Added VS2019 projects for mod DLLs, removed Meson

This commit is contained in:
shawns-valve 2024-08-21 18:31:07 -07:00
parent 116568a03a
commit 42f2ec8bc8
533 changed files with 287 additions and 115479 deletions

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@ -60,14 +60,8 @@ Remember: Just because the issue you reported was reported here does not mean th
Building the SDK code
-------
Visual Studio 2019 is required to build mod DLLs on Windows. In the Visual Studio installer, install "Desktop development with C++" under "Workloads" and "C++ MFC for latest v142 build tools (x86 & x64)" under "Individual components". Python must also be installed to run scripts used as part of the build process (Python 3.9 has been tested).
Visual Studio 2019 is required to build mod DLLs on Windows. In the Visual Studio installer, install "Desktop development with C++" under "Workloads" and "C++ MFC for latest v142 build tools (x86 & x64)" under "Individual components". VS2019 projects can be found in the `projects\vs2019` folder.
To generate a Visual Studio solution with projects for each mod, run `create_vs_projects.bat` from a command line. This will create a solution file called `goldsrc.sln` in a folder called `build-debugoptimized-sln`. You can add `release` to the command line to generate a solution that builds the Release configuration instead, e.g. `create_vs_projects.bat release`.
create_vs_projects uses [Meson](https://mesonbuild.com/) to generate the projects and solution. Each mod DLL must have a corresponding `meson.build` file that specifies the included files and dependencies.
By default, as a post-build step, built mod DLLs are copied to a folder called `game` one level up from the root SDK folder. This behavior can be customized by modifying `vs_add_build_steps.py` under `devtools`.
Tools have not yet been updated for Meson / VS2019, but can be built using the VS2010 projects in the projects\vs2010 folder. See the `readme.txt` file there.
Tools have not yet been updated for VS2019, but can be built using the VS2010 projects in the `projects\vs2010` folder. See the `readme.txt` file there.
Linux binaries are built using Makefiles found in the `linux` folder, and are expected to be built / run in the Steam Runtime "scout" environment. You will need to set the environment variables VALVE_NO_AUTO_P4=1 and USE_STEAM_RUNTIME=1 while building.

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@ -1,648 +0,0 @@
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# PROP BASE Intermediate_Dir ".\Release"
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# ADD BASE MTL /nologo /D "NDEBUG" /win32
# ADD MTL /nologo /D "NDEBUG" /mktyplib203 /win32
# ADD BASE RSC /l 0x409 /d "NDEBUG"
# ADD RSC /l 0x409 /d "NDEBUG"
BSC32=bscmake.exe
# ADD BASE BSC32 /nologo
# ADD BSC32 /nologo
LINK32=link.exe
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# Begin Custom Build
InputDir=.\Release
ProjDir=.
InputPath=.\Release\client.dll
InputName=client
SOURCE="$(InputPath)"
BuildCmds= \
call ..\filecopy.bat $(InputDir)\$(InputName).dll $(ProjDir)\..\..\game\mod\cl_dlls\$(InputName).dll \
call ..\filecopy.bat $(InputDir)\$(InputName).pdb $(ProjDir)\..\..\game\mod\cl_dlls\$(InputName).pdb \
"$(ProjDir)\..\..\game\mod\cl_dlls\$(InputName).dll" : $(SOURCE) "$(INTDIR)" "$(OUTDIR)"
$(BuildCmds)
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# PROP BASE Intermediate_Dir ".\Debug"
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# ADD BASE MTL /nologo /D "_DEBUG" /win32
# ADD MTL /nologo /D "_DEBUG" /mktyplib203 /win32
# ADD BASE RSC /l 0x409 /d "_DEBUG"
# ADD RSC /l 0x409 /d "_DEBUG"
BSC32=bscmake.exe
# ADD BASE BSC32 /nologo
# ADD BSC32 /nologo
LINK32=link.exe
# ADD BASE LINK32 kernel32.lib user32.lib gdi32.lib winspool.lib comdlg32.lib advapi32.lib shell32.lib ole32.lib oleaut32.lib uuid.lib odbc32.lib odbccp32.lib /nologo /subsystem:windows /dll /debug /machine:I386
# ADD LINK32 oleaut32.lib uuid.lib odbc32.lib odbccp32.lib kernel32.lib user32.lib gdi32.lib winspool.lib comdlg32.lib advapi32.lib shell32.lib ole32.lib winmm.lib ..\utils\vgui\lib\win32_vc6\vgui.lib wsock32.lib ..\lib\public\sdl2.lib /nologo /base:"0x01900000" /subsystem:windows /dll /debug /machine:I386 /out:".\Debug\client.dll"
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# Begin Custom Build
InputDir=.\Debug
ProjDir=.
InputPath=.\Debug\client.dll
InputName=client
SOURCE="$(InputPath)"
BuildCmds= \
call ..\filecopy.bat $(InputDir)\$(InputName).dll $(ProjDir)\..\..\game\mod\cl_dlls\$(InputName).dll \
call ..\filecopy.bat $(InputDir)\$(InputName).pdb $(ProjDir)\..\..\game\mod\cl_dlls\$(InputName).pdb \
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!ELSEIF "$(CFG)" == "cl_dll - Win32 Debug"
# ADD CPP /MT
!ENDIF
# End Source File
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SOURCE=.\ev_common.cpp
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# End Target
# End Project

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@ -1,175 +0,0 @@
hl_client_src = [
'hud_spectator.cpp',
'../game_shared/vgui_scrollbar2.cpp',
'../game_shared/vgui_slider2.cpp',
'vgui_SpectatorPanel.cpp',
'../dlls/crossbow.cpp',
'../dlls/crowbar.cpp',
'../dlls/egon.cpp',
'ev_hldm.cpp',
'../dlls/gauss.cpp',
'../dlls/handgrenade.cpp',
'hl/hl_baseentity.cpp',
'hl/hl_events.cpp',
'hl/hl_objects.cpp',
'hl/hl_weapons.cpp',
'../dlls/wpn_shared/hl_wpn_glock.cpp',
'../dlls/hornetgun.cpp',
'../dlls/mp5.cpp',
'../dlls/python.cpp',
'../dlls/rpg.cpp',
'../dlls/satchel.cpp',
'../dlls/shotgun.cpp',
'../dlls/squeakgrenade.cpp',
'../dlls/tripmine.cpp',
'ammo.cpp',
'ammo_secondary.cpp',
'ammohistory.cpp',
'battery.cpp',
'cdll_int.cpp',
'com_weapons.cpp',
'death.cpp',
'demo.cpp',
'entity.cpp',
'ev_common.cpp',
'events.cpp',
'flashlight.cpp',
'GameStudioModelRenderer.cpp',
'geiger.cpp',
'health.cpp',
'hud.cpp',
'hud_bench.cpp',
'hud_benchtrace.cpp',
'hud_msg.cpp',
'hud_redraw.cpp',
'hud_servers.cpp',
'hud_update.cpp',
'in_camera.cpp',
'input.cpp',
'inputw32.cpp',
'../public/interface.cpp',
'interpolation.cpp',
'menu.cpp',
'message.cpp',
'../common/parsemsg.cpp',
'../pm_shared/pm_debug.c',
'../pm_shared/pm_math.c',
'../pm_shared/pm_shared.c',
'saytext.cpp',
'status_icons.cpp',
'statusbar.cpp',
'studio_util.cpp',
'StudioModelRenderer.cpp',
'text_message.cpp',
'train.cpp',
'tri.cpp',
'util.cpp',
'../game_shared/vgui_checkbutton2.cpp',
'vgui_ClassMenu.cpp',
'vgui_ControlConfigPanel.cpp',
'vgui_CustomObjects.cpp',
'../game_shared/vgui_grid.cpp',
'../game_shared/vgui_helpers.cpp',
'vgui_int.cpp',
'../game_shared/vgui_listbox.cpp',
'../game_shared/vgui_loadtga.cpp',
'vgui_MOTDWindow.cpp',
'vgui_SchemeManager.cpp',
'vgui_ScorePanel.cpp',
'vgui_ServerBrowser.cpp',
'vgui_TeamFortressViewport.cpp',
'vgui_TeamMenu.cpp',
'view.cpp',
'../game_shared/voice_banmgr.cpp',
'voice_status.cpp',
'ammo.h',
'ammohistory.h',
'camera.h',
'cl_dll.h',
'cl_util.h',
'com_weapons.h',
'demo.h',
'ev_hldm.h',
'eventscripts.h',
'GameStudioModelRenderer.h',
'health.h',
'hud.h',
'hud_servers.h',
'hud_servers_priv.h',
'hud_spectator.h',
'../public/cl_dll/IGameClientExports.h',
'in_defs.h',
'interpolation.h',
'kbutton.h',
'../common/parsemsg.h',
'../pm_shared/pm_debug.h',
'../pm_shared/pm_defs.h',
'../pm_shared/pm_info.h',
'../pm_shared/pm_materials.h',
'../pm_shared/pm_movevars.h',
'../pm_shared/pm_shared.h',
'StudioModelRenderer.h',
'tri.h',
'util_vector.h',
'vgui_ControlConfigPanel.h',
'vgui_int.h',
'vgui_SchemeManager.h',
'vgui_ScorePanel.h',
'../game_shared/vgui_scrollbar2.h',
'vgui_ServerBrowser.h',
'../game_shared/vgui_slider2.h',
'vgui_SpectatorPanel.h',
'view.h',
'../game_shared/voice_banmgr.h',
'../game_shared/voice_status.h',
'wrect.h',
]
hl_client_defines = [
'-DVOXEL',
'-DQUAKE2',
'-DVALVE_DLL',
'-DCLIENT_DLL',
'-DCLIENT_WEAPONS',
'-DHL_DLL',
]
hl_client_includes = include_directories([
'.',
'../dlls',
'../pm_shared',
'../game_shared',
'../engine',
'../utils/vgui/include',
])
hl_client_deps = [
vgui2_dep,
vgui_dep,
SDL2_dep,
ws2_32_dep,
]
install_dir = '/valve/cl_dlls'
target_name = 'client'
hl_client_lib = shared_library(target_name, hl_client_src,
dependencies : hl_client_deps,
cpp_args : hl_client_defines,
c_args : hl_client_defines,
include_directories : [ hl_client_includes, goldsrc_includes ],
install : true,
install_dir : output_dir + install_dir,
)
hl_client_dep = declare_dependency(
link_with : [ hl_client_lib ],
)
# this doesn't run when we need it to; the vcxproj won't be generated yet........ thought REGEN might run it but nah
# cmd = join_paths(meson.current_build_dir(), '..\..\devtools\inject_post_build.bat')
# cs = run_command(cmd, [target_name, meson.current_build_dir(), install_dir], check: false)
# #message(cs.stdout())
cmd = join_paths(meson.current_build_dir(), '..\..\devtools\meson_set_outdir.bat')
cs = run_command(cmd, [target_name, meson.current_build_dir(), install_dir], check: false)
#message(cs.stdout())

View file

@ -1,75 +0,0 @@
@if "%overbose%" == "" echo off
REM ----------------------------------
REM create_vs_projects.bat
REM create a usable sln and vcxproj for the goldsrc dlls
REM ----------------------------------
setlocal enabledelayedexpansion
goto Setup
:Setup
set _PYTHON_=vpython
set _VSVER_=2019
set _BUILD_=DEBUG
set _BUILDTYPE_=debugoptimized
REM TODO: better arg support here
if "%1" == "release" (
set _BUILD_=RELEASE
set _BUILDTYPE_=release
)
if "%_BUILD_%" == "DEBUG" (
set _BUILDTYPE_=debugoptimized
)
set "_PGM_FILES_=%ProgramFiles%"
if not exist "!_PGM_FILES_!\Microsoft Visual Studio\%_VSVER_%\" (
set "_PGM_FILES_=%ProgramFiles(x86)%"
)
set "VSINSTALLDIR=!_PGM_FILES_!\Microsoft Visual Studio\%_VSVER_%\BuildTools\"
set "_VC_VARS_=!VSINSTALLDIR!VC\Auxiliary\Build\vcvars32.bat"
if not exist "!_VC_VARS_!" (
set "VSINSTALLDIR=!_PGM_FILES_!\Microsoft Visual Studio\%_VSVER_%\Professional\"
set "_VC_VARS_=!VSINSTALLDIR!VC\Auxiliary\Build\vcvars32.bat"
)
if not exist "!_VC_VARS_!" (
set "VSINSTALLDIR=!_PGM_FILES_!\Microsoft Visual Studio\%_VSVER_%\Community\"
set "_VC_VARS_=!VSINSTALLDIR!VC\Auxiliary\Build\vcvars32.bat"
)
call "%_VC_VARS_%"
call %_PYTHON_% --version 2>NUL
if errorlevel 1 (
echo %_PYTHON_% not installed, using system python3.
set _PYTHON_=python3
call !_PYTHON_! --version 2>NUL
if errorlevel 1 (
echo !_PYTHON_! ALSO not installed, using system python.
set _PYTHON_=python
)
)
goto GenerateSLN
:GenerateSLN
echo:
echo ------------------------------------------------------------------
echo cleaning previous sln artifacts.
RD /S /Q "build-%_BUILDTYPE_%-sln"
echo ------------------------------------------------------------------
call %_PYTHON_% devtools\meson\meson.py setup --buildtype %_BUILDTYPE_% --backend vs%_VSVER_% build-%_BUILDTYPE_%-sln
REM now we post-process the meson output
call %_PYTHON_% devtools\vs_add_build_steps.py %_BUILDTYPE_%
call %_PYTHON_% devtools\vs_add_launch_config.py cl_dll\client.vcxproj hl %_BUILDTYPE_%
goto End
:End
echo:
echo ------------------------------------------------------------------
echo Work Complete.

238
devtools/image_to_spr.py Normal file
View file

@ -0,0 +1,238 @@
import os
import sys
import struct
from PIL import Image
import math
# Sprite type:
# 0 = VP_PARALLEL_UPRIGHT,
# 1 = FACING_UPRIGHT,
# 2 = VP_PARALLEL,
# 3 = ORIENTED,
# 4 = VP_PARALLEL_ORIENTED
# Texture format:
# 0 = SPR_NORMAL
# 1 = SPR_ADDITIVE
# 2 = SPR_INDEXALPHA
# 3 = SPR_ALPHTEST
#TODO: original width / height preservation throughout, use that for offsets and bounding radii
def write_spr_header(spr_file, width, height, numframes, sprite_type=2, texture_format=1, synctype=0):
bounding_radius = 32
if width > 0 and height > 0:
bounding_radius = math.sqrt( ( (width / 2) ** 2 ) + ( ( height / 2) ** 2 ) )
spr_file.write(b'IDSP') # Identifier
spr_file.write(struct.pack('<i', 2)) # Version (2 for Half-Life)
spr_file.write(struct.pack('<i', sprite_type)) # Sprite type
spr_file.write(struct.pack('<i', texture_format)) #Texture Format (0 = SPR_NORMAL)
spr_file.write(struct.pack('<f', bounding_radius))
spr_file.write(struct.pack('<i', width)) # Width
spr_file.write(struct.pack('<i', height)) # Height
spr_file.write(struct.pack('<i', numframes)) # Number of frames
spr_file.write(struct.pack('<f', 0.0)) # Beamlength (not used)
spr_file.write(struct.pack('<i', synctype)) # Synctype (0 for synchronized)
def write_palette_data(spr_file, image, palette):
spr_file.write(struct.pack('<h', 256))
#palette = image.getpalette()#[:768] # 256 colors * 3 (R, G, B)
spr_file.write(bytearray(palette))
def closest_color_index(rgb, color_list):
"""Find the index of the closest color in the list."""
distances = [euclidean_distance(rgb, color) for color in color_list]
return distances.index(min(distances))
def euclidean_distance(c1, c2):
"""Calculate the Euclidean distance between two colors."""
return sum((a - b) ** 2 for a, b in zip(c1, c2)) ** 0.5
def write_indexed_data(spr_file, image, palette):
img_data = list( image.getdata() )
indexed_data = []
palette_colors = []
for i in range(0, len(palette)-4, 3):
palette_colors.append( palette[i:i+3] )
img_colors = []
for i in range(0, len(img_data), 1):
col = img_data[i]
img_colors.append( list(col) )
#print(f"palette_colors: {palette_colors}\n\n")
num_prints = 0
for p in img_colors:
idx = 0
if p in palette_colors:
#print(f"found {p} in palette_colors")
idx = palette_colors.index(p)
else:
num_prints = num_prints + 1
if num_prints < 30:
print(f"couldn't find {p}")
indexed_data.append(idx)
spr_file.write(bytearray(indexed_data))
# for index in indexed_data:
# spr_file.write(struct.pack('<B', index))
def next_power_of_two(n):
"""Return the next power of two for given n."""
return 2 ** (n - 1).bit_length()
def pad_image_to_power_of_two(image):
"""Pad image dimensions to the next power of two."""
width, height = image.size
new_width = next_power_of_two(width)
new_height = next_power_of_two(height)
# Create a new blank image with the padded size
padded_image = Image.new("RGB", (new_width, new_height), 0)
padded_image.paste(image, (0, 0))
return padded_image
def create_palette(img):
"""Extract unique colors from the image and create a palette."""
# Get the list of all colors in the image
colors = list(img.getdata())
# Deduplicate the colors
unique_colors = sorted(list(set(colors)))
#print( f"unique_colors: {unique_colors}" )
# Create a palette
palette = []
for color in unique_colors:
palette.extend(color[:3]) # We only want RGB, not RGBA
# Fill the rest of the 256-color palette with black
while len(palette) < 256 * 3:
palette.extend((0, 0, 0))
#print( f"palette: {palette}" )
return unique_colors, palette
def palettize_image(img, unique_colors, palette):
# Create a palette image whose size does not matter
arbitrary_size = 16, 16
palimage = Image.new('P', arbitrary_size)
palimage.putpalette(palette)
img_p = img.convert("P", 0, palimage.im)
img_p.putpalette(palette)
return img_p
def img_to_spr(img_path, spr_path):
# 1. Read the image file and convert to indexed color
image = Image.open(img_path).convert("RGBA")
# 1.1. Pad image to power of two dimensions
image = pad_image_to_power_of_two(image)
width, height = image.size
# Extract unique colors and create a palette
unique_colors, palette = create_palette(image)
# Palettize the image
# image.save(spr_path + "_PALETTETIME.png")
#print("\n\n\n")
with open(spr_path, 'wb') as spr_file:
# 2. Write SPR header
write_spr_header(spr_file, width, height, 1)
# 3. Write the palette data
write_palette_data(spr_file, image, palette)
# 4. Write the frame header
spr_file.write(struct.pack('<i', 0)) # frame group
spr_file.write(struct.pack('<i', int(-width/2)) ) # frame_origin_x
spr_file.write(struct.pack('<i', int(-height/2)) ) # frame_origin_y
spr_file.write(struct.pack('<i', width)) # frame_width
spr_file.write(struct.pack('<i', height)) # frame_height
# 4.1 Write the indexed data
write_indexed_data(spr_file, image, palette)
def read_spr(filename):
with open(filename, 'rb') as f:
# Read the SPR header
id = f.read(4).decode()
if id != 'IDSP':
raise ValueError("Not a valid SPR file")
version, = struct.unpack('<i', f.read(4))
type, = struct.unpack('<i', f.read(4))
if type != 2: # 2 = VP_PARALLEL
raise ValueError(f"Only VP_PARALLEL type supported, got {type}")
# other header info...
format, = struct.unpack('<i', f.read(4))
bounding_radius, = struct.unpack('<f', f.read(4))
width, = struct.unpack('<i', f.read(4))
height, = struct.unpack('<i', f.read(4))
num_frames, = struct.unpack('<i', f.read(4))
beam_len, = struct.unpack('<f', f.read(4))
sync_type, = struct.unpack('<i', f.read(4))
#print(f"format: {format}\nbounding_radius: {bounding_radius}\nwidth: {width}\nheight: {height}\nnum_frames: {num_frames}\nbeam_len: {beam_len}\nsync_type: {sync_type}\n")
# For simplicity, assume a single frame
if num_frames != 1:
raise ValueError(f"Only single frame SPRs supported, got {num_frames}")
palette_len, = struct.unpack('<h', f.read(2))
# Read the palette (256 RGB entries)
palette = [(ord(f.read(1)), ord(f.read(1)), ord(f.read(1))) for _ in range(256)]
#print( f"palette: {palette}" )
# Read the frame
frame_group, = struct.unpack('<i', f.read(4))
frame_origin_x, = struct.unpack('<i', f.read(4))
frame_origin_y, = struct.unpack('<i', f.read(4))
frame_width, = struct.unpack('<i', f.read(4))
frame_height, = struct.unpack('<i', f.read(4))
#print(f"frame_group: {frame_group} frame_origin_x: {frame_origin_x} frame_origin_y: {frame_origin_y} frame_width: {frame_width} frame_height: {frame_height}")
data = f.read(width * height)
return width, height, palette, data
def save_as_png(filename, width, height, palette, data):
img_data = [palette[byte] for byte in data]
img = Image.new('RGB', (width, height))
img.putdata(img_data)
img.save(filename)
if __name__ == "__main__":
if len(sys.argv) != 2:
print("Usage: python image_to_spr.py path_to_image (psd/png)")
sys.exit(1)
img_path = sys.argv[1]
spr_path = img_path.rsplit('.', 1)[0] + ".spr" # Replace .png with .spr for output
print(f"{img_path} -> {spr_path}")
img_to_spr(img_path, spr_path)
width, height, palette, data = read_spr(spr_path)
save_as_png(spr_path + "__.png", width, height, palette, data)
print(f"Converted {img_path} to {spr_path}")
#spr_path = 'content/materialsrc/Sprites/1280/test.spr'
#width, height, palette, data = read_spr(spr_path)
#save_as_png(spr_path + "__.png", width, height, palette, data)

View file

@ -1,202 +0,0 @@
Apache License
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6. Trademarks. This License does not grant permission to use the trade
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7. Disclaimer of Warranty. Unless required by applicable law or
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8. Limitation of Liability. In no event and under no legal theory,
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unless required by applicable law (such as deliberate and grossly
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the Work or Derivative Works thereof, You may choose to offer,
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APPENDIX: How to apply the Apache License to your work.
To apply the Apache License to your work, attach the following
boilerplate notice, with the fields enclosed by brackets "[]"
replaced with your own identifying information. (Don't include
the brackets!) The text should be enclosed in the appropriate
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file or class name and description of purpose be included on the
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Copyright [yyyy] [name of copyright owner]
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
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Unless required by applicable law or agreed to in writing, software
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View file

@ -1,19 +0,0 @@
graft test?cases
graft manual?tests
graft cross
graft data
graft graphics
graft man
graft tools
graft packaging
graft unittests
include contributing.md
include COPYING
include README.md
include run_cross_test.py
include run_tests.py
include run_unittests.py
include run_meson_command_tests.py
include run_project_tests.py
include meson.py

View file

@ -1,33 +0,0 @@
Metadata-Version: 2.1
Name: meson
Version: 1.2.2
Summary: A high performance build system
Home-page: https://mesonbuild.com
Author: Jussi Pakkanen
Author-email: jpakkane@gmail.com
License: Apache License, Version 2.0
Project-URL: Source, https://github.com/mesonbuild/meson
Keywords: meson,mesonbuild,build system,cmake
Classifier: Development Status :: 5 - Production/Stable
Classifier: Environment :: Console
Classifier: Intended Audience :: Developers
Classifier: License :: OSI Approved :: Apache Software License
Classifier: Natural Language :: English
Classifier: Operating System :: MacOS :: MacOS X
Classifier: Operating System :: Microsoft :: Windows
Classifier: Operating System :: POSIX :: BSD
Classifier: Operating System :: POSIX :: Linux
Classifier: Programming Language :: Python :: 3 :: Only
Classifier: Programming Language :: Python :: 3.7
Classifier: Programming Language :: Python :: 3.8
Classifier: Programming Language :: Python :: 3.9
Classifier: Programming Language :: Python :: 3.10
Classifier: Programming Language :: Python :: 3.11
Classifier: Topic :: Software Development :: Build Tools
Requires-Python: >=3.7
Provides-Extra: ninja
Provides-Extra: progress
Provides-Extra: typing
License-File: COPYING
Meson is a cross-platform build system designed to be both as fast and as user friendly as possible. It supports many languages and compilers, including GCC, Clang, PGI, Intel, and Visual Studio. Its build definitions are written in a simple non-Turing complete DSL.

View file

@ -1,104 +0,0 @@
<p align="center">
<img src="https://mesonbuild.com/assets/images/meson_logo.png">
</p>
Meson® is a project to create the best possible next-generation
build system.
#### Status
[![PyPI](https://img.shields.io/pypi/v/meson.svg)](https://pypi.python.org/pypi/meson)
[![Build Status](https://dev.azure.com/jussi0947/jussi/_apis/build/status/mesonbuild.meson)](https://dev.azure.com/jussi0947/jussi/_build/latest?definitionId=1)
[![Codecov](https://codecov.io/gh/mesonbuild/meson/coverage.svg?branch=master)](https://codecov.io/gh/mesonbuild/meson/branch/master)
#### Dependencies
- [Python](https://python.org) (version 3.7 or newer)
- [Ninja](https://ninja-build.org) (version 1.8.2 or newer)
Latest Meson version supporting previous Python versions:
- Python 3.6: **0.61.5**
- Python 3.5: **0.56.2**
- Python 3.4: **0.45.1**
#### Installing from source
Meson is available on [PyPi](https://pypi.python.org/pypi/meson), so
it can be installed with `pip3 install meson`. The exact command to
type to install with `pip` can vary between systems, be sure to use
the Python 3 version of `pip`.
If you wish you can install it locally with the standard Python command:
```console
python3 -m pip install meson
```
For builds using Ninja, Ninja can be downloaded directly from Ninja
[GitHub release page](https://github.com/ninja-build/ninja/releases)
or via [PyPi](https://pypi.python.org/pypi/ninja)
```console
python3 -m pip install ninja
```
More on Installing Meson build can be found at the
[getting meson page](https://mesonbuild.com/Getting-meson.html).
#### Creating a standalone script
Meson can be run as a [Python zip
app](https://docs.python.org/3/library/zipapp.html). To generate the
executable run the following command:
./packaging/create_zipapp.py --outfile meson.pyz --interpreter '/usr/bin/env python3' <source checkout>
#### Running
Meson requires that you have a source directory and a build directory
and that these two are different. In your source root must exist a
file called `meson.build`. To generate the build system run this
command:
`meson setup <source directory> <build directory>`
Depending on how you obtained Meson the command might also be called
`meson.py` instead of plain `meson`. In the rest of this document we
are going to use the latter form.
You can omit either of the two directories, and Meson will substitute
the current directory and autodetect what you mean. This allows you to
do things like this:
```console
cd <source root>
meson setup builddir
```
To compile, cd into your build directory and type `ninja`. To run unit
tests, type `ninja test`.
More on running Meson build system commands can be found at the
[running meson page](https://mesonbuild.com/Running-Meson.html)
or by typing `meson --help`.
#### Contributing
We love code contributions. See the [contribution
page](https://mesonbuild.com/Contributing.html) on the website for
details.
#### IRC
The channel to use is `#mesonbuild` either via Matrix ([web
interface][matrix_web]) or [OFTC IRC][oftc_irc].
[matrix_web]: https://app.element.io/#/room/#mesonbuild:matrix.org
[oftc_irc]: https://www.oftc.net/
#### Further info
More information about the Meson build system can be found at the
[project's home page](https://mesonbuild.com).
Meson is a registered trademark of ***Jussi Pakkanen***.

View file

@ -1,8 +0,0 @@
## Contributing to the Meson build system
Thank you for your interest in participating to the development!
A large fraction of Meson is contributed by people outside
the core team and we are *excited* to see what you do.
**Contribution instructions can be found on the website**
@ https://mesonbuild.com/Contributing.html

View file

@ -1,18 +0,0 @@
[binaries]
c = 'cl'
cpp = 'cl'
fc = 'false'
ar = 'lib'
windres = 'rc'
[built-in options]
c_args = ['-DWINAPI_FAMILY=WINAPI_FAMILY_APP']
c_link_args = ['-APPCONTAINER', 'WindowsApp.lib']
cpp_args = ['-DWINAPI_FAMILY=WINAPI_FAMILY_APP']
cpp_link_args = ['-APPCONTAINER', 'WindowsApp.lib']
[host_machine]
system = 'windows'
cpu_family = 'aarch64'
cpu = 'armv8'
endian = 'little'

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@ -1,20 +0,0 @@
# This file assumes that path to the arm compiler toolchain is added
# to the environment(PATH) variable, so that Meson can find
# the armcc, armlink and armar while building.
[binaries]
c = 'armcc'
cpp = 'armcc'
ar = 'armar'
strip = 'armar'
[built-in options]
# The '--cpu' option with the appropriate target type should be mentioned
# to cross compile c/c++ code with armcc,.
c_args = ['--cpu=Cortex-M0plus']
cpp_args = ['--cpu=Cortex-M0plus']
[host_machine]
system = 'bare metal' # Update with your system name - bare metal/OS.
cpu_family = 'arm'
cpu = 'Cortex-M0+'
endian = 'little'

View file

@ -1,31 +0,0 @@
# Using ARM compilers from Linux command line is tricky and
# not really well documented because they want you to use
# their IDE instead.
#
# First you need to do the full install with the IDE and set
# up license files et al. This may be possible from the command
# line.
#
# Then you need to do the following:
#
# Select toolchain by running /opt/arm/developmentstudio-2019.0/bin/select_default_toolchain
# Armcc is only available in toolchain version 5.
# Armclang is only available in toolchain version 6.
# Start shell with /opt/arm/developmentstudio-2019.0/bin/suite_exec zsh
# Now the compilers will work.
[binaries]
# we could set exe_wrapper = qemu-arm-static but to test the case
# when cross compiled binaries can't be run we don't do that
c = ['/opt/arm/developmentstudio-2019.0/sw/ARMCompiler6.12/bin/armclang', '--target=aarch64-arm-none-eabi']
#c = '/opt/arm/developmentstudio-2019.0/sw/ARMCompiler5.06u6/bin/armcc'
#cpp = '/usr/bin/arm-linux-gnueabihf-g++'
ar = '/opt/arm/developmentstudio-2019.0/sw/ARMCompiler6.12/bin/armar'
#strip = '/usr/arm-linux-gnueabihf/bin/strip'
#pkg-config = '/usr/bin/arm-linux-gnueabihf-pkg-config'
[host_machine]
system = 'baremetal'
cpu_family = 'arm'
cpu = 'armv7' # Not sure if correct.
endian = 'little'

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@ -1,20 +0,0 @@
# This file assumes that path to the arm compiler toolchain is added
# to the environment(PATH) variable, so that Meson can find
# the armclang, armlink and armar while building.
[binaries]
c = ['armclang', '--target=arm-arm-none-eabi']
cpp = ['armclang', '--target=arm-arm-none-eabi']
ar = 'armar'
strip = 'armar'
[built-in options]
# The '--target', '-mcpu' options with the appropriate values should be mentioned
# to cross compile c/c++ code with armclang.
c_args = ['-mcpu=cortex-m0plus']
cpp_args = ['-mcpu=cortex-m0plus']
[host_machine]
system = 'bare metal' # Update with your system name - bare metal/OS.
cpu_family = 'arm'
cpu = 'Cortex-M0+'
endian = 'little'

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@ -1,28 +0,0 @@
# This file assumes that path to the Texas Instruments C20000 toolchain is added
# to the environment(PATH) variable, so that Meson can find
# cl2000 and ar2000 while building.
[binaries]
c = 'cl2000'
ar = 'ar2000'
strip = 'cl2000'
[host_machine]
system = 'bare metal'
cpu_family = 'c2000'
cpu = 'c28x'
endian = 'little'
[built-in options]
c_args = [
'-v28',
'-ml',
'-mt']
c_link_args = [
'-z',
'--rom_model',
'\f28004x_flash.cmd']
cpp_args = []
cpp_link_args = []
[properties]
needs_exe_wrapper = true

View file

@ -1,13 +0,0 @@
[binaries]
c = ['ccomp', '-target', 'armv7a-eabi']
ar = 'ccomp'
strip = 'strip'
[built-in options]
c_args = ['-fall']
[host_machine]
system = 'bare metal' # Update with your system name - bare metal/OS.
cpu_family = 'arm'
cpu = 'Cortex-A9'
endian = 'little'

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@ -1,22 +0,0 @@
# This file assumes that path to the Renesas CC-RX toolchain is added
# to the environment(PATH) variable, so that Meson can find
# ccrx and rlink while building.
[binaries]
c = 'ccrx'
cpp = 'ccrx'
ar = 'rlink'
strip = 'rlink'
[built-in options]
# The '--cpu' option with the appropriate target type should be mentioned
# to cross compile c/c++ code with ccrx,.
c_args = ['-cpu=rx600']
cpp_args = ['-cpu=rx600']
c_link_args = []
cpp_link_args = []
[host_machine]
system = 'bare metal'
cpu_family = 'rx'
cpu = 'rx600'
endian = 'little'

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@ -1,32 +0,0 @@
# This is a cross compilation file from OSX Yosemite to iPhone
# Apple keeps changing the location and names of files so
# these might not work for you. Use the googles and xcrun.
[binaries]
c = ['clang', '-arch', 'arm64', '-isysroot', '/Applications/Xcode.app/Contents/Developer/Platforms/iPhoneOS.platform/Developer/SDKs/iPhoneOS.sdk']
cpp = ['clang++', '-arch', 'arm64', '-isysroot', '/Applications/Xcode.app/Contents/Developer/Platforms/iPhoneOS.platform/Developer/SDKs/iPhoneOS.sdk']
objc = ['clang', '-arch', 'arm64', '-isysroot', '/Applications/Xcode.app/Contents/Developer/Platforms/iPhoneOS.platform/Developer/SDKs/iPhoneOS.sdk']
objcpp = ['clang++', '-arch', 'arm64', '-isysroot', '/Applications/Xcode.app/Contents/Developer/Platforms/iPhoneOS.platform/Developer/SDKs/iPhoneOS.sdk']
ar = 'ar'
strip = 'strip'
[built-in options]
c_args = ['-miphoneos-version-min=11.0']
cpp_args = ['-miphoneos-version-min=11.0']
c_link_args = ['-miphoneos-version-min=11.0']
cpp_link_args = ['-miphoneos-version-min=11.0']
objc_args = ['-miphoneos-version-min=11.0']
objcpp_args = ['-miphoneos-version-min=11.0']
[properties]
root = '/Applications/Xcode.app/Contents/Developer/Platforms/iPhoneOS.platform/Developer'
has_function_printf = true
has_function_hfkerhisadf = false
[host_machine]
system = 'darwin'
subsystem = 'ios'
kernel = 'xnu'
cpu_family = 'aarch64'
cpu = 'aarch64'
endian = 'little'

View file

@ -1,7 +0,0 @@
{
"file": "linux-mingw-w64-32bit.txt",
"tests": ["common", "cmake"],
"env": {
"WINEPATH": "/usr/lib/gcc/i686-w64-mingw32/9.2-posix;/usr/i686-w64-mingw32/bin;/usr/i686-w64-mingw32/lib"
}
}

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@ -1,31 +0,0 @@
[binaries]
c = '/usr/bin/i686-w64-mingw32-gcc'
cpp = '/usr/bin/i686-w64-mingw32-g++'
objc = '/usr/bin/i686-w64-mingw32-gcc'
ar = '/usr/bin/i686-w64-mingw32-ar'
strip = '/usr/bin/i686-w64-mingw32-strip'
pkg-config = '/usr/bin/i686-w64-mingw32-pkg-config'
windres = '/usr/bin/i686-w64-mingw32-windres'
exe_wrapper = 'wine'
ld = '/usr/bin/i686-w64-mingw32-ld'
cmake = '/usr/bin/cmake'
[properties]
# Directory that contains 'bin', 'lib', etc
root = '/usr/i686-w64-mingw32'
# Directory that contains 'bin', 'lib', etc for the toolchain and system libraries
sys_root = '/usr/i686-w64-mingw32/sys-root/mingw'
[host_machine]
system = 'windows'
cpu_family = 'x86'
cpu = 'i686'
endian = 'little'
[cmake]
CMAKE_BUILD_WITH_INSTALL_RPATH = 'ON'
CMAKE_FIND_ROOT_PATH_MODE_PROGRAM = 'NEVER'
CMAKE_FIND_ROOT_PATH_MODE_LIBRARY = 'ONLY'
CMAKE_FIND_ROOT_PATH_MODE_INCLUDE = 'ONLY'
CMAKE_FIND_ROOT_PATH_MODE_PACKAGE = 'ONLY'

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@ -1,7 +0,0 @@
{
"file": "linux-mingw-w64-64bit.txt",
"tests": ["common", "cmake"],
"env": {
"WINEPATH": "/usr/lib/gcc/x86_64-w64-mingw32/9.2-posix;/usr/x86_64-w64-mingw32/bin;/usr/x86_64-w64-mingw32/lib"
}
}

View file

@ -1,30 +0,0 @@
[binaries]
c = '/usr/bin/x86_64-w64-mingw32-gcc'
cpp = '/usr/bin/x86_64-w64-mingw32-g++'
objc = '/usr/bin/x86_64-w64-mingw32-gcc'
ar = '/usr/bin/x86_64-w64-mingw32-ar'
strip = '/usr/bin/x86_64-w64-mingw32-strip'
pkg-config = '/usr/bin/x86_64-w64-mingw32-pkg-config'
windres = '/usr/bin/x86_64-w64-mingw32-windres'
exe_wrapper = 'wine'
cmake = '/usr/bin/cmake'
[properties]
# Directory that contains 'bin', 'lib', etc
root = '/usr/x86_64-w64-mingw32'
# Directory that contains 'bin', 'lib', etc for the toolchain and system libraries
sys_root = '/usr/x86_64-w64-mingw32/sys-root/mingw'
[host_machine]
system = 'windows'
cpu_family = 'x86_64'
cpu = 'x86_64'
endian = 'little'
[cmake]
CMAKE_BUILD_WITH_INSTALL_RPATH = 'ON'
CMAKE_FIND_ROOT_PATH_MODE_PROGRAM = 'NEVER'
CMAKE_FIND_ROOT_PATH_MODE_LIBRARY = 'ONLY'
CMAKE_FIND_ROOT_PATH_MODE_INCLUDE = 'ONLY'
CMAKE_FIND_ROOT_PATH_MODE_PACKAGE = 'ONLY'

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@ -1,28 +0,0 @@
# This file assumes that the path to your Metrowerks Embedded ARM
# toolchain is added to the environment(PATH) variable, so that
# Meson can find the binaries while building.
# You should also do one of the following to ensure Meson can
# locate the .lcf linker script:
# - Add the cross directory to PATH as well
# - Edit c_link_args and cpp_link_args with the full
# path to the .lcf file on your machine
[binaries]
c = 'mwccarm'
c_ld = 'mwldarm'
cpp = 'mwccarm'
cpp_ld = 'mwldarm'
ar = 'mwldarm'
as = 'mwasmarm'
[built-in options]
c_args = ['-lang', 'c99', '-D_NITRO', '-nosyspath']
c_link_args = 'metrowerks.lcf'
cpp_args = ['-lang', 'c++', '-D_NITRO', '-nosyspath']
cpp_link_args = 'metrowerks.lcf'
[host_machine]
system = 'bare metal'
cpu_family = 'arm'
endian = 'little'

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@ -1,28 +0,0 @@
# This file assumes that the path to your Metrowerks toolchain
# of choice is added to the environment(PATH) variable, so that
# Meson can find the binaries while building.
# You should also do one of the following to ensure Meson can
# locate the .lcf linker script:
# - Add the cross directory to PATH as well
# - Edit c_link_args and cpp_link_args with the full
# path to the lcf file on your machine
[binaries]
c = 'mwcceppc'
c_ld = 'mwldeppc'
cpp = 'mwcceppc'
cpp_ld = 'mwldeppc'
ar = 'mwldeppc'
as = 'mwasmeppc'
[built-in options]
c_args = ['-lang', 'c99', '-nosyspath']
c_link_args = 'metrowerks.lcf'
cpp_args = ['-lang', 'c++', '-nosyspath']
cpp_link_args = 'metrowerks.lcf'
[host_machine]
system = 'bare metal'
cpu_family = 'ppc'
endian = 'little'

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@ -1,18 +0,0 @@
# General-purpose linker script for Metrowerks toolchains.
# This script will link a blank application. Its only purpose
# is to allow the toolchains to run Meson tests. To link an
# actual application, you need to write your own fine-tuned lcf.
MEMORY {
TEST (RWX) : ORIGIN=0, LENGTH=0
}
SECTIONS {
.TEST:{
* (.text)
* (.data)
* (.rodata)
* (.bss)
__startup=.;
} > TEST
}

View file

@ -1,25 +0,0 @@
# This file assumes that path to the Texas Instruments MSP430 toolchain is added
# to the environment(PATH) variable, so that Meson can find
# cl430 and ar430 while building.
[binaries]
c = cl430
ar = ar430
strip = strip430
[host_machine]
system = 'baremetal'
cpu_family = 'msp430'
endian = 'little'
[built-in options]
c_args = [
'-vmsp',
'--printf_support=minimal']
c_link_args = [
'--rom_model',
'-llibc.a',]
cpp_args = []
cpp_link_args = []
[properties]
needs_exe_wrapper = true

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@ -1,19 +0,0 @@
# native file used to make the build machine compiler unusable
[host_machine]
system = 'none'
cpu_family = 'none'
cpu = 'none'
endian = 'little'
[properties]
[binaries]
c = ['false']
cpp = ['false']
fc = ['false']
objc = ['false']
objcpp = ['false']
ar = ['false']
pkg-config = ['false']
cmake = ['false']

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@ -1,13 +0,0 @@
# This is a setup for compiling a program that runs natively
# but uses a custom std lib. This test will only work on
# x86_64.
[target_machine]
system = 'linux'
cpu_family = 'x86_64'
cpu = 'x86_64'
endian = 'little'
[properties]
c_stdlib = 'mylibc' # Subproject name

View file

@ -1,29 +0,0 @@
# This is a cross compilation file from OSX Yosemite to Apple tvOS
# Apple keeps changing the location and names of files so
# these might not work for you. Use the googles and xcrun.
[binaries]
c = ['clang', '-arch', 'arm64', '-isysroot', '/Applications/Xcode.app/Contents/Developer/Platforms/AppleTVOS.platform/Developer/SDKs/AppleTVOS.sdk']
cpp = ['clang++', '-arch', 'arm64', '-isysroot', '/Applications/Xcode.app/Contents/Developer/Platforms/AppleTVOS.platform/Developer/SDKs/AppleTVOS.sdk']
ar = 'ar'
strip = 'strip'
[built-in options]
c_args = ['-mtvos-version-min=12.0']
cpp_args = ['-mtvos-version-min=12.0']
c_link_args = ['-mtvos-version-min=12.0']
cpp_link_args = ['-mtvos-version-min=12.0']
[properties]
root = '/Applications/Xcode.app/Contents/Developer/Platforms/AppleTVOS.platform/Developer'
has_function_printf = true
has_function_hfkerhisadf = false
[host_machine]
system = 'darwin'
subsystem = 'tvos'
kernel = 'xnu'
cpu_family = 'arm'
cpu = 'arm64'
endian = 'little'

View file

@ -1,5 +0,0 @@
{
"file": "ubuntu-armhf.txt",
"tests": ["common"],
"env": {}
}

View file

@ -1,29 +0,0 @@
[binaries]
# we could set exe_wrapper = qemu-arm-static but to test the case
# when cross compiled binaries can't be run we don't do that
c = ['/usr/bin/arm-linux-gnueabihf-gcc']
cpp = ['/usr/bin/arm-linux-gnueabihf-g++']
rust = ['rustc', '--target', 'arm-unknown-linux-gnueabihf', '-C', 'linker=/usr/bin/arm-linux-gnueabihf-gcc-7']
ar = '/usr/arm-linux-gnueabihf/bin/ar'
strip = '/usr/arm-linux-gnueabihf/bin/strip'
pkg-config = '/usr/bin/arm-linux-gnueabihf-pkg-config'
ld = '/usr/bin/arm-linux/gnueabihf-ld'
[built-in options]
# Used in unit test '140 get define'
c_args = ['-DMESON_TEST_ISSUE_1665=1']
cpp_args = '-DMESON_TEST_ISSUE_1665=1'
[properties]
root = '/usr/arm-linux-gnueabihf'
has_function_printf = true
has_function_hfkerhisadf = false
skip_sanity_check = true
[host_machine]
system = 'linux'
cpu_family = 'arm'
cpu = 'armv7' # Not sure if correct.
endian = 'little'

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@ -1,13 +0,0 @@
# This is a setup for compiling a program that runs natively
# but produces output that runs on a different platform.
# That is either a cross compiler or something like binutils.
# We don't need to specify any properties or compilers,
# for we use the native ones and can run the resulting
# binaries directly.
[target_machine]
system = 'linux'
cpu_family = 'mips'
cpu = 'mips'
endian = 'little'

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@ -1,17 +0,0 @@
[binaries]
c = '/home/jpakkane/src/emsdk/upstream/emscripten/emcc'
cpp = '/home/jpakkane/src/emsdk/upstream/emscripten/em++'
ar = '/home/jpakkane/src/emsdk/upstream/emscripten/emar'
[built-in options]
c_args = []
c_link_args = ['-sEXPORT_ALL=1']
cpp_args = []
cpp_link_args = ['-sEXPORT_ALL=1']
[host_machine]
system = 'emscripten'
cpu_family = 'wasm32'
cpu = 'wasm32'
endian = 'little'

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@ -1,26 +0,0 @@
# This file assumes that path to the Microchip xc16 toolchain is added
# to the environment(PATH) variable, so that Meson can find
# xc16-gcc and xc16-ar while building.
[binaries]
c = 'xc16-gcc'
ar = 'xc16-ar'
strip = 'xc16-gcc'
[host_machine]
system = 'bare metal'
cpu_family = 'dspic'
cpu = '33ep64mc203'
endian = 'little'
[properties]
needs_exe_wrapper = true
[built-in options]
c_args = [
'-c',
'-mcpu=33EP64MC203',
'-omf=elf']
c_link_args = [
'-mcpu=33EP64MC203',
'-omf=elf',
'-Wl,--script=p33EP64MC203.gld,']

View file

@ -1,25 +0,0 @@
[run]
branch = True
parallel = True
concurrency = multiprocessing
data_file = @ROOT@/.coverage/coverage
source = @ROOT@/mesonbuild/
[report]
exclude_lines =
if T.TYPE_CHECKING:
[paths]
mesonbuild =
mesonbuild/
__w/meson/meson/mesonbuild/
@ROOT@/mesonbuild/
[html]
directory = @ROOT@/.coverage/html
[xml]
output = @ROOT@/.coverage/coverage.xml
[json]
output = @ROOT@/.coverage/coverage.json

View file

@ -1,22 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE policyconfig PUBLIC "-//freedesktop//DTD polkit Policy Configuration 1.0//EN"
"http://www.freedesktop.org/software/polkit/policyconfig-1.dtd">
<policyconfig>
<vendor>The Meson Build System</vendor>
<vendor_url>https://github.com/mesonbuild/meson</vendor_url>
<action id="com.mesonbuild.install.run">
<description>Install the given project via Meson</description>
<message>Authentication is required to install this project</message>
<icon_name>preferences-system</icon_name>
<defaults>
<allow_any>no</allow_any>
<allow_inactive>no</allow_inactive>
<allow_active>auth_admin_keep</allow_active>
</defaults>
<annotate key="org.freedesktop.policykit.exec.path">/usr/bin/python3</annotate>
<annotate key="org.freedesktop.policykit.exec.argv1">/usr/bin/meson</annotate>
</action>
</policyconfig>

View file

@ -1,45 +0,0 @@
%__meson %{_bindir}/meson
%__meson_wrap_mode nodownload
%__meson_auto_features enabled
%meson \
%set_build_flags \
%{shrink:%{__meson} setup \
--buildtype=plain \
--prefix=%{_prefix} \
--libdir=%{_libdir} \
--libexecdir=%{_libexecdir} \
--bindir=%{_bindir} \
--sbindir=%{_sbindir} \
--includedir=%{_includedir} \
--datadir=%{_datadir} \
--mandir=%{_mandir} \
--infodir=%{_infodir} \
--localedir=%{_datadir}/locale \
--sysconfdir=%{_sysconfdir} \
--localstatedir=%{_localstatedir} \
--sharedstatedir=%{_sharedstatedir} \
--wrap-mode=%{__meson_wrap_mode} \
--auto-features=%{__meson_auto_features} \
%{_vpath_srcdir} %{_vpath_builddir} \
%{nil}}
%meson_build \
%{shrink:%{__meson} compile \
-C %{_vpath_builddir} \
-j %{_smp_build_ncpus} \
--verbose \
%{nil}}
%meson_install \
%{shrink:DESTDIR=%{buildroot} %{__meson} install \
-C %{_vpath_builddir} \
--no-rebuild \
%{nil}}
%meson_test \
%{shrink:%{__meson} test \
-C %{_vpath_builddir} \
--num-processes %{_smp_build_ncpus} \
--print-errorlogs \
%{nil}}

View file

@ -1,96 +0,0 @@
<?xml version="1.0" encoding="UTF-8" ?>
<!-- from https://svn.jenkins-ci.org/trunk/hudson/dtkit/dtkit-format/dtkit-junit-model/src/main/resources/com/thalesgroup/dtkit/junit/model/xsd/junit-4.xsd -->
<xs:schema xmlns:xs="http://www.w3.org/2001/XMLSchema">
<xs:element name="failure">
<xs:complexType mixed="true">
<xs:attribute name="type" type="xs:string" use="optional"/>
<xs:attribute name="message" type="xs:string" use="optional"/>
</xs:complexType>
</xs:element>
<xs:element name="error">
<xs:complexType mixed="true">
<xs:attribute name="type" type="xs:string" use="optional"/>
<xs:attribute name="message" type="xs:string" use="optional"/>
</xs:complexType>
</xs:element>
<xs:element name="properties">
<xs:complexType>
<xs:sequence>
<xs:element ref="property" maxOccurs="unbounded"/>
</xs:sequence>
</xs:complexType>
</xs:element>
<xs:element name="property">
<xs:complexType>
<xs:attribute name="name" type="xs:string" use="required"/>
<xs:attribute name="value" type="xs:string" use="required"/>
</xs:complexType>
</xs:element>
<xs:element name="skipped">
<xs:complexType mixed="true">
<xs:attribute name="message" type="xs:string" use="optional"/>
</xs:complexType>
</xs:element>
<xs:element name="system-err" type="xs:string"/>
<xs:element name="system-out" type="xs:string"/>
<xs:element name="testcase">
<xs:complexType>
<xs:sequence>
<xs:element ref="skipped" minOccurs="0" maxOccurs="1"/>
<xs:element ref="error" minOccurs="0" maxOccurs="unbounded"/>
<xs:element ref="failure" minOccurs="0" maxOccurs="unbounded"/>
<xs:element ref="system-out" minOccurs="0" maxOccurs="unbounded"/>
<xs:element ref="system-err" minOccurs="0" maxOccurs="unbounded"/>
</xs:sequence>
<xs:attribute name="name" type="xs:string" use="required"/>
<xs:attribute name="assertions" type="xs:string" use="optional"/>
<xs:attribute name="time" type="xs:string" use="optional"/>
<xs:attribute name="classname" type="xs:string" use="optional"/>
<xs:attribute name="status" type="xs:string" use="optional"/>
</xs:complexType>
</xs:element>
<xs:element name="testsuite">
<xs:complexType>
<xs:sequence>
<xs:element ref="properties" minOccurs="0" maxOccurs="1"/>
<xs:element ref="testcase" minOccurs="0" maxOccurs="unbounded"/>
<xs:element ref="system-out" minOccurs="0" maxOccurs="1"/>
<xs:element ref="system-err" minOccurs="0" maxOccurs="1"/>
</xs:sequence>
<xs:attribute name="name" type="xs:string" use="required"/>
<xs:attribute name="tests" type="xs:string" use="required"/>
<xs:attribute name="failures" type="xs:string" use="optional"/>
<xs:attribute name="errors" type="xs:string" use="optional"/>
<xs:attribute name="time" type="xs:string" use="optional"/>
<xs:attribute name="disabled" type="xs:string" use="optional"/>
<xs:attribute name="skipped" type="xs:string" use="optional"/>
<xs:attribute name="timestamp" type="xs:string" use="optional"/>
<xs:attribute name="hostname" type="xs:string" use="optional"/>
<xs:attribute name="id" type="xs:string" use="optional"/>
<xs:attribute name="package" type="xs:string" use="optional"/>
</xs:complexType>
</xs:element>
<xs:element name="testsuites">
<xs:complexType>
<xs:sequence>
<xs:element ref="testsuite" minOccurs="0" maxOccurs="unbounded"/>
</xs:sequence>
<xs:attribute name="name" type="xs:string" use="optional"/>
<xs:attribute name="time" type="xs:string" use="optional"/>
<xs:attribute name="tests" type="xs:string" use="optional"/>
<xs:attribute name="failures" type="xs:string" use="optional"/>
<xs:attribute name="disabled" type="xs:string" use="optional"/>
<xs:attribute name="errors" type="xs:string" use="optional"/>
</xs:complexType>
</xs:element>
</xs:schema>

View file

@ -1,492 +0,0 @@
_meson() {
command="${COMP_WORDS[1]}"
meson_subcommands=(
setup
configure
dist
install
introspect
init
test
wrap
subprojects
help
rewrite
compile
devenv
env2mfile
)
if [[ " ${meson_subcommands[*]} " =~ " ${command} " ]]; then
_meson-$command "${COMP_WORDS[@]:1}"
else
_meson-setup "${COMP_WORDS[@]}"
fi
} &&
complete -F _meson meson
_meson_complete_option() {
option_string=$1
if [[ $# -eq 2 ]] && ! [[ "$option_string" == *=* ]]; then
option_string="$option_string=$2"
fi
if [[ "$option_string" == *=* ]]; then
_meson_complete_option_value "$option_string"
else
_meson_complete_option_name "$option_string"
fi
}
_meson_complete_option_name() {
option=$1
options=($(python3 -c 'import sys, json
for option in json.load(sys.stdin):
print(option["name"])
' <<< "$(_meson_get_options)"))
compopt -o nospace
COMPREPLY=($(compgen -W '${options[@]}' -S= -- "$option"))
}
_meson_complete_option_value() {
cur=$1
option_name=${cur%%=*}
option_value=${cur#*=}
if _meson_complete_filedir "$option_name" "$option_value"; then
return
fi
# TODO: support all the option types
options=($(python3 -c 'import sys, json
for option in json.load(sys.stdin):
if option["name"] != "'$option_name'":
continue
choices = []
if option["type"] == "boolean":
choices.append("true")
choices.append("false")
elif option["type"] == "combo":
for choice in option["choices"]:
choices.append(choice)
for choice in choices:
if choice.startswith("'$cur'"):
print(choice)
' <<< "$(_meson_get_options)"))
COMPREPLY=("${options[@]}")
}
_meson_get_options() {
local options
for builddir in "${COMP_WORDS[@]}"; do
if [ -d "$builddir" ]; then
break
fi
builddir=.
done
options=$(meson introspect "$builddir" --buildoptions 2>/dev/null) &&
echo "$options" ||
echo '[]'
}
_meson_complete_filedir() {
_filedir_in() {
pushd "$1" &>/dev/null
local COMPREPLY=()
_filedir
echo "${COMPREPLY[@]}"
popd &>/dev/null
}
option=$1
cur=$2
case $option in
prefix |\
libdir |\
libexecdir |\
bindir |\
sbindir |\
includedir |\
datadir |\
mandir |\
infodir |\
localedir |\
sysconfdir |\
localstatedir |\
sharedstatedir)
_filedir -d
;;
cross-file)
_filedir
COMPREPLY+=($(_filedir_in "$XDG_DATA_DIRS"/meson/cross))
COMPREPLY+=($(_filedir_in /usr/local/share/meson/cross))
COMPREPLY+=($(_filedir_in /usr/share/meson/cross))
COMPREPLY+=($(_filedir_in "$XDG_DATA_HOME"/meson/cross))
COMPREPLY+=($(_filedir_in ~/.local/share/meson/cross))
;;
*)
return 1;;
esac
return 0
}
_meson-setup() {
shortopts=(
h
D
v
)
longopts=(
help
prefix
libdir
libexecdir
bindir
sbindir
includedir
datadir
mandir
infodir
localedir
sysconfdir
localstatedir
sharedstatedir
backend
buildtype
strip
unity
werror
layout
default-library
warnlevel
stdsplit
errorlogs
cross-file
version
wrap-mode
)
local cur prev
if _get_comp_words_by_ref cur prev &>/dev/null &&
[ "${prev:0:2}" = '--' ] && _meson_complete_option "${prev:2}" "$cur"; then
return
elif _get_comp_words_by_ref cur prev &>/dev/null &&
[ "${prev:0:1}" = '-' ] && [ "${prev:1:2}" != '-' ] && _meson_complete_option "${prev:1}"; then
return
elif _get_comp_words_by_ref -n '=' cur prev &>/dev/null; then
if [ $prev == -D ]; then
_meson_complete_option "$cur"
return
fi
else
cur="${COMP_WORDS[COMP_CWORD]}"
fi
if [[ "$cur" == "--"* ]]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
elif [[ "$cur" == "-"* ]]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}' -- "${cur:1}"))
else
_filedir -d
if [ -z "$cur" ]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}'))
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}'))
fi
if [ $COMP_CWORD -eq 1 ]; then
COMPREPLY+=($(compgen -W "${meson_subcommands[*]}" -- "$cur"))
fi
fi
}
_meson-configure() {
shortopts=(
h
D
)
longopts=(
help
clearcache
)
local cur prev
if _get_comp_words_by_ref -n '=' cur prev &>/dev/null; then
if [ $prev == -D ]; then
_meson_complete_option "$cur"
return
fi
else
cur="${COMP_WORDS[COMP_CWORD]}"
fi
if [[ "$cur" == "--"* ]]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
elif [[ "$cur" == "-"* ]]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}' -- "${cur:1}"))
else
for dir in "${COMP_WORDS[@]}"; do
if [ -d "$dir" ]; then
break
fi
dir=.
done
if [ ! -d "$dir/meson-private" ]; then
_filedir -d
fi
if [ -z "$cur" ]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}'))
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}'))
fi
fi
}
_meson-dist() {
: TODO
}
_meson-install() {
: TODO
}
_meson-introspect() {
shortopts=(
h
)
longopts=(
targets
installed
buildsystem-files
buildoptions
tests
benchmarks
dependencies
projectinfo
)
local cur prev
if ! _get_comp_words_by_ref cur prev &>/dev/null; then
cur="${COMP_WORDS[COMP_CWORD]}"
fi
if [[ "$cur" == "--"* ]]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
elif [[ "$cur" == "-"* ]]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}' -- "${cur:1}"))
else
for dir in "${COMP_WORDS[@]}"; do
if [ -d "$dir" ]; then
break
fi
dir=.
done
if [ ! -d "$dir/meson-private" ]; then
_filedir -d
fi
if [ -z "$cur" ]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}'))
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}'))
fi
fi
}
_meson-init() {
shortopts=(
h
C
n
e
e
d
l
b
f
)
longopts=(
help
name
executable
deps
language
builddir
force
type
version
)
if [[ "$cur" == "--"* ]]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
elif [[ "$cur" == "-"* && ${#cur} -gt 1 ]]; then
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}' -- "${cur:1}"))
else
if [ -z "$cur" ]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}'))
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}'))
fi
fi
}
_meson-test() {
shortopts=(
q
v
t
C
)
longopts=(
quiet
verbose
timeout-multiplier
repeat
no-rebuild
gdb
list
wrapper --wrap
no-suite
suite
no-stdsplit
print-errorlogs
benchmark
logbase
num-processes
setup
test-args
)
local cur prev
if _get_comp_words_by_ref -n ':' cur prev &>/dev/null; then
case $prev in
--repeat)
# number, can't be completed
return
;;
--wrapper)
_command_offset $COMP_CWORD
return
;;
-C)
_filedir -d
return
;;
--suite | --no-suite)
for i in "${!COMP_WORDS[@]}"; do
opt="${COMP_WORDS[i]}"
dir="${COMP_WORDS[i+1]}"
case "$opt" in
-C)
break
;;
esac
dir=.
done
suites=($(python3 -c 'import sys, json;
for test in json.load(sys.stdin):
for suite in test["suite"]:
print(suite)
' <<< "$(meson introspect "$dir" --tests)"))
# TODO
COMPREPLY+=($(compgen -W "${suites[*]}" -- "$cur"))
return
;;
--logbase)
# free string, can't be completed
return
;;
--num-processes)
# number, can't be completed
return
;;
-t | --timeout-multiplier)
# number, can't be completed
return
;;
--setup)
# TODO
return
;;
--test-args)
return
;;
esac
else
cur="${COMP_WORDS[COMP_CWORD]}"
fi
if [[ "$cur" == "--"* ]]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
elif [[ "$cur" == "-"* && ${#cur} -gt 1 ]]; then
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}' -- "${cur:1}"))
else
for dir in "${COMP_WORDS[@]}"; do
if [ -d "$dir" ]; then
break
fi
dir=.
done
if [ ! -d "$dir/meson-private" ]; then
_filedir -d
fi
for i in "${!COMP_WORDS[@]}"; do
opt="${COMP_WORDS[i]}"
dir="${COMP_WORDS[i+1]}"
case "$opt" in
-C)
break
;;
esac
dir=.
done
tests=($(python3 -c 'import sys, json;
for test in json.load(sys.stdin):
print(test["name"])
' <<< "$(meson introspect "$dir" --tests)"))
COMPREPLY+=($(compgen -W "${tests[*]}" -- "$cur"))
if [ -z "$cur" ]; then
COMPREPLY+=($(compgen -P '--' -W '${longopts[*]}' -- "${cur:2}"))
COMPREPLY+=($(compgen -P '-' -W '${shortopts[*]}' -- "${cur:1}"))
fi
fi
}
_meson-wrap() {
: TODO
}
_meson-subprojects() {
: TODO
}
_meson-help() {
: # Nothing to do
}
_meson-rewrite() {
: TODO
}
_meson-compile() {
: TODO
}
_meson-devenv() {
: TODO
}
_meson-env2mfile() {
: TODO
}

View file

@ -1,425 +0,0 @@
#compdef meson
# vim:ts=2 sw=2
# Copyright (c) 2017 Arseny Maslennikov
# All rights reserved. Individual authors, whether or not
# specifically named, retain copyright in all changes; in what follows, they
# are referred to as `the Meson development team'. This is for convenience
# only and this body has no legal status. This file is distributed under
# the following licence.
#
# Permission is hereby granted, without written agreement and without
# licence or royalty fees, to use, copy, modify, and distribute this
# software and to distribute modified versions of this software for any
# purpose, provided that the above copyright notice and the following
# two paragraphs appear in all copies of this software.
#
# In no event shall the Meson development team be liable to any party for
# direct, indirect, special, incidental, or consequential damages arising out
# of the use of this software and its documentation, even if the Meson
# development team have been advised of the possibility of such damage.
#
# The Meson development team specifically disclaim any warranties, including,
# but not limited to, the implied warranties of merchantability and fitness
# for a particular purpose. The software provided hereunder is on an "as is"
# basis, and the Meson development team have no obligation to provide
# maintenance, support, updates, enhancements, or modifications.
local curcontext="$curcontext" state line
local -i ret
local __meson_backends="(ninja xcode ${(j. .)${:-vs{,2010,2015,2017}}})"
local __meson_build_types="(plain debug debugoptimized minsize release)"
local __meson_wrap_modes="(WrapMode.{default,nofallback,nodownload,forcefallback})"
local __meson_dist_formats=("xztar" "gztar" "zip")
local __meson_cd='-C[change into this directory before running]:target dir:_directories'
local -a __meson_common=(
'--prefix=[installation prefix]: :_directories'
'--bindir=[executable directory]: :_directories'
'--datadir=[data file directory]: :_directories'
'--includedir=[header file directory]: :_directories'
'--infodir=[info page directory]: :_directories'
'--libdir=[library directory]: :_directories'
'--libexecdir=[library executable directory]: :_directories'
'--localedir=[locale data directory]: :_directories'
'--localstatedir=[local state data directory]: :_directories'
'--mandir=[manual page directory]: :_directories'
'--sbindir=[system executable directory]: :_directories'
'--sharedstatedir=[arch-independent data directory]: :_directories'
'--sysconfdir=[system configuration directory]: :_directories'
'--auto-features=[default value for auto features]:auto features types:(auto disabled enabled)'
'--backend=[backend to use]:Meson backend:'"$__meson_backends"
'--buildtype=[build type to use]:Meson build type:'"$__meson_build_types"
'--debug[turn on building with debug]'
'--default-library=[default library type]:default library type:(shared static both)'
'--errorlogs[prints the logs from failing tests]'
'--install-umask=[default umask for permissions of all installed files]'
'--layout=[build directory layout]:build directory layout:(flat mirror)'
'--optimization=[optimization level for compiled targets]:optimization:(0 g 1 2 3 s)'
'--stdsplit=[split stdout and stderr in test logs]'
'--strip[strip targets on install]'
'--unity=[unity builds on/off]:whether to do unity builds:(on off subprojects)'
'--warnlevel=[compiler warning level]:compiler warning level:warning level:(1 2 3)'
'--werror[treat warnings as errors]'
'--wrap-mode=[special wrap mode]:wrap mode:'"$__meson_wrap_modes"
'--force-fallback-for=[force fallback for listed subprojects]'
'--pkg-config-path=[extra paths for HOST pkg-config to search]:paths:_dir_list -s ,'
'--build.pkg-config-path=[extra paths for BUILD pkg-config to search]:paths:_dir_list -s ,'
'--cmake-prefix-path=[extra prefixes for HOST cmake to search]:paths:_dir_list -s ,'
'--build.cmake-prefix-path=[extra prefix for BUILD cmake to search]:paths:_dir_list -s ,'
)
local -a meson_commands=(
'configure:configure a project'
'dist:generate release archive'
'init:create a new project'
'install:install one or more targets'
'introspect:query project properties'
'setup:set up a build directory'
'test:run tests'
'wrap:manage source dependencies'
'subprojects:manage subprojects'
'compile:Build the project'
)
(( $+functions[__meson_is_build_dir] )) || __meson_is_build_dir() {
local mpd="${1:-$PWD}/meson-private"
[[ -f "$mpd/build.dat" && -f "$mpd/coredata.dat" ]]
return $?
}
# TODO: implement build option completion
(( $+functions[__meson_build_options] )) || __meson_build_options() {}
# `meson introspect` currently can provide that information in JSON.
# We can:
# 1) pipe its output to python3 -m json.tool | grep "$alovelyregex" | cut <...>
# 2) teach mintro.py to use a different output format
# (or perhaps just to select the fields printed)
(( $+functions[__meson_test_names] )) || __meson_test_names() {
local rtests
if rtests="$(_call_program meson meson test ${opt_args[-C]:+-C "$opt_args[-C]"} --list)";
then
local -a tests=(${(@f)rtests})
_describe -t "tests" "Meson tests" tests
else
_message -r "current working directory is not a build directory"
_message -r 'use -C $build_dir or cd $build_dir'
fi
}
(( $+functions[__meson_wrap_names] )) || __meson_wrap_names() {
local rwraps
rwraps="$(_call_program meson meson wrap list)"
local -a wraps=(${(@f)rwraps})
_describe -t wraps "Meson wraps" wraps
}
(( $+functions[__meson_installed_wraps] )) || __meson_installed_wraps() {
local rwraps
if rwraps="$(ls subprojects/ | grep '\.wrap$' | cut -d . -f 1)"; then
local -a wraps=(${(@f)rwraps})
_describe -t wraps "Meson wraps" wraps
fi
}
(( $+functions[_meson_commands] )) || _meson_commands() {
_describe -t commands "Meson subcommands" meson_commands
}
(( $+functions[_meson-setup] )) || _meson-setup() {
local firstd secondd
if [[ -f "meson.build" ]]; then
# if there's no second argument on the command line
# cwd will implicitly be substituted:
# - as the source directory if it has a file with the name "meson.build";
# - as the build directory otherwise
# more info in mesonbuild/mesonmain.py
firstd="build"
secondd="source"
else
firstd="source"
secondd="build"
fi
_arguments \
'*-D-[set the value of a build option]:build option:__meson_build_options' \
'--cross-file=[cross-compilation environment description]:cross file:_files' \
'--native-file=[build machine compilation environment description]:native file:_files' \
'--clearcache[clear cached state]' \
'--fatal-meson-warnings=[exit when any meson warnings are encountered]' \
'(-v --version)'{'-v','--version'}'[print the meson version and exit]' \
'--reconfigure=[re-run build configuration]' \
'--wipe=[delete saved state and restart using saved command line options]' \
":$firstd directory:_directories" \
"::$secondd directory:_directories" \
"${(@)__meson_common}"
}
(( $+functions[_meson-configure] )) || _meson-configure() {
local curcontext="$curcontext"
# TODO: implement 'mesonconf @file'
local -a specs=(
'*-D-[set the value of a build option]:build option:__meson_build_options'
'::build directory:_directories'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}" \
"${(@)__meson_common}"
}
(( $+functions[_meson-test] )) || _meson-test() {
local curcontext="$curcontext"
# TODO: complete test suites
local -a specs=(
'--repeat[number of times to run the tests]:number of times to repeat: '
'--no-rebuild[do not rebuild before running tests]'
'--gdb[run tests under gdb]'
'--gdb-path=[program to run for gdb (can be wrapper or compatible program)]:program:_path_commands'
'--list[list available tests]'
'(--wrapper --wrap)'{'--wrapper=','--wrap='}'[wrapper to run tests with]:wrapper program:_path_commands'
"$__meson_cd"
'(--suite)--no-suite[do not run tests from this suite]:test suite: '
'(--no-suite)--suite[only run tests from this suite]:test suite: '
'--no-stdsplit[do not split stderr and stdout in logs]'
'--print-errorlogs[print logs for failing tests]'
'--benchmark[run benchmarks instead of tests]'
'--logbase[base name for log file]:filename: '
'--num-processes[how many threads to use]:number of processes: '
'(--verbose -v)'{'--verbose','-v'}'[do not redirect stdout and stderr]'
'(--quiet -q)'{'--quiet','-q'}'[produce less output to the terminal]'
'(--timeout-multiplier -t)'{'--timeout-multiplier','-t'}'[a multiplier for test timeouts]:Python floating-point number: '
'--setup[which test setup to use]:test setup: '
'--test-args[arguments to pass to the tests]: : '
'*:Meson tests:__meson_test_names'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-install] )) || _meson-install() {
local curcontext="$curcontext"
local -a specs=(
"$__meson_cd"
'--no-rebuild[Do not rebuild before installing]'
'--only-changed[Do not overwrite files that are older than the copied file]'
'--quiet[Do not print every file that was installed]'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-introspect] )) || _meson-introspect() {
local curcontext="$curcontext"
local -a specs=(
'--ast[dump the ASK of the meson file]'
'--benchmarks[list all benchmarks]'
'--buildoptions[list all build options]'
'--buildsystem-files[list files that belong to the build system]'
'--dependencies[list external dependencies]'
'--installed[list all installed files and directories]'
'--projectinfo[show project information]'
'--targets[list top level targets]'
'--tests[list all unit tests]'
'--backend=[backend to use]:Meson backend:'"$__meson_backends"
'::build directory:_directories'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-init] )) || _meson-init() {
local curcontext="$curcontext"
local -a specs=(
"$__meson_cd"
'(-n --name)'{'-n','--name'}'=[the name of the project (defaults to directory name)]'
'(-e --executable)'{'-e','--executable'}'=[the name of the executable target to create (defaults to project name)]'
'(-d --deps)'{'-d','--deps'}'=[comma separated list of dependencies]'
'(-l --language)'{'-l','--language'}'=[comma separated list of languages (autodetected based on sources if unset)]:languages:_values , (c cpp cs cuda d fortran java objc objcpp rust)'
'(-b --build)'{'-b','--build'}'[build the project immediately after generation]'
'--builddir=[directory for building]:directory:_directories'
'(-f --force)'{'-f','--force'}'[overwrite any existing files and directories]'
'(-t --type)'{'-t','--type'}'=[project type, defaults to executable]:type:(executable library)'
'(-v --version)'{'-v','--version'}'[print the meson version and exit]'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-wrap] )) || _meson-wrap() {
local -a commands=(
'list:list all available wraps'
'search:search the db by name'
'install:install the specified project'
'update:Update a project to its newest available version'
'info:Show info about a wrap'
'status:Show the status of your subprojects'
)
if (( CURRENT == 2 )); then
_describe -t commands "Meson wrap subcommands" commands
else
local curcontext="$curcontext"
cmd="${${commands[(r)$words[2]:*]%%:*}}"
if (( $#cmd )); then
if [[ $cmd == status ]]; then
_message "no options"
elif [[ $cmd == "list" ]]; then
_arguments '*:meson wraps'
elif [[ $cmd == "search" ]]; then
_arguments '*:meson wraps'
elif [[ $cmd == "install" ]]; then
_arguments '*:meson wraps:__meson_wrap_names'
elif [[ $cmd == "update" ]]; then
_arguments '*:meson wraps:__meson_installed_wraps'
elif [[ $cmd == "info" ]]; then
_arguments '*:meson wraps:__meson_wrap_name'
elif [[ $cmd == "status" ]]; then
_arguments '*:'
elif [[ $cmd == "promote" ]]; then
# TODO: how do you figure out what wraps are provided by subprojects if
# they haven't been fetched yet?
_arguments '*:'
fi
else
_message "unknown meson wrap command: $words[2]"
fi
fi
}
(( $+functions[_meson-dist] )) || _meson-dist() {
local curcontext="$curcontext"
local -a specs=(
'--allow-dirty[Allow even when repository contains uncommitted changes]'
'--formats=[comma separated list of archive types to create]:archive formats:_values -s , format '"$__meson_dist_formats"
'--include-subprojects[Include source code of subprojects that have been used for the build]'
'--no-tests[Do not build and test generated packages]'
"$__meson_cd"
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-subprojects-update] )) || _meson-subprojects-update() {
local curcontext="$curcontext"
local -a specs=(
"--rebase[rebase your branch on top of wrap's revision (git only)]"
'--sourcedir=[path to source directory]:_directories'
'*:subprojects:__meson_installed_wraps'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-subprojects-checkout] )) || _meson-subprojects-checkout() {
local curcontext="$curcontext"
local -a specs=(
'-b[create a new branch]'
'--sourcedir=[path to source directory]:_directories'
# FIXME: this doesn't work exactly right, but I can't figure it out
':branch name'
'*:subprojects:__meson_installed_wraps'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-subprojects-download] )) || _meson-subprojects-download() {
local curcontext="$curcontext"
local -a specs=(
'--sourcedir=[path to source directory]:_directories'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-subprojects-foreach] )) || _meson-subprojects-foreach() {
local curcontext="$curcontext"
local -a specs=(
'--sourcedir=[path to source directory]:_directories'
'*:command:_command_names -e'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
(( $+functions[_meson-subprojects] )) || _meson-subprojects() {
local -a commands=(
'update:update all subprojects from wrap files'
'checkout:checkout a branch (git only)'
'download:ensure subprojects are fetched, even if not in use. Already downloaded subprojects are not modified.'
'foreach:execute a command in each subproject directory'
)
if (( CURRENT == 2 )); then
_describe -t commands "Meson subproject subcommands" commands
else
local curcontext="$curcontext"
cmd="${${commands[(r)$words[2]:*]%%:*}}"
if (( $#cmd )); then
if [[ $cmd == status ]]; then
_message "no options"
else
_meson-subprojects-$cmd
fi
else
_message "unknown meson subproject command: $words[2]"
fi
fi
}
(( $+functions[_meson-compile] )) || _meson-compile() {
local curcontext="$curcontext"
local -a specs=(
"$__meson_cd"
'--clean[Clean the build directory]'
'(-j --jobs)'{'-j','--jobs'}'=[the number fo work jobs to run (if supported)]:_guard "[0-9]#" "number of jobs"'
'(-l --load-average)'{'-l','--load-average'}'=[the system load average to try to maintain (if supported)]:_guard "[0-9]#" "load average"'
'(-v --verbose)'{'-v','--verbose'}'[Show more output]'
'--ninja-args=[Arguments to pass to ninja (only when using ninja)]'
'--vs-args=[Arguments to pass to vs (only when using msbuild)]'
)
_arguments \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
"${(@)specs}"
}
if [[ $service != meson ]]; then
_call_function ret _$service
return ret
fi
_arguments -C -R \
'(: -)'{'--help','-h'}'[show a help message and quit]' \
'(: -)'{'--version','-v'}'[show version information and quit]' \
'(-): :_meson_commands' \
'*:: :->post-command' \
#
ret=$?
[[ $ret = 300 ]] && case "$state" in
post-command)
service="meson-$words[1]"
curcontext=${curcontext%:*:*}:$service:
_call_function ret _$service
;;
esac
return ret

View file

@ -1,4 +0,0 @@
ftdetect sets the filetype
ftplugin sets Meson indentation rules
indent does Meson indentation
syntax does Meson syntax highlighting

View file

@ -1,4 +0,0 @@
au BufNewFile,BufRead meson.build set filetype=meson
au BufNewFile,BufRead meson.options set filetype=meson
au BufNewFile,BufRead meson_options.txt set filetype=meson
au BufNewFile,BufRead *.wrap set filetype=dosini

View file

@ -1,39 +0,0 @@
" Vim filetype plugin file
" Language: meson
" License: VIM License
" Maintainer: Liam Beguin <liambeguin@gmail.com>
" Original Author: Laurent Pinchart <laurent.pinchart@ideasonboard.com>
" Last Change: 2018 Nov 27
if exists("b:did_ftplugin") | finish | endif
let b:did_ftplugin = 1
let s:keepcpo= &cpo
set cpo&vim
setlocal commentstring=#\ %s
setlocal comments=:#
setlocal formatoptions+=croql formatoptions-=t
let b:undo_ftplugin = "setl com< cms< fo<"
if get(g:, "meson_recommended_style", 1)
setlocal expandtab
setlocal shiftwidth=2
setlocal softtabstop=2
let b:undo_ftplugin .= " | setl et< sts< sw<"
endif
if exists("loaded_matchit") && !exists("b:match_words")
let b:match_words = '\<if\>:\<elif\>:\<else\>:\<endif\>,' .
\ '\<foreach\>:\<break\>:\<continue\>:\<endforeach\>'
let b:undo_ftplugin .= " | unlet! b:match_words"
endif
if (has("gui_win32") || has("gui_gtk")) && !exists("b:browsefilter")
let b:browsefilter = "Meson Build Files (meson.build)\tmeson.build\n" .
\ "All Files (*.*)\t*.*\n"
let b:undo_ftplugin .= " | unlet! b:browsefilter"
endif
let &cpo = s:keepcpo
unlet s:keepcpo

View file

@ -1,183 +0,0 @@
" Vim indent file
" Language: Meson
" License: VIM License
" Maintainer: Nirbheek Chauhan <nirbheek.chauhan@gmail.com>
" Liam Beguin <liambeguin@gmail.com>
" Original Authors: David Bustos <bustos@caltech.edu>
" Bram Moolenaar <Bram@vim.org>
" Last Change: 2015 Feb 23
" Only load this indent file when no other was loaded.
if exists("b:did_indent")
finish
endif
let b:did_indent = 1
" Some preliminary settings
setlocal nolisp " Make sure lisp indenting doesn't supersede us
setlocal autoindent " indentexpr isn't much help otherwise
setlocal indentexpr=GetMesonIndent(v:lnum)
setlocal indentkeys+==elif,=else,=endforeach,=endif,0)
let b:undo_indent = "setl ai< inde< indk< lisp<"
" Only define the function once.
if exists("*GetMesonIndent")
finish
endif
let s:keepcpo= &cpo
set cpo&vim
" Come here when loading the script the first time.
let s:maxoff = 50 " maximum number of lines to look backwards for ()
function GetMesonIndent(lnum)
echom getline(line("."))
" If this line is explicitly joined: If the previous line was also joined,
" line it up with that one, otherwise add two 'shiftwidth'
if getline(a:lnum - 1) =~ '\\$'
if a:lnum > 1 && getline(a:lnum - 2) =~ '\\$'
return indent(a:lnum - 1)
endif
return indent(a:lnum - 1) + (exists("g:mesonindent_continue") ? eval(g:mesonindent_continue) : (shiftwidth() * 2))
endif
" If the start of the line is in a string don't change the indent.
if has('syntax_items')
\ && synIDattr(synID(a:lnum, 1, 1), "name") =~ "String$"
return -1
endif
" Search backwards for the previous non-empty line.
let plnum = prevnonblank(v:lnum - 1)
if plnum == 0
" This is the first non-empty line, use zero indent.
return 0
endif
" If the previous line is inside parenthesis, use the indent of the starting
" line.
" Trick: use the non-existing "dummy" variable to break out of the loop when
" going too far back.
call cursor(plnum, 1)
let parlnum = searchpair('(\|{\|\[', '', ')\|}\|\]', 'nbW',
\ "line('.') < " . (plnum - s:maxoff) . " ? dummy :"
\ . " synIDattr(synID(line('.'), col('.'), 1), 'name')"
\ . " =~ '\\(Comment\\|Todo\\|String\\)$'")
if parlnum > 0
let plindent = indent(parlnum)
let plnumstart = parlnum
else
let plindent = indent(plnum)
let plnumstart = plnum
endif
" When inside parenthesis: If at the first line below the parenthesis add
" a 'shiftwidth', otherwise same as previous line.
" i = (a
" + b
" + c)
call cursor(a:lnum, 1)
let p = searchpair('(\|{\|\[', '', ')\|}\|\]', 'bW',
\ "line('.') < " . (a:lnum - s:maxoff) . " ? dummy :"
\ . " synIDattr(synID(line('.'), col('.'), 1), 'name')"
\ . " =~ '\\(Comment\\|Todo\\|String\\)$'")
if p > 0
if p == plnum
" When the start is inside parenthesis, only indent one 'shiftwidth'.
let pp = searchpair('(\|{\|\[', '', ')\|}\|\]', 'bW',
\ "line('.') < " . (a:lnum - s:maxoff) . " ? dummy :"
\ . " synIDattr(synID(line('.'), col('.'), 1), 'name')"
\ . " =~ '\\(Comment\\|Todo\\|String\\)$'")
if pp > 0
return indent(plnum) + (exists("g:pyindent_nested_paren") ? eval(g:pyindent_nested_paren) : shiftwidth())
endif
return indent(plnum) + (exists("g:pyindent_open_paren") ? eval(g:pyindent_open_paren) : shiftwidth())
endif
if plnumstart == p
return indent(plnum)
endif
return plindent
endif
" Get the line and remove a trailing comment.
" Use syntax highlighting attributes when possible.
let pline = getline(plnum)
let pline_len = strlen(pline)
if has('syntax_items')
" If the last character in the line is a comment, do a binary search for
" the start of the comment. synID() is slow, a linear search would take
" too long on a long line.
if synIDattr(synID(plnum, pline_len, 1), "name") =~ "\\(Comment\\|Todo\\)$"
let min = 1
let max = pline_len
while min < max
let col = (min + max) / 2
if synIDattr(synID(plnum, col, 1), "name") =~ "\\(Comment\\|Todo\\)$"
let max = col
else
let min = col + 1
endif
endwhile
let pline = strpart(pline, 0, min - 1)
endif
else
let col = 0
while col < pline_len
if pline[col] == '#'
let pline = strpart(pline, 0, col)
break
endif
let col = col + 1
endwhile
endif
" If the previous line ended the conditional/loop
if getline(plnum) =~ '^\s*\(endif\|endforeach\)\>\s*'
" Maintain indent
return -1
endif
" If the previous line ended with a builtin, indent this line
if pline =~ '^\s*\(foreach\|if\|else\|elif\)\>\s*'
return plindent + shiftwidth()
endif
" If the current line begins with a header keyword, deindent
if getline(a:lnum) =~ '^\s*\(else\|elif\|endif\|endforeach\)'
" Unless the previous line was a one-liner
if getline(plnumstart) =~ '^\s*\(foreach\|if\)\>\s*'
return plindent
endif
" Or the user has already dedented
if indent(a:lnum) <= plindent - shiftwidth()
return -1
endif
return plindent - shiftwidth()
endif
" When after a () construct we probably want to go back to the start line.
" a = (b
" + c)
" here
if parlnum > 0
return plindent
endif
return -1
endfunction
let &cpo = s:keepcpo
unlet s:keepcpo
" vim:sw=2

View file

@ -1,162 +0,0 @@
" Vim syntax file
" Language: Meson
" License: VIM License
" Maintainer: Nirbheek Chauhan <nirbheek.chauhan@gmail.com>
" Liam Beguin <liambeguin@gmail.com>
" Last Change: 2021 Aug 16
" Credits: Zvezdan Petkovic <zpetkovic@acm.org>
" Neil Schemenauer <nas@meson.ca>
" Dmitry Vasiliev
"
" This version is copied and edited from python.vim
" It's very basic, and doesn't do many things I'd like it to
" For instance, it should show errors for syntax that is valid in
" Python but not in Meson.
"
" Optional highlighting can be controlled using these variables.
"
" let meson_space_error_highlight = 1
"
if exists("b:current_syntax")
finish
endif
" We need nocompatible mode in order to continue lines with backslashes.
" Original setting will be restored.
let s:cpo_save = &cpo
set cpo&vim
" http://mesonbuild.com/Syntax.html
syn keyword mesonConditional elif else if endif
syn keyword mesonRepeat foreach endforeach
syn keyword mesonOperator and not or in
syn keyword mesonStatement continue break
syn match mesonComment "#.*$" contains=mesonTodo,@Spell
syn keyword mesonTodo FIXME NOTE NOTES TODO XXX contained
" Strings can either be single quoted or triple counted across multiple lines,
" but always with a '
syn region mesonString
\ start="\z('\)" end="\z1" skip="\\\\\|\\\z1"
\ contains=mesonEscape,@Spell
syn region mesonString
\ start="\z('''\)" end="\z1" keepend
\ contains=mesonEscape,mesonSpaceError,@Spell
syn match mesonEscape "\\[abfnrtv'\\]" contained
syn match mesonEscape "\\\o\{1,3}" contained
syn match mesonEscape "\\x\x\{2}" contained
syn match mesonEscape "\%(\\u\x\{4}\|\\U\x\{8}\)" contained
" Meson allows case-insensitive Unicode IDs: http://www.unicode.org/charts/
syn match mesonEscape "\\N{\a\+\%(\s\a\+\)*}" contained
syn match mesonEscape "\\$"
" Meson only supports integer numbers
" http://mesonbuild.com/Syntax.html#numbers
syn match mesonNumber "\<\d\+\>"
syn match mesonNumber "\<0x\x\+\>"
syn match mesonNumber "\<0o\o\+\>"
" booleans
syn keyword mesonBoolean false true
" Built-in functions
syn keyword mesonBuiltin
\ add_global_arguments
\ add_global_link_arguments
\ add_languages
\ add_project_arguments
\ add_project_dependencies
\ add_project_link_arguments
\ add_test_setup
\ alias_target
\ assert
\ benchmark
\ both_libraries
\ build_machine
\ build_target
\ configuration_data
\ configure_file
\ custom_target
\ declare_dependency
\ dependency
\ disabler
\ environment
\ error
\ executable
\ files
\ find_library
\ find_program
\ generator
\ get_option
\ get_variable
\ gettext
\ host_machine
\ import
\ include_directories
\ install_data
\ install_headers
\ install_man
\ install_subdir
\ install_symlink
\ install_emptydir
\ is_disabler
\ is_variable
\ jar
\ join_paths
\ library
\ meson
\ message
\ option
\ project
\ run_command
\ run_target
\ set_variable
\ shared_library
\ shared_module
\ static_library
\ structured_sources
\ subdir
\ subdir_done
\ subproject
\ summary
\ target_machine
\ test
\ unset_variable
\ vcs_tag
\ warning
\ range
\ debug
if exists("meson_space_error_highlight")
" trailing whitespace
syn match mesonSpaceError display excludenl "\s\+$"
" mixed tabs and spaces
syn match mesonSpaceError display " \+\t"
syn match mesonSpaceError display "\t\+ "
endif
" The default highlight links. Can be overridden later.
hi def link mesonStatement Statement
hi def link mesonConditional Conditional
hi def link mesonRepeat Repeat
hi def link mesonOperator Operator
hi def link mesonComment Comment
hi def link mesonTodo Todo
hi def link mesonString String
hi def link mesonEscape Special
hi def link mesonNumber Number
hi def link mesonBuiltin Function
hi def link mesonBoolean Boolean
if exists("meson_space_error_highlight")
hi def link mesonSpaceError Error
endif
let b:current_syntax = "meson"
let &cpo = s:cpo_save
unlet s:cpo_save
" vim:set sw=2 sts=2 ts=8 noet:

View file

@ -1,180 +0,0 @@
{
"type": "object",
"additionalProperties": false,
"properties": {
"env": {
"type": "object",
"additionalProperties": {
"type": "string"
}
},
"installed": {
"type": "array",
"items": {
"type": "object",
"additionalProperties": false,
"properties": {
"file": {
"type": "string"
},
"type": {
"type": "string",
"enum": [
"file",
"python_file",
"dir",
"exe",
"shared_lib",
"python_lib",
"python_bytecode",
"pdb",
"implib",
"py_implib",
"implibempty",
"expr"
]
},
"platform": {
"type": "string",
"enum": [
"msvc",
"gcc",
"cygwin",
"!cygwin"
]
},
"version": {
"type": "string"
},
"language": {
"type": "string"
}
},
"required": [
"file",
"type"
]
}
},
"matrix": {
"type": "object",
"properties": {
"options": {
"additionalProperties": {
"type": "array",
"items": {
"type": "object",
"additionalProperties": false,
"properties": {
"val": {
"type": ["string", "boolean", "null", "array"],
"items": {
"type": "string"
}
},
"compilers": {
"type": "object",
"additionalProperties": {
"type": "string"
}
},
"skip_on_env": {
"type": "array",
"items": {
"type": "string"
}
},
"skip_on_jobname": {
"type": "array",
"items": {
"type": "string"
}
},
"skip_on_os": {
"type": "array",
"items": {
"type": "string"
}
}
},
"required": [
"val"
]
}
},
"exclude": {
"type": "array",
"items": {
"type": "object",
"additionalProperties": {
"type": ["string", "boolean", "array"],
"items": {
"type": "string"
}
}
}
}
}
}
},
"do_not_set_opts": {
"type": "array",
"items": {
"type": "string",
"enum": [
"libdir",
"prefix"
]
}
},
"tools": {
"type": "object"
},
"stdout": {
"type": "array",
"items": {
"type": "object",
"additionalProperties": false,
"properties": {
"line": {
"type": "string"
},
"match": {
"type": "string",
"enum": [
"literal",
"re"
]
},
"count": {
"type": "integer"
},
"comment": {
"type": "string"
}
},
"required": [
"line"
]
}
},
"skip_on_env": {
"type": "array",
"items": {
"type": "string"
}
},
"skip_on_jobname": {
"type": "array",
"items": {
"type": "string"
}
},
"skip_on_os": {
"type": "array",
"items": {
"type": "string"
}
}
}
}

View file

@ -1,340 +0,0 @@
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@ -1,238 +0,0 @@
.TH MESON "1" "September 2023" "meson 1.2.2" "User Commands"
.SH NAME
meson - a high productivity build system
.SH DESCRIPTION
Meson is a build system designed to optimize programmer
productivity. It aims to do this by providing simple, out-of-the-box
support for modern software development tools and practices, such as
unit tests, coverage reports, Valgrind, Ccache and the like.
The main Meson executable provides many subcommands to access all
the functionality.
.SH The setup command
Using Meson is simple and follows the common two-phase
process of most build systems. First you run Meson to
configure your build:
.B meson setup [
.I options
.B ] [
.I build directory
.B ] [
.I source directory
.B ]
Note that the build directory must be different from the source
directory. Meson does not support building inside the source directory
and attempting to do that leads to an error.
After a successful configuration step you can build the source by
running the actual build command in the build directory. The default
backend of Meson is Ninja, which can be invoked like this.
\fBninja [\fR \fItarget\fR \fB]\fR
You only need to run the Meson command once: when you first configure
your build dir. After that you just run the build command. Meson will
autodetect changes in your source tree and regenerate all files
needed to build the project.
The setup command is the default operation. If no actual command is
specified, Meson will assume you meant to do a setup. That means
that you can set up a build directory without the setup command
like this:
.B meson [
.I options
.B ] [
.I build directory
.B ] [
.I source directory
.B ]
.SS "options:"
.TP
\fB\-\-version\fR
print version number
.TP
\fB\-\-help\fR
print command line help
.SH The configure command
.B meson configure
provides a way to configure a Meson project from the command line.
Its usage is simple:
.B meson configure [
.I build directory
.B ] [
.I options to set
.B ]
If build directory is omitted, the current directory is used instead.
If no parameters are set,
.B meson configure
will print the value of all build options to the console.
To set values, use the \-D command line argument like this.
.B meson configure \-Dopt1=value1 \-Dopt2=value2
.SH The introspect command
Meson introspect is a command designed to make it simple to integrate with
other tools, such as IDEs. The output of this command is in JSON.
.B meson introspect [
.I build directory
.B ] [
.I option
.B ]
If build directory is omitted, the current directory is used instead.
.SS "options:"
.TP
\fB\-\-targets\fR
print all top level targets (executables, libraries, etc)
.TP
\fB\-\-target\-files\fR
print the source files of the given target
.TP
\fB\-\-buildsystem\-files\fR
print all files that make up the build system (meson.build, meson.options, meson_options.txt etc)
.TP
\fB\-\-tests\fR
print all unit tests
.TP
\fB\-\-help\fR
print command line help
.SH The test command
.B meson test
is a helper tool for running test suites of projects using Meson.
The default way of running tests is to invoke the default build command:
\fBninja [\fR \fItest\fR \fB]\fR
.B meson test
provides a richer set of tools for invoking tests.
.B meson test
automatically rebuilds the necessary targets to run tests when used with the Ninja backend.
Upon build failure,
.B meson test
will return an exit code of 125.
This return code tells
.B git bisect run
to skip the current commit.
Thus bisecting using git can be done conveniently like this.
.B git bisect run meson test -C build_dir
.SS "options:"
.TP
\fB\-\-repeat\fR
run tests as many times as specified
.TP
\fB\-\-gdb\fR
run tests under gdb
.TP
\fB\-\-list\fR
list all available tests
.TP
\fB\-\-wrapper\fR
invoke all tests via the given wrapper (e.g. valgrind)
.TP
\fB\-C\fR
Change into the given directory before running tests (must be root of build directory).
.TP
\fB\-\-suite\fR
run tests in this suite
.TP
\fB\-\-no\-suite\fR
do not run tests in this suite
.TP
\fB\-\-no\-stdsplit\fR
do not split stderr and stdout in test logs
.TP
\fB\-\-benchmark\fR
run benchmarks instead of tests
.TP
\fB\-\-logbase\fR
base of file name to use for writing test logs
.TP
\fB\-\-num-processes\fR
how many parallel processes to use to run tests
.TP
\fB\-\-verbose\fR
do not redirect stdout and stderr
.TP
\fB\-t\fR
a multiplier to use for test timeout values (usually something like 100 for Valgrind)
.TP
\fB\-\-setup\fR
use the specified test setup
.SH The wrap command
Wraptool is a helper utility to manage source dependencies
using the online wrapdb service.
.B meson wrap <
.I command
.B > [
.I options
.B ]
You should run this command in the top level source directory
of your project.
.SS "Commands:"
.TP
\fBlist\fR
list all available projects
.TP
\fBsearch\fR
search projects by name
.TP
\fBinstall\fR
install a project with the given name
.TP
\fBupdate\fR
update the specified project to latest available version
.TP
\fBinfo\fR
show available versions of the specified project
.TP
\fBstatus\fR
show installed and available versions of currently used subprojects
.SH EXIT STATUS
.TP
.B 0
Successful.
.TP
.B 1
Usage error, or an error parsing or executing meson.build.
.TP
.B 2
Internal error.
.TP
.B 125
.B meson test
could not rebuild the required targets.
.TP
.SH SEE ALSO
http://mesonbuild.com/
https://wrapdb.mesonbuild.com/

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@ -1,12 +0,0 @@
#include<sqlite3.h>
#include<stdio.h>
int main(void) {
sqlite3 *db;
if(sqlite3_open(":memory:", &db) != SQLITE_OK) {
printf("Sqlite failed.\n");
return 1;
}
sqlite3_close(db);
return 0;
}

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@ -1,13 +0,0 @@
project('downloader', 'c')
cc = meson.get_compiler('c')
s = subproject('sqlite').get_variable('sqlite_dep')
th = dependency('threads')
libdl = cc.find_library('dl', required : false)
e = executable('dtest', 'main.c',
dependencies : [th, libdl, s])
test('dltest', e)

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@ -1,10 +0,0 @@
[wrap-file]
directory = sqlite-amalgamation-3080802
source_url = http://sqlite.com/2015/sqlite-amalgamation-3080802.zip
source_filename = sqlite-amalgamation-3080802.zip
source_hash = 5ebeea0dfb75d090ea0e7ff84799b2a7a1550db3fe61eb5f6f61c2e971e57663
patch_url = https://wrapdb.mesonbuild.com/v1/projects/sqlite/3080802/5/get_zip
patch_filename = sqlite-3080802-5-wrap.zip
patch_hash = d66469a73fa1344562d56a1d7627d5d0ee4044a77b32d16cf4bbb85741d4c9fd

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@ -1,10 +0,0 @@
project('Subversion outchecker', 'c')
sp = subproject('samplesubproject')
exe = executable('gitprog', 'prog.c',
include_directories : sp.get_variable('subproj_inc'),
link_with : sp.get_variable('subproj_lib'),
)
test('maintest', exe)

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@ -1,6 +0,0 @@
#include"subproj.h"
int main(void) {
subproj_function();
return 0;
}

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@ -1,4 +0,0 @@
[wrap-svn]
directory=samplesubproject
url=https://svn.code.sf.net/p/mesonsubproject/code/trunk
revision=head

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@ -1,8 +0,0 @@
project('evil URL')
# showing that new Meson wrap.py code tries to stop imposter WrapDB URLs
# a WrapException is raised.
#
# ERROR: https://wrapdb.mesonbuild.com.invalid/v1/projects/zlib/1.2.11/4/get_zip may be a WrapDB-impersonating URL
#
subproject('zlib')

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@ -1,10 +0,0 @@
[wrap-file]
directory = zlib-1.2.8
source_url = https://zlib.net/zlib-1.2.11.tar.gz
source_filename = zlib-1.2.11.tar.gz
source_hash = c3e5e9fdd5004dcb542feda5ee4f0ff0744628baf8ed2dd5d66f8ca1197cb1a1
patch_url = https://wrapdb.mesonbuild.com.invalid/v1/projects/zlib/1.2.11/4/get_zip
patch_filename = zlib-1.2.11-4-wrap.zip
patch_hash = 886b67480dbe73b406ad83a1dd6d9596f93089d90c220ccfc91944c95f1c68c4

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@ -1,4 +0,0 @@
project('downloader')
# this test will timeout, showing that a subdomain isn't caught as masquerading url
subproject('zlib')

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@ -1,10 +0,0 @@
[wrap-file]
directory = zlib-1.2.8
source_url = https://zlib.net/zlib-1.2.11.tar.gz
source_filename = zlib-1.2.11.tar.gz
source_hash = c3e5e9fdd5004dcb542feda5ee4f0ff0744628baf8ed2dd5d66f8ca1197cb1a1
patch_url = https://mirror1.wrapdb.mesonbuild.com/v1/projects/zlib/1.2.11/4/get_zip
patch_filename = zlib-1.2.11-4-wrap.zip
patch_hash = 886b67480dbe73b406ad83a1dd6d9596f93089d90c220ccfc91944c95f1c68c4

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@ -1,6 +0,0 @@
#include <stdio.h>
int main() {
printf("Hello world!\n");
return 0;
}

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@ -1,9 +0,0 @@
#if defined _WIN32 || defined __CYGWIN__
#define DLL_PUBLIC __declspec(dllexport)
#else
#define DLL_PUBLIC
#endif
int DLL_PUBLIC foo(void) {
return 0;
}

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@ -1,21 +0,0 @@
project('check old builddirs in a stable release', 'c')
lib = both_libraries('lib', 'lib.c')
exe = executable('foo', 'foo.c', link_with: lib, install: true)
test('exe', exe)
install_data('data/foo.dat', install_dir: get_option('datadir') / 'foo')
install_man('foo.1')
py = import('python').find_installation()
py.install_sources('mod.py', subdir: 'foo')
install_subdir('data', install_dir: py.get_install_dir())
custom_target(
input: 'mod.py',
output: 'hello.dat',
command: [py, '@INPUT@'],
capture: true,
install: true,
install_dir: get_option('localstatedir') / 'foo',
)

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@ -1 +0,0 @@
print('Hello world!')

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@ -1,12 +0,0 @@
project('multiwrap', 'c',
default_options : 'c_std=c99')
# Using multiple downloaded projects for great justice.
cc = meson.get_compiler('c')
luadep = dependency('lua', fallback : ['lua', 'lua_dep'])
pngdep = dependency('libpng', fallback : ['libpng', 'png_dep'])
executable('prog', 'prog.c',
dependencies : [pngdep, luadep])

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@ -1,66 +0,0 @@
#include<lua.h>
#include<stdio.h>
#include<stdlib.h>
#include<png.h>
#include<string.h>
#if !defined(_MSC_VER)
#include<unistd.h>
#endif
static void *l_alloc (void *ud, void *ptr, size_t osize,
size_t nsize) {
(void)ud;
(void)osize;
if (nsize == 0) {
free(ptr);
return NULL;
} else {
return realloc(ptr, nsize);
}
}
void open_image(const char *fname) {
png_image image;
memset(&image, 0, (sizeof image));
image.version = PNG_IMAGE_VERSION;
if(png_image_begin_read_from_file(&image, fname) != 0) {
png_bytep buffer;
image.format = PNG_FORMAT_RGBA;
buffer = malloc(PNG_IMAGE_SIZE(image));
if(png_image_finish_read(&image, NULL, buffer, 0, NULL) != 0) {
printf("Image %s read failed: %s\n", fname, image.message);
}
// png_free_image(&image);
free(buffer);
} else {
printf("Image %s open failed: %s", fname, image.message);
}
}
int printer(lua_State *l) {
if(!lua_isstring(l, 1)) {
fprintf(stderr, "Incorrect call.\n");
return 0;
}
open_image(lua_tostring(l, 1));
return 0;
}
int main(int argc, char **argv) {
lua_State *l = lua_newstate(l_alloc, NULL);
if(!l) {
printf("Lua state allocation failed.\n");
return 1;
}
lua_register(l, "printer", printer);
lua_getglobal(l, "printer");
lua_pushliteral(l, "foobar.png");
lua_call(l, 1, 0);
lua_close(l);
return 0;
}

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@ -1,10 +0,0 @@
[wrap-file]
directory = libpng-1.6.34
source_url = ftp://ftp-osl.osuosl.org/pub/libpng/src/libpng16/libpng-1.6.34.tar.xz
source_filename = libpng-1.6.34.tar.xz
source_hash = 2f1e960d92ce3b3abd03d06dfec9637dfbd22febf107a536b44f7a47c60659f6
patch_url = https://wrapdb.mesonbuild.com/v1/projects/libpng/1.6.34/1/get_zip
patch_filename = libpng-1.6.34-1-wrap.zip
patch_hash = 2123806eba8180c164e33a210f2892bbeb2473b69e56aecc786574e9221e6f20

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@ -1,11 +0,0 @@
[wrap-file]
directory = lua-5.3.0
source_url = http://www.lua.org/ftp/lua-5.3.0.tar.gz
source_filename = lua-5.3.0.tar.gz
source_hash = ae4a5eb2d660515eb191bfe3e061f2b8ffe94dce73d32cfd0de090ddcc0ddb01
patch_url = https://wrapdb.mesonbuild.com/v1/projects/lua/5.3.0/5/get_zip
patch_filename = lua-5.3.0-5-wrap.zip
patch_hash = 439038309a0700adfb67d764b3fe935ed8601b31f819fc369e1438c6e79334dd

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@ -1,10 +0,0 @@
[wrap-file]
directory = zlib-1.2.8
source_url = http://zlib.net/fossils/zlib-1.2.8.tar.gz
source_filename = zlib-1.2.8.tar.gz
source_hash = 36658cb768a54c1d4dec43c3116c27ed893e88b02ecfcb44f2166f9c0b7f2a0d
patch_url = https://wrapdb.mesonbuild.com/v1/projects/zlib/1.2.8/8/get_zip
patch_filename = zlib-1.2.8-8-wrap.zip
patch_hash = 17c52a0e0c59ce926d3959005d5cd8178c6c7e2c9a4a1304279a8320c955ac60

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@ -1,10 +0,0 @@
project('git outchecker', 'c')
sp = subproject('samplesubproject')
exe = executable('gitprog', 'prog.c',
include_directories : sp.get_variable('subproj_inc'),
link_with : sp.get_variable('subproj_lib'),
)
test('maintest', exe)

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@ -1,6 +0,0 @@
#include"subproj.h"
int main(void) {
subproj_function();
return 0;
}

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@ -1,4 +0,0 @@
[wrap-git]
directory=samplesubproject
url=https://github.com/jpakkane/samplesubproject.git
revision=head

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@ -1,26 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple Computer//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>CFBundleGetInfoString</key>
<string>MyApp</string>
<key>CFBundleExecutable</key>
<string>myapp.sh</string>
<key>CFBundleIdentifier</key>
<string>com.example.me</string>
<key>CFBundleName</key>
<string>myapp</string>
<key>CFBundleIconFile</key>
<string>myapp.icns</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleInfoDictionaryVersion</key>
<string>6.0</string>
<key>CFBundlePackageType</key>
<string>APPL</string>
<key>IFMajorVersion</key>
<integer>0</integer>
<key>IFMinorVersion</key>
<integer>1</integer>
</dict>
</plist>

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@ -1,12 +0,0 @@
#!/bin/sh -eu
curdir=`pwd`
rm -rf buildtmp
mkdir buildtmp
LDFLAGS=-static-libstdc++ ~/meson/meson.py buildtmp --buildtype=release --prefix=/tmp/myapp --libdir=lib --strip
ninja -C buildtmp install
rm -rf buildtmp
cd /tmp/
tar czf myapp.tar.gz myapp
mv myapp.tar.gz "$curdir"
rm -rf myapp

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@ -1,20 +0,0 @@
#!/bin/sh -eu
rm -rf buildtmp
mkdir buildtmp
~/meson/meson.py buildtmp --buildtype=release --prefix=/tmp/myapp.app --bindir=Contents/MacOS
ninja -C buildtmp install
rm -rf buildtmp
mkdir -p mnttmp
rm -f working.dmg
gunzip < template.dmg.gz > working.dmg
hdiutil attach working.dmg -noautoopen -quiet -mountpoint mnttmp
rm -rf mnttmp/myapp.app
mv /tmp/myapp.app mnttmp
# NOTE: output of hdiutil changes every now and then.
# Verify that this is still working.
hdiutil detach $(hdiutil info|grep "mnttmp"|awk '{print $1}')
rm -rf mnttmp
rm -f myapp.dmg
hdiutil convert working.dmg -quiet -format UDZO -imagekey zlib-level=9 -o myapp.dmg
rm -f working.dmg

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@ -1,32 +0,0 @@
#!/usr/bin/env python3
import os, urllib.request, shutil, subprocess
from glob import glob
sdl_url = 'http://libsdl.org/release/SDL2-devel-2.0.3-VC.zip'
sdl_filename = 'SDL2-devel-2.0.3-VC.zip'
sdl_dir = 'SDL2-2.0.3'
shutil.rmtree('build', ignore_errors=True)
os.mkdir('build')
if not os.path.exists(sdl_filename):
response = urllib.request.urlopen(sdl_url, timeout=600.0)
data = response.read()
open(sdl_filename, 'wb').write(data)
shutil.unpack_archive(sdl_filename, 'build')
libs = glob(os.path.join('build', sdl_dir, 'lib/x86/*'))
[shutil.copy(x, 'build') for x in libs]
# Sorry for this hack but this needs to work during development
# when Meson is not in path.
subprocess.check_call(['python3', r'..\..\meson.py', 'build',
'--backend=ninja', '--buildtype=release'])
subprocess.check_call(['ninja'], cwd='build')
shutil.copy('myapp.iss', 'build')
subprocess.check_call([r'\Program Files\Inno Setup 5\ISCC.exe', 'myapp.iss'],
cwd='build')
shutil.copy('build/setup.exe', 'myapp 1.0.exe')
shutil.rmtree('build')

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@ -1,7 +0,0 @@
#!/bin/sh -eu
libdir="${MESON_INSTALL_PREFIX}/lib"
mkdir -p $libdir
sdlfile=`ldd ${MESON_INSTALL_PREFIX}/bin/myapp | grep libSDL | cut -d ' ' -f 3`
cp $sdlfile "${libdir}"
strip "${libdir}/libSDL"*

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@ -1,38 +0,0 @@
project('myapp', 'cpp')
sdl = dependency('sdl2', required : host_machine.system() != 'windows')
if meson.get_compiler('cpp').get_id() != 'msvc'
add_global_arguments('-std=c++11', language : 'cpp')
endif
if host_machine.system() == 'darwin'
install_data('myapp.sh',
install_dir : 'Contents/MacOS')
install_data('myapp.icns',
install_dir : 'Contents/Resources')
install_data('Info.plist',
install_dir : 'Contents')
meson.add_install_script('osx_bundler.sh')
endif
if host_machine.system() == 'linux'
install_data('myapp.sh', install_dir : '.')
meson.add_install_script('linux_bundler.sh')
endif
extra_link_args = []
if host_machine.system() == 'windows'
str = '-I@0@/@1@'.format(meson.current_build_dir(), 'SDL2-2.0.3/include')
add_global_arguments(str, language : 'cpp')
extra_link_args = ['/SUBSYSTEM:CONSOLE', 'SDL2main.lib', 'SDL2.lib']
endif
prog = executable('myapp', 'myapp.cpp',
dependencies : sdl,
link_args : extra_link_args,
install : true)

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@ -1,39 +0,0 @@
#include<SDL.h>
#include<memory>
#include<iostream>
#include<string>
int main(void) {
SDL_Surface *screenSurface;
SDL_Event e;
int keepGoing = 1;
std::string message;
if(SDL_Init( SDL_INIT_VIDEO ) < 0) {
printf( "SDL could not initialize! SDL_Error: %s\n", SDL_GetError() );
}
atexit(SDL_Quit);
std::unique_ptr<SDL_Window, void(*)(SDL_Window*)> window(SDL_CreateWindow( "My application", SDL_WINDOWPOS_UNDEFINED, SDL_WINDOWPOS_UNDEFINED, 640, 480, SDL_WINDOW_SHOWN), SDL_DestroyWindow);
screenSurface = SDL_GetWindowSurface(window.get());
// Use iostream to make sure we have not screwed
// up libstdc++ linking.
message = "Window created.";
message += " Starting main loop.";
std::cout << message << std::endl;
while(keepGoing) {
while(SDL_PollEvent(&e) != 0) {
if(e.type == SDL_QUIT) {
keepGoing = 0;
break;
}
}
SDL_FillRect(screenSurface, NULL, SDL_MapRGB(screenSurface->format, 0xFF, 0x00, 0x00));
SDL_UpdateWindowSurface(window.get());
SDL_Delay(100);
}
return 0;
}

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@ -1,18 +0,0 @@
; Innosetup file for My app.
[Setup]
AppName=My App
AppVersion=1.0
DefaultDirName={pf}\My App
DefaultGroupName=My App
UninstallDisplayIcon={app}\myapp.exe
Compression=lzma2
SolidCompression=yes
OutputDir=.
[Files]
Source: "myapp.exe"; DestDir: "{app}"
Source: "SDL2.dll"; DestDir: "{app}"
;[Icons]
;Name: "{group}\My App"; Filename: "{app}\myapp.exe"

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@ -1,10 +0,0 @@
#!/bin/bash
cd "${0%/*}"
if [ `uname` == 'Darwin' ]; then
./myapp
else
export LD_LIBRARY_PATH="`pwd`/lib"
bin/myapp
fi

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@ -1,6 +0,0 @@
#!/bin/sh -eu
mkdir -p ${MESON_INSTALL_PREFIX}/Contents/Frameworks
cp -R /Library/Frameworks/SDL2.framework ${MESON_INSTALL_PREFIX}/Contents/Frameworks
install_name_tool -change @rpath/SDL2.framework/Versions/A/SDL2 @executable_path/../Frameworks/SDL2.framework/Versions/A/SDL2 ${MESON_INSTALL_PREFIX}/Contents/MacOS/myapp

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@ -1,11 +0,0 @@
This directory shows how you can build redistributable binaries. On
OSX this means building an app bundle and a .dmg installer. On Linux
it means building an archive that bundles its dependencies. On Windows
it means building an .exe installer.
To build each package you run the corresponding build_ARCH.sh build
script.
On Linux you must build the package on the oldest distribution you
plan to support (Debian stable/oldstable and old CentOS are the common
choice here).

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@ -1,6 +0,0 @@
#include"lib.h"
char *meson_print(void)
{
return "Hello, world!";
}

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@ -1 +0,0 @@
char *meson_print(void);

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@ -1,8 +0,0 @@
#include<lib.h>
#include<stdio.h>
int main(void)
{
char *t = meson_print();
printf("%s", t);
return 0;
}

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@ -1,14 +0,0 @@
project('test spec', 'c')
rpm = import('rpm')
dependency('zlib')
find_program('nonexistprog', required : false)
lib = shared_library('mesontest_shared', ['lib.c', 'lib.h'],
version : '0.1', soversion : '0',
install : true)
executable('mesontest-bin', 'main.c',
link_with : lib,
install : true)
rpm.generate_spec_template()

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@ -1,10 +0,0 @@
project('Mercurial outchecker', 'c')
sp = subproject('samplesubproject')
exe = executable('gitprog', 'prog.c',
include_directories : sp.get_variable('subproj_inc'),
link_with : sp.get_variable('subproj_lib'),
)
test('maintest', exe)

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@ -1,6 +0,0 @@
#include"subproj.h"
int main(void) {
subproj_function();
return 0;
}

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@ -1,4 +0,0 @@
[wrap-hg]
directory=samplesubproject
url=https://bitbucket.org/jpakkane/samplesubproject
revision=tip

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@ -1,21 +0,0 @@
project('composite', 'vala', 'c')
gnome = import('gnome')
deps = [
dependency('glib-2.0', version : '>=2.38'),
dependency('gobject-2.0'),
dependency('gtk+-3.0'),
]
res = files('my-resources.xml')
gres = gnome.compile_resources(
'my', res,
source_dir : '.',
)
executable(
'demo',
sources : [
'mywidget.vala',
gres,
],
dependencies : deps,
vala_args : ['--gresources', res],
)

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@ -1,6 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<gresources>
<gresource prefix="/org/foo/my">
<file compressed="true" preprocess="xml-stripblanks">mywidget.ui</file>
</gresource>
</gresources>

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@ -1,70 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<interface>
<!-- interface-requires gtk+ 3.8 -->
<template class="MyWidget" parent="GtkBox">
<property name="visible">True</property>
<property name="can_focus">False</property>
<property name="orientation">vertical</property>
<property name="spacing">4</property>
<child>
<object class="GtkLabel" id="label1">
<property name="visible">True</property>
<property name="can_focus">False</property>
<property name="halign">start</property>
<property name="valign">start</property>
<property name="xalign">0</property>
<property name="label" translatable="yes">This widget is defined with composite GtkBuilder script</property>
<property name="wrap">True</property>
</object>
<packing>
<property name="expand">False</property>
<property name="fill">True</property>
<property name="position">0</property>
</packing>
</child>
<child>
<object class="GtkEntry" id="entry">
<property name="visible">True</property>
<property name="can_focus">True</property>
<property name="invisible_char">•</property>
<signal name="changed" handler="on_entry_changed" object="MyWidget" swapped="no"/>
</object>
<packing>
<property name="expand">False</property>
<property name="fill">True</property>
<property name="position">1</property>
</packing>
</child>
<child>
<object class="GtkLabel" id="label2">
<property name="visible">True</property>
<property name="can_focus">False</property>
<property name="halign">start</property>
<property name="valign">start</property>
<property name="xalign">0</property>
<property name="label" translatable="yes">Press the button to fetch the internal entry text</property>
<property name="wrap">True</property>
</object>
<packing>
<property name="expand">False</property>
<property name="fill">True</property>
<property name="position">2</property>
</packing>
</child>
<child>
<object class="GtkButton" id="button">
<property name="label" translatable="yes">The Button</property>
<property name="visible">True</property>
<property name="can_focus">True</property>
<property name="receives_default">True</property>
<property name="halign">end</property>
<signal name="clicked" handler="on_button_clicked" swapped="no"/>
</object>
<packing>
<property name="expand">False</property>
<property name="fill">True</property>
<property name="position">3</property>
</packing>
</child>
</template>
</interface>

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@ -1,41 +0,0 @@
using Gtk;
[GtkTemplate (ui = "/org/foo/my/mywidget.ui")]
public class MyWidget : Box {
public string text {
get { return entry.text; }
set { entry.text = value; }
}
[GtkChild]
private Entry entry;
public MyWidget (string text) {
this.text = text;
}
[GtkCallback]
private void on_button_clicked (Button button) {
print ("The button was clicked with entry text: %s\n", entry.text);
}
[GtkCallback]
private void on_entry_changed (Editable editable) {
print ("The entry text changed: %s\n", entry.text);
notify_property ("text");
}
}
void main(string[] args) {
Gtk.init (ref args);
var win = new Window();
win.destroy.connect (Gtk.main_quit);
var widget = new MyWidget ("The entry text!");
win.add (widget);
win.show_all ();
Gtk.main ();
}

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@ -1,8 +0,0 @@
project('timeout', 'c')
# This creates a test that times out. It is a manual test
# because currently there is no test suite for test that are expected
# to fail during unit test phase.
exe = executable('sleepprog', 'sleepprog.c')
test('timeout', exe, timeout : 1)

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@ -1,6 +0,0 @@
#include<unistd.h>
int main(void) {
sleep(1000);
return 0;
}

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