2017-02-25 04:15:18 -06:00
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/**
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2016-03-26 23:25:28 +00:00
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* Marlin 3D Printer Firmware
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2020-02-03 08:00:57 -06:00
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* Copyright (c) 2020 MarlinFirmware [https://github.com/MarlinFirmware/Marlin]
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2016-03-26 23:25:28 +00:00
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*
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* Based on Sprinter and grbl.
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2019-06-27 23:57:50 -05:00
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* Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm
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2016-03-26 23:25:28 +00:00
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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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2020-07-23 05:20:14 +02:00
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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2016-03-26 23:25:28 +00:00
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*
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*/
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2017-09-06 06:28:32 -05:00
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#include "../inc/MarlinConfig.h"
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2016-03-26 23:25:28 +00:00
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#if ENABLED(EXPERIMENTAL_I2CBUS)
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#include "twibus.h"
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2017-09-06 06:28:32 -05:00
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2016-03-26 23:25:28 +00:00
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#include <Wire.h>
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2021-10-11 23:42:29 +01:00
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#include "../libs/hex_print.h"
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2021-01-21 03:40:07 -06:00
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TWIBus i2c;
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2016-04-20 12:34:55 -07:00
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TWIBus::TWIBus() {
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2016-08-10 23:04:18 -07:00
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#if I2C_SLAVE_ADDRESS == 0
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2021-10-11 23:42:29 +01:00
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Wire.begin( // No address joins the BUS as the master
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#if PINS_EXIST(I2C_SCL, I2C_SDA) && DISABLED(SOFT_I2C_EEPROM)
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pin_t(I2C_SDA_PIN), pin_t(I2C_SCL_PIN)
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#endif
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);
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2016-08-10 23:04:18 -07:00
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#else
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Wire.begin(I2C_SLAVE_ADDRESS); // Join the bus as a slave
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#endif
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2019-09-25 08:29:59 -05:00
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reset();
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2016-03-26 23:25:28 +00:00
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}
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void TWIBus::reset() {
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2019-09-25 08:29:59 -05:00
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buffer_s = 0;
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buffer[0] = 0x00;
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2016-03-26 23:25:28 +00:00
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}
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2016-08-13 18:06:10 -07:00
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void TWIBus::address(const uint8_t adr) {
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2017-03-31 09:00:49 -05:00
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if (!WITHIN(adr, 8, 127)) {
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2018-11-29 16:58:58 -06:00
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SERIAL_ECHO_MSG("Bad I2C address (8-127)");
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2016-08-12 00:51:25 -07:00
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}
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2019-09-25 08:29:59 -05:00
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addr = adr;
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2016-03-26 23:25:28 +00:00
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2021-09-27 13:46:42 -05:00
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debug(F("address"), adr);
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2016-03-26 23:25:28 +00:00
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}
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2016-08-10 23:04:18 -07:00
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void TWIBus::addbyte(const char c) {
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2019-09-25 08:29:59 -05:00
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if (buffer_s >= COUNT(buffer)) return;
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buffer[buffer_s++] = c;
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2021-09-27 13:46:42 -05:00
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debug(F("addbyte"), c);
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2016-08-13 18:06:10 -07:00
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}
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void TWIBus::addbytes(char src[], uint8_t bytes) {
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2021-09-27 13:46:42 -05:00
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debug(F("addbytes"), bytes);
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2019-09-25 08:29:59 -05:00
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while (bytes--) addbyte(*src++);
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2016-08-13 18:06:10 -07:00
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}
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2016-03-26 23:25:28 +00:00
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2016-08-13 18:06:10 -07:00
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void TWIBus::addstring(char str[]) {
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2021-09-27 13:46:42 -05:00
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debug(F("addstring"), str);
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2019-09-25 08:29:59 -05:00
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while (char c = *str++) addbyte(c);
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2016-03-26 23:25:28 +00:00
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}
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void TWIBus::send() {
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2021-09-27 13:46:42 -05:00
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debug(F("send"), addr);
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2016-03-26 23:25:28 +00:00
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2019-09-25 08:29:59 -05:00
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Wire.beginTransmission(I2C_ADDRESS(addr));
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Wire.write(buffer, buffer_s);
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2016-03-26 23:25:28 +00:00
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Wire.endTransmission();
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2019-09-25 08:29:59 -05:00
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reset();
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2016-03-26 23:25:28 +00:00
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}
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2016-08-14 21:45:28 -07:00
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// static
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2021-09-27 13:46:42 -05:00
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void TWIBus::echoprefix(uint8_t bytes, FSTR_P const pref, uint8_t adr) {
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2017-06-09 10:51:23 -05:00
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SERIAL_ECHO_START();
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2021-09-27 13:46:42 -05:00
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SERIAL_ECHOF(pref);
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2021-09-09 04:57:05 -05:00
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SERIAL_ECHOPGM(": from:", adr, " bytes:", bytes, " data:");
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2016-08-14 21:45:28 -07:00
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}
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// static
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2021-10-11 23:42:29 +01:00
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void TWIBus::echodata(uint8_t bytes, FSTR_P const pref, uint8_t adr, const uint8_t style/*=0*/) {
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union TwoBytesToInt16 { uint8_t bytes[2]; int16_t integervalue; };
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TwoBytesToInt16 ConversionUnion;
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echoprefix(bytes, pref, adr);
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while (bytes-- && Wire.available()) {
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int value = Wire.read();
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switch (style) {
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// Style 1, HEX DUMP
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case 1:
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SERIAL_CHAR(hex_nybble((value & 0xF0) >> 4));
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SERIAL_CHAR(hex_nybble(value & 0x0F));
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if (bytes) SERIAL_CHAR(' ');
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break;
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// Style 2, signed two byte integer (int16)
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case 2:
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if (bytes == 1)
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ConversionUnion.bytes[1] = (uint8_t)value;
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else if (bytes == 0) {
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ConversionUnion.bytes[0] = (uint8_t)value;
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// Output value in base 10 (standard decimal)
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SERIAL_ECHO(ConversionUnion.integervalue);
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}
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break;
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// Style 3, unsigned byte, base 10 (uint8)
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case 3:
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SERIAL_ECHO(value);
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if (bytes) SERIAL_CHAR(' ');
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break;
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// Default style (zero), raw serial output
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default:
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// This can cause issues with some serial consoles, Pronterface is an example where things go wrong
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SERIAL_CHAR(value);
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break;
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}
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}
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2017-06-09 10:51:23 -05:00
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SERIAL_EOL();
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2016-08-13 18:06:10 -07:00
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}
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2021-10-11 23:42:29 +01:00
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void TWIBus::echobuffer(FSTR_P const prefix, uint8_t adr) {
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echoprefix(buffer_s, prefix, adr);
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2020-03-13 23:18:16 -05:00
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LOOP_L_N(i, buffer_s) SERIAL_CHAR(buffer[i]);
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2017-06-09 10:51:23 -05:00
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SERIAL_EOL();
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2016-08-14 21:45:28 -07:00
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}
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bool TWIBus::request(const uint8_t bytes) {
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2019-09-25 08:29:59 -05:00
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if (!addr) return false;
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2016-04-20 12:35:56 -07:00
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2021-09-27 13:46:42 -05:00
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debug(F("request"), bytes);
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2016-03-26 23:25:28 +00:00
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2016-08-10 23:04:18 -07:00
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// requestFrom() is a blocking function
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2020-04-25 11:35:35 -05:00
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if (Wire.requestFrom(I2C_ADDRESS(addr), bytes) == 0) {
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2021-09-27 13:46:42 -05:00
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debug(F("request fail"), I2C_ADDRESS(addr));
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2016-08-27 19:00:45 -05:00
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return false;
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}
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2016-08-14 21:45:28 -07:00
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return true;
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}
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2021-10-11 23:42:29 +01:00
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void TWIBus::relay(const uint8_t bytes, const uint8_t style/*=0*/) {
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2021-09-27 13:46:42 -05:00
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debug(F("relay"), bytes);
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2016-08-14 21:45:28 -07:00
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2019-09-25 08:29:59 -05:00
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if (request(bytes))
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2021-10-11 23:42:29 +01:00
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echodata(bytes, F("i2c-reply"), addr, style);
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2016-08-14 21:45:28 -07:00
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}
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uint8_t TWIBus::capture(char *dst, const uint8_t bytes) {
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2019-09-25 08:29:59 -05:00
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reset();
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2016-08-14 21:45:28 -07:00
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uint8_t count = 0;
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while (count < bytes && Wire.available())
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dst[count++] = Wire.read();
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2016-08-27 19:00:45 -05:00
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2021-09-27 13:46:42 -05:00
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debug(F("capture"), count);
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2016-08-27 19:00:45 -05:00
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2016-08-14 21:45:28 -07:00
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return count;
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}
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2016-03-26 23:25:28 +00:00
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2016-08-14 21:45:28 -07:00
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// static
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void TWIBus::flush() {
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while (Wire.available()) Wire.read();
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2016-08-10 23:04:18 -07:00
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}
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2016-08-13 18:06:10 -07:00
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#if I2C_SLAVE_ADDRESS > 0
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2016-03-26 23:25:28 +00:00
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2016-08-13 18:06:10 -07:00
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void TWIBus::receive(uint8_t bytes) {
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2021-09-27 13:46:42 -05:00
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debug(F("receive"), bytes);
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echodata(bytes, F("i2c-receive"), 0);
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2016-08-13 18:06:10 -07:00
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}
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2019-05-09 11:45:55 -05:00
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void TWIBus::reply(char str[]/*=nullptr*/) {
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2021-09-27 13:46:42 -05:00
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debug(F("reply"), str);
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2016-04-20 12:35:56 -07:00
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2016-08-13 18:06:10 -07:00
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if (str) {
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2019-09-25 08:29:59 -05:00
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reset();
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addstring(str);
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2016-04-20 12:35:56 -07:00
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}
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2016-08-13 18:06:10 -07:00
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2019-09-25 08:29:59 -05:00
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Wire.write(buffer, buffer_s);
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2016-08-13 18:06:10 -07:00
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2019-09-25 08:29:59 -05:00
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reset();
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2016-08-13 18:06:10 -07:00
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}
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2021-01-21 03:40:07 -06:00
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void i2c_on_receive(int bytes) { // just echo all bytes received to serial
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i2c.receive(bytes);
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}
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void i2c_on_request() { // just send dummy data for now
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i2c.reply("Hello World!\n");
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}
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2016-08-13 18:06:10 -07:00
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#endif
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#if ENABLED(DEBUG_TWIBUS)
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2016-08-14 21:45:28 -07:00
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// static
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2021-09-27 13:46:42 -05:00
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void TWIBus::prefix(FSTR_P const func) {
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SERIAL_ECHOPGM("TWIBus::", func, ": ");
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2016-08-13 18:06:10 -07:00
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}
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2021-09-27 13:46:42 -05:00
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void TWIBus::debug(FSTR_P const func, uint32_t adr) {
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2016-08-13 18:06:10 -07:00
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if (DEBUGGING(INFO)) { prefix(func); SERIAL_ECHOLN(adr); }
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}
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2021-09-27 13:46:42 -05:00
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void TWIBus::debug(FSTR_P const func, char c) {
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2016-08-13 18:06:10 -07:00
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if (DEBUGGING(INFO)) { prefix(func); SERIAL_ECHOLN(c); }
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}
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2021-09-27 13:46:42 -05:00
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void TWIBus::debug(FSTR_P const func, char str[]) {
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2016-08-13 18:06:10 -07:00
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if (DEBUGGING(INFO)) { prefix(func); SERIAL_ECHOLN(str); }
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2016-04-20 12:35:56 -07:00
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}
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#endif
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2017-05-09 12:35:43 -05:00
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#endif // EXPERIMENTAL_I2CBUS
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