#include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "cache_evbase_client.h" struct cache_evbase_instance *instance_asyn; int still_runing=1; struct future_pdata { struct future * future; FILE *fp; char filename[256]; }; void get_future_success(future_result_t* result, void * user) { struct tango_cache_result *res = (struct tango_cache_result *)result; struct future_pdata *pdata = (struct future_pdata *)user; char buffer[1024]; if(res != NULL) { if(res->type==RESULT_TYPE_BODY) { fwrite(res->data_frag, res->size, 1, pdata->fp); } else { memcpy(buffer, res->data_frag, res->size>=1024?1023:res->size); buffer[res->size] = '\0'; printf("%s", buffer); } } else //½لتّ { future_destroy(pdata->future); fclose(pdata->fp); free(pdata); still_runing = 0; } } void get_future_failed(enum e_future_error err, const char * what, void * user) { printf("GET fail: %s\n", what); sleep(5); still_runing = 0; } void put_future_success(future_result_t* result, void * user) { struct future_pdata *pdata = (struct future_pdata *)user; printf("PUT %s succ\n", pdata->filename); future_destroy(pdata->future); free(pdata); still_runing = 0; } void put_future_failed(enum e_future_error err, const char * what, void * user) { struct future_pdata *pdata = (struct future_pdata *)user; printf("PUT %s fail: %s\n", what, pdata->filename); future_destroy(pdata->future); free(pdata); still_runing = 0; } char * get_file_content(const char *filename, size_t *filelen_out) { char *buffer; FILE *fp; size_t filelen = 0; struct stat filestat; int readlen; fp = fopen(filename, "rb"); if(fp == NULL) { printf("fopen file %s failed.\n", filename); return NULL; } if(fstat(fileno(fp), &filestat)) { printf("fstat %s failed.\n", filename); return NULL; } buffer = (char *)malloc(filestat.st_size); while(filelen < (size_t)filestat.st_size) { readlen = fread(buffer + filelen, 1, filestat.st_size - filelen, fp); if(readlen < 0) { printf("read error: %s\n", strerror(errno)); return NULL; } filelen += readlen; } fclose(fp); *filelen_out = filestat.st_size; return buffer; } int main(int argc, char **argv) { int n, index=0; char method[16], filename_in[256], filename_out[256], *p; struct tango_cache_meta meta; struct future_pdata *pdata; struct cache_evbase_ctx *ctx; void *runtime_log; if(argc != 2 && argc!=3) { printf("USGAE: %s [get_out_file_index]\n", argv[0]); return -1; } if(argc==3) { index = atoi(argv[2]); } runtime_log = MESA_create_runtime_log_handle("./runtime.log", 10); if(NULL==runtime_log) { return -1; } instance_asyn = cache_evbase_instance_new("./pangu_tg_cahce.conf", "TANGO_CACHE", runtime_log); assert(instance_asyn!=NULL); pdata = (struct future_pdata *)malloc(sizeof(struct future_pdata)); if(sscanf(argv[1], "%[^:]:%1023s%n", method, filename_in, &n) != 2) { assert(0); } if(strlen(filename_in) > 0) { memset(&meta, 0, sizeof(struct tango_cache_meta)); meta.url = filename_in; meta.std_hdr[HDR_CONTENT_TYPE] = "Content-Type: maintype/subtype"; meta.std_hdr[HDR_CONTENT_ENCODING] = "Content-Encoding: gzip"; meta.other_hdr = "Etag: hgdkqkwdwqekdfjwjfjwelkjfkwfejwhf\r\n"; p = method; while(*p=='\r'||*p=='\n') p++; assert(*p!='\0'); if(!strcasecmp(p, "GET")) { sprintf(filename_out, "file_index_%u.bin", index); pdata->future = future_create(get_future_success, get_future_failed, pdata); promise_set_ctx(future_to_promise(pdata->future), NULL, NULL); pdata->fp = fopen(filename_out, "w"); cache_evbase_fetch(instance_asyn, pdata->future, &meta); } else if(!strcasecmp(p, "PUTONCE")) { size_t filelen; p = get_file_content(filename_in, &filelen); pdata->future = future_create(put_future_success, put_future_failed, pdata); promise_set_ctx(future_to_promise(pdata->future), NULL, NULL); cache_evbase_upload_once_data(instance_asyn, pdata->future, PUT_MEM_FREE, p, filelen, &meta, pdata->filename, 256); } else if(!strcasecmp(p, "PUTONCEEV")) { size_t readlen; pdata->future = future_create(put_future_success, put_future_failed, pdata); promise_set_ctx(future_to_promise(pdata->future), NULL, NULL); struct evbuffer *evbuf = evbuffer_new(); char buffer[1024]; FILE *fp = fopen(filename_in, "rb"); while(!feof(fp)) { readlen = fread(buffer, 1, 1024, fp); if(readlen < 0) { assert(0); } evbuffer_add(evbuf, buffer, readlen); } fclose(fp); cache_evbase_upload_once_evbuf(instance_asyn, pdata->future, evbuf, &meta, pdata->filename, 256); } else { pdata->future = future_create(put_future_success, put_future_failed, pdata); promise_set_ctx(future_to_promise(pdata->future), NULL, NULL); ctx = cache_evbase_update_start(instance_asyn, pdata->future, &meta); sprintf(pdata->filename, "%s", cache_evbase_get_object_key(ctx)); char buffer[1024]; FILE *fp = fopen(filename_in, "r"); while(!feof(fp)) { n = fread(buffer, 1, 1024, fp); assert(n>=0); cache_evbase_update_frag_data(ctx, PUT_MEM_COPY, buffer, n); } cache_evbase_update_end(ctx); } } printf("Waiting to finish.......\n"); static int num=0; while(still_runing) { /*if(++num==10) { cache_evbase_update_end(ctx); }*/ sleep(1); } struct cache_statistics out; cache_evbase_get_statistics(instance_asyn, &out); printf("get_recv: %llu, get_succ: %llu, get_fail: %llu, put_recv: %llu, put_succ: %llu, put_fail: %llu, session: %llu, memory: %llu\n", out.get_recv_num, out.get_succ_num, out.get_fail_num, out.put_recv_num, out.put_succ_num, out.put_fail_num, out.session_num, out.memory_used); return 0; }