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72 Commits

Author SHA1 Message Date
Duncan Ogilvie a2f8d9e5c9 Bump to 0.2.9 2022-02-11 02:51:18 +01:00
Duncan Ogilvie c7925e7110 Merge pull request #52 from build-cpp/fix-options
Do not omit non-optional documentation in option()
2022-02-11 02:49:21 +01:00
Duncan Ogilvie c778a5fe2b Do not omit non-optional documentation in option() 2022-02-11 02:42:20 +01:00
Duncan Ogilvie 16b2cbbb57 Add sitemap.xml and robots.txt 2022-02-10 01:20:54 +01:00
Duncan Ogilvie 2f5c7823be Redirect /getting-started to https://cmkr.build 2022-02-10 00:54:32 +01:00
Duncan Ogilvie a29b6a8aaa SEO-friendly permalink 2022-02-10 00:15:28 +01:00
Duncan Ogilvie 5ac8b15c9a Bump to 0.2.8 2022-02-02 17:25:10 +01:00
Duncan Ogilvie e7d9faa6bb Merge pull request #51 from cursey/improvement/install-component
Allow specifying install component name
2022-01-29 11:31:29 +01:00
cursey 6f8b07a801 Allow specifying install component name 2022-01-28 17:16:19 -08:00
Duncan Ogilvie e8c6ccb698 Minor improvements to bootstrapping code 2022-01-26 01:07:18 +01:00
Duncan Ogilvie 539ebc8f4b Host documentation on https://cmkr.build 2022-01-14 18:06:04 +01:00
Duncan Ogilvie 37ca385673 Show vcpkg version when configuring 2022-01-14 13:42:03 +01:00
Duncan Ogilvie 8ae029dab1 Bump to 0.2.7 2022-01-14 01:04:11 +01:00
Duncan Ogilvie fb16cc34b1 Fix a regression with invalid names being generated in vcpkg.json 2022-01-14 01:03:37 +01:00
Duncan Ogilvie 47703871e1 Bump to 0.2.6 2022-01-13 00:35:13 +01:00
Duncan Ogilvie a8d6b15dcb Merge pull request #47 from cursey/templates
Add support for target templates
2022-01-13 00:33:05 +01:00
Duncan Ogilvie 87b3c7ec6c Document template targets 2022-01-13 00:24:04 +01:00
Duncan Ogilvie d905be1d13 Final touches 2022-01-12 23:57:14 +01:00
Duncan Ogilvie 8d13ccbeaa Delete driver test to add later 2022-01-12 23:56:53 +01:00
cursey bcbc9d2b20 Remove use of std::make_unique for C++11 compliance 2022-01-11 00:12:02 -08:00
cursey 05324f593b Improve code reuse for target cmds 2022-01-11 00:04:01 -08:00
cursey 2b7ee72e86 Separate template parsing and generation
* Reuse type for specifying template to use
* Add support for template add-function
* Add support for template pass-sources-to-add-function
2022-01-10 23:29:26 -08:00
cursey 61d5e64d87 Fix parser expecting to always find templates 2022-01-10 18:59:34 -08:00
cursey eed1e38407 Add support for target templates 2022-01-10 18:59:33 -08:00
Duncan Ogilvie 61851d2bee Bump to 0.2.5 2022-01-07 19:45:08 +01:00
Duncan Ogilvie c0d665095e Add script to automatically bump the version
Closes #44
2022-01-07 19:44:33 +01:00
Duncan Ogilvie 6c1e388391 Add root, x64 and x32 conditions 2021-12-30 14:27:07 +01:00
Duncan Ogilvie 04905371b8 Bump to 0.2.4 2021-12-30 02:45:02 +01:00
Duncan Ogilvie 5a6ac44fcf Merge pull request #46 from build-cpp/expanded-conditions
Support conditions everywhere
2021-12-30 02:44:02 +01:00
Duncan Ogilvie 9db82dfd05 Update toml reference 2021-12-30 02:43:17 +01:00
Duncan Ogilvie 459ebb14b5 Support conditions everywhere
Closes #36
2021-12-30 02:35:59 +01:00
Duncan Ogilvie 490869b9a2 Bump to 0.2.3 2021-12-28 12:08:16 +01:00
Duncan Ogilvie 8ae2754994 Merge pull request #45 from cursey/bootstrap-vcpkg-early
Bootstrap Vcpkg prior to FetchContent
2021-12-28 07:01:05 +01:00
cursey 18419297f4 Bootstrap Vcpkg prior to FetchContent 2021-12-27 16:49:11 -08:00
Duncan Ogilvie bdaf5c94e6 Bump to 0.2.2 2021-12-27 11:49:22 +01:00
Duncan Ogilvie fa3b7a346c Emit options and settings before the project() 2021-12-27 11:45:23 +01:00
Duncan Ogilvie df1dbf7953 Bump to 0.2.1 2021-12-27 11:17:20 +01:00
Duncan Ogilvie 5951f6930e Update documentation for vcpkg features 2021-12-27 11:12:28 +01:00
Duncan Ogilvie a6d5f1c99b Merge pull request #41 from cursey/vcpkg-package-features
Add support for vcpkg package features
2021-12-27 11:01:04 +01:00
Duncan Ogilvie dc852b9a2f Run clang-format 2021-12-27 10:54:46 +01:00
cursey 66621a9818 Fix spacing 2021-12-27 01:50:25 -08:00
cursey 2cd8ad0f18 Add missing const 2021-12-27 01:13:16 -08:00
cursey 084cbd6159 Cleanup vcpkg.json generation a little 2021-12-27 01:08:56 -08:00
cursey b4b0f533a9 Validate vcpkg features 2021-12-27 01:02:05 -08:00
cursey 0acc9b4e5a Report the badly formed package name to the user 2021-12-27 00:57:48 -08:00
cursey 61dfb0eb60 Fix tabbing in vcpkg.json for packages that have features 2021-12-26 16:32:38 -08:00
cursey 3201fd052e Add support for vcpkg package features 2021-12-26 15:40:45 -08:00
Duncan Ogilvie 83087ff06e Release v0.2.0 (finally) 2021-12-23 20:13:12 +01:00
Duncan Ogilvie 88e9241e9f Improve onboarding experience
Thanks Matthaus :give:
2021-12-23 18:04:54 +01:00
Duncan Ogilvie eff967277d Update README with a migration guide 2021-12-23 13:32:46 +01:00
Duncan Ogilvie ea01497246 Bump CMKR_TAG 2021-12-23 04:01:18 +01:00
Duncan Ogilvie 04bf40a5a6 Generate resources/version.hpp with the project version 2021-12-23 03:53:07 +01:00
Duncan Ogilvie 4d14395994 Implement support a CMKR_CACHE environment variable
Closes #17
2021-12-23 03:52:20 +01:00
Duncan Ogilvie 3dd3368e4e Build in Debug with CMAKE_UNITY_BUILD
This gives the fastest bootstrapping times and cmkr isn't noticeably slower during generation.
2021-12-23 01:56:11 +01:00
Duncan Ogilvie bb7874a6df Improve compilation times
Compilation with make went from 13 -> 10 seconds.
CMAKE_UNITY_BUILD went even lower to 6 seconds.

Closes #11
2021-12-23 01:54:57 +01:00
Duncan Ogilvie 91dbf2986e Remove dependency on nlohmann json 2021-12-23 00:55:20 +01:00
Duncan Ogilvie 2bcf15c4ed Add support for object libraries
Closes #34
2021-12-23 00:01:18 +01:00
Duncan Ogilvie 6a825e15a0 Slightly improve cmkr init #24 2021-12-22 18:29:13 +01:00
Duncan Ogilvie cc2b984aa5 Update documentation for conditions 2021-12-22 18:28:38 +01:00
Duncan Ogilvie 56a88c41e2 Merge pull request #35 from build-cpp/toml-checker
Proper error messages for invalid keys/conditions
2021-12-22 17:14:05 +01:00
Duncan Ogilvie 6809e8da41 Refactor and add checking for conditions 2021-12-22 16:51:55 +01:00
Duncan Ogilvie 9f9934e9a5 Implemented checking of keys in conditions 2021-12-22 13:31:52 +01:00
Duncan Ogilvie 77f4bf7da0 Some minor fixes related to newlines and formatting 2021-12-22 13:30:59 +01:00
Duncan Ogilvie 09c9c28934 Initial implementation of TomlChecker
This is to error when the user specifies an invalid key.

Closes #31
2021-12-19 02:34:48 +01:00
Duncan Ogilvie f02ccc2309 Refactor fetch-content to vector<Content> 2021-12-12 20:11:20 +01:00
Duncan Ogilvie 37e9a1f1a0 Merge pull request #33 from pmeerw/fix-linux
Ceating a directory with no name apparently fails on Linux, but silen…
2021-12-10 18:59:23 +01:00
Duncan Ogilvie a28e63fddc Merge pull request #32 from pmeerw/cleanup
Some cleanup
2021-12-10 18:59:09 +01:00
Peter Meerwald-Stadler 156fc961ec Ceating a directory with no name apparently fails on Linux, but silently succeeds on Windows 2021-12-10 17:39:36 +01:00
Peter Meerwald-Stadler 31cc1c9481 Avoid explicit number of error strings in cmkr_error_status() 2021-12-10 17:10:06 +01:00
Peter Meerwald-Stadler 19101cd726 Reduce scope of err_string; add missing error codes 2021-12-10 17:10:06 +01:00
Peter Meerwald-Stadler 8ebf69da7e Use C++ includes 2021-12-10 17:10:06 +01:00
Duncan Ogilvie 1c23469c8c Bump CMKR_TAG 2021-12-08 14:40:41 +01:00
40 changed files with 1512 additions and 849 deletions
+1
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@@ -0,0 +1 @@
github: [mrexodia]
+3 -3
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@@ -23,7 +23,7 @@ jobs:
- name: Build
run: |
cmake -S. -Bbuild -DCMAKE_BUILD_TYPE=${{ env.BUILD_TYPE }}
cmake -B build -DCMAKE_BUILD_TYPE=${{ env.BUILD_TYPE }} -DCMAKE_UNITY_BUILD=ON
cmake --build build --config ${{ env.BUILD_TYPE }} --parallel
cmake --install build --prefix ./install --config ${{ env.BUILD_TYPE }}
@@ -35,7 +35,7 @@ jobs:
- name: Test
run: |
cd build/tests
ctest -C ${{ env.BUILD_TYPE }}
ctest -C ${{ env.BUILD_TYPE }} --verbose
- name: Upload artifacts
uses: actions/upload-artifact@v2
@@ -50,7 +50,7 @@ jobs:
string: ${{ runner.os }}
- name: Compress artifacts
uses: papeloto/action-zip@v1
uses: vimtor/action-zip@v1
with:
files: install/bin/
dest: ${{ github.event.repository.name }}-${{ steps.osname.outputs.lowercase }}.zip
+2 -2
View File
@@ -25,7 +25,7 @@ project(cmkr
LANGUAGES
CXX
VERSION
0.1.4
0.2.9
DESCRIPTION
"CMakeLists generator from TOML"
)
@@ -86,13 +86,13 @@ list(APPEND cmkr_SOURCES
"include/arguments.hpp"
"include/build.hpp"
"include/cmake_generator.hpp"
"include/enum_helper.hpp"
"include/error.hpp"
"include/fs.hpp"
"include/help.hpp"
"include/literals.hpp"
"include/project_parser.hpp"
"cmake/cmkr.cmake"
"cmake/version.hpp.in"
)
list(APPEND cmkr_SOURCES
+24 -5
View File
@@ -7,29 +7,48 @@
```toml
[project]
name = "cmkr_for_beginners"
description = "A minimal cmkr project."
[target.hello_world]
type = "executable"
sources = ["src/main.cpp"]
```
`cmkr` can bootstrap itself from CMake and consumers of your project do not need to install anything to work with it.
`cmkr` can bootstrap itself from CMake and you only need CMake to use it.
## Getting started
The easiest way to get started is to use the [cmkr_for_beginners](https://github.com/build-cpp/cmkr_for_beginners) template repository. Either open it in [Gitpod](https://gitpod.io/#https://github.com/build-cpp/cmkr_for_beginners), or clone the repository and run:
To get started run the following commands from your project directory:
```sh
curl https://raw.githubusercontent.com/build-cpp/cmkr/main/cmake/cmkr.cmake -o cmkr.cmake
cmake -P cmkr.cmake
```
After the bootstrapping process finishes, modify [`cmake.toml`](https://build-cpp.github.io/cmkr/cmake-toml) and open the project in your favorite IDE or build with CMake:
```sh
cmake -B build
cmake --build build
```
Alternatively you can check out the [cmkr topic](https://github.com/topics/cmkr), the [build-cpp organization](https://github.com/build-cpp) or the [tests](https://github.com/build-cpp/cmkr/tree/main/tests) for more examples and templates. You can also check out the [documentation](https://build-cpp.github.io/cmkr).
Once bootstrapped, `cmkr` does not introduce extra steps to your workflow. After modifying `cmake.toml` you simply build/configure your CMake project and `cmkr` will automatically regenerate `CMakeLists.txt`.
In CI settings the `cmkr` bootstrapping process is skipped so there is no extra configure-time overhead in your pipelines.
## Template repositories
Another way to get started is to use the [cmkr_for_beginners](https://github.com/build-cpp/cmkr_for_beginners) template repository. Either open it in [Gitpod](https://gitpod.io/#https://github.com/build-cpp/cmkr_for_beginners), or clone the repository and run:
```sh
cmake -B build
cmake --build build
```
Check out the [cmkr topic](https://github.com/topics/cmkr), the [build-cpp organization](https://github.com/build-cpp) or the [tests](https://github.com/build-cpp/cmkr/tree/main/tests) for more examples and templates.
## Command line
Optionally you can install `cmkr` in your `PATH` and use it as a utility from the command line:
Optionally you can put a [`cmkr` release](https://github.com/build-cpp/cmkr/releases) in your `PATH` and use it as a utility from the command line:
```
Usage: cmkr [arguments]
+3 -2
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@@ -4,7 +4,7 @@ cmkr-include = false
[project]
name = "cmkr"
version = "0.1.4"
version = "0.2.9"
description = "CMakeLists generator from TOML"
languages = ["CXX"]
subdirs = ["third_party", "tests"]
@@ -25,6 +25,7 @@ sources = [
"src/*.cpp",
"include/*.hpp",
"cmake/cmkr.cmake",
"cmake/version.hpp.in",
]
include-directories = [
"include",
@@ -35,7 +36,7 @@ link-libraries = [
"ghc_filesystem",
"mpark_variant",
"ordered_map",
"nlohmann_json"
"nlohmann_json",
]
cmake-after = """
generate_resources(${CMKR_TARGET})
+70
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@@ -0,0 +1,70 @@
cmake_minimum_required(VERSION 3.20)
if(NOT CMAKE_SCRIPT_MODE_FILE)
message(FATAL_ERROR "Usage: cmake -P bump_version.cmake [1.2.3]")
endif()
if(NOT EXISTS "${CMAKE_SOURCE_DIR}/cmake.toml")
message(FATAL_ERROR "Cannot find cmake.toml")
endif()
if(NOT EXISTS "${CMAKE_SOURCE_DIR}/cmake/cmkr.cmake")
message(FATAL_ERROR "Cannot find cmkr.cmake")
endif()
file(READ "${CMAKE_SOURCE_DIR}/cmake.toml" CMAKE_TOML)
string(FIND "${CMAKE_TOML}" "[project]" PROJECT_INDEX)
string(SUBSTRING "${CMAKE_TOML}" ${PROJECT_INDEX} -1 CMAKE_TOML_PROJECT)
set(SEMVER_REGEX "([0-9]+)\\.([0-9]+)\\.([0-9]+)")
set(VERSION_REGEX "version = \"${SEMVER_REGEX}\"")
if(CMAKE_TOML_PROJECT MATCHES "${VERSION_REGEX}")
set(MAJOR "${CMAKE_MATCH_1}")
set(MINOR "${CMAKE_MATCH_2}")
set(PATCH "${CMAKE_MATCH_3}")
set(OLDVERSION "${MAJOR}.${MINOR}.${PATCH}")
else()
message(FATAL_ERROR "Failed to match semantic version in cmake.toml")
endif()
if(CMAKE_ARGV3)
if(NOT CMAKE_ARGV3 MATCHES "${SEMVER_REGEX}")
message(FATAL_ERROR "Invalid semantic version number '${CMAKE_ARGV3}'")
endif()
set(NEWVERSION "${CMAKE_ARGV3}")
else()
math(EXPR NEWPATCH "${PATCH} + 1")
set(NEWVERSION "${MAJOR}.${MINOR}.${NEWPATCH}")
endif()
message(STATUS "Version ${OLDVERSION} -> ${NEWVERSION}")
find_program(CMKR_EXECUTABLE "cmkr" PATHS "${CMAKE_SOURCE_DIR}/build" NO_CACHE REQUIRED)
message(STATUS "Found cmkr: ${CMKR_EXECUTABLE}")
# Replace version in cmake.toml
string(REPLACE "version = \"${OLDVERSION}\"" "version = \"${NEWVERSION}\"" CMAKE_TOML "${CMAKE_TOML}")
file(CONFIGURE
OUTPUT "${CMAKE_SOURCE_DIR}/cmake.toml"
CONTENT "${CMAKE_TOML}"
@ONLY
NEWLINE_STYLE LF
)
# Run cmkr gen
execute_process(COMMAND "${CMKR_EXECUTABLE}" gen RESULT_VARIABLE CMKR_EXEC_RESULT)
if(NOT CMKR_EXEC_RESULT EQUAL 0)
message(FATAL_ERROR "cmkr gen failed (exit code ${CMKR_EXEC_RESULT})")
endif()
# Replace version in cmkr.cmake
file(READ "${CMAKE_SOURCE_DIR}/cmake/cmkr.cmake" CMKR_CMAKE)
string(REGEX REPLACE "CMKR_TAG \"[^\"]+\"" "CMKR_TAG \"v${NEWVERSION}\"" CMKR_CMAKE "${CMKR_CMAKE}")
file(CONFIGURE
OUTPUT "${CMAKE_SOURCE_DIR}/cmake/cmkr.cmake"
CONTENT "${CMKR_CMAKE}"
@ONLY
NEWLINE_STYLE LF
)
# Print git commands
message(STATUS "Git commands to create new version:\ngit commit -a -m \"Bump to ${NEWVERSION}\"\ngit tag v${NEWVERSION}\ngit push origin main v${NEWVERSION}")
+76 -18
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@@ -1,16 +1,21 @@
include_guard()
if(CMAKE_SCRIPT_MODE_FILE)
message(FATAL_ERROR "Running cmkr.cmake as a script is unsupported. To build your project try: cmake -B build")
endif()
# Change these defaults to point to your infrastructure if desired
set(CMKR_REPO "https://github.com/build-cpp/cmkr" CACHE STRING "cmkr git repository" FORCE)
set(CMKR_TAG "archive_7c7144b1" CACHE STRING "cmkr git tag (this needs to be available forever)" FORCE)
set(CMKR_TAG "v0.2.9" CACHE STRING "cmkr git tag (this needs to be available forever)" FORCE)
# To bootstrap/generate a cmkr project: cmake -P cmkr.cmake
if(CMAKE_SCRIPT_MODE_FILE)
set(CMAKE_BINARY_DIR "${CMAKE_BINARY_DIR}/build")
set(CMAKE_CURRENT_BINARY_DIR "${CMAKE_BINARY_DIR}")
file(MAKE_DIRECTORY "${CMAKE_BINARY_DIR}")
endif()
# Set these from the command line to customize for development/debugging purposes
set(CMKR_EXECUTABLE "" CACHE FILEPATH "cmkr executable")
set(CMKR_SKIP_GENERATION OFF CACHE BOOL "skip automatic cmkr generation")
set(CMKR_BUILD_TYPE "Debug" CACHE STRING "cmkr build configuration")
mark_as_advanced(CMKR_REPO CMKR_TAG CMKR_EXECUTABLE CMKR_SKIP_GENERATION CMKR_BUILD_TYPE)
# Disable cmkr if generation is disabled
if(DEFINED ENV{CI} OR CMKR_SKIP_GENERATION OR CMKR_BUILD_SKIP_GENERATION)
@@ -22,7 +27,7 @@ if(DEFINED ENV{CI} OR CMKR_SKIP_GENERATION OR CMKR_BUILD_SKIP_GENERATION)
endif()
# Disable cmkr if no cmake.toml file is found
if(NOT EXISTS "${CMAKE_CURRENT_SOURCE_DIR}/cmake.toml")
if(NOT CMAKE_SCRIPT_MODE_FILE AND NOT EXISTS "${CMAKE_CURRENT_SOURCE_DIR}/cmake.toml")
message(AUTHOR_WARNING "[cmkr] Not found: ${CMAKE_CURRENT_SOURCE_DIR}/cmake.toml")
macro(cmkr)
endmacro()
@@ -52,22 +57,51 @@ else()
endif()
# Use cached cmkr if found
set(CMKR_DIRECTORY "${CMAKE_CURRENT_BINARY_DIR}/_cmkr_${CMKR_TAG}")
if(DEFINED ENV{CMKR_CACHE} AND EXISTS "$ENV{CMKR_CACHE}")
set(CMKR_DIRECTORY_PREFIX "$ENV{CMKR_CACHE}")
string(REPLACE "\\" "/" CMKR_DIRECTORY_PREFIX "${CMKR_DIRECTORY_PREFIX}")
if(NOT CMKR_DIRECTORY_PREFIX MATCHES "\\/$")
set(CMKR_DIRECTORY_PREFIX "${CMKR_DIRECTORY_PREFIX}/")
endif()
# Build in release mode for the cache
set(CMKR_BUILD_TYPE "Release")
else()
set(CMKR_DIRECTORY_PREFIX "${CMAKE_CURRENT_BINARY_DIR}/_cmkr_")
endif()
set(CMKR_DIRECTORY "${CMKR_DIRECTORY_PREFIX}${CMKR_TAG}")
set(CMKR_CACHED_EXECUTABLE "${CMKR_DIRECTORY}/bin/${CMKR_EXECUTABLE_NAME}")
if(NOT CMKR_CACHED_EXECUTABLE STREQUAL CMKR_EXECUTABLE AND CMKR_EXECUTABLE MATCHES "^${CMAKE_CURRENT_BINARY_DIR}/_cmkr")
message(AUTHOR_WARNING "[cmkr] Upgrading '${CMKR_EXECUTABLE}' to '${CMKR_CACHED_EXECUTABLE}'")
unset(CMKR_EXECUTABLE CACHE)
# Handle upgrading logic
if(CMKR_EXECUTABLE AND NOT CMKR_CACHED_EXECUTABLE STREQUAL CMKR_EXECUTABLE)
if(CMKR_EXECUTABLE MATCHES "^${CMAKE_CURRENT_BINARY_DIR}/_cmkr")
if(DEFINED ENV{CMKR_CACHE} AND EXISTS "$ENV{CMKR_CACHE}")
message(AUTHOR_WARNING "[cmkr] Switching to cached cmkr: '${CMKR_CACHED_EXECUTABLE}'")
if(EXISTS "${CMKR_CACHED_EXECUTABLE}")
set(CMKR_EXECUTABLE "${CMKR_CACHED_EXECUTABLE}" CACHE FILEPATH "Full path to cmkr executable" FORCE)
else()
unset(CMKR_EXECUTABLE CACHE)
endif()
else()
message(AUTHOR_WARNING "[cmkr] Upgrading '${CMKR_EXECUTABLE}' to '${CMKR_CACHED_EXECUTABLE}'")
unset(CMKR_EXECUTABLE CACHE)
endif()
elseif(DEFINED ENV{CMKR_CACHE} AND EXISTS "$ENV{CMKR_CACHE}" AND CMKR_EXECUTABLE MATCHES "^${CMKR_DIRECTORY_PREFIX}")
message(AUTHOR_WARNING "[cmkr] Upgrading cached '${CMKR_EXECUTABLE}' to '${CMKR_CACHED_EXECUTABLE}'")
unset(CMKR_EXECUTABLE CACHE)
endif()
endif()
if(CMKR_EXECUTABLE AND EXISTS "${CMKR_EXECUTABLE}")
message(VERBOSE "[cmkr] Found cmkr: '${CMKR_EXECUTABLE}'")
elseif(CMKR_EXECUTABLE AND NOT CMKR_EXECUTABLE STREQUAL CMKR_CACHED_EXECUTABLE)
message(FATAL_ERROR "[cmkr] '${CMKR_EXECUTABLE}' not found")
elseif(NOT CMKR_EXECUTABLE AND EXISTS "${CMKR_CACHED_EXECUTABLE}")
set(CMKR_EXECUTABLE "${CMKR_CACHED_EXECUTABLE}" CACHE FILEPATH "Full path to cmkr executable" FORCE)
message(STATUS "[cmkr] Found cached cmkr: '${CMKR_EXECUTABLE}'")
else()
set(CMKR_EXECUTABLE "${CMKR_CACHED_EXECUTABLE}" CACHE FILEPATH "Full path to cmkr executable" FORCE)
message(VERBOSE "[cmkr] Bootstrapping '${CMKR_EXECUTABLE}'")
message(STATUS "[cmkr] Fetching cmkr...")
if(EXISTS "${CMKR_DIRECTORY}")
cmkr_exec("${CMAKE_COMMAND}" -E rm -rf "${CMKR_DIRECTORY}")
@@ -86,18 +120,19 @@ else()
--no-warn-unused-cli
"${CMKR_DIRECTORY}"
"-B${CMKR_DIRECTORY}/build"
"-DCMAKE_BUILD_TYPE=Release"
"-DCMAKE_BUILD_TYPE=${CMKR_BUILD_TYPE}"
"-DCMAKE_UNITY_BUILD=ON"
"-DCMAKE_INSTALL_PREFIX=${CMKR_DIRECTORY}"
"-DCMKR_GENERATE_DOCUMENTATION=OFF"
)
cmkr_exec("${CMAKE_COMMAND}"
--build "${CMKR_DIRECTORY}/build"
--config Release
--config "${CMKR_BUILD_TYPE}"
--parallel
)
cmkr_exec("${CMAKE_COMMAND}"
--install "${CMKR_DIRECTORY}/build"
--config Release
--config "${CMKR_BUILD_TYPE}"
--prefix "${CMKR_DIRECTORY}"
--component cmkr
)
@@ -114,6 +149,29 @@ if(NOT CMKR_EXEC_RESULT EQUAL 0)
message(FATAL_ERROR "[cmkr] Failed to get version, try clearing the cache and rebuilding")
endif()
# Use cmkr.cmake as a script
if(CMAKE_SCRIPT_MODE_FILE)
if(NOT EXISTS "${CMAKE_SOURCE_DIR}/cmake.toml")
execute_process(COMMAND "${CMKR_EXECUTABLE}" init
RESULT_VARIABLE CMKR_EXEC_RESULT
)
if(NOT CMKR_EXEC_RESULT EQUAL 0)
message(FATAL_ERROR "[cmkr] Failed to bootstrap cmkr project. Please report an issue: https://github.com/build-cpp/cmkr/issues/new")
else()
message(STATUS "[cmkr] Modify cmake.toml and then configure using: cmake -B build")
endif()
else()
execute_process(COMMAND "${CMKR_EXECUTABLE}" gen
RESULT_VARIABLE CMKR_EXEC_RESULT
)
if(NOT CMKR_EXEC_RESULT EQUAL 0)
message(FATAL_ERROR "[cmkr] Failed to generate project.")
else()
message(STATUS "[cmkr] Configure using: cmake -B build")
endif()
endif()
endif()
# This is the macro that contains black magic
macro(cmkr)
# When this macro is called from the generated file, fake some internal CMake variables
@@ -147,18 +205,18 @@ macro(cmkr)
# Copy the now-generated CMakeLists.txt to CMakerLists.txt
# This is done because you cannot include() a file you are currently in
configure_file(CMakeLists.txt "${CMKR_TEMP_FILE}" COPYONLY)
# Add the macro required for the hack at the start of the cmkr macro
set_source_files_properties("${CMKR_TEMP_FILE}" PROPERTIES
CMKR_CURRENT_LIST_FILE "${CMAKE_CURRENT_LIST_FILE}"
)
# 'Execute' the newly-generated CMakeLists.txt
include("${CMKR_TEMP_FILE}")
# Delete the generated file
file(REMOVE "${CMKR_TEMP_FILE}")
# Do not execute the rest of the original CMakeLists.txt
return()
endif()
+2 -2
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@@ -46,14 +46,14 @@ function(generate_documentation)
string(REGEX MATCH "^(\n*(#[^\n]+\n)+\n*)" EXAMPLE_HEADER "${test_contents}")
string(LENGTH "${EXAMPLE_HEADER}" header_length)
string(STRIP "${EXAMPLE_HEADER}" EXAMPLE_HEADER)
string(REGEX REPLACE "\n# ?" "\n" EXAMPLE_HEADER "\n${EXAMPLE_HEADER}")
string(REGEX REPLACE "\n# ?" "\n\n" EXAMPLE_HEADER "\n${EXAMPLE_HEADER}")
string(STRIP "${EXAMPLE_HEADER}" EXAMPLE_HEADER)
# Extract footer text
string(REGEX MATCH "(((#[^\n]+)(\n+|$))+)$" EXAMPLE_FOOTER "${test_contents}")
string(LENGTH "${EXAMPLE_FOOTER}" footer_length)
string(STRIP "${EXAMPLE_FOOTER}" EXAMPLE_FOOTER)
string(REGEX REPLACE "\n# ?" "\n" EXAMPLE_FOOTER "\n${EXAMPLE_FOOTER}")
string(REGEX REPLACE "\n# ?" "\n\n" EXAMPLE_FOOTER "\n${EXAMPLE_FOOTER}")
string(STRIP "${EXAMPLE_FOOTER}" EXAMPLE_FOOTER)
# Extract toml body
+6 -2
View File
@@ -5,15 +5,19 @@ function(generate_resources target)
PROPERTY SOURCES
)
foreach(SOURCE ${TARGET_SOURCES})
get_filename_component(RESOURCE_NAME "${SOURCE}" NAME_WE)
set(RESOURCE_HEADER "include/resources/${RESOURCE_NAME}.hpp")
if(SOURCE MATCHES ".cmake$")
get_filename_component(RESOURCE_NAME "${SOURCE}" NAME_WE)
set(RESOURCE_HEADER "include/resources/${RESOURCE_NAME}.hpp")
# Add configure-time dependency on the source file
configure_file("${SOURCE}" "${RESOURCE_HEADER}" COPYONLY)
# Generate the actual resource into the header
file(READ "${SOURCE}" RESOURCE_CONTENTS)
configure_file("${PROJECT_SOURCE_DIR}/cmake/resource.hpp.in" "${RESOURCE_HEADER}" @ONLY)
message(STATUS "[cmkr] Generated ${RESOURCE_HEADER}")
elseif(SOURCE MATCHES ".in$")
configure_file("${SOURCE}" "${RESOURCE_HEADER}" @ONLY)
message(STATUS "[cmkr] Generated ${RESOURCE_HEADER}")
endif()
endforeach()
target_include_directories(${target} PUBLIC "${CMAKE_CURRENT_BINARY_DIR}/include")
+3
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@@ -0,0 +1,3 @@
#pragma once
#define CMKR_VERSION "@PROJECT_VERSION@"
+1
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@@ -1,2 +1,3 @@
_site/
.jekyll-metadata
assets/
+1
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@@ -0,0 +1 @@
cmkr.build
+1
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@@ -3,6 +3,7 @@ gem "minima", "~> 2.5"
gem "github-pages", group: :jekyll_plugins
gem "jekyll-remote-theme"
gem "jekyll-sitemap", "~> 1.4.0"
platforms :mingw, :x64_mingw, :mswin, :jruby do
gem "tzinfo", "~> 1.2"
+1
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@@ -271,6 +271,7 @@ PLATFORMS
DEPENDENCIES
github-pages
jekyll-remote-theme
jekyll-sitemap (~> 1.4.0)
just-the-docs
minima (~> 2.5)
tzinfo (~> 1.2)
+5 -2
View File
@@ -2,6 +2,7 @@ title: cmkr
plugins:
- jekyll-remote-theme
- jekyll-sitemap
# Automatically deduce dark theme preference https://github.com/pmarsceill/just-the-docs/pull/464
remote_theme: build-cpp/just-the-docs@light-switch
@@ -9,7 +10,7 @@ search_enabled: true
color_scheme: light-or-dark
heading_anchors: true
aux_links:
"cmkr":
"GitHub":
- "https://github.com/build-cpp/cmkr"
aux_links_new_tab: true
@@ -18,4 +19,6 @@ gh_edit_link_text: "Edit this page on GitHub."
gh_edit_repository: "https://github.com/build-cpp/cmkr"
gh_edit_branch: "main"
gh_edit_view_mode: "edit"
gh_edit_source: docs
gh_edit_source: docs
production_url : https://cmkr.build
+39 -19
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@@ -1,15 +1,15 @@
---
layout: page
title: cmake.toml
title: Reference
permalink: /cmake-toml/
nav_order: 3
nav_order: 1
---
# cmake.toml
# Reference
This page is supposed to be a reference for the options in the `cmake.toml` file. If you think anything is missing or unclear, please [edit this page](https://github.com/build-cpp/cmkr/edit/main/docs/cmake-toml.md) or open an [issue](https://github.com/build-cpp/cmkr/issues).
This page is a reference for the options in the `cmake.toml` file. If you think anything is missing or unclear, please [edit this page](https://github.com/build-cpp/cmkr/edit/main/docs/cmake-toml.md) or open an [issue](https://github.com/build-cpp/cmkr/issues).
See the [examples](/examples) section for more real-world examples.
See the [examples](/examples) section for concrete examples.
## CMake configuration
@@ -47,7 +47,18 @@ arch64 = "CMAKE_SIZEOF_VOID_P EQUALS 8"
arch32 = "CMAKE_SIZEOF_VOID_P EQUALS 4"
```
This will make the `arch64` and `arch32` conditions available with their respective CMake expressions. The following conditions are predefined (you can override them if you desire):
This will make the `arch64` and `arch32` conditions available with their respective CMake expressions.
You can also prefix most keys with `condition.` to represent a conditional:
```toml
[target]
type = "executable"
sources = ["src/main.cpp"]
windows.sources = ["src/windows_specific.cpp"]
```
The following conditions are predefined (you can override them if you desire):
```toml
[conditions]
@@ -59,13 +70,16 @@ linux = "CMAKE_SYSTEM_NAME MATCHES \"Linux\""
gcc = "CMAKE_CXX_COMPILER_ID STREQUAL \"GNU\" OR CMAKE_C_COMPILER_ID STREQUAL \"GNU\""
clang = "CMAKE_CXX_COMPILER_ID MATCHES \"Clang\" OR CMAKE_C_COMPILER_ID MATCHES \"Clang\""
msvc = "MSVC"
root = "CMKR_ROOT_PROJECT"
x64 = "CMAKE_SIZEOF_VOID_P EQUAL 8"
x32 = "CMAKE_SIZEOF_VOID_P EQUAL 4"
```
## Subdirectories
```toml
[subdir.mysubdir]
condition = "linux"
condition = "mycondition"
cmake-before = """
message(STATUS "CMake injected before the add_subdirectory() call"
"""
@@ -87,14 +101,13 @@ packages = ["fmt", "zlib"]
The vcpkg `version` will automatically generate the `url` from the [official repository](https://github.com/microsoft/vcpkg/releases). For a custom registry you can specify your own `url` (and omit the `version`). You can browse available packages on [vcpkg.io](https://vcpkg.io/en/packages.html).
To specify package features you can use the following syntax: `imgui[docking-experimental,freetype,sdl2-binding,opengl3-binding]`.
## Packages
```toml
[find-package]
mypackage = { version = "1.0", required = true, config = true, components = ["mycomponent"] }
# Alternative syntax
[find-package.mypackage]
condition = "mycondition"
version = "1.0"
required = true
config = true
@@ -106,24 +119,29 @@ components = ["mycomponent"]
**Note**: The `[fetch-content]` feature is unpolished and will likely change in a future release.
```toml
[fetch-content]
gitcontent = { git = "https://github.com/myuser/gitcontent", tag = "v0.1" }
svncontent = { svn = "https://svn-host.com/url", rev = "svn_rev" }
urlcontent = { url = "https://content-host.com/urlcontent.zip", hash = "123123123123" }
# Alternative syntax
[fetch-content.gitcontent]
condition = "mycondition"
git = "https://github.com/myuser/gitcontent"
tag = "v0.1"
[fetch-content.svncontent]
condition = "mycondition"
svn = "https://svn-host.com/url"
rev = "svn_rev"
[fetch-content.urlcontent]
condition = "mycondition"
url = "https://content-host.com/urlcontent.zip"
hash = "123123123123"
```
## Targets
```toml
[target.mytarget]
condition = "linux"
condition = "mycondition"
alias = "mytarget::mytarget"
type = "static" # executable, library, shared, static, interface, custom
type = "static" # executable, shared (DLL), static, interface, object, library, custom
headers = ["src/mytarget.h"]
sources = ["src/mytarget.cpp"]
@@ -169,6 +187,7 @@ FOLDER = "MyFolder"
```toml
# You can declare as many as you want like this, but the name has to be unique
[[test]]
condition = "mycondition"
name = "mytest"
command = "$<TARGET_FILE:mytest>"
arguments = ["arg1", "arg2"]
@@ -178,6 +197,7 @@ working-directory = "mytest-dir"
```toml
[[install]]
condition = "mycondition"
targets = ["mytarget", "mytest"]
destination = ["bin"]
files = ["content/my.png"]
-22
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@@ -1,22 +0,0 @@
---
layout: page
title: Command line
permalink: /command-line/
nav_order: 2
---
# Command line
Optionally you can install `cmkr` in your `PATH` and use it as a utility from the command line:
```
Usage: cmkr [arguments]
arguments:
init [executable|library|shared|static|interface] Starts a new project in the same directory.
gen Generates CMakeLists.txt file.
build <extra cmake args> Run cmake and build.
install Run cmake --install. Needs admin privileges.
clean Clean the build directory.
help Show help.
version Current cmkr version.
```
+1
View File
@@ -19,6 +19,7 @@ description = "Header-only library"
[target.mylib]
type = "interface"
include-directories = ["include"]
compile-features = ["cxx_std_11"]
[target.example]
type = "executable"
+40
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@@ -0,0 +1,40 @@
---
# Automatically generated from tests/templates/cmake.toml - DO NOT EDIT
layout: default
title: Target templates
permalink: /examples/templates
parent: Examples
nav_order: 7
---
# Target templates
To avoid repeating yourself in targets you can create your own target type (template). All properties of the template are inherited when used as a target type.
```toml
[project]
name = "templates"
description = "Target templates"
[template.app]
type = "executable"
sources = ["src/templates.cpp"]
compile-definitions = ["IS_APP"]
# Unlike interface targets you can also inherit properties
[template.app.properties]
CXX_STANDARD = "11"
CXX_STANDARD_REQUIRED = true
[target.app-a]
type = "app"
compile-definitions = ["APP_A"]
[target.app-b]
type = "app"
compile-definitions = ["APP_B"]
```
**Note**: In most cases you probably want to use an [interface](/examples/interface) target instead.
<sup><sub>This page was automatically generated from [tests/templates/cmake.toml](https://github.com/build-cpp/cmkr/tree/main/tests/templates/cmake.toml).</sub></sup>
+2
View File
@@ -33,4 +33,6 @@ link-libraries = ["fmt::fmt"]
The bootstrapping of vcpkg is fully automated and no user interaction is necessary. You can disable vcpkg by setting `CMKR_DISABLE_VCPKG=ON`.
To specify package features you can use the following syntax: `imgui[docking-experimental,freetype,sdl2-binding,opengl3-binding]`.
<sup><sub>This page was automatically generated from [tests/vcpkg/cmake.toml](https://github.com/build-cpp/cmkr/tree/main/tests/vcpkg/cmake.toml).</sub></sup>
+10
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@@ -0,0 +1,10 @@
---
layout: null
permalink: /getting-started/
---
<html>
<head>
<meta http-equiv="refresh" content="0;url=https://cmkr.build">
</head>
</html>
-17
View File
@@ -1,17 +0,0 @@
---
layout: page
title: Getting started
permalink: /getting-started/
nav_order: 1
---
# Getting started
The easiest way to get started is to use the [cmkr_for_beginners](https://github.com/build-cpp/cmkr_for_beginners) template repository. Either open it in [Gitpod](https://gitpod.io/#https://github.com/build-cpp/cmkr_for_beginners), or clone the repository and run:
```sh
cmake -B build
cmake --build build
```
Alternatively you can check out the [cmkr topic](https://github.com/topics/cmkr) or the [build-cpp organization](https://github.com/build-cpp) for more examples and templates.
+57 -3
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@@ -6,18 +6,72 @@ nav_order: 0
# Index
`cmkr`, pronounced "cmaker", is a modern build system based on [CMake](https://cmake.org/) and [TOML](https://toml.io). It was originally created by [Mohammed Alyousef](https://github.com/MoAlyousef).
`cmkr`, pronounced "cmaker", is a modern build system based on [CMake](https://cmake.org/) and [TOML](https://toml.io).
`cmkr` parses `cmake.toml` files and generates a modern, idiomatic `CMakeLists.txt` for you. A minimal example:
```toml
[project]
name = "cmkr_for_beginners"
description = "A minimal cmkr project."
[target.hello_world]
type = "executable"
sources = ["src/main.cpp"]
```
`cmkr` can bootstrap itself from CMake and consumers of your project do not need to install anything to work with it.
`cmkr` can bootstrap itself from CMake and you only need CMake to use it.
## Getting started
To get started run the following commands from your project directory:
```sh
curl https://raw.githubusercontent.com/build-cpp/cmkr/main/cmake/cmkr.cmake -o cmkr.cmake
cmake -P cmkr.cmake
```
After the bootstrapping process finishes, modify [`cmake.toml`](https://build-cpp.github.io/cmkr/cmake-toml) and open the project in your favorite IDE or build with CMake:
```sh
cmake -B build
cmake --build build
```
Once bootstrapped, `cmkr` does not introduce extra steps to your workflow. After modifying `cmake.toml` you simply build/configure your CMake project and `cmkr` will automatically regenerate `CMakeLists.txt`.
In CI settings the `cmkr` bootstrapping process is skipped so there is no extra configure-time overhead in your pipelines.
## Template repositories
Another way to get started is to use the [cmkr_for_beginners](https://github.com/build-cpp/cmkr_for_beginners) template repository. Either open it in [Gitpod](https://gitpod.io/#https://github.com/build-cpp/cmkr_for_beginners), or clone the repository and run:
```sh
cmake -B build
cmake --build build
```
Check out the [cmkr topic](https://github.com/topics/cmkr), the [build-cpp organization](https://github.com/build-cpp) or the [tests](https://github.com/build-cpp/cmkr/tree/main/tests) for more examples and templates.
## Command line
Optionally you can put a [`cmkr` release](https://github.com/build-cpp/cmkr/releases) in your `PATH` and use it as a utility from the command line:
```
Usage: cmkr [arguments]
arguments:
init [executable|library|shared|static|interface] Starts a new project in the same directory.
gen Generates CMakeLists.txt file.
build <extra cmake args> Run cmake and build.
install Run cmake --install. Needs admin privileges.
clean Clean the build directory.
help Show help.
version Current cmkr version.
```
## Credits
- https://github.com/gulrak/filesystem
- https://github.com/Tessil/ordered-map
- https://github.com/ToruNiina/toml11
- https://github.com/mpark/variant
- https://www.svgrepo.com/svg/192268/hammer
+2 -6
View File
@@ -5,13 +5,9 @@
namespace cmkr {
namespace gen {
int generate_project(const char *typ);
void generate_project(const std::string &type);
int generate_cmake(const char *path, const parser::Project *parent_project = nullptr);
void generate_cmake(const char *path, const parser::Project *parent_project = nullptr);
} // namespace gen
} // namespace cmkr
int cmkr_gen_generate_project(const char *typ);
int cmkr_gen_generate_cmake(const char *path);
-69
View File
@@ -1,69 +0,0 @@
// https://codereview.stackexchange.com/a/14315
#include <algorithm>
#include <iostream>
#include <sstream>
#include <string>
// This is the type that will hold all the strings.
// Each enumeration type will declare its own specialization.
// Any enum that does not have a specialization will generate a compiler error
// indicating that there is no definition of this variable (as there should be
// be no definition of a generic version).
template <typename T>
struct enumStrings {
static char const *data[];
};
// This is a utility type.
// Created automatically. Should not be used directly.
template <typename T>
struct enumRefHolder {
T &enumVal;
enumRefHolder(T &enumVal) : enumVal(enumVal) {}
};
template <typename T>
struct enumConstRefHolder {
T const &enumVal;
enumConstRefHolder(T const &enumVal) : enumVal(enumVal) {}
};
// The next two functions do the actual work of reading/writing an
// enum as a string.
template <typename T>
std::ostream &operator<<(std::ostream &str, enumConstRefHolder<T> const &data) {
return str << enumStrings<T>::data[data.enumVal];
}
template <typename T>
std::istream &operator>>(std::istream &str, enumRefHolder<T> const &data) {
std::string value;
str >> value;
// These two can be made easier to read in C++11
// using std::begin() and std::end()
//
static auto begin = std::begin(enumStrings<T>::data);
static auto end = std::end(enumStrings<T>::data);
auto find = std::find(begin, end, value);
if (find != end) {
data.enumVal = static_cast<T>(std::distance(begin, find));
} else {
throw std::invalid_argument("");
}
return str;
}
// This is the public interface:
// use the ability of function to deduce their template type without
// being explicitly told to create the correct type of enumRefHolder<T>
template <typename T>
enumConstRefHolder<T> enumToString(T const &e) {
return enumConstRefHolder<T>(e);
}
template <typename T>
enumRefHolder<T> enumFromString(T &e) {
return enumRefHolder<T>(e);
}
+88 -33
View File
@@ -1,45 +1,100 @@
#pragma once
static const char *hello_world = &R"lit(
static const char *cpp_executable = &R"lit(
#include <iostream>
#include <cstdlib>
int %s() {
std::cout << "Hello World!\n";
return 0;
int main() {
std::cout << "Hello from cmkr!\n";
return EXIT_SUCCESS;
}
)lit"[1]; // skip initial newline
static const char *cmake_toml = &R"lit(
[cmake]
version = "3.15"
# subdirs = []
# build-dir = ""
# cpp-flags = []
# c-flags = []
# link-flags = []
# generator = ""
# arguments = []
static const char *cpp_library = &R"lit(
#include <@name/@name.hpp>
[project]
name = "%s"
version = "0.1.0"
#include <iostream>
# [find-package]
namespace @name {
# [fetch-content]
void hello() {
std::cout << "Hello from cmkr!\n";
}
# [options]
[target.%s]
type = "%s"
sources = ["src/*.cpp"]
include-directories = ["include"]
# alias = ""
# compile-features = []
# compile-definitions = []
# link-libraries = []
[[install]]
%s = ["%s"]
destination = "${CMAKE_INSTALL_PREFIX}/%s"
} // namespace @name
)lit"[1]; // skip initial newline
static const char *hpp_library = &R"lit(
#pragma once
namespace @name {
void hello();
} // namespace @name
)lit"[1]; // skip initial newline
static const char *hpp_interface = &R"lit(
#pragma once
#include <iostream>
namespace @name {
inline void hello() {
std::cout << "Hello from cmkr!\n";
}
} // namespace @name
)lit"[1]; // skip initial newline
static const char *toml_executable = &R"lit(
# Reference: https://build-cpp.github.io/cmkr/cmake-toml
[project]
name = "@name"
[target.@name]
type = "executable"
sources = ["src/@name/main.cpp"]
compile-features = ["cxx_std_11"]
)lit"[1]; // skip initial newline
static const char *toml_library = &R"lit(
# Reference: https://build-cpp.github.io/cmkr/cmake-toml
[project]
name = "@name"
[target.@name]
type = "@type"
sources = [
"src/@name/@name.cpp",
"include/@name/@name.hpp"
]
include-directories = ["include"]
compile-features = ["cxx_std_11"]
)lit"[1]; // skip initial newline
static const char *toml_interface = &R"lit(
# Reference: https://build-cpp.github.io/cmkr/cmake-toml
[project]
name = "@name"
[target.@name]
type = "interface"
include-directories = ["include"]
compile-features = ["cxx_std_11"]
)lit"[1]; // skip initial newline
static const char *toml_migration = &R"lit(
# Reference: https://build-cpp.github.io/cmkr/cmake-toml
[project]
name = "@name"
# TODO: define a target for each of your executables/libraries like this:
#[target.myexecutable]
#type = "executable" # static, shared
#sources = ["src/@name/*.cpp", "include/@name/*.hpp"]
#include-directories = ["include"]
#compile-features = ["cxx_std_11"]
#link-libraries = ["target-or-library"]
)lit"[1]; // skip initial newline
+36 -9
View File
@@ -1,8 +1,6 @@
#pragma once
#include <map>
#include <mpark/variant.hpp>
#include <stdexcept>
#include <string>
#include <tsl/ordered_map.h>
#include <vector>
@@ -10,6 +8,11 @@
namespace cmkr {
namespace parser {
template <typename T>
using Condition = tsl::ordered_map<std::string, T>;
using ConditionVector = Condition<std::vector<std::string>>;
struct Setting {
std::string name;
std::string comment;
@@ -26,6 +29,7 @@ struct Option {
struct Package {
std::string name;
std::string condition;
std::string version;
bool required = true;
bool config = false;
@@ -35,7 +39,13 @@ struct Package {
struct Vcpkg {
std::string version;
std::string url;
std::vector<std::string> packages;
struct Package {
std::string name;
std::vector<std::string> features;
};
std::vector<Package> packages;
};
enum TargetType {
@@ -45,16 +55,17 @@ enum TargetType {
target_static,
target_interface,
target_custom,
target_object,
target_template,
target_last,
};
template <typename T>
using Condition = tsl::ordered_map<std::string, T>;
using ConditionVector = Condition<std::vector<std::string>>;
extern const char *targetTypeNames[target_last];
struct Target {
std::string name;
TargetType type = {};
TargetType type = target_last;
std::string type_name;
ConditionVector headers;
ConditionVector sources;
@@ -94,8 +105,15 @@ struct Target {
ConditionVector include_after;
};
struct Template {
Target outline;
std::string add_function;
bool pass_sources_to_add_function = false;
};
struct Test {
std::string name;
std::string condition;
std::vector<std::string> configurations;
std::string working_directory;
std::string command;
@@ -103,11 +121,13 @@ struct Test {
};
struct Install {
std::string condition;
std::vector<std::string> targets;
std::vector<std::string> files;
std::vector<std::string> dirs;
std::vector<std::string> configs;
std::string destination;
std::string component;
};
struct Subdir {
@@ -119,6 +139,12 @@ struct Subdir {
ConditionVector include_after;
};
struct Content {
std::string name;
std::string condition;
tsl::ordered_map<std::string, std::string> arguments;
};
struct Project {
// This is the CMake version required to use all cmkr versions.
std::string cmake_version = "3.15";
@@ -145,7 +171,8 @@ struct Project {
std::vector<Option> options;
std::vector<Package> packages;
Vcpkg vcpkg;
tsl::ordered_map<std::string, std::map<std::string, std::string>> contents;
std::vector<Content> contents;
std::vector<Template> templates;
std::vector<Target> targets;
std::vector<Test> tests;
std::vector<Install> installs;
+4 -10
View File
@@ -21,9 +21,7 @@ const char *handle_args(int argc, char **argv) {
throw std::runtime_error(cmkr::help::message());
std::string main_arg = args[1];
if (main_arg == "gen") {
auto ret = cmkr::gen::generate_cmake(fs::current_path().string().c_str());
if (ret)
return "CMake generation error!";
cmkr::gen::generate_cmake(fs::current_path().string().c_str());
return "CMake generation successful!";
} else if (main_arg == "help") {
return cmkr::help::message();
@@ -33,18 +31,14 @@ const char *handle_args(int argc, char **argv) {
std::string type = "executable";
if (args.size() > 2)
type = args[2];
auto ret = cmkr::gen::generate_project(type.c_str());
if (ret)
return "Initialization failure!";
ret = cmkr::gen::generate_cmake(fs::current_path().string().c_str());
if (ret)
return "CMake generation error!";
cmkr::gen::generate_project(type.c_str());
cmkr::gen::generate_cmake(fs::current_path().string().c_str());
return "Directory initialized!";
} else if (main_arg == "build") {
auto ret = build::run(argc, argv);
if (ret)
return "CMake build error!";
return "CMake run completed!";
return "CMake build completed!";
} else if (main_arg == "install") {
auto ret = build::install();
if (ret)
+5 -6
View File
@@ -4,10 +4,10 @@
#include "project_parser.hpp"
#include "fs.hpp"
#include <cstddef>
#include <cstdlib>
#include <sstream>
#include <stddef.h>
#include <stdexcept>
#include <stdlib.h>
#include <system_error>
namespace cmkr {
@@ -22,10 +22,9 @@ int run(int argc, char **argv) {
}
std::stringstream ss;
if (gen::generate_cmake(fs::current_path().string().c_str()))
throw std::runtime_error("CMake generation failure!");
gen::generate_cmake(fs::current_path().string().c_str());
ss << "cmake -S. -DCMKR_BUILD_SKIP_GENERATION=ON -B" << project.build_dir << " ";
ss << "cmake -DCMKR_BUILD_SKIP_GENERATION=ON -B" << project.build_dir << " ";
if (!project.generator.empty()) {
ss << "-G \"" << project.generator << "\" ";
@@ -94,4 +93,4 @@ int cmkr_build_install(void) {
} catch (...) {
return cmkr::error::Status(cmkr::error::Status::Code::InstallError);
}
}
}
+389 -279
View File
@@ -4,22 +4,16 @@
#include <resources/cmkr.hpp>
#include "fs.hpp"
#include <cassert>
#include <cstdio>
#include <cstring>
#include <fstream>
#include <iomanip>
#include <new>
#include <nlohmann/json.hpp>
#include <regex>
#include <memory>
#include <sstream>
#include <stdexcept>
#include <string>
namespace cmkr {
namespace gen {
inline std::string to_upper(const std::string &str) {
static std::string to_upper(const std::string &str) {
std::string temp;
temp.reserve(str.size());
for (auto c : str) {
@@ -28,16 +22,16 @@ inline std::string to_upper(const std::string &str) {
return temp;
}
template <typename... Args>
std::string format(const char *fmt, Args... args) {
auto sz = snprintf(nullptr, 0, fmt, args...) + 1;
char *buf = new char[sz];
int ret = snprintf(buf, sz, fmt, args...);
if (ret != sz - 1)
throw std::runtime_error("Error formatting string!");
std::string temp(buf, buf + sz - 1);
delete[] buf;
return temp;
static std::string format(const char *format, tsl::ordered_map<std::string, std::string> variables) {
std::string s = format;
for (const auto &itr : variables) {
size_t start_pos = 0;
while ((start_pos = s.find(itr.first, start_pos)) != std::string::npos) {
s.replace(start_pos, itr.first.length(), itr.second);
start_pos += itr.second.length();
}
}
return s;
}
static std::vector<std::string> expand_cmake_path(const fs::path &name, const fs::path &toml_dir) {
@@ -89,52 +83,50 @@ static std::vector<std::string> expand_cmake_paths(const std::vector<std::string
return result;
}
int generate_project(const char *str) {
fs::create_directory("src");
fs::create_directory("include");
const auto dir_name = fs::current_path().stem().string();
std::string mainbuf;
std::string installed;
std::string target;
std::string dest;
if (!strcmp(str, "executable")) {
mainbuf = format(hello_world, "main");
installed = "targets";
target = dir_name;
dest = "bin";
} else if (!strcmp(str, "static") || !strcmp(str, "shared") || !strcmp(str, "library")) {
mainbuf = format(hello_world, "test");
installed = "targets";
target = dir_name;
dest = "lib";
} else if (!strcmp(str, "interface")) {
installed = "files";
target = "include/*.h";
dest = "include/" + dir_name;
static void create_file(const fs::path &path, const std::string &contents) {
if (!path.parent_path().empty()) {
fs::create_directories(path.parent_path());
}
std::ofstream ofs(path, std::ios::binary);
if (!ofs) {
throw std::runtime_error("Failed to create " + path.string());
}
ofs << contents;
}
void generate_project(const std::string &type) {
const auto name = fs::current_path().stem().string();
if (fs::exists(fs::current_path() / "cmake.toml")) {
throw std::runtime_error("Cannot initialize a project when cmake.toml already exists!");
}
tsl::ordered_map<std::string, std::string> variables = {
{"@name", name},
{"@type", type},
};
if (!fs::is_empty(fs::current_path())) {
// Make a backup of an existing CMakeLists.txt if it exists
std::error_code ec;
fs::rename("CMakeLists.txt", "CMakeLists.txt.bak", ec);
// Create an empty cmake.toml for migration purporses
create_file("cmake.toml", format(toml_migration, variables));
return;
}
if (type == "executable") {
create_file("cmake.toml", format(toml_executable, variables));
create_file("src/" + name + "/main.cpp", format(cpp_executable, variables));
} else if (type == "static" || type == "shared" || type == "library") {
create_file("cmake.toml", format(toml_library, variables));
create_file("src/" + name + "/" + name + ".cpp", format(cpp_library, variables));
create_file("include/" + name + "/" + name + ".hpp", format(hpp_library, variables));
} else if (type == "interface") {
create_file("cmake.toml", format(toml_interface, variables));
create_file("include/" + name + "/" + name + ".hpp", format(hpp_interface, variables));
} else {
throw std::runtime_error("Unknown project type " + std::string(str) +
"! Supported types are: executable, library, shared, static, interface");
throw std::runtime_error("Unknown project type " + type + "! Supported types are: executable, library, shared, static, interface");
}
const auto tomlbuf = format(cmake_toml, dir_name.c_str(), dir_name.c_str(), str, installed.c_str(), target.c_str(), dest.c_str());
if (strcmp(str, "interface")) {
std::ofstream ofs("src/main.cpp");
if (ofs.is_open()) {
ofs << mainbuf;
}
ofs.flush();
ofs.close();
}
std::ofstream ofs2("cmake.toml");
if (ofs2.is_open()) {
ofs2 << tomlbuf;
}
ofs2.flush();
ofs2.close();
return 0;
}
struct CommandEndl {
@@ -163,13 +155,17 @@ struct Command {
Command(std::stringstream &ss, int depth, std::string command, std::string post_comment)
: ss(ss), depth(depth), command(std::move(command)), post_comment(std::move(post_comment)) {}
~Command() {
~Command() noexcept(false) {
if (!generated) {
assert(false && "Incorrect usage of cmd(), you probably forgot ()");
throw std::runtime_error("Incorrect usage of cmd(), you probably forgot ()");
}
}
std::string quote(const std::string &str) {
static std::string quote(const std::string &str) {
// Quote an empty string
if (str.empty()) {
return "\"\"";
}
// Don't quote arguments that don't need quoting
if (str.find(' ') == std::string::npos && str.find('\"') == std::string::npos && str.find('/') == std::string::npos &&
str.find(';') == std::string::npos) {
@@ -325,10 +321,10 @@ static std::string tolf(const std::string &str) {
};
struct Generator {
Generator(parser::Project &project) : project(project) {}
Generator(const parser::Project &project) : project(project) {}
Generator(const Generator &) = delete;
parser::Project &project;
const parser::Project &project;
std::stringstream ss;
int indent = 0;
@@ -392,11 +388,7 @@ struct Generator {
for (const auto &itr : value) {
const auto &condition = itr.first;
if (!condition.empty()) {
if (project.conditions.count(condition) == 0) {
// TODO: somehow print line number information here?
throw std::runtime_error("Unknown condition '" + condition + "'");
}
cmd("if", condition)(RawArg(project.conditions[condition]));
cmd("if", condition)(RawArg(project.conditions.at(condition)));
}
if (!itr.second.empty()) {
@@ -412,11 +404,50 @@ struct Generator {
}
};
struct ConditionScope {
Generator &gen;
bool endif = false;
ConditionScope(Generator &gen, const std::string &condition) : gen(gen) {
if (!condition.empty()) {
gen.cmd("if", condition)(RawArg(gen.project.conditions.at(condition)));
endif = true;
}
}
ConditionScope(const ConditionScope &) = delete;
ConditionScope(ConditionScope &&) = delete;
~ConditionScope() {
if (endif) {
gen.cmd("endif")();
}
}
};
static bool vcpkg_valid_identifier(const std::string &name) {
const std::regex reserved("prn|aux|nul|con|lpt[1-9]|com[1-9]|core|default");
const std::regex ok("[a-z0-9]+(-[a-z0-9]+)*");
std::cmatch m;
return !std::regex_match(name.c_str(), m, reserved) && std::regex_match(name.c_str(), m, ok);
// prn|aux|nul|con|lpt[1-9]|com[1-9]|core|default
auto is_reserved = [](const std::string &s) {
if (s == "prn" || s == "aux" || s == "nul" || s == "con" || s == "core" || s == "default") {
return true;
}
if (s.length() == 4 && (s.compare(0, 3, "lpt") == 0 || s.compare(0, 3, "com") == 0) && (s[3] >= '1' && s[3] <= '9')) {
return true;
}
return false;
};
// [a-z0-9]+(-[a-z0-9]+)*
auto is_identifier = [](const std::string &s) {
for (size_t i = 0; i < s.length(); i++) {
auto c = s[i];
if ((c >= 'a' && c <= 'z') || (c >= '0' && c <= '9') || (i > 0 && c == '-')) {
continue;
}
return false;
}
return true;
};
return is_identifier(name) && !is_reserved(name);
}
static std::string vcpkg_escape_identifier(const std::string &name) {
@@ -440,7 +471,7 @@ static std::string vcpkg_escape_identifier(const std::string &name) {
return escaped;
}
int generate_cmake(const char *path, const parser::Project *parent_project) {
void generate_cmake(const char *path, const parser::Project *parent_project) {
if (!fs::exists(fs::path(path) / "cmake.toml")) {
throw std::runtime_error("No cmake.toml found!");
}
@@ -494,12 +525,7 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
fs::path cmkr_include(project.cmkr_include);
if (!project.cmkr_include.empty() && !fs::exists(cmkr_include) && cmkr_include.is_relative()) {
fs::create_directories(cmkr_include.parent_path());
std::ofstream ofs(cmkr_include.string(), std::ios::binary);
if (!ofs) {
throw std::runtime_error("Failed to create " + project.cmkr_include);
}
ofs.write(resources::cmkr, strlen(resources::cmkr));
create_file(cmkr_include, resources::cmkr);
}
}
@@ -537,114 +563,10 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
ss << "\")\n\n";
}
gen.handle_condition(project.include_before, [&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(project.cmake_before, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
if (!project.project_name.empty()) {
auto languages = std::make_pair("LANGUAGES", project.project_languages);
auto version = std::make_pair("VERSION", project.project_version);
auto description = std::make_pair("DESCRIPTION", project.project_description);
cmd("project")(project.project_name, languages, version, description).endl();
}
gen.handle_condition(project.include_after, [&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(project.cmake_after, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
if (!project.contents.empty()) {
cmd("include")("FetchContent").endl();
for (const auto &dep : project.contents) {
cmd("message")("STATUS", "Fetching " + dep.first + "...");
ss << "FetchContent_Declare(\n\t" << dep.first << "\n";
for (const auto &arg : dep.second) {
std::string first_arg = arg.first;
if (first_arg == "git") {
first_arg = "GIT_REPOSITORY";
} else if (first_arg == "tag") {
first_arg = "GIT_TAG";
} else if (first_arg == "svn") {
first_arg = "SVN_REPOSITORY";
} else if (first_arg == "rev") {
first_arg = "SVN_REVISION";
} else if (first_arg == "url") {
first_arg = "URL";
} else if (first_arg == "hash") {
first_arg = "URL_HASH";
} else {
// don't change arg
}
ss << "\t" << first_arg << "\n\t\t" << arg.second << "\n";
}
ss << ")\n";
cmd("FetchContent_MakeAvailable")(dep.first).endl();
}
}
if (!project.vcpkg.packages.empty()) {
// Allow the user to specify a url or derive it from the version
auto url = project.vcpkg.url;
if (url.empty()) {
if (project.vcpkg.version.empty()) {
throw std::runtime_error("You need either [vcpkg].version or [vcpkg].url");
}
url = "https://github.com/microsoft/vcpkg/archive/refs/tags/" + project.vcpkg.version + ".tar.gz";
}
// Show a nicer error than vcpkg when specifying an invalid package name
for (const auto &package : project.vcpkg.packages) {
if (!vcpkg_valid_identifier(package)) {
throw std::runtime_error("Invalid [vcpkg].packages name '" + package + "' (needs to be lowercase alphanumeric)");
}
}
// CMake to bootstrap vcpkg and download the packages
// clang-format off
cmd("if")("CMKR_ROOT_PROJECT", "AND", "NOT", "CMKR_DISABLE_VCPKG");
cmd("include")("FetchContent");
cmd("message")("STATUS", "Fetching vcpkg...");
cmd("FetchContent_Declare")("vcpkg", "URL", url);
cmd("FetchContent_MakeAvailable")("vcpkg");
cmd("include")("${vcpkg_SOURCE_DIR}/scripts/buildsystems/vcpkg.cmake");
cmd("endif")();
endl();
// clang-format on
// Generate vcpkg.json
using namespace nlohmann;
json j;
j["$cmkr"] = "This file is automatically generated from cmake.toml - DO NOT EDIT";
j["$cmkr-url"] = cmkr_url;
j["$schema"] = "https://raw.githubusercontent.com/microsoft/vcpkg/master/scripts/vcpkg.schema.json";
j["name"] = vcpkg_escape_identifier(project.project_name);
j["version-string"] = project.project_version;
j["dependencies"] = project.vcpkg.packages;
if (!project.project_description.empty()) {
j["description"] = project.project_description;
}
std::ofstream ofs("vcpkg.json");
if (!ofs) {
throw std::runtime_error("Failed to create a vcpkg.json manifest file!");
}
ofs << std::setw(2) << j << std::endl;
}
if (!project.packages.empty()) {
comment("Packages");
for (const auto &dep : project.packages) {
auto version = dep.version;
if (version == "*")
version.clear();
auto required = dep.required ? "REQUIRED" : "";
auto config = dep.config ? "CONFIG" : "";
auto components = std::make_pair("COMPONENTS", dep.components);
cmd("find_package")(dep.name, version, required, config, components).endl();
}
}
if (!project.options.empty()) {
comment("Options");
for (const auto &opt : project.options) {
cmd("option")(opt.name, opt.comment, opt.val ? "ON" : "OFF");
cmd("option")(opt.name, RawArg(Command::quote(opt.comment)), opt.val ? "ON" : "OFF");
}
endl();
}
@@ -670,6 +592,148 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
endl();
}
gen.handle_condition(project.include_before, [&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(project.cmake_before, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
if (!project.project_name.empty()) {
auto languages = std::make_pair("LANGUAGES", project.project_languages);
auto version = std::make_pair("VERSION", project.project_version);
auto description = std::make_pair("DESCRIPTION", project.project_description);
cmd("project")(project.project_name, languages, version, description).endl();
}
gen.handle_condition(project.include_after, [&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(project.cmake_after, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
if (!project.vcpkg.packages.empty()) {
// Allow the user to specify a url or derive it from the version
auto url = project.vcpkg.url;
auto version_name = url;
if (url.empty()) {
if (project.vcpkg.version.empty()) {
throw std::runtime_error("You need either [vcpkg].version or [vcpkg].url");
}
url = "https://github.com/microsoft/vcpkg/archive/refs/tags/" + project.vcpkg.version + ".tar.gz";
version_name = project.vcpkg.version;
}
// Show a nicer error than vcpkg when specifying an invalid package name
for (const auto &package : project.vcpkg.packages) {
if (!vcpkg_valid_identifier(package.name)) {
throw std::runtime_error("Invalid [vcpkg].packages name '" + package.name + "' (needs to be lowercase alphanumeric)");
}
}
// CMake to bootstrap vcpkg and download the packages
// clang-format off
cmd("if")("CMKR_ROOT_PROJECT", "AND", "NOT", "CMKR_DISABLE_VCPKG");
cmd("include")("FetchContent");
cmd("message")("STATUS", "Fetching vcpkg (" + version_name + ")...");
cmd("FetchContent_Declare")("vcpkg", "URL", url);
cmd("FetchContent_MakeAvailable")("vcpkg");
cmd("include")("${vcpkg_SOURCE_DIR}/scripts/buildsystems/vcpkg.cmake");
cmd("endif")();
endl();
// clang-format on
// Generate vcpkg.json (sorry for the ugly string handling, nlohmann compiles very slowly)
std::ofstream ofs("vcpkg.json", std::ios::binary);
if (!ofs) {
throw std::runtime_error("Failed to create a vcpkg.json manifest file!");
}
ofs << R"({
"$cmkr": "This file is automatically generated from cmake.toml - DO NOT EDIT",
"$cmkr-url": "https://github.com/build-cpp/cmkr",
"$schema": "https://raw.githubusercontent.com/microsoft/vcpkg/master/scripts/vcpkg.schema.json",
"dependencies": [
)";
const auto &packages = project.vcpkg.packages;
for (size_t i = 0; i < packages.size(); i++) {
const auto &package = packages[i];
const auto &features = package.features;
if (!vcpkg_valid_identifier(package.name)) {
throw std::runtime_error("Invalid vcpkg package name '" + package.name + "'");
}
for (const auto &feature : features) {
if (!vcpkg_valid_identifier(feature)) {
throw std::runtime_error("Invalid vcpkg package feature '" + feature + "'");
}
}
if (features.empty()) {
ofs << " \"" << package.name << '\"';
} else {
ofs << " {\n";
ofs << " \"name\": \"" << package.name << "\",\n";
ofs << " \"features\": [";
for (size_t j = 0; j < features.size(); j++) {
const auto &feature = features[j];
ofs << '\"' << feature << '\"';
if (j + 1 < features.size()) {
ofs << ',';
}
}
ofs << "]\n";
ofs << " }";
}
if (i + 1 < packages.size()) {
ofs << ',';
}
ofs << '\n';
}
auto escape = [](const std::string &str) {
std::string result;
for (auto ch : str) {
if (ch == '\\' || ch == '\"') {
result += '\\';
}
result += ch;
}
return result;
};
ofs << " ],\n";
ofs << " \"description\": \"" << escape(project.project_description) << "\",\n";
ofs << " \"name\": \"" << escape(vcpkg_escape_identifier(project.project_name)) << "\",\n";
ofs << R"( "version-string": "")" << '\n';
ofs << "}\n";
}
if (!project.contents.empty()) {
cmd("include")("FetchContent").endl();
for (const auto &content : project.contents) {
ConditionScope cs(gen, content.condition);
std::string version_info = "";
if (content.arguments.contains("GIT_TAG")) {
version_info = " (" + content.arguments.at("GIT_TAG") + ")";
} else if (content.arguments.contains("SVN_REVISION")) {
version_info = " (" + content.arguments.at("SVN_REVISION") + ")";
}
cmd("message")("STATUS", "Fetching " + content.name + version_info + "...");
ss << "FetchContent_Declare(\n\t" << content.name << "\n";
for (const auto &arg : content.arguments) {
ss << "\t" << arg.first << "\n\t\t" << arg.second << "\n";
}
ss << ")\n";
cmd("FetchContent_MakeAvailable")(content.name).endl();
}
}
if (!project.packages.empty()) {
comment("Packages");
for (const auto &dep : project.packages) {
auto version = dep.version;
if (version == "*")
version.clear();
auto required = dep.required ? "REQUIRED" : "";
auto config = dep.config ? "CONFIG" : "";
auto components = std::make_pair("COMPONENTS", dep.components);
ConditionScope cs(gen, dep.condition);
cmd("find_package")(dep.name, version, required, config, components).endl();
}
}
auto add_subdir = [&](const std::string &dir) {
// clang-format off
comment(dir);
@@ -695,13 +759,7 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
endl();
}
for (const auto &subdir : project.subdirs) {
if (!subdir.condition.empty()) {
const auto &condition = subdir.condition;
if (project.conditions.count(condition) == 0) {
throw std::runtime_error("Unknown condition '" + condition + "' for [subdir." + subdir.name + "]");
}
gen.cmd("if", condition)(RawArg(project.conditions[condition]));
}
ConditionScope cs(gen, subdir.condition);
gen.handle_condition(subdir.include_before,
[&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
@@ -711,26 +769,40 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
gen.handle_condition(subdir.include_after, [&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(subdir.cmake_after, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
if (!subdir.condition.empty()) {
cmd("endif")();
}
}
if (!project.targets.empty()) {
for (const auto &target : project.targets) {
comment("Target " + target.name);
if (!target.condition.empty()) {
const auto &condition = target.condition;
if (project.conditions.count(condition) == 0) {
throw std::runtime_error("Unknown condition '" + condition + "' for [target." + target.name + "]");
}
gen.cmd("if", condition)(RawArg(project.conditions[condition]));
for (size_t i = 0; i < project.targets.size(); i++) {
if (i > 0) {
endl();
}
const auto &target = project.targets[i];
const parser::Template *tmplate = nullptr;
std::unique_ptr<ConditionScope> tmplate_cs{};
comment("Target " + target.name);
// Check if this target is using a template.
if (target.type == parser::target_template) {
for (const auto &t : project.templates) {
if (target.type_name == t.outline.name) {
tmplate = &t;
tmplate_cs = std::unique_ptr<ConditionScope>(new ConditionScope(gen, tmplate->outline.condition));
}
}
}
ConditionScope cs(gen, target.condition);
cmd("set")("CMKR_TARGET", target.name);
if (tmplate != nullptr) {
gen.handle_condition(tmplate->outline.include_before,
[&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(tmplate->outline.cmake_before, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
}
gen.handle_condition(target.include_before,
[&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(target.cmake_before, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
@@ -739,6 +811,18 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
bool added_toml = false;
cmd("set")(sources_var, RawArg("\"\"")).endl();
if (tmplate != nullptr) {
gen.handle_condition(tmplate->outline.sources, [&](const std::string &condition, const std::vector<std::string> &condition_sources) {
auto sources = expand_cmake_paths(condition_sources, path);
if (sources.empty()) {
auto source_key = condition.empty() ? "sources" : (condition + ".sources");
throw std::runtime_error(target.name + " " + source_key + " wildcard found 0 files");
}
cmd("list")("APPEND", sources_var, sources);
});
}
gen.handle_condition(target.sources, [&](const std::string &condition, const std::vector<std::string> &condition_sources) {
auto sources = expand_cmake_paths(condition_sources, path);
if (sources.empty()) {
@@ -752,60 +836,91 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
cmd("list")("APPEND", sources_var, sources);
});
if (!added_toml && target.type != parser::target_interface) {
auto target_type = target.type;
if (tmplate != nullptr) {
target_type = tmplate->outline.type;
}
if (!added_toml && target_type != parser::target_interface) {
cmd("list")("APPEND", sources_var, std::vector<std::string>{"cmake.toml"}).endl();
}
cmd("set")("CMKR_SOURCES", "${" + sources_var + "}");
std::string add_command;
std::string target_type;
std::string target_type_string;
std::string target_scope;
switch (target.type) {
switch (target_type) {
case parser::target_executable:
add_command = "add_executable";
target_type = "";
target_type_string = "";
target_scope = "PRIVATE";
break;
case parser::target_library:
add_command = "add_library";
target_type = "";
target_type_string = "";
target_scope = "PUBLIC";
break;
case parser::target_shared:
add_command = "add_library";
target_type = "SHARED";
target_type_string = "SHARED";
target_scope = "PUBLIC";
break;
case parser::target_static:
add_command = "add_library";
target_type = "STATIC";
target_type_string = "STATIC";
target_scope = "PUBLIC";
break;
case parser::target_interface:
add_command = "add_library";
target_type = "INTERFACE";
target_type_string = "INTERFACE";
target_scope = "INTERFACE";
break;
case parser::target_custom:
// TODO: add proper support, this is hacky
add_command = "add_custom_target";
target_type = "SOURCES";
target_type_string = "SOURCES";
target_scope = "PUBLIC";
break;
case parser::target_object:
// NOTE: This is properly supported since 3.12
add_command = "add_library";
target_type_string = "OBJECT";
target_scope = "PUBLIC";
break;
default:
assert("Unimplemented enum value" && false);
throw std::runtime_error("Unimplemented enum value");
}
cmd(add_command)(target.name, target_type).endl();
// Handle custom add commands from templates.
if (tmplate != nullptr && !tmplate->add_function.empty()) {
add_command = tmplate->add_function;
target_type_string = ""; // TODO: let templates supply options to the add_command here?
// clang-format off
cmd("if")(sources_var);
cmd("target_sources")(target.name, target.type == parser::target_interface ? "INTERFACE" : "PRIVATE", "${" + sources_var + "}");
cmd("endif")().endl();
// clang-format on
if (tmplate->pass_sources_to_add_function) {
cmd(add_command)(target.name, target_type_string, "${" + sources_var + "}");
} else {
cmd(add_command)(target.name, target_type_string).endl();
// clang-format off
cmd("if")(sources_var);
cmd("target_sources")(target.name, target_type == parser::target_interface ? "INTERFACE" : "PRIVATE", "${" + sources_var + "}");
cmd("endif")().endl();
// clang-format on
}
} else {
cmd(add_command)(target.name, target_type_string).endl();
// clang-format off
cmd("if")(sources_var);
cmd("target_sources")(target.name, target_type == parser::target_interface ? "INTERFACE" : "PRIVATE", "${" + sources_var + "}");
cmd("endif")().endl();
// clang-format on
}
// The first executable target will become the Visual Studio startup project
if (target.type == parser::target_executable) {
if (target_type == parser::target_executable) {
cmd("get_directory_property")("CMKR_VS_STARTUP_PROJECT", "DIRECTORY", "${PROJECT_SOURCE_DIR}", "DEFINITION", "VS_STARTUP_PROJECT");
// clang-format off
cmd("if")("NOT", "CMKR_VS_STARTUP_PROJECT");
@@ -827,32 +942,46 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
[&](const std::string &, const std::vector<std::string> &args) { cmd(command)(target.name, scope, args); });
};
target_cmd("target_compile_definitions", target.compile_definitions, target_scope);
target_cmd("target_compile_definitions", target.private_compile_definitions, "PRIVATE");
auto gen_target_cmds = [&](const parser::Target &t) {
target_cmd("target_compile_definitions", t.compile_definitions, target_scope);
target_cmd("target_compile_definitions", t.private_compile_definitions, "PRIVATE");
target_cmd("target_compile_features", target.compile_features, target_scope);
target_cmd("target_compile_features", target.private_compile_features, "PRIVATE");
target_cmd("target_compile_features", t.compile_features, target_scope);
target_cmd("target_compile_features", t.private_compile_features, "PRIVATE");
target_cmd("target_compile_options", target.compile_options, target_scope);
target_cmd("target_compile_options", target.private_compile_options, "PRIVATE");
target_cmd("target_compile_options", t.compile_options, target_scope);
target_cmd("target_compile_options", t.private_compile_options, "PRIVATE");
target_cmd("target_include_directories", target.include_directories, target_scope);
target_cmd("target_include_directories", target.private_include_directories, "PRIVATE");
target_cmd("target_include_directories", t.include_directories, target_scope);
target_cmd("target_include_directories", t.private_include_directories, "PRIVATE");
target_cmd("target_link_directories", target.link_directories, target_scope);
target_cmd("target_link_directories", target.private_link_directories, "PRIVATE");
target_cmd("target_link_directories", t.link_directories, target_scope);
target_cmd("target_link_directories", t.private_link_directories, "PRIVATE");
target_cmd("target_link_libraries", target.link_libraries, target_scope);
target_cmd("target_link_libraries", target.private_link_libraries, "PRIVATE");
target_cmd("target_link_libraries", t.link_libraries, target_scope);
target_cmd("target_link_libraries", t.private_link_libraries, "PRIVATE");
target_cmd("target_link_options", target.link_options, target_scope);
target_cmd("target_link_options", target.private_link_options, "PRIVATE");
target_cmd("target_link_options", t.link_options, target_scope);
target_cmd("target_link_options", t.private_link_options, "PRIVATE");
target_cmd("target_precompile_headers", target.precompile_headers, target_scope);
target_cmd("target_precompile_headers", target.private_precompile_headers, "PRIVATE");
target_cmd("target_precompile_headers", t.precompile_headers, target_scope);
target_cmd("target_precompile_headers", t.private_precompile_headers, "PRIVATE");
};
if (!target.properties.empty()) {
gen.handle_condition(target.properties, [&](const std::string &, const tsl::ordered_map<std::string, std::string> &properties) {
if (tmplate != nullptr) {
gen_target_cmds(tmplate->outline);
}
gen_target_cmds(target);
if (!target.properties.empty() || (tmplate != nullptr && !tmplate->outline.properties.empty())) {
auto props = target.properties;
if (tmplate != nullptr) {
props.insert(tmplate->outline.properties.begin(), tmplate->outline.properties.end());
}
gen.handle_condition(props, [&](const std::string &, const tsl::ordered_map<std::string, std::string> &properties) {
cmd("set_target_properties")(target.name, "PROPERTIES", properties);
});
}
@@ -861,15 +990,17 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
[&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(target.cmake_after, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
cmd("unset")("CMKR_TARGET");
cmd("unset")("CMKR_SOURCES");
if (!target.condition.empty()) {
cmd("endif")();
if (tmplate != nullptr) {
gen.handle_condition(tmplate->outline.include_after,
[&](const std::string &, const std::vector<std::string> &includes) { inject_includes(includes); });
gen.handle_condition(tmplate->outline.cmake_after, [&](const std::string &, const std::string &cmake) { inject_cmake(cmake); });
}
endl();
cmd("unset")("CMKR_TARGET");
cmd("unset")("CMKR_SOURCES");
}
endl();
}
if (!project.tests.empty()) {
@@ -884,6 +1015,7 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
auto working_directory = std::make_pair("WORKING_DIRECTORY", dir);
auto command = std::make_pair("COMMAND", test.command);
auto arguments = std::make_pair("", test.arguments);
ConditionScope cs(gen, test.condition);
cmd("add_test")(name, configurations, working_directory, command, arguments).endl();
}
}
@@ -902,7 +1034,12 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
auto files = std::make_pair("FILES", inst.files);
auto configs = std::make_pair("CONFIGURATIONS", inst.configs);
auto destination = std::make_pair("DESTINATION", inst.destination);
auto component = std::make_pair("COMPONENT", inst.targets.empty() ? "" : inst.targets.front());
auto component_name = inst.component;
if (component_name.empty() && !inst.targets.empty()) {
component_name = inst.targets.front();
}
auto component = std::make_pair("COMPONENT", component_name);
ConditionScope cs(gen, inst.condition);
cmd("install")(targets, dirs, files, configs, destination, component);
}
}
@@ -914,7 +1051,7 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
if (!fs::exists(list_path))
return true;
std::ifstream ifs(list_path, std::ios_base::binary);
std::ifstream ifs(list_path, std::ios::binary);
if (!ifs.is_open()) {
throw std::runtime_error("Failed to read " + list_path.string());
}
@@ -924,12 +1061,7 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
}();
if (should_regenerate) {
std::ofstream ofs(list_path, std::ios_base::binary);
if (ofs.is_open()) {
ofs << ss.str();
} else {
throw std::runtime_error("Failed to write " + list_path.string());
}
create_file(list_path, ss.str());
}
auto generate_subdir = [path, &project](const fs::path &sub) {
@@ -955,28 +1087,6 @@ int generate_cmake(const char *path, const parser::Project *parent_project) {
for (const auto &subdir : project.subdirs) {
generate_subdir(subdir.name);
}
return 0;
}
} // namespace gen
} // namespace cmkr
int cmkr_gen_generate_project(const char *typ) {
try {
return cmkr::gen::generate_project(typ);
} catch (const std::system_error &e) {
return e.code().value();
} catch (...) {
return cmkr::error::Status(cmkr::error::Status::Code::InitError);
}
}
int cmkr_gen_generate_cmake(const char *path) {
try {
return cmkr::gen::generate_cmake(path);
} catch (const std::system_error &e) {
return e.code().value();
} catch (...) {
return cmkr::error::Status(cmkr::error::Status::Code::GenerationError);
}
}
+6 -5
View File
@@ -1,6 +1,6 @@
#include "error.hpp"
#include <assert.h>
#include <cassert>
namespace cmkr {
namespace error {
@@ -14,11 +14,12 @@ Status::Code Status::code() const noexcept { return ec_; }
} // namespace error
} // namespace cmkr
const char *err_string[] = {
"Success", "Runtime error", "Initialization error", "CMake generation error", "Build error",
// strings for cmkr::error::Status::Code
static const char *err_string[] = {
"Success", "Runtime error", "Initialization error", "CMake generation error", "Build error", "Clean error", "Install error",
};
const char *cmkr_error_status(int i) {
assert(i >= 0 && i < 5);
assert(i >= 0 && i < (sizeof(err_string) / sizeof(*(err_string))));
return err_string[i];
}
}
+2 -1
View File
@@ -1,9 +1,10 @@
#include "help.hpp"
#include <resources/version.hpp>
namespace cmkr {
namespace help {
const char *version() noexcept { return "cmkr version 0.1.3"; }
const char *version() noexcept { return "cmkr version " CMKR_VERSION; }
const char *message() noexcept {
return R"lit(
+557 -315
View File
@@ -1,346 +1,588 @@
#include "project_parser.hpp"
#include "enum_helper.hpp"
#include "fs.hpp"
#include <deque>
#include <stdexcept>
#include <toml.hpp>
#include <tsl/ordered_map.h>
template <>
const char *enumStrings<cmkr::parser::TargetType>::data[] = {"executable", "library", "shared", "static", "interface", "custom"};
namespace cmkr {
namespace parser {
using TomlBasicValue = toml::basic_value<toml::preserve_comments, tsl::ordered_map, std::vector>;
const char *targetTypeNames[target_last] = {"executable", "library", "shared", "static", "interface", "custom", "object", "template"};
template <typename EnumType>
static EnumType to_enum(const std::string &str, const std::string &help_name) {
EnumType value;
try {
std::stringstream ss(str);
ss >> enumFromString(value);
} catch (std::invalid_argument &) {
std::string supported;
for (const auto &s : enumStrings<EnumType>::data) {
if (!supported.empty()) {
supported += ", ";
}
supported += s;
}
throw std::runtime_error("Unknown " + help_name + "'" + str + "'! Supported types are: " + supported);
}
return value;
}
template <typename T>
static void get_optional(const TomlBasicValue &v, const toml::key &ky, T &destination);
template <typename T>
static void get_optional(const TomlBasicValue &v, const toml::key &ky, Condition<T> &destination) {
// TODO: this algorithm in O(n) over the amount of keys, kinda bad
const auto &table = v.as_table();
for (const auto &itr : table) {
const auto &key = itr.first;
const auto &value = itr.second;
if (value.is_table()) {
if (value.contains(ky)) {
destination[key] = toml::find<T>(value, ky);
}
} else if (key == ky) {
destination[""] = toml::find<T>(v, ky);
static TargetType parse_targetType(const std::string &name) {
for (int i = 0; i < target_last; i++) {
if (name == targetTypeNames[i]) {
return static_cast<TargetType>(i);
}
}
return target_last;
}
template <typename T>
static void get_optional(const TomlBasicValue &v, const toml::key &ky, T &destination) {
// TODO: this currently doesn't allow you to get an optional map<string, X>
if (v.contains(ky)) {
destination = toml::find<T>(v, ky);
using TomlBasicValue = toml::basic_value<toml::discard_comments, tsl::ordered_map, std::vector>;
static std::string format_key_error(const std::string &error, const toml::key &ky, const TomlBasicValue &value) {
auto loc = value.location();
auto line_number_str = std::to_string(loc.line());
auto line_width = line_number_str.length();
auto line_str = loc.line_str();
std::ostringstream oss;
oss << "[error] " << error << '\n';
oss << " --> " << loc.file_name() << ':' << loc.line() << '\n';
oss << std::string(line_width + 2, ' ') << "|\n";
oss << ' ' << line_number_str << " | " << line_str << '\n';
oss << std::string(line_width + 2, ' ') << '|';
auto key_start = line_str.substr(0, loc.column() - 1).rfind(ky);
if (key_start == std::string::npos) {
key_start = line_str.find(ky);
}
if (key_start != std::string::npos) {
oss << std::string(key_start + 1, ' ') << std::string(ky.length(), '~');
}
return oss.str();
}
class TomlChecker {
const TomlBasicValue &m_v;
tsl::ordered_map<toml::key, bool> m_visited;
tsl::ordered_map<toml::key, bool> m_conditionVisited;
public:
TomlChecker(const TomlBasicValue &v, const toml::key &ky) : m_v(toml::find(v, ky)) {}
TomlChecker(const TomlBasicValue &v) : m_v(v) {}
TomlChecker(const TomlChecker &) = delete;
TomlChecker(TomlChecker &&) = delete;
template <typename T>
void optional(const toml::key &ky, Condition<T> &destination) {
// TODO: this algorithm in O(n) over the amount of keys, kinda bad
const auto &table = m_v.as_table();
for (const auto &itr : table) {
const auto &key = itr.first;
const auto &value = itr.second;
if (value.is_table()) {
if (value.contains(ky)) {
destination[key] = toml::find<T>(value, ky);
}
} else if (key == ky) {
destination[""] = toml::find<T>(m_v, ky);
}
}
// Handle visiting logic
for (const auto &itr : destination) {
if (!itr.first.empty()) {
m_conditionVisited.emplace(itr.first, true);
}
}
visit(ky);
}
template <typename T>
void optional(const toml::key &ky, T &destination) {
// TODO: this currently doesn't allow you to get an optional map<string, X>
if (m_v.contains(ky)) {
destination = toml::find<T>(m_v, ky);
}
visit(ky);
}
template <typename T>
void required(const toml::key &ky, T &destination) {
destination = toml::find<T>(m_v, ky);
visit(ky);
}
bool contains(const toml::key &ky) {
visit(ky);
return m_v.contains(ky);
}
const TomlBasicValue &find(const toml::key &ky) {
visit(ky);
return toml::find(m_v, ky);
}
void visit(const toml::key &ky) { m_visited.emplace(ky, true); }
void check(const tsl::ordered_map<std::string, std::string> &conditions) const {
for (const auto &itr : m_v.as_table()) {
const auto &ky = itr.first;
if (m_conditionVisited.contains(ky)) {
if (!conditions.contains(ky)) {
throw std::runtime_error(format_key_error("Unknown condition '" + ky + "'", ky, itr.second));
}
for (const auto &jtr : itr.second.as_table()) {
if (!m_visited.contains(jtr.first)) {
throw std::runtime_error(format_key_error("Unknown key '" + jtr.first + "'", jtr.first, jtr.second));
}
}
} else if (!m_visited.contains(ky)) {
if (itr.second.is_table()) {
for (const auto &jtr : itr.second.as_table()) {
if (!m_visited.contains(jtr.first)) {
throw std::runtime_error(format_key_error("Unknown key '" + jtr.first + "'", jtr.first, jtr.second));
}
}
}
throw std::runtime_error(format_key_error("Unknown key '" + ky + "'", ky, itr.second));
} else if (ky == "condition") {
std::string condition = itr.second.as_string();
if (!conditions.contains(condition)) {
throw std::runtime_error(format_key_error("Unknown condition '" + condition + "'", condition, itr.second));
}
}
}
}
};
class TomlCheckerRoot {
std::deque<TomlChecker> m_checkers;
bool m_checked = false;
public:
TomlCheckerRoot() = default;
TomlCheckerRoot(const TomlCheckerRoot &) = delete;
TomlCheckerRoot(TomlCheckerRoot &&) = delete;
TomlChecker &create(const TomlBasicValue &v) {
m_checkers.emplace_back(v);
return m_checkers.back();
}
TomlChecker &create(const TomlBasicValue &v, const toml::key &ky) {
m_checkers.emplace_back(v, ky);
return m_checkers.back();
}
void check(const tsl::ordered_map<std::string, std::string> &conditions) {
for (const auto &checker : m_checkers) {
checker.check(conditions);
}
}
};
Project::Project(const Project *parent, const std::string &path, bool build) {
const auto toml_path = fs::path(path) / "cmake.toml";
if (!fs::exists(toml_path)) {
throw std::runtime_error("No cmake.toml was found!");
}
const auto toml = toml::parse<toml::preserve_comments, tsl::ordered_map, std::vector>(toml_path.string());
const auto toml = toml::parse<toml::discard_comments, tsl::ordered_map, std::vector>(toml_path.string());
TomlCheckerRoot checker;
if (toml.contains("cmake")) {
auto &cmake = checker.create(toml, "cmake");
cmake.required("version", cmake_version);
if (cmake.contains("bin-dir")) {
throw std::runtime_error("bin-dir has been renamed to build-dir");
}
cmake.optional("build-dir", build_dir);
cmake.optional("generator", generator);
cmake.optional("config", config);
cmake.optional("arguments", gen_args);
cmake.optional("allow-in-tree", allow_in_tree);
if (cmake.contains("cmkr-include")) {
const auto &cmkr_include_kv = cmake.find("cmkr-include");
if (cmkr_include_kv.is_string()) {
cmkr_include = cmkr_include_kv.as_string();
} else {
// Allow disabling this feature with cmkr-include = false
cmkr_include = "";
}
}
cmake.optional("cpp-flags", cppflags);
cmake.optional("c-flags", cflags);
cmake.optional("link-flags", linkflags);
}
// Skip the rest of the parsing when building
if (build) {
if (toml.contains("cmake")) {
const auto &cmake = toml::find(toml, "cmake");
checker.check(conditions);
return;
}
if (cmake.contains("bin-dir")) {
throw std::runtime_error("bin-dir has been renamed to build-dir");
}
get_optional(cmake, "build-dir", build_dir);
get_optional(cmake, "generator", generator);
get_optional(cmake, "config", config);
get_optional(cmake, "arguments", gen_args);
get_optional(cmake, "allow-in-tree", allow_in_tree);
}
// Reasonable default conditions (you can override these if you desire)
if (parent == nullptr) {
conditions["windows"] = R"cmake(WIN32)cmake";
conditions["macos"] = R"cmake(CMAKE_SYSTEM_NAME MATCHES "Darwin")cmake";
conditions["unix"] = R"cmake(UNIX)cmake";
conditions["bsd"] = R"cmake(CMAKE_SYSTEM_NAME MATCHES "BSD")cmake";
conditions["linux"] = conditions["lunix"] = R"cmake(CMAKE_SYSTEM_NAME MATCHES "Linux")cmake";
conditions["gcc"] = R"cmake(CMAKE_CXX_COMPILER_ID STREQUAL "GNU" OR CMAKE_C_COMPILER_ID STREQUAL "GNU")cmake";
conditions["clang"] = R"cmake(CMAKE_CXX_COMPILER_ID MATCHES "Clang" OR CMAKE_C_COMPILER_ID MATCHES "Clang")cmake";
conditions["msvc"] = R"cmake(MSVC)cmake";
conditions["root"] = R"cmake(CMKR_ROOT_PROJECT)cmake";
conditions["x64"] = R"cmake(CMAKE_SIZEOF_VOID_P EQUAL 8)cmake";
conditions["x32"] = R"cmake(CMAKE_SIZEOF_VOID_P EQUAL 4)cmake";
} else {
if (toml.contains("cmake")) {
const auto &cmake = toml::find(toml, "cmake");
cmake_version = toml::find(cmake, "version").as_string();
if (cmake.contains("cmkr-include")) {
const auto &cmkr_include_kv = toml::find(cmake, "cmkr-include");
if (cmkr_include_kv.is_string()) {
cmkr_include = cmkr_include_kv.as_string();
} else {
// Allow disabling this feature with cmkr-include = false
cmkr_include = "";
}
}
get_optional(cmake, "cpp-flags", cppflags);
get_optional(cmake, "c-flags", cflags);
get_optional(cmake, "link-flags", linkflags);
}
conditions = parent->conditions;
templates = parent->templates;
}
if (toml.contains("project")) {
const auto &project = toml::find(toml, "project");
project_name = toml::find(project, "name").as_string();
get_optional(project, "version", project_version);
get_optional(project, "description", project_description);
get_optional(project, "languages", project_languages);
get_optional(project, "cmake-before", cmake_before);
get_optional(project, "cmake-after", cmake_after);
get_optional(project, "include-before", include_before);
get_optional(project, "include-after", include_after);
get_optional(project, "subdirs", project_subdirs);
}
if (toml.contains("subdir")) {
const auto &subs = toml::find(toml, "subdir").as_table();
for (const auto &sub : subs) {
Subdir subdir;
subdir.name = sub.first;
get_optional(sub.second, "condition", subdir.condition);
get_optional(sub.second, "cmake-before", subdir.cmake_before);
get_optional(sub.second, "cmake-after", subdir.cmake_after);
get_optional(sub.second, "include-before", subdir.include_before);
get_optional(sub.second, "include-after", subdir.include_after);
subdirs.push_back(subdir);
}
}
if (toml.contains("settings")) {
using set_map = std::map<std::string, TomlBasicValue>;
const auto &sets = toml::find<set_map>(toml, "settings");
for (const auto &set : sets) {
Setting s;
s.name = set.first;
if (set.second.is_boolean()) {
s.val = set.second.as_boolean();
} else if (set.second.is_string()) {
s.val = set.second.as_string();
} else {
get_optional(set.second, "comment", s.comment);
if (set.second.contains("value")) {
auto v = toml::find(set.second, "value");
if (v.is_boolean()) {
s.val = v.as_boolean();
} else {
s.val = v.as_string();
}
}
get_optional(set.second, "cache", s.cache);
get_optional(set.second, "force", s.force);
}
settings.push_back(s);
}
}
if (toml.contains("options")) {
using opts_map = tsl::ordered_map<std::string, TomlBasicValue>;
const auto &opts = toml::find<opts_map>(toml, "options");
for (const auto &opt : opts) {
Option o;
o.name = opt.first;
if (opt.second.is_boolean()) {
o.val = opt.second.as_boolean();
} else {
get_optional(opt.second, "comment", o.comment);
get_optional(opt.second, "value", o.val);
}
options.push_back(o);
}
}
if (toml.contains("find-package")) {
using pkg_map = tsl::ordered_map<std::string, TomlBasicValue>;
const auto &pkgs = toml::find<pkg_map>(toml, "find-package");
for (const auto &pkg : pkgs) {
Package p;
p.name = pkg.first;
if (pkg.second.is_string()) {
p.version = pkg.second.as_string();
} else {
get_optional(pkg.second, "version", p.version);
get_optional(pkg.second, "required", p.required);
get_optional(pkg.second, "config", p.config);
get_optional(pkg.second, "components", p.components);
}
packages.push_back(p);
}
}
// TODO: refactor to std::vector<Content> instead of this hacky thing?
if (toml.contains("fetch-content")) {
contents = toml::find<decltype(contents)>(toml, "fetch-content");
}
if (toml.contains("bin")) {
throw std::runtime_error("[[bin]] has been renamed to [[target]]");
}
if (toml.contains("target")) {
const auto &ts = toml::find(toml, "target").as_table();
for (const auto &itr : ts) {
const auto &t = itr.second;
Target target;
target.name = itr.first;
target.type = to_enum<TargetType>(toml::find(t, "type").as_string(), "target type");
get_optional(t, "headers", target.headers);
get_optional(t, "sources", target.sources);
get_optional(t, "compile-definitions", target.compile_definitions);
get_optional(t, "private-compile-definitions", target.private_compile_definitions);
get_optional(t, "compile-features", target.compile_features);
get_optional(t, "private-compile-features", target.private_compile_features);
get_optional(t, "compile-options", target.compile_options);
get_optional(t, "private-compile-options", target.private_compile_options);
get_optional(t, "include-directories", target.include_directories);
get_optional(t, "private-include-directories", target.private_include_directories);
get_optional(t, "link-directories", target.link_directories);
get_optional(t, "private-link-directories", target.private_link_directories);
get_optional(t, "link-libraries", target.link_libraries);
get_optional(t, "private-link-libraries", target.private_link_libraries);
get_optional(t, "link-options", target.link_options);
get_optional(t, "private-link-options", target.private_link_options);
get_optional(t, "precompile-headers", target.precompile_headers);
get_optional(t, "private-precompile-headers", target.private_precompile_headers);
if (!target.headers.empty()) {
auto &sources = target.sources.nth(0).value();
const auto &headers = target.headers.nth(0)->second;
sources.insert(sources.end(), headers.begin(), headers.end());
}
if (t.contains("condition")) {
target.condition = toml::find(t, "condition").as_string();
}
if (t.contains("alias")) {
target.alias = toml::find(t, "alias").as_string();
}
if (t.contains("properties")) {
auto store_property = [&target](const toml::key &k, const TomlBasicValue &v, const std::string &condition) {
if (v.is_array()) {
std::string property_list;
for (const auto &list_val : v.as_array()) {
if (!property_list.empty()) {
property_list += ';';
}
property_list += list_val.as_string();
}
target.properties[condition][k] = property_list;
} else if (v.is_boolean()) {
target.properties[condition][k] = v.as_boolean() ? "ON" : "OFF";
} else {
target.properties[condition][k] = v.as_string();
}
};
const auto &props = toml::find(t, "properties").as_table();
for (const auto &propKv : props) {
const auto &k = propKv.first;
const auto &v = propKv.second;
if (v.is_table()) {
for (const auto &condKv : v.as_table()) {
store_property(condKv.first, condKv.second, k);
}
} else {
store_property(k, v, "");
}
}
}
get_optional(t, "cmake-before", target.cmake_before);
get_optional(t, "cmake-after", target.cmake_after);
get_optional(t, "include-before", target.include_before);
get_optional(t, "include-after", target.include_after);
targets.push_back(target);
}
}
if (toml.contains("test")) {
const auto &ts = toml::find(toml, "test").as_array();
for (const auto &t : ts) {
Test test;
test.name = toml::find(t, "name").as_string();
get_optional(t, "configurations", test.configurations);
get_optional(t, "working-directory", test.working_directory);
test.command = toml::find(t, "command").as_string();
get_optional(t, "arguments", test.arguments);
tests.push_back(test);
}
}
if (toml.contains("install")) {
const auto &ts = toml::find(toml, "install").as_array();
for (const auto &t : ts) {
Install inst;
get_optional(t, "targets", inst.targets);
get_optional(t, "files", inst.files);
get_optional(t, "dirs", inst.dirs);
get_optional(t, "configs", inst.configs);
inst.destination = toml::find(t, "destination").as_string();
installs.push_back(inst);
}
}
if (toml.contains("vcpkg")) {
const auto &v = toml::find(toml, "vcpkg");
get_optional(v, "url", vcpkg.url);
get_optional(v, "version", vcpkg.version);
vcpkg.packages = toml::find<decltype(vcpkg.packages)>(v, "packages");
}
// Reasonable default conditions (you can override these if you desire)
if (parent == nullptr) {
conditions["windows"] = R"cmake(WIN32)cmake";
conditions["macos"] = R"cmake(CMAKE_SYSTEM_NAME MATCHES "Darwin")cmake";
conditions["unix"] = R"cmake(UNIX)cmake";
conditions["bsd"] = R"cmake(CMAKE_SYSTEM_NAME MATCHES "BSD")cmake";
conditions["linux"] = conditions["lunix"] = R"cmake(CMAKE_SYSTEM_NAME MATCHES "Linux")cmake";
conditions["gcc"] = R"cmake(CMAKE_CXX_COMPILER_ID STREQUAL "GNU" OR CMAKE_C_COMPILER_ID STREQUAL "GNU")cmake";
conditions["clang"] = R"cmake(CMAKE_CXX_COMPILER_ID MATCHES "Clang" OR CMAKE_C_COMPILER_ID MATCHES "Clang")cmake";
conditions["msvc"] = R"cmake(MSVC)cmake";
} else {
conditions = parent->conditions;
}
if (toml.contains("conditions")) {
auto conds = toml::find<decltype(conditions)>(toml, "conditions");
for (const auto &cond : conds) {
conditions[cond.first] = cond.second;
}
if (toml.contains("conditions")) {
auto conds = toml::find<decltype(conditions)>(toml, "conditions");
for (const auto &cond : conds) {
conditions[cond.first] = cond.second;
}
}
if (toml.contains("project")) {
auto &project = checker.create(toml, "project");
project.required("name", project_name);
project.optional("version", project_version);
project.optional("description", project_description);
project.optional("languages", project_languages);
project.optional("cmake-before", cmake_before);
project.optional("cmake-after", cmake_after);
project.optional("include-before", include_before);
project.optional("include-after", include_after);
project.optional("subdirs", project_subdirs);
}
if (toml.contains("subdir")) {
const auto &subs = toml::find(toml, "subdir").as_table();
for (const auto &itr : subs) {
Subdir subdir;
subdir.name = itr.first;
auto &sub = checker.create(itr.second);
sub.optional("condition", subdir.condition);
sub.optional("cmake-before", subdir.cmake_before);
sub.optional("cmake-after", subdir.cmake_after);
sub.optional("include-before", subdir.include_before);
sub.optional("include-after", subdir.include_after);
subdirs.push_back(subdir);
}
}
if (toml.contains("settings")) {
using set_map = tsl::ordered_map<std::string, TomlBasicValue>;
const auto &sets = toml::find<set_map>(toml, "settings");
for (const auto &itr : sets) {
Setting s;
s.name = itr.first;
const auto &value = itr.second;
if (value.is_boolean()) {
s.val = value.as_boolean();
} else if (value.is_string()) {
s.val = value.as_string();
} else {
auto &setting = checker.create(value);
setting.optional("comment", s.comment);
if (setting.contains("value")) {
const auto &v = setting.find("value");
if (v.is_boolean()) {
s.val = v.as_boolean();
} else {
s.val = v.as_string();
}
}
setting.optional("cache", s.cache);
setting.optional("force", s.force);
}
settings.push_back(s);
}
}
if (toml.contains("options")) {
using opts_map = tsl::ordered_map<std::string, TomlBasicValue>;
const auto &opts = toml::find<opts_map>(toml, "options");
for (const auto &itr : opts) {
Option o;
o.name = itr.first;
const auto &value = itr.second;
if (value.is_boolean()) {
o.val = value.as_boolean();
} else {
auto &option = checker.create(value);
option.optional("comment", o.comment);
option.optional("value", o.val);
}
options.push_back(o);
}
}
if (toml.contains("find-package")) {
using pkg_map = tsl::ordered_map<std::string, TomlBasicValue>;
const auto &pkgs = toml::find<pkg_map>(toml, "find-package");
for (const auto &itr : pkgs) {
Package p;
p.name = itr.first;
const auto &value = itr.second;
if (itr.second.is_string()) {
p.version = itr.second.as_string();
} else {
auto &pkg = checker.create(value);
pkg.optional("condition", p.condition);
pkg.optional("version", p.version);
pkg.optional("required", p.required);
pkg.optional("config", p.config);
pkg.optional("components", p.components);
}
packages.push_back(p);
}
}
// TODO: perform checking here
if (toml.contains("fetch-content")) {
const auto &fc = toml::find(toml, "fetch-content").as_table();
for (const auto &itr : fc) {
Content content;
content.name = itr.first;
for (const auto &argItr : itr.second.as_table()) {
auto key = argItr.first;
if (key == "condition") {
content.condition = argItr.second.as_string();
continue;
}
if (key == "git") {
key = "GIT_REPOSITORY";
} else if (key == "tag") {
key = "GIT_TAG";
} else if (key == "svn") {
key = "SVN_REPOSITORY";
} else if (key == "rev") {
key = "SVN_REVISION";
} else if (key == "url") {
key = "URL";
} else if (key == "hash") {
key = "URL_HASH";
} else {
// don't change arg
}
content.arguments.emplace(key, argItr.second.as_string());
}
contents.emplace_back(std::move(content));
}
}
if (toml.contains("bin")) {
throw std::runtime_error("[[bin]] has been renamed to [[target]]");
}
auto parse_target = [&](const std::string &name, TomlChecker &t, bool isTemplate) {
Target target;
target.name = name;
t.required("type", target.type_name);
target.type = parse_targetType(target.type_name);
// Users cannot set this target type
if (target.type == target_template) {
target.type = target_last;
}
if (!isTemplate && target.type == target_last) {
for (const auto &tmplate : templates) {
if (target.type_name == tmplate.outline.name) {
target.type = target_template;
break;
}
}
}
if (target.type == target_last) {
std::string error = "Unknown target type '" + target.type_name + "'\n";
error += "Available types:\n";
for (std::string type_name : targetTypeNames) {
if (type_name != "template") {
error += " - " + type_name + "\n";
}
}
if (!isTemplate && !templates.empty()) {
error += "Available templates:\n";
for (const auto &tmplate : templates) {
error += " - " + tmplate.outline.name + "\n";
}
}
error.pop_back(); // Remove last newline
throw std::runtime_error(format_key_error(error, target.type_name, t.find("type")));
}
t.optional("headers", target.headers);
t.optional("sources", target.sources);
t.optional("compile-definitions", target.compile_definitions);
t.optional("private-compile-definitions", target.private_compile_definitions);
t.optional("compile-features", target.compile_features);
t.optional("private-compile-features", target.private_compile_features);
t.optional("compile-options", target.compile_options);
t.optional("private-compile-options", target.private_compile_options);
t.optional("include-directories", target.include_directories);
t.optional("private-include-directories", target.private_include_directories);
t.optional("link-directories", target.link_directories);
t.optional("private-link-directories", target.private_link_directories);
t.optional("link-libraries", target.link_libraries);
t.optional("private-link-libraries", target.private_link_libraries);
t.optional("link-options", target.link_options);
t.optional("private-link-options", target.private_link_options);
t.optional("precompile-headers", target.precompile_headers);
t.optional("private-precompile-headers", target.private_precompile_headers);
if (!target.headers.empty()) {
auto &sources = target.sources.nth(0).value();
const auto &headers = target.headers.nth(0)->second;
sources.insert(sources.end(), headers.begin(), headers.end());
}
t.optional("condition", target.condition);
t.optional("alias", target.alias);
if (t.contains("properties")) {
auto store_property = [&target](const toml::key &k, const TomlBasicValue &v, const std::string &condition) {
if (v.is_array()) {
std::string property_list;
for (const auto &list_val : v.as_array()) {
if (!property_list.empty()) {
property_list += ';';
}
property_list += list_val.as_string();
}
target.properties[condition][k] = property_list;
} else if (v.is_boolean()) {
target.properties[condition][k] = v.as_boolean() ? "ON" : "OFF";
} else {
target.properties[condition][k] = v.as_string();
}
};
const auto &props = t.find("properties").as_table();
for (const auto &propKv : props) {
const auto &k = propKv.first;
const auto &v = propKv.second;
if (v.is_table()) {
for (const auto &condKv : v.as_table()) {
store_property(condKv.first, condKv.second, k);
}
} else {
store_property(k, v, "");
}
}
}
t.optional("cmake-before", target.cmake_before);
t.optional("cmake-after", target.cmake_after);
t.optional("include-before", target.include_before);
t.optional("include-after", target.include_after);
return target;
};
if (toml.contains("template")) {
const auto &ts = toml::find(toml, "template").as_table();
for (const auto &itr : ts) {
auto &t = checker.create(itr.second);
const auto &name = itr.first;
for (const auto &type_name : targetTypeNames) {
if (name == type_name) {
throw std::runtime_error(format_key_error("Reserved template name '" + name + "'", name, itr.second));
}
}
for (const auto &tmplate : templates) {
if (name == tmplate.outline.name) {
throw std::runtime_error(format_key_error("Template '" + name + "' already defined", name, itr.second));
}
}
Template tmplate;
tmplate.outline = parse_target(name, t, true);
t.optional("add-function", tmplate.add_function);
t.optional("pass-sources-to-add-function", tmplate.pass_sources_to_add_function);
templates.push_back(tmplate);
}
}
if (toml.contains("target")) {
const auto &ts = toml::find(toml, "target").as_table();
for (const auto &itr : ts) {
auto &t = checker.create(itr.second);
targets.push_back(parse_target(itr.first, t, false));
}
}
if (toml.contains("test")) {
const auto &ts = toml::find(toml, "test").as_array();
for (const auto &value : ts) {
auto &t = checker.create(value);
Test test;
t.required("name", test.name);
t.optional("condition", test.condition);
t.optional("configurations", test.configurations);
t.optional("working-directory", test.working_directory);
t.required("command", test.command);
t.optional("arguments", test.arguments);
tests.push_back(test);
}
}
if (toml.contains("install")) {
const auto &is = toml::find(toml, "install").as_array();
for (const auto &value : is) {
auto &i = checker.create(value);
Install inst;
i.optional("condition", inst.condition);
i.optional("targets", inst.targets);
i.optional("files", inst.files);
i.optional("dirs", inst.dirs);
i.optional("configs", inst.configs);
i.required("destination", inst.destination);
i.optional("component", inst.component);
installs.push_back(inst);
}
}
if (toml.contains("vcpkg")) {
auto &v = checker.create(toml, "vcpkg");
v.optional("url", vcpkg.url);
v.optional("version", vcpkg.version);
for (const auto &p : v.find("packages").as_array()) {
Vcpkg::Package package;
const auto &package_str = p.as_string().str;
const auto open_bracket = package_str.find('[');
const auto close_bracket = package_str.find(']', open_bracket);
if (open_bracket == std::string::npos && close_bracket == std::string::npos) {
package.name = package_str;
} else if (close_bracket != std::string::npos) {
package.name = package_str.substr(0, open_bracket);
const auto features = package_str.substr(open_bracket + 1, close_bracket - open_bracket - 1);
std::istringstream feature_stream{features};
std::string feature;
while (std::getline(feature_stream, feature, ',')) {
package.features.emplace_back(feature);
}
} else {
throw std::runtime_error("Invalid vcpkg package '" + package_str + "'");
}
vcpkg.packages.emplace_back(std::move(package));
}
}
checker.check(conditions);
}
bool is_root_path(const std::string &path) {
@@ -348,7 +590,7 @@ bool is_root_path(const std::string &path) {
if (!fs::exists(toml_path)) {
return false;
}
const auto toml = toml::parse<toml::preserve_comments, tsl::ordered_map, std::vector>(toml_path.string());
const auto toml = toml::parse<toml::discard_comments, tsl::ordered_map, std::vector>(toml_path.string());
return toml.contains("project");
}
+10
View File
@@ -78,3 +78,13 @@ add_test(
build
)
add_test(
NAME
templates
WORKING_DIRECTORY
"${CMAKE_CURRENT_LIST_DIR}/templates"
COMMAND
$<TARGET_FILE:cmkr>
build
)
+13 -7
View File
@@ -1,41 +1,47 @@
[[test]]
name = "basic"
command = "$<TARGET_FILE:cmkr>"
working-directory = "basic"
command = "$<TARGET_FILE:cmkr>"
arguments = ["build"]
[[test]]
name = "interface"
command = "$<TARGET_FILE:cmkr>"
working-directory = "interface"
command = "$<TARGET_FILE:cmkr>"
arguments = ["build"]
[[test]]
name = "fetch-content"
command = "$<TARGET_FILE:cmkr>"
working-directory = "fetch-content"
command = "$<TARGET_FILE:cmkr>"
arguments = ["build"]
[[test]]
name = "conditions"
command = "$<TARGET_FILE:cmkr>"
working-directory = "conditions"
command = "$<TARGET_FILE:cmkr>"
arguments = ["build"]
[[test]]
name = "vcpkg"
command = "$<TARGET_FILE:cmkr>"
working-directory = "vcpkg"
command = "$<TARGET_FILE:cmkr>"
arguments = ["build"]
[[test]]
name = "cxx-standard"
command = "$<TARGET_FILE:cmkr>"
working-directory = "cxx-standard"
command = "$<TARGET_FILE:cmkr>"
arguments = ["build"]
[[test]]
name = "globbing"
command = "$<TARGET_FILE:cmkr>"
working-directory = "globbing"
command = "$<TARGET_FILE:cmkr>"
arguments = ["build"]
[[test]]
name = "templates"
working-directory = "templates"
command = "$<TARGET_FILE:cmkr>"
arguments = ["build"]
+1
View File
@@ -5,6 +5,7 @@ description = "Header-only library"
[target.mylib]
type = "interface"
include-directories = ["include"]
compile-features = ["cxx_std_11"]
[target.example]
type = "executable"
+25
View File
@@ -0,0 +1,25 @@
# To avoid repeating yourself in targets you can create your own target type (template). All properties of the template are inherited when used as a target type.
[project]
name = "templates"
description = "Target templates"
[template.app]
type = "executable"
sources = ["src/templates.cpp"]
compile-definitions = ["IS_APP"]
# Unlike interface targets you can also inherit properties
[template.app.properties]
CXX_STANDARD = "11"
CXX_STANDARD_REQUIRED = true
[target.app-a]
type = "app"
compile-definitions = ["APP_A"]
[target.app-b]
type = "app"
compile-definitions = ["APP_B"]
# **Note**: In most cases you probably want to use an [interface](/examples/interface) target instead.
+13
View File
@@ -0,0 +1,13 @@
#include <cstdio>
#if !defined(IS_APP)
#error Something went wrong with the template
#endif // IS_APP
int main() {
#if defined(APP_A)
puts("Hello from app A!");
#elif defined(APP_B)
puts("Hello from app B!");
#endif
}
+2 -1
View File
@@ -18,4 +18,5 @@ type = "executable"
sources = ["src/main.cpp"]
link-libraries = ["fmt::fmt"]
# The bootstrapping of vcpkg is fully automated and no user interaction is necessary. You can disable vcpkg by setting `CMKR_DISABLE_VCPKG=ON`.
# The bootstrapping of vcpkg is fully automated and no user interaction is necessary. You can disable vcpkg by setting `CMKR_DISABLE_VCPKG=ON`.
# To specify package features you can use the following syntax: `imgui[docking-experimental,freetype,sdl2-binding,opengl3-binding]`.
+11 -11
View File
@@ -1,11 +1,11 @@
{
"$cmkr": "This file is automatically generated from cmake.toml - DO NOT EDIT",
"$cmkr-url": "https://github.com/build-cpp/cmkr",
"$schema": "https://raw.githubusercontent.com/microsoft/vcpkg/master/scripts/vcpkg.schema.json",
"dependencies": [
"fmt"
],
"description": "Dependencies from vcpkg",
"name": "vcpkg",
"version-string": ""
}
{
"$cmkr": "This file is automatically generated from cmake.toml - DO NOT EDIT",
"$cmkr-url": "https://github.com/build-cpp/cmkr",
"$schema": "https://raw.githubusercontent.com/microsoft/vcpkg/master/scripts/vcpkg.schema.json",
"dependencies": [
"fmt"
],
"description": "Dependencies from vcpkg",
"name": "vcpkg",
"version-string": ""
}