Merge pull request #2783 from ethereum/cmake-dead-code

CMake: Remove unused scripts
This commit is contained in:
Alex Beregszaszi 2017-08-23 21:10:21 +01:00 committed by GitHub
commit e7832eccf4
10 changed files with 0 additions and 960 deletions

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@ -22,9 +22,6 @@ find_package(Threads)
# Figure out what compiler and system are we using
include(EthCompilerSettings)
# Include helper macros
include(EthExecutableHelper)
# Include utils
include(EthUtils)

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@ -1,161 +0,0 @@
#.rst:
# CMakeParseArguments
# -------------------
#
#
#
# CMAKE_PARSE_ARGUMENTS(<prefix> <options> <one_value_keywords>
# <multi_value_keywords> args...)
#
# CMAKE_PARSE_ARGUMENTS() is intended to be used in macros or functions
# for parsing the arguments given to that macro or function. It
# processes the arguments and defines a set of variables which hold the
# values of the respective options.
#
# The <options> argument contains all options for the respective macro,
# i.e. keywords which can be used when calling the macro without any
# value following, like e.g. the OPTIONAL keyword of the install()
# command.
#
# The <one_value_keywords> argument contains all keywords for this macro
# which are followed by one value, like e.g. DESTINATION keyword of the
# install() command.
#
# The <multi_value_keywords> argument contains all keywords for this
# macro which can be followed by more than one value, like e.g. the
# TARGETS or FILES keywords of the install() command.
#
# When done, CMAKE_PARSE_ARGUMENTS() will have defined for each of the
# keywords listed in <options>, <one_value_keywords> and
# <multi_value_keywords> a variable composed of the given <prefix>
# followed by "_" and the name of the respective keyword. These
# variables will then hold the respective value from the argument list.
# For the <options> keywords this will be TRUE or FALSE.
#
# All remaining arguments are collected in a variable
# <prefix>_UNPARSED_ARGUMENTS, this can be checked afterwards to see
# whether your macro was called with unrecognized parameters.
#
# As an example here a my_install() macro, which takes similar arguments
# as the real install() command:
#
# ::
#
# function(MY_INSTALL)
# set(options OPTIONAL FAST)
# set(oneValueArgs DESTINATION RENAME)
# set(multiValueArgs TARGETS CONFIGURATIONS)
# cmake_parse_arguments(MY_INSTALL "${options}" "${oneValueArgs}"
# "${multiValueArgs}" ${ARGN} )
# ...
#
#
#
# Assume my_install() has been called like this:
#
# ::
#
# my_install(TARGETS foo bar DESTINATION bin OPTIONAL blub)
#
#
#
# After the cmake_parse_arguments() call the macro will have set the
# following variables:
#
# ::
#
# MY_INSTALL_OPTIONAL = TRUE
# MY_INSTALL_FAST = FALSE (this option was not used when calling my_install()
# MY_INSTALL_DESTINATION = "bin"
# MY_INSTALL_RENAME = "" (was not used)
# MY_INSTALL_TARGETS = "foo;bar"
# MY_INSTALL_CONFIGURATIONS = "" (was not used)
# MY_INSTALL_UNPARSED_ARGUMENTS = "blub" (no value expected after "OPTIONAL"
#
#
#
# You can then continue and process these variables.
#
# Keywords terminate lists of values, e.g. if directly after a
# one_value_keyword another recognized keyword follows, this is
# interpreted as the beginning of the new option. E.g.
# my_install(TARGETS foo DESTINATION OPTIONAL) would result in
# MY_INSTALL_DESTINATION set to "OPTIONAL", but MY_INSTALL_DESTINATION
# would be empty and MY_INSTALL_OPTIONAL would be set to TRUE therefor.
#=============================================================================
# Copyright 2010 Alexander Neundorf <neundorf@kde.org>
#
# Distributed under the OSI-approved BSD License (the "License");
# see accompanying file Copyright.txt for details.
#
# This software is distributed WITHOUT ANY WARRANTY; without even the
# implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
# See the License for more information.
#=============================================================================
# (To distribute this file outside of CMake, substitute the full
# License text for the above reference.)
if(__CMAKE_PARSE_ARGUMENTS_INCLUDED)
return()
endif()
set(__CMAKE_PARSE_ARGUMENTS_INCLUDED TRUE)
function(CMAKE_PARSE_ARGUMENTS prefix _optionNames _singleArgNames _multiArgNames)
# first set all result variables to empty/FALSE
foreach(arg_name ${_singleArgNames} ${_multiArgNames})
set(${prefix}_${arg_name})
endforeach()
foreach(option ${_optionNames})
set(${prefix}_${option} FALSE)
endforeach()
set(${prefix}_UNPARSED_ARGUMENTS)
set(insideValues FALSE)
set(currentArgName)
# now iterate over all arguments and fill the result variables
foreach(currentArg ${ARGN})
list(FIND _optionNames "${currentArg}" optionIndex) # ... then this marks the end of the arguments belonging to this keyword
list(FIND _singleArgNames "${currentArg}" singleArgIndex) # ... then this marks the end of the arguments belonging to this keyword
list(FIND _multiArgNames "${currentArg}" multiArgIndex) # ... then this marks the end of the arguments belonging to this keyword
if(${optionIndex} EQUAL -1 AND ${singleArgIndex} EQUAL -1 AND ${multiArgIndex} EQUAL -1)
if(insideValues)
if("${insideValues}" STREQUAL "SINGLE")
set(${prefix}_${currentArgName} ${currentArg})
set(insideValues FALSE)
elseif("${insideValues}" STREQUAL "MULTI")
list(APPEND ${prefix}_${currentArgName} ${currentArg})
endif()
else()
list(APPEND ${prefix}_UNPARSED_ARGUMENTS ${currentArg})
endif()
else()
if(NOT ${optionIndex} EQUAL -1)
set(${prefix}_${currentArg} TRUE)
set(insideValues FALSE)
elseif(NOT ${singleArgIndex} EQUAL -1)
set(currentArgName ${currentArg})
set(${prefix}_${currentArgName})
set(insideValues "SINGLE")
elseif(NOT ${multiArgIndex} EQUAL -1)
set(currentArgName ${currentArg})
set(${prefix}_${currentArgName})
set(insideValues "MULTI")
endif()
endif()
endforeach()
# propagate the result variables to the caller:
foreach(arg_name ${_singleArgNames} ${_multiArgNames} ${_optionNames})
set(${prefix}_${arg_name} ${${prefix}_${arg_name}} PARENT_SCOPE)
endforeach()
set(${prefix}_UNPARSED_ARGUMENTS ${${prefix}_UNPARSED_ARGUMENTS} PARENT_SCOPE)
endfunction()

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@ -55,29 +55,3 @@ if (APPLE)
endif()
include_directories(BEFORE "${PROJECT_BINARY_DIR}/include")
function(eth_use TARGET REQUIRED)
if (NOT TARGET ${TARGET})
message(FATAL_ERROR "eth_use called for non existing target ${TARGET}")
endif()
if (TARGET ${PROJECT_NAME}_BuildInfo.h)
add_dependencies(${TARGET} ${PROJECT_NAME}_BuildInfo.h)
endif()
foreach(MODULE ${ARGN})
string(REPLACE "::" ";" MODULE_PARTS "${MODULE}")
list(GET MODULE_PARTS 0 MODULE_MAIN)
list(LENGTH MODULE_PARTS MODULE_LENGTH)
if (MODULE_LENGTH GREATER 1)
list(GET MODULE_PARTS 1 MODULE_SUB)
endif()
# TODO: check if file exists if not, throws FATAL_ERROR with detailed description
get_target_property(TARGET_APPLIED ${TARGET} TARGET_APPLIED_${MODULE_MAIN}_${MODULE_SUB})
if (NOT TARGET_APPLIED)
include(Use${MODULE_MAIN})
set_target_properties(${TARGET} PROPERTIES TARGET_APPLIED_${MODULE_MAIN}_${MODULE_SUB} TRUE)
eth_apply(${TARGET} ${REQUIRED} ${MODULE_SUB})
endif()
endforeach()
endfunction()

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@ -1,143 +0,0 @@
#
# this function requires the following variables to be specified:
# ETH_VERSION
# PROJECT_NAME
# PROJECT_VERSION
# PROJECT_COPYRIGHT_YEAR
# PROJECT_VENDOR
# PROJECT_DOMAIN_SECOND
# PROJECT_DOMAIN_FIRST
# SRC_LIST
# HEADERS
#
# params:
# ICON
#
macro(eth_add_executable EXECUTABLE)
set (extra_macro_args ${ARGN})
set (options)
set (one_value_args ICON)
set (multi_value_args UI_RESOURCES WIN_RESOURCES)
cmake_parse_arguments (ETH_ADD_EXECUTABLE "${options}" "${one_value_args}" "${multi_value_args}" "${extra_macro_args}")
if (APPLE)
add_executable(${EXECUTABLE} MACOSX_BUNDLE ${SRC_LIST} ${HEADERS} ${ETH_ADD_EXECUTABLE_UI_RESOURCES})
set(PROJECT_VERSION "${ETH_VERSION}")
set(MACOSX_BUNDLE_INFO_STRING "${PROJECT_NAME} ${PROJECT_VERSION}")
set(MACOSX_BUNDLE_BUNDLE_VERSION "${PROJECT_NAME} ${PROJECT_VERSION}")
set(MACOSX_BUNDLE_LONG_VERSION_STRING "${PROJECT_NAME} ${PROJECT_VERSION}")
set(MACOSX_BUNDLE_SHORT_VERSION_STRING "${PROJECT_VERSION}")
set(MACOSX_BUNDLE_COPYRIGHT "${PROJECT_COPYRIGHT_YEAR} ${PROJECT_VENDOR}")
set(MACOSX_BUNDLE_GUI_IDENTIFIER "${PROJECT_DOMAIN_SECOND}.${PROJECT_DOMAIN_FIRST}")
set(MACOSX_BUNDLE_BUNDLE_NAME ${EXECUTABLE})
set(MACOSX_BUNDLE_ICON_FILE ${ETH_ADD_EXECUTABLE_ICON})
set_target_properties(${EXECUTABLE} PROPERTIES MACOSX_BUNDLE_INFO_PLIST "${CMAKE_CURRENT_SOURCE_DIR}/EthereumMacOSXBundleInfo.plist.in")
set_source_files_properties(${EXECUTABLE} PROPERTIES MACOSX_PACKAGE_LOCATION MacOS)
set_source_files_properties("${CMAKE_CURRENT_SOURCE_DIR}/${MACOSX_BUNDLE_ICON_FILE}.icns" PROPERTIES MACOSX_PACKAGE_LOCATION Resources)
else ()
add_executable(${EXECUTABLE} ${ETH_ADD_EXECUTABLE_UI_RESOURCES} ${ETH_ADD_EXECUTABLE_WIN_RESOURCES} ${SRC_LIST} ${HEADERS})
endif()
endmacro()
macro(eth_simple_add_executable EXECUTABLE)
add_executable(${EXECUTABLE} ${SRC_LIST} ${HEADERS})
# Apple does not support statically linked binaries on OS X. That means
# that we can only statically link against our external libraries, but
# we cannot statically link against the C++ runtime libraries and other
# platform libraries (as is possible on Windows and Alpine Linux) to produce
# an entirely transportable binary.
#
# See https://developer.apple.com/library/mac/qa/qa1118/_index.html for more info.
#
# GLIBC also appears not to support static linkage too, which probably means that
# Debian and Ubuntu will only be able to do partially-statically linked
# executables too, just like OS X.
#
# For OS X, at the time of writing, we are left with the following dynamically
# linked dependencies, of which curl and libz might still be fixable:
#
# /usr/lib/libc++.1.dylib
# /usr/lib/libSystem.B.dylib
# /usr/lib/libcurl.4.dylib
# /usr/lib/libz.1.dylib
#
if (STATIC_LINKING AND NOT APPLE)
set(CMAKE_EXE_LINKER_FLAGS "-static ${CMAKE_EXE_LINKER_FLAGS}")
set_target_properties(${EXECUTABLE} PROPERTIES LINK_SEARCH_START_STATIC 1)
set_target_properties(${EXECUTABLE} PROPERTIES LINK_SEARCH_END_STATIC 1)
endif()
endmacro()
macro(eth_copy_dll EXECUTABLE DLL)
# dlls must be unsubstitud list variable (without ${}) in format
# optimized;path_to_dll.dll;debug;path_to_dlld.dll
if(DEFINED MSVC)
list(GET ${DLL} 1 DLL_RELEASE)
list(GET ${DLL} 3 DLL_DEBUG)
add_custom_command(TARGET ${EXECUTABLE}
PRE_BUILD
COMMAND ${CMAKE_COMMAND} ARGS
-DDLL_RELEASE="${DLL_RELEASE}"
-DDLL_DEBUG="${DLL_DEBUG}"
-DCONF="$<CONFIGURATION>"
-DDESTINATION="${CMAKE_CURRENT_BINARY_DIR}/${CMAKE_CFG_INTDIR}"
-P "${ETH_SCRIPTS_DIR}/copydlls.cmake"
)
endif()
endmacro()
macro(eth_copy_dlls EXECUTABLE)
foreach(dll ${ARGN})
eth_copy_dll(${EXECUTABLE} ${dll})
endforeach(dll)
endmacro()
macro(eth_install_executable EXECUTABLE)
if (APPLE)
# TODO - Why is this different than the branch Linux below, which has the RUNTIME keyword too?
install(TARGETS ${EXECUTABLE} DESTINATION bin)
elseif (DEFINED MSVC)
set(COMPONENT ${EXECUTABLE})
install(DIRECTORY "${CMAKE_CURRENT_BINARY_DIR}/Debug/"
DESTINATION .
CONFIGURATIONS Debug
COMPONENT ${COMPONENT}
)
install(DIRECTORY "${CMAKE_CURRENT_BINARY_DIR}/Release/"
DESTINATION .
CONFIGURATIONS Release
COMPONENT ${COMPONENT}
)
install(DIRECTORY "${CMAKE_CURRENT_BINARY_DIR}/RelWithDebInfo/"
DESTINATION .
CONFIGURATIONS RelWithDebInfo
COMPONENT ${COMPONENT}
)
else()
install( TARGETS ${EXECUTABLE} RUNTIME DESTINATION bin)
endif ()
endmacro()
macro (eth_name KEY VALUE)
if (NOT (APPLE OR WIN32))
string(TOLOWER ${VALUE} LVALUE )
set(${KEY} ${LVALUE})
else()
set(${KEY} ${VALUE})
endif()
endmacro()

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@ -22,66 +22,6 @@ macro(replace_if_different SOURCE DST)
endif()
endmacro()
macro(eth_add_test NAME)
# parse arguments here
set(commands)
set(current_command "")
foreach (arg ${ARGN})
if (arg STREQUAL "ARGS")
if (current_command)
list(APPEND commands ${current_command})
endif()
set(current_command "")
else ()
set(current_command "${current_command} ${arg}")
endif()
endforeach(arg)
list(APPEND commands ${current_command})
message(STATUS "test: ${NAME} | ${commands}")
# create tests
set(index 0)
list(LENGTH commands count)
while (index LESS count)
list(GET commands ${index} test_arguments)
set(run_test "--run_test=${NAME}")
add_test(NAME "${NAME}.${index}" COMMAND testeth ${run_test} ${test_arguments})
math(EXPR index "${index} + 1")
endwhile(index LESS count)
# add target to run them
add_custom_target("test.${NAME}"
DEPENDS testeth
WORKING_DIRECTORY ${CMAKE_CURRENT_BINARY_DIR}
COMMAND ${CMAKE_COMMAND} -DETH_TEST_NAME="${NAME}" -DCTEST_COMMAND="${CTEST_COMMAND}" -P "${ETH_SCRIPTS_DIR}/runtest.cmake"
)
endmacro()
# Creates C resources file from files
function(eth_add_resources RESOURCE_FILE OUT_FILE ETH_RES_DIR)
include("${RESOURCE_FILE}")
set(OUTPUT "${ETH_RESOURCE_LOCATION}/${ETH_RESOURCE_NAME}.hpp")
#message(FATAL_ERROR "res:! ${ETH_RESOURCE_LOCATION}")
include_directories("${ETH_RESOURCE_LOCATION}")
set(${OUT_FILE} "${OUTPUT}" PARENT_SCOPE)
set(filenames "${RESOURCE_FILE}")
list(APPEND filenames "${ETH_SCRIPTS_DIR}/resources.cmake")
foreach(resource ${ETH_RESOURCES})
list(APPEND filenames "${${resource}}")
endforeach(resource)
add_custom_command(OUTPUT ${OUTPUT}
COMMAND ${CMAKE_COMMAND} -DETH_RES_FILE="${RESOURCE_FILE}" -DETH_RES_DIR="${ETH_RES_DIR}" -P "${ETH_SCRIPTS_DIR}/resources.cmake"
DEPENDS ${filenames}
)
endfunction()
macro(eth_default_option O DEF)
if (DEFINED ${O})
if (${${O}})
@ -94,21 +34,3 @@ macro(eth_default_option O DEF)
endif()
endmacro()
# In Windows split repositories build we need to be checking whether or not
# Debug/Release or both versions were built for the config phase to run smoothly
macro(eth_check_library_link L)
if (${${L}_LIBRARY} AND ${${L}_LIBRARY} EQUAL "${L}_LIBRARY-NOTFOUND")
unset(${${L}_LIBRARY})
endif()
if (${${L}_LIBRARY_DEBUG} AND ${${L}_LIBRARY_DEBUG} EQUAL "${L}_LIBRARY_DEBUG-NOTFOUND")
unset(${${L}_LIBRARY_DEBUG})
endif()
if (${${L}_LIBRARY} AND ${${L}_LIBRARY_DEBUG})
set(${L}_LIBRARIES optimized ${${L}_LIBRARY} debug ${${L}_LIBRARY_DEBUG})
elseif (${${L}_LIBRARY})
set(${L}_LIBRARIES ${${L}_LIBRARY})
elseif (${${L}_LIBRARY_DEBUG})
set(${L}_LIBRARIES ${${L}_LIBRARY_DEBUG})
endif()
endmacro()

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@ -1,382 +0,0 @@
#.rst:
# FindPackageHandleStandardArgs
# -----------------------------
#
#
#
# FIND_PACKAGE_HANDLE_STANDARD_ARGS(<name> ... )
#
# This function is intended to be used in FindXXX.cmake modules files.
# It handles the REQUIRED, QUIET and version-related arguments to
# find_package(). It also sets the <packagename>_FOUND variable. The
# package is considered found if all variables <var1>... listed contain
# valid results, e.g. valid filepaths.
#
# There are two modes of this function. The first argument in both
# modes is the name of the Find-module where it is called (in original
# casing).
#
# The first simple mode looks like this:
#
# ::
#
# FIND_PACKAGE_HANDLE_STANDARD_ARGS(<name>
# (DEFAULT_MSG|"Custom failure message") <var1>...<varN> )
#
# If the variables <var1> to <varN> are all valid, then
# <UPPERCASED_NAME>_FOUND will be set to TRUE. If DEFAULT_MSG is given
# as second argument, then the function will generate itself useful
# success and error messages. You can also supply a custom error
# message for the failure case. This is not recommended.
#
# The second mode is more powerful and also supports version checking:
#
# ::
#
# FIND_PACKAGE_HANDLE_STANDARD_ARGS(NAME
# [FOUND_VAR <resultVar>]
# [REQUIRED_VARS <var1>...<varN>]
# [VERSION_VAR <versionvar>]
# [HANDLE_COMPONENTS]
# [CONFIG_MODE]
# [FAIL_MESSAGE "Custom failure message"] )
#
# In this mode, the name of the result-variable can be set either to
# either <UPPERCASED_NAME>_FOUND or <OriginalCase_Name>_FOUND using the
# FOUND_VAR option. Other names for the result-variable are not
# allowed. So for a Find-module named FindFooBar.cmake, the two
# possible names are FooBar_FOUND and FOOBAR_FOUND. It is recommended
# to use the original case version. If the FOUND_VAR option is not
# used, the default is <UPPERCASED_NAME>_FOUND.
#
# As in the simple mode, if <var1> through <varN> are all valid,
# <packagename>_FOUND will be set to TRUE. After REQUIRED_VARS the
# variables which are required for this package are listed. Following
# VERSION_VAR the name of the variable can be specified which holds the
# version of the package which has been found. If this is done, this
# version will be checked against the (potentially) specified required
# version used in the find_package() call. The EXACT keyword is also
# handled. The default messages include information about the required
# version and the version which has been actually found, both if the
# version is ok or not. If the package supports components, use the
# HANDLE_COMPONENTS option to enable handling them. In this case,
# find_package_handle_standard_args() will report which components have
# been found and which are missing, and the <packagename>_FOUND variable
# will be set to FALSE if any of the required components (i.e. not the
# ones listed after OPTIONAL_COMPONENTS) are missing. Use the option
# CONFIG_MODE if your FindXXX.cmake module is a wrapper for a
# find_package(... NO_MODULE) call. In this case VERSION_VAR will be
# set to <NAME>_VERSION and the macro will automatically check whether
# the Config module was found. Via FAIL_MESSAGE a custom failure
# message can be specified, if this is not used, the default message
# will be displayed.
#
# Example for mode 1:
#
# ::
#
# find_package_handle_standard_args(LibXml2 DEFAULT_MSG
# LIBXML2_LIBRARY LIBXML2_INCLUDE_DIR)
#
#
#
# LibXml2 is considered to be found, if both LIBXML2_LIBRARY and
# LIBXML2_INCLUDE_DIR are valid. Then also LIBXML2_FOUND is set to
# TRUE. If it is not found and REQUIRED was used, it fails with
# FATAL_ERROR, independent whether QUIET was used or not. If it is
# found, success will be reported, including the content of <var1>. On
# repeated Cmake runs, the same message won't be printed again.
#
# Example for mode 2:
#
# ::
#
# find_package_handle_standard_args(LibXslt
# FOUND_VAR LibXslt_FOUND
# REQUIRED_VARS LibXslt_LIBRARIES LibXslt_INCLUDE_DIRS
# VERSION_VAR LibXslt_VERSION_STRING)
#
# In this case, LibXslt is considered to be found if the variable(s)
# listed after REQUIRED_VAR are all valid, i.e. LibXslt_LIBRARIES and
# LibXslt_INCLUDE_DIRS in this case. The result will then be stored in
# LibXslt_FOUND . Also the version of LibXslt will be checked by using
# the version contained in LibXslt_VERSION_STRING. Since no
# FAIL_MESSAGE is given, the default messages will be printed.
#
# Another example for mode 2:
#
# ::
#
# find_package(Automoc4 QUIET NO_MODULE HINTS /opt/automoc4)
# find_package_handle_standard_args(Automoc4 CONFIG_MODE)
#
# In this case, FindAutmoc4.cmake wraps a call to find_package(Automoc4
# NO_MODULE) and adds an additional search directory for automoc4. Here
# the result will be stored in AUTOMOC4_FOUND. The following
# FIND_PACKAGE_HANDLE_STANDARD_ARGS() call produces a proper
# success/error message.
#=============================================================================
# Copyright 2007-2009 Kitware, Inc.
#
# Distributed under the OSI-approved BSD License (the "License");
# see accompanying file Copyright.txt for details.
#
# This software is distributed WITHOUT ANY WARRANTY; without even the
# implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
# See the License for more information.
#=============================================================================
# (To distribute this file outside of CMake, substitute the full
# License text for the above reference.)
include(${CMAKE_CURRENT_LIST_DIR}/FindPackageMessage.cmake)
include(${CMAKE_CURRENT_LIST_DIR}/CMakeParseArguments.cmake)
# internal helper macro
macro(_FPHSA_FAILURE_MESSAGE _msg)
if (${_NAME}_FIND_REQUIRED)
message(FATAL_ERROR "${_msg}")
else ()
if (NOT ${_NAME}_FIND_QUIETLY)
message(STATUS "${_msg}")
endif ()
endif ()
endmacro()
# internal helper macro to generate the failure message when used in CONFIG_MODE:
macro(_FPHSA_HANDLE_FAILURE_CONFIG_MODE)
# <name>_CONFIG is set, but FOUND is false, this means that some other of the REQUIRED_VARS was not found:
if(${_NAME}_CONFIG)
_FPHSA_FAILURE_MESSAGE("${FPHSA_FAIL_MESSAGE}: missing: ${MISSING_VARS} (found ${${_NAME}_CONFIG} ${VERSION_MSG})")
else()
# If _CONSIDERED_CONFIGS is set, the config-file has been found, but no suitable version.
# List them all in the error message:
if(${_NAME}_CONSIDERED_CONFIGS)
set(configsText "")
list(LENGTH ${_NAME}_CONSIDERED_CONFIGS configsCount)
math(EXPR configsCount "${configsCount} - 1")
foreach(currentConfigIndex RANGE ${configsCount})
list(GET ${_NAME}_CONSIDERED_CONFIGS ${currentConfigIndex} filename)
list(GET ${_NAME}_CONSIDERED_VERSIONS ${currentConfigIndex} version)
set(configsText "${configsText} ${filename} (version ${version})\n")
endforeach()
if (${_NAME}_NOT_FOUND_MESSAGE)
set(configsText "${configsText} Reason given by package: ${${_NAME}_NOT_FOUND_MESSAGE}\n")
endif()
_FPHSA_FAILURE_MESSAGE("${FPHSA_FAIL_MESSAGE} ${VERSION_MSG}, checked the following files:\n${configsText}")
else()
# Simple case: No Config-file was found at all:
_FPHSA_FAILURE_MESSAGE("${FPHSA_FAIL_MESSAGE}: found neither ${_NAME}Config.cmake nor ${_NAME_LOWER}-config.cmake ${VERSION_MSG}")
endif()
endif()
endmacro()
function(FIND_PACKAGE_HANDLE_STANDARD_ARGS _NAME _FIRST_ARG)
# set up the arguments for CMAKE_PARSE_ARGUMENTS and check whether we are in
# new extended or in the "old" mode:
set(options CONFIG_MODE HANDLE_COMPONENTS)
set(oneValueArgs FAIL_MESSAGE VERSION_VAR FOUND_VAR)
set(multiValueArgs REQUIRED_VARS)
set(_KEYWORDS_FOR_EXTENDED_MODE ${options} ${oneValueArgs} ${multiValueArgs} )
list(FIND _KEYWORDS_FOR_EXTENDED_MODE "${_FIRST_ARG}" INDEX)
if(${INDEX} EQUAL -1)
set(FPHSA_FAIL_MESSAGE ${_FIRST_ARG})
set(FPHSA_REQUIRED_VARS ${ARGN})
set(FPHSA_VERSION_VAR)
else()
CMAKE_PARSE_ARGUMENTS(FPHSA "${options}" "${oneValueArgs}" "${multiValueArgs}" ${_FIRST_ARG} ${ARGN})
if(FPHSA_UNPARSED_ARGUMENTS)
message(FATAL_ERROR "Unknown keywords given to FIND_PACKAGE_HANDLE_STANDARD_ARGS(): \"${FPHSA_UNPARSED_ARGUMENTS}\"")
endif()
if(NOT FPHSA_FAIL_MESSAGE)
set(FPHSA_FAIL_MESSAGE "DEFAULT_MSG")
endif()
endif()
# now that we collected all arguments, process them
if("x${FPHSA_FAIL_MESSAGE}" STREQUAL "xDEFAULT_MSG")
set(FPHSA_FAIL_MESSAGE "Could NOT find ${_NAME}")
endif()
# In config-mode, we rely on the variable <package>_CONFIG, which is set by find_package()
# when it successfully found the config-file, including version checking:
if(FPHSA_CONFIG_MODE)
list(INSERT FPHSA_REQUIRED_VARS 0 ${_NAME}_CONFIG)
list(REMOVE_DUPLICATES FPHSA_REQUIRED_VARS)
set(FPHSA_VERSION_VAR ${_NAME}_VERSION)
endif()
if(NOT FPHSA_REQUIRED_VARS)
message(FATAL_ERROR "No REQUIRED_VARS specified for FIND_PACKAGE_HANDLE_STANDARD_ARGS()")
endif()
list(GET FPHSA_REQUIRED_VARS 0 _FIRST_REQUIRED_VAR)
string(TOUPPER ${_NAME} _NAME_UPPER)
string(TOLOWER ${_NAME} _NAME_LOWER)
if(FPHSA_FOUND_VAR)
if(FPHSA_FOUND_VAR MATCHES "^${_NAME}_FOUND$" OR FPHSA_FOUND_VAR MATCHES "^${_NAME_UPPER}_FOUND$")
set(_FOUND_VAR ${FPHSA_FOUND_VAR})
else()
message(FATAL_ERROR "The argument for FOUND_VAR is \"${FPHSA_FOUND_VAR}\", but only \"${_NAME}_FOUND\" and \"${_NAME_UPPER}_FOUND\" are valid names.")
endif()
else()
set(_FOUND_VAR ${_NAME_UPPER}_FOUND)
endif()
# collect all variables which were not found, so they can be printed, so the
# user knows better what went wrong (#6375)
set(MISSING_VARS "")
set(DETAILS "")
# check if all passed variables are valid
unset(${_FOUND_VAR})
foreach(_CURRENT_VAR ${FPHSA_REQUIRED_VARS})
if(NOT ${_CURRENT_VAR})
set(${_FOUND_VAR} FALSE)
set(MISSING_VARS "${MISSING_VARS} ${_CURRENT_VAR}")
else()
set(DETAILS "${DETAILS}[${${_CURRENT_VAR}}]")
endif()
endforeach()
if(NOT "${${_FOUND_VAR}}" STREQUAL "FALSE")
set(${_FOUND_VAR} TRUE)
endif()
# component handling
unset(FOUND_COMPONENTS_MSG)
unset(MISSING_COMPONENTS_MSG)
if(FPHSA_HANDLE_COMPONENTS)
foreach(comp ${${_NAME}_FIND_COMPONENTS})
if(${_NAME}_${comp}_FOUND)
if(NOT DEFINED FOUND_COMPONENTS_MSG)
set(FOUND_COMPONENTS_MSG "found components: ")
endif()
set(FOUND_COMPONENTS_MSG "${FOUND_COMPONENTS_MSG} ${comp}")
else()
if(NOT DEFINED MISSING_COMPONENTS_MSG)
set(MISSING_COMPONENTS_MSG "missing components: ")
endif()
set(MISSING_COMPONENTS_MSG "${MISSING_COMPONENTS_MSG} ${comp}")
if(${_NAME}_FIND_REQUIRED_${comp})
set(${_FOUND_VAR} FALSE)
set(MISSING_VARS "${MISSING_VARS} ${comp}")
endif()
endif()
endforeach()
set(COMPONENT_MSG "${FOUND_COMPONENTS_MSG} ${MISSING_COMPONENTS_MSG}")
set(DETAILS "${DETAILS}[c${COMPONENT_MSG}]")
endif()
# version handling:
set(VERSION_MSG "")
set(VERSION_OK TRUE)
set(VERSION ${${FPHSA_VERSION_VAR}})
# check with DEFINED here as the requested or found version may be "0"
if (DEFINED ${_NAME}_FIND_VERSION)
if(DEFINED ${FPHSA_VERSION_VAR})
if(${_NAME}_FIND_VERSION_EXACT) # exact version required
# count the dots in the version string
string(REGEX REPLACE "[^.]" "" _VERSION_DOTS "${VERSION}")
# add one dot because there is one dot more than there are components
string(LENGTH "${_VERSION_DOTS}." _VERSION_DOTS)
if (_VERSION_DOTS GREATER ${_NAME}_FIND_VERSION_COUNT)
# Because of the C++ implementation of find_package() ${_NAME}_FIND_VERSION_COUNT
# is at most 4 here. Therefore a simple lookup table is used.
if (${_NAME}_FIND_VERSION_COUNT EQUAL 1)
set(_VERSION_REGEX "[^.]*")
elseif (${_NAME}_FIND_VERSION_COUNT EQUAL 2)
set(_VERSION_REGEX "[^.]*\\.[^.]*")
elseif (${_NAME}_FIND_VERSION_COUNT EQUAL 3)
set(_VERSION_REGEX "[^.]*\\.[^.]*\\.[^.]*")
else ()
set(_VERSION_REGEX "[^.]*\\.[^.]*\\.[^.]*\\.[^.]*")
endif ()
string(REGEX REPLACE "^(${_VERSION_REGEX})\\..*" "\\1" _VERSION_HEAD "${VERSION}")
unset(_VERSION_REGEX)
if (NOT ${_NAME}_FIND_VERSION VERSION_EQUAL _VERSION_HEAD)
set(VERSION_MSG "Found unsuitable version \"${VERSION}\", but required is exact version \"${${_NAME}_FIND_VERSION}\"")
set(VERSION_OK FALSE)
else ()
set(VERSION_MSG "(found suitable exact version \"${VERSION}\")")
endif ()
unset(_VERSION_HEAD)
else ()
if (NOT "${${_NAME}_FIND_VERSION}" VERSION_EQUAL "${VERSION}")
set(VERSION_MSG "Found unsuitable version \"${VERSION}\", but required is exact version \"${${_NAME}_FIND_VERSION}\"")
set(VERSION_OK FALSE)
else ()
set(VERSION_MSG "(found suitable exact version \"${VERSION}\")")
endif ()
endif ()
unset(_VERSION_DOTS)
else() # minimum version specified:
if ("${${_NAME}_FIND_VERSION}" VERSION_GREATER "${VERSION}")
set(VERSION_MSG "Found unsuitable version \"${VERSION}\", but required is at least \"${${_NAME}_FIND_VERSION}\"")
set(VERSION_OK FALSE)
else ()
set(VERSION_MSG "(found suitable version \"${VERSION}\", minimum required is \"${${_NAME}_FIND_VERSION}\")")
endif ()
endif()
else()
# if the package was not found, but a version was given, add that to the output:
if(${_NAME}_FIND_VERSION_EXACT)
set(VERSION_MSG "(Required is exact version \"${${_NAME}_FIND_VERSION}\")")
else()
set(VERSION_MSG "(Required is at least version \"${${_NAME}_FIND_VERSION}\")")
endif()
endif()
else ()
if(VERSION)
set(VERSION_MSG "(found version \"${VERSION}\")")
endif()
endif ()
if(VERSION_OK)
set(DETAILS "${DETAILS}[v${VERSION}(${${_NAME}_FIND_VERSION})]")
else()
set(${_FOUND_VAR} FALSE)
endif()
# print the result:
if (${_FOUND_VAR})
FIND_PACKAGE_MESSAGE(${_NAME} "Found ${_NAME}: ${${_FIRST_REQUIRED_VAR}} ${VERSION_MSG} ${COMPONENT_MSG}" "${DETAILS}")
else ()
if(FPHSA_CONFIG_MODE)
_FPHSA_HANDLE_FAILURE_CONFIG_MODE()
else()
if(NOT VERSION_OK)
_FPHSA_FAILURE_MESSAGE("${FPHSA_FAIL_MESSAGE}: ${VERSION_MSG} (found ${${_FIRST_REQUIRED_VAR}})")
else()
_FPHSA_FAILURE_MESSAGE("${FPHSA_FAIL_MESSAGE} (missing: ${MISSING_VARS}) ${VERSION_MSG}")
endif()
endif()
endif ()
set(${_FOUND_VAR} ${${_FOUND_VAR}} PARENT_SCOPE)
endfunction()

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@ -1,57 +0,0 @@
#.rst:
# FindPackageMessage
# ------------------
#
#
#
# FIND_PACKAGE_MESSAGE(<name> "message for user" "find result details")
#
# This macro is intended to be used in FindXXX.cmake modules files. It
# will print a message once for each unique find result. This is useful
# for telling the user where a package was found. The first argument
# specifies the name (XXX) of the package. The second argument
# specifies the message to display. The third argument lists details
# about the find result so that if they change the message will be
# displayed again. The macro also obeys the QUIET argument to the
# find_package command.
#
# Example:
#
# ::
#
# if(X11_FOUND)
# FIND_PACKAGE_MESSAGE(X11 "Found X11: ${X11_X11_LIB}"
# "[${X11_X11_LIB}][${X11_INCLUDE_DIR}]")
# else()
# ...
# endif()
#=============================================================================
# Copyright 2008-2009 Kitware, Inc.
#
# Distributed under the OSI-approved BSD License (the "License");
# see accompanying file Copyright.txt for details.
#
# This software is distributed WITHOUT ANY WARRANTY; without even the
# implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
# See the License for more information.
#=============================================================================
# (To distribute this file outside of CMake, substitute the full
# License text for the above reference.)
function(FIND_PACKAGE_MESSAGE pkg msg details)
# Avoid printing a message repeatedly for the same find result.
if(NOT ${pkg}_FIND_QUIETLY)
string(REPLACE "\n" "" details "${details}")
set(DETAILS_VAR FIND_PACKAGE_MESSAGE_DETAILS_${pkg})
if(NOT "${details}" STREQUAL "${${DETAILS_VAR}}")
# The message has not yet been printed.
message(STATUS "${msg}")
# Save the find details in the cache to avoid printing the same
# message again.
set("${DETAILS_VAR}" "${details}"
CACHE INTERNAL "Details about finding ${pkg}")
endif()
endif()
endfunction()

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@ -1,47 +0,0 @@
# Find Solidity
#
# Find the solidity includes and library
#
# This module defines
# Solidity_XXX_LIBRARIES, the libraries needed to use solidity.
# SOLIDITY_INCLUDE_DIRS
include(EthUtils)
set(LIBS solidity;lll;solevmasm)
set(Solidity_INCLUDE_DIRS "${SOL_DIR}")
# if the project is a subset of main cpp-ethereum project
# use same pattern for variables as Boost uses
if ((DEFINED solidity_VERSION) OR (DEFINED cpp-ethereum_VERSION))
foreach (l ${LIBS})
string(TOUPPER ${l} L)
set ("Solidity_${L}_LIBRARIES" ${l})
endforeach()
else()
foreach (l ${LIBS})
string(TOUPPER ${l} L)
find_library(Solidity_${L}_LIBRARY
NAMES ${l}
PATHS ${CMAKE_LIBRARY_PATH}
PATH_SUFFIXES "lib${l}" "${l}" "lib${l}/Debug" "lib${l}/Release"
NO_DEFAULT_PATH
)
set(Solidity_${L}_LIBRARIES ${Solidity_${L}_LIBRARY})
if (DEFINED MSVC)
find_library(Solidity_${L}_LIBRARY_DEBUG
NAMES ${l}
PATHS ${CMAKE_LIBRARY_PATH}
PATH_SUFFIXES "lib${l}/Debug"
NO_DEFAULT_PATH
)
eth_check_library_link(Solidity_${L})
endif()
endforeach()
endif()

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@ -1,31 +0,0 @@
function(eth_apply TARGET REQUIRED SUBMODULE)
# Base is where all dependencies for devcore are
if (${SUBMODULE} STREQUAL "base")
# if it's ethereum source dir, always build BuildInfo.h before
eth_use(${TARGET} ${REQUIRED} Dev::buildinfo)
target_include_directories(${TARGET} SYSTEM PUBLIC ${Boost_INCLUDE_DIRS})
target_link_libraries(${TARGET} ${Boost_THREAD_LIBRARIES})
target_link_libraries(${TARGET} ${Boost_RANDOM_LIBRARIES})
target_link_libraries(${TARGET} ${Boost_FILESYSTEM_LIBRARIES})
target_link_libraries(${TARGET} ${Boost_SYSTEM_LIBRARIES})
target_link_libraries(${TARGET} ${Boost_REGEX_LIBRARIES})
if (DEFINED MSVC)
target_link_libraries(${TARGET} ${Boost_CHRONO_LIBRARIES})
target_link_libraries(${TARGET} ${Boost_DATE_TIME_LIBRARIES})
endif()
if ("${CMAKE_SYSTEM_NAME}" MATCHES "Linux")
target_link_libraries(${TARGET} pthread)
endif()
endif()
if (${SUBMODULE} STREQUAL "soldevcore")
eth_use(${TARGET} ${REQUIRED} Dev::base)
target_link_libraries(${TARGET} soldevcore)
endif()
endfunction()

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@ -1,32 +0,0 @@
function(eth_apply TARGET REQUIRED SUBMODULE)
set(SOL_DIR "${ETH_CMAKE_DIR}/.." CACHE PATH "The path to the solidity directory")
set(SOL_BUILD_DIR_NAME "build" CACHE STRING "The name of the build directory in solidity repo")
set(SOL_BUILD_DIR "${SOL_DIR}/${SOL_BUILD_DIR_NAME}")
set(CMAKE_LIBRARY_PATH ${SOL_BUILD_DIR};${CMAKE_LIBRARY_PATH})
find_package(Solidity)
# Hide confusing blank dependency information when using FindSolidity on itself.
if (NOT(${MODULE_MAIN} STREQUAL Solidity))
eth_show_dependency(SOLIDITY solidity)
endif()
target_include_directories(${TARGET} PUBLIC ${Solidity_INCLUDE_DIRS})
if (${SUBMODULE} STREQUAL "solevmasm")
target_link_libraries(${TARGET} ${Solidity_SOLEVMASM_LIBRARIES} jsoncpp)
endif()
if (${SUBMODULE} STREQUAL "lll")
eth_use(${TARGET} ${REQUIRED} Solidity::solevmasm)
target_link_libraries(${TARGET} ${Solidity_LLL_LIBRARIES})
endif()
if (${SUBMODULE} STREQUAL "solidity" OR ${SUBMODULE} STREQUAL "")
eth_use(${TARGET} ${REQUIRED} Dev::soldevcore Solidity::solevmasm)
target_link_libraries(${TARGET} ${Solidity_SOLIDITY_LIBRARIES})
endif()
target_compile_definitions(${TARGET} PUBLIC ETH_SOLIDITY)
endfunction()