added hal cham. svf high pass test
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@ -288,3 +288,88 @@ fn check_node_sfilter_halsvf_lowpass() {
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(4000, 0), (12000, 0),
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(4000, 0), (12000, 0),
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]);
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]);
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}
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}
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#[test]
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fn check_node_sfilter_halsvf_highpass() {
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let (mut matrix, mut node_exec) = setup_sfilter_matrix();
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// High Pass Hal Chamberlin SVF @ 1000Hz RES=1.0
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 1000.0, 1.0);
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assert_eq!(
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avg_fft_freqs(10.0, &[
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500, 700, 900, 1000, 1500, 2000, 3000, 4000, 12000
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], &fft[..]), vec![
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(0, 0), (500, 0), (700, 30), (900, 220), (1000, 80),
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(1500, 30), (2000, 20), (3000, 20), (4000, 10)
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]);
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// High Pass Hal Chamberlin SVF @ 1000Hz RES=0.5
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 1000.0, 0.5);
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assert_eq!(
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avg_fft_freqs(10.0, &[
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500, 700, 900, 1000, 1500, 2000, 3000, 4000, 12000
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], &fft[..]), vec![
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(0, 0), (500, 0), (700, 20), (900, 30), (1000, 30),
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(1500, 20), (2000, 20), (3000, 20), (4000, 20)
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]);
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// High Pass Hal Chamberlin SVF @ 1000Hz RES=0.0
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 1000.0, 0.0);
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assert_eq!(
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avg_fft_freqs(10.0, &[
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500, 700, 900, 1000, 1500, 2000, 3000, 4000, 12000
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], &fft[..]), vec![
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(0, 0), (500, 0), (700, 10), (900, 10), (1000, 20), (1500, 20),
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(2000, 20), (3000, 20), (4000, 10)
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]);
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// High Pass Hal Chamberlin SVF @ 4000Hz RES=1.0
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 4000.0, 1.0);
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assert_eq!(
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avg_fft_freqs(4.0, &[
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100, 500, 1000, 2000, 3500, 4000, 5000, 6000, 8000, 12000
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], &fft[..]), vec![
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(0, 0), (100, 0), (500, 0), (1000, 0), (2000, 20),
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(3500, 320), (4000, 200), (5000, 40), (6000, 28), (8000, 20)
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]);
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// High Pass Hal Chamberlin SVF @ 4000Hz RES=0.0
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 4000.0, 0.0);
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assert_eq!(
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avg_fft_freqs(4.0, &[
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100, 500, 1000, 2000, 3500, 4000, 5000, 6000, 8000, 12000
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], &fft[..]), vec![
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(0, 0), (100, 0), (500, 0), (1000, 0), (2000, 8),
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(3500, 12), (4000, 16), (5000, 16), (6000, 20), (8000, 20)
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]);
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// High Pass Hal Chamberlin SVF @ 22050Hz RES=0.0
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 22050.0, 0.0);
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assert_eq!(
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avg_fft_freqs(8.0, &[100, 1000, 4000, 12000, 16000, 20000, 22050], &fft[..]), vec![
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(0, 0), (100, 0), (1000, 8), (4000, 24),
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(12000, 32), (16000, 40), (20000, 40)
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]);
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// High Pass Hal Chamberlin SVF @ 22050Hz RES=1.0
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 22050.0, 1.0);
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assert_eq!(
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avg_fft_freqs(8.0, &[100, 1000, 4000, 12000, 16000, 20000, 22050], &fft[..]), vec![
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(0, 0), (100, 0), (1000, 0), (4000, 8), (12000, 144),
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(16000, 192), (20000, 48)
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]);
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// High Pass Hal Chamberlin SVF @ 0Hz RES=0.0
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 0.0, 0.0);
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assert_eq!(
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avg_fft_freqs(4.0, &[10, 100, 1000, 4000, 12000, 22050], &fft[..]), vec![
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(0, 52), (10, 12), (100, 20), (1000, 16), (4000, 16), (12000, 16)
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]);
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// High Pass Hal Chamberlin SVF @ 0Hz RES=1.0
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let fft = fft_with_freq_res_type(&mut matrix, &mut node_exec, 5, 0.0, 1.0);
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assert_eq!(
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avg_fft_freqs(4.0, &[10, 100, 1000, 4000, 12000, 22050], &fft[..]), vec![
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(0, 112), (10, 36), (100, 16), (1000, 20), (4000, 16), (12000, 20)
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]);
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}
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