| 1 | greg | 2.1 | #ifndef lint | 
| 2 | greg | 2.3 | static const char RCSid[] = "$Id: RtraceSimulManager.cpp,v 2.2 2023/07/26 23:27:44 greg Exp $"; | 
| 3 | greg | 2.1 | #endif | 
| 4 |  |  | /* | 
| 5 |  |  | *  RtraceSimulManager.cpp | 
| 6 |  |  | * | 
| 7 |  |  | *      Rtrace simulation manager class implementation | 
| 8 |  |  | * | 
| 9 |  |  | *  Created by Greg Ward on 2/2/2023. | 
| 10 |  |  | */ | 
| 11 |  |  |  | 
| 12 |  |  | #include "RtraceSimulManager.h" | 
| 13 |  |  | #include "source.h" | 
| 14 |  |  |  | 
| 15 |  |  | extern int      castonly;       // doing ray-casting only? | 
| 16 |  |  |  | 
| 17 |  |  | // Load octree and prepare renderer | 
| 18 |  |  | bool | 
| 19 |  |  | RadSimulManager::LoadOctree(const char *octn) | 
| 20 |  |  | { | 
| 21 |  |  | if (octname) {          // already running? | 
| 22 |  |  | if (octn && !strcmp(octn, octname)) | 
| 23 |  |  | return true; | 
| 24 | greg | 2.3 | Cleanup(false); | 
| 25 | greg | 2.1 | } | 
| 26 |  |  | if (!octn) | 
| 27 |  |  | return false; | 
| 28 |  |  |  | 
| 29 |  |  | ray_init((char *)octn); | 
| 30 |  |  | return true; | 
| 31 |  |  | } | 
| 32 |  |  |  | 
| 33 | greg | 2.2 | // How many processors are there? | 
| 34 |  |  | int | 
| 35 |  |  | RadSimulManager::GetNCores() | 
| 36 |  |  | { | 
| 37 |  |  | return 1;               // XXX temporary | 
| 38 |  |  | } | 
| 39 |  |  |  | 
| 40 | greg | 2.1 | // Set number of computation threads (0 => #cores) | 
| 41 |  |  | int | 
| 42 |  |  | RadSimulManager::SetThreadCount(int nt) | 
| 43 |  |  | { | 
| 44 |  |  | return nThreads = 1;    // XXX temporary | 
| 45 |  |  | } | 
| 46 |  |  |  | 
| 47 |  |  | // Close octree, free data, return status | 
| 48 |  |  | int | 
| 49 | greg | 2.3 | RadSimulManager::Cleanup(bool everything) | 
| 50 | greg | 2.1 | { | 
| 51 | greg | 2.3 | ray_done(everything); | 
| 52 | greg | 2.1 | return 0; | 
| 53 |  |  | } | 
| 54 |  |  |  | 
| 55 |  |  | // How many threads are currently unoccupied? | 
| 56 |  |  | int | 
| 57 |  |  | RadSimulManager::ThreadsAvailable() const | 
| 58 |  |  | { | 
| 59 |  |  | return 1;       // XXX temporary | 
| 60 |  |  | } | 
| 61 |  |  |  | 
| 62 |  |  | // Global pointer to simulation manager for trace call-back (only one) | 
| 63 |  |  | static const RtraceSimulManager *       ourRTsimMan = NULL; | 
| 64 |  |  |  | 
| 65 |  |  | void    // static call-back | 
| 66 |  |  | RtraceSimulManager::RTracer(RAY *r) | 
| 67 |  |  | { | 
| 68 |  |  | (*ourRTsimMan->traceCall)(r, ourRTsimMan->tcData); | 
| 69 |  |  | } | 
| 70 |  |  |  | 
| 71 |  |  | // Check for changes to render flags & adjust accordingly | 
| 72 |  |  | bool | 
| 73 |  |  | RtraceSimulManager::UpdateMode() | 
| 74 |  |  | { | 
| 75 |  |  | rtFlags &= RTmask; | 
| 76 |  |  | if (!cookedCall) | 
| 77 |  |  | rtFlags &= ~RTdoFIFO; | 
| 78 |  |  | if (!traceCall) | 
| 79 |  |  | rtFlags &= ~RTtraceSources; | 
| 80 |  |  | if (rtFlags & RTimmIrrad) | 
| 81 |  |  | rtFlags &= ~RTlimDist; | 
| 82 |  |  |  | 
| 83 |  |  | int     misMatch = rtFlags ^ curFlags; | 
| 84 |  |  | // updates based on toggled flags | 
| 85 |  |  | if (misMatch & RTtraceSources) { | 
| 86 |  |  | if (rtFlags & RTtraceSources) { | 
| 87 |  |  | for (int sn = 0; sn < nsources; sn++) | 
| 88 |  |  | source[sn].sflags |= SFOLLOW; | 
| 89 |  |  | } else          // cannot undo this... | 
| 90 |  |  | rtFlags |= RTtraceSources; | 
| 91 |  |  | } | 
| 92 |  |  | if (misMatch & RTdoFIFO) { | 
| 93 |  |  | if (!FlushQueue()) | 
| 94 |  |  | return false; | 
| 95 |  |  | } | 
| 96 |  |  | curFlags = rtFlags; | 
| 97 |  |  | // update trace callback | 
| 98 |  |  | if (traceCall) { | 
| 99 |  |  | if (ourRTsimMan && ourRTsimMan != this) | 
| 100 |  |  | error(WARNING, "Competing top-level simulation managers?"); | 
| 101 |  |  | ourRTsimMan = this; | 
| 102 |  |  | trace = RTracer; | 
| 103 |  |  | } else if (ourRTsimMan == this) { | 
| 104 |  |  | trace = NULL; | 
| 105 |  |  | ourRTsimMan = NULL; | 
| 106 |  |  | } | 
| 107 |  |  | return true; | 
| 108 |  |  | } | 
| 109 |  |  |  | 
| 110 |  |  | extern "C" int  m_normal(OBJREC *m, RAY *r); | 
| 111 |  |  |  | 
| 112 |  |  | /* compute irradiance rather than radiance */ | 
| 113 |  |  | static void | 
| 114 |  |  | rayirrad(RAY *r) | 
| 115 |  |  | { | 
| 116 |  |  | /* pretend we hit surface */ | 
| 117 |  |  | r->rxt = r->rot = 1e-5; | 
| 118 |  |  | VSUM(r->rop, r->rorg, r->rdir, r->rot); | 
| 119 |  |  | r->ron[0] = -r->rdir[0]; | 
| 120 |  |  | r->ron[1] = -r->rdir[1]; | 
| 121 |  |  | r->ron[2] = -r->rdir[2]; | 
| 122 |  |  | r->rod = 1.0; | 
| 123 |  |  | /* compute result */ | 
| 124 |  |  | r->revf = raytrace; | 
| 125 |  |  | m_normal(&Lamb, r); | 
| 126 |  |  | r->revf = rayirrad; | 
| 127 |  |  | } | 
| 128 |  |  |  | 
| 129 |  |  | /* compute first ray intersection only */ | 
| 130 |  |  | static void | 
| 131 |  |  | raycast(RAY *r) | 
| 132 |  |  | { | 
| 133 |  |  | if (!localhit(r, &thescene)) { | 
| 134 |  |  | if (r->ro == &Aftplane) {       /* clipped */ | 
| 135 |  |  | r->ro = NULL; | 
| 136 |  |  | r->rot = FHUGE; | 
| 137 |  |  | } else | 
| 138 |  |  | sourcehit(r); | 
| 139 |  |  | } | 
| 140 |  |  | } | 
| 141 |  |  |  | 
| 142 |  |  | // Add ray bundle to queue w/ optional 1st ray ID | 
| 143 |  |  | int | 
| 144 |  |  | RtraceSimulManager::EnqueueBundle(const FVECT orig_direc[], int n, RNUMBER rID0) | 
| 145 |  |  | { | 
| 146 |  |  | int     nqueued = 0; | 
| 147 |  |  | RAY     res; | 
| 148 |  |  |  | 
| 149 |  |  | if (!Ready()) | 
| 150 |  |  | return -1; | 
| 151 |  |  |  | 
| 152 |  |  | if (castonly && !cookedCall) | 
| 153 |  |  | error(CONSISTENCY, "EnqueueBundle() called in castonly mode without cookedCall"); | 
| 154 |  |  |  | 
| 155 |  |  | if (!UpdateMode())              // update rendering mode if requested | 
| 156 |  |  | return -1; | 
| 157 |  |  |  | 
| 158 |  |  | while (n-- > 0) {               // queue each ray | 
| 159 |  |  | double  d; | 
| 160 |  |  | VCOPY(res.rorg, orig_direc[0]); | 
| 161 |  |  | VCOPY(res.rdir, orig_direc[1]); | 
| 162 |  |  | orig_direc += 2; | 
| 163 |  |  | rayorigin(&res, PRIMARY, NULL, NULL); | 
| 164 |  |  | if (rID0) res.rno = rID0++; | 
| 165 |  |  | else res.rno = ++lastRayID; | 
| 166 |  |  | if (curFlags & RTimmIrrad) | 
| 167 |  |  | res.revf = rayirrad; | 
| 168 |  |  | else if (castonly) | 
| 169 |  |  | res.revf = raycast; | 
| 170 |  |  | d = normalize(res.rdir); | 
| 171 |  |  | if (d > 0) {            // direction vector is valid? | 
| 172 |  |  | if (curFlags & RTlimDist) | 
| 173 |  |  | res.rmax = d; | 
| 174 |  |  | samplendx++; | 
| 175 |  |  | rayvalue(&res);         // XXX single-threaded for now | 
| 176 |  |  | } else if (ThreadsAvailable() < NThreads() && | 
| 177 |  |  | !FlushQueue()) | 
| 178 |  |  | return -1; | 
| 179 |  |  | if (cookedCall) | 
| 180 |  |  | (*cookedCall)(&res, ccData); | 
| 181 | greg | 2.3 | nqueued++; | 
| 182 | greg | 2.1 | } | 
| 183 |  |  | return nqueued; | 
| 184 |  |  | } | 
| 185 |  |  |  | 
| 186 |  |  | // Finish pending rays and complete callbacks | 
| 187 |  |  | bool | 
| 188 |  |  | RtraceSimulManager::FlushQueue() | 
| 189 |  |  | { | 
| 190 |  |  | return true;            // XXX no-op for now | 
| 191 |  |  | } |