Project

General

Profile

Bug #9933 » gmrsv2_squelch.py

Jim Unroe, 07/02/2022 12:20 PM

 
1
# Copyright 2022:
2
# * Jim Unroe KC9HI, <rock.unroe@gmail.com>
3
#
4
# This program is free software: you can redistribute it and/or modify
5
# it under the terms of the GNU General Public License as published by
6
# the Free Software Foundation, either version 2 of the License, or
7
# (at your option) any later version.
8
#
9
# This program is distributed in the hope that it will be useful,
10
# but WITHOUT ANY WARRANTY; without even the implied warranty of
11
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12
# GNU General Public License for more details.
13
#
14
# You should have received a copy of the GNU General Public License
15
# along with this program.  If not, see <http://www.gnu.org/licenses/>.
16

    
17
import time
18
import struct
19
import logging
20
import re
21

    
22
from chirp.drivers import baofeng_common
23
from chirp import chirp_common, directory, memmap
24
from chirp import bitwise, errors, util
25
from chirp.settings import RadioSettingGroup, RadioSetting, \
26
    RadioSettingValueBoolean, RadioSettingValueList, \
27
    RadioSettingValueString, RadioSettingValueInteger, \
28
    RadioSettingValueFloat, RadioSettings, \
29
    InvalidValueError
30
from textwrap import dedent
31

    
32
LOG = logging.getLogger(__name__)
33

    
34
# #### MAGICS #########################################################
35

    
36
# BTECH GMRS-V2 magic string
37
MSTRING_GMRSV2 = "\x50\x5F\x20\x21\x12\x15\x4D"
38

    
39
# #### ID strings #####################################################
40

    
41
# BTECH GMRS-V2
42
GMRSV2_fp1 = "US32419"  # original
43

    
44
DTMF_CHARS = "0123456789 *#ABCD"
45
STEPS = [2.5, 5.0, 6.25, 10.0, 12.5, 20.0, 25.0, 50.0]
46

    
47
LIST_AB = ["A", "B"]
48
LIST_ALMOD = ["Off", "Site", "Tone", "Code"]
49
LIST_BANDWIDTH = ["Wide", "Narrow"]
50
LIST_COLOR = ["Off", "Blue", "Orange", "Purple"]
51
LIST_DTMFSPEED = ["%s ms" % x for x in range(50, 2010, 10)]
52
LIST_DTMFST = ["Off", "DT-ST", "ANI-ST", "DT+ANI"]
53
LIST_MODE = ["Channel", "Name", "Frequency"]
54
LIST_OFF1TO9 = ["Off"] + list("123456789")
55
LIST_OFF1TO10 = LIST_OFF1TO9 + ["10"]
56
LIST_OFFAB = ["Off"] + LIST_AB
57
LIST_RESUME = ["TO", "CO", "SE"]
58
LIST_PONMSG = ["Full", "Message"]
59
LIST_PTTID = ["Off", "BOT", "EOT", "Both"]
60
LIST_SCODE = ["%s" % x for x in range(1, 16)]
61
LIST_RPSTE = ["Off"] + ["%s" % x for x in range(1, 11)]
62
LIST_RTONE = ["1000 Hz", "1450 Hz", "1750 Hz", "2100 Hz"]
63
LIST_SAVE = ["Off", "1:1", "1:2", "1:3", "1:4"]
64
LIST_SHIFTD = ["Off", "+", "-"]
65
LIST_STEDELAY = ["Off"] + ["%s ms" % x for x in range(100, 1100, 100)]
66
LIST_STEP = [str(x) for x in STEPS]
67
LIST_TIMEOUT = ["%s sec" % x for x in range(15, 615, 15)]
68
LIST_TXPOWER = ["High", "Low"]
69
LIST_VOICE = ["Off", "English", "Chinese"]
70
LIST_WORKMODE = ["Frequency", "Channel"]
71

    
72
GMRS_FREQS1 = [462.5625, 462.5875, 462.6125, 462.6375, 462.6625,
73
               462.6875, 462.7125]
74
GMRS_FREQS2 = [467.5625, 467.5875, 467.6125, 467.6375, 467.6625,
75
               467.6875, 467.7125]
76
GMRS_FREQS3 = [462.5500, 462.5750, 462.6000, 462.6250, 462.6500,
77
               462.6750, 462.7000, 462.7250]
78
GMRS_FREQS = GMRS_FREQS1 + GMRS_FREQS2 + GMRS_FREQS3 * 2
79

    
80

    
81
@directory.register
82
class GMRSV2(baofeng_common.BaofengCommonHT):
83
    """BTech GMRS-V2"""
84
    VENDOR = "BTECH"
85
    MODEL = "GMRS-V2"
86

    
87
    _fileid = [GMRSV2_fp1, ]
88

    
89
    _magic = [MSTRING_GMRSV2, ]
90
    _magic_response_length = 8
91
    _fw_ver_start = 0x1EF0
92
    _recv_block_size = 0x40
93
    _mem_size = 0x2000
94
    _ack_block = True
95

    
96
    _ranges = [(0x0000, 0x0DF0),
97
               (0x0E00, 0x1EF0),
98
               (0x1F60, 0x1F70),
99
               (0x1F80, 0x1F90),
100
               (0x1FC0, 0x1FD0)]
101
    _send_block_size = 0x10
102

    
103
    MODES = ["NFM", "FM"]
104
    VALID_CHARS = chirp_common.CHARSET_ALPHANUMERIC + \
105
        "!@#$%^&*()+-=[]:\";'<>?,./"
106
    LENGTH_NAME = 7
107
    SKIP_VALUES = ["", "S"]
108
    DTCS_CODES = sorted(chirp_common.DTCS_CODES + [645])
109
    POWER_LEVELS = [chirp_common.PowerLevel("High", watts=5.00),
110
                    chirp_common.PowerLevel("Low", watts=0.50)]
111
    VALID_BANDS = [(130000000, 180000000),
112
                   (400000000, 521000000)]
113
    PTTID_LIST = LIST_PTTID
114
    SCODE_LIST = LIST_SCODE
115

    
116
    def get_features(self):
117
        """Get the radio's features"""
118

    
119
        rf = chirp_common.RadioFeatures()
120
        rf.has_settings = True
121
        rf.has_bank = False
122
        rf.has_tuning_step = False
123
        rf.can_odd_split = False
124
        rf.has_name = True
125
        rf.has_offset = True
126
        rf.has_mode = True
127
        rf.has_dtcs = True
128
        rf.has_rx_dtcs = True
129
        rf.has_dtcs_polarity = True
130
        rf.has_ctone = True
131
        rf.has_cross = True
132
        rf.valid_modes = self.MODES
133
        rf.valid_characters = self.VALID_CHARS
134
        rf.valid_name_length = self.LENGTH_NAME
135
        rf.valid_duplexes = ["", "+", "off"]
136
        rf.valid_tmodes = ['', 'Tone', 'TSQL', 'DTCS', 'Cross']
137
        rf.valid_cross_modes = [
138
            "Tone->Tone",
139
            "DTCS->",
140
            "->DTCS",
141
            "Tone->DTCS",
142
            "DTCS->Tone",
143
            "->Tone",
144
            "DTCS->DTCS"]
145
        rf.valid_skips = self.SKIP_VALUES
146
        rf.valid_dtcs_codes = self.DTCS_CODES
147
        rf.memory_bounds = (0, 199)
148
        rf.valid_power_levels = self.POWER_LEVELS
149
        rf.valid_bands = self.VALID_BANDS
150
        rf.valid_tuning_steps = STEPS
151

    
152
        return rf
153

    
154
    MEM_FORMAT = """
155
    #seekto 0x0000;
156
    struct {
157
      lbcd rxfreq[4];
158
      lbcd txfreq[4];
159
      ul16 rxtone;
160
      ul16 txtone;
161
      u8 unknown0:4,
162
         scode:4;
163
      u8 unknown1;
164
      u8 unknown2:7,
165
         lowpower:1;
166
      u8 unknown3:1,
167
         wide:1,
168
         unknown4:2,
169
         bcl:1,
170
         scan:1,
171
         pttid:2;
172
    } memory[200];
173

    
174
    #seekto 0x0D00;
175
    struct {
176
      u8 code[5];
177
      u8 unused[11];
178
    } pttid[15];
179

    
180
    #seekto 0x0DF0;
181
    struct {
182
      u8 dtmfon;
183
      u8 dtmfoff;
184
      u8 unknown1:4,
185
         unknown2:2,
186
         aniid:2;
187
      u8 alarm[5];
188
      u8 code[5];
189
    } ani;
190

    
191
    #seekto 0x0E20;
192
    struct {
193
      u8 unused01:4,
194
         squelch:4;
195
      u8 unused02;
196
      u8 unused03;
197
      u8 unused04:5,
198
         save:3;
199
      u8 unused05:4,
200
         vox:4;
201
      u8 unused06;
202
      u8 unused07:4,
203
         abr:4;
204
      u8 unused08:7,
205
         tdr:1;
206
      u8 unused09:7,
207
         beep:1;
208
      u8 unused10:2,
209
         timeout:6;
210
      u8 unused11[4];
211
      u8 unused12:6,
212
         voice:2;
213
      u8 unused13;
214
      u8 unused14:6,
215
         dtmfst:2;
216
      u8 unused15;
217
      u8 unused16:6,
218
         screv:2;
219
      u8 unused17;
220
      u8 unused18:2,
221
         pttlt:6;
222
      u8 unused19:6,
223
         mdfa:2;
224
      u8 unused20:6,
225
         mdfb:2;
226
      u8 unused21;
227
      u8 unused22:7,
228
         sync:1;
229
      u8 unused23[4];
230
      u8 unused24:6,
231
         wtled:2;
232
      u8 unused25:6,
233
         rxled:2;
234
      u8 unused26:6,
235
         txled:2;
236
      u8 unused27:6,
237
         almod:2;
238
      u8 unused28:7,
239
         dbptt:1;
240
      u8 unused29:6,
241
         tdrab:2;
242
      u8 unused30:7,
243
         ste:1;
244
      u8 unused31:4,
245
         rpste:4;
246
      u8 unused32:4,
247
         rptrl:4;
248
      u8 unused33:7,
249
         ponmsg:1;
250
      u8 unused34:7,
251
         roger:1;
252
      u8 unused35:6,
253
         rtone:2;
254
      u8 unused36;
255
      u8 unused37:6,
256
         rogerrx:2;
257
      u8 unused38;
258
      u8 displayab:1,
259
         unknown1:7;
260
      u8 unused39[2];
261
      u8 keylock;
262
      u8 cht;
263
      u8 unused40[5];
264
      u8 unknown1:3,
265
         fmradio:1,
266
         alarm:1,
267
         unknown2:1,
268
         reset:1,
269
         menu:1;
270
      u8 unused41;
271
      u8 unknown:7,
272
         workmode:1;
273
    } settings;
274

    
275
    #seekto 0x0E76;
276
    struct {
277
      u8 unused1:1,
278
         mrcha:7;
279
      u8 unused2:1,
280
         mrchb:7;
281
    } wmchannel;
282

    
283
    struct vfo {
284
      u8 unknown0[8];
285
      u8 freq[8];
286
      u8 unknown1;
287
      u8 offset[4];
288
      u8 unknown2;
289
      ul16 rxtone;
290
      ul16 txtone;
291
      u8 unused1:7,
292
         band:1;
293
      u8 unknown3;
294
      u8 unused2:2,
295
         sftd:2,
296
         unused5:4;
297
      u8 unknown4;
298
      u8 unused3:1
299
         step:3,
300
         unused4:4;
301
      u8 txpower:1,
302
         widenarr:1,
303
         unknown5:4,
304
         txpower3:2;
305
    };
306

    
307
    #seekto 0x0F00;
308
    struct {
309
      struct vfo a;
310
      struct vfo b;
311
    } vfo;
312

    
313
    #seekto 0x0F4E;
314
    u16 fm_presets;
315

    
316
    #seekto 0x1000;
317
    struct {
318
      char name[7];
319
      u8 unknown1[9];
320
    } names[200];
321

    
322
    #seekto 0x1ED0;
323
    struct {
324
      char line1[7];
325
      char line2[7];
326
    } sixpoweron_msg;
327

    
328
    #seekto 0x1EE0;
329
    struct {
330
      char line1[7];
331
      char line2[7];
332
    } poweron_msg;
333

    
334
    #seekto 0x1EF0;
335
    struct {
336
      char line1[7];
337
      char line2[7];
338
    } firmware_msg;
339

    
340
    struct squelch {
341
      u8 sql0;
342
      u8 sql1;
343
      u8 sql2;
344
      u8 sql3;
345
      u8 sql4;
346
      u8 sql5;
347
      u8 sql6;
348
      u8 sql7;
349
      u8 sql8;
350
      u8 sql9;
351
    };
352

    
353
    #seekto 0x1F60;
354
    struct {
355
      struct squelch vhf;
356
      u8 unknown1[6];
357
      u8 unknown2[16];
358
      struct squelch uhf;
359
    } squelch;
360

    
361
    """
362

    
363
    @classmethod
364
    def get_prompts(cls):
365
        rp = chirp_common.RadioPrompts()
366
        rp.experimental = \
367
            ('The BTech GMRS-V2 driver is a beta version.\n'
368
             '\n'
369
             'Please save an unedited copy of your first successful\n'
370
             'download to a CHIRP Radio Images(*.img) file.'
371
             )
372
        rp.pre_download = _(dedent("""\
373
            Follow these instructions to download your info:
374

    
375
            1 - Turn off your radio
376
            2 - Connect your interface cable
377
            3 - Turn on your radio
378
            4 - Do the download of your radio data
379
            """))
380
        rp.pre_upload = _(dedent("""\
381
            Follow this instructions to upload your info:
382

    
383
            1 - Turn off your radio
384
            2 - Connect your interface cable
385
            3 - Turn on your radio
386
            4 - Do the upload of your radio data
387
            """))
388
        return rp
389

    
390
    def process_mmap(self):
391
        """Process the mem map into the mem object"""
392
        self._memobj = bitwise.parse(self.MEM_FORMAT, self._mmap)
393

    
394
    def get_memory(self, number):
395
        _mem = self._memobj.memory[number]
396
        _nam = self._memobj.names[number]
397

    
398
        mem = chirp_common.Memory()
399
        mem.number = number
400

    
401
        if _mem.get_raw()[0] == "\xff":
402
            mem.empty = True
403
            return mem
404

    
405
        mem.freq = int(_mem.rxfreq) * 10
406

    
407
        if self._is_txinh(_mem):
408
            # TX freq not set
409
            mem.duplex = "off"
410
            mem.offset = 0
411
        else:
412
            # TX freq set
413
            offset = (int(_mem.txfreq) * 10) - mem.freq
414
            if offset != 0:
415
                if offset > 0:
416
                    mem.duplex = "+"
417
                    mem.offset = 5000000
418
            else:
419
                mem.duplex = ""
420
                mem.offset = 0
421

    
422
        for char in _nam.name:
423
            if str(char) == "\xFF":
424
                char = " "  # The OEM software may have 0xFF mid-name
425
            mem.name += str(char)
426
        mem.name = mem.name.rstrip()
427

    
428
        dtcs_pol = ["N", "N"]
429

    
430
        if _mem.txtone in [0, 0xFFFF]:
431
            txmode = ""
432
        elif _mem.txtone >= 0x0258:
433
            txmode = "Tone"
434
            mem.rtone = int(_mem.txtone) / 10.0
435
        elif _mem.txtone <= 0x0258:
436
            txmode = "DTCS"
437
            if _mem.txtone > 0x69:
438
                index = _mem.txtone - 0x6A
439
                dtcs_pol[0] = "R"
440
            else:
441
                index = _mem.txtone - 1
442
            mem.dtcs = self.DTCS_CODES[index]
443
        else:
444
            LOG.warn("Bug: txtone is %04x" % _mem.txtone)
445

    
446
        if _mem.rxtone in [0, 0xFFFF]:
447
            rxmode = ""
448
        elif _mem.rxtone >= 0x0258:
449
            rxmode = "Tone"
450
            mem.ctone = int(_mem.rxtone) / 10.0
451
        elif _mem.rxtone <= 0x0258:
452
            rxmode = "DTCS"
453
            if _mem.rxtone >= 0x6A:
454
                index = _mem.rxtone - 0x6A
455
                dtcs_pol[1] = "R"
456
            else:
457
                index = _mem.rxtone - 1
458
            mem.rx_dtcs = self.DTCS_CODES[index]
459
        else:
460
            LOG.warn("Bug: rxtone is %04x" % _mem.rxtone)
461

    
462
        if txmode == "Tone" and not rxmode:
463
            mem.tmode = "Tone"
464
        elif txmode == rxmode and txmode == "Tone" and mem.rtone == mem.ctone:
465
            mem.tmode = "TSQL"
466
        elif txmode == rxmode and txmode == "DTCS" and mem.dtcs == mem.rx_dtcs:
467
            mem.tmode = "DTCS"
468
        elif rxmode or txmode:
469
            mem.tmode = "Cross"
470
            mem.cross_mode = "%s->%s" % (txmode, rxmode)
471

    
472
        mem.dtcs_polarity = "".join(dtcs_pol)
473

    
474
        if not _mem.scan:
475
            mem.skip = "S"
476

    
477
        levels = self.POWER_LEVELS
478
        try:
479
            mem.power = levels[_mem.lowpower]
480
        except IndexError:
481
            LOG.error("Radio reported invalid power level %s (in %s)" %
482
                      (_mem.power, levels))
483
            mem.power = levels[0]
484

    
485
        mem.mode = _mem.wide and "FM" or "NFM"
486

    
487
        mem.extra = RadioSettingGroup("Extra", "extra")
488

    
489
        rs = RadioSetting("bcl", "BCL",
490
                          RadioSettingValueBoolean(_mem.bcl))
491
        mem.extra.append(rs)
492

    
493
        rs = RadioSetting("pttid", "PTT ID",
494
                          RadioSettingValueList(self.PTTID_LIST,
495
                                                self.PTTID_LIST[_mem.pttid]))
496
        mem.extra.append(rs)
497

    
498
        rs = RadioSetting("scode", "S-CODE",
499
                          RadioSettingValueList(self.SCODE_LIST,
500
                                                self.SCODE_LIST[_mem.scode]))
501
        mem.extra.append(rs)
502

    
503
        return mem
504

    
505
    def set_memory(self, mem):
506
        _mem = self._memobj.memory[mem.number]
507
        _nam = self._memobj.names[mem.number]
508

    
509
        if mem.empty:
510
            _mem.set_raw("\xff" * 16)
511
            _nam.set_raw("\xff" * 16)
512
            return
513

    
514
        _mem.set_raw("\x00" * 16)
515

    
516
        if float(mem.freq) / 1000000 in GMRS_FREQS1:
517
            mem.duplex == ''
518
            mem.offset = 0
519
        elif float(mem.freq) / 1000000 in GMRS_FREQS2:
520
            mem.duplex == ''
521
            mem.offset = 0
522
            mem.mode = "NFM"
523
            mem.power = self.POWER_LEVELS[1]
524
        elif float(mem.freq) / 1000000 in GMRS_FREQS3:
525
            if mem.duplex == '+':
526
                mem.offset = 5000000
527
            else:
528
                mem.duplex == ''
529
                mem.offset = 0
530
        else:
531
            mem.duplex = 'off'
532
            mem.offset = 0
533

    
534
        _mem.rxfreq = mem.freq / 10
535

    
536
        if mem.duplex == "off":
537
            for i in range(0, 4):
538
                _mem.txfreq[i].set_raw("\xFF")
539
        elif mem.duplex == "+":
540
            mem.offset = 5000000
541
            _mem.txfreq = (mem.freq + mem.offset) / 10
542
        else:
543
            _mem.txfreq = mem.freq / 10
544

    
545
        _namelength = self.get_features().valid_name_length
546
        for i in range(_namelength):
547
            try:
548
                _nam.name[i] = mem.name[i]
549
            except IndexError:
550
                _nam.name[i] = "\xFF"
551

    
552
        rxmode = txmode = ""
553
        if mem.tmode == "Tone":
554
            _mem.txtone = int(mem.rtone * 10)
555
            _mem.rxtone = 0
556
        elif mem.tmode == "TSQL":
557
            _mem.txtone = int(mem.ctone * 10)
558
            _mem.rxtone = int(mem.ctone * 10)
559
        elif mem.tmode == "DTCS":
560
            rxmode = txmode = "DTCS"
561
            _mem.txtone = self.DTCS_CODES.index(mem.dtcs) + 1
562
            _mem.rxtone = self.DTCS_CODES.index(mem.dtcs) + 1
563
        elif mem.tmode == "Cross":
564
            txmode, rxmode = mem.cross_mode.split("->", 1)
565
            if txmode == "Tone":
566
                _mem.txtone = int(mem.rtone * 10)
567
            elif txmode == "DTCS":
568
                _mem.txtone = self.DTCS_CODES.index(mem.dtcs) + 1
569
            else:
570
                _mem.txtone = 0
571
            if rxmode == "Tone":
572
                _mem.rxtone = int(mem.ctone * 10)
573
            elif rxmode == "DTCS":
574
                _mem.rxtone = self.DTCS_CODES.index(mem.rx_dtcs) + 1
575
            else:
576
                _mem.rxtone = 0
577
        else:
578
            _mem.rxtone = 0
579
            _mem.txtone = 0
580

    
581
        if txmode == "DTCS" and mem.dtcs_polarity[0] == "R":
582
            _mem.txtone += 0x69
583
        if rxmode == "DTCS" and mem.dtcs_polarity[1] == "R":
584
            _mem.rxtone += 0x69
585

    
586
        _mem.scan = mem.skip != "S"
587
        _mem.wide = mem.mode == "FM"
588

    
589
        if mem.power:
590
            _mem.lowpower = self.POWER_LEVELS.index(mem.power)
591
        else:
592
            _mem.lowpower = 0
593

    
594
        # extra settings
595
        if len(mem.extra) > 0:
596
            # there are setting, parse
597
            for setting in mem.extra:
598
                setattr(_mem, setting.get_name(), setting.value)
599
        else:
600
            # there are no extra settings, load defaults
601
            _mem.bcl = 0
602
            _mem.pttid = 0
603
            _mem.scode = 0
604

    
605
    def get_settings(self):
606
        """Translate the bit in the mem_struct into settings in the UI"""
607
        _mem = self._memobj
608
        basic = RadioSettingGroup("basic", "Basic Settings")
609
        advanced = RadioSettingGroup("advanced", "Advanced Settings")
610
        other = RadioSettingGroup("other", "Other Settings")
611
        work = RadioSettingGroup("work", "Work Mode Settings")
612
        fm_preset = RadioSettingGroup("fm_preset", "FM Preset")
613
        dtmfe = RadioSettingGroup("dtmfe", "DTMF Encode Settings")
614
        service = RadioSettingGroup("service", "Service Settings")
615
        top = RadioSettings(basic, advanced, other, work, fm_preset, dtmfe,
616
                            service)
617

    
618
        # Basic settings
619
        if _mem.settings.squelch > 0x09:
620
            val = 0x00
621
        else:
622
            val = _mem.settings.squelch
623
        rs = RadioSetting("settings.squelch", "Squelch",
624
                          RadioSettingValueList(
625
                              LIST_OFF1TO9, LIST_OFF1TO9[val]))
626
        basic.append(rs)
627

    
628
        if _mem.settings.save > 0x04:
629
            val = 0x00
630
        else:
631
            val = _mem.settings.save
632
        rs = RadioSetting("settings.save", "Battery Saver",
633
                          RadioSettingValueList(
634
                              LIST_SAVE, LIST_SAVE[val]))
635
        basic.append(rs)
636

    
637
        if _mem.settings.vox > 0x0A:
638
            val = 0x00
639
        else:
640
            val = _mem.settings.vox
641
        rs = RadioSetting("settings.vox", "Vox",
642
                          RadioSettingValueList(
643
                              LIST_OFF1TO10, LIST_OFF1TO10[val]))
644
        basic.append(rs)
645

    
646
        if _mem.settings.abr > 0x0A:
647
            val = 0x00
648
        else:
649
            val = _mem.settings.abr
650
        rs = RadioSetting("settings.abr", "Backlight Timeout",
651
                          RadioSettingValueList(
652
                              LIST_OFF1TO10, LIST_OFF1TO10[val]))
653
        basic.append(rs)
654

    
655
        rs = RadioSetting("settings.tdr", "Dual Watch",
656
                          RadioSettingValueBoolean(_mem.settings.tdr))
657
        basic.append(rs)
658

    
659
        rs = RadioSetting("settings.beep", "Beep",
660
                          RadioSettingValueBoolean(_mem.settings.beep))
661
        basic.append(rs)
662

    
663
        if _mem.settings.timeout > 0x27:
664
            val = 0x03
665
        else:
666
            val = _mem.settings.timeout
667
        rs = RadioSetting("settings.timeout", "Timeout Timer",
668
                          RadioSettingValueList(
669
                              LIST_TIMEOUT, LIST_TIMEOUT[val]))
670
        basic.append(rs)
671

    
672
        if _mem.settings.voice > 0x02:
673
            val = 0x01
674
        else:
675
            val = _mem.settings.voice
676
        rs = RadioSetting("settings.voice", "Voice Prompt",
677
                          RadioSettingValueList(
678
                              LIST_VOICE, LIST_VOICE[val]))
679
        basic.append(rs)
680

    
681
        rs = RadioSetting("settings.dtmfst", "DTMF Sidetone",
682
                          RadioSettingValueList(LIST_DTMFST, LIST_DTMFST[
683
                              _mem.settings.dtmfst]))
684
        basic.append(rs)
685

    
686
        if _mem.settings.screv > 0x02:
687
            val = 0x01
688
        else:
689
            val = _mem.settings.screv
690
        rs = RadioSetting("settings.screv", "Scan Resume",
691
                          RadioSettingValueList(
692
                              LIST_RESUME, LIST_RESUME[val]))
693
        basic.append(rs)
694

    
695
        if _mem.settings.pttlt > 0x32:
696
            val = 0x05
697
        else:
698
            val = _mem.settings.pttlt
699
        rs = RadioSetting("pttlt", "PTT ID Delay",
700
                          RadioSettingValueInteger(0, 50, val))
701
        basic.append(rs)
702

    
703
        rs = RadioSetting("settings.mdfa", "Display Mode (A)",
704
                          RadioSettingValueList(LIST_MODE, LIST_MODE[
705
                              _mem.settings.mdfa]))
706
        basic.append(rs)
707

    
708
        rs = RadioSetting("settings.mdfb", "Display Mode (B)",
709
                          RadioSettingValueList(LIST_MODE, LIST_MODE[
710
                              _mem.settings.mdfb]))
711
        basic.append(rs)
712

    
713
        rs = RadioSetting("settings.sync", "Sync A & B",
714
                          RadioSettingValueBoolean(_mem.settings.sync))
715
        basic.append(rs)
716

    
717
        rs = RadioSetting("settings.wtled", "Standby LED Color",
718
                          RadioSettingValueList(
719
                              LIST_COLOR, LIST_COLOR[_mem.settings.wtled]))
720
        basic.append(rs)
721

    
722
        rs = RadioSetting("settings.rxled", "RX LED Color",
723
                          RadioSettingValueList(
724
                              LIST_COLOR, LIST_COLOR[_mem.settings.rxled]))
725
        basic.append(rs)
726

    
727
        rs = RadioSetting("settings.txled", "TX LED Color",
728
                          RadioSettingValueList(
729
                              LIST_COLOR, LIST_COLOR[_mem.settings.txled]))
730
        basic.append(rs)
731

    
732
        val = _mem.settings.almod
733
        rs = RadioSetting("settings.almod", "Alarm Mode",
734
                          RadioSettingValueList(
735
                              LIST_ALMOD, LIST_ALMOD[val]))
736
        basic.append(rs)
737

    
738
        rs = RadioSetting("settings.dbptt", "Double PTT",
739
                          RadioSettingValueBoolean(_mem.settings.dbptt))
740
        basic.append(rs)
741

    
742
        if _mem.settings.tdrab > 0x02:
743
            val = 0x00
744
        else:
745
            val = _mem.settings.tdrab
746
        rs = RadioSetting("settings.tdrab", "Dual Watch TX Priority",
747
                          RadioSettingValueList(
748
                              LIST_OFFAB, LIST_OFFAB[val]))
749
        basic.append(rs)
750

    
751
        rs = RadioSetting("settings.ste", "Squelch Tail Eliminate (HT to HT)",
752
                          RadioSettingValueBoolean(_mem.settings.ste))
753
        basic.append(rs)
754

    
755
        if _mem.settings.rpste > 0x0A:
756
            val = 0x00
757
        else:
758
            val = _mem.settings.rpste
759
        rs = RadioSetting("settings.rpste",
760
                          "Squelch Tail Eliminate (repeater)",
761
                          RadioSettingValueList(
762
                              LIST_RPSTE, LIST_RPSTE[val]))
763
        basic.append(rs)
764

    
765
        if _mem.settings.rptrl > 0x0A:
766
            val = 0x00
767
        else:
768
            val = _mem.settings.rptrl
769
        rs = RadioSetting("settings.rptrl", "STE Repeater Delay",
770
                          RadioSettingValueList(
771
                              LIST_STEDELAY, LIST_STEDELAY[val]))
772
        basic.append(rs)
773

    
774
        rs = RadioSetting("settings.ponmsg", "Power-On Message",
775
                          RadioSettingValueList(LIST_PONMSG, LIST_PONMSG[
776
                              _mem.settings.ponmsg]))
777
        basic.append(rs)
778

    
779
        rs = RadioSetting("settings.roger", "Roger Beep",
780
                          RadioSettingValueBoolean(_mem.settings.roger))
781
        basic.append(rs)
782

    
783
        rs = RadioSetting("settings.rtone", "Tone Burst Frequency",
784
                          RadioSettingValueList(LIST_RTONE, LIST_RTONE[
785
                              _mem.settings.rtone]))
786
        basic.append(rs)
787

    
788
        rs = RadioSetting("settings.rogerrx", "Roger Beep (RX)",
789
                          RadioSettingValueList(
790
                             LIST_OFFAB, LIST_OFFAB[
791
                                 _mem.settings.rogerrx]))
792
        basic.append(rs)
793

    
794
        # Advanced settings
795
        rs = RadioSetting("settings.reset", "RESET Menu",
796
                          RadioSettingValueBoolean(_mem.settings.reset))
797
        advanced.append(rs)
798

    
799
        rs = RadioSetting("settings.menu", "All Menus",
800
                          RadioSettingValueBoolean(_mem.settings.menu))
801
        advanced.append(rs)
802

    
803
        rs = RadioSetting("settings.fmradio", "Broadcast FM Radio",
804
                          RadioSettingValueBoolean(_mem.settings.fmradio))
805
        advanced.append(rs)
806

    
807
        rs = RadioSetting("settings.alarm", "Alarm Sound",
808
                          RadioSettingValueBoolean(_mem.settings.alarm))
809
        advanced.append(rs)
810

    
811
        # Other settings
812
        def _filter(name):
813
            filtered = ""
814
            for char in str(name):
815
                if char in chirp_common.CHARSET_ASCII:
816
                    filtered += char
817
                else:
818
                    filtered += " "
819
            return filtered
820

    
821
        _msg = _mem.firmware_msg
822
        val = RadioSettingValueString(0, 7, _filter(_msg.line1))
823
        val.set_mutable(False)
824
        rs = RadioSetting("firmware_msg.line1", "Firmware Message 1", val)
825
        other.append(rs)
826

    
827
        val = RadioSettingValueString(0, 7, _filter(_msg.line2))
828
        val.set_mutable(False)
829
        rs = RadioSetting("firmware_msg.line2", "Firmware Message 2", val)
830
        other.append(rs)
831

    
832
        _msg = _mem.sixpoweron_msg
833
        val = RadioSettingValueString(0, 7, _filter(_msg.line1))
834
        val.set_mutable(False)
835
        rs = RadioSetting("sixpoweron_msg.line1", "6+Power-On Message 1", val)
836
        other.append(rs)
837
        val = RadioSettingValueString(0, 7, _filter(_msg.line2))
838
        val.set_mutable(False)
839
        rs = RadioSetting("sixpoweron_msg.line2", "6+Power-On Message 2", val)
840
        other.append(rs)
841

    
842
        _msg = _mem.poweron_msg
843
        rs = RadioSetting("poweron_msg.line1", "Power-On Message 1",
844
                          RadioSettingValueString(
845
                              0, 7, _filter(_msg.line1)))
846
        other.append(rs)
847
        rs = RadioSetting("poweron_msg.line2", "Power-On Message 2",
848
                          RadioSettingValueString(
849
                              0, 7, _filter(_msg.line2)))
850
        other.append(rs)
851

    
852
        # Work mode settings
853
        rs = RadioSetting("settings.displayab", "Display",
854
                          RadioSettingValueList(
855
                              LIST_AB, LIST_AB[_mem.settings.displayab]))
856
        work.append(rs)
857

    
858
        rs = RadioSetting("settings.workmode", "VFO/MR Mode",
859
                          RadioSettingValueList(
860
                              LIST_WORKMODE,
861
                              LIST_WORKMODE[_mem.settings.workmode]))
862
        work.append(rs)
863

    
864
        rs = RadioSetting("settings.keylock", "Keypad Lock",
865
                          RadioSettingValueBoolean(_mem.settings.keylock))
866
        work.append(rs)
867

    
868
        rs = RadioSetting("wmchannel.mrcha", "MR A Channel",
869
                          RadioSettingValueInteger(0, 127,
870
                                                   _mem.wmchannel.mrcha))
871
        work.append(rs)
872

    
873
        rs = RadioSetting("wmchannel.mrchb", "MR B Channel",
874
                          RadioSettingValueInteger(0, 127,
875
                                                   _mem.wmchannel.mrchb))
876
        work.append(rs)
877

    
878
        def convert_bytes_to_freq(bytes):
879
            real_freq = 0
880
            for byte in bytes:
881
                real_freq = (real_freq * 10) + byte
882
            return chirp_common.format_freq(real_freq * 10)
883

    
884
        def my_validate(value):
885
            value = chirp_common.parse_freq(value)
886
            msg = ("Can't be less than %i.0000")
887
            if value > 99000000 and value < 130 * 1000000:
888
                raise InvalidValueError(msg % (130))
889
            msg = ("Can't be between %i.9975-%i.0000")
890
            if (179 + 1) * 1000000 <= value and value < 400 * 1000000:
891
                raise InvalidValueError(msg % (179, 400))
892
            msg = ("Can't be greater than %i.9975")
893
            if value > 99000000 and value > (520 + 1) * 1000000:
894
                raise InvalidValueError(msg % (520))
895
            return chirp_common.format_freq(value)
896

    
897
        def apply_freq(setting, obj):
898
            value = chirp_common.parse_freq(str(setting.value)) / 10
899
            for i in range(7, -1, -1):
900
                obj.freq[i] = value % 10
901
                value /= 10
902

    
903
        val1a = RadioSettingValueString(0, 10,
904
                                        convert_bytes_to_freq(_mem.vfo.a.freq))
905
        val1a.set_validate_callback(my_validate)
906
        rs = RadioSetting("vfo.a.freq", "VFO A Frequency", val1a)
907
        rs.set_apply_callback(apply_freq, _mem.vfo.a)
908
        work.append(rs)
909

    
910
        val1b = RadioSettingValueString(0, 10,
911
                                        convert_bytes_to_freq(_mem.vfo.b.freq))
912
        val1b.set_validate_callback(my_validate)
913
        rs = RadioSetting("vfo.b.freq", "VFO B Frequency", val1b)
914
        rs.set_apply_callback(apply_freq, _mem.vfo.b)
915
        work.append(rs)
916

    
917
        rs = RadioSetting("vfo.a.step", "VFO A Tuning Step",
918
                          RadioSettingValueList(
919
                              LIST_STEP, LIST_STEP[_mem.vfo.a.step]))
920
        work.append(rs)
921
        rs = RadioSetting("vfo.b.step", "VFO B Tuning Step",
922
                          RadioSettingValueList(
923
                              LIST_STEP, LIST_STEP[_mem.vfo.b.step]))
924
        work.append(rs)
925

    
926
        # broadcast FM settings
927
        _fm_presets = self._memobj.fm_presets
928
        if _fm_presets <= 108.0 * 10 - 650:
929
            preset = _fm_presets / 10.0 + 65
930
        elif _fm_presets >= 65.0 * 10 and _fm_presets <= 108.0 * 10:
931
            preset = _fm_presets / 10.0
932
        else:
933
            preset = 76.0
934
        rs = RadioSetting("fm_presets", "FM Preset(MHz)",
935
                          RadioSettingValueFloat(65, 108.0, preset, 0.1, 1))
936
        fm_preset.append(rs)
937

    
938
        # DTMF settings
939
        def apply_code(setting, obj, length):
940
            code = []
941
            for j in range(0, length):
942
                try:
943
                    code.append(DTMF_CHARS.index(str(setting.value)[j]))
944
                except IndexError:
945
                    code.append(0xFF)
946
            obj.code = code
947

    
948
        for i in range(0, 15):
949
            _codeobj = self._memobj.pttid[i].code
950
            _code = "".join([DTMF_CHARS[x] for x in _codeobj if int(x) < 0x1F])
951
            val = RadioSettingValueString(0, 5, _code, False)
952
            val.set_charset(DTMF_CHARS)
953
            pttid = RadioSetting("pttid/%i.code" % i,
954
                                 "Signal Code %i" % (i + 1), val)
955
            pttid.set_apply_callback(apply_code, self._memobj.pttid[i], 5)
956
            dtmfe.append(pttid)
957

    
958
        if _mem.ani.dtmfon > 0xC3:
959
            val = 0x03
960
        else:
961
            val = _mem.ani.dtmfon
962
        rs = RadioSetting("ani.dtmfon", "DTMF Speed (on)",
963
                          RadioSettingValueList(LIST_DTMFSPEED,
964
                                                LIST_DTMFSPEED[val]))
965
        dtmfe.append(rs)
966

    
967
        if _mem.ani.dtmfoff > 0xC3:
968
            val = 0x03
969
        else:
970
            val = _mem.ani.dtmfoff
971
        rs = RadioSetting("ani.dtmfoff", "DTMF Speed (off)",
972
                          RadioSettingValueList(LIST_DTMFSPEED,
973
                                                LIST_DTMFSPEED[val]))
974
        dtmfe.append(rs)
975

    
976
        _codeobj = self._memobj.ani.code
977
        _code = "".join([DTMF_CHARS[x] for x in _codeobj if int(x) < 0x1F])
978
        val = RadioSettingValueString(0, 5, _code, False)
979
        val.set_charset(DTMF_CHARS)
980
        rs = RadioSetting("ani.code", "ANI Code", val)
981
        rs.set_apply_callback(apply_code, self._memobj.ani, 5)
982
        dtmfe.append(rs)
983

    
984
        rs = RadioSetting("ani.aniid", "When to send ANI ID",
985
                          RadioSettingValueList(LIST_PTTID,
986
                                                LIST_PTTID[_mem.ani.aniid]))
987
        dtmfe.append(rs)
988

    
989
        def apply_alarmcode(setting, obj, length):
990
            code = []
991
            for j in range(0, length):
992
                try:
993
                    code.append(DTMF_CHARS.index(str(setting.value)[j]))
994
                except IndexError:
995
                    code.append(0xFF)
996
            obj.alarm = code
997

    
998
        _codeobj = self._memobj.ani.alarm
999
        _code = "".join([DTMF_CHARS[x] for x in _codeobj if int(x) < 0x1F])
1000
        val = RadioSettingValueString(0, 5, _code, False)
1001
        val.set_charset(DTMF_CHARS)
1002
        rs = RadioSetting("ani.alarm", "Alarm Code", val)
1003
        rs.set_apply_callback(apply_alarmcode, self._memobj.ani, 5)
1004
        dtmfe.append(rs)
1005

    
1006
        # Service settings
1007
        for band in ["vhf", "uhf"]:
1008
            for index in range(0, 10):
1009
                key = "squelch.%s.sql%i" % (band, index)
1010
                if band == "vhf":
1011
                    _obj = self._memobj.squelch.vhf
1012
                elif band == "uhf":
1013
                    _obj = self._memobj.squelch.uhf
1014
                val = RadioSettingValueInteger(0, 123,
1015
                                               getattr(_obj, "sql%i" % (
1016
                                                       index)))
1017
                if index == 0:
1018
                    val.set_mutable(False)
1019
                name = "%s Squelch %i" % (band.upper(), index)
1020
                rs = RadioSetting(key, name, val)
1021
                service.append(rs)
1022

    
1023
        return top
1024

    
1025
    @classmethod
1026
    def match_model(cls, filedata, filename):
1027
        # This radio has always been post-metadata, so never do
1028
        # old-school detection
1029
        return False
(2-2/2)