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1 #include <inttypes.h>
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2 #include <stdio.h>
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3 #include <stdlib.h>
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4 #include <string.h>
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5 #include <uv.h>
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6
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7 uv_loop_t *loop;
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8
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9 struct child_worker {
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10 uv_process_t req;
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11 uv_process_options_t options;
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12 uv_pipe_t pipe;
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13 } *workers;
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14
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15 int round_robin_counter;
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16 int child_worker_count;
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17
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18 uv_buf_t dummy_buf;
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19 char worker_path[500];
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20
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21 void close_process_handle(uv_process_t *req, int64_t exit_status, int term_signal) {
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22 fprintf(stderr, "Process exited with status %" PRId64 ", signal %d\n", exit_status, term_signal);
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23 uv_close((uv_handle_t*) req, NULL);
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24 }
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25
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26 void alloc_buffer(uv_handle_t *handle, size_t suggested_size, uv_buf_t *buf) {
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27 buf->base = malloc(suggested_size);
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28 buf->len = suggested_size;
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29 }
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30
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31 void on_new_connection(uv_stream_t *server, int status) {
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32 if (status == -1) {
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33 // error!
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34 return;
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35 }
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36
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37 uv_tcp_t *client = (uv_tcp_t*) malloc(sizeof(uv_tcp_t));
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38 uv_tcp_init(loop, client);
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39 if (uv_accept(server, (uv_stream_t*) client) == 0) {
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40 uv_write_t *write_req = (uv_write_t*) malloc(sizeof(uv_write_t));
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41 dummy_buf = uv_buf_init("a", 1);
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42 struct child_worker *worker = &workers[round_robin_counter];
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43 uv_write2(write_req, (uv_stream_t*) &worker->pipe, &dummy_buf, 1, (uv_stream_t*) client, NULL);
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44 round_robin_counter = (round_robin_counter + 1) % child_worker_count;
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45 }
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46 else {
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47 uv_close((uv_handle_t*) client, NULL);
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48 }
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49 }
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50
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51 void setup_workers() {
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52 size_t path_size = 500;
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53 uv_exepath(worker_path, &path_size);
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54 strcpy(worker_path + (strlen(worker_path) - strlen("multi-echo-server")), "worker");
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55 fprintf(stderr, "Worker path: %s\n", worker_path);
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56
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57 char* args[2];
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58 args[0] = worker_path;
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59 args[1] = NULL;
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60
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61 round_robin_counter = 0;
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62
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63 // ...
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64
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65 // launch same number of workers as number of CPUs
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66 uv_cpu_info_t *info;
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67 int cpu_count;
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68 uv_cpu_info(&info, &cpu_count);
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69 uv_free_cpu_info(info, cpu_count);
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70
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71 child_worker_count = cpu_count;
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72
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73 workers = calloc(cpu_count, sizeof(struct child_worker));
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74 while (cpu_count--) {
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75 struct child_worker *worker = &workers[cpu_count];
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76 uv_pipe_init(loop, &worker->pipe, 1);
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77
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78 uv_stdio_container_t child_stdio[3];
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79 child_stdio[0].flags = UV_CREATE_PIPE | UV_READABLE_PIPE;
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80 child_stdio[0].data.stream = (uv_stream_t*) &worker->pipe;
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81 child_stdio[1].flags = UV_IGNORE;
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82 child_stdio[2].flags = UV_INHERIT_FD;
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83 child_stdio[2].data.fd = 2;
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84
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85 worker->options.stdio = child_stdio;
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86 worker->options.stdio_count = 3;
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87
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88 worker->options.exit_cb = close_process_handle;
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89 worker->options.file = args[0];
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90 worker->options.args = args;
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91
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92 uv_spawn(loop, &worker->req, &worker->options);
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93 fprintf(stderr, "Started worker %d\n", worker->req.pid);
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94 }
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95 }
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96
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97 int main() {
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98 loop = uv_default_loop();
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99
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100 setup_workers();
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101
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102 uv_tcp_t server;
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103 uv_tcp_init(loop, &server);
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104
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105 struct sockaddr_in bind_addr;
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106 uv_ip4_addr("0.0.0.0", 7000, &bind_addr);
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107 uv_tcp_bind(&server, (const struct sockaddr *)&bind_addr, 0);
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108 int r;
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109 if ((r = uv_listen((uv_stream_t*) &server, 128, on_new_connection))) {
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110 fprintf(stderr, "Listen error %s\n", uv_err_name(r));
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111 return 2;
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112 }
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113 return uv_run(loop, UV_RUN_DEFAULT);
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114 }
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