sbig_controller.py 10.8 KB
#!/usr/bin/env python3

"""Socket Client Gemini Telescope implementation
To be used as a concrete class to system control a Gemini telescope
"""

# Standard library imports
#import socket
#import logging
import sys
import time

# Third party imports
# None

# Local application imports
sys.path.append('../../..')
from device_controller.abstract_component.base import DeviceControllerAbstract, UnknownCommandException
from device_controller.abstract_component.detector_sensor import DeviceControllerDetectorSensor
from device_controller.abstract_component.filter_selector import DeviceControllerFilterSelector
from device_controller.abstract_component.detector_shutter import DeviceControllerDetectorShutter

#from src.client.socket_client_telescope_abstract import Position, UnknownCommandException, TimeoutException, SocketClientTelescopeAbstract
##from src_socket.client.socket_client_telescope_abstract import *
#from device_controller.abstract_component.telescope_controller_abstract import *
#from device_controller.abstract_component.telescope import *
from device_controller.concrete_component.sbig.sbig_simulator import DeviceSimulatorSBIG 


# Default timeouts
TIMEOUT_SEND = 10
TIMEOUT_RECEIVE = 10

# COMMON CONSTANTS WITH SERVER
TERMINATOR = '\x00'
COMMAND5 = '050000'
#COMMAND6_SIMPLE = '\x00\x06'
COMMAND6 = '\x00\x06\x00'
COMMAND6_SIMPLE = '6'




##class SocketClientTelescopeGemini(SocketClientTelescopeAbstract):
#class DeviceControllerSBIG(DeviceControllerAbstract):
class DeviceControllerSBIG(
    # Base class:
    #DeviceControllerAbstract,
    # Components (list of my capabilities or roles):
    DeviceControllerDetectorSensor,
    DeviceControllerFilterSelector,
    DeviceControllerDetectorShutter):

    # STAMP : 
    # 00 00 00 00 00 00 00' (8 bytes from '00' to 'FF', 1st one is LOW BYTE)
    # ex: 01 + STAMP = 01 00 00 00 00 00 00 00' (8 bytes from '00' to 'FF', 1st one is LOW BYTE)
    #STAMP_FILLER = '00000000000000' 
    #MY_FULL_STAMP = MYSTAMP + STAMP_FILLER

    # Initialize request number (will be increased at each request)
    request_num = 0
    # Request number stands on 4 digits (from 0001 to 9999)
    request_num_nb_digits = 4
    # For 4 digits, we should get the format '{:04d}':
    request_num_format = '{:0'+str(request_num_nb_digits)+'d}'
    # Stamp filler with 0
    STAMP_FILLER = '0' * (8 - request_num_nb_digits)
    
    #data = " ".join(sys.argv[1:])
    #data_to_send = bytes(data + "\n", "utf-8")

    ''' Commands dictionary
    NEW foramt is:
    'generic-command-name': ['native-command-name', 'awaited_result_if_ok', 'other-awaited-results if not ok...],
    
    Old format was:
    'CMD-NAME': ['cmd-get', 'awaited_res_ok_for_get', 'cmd-set', 'awaited_res_ok_for_set', 'comment'],
    '''
    # @overwrite
    _cmd_device_concrete = {
        # GET @ SET commands
        'get_ack': [COMMAND6, 'G', 'B','b','S'], # B# while the initial startup message is being displayed (new in L4), b# while waiting for the selection of the Startup Mode, S# during a Cold Start (new in L4), G# after completed startup.

        # get_radec and set_radec are already defined in abstract class

        'get_timezone': ['GG'],
        'set_timezone': ['SG', '1'],

        'get_date': ['GC'],
        'set_date': ['SC'],
        'get_time': ['GL'],
        'set_time': ['SL'],

        # DO commands
        # defined in abstract class:
        #'do_init': ['do_init'],
        'do_park': ['hP'],
        'do_warm_start': ['bW'],
        'do_stop': ['Q'],
    }


    # @overwrite
    # Gemini is using UDP
    def __init__(self, device_host:str="localhost", device_port:int=11110, DEBUG=False):
        #super().__init__(device_host, device_port, "SOCKET-UDP", 1024, DEBUG)
        ##DeviceControllerAbstract.__init__(self, device_host, device_port, "SOCKET-UDP", 1024, DEBUG, DeviceSimulatorSBIG)
        super().__init__(device_host, device_port, "SOCKET-UDP", 1024, DEBUG, DeviceSimulatorSBIG)
        print('*****************************')
        print('*****************************')
        print('*****************************')
        #print(DeviceControllerSBIG.mro())
        #for c in DeviceControllerSBIG.mro(): print(c.__name__)
        #print(self.mro())
        print('*****************************')
        print('*****************************')
        print('*****************************')

        ''' 
        # Ancienne Solution à base de COMPOSITION :
        myDC_detector_sensor = DeviceControllerDetectorSensor(device_host, device_port, "SOCKET-UDP", 1024, DEBUG)
        myDC_detector_shutter = DeviceControllerDetectorShutter(device_host, device_port, "SOCKET-UDP", 1024, DEBUG)
        myDC_filter_selector = DeviceControllerFilterSelector(device_host, device_port, "SOCKET-UDP", 1024, DEBUG)
        # @override superclass empty list
        self._my_dc_components = [myDC_detector_sensor, myDC_detector_shutter, myDC_filter_selector]
        '''

        
    # @overwrite
    def formated_cmd(self, cmd:str, values_to_set:str=None)->str:
        if values_to_set != None: 
            for value_to_set in values_to_set:
                cmd += value_to_set
        if cmd not in (COMMAND6, COMMAND5):
            cmd += '#' 
            if cmd not in ('bC#','bW#','bR#'): 
                cmd=':'+cmd
        return cmd


        
    #@override
    def encapsulate_data_to_send(self, command:str):
        r''' Encapsulate useful data to be ready for sending
        
        If data is "complete" (with stamp, and well formatted), send it as is
        Otherwise, add stamp and format it

        3 types of commands:
        - TYPE1: '06' or '050000'
        - TYPE2: ':cde#' (mainly ':??#' - i.e : ':GD#', ':GR#', ...)
        - TYPE3: 'b?#' (bC# = Cold Start, bW# = selecting Warm Start, bR# = selecting Warm Restart)
        
        :Examples:
        >>> tele = DeviceControllerTelescopeGemini("localhost", 11110, DEBUG=False)
        Starting device simulator on (host:port):  localhost:11110
        >>> tele.encapsulate_data_to_send(':GD#')
        '00010000:GD#\x00'
        >>> tele.encapsulate_data_to_send(':GR#')
        '00020000:GR#\x00'
        >>> tele.close()

        # ne marche pas => '00010000:GD#\x00'
        '''

        ####return bytes(self.MYSTAMP + self.STAMP_FILLER + data + "\n", "utf-8")
        
        # TYPE1
        #print("command to encapsulate is", repr(command))
        
        if command == COMMAND6_SIMPLE: command = COMMAND6
        
        if command not in (COMMAND6, COMMAND5):
            # TYPE2 or 3
            #has_starting_car = data.find(':') > -1
            if len(command) < 3: raise UnknownCommandException()
            if not (command[-1]=='#'): raise UnknownCommandException()
            if not (command[0]==':') and command not in ('bC#','bW#','bR#'): raise UnknownCommandException()
            #stamp,command = data.split(':',1)
        
        #if command.find('#')>-1: command,_ = command.split('#',1)
        self.request_num += 1
        # Format to request_num_nb_digits (4) digits
        request_num_str = self.request_num_format.format(self.request_num)
        self.last_stamp = request_num_str + self.STAMP_FILLER
        
        #if command == COMMAND6_SIMPLE: command = COMMAND6_REAL
        data_encapsulated = self.last_stamp + command + TERMINATOR
        #return super().encapsulate_data_to_send(data_encapsulated)
        #return self.my_channel.encapsulate_data_to_send(data_encapsulated)
        return data_encapsulated

        #return bytes(data + "\n", "utf-8")
        ####return bytes(self.MYSTAMP + self.STAMP_FILLER + data + "\n", "utf-8")

    # @overwrite
    def uncap_received_data(self, data_received:str)->str:
        #data_received = super().uncap_received_data(data_received_bytes)
        ##data_received = self.my_channel.uncap_received_data(data_received_bytes)

        #>>> tele.uncap_received_data(b'001700001\x00')

        r"""
            Extract useful data from received raw data 

        >>> tele = DeviceControllerTelescopeGemini("localhost", 11110, DEBUG=False)
        Starting device simulator on (host:port):  localhost:11110
        >>> tele.last_stamp = '00170000'
        >>> tele.uncap_received_data('001700001#')
        '1'
        >>> tele.close()
        """

        print("data_received_bytes type is", type(data_received))
        print("data received is", data_received)
        ##data_received = data_received_bytes.decode()
        #print("data_received is", data_received)
        # Remove STAMP (and \n at the end):
        #useful_data = data_received.split(self.MY_FULL_STAMP)[1][:-1]
        useful_data = data_received.split(self.last_stamp)[1][:-1]
        # Remove '#' at the end, if exists
        if useful_data[-1] == '#': useful_data = useful_data[:-1]
        return useful_data


    # @overwrite
    #def get_ack(self): return self.execute_native_cmd(COMMAND6, 'G')
    #def do_warm_start(self): return self.execute_native_cmd('bW')

    #TODO: déplacer dans parent avec nouvelles commandes set_speed_slew, set_speed_average, ...
    # @override
    def set_speed(self, speed_rate):
        native_cmd = None
        # quick
        if speed_rate == "slew": native_cmd = 'RS'
        # average
        if speed_rate == "average": native_cmd = 'RM'
        # slow
        if speed_rate == "center": native_cmd = 'RC'
        # very slow
        if speed_rate == "guide": native_cmd = 'RG'
        if not native_cmd: raise UnknownCommandException(speed_rate)
        return self.execute_unformated_native_cmd(native_cmd)


if __name__ == "__main__":
    
    import doctest
    doctest.testmod()
    exit()
    """
    # Classic usage:
    #tele_ctrl = SocketClient_Gemini(HOST, PORT)
    # More elegant usage, using "with":
    ##with SocketClientTelescopeGemini("localhost", 11110, DEBUG=False) as tele_ctrl:
    with TelescopeControllerGemini("localhost", 11110, DEBUG=False) as tele_ctrl:
        
        # 0) CONNECT to server (only for TCP, does nothing for UDP)
        tele_ctrl._connect_to_server()
        
        #tele_ctrl.config()
        
        # Send some commands to the Telescope
        #pos = tele_ctrl.get_position()
        
        # Do EXPERT mode execution
        while True:
            
            # 1) SEND REQUEST data to server
            # saisie de la requête au clavier et suppression des espaces des 2 côtés
            data = input("(EXPERT MODE) REQUEST TO SERVER [ex: ':GD#' (Get Dec), ':GR#' (Get RA)']: ").strip()
            # test d'arrêt
            if data == "": break
            #data_to_send = bytes(data + "\n", "utf-8")
            tele_ctrl.send_data(data)
            #mysock.sendto("%s" % data, (HOST, PORT))
            #print("Sent: {}".format(data))
    
            # 2) RECEIVE REPLY data from server
            data_received = tele_ctrl.receive_data()
            #reponse, adr = mysock.recvfrom(buf)
            #print("Received: {}".format(data_received))
            #print("Useful data received: {}".format(data_useful))
            print('\n')

        #tele_ctrl.close()
    """