mirror of
https://github.com/portapack-mayhem/mayhem-firmware.git
synced 2024-12-14 20:18:13 +00:00
98f3bf151f
* easier 'now', start adding text editor * Adding scrolling to notepad * Better scrolling * Better scrolling, off-by-1 bugs * MVP fit and finish * Add tiny font and use in Notepad * Font tweaking, tiny font cursor * Fix warning * Format changed files * WIP No file limit * WIP - adding CircularBuffer type * WIP Caching * add unit test for circular_buffer * WIP still have a bug when moving cache forward * Finish lazy line caching --------- Co-authored-by: kallanreed <kallanreed@outlook.com>
477 lines
13 KiB
C++
477 lines
13 KiB
C++
/*
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* Copyright (C) 2023 Kyle Reed
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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 "ui_fileman.hpp"
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#include "ui_text_editor.hpp"
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#include "log_file.hpp"
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#include "string_format.hpp"
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using namespace portapack;
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namespace fs = std::filesystem;
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namespace {
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template <typename T>
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T mid(const T& val1, const T& val2, const T& val3) {
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return std::max(val1, std::min(val2, val3));
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}
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/*void log(const std::string& msg) {
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LogFile log{};
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log.append("LOGS/Notepad.txt");
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log.write_entry(msg);
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}*/
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} // namespace
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namespace ui {
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/* FileWrapper ******************************************************/
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FileWrapper::FileWrapper() {
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}
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Optional<FileWrapper::Error> FileWrapper::open(const fs::path& path) {
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file_ = File();
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auto result = file_.open(path);
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if (!result.is_valid()) // No error
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initialize();
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return result;
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}
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std::string FileWrapper::get_text(Offset line, Offset col, Offset length) {
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// TODO: better way to return errors.
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auto range = line_range(line);
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int32_t to_read = length;
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if (!range.is_valid())
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return "[UNCACHED LINE]";
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// Don't read past end of line.
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if (range->start + col + to_read >= range->end)
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to_read = range->end - col - range->start;
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if (to_read <= 0)
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return {};
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return read(range->start + col, to_read);
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}
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Optional<FileWrapper::Range> FileWrapper::line_range(Line line) {
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ensure_cached(line);
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auto offset = offset_for_line(line);
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if (!offset.is_valid())
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return {};
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auto start = *offset == 0 ? start_offset_ : (newlines_[*offset - 1] + 1);
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auto end = newlines_[*offset] + 1;
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return {Range{start, end}};
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}
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FileWrapper::Offset FileWrapper::line_length(Line line) {
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auto range = line_range(line);
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if (range.is_valid())
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return range->end - range->start;
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return 0;
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}
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void FileWrapper::initialize() {
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start_offset_ = 0;
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start_line_ = 0;
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line_count_ = 0;
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newlines_.clear();
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line_ending_ = LineEnding::LF;
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Offset offset = 0;
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auto result = next_newline(offset);
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while (result.is_valid()) {
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++line_count_;
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if (newlines_.size() < max_newlines)
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newlines_.push_back(*result);
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offset = *result + 1;
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result = next_newline(offset);
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}
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}
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std::string FileWrapper::read(Offset offset, Offset length) {
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// TODO: better way to return errors.
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if (offset + length > file_.size())
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return {"[BAD OFFSET]"};
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std::string buffer(length, '\0');
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file_.seek(offset);
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auto result = file_.read(&buffer[0], length);
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if (result.is_ok())
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buffer.resize(*result);
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else
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return result.error().what();
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return buffer;
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}
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Optional<FileWrapper::Offset> FileWrapper::offset_for_line(Line line) const {
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if (line >= line_count_)
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return {};
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Offset actual = line - start_line_;
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if (actual < newlines_.size()) // NB: underflow wrap.
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return {actual};
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return {};
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}
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void FileWrapper::ensure_cached(Line line) {
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if (line >= line_count_)
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return;
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auto result = offset_for_line(line);
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if (result.is_valid())
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return;
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if (line < start_line_) {
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while (line < start_line_ && start_offset_ >= 2) {
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// start_offset_ - 1 should be a newline. Need to
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// find the new value for start_offset_. start_line_
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// has to be > 0 to get into this block so there should
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// always be one newline before start_offset_.
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auto offset = previous_newline(start_offset_ - 2);
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newlines_.push_front(start_offset_ - 1);
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if (!offset.is_valid()) {
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// Must be at beginning.
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start_line_ = 0;
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start_offset_ = 0;
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} else {
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// Found an previous newline, the new start_line_
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// starts at the newline offset + 1.
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start_line_--;
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start_offset_ = *offset + 1;
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}
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}
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} else {
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while (line >= start_line_ + newlines_.size()) {
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auto offset = next_newline(newlines_.back() + 1);
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if (offset.is_valid()) {
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start_line_++;
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start_offset_ = newlines_.front() + 1;
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newlines_.push_back(*offset);
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} /* else at the EOF. */
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}
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}
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}
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Optional<FileWrapper::Offset> FileWrapper::previous_newline(Offset start) {
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constexpr size_t buffer_size = 128;
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char buffer[buffer_size];
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Offset offset = start;
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auto to_read = buffer_size;
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do {
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if (offset < to_read) {
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// NB: Char at 'offset' was read in the previous iteration.
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to_read = offset;
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offset = 0;
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} else
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offset -= to_read;
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file_.seek(offset);
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auto result = file_.read(buffer, to_read);
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if (result.is_error())
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break;
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// Find newlines in the buffer backwards.
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for (int32_t i = *result - 1; i >= 0; --i) {
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switch (buffer[i]) {
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case '\n':
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return {offset + i};
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}
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}
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if (offset == 0)
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break;
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} while (true);
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return {}; // Didn't find one.
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}
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Optional<FileWrapper::Offset> FileWrapper::next_newline(Offset start) {
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constexpr size_t buffer_size = 128;
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char buffer[buffer_size];
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Offset offset = start;
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// EOF, nothing to do.
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if (start >= size())
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return {};
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file_.seek(offset);
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while (true) {
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auto result = file_.read(buffer, buffer_size);
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if (result.is_error())
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return {};
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// Find newlines in the buffer.
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for (Offset i = 0; i < *result; ++i) {
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switch (buffer[i]) {
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case '\n':
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return {offset + i};
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}
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}
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offset += *result;
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if (*result < buffer_size)
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break;
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}
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// Fake a newline at the end for consistency.
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return {offset};
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}
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/* TextEditorView ***************************************************/
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TextEditorView::TextEditorView(NavigationView& nav)
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: nav_{nav} {
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add_children(
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{
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&button_open,
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&text_position,
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&text_size,
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});
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set_focusable(true);
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button_open.on_select = [this](Button&) {
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auto open_view = nav_.push<FileLoadView>(".TXT");
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open_view->on_changed = [this](std::filesystem::path path) {
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open_file(path);
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};
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};
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}
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void TextEditorView::on_focus() {
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refresh_ui();
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button_open.focus();
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}
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void TextEditorView::paint(Painter& painter) {
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auto first_line = paint_state_.first_line;
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auto first_col = paint_state_.first_col;
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if (!paint_state_.has_file)
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return;
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// Move the viewport vertically.
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if (cursor_.line < first_line)
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first_line = cursor_.line;
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else if (cursor_.line >= first_line + max_line)
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first_line = cursor_.line - max_line + 1;
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// Move the viewport horizontally.
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if (cursor_.col < first_col)
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first_col = cursor_.col;
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if (cursor_.col >= first_col + max_col)
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first_col = cursor_.col - max_col + 1;
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// Viewport updated? Redraw text.
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if (first_line != paint_state_.first_line ||
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first_col != paint_state_.first_col) {
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paint_state_.first_line = first_line;
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paint_state_.first_col = first_col;
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paint_state_.redraw_text = true;
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}
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if (paint_state_.redraw_text) {
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paint_text(painter, first_line, first_col);
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paint_state_.redraw_text = false;
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}
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paint_cursor(painter);
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}
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bool TextEditorView::on_key(const KeyEvent key) {
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int16_t delta_col = 0;
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int16_t delta_line = 0;
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if (key == KeyEvent::Left)
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delta_col = -1;
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else if (key == KeyEvent::Right)
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delta_col = 1;
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else if (key == KeyEvent::Up)
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delta_line = -1;
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else if (key == KeyEvent::Down)
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delta_line = 1;
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/* else if (key == KeyEvent::Select)
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; // TODO: Edit/Menu */
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// Always allow cursor direction to be updated.
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cursor_.dir = delta_col != 0 ? ScrollDirection::Horizontal : ScrollDirection::Vertical;
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auto updated = apply_scrolling_constraints(delta_line, delta_col);
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if (updated)
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refresh_ui();
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return updated;
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}
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bool TextEditorView::on_encoder(EncoderEvent delta) {
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bool updated = false;
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if (cursor_.dir == ScrollDirection::Horizontal)
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updated = apply_scrolling_constraints(0, delta);
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else
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updated = apply_scrolling_constraints(delta, 0);
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if (updated)
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refresh_ui();
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return updated;
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}
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bool TextEditorView::apply_scrolling_constraints(int16_t delta_line, int16_t delta_col) {
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int32_t new_line = cursor_.line + delta_line;
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int32_t new_col = cursor_.col + delta_col;
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int32_t new_line_length = file_.line_length(new_line);
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if (new_col < 0)
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--new_line;
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else if (new_col >= new_line_length && delta_line == 0) {
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// Only wrap if moving horizontally.
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new_col = 0;
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++new_line;
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}
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if (new_line < 0 || (uint32_t)new_line >= file_.line_count())
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return false;
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new_line_length = file_.line_length(new_line);
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// TODO: don't wrap with encoder?
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// Wrap or clamp column.
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if (new_line_length == 0)
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new_col = 0;
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else if (new_col >= new_line_length || new_col < 0)
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new_col = new_line_length - 1;
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cursor_.line = new_line;
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cursor_.col = new_col;
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return true;
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}
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void TextEditorView::refresh_ui() {
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if (paint_state_.has_file) {
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text_position.set(
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"Ln " + to_string_dec_uint(cursor_.line + 1) +
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", Col " + to_string_dec_uint(cursor_.col + 1));
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text_size.set(
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"Lines:" + to_string_dec_uint(file_.line_count()) +
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" (" + to_string_file_size(file_.size()) + ")");
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} else {
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// if (!button_open.has_focus())
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// button_open.focus();
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text_position.set("");
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text_size.set("");
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}
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set_dirty();
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}
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void TextEditorView::open_file(const fs::path& path) {
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// TODO: need a temp backing file for edits.
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auto result = file_.open(path);
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if (result.is_valid())
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nav_.display_modal("Read Error", "Cannot open file:\n" + result->what());
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paint_state_.has_file = !result.is_valid(); // Has an error.
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paint_state_.first_line = 0;
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paint_state_.first_col = 0;
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cursor_.line = 0;
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cursor_.col = 0;
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paint_state_.redraw_text = true;
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refresh_ui();
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}
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void TextEditorView::paint_text(Painter& painter, uint32_t line, uint16_t col) {
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// TODO: A line cache would use more memory but save a lot of IO.
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// Only the new lines/characters would need to be refetched.
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auto r = screen_rect();
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// Draw the lines from the file
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for (auto i = 0u; i < max_line; ++i) {
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if (line + i >= file_.line_count())
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break;
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auto str = file_.get_text(line + i, col, max_col);
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// Draw text.
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if (str.length() > 0)
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painter.draw_string(
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{0, r.location().y() + (int)i * char_height},
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style_default, str);
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// Clear empty line sections.
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int32_t clear_width = max_col - str.length();
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if (clear_width > 0)
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painter.fill_rectangle(
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{(max_col - clear_width) * char_width,
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r.location().y() + (int)i * char_height,
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clear_width * char_width, char_height},
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style_default.background);
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}
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}
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void TextEditorView::paint_cursor(Painter& painter) {
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auto draw_cursor = [this, &painter](uint32_t line, uint16_t col, Color c) {
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auto r = screen_rect();
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line = line - paint_state_.first_line;
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col = col - paint_state_.first_col;
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painter.draw_rectangle(
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{(int)col * char_width - 1,
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r.location().y() + (int)line * char_height,
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char_width + 1, char_height},
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c);
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};
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// TODO: XOR cursor?
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// Clear old cursor.
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draw_cursor(paint_state_.line, paint_state_.col, style_default.background);
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draw_cursor(cursor_.line, cursor_.col, style_default.foreground);
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paint_state_.line = cursor_.line;
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paint_state_.col = cursor_.col;
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}
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uint16_t TextEditorView::line_length() {
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return file_.line_length(cursor_.line);
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}
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} // namespace ui
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