Chris@49
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1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
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Chris@0
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2
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Chris@0
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3 /*
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Chris@52
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4 Sonic Visualiser
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Chris@52
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5 An audio file viewer and annotation editor.
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Chris@52
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6 Centre for Digital Music, Queen Mary, University of London.
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Chris@0
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7
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Chris@52
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8 This program is free software; you can redistribute it and/or
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Chris@52
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9 modify it under the terms of the GNU General Public License as
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Chris@52
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10 published by the Free Software Foundation; either version 2 of the
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Chris@52
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11 License, or (at your option) any later version. See the file
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Chris@52
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12 COPYING included with this distribution for more information.
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Chris@0
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13 */
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Chris@0
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14
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Chris@0
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15 /*
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Chris@0
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16 This is a modified version of a source file from the
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Chris@0
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17 Rosegarden MIDI and audio sequencer and notation editor.
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Chris@17
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18 This file copyright 2000-2006 Chris Cannam.
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Chris@0
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19 */
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Chris@0
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20
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Chris@0
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21 #include <iostream>
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Chris@1427
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22 #include <limits.h>
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Chris@0
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23
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Chris@405
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24 #include <cstdlib>
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Chris@0
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25 #include <sstream>
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Chris@0
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26
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Chris@150
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27 #include "RealTime.h"
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Chris@0
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28
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Chris@843
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29 #include "Debug.h"
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Chris@843
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30
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Chris@612
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31 #include "Preferences.h"
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Chris@612
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32
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Chris@0
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33 // A RealTime consists of two ints that must be at least 32 bits each.
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Chris@0
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34 // A signed 32-bit int can store values exceeding +/- 2 billion. This
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Chris@0
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35 // means we can safely use our lower int for nanoseconds, as there are
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Chris@0
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36 // 1 billion nanoseconds in a second and we need to handle double that
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Chris@0
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37 // because of the implementations of addition etc that we use.
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Chris@0
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38 //
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Chris@0
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39 // The maximum valid RealTime on a 32-bit system is somewhere around
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Chris@0
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40 // 68 years: 999999999 nanoseconds longer than the classic Unix epoch.
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Chris@0
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41
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Chris@0
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42 #define ONE_BILLION 1000000000
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Chris@0
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43
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Chris@0
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44 RealTime::RealTime(int s, int n) :
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Chris@0
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45 sec(s), nsec(n)
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Chris@0
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46 {
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Chris@1427
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47 while (nsec <= -ONE_BILLION && sec > INT_MIN) { nsec += ONE_BILLION; --sec; }
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Chris@1427
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48 while (nsec >= ONE_BILLION && sec < INT_MAX) { nsec -= ONE_BILLION; ++sec; }
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Chris@1427
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49 while (nsec > 0 && sec < 0) { nsec -= ONE_BILLION; ++sec; }
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Chris@1427
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50 while (nsec < 0 && sec > 0) { nsec += ONE_BILLION; --sec; }
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Chris@0
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51 }
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Chris@0
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52
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Chris@26
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53 RealTime
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Chris@26
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54 RealTime::fromSeconds(double sec)
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Chris@26
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55 {
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Chris@1012
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56 if (sec >= 0) {
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Chris@1012
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57 return RealTime(int(sec), int((sec - int(sec)) * ONE_BILLION + 0.5));
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Chris@1012
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58 } else {
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Chris@1012
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59 return -fromSeconds(-sec);
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Chris@1012
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60 }
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Chris@26
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61 }
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Chris@26
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62
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Chris@26
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63 RealTime
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Chris@1542
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64 RealTime::fromMilliseconds(int64_t msec)
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Chris@26
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65 {
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Chris@1542
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66 int64_t sec = msec / 1000;
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Chris@1542
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67 if (sec > INT_MAX || sec < INT_MIN) {
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Chris@1542
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68 cerr << "WARNING: millisecond value out of range for RealTime, "
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Chris@1542
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69 << "returning zero instead: " << msec << endl;
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Chris@1542
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70 return RealTime::zeroTime;
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Chris@1542
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71 }
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Chris@1542
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72
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Chris@1542
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73 return RealTime(int(sec), int(msec % 1000) * 1000000);
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Chris@26
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74 }
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Chris@26
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75
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Chris@26
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76 RealTime
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Chris@1542
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77 RealTime::fromMicroseconds(int64_t usec)
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Chris@1541
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78 {
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Chris@1542
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79 int64_t sec = usec / 1000000;
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Chris@1542
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80 if (sec > INT_MAX || sec < INT_MIN) {
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Chris@1542
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81 cerr << "WARNING: microsecond value out of range for RealTime, "
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Chris@1542
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82 << "returning zero instead: " << usec << endl;
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Chris@1542
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83 return RealTime::zeroTime;
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Chris@1542
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84 }
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Chris@1542
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85
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Chris@1542
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86 return RealTime(int(sec), int(usec % 1000000) * 1000);
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Chris@1541
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87 }
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Chris@1541
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88
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Chris@1541
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89 RealTime
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Chris@26
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90 RealTime::fromTimeval(const struct timeval &tv)
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Chris@26
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91 {
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Chris@1038
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92 return RealTime(int(tv.tv_sec), int(tv.tv_usec * 1000));
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Chris@26
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93 }
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Chris@0
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94
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Chris@439
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95 RealTime
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Chris@439
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96 RealTime::fromXsdDuration(std::string xsdd)
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Chris@439
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97 {
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Chris@439
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98 RealTime t;
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Chris@439
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99
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Chris@439
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100 int year = 0, month = 0, day = 0, hour = 0, minute = 0;
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Chris@439
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101 double second = 0.0;
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Chris@439
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102
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Chris@1298
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103 char *loc = setlocale(LC_NUMERIC, 0);
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Chris@1298
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104 (void)setlocale(LC_NUMERIC, "C"); // avoid strtod expecting ,-separator in DE
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Chris@1298
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105
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Chris@439
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106 int i = 0;
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Chris@439
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107
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Chris@439
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108 const char *s = xsdd.c_str();
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Chris@1038
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109 int len = int(xsdd.length());
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Chris@439
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110
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Chris@439
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111 bool negative = false, afterT = false;
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Chris@439
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112
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Chris@439
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113 while (i < len) {
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Chris@439
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114
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Chris@439
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115 if (s[i] == '-') {
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Chris@439
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116 if (i == 0) negative = true;
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Chris@439
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117 ++i;
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Chris@439
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118 continue;
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Chris@439
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119 }
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Chris@439
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120
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Chris@439
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121 double value = 0.0;
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Chris@439
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122 char *eptr = 0;
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Chris@439
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123
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Chris@439
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124 if (isdigit(s[i]) || s[i] == '.') {
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Chris@439
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125 value = strtod(&s[i], &eptr);
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Chris@1038
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126 i = int(eptr - s);
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Chris@439
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127 }
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Chris@439
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128
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Chris@439
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129 if (i == len) break;
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Chris@439
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130
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Chris@439
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131 switch (s[i]) {
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Chris@439
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132 case 'Y': year = int(value + 0.1); break;
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Chris@439
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133 case 'D': day = int(value + 0.1); break;
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Chris@439
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134 case 'H': hour = int(value + 0.1); break;
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Chris@439
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135 case 'M':
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Chris@439
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136 if (afterT) minute = int(value + 0.1);
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Chris@439
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137 else month = int(value + 0.1);
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Chris@439
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138 break;
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Chris@439
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139 case 'S':
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Chris@439
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140 second = value;
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Chris@439
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141 break;
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Chris@439
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142 case 'T': afterT = true; break;
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Chris@439
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143 };
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Chris@439
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144
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Chris@439
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145 ++i;
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Chris@439
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146 }
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Chris@439
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147
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Chris@439
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148 if (year > 0) {
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Chris@843
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149 cerr << "WARNING: This xsd:duration (\"" << xsdd << "\") contains a non-zero year.\nWith no origin and a limited data size, I will treat a year as exactly 31556952\nseconds and you should expect overflow and/or poor results." << endl;
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Chris@439
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150 t = t + RealTime(year * 31556952, 0);
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Chris@439
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151 }
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Chris@439
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152
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Chris@439
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153 if (month > 0) {
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Chris@843
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154 cerr << "WARNING: This xsd:duration (\"" << xsdd << "\") contains a non-zero month.\nWith no origin and a limited data size, I will treat a month as exactly 2629746\nseconds and you should expect overflow and/or poor results." << endl;
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Chris@439
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155 t = t + RealTime(month * 2629746, 0);
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Chris@439
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156 }
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Chris@439
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157
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Chris@439
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158 if (day > 0) {
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Chris@439
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159 t = t + RealTime(day * 86400, 0);
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Chris@439
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160 }
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Chris@439
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161
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Chris@439
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162 if (hour > 0) {
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Chris@439
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163 t = t + RealTime(hour * 3600, 0);
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Chris@439
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164 }
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Chris@439
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165
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Chris@439
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166 if (minute > 0) {
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Chris@439
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167 t = t + RealTime(minute * 60, 0);
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Chris@439
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168 }
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Chris@439
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169
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Chris@439
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170 t = t + fromSeconds(second);
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Chris@439
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171
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Chris@1298
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172 setlocale(LC_NUMERIC, loc);
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Chris@1298
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173
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Chris@928
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174 if (negative) {
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Chris@928
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175 return -t;
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Chris@928
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176 } else {
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Chris@928
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177 return t;
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Chris@928
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178 }
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Chris@439
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179 }
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Chris@439
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180
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Chris@439
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181 double
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Chris@439
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182 RealTime::toDouble() const
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Chris@439
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183 {
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Chris@439
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184 double d = sec;
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Chris@439
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185 d += double(nsec) / double(ONE_BILLION);
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Chris@439
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186 return d;
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Chris@439
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187 }
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Chris@439
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188
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Chris@0
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189 std::ostream &operator<<(std::ostream &out, const RealTime &rt)
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Chris@0
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190 {
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Chris@0
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191 if (rt < RealTime::zeroTime) {
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Chris@1429
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192 out << "-";
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Chris@0
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193 } else {
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Chris@1429
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194 out << " ";
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Chris@0
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195 }
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Chris@0
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196
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Chris@0
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197 int s = (rt.sec < 0 ? -rt.sec : rt.sec);
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Chris@0
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198 int n = (rt.nsec < 0 ? -rt.nsec : rt.nsec);
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Chris@0
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199
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Chris@0
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200 out << s << ".";
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Chris@0
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201
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Chris@0
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202 int nn(n);
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Chris@0
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203 if (nn == 0) out << "00000000";
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Chris@0
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204 else while (nn < (ONE_BILLION / 10)) {
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Chris@1429
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205 out << "0";
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Chris@1429
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206 nn *= 10;
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Chris@0
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207 }
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Chris@0
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208
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Chris@0
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209 out << n << "R";
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Chris@0
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210 return out;
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Chris@0
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211 }
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Chris@0
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212
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Chris@0
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213 std::string
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Chris@121
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214 RealTime::toString(bool align) const
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Chris@0
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215 {
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Chris@0
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216 std::stringstream out;
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Chris@0
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217 out << *this;
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Chris@0
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218
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Chris@0
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219 std::string s = out.str();
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Chris@0
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220
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Chris@121
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221 if (!align && *this >= RealTime::zeroTime) {
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Chris@121
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222 // remove leading " "
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Chris@121
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223 s = s.substr(1, s.length() - 1);
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Chris@121
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224 }
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Chris@121
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225
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Chris@0
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226 // remove trailing R
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Chris@0
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227 return s.substr(0, s.length() - 1);
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Chris@0
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228 }
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Chris@0
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229
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Chris@350
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230 RealTime
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Chris@350
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231 RealTime::fromString(std::string s)
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Chris@350
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232 {
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Chris@350
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233 bool negative = false;
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Chris@957
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234 int section = 0;
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Chris@350
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235 std::string ssec, snsec;
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Chris@350
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236
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Chris@350
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237 for (size_t i = 0; i < s.length(); ++i) {
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Chris@350
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238
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Chris@350
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239 char c = s[i];
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Chris@350
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240 if (isspace(c)) continue;
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Chris@350
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241
|
Chris@350
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242 if (section == 0) {
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Chris@350
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243
|
Chris@350
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244 if (c == '-') negative = true;
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Chris@350
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245 else if (isdigit(c)) { section = 1; ssec += c; }
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Chris@350
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246 else if (c == '.') section = 2;
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Chris@350
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247 else break;
|
Chris@350
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248
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Chris@350
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249 } else if (section == 1) {
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Chris@350
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250
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Chris@350
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251 if (c == '.') section = 2;
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Chris@350
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252 else if (isdigit(c)) ssec += c;
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Chris@350
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253 else break;
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Chris@350
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254
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Chris@350
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255 } else if (section == 2) {
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Chris@350
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256
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Chris@350
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257 if (isdigit(c)) snsec += c;
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Chris@350
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258 else break;
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Chris@350
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259 }
|
Chris@350
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260 }
|
Chris@350
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261
|
Chris@350
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262 while (snsec.length() < 8) snsec += '0';
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Chris@350
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263
|
Chris@350
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264 int sec = atoi(ssec.c_str());
|
Chris@350
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265 int nsec = atoi(snsec.c_str());
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Chris@350
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266 if (negative) sec = -sec;
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Chris@350
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267
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Chris@690
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268 // SVDEBUG << "RealTime::fromString: string " << s << " -> "
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Chris@687
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269 // << sec << " sec, " << nsec << " nsec" << endl;
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Chris@350
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270
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Chris@350
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271 return RealTime(sec, nsec);
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Chris@350
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272 }
|
Chris@350
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273
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Chris@0
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274 std::string
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Chris@0
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275 RealTime::toText(bool fixedDp) const
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Chris@0
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276 {
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Chris@247
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277 if (*this < RealTime::zeroTime) return "-" + (-*this).toText(fixedDp);
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Chris@0
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278
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Chris@612
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279 Preferences *p = Preferences::getInstance();
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Chris@1070
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280 bool hms = true;
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Chris@1542
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281 std::string frameDelimiter = ":";
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Chris@1070
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282
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Chris@612
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283 if (p) {
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Chris@1070
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284 hms = p->getShowHMS();
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Chris@612
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285 int fps = 0;
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Chris@612
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286 switch (p->getTimeToTextMode()) {
|
Chris@1542
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287 case Preferences::TimeToTextMs:
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Chris@1542
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288 break;
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Chris@1542
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289 case Preferences::TimeToTextUs:
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Chris@1542
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290 fps = 1000000;
|
Chris@1542
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291 frameDelimiter = ".";
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Chris@1542
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292 break;
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Chris@612
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293 case Preferences::TimeToText24Frame: fps = 24; break;
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Chris@612
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294 case Preferences::TimeToText25Frame: fps = 25; break;
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Chris@612
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295 case Preferences::TimeToText30Frame: fps = 30; break;
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Chris@612
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296 case Preferences::TimeToText50Frame: fps = 50; break;
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Chris@612
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297 case Preferences::TimeToText60Frame: fps = 60; break;
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Chris@612
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298 }
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Chris@1542
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299 if (fps != 0) {
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Chris@1542
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300 return toFrameText(fps, hms, frameDelimiter);
|
Chris@1542
|
301 }
|
Chris@612
|
302 }
|
Chris@612
|
303
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Chris@1070
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304 return toMSText(fixedDp, hms);
|
Chris@1070
|
305 }
|
Chris@0
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306
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Chris@1070
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307 static void
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Chris@1070
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308 writeSecPart(std::stringstream &out, bool hms, int sec)
|
Chris@1070
|
309 {
|
Chris@1070
|
310 if (hms) {
|
Chris@1031
|
311 if (sec >= 3600) {
|
Chris@1031
|
312 out << (sec / 3600) << ":";
|
Chris@1031
|
313 }
|
Chris@1031
|
314
|
Chris@1031
|
315 if (sec >= 60) {
|
Chris@1070
|
316 int minutes = (sec % 3600) / 60;
|
Chris@1070
|
317 if (sec >= 3600 && minutes < 10) out << "0";
|
Chris@1070
|
318 out << minutes << ":";
|
Chris@1031
|
319 }
|
Chris@1031
|
320
|
Chris@1031
|
321 if (sec >= 10) {
|
Chris@1031
|
322 out << ((sec % 60) / 10);
|
Chris@1031
|
323 }
|
Chris@1031
|
324
|
Chris@1031
|
325 out << (sec % 10);
|
Chris@1031
|
326
|
Chris@1031
|
327 } else {
|
Chris@1031
|
328 out << sec;
|
Chris@0
|
329 }
|
Chris@1070
|
330 }
|
Chris@1070
|
331
|
Chris@1070
|
332 std::string
|
Chris@1070
|
333 RealTime::toMSText(bool fixedDp, bool hms) const
|
Chris@1070
|
334 {
|
Chris@1070
|
335 if (*this < RealTime::zeroTime) return "-" + (-*this).toMSText(fixedDp, hms);
|
Chris@1070
|
336
|
Chris@1070
|
337 std::stringstream out;
|
Chris@1070
|
338
|
Chris@1070
|
339 writeSecPart(out, hms, sec);
|
Chris@0
|
340
|
Chris@0
|
341 int ms = msec();
|
Chris@0
|
342
|
Chris@0
|
343 if (ms != 0) {
|
Chris@1429
|
344 out << ".";
|
Chris@1429
|
345 out << (ms / 100);
|
Chris@1429
|
346 ms = ms % 100;
|
Chris@1429
|
347 if (ms != 0) {
|
Chris@1429
|
348 out << (ms / 10);
|
Chris@1429
|
349 ms = ms % 10;
|
Chris@1429
|
350 } else if (fixedDp) {
|
Chris@1429
|
351 out << "0";
|
Chris@1429
|
352 }
|
Chris@1429
|
353 if (ms != 0) {
|
Chris@1429
|
354 out << ms;
|
Chris@1429
|
355 } else if (fixedDp) {
|
Chris@1429
|
356 out << "0";
|
Chris@1429
|
357 }
|
Chris@0
|
358 } else if (fixedDp) {
|
Chris@1429
|
359 out << ".000";
|
Chris@0
|
360 }
|
Chris@1429
|
361
|
Chris@612
|
362 std::string s = out.str();
|
Chris@0
|
363
|
Chris@612
|
364 return s;
|
Chris@612
|
365 }
|
Chris@612
|
366
|
Chris@612
|
367 std::string
|
Chris@1542
|
368 RealTime::toFrameText(int fps, bool hms, std::string frameDelimiter) const
|
Chris@612
|
369 {
|
Chris@1542
|
370 if (*this < RealTime::zeroTime) {
|
Chris@1542
|
371 return "-" + (-*this).toFrameText(fps, hms);
|
Chris@1542
|
372 }
|
Chris@1031
|
373
|
Chris@612
|
374 std::stringstream out;
|
Chris@612
|
375
|
Chris@1070
|
376 writeSecPart(out, hms, sec);
|
Chris@1031
|
377
|
Chris@1070
|
378 // avoid rounding error if fps does not divide into ONE_BILLION
|
Chris@1070
|
379 int64_t fbig = nsec;
|
Chris@1070
|
380 fbig *= fps;
|
Chris@1070
|
381 int f = int(fbig / ONE_BILLION);
|
Chris@612
|
382
|
Chris@612
|
383 int div = 1;
|
Chris@612
|
384 int n = fps - 1;
|
Chris@612
|
385 while ((n = n / 10)) {
|
Chris@612
|
386 div *= 10;
|
Chris@612
|
387 }
|
Chris@612
|
388
|
Chris@1542
|
389 out << frameDelimiter;
|
Chris@612
|
390
|
Chris@843
|
391 // cerr << "div = " << div << ", f = "<< f << endl;
|
Chris@612
|
392
|
Chris@612
|
393 while (div) {
|
Chris@612
|
394 int d = (f / div) % 10;
|
Chris@612
|
395 out << d;
|
Chris@612
|
396 div /= 10;
|
Chris@612
|
397 }
|
Chris@1429
|
398
|
Chris@0
|
399 std::string s = out.str();
|
Chris@0
|
400
|
Chris@843
|
401 // cerr << "converted " << toString() << " to " << s << endl;
|
Chris@612
|
402
|
Chris@0
|
403 return s;
|
Chris@0
|
404 }
|
Chris@0
|
405
|
Chris@247
|
406 std::string
|
Chris@247
|
407 RealTime::toSecText() const
|
Chris@247
|
408 {
|
Chris@247
|
409 if (*this < RealTime::zeroTime) return "-" + (-*this).toSecText();
|
Chris@247
|
410
|
Chris@247
|
411 std::stringstream out;
|
Chris@247
|
412
|
Chris@1070
|
413 writeSecPart(out, true, sec);
|
Chris@247
|
414
|
Chris@247
|
415 if (sec < 60) {
|
Chris@247
|
416 out << "s";
|
Chris@247
|
417 }
|
Chris@247
|
418
|
Chris@247
|
419 std::string s = out.str();
|
Chris@247
|
420
|
Chris@247
|
421 return s;
|
Chris@247
|
422 }
|
Chris@247
|
423
|
Chris@494
|
424 std::string
|
Chris@494
|
425 RealTime::toXsdDuration() const
|
Chris@494
|
426 {
|
Chris@494
|
427 std::string s = "PT" + toString(false) + "S";
|
Chris@494
|
428 return s;
|
Chris@494
|
429 }
|
Chris@494
|
430
|
Chris@183
|
431 RealTime
|
Chris@183
|
432 RealTime::operator*(int m) const
|
Chris@183
|
433 {
|
Chris@183
|
434 double t = (double(nsec) / ONE_BILLION) * m;
|
Chris@183
|
435 t += sec * m;
|
Chris@183
|
436 return fromSeconds(t);
|
Chris@183
|
437 }
|
Chris@0
|
438
|
Chris@0
|
439 RealTime
|
Chris@0
|
440 RealTime::operator/(int d) const
|
Chris@0
|
441 {
|
Chris@0
|
442 int secdiv = sec / d;
|
Chris@0
|
443 int secrem = sec % d;
|
Chris@0
|
444
|
Chris@0
|
445 double nsecdiv = (double(nsec) + ONE_BILLION * double(secrem)) / d;
|
Chris@0
|
446
|
Chris@0
|
447 return RealTime(secdiv, int(nsecdiv + 0.5));
|
Chris@0
|
448 }
|
Chris@0
|
449
|
Chris@378
|
450 RealTime
|
Chris@378
|
451 RealTime::operator*(double m) const
|
Chris@378
|
452 {
|
Chris@378
|
453 double t = (double(nsec) / ONE_BILLION) * m;
|
Chris@378
|
454 t += sec * m;
|
Chris@378
|
455 return fromSeconds(t);
|
Chris@378
|
456 }
|
Chris@378
|
457
|
Chris@378
|
458 RealTime
|
Chris@378
|
459 RealTime::operator/(double d) const
|
Chris@378
|
460 {
|
Chris@378
|
461 double t = (double(nsec) / ONE_BILLION) / d;
|
Chris@378
|
462 t += sec / d;
|
Chris@378
|
463 return fromSeconds(t);
|
Chris@378
|
464 }
|
Chris@378
|
465
|
Chris@0
|
466 double
|
Chris@0
|
467 RealTime::operator/(const RealTime &r) const
|
Chris@0
|
468 {
|
Chris@0
|
469 double lTotal = double(sec) * ONE_BILLION + double(nsec);
|
Chris@0
|
470 double rTotal = double(r.sec) * ONE_BILLION + double(r.nsec);
|
Chris@0
|
471
|
Chris@0
|
472 if (rTotal == 0) return 0.0;
|
Chris@0
|
473 else return lTotal/rTotal;
|
Chris@0
|
474 }
|
Chris@0
|
475
|
Chris@1040
|
476 static RealTime
|
Chris@1040
|
477 frame2RealTime_i(sv_frame_t frame, sv_frame_t iSampleRate)
|
Chris@1040
|
478 {
|
Chris@1040
|
479 if (frame < 0) return -frame2RealTime_i(-frame, iSampleRate);
|
Chris@1040
|
480
|
Chris@1262
|
481 int sec = int(frame / iSampleRate);
|
Chris@1040
|
482 frame -= sec * iSampleRate;
|
Chris@1262
|
483 int nsec = int((double(frame) / double(iSampleRate)) * ONE_BILLION + 0.5);
|
Chris@1262
|
484 // Use ctor here instead of setting data members directly to
|
Chris@1262
|
485 // ensure nsec > ONE_BILLION is handled properly. It's extremely
|
Chris@1262
|
486 // unlikely, but not impossible.
|
Chris@1262
|
487 return RealTime(sec, nsec);
|
Chris@1040
|
488 }
|
Chris@1040
|
489
|
Chris@1038
|
490 sv_frame_t
|
Chris@1040
|
491 RealTime::realTime2Frame(const RealTime &time, sv_samplerate_t sampleRate)
|
Chris@0
|
492 {
|
Chris@0
|
493 if (time < zeroTime) return -realTime2Frame(-time, sampleRate);
|
Chris@1262
|
494 double s = time.sec + double(time.nsec) / 1000000000.0;
|
Chris@1262
|
495 return sv_frame_t(s * sampleRate + 0.5);
|
Chris@0
|
496 }
|
Chris@0
|
497
|
Chris@0
|
498 RealTime
|
Chris@1040
|
499 RealTime::frame2RealTime(sv_frame_t frame, sv_samplerate_t sampleRate)
|
Chris@0
|
500 {
|
Chris@1040
|
501 if (sampleRate == double(int(sampleRate))) {
|
Chris@1040
|
502 return frame2RealTime_i(frame, int(sampleRate));
|
Chris@1040
|
503 }
|
Chris@0
|
504
|
Chris@1040
|
505 double sec = double(frame) / sampleRate;
|
Chris@1040
|
506 return fromSeconds(sec);
|
Chris@0
|
507 }
|
Chris@0
|
508
|
Chris@0
|
509 const RealTime RealTime::zeroTime(0,0);
|
Chris@0
|
510
|