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204 lines
6.6 KiB
Python
204 lines
6.6 KiB
Python
#! /usr/bin/env python
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# encoding: utf-8
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# DC 2008
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# Thomas Nagy 2016-2018 (ita)
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"""
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Fortran support
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"""
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from waflib import Utils, Task, Errors
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from waflib.Tools import ccroot, fc_config, fc_scan
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from waflib.TaskGen import extension
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from waflib.Configure import conf
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ccroot.USELIB_VARS['fc'] = set(['FCFLAGS', 'DEFINES', 'INCLUDES', 'FCPPFLAGS'])
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ccroot.USELIB_VARS['fcprogram_test'] = ccroot.USELIB_VARS['fcprogram'] = set(['LIB', 'STLIB', 'LIBPATH', 'STLIBPATH', 'LINKFLAGS', 'RPATH', 'LINKDEPS'])
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ccroot.USELIB_VARS['fcshlib'] = set(['LIB', 'STLIB', 'LIBPATH', 'STLIBPATH', 'LINKFLAGS', 'RPATH', 'LINKDEPS'])
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ccroot.USELIB_VARS['fcstlib'] = set(['ARFLAGS', 'LINKDEPS'])
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@extension('.f','.F','.f90','.F90','.for','.FOR','.f95','.F95','.f03','.F03','.f08','.F08')
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def fc_hook(self, node):
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"Binds the Fortran file extensions create :py:class:`waflib.Tools.fc.fc` instances"
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return self.create_compiled_task('fc', node)
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@conf
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def modfile(conf, name):
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"""
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Turns a module name into the right module file name.
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Defaults to all lower case.
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"""
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if name.find(':') >= 0:
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# Depending on a submodule!
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separator = conf.env.FC_SUBMOD_SEPARATOR or '@'
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# Ancestors of the submodule will be prefixed to the
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# submodule name, separated by a colon.
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modpath = name.split(':')
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# Only the ancestor (actual) module and the submodule name
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# will be used for the filename.
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modname = modpath[0] + separator + modpath[-1]
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suffix = conf.env.FC_SUBMOD_SUFFIX or '.smod'
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else:
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modname = name
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suffix = '.mod'
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return {'lower' :modname.lower() + suffix.lower(),
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'lower.MOD' :modname.lower() + suffix.upper(),
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'UPPER.mod' :modname.upper() + suffix.lower(),
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'UPPER' :modname.upper() + suffix.upper()}[conf.env.FC_MOD_CAPITALIZATION or 'lower']
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def get_fortran_tasks(tsk):
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"""
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Obtains all fortran tasks from the same build group. Those tasks must not have
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the attribute 'nomod' or 'mod_fortran_done'
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:return: a list of :py:class:`waflib.Tools.fc.fc` instances
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"""
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bld = tsk.generator.bld
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tasks = bld.get_tasks_group(bld.get_group_idx(tsk.generator))
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return [x for x in tasks if isinstance(x, fc) and not getattr(x, 'nomod', None) and not getattr(x, 'mod_fortran_done', None)]
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class fc(Task.Task):
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"""
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Fortran tasks can only run when all fortran tasks in a current task group are ready to be executed
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This may cause a deadlock if some fortran task is waiting for something that cannot happen (circular dependency)
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Should this ever happen, set the 'nomod=True' on those tasks instances to break the loop
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"""
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color = 'GREEN'
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run_str = '${FC} ${FCFLAGS} ${FCINCPATH_ST:INCPATHS} ${FCDEFINES_ST:DEFINES} ${_FCMODOUTFLAGS} ${FC_TGT_F}${TGT[0].abspath()} ${FC_SRC_F}${SRC[0].abspath()} ${FCPPFLAGS}'
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vars = ["FORTRANMODPATHFLAG"]
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def scan(self):
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"""Fortran dependency scanner"""
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tmp = fc_scan.fortran_parser(self.generator.includes_nodes)
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tmp.task = self
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tmp.start(self.inputs[0])
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return (tmp.nodes, tmp.names)
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def runnable_status(self):
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"""
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Sets the mod file outputs and the dependencies on the mod files over all Fortran tasks
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executed by the main thread so there are no concurrency issues
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"""
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if getattr(self, 'mod_fortran_done', None):
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return super(fc, self).runnable_status()
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# now, if we reach this part it is because this fortran task is the first in the list
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bld = self.generator.bld
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# obtain the fortran tasks
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lst = get_fortran_tasks(self)
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# disable this method for other tasks
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for tsk in lst:
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tsk.mod_fortran_done = True
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# wait for all the .f tasks to be ready for execution
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# and ensure that the scanners are called at least once
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for tsk in lst:
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ret = tsk.runnable_status()
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if ret == Task.ASK_LATER:
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# we have to wait for one of the other fortran tasks to be ready
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# this may deadlock if there are dependencies between fortran tasks
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# but this should not happen (we are setting them here!)
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for x in lst:
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x.mod_fortran_done = None
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return Task.ASK_LATER
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ins = Utils.defaultdict(set)
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outs = Utils.defaultdict(set)
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# the .mod files to create
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for tsk in lst:
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key = tsk.uid()
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for x in bld.raw_deps[key]:
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if x.startswith('MOD@'):
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name = bld.modfile(x.replace('MOD@', ''))
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node = bld.srcnode.find_or_declare(name)
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tsk.set_outputs(node)
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outs[node].add(tsk)
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# the .mod files to use
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for tsk in lst:
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key = tsk.uid()
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for x in bld.raw_deps[key]:
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if x.startswith('USE@'):
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name = bld.modfile(x.replace('USE@', ''))
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node = bld.srcnode.find_resource(name)
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if node and node not in tsk.outputs:
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if not node in bld.node_deps[key]:
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bld.node_deps[key].append(node)
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ins[node].add(tsk)
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# if the intersection matches, set the order
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for k in ins.keys():
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for a in ins[k]:
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a.run_after.update(outs[k])
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for x in outs[k]:
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self.generator.bld.producer.revdeps[x].add(a)
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# the scanner cannot output nodes, so we have to set them
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# ourselves as task.dep_nodes (additional input nodes)
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tmp = []
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for t in outs[k]:
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tmp.extend(t.outputs)
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a.dep_nodes.extend(tmp)
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a.dep_nodes.sort(key=lambda x: x.abspath())
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# the task objects have changed: clear the signature cache
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for tsk in lst:
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try:
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delattr(tsk, 'cache_sig')
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except AttributeError:
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pass
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return super(fc, self).runnable_status()
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class fcprogram(ccroot.link_task):
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"""Links Fortran programs"""
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color = 'YELLOW'
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run_str = '${FC} ${LINKFLAGS} ${FCLNK_SRC_F}${SRC} ${FCLNK_TGT_F}${TGT[0].abspath()} ${RPATH_ST:RPATH} ${FCSTLIB_MARKER} ${FCSTLIBPATH_ST:STLIBPATH} ${FCSTLIB_ST:STLIB} ${FCSHLIB_MARKER} ${FCLIBPATH_ST:LIBPATH} ${FCLIB_ST:LIB} ${LDFLAGS}'
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inst_to = '${BINDIR}'
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class fcshlib(fcprogram):
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"""Links Fortran libraries"""
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inst_to = '${LIBDIR}'
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class fcstlib(ccroot.stlink_task):
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"""Links Fortran static libraries (uses ar by default)"""
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pass # do not remove the pass statement
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class fcprogram_test(fcprogram):
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"""Custom link task to obtain compiler outputs for Fortran configuration tests"""
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def runnable_status(self):
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"""This task is always executed"""
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ret = super(fcprogram_test, self).runnable_status()
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if ret == Task.SKIP_ME:
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ret = Task.RUN_ME
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return ret
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def exec_command(self, cmd, **kw):
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"""Stores the compiler std our/err onto the build context, to bld.out + bld.err"""
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bld = self.generator.bld
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kw['shell'] = isinstance(cmd, str)
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kw['stdout'] = kw['stderr'] = Utils.subprocess.PIPE
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kw['cwd'] = self.get_cwd()
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bld.out = bld.err = ''
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bld.to_log('command: %s\n' % cmd)
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kw['output'] = 0
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try:
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(bld.out, bld.err) = bld.cmd_and_log(cmd, **kw)
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except Errors.WafError:
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return -1
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if bld.out:
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bld.to_log('out: %s\n' % bld.out)
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if bld.err:
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bld.to_log('err: %s\n' % bld.err)
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