mirror of
https://github.com/eddyem/eddys_snippets.git
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183 lines
6.2 KiB
C
183 lines
6.2 KiB
C
/*
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* This file is part of the esp8266 project.
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* Copyright 2025 Edward V. Emelianov <edward.emelianoff@gmail.com>.
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <stdio.h>
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#include <string.h>
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#include <usefull_macros.h>
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#include "esp8266.h"
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#include "serial.h"
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static struct{
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int help;
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char *serialdev;
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char *SSID;
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char *SSpass;
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int speed;
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char *port;
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int reset;
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int list;
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} G = {
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.speed = 115200,
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.serialdev = "/dev/ttyUSB0",
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.port = "1111",
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};
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static sl_option_t options[] = {
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{"help", NO_ARGS, NULL, 'h', arg_int, APTR(&G.help), "show this help"},
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{"device", NEED_ARG, NULL, 'd', arg_string, APTR(&G.serialdev), "serial device path (default: /dev/ttyUSB0)"},
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{"baudrate",NEED_ARG, NULL, 'b', arg_int, APTR(&G.speed), "serial speed"},
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{"ssid", NEED_ARG, NULL, 0, arg_string, APTR(&G.SSID), "SSID to connect"},
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{"pass", NEED_ARG, NULL, 0, arg_string, APTR(&G.SSpass), "SSID password"},
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{"port", NEED_ARG, NULL, 'p', arg_string, APTR(&G.port), "servr port (default: 1111)"},
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{"reset", NO_ARGS, NULL, 0, arg_int, APTR(&G.reset), "reset ESP"},
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{"list", NO_ARGS, NULL, 'l', arg_int, APTR(&G.list), "list available APs"},
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end_option
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};
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void signals(int signo){
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esp_close();
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serial_close();
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exit(signo);
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}
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static esp_clientstat_t parse_message(int fd){
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// this isn't a good idea to send data while not received all; so we use buffer
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static sl_ringbuffer_t *rb = NULL;
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if(!rb) rb = sl_RB_new(4096);
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const char *msg = NULL;
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char buf[4096];
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while((msg = esp_msgline())){
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printf("Received line from fd %d: %s\n", fd, msg);
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// do something with this data
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if(0 == strcmp(msg, "help")){
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sl_RB_writestr(rb, "Hey, we don't have any help yet, try `time`\n");
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}else if(0 == strcmp(msg, "time")){
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snprintf(buf, 64, "TIME=%.3f\n", sl_dtime());
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sl_RB_writestr(rb, buf);
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}else{
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if(*msg){
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snprintf(buf, 127, "Part of your message: _%s_\n", msg);
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sl_RB_writestr(rb, buf);
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}
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}
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}
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size_t L = 4094;
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char *b = buf;
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while(sl_RB_readline(rb, b, L) > 0){ // there's a bug in my library! Need to fix (sl_RB_readline returns NOT an amount of bytes)
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size_t got = strlen(b);
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L -= ++got;
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b += got;
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b[-1] = '\n';
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}
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if(L == 4094) return ESP_CLT_OK; // nothing to send
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return esp_send(fd, buf) ? ESP_CLT_OK : ESP_CLT_ERROR;
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}
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static void processing(){
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uint8_t connected[ESP_MAX_CLT_NUMBER] = {0};
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esp_clientstat_t oldstat[ESP_MAX_CLT_NUMBER] = {0};
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double T0 = sl_dtime();
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int N = -1;
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void chkerr(){
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if(oldstat[N] == ESP_CLT_ERROR){
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DBG("error again -> turn off");
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connected[N] = 0;
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}
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}
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while(1){
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esp_clientstat_t s = esp_process(&N);
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if(N > -1 && N < ESP_MAX_CLT_NUMBER){ // parsing
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//if(s == ESP_CLT_IDLE){ usleep(1000); continue; }
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switch(s){
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case ESP_CLT_CONNECTED:
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connected[N] = 1;
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green("Connection on fd=%d\n", N);
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break;
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case ESP_CLT_DISCONNECTED:
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connected[N] = 0;
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green("fd=%d disconnected\n", N);
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break;
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case ESP_CLT_ERROR:
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DBG("Error from %d", N);
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chkerr();
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break;
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case ESP_CLT_GETMESSAGE:
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DBG("%d have message", N);
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s = parse_message(N);
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if(s == ESP_CLT_ERROR) chkerr();
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break;
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default: break;
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}
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oldstat[N] = s;
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}
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// and here we can do something for all
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int R = rand() % 5000;
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// example of `broadcast` message
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if(R < 2){
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DBG("Send 'broadcasting' message");
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char buf[64];
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snprintf(buf, 63, "Hello, there's %.2f seconds from start\n", sl_dtime() - T0);
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for(int i = 0; i < ESP_MAX_CLT_NUMBER; ++i){
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if(!connected[i]) continue;
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if(ESP_CLT_ERROR == esp_send(i, buf)) chkerr();
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}
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}
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usleep(1000);
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}
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}
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int main(int argc, char **argv){
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sl_init();
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sl_parseargs(&argc, &argv, options);
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if(G.help) sl_showhelp(-1, options);
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if(!serial_init(G.serialdev, G.speed)) ERRX("Can't open %s at speed %d", G.serialdev, G.speed);
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if(G.reset){
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red("Resetting, please wait!\n");
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esp_reset();
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usleep(500000);
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DBG("Get buff");
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char *str;
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while((str = serial_getline(NULL, NULL))) if(*str) printf("\t%s\n", str);
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signals(0);
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}
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if(!esp_check()) ERRX("No answer from ESP");
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if(G.list){
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if(esp_listAP()){
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green("Available wifi:\n");
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char *str;
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while(str = serial_getline(NULL, NULL)) printf("\t%s\n", str);
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}else WARNX("Error listing");
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}
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esp_cipstatus_t st = esp_cipstatus();
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if(st != ESP_CIP_GOTIP && st != ESP_CIP_CONNECTED){
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DBG("Need to connect");
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if(!esp_connect(G.SSID, G.SSpass)) ERRX("Can't connect");
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}
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if(esp_myip()){
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green("Connected\n");
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char *str;
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while(str = serial_getline(NULL, NULL)) if(*str) printf("\t%s\n", str);
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}
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ep_stop_server(); // stop just in case
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if(!esp_start_server(G.port)) ERRX("Can't start server");
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processing();
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serial_close();
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return 0;
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}
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