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/**
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* Functions which handle multiple pools data
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include "miner.h"
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#include "compat.h"
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// to move in miner.h
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extern bool allow_gbt;
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extern bool allow_mininginfo;
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extern bool check_dups;
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extern double opt_max_diff;
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extern double opt_max_rate;
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extern int opt_scantime;
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extern int opt_time_limit;
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extern char* rpc_url;
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extern char* rpc_user;
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extern char* rpc_pass;
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extern char* short_url;
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extern struct work _ALIGN(64) g_work;
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extern struct stratum_ctx stratum;
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extern pthread_mutex_t stratum_work_lock;
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extern bool get_work(struct thr_info *thr, struct work *work);
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extern bool stratum_need_reset;
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extern time_t firstwork_time;
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extern volatile time_t g_work_time;
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extern volatile int pool_switch_count;
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extern volatile bool pool_is_switching;
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extern uint8_t conditional_state[MAX_GPUS];
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extern struct option options[];
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#define CFG_NULL 0
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#define CFG_POOL 1
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struct opt_config_array {
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int cat;
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const char *name; // json key
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const char *longname; // global opt name if different
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} cfg_array_keys[] = {
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{ CFG_POOL, "url", NULL }, /* let this key first, increment pools */
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{ CFG_POOL, "user", NULL },
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{ CFG_POOL, "pass", NULL },
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{ CFG_POOL, "userpass", NULL },
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{ CFG_POOL, "name", "pool-name" },
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{ CFG_POOL, "scantime", "pool-scantime" },
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{ CFG_POOL, "max-diff", "pool-max-diff" },
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{ CFG_POOL, "max-rate", "pool-max-rate" },
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{ CFG_POOL, "removed", "pool-removed" },
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{ CFG_POOL, "disabled", "pool-removed" }, // sample alias
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{ CFG_POOL, "time-limit", "pool-time-limit" },
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{ CFG_NULL, NULL, NULL }
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};
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// store current credentials in pools container
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void pool_set_creds(int pooln)
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{
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struct pool_infos *p = &pools[pooln];
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snprintf(p->url, sizeof(p->url), "%s", rpc_url);
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snprintf(p->short_url, sizeof(p->short_url), "%s", short_url);
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snprintf(p->user, sizeof(p->user), "%s", rpc_user);
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snprintf(p->pass, sizeof(p->pass), "%s", rpc_pass);
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if (!(p->status & POOL_ST_DEFINED)) {
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p->id = pooln;
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p->status |= POOL_ST_DEFINED;
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// init pool options as "unset"
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// until cmdline is not fully parsed...
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p->max_diff = -1.;
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p->max_rate = -1.;
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p->scantime = -1;
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p->time_limit = -1;
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p->allow_mininginfo = allow_mininginfo;
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p->allow_gbt = allow_gbt;
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p->check_dups = check_dups;
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p->status |= POOL_ST_DEFINED;
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}
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if (strlen(rpc_url)) {
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if (!strncasecmp(rpc_url, "stratum", 7))
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p->type = POOL_STRATUM;
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else /* if (!strncasecmp(rpc_url, "http", 4)) */
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p->type = POOL_GETWORK; // todo: or longpoll
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p->status |= POOL_ST_VALID;
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}
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}
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// fill the unset pools options with cmdline ones
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void pool_init_defaults()
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{
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struct pool_infos *p;
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for (int i=0; i<num_pools; i++) {
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p = &pools[i];
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if (p->max_diff == -1.) p->max_diff = opt_max_diff;
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if (p->max_rate == -1.) p->max_rate = opt_max_rate;
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if (p->scantime == -1) p->scantime = opt_scantime;
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if (p->time_limit == -1) p->time_limit = opt_time_limit;
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}
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}
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// attributes only set by a json pools config
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void pool_set_attr(int pooln, const char* key, char* arg)
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{
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struct pool_infos *p = &pools[pooln];
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if (!strcasecmp(key, "name")) {
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snprintf(p->name, sizeof(p->name), "%s", arg);
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return;
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}
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if (!strcasecmp(key, "scantime")) {
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p->scantime = atoi(arg);
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return;
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}
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if (!strcasecmp(key, "max-diff")) {
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p->max_diff = atof(arg);
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return;
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}
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if (!strcasecmp(key, "max-rate")) {
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p->max_rate = atof(arg);
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return;
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}
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if (!strcasecmp(key, "time-limit")) {
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p->time_limit = atoi(arg);
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return;
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}
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if (!strcasecmp(key, "removed")) {
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int removed = atoi(arg);
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if (removed) {
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p->status |= POOL_ST_REMOVED;
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}
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return;
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}
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}
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// pool switching code
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bool pool_switch(int pooln)
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{
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int prevn = cur_pooln;
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struct pool_infos *prev = &pools[cur_pooln];
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struct pool_infos* p = NULL;
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// save prev stratum connection infos (struct)
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if (prev->type & POOL_STRATUM) {
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// may not be the right moment to free,
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// to check if required on submit...
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stratum_free_job(&stratum);
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prev->stratum = stratum;
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}
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if (pooln < num_pools) {
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cur_pooln = pooln;
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p = &pools[cur_pooln];
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} else {
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applog(LOG_ERR, "Switch to inexistant pool %d!", pooln);
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return false;
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}
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// save global attributes
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prev->allow_mininginfo = allow_mininginfo;
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prev->allow_gbt = allow_gbt;
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prev->check_dups = check_dups;
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pthread_mutex_lock(&stratum_work_lock);
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free(rpc_user); rpc_user = strdup(p->user);
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free(rpc_pass); rpc_pass = strdup(p->pass);
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free(rpc_url); rpc_url = strdup(p->url);
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short_url = p->short_url; // just a pointer, no alloc
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opt_scantime = p->scantime;
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opt_max_diff = p->max_diff;
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opt_max_rate = p->max_rate;
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opt_time_limit = p->time_limit;
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want_stratum = have_stratum = (p->type & POOL_STRATUM) != 0;
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pthread_mutex_unlock(&stratum_work_lock);
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if (prevn != cur_pooln) {
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pool_switch_count++;
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g_work_time = 0;
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g_work.data[0] = 0;
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pool_is_switching = true;
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stratum_need_reset = true;
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// used to get the pool uptime
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firstwork_time = time(NULL);
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restart_threads();
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// reset wait states
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for (int n=0; n<opt_n_threads; n++)
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conditional_state[n] = false;
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// restore flags
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allow_gbt = p->allow_gbt;
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allow_mininginfo = p->allow_mininginfo;
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check_dups = p->check_dups;
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if (want_stratum) {
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// temporary... until stratum code cleanup
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stratum = p->stratum;
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stratum.pooln = cur_pooln;
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// unlock the stratum thread
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tq_push(thr_info[stratum_thr_id].q, strdup(rpc_url));
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applog(LOG_BLUE, "Switch to stratum pool %d: %s", cur_pooln,
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strlen(p->name) ? p->name : p->short_url);
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} else {
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applog(LOG_BLUE, "Switch to pool %d: %s", cur_pooln,
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strlen(p->name) ? p->name : p->short_url);
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}
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// will unlock the longpoll thread on /LP url receive
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want_longpoll = (p->type & POOL_LONGPOLL) || !(p->type & POOL_STRATUM);
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if (want_longpoll) {
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pthread_mutex_lock(&stratum_work_lock);
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// will issue a lp_url request to unlock the longpoll thread
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have_longpoll = false;
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get_work(&thr_info[0], &g_work);
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pthread_mutex_unlock(&stratum_work_lock);
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}
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}
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return true;
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}
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// search available pool
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int pool_get_first_valid(int startfrom)
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{
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int next = 0;
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struct pool_infos *p;
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for (int i=0; i<num_pools; i++) {
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int pooln = (startfrom + i) % num_pools;
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p = &pools[pooln];
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if (!(p->status & POOL_ST_VALID))
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continue;
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if (p->status & (POOL_ST_DISABLED | POOL_ST_REMOVED))
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continue;
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next = pooln;
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break;
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}
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return next;
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}
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// switch to next available pool
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bool pool_switch_next()
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{
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if (num_pools > 1) {
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int pooln = pool_get_first_valid(cur_pooln+1);
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return pool_switch(pooln);
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} else {
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// no switch possible
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if (!opt_quiet)
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applog(LOG_DEBUG, "No other pools to try...");
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return false;
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}
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}
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// seturl from api remote (deprecated)
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bool pool_switch_url(char *params)
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{
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int prevn = cur_pooln, nextn;
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parse_arg('o', params);
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// cur_pooln modified by parse_arg('o'), get new pool num
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nextn = cur_pooln;
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// and to handle the "hot swap" from current one...
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cur_pooln = prevn;
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if (nextn == prevn)
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return false;
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return pool_switch(nextn);
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}
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// Parse pools array in json config
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bool parse_pool_array(json_t *obj)
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{
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size_t idx;
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json_t *p, *val;
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if (!json_is_array(obj))
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return false;
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// array of objects [ {}, {} ]
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json_array_foreach(obj, idx, p)
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{
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if (!json_is_object(p))
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continue;
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for (int i = 0; i < ARRAY_SIZE(cfg_array_keys); i++)
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{
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int opt = -1;
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char *s = NULL;
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if (cfg_array_keys[i].cat != CFG_POOL)
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continue;
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val = json_object_get(p, cfg_array_keys[i].name);
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if (!val)
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continue;
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for (int k = 0; k < options_count(); k++)
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{
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const char *alias = cfg_array_keys[i].longname;
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if (alias && !strcasecmp(options[k].name, alias)) {
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opt = k;
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break;
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}
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if (!alias && !strcasecmp(options[k].name, cfg_array_keys[i].name)) {
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opt = k;
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break;
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}
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}
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if (opt == -1)
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continue;
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if (json_is_string(val)) {
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s = strdup(json_string_value(val));
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if (!s)
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continue;
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// applog(LOG_DEBUG, "pool key %s '%s'", options[opt].name, s);
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parse_arg(options[opt].val, s);
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free(s);
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} else {
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// numeric or bool
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char buf[32] = { 0 };
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double d = 0.;
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if (json_is_true(val)) d = 1.;
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else if (json_is_integer(val))
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d = 1.0 * json_integer_value(val);
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else if (json_is_real(val))
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d = json_real_value(val);
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snprintf(buf, sizeof(buf)-1, "%f", d);
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// applog(LOG_DEBUG, "pool key %s '%f'", options[opt].name, d);
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parse_arg(options[opt].val, buf);
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}
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}
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}
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return true;
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}
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// debug stuff
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void pool_dump_infos()
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{
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struct pool_infos *p;
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for (int i=0; i<num_pools; i++) {
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p = &pools[i];
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applog(LOG_DEBUG, "POOL %01d: %s USER %s -s %d", i,
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p->short_url, p->user, p->scantime);
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}
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}
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