[3] | 1 |
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| 2 | import time
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| 3 |
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| 4 | #------------------------------------------------------------------------------
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| 5 |
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[298] | 6 | ## @package mlx.pyuipc_emu
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| 7 | #
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| 8 | # A very simple PyUIPC emulator.
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| 9 | #
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| 10 | # This is not used currently.
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| 11 |
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| 12 | #------------------------------------------------------------------------------
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| 13 |
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| 14 | ## The ratio between kg and lbs
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[3] | 15 | KGTOLBS=1/0.4536
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| 16 |
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[298] | 17 | ## Feet to metres
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[3] | 18 | FEETTOMETRES=0.3048
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| 19 |
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| 20 | #------------------------------------------------------------------------------
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| 21 |
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| 22 | def interpolate_proportion(proportion, value0, value1):
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| 23 | """
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| 24 | Interpolate between value0 and value1 using the given proportion.
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| 25 | """
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| 26 | return value0 + (value1-value0)*1.0*proportion
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| 27 |
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| 28 | #------------------------------------------------------------------------------
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| 29 |
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| 30 | def interpolate(point0, point, point1, value0, value1):
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| 31 | """
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| 32 | Interpolate linearly between the given points for the given
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| 33 | values.
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| 34 | """
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| 35 | if point0==point1:
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| 36 | if point>=point1: return value1
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| 37 | else: return value0
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| 38 | else:
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| 39 | return interpolate_proportion((point-point0)*1.0/(point1-point0),
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| 40 | value0, value1)
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| 41 |
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| 42 | #------------------------------------------------------------------------------
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| 43 |
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[298] | 44 | ## Version constants
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[3] | 45 | SIM_ANY=0
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| 46 | SIM_FS98=1
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| 47 | SIM_FS2K=2
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| 48 | SIM_CFS2=3
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| 49 | SIM_CFS1=4
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| 50 | SIM_FLY=5
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| 51 | SIM_FS2K2=6
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| 52 | SIM_FS2K4=7
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| 53 |
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| 54 | #------------------------------------------------------------------------------
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| 55 |
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[298] | 56 | ## Error constants
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[3] | 57 | ERR_OK=0
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| 58 | ERR_OPEN=1
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| 59 | ERR_NOFS=2
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| 60 | ERR_REGMSG=3
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| 61 | ERR_ATOM=4
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| 62 | ERR_MAP=5
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| 63 | ERR_VIEW=6
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| 64 | ERR_VERSION=7
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| 65 | ERR_WRONGFS=8
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| 66 | ERR_NOTOPEN=9
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| 67 | ERR_NODATA=10
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| 68 | ERR_TIMEOUT=11
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| 69 | ERR_SENDMSG=12
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| 70 | ERR_DATA=13
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| 71 | ERR_RUNNING=14
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| 72 | ERR_SIZE=15
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| 73 |
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| 74 | #------------------------------------------------------------------------------
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| 75 |
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[298] | 76 | ## The version of FSUIPC
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[3] | 77 | fsuipc_version=0x0401
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| 78 | lib_version=0x0302
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| 79 | fs_version=SIM_FS2K4
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| 80 |
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| 81 | #------------------------------------------------------------------------------
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| 82 |
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| 83 | class FSUIPCException(Exception):
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| 84 | """
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| 85 | FSUIPC exception class. It contains a member variable named
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| 86 | errorCode. The string is a text describing the error.
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| 87 | """
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| 88 |
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| 89 | errors=["OK",
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| 90 | "Attempt to Open when already Open",
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| 91 | "Cannot link to FSUIPC or WideClient",
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| 92 | "Failed to Register common message with Windows",
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| 93 | "Failed to create Atom for mapping filename",
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| 94 | "Failed to create a file mapping object",
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| 95 | "Failed to open a view to the file map",
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| 96 | "Incorrect version of FSUIPC, or not FSUIPC",
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| 97 | "Sim is not version requested",
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| 98 | "Call cannot execute, link not Open",
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| 99 | "Call cannot execute: no requests accumulated",
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| 100 | "IPC timed out all retries",
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| 101 | "IPC sendmessage failed all retries",
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| 102 | "IPC request contains bad data",
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| 103 | "Maybe running on WideClient, but FS not running on Server, or wrong FSUIPC",
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| 104 | "Read or Write request cannot be added, memory for Process is full"]
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| 105 |
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| 106 | def __init__(self, errorCode):
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| 107 | """
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| 108 | Construct the exception
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| 109 | """
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| 110 | if errorCode<len(self.errors):
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| 111 | self.errorString = self.errors[errorCode]
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| 112 | else:
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| 113 | self.errorString = "Unknown error"
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| 114 | Exception.__init__(self, self.errorString)
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| 115 | self.errorCode = errorCode
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| 116 |
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| 117 | def __str__(self):
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| 118 | """
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| 119 | Convert the excption to string
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| 120 | """
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| 121 | return "FSUIPC error: %d (%s)" % (self.errorCode, self.errorString)
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| 122 |
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| 123 | #------------------------------------------------------------------------------
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| 124 |
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| 125 | open_count=0
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| 126 | read_count=0
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| 127 |
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| 128 | #------------------------------------------------------------------------------
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| 129 |
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| 130 | def open(request):
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| 131 | """
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| 132 | Open the connection.
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| 133 | """
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| 134 |
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| 135 | global open_count, read_count
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| 136 |
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| 137 | open_count += 1
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| 138 | if open_count<5:
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| 139 | raise FSUIPCException(open_count+2)
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| 140 | elif open_count==5:
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| 141 | return True
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| 142 | else:
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| 143 | raise FSUIPCException(ERR_OPEN)
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| 144 |
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| 145 | #------------------------------------------------------------------------------
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| 146 |
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| 147 | def prepare_data(pattern, forRead = True):
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| 148 | """
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| 149 | Prepate the given pattern for reading and/or writing
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| 150 | """
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| 151 | return pattern
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| 152 |
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| 153 | #------------------------------------------------------------------------------
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| 154 |
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| 155 | flight=None
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| 156 | schedule_points=None
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| 157 |
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| 158 | #------------------------------------------------------------------------------
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| 159 |
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| 160 | def set_flight(f):
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| 161 | """
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| 162 | Set the flight to use for providing the data
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| 163 | """
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| 164 |
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| 165 | global flight, schedule_points, read_count
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| 166 |
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| 167 | flight=f
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| 168 | schedule_points=flight.get_schedule_points()
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| 169 | read_count = 0
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| 170 |
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| 171 | #------------------------------------------------------------------------------
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| 172 |
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| 173 | fuel_weight=4.5
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| 174 | centre_tank_capacity=12900
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| 175 | side_tank_capacity=3900
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| 176 |
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| 177 | def read(data):
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| 178 | """
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| 179 | Read the given data.
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| 180 | """
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| 181 |
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| 182 | global open_count, read_count
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| 183 | if open_count<5:
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| 184 | raise FSUIPCException(ERR_NOTOPEN)
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| 185 |
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| 186 | global flight, schedule_points
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| 187 |
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| 188 | tm=time.gmtime()
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| 189 |
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| 190 | if read_count<=10:
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| 191 | latitude = 0
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| 192 | longitude = 0
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| 193 | altitude = 0
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| 194 | tas = 0
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| 195 | vs = 0.0
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| 196 | fuel_flow = 0.0
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| 197 | fuel_remaining = 1000
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| 198 | ground_altitude = 0
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| 199 | else:
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| 200 | dist = read_count - 10
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| 201 |
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| 202 | latitude = 0
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| 203 | longitude = 0
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| 204 | altitude = dist*20
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| 205 | tas = 100+dist*20
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| 206 | vs = dist*100.0
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| 207 | fuel_flow = 3.0
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| 208 | fuel_remaining = 1000 - dist*2
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| 209 |
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| 210 | ground_altitude = 0
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| 211 |
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| 212 | results=[]
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| 213 | for (offset, type) in data:
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| 214 | if offset==0x02b8: # True airspeed (128*knots)
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| 215 | results.append(int(tas*128))
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| 216 | elif offset==0x02c8: # Vertical speed (256*m/s)
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| 217 | results.append(int(vs / 60.0 * 0.3048 * 256))
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| 218 | elif offset==0x0560: # Latitude
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| 219 | results.append(long(latitude*10001750.0*65536.0*65536.0/90.0))
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| 220 | elif offset==0x0568: # Longitude
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| 221 | results.append(long(longitude*65536.9*65536.0*65536.0*65536.0/360.0))
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| 222 | elif offset==0x0570: # Aircraft altitude in metres (fractional part)
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| 223 | results.append(long( (altitude*0.3048*65536*65536)%(65536*65536)))
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| 224 | elif offset==0x0574: # Aircraft altitude in metres (whole part)
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| 225 | results.append(int(altitude*.3048))
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| 226 | elif offset==0x0918 or \
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| 227 | offset==0x09b0: # Engine 1 and 2 fuel flow (pounds per hour)
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| 228 | results.append(fuel_flow*KGTOLBS/2.0)
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| 229 | elif offset==0x0a48 or \
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| 230 | offset==0x0ae0: # Engine 3 and 4 fuel flow (pounds per hour)
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| 231 | results.append(0.0)
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| 232 | elif offset==0x0aec: # Number of engines
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| 233 | results.append(2)
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| 234 | elif offset==0x0af4: # Fuel weight (pounds per gallon)
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| 235 | results.append(int(round(fuel_weight * 256)))
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| 236 | elif offset==0x0b74: # Centre tank level (%*128*65536)
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| 237 | centre_fuel = fuel_remaining - 2*side_tank_capacity
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| 238 | if centre_fuel<0: centre_fuel = 0.0
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| 239 | results.append(long(round(centre_fuel/centre_tank_capacity*128.0*65536.0)))
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| 240 | elif offset==0x0b78: # Centre tank capacity (gallons)
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| 241 | results.append(long(round(centre_tank_capacity*KGTOLBS/fuel_weight)))
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| 242 | elif offset==0x0b7c or \
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| 243 | offset==0x0b94: # Left and right main tank level (%*128*65536)
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| 244 | fuel = fuel_remaining/2
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| 245 | if fuel>side_tank_capacity: fuel = side_tank_capacity
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| 246 | results.append(long(round(fuel/side_tank_capacity*128.0*65536.0)))
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| 247 | elif offset==0x0b80 or \
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| 248 | offset==0x0b98: # Left and right main tank capacity (gallons)
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| 249 | results.append(long(round(side_tank_capacity*KGTOLBS/fuel_weight)))
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| 250 | elif offset in [0x0b84, 0x0b88, 0x0b8c, 0x0b90,
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| 251 | 0x0b9c, 0x0ba0, 0x0ba4, 0x0ba8,
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| 252 | 0x1244, 0x1248, 0x124c, 0x1250,
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| 253 | 0x1254, 0x1258, 0x125c, 0x1260]:
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| 254 | # Other tank capacities and levels
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| 255 | results.append(long(0))
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| 256 | elif offset==0x023a: # Second of time
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| 257 | results.append(int(tm[5]))
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| 258 | elif offset==0x023b: # Hour of UTC time
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| 259 | results.append(int(tm[3]))
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| 260 | elif offset==0x023c: # Minute of UTC time
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| 261 | results.append(int(tm[4]))
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| 262 | elif offset==0x023e: # Day number in year
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| 263 | results.append(int(tm[7]))
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| 264 | elif offset==0x0240: # Year
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| 265 | results.append(int(tm[0]))
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| 266 | elif offset==0x0020: # Ground altitude (metres*256)
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| 267 | results.append(int(round(ground_altitude*FEETTOMETRES*256.0)))
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| 268 | else:
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| 269 | raise FSUIPCException(ERR_DATA)
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| 270 |
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| 271 | read_count += 1
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| 272 |
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| 273 | return results
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| 274 |
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| 275 |
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| 276 | #------------------------------------------------------------------------------
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| 277 |
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| 278 | def close():
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| 279 | """
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| 280 | Close the connection
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| 281 | """
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| 282 | global open_count
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| 283 | open_count = 0
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| 284 |
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| 285 | #------------------------------------------------------------------------------
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| 286 |
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