mirror of https://gitlab.com/pamhyr/pamhyr2
Solver: Code refactoring.
parent
76e90f417e
commit
51c912f3a8
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@ -59,17 +59,6 @@ class AbstractSolver(object):
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self._name = name
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self._description = ""
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self._path_input = ""
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self._path_solver = ""
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self._path_output = ""
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self._cmd_input = ""
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self._cmd_solver = ""
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self._cmd_output = ""
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self._process = None
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self._output = None
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# Last study running
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self._study = None
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@ -92,7 +81,6 @@ class AbstractSolver(object):
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("all_init_time", "000:00:00:00"),
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("all_final_time", "999:99:00:00"),
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("all_timestep", "300.0"),
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("all_command_line_arguments", ""),
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]
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return lst
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@ -141,18 +129,6 @@ class AbstractSolver(object):
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def description(self, description):
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self._description = description
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def set_input(self, path, cmd):
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self._path_input = path
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self._cmd_input = cmd
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def set_solver(self, path, cmd):
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self._path_solver = path
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self._cmd_solver = cmd
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def set_output(self, path, cmd):
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self._path_output = path
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self._cmd_output = cmd
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##########
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# Export #
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##########
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@ -160,41 +136,6 @@ class AbstractSolver(object):
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def export(self, study, repertory, qlog=None):
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raise NotImplementedMethodeError(self, self.export)
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def cmd_args(self, study):
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"""Return solver command line arguments list
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Returns:
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Command line arguments list
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"""
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params = study.river.get_params(self.type)
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args = params.get_by_key("all_command_line_arguments")
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return args.split(" ")
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def input_param(self):
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"""Return input command line parameter(s)
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Returns:
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Returns input parameter(s) string
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"""
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raise NotImplementedMethodeError(self, self.input_param)
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def output_param(self):
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"""Return output command line parameter(s)
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Returns:
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Returns output parameter(s) string
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"""
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raise NotImplementedMethodeError(self, self.output_param)
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def log_file(self):
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"""Return log file name
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Returns:
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Returns log file name as string
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"""
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raise NotImplementedMethodeError(self, self.log_file)
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###########
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# RESULTS #
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###########
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@ -208,195 +149,17 @@ class AbstractSolver(object):
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# Run #
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#######
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def _install_dir(self):
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return os.path.abspath(
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os.path.join(
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os.path.dirname(__file__),
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"..", ".."
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)
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)
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def _format_command(self, study, cmd, path=""):
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"""Format command line
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Args:
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cmd: The command line
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path: Optional path string (replace @path in cmd)
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Returns:
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The executable and list of arguments
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"""
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# HACK: Works in most case... Trust me i'm an engineer
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cmd = cmd.replace("@install_dir", self._install_dir())
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cmd = cmd.replace("@path", path.replace(" ", "%20"))
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cmd = cmd.replace("@input", self.input_param())
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cmd = cmd.replace("@output", self.output_param())
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cmd = cmd.replace("@dir", self._process.workingDirectory())
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cmd = cmd.replace("@args", " ".join(self.cmd_args(study)))
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logger.debug(f"! {cmd}")
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if cmd[0] == "\"":
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# Command line executable path is between " char
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cmd = cmd.split("\"")
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exe = cmd[1].replace("%20", " ")
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args = list(
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filter(
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lambda s: s != "",
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"\"".join(cmd[2:]).split(" ")[1:]
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)
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)
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else:
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# We suppose the command line executable path as no space char
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cmd = cmd.replace("\\ ", "&_&").split(" ")
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exe = cmd[0].replace("&_&", " ")
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args = list(
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filter(
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lambda s: s != "",
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map(lambda s: s.replace("&_&", " "), cmd[1:])
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)
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)
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logger.info(f"! {exe} {args}")
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return exe, args
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def run_input_data_fomater(self, study):
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if self._cmd_input == "":
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self._run_next(study)
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return True
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cmd = self._cmd_input
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exe, args = self._format_command(study, cmd, self._path_input)
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if not os.path.exists(exe):
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error = f"[ERROR] Path {exe} do not exists"
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logger.info(error)
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return error
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self._process.start(
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exe, args,
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)
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return True
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def run_solver(self, study):
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if self._cmd_solver == "":
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self._run_next(study)
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return True
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cmd = self._cmd_solver
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exe, args = self._format_command(study, cmd, self._path_solver)
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if not os.path.exists(exe):
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error = f"[ERROR] Path {exe} do not exists"
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logger.info(error)
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return error
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self._process.start(
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exe, args,
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)
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self._process.waitForStarted()
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self._status = STATUS.RUNNING
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return True
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def run_output_data_fomater(self, study):
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if self._cmd_output == "":
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self._run_next(study)
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return True
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cmd = self._cmd_output
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exe, args = self._format_command(study, cmd, self._path_output)
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if not os.path.exists(exe):
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error = f"[ERROR] Path {exe} do not exists"
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logger.info(error)
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return error
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self._process.start(
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exe, args,
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)
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return True
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def _data_ready(self):
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s = self._process.readAll().data().decode()
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if self._output is not None:
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for x in s.split('\n'):
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self._output.put(x)
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def _run_next(self, study):
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self._step += 1
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if self._step < len(self._runs):
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res = self._runs[self._step](study)
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if res is not True:
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self._output.put(res)
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else:
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self._status = STATUS.STOPED
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def _finished(self, study, exit_code, exit_status):
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if self._output is not None:
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self._output.put(exit_code)
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self._run_next(study)
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def run(self, study, process=None, output_queue=None):
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self._study = study
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if process is not None:
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self._process = process
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if output_queue is not None:
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self._output = output_queue
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self._process.readyRead.connect(self._data_ready)
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self._process.finished.connect(
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lambda c, s: self._finished(study, c, s))
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self._runs = [
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self.run_input_data_fomater,
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self.run_solver,
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self.run_output_data_fomater,
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]
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self._step = 0
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# Run first step
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res = self._runs[0](study)
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if res is not True:
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self._output.put(res)
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def run(self, study):
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raise NotImplementedMethodeError(self, self.run)
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def kill(self):
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if self._process is None:
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return True
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self._process.kill()
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self._status = STATUS.STOPED
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return True
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raise NotImplementedMethodeError(self, self.kill)
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def start(self, study, process=None):
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if _signal:
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# Solver is PAUSED, so continue execution
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if self._status == STATUS.PAUSED:
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os.kill(self._process.pid(), SIGCONT)
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self._status = STATUS.RUNNING
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return True
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self.run(study, process)
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return True
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raise NotImplementedMethodeError(self, self.start)
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def pause(self):
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if _signal:
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if self._process is None:
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return False
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# Send SIGSTOP to PAUSED solver
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os.kill(self._process.pid(), SIGSTOP)
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self._status = STATUS.PAUSED
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return True
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return False
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raise NotImplementedMethodeError(self, self.pause)
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def stop(self):
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if self._process is None:
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return False
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self._process.terminate()
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self._status = STATUS.STOPED
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return True
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raise NotImplementedMethodeError(self, self.stop)
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@ -0,0 +1,327 @@
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# CommandLine.py -- Pamhyr
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# Copyright (C) 2023 INRAE
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <https://www.gnu.org/licenses/>.
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# -*- coding: utf-8 -*-
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import os
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import logging
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from tools import timer
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try:
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# Installation allow Unix-like signal
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from signal import SIGTERM, SIGSTOP, SIGCONT
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_signal = True
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except Exception:
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_signal = False
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from enum import Enum
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from Model.Except import NotImplementedMethodeError
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from Model.Results.Results import Results
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from Model.Results.River.River import River, Reach, Profile
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from Solver.ASolver import AbstractSolver, STATUS
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logger = logging.getLogger()
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class CommandLineSolver(AbstractSolver):
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_type = ""
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def __init__(self, name):
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super(CommandLineSolver, self).__init__(name)
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self._current_process = None
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self._status = STATUS.NOT_LAUNCHED
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self._path_input = ""
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self._path_solver = ""
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self._path_output = ""
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self._cmd_input = ""
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self._cmd_solver = ""
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self._cmd_output = ""
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self._process = None
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self._output = None
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# Last study running
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self._study = None
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@classmethod
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def default_parameters(cls):
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lst = super(CommandLineSolver, cls).default_parameters()
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lst += [
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("all_command_line_arguments", ""),
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]
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return lst
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def set_input(self, path, cmd):
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self._path_input = path
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self._cmd_input = cmd
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def set_solver(self, path, cmd):
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self._path_solver = path
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self._cmd_solver = cmd
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def set_output(self, path, cmd):
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self._path_output = path
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self._cmd_output = cmd
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##########
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# Export #
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##########
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def cmd_args(self, study):
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"""Return solver command line arguments list
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Returns:
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Command line arguments list
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"""
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params = study.river.get_params(self.type)
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args = params.get_by_key("all_command_line_arguments")
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return args.split(" ")
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def input_param(self):
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"""Return input command line parameter(s)
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Returns:
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Returns input parameter(s) string
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"""
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raise NotImplementedMethodeError(self, self.input_param)
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def output_param(self):
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"""Return output command line parameter(s)
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Returns:
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Returns output parameter(s) string
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"""
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raise NotImplementedMethodeError(self, self.output_param)
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def log_file(self):
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"""Return log file name
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Returns:
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Returns log file name as string
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"""
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raise NotImplementedMethodeError(self, self.log_file)
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#######
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# Run #
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#######
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def _install_dir(self):
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return os.path.abspath(
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os.path.join(
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os.path.dirname(__file__),
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"..", ".."
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)
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)
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def _format_command(self, study, cmd, path=""):
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"""Format command line
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Args:
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cmd: The command line
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path: Optional path string (replace @path in cmd)
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Returns:
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The executable and list of arguments
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"""
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# HACK: Works in most case... Trust me i'm an engineer
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cmd = cmd.replace("@install_dir", self._install_dir())
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cmd = cmd.replace("@path", path.replace(" ", "%20"))
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cmd = cmd.replace("@input", self.input_param())
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cmd = cmd.replace("@output", self.output_param())
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cmd = cmd.replace("@dir", self._process.workingDirectory())
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cmd = cmd.replace("@args", " ".join(self.cmd_args(study)))
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logger.debug(f"! {cmd}")
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if cmd[0] == "\"":
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# Command line executable path is between " char
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cmd = cmd.split("\"")
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exe = cmd[1].replace("%20", " ")
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args = list(
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filter(
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lambda s: s != "",
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"\"".join(cmd[2:]).split(" ")[1:]
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)
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)
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else:
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# We suppose the command line executable path as no space char
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cmd = cmd.replace("\\ ", "&_&").split(" ")
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exe = cmd[0].replace("&_&", " ")
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args = list(
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filter(
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lambda s: s != "",
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map(lambda s: s.replace("&_&", " "), cmd[1:])
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)
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)
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logger.info(f"! {exe} {args}")
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return exe, args
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def run_input_data_fomater(self, study):
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if self._cmd_input == "":
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self._run_next(study)
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return True
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cmd = self._cmd_input
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exe, args = self._format_command(study, cmd, self._path_input)
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if not os.path.exists(exe):
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error = f"[ERROR] Path {exe} do not exists"
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logger.info(error)
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return error
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self._process.start(
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exe, args,
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)
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return True
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def run_solver(self, study):
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if self._cmd_solver == "":
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self._run_next(study)
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return True
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cmd = self._cmd_solver
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exe, args = self._format_command(study, cmd, self._path_solver)
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if not os.path.exists(exe):
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error = f"[ERROR] Path {exe} do not exists"
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logger.info(error)
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return error
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self._process.start(
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exe, args,
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)
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self._process.waitForStarted()
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self._status = STATUS.RUNNING
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return True
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def run_output_data_fomater(self, study):
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if self._cmd_output == "":
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self._run_next(study)
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return True
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cmd = self._cmd_output
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exe, args = self._format_command(study, cmd, self._path_output)
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if not os.path.exists(exe):
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error = f"[ERROR] Path {exe} do not exists"
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logger.info(error)
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return error
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self._process.start(
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exe, args,
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)
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return True
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def _data_ready(self):
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# Read process output and put lines in queue
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s = self._process.readAll().data().decode()
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if self._output is not None:
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for x in s.split('\n'):
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self._output.put(x)
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def _run_next(self, study):
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self._step += 1
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if self._step < len(self._runs):
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res = self._runs[self._step](study)
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if res is not True:
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self._output.put(res)
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else:
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self._status = STATUS.STOPED
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|
||||
def _finished(self, study, exit_code, exit_status):
|
||||
if self._output is not None:
|
||||
self._output.put(exit_code)
|
||||
|
||||
self._run_next(study)
|
||||
|
||||
def run(self, study, process=None, output_queue=None):
|
||||
self._study = study
|
||||
|
||||
# Replace old values if needed
|
||||
if process is not None:
|
||||
self._process = process
|
||||
if output_queue is not None:
|
||||
self._output = output_queue
|
||||
|
||||
# Connect / reconnect signal
|
||||
self._process.readyRead.connect(self._data_ready)
|
||||
self._process.finished.connect(
|
||||
lambda c, s: self._finished(study, c, s))
|
||||
|
||||
# Prepare running step
|
||||
self._runs = [
|
||||
self.run_input_data_fomater,
|
||||
self.run_solver,
|
||||
self.run_output_data_fomater,
|
||||
]
|
||||
self._step = 0
|
||||
|
||||
# Run first step
|
||||
res = self._runs[0](study)
|
||||
if res is not True:
|
||||
self._output.put(res)
|
||||
|
||||
def kill(self):
|
||||
if self._process is None:
|
||||
return True
|
||||
|
||||
self._process.kill()
|
||||
self._status = STATUS.STOPED
|
||||
return True
|
||||
|
||||
def start(self, study, process=None):
|
||||
if _signal:
|
||||
# Solver is PAUSED, so continue execution
|
||||
if self._status == STATUS.PAUSED:
|
||||
os.kill(self._process.pid(), SIGCONT)
|
||||
self._status = STATUS.RUNNING
|
||||
return True
|
||||
|
||||
self.run(study, process)
|
||||
return True
|
||||
|
||||
def pause(self):
|
||||
if _signal:
|
||||
if self._process is None:
|
||||
return False
|
||||
|
||||
# Send SIGSTOP to PAUSED solver
|
||||
os.kill(self._process.pid(), SIGSTOP)
|
||||
self._status = STATUS.PAUSED
|
||||
return True
|
||||
return False
|
||||
|
||||
def stop(self):
|
||||
if self._process is None:
|
||||
return False
|
||||
|
||||
self._process.terminate()
|
||||
self._status = STATUS.STOPED
|
||||
return True
|
||||
|
|
@ -16,12 +16,9 @@
|
|||
|
||||
# -*- coding: utf-8 -*-
|
||||
|
||||
from Solver.ASolver import (
|
||||
AbstractSolver, STATUS
|
||||
)
|
||||
from Solver.CommandLine import CommandLineSolver
|
||||
|
||||
|
||||
class GenericSolver(AbstractSolver):
|
||||
class GenericSolver(CommandLineSolver):
|
||||
_type = "generic"
|
||||
|
||||
def __init__(self, name):
|
||||
|
|
|
|||
|
|
@ -22,7 +22,7 @@ import numpy as np
|
|||
|
||||
from tools import timer
|
||||
|
||||
from Solver.ASolver import AbstractSolver
|
||||
from Solver.CommandLine import CommandLineSolver
|
||||
from Checker.Mage import MageNetworkGraphChecker
|
||||
|
||||
from Model.Results.Results import Results
|
||||
|
|
@ -41,7 +41,7 @@ def mage_file_open(filepath, mode):
|
|||
return f
|
||||
|
||||
|
||||
class Mage(AbstractSolver):
|
||||
class Mage(CommandLineSolver):
|
||||
_type = "mage"
|
||||
|
||||
def __init__(self, name):
|
||||
|
|
|
|||
Loading…
Reference in New Issue