/** * Digital Voice Modem - DSP Firmware * GPLv2 Open Source. Use is subject to license terms. * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. * * @package DVM / DSP Firmware * */ // // Based on code from the MMDVM project. (https://github.com/g4klx/MMDVM) // Licensed under the GPLv2 License (https://opensource.org/licenses/GPL-2.0) // /* * Copyright (C) 2009-2016 by Jonathan Naylor G4KLX * Copyright (C) 2016 by Colin Durbridge G4EML * Copyright (C) 2016,2017,2018 by Andy Uribe CA6JAU * Copyright (C) 2021 by Bryan Biedenkapp N2PLL * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */ #include "Globals.h" #include "dmr/DMRSlotType.h" using namespace dmr; // --------------------------------------------------------------------------- // Constants // --------------------------------------------------------------------------- // PR FILL pattern const uint8_t PR_FILL[] = { 0x63U, 0xEAU, 0x00U, 0x76U, 0x6CU, 0x76U, 0xC4U, 0x52U, 0xC8U, 0x78U, 0x09U, 0x2DU, 0xB8U, 0x79U, 0x27U, 0x57U, 0x9BU, 0x31U, 0xBCU, 0x3EU, 0xEAU, 0x45U, 0xC3U, 0x30U, 0x49U, 0x17U, 0x93U, 0xAEU, 0x8BU, 0x6DU, 0xA4U, 0xA5U, 0xADU, 0xA2U, 0xF1U, 0x35U, 0xB5U, 0x3CU, 0x1EU }; // --------------------------------------------------------------------------- // Public Class Members // --------------------------------------------------------------------------- /// /// Initializes a new instance of the DMRDMOTX class. /// DMRDMOTX::DMRDMOTX() : m_fifo(DMR_TX_BUFFER_LEN), m_poBuffer(), m_poLen(0U), m_poPtr(0U), m_preambleCnt(DMRDMO_FIXED_DELAY) { /* stub */ } /// /// Process local buffer and transmit on the air interface. /// void DMRDMOTX::process() { if (m_poLen == 0U && m_fifo.getData() > 0U) { if (!m_tx) { for (uint16_t i = 0U; i < m_preambleCnt; i++) m_poBuffer[i] = DMR_START_SYNC; m_poLen = m_preambleCnt; } else { for (unsigned int i = 0U; i < DMR_FRAME_LENGTH_BYTES; i++) m_poBuffer[i] = m_fifo.get(); for (unsigned int i = 0U; i < 39U; i++) m_poBuffer[i + DMR_FRAME_LENGTH_BYTES] = PR_FILL[i]; m_poLen = 72U; } DEBUG2("DMRDMOTX: process(): poLen", m_poLen); m_poPtr = 0U; } if (m_poLen > 0U) { uint16_t space = io.getSpace(); while (space > 8U) { uint8_t c = m_poBuffer[m_poPtr++]; writeByte(c); space -= 8U; if (m_poPtr >= m_poLen) { m_poPtr = 0U; m_poLen = 0U; return; } } } } /// /// Write data to the local buffer. /// /// /// /// uint8_t DMRDMOTX::writeData(const uint8_t* data, uint8_t length) { if (length != (DMR_FRAME_LENGTH_BYTES + 1U)) return RSN_ILLEGAL_LENGTH; uint16_t space = m_fifo.getSpace(); DEBUG3("DMRDMOTX: writeData(): dataLength/fifoLength", length, space); if (space < DMR_FRAME_LENGTH_BYTES) return RSN_RINGBUFF_FULL; for (uint8_t i = 0U; i < DMR_FRAME_LENGTH_BYTES; i++) m_fifo.put(data[i + 1U]); return RSN_OK; } /// /// Sets the FDMA preamble count. /// /// Count of preambles. void DMRDMOTX::setPreambleCount(uint8_t preambleCnt) { uint32_t preambles = (uint32_t)((float)preambleCnt / 0.2083F); m_preambleCnt = DMRDMO_FIXED_DELAY + preambles; // clamp preamble count to 250ms maximum if (m_preambleCnt > 1200U) m_preambleCnt = 1200U; } /// /// Helper to get how much space the ring buffer has for samples. /// /// uint16_t DMRDMOTX::getSpace() const { return m_fifo.getSpace() / (DMR_FRAME_LENGTH_BYTES + 2U); } // --------------------------------------------------------------------------- // Private Class Members // --------------------------------------------------------------------------- /// /// /// /// void DMRDMOTX::writeByte(uint8_t c) { uint8_t bit; uint8_t mask = 0x80U; for (uint8_t i = 0U; i < 8U; i++, c <<= 1) { if ((c & mask) == mask) bit = 1U; else bit = 0U; io.write(&bit, 1); } }