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724 lines
22 KiB
Python
724 lines
22 KiB
Python
#!/usr/bin/python
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#===============================================================================
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# NAME: TlmLayout.py
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#
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# DESCRIPTION: Takes as input a telemetry layout in tab-delimited format and
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# generates .hpp of the packet layout(s) and a table that can be
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# used to form the packet(s)
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#
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# USAGE:
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#
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# AUTHOR: Len Day
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# EMAIL: len.day@jpl.nasa.gov
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# DATE CREATED : 09/28/15
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#
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# Copyright 2015, California Institute of Technology.
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# ALL RIGHTS RESERVED. U.S. Government Sponsorship acknowledged.
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#===============================================================================
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#
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# Python standard modules
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#
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import logging
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import os
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import sys
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import time
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import argparse
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import csv
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import datetime
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import copy
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from Cheetah.Template import Template
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from Tkconstants import NONE
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#
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# Python extention modules and custom interfaces
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#
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#
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# Universal globals used within module go here.
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# (DO NOT USE MANY!)
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#
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tlm_input_line_num = 0
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tlm_max_packet_bytes = 0
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tlm_packet_list = []
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tlm_duration = None
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tlm_period = None
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tlm_packet_id_schedule_list = []
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tlm_packet_max_ids_list = []
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tlm_packet_to_chan_list = []
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#===============================================================================
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#
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class HeaderItem:
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def __init__(self):
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self.m_type = ""
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self.m_id = 0
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self.m_bit_start = 0
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self.m_bits = 0
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self.m_comment = ""
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class Item:
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def __init__(self):
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self.m_is_reserve = False
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self.m_is_constant = False
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self.m_name = ""
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self.m_id = 0
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self.m_data_type = ""
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self.m_constant_value = 0
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self.m_bit_start = 0
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self.m_bits = 0
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self.m_comment = ""
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# The information for a telemetry packet is accumulated in a Packet class
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# instance, then the packet_complete method is called when it is complete
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class Packet:
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def init(self):
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self.m_name = ""
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self.m_id = 0
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self.m_id_comment = ""
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self.m_bit_index = 0
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self.m_bytes = 0
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self.m_num_fixed_fields = 0
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self.m_num_variable_fields = 0
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self.m_max_field_bits = 0;
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self.num_header_general_fields = 0
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self.m_header_list = []
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self.m_item_list = []
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# Additional packet information needed
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# for scheduling and multiplexing to an address
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#
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self.m_chan = None
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#
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self.m_freq = None
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self.m_offset = None
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def __init__(self):
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self.init()
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# errors encountered parsing the file use err_msg to output the
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# error and exit.
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def err_msg(self, msg):
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global tlm_input_line_num
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print msg, "at input line ", tlm_input_line_num
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exit(1)
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def duration(self, line):
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global tlm_duration
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tlm_duration = float(line[1])
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def run_period(self, line):
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global tlm_period
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tlm_period = float(line[1])
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def frequency(self, line):
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"""
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Frequency of packet is always in Hz. so no units given.
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"""
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self.m_freq = float(line[1])
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def offset(self,line):
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"""
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Offset of packet is essentially it's phase within duration.
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If no units detected just count cycle slots.
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If "s" for seconds is detected then compute cycle slots here.
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NOTE: One and only one offset per ID can currently be specified.
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"""
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if "s" in line[1].lower():
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self.m_offset = int((float(line[1].split()[0].strip()) / (1.0/tlm_period))+0.5)
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else:
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self.m_offset = int(line[1])
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def channel(self,line):
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"""
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Channel number. This is a channel number assigned to
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the packet of type ID. It is typically used for mapping
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of packet ID's types to 1553 sub-addresses.
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"""
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self.m_chan = int(line[1])
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# Comment records are ignored
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def comment(self, line):
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pass # Ignored
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# Process and save a packet record. This completed processing of the
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# previous packet (if any)
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def packet(self, line):
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self.packet_complete()
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self.init()
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# Process and save a header record
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def header(self, line):
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if (len(line) < 2):
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self.err_msg("Missing parameter for header")
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he = HeaderItem();
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he.m_bit_start = self.m_bit_index
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kw = line[1].lower()
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if (kw == "id"):
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if (len(line) < 5):
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self.err_msg("Missing parameter for header ID")
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he.m_type = "HEADER_FIELD_ID";
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s = line[4].strip();
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if (not s.isdigit()):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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he.m_bits = int(s);
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self.m_bit_index += he.m_bits
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elif (kw == "time"):
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he.m_type = "HEADER_FIELD_TIME"
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he.m_bits = 48
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self.m_bit_index += he.m_bits
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elif(kw == "sequence"):
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if (len(line) < 6):
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self.err_msg("Missing parameter for header sequence")
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he.m_type = "HEADER_FIELD_SEQUENCE";
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s = line[4].strip();
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if (not s.isdigit()):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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he.m_bits = int(s);
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self.m_bit_index += he.m_bits
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elif(kw == "field"):
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if (len(line) < 4):
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self.err_msg("Missing parameter for header field")
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he.m_type = "HEADER_FIELD_FIELD";
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s = line[2].strip();
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if (not s.isdigit()):
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self.err_msg("Illegal value for ID: '" + s + "'")
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he.m_id = int(s);
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s = line[4].strip();
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if (not s.isdigit()):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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he.m_bits = int(s);
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self.m_bit_index += he.m_bits
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self.num_header_general_fields += 1
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else:
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self.err_msg("Illegal heyword for header: '" + line[1] + "'")
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if (len(line) > 5):
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he.m_comment = line[5]
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self.m_header_list.append(he)
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# Process and save the packet identifier record
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def identifier(self, line):
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if (len(line) < 3):
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self.err_msg("Missing parameter(s) for identifier")
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self.m_name = line[1].strip()
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if (not len(self.m_name)):
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self.err_msg("Name cannot be blank")
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if (len(self.m_name.split()) > 1):
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self.err_msg("Name must not contain spaces")
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if (self.m_name.find("/") >= 0):
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self.err_msg("Name must not contain '/'")
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if (self.m_name.find("\\") >= 0):
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self.err_msg("Name must not contain '\\'")
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s = line[2].strip()
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if (not s.isdigit()):
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self.err_msg("Illegal value for identifier: '" + s + "'")
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self.m_id = int(s)
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if (self.m_id < 0):
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self.err_msg("Negative value for identifier: '" + line[2] + "'")
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if (len(line) > 5):
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self.m_id_comment = line[5]
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# Process and save an item record
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def item(self, line):
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self.m_num_variable_fields += 1
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it = Item()
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it.m_bit_start = self.m_bit_index
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if (len(line) < 5):
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self.err_msg("Missing parameter(s) for item")
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it.m_name = line[1].strip()
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if (not len(it.m_name)):
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self.err_msg("Name cannot be blank")
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if (len(it.m_name.split()) > 1):
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self.err_msg("Name must not contain spaces")
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s = line[2].strip()
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if (not s.isdigit()):
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self.err_msg("Illegal value for identifier: '" + s + "'")
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it.m_id = int(s)
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it.m_data_type = line[3].strip()
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s = line[4].strip()
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if (not s.isdigit()):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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it.m_bits = int(s)
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self.m_bit_index += it.m_bits
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if (len(line) > 5):
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it.m_comment = line[5]
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self.m_item_list.append(it)
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# Process and save a reserve record
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def reserve(self, line):
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it = Item()
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it.m_bit_start = self.m_bit_index
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if (len(line) < 5):
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self.err_msg("Missing parameter for reserve")
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it.m_is_reserve = True
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s = line[4].strip()
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if (not s.isdigit()):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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it.m_bits = int(s)
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if (it.m_bits < 1):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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self.m_bit_index += it.m_bits
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if (len(line) > 5):
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it.m_comment = line[5]
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self.m_item_list.append(it)
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# Process and save an align record
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def align(self, line):
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it = Item()
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it.m_bit_start = self.m_bit_index
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if (len(line) < 2):
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self.err_msg("Missing parameter for align")
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it.m_is_reserve = True
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s = line[1].strip()
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if (not s.isdigit()):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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bits = int(s)
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if (bits != 8 and bits != 16 and bits != 32 and bits != 64):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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if (self.m_bit_index % bits):
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bits = bits - (self.m_bit_index % bits)
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else:
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return # Already aligned
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it.m_bits = bits
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self.m_bit_index += it.m_bits
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if (len(line) > 5):
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it.m_comment = line[5]
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self.m_item_list.append(it)
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# Process and save a constant record
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def constant(self, line):
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self.m_num_fixed_fields += 1
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it = Item()
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it.m_bit_start = self.m_bit_index
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if (len(line) < 5):
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self.err_msg("Missing parameter for constant")
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it.m_is_constant = True
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it.m_name = line[1].strip()
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if (not len(it.m_name)):
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self.err_msg("Name cannot be blank")
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if (len(it.m_name.split()) > 1):
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self.err_msg("Name must not contain spaces")
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it.m_data_type = line[2].strip()
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it.m_data_type = it.m_data_type.lower()
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if (it.m_data_type != "integer" and
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it.m_data_type != "float" and
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it.m_data_type != "text"):
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self.err_msg("Invalid date type: '" + it.data_tyoe + "'")
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it.m_constant_value = line[3]
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if (it.m_data_type == "integer"):
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it.m_constant_value = it.m_constant_value.strip()
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if (not it.m_constant_value.isdigit()):
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self.err_msg("Invalid numeric value: '" + it.m_constant_value + "'")
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it.m_constant_value = int(it.m_constant_value)
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elif (it.m_data_type == "float"):
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it.m_constant_value = it.m_constant_value.strip()
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try:
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f = float(it.m_constant_value)
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except ValueError:
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self.err_msg("Invalid floating point value: '" + it.m_constant_value + "'")
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it.m_constant_value = f
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s = line[4].strip()
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if (not s.isdigit()):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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bits = int(s)
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if (bits < 1):
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self.err_msg("Illegal value for number of bits: '" + s + "'")
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it.m_bits = bits
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self.m_bit_index += it.m_bits
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if (len(line) > 5):
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it.m_comment = line[5]
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self.m_item_list.append(it)
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# packet_complete() is called when a packet definition is complete to save
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# the packet
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def packet_complete(self):
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global tlm_input_line_num
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global tlm_packet_list
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global tlm_max_packet_bytes
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global tlm_duration
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global tlm_period
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global verbose
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if (not len(self.m_header_list) and not len(self.m_item_list)):
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return
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self.m_bytes = (self.m_bit_index + 7) / 8
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if (self.m_bytes > tlm_max_packet_bytes):
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tlm_max_packet_bytes = self.m_bytes
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for field in self.m_header_list:
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if (field.m_bits > self.m_max_field_bits):
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self.m_max_field_bits = field.m_bits
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for item in self.m_item_list:
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if (not item.m_is_reserve and not item.m_is_constant):
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if (item.m_bits > self.m_max_field_bits):
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self.m_max_field_bits = item.m_bits
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if (verbose):
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if tlm_duration is not None:
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print "Duration (in seconds only): %f" % tlm_duration
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if tlm_period is not None:
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print "Run or Sample Period (in hz. only): %f" % tlm_period
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if self.m_freq is not None:
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print "Packet frequency (Hz.): " + str(self.m_freq)
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if self.m_offset is not None:
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print "Packet offset: " + str(self.m_offset)
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print "packet size in bits: " + str(self.m_bit_index) + " (" + str(self.m_bit_index / 8) + " bytes)"
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print "Number of fixed-value fields:" + str(self.m_num_fixed_fields) + ", variable fields: " + str(self.m_num_variable_fields)
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print "name: ", self.m_name
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print "packet ID: ", self.m_id, ", comment: ", self.m_id_comment
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print "Number of items in packet header list: ", len(self.m_header_list)
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print "Number of general items in packet header list: ", self.num_header_general_fields
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print "Maximum field size in bits: ", self.m_max_field_bits
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for field in self.m_header_list:
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print "\tType: ", field.m_type
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print "\tID: ", field.m_id
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print "\tStart bit: ", field.m_bit_start
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print "\tSize in bits: ", field.m_bits
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print "\tComment: ", field.m_comment
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print ""
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print "Number of items in packet item list: ", len(self.m_item_list)
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i = 0
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for item in self.m_item_list:
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i += 1
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print "Item # ", i
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print "\tis_reserve: ", item.m_is_reserve
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print "\tis_constant: ", item.m_is_constant
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print "\tname: ", item.m_name
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print "\tid: ", item.m_id
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print "\tdata type: ", item.m_data_type
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print "\tconstant value: ", item.m_constant_value
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print "\tstart bit: ", item.m_bit_start
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print "\tbits: ", item.m_bits
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print "\tcomment: ", item.m_comment
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print
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if (self.m_name == ""):
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self.err_msg("Preceeding packet has no name")
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p = copy.deepcopy(self)
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tlm_packet_list.append(p)
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# The CsvLine class parses a single line and saves the info in the
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# packet member. When a packet record is found the previously defined
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# packet is saved.
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class CsvLine:
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|
def __init__(self):
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global tlm_duration
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self.packet = Packet()
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self.keywords = {"duration" : self.packet.duration,
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"runperiod" : self.packet.run_period,
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"frequency" : self.packet.frequency,
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"offset" : self.packet.offset,
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"channel" : self.packet.channel,
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"comment" : self.packet.comment,
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"packet" : self.packet.packet,
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"header" : self.packet.header,
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"identifier" : self.packet.identifier,
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"item" : self.packet.item,
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"reserve" : self.packet.reserve,
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"align" : self.packet.align,
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"constant" : self.packet.constant}
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# process() is called with a single line already tokenized as a list
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def process(self, line):
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global tlm_input_line_num
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if (not len(line)):
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return
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nonblank = False
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for i in range(len(line)):
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s = line[i].strip()
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if (len(s)):
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nonblank = True
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break
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if (not nonblank):
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return
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kw = line[0].lower()
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if (kw in self.keywords):
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self.keywords[kw](line)
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else:
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print "Invalid keyword '" + line[0] + "' at line ", tlm_input_line_num
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exit(1)
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|
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def finish(self):
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self.packet.packet_complete()
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# CsvFile reads the input file and processes each line
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class CsvFile:
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def __init__(self):
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self.line = CsvLine()
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def process(self, name):
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global tlm_input_line_num
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m_file_name = name
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try:
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m_fp = open(name, "rU")
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except:
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print("Error opening " + name)
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exit()
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m_reader = csv.reader(m_fp, dialect = 'excel')
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for line in m_reader:
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tlm_input_line_num += 1
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self.line.process(line)
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self.line.finish()
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m_fp.close()
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def sched_cycle_ids_max(max_cycle):
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"""
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Return a list of the maximum times an ID is assigned to a cycle slot.
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"""
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cycle_max_list = [0 for _ in range(max_cycle)]
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cycle_offset = None
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i = 0
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if tlm_period == None:
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return []
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for p in tlm_packet_list:
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if (p.m_freq is not None) and (p.m_offset is not None):
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cycle_offset = int(((1.0/p.m_freq) / (1.0/tlm_period))+0.5)
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offset = p.m_offset
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else:
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cycle_offset = None
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if cycle_offset is not None:
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for i in range(max_cycle):
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if i % cycle_offset == 0:
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if (i+offset) < max_cycle:
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cycle_max_list[i + offset] += 1
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#print p.m_id, p.m_freq, p.m_offset
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# print cycle_offset
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#print cycle_max_list
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return cycle_max_list
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def sched_cycle_ids(max_cycle):
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"""
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Return a list of cycle slots where each slot is a list of IDs assigned in that slot.
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Note the list returned by sched_cycle_ids_max is the number of IDs per cycle slot.
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"""
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cycle_id_list = [list() for _ in range(max_cycle)]
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cycle_offset = None
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if tlm_period == None:
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return []
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for p in tlm_packet_list:
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if (p.m_freq is not None) and (p.m_offset is not None):
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cycle_offset = int(((1.0/p.m_freq) / (1.0/tlm_period))+0.5)
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offset = p.m_offset
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else:
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cycle_offset = None
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if cycle_offset is not None:
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for i in range(max_cycle):
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if i % cycle_offset == 0:
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if (i+offset) < max_cycle:
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cycle_id_list[i + offset].append(p.m_id)
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#print p.m_id, p.m_freq, p.m_offset
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for id in cycle_id_list:
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if len(id) == 0:
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id.append(-1)
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#j = 0
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#for i in cycle_id_list:
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# print "%d: %s" % (j, i)
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# j += 1
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return cycle_id_list
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def sched_id_arr_size(cycle_id_list):
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"""
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Return total size for the scheduled ID array.
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"""
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id_list_size = 0
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for l in cycle_id_list:
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s = len(l)
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if s == 0:
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id_list_size += 1
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else:
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id_list_size += s
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return id_list_size
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def id_to_channel_map():
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"""
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Return an association list of ID to channel number assignments.
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NOTE: the channel number is intended to be 1553 sub-address.
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"""
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pass
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def output_cpp(output_file, template_file):
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global tlm_duration
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global tlm_period
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global tlm_packet_list
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global tlm_max_packet_bytes
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t = Template(file=template_file)
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t.tlm_packet_list = tlm_packet_list
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# Generate schedule code if both duration and period defined
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if( (tlm_duration is not None) and (tlm_period is not None) ):
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t.tlm_max_cycles = int(tlm_duration*tlm_period)
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else:
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t.tlm_max_cycles = None
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t.tlm_cycle_max_list = sched_cycle_ids_max(t.tlm_max_cycles)
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t.tlm_cycle_id_list = sched_cycle_ids(t.tlm_max_cycles)
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# Create ID to channel mapping
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t.tlm_cycle_id_arr_size = sched_id_arr_size(t.tlm_cycle_id_list)
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t.tlm_max_packet_bytes = tlm_max_packet_bytes
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t.tlm_max_num_chan = sum([pkt.m_chan is not None for pkt in tlm_packet_list])
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# Create duration and period values
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t.tlm_max_num_freq = sum([pkt.m_freq is not None for pkt in tlm_packet_list])
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if tlm_duration is not None:
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t.tlm_duration = tlm_duration
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else:
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t.tlm_duration = -1.0
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#
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if tlm_period is not None:
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t.tlm_period = tlm_period
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else:
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t.tlm_period = -1
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f = open(output_file, "w")
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print >>f, t
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def output_html():
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global tlm_packet_list
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pass
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def output_dict():
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global tlm_packet_list
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pass
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def output(cpp_output_file, template_file):
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output_cpp(cpp_output_file, template_file)
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output_html()
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output_dict()
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def main():
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global verbose
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parser = argparse.ArgumentParser(description='Process a telemetry definition file')
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parser.add_argument('-v', '--verbose',
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action='store_true',
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help='Enable verbose mode')
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parser.add_argument('--cpp',
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action = 'store',
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required = True,
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help = 'Required. Fully-qualified output cpp file name')
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parser.add_argument('--template',
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action = 'store',
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required = True,
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help = 'Required. Fully-qualified file name of the cheetah template used by this script (normally in Autocoders/Python/src/utils/TlmPacketDefBase.tmpl)')
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parser.add_argument('input_file',
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nargs='+',
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help = 'One or more input tab-delimited csv file names')
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args = parser.parse_args()
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verbose = args.verbose
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cpp_output_file = args.cpp
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template_file = args.template
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f = CsvFile()
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for file in args.input_file:
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f.process(file)
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output(cpp_output_file, template_file)
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if (__name__ == '__main__'):
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main()
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