clk_rawdcf.c revision 1.5 1 1.5 christos /* $NetBSD: clk_rawdcf.c,v 1.5 2015/04/07 17:34:19 christos Exp $ */
2 1.1 kardel
3 1.1 kardel /*
4 1.1 kardel * /src/NTP/REPOSITORY/ntp4-dev/libparse/clk_rawdcf.c,v 4.18 2006/06/22 18:40:01 kardel RELEASE_20060622_A
5 1.5 christos *
6 1.1 kardel * clk_rawdcf.c,v 4.18 2006/06/22 18:40:01 kardel RELEASE_20060622_A
7 1.1 kardel *
8 1.1 kardel * Raw DCF77 pulse clock support
9 1.1 kardel *
10 1.1 kardel * Copyright (c) 1995-2006 by Frank Kardel <kardel <AT> ntp.org>
11 1.5 christos * Copyright (c) 1989-1994 by Frank Kardel, Friedrich-Alexander Universitaet Erlangen-Nuernberg, Germany
12 1.1 kardel *
13 1.1 kardel * Redistribution and use in source and binary forms, with or without
14 1.1 kardel * modification, are permitted provided that the following conditions
15 1.1 kardel * are met:
16 1.1 kardel * 1. Redistributions of source code must retain the above copyright
17 1.1 kardel * notice, this list of conditions and the following disclaimer.
18 1.1 kardel * 2. Redistributions in binary form must reproduce the above copyright
19 1.1 kardel * notice, this list of conditions and the following disclaimer in the
20 1.1 kardel * documentation and/or other materials provided with the distribution.
21 1.1 kardel * 3. Neither the name of the author nor the names of its contributors
22 1.1 kardel * may be used to endorse or promote products derived from this software
23 1.1 kardel * without specific prior written permission.
24 1.1 kardel *
25 1.1 kardel * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
26 1.1 kardel * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
27 1.1 kardel * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
28 1.1 kardel * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
29 1.1 kardel * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
30 1.1 kardel * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
31 1.1 kardel * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
32 1.1 kardel * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
33 1.1 kardel * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
34 1.1 kardel * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
35 1.1 kardel * SUCH DAMAGE.
36 1.1 kardel *
37 1.1 kardel */
38 1.1 kardel
39 1.1 kardel #ifdef HAVE_CONFIG_H
40 1.1 kardel # include <config.h>
41 1.1 kardel #endif
42 1.1 kardel
43 1.1 kardel #if defined(REFCLOCK) && defined(CLOCK_PARSE) && defined(CLOCK_RAWDCF)
44 1.1 kardel
45 1.1 kardel #include "ntp_fp.h"
46 1.1 kardel #include "ntp_unixtime.h"
47 1.1 kardel #include "ntp_calendar.h"
48 1.1 kardel
49 1.1 kardel #include "parse.h"
50 1.1 kardel #ifdef PARSESTREAM
51 1.1 kardel # include <sys/parsestreams.h>
52 1.1 kardel #endif
53 1.1 kardel
54 1.1 kardel #ifndef PARSEKERNEL
55 1.1 kardel # include "ntp_stdlib.h"
56 1.1 kardel #endif
57 1.1 kardel
58 1.1 kardel /*
59 1.1 kardel * DCF77 raw time code
60 1.1 kardel *
61 1.1 kardel * From "Zur Zeit", Physikalisch-Technische Bundesanstalt (PTB), Braunschweig
62 1.1 kardel * und Berlin, Maerz 1989
63 1.1 kardel *
64 1.1 kardel * Timecode transmission:
65 1.1 kardel * AM:
66 1.1 kardel * time marks are send every second except for the second before the
67 1.1 kardel * next minute mark
68 1.1 kardel * time marks consist of a reduction of transmitter power to 25%
69 1.1 kardel * of the nominal level
70 1.1 kardel * the falling edge is the time indication (on time)
71 1.1 kardel * time marks of a 100ms duration constitute a logical 0
72 1.1 kardel * time marks of a 200ms duration constitute a logical 1
73 1.1 kardel * FM:
74 1.1 kardel * see the spec. (basically a (non-)inverted psuedo random phase shift)
75 1.1 kardel *
76 1.1 kardel * Encoding:
77 1.1 kardel * Second Contents
78 1.1 kardel * 0 - 10 AM: free, FM: 0
79 1.1 kardel * 11 - 14 free
80 1.5 christos * 15 R - "call bit" used to signalize irregularities in the control facilities
81 1.5 christos * (until 2003 indicated transmission via alternate antenna)
82 1.1 kardel * 16 A1 - expect zone change (1 hour before)
83 1.1 kardel * 17 - 18 Z1,Z2 - time zone
84 1.1 kardel * 0 0 illegal
85 1.1 kardel * 0 1 MEZ (MET)
86 1.1 kardel * 1 0 MESZ (MED, MET DST)
87 1.1 kardel * 1 1 illegal
88 1.1 kardel * 19 A2 - expect leap insertion/deletion (1 hour before)
89 1.1 kardel * 20 S - start of time code (1)
90 1.1 kardel * 21 - 24 M1 - BCD (lsb first) Minutes
91 1.1 kardel * 25 - 27 M10 - BCD (lsb first) 10 Minutes
92 1.1 kardel * 28 P1 - Minute Parity (even)
93 1.1 kardel * 29 - 32 H1 - BCD (lsb first) Hours
94 1.1 kardel * 33 - 34 H10 - BCD (lsb first) 10 Hours
95 1.1 kardel * 35 P2 - Hour Parity (even)
96 1.1 kardel * 36 - 39 D1 - BCD (lsb first) Days
97 1.1 kardel * 40 - 41 D10 - BCD (lsb first) 10 Days
98 1.1 kardel * 42 - 44 DW - BCD (lsb first) day of week (1: Monday -> 7: Sunday)
99 1.1 kardel * 45 - 49 MO - BCD (lsb first) Month
100 1.1 kardel * 50 MO0 - 10 Months
101 1.1 kardel * 51 - 53 Y1 - BCD (lsb first) Years
102 1.1 kardel * 54 - 57 Y10 - BCD (lsb first) 10 Years
103 1.1 kardel * 58 P3 - Date Parity (even)
104 1.1 kardel * 59 - usually missing (minute indication), except for leap insertion
105 1.1 kardel */
106 1.1 kardel
107 1.5 christos static parse_pps_fnc_t pps_rawdcf;
108 1.5 christos static parse_cvt_fnc_t cvt_rawdcf;
109 1.5 christos static parse_inp_fnc_t inp_rawdcf;
110 1.1 kardel
111 1.1 kardel typedef struct last_tcode {
112 1.1 kardel time_t tcode; /* last converted time code */
113 1.1 kardel } last_tcode_t;
114 1.1 kardel
115 1.1 kardel #define BUFFER_MAX 61
116 1.1 kardel
117 1.1 kardel clockformat_t clock_rawdcf =
118 1.1 kardel {
119 1.1 kardel inp_rawdcf, /* DCF77 input handling */
120 1.1 kardel cvt_rawdcf, /* raw dcf input conversion */
121 1.1 kardel pps_rawdcf, /* examining PPS information */
122 1.1 kardel 0, /* no private configuration data */
123 1.1 kardel "RAW DCF77 Timecode", /* direct decoding / time synthesis */
124 1.1 kardel
125 1.1 kardel BUFFER_MAX, /* bit buffer */
126 1.1 kardel sizeof(last_tcode_t)
127 1.1 kardel };
128 1.1 kardel
129 1.1 kardel static struct dcfparam
130 1.1 kardel {
131 1.2 christos const unsigned char *onebits;
132 1.2 christos const unsigned char *zerobits;
133 1.5 christos } dcfparameter =
134 1.1 kardel {
135 1.2 christos (const unsigned char *)"###############RADMLS1248124P124812P1248121241248112481248P??", /* 'ONE' representation */
136 1.2 christos (const unsigned char *)"--------------------s-------p------p----------------------p__" /* 'ZERO' representation */
137 1.1 kardel };
138 1.1 kardel
139 1.5 christos static struct rawdcfcode
140 1.1 kardel {
141 1.1 kardel char offset; /* start bit */
142 1.1 kardel } rawdcfcode[] =
143 1.1 kardel {
144 1.1 kardel { 0 }, { 15 }, { 16 }, { 17 }, { 19 }, { 20 }, { 21 }, { 25 }, { 28 }, { 29 },
145 1.1 kardel { 33 }, { 35 }, { 36 }, { 40 }, { 42 }, { 45 }, { 49 }, { 50 }, { 54 }, { 58 }, { 59 }
146 1.1 kardel };
147 1.1 kardel
148 1.1 kardel #define DCF_M 0
149 1.1 kardel #define DCF_R 1
150 1.1 kardel #define DCF_A1 2
151 1.1 kardel #define DCF_Z 3
152 1.1 kardel #define DCF_A2 4
153 1.1 kardel #define DCF_S 5
154 1.1 kardel #define DCF_M1 6
155 1.1 kardel #define DCF_M10 7
156 1.1 kardel #define DCF_P1 8
157 1.1 kardel #define DCF_H1 9
158 1.1 kardel #define DCF_H10 10
159 1.1 kardel #define DCF_P2 11
160 1.1 kardel #define DCF_D1 12
161 1.1 kardel #define DCF_D10 13
162 1.1 kardel #define DCF_DW 14
163 1.1 kardel #define DCF_MO 15
164 1.1 kardel #define DCF_MO0 16
165 1.1 kardel #define DCF_Y1 17
166 1.1 kardel #define DCF_Y10 18
167 1.1 kardel #define DCF_P3 19
168 1.1 kardel
169 1.1 kardel static struct partab
170 1.1 kardel {
171 1.1 kardel char offset; /* start bit of parity field */
172 1.1 kardel } partab[] =
173 1.1 kardel {
174 1.1 kardel { 21 }, { 29 }, { 36 }, { 59 }
175 1.1 kardel };
176 1.1 kardel
177 1.1 kardel #define DCF_P_P1 0
178 1.1 kardel #define DCF_P_P2 1
179 1.1 kardel #define DCF_P_P3 2
180 1.1 kardel
181 1.1 kardel #define DCF_Z_MET 0x2
182 1.1 kardel #define DCF_Z_MED 0x1
183 1.1 kardel
184 1.1 kardel static u_long
185 1.1 kardel ext_bf(
186 1.1 kardel unsigned char *buf,
187 1.1 kardel int idx,
188 1.2 christos const unsigned char *zero
189 1.1 kardel )
190 1.1 kardel {
191 1.1 kardel u_long sum = 0;
192 1.1 kardel int i, first;
193 1.1 kardel
194 1.1 kardel first = rawdcfcode[idx].offset;
195 1.5 christos
196 1.1 kardel for (i = rawdcfcode[idx+1].offset - 1; i >= first; i--)
197 1.1 kardel {
198 1.1 kardel sum <<= 1;
199 1.1 kardel sum |= (buf[i] != zero[i]);
200 1.1 kardel }
201 1.1 kardel return sum;
202 1.1 kardel }
203 1.1 kardel
204 1.1 kardel static unsigned
205 1.1 kardel pcheck(
206 1.1 kardel unsigned char *buf,
207 1.1 kardel int idx,
208 1.2 christos const unsigned char *zero
209 1.1 kardel )
210 1.1 kardel {
211 1.1 kardel int i,last;
212 1.1 kardel unsigned psum = 1;
213 1.1 kardel
214 1.1 kardel last = partab[idx+1].offset;
215 1.1 kardel
216 1.1 kardel for (i = partab[idx].offset; i < last; i++)
217 1.1 kardel psum ^= (buf[i] != zero[i]);
218 1.1 kardel
219 1.1 kardel return psum;
220 1.1 kardel }
221 1.1 kardel
222 1.1 kardel static u_long
223 1.1 kardel convert_rawdcf(
224 1.1 kardel unsigned char *buffer,
225 1.1 kardel int size,
226 1.1 kardel struct dcfparam *dcfprm,
227 1.1 kardel clocktime_t *clock_time
228 1.1 kardel )
229 1.1 kardel {
230 1.1 kardel unsigned char *s = buffer;
231 1.2 christos const unsigned char *b = dcfprm->onebits;
232 1.2 christos const unsigned char *c = dcfprm->zerobits;
233 1.1 kardel int i;
234 1.1 kardel
235 1.1 kardel parseprintf(DD_RAWDCF,("parse: convert_rawdcf: \"%s\"\n", buffer));
236 1.1 kardel
237 1.1 kardel if (size < 57)
238 1.1 kardel {
239 1.1 kardel #ifndef PARSEKERNEL
240 1.3 christos msyslog(LOG_ERR, "parse: convert_rawdcf: INCOMPLETE DATA - time code only has %d bits", size);
241 1.1 kardel #endif
242 1.1 kardel return CVT_NONE;
243 1.1 kardel }
244 1.5 christos
245 1.1 kardel for (i = 0; i < size; i++)
246 1.1 kardel {
247 1.1 kardel if ((*s != *b) && (*s != *c))
248 1.1 kardel {
249 1.1 kardel /*
250 1.1 kardel * we only have two types of bytes (ones and zeros)
251 1.1 kardel */
252 1.1 kardel #ifndef PARSEKERNEL
253 1.1 kardel msyslog(LOG_ERR, "parse: convert_rawdcf: BAD DATA - no conversion");
254 1.1 kardel #endif
255 1.1 kardel return CVT_NONE;
256 1.1 kardel }
257 1.1 kardel if (*b) b++;
258 1.1 kardel if (*c) c++;
259 1.1 kardel s++;
260 1.1 kardel }
261 1.1 kardel
262 1.1 kardel /*
263 1.1 kardel * check Start and Parity bits
264 1.1 kardel */
265 1.1 kardel if ((ext_bf(buffer, DCF_S, dcfprm->zerobits) == 1) &&
266 1.1 kardel pcheck(buffer, DCF_P_P1, dcfprm->zerobits) &&
267 1.1 kardel pcheck(buffer, DCF_P_P2, dcfprm->zerobits) &&
268 1.1 kardel pcheck(buffer, DCF_P_P3, dcfprm->zerobits))
269 1.1 kardel {
270 1.1 kardel /*
271 1.1 kardel * buffer OK
272 1.1 kardel */
273 1.1 kardel parseprintf(DD_RAWDCF,("parse: convert_rawdcf: parity check passed\n"));
274 1.1 kardel
275 1.1 kardel clock_time->flags = PARSEB_S_ANTENNA|PARSEB_S_LEAP;
276 1.1 kardel clock_time->utctime= 0;
277 1.1 kardel clock_time->usecond= 0;
278 1.1 kardel clock_time->second = 0;
279 1.1 kardel clock_time->minute = ext_bf(buffer, DCF_M10, dcfprm->zerobits);
280 1.1 kardel clock_time->minute = TIMES10(clock_time->minute) + ext_bf(buffer, DCF_M1, dcfprm->zerobits);
281 1.1 kardel clock_time->hour = ext_bf(buffer, DCF_H10, dcfprm->zerobits);
282 1.1 kardel clock_time->hour = TIMES10(clock_time->hour) + ext_bf(buffer, DCF_H1, dcfprm->zerobits);
283 1.1 kardel clock_time->day = ext_bf(buffer, DCF_D10, dcfprm->zerobits);
284 1.1 kardel clock_time->day = TIMES10(clock_time->day) + ext_bf(buffer, DCF_D1, dcfprm->zerobits);
285 1.1 kardel clock_time->month = ext_bf(buffer, DCF_MO0, dcfprm->zerobits);
286 1.1 kardel clock_time->month = TIMES10(clock_time->month) + ext_bf(buffer, DCF_MO, dcfprm->zerobits);
287 1.1 kardel clock_time->year = ext_bf(buffer, DCF_Y10, dcfprm->zerobits);
288 1.1 kardel clock_time->year = TIMES10(clock_time->year) + ext_bf(buffer, DCF_Y1, dcfprm->zerobits);
289 1.1 kardel
290 1.1 kardel switch (ext_bf(buffer, DCF_Z, dcfprm->zerobits))
291 1.1 kardel {
292 1.1 kardel case DCF_Z_MET:
293 1.1 kardel clock_time->utcoffset = -1*60*60;
294 1.1 kardel break;
295 1.1 kardel
296 1.1 kardel case DCF_Z_MED:
297 1.1 kardel clock_time->flags |= PARSEB_DST;
298 1.1 kardel clock_time->utcoffset = -2*60*60;
299 1.1 kardel break;
300 1.1 kardel
301 1.1 kardel default:
302 1.1 kardel parseprintf(DD_RAWDCF,("parse: convert_rawdcf: BAD TIME ZONE\n"));
303 1.1 kardel return CVT_FAIL|CVT_BADFMT;
304 1.1 kardel }
305 1.1 kardel
306 1.1 kardel if (ext_bf(buffer, DCF_A1, dcfprm->zerobits))
307 1.1 kardel clock_time->flags |= PARSEB_ANNOUNCE;
308 1.1 kardel
309 1.1 kardel if (ext_bf(buffer, DCF_A2, dcfprm->zerobits))
310 1.1 kardel clock_time->flags |= PARSEB_LEAPADD; /* default: DCF77 data format deficiency */
311 1.1 kardel
312 1.1 kardel if (ext_bf(buffer, DCF_R, dcfprm->zerobits))
313 1.5 christos clock_time->flags |= PARSEB_CALLBIT;
314 1.1 kardel
315 1.1 kardel parseprintf(DD_RAWDCF,("parse: convert_rawdcf: TIME CODE OK: %d:%d, %d.%d.%d, flags 0x%lx\n",
316 1.1 kardel (int)clock_time->hour, (int)clock_time->minute, (int)clock_time->day, (int)clock_time->month,(int) clock_time->year,
317 1.1 kardel (u_long)clock_time->flags));
318 1.1 kardel return CVT_OK;
319 1.1 kardel }
320 1.1 kardel else
321 1.1 kardel {
322 1.1 kardel /*
323 1.1 kardel * bad format - not for us
324 1.1 kardel */
325 1.1 kardel #ifndef PARSEKERNEL
326 1.3 christos msyslog(LOG_ERR, "parse: convert_rawdcf: parity check FAILED for \"%s\"", buffer);
327 1.1 kardel #endif
328 1.1 kardel return CVT_FAIL|CVT_BADFMT;
329 1.1 kardel }
330 1.1 kardel }
331 1.1 kardel
332 1.1 kardel /*
333 1.5 christos * parse_cvt_fnc_t cvt_rawdcf
334 1.1 kardel * raw dcf input routine - needs to fix up 50 baud
335 1.1 kardel * characters for 1/0 decision
336 1.1 kardel */
337 1.1 kardel static u_long
338 1.1 kardel cvt_rawdcf(
339 1.1 kardel unsigned char *buffer,
340 1.1 kardel int size,
341 1.1 kardel struct format *param,
342 1.1 kardel clocktime_t *clock_time,
343 1.1 kardel void *local
344 1.1 kardel )
345 1.1 kardel {
346 1.1 kardel last_tcode_t *t = (last_tcode_t *)local;
347 1.1 kardel unsigned char *s = (unsigned char *)buffer;
348 1.1 kardel unsigned char *e = s + size;
349 1.2 christos const unsigned char *b = dcfparameter.onebits;
350 1.2 christos const unsigned char *c = dcfparameter.zerobits;
351 1.1 kardel u_long rtc = CVT_NONE;
352 1.1 kardel unsigned int i, lowmax, highmax, cutoff, span;
353 1.1 kardel #define BITS 9
354 1.1 kardel unsigned char histbuf[BITS];
355 1.1 kardel /*
356 1.1 kardel * the input buffer contains characters with runs of consecutive
357 1.1 kardel * bits set. These set bits are an indication of the DCF77 pulse
358 1.1 kardel * length. We assume that we receive the pulse at 50 Baud. Thus
359 1.1 kardel * a 100ms pulse would generate a 4 bit train (20ms per bit and
360 1.1 kardel * start bit)
361 1.1 kardel * a 200ms pulse would create all zeroes (and probably a frame error)
362 1.1 kardel */
363 1.1 kardel
364 1.1 kardel for (i = 0; i < BITS; i++)
365 1.1 kardel {
366 1.1 kardel histbuf[i] = 0;
367 1.1 kardel }
368 1.1 kardel
369 1.1 kardel cutoff = 0;
370 1.1 kardel lowmax = 0;
371 1.1 kardel
372 1.1 kardel while (s < e)
373 1.1 kardel {
374 1.1 kardel unsigned int ch = *s ^ 0xFF;
375 1.1 kardel /*
376 1.1 kardel * these lines are left as an excercise to the reader 8-)
377 1.1 kardel */
378 1.1 kardel if (!((ch+1) & ch) || !*s)
379 1.1 kardel {
380 1.1 kardel
381 1.1 kardel for (i = 0; ch; i++)
382 1.1 kardel {
383 1.1 kardel ch >>= 1;
384 1.1 kardel }
385 1.1 kardel
386 1.5 christos *s = (unsigned char) i;
387 1.1 kardel histbuf[i]++;
388 1.1 kardel cutoff += i;
389 1.1 kardel lowmax++;
390 1.1 kardel }
391 1.1 kardel else
392 1.1 kardel {
393 1.1 kardel parseprintf(DD_RAWDCF,("parse: cvt_rawdcf: character check for 0x%x@%d FAILED\n", *s, (int)(s - (unsigned char *)buffer)));
394 1.1 kardel *s = (unsigned char)~0;
395 1.1 kardel rtc = CVT_FAIL|CVT_BADFMT;
396 1.1 kardel }
397 1.1 kardel s++;
398 1.1 kardel }
399 1.1 kardel
400 1.1 kardel if (lowmax)
401 1.1 kardel {
402 1.1 kardel cutoff /= lowmax;
403 1.1 kardel }
404 1.1 kardel else
405 1.1 kardel {
406 1.1 kardel cutoff = 4; /* doesn't really matter - it'll fail anyway, but gives error output */
407 1.1 kardel }
408 1.1 kardel
409 1.1 kardel parseprintf(DD_RAWDCF,("parse: cvt_rawdcf: average bit count: %d\n", cutoff));
410 1.1 kardel
411 1.1 kardel lowmax = 0;
412 1.1 kardel highmax = 0;
413 1.1 kardel
414 1.1 kardel parseprintf(DD_RAWDCF,("parse: cvt_rawdcf: histogram:"));
415 1.1 kardel for (i = 0; i <= cutoff; i++)
416 1.1 kardel {
417 1.1 kardel lowmax+=histbuf[i] * i;
418 1.1 kardel highmax += histbuf[i];
419 1.1 kardel parseprintf(DD_RAWDCF,(" %d", histbuf[i]));
420 1.1 kardel }
421 1.1 kardel parseprintf(DD_RAWDCF, (" <M>"));
422 1.1 kardel
423 1.1 kardel lowmax += highmax / 2;
424 1.1 kardel
425 1.1 kardel if (highmax)
426 1.1 kardel {
427 1.1 kardel lowmax /= highmax;
428 1.1 kardel }
429 1.1 kardel else
430 1.1 kardel {
431 1.1 kardel lowmax = 0;
432 1.1 kardel }
433 1.1 kardel
434 1.1 kardel highmax = 0;
435 1.1 kardel cutoff = 0;
436 1.1 kardel
437 1.1 kardel for (; i < BITS; i++)
438 1.1 kardel {
439 1.1 kardel highmax+=histbuf[i] * i;
440 1.1 kardel cutoff +=histbuf[i];
441 1.1 kardel parseprintf(DD_RAWDCF,(" %d", histbuf[i]));
442 1.1 kardel }
443 1.1 kardel parseprintf(DD_RAWDCF,("\n"));
444 1.1 kardel
445 1.1 kardel if (cutoff)
446 1.1 kardel {
447 1.1 kardel highmax /= cutoff;
448 1.1 kardel }
449 1.1 kardel else
450 1.1 kardel {
451 1.1 kardel highmax = BITS-1;
452 1.1 kardel }
453 1.1 kardel
454 1.1 kardel span = cutoff = lowmax;
455 1.1 kardel for (i = lowmax; i <= highmax; i++)
456 1.1 kardel {
457 1.1 kardel if (histbuf[cutoff] > histbuf[i])
458 1.1 kardel {
459 1.1 kardel cutoff = i;
460 1.1 kardel span = i;
461 1.1 kardel }
462 1.1 kardel else
463 1.1 kardel if (histbuf[cutoff] == histbuf[i])
464 1.1 kardel {
465 1.1 kardel span = i;
466 1.1 kardel }
467 1.1 kardel }
468 1.1 kardel
469 1.1 kardel cutoff = (cutoff + span) / 2;
470 1.1 kardel
471 1.1 kardel parseprintf(DD_RAWDCF,("parse: cvt_rawdcf: lower maximum %d, higher maximum %d, cutoff %d\n", lowmax, highmax, cutoff));
472 1.1 kardel
473 1.1 kardel s = (unsigned char *)buffer;
474 1.1 kardel while (s < e)
475 1.1 kardel {
476 1.1 kardel if (*s == (unsigned char)~0)
477 1.1 kardel {
478 1.1 kardel *s = '?';
479 1.1 kardel }
480 1.1 kardel else
481 1.1 kardel {
482 1.1 kardel *s = (*s >= cutoff) ? *b : *c;
483 1.1 kardel }
484 1.1 kardel s++;
485 1.1 kardel if (*b) b++;
486 1.1 kardel if (*c) c++;
487 1.1 kardel }
488 1.1 kardel
489 1.1 kardel if (rtc == CVT_NONE)
490 1.1 kardel {
491 1.1 kardel rtc = convert_rawdcf(buffer, size, &dcfparameter, clock_time);
492 1.1 kardel if (rtc == CVT_OK)
493 1.1 kardel {
494 1.1 kardel time_t newtime;
495 1.1 kardel
496 1.1 kardel newtime = parse_to_unixtime(clock_time, &rtc);
497 1.1 kardel if ((rtc == CVT_OK) && t)
498 1.1 kardel {
499 1.1 kardel if ((newtime - t->tcode) == 60) /* guard against multi bit errors */
500 1.1 kardel {
501 1.1 kardel clock_time->utctime = newtime;
502 1.1 kardel }
503 1.1 kardel else
504 1.1 kardel {
505 1.1 kardel rtc = CVT_FAIL|CVT_BADTIME;
506 1.1 kardel }
507 1.1 kardel t->tcode = newtime;
508 1.1 kardel }
509 1.1 kardel }
510 1.1 kardel }
511 1.5 christos
512 1.1 kardel return rtc;
513 1.1 kardel }
514 1.1 kardel
515 1.1 kardel /*
516 1.5 christos * parse_pps_fnc_t pps_rawdcf
517 1.1 kardel *
518 1.1 kardel * currently a very stupid version - should be extended to decode
519 1.1 kardel * also ones and zeros (which is easy)
520 1.1 kardel */
521 1.1 kardel /*ARGSUSED*/
522 1.1 kardel static u_long
523 1.1 kardel pps_rawdcf(
524 1.1 kardel parse_t *parseio,
525 1.1 kardel int status,
526 1.1 kardel timestamp_t *ptime
527 1.1 kardel )
528 1.1 kardel {
529 1.1 kardel if (!status) /* negative edge for simpler wiring (Rx->DCD) */
530 1.1 kardel {
531 1.1 kardel parseio->parse_dtime.parse_ptime = *ptime;
532 1.1 kardel parseio->parse_dtime.parse_state |= PARSEB_PPS|PARSEB_S_PPS;
533 1.1 kardel }
534 1.1 kardel
535 1.1 kardel return CVT_NONE;
536 1.1 kardel }
537 1.1 kardel
538 1.1 kardel static u_long
539 1.1 kardel snt_rawdcf(
540 1.1 kardel parse_t *parseio,
541 1.1 kardel timestamp_t *ptime
542 1.1 kardel )
543 1.1 kardel {
544 1.1 kardel if ((parseio->parse_dtime.parse_status & CVT_MASK) == CVT_OK)
545 1.1 kardel {
546 1.1 kardel parseio->parse_dtime.parse_stime = *ptime;
547 1.1 kardel
548 1.1 kardel #ifdef PARSEKERNEL
549 1.1 kardel parseio->parse_dtime.parse_time.tv.tv_sec++;
550 1.1 kardel #else
551 1.1 kardel parseio->parse_dtime.parse_time.fp.l_ui++;
552 1.1 kardel #endif
553 1.5 christos
554 1.1 kardel parseprintf(DD_RAWDCF,("parse: snt_rawdcf: time stamp synthesized offset %d seconds\n", parseio->parse_index - 1));
555 1.5 christos
556 1.1 kardel return updatetimeinfo(parseio, parseio->parse_lstate);
557 1.1 kardel }
558 1.1 kardel return CVT_NONE;
559 1.1 kardel }
560 1.1 kardel
561 1.1 kardel /*
562 1.5 christos * parse_inp_fnc_t inp_rawdcf
563 1.1 kardel *
564 1.1 kardel * grab DCF77 data from input stream
565 1.1 kardel */
566 1.1 kardel static u_long
567 1.1 kardel inp_rawdcf(
568 1.1 kardel parse_t *parseio,
569 1.5 christos char ch,
570 1.1 kardel timestamp_t *tstamp
571 1.1 kardel )
572 1.1 kardel {
573 1.1 kardel static struct timeval timeout = { 1, 500000 }; /* 1.5 secongs denote second #60 */
574 1.5 christos
575 1.1 kardel parseprintf(DD_PARSE, ("inp_rawdcf(0x%lx, 0x%x, ...)\n", (long)parseio, ch));
576 1.5 christos
577 1.1 kardel parseio->parse_dtime.parse_stime = *tstamp; /* collect timestamp */
578 1.1 kardel
579 1.1 kardel if (parse_timedout(parseio, tstamp, &timeout))
580 1.1 kardel {
581 1.1 kardel parseprintf(DD_PARSE, ("inp_rawdcf: time out seen\n"));
582 1.1 kardel
583 1.1 kardel (void) parse_end(parseio);
584 1.1 kardel (void) parse_addchar(parseio, ch);
585 1.1 kardel return PARSE_INP_TIME;
586 1.1 kardel }
587 1.1 kardel else
588 1.1 kardel {
589 1.1 kardel unsigned int rtc;
590 1.5 christos
591 1.1 kardel rtc = parse_addchar(parseio, ch);
592 1.1 kardel if (rtc == PARSE_INP_SKIP)
593 1.1 kardel {
594 1.1 kardel if (snt_rawdcf(parseio, tstamp) == CVT_OK)
595 1.1 kardel return PARSE_INP_SYNTH;
596 1.1 kardel }
597 1.1 kardel return rtc;
598 1.1 kardel }
599 1.1 kardel }
600 1.1 kardel
601 1.1 kardel #else /* not (REFCLOCK && CLOCK_PARSE && CLOCK_RAWDCF) */
602 1.1 kardel int clk_rawdcf_bs;
603 1.1 kardel #endif /* not (REFCLOCK && CLOCK_PARSE && CLOCK_RAWDCF) */
604 1.1 kardel
605 1.1 kardel /*
606 1.1 kardel * History:
607 1.1 kardel *
608 1.1 kardel * clk_rawdcf.c,v
609 1.1 kardel * Revision 4.18 2006/06/22 18:40:01 kardel
610 1.1 kardel * clean up signedness (gcc 4)
611 1.1 kardel *
612 1.1 kardel * Revision 4.17 2006/01/22 16:01:55 kardel
613 1.1 kardel * update version information
614 1.1 kardel *
615 1.1 kardel * Revision 4.16 2006/01/22 15:51:22 kardel
616 1.1 kardel * generate reasonable timecode output on invalid input
617 1.1 kardel *
618 1.1 kardel * Revision 4.15 2005/08/06 19:17:06 kardel
619 1.1 kardel * clean log output
620 1.1 kardel *
621 1.1 kardel * Revision 4.14 2005/08/06 17:39:40 kardel
622 1.1 kardel * cleanup size handling wrt/ to buffer boundaries
623 1.1 kardel *
624 1.1 kardel * Revision 4.13 2005/04/16 17:32:10 kardel
625 1.1 kardel * update copyright
626 1.1 kardel *
627 1.1 kardel * Revision 4.12 2004/11/14 15:29:41 kardel
628 1.1 kardel * support PPSAPI, upgrade Copyright to Berkeley style
629 1.1 kardel *
630 1.1 kardel * Revision 4.9 1999/12/06 13:42:23 kardel
631 1.1 kardel * transfer correctly converted time codes always into tcode
632 1.1 kardel *
633 1.1 kardel * Revision 4.8 1999/11/28 09:13:50 kardel
634 1.1 kardel * RECON_4_0_98F
635 1.1 kardel *
636 1.1 kardel * Revision 4.7 1999/04/01 20:07:20 kardel
637 1.1 kardel * added checking for minutie increment of timestamps in clk_rawdcf.c
638 1.1 kardel *
639 1.1 kardel * Revision 4.6 1998/06/14 21:09:37 kardel
640 1.1 kardel * Sun acc cleanup
641 1.1 kardel *
642 1.1 kardel * Revision 4.5 1998/06/13 12:04:16 kardel
643 1.1 kardel * fix SYSV clock name clash
644 1.1 kardel *
645 1.1 kardel * Revision 4.4 1998/06/12 15:22:28 kardel
646 1.1 kardel * fix prototypes
647 1.1 kardel *
648 1.1 kardel * Revision 4.3 1998/06/06 18:33:36 kardel
649 1.1 kardel * simplified condidional compile expression
650 1.1 kardel *
651 1.1 kardel * Revision 4.2 1998/05/24 11:04:18 kardel
652 1.1 kardel * triggering PPS on negative edge for simpler wiring (Rx->DCD)
653 1.1 kardel *
654 1.1 kardel * Revision 4.1 1998/05/24 09:39:53 kardel
655 1.1 kardel * implementation of the new IO handling model
656 1.1 kardel *
657 1.1 kardel * Revision 4.0 1998/04/10 19:45:30 kardel
658 1.1 kardel * Start 4.0 release version numbering
659 1.1 kardel *
660 1.1 kardel * from V3 3.24 log info deleted 1998/04/11 kardel
661 1.1 kardel *
662 1.1 kardel */
663