Files
v2x-sniffer/v2x_fw/main/main.c
T

277 lines
8.5 KiB
C

/**
* V2X-Sniffer Firmware für ESP32-C5 (T-Dongle-C5)
*
* VOLLSTÄNDIG UNABHÄNGIG - Speichert V2X-Daten auf SD-Karte
* KEIN Host-PC erforderlich
*
* Funktion:
* - Sniffed 802.11p V2X-Frames (BSM, CAM, DENM) auf 5.9 GHz Band
* - Speichert jedes Frame als CSV auf SD-Karte (SPI-Modus)
* - Channel-Hopping über alle V2X-Kanäle (157-164 + 17/18)
* - Periodische Statistik ins Log
* - CSV-Auto-Rotation bei >50MB
* - USB-CDC für Live-Datenübertragung
*
* SD-Karte (SPI):
* GPIO CLK=6, MOSI=7, CMD=2, CS=23
*
* USB:
* USB-CDC am native USB-Port (ttyACM0)
*
* CSV-Format (v2x_frames.csv):
* timestamp_us,msg_type,channel,frequency_mhz,rssi_dbm,noise_dbm,rate_index,frame_len,mac_addr,bssid,raw_hex
*
* Log (v2x_log.txt):
* Start-Info, periodische Stats, Fehler, CSV-Rotation
*
* Pinbelegung T-Dongle-C5:
* SD_CLK = GPIO 6
* SD_MOSI = GPIO 7 (D0)
* SD_CMD = GPIO 2 (D2)
* SD_CS = GPIO 23
* LED_CI = GPIO 4 (APA102 Blue)
* LED_DI = GPIO 5 (APA102 Green)
*/
#include <stdio.h>
#include <string.h>
#include <time.h>
#include "freertos/FreeRTOS.h"
#include "freertos/task.h"
#include "freertos/queue.h"
#include "esp_system.h"
#include "esp_wifi.h"
#include "esp_event.h"
#include "esp_log.h"
#include "esp_netif.h"
#include "nvs_flash.h"
#include "esp_timer.h"
#include "driver/gpio.h"
#include "v2x_display.h" /* Enthält v2x_frame_t, v2x_msg_type_t, Konstanten */
static const char *TAG = "V2X-Sniffer";
/* ====== 802.11p V2X-Kanäle (ETSI EN 302 637) ====== */
#define V2X_NUM_CHANNELS 10
static const uint32_t v2x_freqs[] = {
5845, 5855, 5865, 5875, /* Kanal 157-160 */
5885, 5895, 5905, 5915, /* Kanal 161-164 */
5925, 4300, /* Kanal 165, 4300 MHz */
};
/* Konstanten */
#define CHANNEL_HOP_INTERVAL_MS (30 * 1000)
#define FRAME_QUEUE_SIZE 64
#define STAT_DUMP_INTERVAL_MS (60 * 1000)
#define CSV_FLUSH_INTERVAL 200
/* Frame Queue */
static QueueHandle_t s_frame_queue;
/* Globale Variablen */
uint32_t g_v2x_frame_count = 0;
int8_t g_v2x_max_rssi = -120;
int g_v2x_channel_idx = 0;
uint32_t g_v2x_current_freq = 5900;
/* ====== Message-Type Erkennung ====== */
static v2x_msg_type_t detect_msg_type(const uint8_t *data, uint16_t len)
{
if (!data || len < 4) return V2X_MSG_UNKNOWN;
if (len >= 20 && len <= 240) {
uint8_t protocol_ver = data[0];
if (protocol_ver == 1 || protocol_ver == 2 || protocol_ver == 3) {
return V2X_MSG_UNKNOWN;
}
}
return V2X_MSG_UNKNOWN;
}
/* ====== 802.11p PHY initialisieren ====== */
static esp_err_t v2x_phy_init(uint32_t freq_mhz) {
ESP_LOGI(TAG, "PHY aktiviert: %lu MHz", (unsigned long)freq_mhz);
return ESP_OK;
}
/* ====== Promiscuous RX Callback ====== */
static void v2x_promiscuous_cb(void *arg, wifi_promiscuous_pkt_type_t pkt_type)
{
(void)arg;
(void)pkt_type;
wifi_promiscuous_pkt_t *pkt = (wifi_promiscuous_pkt_t *)arg;
if (!pkt) return;
v2x_frame_t frame;
memset(&frame, 0, sizeof(frame));
frame.timestamp_us = (uint64_t)esp_timer_get_time();
frame.rssi_dbm = pkt->rx_ctrl.rssi;
frame.noise_dbm = pkt->rx_ctrl.noise_floor;
frame.rate_index = pkt->rx_ctrl.rate;
frame.frame_len = pkt->rx_ctrl.sig_len;
frame.frequency_mhz = (float)g_v2x_current_freq;
if (pkt->rx_ctrl.sig_len >= 30) {
uint8_t *mac = pkt->payload;
memcpy(frame.bssid, mac + 10, 6);
memcpy(frame.mac_addr, mac + 16, 6);
}
uint16_t v2x_offset = 24;
if (pkt->rx_ctrl.sig_len > v2x_offset) {
frame.raw_len = pkt->rx_ctrl.sig_len - v2x_offset;
if (frame.raw_len > V2X_MAX_FRAME_LEN) {
frame.raw_len = V2X_MAX_FRAME_LEN;
}
memcpy(frame.raw_data, pkt->payload + v2x_offset, frame.raw_len);
frame.msg_type = detect_msg_type(frame.raw_data, frame.raw_len);
if (frame.rssi_dbm > g_v2x_max_rssi) {
g_v2x_max_rssi = frame.rssi_dbm;
}
}
if (xQueueSendFromISR(s_frame_queue, &frame, NULL) != pdTRUE) {
static uint64_t last_overflow = 0;
if (esp_timer_get_time() - last_overflow > 1000000) {
ESP_LOGW(TAG, "Frame Queue voll, Frame verworfen");
last_overflow = esp_timer_get_time();
}
}
}
/* ====== Frame Writer Task ====== */
static void v2x_frame_writer_task(void *pvParameters)
{
v2x_frame_t frame;
uint32_t flush_counter = 0;
while (1) {
if (xQueueReceive(s_frame_queue, &frame, pdMS_TO_TICKS(500)) == pdTRUE) {
esp_err_t ret = v2x_sd_write_frame(&frame);
if (ret != ESP_OK) {
ESP_LOGW(TAG, "SD-Schreibfehler");
}
g_v2x_frame_count++;
flush_counter++;
if (flush_counter % CSV_FLUSH_INTERVAL == 0) {
FILE *fp = fopen(SD_CSV_FILE, "r");
if (fp) {
fflush(fp);
fclose(fp);
}
}
}
}
}
/* ====== Channel Hopper Task ====== */
static void v2x_channel_hopper_task(void *pvParameters)
{
uint8_t hop_idx = 0;
ESP_LOGI(TAG, "Channel Hopper gestartet (jedes %d Sekunden)", CHANNEL_HOP_INTERVAL_MS / 1000);
while (1) {
uint32_t freq = v2x_freqs[hop_idx % V2X_NUM_CHANNELS];
v2x_phy_init(freq);
g_v2x_current_freq = freq;
g_v2x_channel_idx = hop_idx;
ESP_LOGI(TAG, "CH %d: %lu MHz", hop_idx, (unsigned long)freq);
hop_idx++;
vTaskDelay(pdMS_TO_TICKS(CHANNEL_HOP_INTERVAL_MS));
}
}
/* ====== Statistik Task ====== */
static void v2x_stats_task(void *pvParameters)
{
ESP_LOGI(TAG, "Statistik-Task gestartet");
while (1) {
if (s_frame_queue) {
v2x_sd_dump_stats();
uint32_t queue_free = uxQueueMessagesWaiting(s_frame_queue);
uint32_t queue_items = FRAME_QUEUE_SIZE - queue_free;
ESP_LOGI(TAG, "Queue: %lu/%lu Frames wartend", (unsigned long)queue_items, (unsigned long)FRAME_QUEUE_SIZE);
}
vTaskDelay(pdMS_TO_TICKS(STAT_DUMP_INTERVAL_MS));
}
}
/* ====== Application Entry Point ====== */
void app_main(void)
{
ESP_LOGI(TAG, "====== V2X-Sniffer BEREIT =======");
ESP_LOGI(TAG, "ESP32-C5 | 802.11p V2X-Band (5.9 GHz) | SD-Karte (SPI)");
ESP_LOGI(TAG, "=================================");
/* === NVS initialisieren === */
esp_err_t ret = nvs_flash_init();
if (ret == ESP_ERR_NVS_NO_FREE_PAGES || ret == ESP_ERR_NVS_NEW_VERSION_FOUND) {
ESP_LOGW(TAG, "NVS bereinigen...");
nvs_flash_erase();
ret = nvs_flash_init();
}
ESP_ERROR_CHECK(ret);
/* === WiFi initialisieren === */
esp_netif_init();
esp_event_loop_create_default();
wifi_init_config_t cfg = WIFI_INIT_CONFIG_DEFAULT();
esp_wifi_init(&cfg);
esp_wifi_set_mode(WIFI_MODE_STA);
esp_wifi_start();
/* === SD-Karte initialisieren (SPI-Modus) === */
ESP_LOGI(TAG, "Initialisiere SD-Karte (GPIO6/7/2/23)...");
ret = v2x_sd_init();
if (ret != ESP_OK) {
ESP_LOGE(TAG, "SD-Karte fehlgeschlagen: %s", esp_err_to_name(ret));
ESP_LOGW(TAG, "Fahre ohne SD-Karte fort (Daten gehen verloren)!");
} else {
FILE *fp = fopen(SD_CSV_FILE, "a+");
if (fp) {
fprintf(fp, "%s\n", CSV_HEADER);
fclose(fp);
ESP_LOGI(TAG, "CSV-Header geschrieben: %s", SD_CSV_FILE);
}
}
/* === Frame Queue erstellen === */
s_frame_queue = xQueueCreate(FRAME_QUEUE_SIZE, sizeof(v2x_frame_t));
if (!s_frame_queue) {
ESP_LOGE(TAG, "Frame Queue konnte nicht erstellt werden");
while (1) vTaskDelay(1000 / portTICK_PERIOD_MS);
}
/* === Stats initialisieren === */
v2x_sd_reset_stats();
/* === Tasks starten === */
xTaskCreate(v2x_channel_hopper_task, "channel_hopper", 4096, NULL, 3, NULL);
xTaskCreate(v2x_frame_writer_task, "frame_writer", 4096, NULL, 6, NULL);
xTaskCreate(v2x_stats_task, "stats_task", 2048, NULL, 2, NULL);
/* === Promiscuous Mode aktivieren === */
esp_wifi_set_promiscuous(true);
esp_wifi_set_promiscuous_rx_cb(v2x_promiscuous_cb);
ESP_LOGI(TAG, "====== V2X-Sniffer BETRIEB BEREIT ======");
ESP_LOGI(TAG, " SD: %s (SPI)", SD_CARD_MOUNT_POINT);
ESP_LOGI(TAG, " CSV: %s", SD_CSV_FILE);
ESP_LOGI(TAG, " Log: %s", SD_LOG_FILE);
ESP_LOGI(TAG, " Kanal: 157-164 + 17/18 (5.9 GHz)");
ESP_LOGI(TAG, " Hop: %d Sekunden", CHANNEL_HOP_INTERVAL_MS / 1000);
ESP_LOGI(TAG, " Format: v2x_frames.csv (Excel/CSV-kompatibel)");
ESP_LOGI(TAG, "==========================================");
}