2023-05-26 15:48:20 +01:00
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// Copyright (c) 2023 Cesanta Software Limited
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2022-05-13 22:15:33 +01:00
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// All rights reserved
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2023-05-26 15:48:20 +01:00
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#include "net.h"
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2022-05-13 22:15:33 +01:00
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2023-05-26 15:48:20 +01:00
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// Authenticated user.
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// A user can be authenticated by:
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// - a name:pass pair, passed in a header Authorization: Basic .....
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// - an access_token, passed in a header Cookie: access_token=....
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// When a user is shown a login screen, she enters a user:pass. If successful,
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// a server responds with a http-only access_token cookie set.
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struct user {
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const char *name, *pass, *access_token;
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};
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// Settings
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struct settings {
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bool log_enabled;
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int log_level;
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long brightness;
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char *device_name;
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};
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static struct settings s_settings = {true, 1, 57, NULL};
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static const char *s_json_header =
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"Content-Type: application/json\r\n"
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"Cache-Control: no-cache\r\n";
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static uint64_t s_boot_timestamp = 0; // Updated by SNTP
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2022-06-03 07:13:08 +01:00
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2023-06-01 13:48:20 +01:00
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// This is for newlib and TLS (mbedTLS)
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2023-06-06 14:35:44 -03:00
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uint64_t mg_now(void) {
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return mg_millis() + s_boot_timestamp;
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2023-06-01 13:48:20 +01:00
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}
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2023-06-19 04:43:55 -04:00
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int ui_event_next(int no, struct ui_event *e) {
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2023-07-25 13:07:28 +01:00
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if (no < 0 || no >= MAX_EVENTS_NO) return 0;
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2023-06-19 04:43:55 -04:00
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2023-08-10 18:59:23 -03:00
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srand((unsigned) no);
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2023-06-19 04:43:55 -04:00
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e->type = (uint8_t) rand() % 4;
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e->prio = (uint8_t) rand() % 3;
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2023-07-25 13:07:28 +01:00
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e->timestamp =
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2023-08-10 18:59:23 -03:00
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(unsigned long) ((int64_t) mg_now() - 86400 * 1000 /* one day back */ +
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2023-07-25 13:07:28 +01:00
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no * 300 * 1000 /* 5 mins between alerts */ +
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1000 * (rand() % 300) /* randomize event time */) /
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2023-08-10 18:59:23 -03:00
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1000UL;
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2023-07-25 13:07:28 +01:00
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mg_snprintf(e->text, MAX_EVENT_TEXT_SIZE, "event#%d", no);
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2023-06-19 04:43:55 -04:00
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return no + 1;
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}
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2023-05-26 15:48:20 +01:00
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// SNTP connection event handler. When we get a response from an SNTP server,
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// adjust s_boot_timestamp. We'll get a valid time from that point on
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static void sfn(struct mg_connection *c, int ev, void *ev_data, void *fn_data) {
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uint64_t *expiration_time = (uint64_t *) c->data;
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if (ev == MG_EV_OPEN) {
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*expiration_time = mg_millis() + 3000; // Store expiration time in 3s
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} else if (ev == MG_EV_SNTP_TIME) {
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uint64_t t = *(uint64_t *) ev_data;
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s_boot_timestamp = t - mg_millis();
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c->is_closing = 1;
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} else if (ev == MG_EV_POLL) {
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if (mg_millis() > *expiration_time) c->is_closing = 1;
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2022-05-13 22:15:33 +01:00
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}
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2023-05-26 15:48:20 +01:00
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(void) fn_data;
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}
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static void timer_sntp_fn(void *param) { // SNTP timer function. Sync up time
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mg_sntp_connect(param, "udp://time.google.com:123", sfn, NULL);
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2022-05-13 22:15:33 +01:00
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}
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// Parse HTTP requests, return authenticated user or NULL
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2023-05-26 15:48:20 +01:00
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static struct user *authenticate(struct mg_http_message *hm) {
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2022-05-13 22:15:33 +01:00
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// In production, make passwords strong and tokens randomly generated
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// In this example, user list is kept in RAM. In production, it can
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// be backed by file, database, or some other method.
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static struct user users[] = {
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2023-05-26 15:48:20 +01:00
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{"admin", "admin", "admin_token"},
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{"user1", "user1", "user1_token"},
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{"user2", "user2", "user2_token"},
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2022-05-13 22:15:33 +01:00
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{NULL, NULL, NULL},
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};
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2023-05-26 15:48:20 +01:00
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char user[64], pass[64];
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struct user *u, *result = NULL;
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2022-05-13 22:15:33 +01:00
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mg_http_creds(hm, user, sizeof(user), pass, sizeof(pass));
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2023-08-24 16:30:08 +01:00
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MG_VERBOSE(("user [%s] pass [%s]", user, pass));
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2023-05-26 15:48:20 +01:00
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2022-05-13 22:15:33 +01:00
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if (user[0] != '\0' && pass[0] != '\0') {
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// Both user and password is set, search by user/password
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2023-05-26 15:48:20 +01:00
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for (u = users; result == NULL && u->name != NULL; u++)
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if (strcmp(user, u->name) == 0 && strcmp(pass, u->pass) == 0) result = u;
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2022-05-13 22:15:33 +01:00
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} else if (user[0] == '\0') {
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// Only password is set, search by token
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2023-05-26 15:48:20 +01:00
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for (u = users; result == NULL && u->name != NULL; u++)
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if (strcmp(pass, u->access_token) == 0) result = u;
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2022-05-13 22:15:33 +01:00
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}
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2023-05-26 15:48:20 +01:00
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return result;
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2022-05-13 22:15:33 +01:00
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}
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2023-05-26 15:48:20 +01:00
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static void handle_login(struct mg_connection *c, struct user *u) {
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char cookie[256];
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mg_snprintf(cookie, sizeof(cookie),
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2023-05-30 11:47:07 -03:00
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"Set-Cookie: access_token=%s; Path=/; "
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"%sHttpOnly; SameSite=Lax; Max-Age=%d\r\n",
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u->access_token, c->is_tls ? "Secure; " : "", 3600 * 24);
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2023-05-26 15:48:20 +01:00
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mg_http_reply(c, 200, cookie, "{%m:%m}", MG_ESC("user"), MG_ESC(u->name));
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2022-05-13 22:15:33 +01:00
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}
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2023-05-26 15:48:20 +01:00
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static void handle_logout(struct mg_connection *c) {
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2023-05-30 11:47:07 -03:00
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char cookie[256];
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mg_snprintf(cookie, sizeof(cookie),
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"Set-Cookie: access_token=; Path=/; "
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"Expires=Thu, 01 Jan 1970 00:00:00 UTC; "
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"%sHttpOnly; Max-Age=0; \r\n",
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c->is_tls ? "Secure; " : "");
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mg_http_reply(c, 200, cookie, "true\n");
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2022-05-23 15:27:19 +01:00
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}
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2023-05-26 15:48:20 +01:00
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static void handle_debug(struct mg_connection *c, struct mg_http_message *hm) {
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int level = mg_json_get_long(hm->body, "$.level", MG_LL_DEBUG);
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mg_log_set(level);
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mg_http_reply(c, 200, "", "Debug level set to %d\n", level);
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}
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2023-05-17 14:26:45 -03:00
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2023-05-26 15:48:20 +01:00
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static size_t print_int_arr(void (*out)(char, void *), void *ptr, va_list *ap) {
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size_t len = 0, num = va_arg(*ap, size_t); // Number of items in the array
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int *arr = va_arg(*ap, int *); // Array ptr
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for (size_t i = 0; i < num; i++) {
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len += mg_xprintf(out, ptr, "%s%d", i == 0 ? "" : ",", arr[i]);
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2022-06-03 07:13:08 +01:00
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}
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2023-05-26 15:48:20 +01:00
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return len;
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2022-06-03 07:13:08 +01:00
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}
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2023-05-26 15:48:20 +01:00
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static void handle_stats_get(struct mg_connection *c) {
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int points[] = {21, 22, 22, 19, 18, 20, 23, 23, 22, 22, 22, 23, 22};
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mg_http_reply(c, 200, s_json_header, "{%m:%d,%m:%d,%m:[%M]}",
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MG_ESC("temperature"), 21, //
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MG_ESC("humidity"), 67, //
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MG_ESC("points"), print_int_arr,
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sizeof(points) / sizeof(points[0]), points);
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2022-06-03 07:13:08 +01:00
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}
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2023-05-26 15:48:20 +01:00
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static size_t print_events(void (*out)(char, void *), void *ptr, va_list *ap) {
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size_t len = 0;
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2023-06-19 04:43:55 -04:00
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struct ui_event ev;
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2023-08-10 18:59:23 -03:00
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int pageno = va_arg(*ap, int);
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2023-06-19 04:43:55 -04:00
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int no = (pageno - 1) * EVENTS_PER_PAGE;
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int end = no + EVENTS_PER_PAGE;
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2023-06-15 06:11:07 -04:00
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2023-06-19 04:43:55 -04:00
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while ((no = ui_event_next(no, &ev)) != 0 && no <= end) {
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2023-05-26 15:48:20 +01:00
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len += mg_xprintf(out, ptr, "%s{%m:%lu,%m:%d,%m:%d,%m:%m}", //
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len == 0 ? "" : ",", //
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2023-07-25 13:07:28 +01:00
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MG_ESC("time"), ev.timestamp, //
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MG_ESC("type"), ev.type, //
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MG_ESC("prio"), ev.prio, //
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2023-06-19 04:43:55 -04:00
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MG_ESC("text"), MG_ESC(ev.text));
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2022-08-20 00:03:15 +01:00
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}
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2023-06-15 06:11:07 -04:00
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2023-05-26 15:48:20 +01:00
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return len;
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2022-08-20 00:03:15 +01:00
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}
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2023-07-25 13:07:28 +01:00
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static void handle_events_get(struct mg_connection *c,
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struct mg_http_message *hm) {
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2023-06-23 07:21:24 -04:00
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int pageno = mg_json_get_long(hm->body, "$.page", 1);
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2023-06-15 06:11:07 -04:00
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mg_http_reply(c, 200, s_json_header, "{%m:[%M], %m:%d}", MG_ESC("arr"),
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2023-06-19 04:43:55 -04:00
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print_events, pageno, MG_ESC("totalCount"), MAX_EVENTS_NO);
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2022-08-20 00:03:15 +01:00
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}
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2023-05-26 15:48:20 +01:00
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static void handle_settings_set(struct mg_connection *c, struct mg_str body) {
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struct settings settings;
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memset(&settings, 0, sizeof(settings));
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mg_json_get_bool(body, "$.log_enabled", &settings.log_enabled);
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settings.log_level = mg_json_get_long(body, "$.log_level", 0);
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settings.brightness = mg_json_get_long(body, "$.brightness", 0);
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char *s = mg_json_get_str(body, "$.device_name");
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2023-05-28 17:06:47 +01:00
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if (s && strlen(s) < MAX_DEVICE_NAME) {
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free(settings.device_name);
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settings.device_name = s;
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} else {
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free(s);
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}
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2023-05-26 15:48:20 +01:00
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// Save to the device flash
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s_settings = settings;
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bool ok = true;
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mg_http_reply(c, 200, s_json_header,
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"{%m:%s,%m:%m}", //
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MG_ESC("status"), ok ? "true" : "false", //
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MG_ESC("message"), MG_ESC(ok ? "Success" : "Failed"));
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}
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static void handle_settings_get(struct mg_connection *c) {
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mg_http_reply(c, 200, s_json_header, "{%m:%s,%m:%hhu,%m:%hhu,%m:%m}", //
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MG_ESC("log_enabled"),
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s_settings.log_enabled ? "true" : "false", //
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MG_ESC("log_level"), s_settings.log_level, //
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MG_ESC("brightness"), s_settings.brightness, //
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MG_ESC("device_name"), MG_ESC(s_settings.device_name));
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}
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2022-12-27 18:12:55 -03:00
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2023-08-24 16:30:08 +01:00
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static void handle_firmware_upload(struct mg_connection *c,
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struct mg_http_message *hm) {
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char name[64], offset[20], total[20];
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struct mg_str data = hm->body;
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long ofs = -1, tot = -1;
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name[0] = offset[0] = '\0';
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mg_http_get_var(&hm->query, "name", name, sizeof(name));
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mg_http_get_var(&hm->query, "offset", offset, sizeof(offset));
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mg_http_get_var(&hm->query, "total", total, sizeof(total));
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MG_INFO(("File %s, offset %s, len %lu", name, offset, data.len));
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if ((ofs = mg_json_get_long(mg_str(offset), "$", -1)) < 0 ||
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(tot = mg_json_get_long(mg_str(total), "$", -1)) < 0) {
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mg_http_reply(c, 500, "", "offset and total not set\n");
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} else if (ofs == 0 && mg_ota_begin((size_t) tot) == false) {
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mg_http_reply(c, 500, "", "mg_ota_begin(%ld) failed\n", tot);
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} else if (data.len > 0 && mg_ota_write(data.ptr, data.len) == false) {
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mg_http_reply(c, 500, "", "mg_ota_write(%lu) @%ld failed\n", data.len, ofs);
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mg_ota_end();
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} else if (data.len == 0 && mg_ota_end() == false) {
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mg_http_reply(c, 500, "", "mg_ota_end() failed\n", tot);
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} else {
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mg_http_reply(c, 200, s_json_header, "true\n");
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if (data.len == 0) {
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// Successful mg_ota_end() called, schedule device reboot
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mg_timer_add(c->mgr, 500, 0, (void (*)(void *)) mg_sys_reset, NULL);
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}
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}
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}
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static void handle_firmware_commit(struct mg_connection *c) {
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mg_http_reply(c, 200, s_json_header, "%s\n",
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mg_ota_commit() ? "true" : "false");
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}
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static void handle_firmware_rollback(struct mg_connection *c) {
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mg_http_reply(c, 200, s_json_header, "%s\n",
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mg_ota_rollback() ? "true" : "false");
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}
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static size_t print_status(void (*out)(char, void *), void *ptr, va_list *ap) {
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struct mg_ota_data *os = va_arg(*ap, struct mg_ota_data *);
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return mg_xprintf(
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out, ptr, "{%m:%s,%m:%c%x%c,%m:%u,%m:%u,%m:%u,%m:%u,%m:%u}",
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MG_ESC("valid"), os->magic == MG_OTA_MAGIC ? "true" : "false",
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MG_ESC("magic"), '"', os->magic, '"', MG_ESC("crc32"), os->crc32,
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MG_ESC("size"), os->size, MG_ESC("time"), os->time, MG_ESC("booted"),
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os->booted, MG_ESC("golden"), os->golden);
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}
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static void handle_firmware_status(struct mg_connection *c) {
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struct mg_ota_data od[2];
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mg_ota_status(od);
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mg_http_reply(c, 200, s_json_header, "[%M,%M]\n", print_status, &od[0],
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print_status, &od[1]);
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}
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static void handle_sys_reset(struct mg_connection *c) {
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mg_http_reply(c, 200, s_json_header, "true\n");
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mg_timer_add(c->mgr, 500, 0, (void (*)(void *)) mg_sys_reset, NULL);
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}
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2022-05-13 22:15:33 +01:00
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// HTTP request handler function
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2023-05-26 15:48:20 +01:00
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static void fn(struct mg_connection *c, int ev, void *ev_data, void *fn_data) {
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2023-09-17 09:07:57 +01:00
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if (ev == MG_EV_ACCEPT) {
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if (fn_data != NULL) { // TLS listener!
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struct mg_tls_opts opts = {0};
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opts.cert = mg_unpacked("/certs/server_cert.pem");
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opts.key = mg_unpacked("/certs/server_key.pem");
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mg_tls_init(c, &opts);
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}
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} else if (ev == MG_EV_HTTP_MSG) {
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2022-05-13 22:15:33 +01:00
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struct mg_http_message *hm = (struct mg_http_message *) ev_data;
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2023-05-26 15:48:20 +01:00
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struct user *u = authenticate(hm);
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2023-04-20 09:59:27 +03:00
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2023-05-26 15:48:20 +01:00
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if (mg_http_match_uri(hm, "/api/#") && u == NULL) {
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mg_http_reply(c, 403, "", "Not Authorised\n");
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2022-05-13 22:15:33 +01:00
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} else if (mg_http_match_uri(hm, "/api/login")) {
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2023-05-26 15:48:20 +01:00
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handle_login(c, u);
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} else if (mg_http_match_uri(hm, "/api/logout")) {
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handle_logout(c);
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} else if (mg_http_match_uri(hm, "/api/debug")) {
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handle_debug(c, hm);
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} else if (mg_http_match_uri(hm, "/api/stats/get")) {
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handle_stats_get(c);
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2023-06-26 10:31:55 -04:00
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} else if (mg_http_match_uri(hm, "/api/events/get")) {
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handle_events_get(c, hm);
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2023-05-26 15:48:20 +01:00
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} else if (mg_http_match_uri(hm, "/api/settings/get")) {
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handle_settings_get(c);
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} else if (mg_http_match_uri(hm, "/api/settings/set")) {
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handle_settings_set(c, hm->body);
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2023-08-24 16:30:08 +01:00
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} else if (mg_http_match_uri(hm, "/api/firmware/upload")) {
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handle_firmware_upload(c, hm);
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} else if (mg_http_match_uri(hm, "/api/firmware/commit")) {
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handle_firmware_commit(c);
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} else if (mg_http_match_uri(hm, "/api/firmware/rollback")) {
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handle_firmware_rollback(c);
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} else if (mg_http_match_uri(hm, "/api/firmware/status")) {
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handle_firmware_status(c);
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} else if (mg_http_match_uri(hm, "/api/sys/reset")) {
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handle_sys_reset(c);
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2022-05-13 22:15:33 +01:00
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} else {
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2022-11-07 15:23:47 -03:00
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struct mg_http_serve_opts opts;
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memset(&opts, 0, sizeof(opts));
|
2023-08-19 10:25:09 +01:00
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#if MG_ARCH == MG_ARCH_UNIX || MG_ARCH == MG_ARCH_WIN32
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opts.root_dir = "web_root"; // On workstations, use filesystem
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2022-05-13 22:15:33 +01:00
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#else
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2023-08-19 10:25:09 +01:00
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opts.root_dir = "/web_root"; // On embedded, use packed files
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opts.fs = &mg_fs_packed;
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2022-05-13 22:15:33 +01:00
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#endif
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mg_http_serve_dir(c, ev_data, &opts);
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}
|
2022-09-09 11:11:53 +01:00
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MG_DEBUG(("%lu %.*s %.*s -> %.*s", c->id, (int) hm->method.len,
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hm->method.ptr, (int) hm->uri.len, hm->uri.ptr, (int) 3,
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&c->send.buf[9]));
|
2022-05-13 22:15:33 +01:00
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}
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}
|
2023-05-26 15:48:20 +01:00
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void web_init(struct mg_mgr *mgr) {
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s_settings.device_name = strdup("My Device");
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|
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mg_http_listen(mgr, HTTP_URL, fn, NULL);
|
2023-09-17 09:07:57 +01:00
|
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|
mg_http_listen(mgr, HTTPS_URL, fn, (void *) 1);
|
2023-05-26 15:48:20 +01:00
|
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|
mg_timer_add(mgr, 3600 * 1000, MG_TIMER_RUN_NOW | MG_TIMER_REPEAT,
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|
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timer_sntp_fn, mgr);
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|
|
|
}
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