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537 lines
18 KiB
537 lines
18 KiB
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Digital Voice Modem - Test Suite
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* GPLv2 Open Source. Use is subject to license terms.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* Copyright (C) 2026 Bryan Biedenkapp, N2PLL
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*
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*/
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#include "host/HostTestHooks.h"
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#include "common/dmr/SlotType.h"
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#include "common/dmr/Sync.h"
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#include "common/dmr/lc/FullLC.h"
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#include "common/nxdn/NXDNDefines.h"
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#include "common/nxdn/NXDNUtils.h"
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#include "common/nxdn/Sync.h"
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#include "common/nxdn/channel/FACCH1.h"
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#include "common/nxdn/channel/LICH.h"
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#include "common/nxdn/channel/SACCH.h"
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#include "common/nxdn/lc/RTCH.h"
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#include <cstring>
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#if defined(CATCH2_TEST_COMPILATION)
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// ---------------------------------------------------------------------------
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// Constants
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// ---------------------------------------------------------------------------
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static const uint8_t DMR_CAL_VH_1K_PAYLOAD[dmr::defines::DMR_FRAME_LENGTH_BYTES] = {
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0x00U, 0x20U, 0x08U, 0x08U, 0x02U, 0x38U, 0x15U, 0x00U, 0x2CU, 0xA0U, 0x14U,
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0x60U, 0x84U, 0x6DU, 0xFFU, 0x57U, 0xD7U, 0x5DU, 0xF5U, 0xDEU, 0x30U, 0x30U,
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0x01U, 0x10U, 0x01U, 0x40U, 0x03U, 0xC0U, 0x13U, 0xC1U, 0x1EU, 0x80U, 0x6FU
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};
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static const uint8_t NXDN_CAL_1K_PAYLOAD[nxdn::defines::NXDN_FRAME_LENGTH_BYTES] = {
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0xCDU, 0xF5U, 0x9DU, 0x5DU, 0x7CU, 0xFAU, 0x0AU, 0x6EU, 0x8AU, 0x23U, 0x56U, 0xE8U,
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0x4CU, 0xAAU, 0xDEU, 0x8BU, 0x26U, 0xE4U, 0xF2U, 0x82U, 0x88U,
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0xC6U, 0x8AU, 0x74U, 0x29U, 0xA4U, 0xECU, 0xD0U, 0x08U, 0x22U,
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0xCEU, 0xA2U, 0xFCU, 0x01U, 0x8CU, 0xECU, 0xDAU, 0x0AU, 0xA0U,
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0xEEU, 0x8AU, 0x7EU, 0x2BU, 0x26U, 0xCCU, 0xF8U, 0x8AU, 0x08U
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};
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// ---------------------------------------------------------------------------
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// Static Class Members
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// ---------------------------------------------------------------------------
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/* Gets DMR slot 1 instance. */
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dmr::Slot* HostTestHooks::dmrSlot1(const dmr::Control& control) { return control.m_slot1; }
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/* Gets DMR slot 2 instance. */
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dmr::Slot* HostTestHooks::dmrSlot2(const dmr::Control& control) { return control.m_slot2; }
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/* Gets DMR network state. */
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RPT_NET_STATE HostTestHooks::dmrNetState(const dmr::Slot& slot) { return slot.m_netState; }
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/* Gets DMR RF state. */
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RPT_RF_STATE HostTestHooks::dmrRFState(const dmr::Slot& slot) { return slot.m_rfState; }
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/* Gets DMR permitted destination ID. */
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uint32_t HostTestHooks::dmrPermittedDstId(const dmr::Slot& slot) { return slot.m_permittedDstId; }
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/* Gets DMR network watchdog timer. */
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Timer& HostTestHooks::dmrNetworkWatchdog(dmr::Slot& slot) { return slot.m_networkWatchdog; }
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/* Gets DMR network talkgroup hang timer. */
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Timer& HostTestHooks::dmrNetTGHang(dmr::Slot& slot) { return slot.m_netTGHang; }
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/* Gets DMR RF talkgroup hang timer. */
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Timer& HostTestHooks::dmrRFTGHang(dmr::Slot& slot) { return slot.m_rfTGHang; }
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/* Gets DMR RF loss watchdog timer. */
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Timer& HostTestHooks::dmrRFLossWatchdog(dmr::Slot& slot) { return slot.m_rfLossWatchdog; }
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/* Forces DMR slot into active RF call state. */
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void HostTestHooks::dmrSetRFCall(dmr::Slot& slot, uint32_t srcId, uint32_t dstId)
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{
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slot.m_rfState = RS_RF_AUDIO;
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slot.m_rfLastSrcId = srcId;
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slot.m_rfLastDstId = dstId;
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slot.m_rfTGHang.start();
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}
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/* Returns DMR slot to RF listening state. */
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void HostTestHooks::dmrClearRFCall(dmr::Slot& slot)
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{
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slot.m_rfState = RS_RF_LISTENING;
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slot.m_rfLastSrcId = 0U;
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slot.m_rfLastDstId = 0U;
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slot.m_rfTGHang.stop();
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}
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/* Forces DMR slot into RF rejected state. */
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void HostTestHooks::dmrSetRFRejected(dmr::Slot& slot)
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{
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slot.m_rfState = RS_RF_REJECTED;
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}
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/* Injects synthetic DMR network voice call. */
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void HostTestHooks::dmrStartNetVoiceCall(dmr::Slot& slot, uint32_t srcId, uint32_t dstId, bool group)
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{
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dmr::data::NetData dmrData;
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dmrData.setSlotNo(slot.m_slotNo);
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dmrData.setSrcId(srcId);
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dmrData.setDstId(dstId);
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dmrData.setFLCO(group ? dmr::defines::FLCO::GROUP : dmr::defines::FLCO::PRIVATE);
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dmrData.setDataType(dmr::defines::DataType::VOICE_LC_HEADER);
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uint8_t data[dmr::defines::DMR_FRAME_LENGTH_BYTES];
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::memset(data, 0x00U, sizeof(data));
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dmr::lc::LC lc(dmrData.getFLCO(), srcId, dstId);
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dmr::lc::FullLC fullLC;
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fullLC.encode(lc, data, dmr::defines::DataType::VOICE_LC_HEADER);
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dmr::SlotType slotType;
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slotType.setColorCode(dmr::Slot::s_colorCode);
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slotType.setDataType(dmr::defines::DataType::VOICE_LC_HEADER);
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slotType.encode(data);
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dmr::Sync::addDMRDataSync(data, dmr::Slot::s_duplex);
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dmrData.setData(data);
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slot.processNetwork(dmrData);
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}
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/* Injects synthetic DMR RF voice call frame. */
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bool HostTestHooks::dmrStartRFVoiceCall(dmr::Slot& slot, uint32_t srcId, uint32_t dstId, bool group)
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{
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uint8_t frame[dmr::defines::DMR_FRAME_LENGTH_BYTES + 2U];
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::memset(frame, 0x00U, sizeof(frame));
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::memcpy(frame + 2U, DMR_CAL_VH_1K_PAYLOAD, dmr::defines::DMR_FRAME_LENGTH_BYTES);
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frame[0U] = modem::TAG_DATA;
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frame[1U] = dmr::defines::SYNC_DATA | dmr::defines::DataType::VOICE_LC_HEADER;
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dmr::lc::LC lc(group ? dmr::defines::FLCO::GROUP : dmr::defines::FLCO::PRIVATE, srcId, dstId);
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dmr::lc::FullLC fullLC;
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fullLC.encode(lc, frame + 2U, dmr::defines::DataType::VOICE_LC_HEADER);
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dmr::SlotType slotType;
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slotType.setColorCode(dmr::Slot::s_colorCode);
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slotType.setDataType(dmr::defines::DataType::VOICE_LC_HEADER);
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slotType.encode(frame + 2U);
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dmr::Sync::addDMRDataSync(frame + 2U, dmr::Slot::s_duplex);
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return slot.processFrame(frame, sizeof(frame));
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}
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/* Gets a P25 Phase 2 slot for tests. */
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p25::phase2::Slot& HostTestHooks::p25P2Slot(p25::phase2::Control& control, uint32_t slotNo)
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{
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assert(slotNo < p25::phase2::Control::SLOT_COUNT);
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return slotNo == 0U ? *control.m_slot1 : *control.m_slot2;
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}
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/* Gets P25 Phase 2 RF state. */
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RPT_RF_STATE HostTestHooks::p25P2RFState(const p25::phase2::Slot& slot) { return slot.m_rfState; }
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void HostTestHooks::p25P2SetRFState(p25::phase2::Slot& slot, RPT_RF_STATE state) { slot.m_rfState = state; }
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/* Gets P25 Phase 2 last source ID. */
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uint32_t HostTestHooks::p25P2LastSrcId(const p25::phase2::Slot& slot)
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{
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return slot.m_rfLastSrcId != 0U ? slot.m_rfLastSrcId : slot.m_netLastSrcId;
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}
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/* Gets P25 Phase 2 last destination ID. */
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uint32_t HostTestHooks::p25P2LastDstId(const p25::phase2::Slot& slot)
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{
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return slot.m_rfLastDstId != 0U ? slot.m_rfLastDstId : slot.m_netLastDstId;
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}
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/* Gets P25 Phase 2 RF scramble offset. */
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uint16_t HostTestHooks::p25P2RFScrambleOffset(const p25::phase2::Slot& slot) { return slot.m_rfScrambleOffset; }
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/* Gets P25 Phase 2 network scramble offset. */
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uint16_t HostTestHooks::p25P2NetScrambleOffset(const p25::phase2::Slot& slot) { return slot.m_netScrambleOffset; }
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/* Gets whether P25 Phase 2 ESS is complete. */
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bool HostTestHooks::p25P2ESSComplete(const p25::phase2::Slot& slot)
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{
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return slot.m_voice.m_rfESSComplete || slot.m_voice.m_netESSComplete;
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}
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/* Gets P25 Phase 2 ESS algorithm ID. */
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uint8_t HostTestHooks::p25P2ESSAlgId(const p25::phase2::Slot& slot)
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{
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const uint8_t* ess = slot.m_voice.m_netESSComplete ? slot.m_voice.m_netESS : slot.m_voice.m_rfESS;
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return ess[0U];
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}
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/* Gets P25 Phase 2 ESS key ID. */
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uint16_t HostTestHooks::p25P2ESSKeyId(const p25::phase2::Slot& slot)
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{
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const uint8_t* ess = slot.m_voice.m_netESSComplete ? slot.m_voice.m_netESS : slot.m_voice.m_rfESS;
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return static_cast<uint16_t>((ess[1U] << 8U) | ess[2U]);
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}
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/* Copies P25 Phase 2 ESS MI. */
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void HostTestHooks::p25P2ESSMI(const p25::phase2::Slot& slot, uint8_t* mi)
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{
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if (mi != nullptr)
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::memcpy(mi, slot.m_voice.m_netESSComplete ? slot.m_voice.m_netESS + 3U :
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slot.m_voice.m_rfESS + 3U, 9U);
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}
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/* Gets P25 Phase 2 RF VCH state. */
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p25::phase2::Slot::VCH_STATE HostTestHooks::p25P2RFVCHState(const p25::phase2::Slot& slot) { return slot.m_rfVCHState; }
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/* Gets P25 Phase 2 network VCH state. */
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p25::phase2::Slot::VCH_STATE HostTestHooks::p25P2NetVCHState(const p25::phase2::Slot& slot) { return slot.m_netVCHState; }
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/* Gets P25 Phase 2 DUID. */
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p25::defines::P2_DUID::E HostTestHooks::p25P2DUID(const p25::phase2::Slot& slot) { return slot.m_duid; }
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/* Gets P25 Phase 2 RF PTT count. */
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uint8_t HostTestHooks::p25P2RFPTTCount(const p25::phase2::Slot& slot) { return slot.m_rfPTTCount; }
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/* Gets P25 Phase 2 RF frames count. */
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uint32_t HostTestHooks::p25P2RFFrames(const p25::phase2::Slot& slot) { return slot.m_rfFrames; }
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/* Gets P25 Phase 2 network frames count. */
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uint32_t HostTestHooks::p25P2NetFrames(const p25::phase2::Slot& slot) { return slot.m_netFrames; }
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/* Gets P25 Phase 2 network lost frames count. */
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uint32_t HostTestHooks::p25P2NetLost(const p25::phase2::Slot& slot) { return slot.m_netLost; }
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/* Gets P25 Phase 2 network missed frames count. */
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uint32_t HostTestHooks::p25P2NetMissed(const p25::phase2::Slot& slot) { return slot.m_netMissed; }
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/* Gets P25 Phase 2 RF bits, network bits, RF errors, and network errors. */
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uint32_t HostTestHooks::p25P2RFBits(const p25::phase2::Slot& slot) { return slot.m_rfBits; }
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/* Gets P25 Phase 2 network bits. */
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uint32_t HostTestHooks::p25P2NetBits(const p25::phase2::Slot& slot) { return slot.m_netBits; }
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/* Gets P25 Phase 2 RF errors. */
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uint32_t HostTestHooks::p25P2RFErrs(const p25::phase2::Slot& slot) { return slot.m_rfErrs; }
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/* Gets P25 Phase 2 network errors. */
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uint32_t HostTestHooks::p25P2NetErrs(const p25::phase2::Slot& slot) { return slot.m_netErrs; }
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/* Gets P25 network state. */
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RPT_NET_STATE HostTestHooks::p25NetState(const p25::Control& control) { return control.m_netState; }
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/* Gets P25 RF state. */
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RPT_RF_STATE HostTestHooks::p25RFState(const p25::Control& control) { return control.m_rfState; }
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/* Gets P25 last network destination ID. */
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uint32_t HostTestHooks::p25NetLastDstId(const p25::Control& control) { return control.m_netLastDstId; }
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/* Gets P25 last network source ID. */
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uint32_t HostTestHooks::p25NetLastSrcId(const p25::Control& control) { return control.m_netLastSrcId; }
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/* Gets P25 permitted destination ID. */
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uint32_t HostTestHooks::p25PermittedDstId(const p25::Control& control) { return control.m_permittedDstId; }
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/* Gets P25 tail-on-idle flag. */
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bool HostTestHooks::p25TailOnIdle(const p25::Control& control) { return control.m_tailOnIdle; }
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/* Gets P25 network watchdog timer. */
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Timer& HostTestHooks::p25NetworkWatchdog(p25::Control& control) { return control.m_networkWatchdog; }
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/* Gets P25 network talkgroup hang timer. */
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Timer& HostTestHooks::p25NetTGHang(p25::Control& control) { return control.m_netTGHang; }
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/* Gets P25 RF talkgroup hang timer. */
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Timer& HostTestHooks::p25RFTGHang(p25::Control& control) { return control.m_rfTGHang; }
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/* Gets P25 RF loss watchdog timer. */
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Timer& HostTestHooks::p25RFLossWatchdog(p25::Control& control) { return control.m_rfLossWatchdog; }
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/* Forces P25 control network state and last IDs. */
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void HostTestHooks::p25SetNetState(p25::Control& control, RPT_NET_STATE netState, uint32_t srcId, uint32_t dstId)
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{
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control.m_netState = netState;
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control.m_netLastSrcId = srcId;
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control.m_netLastDstId = dstId;
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}
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/* Forces P25 control into active RF call state. */
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void HostTestHooks::p25SetRFCall(p25::Control& control, uint32_t srcId, uint32_t dstId)
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{
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control.m_rfState = RS_RF_AUDIO;
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control.m_rfLastSrcId = srcId;
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control.m_rfLastDstId = dstId;
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control.m_rfTGHang.start();
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}
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/* Returns P25 control to RF listening state. */
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void HostTestHooks::p25ClearRFCall(p25::Control& control)
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{
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control.m_rfState = RS_RF_LISTENING;
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control.m_rfLastSrcId = 0U;
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control.m_rfLastDstId = 0U;
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control.m_rfTGHang.stop();
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}
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/* Forces P25 control into RF rejected state. */
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void HostTestHooks::p25SetRFRejected(p25::Control& control)
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{
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control.m_rfState = RS_RF_REJECTED;
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}
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/* Encodes and stamps a valid NID for a DUID into a P25 RF frame. */
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void HostTestHooks::p25StampRFFrameNID(p25::Control& control, uint8_t* frame, p25::defines::DUID::E duid)
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{
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control.m_nid.encode(frame + 2U, duid);
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}
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/* Injects synthetic P25 network call start. */
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void HostTestHooks::p25StartNetCall(p25::Control& control, const p25::lc::LC& lc, const p25::data::LowSpeedData& lsd)
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{
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p25::packet::Voice* voice = control.m_voice;
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voice->m_dfsiLC = p25::dfsi::LC(lc, lsd);
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voice->m_netLastLDU1 = lc;
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voice->writeNet_LDU1();
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}
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/* Injects synthetic P25 network call termination. */
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bool HostTestHooks::p25TerminateNetCall(p25::Control& control, const p25::lc::LC& lc, p25::defines::DUID::E duid)
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{
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p25::packet::Voice* voice = control.m_voice;
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uint8_t buffer[1U] = { 0x00U };
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p25::data::LowSpeedData lsd;
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p25::defines::FrameType::E frameType = p25::defines::FrameType::DATA_UNIT;
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p25::lc::LC localControl = lc;
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p25::defines::DUID::E localDuid = duid;
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return voice->processNetwork(buffer, 1U, localControl, lsd, localDuid, frameType);
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}
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/* Selects the next secondary active talkgroup for a P25 voice channel. */
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bool HostTestHooks::p25NextActiveTalkgroups(p25::Control& control, const std::vector<uint32_t>& activeTG,
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uint8_t& groupUpdtIndex, const uint32_t& dstId, uint32_t& dstIdB, bool& hasDstIdB)
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{
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return control.m_voice->nextActiveTalkgroups(activeTG, groupUpdtIndex, dstId, dstIdB, hasDstIdB);
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}
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/* Gets NXDN network state. */
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RPT_NET_STATE HostTestHooks::nxdnNetState(const nxdn::Control& control) { return control.m_netState; }
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/* Gets NXDN RF state. */
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RPT_RF_STATE HostTestHooks::nxdnRFState(const nxdn::Control& control) { return control.m_rfState; }
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/* Gets NXDN last network destination ID. */
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uint32_t HostTestHooks::nxdnNetLastDstId(const nxdn::Control& control) { return control.m_netLastDstId; }
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/* Gets NXDN last network source ID. */
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uint32_t HostTestHooks::nxdnNetLastSrcId(const nxdn::Control& control) { return control.m_netLastSrcId; }
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/* Gets NXDN permitted destination ID. */
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uint32_t HostTestHooks::nxdnPermittedDstId(const nxdn::Control& control) { return control.m_permittedDstId; }
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/* Gets NXDN network watchdog timer. */
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Timer& HostTestHooks::nxdnNetworkWatchdog(nxdn::Control& control) { return control.m_networkWatchdog; }
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/* Gets NXDN network talkgroup hang timer. */
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Timer& HostTestHooks::nxdnNetTGHang(nxdn::Control& control) { return control.m_netTGHang; }
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/* Gets NXDN RF talkgroup hang timer. */
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Timer& HostTestHooks::nxdnRFTGHang(nxdn::Control& control) { return control.m_rfTGHang; }
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/* Gets NXDN RF loss watchdog timer. */
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Timer& HostTestHooks::nxdnRFLossWatchdog(nxdn::Control& control) { return control.m_rfLossWatchdog; }
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/* Forces NXDN control into active RF call state. */
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void HostTestHooks::nxdnSetRFCall(nxdn::Control& control, uint32_t srcId, uint32_t dstId)
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{
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control.m_rfState = RS_RF_AUDIO;
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control.m_rfLastSrcId = srcId;
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control.m_rfLastDstId = dstId;
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control.m_rfTGHang.start();
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}
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/* Returns NXDN control to RF listening state. */
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void HostTestHooks::nxdnClearRFCall(nxdn::Control& control)
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{
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control.m_rfState = RS_RF_LISTENING;
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control.m_rfLastSrcId = 0U;
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control.m_rfLastDstId = 0U;
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control.m_rfTGHang.stop();
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}
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/* Forces NXDN control into RF rejected state. */
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void HostTestHooks::nxdnSetRFRejected(nxdn::Control& control)
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{
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control.m_rfState = RS_RF_REJECTED;
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}
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/* Injects synthetic NXDN RF call start frame. */
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bool HostTestHooks::nxdnStartRFCall(nxdn::Control& control, uint32_t srcId, uint32_t dstId)
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{
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uint8_t start[nxdn::defines::NXDN_FRAME_LENGTH_BYTES + 2U];
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::memset(start, 0x00U, sizeof(start));
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::memcpy(start + 2U, NXDN_CAL_1K_PAYLOAD, nxdn::defines::NXDN_FRAME_LENGTH_BYTES);
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start[0U] = modem::TAG_DATA;
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start[1U] = 0x01U;
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nxdn::Sync::addNXDNSync(start + 2U);
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nxdn::channel::LICH lich;
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lich.setRFCT(nxdn::defines::RFChannelType::RTCH);
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lich.setFCT(nxdn::defines::FuncChannelType::USC_SACCH_NS);
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lich.setOption(nxdn::defines::ChOption::STEAL_FACCH);
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lich.setOutbound(false);
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lich.encode(start + 2U);
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nxdn::channel::SACCH sacch;
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sacch.setData(nxdn::defines::SACCH_IDLE);
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sacch.setRAN(control.m_ran);
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sacch.setStructure(nxdn::defines::ChStructure::SR_SINGLE);
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sacch.encode(start + 2U);
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uint8_t buffer[nxdn::defines::NXDN_RTCH_LC_LENGTH_BYTES];
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nxdn::lc::RTCH lc;
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lc.setMessageType(nxdn::defines::MessageType::RTCH_VCALL);
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lc.setSrcId(srcId);
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lc.setDstId(dstId);
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lc.setGroup(true);
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lc.setTransmissionMode(nxdn::defines::TransmissionMode::MODE_4800);
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lc.encode(buffer, nxdn::defines::NXDN_RTCH_LC_LENGTH_BITS);
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nxdn::channel::FACCH1 facch;
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facch.setData(buffer);
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|
facch.encode(start + 2U, nxdn::defines::NXDN_FSW_LENGTH_BITS + nxdn::defines::NXDN_LICH_LENGTH_BITS + nxdn::defines::NXDN_SACCH_FEC_LENGTH_BITS);
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|
facch.encode(start + 2U, nxdn::defines::NXDN_FSW_LENGTH_BITS + nxdn::defines::NXDN_LICH_LENGTH_BITS + nxdn::defines::NXDN_SACCH_FEC_LENGTH_BITS + nxdn::defines::NXDN_FACCH1_FEC_LENGTH_BITS);
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|
|
|
nxdn::NXDNUtils::scrambler(start + 2U);
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|
|
|
return control.processFrame(start, sizeof(start));
|
|
}
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|
|
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/* Injects synthetic NXDN network call start frame. */
|
|
|
|
bool HostTestHooks::nxdnStartNetCall(nxdn::Control& control, const nxdn::lc::RTCH& lc)
|
|
{
|
|
uint8_t start[nxdn::defines::NXDN_FRAME_LENGTH_BYTES + 2U];
|
|
::memset(start, 0x00U, sizeof(start));
|
|
|
|
nxdn::Sync::addNXDNSync(start + 2U);
|
|
|
|
nxdn::channel::LICH lich;
|
|
lich.setRFCT(nxdn::defines::RFChannelType::RCCH);
|
|
lich.setFCT(nxdn::defines::FuncChannelType::USC_SACCH_NS);
|
|
lich.setOption(nxdn::defines::ChOption::STEAL_FACCH);
|
|
lich.setOutbound(true);
|
|
lich.encode(start + 2U);
|
|
|
|
nxdn::channel::SACCH sacch;
|
|
sacch.setData(nxdn::defines::SACCH_IDLE);
|
|
sacch.setRAN(control.m_ran);
|
|
sacch.setStructure(nxdn::defines::ChStructure::SR_SINGLE);
|
|
sacch.encode(start + 2U);
|
|
|
|
uint8_t buffer[nxdn::defines::NXDN_RTCH_LC_LENGTH_BYTES];
|
|
nxdn::lc::RTCH localControl = lc;
|
|
localControl.encode(buffer, nxdn::defines::NXDN_RTCH_LC_LENGTH_BITS);
|
|
|
|
nxdn::channel::FACCH1 facch;
|
|
facch.setData(buffer);
|
|
facch.encode(start + 2U, nxdn::defines::NXDN_FSW_LENGTH_BITS + nxdn::defines::NXDN_LICH_LENGTH_BITS + nxdn::defines::NXDN_SACCH_FEC_LENGTH_BITS);
|
|
facch.encode(start + 2U, nxdn::defines::NXDN_FSW_LENGTH_BITS + nxdn::defines::NXDN_LICH_LENGTH_BITS + nxdn::defines::NXDN_SACCH_FEC_LENGTH_BITS + nxdn::defines::NXDN_FACCH1_FEC_LENGTH_BITS);
|
|
|
|
return control.m_voice->processNetwork(nxdn::defines::FuncChannelType::USC_SACCH_NS, nxdn::defines::ChOption::STEAL_FACCH, localControl, start, sizeof(start));
|
|
}
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|
#endif
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