mirror of
https://github.com/eried/portapack-mayhem.git
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47e95c0c47
* Attempt to fix Capture startup hang * Pump baseband_queue on M4 startup * Synchronization experiment * Moved SpectrumCapture member, better hang detection for M0 * Prevent execute from working on members until class has been initialized. * Formatting * Remove workaround. * Rebase on next
206 lines
6.0 KiB
C++
206 lines
6.0 KiB
C++
/*
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* Copyright (C) 2015 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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#ifndef __UI_SPECTRUM_H__
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#define __UI_SPECTRUM_H__
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#include "ui.hpp"
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#include "ui_widget.hpp"
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#include "event_m0.hpp"
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#include "message.hpp"
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#include <cstdint>
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#include <cstddef>
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namespace ui {
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namespace spectrum {
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class AudioSpectrumView : public View {
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public:
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AudioSpectrumView(const Rect parent_rect);
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void paint(Painter& painter) override;
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void on_audio_spectrum(const AudioSpectrum* spectrum);
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private:
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static constexpr int cursor_band_height = 4;
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int16_t audio_spectrum[128]{0};
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Labels labels{
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{{6 * 8, 0 * 16}, "Hz", Color::light_grey()}};
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NumberField field_frequency{
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{0 * 8, 0 * 16},
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5,
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{0, 48000},
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48000 / 240,
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' '};
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Waveform waveform{
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{0, 1 * 16 + cursor_band_height, 30 * 8, 2 * 16},
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audio_spectrum,
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128,
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0,
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false,
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Color::white()};
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};
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class FrequencyScale : public Widget {
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public:
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std::function<void(int32_t offset)> on_select{};
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void on_show() override;
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void on_focus() override;
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void on_blur() override;
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bool on_encoder(const EncoderEvent delta) override;
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bool on_key(const KeyEvent key) override;
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void set_spectrum_sampling_rate(const int new_sampling_rate);
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void set_channel_filter(const int low_frequency, const int high_frequency, const int transition);
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void paint(Painter& painter) override;
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private:
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static constexpr int filter_band_height = 4;
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void on_tick_second();
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bool _blink{false};
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int32_t cursor_position{0};
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SignalToken signal_token_tick_second{};
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int spectrum_sampling_rate{0};
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const int spectrum_bins = std::tuple_size<decltype(ChannelSpectrum::db)>::value;
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int channel_filter_low_frequency{0};
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int channel_filter_high_frequency{0};
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int channel_filter_transition{0};
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void clear();
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void clear_background(Painter& painter, const Rect r);
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void draw_frequency_ticks(Painter& painter, const Rect r);
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void draw_filter_ranges(Painter& painter, const Rect r);
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};
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/* NB: These visualizations rely on having a baseband image running.
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* If the baseband is shutdown or otherwise not running when interacting
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* with these, they will almost certainly hang the device. */
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class WaterfallWidget : public Widget {
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public:
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void on_show() override;
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void on_hide() override;
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void paint(Painter&) override {}
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void on_channel_spectrum(const ChannelSpectrum& spectrum);
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private:
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void clear();
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};
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class WaterfallView : public View {
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public:
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std::function<void(int32_t offset)> on_select{};
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WaterfallView(const bool cursor = false);
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WaterfallView(const WaterfallView&) = delete;
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WaterfallView(WaterfallView&&) = delete;
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WaterfallView& operator=(const WaterfallView&) = delete;
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WaterfallView& operator=(WaterfallView&&) = delete;
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// TODO: remove these, use start/stop directly instead.
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void on_show() override;
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void on_hide() override;
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void start();
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void stop();
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void set_parent_rect(const Rect new_parent_rect) override;
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void show_audio_spectrum_view(const bool show);
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private:
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void update_widgets_rect();
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const Rect audio_spectrum_view_rect{0 * 8, 0 * 16, 30 * 8, 2 * 16 + 20};
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static constexpr Dim audio_spectrum_height = 16 * 2 + 20;
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static constexpr Dim scale_height = 20;
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WaterfallWidget waterfall_widget{};
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FrequencyScale frequency_scale{};
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bool running_{false};
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ChannelSpectrumFIFO* channel_fifo{nullptr};
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AudioSpectrum* audio_spectrum_data{nullptr};
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bool audio_spectrum_update{false};
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std::unique_ptr<AudioSpectrumView> audio_spectrum_view{};
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int sampling_rate{0};
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int32_t cursor_position{0};
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ui::Rect waterfall_normal_rect{};
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ui::Rect waterfall_reduced_rect{};
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MessageHandlerRegistration message_handler_channel_spectrum_config{
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Message::ID::ChannelSpectrumConfig,
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[this](const Message* const p) {
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const auto message = *reinterpret_cast<const ChannelSpectrumConfigMessage*>(p);
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this->channel_fifo = message.fifo;
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}};
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MessageHandlerRegistration message_handler_audio_spectrum{
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Message::ID::AudioSpectrum,
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[this](const Message* const p) {
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const auto message = *reinterpret_cast<const AudioSpectrumMessage*>(p);
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this->audio_spectrum_data = message.data;
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this->audio_spectrum_update = true;
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}};
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MessageHandlerRegistration message_handler_frame_sync{
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Message::ID::DisplayFrameSync,
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[this](const Message* const) {
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if (this->channel_fifo) {
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ChannelSpectrum channel_spectrum;
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while (channel_fifo->out(channel_spectrum)) {
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this->on_channel_spectrum(channel_spectrum);
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}
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}
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if (this->audio_spectrum_update) {
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this->audio_spectrum_update = false;
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this->on_audio_spectrum();
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}
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}};
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void on_channel_spectrum(const ChannelSpectrum& spectrum);
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void on_audio_spectrum();
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};
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} /* namespace spectrum */
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/* Calculates the best anti_alias_baseband_bandwidth_filter for the given sampling rate. */
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uint32_t filter_bandwidth_for_sampling_rate(int32_t sampling_rate);
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} /* namespace ui */
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#endif /*__UI_SPECTRUM_H__*/
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