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Bug #10845 » bf_t8.py

Jim Unroe, 09/17/2023 11:27 AM

 
1
# Copyright 2022 Jim Unroe <rock.unroe@gmail.com>
2
#
3
# This program is free software: you can redistribute it and/or modify
4
# it under the terms of the GNU General Public License as published by
5
# 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
10
# 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
14
# along with this program.  If not, see <http://www.gnu.org/licenses/>.
15

    
16
import struct
17
import logging
18

    
19
from chirp import (
20
    bitwise,
21
    chirp_common,
22
    directory,
23
    errors,
24
    memmap,
25
    util,
26
)
27
from chirp.settings import (
28
    RadioSetting,
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    RadioSettingGroup,
30
    RadioSettings,
31
    RadioSettingValueBoolean,
32
    RadioSettingValueFloat,
33
    RadioSettingValueInteger,
34
    RadioSettingValueList,
35
)
36

    
37
LOG = logging.getLogger(__name__)
38

    
39
MEM_FORMAT = """
40
#seekto 0x0000;
41
struct {
42
  lbcd rxfreq[4];       // RX Frequency
43
  lbcd txfreq[4];       // TX Frequency
44
  u8 rx_tmode;          // RX Tone Mode
45
  u8 rx_tone;           // PL/DPL Decode
46
  u8 tx_tmode;          // TX Tone Mode
47
  u8 tx_tone;           // PL/DPL Encode
48
  u8 unknown1:3,        //
49
     skip:1,            // Scan Add: 1 = Skip, 0 = Scan
50
     unknown2:2,
51
     isnarrow:1,        // W/N: 1 = Narrow, 0 = Wide
52
     lowpower:1;        // TX Power: 1 = Low, 0 = High
53
  u8 unknown3[3];       //
54
} memory[%d];
55

    
56
#seekto 0x0630;
57
struct {
58
  u8 squelch;           // SQL
59
  u8 vox;               // Vox Lv
60
  u8 tot;               // TOT
61
  u8 unk1:3,            //
62
     ste:1,             // Tail Clear
63
     bcl:1,             // BCL
64
     save:1,            // Save
65
     tdr:1,             // TDR
66
     beep:1;            // Beep
67
  u8 voice;             // Voice
68
  u8 abr;               // Back Light
69
  u8 ring;              // Ring
70
  u8 mdf;               // Display Type
71
  u8 mra;               // MR Channel A
72
  u8 mrb;               // MR Channel B
73
  u8 disp_ab;           // Display A/B Selected
74
} settings;
75

    
76
#seekto 0x063D;
77
struct {
78
  u8 workmode;          // Work Mode
79
  u8 wx;                // NOAA WX ch#
80
  u8 area;              // Area Selected
81
} settings2;
82

    
83
#seekto 0x0D00;
84
struct {
85
  char name[6];
86
  u8 unknown1[2];
87
} names[%d];
88
"""
89

    
90
MEM_FM_U_FORMAT = """
91
#seekto 0x063B;
92
struct {
93
  u16 fmcur;            // Broadcast FM station
94
} fmpreset;
95
"""
96

    
97
MEM_FM_UL_FORMAT = """
98
#seekto 0x063B;
99
struct {
100
  ul16 fmcur;           // Broadcast FM station
101
} fmpreset;
102
"""
103

    
104
CMD_ACK = b"\x06"
105

    
106
TONES = chirp_common.TONES
107
TMODES = ["", "Tone", "DTCS", "DTCS"]
108

    
109
AB_LIST = ["A", "B"]
110
ABR_LIST = ["OFF", "ON", "Key"]
111
AREA_LIST = ["China", "Japan", "Korea", "Malaysia", "American",
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             "Australia", "Iran", "Taiwan", "Europe", "Russia"]
113
MDF_LIST = ["Frequency", "Channel #", "Name"]
114
RING_LIST = ["OFF"] + ["%s" % x for x in range(1, 11)]
115
TOT_LIST = ["OFF"] + ["%s seconds" % x for x in range(30, 210, 30)]
116
TOT2_LIST = ["OFF"] + ["%s seconds" % x for x in range(60, 240, 30)]
117
VOICE_LIST = ["Off", "Chinese", "English"]
118
VOX_LIST = ["OFF"] + ["%s" % x for x in range(1, 6)]
119
WORKMODE_LIST = ["General", "PMR"]
120
WX_LIST = ["CH01 - 162.550",
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           "CH02 - 162.400",
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           "CH03 - 162.475",
123
           "CH04 - 162.425",
124
           "CH05 - 162.450",
125
           "CH06 - 162.500",
126
           "CH07 - 162.525",
127
           "CH08 - 161.650",
128
           "CH09 - 161.775",
129
           "CH10 - 161.750",
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           "CH11 - 162.000"
131
           ]
132

    
133
FRS_FREQS1 = [462562500, 462587500, 462612500, 462637500, 462662500,
134
              462687500, 462712500]
135
FRS_FREQS2 = [467562500, 467587500, 467612500, 467637500, 467662500,
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              467687500, 467712500]
137
FRS_FREQS3 = [462550000, 462575000, 462600000, 462625000, 462650000,
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              462675000, 462700000, 462725000]
139
FRS_FREQS = FRS_FREQS1 + FRS_FREQS2 + FRS_FREQS3
140

    
141
GMRS_FREQS = FRS_FREQS + FRS_FREQS3
142

    
143
MURS_FREQS = [151820000, 151880000, 151940000, 154570000, 154600000]
144

    
145
PMR_FREQS1 = [446006250, 446018750, 446031250, 446043750, 446056250,
146
              446068750, 446081250, 446093750]
147
PMR_FREQS2 = [446106250, 446118750, 446131250, 446143750, 446156250,
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              446168750, 446181250, 446193750]
149
PMR_FREQS = PMR_FREQS1 + PMR_FREQS2
150

    
151
VOICE_CHOICES = ["Off", "On"]
152
VOICE_VALUES = [0x00, 0x02]
153

    
154

    
155
def _enter_programming_mode(radio):
156
    serial = radio.pipe
157

    
158
    exito = False
159
    for i in range(0, 5):
160
        serial.write(radio._magic)
161
        ack = serial.read(1)
162

    
163
        try:
164
            if ack == CMD_ACK:
165
                exito = True
166
                break
167
        except:
168
            LOG.debug("Attempt #%s, failed, trying again" % i)
169
            pass
170

    
171
    # check if we had EXITO
172
    if exito is False:
173
        _exit_programming_mode(radio)
174
        msg = "The radio did not accept program mode after five tries.\n"
175
        msg += "Check you interface cable and power cycle your radio."
176
        raise errors.RadioError(msg)
177

    
178
    try:
179
        serial.write(b"\x02")
180
        ident = serial.read(len(radio._fingerprint))
181
    except:
182
        _exit_programming_mode(radio)
183
        raise errors.RadioError("Error communicating with radio")
184

    
185
    if not ident == radio._fingerprint:
186
        _exit_programming_mode(radio)
187
        LOG.debug(util.hexprint(ident))
188
        raise errors.RadioError("Radio returned unknown identification string")
189

    
190
    try:
191
        serial.write(CMD_ACK)
192
        ack = serial.read(1)
193
    except:
194
        _exit_programming_mode(radio)
195
        raise errors.RadioError("Error communicating with radio")
196

    
197
    if ack != CMD_ACK:
198
        _exit_programming_mode(radio)
199
        raise errors.RadioError("Radio refused to enter programming mode")
200

    
201

    
202
def _exit_programming_mode(radio):
203
    serial = radio.pipe
204
    try:
205
        serial.write(b"E")
206
    except:
207
        raise errors.RadioError("Radio refused to exit programming mode")
208

    
209

    
210
def _read_block(radio, block_addr, block_size):
211
    serial = radio.pipe
212

    
213
    cmd = struct.pack(">cHb", b'R', block_addr, block_size)
214
    expectedresponse = b"W" + cmd[1:]
215
    LOG.debug("Reading block %04x..." % (block_addr))
216

    
217
    try:
218
        serial.write(cmd)
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        response = serial.read(4 + block_size)
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        if response[:4] != expectedresponse:
221
            raise Exception("Error reading block %04x." % (block_addr))
222

    
223
        block_data = response[4:]
224

    
225
        serial.write(CMD_ACK)
226
        ack = serial.read(1)
227
    except:
228
        _exit_programming_mode(radio)
229
        raise errors.RadioError("Failed to read block at %04x" % block_addr)
230

    
231
    if ack != CMD_ACK:
232
        _exit_programming_mode(radio)
233
        raise Exception("No ACK reading block %04x." % (block_addr))
234

    
235
    return block_data
236

    
237

    
238
def _write_block(radio, block_addr, block_size):
239
    serial = radio.pipe
240

    
241
    cmd = struct.pack(">cHb", b'W', block_addr, block_size)
242
    data = radio.get_mmap()[block_addr:block_addr + block_size]
243

    
244
    LOG.debug("Writing Data:")
245
    LOG.debug(util.hexprint(cmd + data))
246

    
247
    try:
248
        serial.write(cmd + data)
249
        if serial.read(1) != CMD_ACK:
250
            raise Exception("No ACK")
251
    except:
252
        _exit_programming_mode(radio)
253
        raise errors.RadioError("Failed to send block "
254
                                "to radio at %04x" % block_addr)
255

    
256

    
257
def do_download(radio):
258
    LOG.debug("download")
259
    _enter_programming_mode(radio)
260

    
261
    data = b""
262

    
263
    status = chirp_common.Status()
264
    status.msg = "Cloning from radio"
265

    
266
    status.cur = 0
267
    status.max = radio._memsize
268

    
269
    for addr in range(0, radio._memsize, radio.BLOCK_SIZE):
270
        status.cur = addr + radio.BLOCK_SIZE
271
        radio.status_fn(status)
272

    
273
        block = _read_block(radio, addr, radio.BLOCK_SIZE)
274
        data += block
275

    
276
        LOG.debug("Address: %04x" % addr)
277
        LOG.debug(util.hexprint(block))
278

    
279
    _exit_programming_mode(radio)
280

    
281
    return memmap.MemoryMapBytes(data)
282

    
283

    
284
def do_upload(radio):
285
    status = chirp_common.Status()
286
    status.msg = "Uploading to radio"
287

    
288
    _enter_programming_mode(radio)
289

    
290
    status.cur = 0
291
    status.max = radio._memsize
292

    
293
    for start_addr, end_addr in radio._ranges:
294
        for addr in range(start_addr, end_addr, radio.BLOCK_SIZE_UP):
295
            status.cur = addr + radio.BLOCK_SIZE_UP
296
            radio.status_fn(status)
297
            _write_block(radio, addr, radio.BLOCK_SIZE_UP)
298

    
299
    _exit_programming_mode(radio)
300

    
301

    
302
class BFT8Radio(chirp_common.CloneModeRadio):
303
    """Baofeng BF-T8"""
304
    VENDOR = "Baofeng"
305
    MODEL = "BF-T8"
306
    BAUD_RATE = 9600
307
    NEEDS_COMPAT_SERIAL = False
308
    BLOCK_SIZE = BLOCK_SIZE_UP = 0x10
309
    ODD_SPLIT = True
310
    HAS_NAMES = False
311
    NAME_LENGTH = 0
312
    VALID_CHARS = ""
313
    CH_OFFSET = False
314
    SKIP_VALUES = []
315
    DTCS_CODES = sorted(chirp_common.DTCS_CODES)
316
    DUPLEXES = ["", "-", "+", "split", "off"]
317

    
318
    POWER_LEVELS = [chirp_common.PowerLevel("High", watts=2.00),
319
                    chirp_common.PowerLevel("Low", watts=0.50)]
320
    VALID_BANDS = [(400000000, 470000000)]
321

    
322
    _magic = b"\x02" + b"PROGRAM"
323
    _fingerprint = b"\x2E" + b"BF-T6" + b"\x2E"
324
    _upper = 99
325
    _mem_params = (_upper,  # number of channels
326
                   _upper   # number of names
327
                   )
328
    _frs = _gmrs = _murs = _pmr = False
329

    
330
    _ranges = [
331
               (0x0000, 0x0B60),
332
              ]
333
    _memsize = 0x0B60
334

    
335
    def get_features(self):
336
        rf = chirp_common.RadioFeatures()
337
        rf.has_settings = True
338
        rf.has_bank = False
339
        rf.has_ctone = True
340
        rf.has_cross = True
341
        rf.has_rx_dtcs = True
342
        rf.has_tuning_step = False
343
        rf.has_name = self.HAS_NAMES
344
        rf.can_odd_split = self.ODD_SPLIT
345
        rf.valid_name_length = self.NAME_LENGTH
346
        rf.valid_characters = self.VALID_CHARS
347
        rf.valid_skips = self.SKIP_VALUES
348
        rf.valid_tmodes = ["", "Tone", "TSQL", "DTCS", "Cross"]
349
        rf.valid_cross_modes = ["Tone->Tone", "Tone->DTCS", "DTCS->Tone",
350
                                "->Tone", "->DTCS", "DTCS->", "DTCS->DTCS"]
351
        rf.valid_dtcs_codes = self.DTCS_CODES
352
        rf.valid_power_levels = self.POWER_LEVELS
353
        rf.valid_duplexes = self.DUPLEXES
354
        rf.valid_modes = ["FM", "NFM"]  # 25 kHz, 12.5 kHz.
355
        rf.memory_bounds = (1, self._upper)
356
        rf.valid_tuning_steps = [2.5, 5., 6.25, 10., 12.5, 25.]
357
        rf.valid_bands = self.VALID_BANDS
358

    
359
        return rf
360

    
361
    def process_mmap(self):
362
        mem_format = MEM_FORMAT + MEM_FM_UL_FORMAT
363
        self._memobj = bitwise.parse(mem_format % self._mem_params, self._mmap)
364

    
365
    def sync_in(self):
366
        """Download from radio"""
367
        try:
368
            data = do_download(self)
369
        except errors.RadioError:
370
            # Pass through any real errors we raise
371
            raise
372
        except:
373
            # If anything unexpected happens, make sure we raise
374
            # a RadioError and log the problem
375
            LOG.exception('Unexpected error during download')
376
            raise errors.RadioError('Unexpected error communicating '
377
                                    'with the radio')
378
        self._mmap = data
379
        self.process_mmap()
380

    
381
    def sync_out(self):
382
        """Upload to radio"""
383
        try:
384
            do_upload(self)
385
        except:
386
            # If anything unexpected happens, make sure we raise
387
            # a RadioError and log the problem
388
            LOG.exception('Unexpected error during upload')
389
            raise errors.RadioError('Unexpected error communicating '
390
                                    'with the radio')
391

    
392
    def get_raw_memory(self, number):
393
        return repr(self._memobj.memory[number - 1])
394

    
395
    def _get_tone(self, mem, _mem):
396
        rx_tone = tx_tone = None
397

    
398
        tx_tmode = TMODES[_mem.tx_tmode]
399
        rx_tmode = TMODES[_mem.rx_tmode]
400

    
401
        if tx_tmode == "Tone":
402
            tx_tone = TONES[_mem.tx_tone]
403
        elif tx_tmode == "DTCS":
404
            tx_tone = self.DTCS_CODES[_mem.tx_tone]
405

    
406
        if rx_tmode == "Tone":
407
            rx_tone = TONES[_mem.rx_tone]
408
        elif rx_tmode == "DTCS":
409
            rx_tone = self.DTCS_CODES[_mem.rx_tone]
410

    
411
        tx_pol = _mem.tx_tmode == 0x03 and "R" or "N"
412
        rx_pol = _mem.rx_tmode == 0x03 and "R" or "N"
413

    
414
        chirp_common.split_tone_decode(mem, (tx_tmode, tx_tone, tx_pol),
415
                                       (rx_tmode, rx_tone, rx_pol))
416

    
417
    def _is_txinh(self, _mem):
418
        raw_tx = ""
419
        for i in range(0, 4):
420
            raw_tx += _mem.txfreq[i].get_raw()
421
        return raw_tx == "\xFF\xFF\xFF\xFF"
422

    
423
    def _get_mem(self, number):
424
        return self._memobj.memory[number - 1]
425

    
426
    def _get_nam(self, number):
427
        return self._memobj.names[number - 1]
428

    
429
    def get_memory(self, number):
430
        _mem = self._get_mem(number)
431
        if self.HAS_NAMES:
432
            _nam = self._get_nam(number)
433

    
434
        mem = chirp_common.Memory()
435

    
436
        mem.number = number
437
        mem.freq = int(_mem.rxfreq) * 10
438

    
439
        # We'll consider any blank (i.e. 0 MHz frequency) to be empty
440
        if mem.freq == 0:
441
            mem.empty = True
442
            return mem
443

    
444
        if _mem.rxfreq.get_raw() == "\xFF\xFF\xFF\xFF":
445
            mem.freq = 0
446
            mem.empty = True
447
            return mem
448

    
449
        if _mem.get_raw() == ("\xFF" * 16):
450
            LOG.debug("Initializing empty memory")
451
            _mem.set_raw("\x00" * 13 + "\xFF" * 3)
452

    
453
        if self._is_txinh(_mem):
454
            mem.duplex = "off"
455
            mem.offset = 0
456
        elif int(_mem.rxfreq) == int(_mem.txfreq):
457
            mem.duplex = ""
458
            mem.offset = 0
459
        else:
460
            mem.duplex = int(_mem.rxfreq) > int(_mem.txfreq) and "-" or "+"
461
            mem.offset = abs(int(_mem.rxfreq) - int(_mem.txfreq)) * 10
462

    
463
        # wide/narrow
464
        mem.mode = _mem.isnarrow and "NFM" or "FM"
465

    
466
        mem.skip = _mem.skip and "S" or ""
467

    
468
        if self.HAS_NAMES:
469
            for char in _nam.name:
470
                if str(char) == "\xFF":
471
                    char = " "  # The OEM software may have 0xFF mid-name
472
                mem.name += str(char)
473
            mem.name = mem.name.rstrip()
474

    
475
        # tone data
476
        self._get_tone(mem, _mem)
477

    
478
        # tx power
479
        levels = self.POWER_LEVELS
480
        try:
481
            mem.power = levels[_mem.lowpower]
482
        except IndexError:
483
            LOG.error("Radio reported invalid power level %s (in %s)" %
484
                      (_mem.lowpower, levels))
485
            mem.power = levels[0]
486

    
487
        immutable = []
488

    
489
        if self._frs:
490
            if mem.freq in FRS_FREQS:
491
                if mem.number >= 1 and mem.number <= 22:
492
                    FRS_FREQ = FRS_FREQS[mem.number - 1]
493
                    mem.freq = FRS_FREQ
494
                mem.duplex == ''
495
                mem.offset = 0
496
                mem.mode = "NFM"
497
                if mem.number >= 8 and mem.number <= 14:
498
                    mem.power = self.POWER_LEVELS[1]
499
                    immutable = ["empty", "freq", "duplex", "offset", "mode",
500
                                 "power"]
501
                else:
502
                    immutable = ["empty", "freq", "duplex", "offset", "mode"]
503
        elif self._murs:
504
            if mem.freq in MURS_FREQS:
505
                if mem.number >= 1 and mem.number <= 5:
506
                    MURS_FREQ = MURS_FREQS[mem.number - 1]
507
                    mem.freq = MURS_FREQ
508
                mem.duplex = ''
509
                mem.offset = 0
510
                if mem.number <= 3:
511
                    mem.mode = "NFM"
512
                    immutable = ["empty", "freq", "duplex", "offset", "mode"]
513
                else:
514
                    immutable = ["empty", "freq", "duplex", "offset"]
515
        elif self._pmr:
516
            if mem.freq in PMR_FREQS:
517
                if mem.number >= 1 and mem.number <= 16:
518
                    PMR_FREQ = PMR_FREQS[mem.number - 1]
519
                    mem.freq = PMR_FREQ
520
                mem.duplex = ''
521
                mem.offset = 0
522
                mem.mode = "NFM"
523
                mem.power = self.POWER_LEVELS[1]
524
                immutable = ["empty", "freq", "duplex", "offset", "mode",
525
                             "power"]
526
        elif self._gmrs:
527
            if mem.freq in GMRS_FREQS:
528
                if mem.number >= 1 and mem.number <= 30:
529
                    GMRS_FREQ = GMRS_FREQS[mem.number - 1]
530
                    mem.freq = GMRS_FREQ
531
                    immutable = ["empty", "freq"]
532
                if mem.number >= 1 and mem.number <= 7:
533
                    mem.duplex = ''
534
                    mem.offset = 0
535
                    immutable += ["duplex", "offset"]
536
                elif mem.number >= 8 and mem.number <= 14:
537
                    mem.duplex = ''
538
                    mem.offset = 0
539
                    mem.mode = "NFM"
540
                    mem.power = self.POWER_LEVELS[1]
541
                    immutable += ["duplex", "offset", "mode", "power"]
542
                elif mem.number >= 15 and mem.number <= 22:
543
                    mem.duplex = ''
544
                    mem.offset = 0
545
                    immutable += ["duplex", "offset"]
546
                elif mem.number >= 23 and mem.number <= 30:
547
                    mem.duplex = '+'
548
                    mem.offset = 5000000
549
                    immutable += ["duplex", "offset"]
550
                elif mem.freq in FRS_FREQS1:
551
                    mem.duplex = ''
552
                    mem.offset = 0
553
                    immutable += ["duplex", "offset"]
554
                elif mem.freq in FRS_FREQS2:
555
                    mem.duplex = ''
556
                    mem.offset = 0
557
                    mem.mode = "NFM"
558
                    mem.power = self.POWER_LEVELS[1]
559
                    immutable += ["duplex", "offset", "mode", "power"]
560
                elif mem.freq in FRS_FREQS3:
561
                    if mem.duplex == '':
562
                        mem.offset = 0
563
                    if mem.duplex == '+':
564
                        mem.offset = 5000000
565
            else:
566
                if mem.freq not in GMRS_FREQS:
567
                    mem.duplex = 'off'
568
                    mem.offset = 0
569
                    immutable = ["duplex", "offset"]
570

    
571
        mem.immutable = immutable
572

    
573
        return mem
574

    
575
    def _set_tone(self, mem, _mem):
576
        ((txmode, txtone, txpol),
577
         (rxmode, rxtone, rxpol)) = chirp_common.split_tone_encode(mem)
578

    
579
        _mem.tx_tmode = TMODES.index(txmode)
580
        _mem.rx_tmode = TMODES.index(rxmode)
581
        if txmode == "Tone":
582
            _mem.tx_tone = TONES.index(txtone)
583
        elif txmode == "DTCS":
584
            _mem.tx_tmode = txpol == "R" and 0x03 or 0x02
585
            _mem.tx_tone = self.DTCS_CODES.index(txtone)
586
        if rxmode == "Tone":
587
            _mem.rx_tone = TONES.index(rxtone)
588
        elif rxmode == "DTCS":
589
            _mem.rx_tmode = rxpol == "R" and 0x03 or 0x02
590
            _mem.rx_tone = self.DTCS_CODES.index(rxtone)
591

    
592
    def _set_mem(self, number):
593
        return self._memobj.memory[number - 1]
594

    
595
    def _set_nam(self, number):
596
        return self._memobj.names[number - 1]
597

    
598
    def set_memory(self, mem):
599
        _mem = self._set_mem(mem.number)
600
        if self.HAS_NAMES:
601
            _nam = self._set_nam(mem.number)
602

    
603
        # if empty memory
604
        if mem.empty:
605
            _mem.set_raw("\xFF" * (_mem.size() // 8))
606

    
607
            if self.HAS_NAMES:
608
                for i in range(0, self.NAME_LENGTH):
609
                    _nam.name[i].set_raw("\xFF")
610

    
611
            return mem
612

    
613
        _mem.set_raw("\x00" * 13 + "\xFF" * 3)
614

    
615
        # frequency
616
        _mem.rxfreq = mem.freq / 10
617

    
618
        if mem.duplex == "off":
619
            for i in range(0, 4):
620
                _mem.txfreq[i].set_raw("\xFF")
621
        elif mem.duplex == "split":
622
            _mem.txfreq = mem.offset / 10
623
        elif mem.duplex == "+":
624
            _mem.txfreq = (mem.freq + mem.offset) / 10
625
        elif mem.duplex == "-":
626
            _mem.txfreq = (mem.freq - mem.offset) / 10
627
        else:
628
            _mem.txfreq = mem.freq / 10
629

    
630
        # wide/narrow
631
        _mem.isnarrow = mem.mode == "NFM"
632

    
633
        _mem.skip = mem.skip == "S"
634

    
635
        if self.HAS_NAMES:
636
            for i in range(self.NAME_LENGTH):
637
                try:
638
                    _nam.name[i] = mem.name[i]
639
                except IndexError:
640
                    _nam.name[i] = "\xFF"
641

    
642
        # tone data
643
        self._set_tone(mem, _mem)
644

    
645
        # tx power
646
        if str(mem.power) == "High":
647
            _mem.lowpower = 0
648
        elif str(mem.power) == "Low":
649
            _mem.lowpower = 1
650
        else:
651
            _mem.lowpower = 0
652

    
653
        return mem
654

    
655
    def get_settings(self):
656
        _fmpreset = self._memobj.fmpreset
657
        _settings = self._memobj.settings
658
        _settings2 = self._memobj.settings2
659
        basic = RadioSettingGroup("basic", "Basic Settings")
660
        top = RadioSettings(basic)
661

    
662
        # Menu 03
663
        rs = RadioSettingValueInteger(0, 9, _settings.squelch)
664
        rset = RadioSetting("squelch", "Squelch Level", rs)
665
        basic.append(rset)
666

    
667
        model_list = ["RB27B", "RB27V", "RB627B"]
668
        if self.MODEL in model_list:
669
            # Menu 09 (RB27x/RB627x)
670
            rs = RadioSettingValueList(TOT2_LIST, TOT2_LIST[_settings.tot])
671
        else:
672
            # Menu 11 / 09 (RB27)
673
            rs = RadioSettingValueList(TOT_LIST, TOT_LIST[_settings.tot])
674
        rset = RadioSetting("tot", "Time-out timer", rs)
675
        basic.append(rset)
676

    
677
        # Menu 06
678
        rs = RadioSettingValueList(VOX_LIST, VOX_LIST[_settings.vox])
679
        rset = RadioSetting("vox", "VOX Level", rs)
680
        basic.append(rset)
681

    
682
        # Menu 15 (BF-T8) / Menu 14 (FRS-A1)
683
        if self.MODEL == "FRS-A1":
684
            # Menu 14 (FRS-A1)
685
            def apply_voice_listvalue(setting, obj):
686
                LOG.debug("Setting value: " + str(setting.value) +
687
                          " from list")
688
                val = str(setting.value)
689
                index = VOICE_CHOICES.index(val)
690
                val = VOICE_VALUES[index]
691
                obj.set_value(val)
692

    
693
            if _settings.voice in VOICE_VALUES:
694
                idx = VOICE_VALUES.index(_settings.voice)
695
            else:
696
                idx = VOICE_VALUES.index(0x00)
697
            rs = RadioSettingValueList(VOICE_CHOICES, VOICE_CHOICES[idx])
698
            rset = RadioSetting("voice", "Voice", rs)
699
            rset.set_apply_callback(apply_voice_listvalue, _settings.voice)
700
            basic.append(rset)
701
        else:
702
            # Menu 15 (BF-T8)
703
            rs = RadioSettingValueList(VOICE_LIST, VOICE_LIST[_settings.voice])
704
            rset = RadioSetting("voice", "Voice", rs)
705
            basic.append(rset)
706

    
707
        # Menu 12
708
        rs = RadioSettingValueBoolean(_settings.bcl)
709
        rset = RadioSetting("bcl", "Busy Channel Lockout", rs)
710
        basic.append(rset)
711

    
712
        # Menu 10 / 08 (RB27/RB627)
713
        rs = RadioSettingValueBoolean(_settings.save)
714
        rset = RadioSetting("save", "Battery Saver", rs)
715
        basic.append(rset)
716

    
717
        # Menu 08 / 07 (RB-27/RB627)
718
        rs = RadioSettingValueBoolean(_settings.tdr)
719
        rset = RadioSetting("tdr", "Dual Watch", rs)
720
        basic.append(rset)
721

    
722
        # Menu 05
723
        rs = RadioSettingValueBoolean(_settings.beep)
724
        rset = RadioSetting("beep", "Beep", rs)
725
        basic.append(rset)
726

    
727
        # Menu 04
728
        rs = RadioSettingValueList(ABR_LIST, ABR_LIST[_settings.abr])
729
        rset = RadioSetting("abr", "Back Light", rs)
730
        basic.append(rset)
731

    
732
        # Menu 13 / 11 (RB-27/RB627)
733
        rs = RadioSettingValueList(RING_LIST, RING_LIST[_settings.ring])
734
        rset = RadioSetting("ring", "Ring", rs)
735
        basic.append(rset)
736

    
737
        rs = RadioSettingValueBoolean(not _settings.ste)
738
        rset = RadioSetting("ste", "Squelch Tail Eliminate", rs)
739
        basic.append(rset)
740

    
741
        # Menu 15 (FRS-A1)
742
        if self.MODEL == "FRS-A1":
743
            rs = RadioSettingValueList(MDF_LIST, MDF_LIST[_settings.mdf])
744
            rset = RadioSetting("mdf", "Display Type", rs)
745
            basic.append(rset)
746

    
747
        if self.CH_OFFSET:
748
            rs = RadioSettingValueInteger(1, self._upper, _settings.mra + 1)
749
        else:
750
            rs = RadioSettingValueInteger(1, self._upper, _settings.mra)
751
        rset = RadioSetting("mra", "MR A Channel #", rs)
752
        basic.append(rset)
753

    
754
        if self.CH_OFFSET:
755
            rs = RadioSettingValueInteger(1, self._upper, _settings.mrb + 1)
756
        else:
757
            rs = RadioSettingValueInteger(1, self._upper, _settings.mrb)
758
        rset = RadioSetting("mrb", "MR B Channel #", rs)
759
        basic.append(rset)
760

    
761
        rs = RadioSettingValueList(AB_LIST, AB_LIST[_settings.disp_ab])
762
        rset = RadioSetting("disp_ab", "Selected Display Line", rs)
763
        basic.append(rset)
764

    
765
        if not self.MODEL.startswith("RB627"):
766
            if self.MODEL == "FRS-A1":
767
                del WX_LIST[7:]
768
            rs = RadioSettingValueList(WX_LIST, WX_LIST[_settings2.wx])
769
            rset = RadioSetting("settings2.wx", "NOAA WX Radio", rs)
770
            basic.append(rset)
771

    
772
        def myset_freq(setting, obj, atrb, mult):
773
            """ Callback to set frequency by applying multiplier"""
774
            value = int(float(str(setting.value)) * mult)
775
            setattr(obj, atrb, value)
776
            return
777

    
778
        # FM Broadcast Settings
779
        val = _fmpreset.fmcur
780
        val = val / 10.0
781
        val_low = 76.0
782
        if self.MODEL == "FRS-A1":
783
            val_low = 87.0
784
        if val < val_low or val > 108.0:
785
            val = 90.4
786
        rx = RadioSettingValueFloat(val_low, 108.0, val, 0.1, 1)
787
        rset = RadioSetting("fmpreset.fmcur", "Broadcast FM Radio (MHz)", rx)
788
        rset.set_apply_callback(myset_freq, _fmpreset, "fmcur", 10)
789
        basic.append(rset)
790

    
791
        model_list = ["BF-T8", "BF-U9", "AR-8"]
792
        if self.MODEL in model_list:
793
            rs = RadioSettingValueList(WORKMODE_LIST,
794
                                       WORKMODE_LIST[_settings2.workmode])
795
            rset = RadioSetting("settings2.workmode", "Work Mode", rs)
796
            basic.append(rset)
797

    
798
            rs = RadioSettingValueList(AREA_LIST, AREA_LIST[_settings2.area])
799
            rs.set_mutable(False)
800
            rset = RadioSetting("settings2.area", "Area", rs)
801
            basic.append(rset)
802

    
803
        return top
804

    
805
    def set_settings(self, settings):
806
        for element in settings:
807
            if not isinstance(element, RadioSetting):
808
                self.set_settings(element)
809
                continue
810
            else:
811
                try:
812
                    if "." in element.get_name():
813
                        bits = element.get_name().split(".")
814
                        obj = self._memobj
815
                        for bit in bits[:-1]:
816
                            obj = getattr(obj, bit)
817
                        setting = bits[-1]
818
                    else:
819
                        obj = self._memobj.settings
820
                        setting = element.get_name()
821

    
822
                    if element.has_apply_callback():
823
                        LOG.debug("Using apply callback")
824
                        element.run_apply_callback()
825
                    elif setting == "mra" and self.CH_OFFSET:
826
                        setattr(obj, setting, int(element.value) - 1)
827
                    elif setting == "mrb" and self.CH_OFFSET:
828
                        setattr(obj, setting, int(element.value) - 1)
829
                    elif setting == "ste":
830
                        setattr(obj, setting, not int(element.value))
831
                    elif element.value.get_mutable():
832
                        LOG.debug("Setting %s = %s" % (setting, element.value))
833
                        setattr(obj, setting, element.value)
834
                except Exception:
835
                    LOG.debug(element.get_name())
836
                    raise
837

    
838
    @classmethod
839
    def match_model(cls, filedata, filename):
840
        # This radio has always been post-metadata, so never do
841
        # old-school detection
842
        return False
843

    
844

    
845
class BFU9Alias(chirp_common.Alias):
846
    VENDOR = "Baofeng"
847
    MODEL = "BF-U9"
848

    
849

    
850
class AR8Alias(chirp_common.Alias):
851
    VENDOR = "Arcshell"
852
    MODEL = "AR-8"
853

    
854

    
855
@directory.register
856
class BaofengBFT8Generic(BFT8Radio):
857
    ALIASES = [BFU9Alias, AR8Alias, ]
858

    
859

    
860
@directory.register
861
class RetevisRT16(BFT8Radio):
862
    VENDOR = "Retevis"
863
    MODEL = "RT16"
864

    
865
    _upper = 22
866
    _frs = True
867

    
868

    
869
@directory.register
870
class RetevisRB27B(BFT8Radio):
871
    VENDOR = "Retevis"
872
    MODEL = "RB27B"
873
    DTCS_CODES = tuple(sorted(chirp_common.DTCS_CODES + (645,)))
874
    HAS_NAMES = True
875
    NAME_LENGTH = 6
876
    VALID_CHARS = chirp_common.CHARSET_UPPER_NUMERIC + "-"
877
    CH_OFFSET = True
878
    SKIP_VALUES = ["", "S"]
879
    POWER_LEVELS = [chirp_common.PowerLevel("High", watts=2.00),
880
                    chirp_common.PowerLevel("Low", watts=0.50)]
881
    VALID_BANDS = [(400000000, 520000000)]
882

    
883
    _upper = 22
884
    _frs = True
885
    _gmrs = _murs = _pmr = False
886

    
887
    _ranges = [
888
               (0x0000, 0x0640),
889
               (0x0D00, 0x1040),
890
              ]
891
    _memsize = 0x1040
892

    
893
    def process_mmap(self):
894
        mem_format = MEM_FORMAT + MEM_FM_U_FORMAT
895
        self._memobj = bitwise.parse(mem_format % self._mem_params, self._mmap)
896

    
897

    
898
@directory.register
899
class RetevisRB27(RetevisRB27B):
900
    VENDOR = "Retevis"
901
    MODEL = "RB27"
902
    DUPLEXES = ['', '-', '+', 'off']
903
    POWER_LEVELS = [chirp_common.PowerLevel("High", watts=5.00),
904
                    chirp_common.PowerLevel("Low", watts=0.50)]
905
    VALID_BANDS = [(136000000, 174000000),
906
                   (400000000, 520000000)]
907
    ODD_SPLIT = False
908

    
909
    _upper = 99
910
    _gmrs = False  # sold as GMRS radio but supports full band TX/RX
911
    _frs = _murs = _pmr = False
912

    
913
    def process_mmap(self):
914
        mem_format = MEM_FORMAT + MEM_FM_U_FORMAT
915
        self._memobj = bitwise.parse(mem_format % self._mem_params, self._mmap)
916

    
917

    
918
@directory.register
919
class RetevisRB27V(RetevisRB27B):
920
    VENDOR = "Retevis"
921
    MODEL = "RB27V"
922
    VALID_BANDS = [(136000000, 174000000)]
923

    
924
    _upper = 5
925
    _murs = True
926
    _frs = _gmrs = _pmr = False
927

    
928
    def process_mmap(self):
929
        mem_format = MEM_FORMAT + MEM_FM_U_FORMAT
930
        self._memobj = bitwise.parse(mem_format % self._mem_params, self._mmap)
931

    
932

    
933
@directory.register
934
class RetevisRB627B(RetevisRB27B):
935
    VENDOR = "Retevis"
936
    MODEL = "RB627B"
937
    POWER_LEVELS = [chirp_common.PowerLevel("High", watts=0.50),
938
                    chirp_common.PowerLevel("Low", watts=0.50)]
939

    
940
    _upper = 16
941
    _pmr = True
942
    _frs = _gmrs = _murs = False
943

    
944

    
945
@directory.register
946
class FRSA1Radio(BFT8Radio):
947
    """BTECH FRS-A1"""
948
    VENDOR = "BTECH"
949
    MODEL = "FRS-A1"
950
    ODD_SPLIT = False
951
    HAS_NAMES = True
952
    NAME_LENGTH = 6
953
    SKIP_VALUES = ["", "S"]
954
    DTCS_CODES = tuple(sorted(chirp_common.DTCS_CODES + (645,)))
955
    DUPLEXES = ['', '-', '+', 'off']
956

    
957
    _fingerprint = b"BF-T8A" + b"\x2E"
958
    _upper = 22
959
    _frs = _upper == 22
960

    
961
    _ranges = [
962
               (0x0000, 0x0640),
963
               (0x0D00, 0x0DC0),
964
              ]
965
    _memsize = 0x0DC0
966

    
967
    def get_features(self):
968
        rf = BFT8Radio.get_features(self)
969
        rf.valid_name_length = 6
970
        rf.valid_characters = chirp_common.CHARSET_UPPER_NUMERIC + "-"
971
        return rf
(3-3/4)