mirror of
https://github.com/samba-team/samba.git
synced 2024-12-25 23:21:54 +03:00
573 lines
19 KiB
Python
573 lines
19 KiB
Python
# a waf tool to add autoconf-like macros to the configure section
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# and for SAMBA_ macros for building libraries, binaries etc
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import Build, os, Options, Task, Utils, cc, TaskGen
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from Configure import conf
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from Logs import debug
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from samba_utils import SUBST_VARS_RECURSIVE
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# bring in the other samba modules
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from samba_optimisation import *
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from samba_utils import *
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from samba_autoconf import *
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from samba_patterns import *
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from samba_pidl import *
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from samba_errtable import *
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from samba_asn1 import *
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from samba_autoproto import *
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from samba_python import *
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from samba_deps import *
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LIB_PATH="shared"
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#################################################################
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# create the samba build environment
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@conf
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def SAMBA_BUILD_ENV(conf):
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conf.env['BUILD_DIRECTORY'] = conf.blddir
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mkdir_p(os.path.join(conf.blddir, LIB_PATH))
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mkdir_p(os.path.join(conf.blddir, 'python/samba/dcerpc'))
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# this allows all of the bin/shared and bin/python targets
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# to be expressed in terms of build directory paths
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for p in ['python','shared']:
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link_target = os.path.join(conf.blddir, 'default/' + p)
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if not os.path.lexists(link_target):
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os.symlink('../' + p, link_target)
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################################################################
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# add an init_function to the list for a subsystem
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def ADD_INIT_FUNCTION(bld, subsystem, target, init_function):
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if init_function is None:
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return
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bld.ASSERT(subsystem is not None, "You must specify a subsystem for init_function '%s'" % init_function)
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cache = LOCAL_CACHE(bld, 'INIT_FUNCTIONS')
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if not subsystem in cache:
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cache[subsystem] = []
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cache[subsystem].append( { 'TARGET':target, 'INIT_FUNCTION':init_function } )
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Build.BuildContext.ADD_INIT_FUNCTION = ADD_INIT_FUNCTION
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#################################################################
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# define a Samba library
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def SAMBA_LIBRARY(bld, libname, source,
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deps='',
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public_deps='',
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includes='',
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public_headers=None,
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vnum=None,
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cflags='',
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external_library=False,
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realname=None,
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autoproto=None,
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group='main',
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depends_on='',
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local_include=True,
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install_path=None,
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install=True,
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enabled=True):
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if not enabled:
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SET_TARGET_TYPE(bld, libname, 'DISABLED')
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return
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# remember empty libraries, so we can strip the dependencies
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if (source == '') or (source == []):
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SET_TARGET_TYPE(bld, libname, 'EMPTY')
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return
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if not SET_TARGET_TYPE(bld, libname, 'LIBRARY'):
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return
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obj_target = libname + '.objlist'
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# first create a target for building the object files for this library
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# by separating in this way, we avoid recompiling the C files
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# separately for the install library and the build library
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bld.SAMBA_SUBSYSTEM(obj_target,
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source = source,
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deps = deps,
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public_deps = public_deps,
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includes = includes,
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public_headers = public_headers,
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cflags = cflags,
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group = group,
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autoproto = autoproto,
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depends_on = depends_on,
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local_include = local_include)
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# the library itself will depend on that object target
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deps += ' ' + public_deps
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deps = TO_LIST(deps)
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deps.append(obj_target)
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bld.SET_BUILD_GROUP(group)
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t = bld(
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features = 'cc cshlib symlink_lib',
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source = [],
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target = libname,
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samba_cflags = CURRENT_CFLAGS(bld, libname, cflags),
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depends_on = depends_on,
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samba_deps = deps,
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samba_includes = includes,
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local_include = local_include,
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vnum = vnum,
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install_path = None
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)
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if install_path is None:
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install_path = '${LIBDIR}'
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install_path = SUBST_VARS_RECURSIVE(install_path, bld.env)
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if install:
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# create a separate install library, which may have
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# different rpath settings
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SET_TARGET_TYPE(bld, libname + '.inst', 'LIBRARY')
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t = bld(
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features = 'cc cshlib',
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source = [],
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target = libname + '.inst',
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samba_cflags = CURRENT_CFLAGS(bld, libname, cflags),
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depends_on = depends_on,
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samba_deps = deps,
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samba_includes = includes,
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local_include = local_include,
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vnum = vnum,
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install_as = libname,
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install_path = None,
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)
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t.env['RPATH'] = install_rpath(bld)
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if vnum:
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vnum_base = vnum.split('.')[0]
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install_name = 'lib%s.so.%s' % (libname, vnum)
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install_link = 'lib%s.so.%s' % (libname, vnum_base)
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else:
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install_name = 'lib%s.so' % libname
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install_link = None
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bld.install_as(os.path.join(install_path, install_name),
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'lib%s.inst.so' % libname)
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if install_link:
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bld.symlink_as(os.path.join(install_path, install_link), install_name)
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if autoproto is not None:
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bld.SAMBA_AUTOPROTO(autoproto, source)
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Build.BuildContext.SAMBA_LIBRARY = SAMBA_LIBRARY
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#################################################################
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# define a Samba binary
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def SAMBA_BINARY(bld, binname, source,
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deps='',
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includes='',
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public_headers=None,
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modules=None,
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installdir=None,
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ldflags=None,
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cflags='',
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autoproto=None,
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use_hostcc=None,
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compiler=None,
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group='binaries',
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manpages=None,
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local_include=True,
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subsystem_name=None,
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needs_python=False,
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install=True,
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install_path=None):
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if not SET_TARGET_TYPE(bld, binname, 'BINARY'):
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return
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features = 'cc cprogram'
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if needs_python:
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features += ' pyembed'
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bld.SET_BUILD_GROUP(group)
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obj_target = binname + '.objlist'
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# first create a target for building the object files for this binary
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# by separating in this way, we avoid recompiling the C files
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# separately for the install binary and the build binary
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bld.SAMBA_SUBSYSTEM(obj_target,
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source = source,
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deps = deps,
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includes = includes,
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cflags = cflags,
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group = group,
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autoproto = autoproto,
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subsystem_name = subsystem_name,
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needs_python = needs_python,
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local_include = local_include)
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# the library itself will depend on that object target
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deps = TO_LIST(deps)
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deps.append(obj_target)
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bld(
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features = features + ' symlink_bin',
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source = [],
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target = binname,
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samba_cflags = CURRENT_CFLAGS(bld, binname, cflags),
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samba_deps = deps,
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samba_includes = includes,
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local_include = local_include,
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samba_modules = modules,
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top = True,
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samba_subsystem= subsystem_name,
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install_path = None
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)
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if install_path is None:
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install_path = '${BINDIR}'
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install_path = SUBST_VARS_RECURSIVE(install_path, bld.env)
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if install:
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# we create a separate 'install' binary, which
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# will have different rpath settings
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SET_TARGET_TYPE(bld, binname + '.inst', 'BINARY')
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t = bld(
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features = features,
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source = [],
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target = binname + '.inst',
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samba_cflags = CURRENT_CFLAGS(bld, binname, cflags),
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samba_deps = deps,
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samba_includes = includes,
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local_include = local_include,
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samba_modules = modules,
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top = True,
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samba_subsystem= subsystem_name,
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install_path = None
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)
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t.env['RPATH'] = install_rpath(bld)
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bld.install_as(os.path.join(install_path, binname),
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binname + '.inst',
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chmod=0755)
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# setup the subsystem_name as an alias for the real
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# binary name, so it can be found when expanding
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# subsystem dependencies
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if subsystem_name is not None:
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bld.TARGET_ALIAS(subsystem_name, binname)
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if autoproto is not None:
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bld.SAMBA_AUTOPROTO(autoproto, source)
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Build.BuildContext.SAMBA_BINARY = SAMBA_BINARY
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#################################################################
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# define a Samba module.
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def SAMBA_MODULE(bld, modname, source,
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deps='',
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includes='',
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subsystem=None,
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init_function=None,
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autoproto=None,
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autoproto_extra_source='',
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aliases=None,
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cflags='',
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internal_module=True,
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local_include=True,
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enabled=True):
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if internal_module:
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# treat internal modules as subsystems for now
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SAMBA_SUBSYSTEM(bld, modname, source,
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deps=deps,
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includes=includes,
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autoproto=autoproto,
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autoproto_extra_source=autoproto_extra_source,
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cflags=cflags,
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local_include=local_include,
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enabled=enabled)
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# even though we're treating it as a subsystem, we need to
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# add it to the init_function list
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# TODO: we should also create an implicit dependency
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# between the subsystem target and this target
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if enabled:
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bld.ADD_INIT_FUNCTION(subsystem, modname, init_function)
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return
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if not enabled:
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SET_TARGET_TYPE(bld, modname, 'DISABLED')
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return
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# remember empty modules, so we can strip the dependencies
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if (source == '') or (source == []):
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SET_TARGET_TYPE(bld, modname, 'EMPTY')
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return
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if not SET_TARGET_TYPE(bld, modname, 'MODULE'):
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return
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bld.ADD_INIT_FUNCTION(subsystem, modname, init_function)
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if subsystem is not None:
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deps += ' ' + subsystem
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bld.SET_BUILD_GROUP('main')
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bld(
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features = 'cc',
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source = source,
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target = modname,
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samba_cflags = CURRENT_CFLAGS(bld, modname, cflags),
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samba_includes = includes,
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local_include = local_include,
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samba_deps = TO_LIST(deps)
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)
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if autoproto is not None:
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bld.SAMBA_AUTOPROTO(autoproto, source + ' ' + autoproto_extra_source)
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Build.BuildContext.SAMBA_MODULE = SAMBA_MODULE
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#################################################################
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# define a Samba subsystem
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def SAMBA_SUBSYSTEM(bld, modname, source,
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deps='',
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public_deps='',
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includes='',
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public_headers=None,
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cflags='',
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cflags_end=None,
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group='main',
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init_function_sentinal=None,
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heimdal_autoproto=None,
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heimdal_autoproto_options=None,
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heimdal_autoproto_private=None,
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autoproto=None,
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autoproto_extra_source='',
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depends_on='',
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local_include=True,
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local_include_first=True,
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subsystem_name=None,
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enabled=True,
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needs_python=False):
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if not enabled:
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SET_TARGET_TYPE(bld, modname, 'DISABLED')
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return
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# remember empty subsystems, so we can strip the dependencies
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if (source == '') or (source == []):
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SET_TARGET_TYPE(bld, modname, 'EMPTY')
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return
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if not SET_TARGET_TYPE(bld, modname, 'SUBSYSTEM'):
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return
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deps += ' ' + public_deps
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bld.SET_BUILD_GROUP(group)
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features = 'cc'
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if needs_python:
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features += ' pyext'
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t = bld(
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features = features,
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source = source,
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target = modname,
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samba_cflags = CURRENT_CFLAGS(bld, modname, cflags),
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depends_on = depends_on,
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samba_deps = TO_LIST(deps),
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samba_includes = includes,
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local_include = local_include,
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local_include_first = local_include_first,
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samba_subsystem= subsystem_name
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)
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if cflags_end is not None:
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t.samba_cflags.extend(TO_LIST(cflags_end))
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if heimdal_autoproto is not None:
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bld.HEIMDAL_AUTOPROTO(heimdal_autoproto, source, options=heimdal_autoproto_options)
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if heimdal_autoproto_private is not None:
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bld.HEIMDAL_AUTOPROTO_PRIVATE(heimdal_autoproto_private, source)
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if autoproto is not None:
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bld.SAMBA_AUTOPROTO(autoproto, source + ' ' + autoproto_extra_source)
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return t
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Build.BuildContext.SAMBA_SUBSYSTEM = SAMBA_SUBSYSTEM
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def SAMBA_GENERATOR(bld, name, rule, source, target,
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group='build_source'):
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'''A generic source generator target'''
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if not SET_TARGET_TYPE(bld, name, 'GENERATOR'):
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return
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bld.SET_BUILD_GROUP(group)
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bld(
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rule=rule,
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source=source,
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target=target,
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before='cc',
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ext_out='.c')
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Build.BuildContext.SAMBA_GENERATOR = SAMBA_GENERATOR
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###############################################################
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# add a new set of build rules from a subdirectory
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# the @runonce decorator ensures we don't end up
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# with duplicate rules
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def BUILD_SUBDIR(bld, dir):
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path = os.path.normpath(bld.curdir + '/' + dir)
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cache = LOCAL_CACHE(bld, 'SUBDIR_LIST')
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if path in cache: return
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cache[path] = True
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debug("build: Processing subdirectory %s" % dir)
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bld.add_subdirs(dir)
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Build.BuildContext.BUILD_SUBDIR = BUILD_SUBDIR
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##########################################################
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# add a new top level command to waf
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def ADD_COMMAND(opt, name, function):
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Utils.g_module.__dict__[name] = function
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opt.name = function
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Options.Handler.ADD_COMMAND = ADD_COMMAND
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###########################################################
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# setup build groups used to ensure that the different build
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# phases happen consecutively
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@runonce
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def SETUP_BUILD_GROUPS(bld):
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bld.p_ln = bld.srcnode # we do want to see all targets!
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bld.env['USING_BUILD_GROUPS'] = True
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bld.add_group('setup')
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bld.add_group('base_libraries')
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bld.add_group('build_compilers')
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bld.add_group('build_source')
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bld.add_group('prototypes')
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bld.add_group('main')
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bld.add_group('binaries')
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bld.add_group('final')
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Build.BuildContext.SETUP_BUILD_GROUPS = SETUP_BUILD_GROUPS
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###########################################################
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# set the current build group
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def SET_BUILD_GROUP(bld, group):
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if not 'USING_BUILD_GROUPS' in bld.env:
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return
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bld.set_group(group)
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Build.BuildContext.SET_BUILD_GROUP = SET_BUILD_GROUP
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def h_file(filename):
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import stat
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st = os.stat(filename)
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if stat.S_ISDIR(st[stat.ST_MODE]): raise IOError('not a file')
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m = Utils.md5()
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m.update(str(st.st_mtime))
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m.update(str(st.st_size))
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m.update(filename)
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return m.digest()
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@conf
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def ENABLE_TIMESTAMP_DEPENDENCIES(conf):
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Utils.h_file = h_file
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##############################
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# handle the creation of links for libraries and binaries
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# note that we use a relative symlink path to allow the whole tree
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# to me moved/copied elsewhere without breaking the links
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t = Task.simple_task_type('symlink_lib', 'ln -sf ${LINK_SOURCE} ${LINK_TARGET}',
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color='PINK', ext_in='.bin')
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t.quiet = True
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@feature('symlink_lib')
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@after('apply_link')
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def symlink_lib(self):
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tsk = self.create_task('symlink_lib', self.link_task.outputs[0])
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# calculat the link target and put it in the environment
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soext=""
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vnum = getattr(self, 'vnum', None)
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if vnum is not None:
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soext = '.' + vnum.split('.')[0]
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link_target = getattr(self, 'link_name', '')
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if link_target == '':
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link_target = '%s/lib%s.so%s' % (LIB_PATH, self.sname, soext)
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link_source = os_path_relpath(self.link_task.outputs[0].abspath(self.env),
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os.path.join(self.env.BUILD_DIRECTORY, link_target))
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tsk.env.LINK_TARGET = link_target
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tsk.env.LINK_SOURCE = link_source[3:]
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debug('task_gen: LINK for %s is %s -> %s',
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self.name, tsk.env.LINK_SOURCE, tsk.env.LINK_TARGET)
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t = Task.simple_task_type('symlink_bin', 'ln -sf ${SRC} ${BIN_TARGET}',
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color='PINK', ext_in='.bin')
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t.quiet = True
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@feature('symlink_bin')
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@after('apply_link')
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def symlink_bin(self):
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if Options.is_install:
|
|
# we don't want to copy the install binary, as
|
|
# that has the install rpath, not the build rpath
|
|
# The rpath of the binaries in bin/default/foo/blah is different
|
|
# during the install phase, as distros insist on not using rpath in installed binaries
|
|
return
|
|
tsk = self.create_task('symlink_bin', self.link_task.outputs[0])
|
|
|
|
tsk.env.BIN_TARGET = self.target
|
|
debug('task_gen: BIN_TARGET for %s is %s', self.name, tsk.env.BIN_TARGET)
|
|
|
|
|
|
|
|
|
|
t = Task.simple_task_type('copy_script', 'ln -sf ${SRC[0].abspath(env)} ${LINK_TARGET}',
|
|
color='PINK', ext_in='.bin', shell=True)
|
|
t.quiet = True
|
|
|
|
@feature('copy_script')
|
|
@before('apply_link')
|
|
def copy_script(self):
|
|
tsk = self.create_task('copy_script', self.allnodes[0])
|
|
tsk.env.TARGET = self.target
|
|
|
|
def SAMBA_SCRIPT(bld, name, pattern, installdir, installname=None):
|
|
'''used to copy scripts from the source tree into the build directory
|
|
for use by selftest'''
|
|
|
|
source = bld.path.ant_glob(pattern)
|
|
|
|
bld.SET_BUILD_GROUP('build_source')
|
|
for s in TO_LIST(source):
|
|
iname = s
|
|
if installname != None:
|
|
iname = installname
|
|
target = os.path.join(installdir, iname)
|
|
tgtdir = os.path.dirname(os.path.join(bld.srcnode.abspath(bld.env), '..', target))
|
|
mkdir_p(tgtdir)
|
|
t = bld(features='copy_script',
|
|
source = s,
|
|
target = target,
|
|
always = True,
|
|
install_path = None)
|
|
t.env.LINK_TARGET = target
|
|
|
|
Build.BuildContext.SAMBA_SCRIPT = SAMBA_SCRIPT
|
|
|