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* Created by Greg Ward on 2/2/2023. |
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*/ |
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#include <unistd.h> |
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#include <ctype.h> |
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#include "RtraceSimulManager.h" |
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#include "source.h" |
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|
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extern int castonly; // doing ray-casting only? |
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|
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// Load octree and prepare renderer |
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bool |
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RadSimulManager::LoadOctree(const char *octn) |
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if (octname) { // already running? |
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if (octn && !strcmp(octn, octname)) |
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return true; |
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< |
Cleanup(false); |
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Cleanup(); |
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} |
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if (!octn) |
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if (!octn) // don't support stdin octree |
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return false; |
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|
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NewHeader(octn); // get octree header |
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ray_init((char *)octn); |
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return true; |
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} |
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|
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// How many processors are there? |
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// callback function for loading header |
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static int |
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add2header(char *str, void *p) |
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{ |
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if (isheadid(str)) |
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return 0; |
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if (isformat(str)) |
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return 0; |
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|
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return (*(RadSimulManager *)p).AddHeader(str); |
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} |
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|
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// Prepare header from previous input (or clear) |
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// Normally called during octree load |
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bool |
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RadSimulManager::NewHeader(const char *inspec) |
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{ |
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if (hlen) { |
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free(header); header = NULL; hlen = 0; |
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} |
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if (!inspec || !*inspec) |
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return false; |
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if (inspec[0] == '!') // save command as header? |
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return AddHeader(inspec+1); |
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// attempt to read from file |
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FILE *fp = fopen(inspec, "rb"); |
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if (!fp) return false; |
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bool ok = (getheader(fp, add2header, this) >= 0); |
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fclose(fp); |
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return ok; |
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} |
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|
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// Add a string to header (adds newline if missing) |
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bool |
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RadSimulManager::AddHeader(const char *str) |
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{ |
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if (!str) return false; |
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int len = strlen(str); |
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while (len && (str[len-1] == '\n') | (str[len-1] == '\r')) |
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--len; // don't copy EOL(s) |
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if (!len) |
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return false; |
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if (hlen) |
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header = (char *)realloc(header, hlen+len+2); |
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else |
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header = (char *)malloc(len+2); |
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if (!header) { |
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hlen = 0; // XXX should report? |
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return false; |
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} |
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memcpy(header+hlen, str, len); |
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hlen += len; |
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header[hlen++] = '\n'; // add single EOL |
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header[hlen] = '\0'; |
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return true; |
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} |
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|
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// helper function to check for white-space and quotations |
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static int |
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check_special(const char *s) |
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{ |
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int space_found = 0; |
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|
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while (*s) { |
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if ((*s == '"') | (*s == '\'')) |
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return *s; // quotes have priority |
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if (isspace(*s)) |
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space_found = *s; |
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s++; |
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} |
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return space_found; |
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} |
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|
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// Append program line to header |
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bool |
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RadSimulManager::AddHeader(int ac, char *av[]) |
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{ |
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if ((ac <= 0) | !av) return false; |
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int len = 0; |
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int n; |
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for (n = 0; n < ac; n++) { |
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if (!av[n]) return false; |
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len += strlen(av[n]) + 3; |
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} |
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if (hlen) // add to header |
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header = (char *)realloc(header, hlen+len+1); |
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else |
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header = (char *)malloc(len+1); |
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|
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for (n = 0; n < ac; n++) { |
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int c = check_special(av[n]); |
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len = strlen(av[n]); |
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if (c | !len) { // need to quote argument? |
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if ((c == '"') | (c == '\n')) c = '\''; |
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else c = '"'; |
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header[hlen++] = c; |
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strcpy(header+hlen, av[n]); |
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hlen += len; |
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header[hlen++] = c; |
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} else { |
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strcpy(header+hlen, av[n]); |
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hlen += len; |
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} |
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header[hlen++] = ' '; |
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} |
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header[hlen-1] = '\n'; // terminate line |
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header[hlen] = '\0'; |
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return true; |
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} |
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|
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// Look for specific header keyword, return value |
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const char * |
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RadSimulManager::GetHeadStr(const char *key, bool inOK) const |
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{ |
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if (!key | !hlen || strchr(key, '\n')) |
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return NULL; |
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if (inOK) // skip leading spaces? |
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while (isspace(*key)) key++; |
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|
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const int klen = strlen(key); |
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if (!klen) |
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return NULL; |
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const char * cp = header; |
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while (*cp) { |
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if (inOK) { // skip leading spaces? |
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while (isspace(*cp) && *cp++ != '\n') |
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; |
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if (cp[-1] == '\n') |
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continue; |
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} |
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if (!strncmp(cp, key, klen)) |
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return cp+klen; // found it! |
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|
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while (*cp && *cp++ != '\n') |
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; |
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} |
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return NULL; |
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} |
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|
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// How many processors are available? |
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int |
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RadSimulManager::GetNCores() |
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{ |
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return 1; // XXX temporary |
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return sysconf(_SC_NPROCESSORS_ONLN); |
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} |
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|
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// Set number of computation threads (0 => #cores) |
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int |
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RadSimulManager::SetThreadCount(int nt) |
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{ |
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return nThreads = 1; // XXX temporary |
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if (!Ready()) |
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return 0; |
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|
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if (nt <= 0) nt = castonly ? 1 : GetNCores(); |
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|
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if (nt == 1) |
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ray_pclose(ray_pnprocs); |
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else if (nt < ray_pnprocs) |
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ray_pclose(ray_pnprocs - nt); |
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else if (nt > ray_pnprocs) |
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ray_popen(nt - ray_pnprocs); |
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|
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return NThreads(); |
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} |
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|
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// Assign ray to subthread (fails if NThreads()<2) |
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bool |
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RadSimulManager::SplitRay(RAY *r) |
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{ |
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if (!ray_pnprocs || ThreadsAvailable() < 1) |
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return false; |
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|
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return (ray_psend(r) > 0); |
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} |
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|
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// Process a ray (in subthread), optional result |
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bool |
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RadSimulManager::ProcessRay(RAY *r) |
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{ |
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if (!Ready()) return false; |
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|
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if (!ray_pnprocs) { // single-threaded mode? |
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samplendx++; |
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rayvalue(r); |
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return true; |
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} |
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int rv = ray_pqueue(r); |
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if (rv < 0) { |
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error(WARNING, "ray tracing process(es) died"); |
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return false; |
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} |
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return (rv > 0); |
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} |
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|
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// Wait for next result (or fail) |
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bool |
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RadSimulManager::WaitResult(RAY *r) |
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{ |
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if (!ray_pnprocs) |
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return false; |
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|
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return (ray_presult(r, 0) > 0); |
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} |
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|
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// Close octree, free data, return status |
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int |
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RadSimulManager::Cleanup(bool everything) |
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{ |
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< |
ray_done(everything); |
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> |
NewHeader(); |
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> |
if (!ray_pnprocs) |
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ray_done(everything); |
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else |
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ray_pdone(everything); |
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return 0; |
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} |
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|
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int |
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RadSimulManager::ThreadsAvailable() const |
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{ |
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< |
return 1; // XXX temporary |
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if (!ray_pnprocs) return 1; |
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> |
|
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> |
return ray_pnidle; |
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} |
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|
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// Global pointer to simulation manager for trace call-back (only one) |
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static const RtraceSimulManager * ourRTsimMan = NULL; |
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|
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< |
void // static call-back |
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> |
// Call-back for trace output |
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> |
void |
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RtraceSimulManager::RTracer(RAY *r) |
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{ |
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(*ourRTsimMan->traceCall)(r, ourRTsimMan->tcData); |
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} |
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|
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// Call-back for FIFO output |
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int |
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RtraceSimulManager::Rfifout(RAY *r) |
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{ |
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return (*ourRTsimMan->cookedCall)(r, ourRTsimMan->ccData); |
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} |
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|
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// Check for changes to render flags & adjust accordingly |
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bool |
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RtraceSimulManager::UpdateMode() |
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int misMatch = rtFlags ^ curFlags; |
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// updates based on toggled flags |
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if (misMatch & RTtraceSources) { |
291 |
+ |
int sn = nsources; |
292 |
|
if (rtFlags & RTtraceSources) { |
293 |
< |
for (int sn = 0; sn < nsources; sn++) |
293 |
> |
srcFollowed.NewBitMap(nsources); |
294 |
> |
while (sn--) { |
295 |
> |
if (source[sn].sflags & SFOLLOW) |
296 |
> |
continue; |
297 |
|
source[sn].sflags |= SFOLLOW; |
298 |
< |
} else // cannot undo this... |
299 |
< |
rtFlags |= RTtraceSources; |
298 |
> |
srcFollowed.Set(sn); |
299 |
> |
} |
300 |
> |
} else { |
301 |
> |
while (sn--) |
302 |
> |
if (srcFollowed.Check(sn)) |
303 |
> |
source[sn].sflags &= ~SFOLLOW; |
304 |
> |
srcFollowed.NewBitMap(0); |
305 |
> |
} |
306 |
|
} |
307 |
< |
if (misMatch & RTdoFIFO) { |
308 |
< |
if (!FlushQueue()) |
94 |
< |
return false; |
95 |
< |
} |
307 |
> |
if (misMatch & RTdoFIFO && FlushQueue() < 0) |
308 |
> |
return false; |
309 |
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curFlags = rtFlags; |
310 |
< |
// update trace callback |
311 |
< |
if (traceCall) { |
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< |
if (ourRTsimMan && ourRTsimMan != this) |
100 |
< |
error(WARNING, "Competing top-level simulation managers?"); |
101 |
< |
ourRTsimMan = this; |
310 |
> |
// update callbacks |
311 |
> |
if (traceCall) |
312 |
|
trace = RTracer; |
313 |
< |
} else if (ourRTsimMan == this) { |
313 |
> |
else if (trace == RTracer) |
314 |
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trace = NULL; |
315 |
+ |
if (rtFlags & RTdoFIFO) |
316 |
+ |
ray_fifo_out = Rfifout; |
317 |
+ |
else if (ray_fifo_out == Rfifout) |
318 |
+ |
ray_fifo_out = NULL; |
319 |
+ |
if ((trace != RTracer) & (ray_fifo_out != Rfifout)) { |
320 |
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ourRTsimMan = NULL; |
321 |
+ |
} else if (ourRTsimMan != this) { |
322 |
+ |
if (ourRTsimMan) |
323 |
+ |
error(WARNING, "Competing top-level simulation managers?"); |
324 |
+ |
ourRTsimMan = this; |
325 |
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} |
326 |
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return true; |
327 |
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} |
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|
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extern "C" int m_normal(OBJREC *m, RAY *r); |
330 |
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|
331 |
< |
/* compute irradiance rather than radiance */ |
331 |
> |
// compute irradiance rather than radiance |
332 |
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static void |
333 |
|
rayirrad(RAY *r) |
334 |
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{ |
345 |
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r->revf = rayirrad; |
346 |
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} |
347 |
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|
348 |
< |
/* compute first ray intersection only */ |
348 |
> |
// compute first ray intersection only |
349 |
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static void |
350 |
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raycast(RAY *r) |
351 |
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{ |
369 |
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return -1; |
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|
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if (castonly && !cookedCall) |
372 |
< |
error(CONSISTENCY, "EnqueueBundle() called in castonly mode without cookedCall"); |
372 |
> |
error(INTERNAL, "EnqueueBundle() called in castonly mode without cookedCall"); |
373 |
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|
374 |
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if (!UpdateMode()) // update rendering mode if requested |
375 |
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return -1; |
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|
377 |
+ |
if (rID0 && curFlags&RTdoFIFO) |
378 |
+ |
error(INTERNAL, "Ray number assignment unsupported with FIFO"); |
379 |
+ |
|
380 |
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while (n-- > 0) { // queue each ray |
159 |
– |
double d; |
381 |
|
VCOPY(res.rorg, orig_direc[0]); |
382 |
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VCOPY(res.rdir, orig_direc[1]); |
383 |
+ |
res.rmax = .0; |
384 |
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orig_direc += 2; |
385 |
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rayorigin(&res, PRIMARY, NULL, NULL); |
386 |
< |
if (rID0) res.rno = rID0++; |
165 |
< |
else res.rno = ++lastRayID; |
386 |
> |
res.rno = rID0 ? (lastRayID = rID0++) : ++lastRayID; |
387 |
|
if (curFlags & RTimmIrrad) |
388 |
|
res.revf = rayirrad; |
389 |
|
else if (castonly) |
390 |
|
res.revf = raycast; |
391 |
< |
d = normalize(res.rdir); |
392 |
< |
if (d > 0) { // direction vector is valid? |
391 |
> |
double d = normalize(res.rdir); |
392 |
> |
bool sendRes = (cookedCall != NULL); |
393 |
> |
if (d > .0) { // direction vector is valid? |
394 |
|
if (curFlags & RTlimDist) |
395 |
|
res.rmax = d; |
396 |
< |
samplendx++; |
397 |
< |
rayvalue(&res); // XXX single-threaded for now |
396 |
> |
if (((curFlags&RTdoFIFO) != 0) & (ray_pnprocs > 0)) { |
397 |
> |
if (ray_fifo_in(&res) < 0) |
398 |
> |
return -1; |
399 |
> |
sendRes = false; |
400 |
> |
} else |
401 |
> |
sendRes &= ProcessRay(&res); |
402 |
|
} else if (ThreadsAvailable() < NThreads() && |
403 |
< |
!FlushQueue()) |
403 |
> |
FlushQueue() < 0) |
404 |
|
return -1; |
405 |
< |
if (cookedCall) |
406 |
< |
(*cookedCall)(&res, ccData); |
405 |
> |
// may be dummy ray |
406 |
> |
if (sendRes && (*cookedCall)(&res, ccData) < 0) |
407 |
> |
return -1; |
408 |
|
nqueued++; |
409 |
|
} |
410 |
|
return nqueued; |
411 |
|
} |
412 |
|
|
413 |
|
// Finish pending rays and complete callbacks |
414 |
< |
bool |
414 |
> |
int |
415 |
|
RtraceSimulManager::FlushQueue() |
416 |
|
{ |
417 |
< |
return true; // XXX no-op for now |
417 |
> |
if (curFlags & RTdoFIFO) { |
418 |
> |
if (ray_pnprocs) |
419 |
> |
return ray_fifo_flush(); |
420 |
> |
return 0; |
421 |
> |
} |
422 |
> |
int nsent = 0; |
423 |
> |
RAY res; |
424 |
> |
|
425 |
> |
while (WaitResult(&res)) { |
426 |
> |
if (!cookedCall) continue; |
427 |
> |
int rv = (*cookedCall)(&res, ccData); |
428 |
> |
if (rv < 0) return -1; |
429 |
> |
nsent += rv; |
430 |
> |
} |
431 |
> |
return nsent; |
432 |
|
} |