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@ -1975,13 +1975,15 @@ void write_wave(int i, short int *buffer)
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else
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{
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if ((ctr - flip_ctr) < smaller) {
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// buffer[ctr++] = (short int)(amplitude * 0.4 * phase * sin((float)(2*M_PI*i*freq_Hz/S_RATE))); buffer[ctr++] = (short int)(amplitude * 0.4 * phase * sin((float)(2*M_PI*i*freq_Hz/S_RATE)));
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buffer[ctr++] = (short int)(phase * sin_map[ctr % sin_samples] / 2);
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// buffer[ctr++] = (short int)(amplitude * 0.4 * phase * sin((float)(2*M_PI*i*freq_Hz/S_RATE)));
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buffer[ctr++] = (short int)(amplitude * 0.4 * phase * sin((float)(2*M_PI*i*freq_Hz/S_RATE)));
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// buffer[ctr++] = (short int)(phase * sin_map[ctr % sin_samples] / 2);
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// if (ctr < 1000) printf("*");
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}
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else
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// buffer[ctr++] = (short int)(amplitude * 0.4 * phase * sin((float)(2*M_PI*i*freq_Hz/S_RATE))); buffer[ctr++] = (short int)(amplitude * phase * sin((float)(2*M_PI*i*freq_Hz/S_RATE)));
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buffer[ctr++] = (short int)(phase * sin_map[ctr % sin_samples]);
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// buffer[ctr++] = (short int)(amplitude * 0.4 * phase * sin((float)(2*M_PI*i*freq_Hz/S_RATE)));
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buffer[ctr++] = (short int)(amplitude * phase * sin((float)(2*M_PI*i*freq_Hz/S_RATE)));
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// buffer[ctr++] = (short int)(phase * sin_map[ctr % sin_samples]);
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}
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// if (ctr < 1000) printf("%d %d %d \n", ctr, i, buffer[ctr - 1]);
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