2017-06-06 20:36:18 +08:00
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##
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## This file is part of the libsigrokdecode project.
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##
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## Copyright (C) 2016 Rudolf Reuter <reuterru@arcor.de>
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2019-09-09 00:07:19 -07:00
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## Copyright (C) 2019 DreamSourceLab <support@dreamsourcelab.com>
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2017-06-06 20:36:18 +08:00
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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 2 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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2018-07-08 17:48:18 +08:00
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## along with this program; if not, see <http://www.gnu.org/licenses/>.
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2017-06-06 20:36:18 +08:00
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##
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import sigrokdecode as srd
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class Decoder(srd.Decoder):
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api_version = 3
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id = 'gpib'
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name = 'GPIB'
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longname = 'General Purpose Interface Bus'
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desc = 'IEEE-488 General Purpose Interface Bus (GPIB / HPIB).'
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license = 'gplv2+'
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inputs = ['logic']
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outputs = []
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tags = ['PC']
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channels = (
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{'id': 'dio1' , 'name': 'DIO1', 'desc': 'Data I/O bit 1'},
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{'id': 'dio2' , 'name': 'DIO2', 'desc': 'Data I/O bit 2'},
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{'id': 'dio3' , 'name': 'DIO3', 'desc': 'Data I/O bit 3'},
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{'id': 'dio4' , 'name': 'DIO4', 'desc': 'Data I/O bit 4'},
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{'id': 'dio5' , 'name': 'DIO5', 'desc': 'Data I/O bit 5'},
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{'id': 'dio6' , 'name': 'DIO6', 'desc': 'Data I/O bit 6'},
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{'id': 'dio7' , 'name': 'DIO7', 'desc': 'Data I/O bit 7'},
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{'id': 'dio8' , 'name': 'DIO8', 'desc': 'Data I/O bit 8'},
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{'id': 'eoi', 'name': 'EOI', 'desc': 'End or identify'},
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{'id': 'dav', 'name': 'DAV', 'desc': 'Data valid'},
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{'id': 'nrfd', 'name': 'NRFD', 'desc': 'Not ready for data'},
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{'id': 'ndac', 'name': 'NDAC', 'desc': 'Not data accepted'},
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{'id': 'ifc', 'name': 'IFC', 'desc': 'Interface clear'},
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{'id': 'srq', 'name': 'SRQ', 'desc': 'Service request'},
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{'id': 'atn', 'name': 'ATN', 'desc': 'Attention'},
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{'id': 'ren', 'name': 'REN', 'desc': 'Remote enable'},
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)
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options = (
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{'id': 'sample_total', 'desc': 'Total number of samples', 'default': 0},
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)
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annotations = (
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('items', 'Items'),
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('gpib', 'DAT/CMD'),
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('eoi', 'EOI'),
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)
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annotation_rows = (
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('bytes', 'Bytes', (0,)),
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('gpib', 'DAT/CMD', (1,)),
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('eoi', 'EOI', (2,)),
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)
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def __init__(self):
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self.reset()
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def reset(self):
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self.items = []
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self.itemcount = 0
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self.saved_item = None
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self.saved_ATN = False
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self.saved_EOI = False
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self.samplenum = 0
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self.ss_item = self.es_item = None
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self.first = True
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def start(self):
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self.out_ann = self.register(srd.OUTPUT_ANN)
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def putb(self, data):
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self.put(self.ss_item, self.es_item, self.out_ann, data)
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def handle_bits(self, datapins):
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dbyte = 0x20
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dATN = False
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item2 = False
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dEOI = False
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item3 = False
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# If this is the first item in a word, save its sample number.
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if self.itemcount == 0:
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self.ss_word = self.samplenum
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# Get the bits for this item.
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item = 0
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for i in range(8):
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item |= datapins[i] << i
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item = item ^ 0xff # Invert data byte.
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self.items.append(item)
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self.itemcount += 1
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if datapins[14] == 0:
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item2 = True
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if datapins[8] == 0:
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item3 = True
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if self.first:
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# Save the start sample and item for later (no output yet).
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self.ss_item = self.samplenum
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self.first = False
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self.saved_item = item
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self.saved_ATN = item2
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self.saved_EOI = item3
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else:
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# Output the saved item.
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dbyte = self.saved_item
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dATN = self.saved_ATN
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dEOI = self.saved_EOI
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self.es_item = self.samplenum
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self.putb([0, ['%02X' % self.saved_item]])
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# Encode item byte to GPIB convention.
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self.strgpib = ' '
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if dATN: # ATN, decode commands.
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if dbyte == 0x01: self.strgpib = 'GTL'
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if dbyte == 0x04: self.strgpib = 'SDC'
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if dbyte == 0x05: self.strgpib = 'PPC'
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if dbyte == 0x08: self.strgpib = 'GET'
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if dbyte == 0x09: self.strgpib = 'TCT'
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if dbyte == 0x11: self.strgpib = 'LLO'
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if dbyte == 0x14: self.strgpib = 'DCL'
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if dbyte == 0x15: self.strgpib = 'PPU'
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if dbyte == 0x18: self.strgpib = 'SPE'
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if dbyte == 0x19: self.strgpib = 'SPD'
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if dbyte == 0x3f: self.strgpib = 'UNL'
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if dbyte == 0x5f: self.strgpib = 'UNT'
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if dbyte > 0x1f and dbyte < 0x3f: # Address Listener.
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self.strgpib = 'L' + chr(dbyte + 0x10)
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if dbyte > 0x3f and dbyte < 0x5f: # Address Talker
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self.strgpib = 'T' + chr(dbyte - 0x10)
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else:
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if dbyte > 0x1f and dbyte < 0x7f:
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self.strgpib = chr(dbyte)
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if dbyte == 0x0a:
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self.strgpib = 'LF'
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if dbyte == 0x0d:
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self.strgpib = 'CR'
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self.putb([1, [self.strgpib]])
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self.strEOI = ' '
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if dEOI:
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self.strEOI = 'EOI'
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self.putb([2, [self.strEOI]])
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self.ss_item = self.samplenum
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self.saved_item = item
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self.saved_ATN = item2
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self.saved_EOI = item3
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if self.itemcount < 16:
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return
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self.itemcount, self.items = 0, []
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def decode(self):
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# Inspect samples at falling edge of DAV. But make sure to also
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# start inspection when the capture happens to start with low
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# DAV level. Optionally enforce processing when a user specified
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# sample number was reached.
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waitcond = [{9: 'l'}]
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lsn = self.options['sample_total']
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if lsn:
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waitcond.append({'skip': lsn})
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while True:
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if lsn:
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waitcond[1]['skip'] = lsn - self.samplenum - 1
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(d1, d2, d3, d4, d5, d6, d7, d8, eoi, dav, nrfd, ndac, ifc, srq, atn, ren) = self.wait(waitcond)
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pins = (d1, d2, d3, d4, d5, d6, d7, d8, eoi, dav, nrfd, ndac, ifc, srq, atn, ren)
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self.handle_bits(pins)
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waitcond[0][9] = 'f'
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