* Add RAW format * F5 stubs for build to pass * Fix saving decoded signal error * Irda: set ISR before starting timer, remove explicit NVIC configuration Co-authored-by: あく <alleteam@gmail.com>
		
			
				
	
	
		
			201 lines
		
	
	
		
			5.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			201 lines
		
	
	
		
			5.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
#include "irda-app-file-parser.hpp"
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#include "irda-app-remote-manager.hpp"
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#include "irda-app-signal.h"
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#include <irda.h>
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#include <cstdio>
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#include <stdint.h>
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#include <string_view>
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#include <furi.h>
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uint32_t const IrdaAppFileParser::max_line_length = ((9 + 1) * 512 + 100);
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std::unique_ptr<IrdaAppFileParser::IrdaFileSignal> IrdaAppFileParser::read_signal(File* file) {
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    while(1) {
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        auto str = getline(file);
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        if(str.empty()) return nullptr;
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        auto message = parse_signal(str);
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        if(!message.get()) {
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            message = parse_signal_raw(str);
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        }
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        if(message) return message;
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    }
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}
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bool IrdaAppFileParser::store_signal(File* file, const IrdaAppSignal& signal, const char* name) {
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    char* content = new char[max_line_length];
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    size_t written = 0;
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    if(!signal.is_raw()) {
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        auto message = signal.get_message();
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        auto protocol = message.protocol;
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        sniprintf(
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            content,
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            max_line_length,
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            "%.31s %.31s A:%0*lX C:%0*lX\n",
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            name,
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            irda_get_protocol_name(protocol),
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            irda_get_protocol_address_length(protocol),
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            message.address,
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            irda_get_protocol_command_length(protocol),
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            message.command);
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        written = strlen(content);
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    } else {
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        int duty_cycle = 100 * IRDA_COMMON_DUTY_CYCLE;
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        written += sniprintf(
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            &content[written],
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            max_line_length - written,
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            "%.31s RAW F:%d DC:%d",
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            name,
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            IRDA_COMMON_CARRIER_FREQUENCY,
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            duty_cycle);
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        auto& raw_signal = signal.get_raw_signal();
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        for(size_t i = 0; i < raw_signal.timings_cnt; ++i) {
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            written += sniprintf(
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                &content[written], max_line_length - written, " %ld", raw_signal.timings[i]);
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            furi_assert(written <= max_line_length);
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        }
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        written += snprintf(&content[written], max_line_length - written, "\n");
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    }
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    furi_assert(written < max_line_length);
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    size_t write_count = 0;
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    write_count = get_fs_api().file.write(file, content, written);
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    delete[] content;
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    return (file->error_id == FSE_OK) && (write_count == written);
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}
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std::unique_ptr<IrdaAppFileParser::IrdaFileSignal>
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    IrdaAppFileParser::parse_signal(const std::string& str) const {
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    char protocol_name[32];
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    uint32_t address;
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    uint32_t command;
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    auto irda_file_signal = std::make_unique<IrdaFileSignal>();
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    int parsed = std::sscanf(
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        str.c_str(),
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        "%31s %31s A:%lX C:%lX",
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        irda_file_signal->name,
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        protocol_name,
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        &address,
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        &command);
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    if(parsed != 4) {
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        return nullptr;
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    }
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    IrdaProtocol protocol = irda_get_protocol_by_name(protocol_name);
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    if(!irda_is_protocol_valid((IrdaProtocol)protocol)) {
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        return nullptr;
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    }
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    int address_length = irda_get_protocol_address_length(protocol);
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    uint32_t address_mask = (1LU << (4 * address_length)) - 1;
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    if(address != (address & address_mask)) {
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        return nullptr;
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    }
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    int command_length = irda_get_protocol_command_length(protocol);
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    uint32_t command_mask = (1LU << (4 * command_length)) - 1;
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    if(command != (command & command_mask)) {
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        return nullptr;
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    }
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    IrdaMessage message = {
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        .protocol = protocol,
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        .address = address,
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        .command = command,
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        .repeat = false,
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    };
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    irda_file_signal->signal.set_message(&message);
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    return irda_file_signal;
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}
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const char* find_first_not_of(const char* str, char symbol) {
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    const char* str_start = nullptr;
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    while(str != str_start) {
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        str_start = str;
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        str = strchr(str, symbol);
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    }
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    return str;
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}
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std::unique_ptr<IrdaAppFileParser::IrdaFileSignal>
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    IrdaAppFileParser::parse_signal_raw(const std::string& string) const {
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    char protocol_name[32];
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    uint32_t frequency;
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    uint32_t duty_cycle;
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    int str_len = string.size();
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    std::string_view str(string.c_str());
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    auto irda_file_signal = std::make_unique<IrdaFileSignal>();
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    int parsed = std::sscanf(
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        str.data(),
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        "%31s %31s F:%ld DC:%ld",
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        irda_file_signal->name,
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        protocol_name,
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        &frequency,
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        &duty_cycle);
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    if(parsed != 4) {
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        return nullptr;
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    }
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    char dummy[100] = {0};
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    int header_len = 0;
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    header_len = sniprintf(
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        dummy,
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        sizeof(dummy),
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        "%.31s %.31s F:%ld DC:%ld",
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        irda_file_signal->name,
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        protocol_name,
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        frequency,
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        duty_cycle);
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    furi_assert(header_len < str_len);
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    str.remove_prefix(header_len);
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    /* move allocated timings into raw signal object */
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    IrdaAppSignal::RawSignal raw_signal = {.timings_cnt = 0, .timings = new uint32_t[500]};
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    bool result = false;
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    while(!str.empty()) {
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        char buf[10];
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        size_t index = str.find_first_not_of(' ', 1);
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        if(index == std::string_view::npos) {
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            result = true;
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            break;
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        }
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        str.remove_prefix(index);
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        parsed = std::sscanf(str.data(), "%9s", buf);
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        if(parsed != 1) {
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            break;
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        }
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        str.remove_prefix(strlen(buf));
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        int value = atoi(buf);
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        if(value <= 0) {
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            break;
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        }
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        raw_signal.timings[raw_signal.timings_cnt] = value;
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        ++raw_signal.timings_cnt;
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        if(raw_signal.timings_cnt >= 500) {
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            break;
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        }
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    }
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    if(result) {
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        irda_file_signal->signal.set_raw_signal(raw_signal.timings, raw_signal.timings_cnt);
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    } else {
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        (void)irda_file_signal.release();
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        delete[] raw_signal.timings;
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    }
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    return irda_file_signal;
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}
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