы столкнулись.
Терминал теперь поддерживает форматы Sixel!
Теперь вы можете открыть закрепленную панель, содержащую фрагменты команд, которые вы сохранили для использования в дальнейшем
Пользователи командной строки в новейшем выпуске Windows 11 могут увидеть значок "краткой подсказки", который предлагает устанавливаемые программы из WinGet
Выделенный текст теперь станет более видимым (и настраиваемым!)
Исправлено несколько ошибок надежности, проблем с удобством, а также устранены раздражающие моменты.
Дополнительные сведения см. на странице выпусков GitHub.
Дополнительные сведения см. на странице «Выпуски GitHub».
</ReleaseNotes>
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</DevStudio>
<ReleaseNotes>
Version __VERSION_NUMBER__
- 我们已改变主机应用程序在终端内的托管方式!请报告遇到的任何 bug。
- 终端现在支持 Sixels!
- 现在可以打开一个停靠面板,其中包含已保存供以后使用的命令片段
- 最新 Windows 11 版本上的命令提示用户可能会看到“快速提示”图标,该图标建议从 WinGet 安装软件
- 所选文本现在将具有更高的可见性(和可自定义性!)
- 修复了许多可靠性 bug、便利性问题和令人烦恼的问题。
版本 __VERSION_NUMBER__
有关其他详细信息,请参阅我们的 GitHub 发布页面。
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<ReleaseNotes>
版本 __VERSION_NUMBER__
- 我們已重寫主機應用程式在終端機內託管的方式!請報告您遇到的錯誤
- 終端機現在支援 Sixels!
- 現在,您可以開啟包含已儲存命令程式碼片段的固定面板,以供稍後使用
- 最新 Windows 11 版本中的 [命令提示] 使用者可能會看到「快速提示」圖示,建議可自 WinGet 安裝的軟體
- 選取的文字現在會更明顯 (且可自訂!)
- 已修正一些可靠性錯誤、便利性問題和令人困擾的問題。
如需更多詳細資訊,請參閱我們的 GitHub 發行頁面。
如需詳細資訊,請參閱我們的 GitHub 版本頁面
</ReleaseNotes>
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<ReleaseNotes>
Version __VERSION_NUMBER__
Terminal speichert jetzt den Inhalt des Fensters, wenn Sie die Sitzungswiederherstellung verwenden.
Sie können jetzt mehrere Schriftarten gleichzeitig verwenden.
Kästchenzeichnende Zeichen werden jetzt pixelgenau gerendert.
Die Verwendung eines IME innerhalb des Terminals wurde erheblich verbessert.
Die Farbschemas in Ihrer JSON-Datei sind jetzt viel einfacher.
Eine Reihe von Fehlern im Zusammenhang mit der URL-Verarbeitung, Zeilen mit doppelter Breite, Zeilenumbruch und mehr wurden behoben.
Weitere Informationen finden Sie auf unserer GitHub-Releaseseite.
Weitere Einzelheiten finden Sie auf der Seite der GitHub-Veröffentlichungen.
</ReleaseNotes>
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<ReleaseNotes _locID="App_ReleaseNotes">
<!-- _locComment_text="{MaxLength=1500} {Locked=__VERSION_NUMBER__} App Release Note" -->Version __VERSION_NUMBER__
- Terminal will now remember the contents of the window when you use session restoration.
- You can now use multiple fonts at the same time.
- Box-drawing characters are now rendered with pixel perfection.
- The experience of using an IME inside Terminal has been significantly improved.
- The color schemes inside your JSON file will now be much simpler.
- A number of bugs around URL handling, double-width rows, line wrapping, and more have been fixed.
Please see our GitHub releases page for additional details.
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<ReleaseNotes>
Versión __VERSION_NUMBER__
- Terminal recordará ahora el contenido de la ventana cuando use la restauración de la sesión.
- Ahora puede usar varias fuentes al mismo tiempo.
- Los caracteres que dibujan recuadros ahora se representan con precisión de píxel.
- Se ha mejorado significativamente la experiencia de utilizar un IME dentro de Terminal.
- Las combinaciones de colores dentro del archivo JSON ahora serán mucho más sencillas.
- Se han corregido varios errores relacionados con el control de direcciones URL, las filas de ancho doble, el ajuste de líneas y mucho más.
Consulte la página de versiones de GitHub para más información.
Para más información, consulte nuestra página de versiones de GitHub.
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<ReleaseNotes>
Version __VERSION_NUMBER__
- Le terminal mémorisera désormais le contenu de la fenêtre lorsque vous utiliserez la restauration de session.
- Vous pouvez désormais utiliser plusieurs polices en même temps.
- Les personnages dessinés en boîte sont désormais rendus avec une perfection de pixel.
- L'expérience d'utilisation d'un IME dans le Terminal a été considérablement améliorée.
- Les schémas de couleurs à l'intérieur de votre fichier JSON seront désormais beaucoup plus simples.
- Un certain nombre de bugs concernant la gestion des URL, les lignes à double largeur, le retour à la ligne, etc. ont été corrigés.
Veuillez consulter notre page de versions GitHub pour plus de détails.
Consultez la page des versions de GitHub pour plus dinformations.
</ReleaseNotes>
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</DevStudio>
<ReleaseNotes>
Versione __VERSION_NUMBER__
Versione __VERSION_NUMBER__
- Il terminale ricorda ora il contenuto della finestra quando si usa il ripristino della sessione.
- È ora possibile usare più tipi di carattere contemporaneamente.
- I caratteri tracciati vengono ora sottoposti a rendering con pixel di perfezionamento.
- L'esperienza di utilizzo di un IME all'interno di Terminale è stata notevolmente migliorata.
- Le combinazioni di colori all'interno del file JSON saranno ora molto più semplici.
- Sono stati corretti alcuni bug relativi alla gestione degli URL, alle righe a doppia larghezza, al ritorno a capo delle righe e altro ancora.
Per altri dettagli, vedi la pagina delle versioni di GitHub.
Per ulteriori dettagli, consulta la nostra pagina delle versioni di GitHub.
</ReleaseNotes>
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<ReleaseNotes>
バージョン __VERSION_NUMBER__
- セッションの復元を使用すると、ターミナルがウィンドウの内容を記憶するようになりました
- 複数のフォントを同時に使用できるようになりました。
- ボックス描画文字がピクセル単位の精度でレンダリングされるようになりました。
- ターミナル内での IME の使用エクスペリエンスが大幅に改善されました。
- JSON ファイル内の配色がはるかにシンプルになりました。
- URL 処理、二重幅の行、行の折り返しなどに関するいくつかのバグが修正されました。
詳細については、GitHub リリース ページをご覧ください。
詳細については、GitHub リリースのページをご覧ください
</ReleaseNotes>
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<ReleaseNotes>
버전 __VERSION_NUMBER__
- 터미널은 이제 세션 복원을 사용할 때 창의 내용을 기억합니다.
- 이제 여러 글꼴을 동시에 사용할 수 있습니다.
- 상자 그리기 캐릭터가 이제 픽셀 완성도로 렌더링됩니다.
- 터미널 내에서 IME를 사용하는 환경이 크게 개선되었습니다.
- 이제 JSON 파일 내의 색 구성표가 훨씬 더 간단해집니다.
- URL 처리, 이중 너비 행, 줄 바꿈 등과 관련된 여러 버그가 수정되었습니다.
자세한 내용은 GitHub 릴리스 페이지를 참조하세요.
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<ReleaseNotes>
Versão __VERSION_NUMBER__
- O terminal agora se lembra do conteúdo da janela quando você usa a restauração de sessão.
- Agora você pode usar várias fontes ao mesmo tempo.
- Os caracteres da caixa de desenho agora são renderizados com a perfeição de pixels.
- A experiência de usar uma IME dentro do Terminal foi significativamente aprimorada.
- Os esquemas de cores dentro do seu arquivo JSON agora estão muito mais simples.
- Foram corrigidos vários bugs envolvendo o tratamento de URLs, linhas de largura dupla, quebra de linha automática e muito mais.
Confira nossa página de lançamentos no GitHub para obter mais detalhes.
Consulte nossa página de lançamentos do GitHub para obter detalhes adicionais.
</ReleaseNotes>
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<ReleaseNotes>
Vėѓѕіöй __VERSION_NUMBER__ !!! !!! !
- Ŧēгмíйǻŀ шιļł ñσщ řėmėmвзґ τђз ςоńţëηťŝ σƒ ŧћé ẅιⁿδőщ ẅђеή ýóύ ŭš℮ şεššîóŋ řėşτŏѓдτіόŋ. !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Ύоџ ςàⁿ ŋóώ ũşэ múľŧìφľё ƒоʼnťş àт ťħе ѕâmз тìме. !!! !!! !!! !!! !!!
- Вό×-ðгăшĭиġ ¢ĥаяäςтеřѕ äřę ηоẁ ѓëńđêяεď ẁϊτђ φïжêĺ φėŗƒēςŧΐøй. !!! !!! !!! !!! !!! !!! !
- Ťħέ ĕхφêŕï℮ηĉε ŏƒ ύѕïйġ ǻʼn ÎМË îńšïďê Τєřmíлäļ нαŝ ьēέň ѕιĝήîƒіčäπţŀý ĩмφґθνзđ. !!! !!! !!! !!! !!! !!! !!! !!!
- Ťĥę čöℓοг şçђėmęš ιʼnśΐδê убџѓ ĴŠОИ ƒϊŀε ωĭŀł ʼnθω вз мúçĥ ѕїмρℓёґ. !!! !!! !!! !!! !!! !!! !!
- Á ήũmьéŕ òƒ вµġŝ άřòūñδ ÛҐĿ ħàŋδľįйģ, ðőџъŀε-ŵĭďτђ ŗōẁš, ŀϊπė ẃяąрρΐηğ, âⁿđ мŏř℮ ĥāνě везŋ ƒï×έð. !!! !!! !!! !!! !!! !!! !!! !!! !!! !!!
Ρļēªšê ŝέė őůг ĜīтĤųъ яëŀεäśēś рдġэ ƒõя ãδðìτϊöňãł δèτâĩĺѕ. !!! !!! !!! !!! !!! !!!
Рļєάśé ѕέę όüґ ĢίŧĦŭв řęļзąѕєš рαġè ƒőŗ äđδĭτíθņâℓ đέтαιľś. !!! !!! !!! !!! !!! !!!
</ReleaseNotes>
<ScreenshotCaptions>
<!-- Valid length: 200 character limit, up to 9 elements per platform -->

View File

@@ -56,14 +56,7 @@
<ReleaseNotes>
Vėѓѕіöй __VERSION_NUMBER__ !!! !!! !
- Ŧēгмíйǻŀ шιļł ñσщ řėmėmвзґ τђз ςоńţëηťŝ σƒ ŧћé ẅιⁿδőщ ẅђеή ýóύ ŭš℮ şεššîóŋ řėşτŏѓдτіόŋ. !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Ύоџ ςàⁿ ŋóώ ũşэ múľŧìφľё ƒоʼnťş àт ťħе ѕâmз тìме. !!! !!! !!! !!! !!!
- Вό×-ðгăшĭиġ ¢ĥаяäςтеřѕ äřę ηоẁ ѓëńđêяεď ẁϊτђ φïжêĺ φėŗƒēςŧΐøй. !!! !!! !!! !!! !!! !!! !
- Ťħέ ĕхφêŕï℮ηĉε ŏƒ ύѕïйġ ǻʼn ÎМË îńšïďê Τєřmíлäļ нαŝ ьēέň ѕιĝήîƒіčäπţŀý ĩмφґθνзđ. !!! !!! !!! !!! !!! !!! !!! !!!
- Ťĥę čöℓοг şçђėmęš ιʼnśΐδê убџѓ ĴŠОИ ƒϊŀε ωĭŀł ʼnθω вз мúçĥ ѕїмρℓёґ. !!! !!! !!! !!! !!! !!! !!
- Á ήũmьéŕ òƒ вµġŝ άřòūñδ ÛҐĿ ħàŋδľįйģ, ðőџъŀε-ŵĭďτђ ŗōẁš, ŀϊπė ẃяąрρΐηğ, âⁿđ мŏř℮ ĥāνě везŋ ƒï×έð. !!! !!! !!! !!! !!! !!! !!! !!! !!! !!!
Ρļēªšê ŝέė őůг ĜīтĤųъ яëŀεäśēś рдġэ ƒõя ãδðìτϊöňãł δèτâĩĺѕ. !!! !!! !!! !!! !!! !!!
Рļєάśé ѕέę όüґ ĢίŧĦŭв řęļзąѕєš рαġè ƒőŗ äđδĭτíθņâℓ đέтαιľś. !!! !!! !!! !!! !!! !!!
</ReleaseNotes>
<ScreenshotCaptions>
<!-- Valid length: 200 character limit, up to 9 elements per platform -->

View File

@@ -56,14 +56,7 @@
<ReleaseNotes>
Vėѓѕіöй __VERSION_NUMBER__ !!! !!! !
- Ŧēгмíйǻŀ шιļł ñσщ řėmėmвзґ τђз ςоńţëηťŝ σƒ ŧћé ẅιⁿδőщ ẅђеή ýóύ ŭš℮ şεššîóŋ řėşτŏѓдτіόŋ. !!! !!! !!! !!! !!! !!! !!! !!! !!!
- Ύоџ ςàⁿ ŋóώ ũşэ múľŧìφľё ƒоʼnťş àт ťħе ѕâmз тìме. !!! !!! !!! !!! !!!
- Вό×-ðгăшĭиġ ¢ĥаяäςтеřѕ äřę ηоẁ ѓëńđêяεď ẁϊτђ φïжêĺ φėŗƒēςŧΐøй. !!! !!! !!! !!! !!! !!! !
- Ťħέ ĕхφêŕï℮ηĉε ŏƒ ύѕïйġ ǻʼn ÎМË îńšïďê Τєřmíлäļ нαŝ ьēέň ѕιĝήîƒіčäπţŀý ĩмφґθνзđ. !!! !!! !!! !!! !!! !!! !!! !!!
- Ťĥę čöℓοг şçђėmęš ιʼnśΐδê убџѓ ĴŠОИ ƒϊŀε ωĭŀł ʼnθω вз мúçĥ ѕїмρℓёґ. !!! !!! !!! !!! !!! !!! !!
- Á ήũmьéŕ òƒ вµġŝ άřòūñδ ÛҐĿ ħàŋδľįйģ, ðőџъŀε-ŵĭďτђ ŗōẁš, ŀϊπė ẃяąрρΐηğ, âⁿđ мŏř℮ ĥāνě везŋ ƒï×έð. !!! !!! !!! !!! !!! !!! !!! !!! !!! !!!
Ρļēªšê ŝέė őůг ĜīтĤųъ яëŀεäśēś рдġэ ƒõя ãδðìτϊöňãł δèτâĩĺѕ. !!! !!! !!! !!! !!! !!!
Рļєάśé ѕέę όüґ ĢίŧĦŭв řęļзąѕєš рαġè ƒőŗ äđδĭτíθņâℓ đέтαιľś. !!! !!! !!! !!! !!! !!!
</ReleaseNotes>
<ScreenshotCaptions>
<!-- Valid length: 200 character limit, up to 9 elements per platform -->

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@@ -56,14 +56,7 @@
<ReleaseNotes>
Версия __VERSION_NUMBER__
Терминал теперь будет запоминать содержимое окна при восстановлении сеанса.
Теперь вы можете использовать несколько шрифтов одновременно.
Символы псевдографики теперь отрисовываются с пиксельной точностью.
Значительно улучшена возможность использования IME внутри Терминала.
Цветовые схемы в JSON-файле теперь будут намного проще.
Исправлено несколько ошибок в обработке URL-адресов, строках двойной ширины, переносе строк и т. д.
Дополнительные сведения см. на странице выпусков GitHub.
Дополнительные сведения см. на странице «Выпуски GitHub».
</ReleaseNotes>
<ScreenshotCaptions>
<!-- Valid length: 200 character limit, up to 9 elements per platform -->

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@@ -54,14 +54,7 @@
</DevStudio>
<ReleaseNotes>
Version __VERSION_NUMBER__
- 现在,使用会话还原时,终端将记住窗口的内容。
- 现在可以同时使用多种字体。
- 现在以像素为单位呈现框绘图字符。
- 在终端内使用输入法的体验已得到显著提升。
- JSON 文件中的配色方案现在要简单得多。
- 已修复有关 URL 处理、双倍行宽、换行等大量 bug。
版本 __VERSION_NUMBER__
有关其他详细信息,请参阅我们的 GitHub 发布页面。
</ReleaseNotes>

View File

@@ -56,14 +56,7 @@
<ReleaseNotes>
版本 __VERSION_NUMBER__
- 當您使用工作階段還原時,終端機現在會記住視窗的內容
- 現在您可以同時使用多個字型。
- 製表格圖字元現在會以完美像素模式呈現。
- 在終端機內使用 IME 的體驗已大幅改善。
- JSON 檔案內的色彩配置現在將變得更簡單了。
- 已修正一些 URL 處理、雙寬度列、換行等相關錯誤。
如需更多詳細資訊,請參閱我們的 GitHub 發行頁面。
如需詳細資訊,請參閱我們的 GitHub 版本頁面
</ReleaseNotes>
<ScreenshotCaptions>
<!-- Valid length: 200 character limit, up to 9 elements per platform -->

View File

@@ -1,7 +1,7 @@
<?xml version="1.0" encoding="utf-8"?>
<packages>
<package id="MUXCustomBuildTasks" version="1.0.48" targetFramework="native" />
<package id="Microsoft.Taef" version="10.93.240607003" targetFramework="native" />
<package id="Microsoft.Taef" version="10.60.210621002" targetFramework="native" />
<package id="Microsoft.Internal.PGO-Helpers.Cpp" version="0.2.34" targetFramework="native" />
<package id="Microsoft.Debugging.Tools.PdbStr" version="20220617.1556.0" targetFramework="native" />
<package id="Microsoft.Debugging.Tools.SrcTool" version="20220617.1556.0" targetFramework="native" />

View File

@@ -28,7 +28,7 @@ extends:
official: true
branding: Canary
buildTerminal: true
pgoBuildMode: None # BODGY - OneBranch is on VS 17.10, which is known to be the worst
pgoBuildMode: Optimize
codeSign: true
signingIdentity:
serviceName: $(SigningServiceName)

View File

@@ -27,7 +27,7 @@ parameters:
- name: pgoBuildMode
displayName: "PGO Build Mode"
type: string
default: None # BODGY - OneBranch is on VS 17.10, which is known to be the worst
default: Optimize
values:
- Optimize
- Instrument

View File

@@ -59,7 +59,10 @@ jobs:
submodules: true
persistCredentials: True
- template: steps-setup-versioning.yml
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
- template: steps-download-bin-dir-artifact.yml
parameters:

View File

@@ -159,8 +159,6 @@ jobs:
.\build\scripts\Generate-ThirdPartyNotices.ps1 -MarkdownNoticePath .\NOTICE.md -OutputPath .\src\cascadia\CascadiaPackage\NOTICE.html
displayName: Generate NOTICE.html from NOTICE.md
- template: .\steps-install-vcpkg.yml
- template: .\steps-restore-nuget.yml
- pwsh: |-

View File

@@ -69,9 +69,10 @@ jobs:
fetchTags: false # Tags still result in depth > 1 fetch; we don't need them here
submodules: true
persistCredentials: True
- template: steps-setup-versioning.yml
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
- template: steps-download-bin-dir-artifact.yml
parameters:
buildPlatforms: ${{ parameters.buildPlatforms }}

View File

@@ -57,7 +57,10 @@ jobs:
submodules: true
persistCredentials: True
- template: steps-setup-versioning.yml
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
- template: steps-download-bin-dir-artifact.yml
parameters:

View File

@@ -44,7 +44,10 @@ jobs:
submodules: true
persistCredentials: True
- template: steps-setup-versioning.yml
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
- task: DownloadPipelineArtifact@2
displayName: Download all PDBs from all prior build phases

View File

@@ -43,7 +43,10 @@ jobs:
submodules: true
persistCredentials: True
- template: steps-setup-versioning.yml
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
- task: DownloadPipelineArtifact@2
displayName: Download all PDBs from all prior build phases

View File

@@ -38,7 +38,10 @@ jobs:
submodules: true
persistCredentials: True
- template: steps-setup-versioning.yml
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
- task: DownloadPipelineArtifact@2
displayName: Download MSIX Bundle Artifact

View File

@@ -92,7 +92,10 @@ stages:
generateSbom: ${{ parameters.generateSbom }}
codeSign: ${{ parameters.codeSign }}
beforeBuildSteps: # Right before we build, lay down the universal package and localizations
- template: ./build/pipelines/templates-v2/steps-setup-versioning.yml@self
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
- task: UniversalPackages@0
displayName: Download terminal-internal Universal Package
@@ -116,7 +119,10 @@ stages:
generateSbom: ${{ parameters.generateSbom }}
codeSign: ${{ parameters.codeSign }}
beforeBuildSteps:
- template: ./build/pipelines/templates-v2/steps-setup-versioning.yml@self
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
# WPF doesn't need the localizations or the universal package, but if it does... put them here.
- stage: Package

View File

@@ -106,6 +106,11 @@ extends:
- stage: Build
displayName: Build
dependsOn: []
variables:
# This was set by the parent build, but we need to override it to select a specific compiler version
- template: ./build/pipelines/templates-v2/variables-onebranch-config.yml@self
parameters:
containerVersion: 1.0.02566.28
jobs:
- template: ./build/pipelines/templates-v2/job-build-project.yml@self
parameters:
@@ -130,7 +135,10 @@ extends:
codeSign: ${{ parameters.codeSign }}
signingIdentity: ${{ parameters.signingIdentity }}
beforeBuildSteps: # Right before we build, lay down the universal package and localizations
- template: ./build/pipelines/templates-v2/steps-setup-versioning.yml@self
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
- task: UniversalPackages@0
displayName: Download terminal-internal Universal Package
@@ -164,7 +172,10 @@ extends:
codeSign: ${{ parameters.codeSign }}
signingIdentity: ${{ parameters.signingIdentity }}
beforeBuildSteps:
- template: ./build/pipelines/templates-v2/steps-setup-versioning.yml@self
- task: PkgESSetupBuild@12
displayName: Package ES - Setup Build
inputs:
disableOutputRedirect: true
# WPF doesn't need the localizations or the universal package, but if it does... put them here.
- stage: Package

View File

@@ -1,16 +0,0 @@
steps:
- pwsh: |-
$VsInstallRoot = & 'C:\Program Files (x86)\Microsoft Visual Studio\Installer\vswhere.exe' -requires Microsoft.VisualStudio.Component.Vcpkg -property installationPath
If ([String]::IsNullOrEmpty($VsInstallRoot)) {
Remove-Item -Recurse -Force dep/vcpkg -ErrorAction:Ignore
git clone https://github.com/microsoft/vcpkg dep/vcpkg
cd dep/vcpkg
& ./bootstrap-vcpkg.bat
$VcpkgRoot = $PWD
Write-Host "Using vcpkg from local checkout ($VcpkgRoot)"
} Else {
$VcpkgRoot = Join-Path $VsInstallRoot "VC\vcpkg"
Write-Host "Using vcpkg from Visual Studio installation ($VcpkgRoot)"
}
echo "##vso[task.setvariable variable=VCPKG_ROOT]$VcpkgRoot"
displayName: Detect VS vcpkg or bootstrap locally

View File

@@ -1,6 +0,0 @@
steps:
- pwsh: |-
nuget install Microsoft.Windows.Terminal.Versioning -OutputDirectory _versioning
$VersionRoot = (Get-Item _versioning\Microsoft.Windows.*).FullName
& "$VersionRoot\build\Setup.ps1" -ProjectDirectory "$(Build.SourcesDirectory)" -Verbose
displayName: Set up versioning via M.W.T.V

View File

@@ -1,22 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<!-- Copyright (c) Microsoft Corporation. All rights reserved. Licensed under the MIT License. See LICENSE in the project root for license information. -->
<Project xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup>
<Native-Platform Condition="'$(Platform)' == 'Win32'">x86</Native-Platform>
<Native-Platform Condition="'$(Platform)' != 'Win32'">$(Platform)</Native-Platform>
</PropertyGroup>
<ItemGroup>
<Reference Include="$(WinGetPackageRoot)\lib\Microsoft.Management.Deployment.winmd">
<IsWinMDFile>true</IsWinMDFile>
</Reference>
</ItemGroup>
<Target Name="_FixWinGetWinmdPackaging" BeforeTargets="_ComputeAppxPackagePayload">
<ItemGroup>
<PackagingOutputs Include="$(WinGetPackageRoot)\lib\Microsoft.Management.Deployment.winmd">
<OutputGroup>CustomOutputGroupForPackaging</OutputGroup>
<ProjectName>$(ProjectName)</ProjectName>
<TargetPath>Microsoft.Management.Deployment.winmd</TargetPath>
</PackagingOutputs>
</ItemGroup>
</Target>
</Project>

View File

@@ -5,7 +5,7 @@
<XesUseOneStoreVersioning>true</XesUseOneStoreVersioning>
<XesBaseYearForStoreVersion>2024</XesBaseYearForStoreVersion>
<VersionMajor>1</VersionMajor>
<VersionMinor>23</VersionMinor>
<VersionMinor>22</VersionMinor>
<VersionInfoProductName>Windows Terminal</VersionInfoProductName>
</PropertyGroup>
</Project>

10966
dep/CLI11/CLI11.hpp Normal file

File diff suppressed because it is too large Load Diff

4
dep/CLI11/README.md Normal file
View File

@@ -0,0 +1,4 @@
# CLI11
Taken from [release v2.4.1](https://github.com/CLIUtils/CLI11/releases/tag/v2.4.1), source commit
[f4d0731](https://github.com/CLIUtils/CLI11/commit/f4d0731cebb123ff0ace712c099dffbcd2c58e5a)

15
dep/CLI11/cgmanifest.json Normal file
View File

@@ -0,0 +1,15 @@
{
"$schema": "https://json.schemastore.org/component-detection-manifest.json",
"Registrations": [
{
"component": {
"type": "git",
"git": {
"repositoryUrl": "https://github.com/CLIUtils/CLI11",
"commitHash": "88e9bb17418ee730817d5942894d99a4bdd78fb3"
}
}
}
],
"Version": 1
}

View File

@@ -104,7 +104,6 @@ GetConsoleKeyboardLayoutNameW(
#define CONSOLE_REGISTRY_DEFAULTFOREGROUND L"DefaultForeground"
#define CONSOLE_REGISTRY_DEFAULTBACKGROUND L"DefaultBackground"
#define CONSOLE_REGISTRY_TERMINALSCROLLING L"TerminalScrolling"
#define CONSOLE_REGISTRY_ANSWERBACKMESSAGE L"AnswerbackMessage"
// end V2 console settings
/*

1
dep/gsl Submodule

Submodule dep/gsl added at 0f6dbc9e29

16
dep/jsoncpp/README.md Normal file
View File

@@ -0,0 +1,16 @@
# jsoncpp
[Amalgamated](https://github.com/open-source-parsers/jsoncpp/wiki/Amalgamated)
from source commit
[5defb4e](https://github.com/open-source-parsers/jsoncpp/commit/5defb4ed1a4293b8e2bf641e16b156fb9de498cc),
release 1.9.5.
> Generating amalgamated source and header JsonCpp is provided with a script to
> generate a single header and a single source file to ease inclusion into an
> existing project. The amalgamated source can be generated at any time by
> running the following command from the top-directory (this requires Python
> 3.4+):
>
> ```
> python amalgamate.py
> ```

View File

@@ -0,0 +1,15 @@
{
"$schema": "https://json.schemastore.org/component-detection-manifest.json",
"Registrations": [
{
"component": {
"type": "git",
"git": {
"repositoryUrl": "https://github.com/open-source-parsers/jsoncpp",
"commitHash": "5defb4ed1a4293b8e2bf641e16b156fb9de498cc"
}
}
}
],
"Version": 1
}

View File

@@ -0,0 +1,446 @@
/// Json-cpp amalgamated forward header (http://jsoncpp.sourceforge.net/).
/// It is intended to be used with #include "json/json-forwards.h"
/// This header provides forward declaration for all JsonCpp types.
// //////////////////////////////////////////////////////////////////////
// Beginning of content of file: LICENSE
// //////////////////////////////////////////////////////////////////////
/*
The JsonCpp library's source code, including accompanying documentation,
tests and demonstration applications, are licensed under the following
conditions...
Baptiste Lepilleur and The JsonCpp Authors explicitly disclaim copyright in all
jurisdictions which recognize such a disclaimer. In such jurisdictions,
this software is released into the Public Domain.
In jurisdictions which do not recognize Public Domain property (e.g. Germany as of
2010), this software is Copyright (c) 2007-2010 by Baptiste Lepilleur and
The JsonCpp Authors, and is released under the terms of the MIT License (see below).
In jurisdictions which recognize Public Domain property, the user of this
software may choose to accept it either as 1) Public Domain, 2) under the
conditions of the MIT License (see below), or 3) under the terms of dual
Public Domain/MIT License conditions described here, as they choose.
The MIT License is about as close to Public Domain as a license can get, and is
described in clear, concise terms at:
http://en.wikipedia.org/wiki/MIT_License
The full text of the MIT License follows:
========================================================================
Copyright (c) 2007-2010 Baptiste Lepilleur and The JsonCpp Authors
Permission is hereby granted, free of charge, to any person
obtaining a copy of this software and associated documentation
files (the "Software"), to deal in the Software without
restriction, including without limitation the rights to use, copy,
modify, merge, publish, distribute, sublicense, and/or sell copies
of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be
included in all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.
========================================================================
(END LICENSE TEXT)
The MIT license is compatible with both the GPL and commercial
software, affording one all of the rights of Public Domain with the
minor nuisance of being required to keep the above copyright notice
and license text in the source code. Note also that by accepting the
Public Domain "license" you can re-license your copy using whatever
license you like.
*/
// //////////////////////////////////////////////////////////////////////
// End of content of file: LICENSE
// //////////////////////////////////////////////////////////////////////
#ifndef JSON_FORWARD_AMALGAMATED_H_INCLUDED
# define JSON_FORWARD_AMALGAMATED_H_INCLUDED
/// If defined, indicates that the source file is amalgamated
/// to prevent private header inclusion.
#define JSON_IS_AMALGAMATION
// //////////////////////////////////////////////////////////////////////
// Beginning of content of file: include/json/version.h
// //////////////////////////////////////////////////////////////////////
#ifndef JSON_VERSION_H_INCLUDED
#define JSON_VERSION_H_INCLUDED
// Note: version must be updated in three places when doing a release. This
// annoying process ensures that amalgamate, CMake, and meson all report the
// correct version.
// 1. /meson.build
// 2. /include/json/version.h
// 3. /CMakeLists.txt
// IMPORTANT: also update the SOVERSION!!
#define JSONCPP_VERSION_STRING "1.9.5"
#define JSONCPP_VERSION_MAJOR 1
#define JSONCPP_VERSION_MINOR 9
#define JSONCPP_VERSION_PATCH 5
#define JSONCPP_VERSION_QUALIFIER
#define JSONCPP_VERSION_HEXA \
((JSONCPP_VERSION_MAJOR << 24) | (JSONCPP_VERSION_MINOR << 16) | \
(JSONCPP_VERSION_PATCH << 8))
#ifdef JSONCPP_USING_SECURE_MEMORY
#undef JSONCPP_USING_SECURE_MEMORY
#endif
#define JSONCPP_USING_SECURE_MEMORY 0
// If non-zero, the library zeroes any memory that it has allocated before
// it frees its memory.
#endif // JSON_VERSION_H_INCLUDED
// //////////////////////////////////////////////////////////////////////
// End of content of file: include/json/version.h
// //////////////////////////////////////////////////////////////////////
// //////////////////////////////////////////////////////////////////////
// Beginning of content of file: include/json/allocator.h
// //////////////////////////////////////////////////////////////////////
// Copyright 2007-2010 Baptiste Lepilleur and The JsonCpp Authors
// Distributed under MIT license, or public domain if desired and
// recognized in your jurisdiction.
// See file LICENSE for detail or copy at http://jsoncpp.sourceforge.net/LICENSE
#ifndef JSON_ALLOCATOR_H_INCLUDED
#define JSON_ALLOCATOR_H_INCLUDED
#include <cstring>
#include <memory>
#pragma pack(push, 8)
namespace Json {
template <typename T> class SecureAllocator {
public:
// Type definitions
using value_type = T;
using pointer = T*;
using const_pointer = const T*;
using reference = T&;
using const_reference = const T&;
using size_type = std::size_t;
using difference_type = std::ptrdiff_t;
/**
* Allocate memory for N items using the standard allocator.
*/
pointer allocate(size_type n) {
// allocate using "global operator new"
return static_cast<pointer>(::operator new(n * sizeof(T)));
}
/**
* Release memory which was allocated for N items at pointer P.
*
* The memory block is filled with zeroes before being released.
*/
void deallocate(pointer p, size_type n) {
// memset_s is used because memset may be optimized away by the compiler
memset_s(p, n * sizeof(T), 0, n * sizeof(T));
// free using "global operator delete"
::operator delete(p);
}
/**
* Construct an item in-place at pointer P.
*/
template <typename... Args> void construct(pointer p, Args&&... args) {
// construct using "placement new" and "perfect forwarding"
::new (static_cast<void*>(p)) T(std::forward<Args>(args)...);
}
size_type max_size() const { return size_t(-1) / sizeof(T); }
pointer address(reference x) const { return std::addressof(x); }
const_pointer address(const_reference x) const { return std::addressof(x); }
/**
* Destroy an item in-place at pointer P.
*/
void destroy(pointer p) {
// destroy using "explicit destructor"
p->~T();
}
// Boilerplate
SecureAllocator() {}
template <typename U> SecureAllocator(const SecureAllocator<U>&) {}
template <typename U> struct rebind { using other = SecureAllocator<U>; };
};
template <typename T, typename U>
bool operator==(const SecureAllocator<T>&, const SecureAllocator<U>&) {
return true;
}
template <typename T, typename U>
bool operator!=(const SecureAllocator<T>&, const SecureAllocator<U>&) {
return false;
}
} // namespace Json
#pragma pack(pop)
#endif // JSON_ALLOCATOR_H_INCLUDED
// //////////////////////////////////////////////////////////////////////
// End of content of file: include/json/allocator.h
// //////////////////////////////////////////////////////////////////////
// //////////////////////////////////////////////////////////////////////
// Beginning of content of file: include/json/config.h
// //////////////////////////////////////////////////////////////////////
// Copyright 2007-2010 Baptiste Lepilleur and The JsonCpp Authors
// Distributed under MIT license, or public domain if desired and
// recognized in your jurisdiction.
// See file LICENSE for detail or copy at http://jsoncpp.sourceforge.net/LICENSE
#ifndef JSON_CONFIG_H_INCLUDED
#define JSON_CONFIG_H_INCLUDED
#include <cstddef>
#include <cstdint>
#include <istream>
#include <memory>
#include <ostream>
#include <sstream>
#include <string>
#include <type_traits>
// If non-zero, the library uses exceptions to report bad input instead of C
// assertion macros. The default is to use exceptions.
#ifndef JSON_USE_EXCEPTION
#define JSON_USE_EXCEPTION 1
#endif
// Temporary, tracked for removal with issue #982.
#ifndef JSON_USE_NULLREF
#define JSON_USE_NULLREF 1
#endif
/// If defined, indicates that the source file is amalgamated
/// to prevent private header inclusion.
/// Remarks: it is automatically defined in the generated amalgamated header.
// #define JSON_IS_AMALGAMATION
// Export macros for DLL visibility
#if defined(JSON_DLL_BUILD)
#if defined(_MSC_VER) || defined(__MINGW32__)
#define JSON_API __declspec(dllexport)
#define JSONCPP_DISABLE_DLL_INTERFACE_WARNING
#elif defined(__GNUC__) || defined(__clang__)
#define JSON_API __attribute__((visibility("default")))
#endif // if defined(_MSC_VER)
#elif defined(JSON_DLL)
#if defined(_MSC_VER) || defined(__MINGW32__)
#define JSON_API __declspec(dllimport)
#define JSONCPP_DISABLE_DLL_INTERFACE_WARNING
#endif // if defined(_MSC_VER)
#endif // ifdef JSON_DLL_BUILD
#if !defined(JSON_API)
#define JSON_API
#endif
#if defined(_MSC_VER) && _MSC_VER < 1800
#error \
"ERROR: Visual Studio 12 (2013) with _MSC_VER=1800 is the oldest supported compiler with sufficient C++11 capabilities"
#endif
#if defined(_MSC_VER) && _MSC_VER < 1900
// As recommended at
// https://stackoverflow.com/questions/2915672/snprintf-and-visual-studio-2010
extern JSON_API int msvc_pre1900_c99_snprintf(char* outBuf, size_t size,
const char* format, ...);
#define jsoncpp_snprintf msvc_pre1900_c99_snprintf
#else
#define jsoncpp_snprintf std::snprintf
#endif
// If JSON_NO_INT64 is defined, then Json only support C++ "int" type for
// integer
// Storages, and 64 bits integer support is disabled.
// #define JSON_NO_INT64 1
// JSONCPP_OVERRIDE is maintained for backwards compatibility of external tools.
// C++11 should be used directly in JSONCPP.
#define JSONCPP_OVERRIDE override
#ifdef __clang__
#if __has_extension(attribute_deprecated_with_message)
#define JSONCPP_DEPRECATED(message) __attribute__((deprecated(message)))
#endif
#elif defined(__GNUC__) // not clang (gcc comes later since clang emulates gcc)
#if (__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 5))
#define JSONCPP_DEPRECATED(message) __attribute__((deprecated(message)))
#elif (__GNUC__ > 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 1))
#define JSONCPP_DEPRECATED(message) __attribute__((__deprecated__))
#endif // GNUC version
#elif defined(_MSC_VER) // MSVC (after clang because clang on Windows emulates
// MSVC)
#define JSONCPP_DEPRECATED(message) __declspec(deprecated(message))
#endif // __clang__ || __GNUC__ || _MSC_VER
#if !defined(JSONCPP_DEPRECATED)
#define JSONCPP_DEPRECATED(message)
#endif // if !defined(JSONCPP_DEPRECATED)
#if defined(__clang__) || (defined(__GNUC__) && (__GNUC__ >= 6))
#define JSON_USE_INT64_DOUBLE_CONVERSION 1
#endif
#if !defined(JSON_IS_AMALGAMATION)
#include "allocator.h"
#include "version.h"
#endif // if !defined(JSON_IS_AMALGAMATION)
namespace Json {
using Int = int;
using UInt = unsigned int;
#if defined(JSON_NO_INT64)
using LargestInt = int;
using LargestUInt = unsigned int;
#undef JSON_HAS_INT64
#else // if defined(JSON_NO_INT64)
// For Microsoft Visual use specific types as long long is not supported
#if defined(_MSC_VER) // Microsoft Visual Studio
using Int64 = __int64;
using UInt64 = unsigned __int64;
#else // if defined(_MSC_VER) // Other platforms, use long long
using Int64 = int64_t;
using UInt64 = uint64_t;
#endif // if defined(_MSC_VER)
using LargestInt = Int64;
using LargestUInt = UInt64;
#define JSON_HAS_INT64
#endif // if defined(JSON_NO_INT64)
template <typename T>
using Allocator =
typename std::conditional<JSONCPP_USING_SECURE_MEMORY, SecureAllocator<T>,
std::allocator<T>>::type;
using String = std::basic_string<char, std::char_traits<char>, Allocator<char>>;
using IStringStream =
std::basic_istringstream<String::value_type, String::traits_type,
String::allocator_type>;
using OStringStream =
std::basic_ostringstream<String::value_type, String::traits_type,
String::allocator_type>;
using IStream = std::istream;
using OStream = std::ostream;
} // namespace Json
// Legacy names (formerly macros).
using JSONCPP_STRING = Json::String;
using JSONCPP_ISTRINGSTREAM = Json::IStringStream;
using JSONCPP_OSTRINGSTREAM = Json::OStringStream;
using JSONCPP_ISTREAM = Json::IStream;
using JSONCPP_OSTREAM = Json::OStream;
#endif // JSON_CONFIG_H_INCLUDED
// //////////////////////////////////////////////////////////////////////
// End of content of file: include/json/config.h
// //////////////////////////////////////////////////////////////////////
// //////////////////////////////////////////////////////////////////////
// Beginning of content of file: include/json/forwards.h
// //////////////////////////////////////////////////////////////////////
// Copyright 2007-2010 Baptiste Lepilleur and The JsonCpp Authors
// Distributed under MIT license, or public domain if desired and
// recognized in your jurisdiction.
// See file LICENSE for detail or copy at http://jsoncpp.sourceforge.net/LICENSE
#ifndef JSON_FORWARDS_H_INCLUDED
#define JSON_FORWARDS_H_INCLUDED
#if !defined(JSON_IS_AMALGAMATION)
#include "config.h"
#endif // if !defined(JSON_IS_AMALGAMATION)
namespace Json {
// writer.h
class StreamWriter;
class StreamWriterBuilder;
class Writer;
class FastWriter;
class StyledWriter;
class StyledStreamWriter;
// reader.h
class Reader;
class CharReader;
class CharReaderBuilder;
// json_features.h
class Features;
// value.h
using ArrayIndex = unsigned int;
class StaticString;
class Path;
class PathArgument;
class Value;
class ValueIteratorBase;
class ValueIterator;
class ValueConstIterator;
} // namespace Json
#endif // JSON_FORWARDS_H_INCLUDED
// //////////////////////////////////////////////////////////////////////
// End of content of file: include/json/forwards.h
// //////////////////////////////////////////////////////////////////////
#endif //ifndef JSON_FORWARD_AMALGAMATED_H_INCLUDED

2346
dep/jsoncpp/json/json.h Normal file

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5330
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@@ -3,14 +3,13 @@
<packages>
<!-- Native packages -->
<package id="Microsoft.Internal.PGO-Helpers.Cpp" version="0.2.34" targetFramework="native" />
<package id="Microsoft.Taef" version="10.93.240607003" targetFramework="native" />
<package id="Microsoft.Taef" version="10.60.210621002" targetFramework="native" />
<package id="Microsoft.Windows.CppWinRT" version="2.0.230207.1" targetFramework="native" />
<package id="Microsoft.Internal.Windows.Terminal.ThemeHelpers" version="0.7.230706001" targetFramework="native" />
<package id="Microsoft.VisualStudio.Setup.Configuration.Native" version="2.3.2262" targetFramework="native" developmentDependency="true" />
<package id="Microsoft.UI.Xaml" version="2.8.4" targetFramework="native" />
<package id="Microsoft.Web.WebView2" version="1.0.1661.34" targetFramework="native" />
<package id="Microsoft.Windows.ImplementationLibrary" version="1.0.240122.1" targetFramework="native" developmentDependency="true" />
<package id="Microsoft.WindowsPackageManager.ComInterop" version="1.8.1911" targetFramework="native" developmentDependency="true" />
<!-- Managed packages -->
<package id="Appium.WebDriver" version="3.0.0.2" targetFramework="net45" />
@@ -20,7 +19,7 @@
<package id="Selenium.WebDriver" version="3.5.0" targetFramework="net45" />
<!-- MSBuildCache -->
<package id="Microsoft.MSBuildCache.AzurePipelines" version="0.1.283-preview" />
<package id="Microsoft.MSBuildCache.Local" version="0.1.283-preview" />
<package id="Microsoft.MSBuildCache.SharedCompilation" version="0.1.283-preview" />
<package id="Microsoft.MSBuildCache.AzurePipelines" version="0.1.273-preview" />
<package id="Microsoft.MSBuildCache.Local" version="0.1.273-preview" />
<package id="Microsoft.MSBuildCache.SharedCompilation" version="0.1.273-preview" />
</packages>

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@@ -618,11 +618,6 @@
"type": "boolean",
"default": false,
"description": "This will override the profile's `elevate` setting."
},
"reloadEnvironmentVariables": {
"type": "boolean",
"default": true,
"description": "When set to true, a new environment block will be generated when creating a new session. Otherwise, the session will inherit the variables the Terminal was started with."
}
},
"type": "object"
@@ -2855,7 +2850,7 @@
}
},
"autoMarkPrompts": {
"default": true,
"default": false,
"description": "When set to true, prompts will automatically be marked.",
"type": "boolean"
},
@@ -3037,10 +3032,6 @@
"description": "By default Windows treats Ctrl+Alt as an alias for AltGr. When altGrAliasing is set to false, this behavior will be disabled.",
"type": "boolean"
},
"answerbackMessage": {
"description": "The response that is sent when an ENQ control character is received.",
"type": "string"
},
"source": {
"description": "Stores the name of the profile generator that originated this profile.",
"type": [

View File

@@ -1,840 +0,0 @@
---
author: Leonard Hecker @lhecker
created on: 2024-06-07
last updated: 2024-06-07
issue id: 13000
---
# In-process ConPTY
## tl;dr
**Why?**
* Out-of-process leads to out-of-sync issues.
* Not all Console APIs have a VT equivalent.
* Time consuming maintenance work due to poor encapsulation inside conhost.
**How?**
1. Remove `VtEngine` and translate Console API calls directly to VT.
2. Move all Console API related code from the `Host` to the `Server` project.
Narrow the `IApiRoutines` interface down to its essentials.
Replace relevant singletons with instances.
3. Make `Server` a standalone library with `IApiRoutines` as its primary callback interface.
Integrate the library in Windows Terminal.
4. (Long term goal:) Ship the `Server` library as part of Windows. Build conhost itself on top of it.
## Why?
**Before:**
```mermaid
%%{ init: { "flowchart": { "curve": "monotoneX" } } }%%
flowchart TD
subgraph conhost
direction LR
subgraph Server
server_io[Console API calls]
end
subgraph ConPTY
VtIo
VtEngine
ConPTY_output[ConPTY Output]
end
conhost_parser[VT parser]
conhost_buffer[Text Buffer]
conhost_renderer[Render Thread]
conhost_atlas[Text Renderer]
server_io-->conhost_parser
server_io--scroll, clear, etc.-->VtIo
conhost_parser--resize, focus-->VtIo
VtIo--scroll, clear, etc.-->VtEngine
conhost_parser--unknown escape sequences-->VtEngine
conhost_buffer--manual flushing-->VtEngine
conhost_renderer-->VtEngine
VtEngine-->ConPTY_output
conhost_buffer--dirty rects-->conhost_renderer
conhost_parser--dirty rects-->conhost_renderer
conhost_parser--plain text-->conhost_buffer
conhost_renderer-->conhost_atlas
conhost_buffer--ReadBuffer-->server_io
end
subgraph wt[Windows Terminal]
direction LR
input[ConPTY Input]
parser[VT parser]
buffer[Text Buffer]
renderer[Render Thread]
atlas[Text Renderer]
input-->parser
parser-->buffer
buffer-->renderer
renderer-->atlas
parser-->renderer
end
conhost--ConPTY's text pipe across processes-->wt
```
**After:**
```mermaid
%%{ init: { "flowchart": { "curve": "monotoneX" } } }%%
flowchart LR
subgraph ConPTY_lib["ConPTY (static library)"]
server_io[Console API calls]
ConPTY_Translation[VT Translation]
server_io<-->ConPTY_Translation
end
subgraph ConPTY["ConPTY (dynamic library)"]
ConPTY_impl[IApiRoutines impl]
ConPTY_parser[VT parser]
ConPTY_buffer[Text Buffer]
ConPTY_output[ConPTY Output]
ConPTY_Translation<-->ConPTY_impl
ConPTY_impl-->ConPTY_parser
ConPTY_parser-->ConPTY_buffer
ConPTY_buffer--ReadBuffer-->ConPTY_impl
ConPTY_impl------>ConPTY_output
end
subgraph conhost
conhost_impl[IApiRoutines impl]
conhost_parser[VT parser]
conhost_buffer[Text Buffer]
conhost_renderer[Render Thread]
conhost_atlas[Text Renderer]
ConPTY_Translation<-->conhost_impl
conhost_impl-->conhost_parser
conhost_parser-->conhost_buffer
conhost_buffer--->conhost_renderer
conhost_buffer--ReadBuffer-->conhost_impl
conhost_renderer-->conhost_atlas
end
subgraph wt[Windows Terminal]
impl[IApiRoutines impl]
parser[VT parser]
buffer[Text Buffer]
renderer[Render Thread]
atlas[Text Renderer]
ConPTY_Translation<-->impl
impl-->parser
parser-->buffer
buffer--->renderer
buffer--ReadBuffer-->impl
renderer-->atlas
end
```
To extend on the [tl;dr](#tldr):
* ConPTY runs outside the hosting terminal which leads to an unsolvable issue: The buffer contents between ConPTY and the terminal can go out of sync.
* The terminal and ConPTY may implement escape sequences differently.
* ...may implement text processing differently.
* ...may implement text reflow (resize) differently.
* Resizing the terminal and ConPTY is asynchronous and there may be concurrent text output.
* ...and it may uncover text from the scrollback, which ConPTY doesn't know about.
* Some Console API methods cannot be represented via escape sequences and so ConPTY cannot produce them either.
The most basic example of this is the lack of LVB gridlines.
* The above suggested new architecture represents a significant simplification with no loss in features.
* ConPTY has fulfilled our needs a thousand times over, but as it's layered on top of conhost it has resulted in software decay.
The layer boundary has blurred over the years resulting in debugging and maintenance difficulties.
Lastly, its performance is insufficient and has been subject to much debate.
It's on us now to pay our debt and clean up the architecture so that ConPTY, conhost, and Windows Terminal can be built on top of it.
Considerations:
* A named `MUTEX` can theoretically solve parts of the out-of-sync issue, because it could be used to synchronize buffer reflow.
However, this requires the lock to be acquired on every API call, on top of the regular console lock, which raises ABBA deadlock concerns.
Making this setup not just hopefully but also provably robust, is likely to be very difficult.
It also doesn't solve any of the other listed problems.
## Goal 1: Remove VtEngine
### Goal
```mermaid
%%{ init: { "flowchart": { "curve": "monotoneX" } } }%%
flowchart TD
subgraph conhost
direction LR
subgraph Server
server_io[Console API calls]
end
subgraph ConPTY
VtIo
VtEngine
ConPTY_output[ConPTY Output]
end
conhost_parser[VT parser]
conhost_buffer[Text Buffer]
conhost_renderer[Render Thread]
conhost_atlas[Text Renderer]
server_io-->conhost_parser
server_io--VT translation-->VtIo
server_io-->VtIo
conhost_parser-->VtIo
VtIo-->VtEngine
conhost_parser-->VtEngine
conhost_buffer-->VtEngine
conhost_renderer-->VtEngine
VtIo-->ConPTY_output
VtEngine-->ConPTY_output
conhost_buffer--dirty rects-->conhost_renderer
conhost_parser-->conhost_renderer
conhost_parser--plain text-->conhost_buffer
conhost_renderer-->conhost_atlas
conhost_buffer--ReadBuffer-->server_io
end
subgraph wt[Windows Terminal]
direction LR
input[ConPTY Input]
parser[VT parser]
buffer[Text Buffer]
renderer[Render Thread]
atlas[Text Renderer]
input-->parser
parser-->buffer
buffer-->renderer
renderer-->atlas
parser-->renderer
end
conhost--ConPTY's text pipe across processes-->wt
linkStyle 2,3,4,5,6,7,9,11 opacity:0.2
style VtEngine opacity:0.2
```
### Goals
* Remove VtEngine
* Remove `--vtmode`
* Remove `--resizeQuirk`
* Add buffering to `VtIo` and hook it up to the output pipe
* Implement direct VT translations for all relevant Console APIs
### Discussion
The idea is that we can translate Console API calls directly to VT at least as well as the current VtEngine setup can.
For instance, a call to `SetConsoleCursorPosition` clearly translates directly to a `CUP` escape sequence.
Effectively, instead of translating output asynchronously in the renderer thread, we'll do it synchronously right during the Console API call.
Apart from the Console APIs, the "cooked read" implementation, which handles our builtin "readline"-like text editor, will need to receive some larger changes as well.
Its popups use `ReadConsoleOutput` and `WriteConsoleOutput` to backup and restore the affected rectangle.
It also directly interfaces with the backing text buffer and its translation to VT relies on the existence of VtEngine.
This results in all of the same issues that were previously outlined.
In order to solve this, the popups need to be rewritten to use escape sequences so that they can be directly passed to the hosting terminal.
They should also always be below the current prompt line so that we don't need to perform a potentially lossy backup/restore operation.
The `--vtmode xterm-ascii` switch exists for the telnet client as it only supports ASCII as per RFC854 section "THE NVT PRINTER AND KEYBOARD".
However, telnet is the only user of this flag and it's trivial to do there (for instance by stripping high codepoints in `WriteOutputToClient` in `telnet/console.cpp`), so there's no reason for us to keep this logic in the new code.
This change will result in a significant reduction in complexity of our architecture.
VT input from the shell or other clients will be given 1:1 to the hosting terminal, which will resolve our ordering and buffering issues.
## Goal 2: Move Console API implementations to Server
### Goal
```mermaid
%%{ init: { "flowchart": { "curve": "monotoneX" } } }%%
flowchart TD
subgraph conhost
direction LR
subgraph Server[Server w/ ConPTY]
server_io[Console API calls]
ConPTY_Translation[VT Translation]
server_io<-->ConPTY_Translation
end
subgraph ConPTY
VtIo
ConPTY_output[ConPTY Output]
VtIo-->ConPTY_output
end
conhost_impl[IApiRoutines impl]
conhost_parser[VT parser]
conhost_buffer[Text Buffer]
conhost_renderer[Render Thread]
conhost_atlas[Text Renderer]
output_new[ConPTY Output]
ConPTY_Translation<-->conhost_impl
conhost_impl-->conhost_parser
conhost_impl----->output_new
server_io---->VtIo
server_io-->conhost_parser
conhost_parser-->conhost_buffer
conhost_parser-->conhost_renderer
conhost_buffer-->conhost_renderer
conhost_buffer--ReadBuffer-->conhost_impl
conhost_buffer-->server_io
conhost_renderer-->conhost_atlas
end
subgraph wt[Windows Terminal]
direction LR
input[ConPTY Input]
parser[VT parser]
buffer[Text Buffer]
renderer[Render Thread]
atlas[Text Renderer]
input-->parser
parser-->buffer
buffer-->renderer
renderer-->atlas
parser-->renderer
end
conhost--ConPTY's text pipe across processes-->wt
linkStyle 1,5,6,11 opacity:0.2
style ConPTY opacity:0.2
style VtIo opacity:0.2
style ConPTY_output opacity:0.2
```
### Goals
* Move the API implementation from the `Host` to the `Server` project.
* Narrow down the `IApiRoutines` interface to its essentials.
* Replace affected singletons with regular class instances.
### Discussion
The basic idea is that instead of having 3 arrows going in and out of the Server component, we got exactly 1.
This makes the console server and its VT translation a reusable component, which we need so that we can solve the out-of-sync issues by integrating it into Windows Terminal.
To make the Server API convenient to use, the interface needs to be narrowed down to as few methods as possible. This interface is currently called `IApiRoutines`.
### API Design
Design goals:
* Low overhead<br>
The API should never be the reason why the terminal is slow.
Among others, the design includes both UTF8 and UTF16 functions, as both encodings are common on Windows and the server component should not make assumptions which one the terminal prefers.
* Easy to use<br>
The Console API is unfortunately quite powerful.
In order to make implementing the callback interface still reasonably easy, the API should have as few methods as are needed.
If a complex Console API call can be expressed as a series of simpler ones, and if no other performance expectations exist, it should be expressed via the simpler ones.
* Works even if only partially implemented<br>
Example: `CreateConsoleScreenBuffer` is seldomly used, but its existence adds significant complexity to the callback API design and potential implementations.
A terminal should either be able to return `E_NOTIMPL` and we provide a fallback, or we provide guidance for how reasonable fallbacks can be implemented (e.g. by using the xterm alt buffer in this example).
> [!IMPORTANT]
> The following API design is a rough draft just to convey the general idea.
> It does not represent a complete, finished design.
> This document will be updated once work on the API begins and the actual API requirements become clearer.
```cs
// The Console API is built around a freely addressable frame buffer. It allows you to
// address any part of the buffer, even those outside of what's considered the "viewport":
//
// ┌──────────────────┐
// │y=-3 │
// │ │ ╮
// │ │ │
// ╭ ├──────────────────┤ ├── VT scrollback (partially addressed)
// │ │y=0 │ │
// │ │ │ ╮ ╯
// │ │ │ │
// Console Buffer ──┤ ├──────────────────┤ ├──── VT Viewport (top y = 1)
// │ │y=3 │ │
// │ │ │ ╯
// │ │ │
// ╰ └──────────────────┘
//
// The good news is that nothing prevents you from giving the Console Buffer the exact
// same size as the VT Viewport and for modern terminals doing so is recommended.
// That way, coordinates are viewport-relative and content below/above the viewport is never addressed:
//
// ┌──────────────────┐ ╮
// │y=-3 │ │
// │ │ ├── VT scrollback (unused)
// │ │ │
// ╭ ├──────────────────┤ ╮ ╯
// │ │y=0 │ │
// Console Buffer ──┤ │ │ ├──── VT Viewport
// │ │ │ │
// ╰ └──────────────────┘ ╯
//
// Coordinates are 0-indexed. Note that while INT32 coordinates are used by this API, coordinates below
// 0 and above 65535 are generally invalid as the Console ABI currently uses unsigned 16-Bit integers.
struct CONSRV_POINT_I32 {
INT32 x;
INT32 y;
};
struct CONSRV_POINT_F32 {
float x;
float y;
};
// These flags are also defined via Windows.h.
#if 0
// These flags are equivalent to the classic 4-bit indexed colors in VT via SGR.
// However, the position of the blue and red bits are swapped.
#define FOREGROUND_BLUE 0x0001 // Text color contains blue.
#define FOREGROUND_GREEN 0x0002 // Text color contains green.
#define FOREGROUND_RED 0x0004 // Text color contains red.
#define FOREGROUND_INTENSITY 0x0008 // Text color is intensified.
#define BACKGROUND_BLUE 0x0010 // Background color contains blue.
#define BACKGROUND_GREEN 0x0020 // Background color contains green.
#define BACKGROUND_RED 0x0040 // Background color contains red.
#define BACKGROUND_INTENSITY 0x0080 // Background color is intensified.
// These two bits are used to represent wide glyphs.
#define COMMON_LVB_LEADING_BYTE 0x0100 // Leading byte.
#define COMMON_LVB_TRAILING_BYTE 0x0200 // Trailing byte.
// This bit is equivalent to the "CSI 7 m" reverse video escape sequence.
#define COMMON_LVB_REVERSE_VIDEO 0x4000 // Reverse foreground and background attribute.
// NOTE: These flags have no equivalent in VT. COMMON_LVB_UNDERSCORE in particular is not the same as a
// "CSI 4 m" underline in VT, despite the name. They're used to give a cell border (= grid) lines.
#define COMMON_LVB_GRID_HORIZONTAL 0x0400 // Top horizontal.
#define COMMON_LVB_GRID_LVERTICAL 0x0800 // Left vertical.
#define COMMON_LVB_GRID_RVERTICAL 0x1000 // Right vertical.
#define COMMON_LVB_UNDERSCORE 0x8000 // Underscore.
#endif
// This struct is binary compatible to the CHAR_INFO struct from the Windows API and functionally equivalent.
//
// The following rules MUST be followed:
// * Each instance represents 1 column in the terminal.
// * Any cells that aren't representable with a single UCS-2 character, or are wider than 2 columns,
// must be replaced with U+FFFD. Grapheme clusters, surrogate pairs, and similar, are not allowed.
// Keep in mind that U+FFFD is a narrow character. It does not get the wide wide-glyph treatment below.
// * Colors that cannot be represented via the `attributes` flags can be replaced with an approximation.
// Alternatively, `FOREGROUND_BLUE | FOREGROUND_GREEN | FOREGROUND_RED` can be used (no `BACKGROUND` bit set).
// * If a wide glyph (2 columns wide) is encountered, the following applies:
// * Create 2 consecutive CONSRV_CHAR_INFO instances (as per the first rule).
// * Repeat the same `character` in both instances, even if it's U+FFFD.
// * Assign the first instance an `attributes` flag of `COMMON_LVB_LEADING_BYTE`
// and the second one `COMMON_LVB_TRAILING_BYTE`.
// * BUT if the request for a CONSRV_CHAR_INFO only partially intersects a wide glyph, replace the character
// (and only the character) with U+0020 whitespace. This also means that `COMMON_LVB_LEADING/TRAILING_BYTE`
// should not be set, because the returned character isn't wide anymore. An example:
// If you have a red "猫" on top of a blue background in the buffer and a single `CONSRV_CHAR_INFO` is requested
// for the left half of the glyph, then you should set `character` to whitespace and `attributes` to
// `FOREGROUND_RED | BACKGROUND_BLUE`. Debug builds of ConPTY will assert that you do this.
//
// For more documentation about the `attributes` flags, see the constants defined above.
struct CONSRV_CHAR_INFO {
wchar_t character;
UINT16 attributes;
};
struct CONSRV_UTF8_STRING {
[size_is(length)] const char* data;
DWORD length;
};
struct CONSRV_UTF16_STRING {
[size_is(length)] const wchar_t* data;
DWORD length;
};
// NOTE: At the time of writing the required fields are not fully known.
// NOTE: boolean is 8 Bits large.
struct CONSRV_INFO {
// NOTE: msys2 relies on the HWND value to uniquely identify terminal sessions.
// If we were to hand out the multiplexed terminal window HWND to msys2, it will break. Either we need to
// create fake windows inside conhost (very bad & buggy) or break msys2 intentionally (also very bad).
HWND window;
CONSRV_UTF16_STRING originalWindowTitle;
CONSRV_UTF16_STRING windowTitle;
CONSRV_POINT_I32 bufferSizeInCells;
CONSRV_POINT_I32 cursorPositionInCells;
CONSRV_POINT_I32 viewPositionInCells;
CONSRV_POINT_I32 viewSizeInCells;
CONSRV_POINT_F32 cellSizeInDIP;
COLORREF colorTable[16];
CONSRV_POINT_I32 selectionStart;
CONSRV_POINT_I32 selectionEnd;
boolean selectionActive;
boolean selectionRectangular;
boolean selectionMouseDown;
float cursorHeight;
boolean cursorHidden;
};
// Any item that has changed relative to the current CONSRV_INFO will be set to a non-null pointer.
// In other words, members that are null represent those that remain unchanged.
//
// If the request cannot be supported return E_INVALIDARG. For instance, you may choose to
// do so if you receive a `bufferSizeInCells` change while the xterm alt buffer is active.
//
// NOTE: At the time of writing the required fields are not fully known.
struct CONSRV_INFO_CHANGE {
CONSRV_POINT_I32* bufferSizeInCells;
CONSRV_POINT_I32* cursorPositionInCells;
CONSRV_POINT_I32* viewPositionInCells;
CONSRV_POINT_I32* viewSizeInCells;
COLORREF* colorTable; // The referenced array is always 16 items large.
float* cursorHeight;
boolean* cursorHidden;
CONSRV_UTF16_STRING* fontName;
UINT32* fontFamily;
UINT32* fontWeight;
CONSRV_POINT_I32* fontSize;
};
interface IConsoleServer : IUnknown {
// TODO: This interface is incomplete. Among others, a way to launch new application into the server is missing.
// ConPTY manages stdin as a ring buffer for you. When the terminal has focus, you simply need to write your input.
// Keyboard input MUST be written via `WriteInputRecords`. The other 2 functions DO NOT parse any VT sequences.
// They're instead meant either for VT responses (DECRPM, etc.) and for dumping plain text (clipboard, etc.).
void WriteInputRecords([in] DWORD count, [in, length_is(count)] const INPUT_RECORD* records);
void WriteInputUTF8([in] CONSRV_UTF8_STRING text);
void WriteInputUTF16([in] CONSRV_UTF16_STRING text);
};
// First of all: You don't need to implement all functions and all structs perfectly for ConPTY to work decently well.
// For instance, if you don't implement `CONSRV_INFO::cursorHeight` properly, barely anything will happen.
interface IConsoleServerCallback : IUnknown {
// The console server is single-threaded and no two calls will be made simultaneously. These two functions
// simply allow you to synchronize the calls down below if your application is multi-threaded.
//
// Lock() will always be called before any of the functions below are called.
// Lock() and Unlock() do not need to support recursive locking.
// Any other calls between Lock() and Unlock() should be treated as an atomic operation.
//
// It is recommended to use a fair lock instead of OS primitives like SRWLOCK. These callback functions may be
// much more often than your text renderer, etc., runs. An unfair lock will result in thread starvation.
HRESULT Lock();
HRESULT Unlock();
// If called, you're requested to create a new console alt buffer. The Console API supports having
// multiple concurrent such buffers. They're not the same as the xterm alt buffer, however (CSI ? 1049 h):
// They can be resized to be larger than the current viewport and switching between such buffers DOES NOT
// clear them nor does it reset any other per-buffer state.
//
// If you have trouble adding support for multiple console alt buffers, consider using the xterm alt buffer
// (CSI ? 1049 h) for the first buffer that gets created, and return E_OUTOFMEMORY for any further buffers.
HRESULT CreateBuffer([out] void** buffer);
// ReleaseBuffer is called once the buffer isn't needed anymore. It's guaranteed to be called and it's guaranteed
// to be called after ActivateBuffer() was used to switch to another buffer (or the main buffer).
HRESULT ReleaseBuffer([in] void* buffer);
// This switches between different console alt buffers. Switching to a buffer should change the content that's
// being shown, similar to the xterm alt buffer, however unlike it doing so DOES NOT reset any per-buffer state.
// All it does is to basically swap out the underlying, active text buffer of the terminal.
//
// If `buffer` is NULL it's a request to switch back to the main buffer.
//
// `temporary` is a hint. If it's `true` it indicates that the previous buffer will soon be activated again.
// In other words, on Unlock() the buffer was active during Lock() will be active again.
// It's recommended that temporary switches are lightweight as they may occur relatively often.
HRESULT ActivateBuffer([in] void* buffer, [in] boolean temporary);
//
// Any functions past this point operate on the currently active buffer.
//
// This function gets a snapshot of the terminal and buffer state.
//
// You must ensure that the returned pointer stays valid until the next GetInfo() or Unlock() call,
// or until the currently active buffer is released.
// You don't need to return a new instance on each call. ConPTY will only use the last returned pointer.
// You don't need to keep the CONSRV_INFO struct constantly up to date, but you're allowed to do so.
// For instance, it's valid to change the `.cursorPosition` when SetCursorPosition() is called.
//
// It's recommended that this function is lightweight as it may be called relatively often.
const CONSRV_INFO* GetInfo();
// When this method is called you're asked to apply any non-null member of the given CONSRV_INFO_CHANGE struct
// to the active buffer. For instance a non-null `.cursorPosition` is identical to calling `SetCursorPosition`,
// a non-null `.bufferSize` is a request to resize the terminal, and so on.
HRESULT SetInfo([in] const CONSRV_INFO_CHANGE* info);
// As explained in the CONSRV_POINT_I32 documentation, ConPTY coordinates may be outside of the VT viewport.
// This function is necessary in order to support this. If you assign the console buffer the same size
// as the VT viewport, `pos` can be translated to VT using
// printf("\x1b[%d;%dC", pos.y + 1, pos.x + 1);
HRESULT SetCursorPosition([in] CONSRV_POINT_I32 pos);
// The Console API supports 4 gridline attributes which cannot be translated to VT.
// This function is necessary to represent those. If you don't plan to support the gridlines,
// you can translate the attributes to VT with the following code or some equivalent:
// static const uint8_t lut[] = { 30, 34, 32, 36, 31, 35, 33, 37, 90, 94, 92, 96, 91, 95, 93, 97 };
// const auto fg = lut[attributes & 0xf];
// const auto bg = lut[(attributes >> 4) & 0xf] + 10;
// printf("\x1b[%d;%dm", fg, bg);
//
// `attributes` of exactly `FOREGROUND_BLUE | FOREGROUND_GREEN | FOREGROUND_RED` are often used to indicate the
// default colors in Windows Console applications, and so you may choose to translate attributes like that as:
// printf("\x1b[39;49");
//
// You may also choose to support COMMON_LVB_REVERSE_VIDEO, which translates to:
// printf("\x1b[7m");
HRESULT SetCurrentAttributes([in] UINT16 attributes);
// Starting from column `pos.x` in row `pos.y`, this reads `count`-many characters and attributes.
// `pos` and `count` will be clamped such that reads never extend outside of the `CONSRV_INFO::bufferSize`.
//
// However, it may still read cells that have never been written to (for instance below the current viewport!).
// Such reads should not fail. Simply fill the `infos` array with whitespaces and a default attribute of your chosing,
// but `FOREGROUND_BLUE | FOREGROUND_GREEN | FOREGROUND_RED` is recommended (no other bits set).
//
// NOTE that this API should ignore any line renditions (DECDWL, DECDHL), margins (DECSLRM, ...), etc.
// Reading outside of the "valid" range for a given row should behave exactly like reading below the viewport,
// as described in the previous paragraph.
HRESULT ReadBuffer([in] CONSRV_POINT_I32 pos, [in] INT32 count, [out, length_is(count)] CONSRV_CHAR_INFO* infos);
// These two functions are used to layout text for the internal "GNU Readline"-like implementation.
// `text` is the string to operate on. As with any other method, input validation should be performed.
// It's preferred to pretend as if invalid codepoints (in particular invalid surrogate pairs)
// are U+FFFD, because this provides the user with some level of text editing capability.
// The alternative is to have none at all when facing invalid strings which is strictly worse.
// `maxClusters` is the maximum amount of "cursor movements" these functions should apply
// (like when pressing the left/right arrow buttons).
// `maxColumns` is the maximum amount of columns the functions may iterate over. When the text is "a猫" and
// `maxColumns` is 2, then the result should be "a", because "猫" doesn't fit anymore.
// `position` on input contains the current position of the cursor inside `text`, counted in characters from the
// start of the `text`. On output it's supposed to contain the new cursor position.
// `position` may be out of bounds and you should clamp it to a valid range first.
// `columns` on output should contain the number of columns that have been iterated over.
//
// The idea is that a `maxClusters = 1` and `maxColumns = inf` can be used to implement left/right cursor movement,
// while `maxClusters = inf` and `maxColumns = window width` can be used to layout text within the window.
//
// You don't need to handle escape characters. These functions will never be called with any present.
// For robustness against bugs it's however recommended to handle them anyway, in whatever way you wish.
// If you have no preference, it's recommended to treat them as zero-width characters.
HRESULT MeasureTextForward([in] CONSRV_UTF16_STRING text, [in] DWORD maxClusters, [in] DWORD maxColumns, [in, out] DWORD* position, [out] DWORD* columns);
HRESULT MeasureTextBackward([in] CONSRV_UTF16_STRING text, [in] DWORD maxClusters, [in] DWORD maxColumns, [in, out] DWORD* position, [out] DWORD* columns);
// UTF8 and UTF16 are both widely used text encodings on Windows and it's recommended that both
// functions are reasonably fast. ConPTY will translate all non-Unicode text to UTF16 for you.
// You must validate incoming text. It's recommended to replace invalid codepoints with U+FFFD.
// You don't need to check for broken up codepoints at the start/end of the text, as ConPTY will handle that for you.
HRESULT WriteUTF8([in] boolean raw, [in] CONSRV_UTF8_STRING text);
HRESULT WriteUTF16([in] boolean raw, [in] CONSRV_UTF16_STRING text);
};
```
The list shows how each Console API function is implemented in terms of the above interface.
* Aliases
<br>Fully implemented inside the server component without API.
* `AddConsoleAlias`
* `GetConsoleAlias`
* `GetConsoleAliases`
* `GetConsoleAliasesLength`
* `GetConsoleAliasExes`
* `GetConsoleAliasExesLength`
* History
<br>Fully implemented inside the server component without API.
* `ExpungeConsoleCommandHistory`
* `GetConsoleCommandHistory`
* `GetConsoleCommandHistoryLength`
* `GetConsoleHistoryInfo`
* `SetConsoleHistoryInfo`
* `SetConsoleNumberOfCommands`
* stdin
<br>Fully implemented inside the server component without API.
* `FlushConsoleInputBuffer`
* `GetConsoleInput`
* `GetConsoleInputCodePage`
* `GetConsoleInputMode`
* `GetNumberOfConsoleInputEvents`
* `ReadConsole`
* `SetConsoleInputCodePage`
* `SetConsoleInputMode`
* `WriteConsoleInput`
* Unsupported since conhost v1
* `GetConsoleDisplayMode`
* `GetConsoleLangId`
* `SetConsoleDisplayMode`
* Buffer management
* `GetConsoleScreenBufferInfoEx`:
Gets information from server's internal `SCREEN_INFORMATION` class (which represents the `HANDLE`).
* `SetConsoleScreenBufferInfoEx`:
Sets information on server's internal `SCREEN_INFORMATION` class.
* `CreateConsoleScreenBuffer`:
`CreateBuffer`
* `SetConsoleActiveScreenBuffer`:
`ActivateBuffer` + `SetInfo`
* `SetConsoleScreenBufferSize`:
`SetInfo`
* Cursor
* `GetConsoleCursorInfo`:
`GetInfo`
* `SetConsoleCursorInfo`:
`SetInfo`
* `SetConsoleCursorPosition`:
`GetInfo`
* Fonts
* `GetConsoleFontSize`:
`GetInfo`
* `GetCurrentConsoleFontEx`:
`GetInfo`
* `SetCurrentConsoleFontEx`:
`SetInfo`
* Window management
* `GetConsoleOriginalTitle`:
`GetInfo`
* `GetConsoleSelectionInfo`:
`GetInfo`
* `GetConsoleTitle`:
`GetInfo`
* `GetConsoleWindow`:
`GetInfo`
* `GetLargestConsoleWindowSize`:
`GetInfo`; The window frame size can be inferred from the difference between the `GetWindowRect(hwnd)` and the `viewSizeInCells * cellSizeInDIP`.
The max. cell count can then be calculated by getting the `MonitorFromWindow(hwnd)` size, subtracting the frame size and calculating the cell count.
* `GetNumberOfConsoleMouseButtons`:
Implemented inside the server component via `GetSystemMetrics(SM_CMOUSEBUTTONS)`
* `SetConsoleTitle`:
`SetInfo`
* `SetConsoleWindowInfo`:
`SetInfo`
* stdout (writing)
* `FillConsoleOutputAttribute`:
Set the new attributes with `SetCurrentAttributes`.
For each line, get the existing contents with `ReadBuffer`, `SetCursorPosition` to the start, concatenate the cells and write them with `WriteUTF16`.
* `FillConsoleOutputCharacter`:
For each line, get the existing contents with `ReadBuffer`, `SetCursorPosition` to the start, concatenate the cells and write them with `WriteUTF16`.
At the start of each line and every time the attributes change use `SetCurrentAttributes` to set them up.
* `GetConsoleOutputCodePage`:
Implemented inside the server component.
* `GetConsoleOutputMode`:
Implemented inside the server component.
* `ScrollConsoleScreenBuffer`:
**TODO**: It may be necessary to add a `ScrollBuffer` API to make vertical scrolling across the entire buffer width faster. This fast pass currently exists as well.
Otherwise, this will be translated to: Read all lines in the source rectangle with `ReadBuffer`.
Then refer to the `WriteConsoleOutput` implementation for writing it to the target.
* `SetConsoleOutputCodePage`:
Implemented inside the server component.
* `SetConsoleOutputMode`:
Implemented inside the server component.
* `SetConsoleTextAttribute`:
`SetCurrentAttributes`
* `WriteConsole`:
`WriteUTF8` if `CP_UTF8` is active and otherwise `WriteUTF16`.
* `WriteConsoleOutput`:
For each line, `SetCursorPosition` to the start, concatenate the cells and write them with `WriteUTF16`.
At the start of each line and every time the attributes change use `SetCurrentAttributes` to set them up.
* `WriteConsoleOutputAttribute`:
Same as `FillConsoleOutputAttribute`, but with varying attributes.
* `WriteConsoleOutputCharacter`:
Same as `FillConsoleOutputCharacter`, but with varying characters.
* stdout (reading)
<br>Each of these will be translated to a series of `ReadBuffer` calls, one for each line.
* `ReadConsoleOutput`
* `ReadConsoleOutputAttribute`
* `ReadConsoleOutputCharacter`
## Goal 3: Productize Server
### Goal
```mermaid
flowchart LR
subgraph ConPTY_lib["ConPTY (static library)"]
server_io[Console API calls]
ConPTY_Translation[VT Translation]
server_io<-->ConPTY_Translation
end
subgraph ConPTY["ConPTY (dynamic library)"]
ConPTY_impl[IApiRoutines impl]
ConPTY_parser[VT parser]
ConPTY_buffer[Text Buffer]
ConPTY_output[ConPTY Output]
ConPTY_Translation<-->ConPTY_impl
ConPTY_impl-->ConPTY_parser
ConPTY_parser-->ConPTY_buffer
ConPTY_buffer--ReadBuffer-->ConPTY_impl
ConPTY_impl------>ConPTY_output
end
subgraph conhost
subgraph conhost_Server[Server]
conhost_server_io[Console API calls]
conhost_ConPTY_Translation[VT Translation]
conhost_server_io<-->conhost_ConPTY_Translation
end
conhost_impl[IApiRoutines impl]
conhost_parser[VT parser]
conhost_buffer[Text Buffer]
conhost_renderer[Render Thread]
conhost_atlas[Text Renderer]
output_new[ConPTY Output]
conhost_ConPTY_Translation<-->conhost_impl
conhost_impl-.remains for<br>back compat.....->output_new
ConPTY_Translation<-->conhost_impl
conhost_impl-->conhost_parser
conhost_parser-->conhost_buffer
conhost_buffer--->conhost_renderer
conhost_buffer--ReadBuffer-->conhost_impl
conhost_renderer-->conhost_atlas
end
subgraph wt[Windows Terminal]
impl[IApiRoutines impl]
parser[VT parser]
buffer[Text Buffer]
renderer[Render Thread]
atlas[Text Renderer]
ConPTY_Translation<-->impl
impl-->parser
parser-->buffer
buffer--->renderer
buffer--ReadBuffer-->impl
renderer-->atlas
end
linkStyle 6,7 opacity:0.2
style conhost_Server opacity:0.2
style conhost_server_io opacity:0.2
style conhost_ConPTY_Translation opacity:0.2
```
After creating an _internal_ API in conhost, the next logical step is for us to extract the interface as a public one and consume it in Windows Terminal.
At this point we should also see if we can find early adopters of the API in other projects.
## Stretch Goal 4: Ship Server in Windows
The console server on Windows has been an internal ABI for the longest time.
As we have started shipping ConPTY bundled with conhost/OpenConsole to other projects, the internal ABI has become a public one.
While we have no intention of ever breaking forward compatability of the console server with future Windows versions, it would be reassuring if the ABI long-term became internal once more.
This will allow us complete freedom over its design, even in the decades to come, and allow us to fully shim any 3rd party applications on Windows if a ABI change were to ever happen.

View File

@@ -1,527 +0,0 @@
<!DOCTYPE html>
<html lang="en">
<head>
<meta charset="UTF-8">
<meta name="viewport" content="width=device-width, initial-scale=1">
<title>Theme Color Quality Tests</title>
<script src="https://colorjs.io/dist/color.global.min.js"></script>
<script src="https://cdn.plot.ly/plotly-2.34.0.min.js"></script>
<style>
html {
background: #000;
color: #fff;
}
h2 {
font-family: monospace;
}
h2 > button {
float: right;
}
#container {
display: flex;
gap: 20px;
flex-wrap: wrap;
}
#container > div {
width: 418px;
}
.swatch {
display: grid;
grid-template-columns: repeat(8, 50px);
gap: 2px;
border: 2px solid black;
background: black;
}
.swatch > div {
width: 50px;
height: 50px;
}
.swatch span {
display: block;
font-family: monospace;
line-height: 2;
text-align: center;
}
</style>
</head>
<body>
<div id="container"></div>
<script>(() => {
const themes = {
// Find the optimal selection color (e.g. #92a4fd):
//
// theme = ["#000000", "#be2c21", "#3fae3a", "#be9a4a", "#204dbe", "#bb54be", "#00a7b2", "#bebebe", "#808080", "#ff3e30", "#58ea51", "#ffd166", "#2f6aff", "#fc74ff", "#00e1f0", "#ffffff"]
// theme = theme.map(t => Color.to(t, "oklab"))
//
// optD = 0;
// opt = null;
//
// for (let h = 264-10; h <= 264+10; h += 1) {
// for (let c = 10; c <= 100; c += 1) {
// for (let l = 40; l <= 90; l += 1) {
// const col = Color.to(`color(--okhsl ${h} ${c}% ${l}%)`, "oklab");
// }
// }
// }
"Prototype Bright": (() => {
const bright_red = new Color(`color(--okhsl ${Color.to("#f00", "okhsl").h} 100% 60.15%)`);
const bright_green = new Color(`color(--okhsl ${Color.to("#0f0", "okhsl").h} 92.5% 80%)`);
const bright_blue = new Color(`color(--okhsl ${Color.to("#00f", "okhsl").h} 100% 51.2%)`);
const mixOpts = { space: "oklab", outputSpace: "okhsl" };
const bright_yellow = new Color(`color(--okhsl ${bright_red.mix(bright_green, 0.5, mixOpts).h} 100% 84%)`);
const bright_purple = new Color(`color(--okhsl ${bright_blue.mix(bright_red, 0.5, mixOpts).h} 100% 73%)`);
const bright_cyan = new Color(`color(--okhsl ${bright_green.mix(bright_blue, 0.5, mixOpts).h} 100% 80%)`);
const bright = [
new Color("oklch(60% 0 0)"),
bright_red,
bright_green,
bright_yellow,
bright_blue,
bright_purple,
bright_cyan,
new Color("oklch(100% 0 0)"),
];
const dark = [
new Color("oklch(0% 0 0)"),
...bright.slice(1, 8).map(c => c.mix("#000", 0.2, { space: "oklab" })),
];
return dark.concat(...bright).map(c => c.to("sRGB").toString({
format: "hex",
collapse: false
}))
})(),
// https://oklch.com/
"Prototype Symmetric": [
new Color("oklch(0% 0 0)"), // Black
new Color("oklch(60% 0.098 30)"), // Red
new Color("oklch(60% 0.098 150)"), // Green
new Color("oklch(60% 0.098 90)"), // Yellow
new Color("oklch(60% 0.098 270)"), // Blue
new Color("oklch(60% 0.098 330)"), // Purple
new Color("oklch(60% 0.098 210)"), // Cyan
new Color("oklch(80% 0 0)"), // White
new Color("oklch(40% 0 0)"), // Bright Black
new Color("oklch(80% 0.098 30)"), // Bright Red
new Color("oklch(80% 0.098 150)"), // Bright Green
new Color("oklch(80% 0.098 90)"), // Bright Yellow
new Color("oklch(80% 0.098 270)"), // Bright Blue
new Color("oklch(80% 0.098 330)"), // Bright Purple
new Color("oklch(80% 0.098 210)"), // Bright Cyan
new Color("oklch(100% 0 0)"), // Bright White
].map(c => c.to("sRGB").toString({ format: "hex", collapse: false })),
"Terminal.app": [
"#000000",
"#990000",
"#00a600",
"#999900",
"#0000b2",
"#b200b2",
"#00a6b2",
"#bfbfbf",
"#666666",
"#e50000",
"#00d900",
"#e5e500",
"#0000ff",
"#e500e5",
"#00e5e5",
"#e5e5e5",
],
"Windows NT": [
"#000000",
"#800000",
"#008000",
"#808000",
"#000080",
"#800080",
"#008080",
"#C0C0C0",
"#808080",
"#FF0000",
"#00FF00",
"#FFFF00",
"#0000FF",
"#FF00FF",
"#00FFFF",
"#FFFFFF",
],
"Windows XP": [
"#000000",
"#A80000",
"#00A800",
"#A85400",
"#0000A8",
"#A800A8",
"#61D6D6",
"#A8A8A8",
"#545454",
"#FF0000",
"#00FF00",
"#FFFF00",
"#0000FF",
"#FF00FF",
"#00FFFF",
"#FFFFFF",
],
"URXVT": [
"#000000",
"#BE0000",
"#00BE00",
"#BEBE00",
"#0000BE",
"#BE00BE",
"#00BEBE",
"#BEBEBE",
"#424242",
"#FF0000",
"#00FF00",
"#FFFF00",
"#0000FF",
"#FF00FF",
"#00FFFF",
"#FFFFFF",
],
"Campbell": [
"#0C0C0C",
"#C50F1F",
"#13A10E",
"#C19C00",
"#0037DA",
"#881798",
"#3A96DD",
"#CCCCCC",
"#767676",
"#E74856",
"#16C60C",
"#F9F1A5",
"#3B78FF",
"#B4009E",
"#61D6D6",
"#F2F2F2",
],
"Campbell Powershell": [
"#0C0C0C",
"#C50F1F",
"#13A10E",
"#C19C00",
"#0037DA",
"#881798",
"#3A96DD",
"#CCCCCC",
"#767676",
"#E74856",
"#16C60C",
"#F9F1A5",
"#3B78FF",
"#B4009E",
"#61D6D6",
"#F2F2F2",
],
"One Half Dark": [
"#282C34",
"#E06C75",
"#98C379",
"#E5C07B",
"#61AFEF",
"#C678DD",
"#56B6C2",
"#DCDFE4",
"#5A6374",
"#E06C75",
"#98C379",
"#E5C07B",
"#61AFEF",
"#C678DD",
"#56B6C2",
"#DCDFE4",
],
"One Half Light": [
"#383A42",
"#E45649",
"#50A14F",
"#C18301",
"#0184BC",
"#A626A4",
"#0997B3",
"#FAFAFA",
"#4F525D",
"#DF6C75",
"#98C379",
"#E4C07A",
"#61AFEF",
"#C577DD",
"#56B5C1",
"#FFFFFF",
],
"Solarized Dark": [
"#002B36",
"#DC322F",
"#859900",
"#B58900",
"#268BD2",
"#D33682",
"#2AA198",
"#EEE8D5",
"#073642",
"#CB4B16",
"#586E75",
"#657B83",
"#839496",
"#6C71C4",
"#93A1A1",
"#FDF6E3",
],
"Solarized Light": [
"#002B36",
"#DC322F",
"#859900",
"#B58900",
"#268BD2",
"#D33682",
"#2AA198",
"#EEE8D5",
"#073642",
"#CB4B16",
"#586E75",
"#657B83",
"#839496",
"#6C71C4",
"#93A1A1",
"#FDF6E3",
],
"Tango Dark": [
"#000000",
"#CC0000",
"#4E9A06",
"#C4A000",
"#3465A4",
"#75507B",
"#06989A",
"#D3D7CF",
"#555753",
"#EF2929",
"#8AE234",
"#FCE94F",
"#729FCF",
"#AD7FA8",
"#34E2E2",
"#EEEEEC",
],
"Tango Light": [
"#000000",
"#CC0000",
"#4E9A06",
"#C4A000",
"#3465A4",
"#75507B",
"#06989A",
"#D3D7CF",
"#555753",
"#EF2929",
"#8AE234",
"#FCE94F",
"#729FCF",
"#AD7FA8",
"#34E2E2",
"#EEEEEC",
],
"Dark+": [
"#000000",
"#cd3131",
"#0dbc79",
"#e5e510",
"#2472c8",
"#bc3fbc",
"#11a8cd",
"#e5e5e5",
"#666666",
"#f14c4c",
"#23d18b",
"#f5f543",
"#3b8eea",
"#d670d6",
"#29b8db",
"#e5e5e5",
],
"CGA": [
"#000000",
"#AA0000",
"#00AA00",
"#AA5500",
"#0000AA",
"#AA00AA",
"#00AAAA",
"#AAAAAA",
"#555555",
"#FF5555",
"#55FF55",
"#FFFF55",
"#5555FF",
"#FF55FF",
"#55FFFF",
"#FFFFFF",
],
"IBM 5153": [
"#000000",
"#AA0000",
"#00AA00",
"#C47E00",
"#0000AA",
"#AA00AA",
"#00AAAA",
"#AAAAAA",
"#555555",
"#FF5555",
"#55FF55",
"#FFFF55",
"#5555FF",
"#FF55FF",
"#55FFFF",
"#FFFFFF",
],
};
Object.entries(themes).forEach(([name, srgb]) => {
const oklch = srgb.map(c => Color.to(c, "Oklch"));
const title = document.createElement("h2");
title.innerText = name;
const download = document.createElement("button");
download.type = "button";
download.innerText = "Copy";
download.onclick = () => {
navigator.clipboard.writeText(JSON.stringify({
name,
background: srgb[0],
foreground: srgb[7],
cursorColor: "#ffffff",
black: srgb[0],
red: srgb[1],
green: srgb[2],
yellow: srgb[3],
blue: srgb[4],
purple: srgb[5],
cyan: srgb[6],
white: srgb[7],
brightBlack: srgb[8],
brightRed: srgb[9],
brightGreen: srgb[10],
brightYellow: srgb[11],
brightBlue: srgb[12],
brightPurple: srgb[13],
brightCyan: srgb[14],
brightWhite: srgb[15],
}, null, 4));
download.innerText = "Copied!";
download.disabled = true;
setTimeout(() => {
download.innerText = "Copy";
download.disabled = false;
}, 1000);
}
title.appendChild(download);
const swatch = document.createElement("div");
swatch.className = "swatch";
for (let i = 0; i < 16; ++i) {
const span = document.createElement("span");
span.innerText = oklch[i].l.toFixed(3);
span.style.color = srgb[i];
span.style.background = srgb[0];
const div = document.createElement("div");
div.style.background = srgb[i];
div.appendChild(span);
swatch.appendChild(div);
}
const plot = document.createElement("div");
Plotly.newPlot(plot, [{
type: "scatterpolar",
mode: "lines",
hoverinfo: "skip",
showlegend: false,
theta: Array.from({ length: 360 }, (x, i) => i),
// Pre-calculated max. chroma per hue for sRGB colors.
r: [0.260, 0.258, 0.258, 0.257, 0.257, 0.257, 0.256, 0.256, 0.256, 0.255, 0.254, 0.253, 0.252, 0.251, 0.251, 0.251, 0.252, 0.252, 0.252, 0.252, 0.253, 0.253, 0.253, 0.254, 0.254, 0.255, 0.255, 0.255, 0.255, 0.255, 0.252, 0.246, 0.242, 0.237, 0.233, 0.229, 0.226, 0.221, 0.219, 0.214, 0.213, 0.209, 0.207, 0.204, 0.201, 0.200, 0.196, 0.196, 0.193, 0.190, 0.190, 0.187, 0.185, 0.185, 0.182, 0.182, 0.181, 0.179, 0.179, 0.177, 0.175, 0.176, 0.174, 0.173, 0.174, 0.172, 0.171, 0.172, 0.171, 0.170, 0.171, 0.170, 0.169, 0.170, 0.169, 0.168, 0.170, 0.169, 0.168, 0.170, 0.169, 0.170, 0.171, 0.170, 0.172, 0.172, 0.171, 0.173, 0.173, 0.175, 0.175, 0.175, 0.177, 0.178, 0.180, 0.180, 0.182, 0.183, 0.184, 0.186, 0.187, 0.189, 0.192, 0.193, 0.196, 0.197, 0.200, 0.201, 0.204, 0.208, 0.209, 0.210, 0.212, 0.211, 0.213, 0.215, 0.217, 0.216, 0.218, 0.220, 0.221, 0.223, 0.225, 0.228, 0.228, 0.231, 0.234, 0.234, 0.237, 0.241, 0.244, 0.245, 0.249, 0.253, 0.255, 0.259, 0.264, 0.266, 0.271, 0.276, 0.280, 0.286, 0.289, 0.287, 0.278, 0.271, 0.265, 0.258, 0.251, 0.245, 0.239, 0.234, 0.228, 0.223, 0.219, 0.215, 0.211, 0.209, 0.205, 0.202, 0.199, 0.195, 0.192, 0.190, 0.187, 0.185, 0.182, 0.180, 0.178, 0.176, 0.175, 0.174, 0.172, 0.170, 0.169, 0.167, 0.166, 0.165, 0.163, 0.162, 0.161, 0.160, 0.159, 0.158, 0.157, 0.156, 0.157, 0.157, 0.156, 0.155, 0.155, 0.154, 0.154, 0.154, 0.153, 0.153, 0.153, 0.151, 0.151, 0.149, 0.149, 0.147, 0.148, 0.147, 0.146, 0.146, 0.145, 0.145, 0.145, 0.144, 0.145, 0.144, 0.144, 0.144, 0.144, 0.144, 0.143, 0.144, 0.145, 0.144, 0.145, 0.145, 0.145, 0.147, 0.146, 0.147, 0.147, 0.148, 0.15, 0.149, 0.151, 0.151, 0.153, 0.154, 0.154, 0.156, 0.157, 0.159, 0.159, 0.162, 0.162, 0.165, 0.166, 0.169, 0.17, 0.173, 0.174, 0.178, 0.18, 0.182, 0.186, 0.189, 0.192, 0.197, 0.2, 0.204, 0.208, 0.213, 0.219, 0.224, 0.232, 0.242, 0.249, 0.262, 0.284, 0.308, 0.307, 0.307, 0.306, 0.304, 0.301, 0.301, 0.302, 0.3, 0.297, 0.297, 0.298, 0.296, 0.294, 0.294, 0.295, 0.294, 0.292, 0.292, 0.294, 0.292, 0.290, 0.292, 0.292, 0.29, 0.291, 0.292, 0.290, 0.291, 0.292, 0.291, 0.291, 0.293, 0.291, 0.293, 0.293, 0.292, 0.295, 0.294, 0.295, 0.296, 0.295, 0.298, 0.296, 0.299, 0.298, 0.301, 0.300, 0.303, 0.302, 0.305, 0.303, 0.307, 0.305, 0.308, 0.308, 0.310, 0.313, 0.311, 0.314, 0.316, 0.316, 0.319, 0.320, 0.320, 0.314, 0.312, 0.311, 0.309, 0.303, 0.302, 0.300, 0.299, 0.296, 0.292, 0.291, 0.289, 0.288, 0.287, 0.283, 0.280, 0.279, 0.278, 0.277, 0.276, 0.274, 0.271, 0.269, 0.268, 0.267, 0.266, 0.266, 0.265, 0.264, 0.262],
marker: {
color: srgb[7],
},
}, {
type: "scatterpolar",
mode: "markers+text",
hoverinfo: "r+theta+text",
showlegend: false,
hovertext: [
"Black",
"Red",
"Green",
"Yellow",
"Blue",
"Purple",
"Cyan",
"White",
"Bright Black",
"Bright Red",
"Bright Green",
"Bright Yellow",
"Bright Blue",
"Bright Purple",
"Bright Cyan",
"Bright White",
],
marker: {
color: srgb,
size: 12,
},
theta: oklch.map(c => c.h),
r: oklch.map(c => c.c),
}], {
width: 418,
height: 418,
margin: {
l: 40,
r: 40,
b: 40,
t: 40,
},
paper_bgcolor: "#000",
polar: {
bgcolor: srgb[0],
angularaxis: {
color: srgb[7],
gridcolor: srgb[8],
},
radialaxis: {
color: srgb[7],
gridcolor: srgb[8],
range: [0, 0.4],
},
},
});
const theme = document.createElement("div");
theme.appendChild(title);
theme.appendChild(swatch);
theme.appendChild(plot);
document.getElementById("container").appendChild(theme);
});
})()</script>
</body>
</html>

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@@ -0,0 +1,21 @@
MIT License
Copyright (c) 2019 Maxime Pinard
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.

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@@ -0,0 +1,17 @@
### Notes for Future Maintainers
This was originally imported by @miniksa in March 2020.
The provenance information (where it came from and which commit) is stored in the file `cgmanifest.json` in the same directory as this readme.
Please update the provenance information in that file when ingesting an updated version of the dependent library.
That provenance file is automatically read and inventoried by Microsoft systems to ensure compliance with appropriate governance standards.
## What should be done to update this in the future?
1. Go to pinam45/dynamic_bitset repository on GitHub.
2. Take the entire contents of the include directory wholesale and drop it in the root directory here.
3. Don't change anything about it.
4. Validate that the license in the root of the repository didn't change and update it if so. It is sitting in the same directory as this readme.
If it changed dramatically, ensure that it is still compatible with our license scheme. Also update the NOTICE file in the root of our repository to declare the third-party usage.
5. Submit the pull.

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@@ -0,0 +1,15 @@
{
"$schema": "https://json.schemastore.org/component-detection-manifest.json",
"Registrations": [
{
"component": {
"type": "git",
"git": {
"repositoryUrl": "https://github.com/pinam45/dynamic_bitset",
"commitHash": "00f2d066ce9deebf28b006636150e5a882beb83f"
}
}
}
],
"Version": 1
}

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27
oss/fmt/LICENSE.rst Normal file
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@@ -0,0 +1,27 @@
Copyright (c) 2012 - present, Victor Zverovich
Permission is hereby granted, free of charge, to any person obtaining
a copy of this software and associated documentation files (the
"Software"), to deal in the Software without restriction, including
without limitation the rights to use, copy, modify, merge, publish,
distribute, sublicense, and/or sell copies of the Software, and to
permit persons to whom the Software is furnished to do so, subject to
the following conditions:
The above copyright notice and this permission notice shall be
included in all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
--- Optional exception to the license ---
As an exception, if, as a result of your compiling your source code, portions
of this Software are embedded into a machine-executable object form of such
source code, you may redistribute such embedded portions in such object form
without including the above copyright and permission notices.

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@@ -0,0 +1,17 @@
### Notes for Future Maintainers
This was originally imported by @DHowett-MSFT in April 2020.
The provenance information (where it came from and which commit) is stored in the file `cgmanifest.json` in the same directory as this readme.
Please update the provenance information in that file when ingesting an updated version of the dependent library.
That provenance file is automatically read and inventoried by Microsoft systems to ensure compliance with appropriate governance standards.
## What should be done to update this in the future?
1. Go to fmtlib/fmt repository on GitHub.
2. Take the entire contents of the include/ and src/ directories and drop them in this directory.
3. Don't change anything about it.
4. Validate that the license in the root of the repository didn't change and update it if so. It is sitting in the same directory as this readme.
If it changed dramatically, ensure that it is still compatible with our license scheme. Also update the NOTICE file in the root of our repository to declare the third-party usage.
5. Submit the pull.

15
oss/fmt/cgmanifest.json Normal file
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@@ -0,0 +1,15 @@
{
"$schema": "https://json.schemastore.org/component-detection-manifest.json",
"Registrations": [
{
"component": {
"type": "git",
"git": {
"repositoryUrl": "https://github.com/fmtlib/fmt",
"commitHash": "7bdf0628b1276379886c7f6dda2cef2b3b374f0b"
}
}
}
],
"Version": 1
}

1118
oss/fmt/include/fmt/chrono.h Normal file

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oss/fmt/include/fmt/color.h Normal file
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// Formatting library for C++ - color support
//
// Copyright (c) 2018 - present, Victor Zverovich and fmt contributors
// All rights reserved.
//
// For the license information refer to format.h.
#ifndef FMT_COLOR_H_
#define FMT_COLOR_H_
#include "format.h"
FMT_BEGIN_NAMESPACE
enum class color : uint32_t {
alice_blue = 0xF0F8FF, // rgb(240,248,255)
antique_white = 0xFAEBD7, // rgb(250,235,215)
aqua = 0x00FFFF, // rgb(0,255,255)
aquamarine = 0x7FFFD4, // rgb(127,255,212)
azure = 0xF0FFFF, // rgb(240,255,255)
beige = 0xF5F5DC, // rgb(245,245,220)
bisque = 0xFFE4C4, // rgb(255,228,196)
black = 0x000000, // rgb(0,0,0)
blanched_almond = 0xFFEBCD, // rgb(255,235,205)
blue = 0x0000FF, // rgb(0,0,255)
blue_violet = 0x8A2BE2, // rgb(138,43,226)
brown = 0xA52A2A, // rgb(165,42,42)
burly_wood = 0xDEB887, // rgb(222,184,135)
cadet_blue = 0x5F9EA0, // rgb(95,158,160)
chartreuse = 0x7FFF00, // rgb(127,255,0)
chocolate = 0xD2691E, // rgb(210,105,30)
coral = 0xFF7F50, // rgb(255,127,80)
cornflower_blue = 0x6495ED, // rgb(100,149,237)
cornsilk = 0xFFF8DC, // rgb(255,248,220)
crimson = 0xDC143C, // rgb(220,20,60)
cyan = 0x00FFFF, // rgb(0,255,255)
dark_blue = 0x00008B, // rgb(0,0,139)
dark_cyan = 0x008B8B, // rgb(0,139,139)
dark_golden_rod = 0xB8860B, // rgb(184,134,11)
dark_gray = 0xA9A9A9, // rgb(169,169,169)
dark_green = 0x006400, // rgb(0,100,0)
dark_khaki = 0xBDB76B, // rgb(189,183,107)
dark_magenta = 0x8B008B, // rgb(139,0,139)
dark_olive_green = 0x556B2F, // rgb(85,107,47)
dark_orange = 0xFF8C00, // rgb(255,140,0)
dark_orchid = 0x9932CC, // rgb(153,50,204)
dark_red = 0x8B0000, // rgb(139,0,0)
dark_salmon = 0xE9967A, // rgb(233,150,122)
dark_sea_green = 0x8FBC8F, // rgb(143,188,143)
dark_slate_blue = 0x483D8B, // rgb(72,61,139)
dark_slate_gray = 0x2F4F4F, // rgb(47,79,79)
dark_turquoise = 0x00CED1, // rgb(0,206,209)
dark_violet = 0x9400D3, // rgb(148,0,211)
deep_pink = 0xFF1493, // rgb(255,20,147)
deep_sky_blue = 0x00BFFF, // rgb(0,191,255)
dim_gray = 0x696969, // rgb(105,105,105)
dodger_blue = 0x1E90FF, // rgb(30,144,255)
fire_brick = 0xB22222, // rgb(178,34,34)
floral_white = 0xFFFAF0, // rgb(255,250,240)
forest_green = 0x228B22, // rgb(34,139,34)
fuchsia = 0xFF00FF, // rgb(255,0,255)
gainsboro = 0xDCDCDC, // rgb(220,220,220)
ghost_white = 0xF8F8FF, // rgb(248,248,255)
gold = 0xFFD700, // rgb(255,215,0)
golden_rod = 0xDAA520, // rgb(218,165,32)
gray = 0x808080, // rgb(128,128,128)
green = 0x008000, // rgb(0,128,0)
green_yellow = 0xADFF2F, // rgb(173,255,47)
honey_dew = 0xF0FFF0, // rgb(240,255,240)
hot_pink = 0xFF69B4, // rgb(255,105,180)
indian_red = 0xCD5C5C, // rgb(205,92,92)
indigo = 0x4B0082, // rgb(75,0,130)
ivory = 0xFFFFF0, // rgb(255,255,240)
khaki = 0xF0E68C, // rgb(240,230,140)
lavender = 0xE6E6FA, // rgb(230,230,250)
lavender_blush = 0xFFF0F5, // rgb(255,240,245)
lawn_green = 0x7CFC00, // rgb(124,252,0)
lemon_chiffon = 0xFFFACD, // rgb(255,250,205)
light_blue = 0xADD8E6, // rgb(173,216,230)
light_coral = 0xF08080, // rgb(240,128,128)
light_cyan = 0xE0FFFF, // rgb(224,255,255)
light_golden_rod_yellow = 0xFAFAD2, // rgb(250,250,210)
light_gray = 0xD3D3D3, // rgb(211,211,211)
light_green = 0x90EE90, // rgb(144,238,144)
light_pink = 0xFFB6C1, // rgb(255,182,193)
light_salmon = 0xFFA07A, // rgb(255,160,122)
light_sea_green = 0x20B2AA, // rgb(32,178,170)
light_sky_blue = 0x87CEFA, // rgb(135,206,250)
light_slate_gray = 0x778899, // rgb(119,136,153)
light_steel_blue = 0xB0C4DE, // rgb(176,196,222)
light_yellow = 0xFFFFE0, // rgb(255,255,224)
lime = 0x00FF00, // rgb(0,255,0)
lime_green = 0x32CD32, // rgb(50,205,50)
linen = 0xFAF0E6, // rgb(250,240,230)
magenta = 0xFF00FF, // rgb(255,0,255)
maroon = 0x800000, // rgb(128,0,0)
medium_aquamarine = 0x66CDAA, // rgb(102,205,170)
medium_blue = 0x0000CD, // rgb(0,0,205)
medium_orchid = 0xBA55D3, // rgb(186,85,211)
medium_purple = 0x9370DB, // rgb(147,112,219)
medium_sea_green = 0x3CB371, // rgb(60,179,113)
medium_slate_blue = 0x7B68EE, // rgb(123,104,238)
medium_spring_green = 0x00FA9A, // rgb(0,250,154)
medium_turquoise = 0x48D1CC, // rgb(72,209,204)
medium_violet_red = 0xC71585, // rgb(199,21,133)
midnight_blue = 0x191970, // rgb(25,25,112)
mint_cream = 0xF5FFFA, // rgb(245,255,250)
misty_rose = 0xFFE4E1, // rgb(255,228,225)
moccasin = 0xFFE4B5, // rgb(255,228,181)
navajo_white = 0xFFDEAD, // rgb(255,222,173)
navy = 0x000080, // rgb(0,0,128)
old_lace = 0xFDF5E6, // rgb(253,245,230)
olive = 0x808000, // rgb(128,128,0)
olive_drab = 0x6B8E23, // rgb(107,142,35)
orange = 0xFFA500, // rgb(255,165,0)
orange_red = 0xFF4500, // rgb(255,69,0)
orchid = 0xDA70D6, // rgb(218,112,214)
pale_golden_rod = 0xEEE8AA, // rgb(238,232,170)
pale_green = 0x98FB98, // rgb(152,251,152)
pale_turquoise = 0xAFEEEE, // rgb(175,238,238)
pale_violet_red = 0xDB7093, // rgb(219,112,147)
papaya_whip = 0xFFEFD5, // rgb(255,239,213)
peach_puff = 0xFFDAB9, // rgb(255,218,185)
peru = 0xCD853F, // rgb(205,133,63)
pink = 0xFFC0CB, // rgb(255,192,203)
plum = 0xDDA0DD, // rgb(221,160,221)
powder_blue = 0xB0E0E6, // rgb(176,224,230)
purple = 0x800080, // rgb(128,0,128)
rebecca_purple = 0x663399, // rgb(102,51,153)
red = 0xFF0000, // rgb(255,0,0)
rosy_brown = 0xBC8F8F, // rgb(188,143,143)
royal_blue = 0x4169E1, // rgb(65,105,225)
saddle_brown = 0x8B4513, // rgb(139,69,19)
salmon = 0xFA8072, // rgb(250,128,114)
sandy_brown = 0xF4A460, // rgb(244,164,96)
sea_green = 0x2E8B57, // rgb(46,139,87)
sea_shell = 0xFFF5EE, // rgb(255,245,238)
sienna = 0xA0522D, // rgb(160,82,45)
silver = 0xC0C0C0, // rgb(192,192,192)
sky_blue = 0x87CEEB, // rgb(135,206,235)
slate_blue = 0x6A5ACD, // rgb(106,90,205)
slate_gray = 0x708090, // rgb(112,128,144)
snow = 0xFFFAFA, // rgb(255,250,250)
spring_green = 0x00FF7F, // rgb(0,255,127)
steel_blue = 0x4682B4, // rgb(70,130,180)
tan = 0xD2B48C, // rgb(210,180,140)
teal = 0x008080, // rgb(0,128,128)
thistle = 0xD8BFD8, // rgb(216,191,216)
tomato = 0xFF6347, // rgb(255,99,71)
turquoise = 0x40E0D0, // rgb(64,224,208)
violet = 0xEE82EE, // rgb(238,130,238)
wheat = 0xF5DEB3, // rgb(245,222,179)
white = 0xFFFFFF, // rgb(255,255,255)
white_smoke = 0xF5F5F5, // rgb(245,245,245)
yellow = 0xFFFF00, // rgb(255,255,0)
yellow_green = 0x9ACD32 // rgb(154,205,50)
}; // enum class color
enum class terminal_color : uint8_t {
black = 30,
red,
green,
yellow,
blue,
magenta,
cyan,
white,
bright_black = 90,
bright_red,
bright_green,
bright_yellow,
bright_blue,
bright_magenta,
bright_cyan,
bright_white
};
enum class emphasis : uint8_t {
bold = 1,
italic = 1 << 1,
underline = 1 << 2,
strikethrough = 1 << 3
};
// rgb is a struct for red, green and blue colors.
// Using the name "rgb" makes some editors show the color in a tooltip.
struct rgb {
FMT_CONSTEXPR rgb() : r(0), g(0), b(0) {}
FMT_CONSTEXPR rgb(uint8_t r_, uint8_t g_, uint8_t b_) : r(r_), g(g_), b(b_) {}
FMT_CONSTEXPR rgb(uint32_t hex)
: r((hex >> 16) & 0xFF), g((hex >> 8) & 0xFF), b(hex & 0xFF) {}
FMT_CONSTEXPR rgb(color hex)
: r((uint32_t(hex) >> 16) & 0xFF),
g((uint32_t(hex) >> 8) & 0xFF),
b(uint32_t(hex) & 0xFF) {}
uint8_t r;
uint8_t g;
uint8_t b;
};
namespace detail {
// color is a struct of either a rgb color or a terminal color.
struct color_type {
FMT_CONSTEXPR color_type() FMT_NOEXCEPT : is_rgb(), value{} {}
FMT_CONSTEXPR color_type(color rgb_color) FMT_NOEXCEPT : is_rgb(true),
value{} {
value.rgb_color = static_cast<uint32_t>(rgb_color);
}
FMT_CONSTEXPR color_type(rgb rgb_color) FMT_NOEXCEPT : is_rgb(true), value{} {
value.rgb_color = (static_cast<uint32_t>(rgb_color.r) << 16) |
(static_cast<uint32_t>(rgb_color.g) << 8) | rgb_color.b;
}
FMT_CONSTEXPR color_type(terminal_color term_color) FMT_NOEXCEPT : is_rgb(),
value{} {
value.term_color = static_cast<uint8_t>(term_color);
}
bool is_rgb;
union color_union {
uint8_t term_color;
uint32_t rgb_color;
} value;
};
} // namespace detail
// Experimental text formatting support.
class text_style {
public:
FMT_CONSTEXPR text_style(emphasis em = emphasis()) FMT_NOEXCEPT
: set_foreground_color(),
set_background_color(),
ems(em) {}
FMT_CONSTEXPR text_style& operator|=(const text_style& rhs) {
if (!set_foreground_color) {
set_foreground_color = rhs.set_foreground_color;
foreground_color = rhs.foreground_color;
} else if (rhs.set_foreground_color) {
if (!foreground_color.is_rgb || !rhs.foreground_color.is_rgb)
FMT_THROW(format_error("can't OR a terminal color"));
foreground_color.value.rgb_color |= rhs.foreground_color.value.rgb_color;
}
if (!set_background_color) {
set_background_color = rhs.set_background_color;
background_color = rhs.background_color;
} else if (rhs.set_background_color) {
if (!background_color.is_rgb || !rhs.background_color.is_rgb)
FMT_THROW(format_error("can't OR a terminal color"));
background_color.value.rgb_color |= rhs.background_color.value.rgb_color;
}
ems = static_cast<emphasis>(static_cast<uint8_t>(ems) |
static_cast<uint8_t>(rhs.ems));
return *this;
}
friend FMT_CONSTEXPR text_style operator|(text_style lhs,
const text_style& rhs) {
return lhs |= rhs;
}
FMT_CONSTEXPR text_style& operator&=(const text_style& rhs) {
if (!set_foreground_color) {
set_foreground_color = rhs.set_foreground_color;
foreground_color = rhs.foreground_color;
} else if (rhs.set_foreground_color) {
if (!foreground_color.is_rgb || !rhs.foreground_color.is_rgb)
FMT_THROW(format_error("can't AND a terminal color"));
foreground_color.value.rgb_color &= rhs.foreground_color.value.rgb_color;
}
if (!set_background_color) {
set_background_color = rhs.set_background_color;
background_color = rhs.background_color;
} else if (rhs.set_background_color) {
if (!background_color.is_rgb || !rhs.background_color.is_rgb)
FMT_THROW(format_error("can't AND a terminal color"));
background_color.value.rgb_color &= rhs.background_color.value.rgb_color;
}
ems = static_cast<emphasis>(static_cast<uint8_t>(ems) &
static_cast<uint8_t>(rhs.ems));
return *this;
}
friend FMT_CONSTEXPR text_style operator&(text_style lhs,
const text_style& rhs) {
return lhs &= rhs;
}
FMT_CONSTEXPR bool has_foreground() const FMT_NOEXCEPT {
return set_foreground_color;
}
FMT_CONSTEXPR bool has_background() const FMT_NOEXCEPT {
return set_background_color;
}
FMT_CONSTEXPR bool has_emphasis() const FMT_NOEXCEPT {
return static_cast<uint8_t>(ems) != 0;
}
FMT_CONSTEXPR detail::color_type get_foreground() const FMT_NOEXCEPT {
FMT_ASSERT(has_foreground(), "no foreground specified for this style");
return foreground_color;
}
FMT_CONSTEXPR detail::color_type get_background() const FMT_NOEXCEPT {
FMT_ASSERT(has_background(), "no background specified for this style");
return background_color;
}
FMT_CONSTEXPR emphasis get_emphasis() const FMT_NOEXCEPT {
FMT_ASSERT(has_emphasis(), "no emphasis specified for this style");
return ems;
}
private:
FMT_CONSTEXPR text_style(bool is_foreground,
detail::color_type text_color) FMT_NOEXCEPT
: set_foreground_color(),
set_background_color(),
ems() {
if (is_foreground) {
foreground_color = text_color;
set_foreground_color = true;
} else {
background_color = text_color;
set_background_color = true;
}
}
friend FMT_CONSTEXPR_DECL text_style fg(detail::color_type foreground)
FMT_NOEXCEPT;
friend FMT_CONSTEXPR_DECL text_style bg(detail::color_type background)
FMT_NOEXCEPT;
detail::color_type foreground_color;
detail::color_type background_color;
bool set_foreground_color;
bool set_background_color;
emphasis ems;
};
FMT_CONSTEXPR text_style fg(detail::color_type foreground) FMT_NOEXCEPT {
return text_style(/*is_foreground=*/true, foreground);
}
FMT_CONSTEXPR text_style bg(detail::color_type background) FMT_NOEXCEPT {
return text_style(/*is_foreground=*/false, background);
}
FMT_CONSTEXPR text_style operator|(emphasis lhs, emphasis rhs) FMT_NOEXCEPT {
return text_style(lhs) | rhs;
}
namespace detail {
template <typename Char> struct ansi_color_escape {
FMT_CONSTEXPR ansi_color_escape(detail::color_type text_color,
const char* esc) FMT_NOEXCEPT {
// If we have a terminal color, we need to output another escape code
// sequence.
if (!text_color.is_rgb) {
bool is_background = esc == detail::data::background_color;
uint32_t value = text_color.value.term_color;
// Background ASCII codes are the same as the foreground ones but with
// 10 more.
if (is_background) value += 10u;
size_t index = 0;
buffer[index++] = static_cast<Char>('\x1b');
buffer[index++] = static_cast<Char>('[');
if (value >= 100u) {
buffer[index++] = static_cast<Char>('1');
value %= 100u;
}
buffer[index++] = static_cast<Char>('0' + value / 10u);
buffer[index++] = static_cast<Char>('0' + value % 10u);
buffer[index++] = static_cast<Char>('m');
buffer[index++] = static_cast<Char>('\0');
return;
}
for (int i = 0; i < 7; i++) {
buffer[i] = static_cast<Char>(esc[i]);
}
rgb color(text_color.value.rgb_color);
to_esc(color.r, buffer + 7, ';');
to_esc(color.g, buffer + 11, ';');
to_esc(color.b, buffer + 15, 'm');
buffer[19] = static_cast<Char>(0);
}
FMT_CONSTEXPR ansi_color_escape(emphasis em) FMT_NOEXCEPT {
uint8_t em_codes[4] = {};
uint8_t em_bits = static_cast<uint8_t>(em);
if (em_bits & static_cast<uint8_t>(emphasis::bold)) em_codes[0] = 1;
if (em_bits & static_cast<uint8_t>(emphasis::italic)) em_codes[1] = 3;
if (em_bits & static_cast<uint8_t>(emphasis::underline)) em_codes[2] = 4;
if (em_bits & static_cast<uint8_t>(emphasis::strikethrough))
em_codes[3] = 9;
size_t index = 0;
for (int i = 0; i < 4; ++i) {
if (!em_codes[i]) continue;
buffer[index++] = static_cast<Char>('\x1b');
buffer[index++] = static_cast<Char>('[');
buffer[index++] = static_cast<Char>('0' + em_codes[i]);
buffer[index++] = static_cast<Char>('m');
}
buffer[index++] = static_cast<Char>(0);
}
FMT_CONSTEXPR operator const Char*() const FMT_NOEXCEPT { return buffer; }
FMT_CONSTEXPR const Char* begin() const FMT_NOEXCEPT { return buffer; }
FMT_CONSTEXPR const Char* end() const FMT_NOEXCEPT {
return buffer + std::char_traits<Char>::length(buffer);
}
private:
Char buffer[7u + 3u * 4u + 1u];
static FMT_CONSTEXPR void to_esc(uint8_t c, Char* out,
char delimiter) FMT_NOEXCEPT {
out[0] = static_cast<Char>('0' + c / 100);
out[1] = static_cast<Char>('0' + c / 10 % 10);
out[2] = static_cast<Char>('0' + c % 10);
out[3] = static_cast<Char>(delimiter);
}
};
template <typename Char>
FMT_CONSTEXPR ansi_color_escape<Char> make_foreground_color(
detail::color_type foreground) FMT_NOEXCEPT {
return ansi_color_escape<Char>(foreground, detail::data::foreground_color);
}
template <typename Char>
FMT_CONSTEXPR ansi_color_escape<Char> make_background_color(
detail::color_type background) FMT_NOEXCEPT {
return ansi_color_escape<Char>(background, detail::data::background_color);
}
template <typename Char>
FMT_CONSTEXPR ansi_color_escape<Char> make_emphasis(emphasis em) FMT_NOEXCEPT {
return ansi_color_escape<Char>(em);
}
template <typename Char>
inline void fputs(const Char* chars, FILE* stream) FMT_NOEXCEPT {
std::fputs(chars, stream);
}
template <>
inline void fputs<wchar_t>(const wchar_t* chars, FILE* stream) FMT_NOEXCEPT {
std::fputws(chars, stream);
}
template <typename Char> inline void reset_color(FILE* stream) FMT_NOEXCEPT {
fputs(detail::data::reset_color, stream);
}
template <> inline void reset_color<wchar_t>(FILE* stream) FMT_NOEXCEPT {
fputs(detail::data::wreset_color, stream);
}
template <typename Char>
inline void reset_color(buffer<Char>& buffer) FMT_NOEXCEPT {
const char* begin = data::reset_color;
const char* end = begin + sizeof(data::reset_color) - 1;
buffer.append(begin, end);
}
template <typename Char>
void vformat_to(buffer<Char>& buf, const text_style& ts,
basic_string_view<Char> format_str,
basic_format_args<buffer_context<type_identity_t<Char>>> args) {
bool has_style = false;
if (ts.has_emphasis()) {
has_style = true;
auto emphasis = detail::make_emphasis<Char>(ts.get_emphasis());
buf.append(emphasis.begin(), emphasis.end());
}
if (ts.has_foreground()) {
has_style = true;
auto foreground = detail::make_foreground_color<Char>(ts.get_foreground());
buf.append(foreground.begin(), foreground.end());
}
if (ts.has_background()) {
has_style = true;
auto background = detail::make_background_color<Char>(ts.get_background());
buf.append(background.begin(), background.end());
}
detail::vformat_to(buf, format_str, args);
if (has_style) detail::reset_color<Char>(buf);
}
} // namespace detail
template <typename S, typename Char = char_t<S>>
void vprint(std::FILE* f, const text_style& ts, const S& format,
basic_format_args<buffer_context<type_identity_t<Char>>> args) {
basic_memory_buffer<Char> buf;
detail::vformat_to(buf, ts, to_string_view(format), args);
buf.push_back(Char(0));
detail::fputs(buf.data(), f);
}
/**
\rst
Formats a string and prints it to the specified file stream using ANSI
escape sequences to specify text formatting.
**Example**::
fmt::print(fmt::emphasis::bold | fg(fmt::color::red),
"Elapsed time: {0:.2f} seconds", 1.23);
\endrst
*/
template <typename S, typename... Args,
FMT_ENABLE_IF(detail::is_string<S>::value)>
void print(std::FILE* f, const text_style& ts, const S& format_str,
const Args&... args) {
vprint(f, ts, format_str,
fmt::make_args_checked<Args...>(format_str, args...));
}
/**
Formats a string and prints it to stdout using ANSI escape sequences to
specify text formatting.
Example:
fmt::print(fmt::emphasis::bold | fg(fmt::color::red),
"Elapsed time: {0:.2f} seconds", 1.23);
*/
template <typename S, typename... Args,
FMT_ENABLE_IF(detail::is_string<S>::value)>
void print(const text_style& ts, const S& format_str, const Args&... args) {
return print(stdout, ts, format_str, args...);
}
template <typename S, typename Char = char_t<S>>
inline std::basic_string<Char> vformat(
const text_style& ts, const S& format_str,
basic_format_args<buffer_context<type_identity_t<Char>>> args) {
basic_memory_buffer<Char> buf;
detail::vformat_to(buf, ts, to_string_view(format_str), args);
return fmt::to_string(buf);
}
/**
\rst
Formats arguments and returns the result as a string using ANSI
escape sequences to specify text formatting.
**Example**::
#include <fmt/color.h>
std::string message = fmt::format(fmt::emphasis::bold | fg(fmt::color::red),
"The answer is {}", 42);
\endrst
*/
template <typename S, typename... Args, typename Char = char_t<S>>
inline std::basic_string<Char> format(const text_style& ts, const S& format_str,
const Args&... args) {
return vformat(ts, to_string_view(format_str),
fmt::make_args_checked<Args...>(format_str, args...));
}
/**
Formats a string with the given text_style and writes the output to ``out``.
*/
template <typename OutputIt, typename Char,
FMT_ENABLE_IF(detail::is_output_iterator<OutputIt, Char>::value)>
OutputIt vformat_to(
OutputIt out, const text_style& ts, basic_string_view<Char> format_str,
basic_format_args<buffer_context<type_identity_t<Char>>> args) {
decltype(detail::get_buffer<Char>(out)) buf(detail::get_buffer_init(out));
detail::vformat_to(buf, ts, format_str, args);
return detail::get_iterator(buf);
}
/**
\rst
Formats arguments with the given text_style, writes the result to the output
iterator ``out`` and returns the iterator past the end of the output range.
**Example**::
std::vector<char> out;
fmt::format_to(std::back_inserter(out),
fmt::emphasis::bold | fg(fmt::color::red), "{}", 42);
\endrst
*/
template <typename OutputIt, typename S, typename... Args,
bool enable = detail::is_output_iterator<OutputIt, char_t<S>>::value&&
detail::is_string<S>::value>
inline auto format_to(OutputIt out, const text_style& ts, const S& format_str,
Args&&... args) ->
typename std::enable_if<enable, OutputIt>::type {
return vformat_to(out, ts, to_string_view(format_str),
fmt::make_args_checked<Args...>(format_str, args...));
}
FMT_END_NAMESPACE
#endif // FMT_COLOR_H_

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@@ -0,0 +1,701 @@
// Formatting library for C++ - experimental format string compilation
//
// Copyright (c) 2012 - present, Victor Zverovich and fmt contributors
// All rights reserved.
//
// For the license information refer to format.h.
#ifndef FMT_COMPILE_H_
#define FMT_COMPILE_H_
#include <vector>
#include "format.h"
FMT_BEGIN_NAMESPACE
namespace detail {
// A compile-time string which is compiled into fast formatting code.
class compiled_string {};
template <typename S>
struct is_compiled_string : std::is_base_of<compiled_string, S> {};
/**
\rst
Converts a string literal *s* into a format string that will be parsed at
compile time and converted into efficient formatting code. Requires C++17
``constexpr if`` compiler support.
**Example**::
// Converts 42 into std::string using the most efficient method and no
// runtime format string processing.
std::string s = fmt::format(FMT_COMPILE("{}"), 42);
\endrst
*/
#define FMT_COMPILE(s) FMT_STRING_IMPL(s, fmt::detail::compiled_string)
template <typename T, typename... Tail>
const T& first(const T& value, const Tail&...) {
return value;
}
// Part of a compiled format string. It can be either literal text or a
// replacement field.
template <typename Char> struct format_part {
enum class kind { arg_index, arg_name, text, replacement };
struct replacement {
arg_ref<Char> arg_id;
dynamic_format_specs<Char> specs;
};
kind part_kind;
union value {
int arg_index;
basic_string_view<Char> str;
replacement repl;
FMT_CONSTEXPR value(int index = 0) : arg_index(index) {}
FMT_CONSTEXPR value(basic_string_view<Char> s) : str(s) {}
FMT_CONSTEXPR value(replacement r) : repl(r) {}
} val;
// Position past the end of the argument id.
const Char* arg_id_end = nullptr;
FMT_CONSTEXPR format_part(kind k = kind::arg_index, value v = {})
: part_kind(k), val(v) {}
static FMT_CONSTEXPR format_part make_arg_index(int index) {
return format_part(kind::arg_index, index);
}
static FMT_CONSTEXPR format_part make_arg_name(basic_string_view<Char> name) {
return format_part(kind::arg_name, name);
}
static FMT_CONSTEXPR format_part make_text(basic_string_view<Char> text) {
return format_part(kind::text, text);
}
static FMT_CONSTEXPR format_part make_replacement(replacement repl) {
return format_part(kind::replacement, repl);
}
};
template <typename Char> struct part_counter {
unsigned num_parts = 0;
FMT_CONSTEXPR void on_text(const Char* begin, const Char* end) {
if (begin != end) ++num_parts;
}
FMT_CONSTEXPR int on_arg_id() { return ++num_parts, 0; }
FMT_CONSTEXPR int on_arg_id(int) { return ++num_parts, 0; }
FMT_CONSTEXPR int on_arg_id(basic_string_view<Char>) {
return ++num_parts, 0;
}
FMT_CONSTEXPR void on_replacement_field(int, const Char*) {}
FMT_CONSTEXPR const Char* on_format_specs(int, const Char* begin,
const Char* end) {
// Find the matching brace.
unsigned brace_counter = 0;
for (; begin != end; ++begin) {
if (*begin == '{') {
++brace_counter;
} else if (*begin == '}') {
if (brace_counter == 0u) break;
--brace_counter;
}
}
return begin;
}
FMT_CONSTEXPR void on_error(const char*) {}
};
// Counts the number of parts in a format string.
template <typename Char>
FMT_CONSTEXPR unsigned count_parts(basic_string_view<Char> format_str) {
part_counter<Char> counter;
parse_format_string<true>(format_str, counter);
return counter.num_parts;
}
template <typename Char, typename PartHandler>
class format_string_compiler : public error_handler {
private:
using part = format_part<Char>;
PartHandler handler_;
part part_;
basic_string_view<Char> format_str_;
basic_format_parse_context<Char> parse_context_;
public:
FMT_CONSTEXPR format_string_compiler(basic_string_view<Char> format_str,
PartHandler handler)
: handler_(handler),
format_str_(format_str),
parse_context_(format_str) {}
FMT_CONSTEXPR void on_text(const Char* begin, const Char* end) {
if (begin != end)
handler_(part::make_text({begin, to_unsigned(end - begin)}));
}
FMT_CONSTEXPR int on_arg_id() {
part_ = part::make_arg_index(parse_context_.next_arg_id());
return 0;
}
FMT_CONSTEXPR int on_arg_id(int id) {
parse_context_.check_arg_id(id);
part_ = part::make_arg_index(id);
return 0;
}
FMT_CONSTEXPR int on_arg_id(basic_string_view<Char> id) {
part_ = part::make_arg_name(id);
return 0;
}
FMT_CONSTEXPR void on_replacement_field(int, const Char* ptr) {
part_.arg_id_end = ptr;
handler_(part_);
}
FMT_CONSTEXPR const Char* on_format_specs(int, const Char* begin,
const Char* end) {
auto repl = typename part::replacement();
dynamic_specs_handler<basic_format_parse_context<Char>> handler(
repl.specs, parse_context_);
auto it = parse_format_specs(begin, end, handler);
if (*it != '}') on_error("missing '}' in format string");
repl.arg_id = part_.part_kind == part::kind::arg_index
? arg_ref<Char>(part_.val.arg_index)
: arg_ref<Char>(part_.val.str);
auto part = part::make_replacement(repl);
part.arg_id_end = begin;
handler_(part);
return it;
}
};
// Compiles a format string and invokes handler(part) for each parsed part.
template <bool IS_CONSTEXPR, typename Char, typename PartHandler>
FMT_CONSTEXPR void compile_format_string(basic_string_view<Char> format_str,
PartHandler handler) {
parse_format_string<IS_CONSTEXPR>(
format_str,
format_string_compiler<Char, PartHandler>(format_str, handler));
}
template <typename OutputIt, typename Context, typename Id>
void format_arg(
basic_format_parse_context<typename Context::char_type>& parse_ctx,
Context& ctx, Id arg_id) {
ctx.advance_to(visit_format_arg(
arg_formatter<OutputIt, typename Context::char_type>(ctx, &parse_ctx),
ctx.arg(arg_id)));
}
// vformat_to is defined in a subnamespace to prevent ADL.
namespace cf {
template <typename Context, typename OutputIt, typename CompiledFormat>
auto vformat_to(OutputIt out, CompiledFormat& cf,
basic_format_args<Context> args) -> typename Context::iterator {
using char_type = typename Context::char_type;
basic_format_parse_context<char_type> parse_ctx(
to_string_view(cf.format_str_));
Context ctx(out, args);
const auto& parts = cf.parts();
for (auto part_it = std::begin(parts); part_it != std::end(parts);
++part_it) {
const auto& part = *part_it;
const auto& value = part.val;
using format_part_t = format_part<char_type>;
switch (part.part_kind) {
case format_part_t::kind::text: {
const auto text = value.str;
auto output = ctx.out();
auto&& it = reserve(output, text.size());
it = std::copy_n(text.begin(), text.size(), it);
ctx.advance_to(output);
break;
}
case format_part_t::kind::arg_index:
advance_to(parse_ctx, part.arg_id_end);
detail::format_arg<OutputIt>(parse_ctx, ctx, value.arg_index);
break;
case format_part_t::kind::arg_name:
advance_to(parse_ctx, part.arg_id_end);
detail::format_arg<OutputIt>(parse_ctx, ctx, value.str);
break;
case format_part_t::kind::replacement: {
const auto& arg_id_value = value.repl.arg_id.val;
const auto arg = value.repl.arg_id.kind == arg_id_kind::index
? ctx.arg(arg_id_value.index)
: ctx.arg(arg_id_value.name);
auto specs = value.repl.specs;
handle_dynamic_spec<width_checker>(specs.width, specs.width_ref, ctx);
handle_dynamic_spec<precision_checker>(specs.precision,
specs.precision_ref, ctx);
error_handler h;
numeric_specs_checker<error_handler> checker(h, arg.type());
if (specs.align == align::numeric) checker.require_numeric_argument();
if (specs.sign != sign::none) checker.check_sign();
if (specs.alt) checker.require_numeric_argument();
if (specs.precision >= 0) checker.check_precision();
advance_to(parse_ctx, part.arg_id_end);
ctx.advance_to(
visit_format_arg(arg_formatter<OutputIt, typename Context::char_type>(
ctx, nullptr, &specs),
arg));
break;
}
}
}
return ctx.out();
}
} // namespace cf
struct basic_compiled_format {};
template <typename S, typename = void>
struct compiled_format_base : basic_compiled_format {
using char_type = char_t<S>;
using parts_container = std::vector<detail::format_part<char_type>>;
parts_container compiled_parts;
explicit compiled_format_base(basic_string_view<char_type> format_str) {
compile_format_string<false>(format_str,
[this](const format_part<char_type>& part) {
compiled_parts.push_back(part);
});
}
const parts_container& parts() const { return compiled_parts; }
};
template <typename Char, unsigned N> struct format_part_array {
format_part<Char> data[N] = {};
FMT_CONSTEXPR format_part_array() = default;
};
template <typename Char, unsigned N>
FMT_CONSTEXPR format_part_array<Char, N> compile_to_parts(
basic_string_view<Char> format_str) {
format_part_array<Char, N> parts;
unsigned counter = 0;
// This is not a lambda for compatibility with older compilers.
struct {
format_part<Char>* parts;
unsigned* counter;
FMT_CONSTEXPR void operator()(const format_part<Char>& part) {
parts[(*counter)++] = part;
}
} collector{parts.data, &counter};
compile_format_string<true>(format_str, collector);
if (counter < N) {
parts.data[counter] =
format_part<Char>::make_text(basic_string_view<Char>());
}
return parts;
}
template <typename T> constexpr const T& constexpr_max(const T& a, const T& b) {
return (a < b) ? b : a;
}
template <typename S>
struct compiled_format_base<S, enable_if_t<is_compile_string<S>::value>>
: basic_compiled_format {
using char_type = char_t<S>;
FMT_CONSTEXPR explicit compiled_format_base(basic_string_view<char_type>) {}
// Workaround for old compilers. Format string compilation will not be
// performed there anyway.
#if FMT_USE_CONSTEXPR
static FMT_CONSTEXPR_DECL const unsigned num_format_parts =
constexpr_max(count_parts(to_string_view(S())), 1u);
#else
static const unsigned num_format_parts = 1;
#endif
using parts_container = format_part<char_type>[num_format_parts];
const parts_container& parts() const {
static FMT_CONSTEXPR_DECL const auto compiled_parts =
compile_to_parts<char_type, num_format_parts>(
detail::to_string_view(S()));
return compiled_parts.data;
}
};
template <typename S, typename... Args>
class compiled_format : private compiled_format_base<S> {
public:
using typename compiled_format_base<S>::char_type;
private:
basic_string_view<char_type> format_str_;
template <typename Context, typename OutputIt, typename CompiledFormat>
friend auto cf::vformat_to(OutputIt out, CompiledFormat& cf,
basic_format_args<Context> args) ->
typename Context::iterator;
public:
compiled_format() = delete;
explicit constexpr compiled_format(basic_string_view<char_type> format_str)
: compiled_format_base<S>(format_str), format_str_(format_str) {}
};
#ifdef __cpp_if_constexpr
template <typename... Args> struct type_list {};
// Returns a reference to the argument at index N from [first, rest...].
template <int N, typename T, typename... Args>
constexpr const auto& get([[maybe_unused]] const T& first,
[[maybe_unused]] const Args&... rest) {
static_assert(N < 1 + sizeof...(Args), "index is out of bounds");
if constexpr (N == 0)
return first;
else
return get<N - 1>(rest...);
}
template <int N, typename> struct get_type_impl;
template <int N, typename... Args> struct get_type_impl<N, type_list<Args...>> {
using type = remove_cvref_t<decltype(get<N>(std::declval<Args>()...))>;
};
template <int N, typename T>
using get_type = typename get_type_impl<N, T>::type;
template <typename T> struct is_compiled_format : std::false_type {};
template <typename Char> struct text {
basic_string_view<Char> data;
using char_type = Char;
template <typename OutputIt, typename... Args>
OutputIt format(OutputIt out, const Args&...) const {
return write<Char>(out, data);
}
};
template <typename Char>
struct is_compiled_format<text<Char>> : std::true_type {};
template <typename Char>
constexpr text<Char> make_text(basic_string_view<Char> s, size_t pos,
size_t size) {
return {{&s[pos], size}};
}
template <typename Char> struct code_unit {
Char value;
using char_type = Char;
template <typename OutputIt, typename... Args>
OutputIt format(OutputIt out, const Args&...) const {
return write<Char>(out, value);
}
};
template <typename Char>
struct is_compiled_format<code_unit<Char>> : std::true_type {};
// A replacement field that refers to argument N.
template <typename Char, typename T, int N> struct field {
using char_type = Char;
template <typename OutputIt, typename... Args>
OutputIt format(OutputIt out, const Args&... args) const {
// This ensures that the argument type is convertile to `const T&`.
const T& arg = get<N>(args...);
return write<Char>(out, arg);
}
};
template <typename Char, typename T, int N>
struct is_compiled_format<field<Char, T, N>> : std::true_type {};
// A replacement field that refers to argument N and has format specifiers.
template <typename Char, typename T, int N> struct spec_field {
using char_type = Char;
mutable formatter<T, Char> fmt;
template <typename OutputIt, typename... Args>
OutputIt format(OutputIt out, const Args&... args) const {
// This ensures that the argument type is convertile to `const T&`.
const T& arg = get<N>(args...);
const auto& vargs =
make_format_args<basic_format_context<OutputIt, Char>>(args...);
basic_format_context<OutputIt, Char> ctx(out, vargs);
return fmt.format(arg, ctx);
}
};
template <typename Char, typename T, int N>
struct is_compiled_format<spec_field<Char, T, N>> : std::true_type {};
template <typename L, typename R> struct concat {
L lhs;
R rhs;
using char_type = typename L::char_type;
template <typename OutputIt, typename... Args>
OutputIt format(OutputIt out, const Args&... args) const {
out = lhs.format(out, args...);
return rhs.format(out, args...);
}
};
template <typename L, typename R>
struct is_compiled_format<concat<L, R>> : std::true_type {};
template <typename L, typename R>
constexpr concat<L, R> make_concat(L lhs, R rhs) {
return {lhs, rhs};
}
struct unknown_format {};
template <typename Char>
constexpr size_t parse_text(basic_string_view<Char> str, size_t pos) {
for (size_t size = str.size(); pos != size; ++pos) {
if (str[pos] == '{' || str[pos] == '}') break;
}
return pos;
}
template <typename Args, size_t POS, int ID, typename S>
constexpr auto compile_format_string(S format_str);
template <typename Args, size_t POS, int ID, typename T, typename S>
constexpr auto parse_tail(T head, S format_str) {
if constexpr (POS !=
basic_string_view<typename S::char_type>(format_str).size()) {
constexpr auto tail = compile_format_string<Args, POS, ID>(format_str);
if constexpr (std::is_same<remove_cvref_t<decltype(tail)>,
unknown_format>())
return tail;
else
return make_concat(head, tail);
} else {
return head;
}
}
template <typename T, typename Char> struct parse_specs_result {
formatter<T, Char> fmt;
size_t end;
int next_arg_id;
};
template <typename T, typename Char>
constexpr parse_specs_result<T, Char> parse_specs(basic_string_view<Char> str,
size_t pos, int arg_id) {
str.remove_prefix(pos);
auto ctx = basic_format_parse_context<Char>(str, {}, arg_id + 1);
auto f = formatter<T, Char>();
auto end = f.parse(ctx);
return {f, pos + (end - str.data()) + 1, ctx.next_arg_id()};
}
// Compiles a non-empty format string and returns the compiled representation
// or unknown_format() on unrecognized input.
template <typename Args, size_t POS, int ID, typename S>
constexpr auto compile_format_string(S format_str) {
using char_type = typename S::char_type;
constexpr basic_string_view<char_type> str = format_str;
if constexpr (str[POS] == '{') {
if (POS + 1 == str.size())
throw format_error("unmatched '{' in format string");
if constexpr (str[POS + 1] == '{') {
return parse_tail<Args, POS + 2, ID>(make_text(str, POS, 1), format_str);
} else if constexpr (str[POS + 1] == '}') {
using type = get_type<ID, Args>;
return parse_tail<Args, POS + 2, ID + 1>(field<char_type, type, ID>(),
format_str);
} else if constexpr (str[POS + 1] == ':') {
using type = get_type<ID, Args>;
constexpr auto result = parse_specs<type>(str, POS + 2, ID);
return parse_tail<Args, result.end, result.next_arg_id>(
spec_field<char_type, type, ID>{result.fmt}, format_str);
} else {
return unknown_format();
}
} else if constexpr (str[POS] == '}') {
if (POS + 1 == str.size())
throw format_error("unmatched '}' in format string");
return parse_tail<Args, POS + 2, ID>(make_text(str, POS, 1), format_str);
} else {
constexpr auto end = parse_text(str, POS + 1);
if constexpr (end - POS > 1) {
return parse_tail<Args, end, ID>(make_text(str, POS, end - POS),
format_str);
} else {
return parse_tail<Args, end, ID>(code_unit<char_type>{str[POS]},
format_str);
}
}
}
template <typename... Args, typename S,
FMT_ENABLE_IF(is_compile_string<S>::value ||
detail::is_compiled_string<S>::value)>
constexpr auto compile(S format_str) {
constexpr basic_string_view<typename S::char_type> str = format_str;
if constexpr (str.size() == 0) {
return detail::make_text(str, 0, 0);
} else {
constexpr auto result =
detail::compile_format_string<detail::type_list<Args...>, 0, 0>(
format_str);
if constexpr (std::is_same<remove_cvref_t<decltype(result)>,
detail::unknown_format>()) {
return detail::compiled_format<S, Args...>(to_string_view(format_str));
} else {
return result;
}
}
}
#else
template <typename... Args, typename S,
FMT_ENABLE_IF(is_compile_string<S>::value)>
constexpr auto compile(S format_str) -> detail::compiled_format<S, Args...> {
return detail::compiled_format<S, Args...>(to_string_view(format_str));
}
#endif // __cpp_if_constexpr
// Compiles the format string which must be a string literal.
template <typename... Args, typename Char, size_t N>
auto compile(const Char (&format_str)[N])
-> detail::compiled_format<const Char*, Args...> {
return detail::compiled_format<const Char*, Args...>(
basic_string_view<Char>(format_str, N - 1));
}
} // namespace detail
// DEPRECATED! use FMT_COMPILE instead.
template <typename... Args>
FMT_DEPRECATED auto compile(const Args&... args)
-> decltype(detail::compile(args...)) {
return detail::compile(args...);
}
#if FMT_USE_CONSTEXPR
# ifdef __cpp_if_constexpr
template <typename CompiledFormat, typename... Args,
typename Char = typename CompiledFormat::char_type,
FMT_ENABLE_IF(detail::is_compiled_format<CompiledFormat>::value)>
FMT_INLINE std::basic_string<Char> format(const CompiledFormat& cf,
const Args&... args) {
basic_memory_buffer<Char> buffer;
cf.format(detail::buffer_appender<Char>(buffer), args...);
return to_string(buffer);
}
template <typename OutputIt, typename CompiledFormat, typename... Args,
FMT_ENABLE_IF(detail::is_compiled_format<CompiledFormat>::value)>
OutputIt format_to(OutputIt out, const CompiledFormat& cf,
const Args&... args) {
return cf.format(out, args...);
}
# endif // __cpp_if_constexpr
#endif // FMT_USE_CONSTEXPR
template <typename CompiledFormat, typename... Args,
typename Char = typename CompiledFormat::char_type,
FMT_ENABLE_IF(std::is_base_of<detail::basic_compiled_format,
CompiledFormat>::value)>
std::basic_string<Char> format(const CompiledFormat& cf, const Args&... args) {
basic_memory_buffer<Char> buffer;
using context = buffer_context<Char>;
detail::cf::vformat_to<context>(detail::buffer_appender<Char>(buffer), cf,
make_format_args<context>(args...));
return to_string(buffer);
}
template <typename S, typename... Args,
FMT_ENABLE_IF(detail::is_compiled_string<S>::value)>
FMT_INLINE std::basic_string<typename S::char_type> format(const S&,
Args&&... args) {
#ifdef __cpp_if_constexpr
if constexpr (std::is_same<typename S::char_type, char>::value) {
constexpr basic_string_view<typename S::char_type> str = S();
if (str.size() == 2 && str[0] == '{' && str[1] == '}')
return fmt::to_string(detail::first(args...));
}
#endif
constexpr auto compiled = detail::compile<Args...>(S());
return format(compiled, std::forward<Args>(args)...);
}
template <typename OutputIt, typename CompiledFormat, typename... Args,
FMT_ENABLE_IF(std::is_base_of<detail::basic_compiled_format,
CompiledFormat>::value)>
OutputIt format_to(OutputIt out, const CompiledFormat& cf,
const Args&... args) {
using char_type = typename CompiledFormat::char_type;
using context = format_context_t<OutputIt, char_type>;
return detail::cf::vformat_to<context>(out, cf,
make_format_args<context>(args...));
}
template <typename OutputIt, typename S, typename... Args,
FMT_ENABLE_IF(detail::is_compiled_string<S>::value)>
OutputIt format_to(OutputIt out, const S&, const Args&... args) {
constexpr auto compiled = detail::compile<Args...>(S());
return format_to(out, compiled, args...);
}
template <typename OutputIt, typename CompiledFormat, typename... Args>
auto format_to_n(OutputIt out, size_t n, const CompiledFormat& cf,
const Args&... args) ->
typename std::enable_if<
detail::is_output_iterator<OutputIt,
typename CompiledFormat::char_type>::value &&
std::is_base_of<detail::basic_compiled_format,
CompiledFormat>::value,
format_to_n_result<OutputIt>>::type {
auto it =
format_to(detail::truncating_iterator<OutputIt>(out, n), cf, args...);
return {it.base(), it.count()};
}
template <typename OutputIt, typename S, typename... Args,
FMT_ENABLE_IF(detail::is_compiled_string<S>::value)>
format_to_n_result<OutputIt> format_to_n(OutputIt out, size_t n, const S&,
const Args&... args) {
constexpr auto compiled = detail::compile<Args...>(S());
auto it = format_to(detail::truncating_iterator<OutputIt>(out, n), compiled,
args...);
return {it.base(), it.count()};
}
template <typename CompiledFormat, typename... Args>
size_t formatted_size(const CompiledFormat& cf, const Args&... args) {
return format_to(detail::counting_iterator(), cf, args...).count();
}
FMT_END_NAMESPACE
#endif // FMT_COMPILE_H_

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// Formatting library for C++ - std::locale support
//
// Copyright (c) 2012 - present, Victor Zverovich
// All rights reserved.
//
// For the license information refer to format.h.
#ifndef FMT_LOCALE_H_
#define FMT_LOCALE_H_
#include <locale>
#include "format.h"
FMT_BEGIN_NAMESPACE
namespace detail {
template <typename Char>
std::basic_string<Char> vformat(
const std::locale& loc, basic_string_view<Char> format_str,
basic_format_args<buffer_context<type_identity_t<Char>>> args) {
basic_memory_buffer<Char> buffer;
detail::vformat_to(buffer, format_str, args, detail::locale_ref(loc));
return fmt::to_string(buffer);
}
} // namespace detail
template <typename S, typename Char = char_t<S>>
inline std::basic_string<Char> vformat(
const std::locale& loc, const S& format_str,
basic_format_args<buffer_context<type_identity_t<Char>>> args) {
return detail::vformat(loc, to_string_view(format_str), args);
}
template <typename S, typename... Args, typename Char = char_t<S>>
inline std::basic_string<Char> format(const std::locale& loc,
const S& format_str, Args&&... args) {
return detail::vformat(loc, to_string_view(format_str),
fmt::make_args_checked<Args...>(format_str, args...));
}
template <typename S, typename OutputIt, typename... Args,
typename Char = char_t<S>,
FMT_ENABLE_IF(detail::is_output_iterator<OutputIt, Char>::value)>
inline OutputIt vformat_to(
OutputIt out, const std::locale& loc, const S& format_str,
basic_format_args<buffer_context<type_identity_t<Char>>> args) {
decltype(detail::get_buffer<Char>(out)) buf(detail::get_buffer_init(out));
vformat_to(buf, to_string_view(format_str), args, detail::locale_ref(loc));
return detail::get_iterator(buf);
}
template <typename OutputIt, typename S, typename... Args,
bool enable = detail::is_output_iterator<OutputIt, char_t<S>>::value>
inline auto format_to(OutputIt out, const std::locale& loc,
const S& format_str, Args&&... args) ->
typename std::enable_if<enable, OutputIt>::type {
const auto& vargs = fmt::make_args_checked<Args...>(format_str, args...);
return vformat_to(out, loc, to_string_view(format_str), vargs);
}
FMT_END_NAMESPACE
#endif // FMT_LOCALE_H_

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// Formatting library for C++ - optional OS-specific functionality
//
// Copyright (c) 2012 - present, Victor Zverovich
// All rights reserved.
//
// For the license information refer to format.h.
#ifndef FMT_OS_H_
#define FMT_OS_H_
#if defined(__MINGW32__) || defined(__CYGWIN__)
// Workaround MinGW bug https://sourceforge.net/p/mingw/bugs/2024/.
# undef __STRICT_ANSI__
#endif
#include <cerrno>
#include <clocale> // for locale_t
#include <cstddef>
#include <cstdio>
#include <cstdlib> // for strtod_l
#if defined __APPLE__ || defined(__FreeBSD__)
# include <xlocale.h> // for LC_NUMERIC_MASK on OS X
#endif
#include "format.h"
// UWP doesn't provide _pipe.
#if FMT_HAS_INCLUDE("winapifamily.h")
# include <winapifamily.h>
#endif
#if (FMT_HAS_INCLUDE(<fcntl.h>) || defined(__APPLE__) || \
defined(__linux__)) && \
(!defined(WINAPI_FAMILY) || (WINAPI_FAMILY == WINAPI_FAMILY_DESKTOP_APP))
# include <fcntl.h> // for O_RDONLY
# define FMT_USE_FCNTL 1
#else
# define FMT_USE_FCNTL 0
#endif
#ifndef FMT_POSIX
# if defined(_WIN32) && !defined(__MINGW32__)
// Fix warnings about deprecated symbols.
# define FMT_POSIX(call) _##call
# else
# define FMT_POSIX(call) call
# endif
#endif
// Calls to system functions are wrapped in FMT_SYSTEM for testability.
#ifdef FMT_SYSTEM
# define FMT_POSIX_CALL(call) FMT_SYSTEM(call)
#else
# define FMT_SYSTEM(call) ::call
# ifdef _WIN32
// Fix warnings about deprecated symbols.
# define FMT_POSIX_CALL(call) ::_##call
# else
# define FMT_POSIX_CALL(call) ::call
# endif
#endif
// Retries the expression while it evaluates to error_result and errno
// equals to EINTR.
#ifndef _WIN32
# define FMT_RETRY_VAL(result, expression, error_result) \
do { \
(result) = (expression); \
} while ((result) == (error_result) && errno == EINTR)
#else
# define FMT_RETRY_VAL(result, expression, error_result) result = (expression)
#endif
#define FMT_RETRY(result, expression) FMT_RETRY_VAL(result, expression, -1)
FMT_BEGIN_NAMESPACE
/**
\rst
A reference to a null-terminated string. It can be constructed from a C
string or ``std::string``.
You can use one of the following type aliases for common character types:
+---------------+-----------------------------+
| Type | Definition |
+===============+=============================+
| cstring_view | basic_cstring_view<char> |
+---------------+-----------------------------+
| wcstring_view | basic_cstring_view<wchar_t> |
+---------------+-----------------------------+
This class is most useful as a parameter type to allow passing
different types of strings to a function, for example::
template <typename... Args>
std::string format(cstring_view format_str, const Args & ... args);
format("{}", 42);
format(std::string("{}"), 42);
\endrst
*/
template <typename Char> class basic_cstring_view {
private:
const Char* data_;
public:
/** Constructs a string reference object from a C string. */
basic_cstring_view(const Char* s) : data_(s) {}
/**
\rst
Constructs a string reference from an ``std::string`` object.
\endrst
*/
basic_cstring_view(const std::basic_string<Char>& s) : data_(s.c_str()) {}
/** Returns the pointer to a C string. */
const Char* c_str() const { return data_; }
};
using cstring_view = basic_cstring_view<char>;
using wcstring_view = basic_cstring_view<wchar_t>;
// An error code.
class error_code {
private:
int value_;
public:
explicit error_code(int value = 0) FMT_NOEXCEPT : value_(value) {}
int get() const FMT_NOEXCEPT { return value_; }
};
#ifdef _WIN32
namespace detail {
// A converter from UTF-16 to UTF-8.
// It is only provided for Windows since other systems support UTF-8 natively.
class utf16_to_utf8 {
private:
memory_buffer buffer_;
public:
utf16_to_utf8() {}
FMT_API explicit utf16_to_utf8(wstring_view s);
operator string_view() const { return string_view(&buffer_[0], size()); }
size_t size() const { return buffer_.size() - 1; }
const char* c_str() const { return &buffer_[0]; }
std::string str() const { return std::string(&buffer_[0], size()); }
// Performs conversion returning a system error code instead of
// throwing exception on conversion error. This method may still throw
// in case of memory allocation error.
FMT_API int convert(wstring_view s);
};
FMT_API void format_windows_error(buffer<char>& out, int error_code,
string_view message) FMT_NOEXCEPT;
} // namespace detail
/** A Windows error. */
class windows_error : public system_error {
private:
FMT_API void init(int error_code, string_view format_str, format_args args);
public:
/**
\rst
Constructs a :class:`fmt::windows_error` object with the description
of the form
.. parsed-literal::
*<message>*: *<system-message>*
where *<message>* is the formatted message and *<system-message>* is the
system message corresponding to the error code.
*error_code* is a Windows error code as given by ``GetLastError``.
If *error_code* is not a valid error code such as -1, the system message
will look like "error -1".
**Example**::
// This throws a windows_error with the description
// cannot open file 'madeup': The system cannot find the file specified.
// or similar (system message may vary).
const char *filename = "madeup";
LPOFSTRUCT of = LPOFSTRUCT();
HFILE file = OpenFile(filename, &of, OF_READ);
if (file == HFILE_ERROR) {
throw fmt::windows_error(GetLastError(),
"cannot open file '{}'", filename);
}
\endrst
*/
template <typename... Args>
windows_error(int error_code, string_view message, const Args&... args) {
init(error_code, message, make_format_args(args...));
}
};
// Reports a Windows error without throwing an exception.
// Can be used to report errors from destructors.
FMT_API void report_windows_error(int error_code,
string_view message) FMT_NOEXCEPT;
#endif // _WIN32
// A buffered file.
class buffered_file {
private:
FILE* file_;
friend class file;
explicit buffered_file(FILE* f) : file_(f) {}
public:
buffered_file(const buffered_file&) = delete;
void operator=(const buffered_file&) = delete;
// Constructs a buffered_file object which doesn't represent any file.
buffered_file() FMT_NOEXCEPT : file_(nullptr) {}
// Destroys the object closing the file it represents if any.
FMT_API ~buffered_file() FMT_NOEXCEPT;
public:
buffered_file(buffered_file&& other) FMT_NOEXCEPT : file_(other.file_) {
other.file_ = nullptr;
}
buffered_file& operator=(buffered_file&& other) {
close();
file_ = other.file_;
other.file_ = nullptr;
return *this;
}
// Opens a file.
FMT_API buffered_file(cstring_view filename, cstring_view mode);
// Closes the file.
FMT_API void close();
// Returns the pointer to a FILE object representing this file.
FILE* get() const FMT_NOEXCEPT { return file_; }
// We place parentheses around fileno to workaround a bug in some versions
// of MinGW that define fileno as a macro.
FMT_API int(fileno)() const;
void vprint(string_view format_str, format_args args) {
fmt::vprint(file_, format_str, args);
}
template <typename... Args>
inline void print(string_view format_str, const Args&... args) {
vprint(format_str, make_format_args(args...));
}
};
#if FMT_USE_FCNTL
// A file. Closed file is represented by a file object with descriptor -1.
// Methods that are not declared with FMT_NOEXCEPT may throw
// fmt::system_error in case of failure. Note that some errors such as
// closing the file multiple times will cause a crash on Windows rather
// than an exception. You can get standard behavior by overriding the
// invalid parameter handler with _set_invalid_parameter_handler.
class file {
private:
int fd_; // File descriptor.
// Constructs a file object with a given descriptor.
explicit file(int fd) : fd_(fd) {}
public:
// Possible values for the oflag argument to the constructor.
enum {
RDONLY = FMT_POSIX(O_RDONLY), // Open for reading only.
WRONLY = FMT_POSIX(O_WRONLY), // Open for writing only.
RDWR = FMT_POSIX(O_RDWR), // Open for reading and writing.
CREATE = FMT_POSIX(O_CREAT), // Create if the file doesn't exist.
APPEND = FMT_POSIX(O_APPEND) // Open in append mode.
};
// Constructs a file object which doesn't represent any file.
file() FMT_NOEXCEPT : fd_(-1) {}
// Opens a file and constructs a file object representing this file.
FMT_API file(cstring_view path, int oflag);
public:
file(const file&) = delete;
void operator=(const file&) = delete;
file(file&& other) FMT_NOEXCEPT : fd_(other.fd_) { other.fd_ = -1; }
file& operator=(file&& other) FMT_NOEXCEPT {
close();
fd_ = other.fd_;
other.fd_ = -1;
return *this;
}
// Destroys the object closing the file it represents if any.
FMT_API ~file() FMT_NOEXCEPT;
// Returns the file descriptor.
int descriptor() const FMT_NOEXCEPT { return fd_; }
// Closes the file.
FMT_API void close();
// Returns the file size. The size has signed type for consistency with
// stat::st_size.
FMT_API long long size() const;
// Attempts to read count bytes from the file into the specified buffer.
FMT_API size_t read(void* buffer, size_t count);
// Attempts to write count bytes from the specified buffer to the file.
FMT_API size_t write(const void* buffer, size_t count);
// Duplicates a file descriptor with the dup function and returns
// the duplicate as a file object.
FMT_API static file dup(int fd);
// Makes fd be the copy of this file descriptor, closing fd first if
// necessary.
FMT_API void dup2(int fd);
// Makes fd be the copy of this file descriptor, closing fd first if
// necessary.
FMT_API void dup2(int fd, error_code& ec) FMT_NOEXCEPT;
// Creates a pipe setting up read_end and write_end file objects for reading
// and writing respectively.
FMT_API static void pipe(file& read_end, file& write_end);
// Creates a buffered_file object associated with this file and detaches
// this file object from the file.
FMT_API buffered_file fdopen(const char* mode);
};
// Returns the memory page size.
long getpagesize();
namespace detail {
struct buffer_size {
size_t value = 0;
buffer_size operator=(size_t val) const {
auto bs = buffer_size();
bs.value = val;
return bs;
}
};
struct ostream_params {
int oflag = file::WRONLY | file::CREATE;
size_t buffer_size = BUFSIZ > 32768 ? BUFSIZ : 32768;
ostream_params() {}
template <typename... T>
ostream_params(T... params, int oflag) : ostream_params(params...) {
this->oflag = oflag;
}
template <typename... T>
ostream_params(T... params, detail::buffer_size bs)
: ostream_params(params...) {
this->buffer_size = bs.value;
}
};
} // namespace detail
static constexpr detail::buffer_size buffer_size;
// A fast output stream which is not thread-safe.
class ostream final : private detail::buffer<char> {
private:
file file_;
void flush() {
if (size() == 0) return;
file_.write(data(), size());
clear();
}
FMT_API void grow(size_t) override final;
ostream(cstring_view path, const detail::ostream_params& params)
: file_(path, params.oflag) {
set(new char[params.buffer_size], params.buffer_size);
}
public:
ostream(ostream&& other)
: detail::buffer<char>(other.data(), other.size(), other.capacity()),
file_(std::move(other.file_)) {
other.set(nullptr, 0);
}
~ostream() {
flush();
delete[] data();
}
template <typename... T>
friend ostream output_file(cstring_view path, T... params);
void close() {
flush();
file_.close();
}
template <typename S, typename... Args>
void print(const S& format_str, const Args&... args) {
format_to(detail::buffer_appender<char>(*this), format_str, args...);
}
};
/**
Opens a file for writing. Supported parameters passed in `params`:
* ``<integer>``: Output flags (``file::WRONLY | file::CREATE`` by default)
* ``buffer_size=<integer>``: Output buffer size
*/
template <typename... T>
inline ostream output_file(cstring_view path, T... params) {
return {path, detail::ostream_params(params...)};
}
#endif // FMT_USE_FCNTL
#ifdef FMT_LOCALE
// A "C" numeric locale.
class locale {
private:
# ifdef _WIN32
using locale_t = _locale_t;
static void freelocale(locale_t loc) { _free_locale(loc); }
static double strtod_l(const char* nptr, char** endptr, _locale_t loc) {
return _strtod_l(nptr, endptr, loc);
}
# endif
locale_t locale_;
public:
using type = locale_t;
locale(const locale&) = delete;
void operator=(const locale&) = delete;
locale() {
# ifndef _WIN32
locale_ = FMT_SYSTEM(newlocale(LC_NUMERIC_MASK, "C", nullptr));
# else
locale_ = _create_locale(LC_NUMERIC, "C");
# endif
if (!locale_) FMT_THROW(system_error(errno, "cannot create locale"));
}
~locale() { freelocale(locale_); }
type get() const { return locale_; }
// Converts string to floating-point number and advances str past the end
// of the parsed input.
double strtod(const char*& str) const {
char* end = nullptr;
double result = strtod_l(str, &end, locale_);
str = end;
return result;
}
};
using Locale FMT_DEPRECATED_ALIAS = locale;
#endif // FMT_LOCALE
FMT_END_NAMESPACE
#endif // FMT_OS_H_

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// Formatting library for C++ - std::ostream support
//
// Copyright (c) 2012 - present, Victor Zverovich
// All rights reserved.
//
// For the license information refer to format.h.
#ifndef FMT_OSTREAM_H_
#define FMT_OSTREAM_H_
#include <ostream>
#include "format.h"
FMT_BEGIN_NAMESPACE
template <typename Char> class basic_printf_parse_context;
template <typename OutputIt, typename Char> class basic_printf_context;
namespace detail {
template <class Char> class formatbuf : public std::basic_streambuf<Char> {
private:
using int_type = typename std::basic_streambuf<Char>::int_type;
using traits_type = typename std::basic_streambuf<Char>::traits_type;
buffer<Char>& buffer_;
public:
formatbuf(buffer<Char>& buf) : buffer_(buf) {}
protected:
// The put-area is actually always empty. This makes the implementation
// simpler and has the advantage that the streambuf and the buffer are always
// in sync and sputc never writes into uninitialized memory. The obvious
// disadvantage is that each call to sputc always results in a (virtual) call
// to overflow. There is no disadvantage here for sputn since this always
// results in a call to xsputn.
int_type overflow(int_type ch = traits_type::eof()) FMT_OVERRIDE {
if (!traits_type::eq_int_type(ch, traits_type::eof()))
buffer_.push_back(static_cast<Char>(ch));
return ch;
}
std::streamsize xsputn(const Char* s, std::streamsize count) FMT_OVERRIDE {
buffer_.append(s, s + count);
return count;
}
};
struct converter {
template <typename T, FMT_ENABLE_IF(is_integral<T>::value)> converter(T);
};
template <typename Char> struct test_stream : std::basic_ostream<Char> {
private:
void_t<> operator<<(converter);
};
// Hide insertion operators for built-in types.
template <typename Char, typename Traits>
void_t<> operator<<(std::basic_ostream<Char, Traits>&, Char);
template <typename Char, typename Traits>
void_t<> operator<<(std::basic_ostream<Char, Traits>&, char);
template <typename Traits>
void_t<> operator<<(std::basic_ostream<char, Traits>&, char);
template <typename Traits>
void_t<> operator<<(std::basic_ostream<char, Traits>&, signed char);
template <typename Traits>
void_t<> operator<<(std::basic_ostream<char, Traits>&, unsigned char);
// Checks if T has a user-defined operator<< (e.g. not a member of
// std::ostream).
template <typename T, typename Char> class is_streamable {
private:
template <typename U>
static bool_constant<!std::is_same<decltype(std::declval<test_stream<Char>&>()
<< std::declval<U>()),
void_t<>>::value>
test(int);
template <typename> static std::false_type test(...);
using result = decltype(test<T>(0));
public:
static const bool value = result::value;
};
// Write the content of buf to os.
template <typename Char>
void write_buffer(std::basic_ostream<Char>& os, buffer<Char>& buf) {
const Char* buf_data = buf.data();
using unsigned_streamsize = std::make_unsigned<std::streamsize>::type;
unsigned_streamsize size = buf.size();
unsigned_streamsize max_size = to_unsigned(max_value<std::streamsize>());
do {
unsigned_streamsize n = size <= max_size ? size : max_size;
os.write(buf_data, static_cast<std::streamsize>(n));
buf_data += n;
size -= n;
} while (size != 0);
}
template <typename Char, typename T>
void format_value(buffer<Char>& buf, const T& value,
locale_ref loc = locale_ref()) {
formatbuf<Char> format_buf(buf);
std::basic_ostream<Char> output(&format_buf);
#if !defined(FMT_STATIC_THOUSANDS_SEPARATOR)
if (loc) output.imbue(loc.get<std::locale>());
#endif
output << value;
output.exceptions(std::ios_base::failbit | std::ios_base::badbit);
buf.try_resize(buf.size());
}
// Formats an object of type T that has an overloaded ostream operator<<.
template <typename T, typename Char>
struct fallback_formatter<T, Char, enable_if_t<is_streamable<T, Char>::value>>
: private formatter<basic_string_view<Char>, Char> {
FMT_CONSTEXPR auto parse(basic_format_parse_context<Char>& ctx)
-> decltype(ctx.begin()) {
return formatter<basic_string_view<Char>, Char>::parse(ctx);
}
template <typename ParseCtx,
FMT_ENABLE_IF(std::is_same<
ParseCtx, basic_printf_parse_context<Char>>::value)>
auto parse(ParseCtx& ctx) -> decltype(ctx.begin()) {
return ctx.begin();
}
template <typename OutputIt>
auto format(const T& value, basic_format_context<OutputIt, Char>& ctx)
-> OutputIt {
basic_memory_buffer<Char> buffer;
format_value(buffer, value, ctx.locale());
basic_string_view<Char> str(buffer.data(), buffer.size());
return formatter<basic_string_view<Char>, Char>::format(str, ctx);
}
template <typename OutputIt>
auto format(const T& value, basic_printf_context<OutputIt, Char>& ctx)
-> OutputIt {
basic_memory_buffer<Char> buffer;
format_value(buffer, value, ctx.locale());
return std::copy(buffer.begin(), buffer.end(), ctx.out());
}
};
} // namespace detail
template <typename Char>
void vprint(std::basic_ostream<Char>& os, basic_string_view<Char> format_str,
basic_format_args<buffer_context<type_identity_t<Char>>> args) {
basic_memory_buffer<Char> buffer;
detail::vformat_to(buffer, format_str, args);
detail::write_buffer(os, buffer);
}
/**
\rst
Prints formatted data to the stream *os*.
**Example**::
fmt::print(cerr, "Don't {}!", "panic");
\endrst
*/
template <typename S, typename... Args,
typename Char = enable_if_t<detail::is_string<S>::value, char_t<S>>>
void print(std::basic_ostream<Char>& os, const S& format_str, Args&&... args) {
vprint(os, to_string_view(format_str),
fmt::make_args_checked<Args...>(format_str, args...));
}
FMT_END_NAMESPACE
#endif // FMT_OSTREAM_H_

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#include "os.h"
#warning "fmt/posix.h is deprecated; use fmt/os.h instead"

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// Formatting library for C++ - legacy printf implementation
//
// Copyright (c) 2012 - 2016, Victor Zverovich
// All rights reserved.
//
// For the license information refer to format.h.
#ifndef FMT_PRINTF_H_
#define FMT_PRINTF_H_
#include <algorithm> // std::max
#include <limits> // std::numeric_limits
#include "ostream.h"
FMT_BEGIN_NAMESPACE
namespace detail {
// Checks if a value fits in int - used to avoid warnings about comparing
// signed and unsigned integers.
template <bool IsSigned> struct int_checker {
template <typename T> static bool fits_in_int(T value) {
unsigned max = max_value<int>();
return value <= max;
}
static bool fits_in_int(bool) { return true; }
};
template <> struct int_checker<true> {
template <typename T> static bool fits_in_int(T value) {
return value >= (std::numeric_limits<int>::min)() &&
value <= max_value<int>();
}
static bool fits_in_int(int) { return true; }
};
class printf_precision_handler {
public:
template <typename T, FMT_ENABLE_IF(std::is_integral<T>::value)>
int operator()(T value) {
if (!int_checker<std::numeric_limits<T>::is_signed>::fits_in_int(value))
FMT_THROW(format_error("number is too big"));
return (std::max)(static_cast<int>(value), 0);
}
template <typename T, FMT_ENABLE_IF(!std::is_integral<T>::value)>
int operator()(T) {
FMT_THROW(format_error("precision is not integer"));
return 0;
}
};
// An argument visitor that returns true iff arg is a zero integer.
class is_zero_int {
public:
template <typename T, FMT_ENABLE_IF(std::is_integral<T>::value)>
bool operator()(T value) {
return value == 0;
}
template <typename T, FMT_ENABLE_IF(!std::is_integral<T>::value)>
bool operator()(T) {
return false;
}
};
template <typename T> struct make_unsigned_or_bool : std::make_unsigned<T> {};
template <> struct make_unsigned_or_bool<bool> { using type = bool; };
template <typename T, typename Context> class arg_converter {
private:
using char_type = typename Context::char_type;
basic_format_arg<Context>& arg_;
char_type type_;
public:
arg_converter(basic_format_arg<Context>& arg, char_type type)
: arg_(arg), type_(type) {}
void operator()(bool value) {
if (type_ != 's') operator()<bool>(value);
}
template <typename U, FMT_ENABLE_IF(std::is_integral<U>::value)>
void operator()(U value) {
bool is_signed = type_ == 'd' || type_ == 'i';
using target_type = conditional_t<std::is_same<T, void>::value, U, T>;
if (const_check(sizeof(target_type) <= sizeof(int))) {
// Extra casts are used to silence warnings.
if (is_signed) {
arg_ = detail::make_arg<Context>(
static_cast<int>(static_cast<target_type>(value)));
} else {
using unsigned_type = typename make_unsigned_or_bool<target_type>::type;
arg_ = detail::make_arg<Context>(
static_cast<unsigned>(static_cast<unsigned_type>(value)));
}
} else {
if (is_signed) {
// glibc's printf doesn't sign extend arguments of smaller types:
// std::printf("%lld", -42); // prints "4294967254"
// but we don't have to do the same because it's a UB.
arg_ = detail::make_arg<Context>(static_cast<long long>(value));
} else {
arg_ = detail::make_arg<Context>(
static_cast<typename make_unsigned_or_bool<U>::type>(value));
}
}
}
template <typename U, FMT_ENABLE_IF(!std::is_integral<U>::value)>
void operator()(U) {} // No conversion needed for non-integral types.
};
// Converts an integer argument to T for printf, if T is an integral type.
// If T is void, the argument is converted to corresponding signed or unsigned
// type depending on the type specifier: 'd' and 'i' - signed, other -
// unsigned).
template <typename T, typename Context, typename Char>
void convert_arg(basic_format_arg<Context>& arg, Char type) {
visit_format_arg(arg_converter<T, Context>(arg, type), arg);
}
// Converts an integer argument to char for printf.
template <typename Context> class char_converter {
private:
basic_format_arg<Context>& arg_;
public:
explicit char_converter(basic_format_arg<Context>& arg) : arg_(arg) {}
template <typename T, FMT_ENABLE_IF(std::is_integral<T>::value)>
void operator()(T value) {
arg_ = detail::make_arg<Context>(
static_cast<typename Context::char_type>(value));
}
template <typename T, FMT_ENABLE_IF(!std::is_integral<T>::value)>
void operator()(T) {} // No conversion needed for non-integral types.
};
// An argument visitor that return a pointer to a C string if argument is a
// string or null otherwise.
template <typename Char> struct get_cstring {
template <typename T> const Char* operator()(T) { return nullptr; }
const Char* operator()(const Char* s) { return s; }
};
// Checks if an argument is a valid printf width specifier and sets
// left alignment if it is negative.
template <typename Char> class printf_width_handler {
private:
using format_specs = basic_format_specs<Char>;
format_specs& specs_;
public:
explicit printf_width_handler(format_specs& specs) : specs_(specs) {}
template <typename T, FMT_ENABLE_IF(std::is_integral<T>::value)>
unsigned operator()(T value) {
auto width = static_cast<uint32_or_64_or_128_t<T>>(value);
if (detail::is_negative(value)) {
specs_.align = align::left;
width = 0 - width;
}
unsigned int_max = max_value<int>();
if (width > int_max) FMT_THROW(format_error("number is too big"));
return static_cast<unsigned>(width);
}
template <typename T, FMT_ENABLE_IF(!std::is_integral<T>::value)>
unsigned operator()(T) {
FMT_THROW(format_error("width is not integer"));
return 0;
}
};
template <typename Char, typename Context>
void vprintf(buffer<Char>& buf, basic_string_view<Char> format,
basic_format_args<Context> args) {
Context(buffer_appender<Char>(buf), format, args).format();
}
} // namespace detail
// For printing into memory_buffer.
template <typename Char, typename Context>
FMT_DEPRECATED void printf(detail::buffer<Char>& buf,
basic_string_view<Char> format,
basic_format_args<Context> args) {
return detail::vprintf(buf, format, args);
}
using detail::vprintf;
template <typename Char>
class basic_printf_parse_context : public basic_format_parse_context<Char> {
using basic_format_parse_context<Char>::basic_format_parse_context;
};
template <typename OutputIt, typename Char> class basic_printf_context;
/**
\rst
The ``printf`` argument formatter.
\endrst
*/
template <typename OutputIt, typename Char>
class printf_arg_formatter : public detail::arg_formatter_base<OutputIt, Char> {
public:
using iterator = OutputIt;
private:
using char_type = Char;
using base = detail::arg_formatter_base<OutputIt, Char>;
using context_type = basic_printf_context<OutputIt, Char>;
context_type& context_;
void write_null_pointer(char) {
this->specs()->type = 0;
this->write("(nil)");
}
void write_null_pointer(wchar_t) {
this->specs()->type = 0;
this->write(L"(nil)");
}
public:
using format_specs = typename base::format_specs;
/**
\rst
Constructs an argument formatter object.
*buffer* is a reference to the output buffer and *specs* contains format
specifier information for standard argument types.
\endrst
*/
printf_arg_formatter(iterator iter, format_specs& specs, context_type& ctx)
: base(iter, &specs, detail::locale_ref()), context_(ctx) {}
template <typename T, FMT_ENABLE_IF(fmt::detail::is_integral<T>::value)>
iterator operator()(T value) {
// MSVC2013 fails to compile separate overloads for bool and char_type so
// use std::is_same instead.
if (std::is_same<T, bool>::value) {
format_specs& fmt_specs = *this->specs();
if (fmt_specs.type != 's') return base::operator()(value ? 1 : 0);
fmt_specs.type = 0;
this->write(value != 0);
} else if (std::is_same<T, char_type>::value) {
format_specs& fmt_specs = *this->specs();
if (fmt_specs.type && fmt_specs.type != 'c')
return (*this)(static_cast<int>(value));
fmt_specs.sign = sign::none;
fmt_specs.alt = false;
fmt_specs.fill[0] = ' '; // Ignore '0' flag for char types.
// align::numeric needs to be overwritten here since the '0' flag is
// ignored for non-numeric types
if (fmt_specs.align == align::none || fmt_specs.align == align::numeric)
fmt_specs.align = align::right;
return base::operator()(value);
} else {
return base::operator()(value);
}
return this->out();
}
template <typename T, FMT_ENABLE_IF(std::is_floating_point<T>::value)>
iterator operator()(T value) {
return base::operator()(value);
}
/** Formats a null-terminated C string. */
iterator operator()(const char* value) {
if (value)
base::operator()(value);
else if (this->specs()->type == 'p')
write_null_pointer(char_type());
else
this->write("(null)");
return this->out();
}
/** Formats a null-terminated wide C string. */
iterator operator()(const wchar_t* value) {
if (value)
base::operator()(value);
else if (this->specs()->type == 'p')
write_null_pointer(char_type());
else
this->write(L"(null)");
return this->out();
}
iterator operator()(basic_string_view<char_type> value) {
return base::operator()(value);
}
iterator operator()(monostate value) { return base::operator()(value); }
/** Formats a pointer. */
iterator operator()(const void* value) {
if (value) return base::operator()(value);
this->specs()->type = 0;
write_null_pointer(char_type());
return this->out();
}
/** Formats an argument of a custom (user-defined) type. */
iterator operator()(typename basic_format_arg<context_type>::handle handle) {
handle.format(context_.parse_context(), context_);
return this->out();
}
};
template <typename T> struct printf_formatter {
printf_formatter() = delete;
template <typename ParseContext>
auto parse(ParseContext& ctx) -> decltype(ctx.begin()) {
return ctx.begin();
}
template <typename FormatContext>
auto format(const T& value, FormatContext& ctx) -> decltype(ctx.out()) {
detail::format_value(detail::get_container(ctx.out()), value);
return ctx.out();
}
};
/**
This template formats data and writes the output through an output iterator.
*/
template <typename OutputIt, typename Char> class basic_printf_context {
public:
/** The character type for the output. */
using char_type = Char;
using iterator = OutputIt;
using format_arg = basic_format_arg<basic_printf_context>;
using parse_context_type = basic_printf_parse_context<Char>;
template <typename T> using formatter_type = printf_formatter<T>;
private:
using format_specs = basic_format_specs<char_type>;
OutputIt out_;
basic_format_args<basic_printf_context> args_;
parse_context_type parse_ctx_;
static void parse_flags(format_specs& specs, const Char*& it,
const Char* end);
// Returns the argument with specified index or, if arg_index is -1, the next
// argument.
format_arg get_arg(int arg_index = -1);
// Parses argument index, flags and width and returns the argument index.
int parse_header(const Char*& it, const Char* end, format_specs& specs);
public:
/**
\rst
Constructs a ``printf_context`` object. References to the arguments are
stored in the context object so make sure they have appropriate lifetimes.
\endrst
*/
basic_printf_context(OutputIt out, basic_string_view<char_type> format_str,
basic_format_args<basic_printf_context> args)
: out_(out), args_(args), parse_ctx_(format_str) {}
OutputIt out() { return out_; }
void advance_to(OutputIt it) { out_ = it; }
detail::locale_ref locale() { return {}; }
format_arg arg(int id) const { return args_.get(id); }
parse_context_type& parse_context() { return parse_ctx_; }
FMT_CONSTEXPR void on_error(const char* message) {
parse_ctx_.on_error(message);
}
/** Formats stored arguments and writes the output to the range. */
template <typename ArgFormatter = printf_arg_formatter<OutputIt, Char>>
OutputIt format();
};
template <typename OutputIt, typename Char>
void basic_printf_context<OutputIt, Char>::parse_flags(format_specs& specs,
const Char*& it,
const Char* end) {
for (; it != end; ++it) {
switch (*it) {
case '-':
specs.align = align::left;
break;
case '+':
specs.sign = sign::plus;
break;
case '0':
specs.fill[0] = '0';
break;
case ' ':
if (specs.sign != sign::plus) {
specs.sign = sign::space;
}
break;
case '#':
specs.alt = true;
break;
default:
return;
}
}
}
template <typename OutputIt, typename Char>
typename basic_printf_context<OutputIt, Char>::format_arg
basic_printf_context<OutputIt, Char>::get_arg(int arg_index) {
if (arg_index < 0)
arg_index = parse_ctx_.next_arg_id();
else
parse_ctx_.check_arg_id(--arg_index);
return detail::get_arg(*this, arg_index);
}
template <typename OutputIt, typename Char>
int basic_printf_context<OutputIt, Char>::parse_header(const Char*& it,
const Char* end,
format_specs& specs) {
int arg_index = -1;
char_type c = *it;
if (c >= '0' && c <= '9') {
// Parse an argument index (if followed by '$') or a width possibly
// preceded with '0' flag(s).
detail::error_handler eh;
int value = parse_nonnegative_int(it, end, eh);
if (it != end && *it == '$') { // value is an argument index
++it;
arg_index = value;
} else {
if (c == '0') specs.fill[0] = '0';
if (value != 0) {
// Nonzero value means that we parsed width and don't need to
// parse it or flags again, so return now.
specs.width = value;
return arg_index;
}
}
}
parse_flags(specs, it, end);
// Parse width.
if (it != end) {
if (*it >= '0' && *it <= '9') {
detail::error_handler eh;
specs.width = parse_nonnegative_int(it, end, eh);
} else if (*it == '*') {
++it;
specs.width = static_cast<int>(visit_format_arg(
detail::printf_width_handler<char_type>(specs), get_arg()));
}
}
return arg_index;
}
template <typename OutputIt, typename Char>
template <typename ArgFormatter>
OutputIt basic_printf_context<OutputIt, Char>::format() {
auto out = this->out();
const Char* start = parse_ctx_.begin();
const Char* end = parse_ctx_.end();
auto it = start;
while (it != end) {
char_type c = *it++;
if (c != '%') continue;
if (it != end && *it == c) {
out = std::copy(start, it, out);
start = ++it;
continue;
}
out = std::copy(start, it - 1, out);
format_specs specs;
specs.align = align::right;
// Parse argument index, flags and width.
int arg_index = parse_header(it, end, specs);
if (arg_index == 0) on_error("argument not found");
// Parse precision.
if (it != end && *it == '.') {
++it;
c = it != end ? *it : 0;
if ('0' <= c && c <= '9') {
detail::error_handler eh;
specs.precision = parse_nonnegative_int(it, end, eh);
} else if (c == '*') {
++it;
specs.precision = static_cast<int>(
visit_format_arg(detail::printf_precision_handler(), get_arg()));
} else {
specs.precision = 0;
}
}
format_arg arg = get_arg(arg_index);
// For d, i, o, u, x, and X conversion specifiers, if a precision is
// specified, the '0' flag is ignored
if (specs.precision >= 0 && arg.is_integral())
specs.fill[0] =
' '; // Ignore '0' flag for non-numeric types or if '-' present.
if (specs.precision >= 0 && arg.type() == detail::type::cstring_type) {
auto str = visit_format_arg(detail::get_cstring<Char>(), arg);
auto str_end = str + specs.precision;
auto nul = std::find(str, str_end, Char());
arg = detail::make_arg<basic_printf_context>(basic_string_view<Char>(
str,
detail::to_unsigned(nul != str_end ? nul - str : specs.precision)));
}
if (specs.alt && visit_format_arg(detail::is_zero_int(), arg))
specs.alt = false;
if (specs.fill[0] == '0') {
if (arg.is_arithmetic() && specs.align != align::left)
specs.align = align::numeric;
else
specs.fill[0] = ' '; // Ignore '0' flag for non-numeric types or if '-'
// flag is also present.
}
// Parse length and convert the argument to the required type.
c = it != end ? *it++ : 0;
char_type t = it != end ? *it : 0;
using detail::convert_arg;
switch (c) {
case 'h':
if (t == 'h') {
++it;
t = it != end ? *it : 0;
convert_arg<signed char>(arg, t);
} else {
convert_arg<short>(arg, t);
}
break;
case 'l':
if (t == 'l') {
++it;
t = it != end ? *it : 0;
convert_arg<long long>(arg, t);
} else {
convert_arg<long>(arg, t);
}
break;
case 'j':
convert_arg<intmax_t>(arg, t);
break;
case 'z':
convert_arg<size_t>(arg, t);
break;
case 't':
convert_arg<std::ptrdiff_t>(arg, t);
break;
case 'L':
// printf produces garbage when 'L' is omitted for long double, no
// need to do the same.
break;
default:
--it;
convert_arg<void>(arg, c);
}
// Parse type.
if (it == end) FMT_THROW(format_error("invalid format string"));
specs.type = static_cast<char>(*it++);
if (arg.is_integral()) {
// Normalize type.
switch (specs.type) {
case 'i':
case 'u':
specs.type = 'd';
break;
case 'c':
visit_format_arg(detail::char_converter<basic_printf_context>(arg),
arg);
break;
}
}
start = it;
// Format argument.
out = visit_format_arg(ArgFormatter(out, specs, *this), arg);
}
return std::copy(start, it, out);
}
template <typename Char>
using basic_printf_context_t =
basic_printf_context<detail::buffer_appender<Char>, Char>;
using printf_context = basic_printf_context_t<char>;
using wprintf_context = basic_printf_context_t<wchar_t>;
using printf_args = basic_format_args<printf_context>;
using wprintf_args = basic_format_args<wprintf_context>;
/**
\rst
Constructs an `~fmt::format_arg_store` object that contains references to
arguments and can be implicitly converted to `~fmt::printf_args`.
\endrst
*/
template <typename... Args>
inline format_arg_store<printf_context, Args...> make_printf_args(
const Args&... args) {
return {args...};
}
/**
\rst
Constructs an `~fmt::format_arg_store` object that contains references to
arguments and can be implicitly converted to `~fmt::wprintf_args`.
\endrst
*/
template <typename... Args>
inline format_arg_store<wprintf_context, Args...> make_wprintf_args(
const Args&... args) {
return {args...};
}
template <typename S, typename Char = char_t<S>>
inline std::basic_string<Char> vsprintf(
const S& format,
basic_format_args<basic_printf_context_t<type_identity_t<Char>>> args) {
basic_memory_buffer<Char> buffer;
vprintf(buffer, to_string_view(format), args);
return to_string(buffer);
}
/**
\rst
Formats arguments and returns the result as a string.
**Example**::
std::string message = fmt::sprintf("The answer is %d", 42);
\endrst
*/
template <typename S, typename... Args,
typename Char = enable_if_t<detail::is_string<S>::value, char_t<S>>>
inline std::basic_string<Char> sprintf(const S& format, const Args&... args) {
using context = basic_printf_context_t<Char>;
return vsprintf(to_string_view(format), make_format_args<context>(args...));
}
template <typename S, typename Char = char_t<S>>
inline int vfprintf(
std::FILE* f, const S& format,
basic_format_args<basic_printf_context_t<type_identity_t<Char>>> args) {
basic_memory_buffer<Char> buffer;
vprintf(buffer, to_string_view(format), args);
size_t size = buffer.size();
return std::fwrite(buffer.data(), sizeof(Char), size, f) < size
? -1
: static_cast<int>(size);
}
/**
\rst
Prints formatted data to the file *f*.
**Example**::
fmt::fprintf(stderr, "Don't %s!", "panic");
\endrst
*/
template <typename S, typename... Args,
typename Char = enable_if_t<detail::is_string<S>::value, char_t<S>>>
inline int fprintf(std::FILE* f, const S& format, const Args&... args) {
using context = basic_printf_context_t<Char>;
return vfprintf(f, to_string_view(format),
make_format_args<context>(args...));
}
template <typename S, typename Char = char_t<S>>
inline int vprintf(
const S& format,
basic_format_args<basic_printf_context_t<type_identity_t<Char>>> args) {
return vfprintf(stdout, to_string_view(format), args);
}
/**
\rst
Prints formatted data to ``stdout``.
**Example**::
fmt::printf("Elapsed time: %.2f seconds", 1.23);
\endrst
*/
template <typename S, typename... Args,
FMT_ENABLE_IF(detail::is_string<S>::value)>
inline int printf(const S& format_str, const Args&... args) {
using context = basic_printf_context_t<char_t<S>>;
return vprintf(to_string_view(format_str),
make_format_args<context>(args...));
}
template <typename S, typename Char = char_t<S>>
inline int vfprintf(
std::basic_ostream<Char>& os, const S& format,
basic_format_args<basic_printf_context_t<type_identity_t<Char>>> args) {
basic_memory_buffer<Char> buffer;
vprintf(buffer, to_string_view(format), args);
detail::write_buffer(os, buffer);
return static_cast<int>(buffer.size());
}
/** Formats arguments and writes the output to the range. */
template <typename ArgFormatter, typename Char,
typename Context =
basic_printf_context<typename ArgFormatter::iterator, Char>>
typename ArgFormatter::iterator vprintf(
detail::buffer<Char>& out, basic_string_view<Char> format_str,
basic_format_args<type_identity_t<Context>> args) {
typename ArgFormatter::iterator iter(out);
Context(iter, format_str, args).template format<ArgFormatter>();
return iter;
}
/**
\rst
Prints formatted data to the stream *os*.
**Example**::
fmt::fprintf(cerr, "Don't %s!", "panic");
\endrst
*/
template <typename S, typename... Args, typename Char = char_t<S>>
inline int fprintf(std::basic_ostream<Char>& os, const S& format_str,
const Args&... args) {
using context = basic_printf_context_t<Char>;
return vfprintf(os, to_string_view(format_str),
make_format_args<context>(args...));
}
FMT_END_NAMESPACE
#endif // FMT_PRINTF_H_

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// Formatting library for C++ - experimental range support
//
// Copyright (c) 2012 - present, Victor Zverovich
// All rights reserved.
//
// For the license information refer to format.h.
//
// Copyright (c) 2018 - present, Remotion (Igor Schulz)
// All Rights Reserved
// {fmt} support for ranges, containers and types tuple interface.
#ifndef FMT_RANGES_H_
#define FMT_RANGES_H_
#include <initializer_list>
#include <type_traits>
#include "format.h"
// output only up to N items from the range.
#ifndef FMT_RANGE_OUTPUT_LENGTH_LIMIT
# define FMT_RANGE_OUTPUT_LENGTH_LIMIT 256
#endif
FMT_BEGIN_NAMESPACE
template <typename Char> struct formatting_base {
template <typename ParseContext>
FMT_CONSTEXPR auto parse(ParseContext& ctx) -> decltype(ctx.begin()) {
return ctx.begin();
}
};
template <typename Char, typename Enable = void>
struct formatting_range : formatting_base<Char> {
static FMT_CONSTEXPR_DECL const size_t range_length_limit =
FMT_RANGE_OUTPUT_LENGTH_LIMIT; // output only up to N items from the
// range.
Char prefix;
Char delimiter;
Char postfix;
formatting_range() : prefix('{'), delimiter(','), postfix('}') {}
static FMT_CONSTEXPR_DECL const bool add_delimiter_spaces = true;
static FMT_CONSTEXPR_DECL const bool add_prepostfix_space = false;
};
template <typename Char, typename Enable = void>
struct formatting_tuple : formatting_base<Char> {
Char prefix;
Char delimiter;
Char postfix;
formatting_tuple() : prefix('('), delimiter(','), postfix(')') {}
static FMT_CONSTEXPR_DECL const bool add_delimiter_spaces = true;
static FMT_CONSTEXPR_DECL const bool add_prepostfix_space = false;
};
namespace detail {
template <typename RangeT, typename OutputIterator>
OutputIterator copy(const RangeT& range, OutputIterator out) {
for (auto it = range.begin(), end = range.end(); it != end; ++it)
*out++ = *it;
return out;
}
template <typename OutputIterator>
OutputIterator copy(const char* str, OutputIterator out) {
while (*str) *out++ = *str++;
return out;
}
template <typename OutputIterator>
OutputIterator copy(char ch, OutputIterator out) {
*out++ = ch;
return out;
}
/// Return true value if T has std::string interface, like std::string_view.
template <typename T> class is_like_std_string {
template <typename U>
static auto check(U* p)
-> decltype((void)p->find('a'), p->length(), (void)p->data(), int());
template <typename> static void check(...);
public:
static FMT_CONSTEXPR_DECL const bool value =
is_string<T>::value || !std::is_void<decltype(check<T>(nullptr))>::value;
};
template <typename Char>
struct is_like_std_string<fmt::basic_string_view<Char>> : std::true_type {};
template <typename... Ts> struct conditional_helper {};
template <typename T, typename _ = void> struct is_range_ : std::false_type {};
#if !FMT_MSC_VER || FMT_MSC_VER > 1800
template <typename T>
struct is_range_<
T, conditional_t<false,
conditional_helper<decltype(std::declval<T>().begin()),
decltype(std::declval<T>().end())>,
void>> : std::true_type {};
#endif
/// tuple_size and tuple_element check.
template <typename T> class is_tuple_like_ {
template <typename U>
static auto check(U* p) -> decltype(std::tuple_size<U>::value, int());
template <typename> static void check(...);
public:
static FMT_CONSTEXPR_DECL const bool value =
!std::is_void<decltype(check<T>(nullptr))>::value;
};
// Check for integer_sequence
#if defined(__cpp_lib_integer_sequence) || FMT_MSC_VER >= 1900
template <typename T, T... N>
using integer_sequence = std::integer_sequence<T, N...>;
template <size_t... N> using index_sequence = std::index_sequence<N...>;
template <size_t N> using make_index_sequence = std::make_index_sequence<N>;
#else
template <typename T, T... N> struct integer_sequence {
using value_type = T;
static FMT_CONSTEXPR size_t size() { return sizeof...(N); }
};
template <size_t... N> using index_sequence = integer_sequence<size_t, N...>;
template <typename T, size_t N, T... Ns>
struct make_integer_sequence : make_integer_sequence<T, N - 1, N - 1, Ns...> {};
template <typename T, T... Ns>
struct make_integer_sequence<T, 0, Ns...> : integer_sequence<T, Ns...> {};
template <size_t N>
using make_index_sequence = make_integer_sequence<size_t, N>;
#endif
template <class Tuple, class F, size_t... Is>
void for_each(index_sequence<Is...>, Tuple&& tup, F&& f) FMT_NOEXCEPT {
using std::get;
// using free function get<I>(T) now.
const int _[] = {0, ((void)f(get<Is>(tup)), 0)...};
(void)_; // blocks warnings
}
template <class T>
FMT_CONSTEXPR make_index_sequence<std::tuple_size<T>::value> get_indexes(
T const&) {
return {};
}
template <class Tuple, class F> void for_each(Tuple&& tup, F&& f) {
const auto indexes = get_indexes(tup);
for_each(indexes, std::forward<Tuple>(tup), std::forward<F>(f));
}
template <typename Range>
using value_type = remove_cvref_t<decltype(*std::declval<Range>().begin())>;
template <typename Arg, FMT_ENABLE_IF(!is_like_std_string<
typename std::decay<Arg>::type>::value)>
FMT_CONSTEXPR const char* format_str_quoted(bool add_space, const Arg&) {
return add_space ? " {}" : "{}";
}
template <typename Arg, FMT_ENABLE_IF(is_like_std_string<
typename std::decay<Arg>::type>::value)>
FMT_CONSTEXPR const char* format_str_quoted(bool add_space, const Arg&) {
return add_space ? " \"{}\"" : "\"{}\"";
}
FMT_CONSTEXPR const char* format_str_quoted(bool add_space, const char*) {
return add_space ? " \"{}\"" : "\"{}\"";
}
FMT_CONSTEXPR const wchar_t* format_str_quoted(bool add_space, const wchar_t*) {
return add_space ? L" \"{}\"" : L"\"{}\"";
}
FMT_CONSTEXPR const char* format_str_quoted(bool add_space, const char) {
return add_space ? " '{}'" : "'{}'";
}
FMT_CONSTEXPR const wchar_t* format_str_quoted(bool add_space, const wchar_t) {
return add_space ? L" '{}'" : L"'{}'";
}
} // namespace detail
template <typename T> struct is_tuple_like {
static FMT_CONSTEXPR_DECL const bool value =
detail::is_tuple_like_<T>::value && !detail::is_range_<T>::value;
};
template <typename TupleT, typename Char>
struct formatter<TupleT, Char, enable_if_t<fmt::is_tuple_like<TupleT>::value>> {
private:
// C++11 generic lambda for format()
template <typename FormatContext> struct format_each {
template <typename T> void operator()(const T& v) {
if (i > 0) {
if (formatting.add_prepostfix_space) {
*out++ = ' ';
}
out = detail::copy(formatting.delimiter, out);
}
out = format_to(out,
detail::format_str_quoted(
(formatting.add_delimiter_spaces && i > 0), v),
v);
++i;
}
formatting_tuple<Char>& formatting;
size_t& i;
typename std::add_lvalue_reference<decltype(
std::declval<FormatContext>().out())>::type out;
};
public:
formatting_tuple<Char> formatting;
template <typename ParseContext>
FMT_CONSTEXPR auto parse(ParseContext& ctx) -> decltype(ctx.begin()) {
return formatting.parse(ctx);
}
template <typename FormatContext = format_context>
auto format(const TupleT& values, FormatContext& ctx) -> decltype(ctx.out()) {
auto out = ctx.out();
size_t i = 0;
detail::copy(formatting.prefix, out);
detail::for_each(values, format_each<FormatContext>{formatting, i, out});
if (formatting.add_prepostfix_space) {
*out++ = ' ';
}
detail::copy(formatting.postfix, out);
return ctx.out();
}
};
template <typename T, typename Char> struct is_range {
static FMT_CONSTEXPR_DECL const bool value =
detail::is_range_<T>::value && !detail::is_like_std_string<T>::value &&
!std::is_convertible<T, std::basic_string<Char>>::value &&
!std::is_constructible<detail::std_string_view<Char>, T>::value;
};
template <typename T, typename Char>
struct formatter<
T, Char,
enable_if_t<fmt::is_range<T, Char>::value
// Workaround a bug in MSVC 2017 and earlier.
#if !FMT_MSC_VER || FMT_MSC_VER >= 1927
&&
(has_formatter<detail::value_type<T>, format_context>::value ||
detail::has_fallback_formatter<detail::value_type<T>,
format_context>::value)
#endif
>> {
formatting_range<Char> formatting;
template <typename ParseContext>
FMT_CONSTEXPR auto parse(ParseContext& ctx) -> decltype(ctx.begin()) {
return formatting.parse(ctx);
}
template <typename FormatContext>
typename FormatContext::iterator format(const T& values, FormatContext& ctx) {
auto out = detail::copy(formatting.prefix, ctx.out());
size_t i = 0;
auto it = values.begin();
auto end = values.end();
for (; it != end; ++it) {
if (i > 0) {
if (formatting.add_prepostfix_space) *out++ = ' ';
out = detail::copy(formatting.delimiter, out);
}
out = format_to(out,
detail::format_str_quoted(
(formatting.add_delimiter_spaces && i > 0), *it),
*it);
if (++i > formatting.range_length_limit) {
out = format_to(out, " ... <other elements>");
break;
}
}
if (formatting.add_prepostfix_space) *out++ = ' ';
return detail::copy(formatting.postfix, out);
}
};
template <typename Char, typename... T> struct tuple_arg_join : detail::view {
const std::tuple<T...>& tuple;
basic_string_view<Char> sep;
tuple_arg_join(const std::tuple<T...>& t, basic_string_view<Char> s)
: tuple{t}, sep{s} {}
};
template <typename Char, typename... T>
struct formatter<tuple_arg_join<Char, T...>, Char> {
template <typename ParseContext>
FMT_CONSTEXPR auto parse(ParseContext& ctx) -> decltype(ctx.begin()) {
return ctx.begin();
}
template <typename FormatContext>
typename FormatContext::iterator format(
const tuple_arg_join<Char, T...>& value, FormatContext& ctx) {
return format(value, ctx, detail::make_index_sequence<sizeof...(T)>{});
}
private:
template <typename FormatContext, size_t... N>
typename FormatContext::iterator format(
const tuple_arg_join<Char, T...>& value, FormatContext& ctx,
detail::index_sequence<N...>) {
return format_args(value, ctx, std::get<N>(value.tuple)...);
}
template <typename FormatContext>
typename FormatContext::iterator format_args(
const tuple_arg_join<Char, T...>&, FormatContext& ctx) {
// NOTE: for compilers that support C++17, this empty function instantiation
// can be replaced with a constexpr branch in the variadic overload.
return ctx.out();
}
template <typename FormatContext, typename Arg, typename... Args>
typename FormatContext::iterator format_args(
const tuple_arg_join<Char, T...>& value, FormatContext& ctx,
const Arg& arg, const Args&... args) {
using base = formatter<typename std::decay<Arg>::type, Char>;
auto out = ctx.out();
out = base{}.format(arg, ctx);
if (sizeof...(Args) > 0) {
out = std::copy(value.sep.begin(), value.sep.end(), out);
ctx.advance_to(out);
return format_args(value, ctx, args...);
}
return out;
}
};
/**
\rst
Returns an object that formats `tuple` with elements separated by `sep`.
**Example**::
std::tuple<int, char> t = {1, 'a'};
fmt::print("{}", fmt::join(t, ", "));
// Output: "1, a"
\endrst
*/
template <typename... T>
FMT_CONSTEXPR tuple_arg_join<char, T...> join(const std::tuple<T...>& tuple,
string_view sep) {
return {tuple, sep};
}
template <typename... T>
FMT_CONSTEXPR tuple_arg_join<wchar_t, T...> join(const std::tuple<T...>& tuple,
wstring_view sep) {
return {tuple, sep};
}
/**
\rst
Returns an object that formats `initializer_list` with elements separated by
`sep`.
**Example**::
fmt::print("{}", fmt::join({1, 2, 3}, ", "));
// Output: "1, 2, 3"
\endrst
*/
template <typename T>
arg_join<const T*, const T*, char> join(std::initializer_list<T> list,
string_view sep) {
return join(std::begin(list), std::end(list), sep);
}
template <typename T>
arg_join<const T*, const T*, wchar_t> join(std::initializer_list<T> list,
wstring_view sep) {
return join(std::begin(list), std::end(list), sep);
}
FMT_END_NAMESPACE
#endif // FMT_RANGES_H_

99
oss/fmt/src/format.cc Normal file
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// Formatting library for C++
//
// Copyright (c) 2012 - 2016, Victor Zverovich
// All rights reserved.
//
// For the license information refer to format.h.
#include "fmt/format-inl.h"
FMT_BEGIN_NAMESPACE
namespace detail {
template <typename T>
int format_float(char* buf, std::size_t size, const char* format, int precision,
T value) {
#ifdef FMT_FUZZ
if (precision > 100000)
throw std::runtime_error(
"fuzz mode - avoid large allocation inside snprintf");
#endif
// Suppress the warning about nonliteral format string.
int (*snprintf_ptr)(char*, size_t, const char*, ...) = FMT_SNPRINTF;
return precision < 0 ? snprintf_ptr(buf, size, format, value)
: snprintf_ptr(buf, size, format, precision, value);
}
template FMT_API dragonbox::decimal_fp<float> dragonbox::to_decimal(float x)
FMT_NOEXCEPT;
template FMT_API dragonbox::decimal_fp<double> dragonbox::to_decimal(double x)
FMT_NOEXCEPT;
// DEPRECATED! This function exists for ABI compatibility.
template <typename Char>
typename basic_format_context<std::back_insert_iterator<buffer<Char>>,
Char>::iterator
vformat_to(buffer<Char>& buf, basic_string_view<Char> format_str,
basic_format_args<basic_format_context<
std::back_insert_iterator<buffer<type_identity_t<Char>>>,
type_identity_t<Char>>>
args) {
using iterator = std::back_insert_iterator<buffer<char>>;
using context = basic_format_context<
std::back_insert_iterator<buffer<type_identity_t<Char>>>,
type_identity_t<Char>>;
auto out = iterator(buf);
format_handler<iterator, Char, context> h(out, format_str, args, {});
parse_format_string<false>(format_str, h);
return out;
}
template basic_format_context<std::back_insert_iterator<buffer<char>>,
char>::iterator
vformat_to(buffer<char>&, string_view,
basic_format_args<basic_format_context<
std::back_insert_iterator<buffer<type_identity_t<char>>>,
type_identity_t<char>>>);
} // namespace detail
template struct FMT_INSTANTIATION_DEF_API detail::basic_data<void>;
// Workaround a bug in MSVC2013 that prevents instantiation of format_float.
int (*instantiate_format_float)(double, int, detail::float_specs,
detail::buffer<char>&) = detail::format_float;
#ifndef FMT_STATIC_THOUSANDS_SEPARATOR
template FMT_API detail::locale_ref::locale_ref(const std::locale& loc);
template FMT_API std::locale detail::locale_ref::get<std::locale>() const;
#endif
// Explicit instantiations for char.
template FMT_API std::string detail::grouping_impl<char>(locale_ref);
template FMT_API char detail::thousands_sep_impl(locale_ref);
template FMT_API char detail::decimal_point_impl(locale_ref);
template FMT_API void detail::buffer<char>::append(const char*, const char*);
template FMT_API void detail::vformat_to(
detail::buffer<char>&, string_view,
basic_format_args<FMT_BUFFER_CONTEXT(char)>, detail::locale_ref);
template FMT_API int detail::snprintf_float(double, int, detail::float_specs,
detail::buffer<char>&);
template FMT_API int detail::snprintf_float(long double, int,
detail::float_specs,
detail::buffer<char>&);
template FMT_API int detail::format_float(double, int, detail::float_specs,
detail::buffer<char>&);
template FMT_API int detail::format_float(long double, int, detail::float_specs,
detail::buffer<char>&);
// Explicit instantiations for wchar_t.
template FMT_API std::string detail::grouping_impl<wchar_t>(locale_ref);
template FMT_API wchar_t detail::thousands_sep_impl(locale_ref);
template FMT_API wchar_t detail::decimal_point_impl(locale_ref);
template FMT_API void detail::buffer<wchar_t>::append(const wchar_t*,
const wchar_t*);
FMT_END_NAMESPACE

322
oss/fmt/src/os.cc Normal file
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// Formatting library for C++ - optional OS-specific functionality
//
// Copyright (c) 2012 - 2016, Victor Zverovich
// All rights reserved.
//
// For the license information refer to format.h.
// Disable bogus MSVC warnings.
#if !defined(_CRT_SECURE_NO_WARNINGS) && defined(_MSC_VER)
# define _CRT_SECURE_NO_WARNINGS
#endif
#include "fmt/os.h"
#include <climits>
#if FMT_USE_FCNTL
# include <sys/stat.h>
# include <sys/types.h>
# ifndef _WIN32
# include <unistd.h>
# else
# ifndef WIN32_LEAN_AND_MEAN
# define WIN32_LEAN_AND_MEAN
# endif
# include <io.h>
# include <windows.h>
# define O_CREAT _O_CREAT
# define O_TRUNC _O_TRUNC
# ifndef S_IRUSR
# define S_IRUSR _S_IREAD
# endif
# ifndef S_IWUSR
# define S_IWUSR _S_IWRITE
# endif
# ifdef __MINGW32__
# define _SH_DENYNO 0x40
# endif
# endif // _WIN32
#endif // FMT_USE_FCNTL
#ifdef _WIN32
# include <windows.h>
#endif
#ifdef fileno
# undef fileno
#endif
namespace {
#ifdef _WIN32
// Return type of read and write functions.
using RWResult = int;
// On Windows the count argument to read and write is unsigned, so convert
// it from size_t preventing integer overflow.
inline unsigned convert_rwcount(std::size_t count) {
return count <= UINT_MAX ? static_cast<unsigned>(count) : UINT_MAX;
}
#elif FMT_USE_FCNTL
// Return type of read and write functions.
using RWResult = ssize_t;
inline std::size_t convert_rwcount(std::size_t count) { return count; }
#endif
} // namespace
FMT_BEGIN_NAMESPACE
#ifdef _WIN32
detail::utf16_to_utf8::utf16_to_utf8(wstring_view s) {
if (int error_code = convert(s)) {
FMT_THROW(windows_error(error_code,
"cannot convert string from UTF-16 to UTF-8"));
}
}
int detail::utf16_to_utf8::convert(wstring_view s) {
if (s.size() > INT_MAX) return ERROR_INVALID_PARAMETER;
int s_size = static_cast<int>(s.size());
if (s_size == 0) {
// WideCharToMultiByte does not support zero length, handle separately.
buffer_.resize(1);
buffer_[0] = 0;
return 0;
}
int length = WideCharToMultiByte(CP_UTF8, 0, s.data(), s_size, nullptr, 0,
nullptr, nullptr);
if (length == 0) return GetLastError();
buffer_.resize(length + 1);
length = WideCharToMultiByte(CP_UTF8, 0, s.data(), s_size, &buffer_[0],
length, nullptr, nullptr);
if (length == 0) return GetLastError();
buffer_[length] = 0;
return 0;
}
void windows_error::init(int err_code, string_view format_str,
format_args args) {
error_code_ = err_code;
memory_buffer buffer;
detail::format_windows_error(buffer, err_code, vformat(format_str, args));
std::runtime_error& base = *this;
base = std::runtime_error(to_string(buffer));
}
void detail::format_windows_error(detail::buffer<char>& out, int error_code,
string_view message) FMT_NOEXCEPT {
FMT_TRY {
wmemory_buffer buf;
buf.resize(inline_buffer_size);
for (;;) {
wchar_t* system_message = &buf[0];
int result = FormatMessageW(
FORMAT_MESSAGE_FROM_SYSTEM | FORMAT_MESSAGE_IGNORE_INSERTS, nullptr,
error_code, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), system_message,
static_cast<uint32_t>(buf.size()), nullptr);
if (result != 0) {
utf16_to_utf8 utf8_message;
if (utf8_message.convert(system_message) == ERROR_SUCCESS) {
format_to(buffer_appender<char>(out), "{}: {}", message,
utf8_message);
return;
}
break;
}
if (GetLastError() != ERROR_INSUFFICIENT_BUFFER)
break; // Can't get error message, report error code instead.
buf.resize(buf.size() * 2);
}
}
FMT_CATCH(...) {}
format_error_code(out, error_code, message);
}
void report_windows_error(int error_code,
fmt::string_view message) FMT_NOEXCEPT {
report_error(detail::format_windows_error, error_code, message);
}
#endif // _WIN32
buffered_file::~buffered_file() FMT_NOEXCEPT {
if (file_ && FMT_SYSTEM(fclose(file_)) != 0)
report_system_error(errno, "cannot close file");
}
buffered_file::buffered_file(cstring_view filename, cstring_view mode) {
FMT_RETRY_VAL(file_, FMT_SYSTEM(fopen(filename.c_str(), mode.c_str())),
nullptr);
if (!file_)
FMT_THROW(system_error(errno, "cannot open file {}", filename.c_str()));
}
void buffered_file::close() {
if (!file_) return;
int result = FMT_SYSTEM(fclose(file_));
file_ = nullptr;
if (result != 0) FMT_THROW(system_error(errno, "cannot close file"));
}
// A macro used to prevent expansion of fileno on broken versions of MinGW.
#define FMT_ARGS
int buffered_file::fileno() const {
int fd = FMT_POSIX_CALL(fileno FMT_ARGS(file_));
if (fd == -1) FMT_THROW(system_error(errno, "cannot get file descriptor"));
return fd;
}
#if FMT_USE_FCNTL
file::file(cstring_view path, int oflag) {
int mode = S_IRUSR | S_IWUSR;
# if defined(_WIN32) && !defined(__MINGW32__)
fd_ = -1;
FMT_POSIX_CALL(sopen_s(&fd_, path.c_str(), oflag, _SH_DENYNO, mode));
# else
FMT_RETRY(fd_, FMT_POSIX_CALL(open(path.c_str(), oflag, mode)));
# endif
if (fd_ == -1)
FMT_THROW(system_error(errno, "cannot open file {}", path.c_str()));
}
file::~file() FMT_NOEXCEPT {
// Don't retry close in case of EINTR!
// See http://linux.derkeiler.com/Mailing-Lists/Kernel/2005-09/3000.html
if (fd_ != -1 && FMT_POSIX_CALL(close(fd_)) != 0)
report_system_error(errno, "cannot close file");
}
void file::close() {
if (fd_ == -1) return;
// Don't retry close in case of EINTR!
// See http://linux.derkeiler.com/Mailing-Lists/Kernel/2005-09/3000.html
int result = FMT_POSIX_CALL(close(fd_));
fd_ = -1;
if (result != 0) FMT_THROW(system_error(errno, "cannot close file"));
}
long long file::size() const {
# ifdef _WIN32
// Use GetFileSize instead of GetFileSizeEx for the case when _WIN32_WINNT
// is less than 0x0500 as is the case with some default MinGW builds.
// Both functions support large file sizes.
DWORD size_upper = 0;
HANDLE handle = reinterpret_cast<HANDLE>(_get_osfhandle(fd_));
DWORD size_lower = FMT_SYSTEM(GetFileSize(handle, &size_upper));
if (size_lower == INVALID_FILE_SIZE) {
DWORD error = GetLastError();
if (error != NO_ERROR)
FMT_THROW(windows_error(GetLastError(), "cannot get file size"));
}
unsigned long long long_size = size_upper;
return (long_size << sizeof(DWORD) * CHAR_BIT) | size_lower;
# else
using Stat = struct stat;
Stat file_stat = Stat();
if (FMT_POSIX_CALL(fstat(fd_, &file_stat)) == -1)
FMT_THROW(system_error(errno, "cannot get file attributes"));
static_assert(sizeof(long long) >= sizeof(file_stat.st_size),
"return type of file::size is not large enough");
return file_stat.st_size;
# endif
}
std::size_t file::read(void* buffer, std::size_t count) {
RWResult result = 0;
FMT_RETRY(result, FMT_POSIX_CALL(read(fd_, buffer, convert_rwcount(count))));
if (result < 0) FMT_THROW(system_error(errno, "cannot read from file"));
return detail::to_unsigned(result);
}
std::size_t file::write(const void* buffer, std::size_t count) {
RWResult result = 0;
FMT_RETRY(result, FMT_POSIX_CALL(write(fd_, buffer, convert_rwcount(count))));
if (result < 0) FMT_THROW(system_error(errno, "cannot write to file"));
return detail::to_unsigned(result);
}
file file::dup(int fd) {
// Don't retry as dup doesn't return EINTR.
// http://pubs.opengroup.org/onlinepubs/009695399/functions/dup.html
int new_fd = FMT_POSIX_CALL(dup(fd));
if (new_fd == -1)
FMT_THROW(system_error(errno, "cannot duplicate file descriptor {}", fd));
return file(new_fd);
}
void file::dup2(int fd) {
int result = 0;
FMT_RETRY(result, FMT_POSIX_CALL(dup2(fd_, fd)));
if (result == -1) {
FMT_THROW(system_error(errno, "cannot duplicate file descriptor {} to {}",
fd_, fd));
}
}
void file::dup2(int fd, error_code& ec) FMT_NOEXCEPT {
int result = 0;
FMT_RETRY(result, FMT_POSIX_CALL(dup2(fd_, fd)));
if (result == -1) ec = error_code(errno);
}
void file::pipe(file& read_end, file& write_end) {
// Close the descriptors first to make sure that assignments don't throw
// and there are no leaks.
read_end.close();
write_end.close();
int fds[2] = {};
# ifdef _WIN32
// Make the default pipe capacity same as on Linux 2.6.11+.
enum { DEFAULT_CAPACITY = 65536 };
int result = FMT_POSIX_CALL(pipe(fds, DEFAULT_CAPACITY, _O_BINARY));
# else
// Don't retry as the pipe function doesn't return EINTR.
// http://pubs.opengroup.org/onlinepubs/009696799/functions/pipe.html
int result = FMT_POSIX_CALL(pipe(fds));
# endif
if (result != 0) FMT_THROW(system_error(errno, "cannot create pipe"));
// The following assignments don't throw because read_fd and write_fd
// are closed.
read_end = file(fds[0]);
write_end = file(fds[1]);
}
buffered_file file::fdopen(const char* mode) {
// Don't retry as fdopen doesn't return EINTR.
# if defined(__MINGW32__) && defined(_POSIX_)
FILE* f = ::fdopen(fd_, mode);
# else
FILE* f = FMT_POSIX_CALL(fdopen(fd_, mode));
# endif
if (!f)
FMT_THROW(
system_error(errno, "cannot associate stream with file descriptor"));
buffered_file bf(f);
fd_ = -1;
return bf;
}
long getpagesize() {
# ifdef _WIN32
SYSTEM_INFO si;
GetSystemInfo(&si);
return si.dwPageSize;
# else
long size = FMT_POSIX_CALL(sysconf(_SC_PAGESIZE));
if (size < 0) FMT_THROW(system_error(errno, "cannot get memory page size"));
return size;
# endif
}
FMT_API void ostream::grow(size_t) {
if (this->size() == this->capacity()) flush();
}
#endif // FMT_USE_FCNTL
FMT_END_NAMESPACE

26
oss/libpopcnt/LICENSE Normal file
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BSD 2-Clause License
Copyright (c) 2016 - 2019, Kim Walisch
Copyright (c) 2016 - 2019, Wojciech Muła
All rights reserved.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are met:
1. Redistributions of source code must retain the above copyright notice, this
list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright notice,
this list of conditions and the following disclaimer in the documentation
and/or other materials provided with the distribution.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.

View File

@@ -0,0 +1,17 @@
### Notes for Future Maintainers
This was originally imported by @miniksa in March 2020.
The provenance information (where it came from and which commit) is stored in the file `cgmanifest.json` in the same directory as this readme.
Please update the provenance information in that file when ingesting an updated version of the dependent library.
That provenance file is automatically read and inventoried by Microsoft systems to ensure compliance with appropriate governance standards.
## What should be done to update this in the future?
1. Go to kimwalisch/libpopcnt repository on GitHub.
2. Take the `libpopcnt.h` file.
3. Don't change anything about it.
4. Validate that the `LICENSE` in the root of the repository didn't change and update it if so. It is sitting in the same directory as this readme.
If it changed dramatically, ensure that it is still compatible with our license scheme. Also update the NOTICE file in the root of our repository to declare the third-party usage.
5. Submit the pull.

View File

@@ -0,0 +1,15 @@
{
"$schema": "https://json.schemastore.org/component-detection-manifest.json",
"Registrations": [
{
"component": {
"type": "git",
"git": {
"repositoryUrl": "https://github.com/kimwalisch/libpopcnt",
"commitHash": "c49987e90e56191c399cab881ab87b5daecc9b8e"
}
}
}
],
"Version": 1
}

798
oss/libpopcnt/libpopcnt.h Normal file
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/*
* libpopcnt.h - C/C++ library for counting the number of 1 bits (bit
* population count) in an array as quickly as possible using
* specialized CPU instructions i.e. POPCNT, AVX2, AVX512, NEON.
*
* Copyright (c) 2016 - 2020, Kim Walisch
* Copyright (c) 2016 - 2018, Wojciech Muła
*
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions are met:
*
* 1. Redistributions of source code must retain the above copyright notice, this
* list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#ifndef LIBPOPCNT_H
#define LIBPOPCNT_H
#include <stdint.h>
#include <string.h>
#ifndef __has_builtin
#define __has_builtin(x) 0
#endif
#ifndef __has_attribute
#define __has_attribute(x) 0
#endif
#ifdef __GNUC__
#define GNUC_PREREQ(x, y) \
(__GNUC__ > x || (__GNUC__ == x && __GNUC_MINOR__ >= y))
#else
#define GNUC_PREREQ(x, y) 0
#endif
#ifdef __clang__
#define CLANG_PREREQ(x, y) \
(__clang_major__ > x || (__clang_major__ == x && __clang_minor__ >= y))
#else
#define CLANG_PREREQ(x, y) 0
#endif
#if (_MSC_VER < 1900) && \
!defined(__cplusplus)
#define inline __inline
#endif
#if (defined(__i386__) || \
defined(__x86_64__) || \
defined(_M_IX86) || \
defined(_M_X64))
#define X86_OR_X64
#endif
#if GNUC_PREREQ(4, 2) || \
__has_builtin(__builtin_popcount)
#define HAVE_BUILTIN_POPCOUNT
#endif
#if GNUC_PREREQ(4, 2) || \
CLANG_PREREQ(3, 0)
#define HAVE_ASM_POPCNT
#endif
#if defined(X86_OR_X64) && \
(defined(HAVE_ASM_POPCNT) || \
defined(_MSC_VER))
#define HAVE_POPCNT
#endif
#if defined(X86_OR_X64) && \
GNUC_PREREQ(4, 9)
#define HAVE_AVX2
#endif
#if defined(X86_OR_X64) && \
GNUC_PREREQ(5, 0)
#define HAVE_AVX512
#endif
#if defined(X86_OR_X64) && !defined(_M_ARM64EC)
/* MSVC compatible compilers (Windows) */
#if defined(_MSC_VER)
/* clang-cl (LLVM 10 from 2020) requires /arch:AVX2 or
* /arch:AVX512 to enable vector instructions */
#if defined(__clang__)
#if defined(__AVX2__)
#define HAVE_AVX2
#endif
#if defined(__AVX512__)
#define HAVE_AVX2
#define HAVE_AVX512
#endif
/* MSVC 2017 or later does not require
* /arch:AVX2 or /arch:AVX512 */
#elif _MSC_VER >= 1910
#define HAVE_AVX2
#define HAVE_AVX512
#endif
/* Clang (Unix-like OSes) */
#elif CLANG_PREREQ(3, 8) && \
__has_attribute(target) && \
(!defined(__apple_build_version__) || __apple_build_version__ >= 8000000)
#define HAVE_AVX2
#define HAVE_AVX512
#endif
#endif
/*
* Only enable CPUID runtime checks if this is really
* needed. E.g. do not enable if user has compiled
* using -march=native on a CPU that supports AVX512.
*/
#if defined(X86_OR_X64) && \
(defined(__cplusplus) || \
defined(_MSC_VER) || \
(GNUC_PREREQ(4, 2) || \
__has_builtin(__sync_val_compare_and_swap))) && \
((defined(HAVE_AVX512) && !(defined(__AVX512__) || defined(__AVX512BW__))) || \
(defined(HAVE_AVX2) && !defined(__AVX2__)) || \
(defined(HAVE_POPCNT) && !defined(__POPCNT__)))
#define HAVE_CPUID
#endif
#ifdef __cplusplus
extern "C" {
#endif
/*
* This uses fewer arithmetic operations than any other known
* implementation on machines with fast multiplication.
* It uses 12 arithmetic operations, one of which is a multiply.
* http://en.wikipedia.org/wiki/Hamming_weight#Efficient_implementation
*/
static inline uint64_t popcount64(uint64_t x)
{
uint64_t m1 = 0x5555555555555555ll;
uint64_t m2 = 0x3333333333333333ll;
uint64_t m4 = 0x0F0F0F0F0F0F0F0Fll;
uint64_t h01 = 0x0101010101010101ll;
x -= (x >> 1) & m1;
x = (x & m2) + ((x >> 2) & m2);
x = (x + (x >> 4)) & m4;
return (x * h01) >> 56;
}
#if defined(HAVE_ASM_POPCNT) && \
defined(__x86_64__)
static inline uint64_t popcnt64(uint64_t x)
{
__asm__ ("popcnt %1, %0" : "=r" (x) : "0" (x));
return x;
}
#elif defined(HAVE_ASM_POPCNT) && \
defined(__i386__)
static inline uint32_t popcnt32(uint32_t x)
{
__asm__ ("popcnt %1, %0" : "=r" (x) : "0" (x));
return x;
}
static inline uint64_t popcnt64(uint64_t x)
{
return popcnt32((uint32_t) x) +
popcnt32((uint32_t)(x >> 32));
}
#elif defined(_MSC_VER) && \
defined(_M_X64)
#include <nmmintrin.h>
static inline uint64_t popcnt64(uint64_t x)
{
return _mm_popcnt_u64(x);
}
#elif defined(_MSC_VER) && \
defined(_M_IX86)
#include <nmmintrin.h>
static inline uint64_t popcnt64(uint64_t x)
{
return _mm_popcnt_u32((uint32_t) x) +
_mm_popcnt_u32((uint32_t)(x >> 32));
}
/* non x86 CPUs */
#elif defined(HAVE_BUILTIN_POPCOUNT)
static inline uint64_t popcnt64(uint64_t x)
{
return __builtin_popcountll(x);
}
/* no hardware POPCNT,
* use pure integer algorithm */
#else
static inline uint64_t popcnt64(uint64_t x)
{
return popcount64(x);
}
#endif
#if defined(HAVE_CPUID)
#if defined(_MSC_VER)
#include <intrin.h>
#include <immintrin.h>
#endif
/* %ecx bit flags */
#define bit_POPCNT (1 << 23)
/* %ebx bit flags */
#define bit_AVX2 (1 << 5)
#define bit_AVX512 (1 << 30)
/* xgetbv bit flags */
#define XSTATE_SSE (1 << 1)
#define XSTATE_YMM (1 << 2)
#define XSTATE_ZMM (7 << 5)
static inline void run_cpuid(int eax, int ecx, int* abcd)
{
#if defined(_MSC_VER)
__cpuidex(abcd, eax, ecx);
#else
int ebx = 0;
int edx = 0;
#if defined(__i386__) && \
defined(__PIC__)
/* in case of PIC under 32-bit EBX cannot be clobbered */
__asm__ ("movl %%ebx, %%edi;"
"cpuid;"
"xchgl %%ebx, %%edi;"
: "=D" (ebx),
"+a" (eax),
"+c" (ecx),
"=d" (edx));
#else
__asm__ ("cpuid;"
: "+b" (ebx),
"+a" (eax),
"+c" (ecx),
"=d" (edx));
#endif
abcd[0] = eax;
abcd[1] = ebx;
abcd[2] = ecx;
abcd[3] = edx;
#endif
}
#if defined(HAVE_AVX2) || \
defined(HAVE_AVX512)
static inline int get_xcr0()
{
int xcr0;
#if defined(_MSC_VER)
xcr0 = (int) _xgetbv(0);
#else
__asm__ ("xgetbv" : "=a" (xcr0) : "c" (0) : "%edx" );
#endif
return xcr0;
}
#endif
static inline int get_cpuid()
{
int flags = 0;
int abcd[4];
run_cpuid(1, 0, abcd);
if ((abcd[2] & bit_POPCNT) == bit_POPCNT)
flags |= bit_POPCNT;
#if defined(HAVE_AVX2) || \
defined(HAVE_AVX512)
int osxsave_mask = (1 << 27);
/* ensure OS supports extended processor state management */
if ((abcd[2] & osxsave_mask) != osxsave_mask)
return 0;
int ymm_mask = XSTATE_SSE | XSTATE_YMM;
int zmm_mask = XSTATE_SSE | XSTATE_YMM | XSTATE_ZMM;
int xcr0 = get_xcr0();
if ((xcr0 & ymm_mask) == ymm_mask)
{
run_cpuid(7, 0, abcd);
if ((abcd[1] & bit_AVX2) == bit_AVX2)
flags |= bit_AVX2;
if ((xcr0 & zmm_mask) == zmm_mask)
{
if ((abcd[1] & bit_AVX512) == bit_AVX512)
flags |= bit_AVX512;
}
}
#endif
return flags;
}
#endif /* cpuid */
#if defined(HAVE_AVX2)
#include <immintrin.h>
#if !defined(_MSC_VER)
__attribute__ ((target ("avx2")))
#endif
static inline void CSA256(__m256i* h, __m256i* l, __m256i a, __m256i b, __m256i c)
{
__m256i u = _mm256_xor_si256(a, b);
*h = _mm256_or_si256(_mm256_and_si256(a, b), _mm256_and_si256(u, c));
*l = _mm256_xor_si256(u, c);
}
#if !defined(_MSC_VER)
__attribute__ ((target ("avx2")))
#endif
static inline __m256i popcnt256(__m256i v)
{
__m256i lookup1 = _mm256_setr_epi8(
4, 5, 5, 6, 5, 6, 6, 7,
5, 6, 6, 7, 6, 7, 7, 8,
4, 5, 5, 6, 5, 6, 6, 7,
5, 6, 6, 7, 6, 7, 7, 8
);
__m256i lookup2 = _mm256_setr_epi8(
4, 3, 3, 2, 3, 2, 2, 1,
3, 2, 2, 1, 2, 1, 1, 0,
4, 3, 3, 2, 3, 2, 2, 1,
3, 2, 2, 1, 2, 1, 1, 0
);
__m256i low_mask = _mm256_set1_epi8(0x0f);
__m256i lo = _mm256_and_si256(v, low_mask);
__m256i hi = _mm256_and_si256(_mm256_srli_epi16(v, 4), low_mask);
__m256i popcnt1 = _mm256_shuffle_epi8(lookup1, lo);
__m256i popcnt2 = _mm256_shuffle_epi8(lookup2, hi);
return _mm256_sad_epu8(popcnt1, popcnt2);
}
/*
* AVX2 Harley-Seal popcount (4th iteration).
* The algorithm is based on the paper "Faster Population Counts
* using AVX2 Instructions" by Daniel Lemire, Nathan Kurz and
* Wojciech Mula (23 Nov 2016).
* @see https://arxiv.org/abs/1611.07612
*/
#if !defined(_MSC_VER)
__attribute__ ((target ("avx2")))
#endif
static inline uint64_t popcnt_avx2(const __m256i* ptr, uint64_t size)
{
__m256i cnt = _mm256_setzero_si256();
__m256i ones = _mm256_setzero_si256();
__m256i twos = _mm256_setzero_si256();
__m256i fours = _mm256_setzero_si256();
__m256i eights = _mm256_setzero_si256();
__m256i sixteens = _mm256_setzero_si256();
__m256i twosA, twosB, foursA, foursB, eightsA, eightsB;
uint64_t i = 0;
uint64_t limit = size - size % 16;
uint64_t* cnt64;
for(; i < limit; i += 16)
{
CSA256(&twosA, &ones, ones, _mm256_loadu_si256(ptr + i + 0), _mm256_loadu_si256(ptr + i + 1));
CSA256(&twosB, &ones, ones, _mm256_loadu_si256(ptr + i + 2), _mm256_loadu_si256(ptr + i + 3));
CSA256(&foursA, &twos, twos, twosA, twosB);
CSA256(&twosA, &ones, ones, _mm256_loadu_si256(ptr + i + 4), _mm256_loadu_si256(ptr + i + 5));
CSA256(&twosB, &ones, ones, _mm256_loadu_si256(ptr + i + 6), _mm256_loadu_si256(ptr + i + 7));
CSA256(&foursB, &twos, twos, twosA, twosB);
CSA256(&eightsA, &fours, fours, foursA, foursB);
CSA256(&twosA, &ones, ones, _mm256_loadu_si256(ptr + i + 8), _mm256_loadu_si256(ptr + i + 9));
CSA256(&twosB, &ones, ones, _mm256_loadu_si256(ptr + i + 10), _mm256_loadu_si256(ptr + i + 11));
CSA256(&foursA, &twos, twos, twosA, twosB);
CSA256(&twosA, &ones, ones, _mm256_loadu_si256(ptr + i + 12), _mm256_loadu_si256(ptr + i + 13));
CSA256(&twosB, &ones, ones, _mm256_loadu_si256(ptr + i + 14), _mm256_loadu_si256(ptr + i + 15));
CSA256(&foursB, &twos, twos, twosA, twosB);
CSA256(&eightsB, &fours, fours, foursA, foursB);
CSA256(&sixteens, &eights, eights, eightsA, eightsB);
cnt = _mm256_add_epi64(cnt, popcnt256(sixteens));
}
cnt = _mm256_slli_epi64(cnt, 4);
cnt = _mm256_add_epi64(cnt, _mm256_slli_epi64(popcnt256(eights), 3));
cnt = _mm256_add_epi64(cnt, _mm256_slli_epi64(popcnt256(fours), 2));
cnt = _mm256_add_epi64(cnt, _mm256_slli_epi64(popcnt256(twos), 1));
cnt = _mm256_add_epi64(cnt, popcnt256(ones));
for(; i < size; i++)
cnt = _mm256_add_epi64(cnt, popcnt256(_mm256_loadu_si256(ptr + i)));
cnt64 = (uint64_t*) &cnt;
return cnt64[0] +
cnt64[1] +
cnt64[2] +
cnt64[3];
}
#endif
#if defined(HAVE_AVX512)
#include <immintrin.h>
#if !defined(_MSC_VER)
__attribute__ ((target ("avx512bw")))
#endif
static inline __m512i popcnt512(__m512i v)
{
__m512i m1 = _mm512_set1_epi8(0x55);
__m512i m2 = _mm512_set1_epi8(0x33);
__m512i m4 = _mm512_set1_epi8(0x0F);
__m512i vm = _mm512_and_si512(_mm512_srli_epi16(v, 1), m1);
__m512i t1 = _mm512_sub_epi8(v, vm);
__m512i tm = _mm512_and_si512(t1, m2);
__m512i tm2 = _mm512_and_si512(_mm512_srli_epi16(t1, 2), m2);
__m512i t2 = _mm512_add_epi8(tm, tm2);
__m512i tt = _mm512_add_epi8(t2, _mm512_srli_epi16(t2, 4));
__m512i t3 = _mm512_and_si512(tt, m4);
return _mm512_sad_epu8(t3, _mm512_setzero_si512());
}
#if !defined(_MSC_VER)
__attribute__ ((target ("avx512bw")))
#endif
static inline void CSA512(__m512i* h, __m512i* l, __m512i a, __m512i b, __m512i c)
{
*l = _mm512_ternarylogic_epi32(c, b, a, 0x96);
*h = _mm512_ternarylogic_epi32(c, b, a, 0xe8);
}
/*
* AVX512 Harley-Seal popcount (4th iteration).
* The algorithm is based on the paper "Faster Population Counts
* using AVX2 Instructions" by Daniel Lemire, Nathan Kurz and
* Wojciech Mula (23 Nov 2016).
* @see https://arxiv.org/abs/1611.07612
*/
#if !defined(_MSC_VER)
__attribute__ ((target ("avx512bw")))
#endif
static inline uint64_t popcnt_avx512(const __m512i* ptr, const uint64_t size)
{
__m512i cnt = _mm512_setzero_si512();
__m512i ones = _mm512_setzero_si512();
__m512i twos = _mm512_setzero_si512();
__m512i fours = _mm512_setzero_si512();
__m512i eights = _mm512_setzero_si512();
__m512i sixteens = _mm512_setzero_si512();
__m512i twosA, twosB, foursA, foursB, eightsA, eightsB;
uint64_t i = 0;
uint64_t limit = size - size % 16;
uint64_t* cnt64;
for(; i < limit; i += 16)
{
CSA512(&twosA, &ones, ones, _mm512_loadu_si512(ptr + i + 0), _mm512_loadu_si512(ptr + i + 1));
CSA512(&twosB, &ones, ones, _mm512_loadu_si512(ptr + i + 2), _mm512_loadu_si512(ptr + i + 3));
CSA512(&foursA, &twos, twos, twosA, twosB);
CSA512(&twosA, &ones, ones, _mm512_loadu_si512(ptr + i + 4), _mm512_loadu_si512(ptr + i + 5));
CSA512(&twosB, &ones, ones, _mm512_loadu_si512(ptr + i + 6), _mm512_loadu_si512(ptr + i + 7));
CSA512(&foursB, &twos, twos, twosA, twosB);
CSA512(&eightsA, &fours, fours, foursA, foursB);
CSA512(&twosA, &ones, ones, _mm512_loadu_si512(ptr + i + 8), _mm512_loadu_si512(ptr + i + 9));
CSA512(&twosB, &ones, ones, _mm512_loadu_si512(ptr + i + 10), _mm512_loadu_si512(ptr + i + 11));
CSA512(&foursA, &twos, twos, twosA, twosB);
CSA512(&twosA, &ones, ones, _mm512_loadu_si512(ptr + i + 12), _mm512_loadu_si512(ptr + i + 13));
CSA512(&twosB, &ones, ones, _mm512_loadu_si512(ptr + i + 14), _mm512_loadu_si512(ptr + i + 15));
CSA512(&foursB, &twos, twos, twosA, twosB);
CSA512(&eightsB, &fours, fours, foursA, foursB);
CSA512(&sixteens, &eights, eights, eightsA, eightsB);
cnt = _mm512_add_epi64(cnt, popcnt512(sixteens));
}
cnt = _mm512_slli_epi64(cnt, 4);
cnt = _mm512_add_epi64(cnt, _mm512_slli_epi64(popcnt512(eights), 3));
cnt = _mm512_add_epi64(cnt, _mm512_slli_epi64(popcnt512(fours), 2));
cnt = _mm512_add_epi64(cnt, _mm512_slli_epi64(popcnt512(twos), 1));
cnt = _mm512_add_epi64(cnt, popcnt512(ones));
for(; i < size; i++)
cnt = _mm512_add_epi64(cnt, popcnt512(_mm512_loadu_si512(ptr + i)));
cnt64 = (uint64_t*) &cnt;
return cnt64[0] +
cnt64[1] +
cnt64[2] +
cnt64[3] +
cnt64[4] +
cnt64[5] +
cnt64[6] +
cnt64[7];
}
#endif
/* x86 CPUs */
#if defined(X86_OR_X64)
/*
* Count the number of 1 bits in the data array
* @data: An array
* @size: Size of data in bytes
*/
static inline uint64_t popcnt(const void* data, uint64_t size)
{
uint64_t i = 0;
uint64_t cnt = 0;
const uint8_t* ptr = (const uint8_t*) data;
/*
* CPUID runtime checks are only enabled if this is needed.
* E.g. CPUID is disabled when a user compiles his
* code using -march=native on a CPU with AVX512.
*/
#if defined(HAVE_CPUID)
#if defined(__cplusplus)
/* C++11 thread-safe singleton */
static const int cpuid = get_cpuid();
#else
static int cpuid_ = -1;
int cpuid = cpuid_;
if (cpuid == -1)
{
cpuid = get_cpuid();
#if defined(_MSC_VER)
_InterlockedCompareExchange(&cpuid_, cpuid, -1);
#else
__sync_val_compare_and_swap(&cpuid_, -1, cpuid);
#endif
}
#endif
#endif
#if defined(HAVE_AVX512)
#if defined(__AVX512__) || defined(__AVX512BW__)
/* AVX512 requires arrays >= 1024 bytes */
if (i + 1024 <= size)
#else
if ((cpuid & bit_AVX512) &&
i + 1024 <= size)
#endif
{
const __m512i* ptr512 = (const __m512i*)(ptr + i);
cnt += popcnt_avx512(ptr512, (size - i) / 64);
i = size - size % 64;
}
#endif
#if defined(HAVE_AVX2)
#if defined(__AVX2__)
/* AVX2 requires arrays >= 512 bytes */
if (i + 512 <= size)
#else
if ((cpuid & bit_AVX2) &&
i + 512 <= size)
#endif
{
const __m256i* ptr256 = (const __m256i*)(ptr + i);
cnt += popcnt_avx2(ptr256, (size - i) / 32);
i = size - size % 32;
}
#endif
#if defined(HAVE_POPCNT)
/*
* The user has compiled without -mpopcnt.
* Unfortunately the MSVC compiler does not have
* a POPCNT macro so we cannot get rid of the
* runtime check for MSVC.
*/
#if !defined(__POPCNT__)
if (cpuid & bit_POPCNT)
#endif
{
/* We use unaligned memory accesses here to improve performance */
for (; i < size - size % 8; i += 8)
cnt += popcnt64(*(const uint64_t*)(ptr + i));
for (; i < size; i++)
cnt += popcnt64(ptr[i]);
return cnt;
}
#endif
#if !defined(HAVE_POPCNT) || \
!defined(__POPCNT__)
/*
* Pure integer popcount algorithm.
* We use unaligned memory accesses here to improve performance.
*/
for (; i < size - size % 8; i += 8)
cnt += popcount64(*(const uint64_t*)(ptr + i));
if (i < size)
{
uint64_t val = 0;
size_t bytes = (size_t)(size - i);
memcpy(&val, &ptr[i], bytes);
cnt += popcount64(val);
}
return cnt;
#endif
}
#elif defined(__ARM_NEON) || \
defined(__aarch64__)
#include <arm_neon.h>
static inline uint64x2_t vpadalq(uint64x2_t sum, uint8x16_t t)
{
return vpadalq_u32(sum, vpaddlq_u16(vpaddlq_u8(t)));
}
/*
* Count the number of 1 bits in the data array
* @data: An array
* @size: Size of data in bytes
*/
static inline uint64_t popcnt(const void* data, uint64_t size)
{
uint64_t i = 0;
uint64_t cnt = 0;
uint64_t chunk_size = 64;
const uint8_t* ptr = (const uint8_t*) data;
if (size >= chunk_size)
{
uint64_t iters = size / chunk_size;
uint64x2_t sum = vcombine_u64(vcreate_u64(0), vcreate_u64(0));
uint8x16_t zero = vcombine_u8(vcreate_u8(0), vcreate_u8(0));
do
{
uint8x16_t t0 = zero;
uint8x16_t t1 = zero;
uint8x16_t t2 = zero;
uint8x16_t t3 = zero;
/*
* After every 31 iterations we need to add the
* temporary sums (t0, t1, t2, t3) to the total sum.
* We must ensure that the temporary sums <= 255
* and 31 * 8 bits = 248 which is OK.
*/
uint64_t limit = (i + 31 < iters) ? i + 31 : iters;
/* Each iteration processes 64 bytes */
for (; i < limit; i++)
{
uint8x16x4_t input = vld4q_u8(ptr);
ptr += chunk_size;
t0 = vaddq_u8(t0, vcntq_u8(input.val[0]));
t1 = vaddq_u8(t1, vcntq_u8(input.val[1]));
t2 = vaddq_u8(t2, vcntq_u8(input.val[2]));
t3 = vaddq_u8(t3, vcntq_u8(input.val[3]));
}
sum = vpadalq(sum, t0);
sum = vpadalq(sum, t1);
sum = vpadalq(sum, t2);
sum = vpadalq(sum, t3);
}
while (i < iters);
i = 0;
size %= chunk_size;
uint64_t tmp[2];
vst1q_u64(tmp, sum);
cnt += tmp[0];
cnt += tmp[1];
}
#if defined(__ARM_FEATURE_UNALIGNED)
/* We use unaligned memory accesses here to improve performance */
for (; i < size - size % 8; i += 8)
cnt += popcnt64(*(const uint64_t*)(ptr + i));
#else
if (i + 8 <= size)
{
/* Align memory to an 8 byte boundary */
for (; (uintptr_t)(ptr + i) % 8; i++)
cnt += popcnt64(ptr[i]);
for (; i < size - size % 8; i += 8)
cnt += popcnt64(*(const uint64_t*)(ptr + i));
}
#endif
if (i < size)
{
uint64_t val = 0;
size_t bytes = (size_t)(size - i);
memcpy(&val, &ptr[i], bytes);
cnt += popcount64(val);
}
return cnt;
}
/* all other CPUs */
#else
/*
* Count the number of 1 bits in the data array
* @data: An array
* @size: Size of data in bytes
*/
static inline uint64_t popcnt(const void* data, uint64_t size)
{
uint64_t i = 0;
uint64_t cnt = 0;
const uint8_t* ptr = (const uint8_t*) data;
if (size >= 8)
{
/*
* Since we don't know whether this CPU architecture
* supports unaligned memory accesses we align
* memory to an 8 byte boundary.
*/
for (; (uintptr_t)(ptr + i) % 8; i++)
cnt += popcnt64(ptr[i]);
for (; i < size - size % 8; i += 8)
cnt += popcnt64(*(const uint64_t*)(ptr + i));
}
for (; i < size; i++)
cnt += popcnt64(ptr[i]);
return cnt;
}
#endif
#ifdef __cplusplus
} /* extern "C" */
#endif
#endif /* LIBPOPCNT_H */

View File

@@ -135,5 +135,17 @@
</Target>
<!-- **END VC LIBS HACK** -->
<!-- This is required to get the package dependency in the AppXManifest. -->
<Import Project="..\..\..\packages\Microsoft.UI.Xaml.2.7.3\build\native\Microsoft.UI.Xaml.targets" Condition="Exists('..\..\..\packages\Microsoft.UI.Xaml.2.7.3\build\native\Microsoft.UI.Xaml.targets')" />
<Target Name="EnsureNuGetPackageBuildImports" BeforeTargets="PrepareForBuild">
<PropertyGroup>
<ErrorText>This project references NuGet package(s) that are missing on this computer. Use NuGet Package Restore to download them. For more information, see http://go.microsoft.com/fwlink/?LinkID=322105. The missing file is {0}.</ErrorText>
</PropertyGroup>
<Error Condition="!Exists('..\..\..\packages\Microsoft.UI.Xaml.2.7.3\build\native\Microsoft.UI.Xaml.targets')" Text="$([System.String]::Format('$(ErrorText)', '..\..\..\packages\Microsoft.UI.Xaml.2.7.3\build\native\Microsoft.UI.Xaml.targets'))" />
</Target>
<Import Project="$(SolutionDir)build\rules\CollectWildcardResources.targets" />
</Project>

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