afd47189e8
Fixes following error reported by clang-9 analyzer: examples/server.c:244:2: warning: Value stored to 'argc' is never read argc -= optind; ^ ~~~~~~ examples/server.c:245:2: warning: Value stored to 'argv' is never read argv += optind; ^ ~~~~~~ Signed-off-by: Petr Štetiar <ynezz@true.cz>
261 lines
6.2 KiB
C
261 lines
6.2 KiB
C
/*
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* Copyright (C) 2011-2014 Felix Fietkau <nbd@openwrt.org>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU Lesser General Public License version 2.1
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* as published by the Free Software Foundation
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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#include <unistd.h>
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#include <signal.h>
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#include <libubox/blobmsg_json.h>
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#include "libubus.h"
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#include "count.h"
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static struct ubus_context *ctx;
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static struct ubus_subscriber test_event;
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static struct blob_buf b;
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enum {
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HELLO_ID,
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HELLO_MSG,
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__HELLO_MAX
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};
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static const struct blobmsg_policy hello_policy[] = {
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[HELLO_ID] = { .name = "id", .type = BLOBMSG_TYPE_INT32 },
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[HELLO_MSG] = { .name = "msg", .type = BLOBMSG_TYPE_STRING },
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};
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struct hello_request {
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struct ubus_request_data req;
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struct uloop_timeout timeout;
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int fd;
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int idx;
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char data[];
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};
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static void test_hello_fd_reply(struct uloop_timeout *t)
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{
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struct hello_request *req = container_of(t, struct hello_request, timeout);
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char *data;
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data = alloca(strlen(req->data) + 32);
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sprintf(data, "msg%d: %s\n", ++req->idx, req->data);
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if (write(req->fd, data, strlen(data)) < 0) {
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close(req->fd);
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free(req);
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return;
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}
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uloop_timeout_set(&req->timeout, 1000);
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}
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static void test_hello_reply(struct uloop_timeout *t)
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{
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struct hello_request *req = container_of(t, struct hello_request, timeout);
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int fds[2];
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blob_buf_init(&b, 0);
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blobmsg_add_string(&b, "message", req->data);
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ubus_send_reply(ctx, &req->req, b.head);
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if (pipe(fds) == -1) {
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fprintf(stderr, "Failed to create pipe\n");
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return;
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}
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ubus_request_set_fd(ctx, &req->req, fds[0]);
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ubus_complete_deferred_request(ctx, &req->req, 0);
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req->fd = fds[1];
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req->timeout.cb = test_hello_fd_reply;
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test_hello_fd_reply(t);
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}
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static int test_hello(struct ubus_context *ctx, struct ubus_object *obj,
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struct ubus_request_data *req, const char *method,
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struct blob_attr *msg)
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{
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struct hello_request *hreq;
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struct blob_attr *tb[__HELLO_MAX];
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const char format[] = "%s received a message: %s";
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const char *msgstr = "(unknown)";
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blobmsg_parse(hello_policy, ARRAY_SIZE(hello_policy), tb, blob_data(msg), blob_len(msg));
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if (tb[HELLO_MSG])
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msgstr = blobmsg_data(tb[HELLO_MSG]);
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size_t len = sizeof(*hreq) + sizeof(format) + strlen(obj->name) + strlen(msgstr) + 1;
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hreq = calloc(1, len);
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if (!hreq)
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return UBUS_STATUS_UNKNOWN_ERROR;
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snprintf(hreq->data, len, format, obj->name, msgstr);
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ubus_defer_request(ctx, req, &hreq->req);
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hreq->timeout.cb = test_hello_reply;
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uloop_timeout_set(&hreq->timeout, 1000);
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return 0;
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}
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enum {
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WATCH_ID,
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WATCH_COUNTER,
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__WATCH_MAX
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};
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static const struct blobmsg_policy watch_policy[__WATCH_MAX] = {
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[WATCH_ID] = { .name = "id", .type = BLOBMSG_TYPE_INT32 },
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[WATCH_COUNTER] = { .name = "counter", .type = BLOBMSG_TYPE_INT32 },
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};
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static void
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test_handle_remove(struct ubus_context *ctx, struct ubus_subscriber *s,
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uint32_t id)
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{
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fprintf(stderr, "Object %08x went away\n", id);
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}
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static int
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test_notify(struct ubus_context *ctx, struct ubus_object *obj,
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struct ubus_request_data *req, const char *method,
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struct blob_attr *msg)
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{
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#if 0
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char *str;
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str = blobmsg_format_json(msg, true);
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fprintf(stderr, "Received notification '%s': %s\n", method, str);
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free(str);
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#endif
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return 0;
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}
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static int test_watch(struct ubus_context *ctx, struct ubus_object *obj,
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struct ubus_request_data *req, const char *method,
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struct blob_attr *msg)
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{
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struct blob_attr *tb[__WATCH_MAX];
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int ret;
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blobmsg_parse(watch_policy, __WATCH_MAX, tb, blob_data(msg), blob_len(msg));
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if (!tb[WATCH_ID])
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return UBUS_STATUS_INVALID_ARGUMENT;
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test_event.remove_cb = test_handle_remove;
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test_event.cb = test_notify;
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ret = ubus_subscribe(ctx, &test_event, blobmsg_get_u32(tb[WATCH_ID]));
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fprintf(stderr, "Watching object %08x: %s\n", blobmsg_get_u32(tb[WATCH_ID]), ubus_strerror(ret));
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return ret;
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}
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enum {
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COUNT_TO,
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COUNT_STRING,
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__COUNT_MAX
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};
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static const struct blobmsg_policy count_policy[__COUNT_MAX] = {
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[COUNT_TO] = { .name = "to", .type = BLOBMSG_TYPE_INT32 },
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[COUNT_STRING] = { .name = "string", .type = BLOBMSG_TYPE_STRING },
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};
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static int test_count(struct ubus_context *ctx, struct ubus_object *obj,
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struct ubus_request_data *req, const char *method,
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struct blob_attr *msg)
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{
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struct blob_attr *tb[__COUNT_MAX];
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char *s1, *s2;
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uint32_t num;
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blobmsg_parse(count_policy, __COUNT_MAX, tb, blob_data(msg), blob_len(msg));
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if (!tb[COUNT_TO] || !tb[COUNT_STRING])
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return UBUS_STATUS_INVALID_ARGUMENT;
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num = blobmsg_get_u32(tb[COUNT_TO]);
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s1 = blobmsg_get_string(tb[COUNT_STRING]);
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s2 = count_to_number(num);
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if (!s1 || !s2) {
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free(s2);
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return UBUS_STATUS_UNKNOWN_ERROR;
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}
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blob_buf_init(&b, 0);
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blobmsg_add_u32(&b, "rc", strcmp(s1, s2));
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ubus_send_reply(ctx, req, b.head);
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free(s2);
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return 0;
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}
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static const struct ubus_method test_methods[] = {
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UBUS_METHOD("hello", test_hello, hello_policy),
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UBUS_METHOD("watch", test_watch, watch_policy),
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UBUS_METHOD("count", test_count, count_policy),
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};
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static struct ubus_object_type test_object_type =
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UBUS_OBJECT_TYPE("test", test_methods);
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static struct ubus_object test_object = {
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.name = "test",
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.type = &test_object_type,
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.methods = test_methods,
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.n_methods = ARRAY_SIZE(test_methods),
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};
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static void server_main(void)
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{
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int ret;
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ret = ubus_add_object(ctx, &test_object);
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if (ret)
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fprintf(stderr, "Failed to add object: %s\n", ubus_strerror(ret));
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ret = ubus_register_subscriber(ctx, &test_event);
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if (ret)
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fprintf(stderr, "Failed to add watch handler: %s\n", ubus_strerror(ret));
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uloop_run();
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}
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int main(int argc, char **argv)
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{
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const char *ubus_socket = NULL;
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int ch;
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while ((ch = getopt(argc, argv, "cs:")) != -1) {
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switch (ch) {
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case 's':
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ubus_socket = optarg;
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break;
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default:
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break;
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}
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}
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uloop_init();
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signal(SIGPIPE, SIG_IGN);
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ctx = ubus_connect(ubus_socket);
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if (!ctx) {
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fprintf(stderr, "Failed to connect to ubus\n");
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return -1;
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}
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ubus_add_uloop(ctx);
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server_main();
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ubus_free(ctx);
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uloop_done();
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return 0;
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}
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