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3 Commits
2023.08.31
...
2023.08.13
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2bf0052eb8 | ||
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1394cd96c5 | ||
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8a2ec3a898 |
@@ -36,11 +36,14 @@ the sum of the MIDI pitches for all the notes,
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the sum of the note durations in MIDI pulse units,
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the sum of the note durations in MIDI pulse units,
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the number of control parameter messages,
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the number of control parameter messages,
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the number of pressure messages.
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the number of pressure messages.
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and the number of distinct rhythm patterns for each channel
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the number of distinct rhythm patterns for each channel
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the number of pulses the channel was inactive
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the minimum pitch value
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the minimum pitch value
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the maximum pitch value
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the maximum pitch value
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the minimum note length in pulses
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the minimum note length in pulses
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the maximum note length in pulses
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the maximum note length in pulses
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the number of gaps in the channel
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the entropy of the pitch class histogram for that channel
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.PP
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.PP
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After processing all the individual tracks, the following information
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After processing all the individual tracks, the following information
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applies to the entire midi file.
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applies to the entire midi file.
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@@ -74,10 +77,6 @@ that occur in the midi file.
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pitchact is a similar histogram but is weighted by the length of
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pitchact is a similar histogram but is weighted by the length of
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the notes.
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the notes.
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.PP
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.PP
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quietTime is used to compute the track/channel spread in midiexplorer.
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It is computed by summing up all the midi pulses which occur
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in gaps greater than 8 beats.
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.PP
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totalrhythmpatterns is the total number of bar rhythm patterns for
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totalrhythmpatterns is the total number of bar rhythm patterns for
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all channels except the percussion channel.
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all channels except the percussion channel.
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.PP
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.PP
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@@ -6,7 +6,7 @@ abc2abc version 2.20 February 07 2023
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yaps version 1.92 January 06 2023
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yaps version 1.92 January 06 2023
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abcmatch version 1.82 June 14 2022
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abcmatch version 1.82 June 14 2022
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midicopy version 1.38 May 06 2022
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midicopy version 1.38 May 06 2022
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midistats version 0.72 August 31 2023
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midistats version 0.75 September 13 2023
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24th January 2002
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24th January 2002
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Copyright James Allwright
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Copyright James Allwright
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48
midistats.c
48
midistats.c
@@ -18,7 +18,7 @@
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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*/
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#define VERSION "0.72 August 31 2023 midistats"
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#define VERSION "0.75 September 13 2023 midistats"
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#include <limits.h>
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#include <limits.h>
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/* Microsoft Visual C++ Version 6.0 or higher */
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/* Microsoft Visual C++ Version 6.0 or higher */
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@@ -118,6 +118,7 @@ int notechan[2048],notechanvol[2048]; /*for linking on and off midi
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int lastTick[2048]; /* for getting last pulse number for chan (0-15) and pitch (0-127) in MIDI file */
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int lastTick[2048]; /* for getting last pulse number for chan (0-15) and pitch (0-127) in MIDI file */
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int last_on_tick[17]; /* for detecting chords [SS] 2019-08-02 */
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int last_on_tick[17]; /* for detecting chords [SS] 2019-08-02 */
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int channel_active[17]; /* for dealing with chords [SS] 2023-08-30 */
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int channel_active[17]; /* for dealing with chords [SS] 2023-08-30 */
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int channel_used_in_track[17]; /* for dealing with quietTime [SS] 2023-09-06 */
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int histogram[256];
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int histogram[256];
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unsigned char drumpat[8000];
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unsigned char drumpat[8000];
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@@ -147,6 +148,8 @@ struct trkstat {
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int lastNoteOff[17];
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int lastNoteOff[17];
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int quietTime[17];
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int quietTime[17];
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int rhythmpatterns[17];
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int rhythmpatterns[17];
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int numberOfGaps[17];
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float pitchEntropy[17];
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} trkdata;
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} trkdata;
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/* The trkstat references the individual channels in the midi file.
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/* The trkstat references the individual channels in the midi file.
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@@ -170,6 +173,7 @@ int channel2nnotes[17]; /*maps channel to note count */
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int chnactivity[17]; /* [SS] 2018-02-02 */
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int chnactivity[17]; /* [SS] 2018-02-02 */
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int progactivity[128]; /* [SS] 2018-02-02 */
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int progactivity[128]; /* [SS] 2018-02-02 */
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int pitchclass_activity[12]; /* [SS] 2018-02-02 */
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int pitchclass_activity[12]; /* [SS] 2018-02-02 */
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int chanpitchhistogram[204]; /* [SS] 2023-09-13 */
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/* [SS] 2017-11-01 */
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/* [SS] 2017-11-01 */
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@@ -425,6 +429,7 @@ void stats_header (int format, int ntrks, int ldivision)
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trkdata.cntlparam[i] = 0; /* [SS] 2022-03-04 */
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trkdata.cntlparam[i] = 0; /* [SS] 2022-03-04 */
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trkdata.pressure[i] = 0; /* [SS] 2022-03-04 */
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trkdata.pressure[i] = 0; /* [SS] 2022-03-04 */
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trkdata.quietTime[i] = 0; /* [SS] 2022-08-22 */
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trkdata.quietTime[i] = 0; /* [SS] 2022-08-22 */
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trkdata.numberOfGaps[i] = 0; /* [SS] 2023-09-07 */
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progcolor[i] = 0;
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progcolor[i] = 0;
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channel2prog[i] = 0; /* [SS] 2023-06-25-8/
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channel2prog[i] = 0; /* [SS] 2023-06-25-8/
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channel2nnotes[i] = 0;
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channel2nnotes[i] = 0;
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@@ -522,15 +527,6 @@ if (npulses > 0)
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for (i=1;i<17;i++) printf("%5.2f ",chnactivity[i]/(double) trkdata.npulses[0]);
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for (i=1;i<17;i++) printf("%5.2f ",chnactivity[i]/(double) trkdata.npulses[0]);
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else
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else
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for (i=0;i<17;i++) printf("%5.2f ",(double) chnactivity[i]);
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for (i=0;i<17;i++) printf("%5.2f ",(double) chnactivity[i]);
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printf("\nquietTime ");
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for (i=1;i<17;i++) {
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delta = trkdata.npulses[0] - trkdata.quietTime[i];
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if (trkdata.quietTime[i] < quietLimit) delta = 0;
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delta = delta / (double) trkdata.npulses[0];
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/* printf (" %5.3f ", delta); */
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printf (" %d ", trkdata.quietTime[i]);
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}
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printf("\npitchentropy %f\n",histogram_entropy(pitchclass_activity,12));
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printf("\npitchentropy %f\n",histogram_entropy(pitchclass_activity,12));
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printf("totalrhythmpatterns =%d\n",nrpatterns);
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printf("totalrhythmpatterns =%d\n",nrpatterns);
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printf("collisions = %d\n",ncollisions);
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printf("collisions = %d\n",ncollisions);
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@@ -547,8 +543,10 @@ float histogram_entropy (int *histogram, int size)
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float e,p;
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float e,p;
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total = 0;
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total = 0;
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entropy = 0.0;
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entropy = 0.0;
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//printf("\nhistogram_entropy of:");
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for (i=0;i<size;i++) {
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for (i=0;i<size;i++) {
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total += histogram[i];
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total += histogram[i];
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//printf(" %d",histogram[i]);
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}
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}
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for (i=0;i<size;i++) {
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for (i=0;i<size;i++) {
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if (histogram[i] < 1) continue;
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if (histogram[i] < 1) continue;
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@@ -556,6 +554,7 @@ float histogram_entropy (int *histogram, int size)
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e = p*log(p);
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e = p*log(p);
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entropy = entropy + e;
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entropy = entropy + e;
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}
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}
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//printf("\n");
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return -entropy/log(2.0);
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return -entropy/log(2.0);
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}
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}
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@@ -596,10 +595,12 @@ for (i=1;i<17;i++) {
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printf("-1 0 ");
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printf("-1 0 ");
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printf("%d %d ",trkdata.cntlparam[i],trkdata.pressure[i]); /* [SS] 2022-03-04 */
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printf("%d %d ",trkdata.cntlparam[i],trkdata.pressure[i]); /* [SS] 2022-03-04 */
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printf("%d %d ",trkdata.quietTime[i],trkdata.rhythmpatterns[i]);
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printf("%d %d ",trkdata.quietTime[i],trkdata.rhythmpatterns[i]);
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if (i != 10) printf("%d %d %d %d",trkdata.notepitchmin[i], trkdata.notepitchmax[i] ,trkdata.notelengthmin[i], trkdata.notelengthmax[i]);
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if (i != 10) {printf("%d %d %d %d %d",trkdata.notepitchmin[i], trkdata.notepitchmax[i] ,trkdata.notelengthmin[i], trkdata.notelengthmax[i], trkdata.numberOfGaps[i]);
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else
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printf(" %f",trkdata.pitchEntropy[i]);
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} else
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printf("-1 0");
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printf("-1 0");
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trkdata.quietTime[i] = 0;
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trkdata.quietTime[i] = 0; /* in case channel i is used in another track */
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trkdata.numberOfGaps[i] = 0;
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printf("\n");
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printf("\n");
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channel2nnotes[i] += trkdata.notecount[i] + trkdata.chordcount[i];
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channel2nnotes[i] += trkdata.notecount[i] + trkdata.chordcount[i];
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@@ -629,12 +630,22 @@ void stats_trackstart()
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printf("trk %d \n",tracknum);
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printf("trk %d \n",tracknum);
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for (i=0;i<2048;i++) lastTick[i] = -1;
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for (i=0;i<2048;i++) lastTick[i] = -1;
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for (i=0;i<17;i++) channel_used_in_track[i] = 0; /* [SS] 2023-09-06 */
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for (i=0;i<204;i++) chanpitchhistogram[i] = 0; /* [SS] 2023-09-13 */
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}
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}
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void stats_trackend()
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void stats_trackend()
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{
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{
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trkdata.npulses[tracknum] = Mf_currtime;
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int chan;
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int i;
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float entropy;
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if (trkdata.npulses[0] < Mf_currtime) trkdata.npulses[0] = Mf_currtime;
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if (trkdata.npulses[0] < Mf_currtime) trkdata.npulses[0] = Mf_currtime;
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for (chan = 1; chan < 17; chan++) /* [SS] 2023-09-06 */
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if (channel_used_in_track[chan] > 0) trkdata.quietTime[chan] += (trkdata.npulses[0] - trkdata.lastNoteOff[chan]);
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for (chan=0;chan<16;chan++) { /* 2023-09-13 */
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if (chan == 9 || channel_used_in_track[chan+1] == 0) continue;
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trkdata.pitchEntropy[chan+1] = histogram_entropy(chanpitchhistogram +chan*12,11);
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}
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output_track_summary();
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output_track_summary();
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}
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}
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@@ -647,7 +658,10 @@ int chan, pitch, vol;
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int barnum;
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int barnum;
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int unit;
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int unit;
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int dithermargin; /* [SS] 2023-08-22 */
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int dithermargin; /* [SS] 2023-08-22 */
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int cpitch; /* [SS] 2023-09-13 */
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cpitch = pitch % 12;
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channel_used_in_track[chan+1]++; /* [SS] 2023-09-06 */
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dithermargin = unitDivision/2 - 1;
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dithermargin = unitDivision/2 - 1;
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if (vol == 0) {
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if (vol == 0) {
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/* treat as noteoff */
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/* treat as noteoff */
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@@ -660,9 +674,10 @@ int chan, pitch, vol;
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trkdata.notepitchmin[chan+1] = min(trkdata.notepitchmin[chan+1],pitch);
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trkdata.notepitchmin[chan+1] = min(trkdata.notepitchmin[chan+1],pitch);
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if (trkdata.lastNoteOff[chan+1] >= 0) {
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if (trkdata.lastNoteOff[chan+1] >= 0) {
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delta = Mf_currtime - trkdata.lastNoteOff[chan+1];
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delta = Mf_currtime - trkdata.lastNoteOff[chan+1];
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trkdata.lastNoteOff[chan+1] = -1; /* in case of chord */
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if (delta > quietLimit) {
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if (delta > quietLimit) {
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trkdata.quietTime[chan+1] += delta;
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trkdata.quietTime[chan+1] += delta;
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trkdata.numberOfGaps[chan+1]++;
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trkdata.lastNoteOff[chan+1] = -1; /* in case of chord */
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}
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}
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}
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}
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@@ -686,6 +701,7 @@ int chan, pitch, vol;
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unit = ((Mf_currtime+dithermargin) % divisionsPerBar)/unitDivision;
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unit = ((Mf_currtime+dithermargin) % divisionsPerBar)/unitDivision;
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//printf("unit = %d pattern = %d \n",unit,barChn[chan].rhythmPattern);
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//printf("unit = %d pattern = %d \n",unit,barChn[chan].rhythmPattern);
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barChn[chan].rhythmPattern = barChn[chan].rhythmPattern |= (1UL << unit);
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barChn[chan].rhythmPattern = barChn[chan].rhythmPattern |= (1UL << unit);
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chanpitchhistogram[chan*12+cpitch]++; /* [SS] 2023-09-13 */
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}
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}
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@@ -715,7 +731,7 @@ void stats_noteoff(int chan,int pitch,int vol)
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trkdata.notelength[chan+1] += length;
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trkdata.notelength[chan+1] += length;
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trkdata.notelengthmax[chan+1] = max(trkdata.notelengthmax[chan+1],length);
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trkdata.notelengthmax[chan+1] = max(trkdata.notelengthmax[chan+1],length);
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trkdata.notelengthmin[chan+1] = min(trkdata.notelengthmin[chan+1],length);
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trkdata.notelengthmin[chan+1] = min(trkdata.notelengthmin[chan+1],length);
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if (length < 3) printf("chan = %d lasttick = %d currtime = %ld\n",chan,lastTick[chan*128+pitch],Mf_currtime);
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//if (length < 3) printf("chan = %d lasttick = %d currtime = %ld\n",chan,lastTick[chan*128+pitch],Mf_currtime);
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trkdata.lastNoteOff[chan+1] = Mf_currtime; /* [SS] 2022.08.22 */
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trkdata.lastNoteOff[chan+1] = Mf_currtime; /* [SS] 2022.08.22 */
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chnactivity[chan+1] += length;
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chnactivity[chan+1] += length;
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if (chan == 9) return; /* drum channel */
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if (chan == 9) return; /* drum channel */
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