mirror of
https://github.com/sle118/squeezelite-esp32.git
synced 2025-12-06 11:36:59 +03:00
421 lines
11 KiB
C
421 lines
11 KiB
C
/**
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* Test the telnet functions.
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*
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* Perform a test using the telnet functions.
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* This code exports two new global functions:
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*
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* void telnet_listenForClients(void (*callback)(uint8_t *buffer, size_t size))
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* void telnet_sendData(uint8_t *buffer, size_t size)
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*
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* For additional details and documentation see:
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* * Free book on ESP32 - https://leanpub.com/kolban-ESP32
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*
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*
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* Neil Kolban <kolban1@kolban.com>
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*
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* ****************************
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* Additional portions were taken from
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* https://github.com/PocketSprite/8bkc-sdk/blob/master/8bkc-components/8bkc-hal/vfs-stdout.c
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*
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*/
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#include <stdlib.h> // Required for libtelnet.h
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#include <esp_log.h>
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#include "libtelnet.h"
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#include "stdbool.h"
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#include <lwip/def.h>
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#include <lwip/sockets.h>
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#include <errno.h>
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#include <string.h>
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#include "sdkconfig.h"
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#include "freertos/ringbuf.h"
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#include "esp_app_trace.h"
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#include "telnet.h"
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#include "esp_vfs.h"
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#include "esp_vfs_dev.h"
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#include "esp_attr.h"
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#include "soc/uart_struct.h"
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#include "driver/uart.h"
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#include "config.h"
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#include "nvs_utilities.h"
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#include "platform_esp32.h"
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#define TELNET_STACK_SIZE 8048
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RingbufHandle_t buf_handle;
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SemaphoreHandle_t xSemaphore = NULL;
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static size_t send_chunk=300;
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static size_t log_buf_size=2000; //32-bit aligned size
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static bool bIsEnabled=false;
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const static char tag[] = "telnet";
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int _log_vprintf(const char *fmt, va_list args);
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void telnet_esp32_listenForClients();
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int telnet_esp32_vprintf(const char *fmt, va_list va);
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static void telnetTask(void *data);
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static int uart_fd=0;
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// The global tnHandle ... since we are only processing ONE telnet
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// client at a time, this can be a global static.
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static telnet_t *tnHandle;
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static void handleLogBuffer(int partnerSocket, UBaseType_t bytes);
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struct telnetUserData {
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int sockfd;
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};
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static void telnetTask(void *data) {
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ESP_LOGD(tag, ">> telnetTask");
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telnet_esp32_listenForClients();
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ESP_LOGD(tag, "<< telnetTask");
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vTaskDelete(NULL);
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}
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void start_telnet(void * pvParameter){
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static bool isStarted=false;
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StaticTask_t *xTaskBuffer = (StaticTask_t*) heap_caps_malloc(sizeof(StaticTask_t), MALLOC_CAP_INTERNAL | MALLOC_CAP_8BIT);
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StackType_t *xStack = malloc(TELNET_STACK_SIZE);
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if(!isStarted && bIsEnabled) {
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// xTaskCreatePinnedToCore(&telnetTask, "telnet", 8048, NULL, 5, NULL, 0);
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xTaskCreateStatic( (TaskFunction_t) &telnetTask, "telnet", TELNET_STACK_SIZE, NULL, ESP_TASK_PRIO_MIN + 1, xStack, xTaskBuffer);
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isStarted=true;
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}
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}
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static ssize_t stdout_write(int fd, const void * data, size_t size) {
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if (xSemaphoreTake(xSemaphore, (TickType_t) 10) == pdTRUE) {
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// #1 Write to ringbuffer
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if (buf_handle == NULL) {
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printf("%s() ABORT. file handle _log_remote_fp is NULL\n",
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__FUNCTION__);
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} else {
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//Send an item
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UBaseType_t res = xRingbufferSend(buf_handle, data, size,
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pdMS_TO_TICKS(100));
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if (res != pdTRUE) {
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// flush some entries
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handleLogBuffer(0, size);
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res = xRingbufferSend(buf_handle, data, size,
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pdMS_TO_TICKS(100));
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if (res != pdTRUE) {
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printf("%s() ABORT. Unable to store log entry in buffer\n",
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__FUNCTION__);
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}
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}
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}
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xSemaphoreGive(xSemaphore);
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} else {
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// We could not obtain the semaphore and can therefore not access
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// the shared resource safely.
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}
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return write(uart_fd, data, size);
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}
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static ssize_t stdout_read(int fd, void* data, size_t size) {
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return read(fd, data, size);
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}
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static int stdout_open(const char * path, int flags, int mode) {
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return 0;
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}
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static int stdout_close(int fd) {
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return 0;
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}
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static int stdout_fstat(int fd, struct stat * st) {
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st->st_mode = S_IFCHR;
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return 0;
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}
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void kchal_stdout_register() {
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const esp_vfs_t vfs = {
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.flags = ESP_VFS_FLAG_DEFAULT,
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.write = &stdout_write,
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.open = &stdout_open,
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.fstat = &stdout_fstat,
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.close = &stdout_close,
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.read = &stdout_read,
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};
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uart_fd=open("/dev/uart/0", O_RDWR);
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ESP_ERROR_CHECK(esp_vfs_register("/dev/pkspstdout", &vfs, NULL));
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freopen("/dev/pkspstdout", "w", stdout);
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freopen("/dev/pkspstdout", "w", stderr);
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//printf("8bkc_hal_stdout_register: Custom stdout/stderr handler installed.\n");
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}
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/*********************************
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* Telnet Support
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*/
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void init_telnet(){
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char *val= get_nvs_value_alloc(NVS_TYPE_STR, "telnet_enable");
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if (!val || !strcasestr("YX",val) ) {
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ESP_LOGI(tag,"Telnet support disabled");
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if(val) free(val);
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return;
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}
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val=get_nvs_value_alloc(NVS_TYPE_STR, "telnet_block");
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if(val){
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send_chunk=atol(val);
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free(val);
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send_chunk=send_chunk>0?send_chunk:500;
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}
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val=get_nvs_value_alloc(NVS_TYPE_STR, "telnet_buffer");
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if(val){
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log_buf_size=atol(val);
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free(val);
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log_buf_size=log_buf_size>0?log_buf_size:4000;
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}
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bIsEnabled=true;
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// Create the semaphore to guard a shared resource.
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vSemaphoreCreateBinary( xSemaphore );
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// First thing we need to do here is to redirect the output to our telnet handler
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//Allocate ring buffer data structure and storage area into external RAM
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StaticRingbuffer_t *buffer_struct = (StaticRingbuffer_t *)heap_caps_malloc(sizeof(StaticRingbuffer_t), MALLOC_CAP_SPIRAM);
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uint8_t *buffer_storage = (uint8_t *)heap_caps_malloc(sizeof(uint8_t)*log_buf_size, MALLOC_CAP_SPIRAM);
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//Create a ring buffer with manually allocated memory
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buf_handle = xRingbufferCreateStatic(log_buf_size, RINGBUF_TYPE_BYTEBUF, buffer_storage, buffer_struct);
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if (buf_handle == NULL) {
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ESP_LOGE(tag,"Failed to create ring buffer for telnet!");
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return;
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}
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ESP_LOGI(tag, "***Redirecting log output to telnet");
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//esp_log_set_vprintf(&_log_vprintf);
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kchal_stdout_register();
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}
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/**
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* Convert a telnet event type to its string representation.
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*/
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static char *eventToString(telnet_event_type_t type) {
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switch(type) {
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case TELNET_EV_COMPRESS:
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return "TELNET_EV_COMPRESS";
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case TELNET_EV_DATA:
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return "TELNET_EV_DATA";
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case TELNET_EV_DO:
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return "TELNET_EV_DO";
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case TELNET_EV_DONT:
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return "TELNET_EV_DONT";
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case TELNET_EV_ENVIRON:
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return "TELNET_EV_ENVIRON";
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case TELNET_EV_ERROR:
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return "TELNET_EV_ERROR";
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case TELNET_EV_IAC:
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return "TELNET_EV_IAC";
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case TELNET_EV_MSSP:
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return "TELNET_EV_MSSP";
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case TELNET_EV_SEND:
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return "TELNET_EV_SEND";
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case TELNET_EV_SUBNEGOTIATION:
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return "TELNET_EV_SUBNEGOTIATION";
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case TELNET_EV_TTYPE:
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return "TELNET_EV_TTYPE";
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case TELNET_EV_WARNING:
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return "TELNET_EV_WARNING";
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case TELNET_EV_WILL:
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return "TELNET_EV_WILL";
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case TELNET_EV_WONT:
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return "TELNET_EV_WONT";
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case TELNET_EV_ZMP:
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return "TELNET_EV_ZMP";
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}
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return "Unknown type";
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} // eventToString
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/**
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* Send data to the telnet partner.
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*/
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void telnet_esp32_sendData(uint8_t *buffer, size_t size) {
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if (tnHandle != NULL) {
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telnet_send(tnHandle, (char *)buffer, size);
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}
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} // telnet_esp32_sendData
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/**
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* Send a vprintf formatted output to the telnet partner.
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*/
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int telnet_esp32_vprintf(const char *fmt, va_list va) {
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if (tnHandle == NULL) {
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return 0;
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}
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return telnet_vprintf(tnHandle, fmt, va);
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} // telnet_esp32_vprintf
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/**
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* Telnet handler.
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*/
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void processReceivedData(const char * buffer, size_t size){
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//ESP_LOGD(tag, "received data, len=%d", event->data.size);
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char * command = malloc(size+1);
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memcpy(command,buffer,size);
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command[size]='\0';
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// todo: implement conditional remote echo
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//telnet_esp32_sendData((uint8_t *)command, size);
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if(command[0]!='\r' && command[0]!='\n'){
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// some telnet clients will send data and crlf in two separate buffers
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printf(command);
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printf("\r\n");
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run_command((char *)command);
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}
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free(command);
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}
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static void telnetHandler(
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telnet_t *thisTelnet,
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telnet_event_t *event,
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void *userData) {
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int rc;
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struct telnetUserData *telnetUserData = (struct telnetUserData *)userData;
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switch(event->type) {
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case TELNET_EV_SEND:
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rc = send(telnetUserData->sockfd, event->data.buffer, event->data.size, 0);
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if (rc < 0) {
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//printf("ERROR: (telnet) send: %d (%s)", errno, strerror(errno));
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}
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break;
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case TELNET_EV_DATA:
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processReceivedData(event->data.buffer, event->data.size);
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break;
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default:
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printf("telnet event: %s\n", eventToString(event->type));
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break;
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} // End of switch event type
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} // myTelnetHandler
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static void handleLogBuffer(int partnerSocket, UBaseType_t count){
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//Receive an item from no-split ring buffer
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size_t item_size;
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UBaseType_t uxItemsWaiting;
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UBaseType_t uxBytesToSend=count;
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vRingbufferGetInfo(buf_handle, NULL, NULL, NULL, &uxItemsWaiting);
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if( partnerSocket ==0 && (uxItemsWaiting*100 / log_buf_size) <75){
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// We still have some room in the ringbuffer and there's no telnet
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// connection yet, so bail out for now.
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//printf("%s() Log buffer used %u of %u bytes used\n", __FUNCTION__, uxItemsWaiting, log_buf_size);
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return;
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}
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while(uxBytesToSend>0){
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char *item = (char *)xRingbufferReceiveUpTo(buf_handle, &item_size, pdMS_TO_TICKS(50), uxBytesToSend);
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//Check received data
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if (item != NULL) {
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uxBytesToSend-=item_size;
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if(partnerSocket!=0)
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telnet_esp32_sendData((uint8_t *)item, item_size);
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else{
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//printf("%s() flushing %u bytes from log buffer\n", __FUNCTION__, item_size);
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}
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//Return Item
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vRingbufferReturnItem(buf_handle, (void *)item);
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}
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else{
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break;
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}
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}
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}
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static void doTelnet(int partnerSocket) {
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//ESP_LOGD(tag, ">> doTelnet");
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static const telnet_telopt_t my_telopts[] = {
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{ TELNET_TELOPT_ECHO, TELNET_WILL, TELNET_DONT },
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{ TELNET_TELOPT_TTYPE, TELNET_WILL, TELNET_DONT },
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{ TELNET_TELOPT_COMPRESS2, TELNET_WONT, TELNET_DO },
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{ TELNET_TELOPT_ZMP, TELNET_WONT, TELNET_DO },
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{ TELNET_TELOPT_MSSP, TELNET_WONT, TELNET_DO },
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{ TELNET_TELOPT_BINARY, TELNET_WILL, TELNET_DO },
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{ TELNET_TELOPT_NAWS, TELNET_WILL, TELNET_DONT },
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{ -1, 0, 0 }
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};
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struct telnetUserData *pTelnetUserData = (struct telnetUserData *)malloc(sizeof(struct telnetUserData));
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pTelnetUserData->sockfd = partnerSocket;
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tnHandle = telnet_init(my_telopts, telnetHandler, 0, pTelnetUserData);
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uint8_t buffer[1024];
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while(1) {
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//ESP_LOGD(tag, "waiting for data");
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ssize_t len = recv(partnerSocket, (char *)buffer, sizeof(buffer), MSG_DONTWAIT);
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if (len >0 ) {
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//ESP_LOGD(tag, "received %d bytes", len);
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telnet_recv(tnHandle, (char *)buffer, len);
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}
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else if (errno != EAGAIN && errno !=EWOULDBLOCK ){
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telnet_free(tnHandle);
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tnHandle = NULL;
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free(pTelnetUserData);
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return;
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}
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handleLogBuffer(partnerSocket, send_chunk);
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taskYIELD();
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}
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} // doTelnet
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/**
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* Listen for telnet clients and handle them.
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*/
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void telnet_esp32_listenForClients() {
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//ESP_LOGD(tag, ">> telnet_listenForClients");
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int serverSocket = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP);
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struct sockaddr_in serverAddr;
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serverAddr.sin_family = AF_INET;
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serverAddr.sin_addr.s_addr = htonl(INADDR_ANY);
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serverAddr.sin_port = htons(23);
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int rc = bind(serverSocket, (struct sockaddr *)&serverAddr, sizeof(serverAddr));
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if (rc < 0) {
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ESP_LOGE(tag, "bind: %d (%s)", errno, strerror(errno));
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return;
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}
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rc = listen(serverSocket, 5);
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if (rc < 0) {
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ESP_LOGE(tag, "listen: %d (%s)", errno, strerror(errno));
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return;
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}
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while(1) {
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socklen_t len = sizeof(serverAddr);
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rc = accept(serverSocket, (struct sockaddr *)&serverAddr, &len);
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if (rc < 0 ){
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ESP_LOGE(tag, "accept: %d (%s)", errno, strerror(errno));
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return;
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}
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else {
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int partnerSocket = rc;
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ESP_LOGD(tag, "We have a new client connection!");
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doTelnet(partnerSocket);
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ESP_LOGD(tag, "Telnet connection terminated");
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}
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}
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} // listenForNewClient
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