2015-11-20 01:59:09 -05:00
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/*
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* Copyright (C) 2014 Jared Boone, ShareBrained Technology, Inc.
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*
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* This file is part of PortaPack.
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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 2, or (at your option)
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* 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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* along with this program; see the file COPYING. If not, write to
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* the Free Software Foundation, Inc., 51 Franklin Street,
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* Boston, MA 02110-1301, USA.
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*/
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#include "ch.h"
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#include "lpc43xx_cpp.hpp"
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#include "portapack_shared_memory.hpp"
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#include "portapack_dma.hpp"
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#include "gpdma.hpp"
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#include "event_m4.hpp"
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#include "touch_dma.hpp"
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2016-02-04 04:27:53 -05:00
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#include "baseband_thread.hpp"
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#include "rssi_thread.hpp"
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2015-11-20 01:59:09 -05:00
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#include "baseband_processor.hpp"
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#include "message_queue.hpp"
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#include "utility.hpp"
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#include "debug.hpp"
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#include "audio_dma.hpp"
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#include "gcc.hpp"
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#include <cstdint>
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#include <cstddef>
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#include <array>
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2016-02-04 04:27:53 -05:00
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extern "C" {
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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void __late_init(void) {
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/*
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* System initializations.
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* - HAL initialization, this also initializes the configured device drivers
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* and performs the board-specific initializations.
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* - Kernel initialization, the main() function becomes a thread and the
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* RTOS is active.
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*/
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halInit();
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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/* After this call, scheduler, systick, heap, etc. are available. */
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/* By doing chSysInit() here, it runs before C++ constructors, which may
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* require the heap.
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*/
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chSysInit();
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}
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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}
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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static void init() {
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i2s::i2s0::configure(
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audio::i2s0_config_tx,
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audio::i2s0_config_rx,
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audio::i2s0_config_dma
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);
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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audio::dma::init();
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audio::dma::configure();
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audio::dma::enable();
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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i2s::i2s0::tx_start();
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i2s::i2s0::rx_start();
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LPC_CREG->DMAMUX = portapack::gpdma_mux;
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gpdma::controller.enable();
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nvicEnableVector(DMA_IRQn, CORTEX_PRIORITY_MASK(LPC_DMA_IRQ_PRIORITY));
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touch::dma::init();
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touch::dma::allocate();
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touch::dma::enable();
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}
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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static void halt() {
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port_disable();
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while(true) {
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port_wait_for_interrupt();
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2015-11-20 01:59:09 -05:00
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}
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}
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static void shutdown() {
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// TODO: Is this complete?
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nvicDisableVector(DMA_IRQn);
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chSysDisable();
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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systick_stop();
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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ShutdownMessage shutdown_message;
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shared_memory.application_queue.push(shutdown_message);
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halt();
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}
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int main(void) {
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init();
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2015-11-20 01:59:09 -05:00
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2016-02-04 04:27:53 -05:00
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/* TODO: Ensure DMAs are configured to point at first LLI in chain. */
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EventDispatcher event_dispatcher;
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event_dispatcher.run();
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shutdown();
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return 0;
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}
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/*
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2015-11-20 01:59:09 -05:00
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void run() override {
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while(true) {
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if (direction == baseband::Direction::Transmit) {
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const auto buffer_tmp = baseband::dma::wait_for_tx_buffer();
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const buffer_c8_t buffer {
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buffer_tmp.p, buffer_tmp.count, baseband_configuration.sampling_rate
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};
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if( baseband_processor ) {
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baseband_processor->execute(buffer);
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}
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} else {
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const auto buffer_tmp = baseband::dma::wait_for_rx_buffer();
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const buffer_c8_t buffer {
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buffer_tmp.p, buffer_tmp.count, baseband_configuration.sampling_rate
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};
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if( baseband_processor ) {
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baseband_processor->execute(buffer);
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}
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}
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}
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}
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};
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class ToneProcessor : public BasebandProcessor {
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public:
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void execute(buffer_c8_t buffer) override {
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for (size_t i = 0; i<buffer.count; i++) {
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//Sample generation 2.28M/10 = 228kHz
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if (s >= 9) {
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s = 0;
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aphase += 353205; // DEBUG
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//sample = sintab[(aphase & 0x03FF0000)>>16];
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} else {
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s++;
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}
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//sample = sintab[(aphase & 0x03FF0000)>>16];
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//FM
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frq = sample * 500; // DEBUG
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phase = (phase + frq);
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sphase = phase + (256<<16);
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//re = sintab[(sphase & 0x03FF0000)>>16];
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//im = sintab[(phase & 0x03FF0000)>>16];
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buffer.p[i] = {(int8_t)re,(int8_t)im};
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}
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}
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private:
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int8_t re, im;
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uint8_t s;
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uint32_t sample_count;
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uint32_t aphase, phase, sphase;
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int32_t sample, sig, frq;
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};
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2016-01-05 05:47:46 -05:00
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char ram_loop[32];
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typedef int (*fn_ptr)(void);
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fn_ptr loop_ptr;
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void ram_loop_fn(void) {
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while(1) {}
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}
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void wait_for_switch(void) {
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memcpy(&ram_loop[0], reinterpret_cast<char*>(&ram_loop_fn), 32);
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loop_ptr = reinterpret_cast<fn_ptr>(&ram_loop[0]);
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ReadyForSwitchMessage message;
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shared_memory.application_queue.push(message);
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(*loop_ptr)();
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}
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2015-11-20 01:59:09 -05:00
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int main(void) {
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init();
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events_initialize(chThdSelf());
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m0apptxevent_interrupt_enable();
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EventDispatcher event_dispatcher;
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auto& message_handlers = event_dispatcher.message_handlers();
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2016-01-05 14:17:55 -05:00
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message_handlers.register_handler(Message::ID::ModuleID,
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2016-01-29 18:28:05 -05:00
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[](Message* p) {
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2016-01-05 14:17:55 -05:00
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ModuleIDMessage reply;
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auto message = static_cast<ModuleIDMessage*>(p);
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if (message->query == true) { // Shouldn't be needed
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memcpy(reply.md5_signature, (const void *)(0x10087FF0), 16);
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reply.query = false;
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shared_memory.application_queue.push(reply);
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}
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}
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);
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2015-11-20 01:59:09 -05:00
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message_handlers.register_handler(Message::ID::BasebandConfiguration,
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[&message_handlers](const Message* const p) {
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auto message = reinterpret_cast<const BasebandConfigurationMessage*>(p);
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if( message->configuration.mode != baseband_thread.baseband_configuration.mode ) {
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if( baseband_thread.baseband_processor ) {
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i2s::i2s0::tx_mute();
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baseband::dma::disable();
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}
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// TODO: Timing problem around disabling DMA and nulling and deleting old processor
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auto old_p = baseband_thread.baseband_processor;
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baseband_thread.baseband_processor = nullptr;
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delete old_p;
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switch(message->configuration.mode) {
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2016-01-05 05:47:46 -05:00
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case TX_RDS:
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2015-11-20 01:59:09 -05:00
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direction = baseband::Direction::Transmit;
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baseband_thread.baseband_processor = new RDSProcessor();
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break;
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2016-01-05 05:47:46 -05:00
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case TX_LCR:
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2015-11-20 01:59:09 -05:00
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direction = baseband::Direction::Transmit;
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baseband_thread.baseband_processor = new LCRFSKProcessor();
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break;
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2016-01-05 05:47:46 -05:00
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case TX_TONE:
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2015-11-20 01:59:09 -05:00
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direction = baseband::Direction::Transmit;
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baseband_thread.baseband_processor = new ToneProcessor();
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break;
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2016-01-05 05:47:46 -05:00
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case TX_JAMMER:
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2015-11-20 01:59:09 -05:00
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direction = baseband::Direction::Transmit;
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baseband_thread.baseband_processor = new JammerProcessor();
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break;
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2016-01-03 01:24:30 -05:00
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2016-01-05 05:47:46 -05:00
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case TX_XYLOS:
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2016-01-03 01:24:30 -05:00
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direction = baseband::Direction::Transmit;
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baseband_thread.baseband_processor = new XylosProcessor();
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break;
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2016-01-05 05:47:46 -05:00
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2016-01-29 18:28:05 -05:00
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case PLAY_AUDIO:
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direction = baseband::Direction::Transmit;
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baseband_thread.baseband_processor = new PlayAudioProcessor();
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message_handlers.register_handler(Message::ID::FIFOData,
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[](Message* p) {
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auto message = static_cast<FIFODataMessage*>(p);
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baseband_thread.baseband_processor->fill_buffer(message->data);
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}
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);
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break;
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2016-01-05 14:17:55 -05:00
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case SWITCH:
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2016-01-05 05:47:46 -05:00
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wait_for_switch();
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2015-11-20 01:59:09 -05:00
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default:
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break;
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}
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if( baseband_thread.baseband_processor )
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baseband::dma::enable(direction);
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}
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baseband::dma::configure(
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baseband_buffer->data(),
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direction
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);
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baseband_thread.baseband_configuration = message->configuration;
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}
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);
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message_handlers.register_handler(Message::ID::Shutdown,
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[&event_dispatcher](const Message* const) {
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event_dispatcher.request_stop();
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}
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);
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2016-02-04 04:27:53 -05:00
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*/
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