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372 lines
8.7 KiB
372 lines
8.7 KiB
#include <esp8266.h>
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#include <httpd.h>
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#include <cgiwebsocket.h>
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#include "cgi_sockets.h"
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#include "screen.h"
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#include "uart_buffer.h"
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#include "ansi_parser.h"
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#include "jstring.h"
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#include "uart_driver.h"
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// Heartbeat interval in ms
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#define HB_TIME 1000
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// Buffer size (sent in one go)
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// Must be less than httpd sendbuf
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#define SOCK_BUF_LEN 2000
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volatile ScreenNotifyTopics pendingBroadcastTopics = 0;
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// flags for screen update timeouts
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volatile bool notify_available = true;
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volatile bool notify_cooldown = false;
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/** True if we sent XOFF to browser to stop uploading,
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* and we have to tell it we're ready again */
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volatile bool browser_wants_xon = false;
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static ETSTimer updateNotifyTim;
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static ETSTimer notifyCooldownTim;
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static ETSTimer heartbeatTim;
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volatile int term_active_clients = 0;
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// we're trying to do a kind of mutex here, without the actual primitives
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// this might glitch, very rarely.
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// it's recommended to put some delay between setting labels and updating the screen.
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static void resetHeartbeatTimer(void);
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/**
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* Cooldown delay is over
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* @param arg
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*/
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static void ICACHE_FLASH_ATTR
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notifyCooldownTimCb(void *arg)
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{
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notify_cooldown = false;
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}
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/**
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* Tell browser we have new content
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* @param arg
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*/
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static void ICACHE_FLASH_ATTR
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updateNotify_do(Websock *ws, ScreenNotifyTopics topics)
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{
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void *data = NULL;
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char sock_buff[SOCK_BUF_LEN];
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notify_available = false;
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for (int i = 0; i < 20; i++) {
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if (! ws) {
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// broadcast
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topics = pendingBroadcastTopics;
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pendingBroadcastTopics = 0;
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}
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httpd_cgi_state cont = screenSerializeToBuffer(sock_buff, SOCK_BUF_LEN, topics, &data);
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int flg = 0;
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if (cont == HTTPD_CGI_MORE) flg |= WEBSOCK_FLAG_MORE;
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if (i > 0) flg |= WEBSOCK_FLAG_CONT;
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if (ws) {
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cgiWebsocketSend(ws, sock_buff, (int) strlen(sock_buff), flg);
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} else {
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cgiWebsockBroadcast(URL_WS_UPDATE, sock_buff, (int) strlen(sock_buff), flg);
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resetHeartbeatTimer();
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}
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if (cont == HTTPD_CGI_DONE) break;
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system_soft_wdt_feed();
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}
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// cleanup
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screenSerializeToBuffer(NULL, 0, 0, &data);
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notify_available = true;
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}
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/**
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* Tell browser we have new content
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* @param arg
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*/
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static void ICACHE_FLASH_ATTR
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updateNotifyCb(void *arg)
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{
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int max_bl, total_bl;
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cgiWebsockMeasureBacklog(URL_WS_UPDATE, &max_bl, &total_bl);
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if (!notify_available || notify_cooldown || (max_bl > 2048)) { // do not send if we have anything significant backlogged
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// postpone a little
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TIMER_START(&updateNotifyTim, updateNotifyCb, 4, 0);
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inp_dbg("postpone notify content");
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return;
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}
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updateNotify_do(arg, 0);
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notify_cooldown = true;
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TIMER_START(¬ifyCooldownTim, notifyCooldownTimCb, termconf->display_cooldown_ms, 0);
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}
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/** Beep */
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void ICACHE_FLASH_ATTR
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send_beep(void)
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{
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if (term_active_clients == 0) return;
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screen_notifyChange(TOPIC_BELL); // XXX has latency, maybe better to send directly
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}
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/** Pop-up notification (from iTerm2) */
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void ICACHE_FLASH_ATTR
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notify_growl(char *msg)
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{
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if (term_active_clients == 0) return;
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// here's some potential for a race error with the other broadcast functions
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// - we assume app won't send notifications in the middle of updating content
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cgiWebsockBroadcast(URL_WS_UPDATE, msg, (int) strlen(msg), 0);
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resetHeartbeatTimer();
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}
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/**
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* Broadcast screen state to sockets.
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* This is a callback for the Screen module,
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* called after each visible screen modification.
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*/
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void ICACHE_FLASH_ATTR screen_notifyChange(ScreenNotifyTopics topics)
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{
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if (term_active_clients == 0) return;
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// this is probably not needed here - ensure timeout is not 0
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if (termconf->display_tout_ms == 0) {
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termconf->display_tout_ms = SCR_DEF_DISPLAY_TOUT_MS;
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}
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// NOTE: the timer is restarted if already running
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TIMER_START(&updateNotifyTim, updateNotifyCb, termconf->display_tout_ms, 0); // note - this adds latency to beep
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}
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/**
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* mouse event rx
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* @param evt - event type: p, r, m
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* @param y - coord 0-based
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* @param x - coord 0-based
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* @param button - which button, 1-based. 0=none
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* @param mods - modifier keys bitmap: meta|alt|shift|ctrl
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*/
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static void ICACHE_FLASH_ATTR sendMouseAction(char evt, int y, int x, int button, u8 mods)
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{
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// one-based
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x++;
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y++;
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bool ctrl = (mods & 1) > 0;
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bool shift = (mods & 2) > 0;
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bool alt = (mods & 4) > 0;
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bool meta = (mods & 8) > 0;
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enum MTM mtm = mouse_tracking.mode;
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enum MTE mte = mouse_tracking.encoding;
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// No message on release in X10 mode
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if (mtm == MTM_X10 && (button == 0 || evt == 'r')) {
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return;
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}
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if (evt == 'm' && mtm != MTM_BUTTON_MOTION && mtm != MTM_ANY_MOTION) {
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return;
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}
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if (evt == 'm' && mtm == MTM_BUTTON_MOTION && button == 0) {
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return;
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}
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int eventcode = 0;
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if (mtm == MTM_X10) {
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eventcode = button-1;
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}
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else {
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if (button == 0 || (evt == 'r' && mte != MTE_SGR)) eventcode = 3; // release
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else if (button == 1) eventcode = 0;
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else if (button == 2) eventcode = 1;
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else if (button == 3) eventcode = 2;
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else if (button == 4) eventcode = 64;
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else if (button == 5) eventcode = 65;
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if (shift) eventcode |= 4;
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if (alt || meta) eventcode |= 8;
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if (ctrl) eventcode |= 16;
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if (mtm == MTM_BUTTON_MOTION || mtm == MTM_ANY_MOTION) {
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if (evt == 'm') {
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eventcode |= 32;
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}
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}
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}
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// Encode
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char buf[20];
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buf[0] = 0;
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if (mte == MTE_SIMPLE || mte == MTE_UTF8) {
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// strictly, for UTF8 this will break if any coord is over 127,
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// but that is unlikely due to screen size limitations in ESPTerm
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sprintf(buf, "\x1b[M%c%c%c", (u8)(32+eventcode), (u8)(32+x), (u8)(32+y));
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}
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else if (mte == MTE_SGR) {
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sprintf(buf, "\x1b[<%d;%d;%d%c", eventcode, x, y, (evt == 'p'||(evt=='m'&&button>0)) ? 'M' : 'm');
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}
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else if (mte == MTE_URXVT) {
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sprintf(buf, "\x1b[%d;%d;%dM", (u8)(32+eventcode), (u8)(x), (u8)(y));
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}
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UART_SendAsync(buf, -1);
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}
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/** Socket received a message */
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static void ICACHE_FLASH_ATTR updateSockRx(Websock *ws, char *data, int len, int flags)
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{
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// Add terminator if missing (seems to randomly happen)
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data[len] = 0;
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inp_dbg("Sock RX str: %s, len %d", data, len);
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int y, x, m, b;
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u8 btnNum;
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char c = data[0];
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switch (c) {
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case 's':
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// pass string verbatim
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if (termconf_live.loopback) {
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for (int i = 1; i < len; i++) {
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ansi_parser(data[i]);
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}
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}
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UART_SendAsync(data+1, -1);
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// TODO base this on the actual buffer empty space, not rx chunk size
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if ((UART_AsyncTxGetEmptySpace() < 256) && !browser_wants_xon) {
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UART_WriteChar(UART1, '-', 100);
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cgiWebsockBroadcast(URL_WS_UPDATE, "-", 1, 0);
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browser_wants_xon = true;
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system_soft_wdt_feed();
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}
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break;
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case 'b':
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// action button press
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btnNum = (u8) (data[1]);
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if (btnNum > 0 && btnNum < 10) {
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UART_SendAsync(termconf_live.btn_msg[btnNum-1], -1);
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}
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break;
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case 'i':
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// requests initial load
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inp_dbg("Client requests initial load");
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updateNotify_do(ws, TOPIC_INITIAL);
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break;
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case 'm':
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case 'p':
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case 'r':
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if (mouse_tracking.mode == MTM_NONE) break; // no need to parse, not enabled
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// mouse move
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y = parse2B(data+1); // row, 0-based
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x = parse2B(data+3); // column, 0-based
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b = parse2B(data+5); // mouse button, 0 = none, 1-5 = button number
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m = parse2B(data+7); // modifier keys held
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sendMouseAction(c,y,x,b,m);
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break;
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default:
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inp_warn("Bad command.");
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}
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}
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/** Send a heartbeat msg */
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static void ICACHE_FLASH_ATTR heartbeatTimCb(void *unused)
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{
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if (term_active_clients > 0) {
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if (notify_available) {
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inp_dbg(".");
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// Heartbeat packet - indicate we're still connected
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// JS reloads the page if heartbeat is lost for a couple seconds
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cgiWebsockBroadcast(URL_WS_UPDATE, ".", 1, 0);
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// schedule next tick
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TIMER_START(&heartbeatTim, heartbeatTimCb, HB_TIME, 0);
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} else {
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// postpone...
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TIMER_START(&heartbeatTim, heartbeatTimCb, 10, 0);
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inp_dbg("postpone heartbeat");
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}
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}
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}
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static void ICACHE_FLASH_ATTR resetHeartbeatTimer(void)
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{
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TIMER_START(&heartbeatTim, heartbeatTimCb, HB_TIME, 0);
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}
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static void ICACHE_FLASH_ATTR closeSockCb(Websock *ws)
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{
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term_active_clients--;
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if (term_active_clients <= 0) {
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term_active_clients = 0;
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if (mouse_tracking.focus_tracking) {
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UART_SendAsync("\x1b[O", 3);
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}
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// stop the timer
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os_timer_disarm(&heartbeatTim);
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}
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}
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/** Socket connected for updates */
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void ICACHE_FLASH_ATTR updateSockConnect(Websock *ws)
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{
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inp_info("Socket connected to "URL_WS_UPDATE);
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ws->recvCb = updateSockRx;
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ws->closeCb = closeSockCb;
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if (term_active_clients == 0) {
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if (mouse_tracking.focus_tracking) {
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UART_SendAsync("\x1b[I", 3);
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}
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resetHeartbeatTimer();
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}
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term_active_clients++;
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}
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ETSTimer xonTim;
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static void ICACHE_FLASH_ATTR notify_empty_txbuf_cb(void *unused)
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{
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UART_WriteChar(UART1, '+', 100);
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cgiWebsockBroadcast(URL_WS_UPDATE, "+", 1, 0);
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resetHeartbeatTimer();
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browser_wants_xon = false;
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}
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void notify_empty_txbuf(void)
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{
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if (browser_wants_xon) {
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TIMER_START(&xonTim, notify_empty_txbuf_cb, 1, 0);
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}
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}
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