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137 lines
4.3 KiB
137 lines
4.3 KiB
// 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 "crc16.h"
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#include "serbridge.h"
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#include "console.h"
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#include "cmd.h"
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#ifdef SLIP_DBG
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#define DBG(format, ...) do { os_printf(format, ## __VA_ARGS__) } while(0)
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#else
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#define DBG(format, ...) do { } while(0)
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#endif
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uint8_t slip_disabled; // temporarily disable slip to allow flashing of attached MCU
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extern void ICACHE_FLASH_ATTR console_process(char *buf, short len);
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// This SLIP parser does not conform to RFC 1055 https://tools.ietf.org/html/rfc1055,
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// instead, it implements the framing implemented in https://github.com/tuanpmt/esp_bridge
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// It accumulates each packet into a static buffer and calls cmd_parse() when the end
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// of a packet is reached. It expects cmd_parse() to copy anything it needs from the
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// buffer elsewhere as the buffer is immediately reused.
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// One special feature is that if the first two characters of a packet are both printable or
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// \n or \r then the parser assumes it's dealing with console debug output and calls
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// slip_console(c) for each character and does not accumulate chars in the buffer until the
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// next SLIP_END marker is seen. This allows random console debug output to come in between
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// packets as long as each packet starts *and* ends with SLIP_END (which is an official
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// variation on the SLIP protocol).
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static bool slip_escaped; // true when prev char received is escape
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static bool slip_inpkt; // true when we're after SLIP_START and before SLIP_END
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#define SLIP_MAX 1024 // max length of SLIP packet
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static char slip_buf[SLIP_MAX]; // buffer for current SLIP packet
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static short slip_len; // accumulated length in slip_buf
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// SLIP process a packet or a bunch of debug console chars
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static void ICACHE_FLASH_ATTR
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slip_process() {
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if (slip_len < 1) return;
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if (!slip_inpkt) {
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// debug console stuff
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console_process(slip_buf, slip_len);
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} else {
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// proper SLIP packet, invoke command processor after checking CRC
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//os_printf("SLIP: rcv %d\n", slip_len);
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if (slip_len > 2) {
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uint16_t crc = crc16_data((uint8_t*)slip_buf, slip_len-2, 0);
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uint16_t rcv = ((uint16_t)slip_buf[slip_len-2]) | ((uint16_t)slip_buf[slip_len-1] << 8);
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if (crc == rcv) {
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CMD_parse_packet((uint8_t*)slip_buf, slip_len-2);
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} else {
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os_printf("SLIP: bad CRC, crc=%x rcv=%x\n", crc, rcv);
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for (short i=0; i<slip_len; i++) {
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if (slip_buf[i] >= ' ' && slip_buf[i] <= '~') {
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DBG("%c", slip_buf[i]);
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}
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else {
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DBG("\\%02X", slip_buf[i]);
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}
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}
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DBG("\n");
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}
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}
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}
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}
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#if 0
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// determine whether a character is printable or not (or \r \n)
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static bool ICACHE_FLASH_ATTR
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slip_printable(char c) {
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return (c >= ' ' && c <= '~') || c == '\n' || c == '\r';
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}
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#endif
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static void ICACHE_FLASH_ATTR
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slip_reset() {
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//os_printf("SLIP: reset\n");
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slip_inpkt = false;
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slip_escaped = false;
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slip_len = 0;
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}
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// SLIP parse a single character
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static void ICACHE_FLASH_ATTR
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slip_parse_char(char c) {
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if (!slip_inpkt) {
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if (c == SLIP_START) {
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if (slip_len > 0) console_process(slip_buf, slip_len);
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slip_reset();
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slip_inpkt = true;
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DBG("SLIP: start\n");
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return;
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}
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} else if (slip_escaped) {
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// prev char was SLIP_REPL
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c = SLIP_ESC(c);
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slip_escaped = false;
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} else {
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switch (c) {
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case SLIP_REPL:
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slip_escaped = true;
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return;
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case SLIP_END:
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// end of packet, process it and get ready for next one
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if (slip_len > 0) slip_process();
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slip_reset();
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return;
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case SLIP_START:
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os_printf("SLIP: got SLIP_START while in packet?\n");
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//os_printf("SLIP: rcv %d:", slip_len);
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//for (int i=0; i<slip_len; i++) os_printf(" %02x", slip_buf[i]);
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//os_printf("\n");
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slip_reset();
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return;
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}
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}
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if (slip_len < SLIP_MAX) slip_buf[slip_len++] = c;
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}
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// callback with a buffer of characters that have arrived on the uart
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void ICACHE_FLASH_ATTR
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slip_parse_buf(char *buf, short length) {
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// do SLIP parsing
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for (short i=0; i<length; i++)
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slip_parse_char(buf[i]);
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// if we're in-between packets (debug console) then print it now
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if (!slip_inpkt && length > 0) {
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slip_process();
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slip_reset();
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}
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}
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