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9e5cafc395
ERR is if something fatal just happened WARNING is something bad happened, but we're still running. The bad thing is either a bug in the code, an attack or buggy protocol/implementation of the remote peer, etc. The operator should examine the bad thing and try to correct it. (No error or warning messages should be expected. I expect most people to run on -l warning eventually.) NOTICE is never ever used. INFO means something happened (maybe bad, maybe ok), but there's nothing you need to (or can) do about it. DEBUG is for everything louder than INFO. svn:r486
295 lines
8.0 KiB
C
295 lines
8.0 KiB
C
/* Copyright 2003 Roger Dingledine. */
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/* See LICENSE for licensing information */
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/* $Id$ */
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#include "or.h"
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extern or_options_t options; /* command-line and config-file options */
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#define MAX_CPUWORKERS 17
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#define MIN_CPUWORKERS 1
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#define TAG_LEN 8
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#define LEN_ONION_QUESTION (1+TAG_LEN+DH_ONIONSKIN_LEN)
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#define LEN_ONION_RESPONSE (1+TAG_LEN+DH_KEY_LEN+32)
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int num_cpuworkers=0;
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int num_cpuworkers_busy=0;
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int cpuworker_main(void *data);
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static int spawn_cpuworker(void);
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static void spawn_enough_cpuworkers(void);
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static void process_pending_task(connection_t *cpuworker);
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void cpu_init(void) {
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spawn_enough_cpuworkers();
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}
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int connection_cpu_finished_flushing(connection_t *conn) {
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assert(conn && conn->type == CONN_TYPE_CPUWORKER);
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connection_stop_writing(conn);
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return 0;
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}
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static void tag_pack(char *tag, uint32_t addr, uint16_t port, aci_t aci) {
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*(uint32_t *)tag = addr;
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*(uint16_t *)(tag+4) = port;
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*(aci_t *)(tag+6) = aci;
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}
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static void tag_unpack(char *tag, uint32_t *addr, uint16_t *port, aci_t *aci) {
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struct in_addr in;
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*addr = *(uint32_t *)tag;
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*port = *(uint16_t *)(tag+4);
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*aci = *(aci_t *)(tag+6);
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in.s_addr = htonl(*addr);
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log_fn(LOG_DEBUG,"onion was from %s:%d, aci %d.", inet_ntoa(in), *port, *aci);
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}
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int connection_cpu_process_inbuf(connection_t *conn) {
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unsigned char buf[LEN_ONION_RESPONSE];
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uint32_t addr;
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uint16_t port;
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aci_t aci;
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connection_t *p_conn;
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circuit_t *circ;
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assert(conn && conn->type == CONN_TYPE_CPUWORKER);
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if(conn->inbuf_reached_eof) {
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log_fn(LOG_WARNING,"Read eof. Worker dying.");
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if(conn->state != CPUWORKER_STATE_IDLE) {
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/* XXX the circ associated with this cpuworker will wait forever. Oops. */
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num_cpuworkers_busy--;
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}
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num_cpuworkers--;
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return -1;
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}
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if(conn->state == CPUWORKER_STATE_BUSY_ONION) {
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if(buf_datalen(conn->inbuf) < LEN_ONION_RESPONSE) /* entire answer available? */
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return 0; /* not yet */
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assert(buf_datalen(conn->inbuf) == LEN_ONION_RESPONSE);
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connection_fetch_from_buf(buf,LEN_ONION_RESPONSE,conn);
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/* parse out the circ it was talking about */
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tag_unpack(buf+1, &addr, &port, &aci);
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circ = NULL;
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p_conn = connection_exact_get_by_addr_port(addr,port);
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if(p_conn)
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circ = circuit_get_by_aci_conn(aci, p_conn);
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if(!circ) {
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log_fn(LOG_INFO,"processed onion for a circ that's gone. Dropping.");
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goto done_processing;
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}
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assert(circ->p_conn);
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if(*buf == 0) {
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log_fn(LOG_WARNING,"decoding onionskin failed. Closing.");
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circuit_close(circ);
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goto done_processing;
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}
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if(onionskin_answer(circ, buf+1+TAG_LEN, buf+1+TAG_LEN+DH_KEY_LEN) < 0) {
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log_fn(LOG_WARNING,"onionskin_answer failed. Closing.");
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circuit_close(circ);
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goto done_processing;
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}
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log_fn(LOG_DEBUG,"onionskin_answer succeeded. Yay.");
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} else {
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assert(0); /* don't ask me to do handshakes yet */
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}
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done_processing:
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conn->state = CPUWORKER_STATE_IDLE;
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num_cpuworkers_busy--;
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process_pending_task(conn);
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return 0;
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}
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int cpuworker_main(void *data) {
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unsigned char question[DH_ONIONSKIN_LEN];
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unsigned char question_type;
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int *fdarray = data;
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int fd;
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/* variables for onion processing */
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unsigned char keys[32];
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unsigned char reply_to_proxy[DH_KEY_LEN];
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unsigned char buf[LEN_ONION_RESPONSE];
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char tag[TAG_LEN];
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close(fdarray[0]); /* this is the side of the socketpair the parent uses */
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fd = fdarray[1]; /* this side is ours */
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for(;;) {
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if(read(fd, &question_type, 1) != 1) {
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log_fn(LOG_ERR,"read type failed. Exiting.");
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spawn_exit();
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}
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assert(question_type == CPUWORKER_TASK_ONION);
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if(read_all(fd, tag, TAG_LEN) != TAG_LEN) {
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log_fn(LOG_ERR,"read tag failed. Exiting.");
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spawn_exit();
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}
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if(read_all(fd, question, DH_ONIONSKIN_LEN) != DH_ONIONSKIN_LEN) {
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log_fn(LOG_ERR,"read question failed. Exiting.");
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spawn_exit();
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}
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if(question_type == CPUWORKER_TASK_ONION) {
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if(onion_skin_server_handshake(question, get_onion_key(),
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reply_to_proxy, keys, 32) < 0) {
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/* failure */
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log_fn(LOG_WARNING,"onion_skin_server_handshake failed.");
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memset(buf,0,LEN_ONION_RESPONSE); /* send all zeros for failure */
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} else {
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/* success */
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log_fn(LOG_INFO,"onion_skin_server_handshake succeeded.");
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buf[0] = 1; /* 1 means success */
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memcpy(buf+1,tag,TAG_LEN);
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memcpy(buf+1+TAG_LEN,reply_to_proxy,DH_KEY_LEN);
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memcpy(buf+1+TAG_LEN+DH_KEY_LEN,keys,32);
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}
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if(write_all(fd, buf, LEN_ONION_RESPONSE) != LEN_ONION_RESPONSE) {
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log_fn(LOG_ERR,"writing response buf failed. Exiting.");
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spawn_exit();
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}
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log_fn(LOG_DEBUG,"finished writing response.");
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}
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}
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return 0; /* windows wants this function to return an int */
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}
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static int spawn_cpuworker(void) {
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int fd[2];
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connection_t *conn;
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if(tor_socketpair(AF_UNIX, SOCK_STREAM, 0, fd) < 0) {
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perror("socketpair");
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exit(1);
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}
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spawn_func(cpuworker_main, (void*)fd);
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log_fn(LOG_DEBUG,"just spawned a worker.");
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close(fd[1]); /* we don't need the worker's side of the pipe */
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conn = connection_new(CONN_TYPE_CPUWORKER);
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if(!conn) {
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close(fd[0]);
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return -1;
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}
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set_socket_nonblocking(fd[0]);
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/* set up conn so it's got all the data we need to remember */
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conn->receiver_bucket = -1; /* non-cell connections don't do receiver buckets */
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conn->bandwidth = -1;
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conn->s = fd[0];
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conn->address = strdup("localhost");
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if(connection_add(conn) < 0) { /* no space, forget it */
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log_fn(LOG_WARNING,"connection_add failed. Giving up.");
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connection_free(conn); /* this closes fd[0] */
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return -1;
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}
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conn->state = CPUWORKER_STATE_IDLE;
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connection_start_reading(conn);
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return 0; /* success */
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}
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static void spawn_enough_cpuworkers(void) {
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int num_cpuworkers_needed = options.NumCpus;
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if(num_cpuworkers_needed < MIN_CPUWORKERS)
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num_cpuworkers_needed = MIN_CPUWORKERS;
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if(num_cpuworkers_needed > MAX_CPUWORKERS)
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num_cpuworkers_needed = MAX_CPUWORKERS;
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while(num_cpuworkers < num_cpuworkers_needed) {
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if(spawn_cpuworker() < 0) {
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log_fn(LOG_WARNING,"spawn failed!");
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return;
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}
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num_cpuworkers++;
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}
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}
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static void process_pending_task(connection_t *cpuworker) {
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circuit_t *circ;
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assert(cpuworker);
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/* for now only process onion tasks */
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circ = onion_next_task();
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if(!circ)
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return;
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if(assign_to_cpuworker(cpuworker, CPUWORKER_TASK_ONION, circ) < 0)
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log_fn(LOG_WARNING,"assign_to_cpuworker failed. Ignoring.");
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}
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/* if cpuworker is defined, assert that he's idle, and use him. else,
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* look for an idle cpuworker and use him. if none idle, queue task onto
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* the pending onion list and return.
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* If question_type is CPUWORKER_TASK_ONION then task is a circ, else
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* (something else)
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*/
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int assign_to_cpuworker(connection_t *cpuworker, unsigned char question_type,
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void *task) {
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circuit_t *circ;
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char tag[TAG_LEN];
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assert(question_type == CPUWORKER_TASK_ONION);
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if(question_type == CPUWORKER_TASK_ONION) {
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circ = task;
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if(num_cpuworkers_busy == num_cpuworkers) {
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log_fn(LOG_DEBUG,"No idle cpuworkers. Queuing.");
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if(onion_pending_add(circ) < 0)
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return -1;
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return 0;
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}
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if(!cpuworker)
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cpuworker = connection_get_by_type_state(CONN_TYPE_CPUWORKER, CPUWORKER_STATE_IDLE);
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assert(cpuworker);
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if(!circ->p_conn) {
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log_fn(LOG_INFO,"circ->p_conn gone. Failing circ.");
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return -1;
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}
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tag_pack(tag, circ->p_conn->addr, circ->p_conn->port, circ->p_aci);
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cpuworker->state = CPUWORKER_STATE_BUSY_ONION;
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num_cpuworkers_busy++;
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if(connection_write_to_buf(&question_type, 1, cpuworker) < 0 ||
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connection_write_to_buf(tag, sizeof(tag), cpuworker) < 0 ||
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connection_write_to_buf(circ->onionskin, DH_ONIONSKIN_LEN, cpuworker) < 0) {
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log_fn(LOG_WARNING,"Write failed. Closing worker and failing circ.");
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cpuworker->marked_for_close = 1;
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return -1;
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}
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}
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return 0;
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}
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/*
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Local Variables:
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mode:c
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indent-tabs-mode:nil
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c-basic-offset:2
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End:
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*/
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