cannam@0: /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */ cannam@0: cannam@0: /* cannam@0: Vamp cannam@0: cannam@0: An API for audio analysis and feature extraction plugins. cannam@0: cannam@0: Centre for Digital Music, Queen Mary, University of London. cannam@0: Copyright 2006 Chris Cannam. cannam@0: cannam@0: Permission is hereby granted, free of charge, to any person cannam@0: obtaining a copy of this software and associated documentation cannam@0: files (the "Software"), to deal in the Software without cannam@0: restriction, including without limitation the rights to use, copy, cannam@0: modify, merge, publish, distribute, sublicense, and/or sell copies cannam@0: of the Software, and to permit persons to whom the Software is cannam@0: furnished to do so, subject to the following conditions: cannam@0: cannam@0: The above copyright notice and this permission notice shall be cannam@0: included in all copies or substantial portions of the Software. cannam@0: cannam@0: THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, cannam@0: EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF cannam@0: MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND cannam@0: NONINFRINGEMENT. IN NO EVENT SHALL THE X CONSORTIUM BE LIABLE FOR cannam@0: ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF cannam@0: CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION cannam@0: WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. cannam@0: cannam@0: Except as contained in this notice, the names of the Centre for cannam@0: Digital Music; Queen Mary, University of London; and Chris Cannam cannam@0: shall not be used in advertising or otherwise to promote the sale, cannam@0: use or other dealings in this Software without prior written cannam@0: authorization. cannam@0: */ cannam@0: cannam@0: /* cannam@0: This is a modified version of a source file from the cannam@0: Rosegarden MIDI and audio sequencer and notation editor. cannam@0: This file copyright 2000-2006 Chris Cannam; relicensed as detailed above cannam@0: */ cannam@0: cannam@0: #ifndef _REAL_TIME_H_ cannam@0: #define _REAL_TIME_H_ cannam@0: cannam@0: #include cannam@0: #include cannam@0: cannam@0: struct timeval; cannam@0: cannam@0: namespace Vamp { cannam@0: cannam@0: /** cannam@0: * RealTime represents time values to nanosecond precision cannam@0: * with accurate arithmetic and frame-rate conversion functions. cannam@0: */ cannam@0: cannam@0: struct RealTime cannam@0: { cannam@0: int sec; cannam@0: int nsec; cannam@0: cannam@0: int usec() const { return nsec / 1000; } cannam@0: int msec() const { return nsec / 1000000; } cannam@0: cannam@0: RealTime(): sec(0), nsec(0) {} cannam@0: RealTime(int s, int n); cannam@0: cannam@0: RealTime(const RealTime &r) : cannam@0: sec(r.sec), nsec(r.nsec) { } cannam@0: cannam@0: static RealTime fromSeconds(double sec); cannam@0: static RealTime fromMilliseconds(int msec); cannam@0: static RealTime fromTimeval(const struct timeval &); cannam@0: cannam@0: RealTime &operator=(const RealTime &r) { cannam@0: sec = r.sec; nsec = r.nsec; return *this; cannam@0: } cannam@0: cannam@0: RealTime operator+(const RealTime &r) const { cannam@0: return RealTime(sec + r.sec, nsec + r.nsec); cannam@0: } cannam@0: RealTime operator-(const RealTime &r) const { cannam@0: return RealTime(sec - r.sec, nsec - r.nsec); cannam@0: } cannam@0: RealTime operator-() const { cannam@0: return RealTime(-sec, -nsec); cannam@0: } cannam@0: cannam@0: bool operator <(const RealTime &r) const { cannam@0: if (sec == r.sec) return nsec < r.nsec; cannam@0: else return sec < r.sec; cannam@0: } cannam@0: cannam@0: bool operator >(const RealTime &r) const { cannam@0: if (sec == r.sec) return nsec > r.nsec; cannam@0: else return sec > r.sec; cannam@0: } cannam@0: cannam@0: bool operator==(const RealTime &r) const { cannam@0: return (sec == r.sec && nsec == r.nsec); cannam@0: } cannam@0: cannam@0: bool operator!=(const RealTime &r) const { cannam@0: return !(r == *this); cannam@0: } cannam@0: cannam@0: bool operator>=(const RealTime &r) const { cannam@0: if (sec == r.sec) return nsec >= r.nsec; cannam@0: else return sec >= r.sec; cannam@0: } cannam@0: cannam@0: bool operator<=(const RealTime &r) const { cannam@0: if (sec == r.sec) return nsec <= r.nsec; cannam@0: else return sec <= r.sec; cannam@0: } cannam@0: cannam@0: RealTime operator/(int d) const; cannam@0: cannam@0: // Find the fractional difference between times cannam@0: // cannam@0: double operator/(const RealTime &r) const; cannam@0: cannam@0: // Return a human-readable debug-type string to full precision cannam@0: // (probably not a format to show to a user directly) cannam@0: // cannam@0: std::string toString() const; cannam@0: cannam@0: // Return a user-readable string to the nearest millisecond cannam@0: // in a form like HH:MM:SS.mmm cannam@0: // cannam@0: std::string toText(bool fixedDp = false) const; cannam@0: cannam@0: // Convenience functions for handling sample frames cannam@0: // cannam@0: static long realTime2Frame(const RealTime &r, unsigned int sampleRate); cannam@0: static RealTime frame2RealTime(long frame, unsigned int sampleRate); cannam@0: cannam@0: static const RealTime zeroTime; cannam@0: }; cannam@0: cannam@0: std::ostream &operator<<(std::ostream &out, const RealTime &rt); cannam@0: cannam@0: } cannam@0: cannam@0: #endif