cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
127 lines
5.9 KiB
CMake
127 lines
5.9 KiB
CMake
# Macros and functions related to detecting details of the Python environment.
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# Finds and configures python packages needed to build MLIR Python bindings.
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macro(mlir_configure_python_dev_packages)
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if(NOT MLIR_DISABLE_CONFIGURE_PYTHON_DEV_PACKAGES)
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if(MLIR_DETECT_PYTHON_ENV_PRIME_SEARCH)
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# Prime the search for python to see if there is a full development
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# package. This seems to work around cmake bugs searching only for
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# Development.Module in some environments. However, in other environments
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# it may interfere with the subsequent search for Development.Module.
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find_package(Python3 ${LLVM_MINIMUM_PYTHON_VERSION}
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COMPONENTS Interpreter Development)
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endif()
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# After CMake 3.18, we are able to limit the scope of the search to just
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# Development.Module. Searching for Development will fail in situations where
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# the Python libraries are not available. When possible, limit to just
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# Development.Module.
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# See https://pybind11.readthedocs.io/en/stable/compiling.html#findpython-mode
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set(_python_development_component Development.Module)
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find_package(Python3 ${LLVM_MINIMUM_PYTHON_VERSION}
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COMPONENTS Interpreter ${_python_development_component} REQUIRED)
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# We look for both Python3 and Python, the search algorithm should be
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# consistent, otherwise disastrous result is almost guaranteed.
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# Warn if the policies for treating virtual environment are not defined
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# consistently.
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# For more details check issue #126162.
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if(((DEFINED Python_FIND_VIRTUALENV) AND (NOT DEFINED Python3_FIND_VIRTUALENV)) OR
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((NOT DEFINED Python_FIND_VIRTUALENV) AND (DEFINED Python3_FIND_VIRTUALENV)))
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message(WARNING "Only one of Python3_FIND_VIRTUALENV and Python_FIND_VIRTUALENV variables is defined. "
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"Make sure that both variables are defined and have the same value.")
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elseif((DEFINED Python_FIND_VIRTUALENV) AND (DEFINED Python3_FIND_VIRTUALENV) AND
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(NOT Python_FIND_VIRTUALENV STREQUAL Python3_FIND_VIRTUALENV))
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message(WARNING "Python3_FIND_VIRTUALENV and Python_FIND_VIRTUALENV are defined differently. "
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"Make sure that the variables have the same values.")
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endif()
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# It's a little silly to detect Python a second time, but nanobind's cmake
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# code looks for Python_ not Python3_.
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find_package(Python ${LLVM_MINIMUM_PYTHON_VERSION}
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COMPONENTS Interpreter ${_python_development_component} REQUIRED)
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unset(_python_development_component)
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message(STATUS "Found python include dirs: ${Python3_INCLUDE_DIRS}")
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message(STATUS "Found python libraries: ${Python3_LIBRARIES}")
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message(STATUS "Found numpy v${Python3_NumPy_VERSION}: ${Python3_NumPy_INCLUDE_DIRS}")
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mlir_detect_pybind11_install()
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find_package(pybind11 2.10 CONFIG REQUIRED)
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message(STATUS "Found pybind11 v${pybind11_VERSION}: ${pybind11_INCLUDE_DIR}")
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message(STATUS "Python prefix = '${PYTHON_MODULE_PREFIX}', "
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"suffix = '${PYTHON_MODULE_SUFFIX}', "
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"extension = '${PYTHON_MODULE_EXTENSION}")
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mlir_detect_nanobind_install()
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find_package(nanobind 2.4 CONFIG REQUIRED)
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message(STATUS "Found nanobind v${nanobind_VERSION}: ${nanobind_INCLUDE_DIR}")
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message(STATUS "Python prefix = '${PYTHON_MODULE_PREFIX}', "
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"suffix = '${PYTHON_MODULE_SUFFIX}', "
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"extension = '${PYTHON_MODULE_EXTENSION}")
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endif()
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endmacro()
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# Detects a pybind11 package installed in the current python environment
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# and sets variables to allow it to be found. This allows pybind11 to be
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# installed via pip, which typically yields a much more recent version than
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# the OS install, which will be available otherwise.
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function(mlir_detect_pybind11_install)
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if(pybind11_DIR)
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message(STATUS "Using explicit pybind11 cmake directory: ${pybind11_DIR} (-Dpybind11_DIR to change)")
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else()
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message(STATUS "Checking for pybind11 in python path...")
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execute_process(
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COMMAND "${Python3_EXECUTABLE}"
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-c "import pybind11;print(pybind11.get_cmake_dir(), end='')"
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WORKING_DIRECTORY ${CMAKE_CURRENT_SOURCE_DIR}
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RESULT_VARIABLE STATUS
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OUTPUT_VARIABLE PACKAGE_DIR
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ERROR_QUIET)
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if(NOT STATUS EQUAL "0")
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message(STATUS "not found (install via 'pip install pybind11' or set pybind11_DIR)")
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return()
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endif()
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message(STATUS "found (${PACKAGE_DIR})")
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set(pybind11_DIR "${PACKAGE_DIR}" PARENT_SCOPE)
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endif()
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endfunction()
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# Detects a nanobind package installed in the current python environment
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# and sets variables to allow it to be found. This allows nanobind to be
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# installed via pip, which typically yields a much more recent version than
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# the OS install, which will be available otherwise.
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function(mlir_detect_nanobind_install)
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if(nanobind_DIR)
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message(STATUS "Using explicit nanobind cmake directory: ${nanobind_DIR} (-Dnanobind_DIR to change)")
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else()
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message(STATUS "Checking for nanobind in python path...")
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execute_process(
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COMMAND "${Python3_EXECUTABLE}"
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-c "import nanobind;print(nanobind.cmake_dir(), end='')"
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WORKING_DIRECTORY ${CMAKE_CURRENT_SOURCE_DIR}
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RESULT_VARIABLE STATUS
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OUTPUT_VARIABLE PACKAGE_DIR
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ERROR_QUIET)
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if(NOT STATUS EQUAL "0")
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message(STATUS "not found (install via 'pip install nanobind' or set nanobind_DIR)")
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return()
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endif()
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message(STATUS "found (${PACKAGE_DIR})")
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set(nanobind_DIR "${PACKAGE_DIR}" PARENT_SCOPE)
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execute_process(
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COMMAND "${Python3_EXECUTABLE}"
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-c "import nanobind;print(nanobind.include_dir(), end='')"
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WORKING_DIRECTORY ${CMAKE_CURRENT_SOURCE_DIR}
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RESULT_VARIABLE STATUS
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OUTPUT_VARIABLE PACKAGE_DIR
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ERROR_QUIET)
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if(NOT STATUS EQUAL "0")
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message(STATUS "not found (install via 'pip install nanobind' or set nanobind_DIR)")
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return()
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endif()
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set(nanobind_INCLUDE_DIR "${PACKAGE_DIR}" PARENT_SCOPE)
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endif()
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endfunction()
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