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							363 lines
						
					
					
						
							12 KiB
						
					
					
				| #include "thneed.h"
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| #include <cassert>
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| #include <sys/mman.h>
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| #include <dlfcn.h>
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| #include <map>
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| #include <string>
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| #include <errno.h>
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| 
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| Thneed *g_thneed = NULL;
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| int g_fd = -1;
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| std::map<std::pair<cl_kernel, int>, std::string> g_args;
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| 
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| static inline uint64_t nanos_since_boot() {
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|   struct timespec t;
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|   clock_gettime(CLOCK_BOOTTIME, &t);
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|   return t.tv_sec * 1000000000ULL + t.tv_nsec; }
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| 
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| void hexdump(uint32_t *d, int len) {
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|   assert((len%4) == 0);
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|   printf("  dumping %p len 0x%x\n", d, len);
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|   for (int i = 0; i < len/4; i++) {
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|     if (i != 0 && (i%0x10) == 0) printf("\n");
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|     printf("%8x ", d[i]);
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|   }
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|   printf("\n");
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| }
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| 
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| extern "C" {
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| 
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| int (*my_ioctl)(int filedes, unsigned long request, void *argp) = NULL;
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| #undef ioctl
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| int ioctl(int filedes, unsigned long request, void *argp) {
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|   if (my_ioctl == NULL) my_ioctl = reinterpret_cast<decltype(my_ioctl)>(dlsym(RTLD_NEXT, "ioctl"));
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|   Thneed *thneed = g_thneed;
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| 
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|   // save the fd
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|   if (request == IOCTL_KGSL_GPUOBJ_ALLOC) g_fd = filedes;
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| 
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|   if (thneed != NULL) {
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|     if (request == IOCTL_KGSL_GPU_COMMAND) {
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|       struct kgsl_gpu_command *cmd = (struct kgsl_gpu_command *)argp;
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|       if (thneed->record & 1) {
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|         thneed->timestamp = cmd->timestamp;
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|         thneed->context_id = cmd->context_id;
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|         CachedCommand *ccmd = new CachedCommand(thneed, cmd);
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|         thneed->cmds.push_back(ccmd);
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|       }
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|       if (thneed->record & 2) {
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|         printf("IOCTL_KGSL_GPU_COMMAND: flags: 0x%lx    context_id: %u  timestamp: %u\n",
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|             cmd->flags,
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|             cmd->context_id, cmd->timestamp);
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|       }
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|     } else if (request == IOCTL_KGSL_GPUOBJ_SYNC) {
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|       struct kgsl_gpuobj_sync *cmd = (struct kgsl_gpuobj_sync *)argp;
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|       struct kgsl_gpuobj_sync_obj *objs = (struct kgsl_gpuobj_sync_obj *)(cmd->objs);
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| 
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|       if (thneed->record & 2) {
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|         printf("IOCTL_KGSL_GPUOBJ_SYNC count:%d ", cmd->count);
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|         for (int i = 0; i < cmd->count; i++) {
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|           printf(" -- offset:0x%lx len:0x%lx id:%d op:%d  ", objs[i].offset, objs[i].length, objs[i].id, objs[i].op);
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|         }
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|         printf("\n");
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|       }
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| 
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|       if (thneed->record & 1) {
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|         struct kgsl_gpuobj_sync_obj *new_objs = (struct kgsl_gpuobj_sync_obj *)malloc(sizeof(struct kgsl_gpuobj_sync_obj)*cmd->count);
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|         memcpy(new_objs, objs, sizeof(struct kgsl_gpuobj_sync_obj)*cmd->count);
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|         thneed->syncobjs.push_back(std::make_pair(cmd->count, new_objs));
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|       }
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|     } else if (request == IOCTL_KGSL_DEVICE_WAITTIMESTAMP_CTXTID) {
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|       struct kgsl_device_waittimestamp_ctxtid *cmd = (struct kgsl_device_waittimestamp_ctxtid *)argp;
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|       if (thneed->record & 2) {
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|         printf("IOCTL_KGSL_DEVICE_WAITTIMESTAMP_CTXTID: context_id: %d  timestamp: %d  timeout: %d\n",
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|             cmd->context_id, cmd->timestamp, cmd->timeout);
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|       }
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|     } else if (request == IOCTL_KGSL_SETPROPERTY) {
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|       if (thneed->record & 2) {
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|         struct kgsl_device_getproperty *prop = (struct kgsl_device_getproperty *)argp;
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|         printf("IOCTL_KGSL_SETPROPERTY: 0x%x sizebytes:%zu\n", prop->type, prop->sizebytes);
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|         if (thneed->record & 4) {
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|           hexdump((uint32_t *)prop->value, prop->sizebytes);
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|           if (prop->type == KGSL_PROP_PWR_CONSTRAINT) {
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|             struct kgsl_device_constraint *constraint = (struct kgsl_device_constraint *)prop->value;
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|             hexdump((uint32_t *)constraint->data, constraint->size);
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|           }
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|         }
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|       }
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|     }
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|   }
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| 
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|   int ret = my_ioctl(filedes, request, argp);
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|   if (ret != 0) printf("ioctl returned %d with errno %d\n", ret, errno);
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|   return ret;
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| }
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| 
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| }
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| 
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| GPUMalloc::GPUMalloc(int size, int fd) {
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|   struct kgsl_gpuobj_alloc alloc;
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|   memset(&alloc, 0, sizeof(alloc));
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|   alloc.size = size;
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|   alloc.flags = 0x10000a00;
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|   int ret = ioctl(fd, IOCTL_KGSL_GPUOBJ_ALLOC, &alloc);
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|   void *addr = mmap64(NULL, alloc.mmapsize, 0x3, 0x1, fd, alloc.id*0x1000);
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|   assert(addr != MAP_FAILED);
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| 
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|   base = (uint64_t)addr;
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|   remaining = size;
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| }
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| 
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| void *GPUMalloc::alloc(int size) {
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|   if (size > remaining) return NULL;
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|   remaining -= size;
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|   void *ret = (void*)base;
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|   base += (size+0xff) & (~0xFF);
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|   return ret;
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| }
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| 
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| CachedCommand::CachedCommand(Thneed *lthneed, struct kgsl_gpu_command *cmd) {
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|   thneed = lthneed;
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|   assert(cmd->numcmds == 2);
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|   assert(cmd->numobjs == 1);
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|   assert(cmd->numsyncs == 0);
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| 
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|   memcpy(cmds, (void *)cmd->cmdlist, sizeof(struct kgsl_command_object)*2);
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|   memcpy(objs, (void *)cmd->objlist, sizeof(struct kgsl_command_object)*1);
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| 
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|   memcpy(&cache, cmd, sizeof(cache));
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|   cache.cmdlist = (uint64_t)cmds;
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|   cache.objlist = (uint64_t)objs;
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| 
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|   for (int i = 0; i < cmd->numcmds; i++) {
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|     void *nn = thneed->ram->alloc(cmds[i].size);
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|     memcpy(nn, (void*)cmds[i].gpuaddr, cmds[i].size);
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|     cmds[i].gpuaddr = (uint64_t)nn;
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|   }
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| 
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|   for (int i = 0; i < cmd->numobjs; i++) {
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|     void *nn = thneed->ram->alloc(objs[i].size);
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|     memset(nn, 0, objs[i].size);
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|     objs[i].gpuaddr = (uint64_t)nn;
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|   }
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| }
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| 
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| void CachedCommand::exec(bool wait) {
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|   cache.timestamp = ++thneed->timestamp;
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|   int ret = ioctl(thneed->fd, IOCTL_KGSL_GPU_COMMAND, &cache);
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| 
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|   if (wait) {
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|     struct kgsl_device_waittimestamp_ctxtid wait;
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|     wait.context_id = cache.context_id;
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|     wait.timestamp = cache.timestamp;
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|     wait.timeout = -1;
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| 
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|     uint64_t tb = nanos_since_boot();
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|     int wret = ioctl(thneed->fd, IOCTL_KGSL_DEVICE_WAITTIMESTAMP_CTXTID, &wait);
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|     uint64_t te = nanos_since_boot();
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| 
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|     if (thneed->record & 2) printf("exec %d wait %d after %lu us\n", ret, wret, (te-tb)/1000);
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|   } else {
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|     if (thneed->record & 2) printf("CachedCommand::exec got %d\n", ret);
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|   }
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| 
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|   assert(ret == 0);
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| }
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| 
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| Thneed::Thneed() {
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|   assert(g_fd != -1);
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|   fd = g_fd;
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|   ram = new GPUMalloc(0x40000, fd);
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|   record = 1;
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|   timestamp = -1;
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|   g_thneed = this;
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| }
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| 
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| void Thneed::stop() {
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|   record = 0;
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| }
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| 
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| //#define SAVE_LOG
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| 
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| void Thneed::execute(float **finputs, float *foutput) {
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|   #ifdef SAVE_LOG
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|     char fn[0x100];
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|     snprintf(fn, sizeof(fn), "/tmp/thneed_log_%d", timestamp);
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|     FILE *f = fopen(fn, "wb");
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|   #endif
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| 
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|   // ****** copy inputs
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|   for (int idx = 0; idx < inputs.size(); ++idx) {
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|     size_t sz;
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|     clGetMemObjectInfo(inputs[idx], CL_MEM_SIZE, sizeof(sz), &sz, NULL);
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| 
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|     #ifdef SAVE_LOG
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|       fwrite(&sz, 1, sizeof(sz), f);
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|       fwrite(finputs[idx], 1, sz, f);
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|     #endif
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| 
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|     if (record & 2) printf("copying %lu -- %p -> %p\n", sz, finputs[idx], inputs[idx]);
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|     clEnqueueWriteBuffer(command_queue, inputs[idx], CL_TRUE, 0, sz, finputs[idx], 0, NULL, NULL);
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|   }
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| 
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|   // ****** set power constraint
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|   struct kgsl_device_constraint_pwrlevel pwrlevel;
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|   pwrlevel.level = KGSL_CONSTRAINT_PWR_MAX;
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| 
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|   struct kgsl_device_constraint constraint;
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|   constraint.type = KGSL_CONSTRAINT_PWRLEVEL;
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|   constraint.context_id = context_id;
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|   constraint.data = (void*)&pwrlevel;
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|   constraint.size = sizeof(pwrlevel);
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| 
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|   struct kgsl_device_getproperty prop;
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|   prop.type = KGSL_PROP_PWR_CONSTRAINT;
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|   prop.value = (void*)&constraint;
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|   prop.sizebytes = sizeof(constraint);
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|   int ret = ioctl(fd, IOCTL_KGSL_SETPROPERTY, &prop);
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|   assert(ret == 0);
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| 
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|   // ****** run commands
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|   int i = 0;
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|   for (auto it = cmds.begin(); it != cmds.end(); ++it) {
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|     if (record & 2) printf("run %2d: ", i);
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|     (*it)->exec((++i) == cmds.size());
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|   }
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| 
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|   // ****** sync objects
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|   for (auto it = syncobjs.begin(); it != syncobjs.end(); ++it) {
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|     struct kgsl_gpuobj_sync cmd;
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| 
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|     cmd.objs = (uint64_t)it->second;
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|     cmd.obj_len = it->first * sizeof(struct kgsl_gpuobj_sync_obj);
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|     cmd.count = it->first;
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| 
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|     ret = ioctl(fd, IOCTL_KGSL_GPUOBJ_SYNC, &cmd);
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|     assert(ret == 0);
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|   }
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| 
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|   // ****** copy outputs
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|   size_t sz;
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|   clGetMemObjectInfo(output, CL_MEM_SIZE, sizeof(sz), &sz, NULL);
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|   if (record & 2) printf("copying %lu for output %p -> %p\n", sz, output, foutput);
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|   clEnqueueReadBuffer(command_queue, output, CL_TRUE, 0, sz, foutput, 0, NULL, NULL);
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| 
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|   #ifdef SAVE_LOG
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|     fwrite(&sz, 1, sizeof(sz), f);
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|     fwrite(foutput, 1, sz, f);
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|     fclose(f);
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|   #endif
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| 
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|   // ****** unset power constraint
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|   constraint.type = KGSL_CONSTRAINT_NONE;
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|   constraint.data = NULL;
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|   constraint.size = 0;
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| 
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|   ret = ioctl(fd, IOCTL_KGSL_SETPROPERTY, &prop);
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|   assert(ret == 0);
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| }
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| 
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| cl_int (*my_clSetKernelArg)(cl_kernel kernel, cl_uint arg_index, size_t arg_size, const void *arg_value) = NULL;
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| cl_int clSetKernelArg(cl_kernel kernel, cl_uint arg_index, size_t arg_size, const void *arg_value) {
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|   if (my_clSetKernelArg == NULL) my_clSetKernelArg = reinterpret_cast<decltype(my_clSetKernelArg)>(dlsym(RTLD_NEXT, "REAL_clSetKernelArg"));
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|   if (arg_value != NULL) {
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|     g_args[std::make_pair(kernel, arg_index)] = std::string((char*)arg_value, arg_size);
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|   }
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|   cl_int ret = my_clSetKernelArg(kernel, arg_index, arg_size, arg_value);
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|   return ret;
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| }
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| 
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| cl_int (*my_clEnqueueNDRangeKernel)(cl_command_queue, cl_kernel, cl_uint, const size_t *, const size_t *, const size_t *, cl_uint, const cl_event *, cl_event *) = NULL;
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| cl_int clEnqueueNDRangeKernel(cl_command_queue command_queue,
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|   cl_kernel kernel,
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|   cl_uint work_dim,
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|   const size_t *global_work_offset,
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|   const size_t *global_work_size,
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|   const size_t *local_work_size,
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|   cl_uint num_events_in_wait_list,
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|   const cl_event *event_wait_list,
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|   cl_event *event) {
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| 
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|   if (my_clEnqueueNDRangeKernel == NULL) my_clEnqueueNDRangeKernel = reinterpret_cast<decltype(my_clEnqueueNDRangeKernel)>(dlsym(RTLD_NEXT, "REAL_clEnqueueNDRangeKernel"));
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|   Thneed *thneed = g_thneed;
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| 
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|   // SNPE doesn't use these
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|   assert(num_events_in_wait_list == 0);
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|   assert(global_work_offset == NULL);
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| 
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|   char name[0x100];
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|   clGetKernelInfo(kernel, CL_KERNEL_FUNCTION_NAME, sizeof(name), name, NULL);
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| 
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|   cl_uint num_args;
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|   clGetKernelInfo(kernel, CL_KERNEL_NUM_ARGS, sizeof(num_args), &num_args, NULL);
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| 
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|   if (thneed != NULL && thneed->record & 1) {
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|     thneed->command_queue = command_queue;
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|     for (int i = 0; i < num_args; i++) {
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|       char arg_name[0x100];
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|       clGetKernelArgInfo(kernel, i, CL_KERNEL_ARG_NAME, sizeof(arg_name), arg_name, NULL);
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|       std::string arg = g_args[std::make_pair(kernel, i)];
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| 
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|       if (strcmp(arg_name, "input") == 0 && strcmp(name, "zero_pad_image_float") == 0) {
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|         cl_mem mem;
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|         memcpy(&mem, (void*)arg.data(), sizeof(mem));
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|         thneed->inputs.push_back(mem);
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|       }
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| 
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|       if (strcmp(arg_name, "output") == 0 && strcmp(name, "image2d_to_buffer_float") == 0) {
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|         cl_mem mem;
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|         memcpy(&mem, (void*)arg.data(), sizeof(mem));
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|         thneed->output = mem;
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|       }
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|     }
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|   }
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| 
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|   if (thneed != NULL && thneed->record & 4) {
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|     // extreme debug
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|     printf("%s -- %p\n", name, kernel);
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|     for (int i = 0; i < num_args; i++) {
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|       char arg_type[0x100];
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|       char arg_name[0x100];
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|       clGetKernelArgInfo(kernel, i, CL_KERNEL_ARG_TYPE_NAME, sizeof(arg_type), arg_type, NULL);
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|       clGetKernelArgInfo(kernel, i, CL_KERNEL_ARG_NAME, sizeof(arg_name), arg_name, NULL);
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|       std::string arg = g_args[std::make_pair(kernel, i)];
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|       printf("  %s %s", arg_type, arg_name);
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|       void *arg_value = (void*)arg.data();
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|       int arg_size = arg.size();
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|       if (arg_size == 1) {
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|         printf(" = %d", *((char*)arg_value));
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|       } else if (arg_size == 2) {
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|         printf(" = %d", *((short*)arg_value));
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|       } else if (arg_size == 4) {
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|         if (strcmp(arg_type, "float") == 0) {
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|           printf(" = %f", *((float*)arg_value));
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|         } else {
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|           printf(" = %d", *((int*)arg_value));
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|         }
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|       } else if (arg_size == 8) {
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|         cl_mem val = (cl_mem)(*((uintptr_t*)arg_value));
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|         printf(" = %p", val);
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|       }
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|       printf("\n");
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|     }
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|   }
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| 
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|   cl_int ret = my_clEnqueueNDRangeKernel(command_queue, kernel, work_dim,
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|     global_work_offset, global_work_size, local_work_size,
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|     num_events_in_wait_list, event_wait_list, event);
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|   return ret;
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| }
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| 
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| void *dlsym(void *handle, const char *symbol) {
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|   void *(*my_dlsym)(void *handle, const char *symbol) = (void *(*)(void *handle, const char *symbol))((uintptr_t)dlopen-0x2d4);
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|   if (memcmp("REAL_", symbol, 5) == 0) {
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|     return my_dlsym(handle, symbol+5);
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|   } else if (strcmp("clEnqueueNDRangeKernel", symbol) == 0) {
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|     return (void*)clEnqueueNDRangeKernel;
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|   } else if (strcmp("clSetKernelArg", symbol) == 0) {
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|     return (void*)clSetKernelArg;
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|   } else {
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|     return my_dlsym(handle, symbol);
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|   }
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| }
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| 
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| 
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