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#!/usr/bin/env python3
import argparse
import platform
import os
import glob
import subprocess
import os.path as p
import shlex
import sys
import urllib.request
BASE_UNITTEST_ARGS = [ '-cb' ]
DIR_OF_THIS_SCRIPT = p.dirname( p.abspath( __file__ ) )
LOMBOK_VERSION = '1.18.16'
def DownloadFileTo( download_url, file_path ):
with urllib.request.urlopen( download_url ) as response:
with open( file_path, 'wb' ) as package_file:
package_file.write( response.read() )
def OnWindows():
return platform.system() == 'Windows'
def RunFlake8():
print( 'Running flake8' )
args = [ sys.executable,
'-m',
'flake8',
p.join( DIR_OF_THIS_SCRIPT, 'ycmd' ) ]
root_dir_scripts = glob.glob( p.join( DIR_OF_THIS_SCRIPT, '*.py' ) )
args.extend( root_dir_scripts )
subprocess.check_call( args )
# Newer completers follow a standard convention of:
# - build: --<completer>-completer
# - no aliases.
SIMPLE_COMPLETERS = [
'clangd',
'rust',
'go',
]
# More complex or legacy cases can specify all of:
# - build: flags to add to build.py to include this completer
# - aliases?: list of completer aliases for the --completers option
COMPLETERS = {
'cfamily': {
'build': [ '--clang-completer' ],
'aliases': [ 'c', 'cpp', 'c++', 'objc', 'clang', ]
},
'cs': {
'build': [ '--cs-completer' ],
'aliases': [ 'omnisharp', 'csharp', 'c#' ]
},
'javascript': {
'build': [ '--js-completer' ],
'aliases': [ 'js', 'tern' ]
},
'typescript': {
'build': [ '--ts-completer' ],
'aliases': [ 'ts' ]
},
'python': {
'build': [],
'aliases': [ 'jedi', 'jedihttp', ]
},
'java': {
'build': [ '--java-completer' ],
'aliases': [ 'jdt' ],
},
}
# Add in the simple completers
for completer in SIMPLE_COMPLETERS:
COMPLETERS[ completer ] = {
'build': [ '--{}-completer'.format( completer ) ],
}
def CompleterType( value ):
value = value.lower()
if value in COMPLETERS:
return value
else:
aliases_to_completer = { i: k for k, v in COMPLETERS.items()
for i in v[ 'aliases' ] }
if value in aliases_to_completer:
return aliases_to_completer[ value ]
else:
raise argparse.ArgumentTypeError(
'{0} is not a valid completer - should be one of {1}'.format(
value, COMPLETERS.keys() ) )
def ParseArguments():
parser = argparse.ArgumentParser()
group = parser.add_mutually_exclusive_group()
group.add_argument( '--no-clang-completer', action = 'store_true',
help = argparse.SUPPRESS ) # deprecated
group.add_argument( '--no-completers', nargs ='*', type = CompleterType,
help = 'Do not build or test with listed semantic '
'completion engine(s).',
choices = COMPLETERS.keys() )
group.add_argument( '--completers', nargs ='*', type = CompleterType,
help = 'Only build and test with listed semantic '
'completion engine(s).',
choices = COMPLETERS.keys() )
parser.add_argument( '--skip-build', action = 'store_true',
help = 'Do not build ycmd before testing.' )
parser.add_argument( '--msvc', type = int, choices = [ 15, 16, 17 ],
default = 16, help = 'Choose the Microsoft Visual '
'Studio version (default: %(default)s).' )
parser.add_argument( '--coverage', action = 'store_true',
help = 'Enable coverage report (requires coverage pkg)' )
parser.add_argument( '--no-flake8', action = 'store_true',
help = 'Disable flake8 run.' )
parser.add_argument( '--dump-path', action = 'store_true',
help = 'Dump the PYTHONPATH required to run tests '
'manually, then exit.' )
parser.add_argument( '--no-retry', action = 'store_true',
help = 'Disable retry of flaky tests' )
parser.add_argument( '--quiet', action = 'store_true',
help = 'Quiet installation mode. Just print overall '
'progress and errors' )
parser.add_argument( '--valgrind',
action = 'store_true',
help = 'Run tests inside valgrind.' )
parsed_args, unittest_args = parser.parse_known_args()
parsed_args.completers = FixupCompleters( parsed_args )
if 'COVERAGE' in os.environ:
parsed_args.coverage = ( os.environ[ 'COVERAGE' ] == 'true' )
return parsed_args, unittest_args
def FixupCompleters( parsed_args ):
completers = set( COMPLETERS.keys() )
if parsed_args.completers is not None:
completers = set( parsed_args.completers )
elif parsed_args.no_completers is not None:
completers = completers.difference( parsed_args.no_completers )
elif parsed_args.no_clang_completer:
print( 'WARNING: The "--no-clang-completer" flag is deprecated. '
'Please use "--no-completers cfamily" instead.' )
completers.discard( 'cfamily' )
if 'USE_CLANG_COMPLETER' in os.environ:
if os.environ[ 'USE_CLANG_COMPLETER' ] == 'false':
completers.discard( 'cfamily' )
else:
completers.add( 'cfamily' )
return list( completers )
def BuildYcmdLibs( args ):
if not args.skip_build:
if 'EXTRA_CMAKE_ARGS' in os.environ:
os.environ[ 'EXTRA_CMAKE_ARGS' ] += ' -DUSE_DEV_FLAGS=ON'
else:
os.environ[ 'EXTRA_CMAKE_ARGS' ] = '-DUSE_DEV_FLAGS=ON'
build_cmd = [
sys.executable,
p.join( DIR_OF_THIS_SCRIPT, 'build.py' ),
'--core-tests'
]
for key in COMPLETERS:
if key in args.completers:
build_cmd.extend( COMPLETERS[ key ][ 'build' ] )
if args.msvc and platform.system() == 'Windows':
build_cmd.extend( [ '--msvc', str( args.msvc ) ] )
if args.coverage:
# In order to generate coverage data for C++, we use gcov. This requires
# some files generated when building (*.gcno), so we store the build
# output in a known directory, which is then used by the CI infrastructure
# to generate the c++ coverage information.
build_cmd.extend( [ '--enable-coverage', '--build-dir', '.build' ] )
if args.quiet:
build_cmd.append( '--quiet' )
subprocess.check_call( build_cmd )
def UnittestValgrind( parsed_args, extra_unittest_args ):
unittest_args = BASE_UNITTEST_ARGS
if parsed_args.quiet:
unittest_args.append( '-q' )
if extra_unittest_args:
unittest_args.extend( extra_unittest_args )
else:
unittest_args += glob.glob(
p.join( DIR_OF_THIS_SCRIPT, 'ycmd', 'tests', 'bindings', '*_test.py' ) )
unittest_args += glob.glob(
p.join( DIR_OF_THIS_SCRIPT, 'ycmd', 'tests', 'clang', '*_test.py' ) )
unittest_args += glob.glob(
p.join( DIR_OF_THIS_SCRIPT, 'ycmd', 'tests', '*_test.py' ) )
# # Avoids needing all completers for a valgrind run
# unittest_args += [ '-m', 'not valgrind_skip' ]
new_env = os.environ.copy()
new_env[ 'PYTHONMALLOC' ] = 'malloc'
new_env[ 'YCM_VALGRIND_RUN' ] = '1'
cmd = [ 'valgrind',
'--gen-suppressions=all',
'--error-exitcode=1',
'--leak-check=full',
'--show-leak-kinds=definite,indirect',
'--errors-for-leak-kinds=definite,indirect',
'--suppressions=' + p.join( DIR_OF_THIS_SCRIPT,
'valgrind.suppressions' ) ]
subprocess.check_call( cmd +
[ sys.executable, '-m', 'unittest' ] +
unittest_args,
env = new_env )
def UnittestTests( parsed_args, extra_unittest_args ):
# if any extra arg is a specific file, or the '--' token, then assume the
# arguments are unittest-aware test selection:
# - don't use discover
# - don't set the pattern to search for
prefer_regular = any( arg == '--' or p.isfile( arg )
for arg in extra_unittest_args )
unittest_args = BASE_UNITTEST_ARGS
if not prefer_regular:
unittest_args += [ '-p', '*_test.py' ]
if parsed_args.quiet:
unittest_args.append( '-q' )
if extra_unittest_args:
unittest_args.extend( extra_unittest_args )
if not ( extra_unittest_args or prefer_regular ):
unittest_args.append( '-s' )
unittest_args.append( 'ycmd.tests' )
env = os.environ.copy()
if parsed_args.no_retry:
# Useful for _writing_ tests
env[ 'YCM_TEST_NO_RETRY' ] = '1'
if parsed_args.coverage:
executable = [ sys.executable, '-m', 'coverage', 'run' ]
else:
executable = [ sys.executable ]
unittest = [ '-m', 'unittest' ]
if not prefer_regular:
unittest.append( 'discover' )
unittest_cmd = executable + unittest + unittest_args
cmd_string = ' '.join( shlex.quote( arg ) for arg in unittest_cmd )
print( f"Running unittest:\n{ cmd_string }",
file = sys.stderr )
subprocess.check_call( unittest_cmd, env=env )
# On Windows, distutils.spawn.find_executable only works for .exe files
# but .bat and .cmd files are also executables, so we use our own
# implementation.
def FindExecutable( executable ):
# Executable extensions used on Windows
WIN_EXECUTABLE_EXTS = [ '.exe', '.bat', '.cmd' ]
paths = os.environ[ 'PATH' ].split( os.pathsep )
base, extension = os.path.splitext( executable )
if OnWindows() and extension.lower() not in WIN_EXECUTABLE_EXTS:
extensions = WIN_EXECUTABLE_EXTS
else:
extensions = [ '' ]
for extension in extensions:
executable_name = executable + extension
if not os.path.isfile( executable_name ):
for path in paths:
executable_path = os.path.join( path, executable_name )
if os.path.isfile( executable_path ):
return executable_path
else:
return executable_name
return None
def FindExecutableOrDie( executable, message ):
path = FindExecutable( executable )
if not path:
sys.exit( "ERROR: Unable to find executable '{0}'. {1}".format(
executable,
message ) )
return path
def SetUpGenericLSPCompleter():
old_cwd = os.getcwd()
os.chdir( os.path.join( DIR_OF_THIRD_PARTY, 'generic_server' ) )
npm = FindExecutableOrDie( 'npm', 'npm is required to'
'run GenericLSPCompleter tests.' )
subprocess.check_call( [ npm, 'install' ] )
subprocess.check_call( [ npm, 'run', 'compile' ] )
os.chdir( old_cwd )
def SetUpJavaCompleter():
LOMBOR_DIR = p.join( DIR_OF_THIRD_PARTY, 'lombok', )
CACHE = p.join( LOMBOR_DIR, 'cache' )
jar_name = f'lombok-{ LOMBOK_VERSION }.jar'
url = (
f'https://github.com/ycm-core/llvm/releases/download/14.0.5/{ jar_name }'
)
file_name = p.join( CACHE, jar_name )
if not p.exists( CACHE ):
os.makedirs( CACHE )
if not p.exists( file_name ):
print( f"Downloading lombok from { url }..." )
DownloadFileTo( url, file_name )
def Main():
parsed_args, unittest_args = ParseArguments()
if parsed_args.dump_path:
print( os.environ[ 'PYTHONPATH' ] )
sys.exit()
print( 'Running tests on Python', platform.python_version() )
if not parsed_args.skip_build:
SetUpGenericLSPCompleter()
SetUpJavaCompleter()
if not parsed_args.no_flake8:
RunFlake8()
BuildYcmdLibs( parsed_args )
if parsed_args.valgrind:
UnittestValgrind( parsed_args, unittest_args )
else:
UnittestTests( parsed_args, unittest_args )
if __name__ == "__main__":
Main()
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