mirror of
https://github.com/espressif/esp-idf.git
synced 2024-10-05 20:47:46 -04:00
98d346a81e
Support libcoap build with Client Only or Server Only code.
506 lines
17 KiB
C
506 lines
17 KiB
C
/* CoAP client Example
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This example code is in the Public Domain (or CC0 licensed, at your option.)
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Unless required by applicable law or agreed to in writing, this
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software is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR
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CONDITIONS OF ANY KIND, either express or implied.
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*/
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/*
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* WARNING
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* libcoap is not multi-thread safe, so only this thread must make any coap_*()
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* calls. Any external (to this thread) data transmitted in/out via libcoap
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* therefore has to be passed in/out by xQueue*() via this thread.
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*/
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#include <string.h>
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#include <sys/socket.h>
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#include <netdb.h>
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#include <sys/param.h>
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#include "freertos/FreeRTOS.h"
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#include "freertos/task.h"
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#include "freertos/event_groups.h"
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#include "esp_log.h"
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#include "esp_wifi.h"
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#include "esp_event.h"
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#include "nvs_flash.h"
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#include "protocol_examples_common.h"
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#include "coap3/coap.h"
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#ifndef CONFIG_COAP_CLIENT_SUPPORT
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#error COAP_CLIENT_SUPPORT needs to be enabled
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#endif /* COAP_CLIENT_SUPPORT */
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#define COAP_DEFAULT_TIME_SEC 60
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/* The examples use simple Pre-Shared-Key configuration that you can set via
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'idf.py menuconfig'.
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If you'd rather not, just change the below entries to strings with
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the config you want - ie #define EXAMPLE_COAP_PSK_KEY "some-agreed-preshared-key"
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Note: PSK will only be used if the URI is prefixed with coaps://
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instead of coap:// and the PSK must be one that the server supports
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(potentially associated with the IDENTITY)
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*/
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#define EXAMPLE_COAP_PSK_KEY CONFIG_EXAMPLE_COAP_PSK_KEY
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#define EXAMPLE_COAP_PSK_IDENTITY CONFIG_EXAMPLE_COAP_PSK_IDENTITY
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/* The examples use uri Logging Level that
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you can set via 'idf.py menuconfig'.
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If you'd rather not, just change the below entry to a value
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that is between 0 and 7 with
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the config you want - ie #define EXAMPLE_COAP_LOG_DEFAULT_LEVEL 7
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*/
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#define EXAMPLE_COAP_LOG_DEFAULT_LEVEL CONFIG_COAP_LOG_DEFAULT_LEVEL
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/* The examples use uri "coap://californium.eclipseprojects.io" that
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you can set via the project configuration (idf.py menuconfig)
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If you'd rather not, just change the below entries to strings with
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the config you want - ie #define COAP_DEFAULT_DEMO_URI "coaps://californium.eclipseprojects.io"
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*/
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#define COAP_DEFAULT_DEMO_URI CONFIG_EXAMPLE_TARGET_DOMAIN_URI
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const static char *TAG = "CoAP_client";
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static int resp_wait = 1;
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static coap_optlist_t *optlist = NULL;
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static int wait_ms;
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#ifdef CONFIG_COAP_MBEDTLS_PKI
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/* CA cert, taken from coap_ca.pem
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Client cert, taken from coap_client.crt
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Client key, taken from coap_client.key
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The PEM, CRT and KEY file are examples taken from
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https://github.com/eclipse/californium/tree/master/demo-certs/src/main/resources
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as the Certificate test (by default) is against the californium server.
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To embed it in the app binary, the PEM, CRT and KEY file is named
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in the component.mk COMPONENT_EMBED_TXTFILES variable.
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*/
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extern uint8_t ca_pem_start[] asm("_binary_coap_ca_pem_start");
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extern uint8_t ca_pem_end[] asm("_binary_coap_ca_pem_end");
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extern uint8_t client_crt_start[] asm("_binary_coap_client_crt_start");
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extern uint8_t client_crt_end[] asm("_binary_coap_client_crt_end");
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extern uint8_t client_key_start[] asm("_binary_coap_client_key_start");
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extern uint8_t client_key_end[] asm("_binary_coap_client_key_end");
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#endif /* CONFIG_COAP_MBEDTLS_PKI */
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static coap_response_t
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message_handler(coap_session_t *session,
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const coap_pdu_t *sent,
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const coap_pdu_t *received,
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const coap_mid_t mid)
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{
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const unsigned char *data = NULL;
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size_t data_len;
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size_t offset;
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size_t total;
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coap_pdu_code_t rcvd_code = coap_pdu_get_code(received);
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if (COAP_RESPONSE_CLASS(rcvd_code) == 2) {
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if (coap_get_data_large(received, &data_len, &data, &offset, &total)) {
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if (data_len != total) {
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printf("Unexpected partial data received offset %u, length %u\n", offset, data_len);
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}
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printf("Received:\n%.*s\n", (int)data_len, data);
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resp_wait = 0;
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}
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return COAP_RESPONSE_OK;
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}
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printf("%d.%02d", (rcvd_code >> 5), rcvd_code & 0x1F);
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if (coap_get_data_large(received, &data_len, &data, &offset, &total)) {
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printf(": ");
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while(data_len--) {
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printf("%c", isprint(*data) ? *data : '.');
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data++;
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}
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}
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printf("\n");
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resp_wait = 0;
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return COAP_RESPONSE_OK;
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}
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#ifdef CONFIG_COAP_MBEDTLS_PKI
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static int
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verify_cn_callback(const char *cn,
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const uint8_t *asn1_public_cert,
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size_t asn1_length,
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coap_session_t *session,
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unsigned depth,
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int validated,
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void *arg
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)
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{
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coap_log(LOG_INFO, "CN '%s' presented by server (%s)\n",
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cn, depth ? "CA" : "Certificate");
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return 1;
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}
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#endif /* CONFIG_COAP_MBEDTLS_PKI */
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static void
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coap_log_handler (coap_log_t level, const char *message)
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{
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uint32_t esp_level = ESP_LOG_INFO;
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char *cp = strchr(message, '\n');
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if (cp)
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ESP_LOG_LEVEL(esp_level, TAG, "%.*s", (int)(cp-message), message);
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else
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ESP_LOG_LEVEL(esp_level, TAG, "%s", message);
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}
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static coap_address_t *
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coap_get_address(coap_uri_t *uri)
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{
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static coap_address_t dst_addr;
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char *phostname = NULL;
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struct addrinfo hints;
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struct addrinfo *addrres;
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int error;
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char tmpbuf[INET6_ADDRSTRLEN];
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phostname = (char *)calloc(1, uri->host.length + 1);
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if (phostname == NULL) {
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ESP_LOGE(TAG, "calloc failed");
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return NULL;
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}
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memcpy(phostname, uri->host.s, uri->host.length);
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memset ((char *)&hints, 0, sizeof(hints));
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hints.ai_socktype = SOCK_DGRAM;
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hints.ai_family = AF_UNSPEC;
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error = getaddrinfo(phostname, NULL, &hints, &addrres);
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if (error != 0) {
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ESP_LOGE(TAG, "DNS lookup failed for destination address %s. error: %d", phostname, error);
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free(phostname);
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return NULL;
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}
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if (addrres == NULL) {
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ESP_LOGE(TAG, "DNS lookup %s did not return any addresses", phostname);
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free(phostname);
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return NULL;
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}
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free(phostname);
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coap_address_init(&dst_addr);
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switch (addrres->ai_family) {
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case AF_INET:
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memcpy(&dst_addr.addr.sin, addrres->ai_addr, sizeof(dst_addr.addr.sin));
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dst_addr.addr.sin.sin_port = htons(uri->port);
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inet_ntop(AF_INET, &dst_addr.addr.sin.sin_addr, tmpbuf, sizeof(tmpbuf));
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ESP_LOGI(TAG, "DNS lookup succeeded. IP=%s", tmpbuf);
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break;
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case AF_INET6:
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memcpy(&dst_addr.addr.sin6, addrres->ai_addr, sizeof(dst_addr.addr.sin6));
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dst_addr.addr.sin6.sin6_port = htons(uri->port);
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inet_ntop(AF_INET6, &dst_addr.addr.sin6.sin6_addr, tmpbuf, sizeof(tmpbuf));
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ESP_LOGI(TAG, "DNS lookup succeeded. IP=%s", tmpbuf);
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break;
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default:
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ESP_LOGE(TAG, "DNS lookup response failed");
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return NULL;
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}
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freeaddrinfo(addrres);
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return &dst_addr;
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}
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static int
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coap_build_optlist(coap_uri_t *uri)
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{
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#define BUFSIZE 40
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unsigned char _buf[BUFSIZE];
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unsigned char *buf;
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size_t buflen;
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int res;
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optlist = NULL;
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if (uri->scheme == COAP_URI_SCHEME_COAPS && !coap_dtls_is_supported()) {
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ESP_LOGE(TAG, "MbedTLS DTLS Client Mode not configured");
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return 0;
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}
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if (uri->scheme == COAP_URI_SCHEME_COAPS_TCP && !coap_tls_is_supported()) {
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ESP_LOGE(TAG, "MbedTLS TLS Client Mode not configured");
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return 0;
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}
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if (uri->scheme == COAP_URI_SCHEME_COAP_TCP && !coap_tcp_is_supported()) {
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ESP_LOGE(TAG, "TCP Client Mode not configured");
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return 0;
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}
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if (uri->path.length) {
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buflen = BUFSIZE;
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buf = _buf;
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res = coap_split_path(uri->path.s, uri->path.length, buf, &buflen);
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while (res--) {
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coap_insert_optlist(&optlist,
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coap_new_optlist(COAP_OPTION_URI_PATH,
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coap_opt_length(buf),
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coap_opt_value(buf)));
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buf += coap_opt_size(buf);
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}
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}
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if (uri->query.length) {
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buflen = BUFSIZE;
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buf = _buf;
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res = coap_split_query(uri->query.s, uri->query.length, buf, &buflen);
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while (res--) {
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coap_insert_optlist(&optlist,
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coap_new_optlist(COAP_OPTION_URI_QUERY,
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coap_opt_length(buf),
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coap_opt_value(buf)));
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buf += coap_opt_size(buf);
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}
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}
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return 1;
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}
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#ifdef CONFIG_COAP_MBEDTLS_PSK
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static coap_session_t *
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coap_start_psk_session(coap_context_t *ctx, coap_address_t *dst_addr, coap_uri_t *uri)
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{
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static coap_dtls_cpsk_t dtls_psk;
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static char client_sni[256];
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memset(client_sni, 0, sizeof(client_sni));
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memset (&dtls_psk, 0, sizeof(dtls_psk));
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dtls_psk.version = COAP_DTLS_CPSK_SETUP_VERSION;
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dtls_psk.validate_ih_call_back = NULL;
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dtls_psk.ih_call_back_arg = NULL;
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if (uri->host.length)
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memcpy(client_sni, uri->host.s, MIN(uri->host.length, sizeof(client_sni) - 1));
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else
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memcpy(client_sni, "localhost", 9);
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dtls_psk.client_sni = client_sni;
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dtls_psk.psk_info.identity.s = (const uint8_t *)EXAMPLE_COAP_PSK_IDENTITY;
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dtls_psk.psk_info.identity.length = sizeof(EXAMPLE_COAP_PSK_IDENTITY)-1;
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dtls_psk.psk_info.key.s = (const uint8_t *)EXAMPLE_COAP_PSK_KEY;
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dtls_psk.psk_info.key.length = sizeof(EXAMPLE_COAP_PSK_KEY)-1;
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return coap_new_client_session_psk2(ctx, NULL, dst_addr,
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uri->scheme == COAP_URI_SCHEME_COAPS ? COAP_PROTO_DTLS : COAP_PROTO_TLS,
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&dtls_psk);
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}
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#endif /* CONFIG_COAP_MBEDTLS_PSK */
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#ifdef CONFIG_COAP_MBEDTLS_PKI
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static coap_session_t *
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coap_start_pki_session(coap_context_t *ctx, coap_address_t *dst_addr, coap_uri_t *uri)
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{
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unsigned int ca_pem_bytes = ca_pem_end - ca_pem_start;
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unsigned int client_crt_bytes = client_crt_end - client_crt_start;
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unsigned int client_key_bytes = client_key_end - client_key_start;
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static coap_dtls_pki_t dtls_pki;
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static char client_sni[256];
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memset (&dtls_pki, 0, sizeof(dtls_pki));
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dtls_pki.version = COAP_DTLS_PKI_SETUP_VERSION;
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if (ca_pem_bytes) {
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/*
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* Add in additional certificate checking.
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* This list of enabled can be tuned for the specific
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* requirements - see 'man coap_encryption'.
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*
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* Note: A list of root cas file can be setup separately using
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* coap_context_set_pki_root_cas(), but the below is used to
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* define what checking actually takes place.
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*/
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dtls_pki.verify_peer_cert = 1;
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dtls_pki.check_common_ca = 1;
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dtls_pki.allow_self_signed = 1;
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dtls_pki.allow_expired_certs = 1;
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dtls_pki.cert_chain_validation = 1;
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dtls_pki.cert_chain_verify_depth = 2;
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dtls_pki.check_cert_revocation = 1;
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dtls_pki.allow_no_crl = 1;
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dtls_pki.allow_expired_crl = 1;
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dtls_pki.allow_bad_md_hash = 1;
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dtls_pki.allow_short_rsa_length = 1;
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dtls_pki.validate_cn_call_back = verify_cn_callback;
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dtls_pki.cn_call_back_arg = NULL;
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dtls_pki.validate_sni_call_back = NULL;
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dtls_pki.sni_call_back_arg = NULL;
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memset(client_sni, 0, sizeof(client_sni));
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if (uri->host.length) {
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memcpy(client_sni, uri->host.s, MIN(uri->host.length, sizeof(client_sni)));
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} else {
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memcpy(client_sni, "localhost", 9);
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}
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dtls_pki.client_sni = client_sni;
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}
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dtls_pki.pki_key.key_type = COAP_PKI_KEY_PEM_BUF;
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dtls_pki.pki_key.key.pem_buf.public_cert = client_crt_start;
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dtls_pki.pki_key.key.pem_buf.public_cert_len = client_crt_bytes;
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dtls_pki.pki_key.key.pem_buf.private_key = client_key_start;
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dtls_pki.pki_key.key.pem_buf.private_key_len = client_key_bytes;
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dtls_pki.pki_key.key.pem_buf.ca_cert = ca_pem_start;
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dtls_pki.pki_key.key.pem_buf.ca_cert_len = ca_pem_bytes;
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return coap_new_client_session_pki(ctx, NULL, dst_addr,
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uri->scheme == COAP_URI_SCHEME_COAPS ? COAP_PROTO_DTLS : COAP_PROTO_TLS,
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&dtls_pki);
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}
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#endif /* CONFIG_COAP_MBEDTLS_PKI */
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static void coap_example_client(void *p)
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{
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coap_address_t *dst_addr;
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static coap_uri_t uri;
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const char *server_uri = COAP_DEFAULT_DEMO_URI;
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coap_context_t *ctx = NULL;
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coap_session_t *session = NULL;
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coap_pdu_t *request = NULL;
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unsigned char token[8];
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size_t tokenlength;
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/* Set up the CoAP logging */
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coap_set_log_handler(coap_log_handler);
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coap_set_log_level(EXAMPLE_COAP_LOG_DEFAULT_LEVEL);
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/* Set up the CoAP context */
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ctx = coap_new_context(NULL);
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if (!ctx) {
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ESP_LOGE(TAG, "coap_new_context() failed");
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goto clean_up;
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}
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coap_context_set_block_mode(ctx,
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COAP_BLOCK_USE_LIBCOAP|COAP_BLOCK_SINGLE_BODY);
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coap_register_response_handler(ctx, message_handler);
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if (coap_split_uri((const uint8_t *)server_uri, strlen(server_uri), &uri) == -1) {
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ESP_LOGE(TAG, "CoAP server uri error");
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goto clean_up;
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}
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if (!coap_build_optlist(&uri))
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goto clean_up;
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dst_addr = coap_get_address(&uri);
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if (!dst_addr)
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goto clean_up;
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/*
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* Note that if the URI starts with just coap:// (not coaps://) the
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* session will still be plain text.
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*/
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if (uri.scheme == COAP_URI_SCHEME_COAPS || uri.scheme == COAP_URI_SCHEME_COAPS_TCP) {
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#ifndef CONFIG_MBEDTLS_TLS_CLIENT
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ESP_LOGE(TAG, "MbedTLS (D)TLS Client Mode not configured");
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goto clean_up;
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#endif /* CONFIG_MBEDTLS_TLS_CLIENT */
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#ifdef CONFIG_COAP_MBEDTLS_PSK
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session = coap_start_psk_session(ctx, dst_addr, &uri);
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#endif /* CONFIG_COAP_MBEDTLS_PSK */
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#ifdef CONFIG_COAP_MBEDTLS_PKI
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session = coap_start_pki_session(ctx, dst_addr, &uri);
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#endif /* CONFIG_COAP_MBEDTLS_PKI */
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} else {
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session = coap_new_client_session(ctx, NULL, dst_addr,
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uri.scheme == COAP_URI_SCHEME_COAP_TCP ? COAP_PROTO_TCP :
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COAP_PROTO_UDP);
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}
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if (!session) {
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ESP_LOGE(TAG, "coap_new_client_session() failed");
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goto clean_up;
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}
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while (1) {
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request = coap_new_pdu(coap_is_mcast(dst_addr) ? COAP_MESSAGE_NON : COAP_MESSAGE_CON,
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COAP_REQUEST_CODE_GET, session);
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if (!request) {
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ESP_LOGE(TAG, "coap_new_pdu() failed");
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goto clean_up;
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}
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/* Add in an unique token */
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coap_session_new_token(session, &tokenlength, token);
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coap_add_token(request, tokenlength, token);
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/*
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* To make this a POST, you will need to do the following
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* Change COAP_REQUEST_CODE_GET to COAP_REQUEST_CODE_POST for coap_new_pdu()
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* Add in here a Content-Type Option based on the format of the POST text. E.G. for JSON
|
|
* u_char buf[4];
|
|
* coap_insert_optlist(&optlist,
|
|
* coap_new_optlist(COAP_OPTION_CONTENT_FORMAT,
|
|
* coap_encode_var_safe (buf, sizeof (buf),
|
|
* COAP_MEDIATYPE_APPLICATION_JSON),
|
|
* buf));
|
|
* Add in here the POST data of length length. E.G.
|
|
* coap_add_data_large_request(session, request length, data, NULL, NULL);
|
|
*/
|
|
|
|
coap_add_optlist_pdu(request, &optlist);
|
|
|
|
resp_wait = 1;
|
|
coap_send(session, request);
|
|
|
|
wait_ms = COAP_DEFAULT_TIME_SEC * 1000;
|
|
|
|
while (resp_wait) {
|
|
int result = coap_io_process(ctx, wait_ms > 1000 ? 1000 : wait_ms);
|
|
if (result >= 0) {
|
|
if (result >= wait_ms) {
|
|
ESP_LOGE(TAG, "No response from server");
|
|
break;
|
|
} else {
|
|
wait_ms -= result;
|
|
}
|
|
}
|
|
}
|
|
for(int countdown = 10; countdown >= 0; countdown--) {
|
|
ESP_LOGI(TAG, "%d... ", countdown);
|
|
vTaskDelay(1000 / portTICK_PERIOD_MS);
|
|
}
|
|
ESP_LOGI(TAG, "Starting again!");
|
|
}
|
|
|
|
clean_up:
|
|
if (optlist) {
|
|
coap_delete_optlist(optlist);
|
|
optlist = NULL;
|
|
}
|
|
if (session) {
|
|
coap_session_release(session);
|
|
}
|
|
if (ctx) {
|
|
coap_free_context(ctx);
|
|
}
|
|
coap_cleanup();
|
|
|
|
ESP_LOGI(TAG, "Finished");
|
|
vTaskDelete(NULL);
|
|
}
|
|
|
|
void app_main(void)
|
|
{
|
|
ESP_ERROR_CHECK( nvs_flash_init() );
|
|
ESP_ERROR_CHECK(esp_netif_init());
|
|
ESP_ERROR_CHECK(esp_event_loop_create_default());
|
|
|
|
/* This helper function configures Wi-Fi or Ethernet, as selected in menuconfig.
|
|
* Read "Establishing Wi-Fi or Ethernet Connection" section in
|
|
* examples/protocols/README.md for more information about this function.
|
|
*/
|
|
ESP_ERROR_CHECK(example_connect());
|
|
|
|
xTaskCreate(coap_example_client, "coap", 8 * 1024, NULL, 5, NULL);
|
|
}
|