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// Copyright 2015 by Thorsten von Eicken, see LICENSE.txt
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#include <esp8266.h>
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#include "uart.h"
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#include "cgi.h"
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#include "config.h"
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#include "log.h"
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// Web log for the esp8266 to replace outputting to uart1.
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// The web log has a 1KB circular in-memory buffer which os_printf prints into and
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// the HTTP handler simply displays the buffer content on a web page.
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// see console.c for invariants (same here)
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#define BUF_MAX (1400)
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static char log_buf[BUF_MAX];
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static int log_wr, log_rd;
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static int log_pos;
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static bool log_no_uart; // start out printing to uart
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static bool log_newline; // at start of a new line
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// called from wifi reset timer to turn UART on when we loose wifi and back off
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// when we connect to wifi AP. Here this is gated by the flash setting
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void ICACHE_FLASH_ATTR
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log_uart(bool enable) {
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if (!enable && !log_no_uart && flashConfig.log_mode != LOG_MODE_ON) {
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// we're asked to turn uart off, and uart is on, and the flash setting isn't always-on
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#if 1
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#ifdef LOG_DBG
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os_printf("Turning OFF uart log\n");
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#endif
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os_delay_us(4*1000L); // time for uart to flush
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log_no_uart = !enable;
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#endif
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} else if (enable && log_no_uart && flashConfig.log_mode != LOG_MODE_OFF) {
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// we're asked to turn uart on, and uart is off, and the flash setting isn't always-off
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log_no_uart = !enable;
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#ifdef LOG_DBG
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os_printf("Turning ON uart log\n");
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#endif
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}
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}
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static void ICACHE_FLASH_ATTR
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log_write(char c) {
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log_buf[log_wr] = c;
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log_wr = (log_wr+1) % BUF_MAX;
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if (log_wr == log_rd) {
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log_rd = (log_rd+1) % BUF_MAX; // full, eat first char
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log_pos++;
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}
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}
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#if 0
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static char ICACHE_FLASH_ATTR
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log_read(void) {
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char c = 0;
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if (log_rd != log_wr) {
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c = log_buf[log_rd];
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log_rd = (log_rd+1) % BUF_MAX;
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}
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return c;
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}
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#endif
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static void ICACHE_FLASH_ATTR
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log_write_char(char c) {
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// Uart output unless disabled
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if (!log_no_uart) {
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if (log_newline) {
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char buff[16];
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int l = os_sprintf(buff, "%6d> ", (system_get_time()/1000)%1000000);
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for (int i=0; i<l; i++)
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uart0_write_char(buff[i]);
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log_newline = false;
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}
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uart0_write_char(c);
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if (c == '\n') {
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log_newline = true;
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uart0_write_char('\r');
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}
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}
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// Store in log buffer
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if (c == '\n') log_write('\r');
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log_write(c);
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}
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int ICACHE_FLASH_ATTR
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ajaxLog(HttpdConnData *connData) {
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char buff[2048];
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int len; // length of text in buff
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int log_len = (log_wr+BUF_MAX-log_rd) % BUF_MAX; // num chars in log_buf
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int start = 0; // offset onto log_wr to start sending out chars
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if (connData->conn==NULL) return HTTPD_CGI_DONE; // Connection aborted. Clean up.
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jsonHeader(connData, 200);
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// figure out where to start in buffer based on URI param
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len = httpdFindArg(connData->getArgs, "start", buff, sizeof(buff));
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if (len > 0) {
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start = atoi(buff);
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if (start < log_pos) {
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start = 0;
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} else if (start >= log_pos+log_len) {
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start = log_len;
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} else {
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start = start - log_pos;
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}
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}
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// start outputting
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len = os_sprintf(buff, "{\"len\":%d, \"start\":%d, \"text\": \"",
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log_len-start, log_pos+start);
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int rd = (log_rd+start) % BUF_MAX;
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while (len < 2040 && rd != log_wr) {
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uint8_t c = log_buf[rd];
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if (c == '\\' || c == '"') {
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buff[len++] = '\\';
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buff[len++] = c;
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} else if (c < ' ') {
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len += os_sprintf(buff+len, "\\u%04x", c);
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} else {
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buff[len++] = c;
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}
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rd = (rd + 1) % BUF_MAX;
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}
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os_strcpy(buff+len, "\"}"); len+=2;
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httpdSend(connData, buff, len);
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return HTTPD_CGI_DONE;
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}
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static char *dbg_mode[] = { "auto", "off", "on" };
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int ICACHE_FLASH_ATTR
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ajaxLogDbg(HttpdConnData *connData) {
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if (connData->conn==NULL) return HTTPD_CGI_DONE; // Connection aborted. Clean up.
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char buff[512];
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int len, status = 400;
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len = httpdFindArg(connData->getArgs, "mode", buff, sizeof(buff));
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if (len > 0) {
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int8_t mode = -1;
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if (os_strcmp(buff, "auto") == 0) mode = LOG_MODE_AUTO;
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if (os_strcmp(buff, "off") == 0) mode = LOG_MODE_OFF;
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if (os_strcmp(buff, "on") == 0) mode = LOG_MODE_ON;
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if (mode >= 0) {
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flashConfig.log_mode = mode;
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if (mode != LOG_MODE_AUTO) log_uart(mode == LOG_MODE_ON);
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status = configSave() ? 200 : 400;
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}
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} else if (connData->requestType == HTTPD_METHOD_GET) {
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status = 200;
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}
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jsonHeader(connData, status);
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os_sprintf(buff, "{\"mode\": \"%s\"}", dbg_mode[flashConfig.log_mode]);
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httpdSend(connData, buff, -1);
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return HTTPD_CGI_DONE;
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}
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void ICACHE_FLASH_ATTR dumpMem(void *addr, int len) {
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uint8_t *a = addr;
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int off = 0;
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while (off < len) {
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os_printf("%p ", a);
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for (int i = 0; i < 16 && off + i < len; i++) {
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os_printf(" %02x", a[i]);
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}
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os_printf(" ");
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for (int i=0; i<16 && off<len; i++,off++,a++)
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os_printf("%c", *a > 0x20 && *a < 0x3f ? *a : '.');
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os_printf("\n");
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}
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}
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void ICACHE_FLASH_ATTR logInit() {
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log_no_uart = flashConfig.log_mode == LOG_MODE_OFF; // ON unless set to always-off
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log_wr = 0;
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log_rd = 0;
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os_install_putc1((void *)log_write_char);
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}
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