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1 /**
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2 * Copyright (c) 2014, 2015, Enzien Audio Ltd.
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3 *
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4 * Permission to use, copy, modify, and/or distribute this software for any
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5 * purpose with or without fee is hereby granted, provided that the above
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6 * copyright notice and this permission notice appear in all copies.
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7 *
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8 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH
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9 * REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
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10 * AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT,
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11 * INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
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12 * LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
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13 * OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
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14 * PERFORMANCE OF THIS SOFTWARE.
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15 */
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16
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17 #include "SignalVar.h"
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18
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19 // __var~f
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20
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21 static void sVarf_update(SignalVarf *o, float k, float step, bool reverse) {
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22 #if HV_SIMD_AVX
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23 if (reverse) o->v = _mm256_setr_ps(k+7.0f*step, k+6.0f*step, k+5.0f*step, k+4.0f*step, k+3.0f*step, k+2.0f*step, k+step, k);
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24 else o->v = _mm256_set_ps(k+7.0f*step, k+6.0f*step, k+5.0f*step, k+4.0f*step, k+3.0f*step, k+2.0f*step, k+step, k);
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25 #elif HV_SIMD_SSE
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26 if (reverse) o->v = _mm_setr_ps(k+3.0f*step, k+2.0f*step, k+step, k);
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27 else o->v = _mm_set_ps(k+3.0f*step, k+2.0f*step, k+step, k);
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28 #elif HV_SIMD_NEON
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29 if (reverse) o->v = (float32x4_t) {3.0f*step+k, 2.0f*step+k, step+k, k};
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30 else o->v = (float32x4_t) {k, step+k, 2.0f*step+k, 3.0f*step+k};
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31 #else // HV_SIMD_NONE
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32 o->v = k;
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33 #endif
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34 }
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35
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36 hv_size_t sVarf_init(SignalVarf *o, float k, float step, bool reverse) {
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37 sVarf_update(o, k, step, reverse);
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38 return 0;
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39 }
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40
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41 void sVarf_onMessage(HvBase *_c, SignalVarf *o, const HvMessage *m) {
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42 if (msg_isFloat(m,0)) {
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43 sVarf_update(o, msg_getFloat(m,0), msg_isFloat(m,1) ? msg_getFloat(m,1) : 0.0f, msg_getNumElements(m) == 3);
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44 }
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45 }
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46
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47
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48
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49 // __var~i
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50
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51 static void sVari_update(SignalVari *o, int k, int step, bool reverse) {
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52 #if HV_SIMD_AVX
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53 if (reverse) o->v = _mm256_setr_epi32(k+7*step, k+6*step, k+5*step, k+4*step, k+3*step, k+2*step, k+step, k);
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54 else o->v = _mm256_set_epi32(k+7*step, k+6*step, k+5*step, k+4*step, k+3*step, k+2*step, k+step, k);
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55 #elif HV_SIMD_SSE
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56 if (reverse) o->v = _mm_setr_epi32(k+3*step, k+2*step, k+step, k);
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57 else o->v = _mm_set_epi32(k+3*step, k+2*step, k+step, k);
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58 #elif HV_SIMD_NEON
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59 if (reverse) o->v = (int32x4_t) {3*step+k, 2*step+k, step+k, k};
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60 else o->v = (int32x4_t) {k, step+k, 2*step+k, 3*step+k};
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61 #else // HV_SIMD_NEON
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62 o->v = k;
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63 #endif
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64 }
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65
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66 hv_size_t sVari_init(SignalVari *o, int k, int step, bool reverse) {
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67 sVari_update(o, k, step, reverse);
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68 return 0;
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69 }
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70
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71 void sVari_onMessage(HvBase *_c, SignalVari *o, const HvMessage *m) {
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72 if (msg_isFloat(m,0)) {
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73 sVari_update(o, (int) msg_getFloat(m,0), msg_isFloat(m,1) ? (int) msg_getFloat(m,1) : 0, msg_getNumElements(m) == 3);
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74 }
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75 }
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