Merge remote-tracking branch 'origin/develop' into feat-bluetooth

# Conflicts:
#	.gitmodules
#	freeink-sdk
#	platformio.ini
#	src/activities/reader/EpubReaderActivity.cpp
This commit is contained in:
Justin Mitchell
2026-07-06 02:04:38 -04:00
103 changed files with 2884 additions and 734 deletions
+1 -1
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@@ -1,7 +1,7 @@
#include "EpdFontFamily.h"
const EpdFont* EpdFontFamily::getFont(const Style style) const {
// Extract font style bits (ignore UNDERLINE bit for font selection)
// Extract font style bits; render-time overlay bits do not affect font selection.
const bool hasBold = (style & BOLD) != 0;
const bool hasItalic = (style & ITALIC) != 0;
+4
View File
@@ -17,6 +17,7 @@ class EpdFontFamily {
SUP = 16, // superscript: glyph scaled 50%, raised ~40% of ascender
SUB = 32, // subscript: glyph scaled 50%, lowered ~25% of ascender
};
static constexpr uint8_t TEXT_DECORATION_MASK = static_cast<uint8_t>(UNDERLINE | STRIKETHROUGH);
explicit EpdFontFamily(const EpdFont* regular, const EpdFont* bold = nullptr, const EpdFont* italic = nullptr,
const EpdFont* boldItalic = nullptr)
@@ -27,6 +28,9 @@ class EpdFontFamily {
const EpdGlyph* getGlyph(uint32_t cp, Style style = REGULAR) const;
int8_t getKerning(uint32_t leftCp, uint32_t rightCp, Style style = REGULAR) const;
uint32_t applyLigatures(uint32_t cp, const char*& text, Style style = REGULAR) const;
static constexpr bool hasTextDecoration(const Style style) {
return (static_cast<uint8_t>(style) & TEXT_DECORATION_MASK) != 0;
}
private:
const EpdFont* regular;
+35 -7
View File
@@ -33,6 +33,7 @@ import sys
import tempfile
import threading
import time
import socket
import urllib.request
from concurrent.futures import ProcessPoolExecutor, as_completed
from pathlib import Path
@@ -49,17 +50,44 @@ INSTANCE_DIR = SCRIPT_DIR / "instanced_fonts"
DEFAULT_FALLBACK_FONT = EPDFONTS_DIR / "builtinFonts/source/NotoSans/NotoSans-Regular.ttf"
def download_font(url: str, dest: Path) -> Path:
"""Download a font file if not already cached. Returns the local path."""
_orig_getaddrinfo = socket.getaddrinfo
def _ipv4_only_getaddrinfo(*args, **kwargs):
"""getaddrinfo variant that drops AAAA records (IPv4 only)."""
return [ai for ai in _orig_getaddrinfo(*args, **kwargs) if ai[0] == socket.AF_INET]
def download_font(url: str, dest: Path, retries: int = 3) -> Path:
"""Download a font file if not already cached. Returns the local path.
Some sources (e.g. mirrors.ctan.org) are round-robin redirectors that land
on a different mirror each request; a mirror may advertise an IPv6 address a
host without an IPv6 route cannot reach ([Errno 101] Network is unreachable).
Retry on failure, forcing IPv4 resolution after the first attempt.
"""
if dest.exists():
return dest
dest.parent.mkdir(parents=True, exist_ok=True)
print(f" Downloading {dest.name}...")
try:
urllib.request.urlretrieve(url, dest)
except Exception as e:
dest.unlink(missing_ok=True)
raise RuntimeError(f"Failed to download {url}: {e}") from e
last_err = None
for attempt in range(1, retries + 1):
force_ipv4 = attempt > 1
if force_ipv4:
socket.getaddrinfo = _ipv4_only_getaddrinfo
try:
urllib.request.urlretrieve(url, dest)
break
except Exception as e: # noqa: BLE001 - reported via RuntimeError below
last_err = e
dest.unlink(missing_ok=True)
if attempt < retries:
print(f" Attempt {attempt} failed ({e}); retrying (IPv4-only)...")
finally:
if force_ipv4:
socket.getaddrinfo = _orig_getaddrinfo
else:
raise RuntimeError(f"Failed to download {url}: {last_err}") from last_err
size_kb = dest.stat().st_size / 1024
print(f" Downloaded {dest.name} ({size_kb:.0f} KB)")
return dest
+10 -1
View File
@@ -132,7 +132,16 @@ families:
bold: {url: "https://raw.githubusercontent.com/impallari/Libre-Baskerville/master/fonts/ttf/LibreBaskerville-Bold.ttf"}
italic: {url: "https://raw.githubusercontent.com/impallari/Libre-Baskerville/master/fonts/ttf/LibreBaskerville-Italic.ttf"}
bolditalic: {url: "https://raw.githubusercontent.com/impallari/Libre-Baskerville/master/fonts/ttf/LibreBaskerville-BoldItalic.ttf"}
- name: Vollkorn
description: "A serif for bread and butter use by Friedrich Althausen (Latin, Greek, Cyrillic)"
intervals: latin-ext,greek,cyrillic
sizes: [12, 14, 16, 18]
styles:
regular: {url: "https://raw.githubusercontent.com/google/fonts/main/ofl/vollkorn/Vollkorn%5Bwght%5D.ttf", variable: {wght: 400}}
bold: {url: "https://raw.githubusercontent.com/google/fonts/main/ofl/vollkorn/Vollkorn%5Bwght%5D.ttf", variable: {wght: 700}}
italic: {url: "https://raw.githubusercontent.com/google/fonts/main/ofl/vollkorn/Vollkorn-Italic%5Bwght%5D.ttf", variable: {wght: 400}}
bolditalic: {url: "https://raw.githubusercontent.com/google/fonts/main/ofl/vollkorn/Vollkorn-Italic%5Bwght%5D.ttf", variable: {wght: 700}}
# ── Sans-serif ─────────────────────────────────────────────────────────
+513 -109
View File
@@ -2,6 +2,7 @@
#include <HalStorage.h>
#include <Logging.h>
#include <Memory.h>
#include <Serialization.h>
#include "Epub/css/CssParser.h"
@@ -10,34 +11,59 @@
#include "parsers/ChapterHtmlSlimParser.h"
namespace {
// v27: words NFC-composed at layout time; bump invalidates NFD section caches.
constexpr uint8_t SECTION_FILE_VERSION = 27;
// v28: text decoration bits now include line-through in serialized wordStyles.
constexpr uint8_t SECTION_FILE_VERSION = 28;
// Written into the version field while a build is in progress; patched to
// SECTION_FILE_VERSION only when the build is finalized. An abandoned /
// crash-interrupted .bin therefore carries version 0, which loadSectionFile rejects
// as unknown and clears -- so an incomplete file is never mistaken for a valid one.
constexpr uint8_t SECTION_FILE_INCOMPLETE_VERSION = 0;
// Written when a build is suspended partway (reader exited or device slept mid-build).
// The file carries valid pages 0..pageCount-1, all LUTs, and a trailer with the parse
// watermark (bytesConsumed, totalBytes) appended after the li LUT. loadSectionFile
// accepts it so a resume shows those pages instantly; the reader extends it by
// rebuilding in the background. Uses the same header layout as SECTION_FILE_VERSION,
// so finalized files are untouched by this feature; older firmware treats the sentinel
// as an unknown version and rebuilds, which is a safe downgrade.
constexpr uint8_t SECTION_FILE_PARTIAL_VERSION = 0xFE;
constexpr uint32_t HEADER_SIZE = sizeof(uint8_t) + sizeof(int) + sizeof(float) + sizeof(bool) + sizeof(uint8_t) +
sizeof(uint16_t) + sizeof(uint16_t) + sizeof(uint16_t) + sizeof(bool) + sizeof(bool) +
sizeof(uint8_t) + sizeof(bool) + sizeof(uint32_t) + sizeof(uint32_t) +
sizeof(uint32_t) + sizeof(uint32_t);
struct PageLutEntry {
uint32_t fileOffset;
uint16_t paragraphIndex;
uint16_t listItemIndex;
};
} // namespace
// Out-of-line so the unique_ptr<ChapterHtmlSlimParser> in BuildContext can be
// constructed/destroyed where the parser's full definition is visible.
Section::Section(const std::shared_ptr<Epub>& epub, const int spineIndex, GfxRenderer& renderer)
: epub(epub),
spineIndex(spineIndex),
renderer(renderer),
filePath(epub->getCachePath() + "/sections/" + std::to_string(spineIndex) + ".bin") {}
// Suspend any in-progress build so every section.reset() / navigation / sleep path
// persists the pages already laid out as a partial .bin instead of discarding them
// (no-op once a build has completed or never started).
Section::~Section() { suspendBuild(); }
uint32_t Section::onPageComplete(std::unique_ptr<Page> page) {
if (!file) {
LOG_ERR("SCT", "File not open for writing page %d", pageCount);
LOG_ERR("SCT", "File not open for writing page %d", builtPageCount_);
return 0;
}
const uint32_t position = file.position();
if (!page->serialize(file)) {
LOG_ERR("SCT", "Failed to serialize page %d", pageCount);
LOG_ERR("SCT", "Failed to serialize page %d", builtPageCount_);
return 0;
}
LOG_DBG("SCT", "Page %d processed", pageCount);
LOG_DBG("SCT", "Page %d processed", builtPageCount_);
pageCount++;
builtPageCount_++;
// pageCount is the pages available to read: a rebuild over a partial only raises it
// once it has laid out more pages than the partial already covers.
if (builtPageCount_ > pageCount) {
pageCount = builtPageCount_;
}
return position;
}
@@ -56,7 +82,9 @@ void Section::writeSectionFileHeader(const int fontId, const float lineCompressi
sizeof(embeddedStyle) + sizeof(imageRendering) + sizeof(focusReadingEnabled) +
sizeof(uint32_t) + sizeof(uint32_t) + sizeof(uint32_t) + sizeof(uint32_t),
"Header size mismatch");
serialization::writePod(file, SECTION_FILE_VERSION);
// Written as the incomplete sentinel; finalizeBuild() patches it to
// SECTION_FILE_VERSION as the last step, committing the file.
serialization::writePod(file, SECTION_FILE_INCOMPLETE_VERSION);
serialization::writePod(file, fontId);
serialization::writePod(file, lineCompression);
serialization::writePod(file, extraParagraphSpacing);
@@ -83,16 +111,18 @@ bool Section::loadSectionFile(const int fontId, const float lineCompression, con
}
// Match parameters
bool filePartial = false;
{
uint8_t version;
serialization::readPod(file, version);
if (version != SECTION_FILE_VERSION) {
if (version != SECTION_FILE_VERSION && version != SECTION_FILE_PARTIAL_VERSION) {
// Explicit close() required: member variable persists beyond function scope
file.close();
LOG_ERR("SCT", "Deserialization failed: Unknown version %u", version);
clearCache();
return false;
}
filePartial = (version == SECTION_FILE_PARTIAL_VERSION);
int fileFontId;
uint16_t fileViewportWidth, fileViewportHeight;
@@ -127,14 +157,42 @@ bool Section::loadSectionFile(const int fontId, const float lineCompression, con
}
serialization::readPod(file, pageCount);
if (filePartial) {
// A partial's pageCount is the watermark of a suspended build. Read the watermark
// trailer (appended after the li LUT) so estimatedTotalPages can extrapolate.
uint32_t liLutOffset = 0;
file.seek(HEADER_SIZE - sizeof(uint32_t));
serialization::readPod(file, liLutOffset);
const uint32_t trailerOffset = liLutOffset + static_cast<uint32_t>(pageCount) * sizeof(uint16_t);
const bool trailerValid =
pageCount > 0 && liLutOffset >= HEADER_SIZE && trailerOffset + 2 * sizeof(uint32_t) <= file.size();
if (!trailerValid) {
file.close();
LOG_ERR("SCT", "Deserialization failed: malformed partial section");
clearCache();
pageCount = 0;
return false;
}
file.seek(trailerOffset);
serialization::readPod(file, partialBytesConsumed_);
serialization::readPod(file, partialTotalBytes_);
partial_ = true;
partialPageCount_ = pageCount;
}
// Explicit close() required: member variable persists beyond function scope
file.close();
LOG_DBG("SCT", "Deserialization succeeded: %d pages", pageCount);
LOG_DBG("SCT", "Deserialization succeeded: %d pages%s", pageCount, filePartial ? " (partial)" : "");
return true;
}
// Your updated class method (assuming you are using the 'SD' object, which is a wrapper for a specific filesystem)
bool Section::clearCache() const {
const std::string tmpBin = binTmpPath();
if (Storage.exists(tmpBin.c_str())) {
Storage.remove(tmpBin.c_str());
}
if (!Storage.exists(filePath.c_str())) {
LOG_DBG("SCT", "Cache does not exist, no action needed");
return true;
@@ -154,8 +212,43 @@ bool Section::createSectionFile(const int fontId, const float lineCompression, c
const uint16_t viewportHeight, const bool hyphenationEnabled, const bool embeddedStyle,
const uint8_t imageRendering, const bool focusReadingEnabled,
const std::function<void()>& popupFn) {
// One-shot build: start, then lay out the whole section in a single pass.
if (!startBuild(fontId, lineCompression, extraParagraphSpacing, paragraphAlignment, viewportWidth, viewportHeight,
hyphenationEnabled, embeddedStyle, imageRendering, focusReadingEnabled, popupFn)) {
return false;
}
if (!buildSomeMore(0)) { // 0 = build to completion
return false;
}
return buildComplete_;
}
bool Section::startBuild(const int fontId, const float lineCompression, const bool extraParagraphSpacing,
const uint8_t paragraphAlignment, const uint16_t viewportWidth, const uint16_t viewportHeight,
const bool hyphenationEnabled, const bool embeddedStyle, const uint8_t imageRendering,
const bool focusReadingEnabled, const std::function<void()>& popupFn) {
if (build_) {
LOG_ERR("SCT", "startBuild called while a build is already active");
return false;
}
buildComplete_ = false;
builtPageCount_ = 0;
// Pages from a loaded partial stay readable (from filePath) while this build writes
// to the tmp .bin, so availability never drops below the partial's watermark.
pageCount = partial_ ? partialPageCount_ : 0;
// Remove a stale tmp .bin from a crash-interrupted build; this build recreates it.
{
const std::string staleTmp = binTmpPath();
if (Storage.exists(staleTmp.c_str())) {
Storage.remove(staleTmp.c_str());
}
}
const auto localPath = epub->getSpineItem(spineIndex).href;
const auto tmpHtmlPath = epub->getCachePath() + "/.tmp_" + std::to_string(spineIndex) + ".html";
const auto htmlDir = epub->getCachePath() + "/html";
const auto htmlPath = htmlDir + "/" + std::to_string(spineIndex) + ".html";
const auto tmpHtmlPath = htmlDir + "/.tmp_" + std::to_string(spineIndex) + ".html";
// Create cache directory if it doesn't exist
{
@@ -163,62 +256,101 @@ bool Section::createSectionFile(const int fontId, const float lineCompression, c
Storage.mkdir(sectionsDir.c_str());
}
// Retry logic for SD card timing issues
bool success = false;
uint32_t fileSize = 0;
for (int attempt = 0; attempt < 3 && !success; attempt++) {
if (attempt > 0) {
LOG_DBG("SCT", "Retrying stream (attempt %d)...", attempt + 1);
delay(50); // Brief delay before retry
// Reuse the previously unzipped HTML if we already have it. The unzipped HTML is keyed only on the
// book (it lives in the per-book cache dir), not on render settings, so it survives the invalidation
// that wipes the layout (.bin) caches when font/margin/orientation change -- rebuilds then skip zip
// inflation entirely. It's promoted by an atomic rename as soon as the inflate succeeds (below), so
// even a window-only giant spine -- whose .bin never finalizes -- still caches its HTML, letting a
// reopen skip the multi-second inflate. If htmlPath exists it is known-complete.
const bool reusedHtml = Storage.exists(htmlPath.c_str());
bool htmlCached = reusedHtml;
if (reusedHtml) {
LOG_DBG("SCT", "Reusing cached HTML %s", htmlPath.c_str());
} else {
Storage.mkdir(htmlDir.c_str());
// Retry logic for SD card timing issues
bool streamed = false;
uint32_t fileSize = 0;
for (int attempt = 0; attempt < 3 && !streamed; attempt++) {
if (attempt > 0) {
LOG_DBG("SCT", "Retrying stream (attempt %d)...", attempt + 1);
delay(50); // Brief delay before retry
}
// Remove any incomplete file from previous attempt before retrying
if (Storage.exists(tmpHtmlPath.c_str())) {
Storage.remove(tmpHtmlPath.c_str());
}
HalFile tmpHtml;
if (!Storage.openFileForWrite("SCT", tmpHtmlPath, tmpHtml)) {
continue;
}
// Larger chunks mean far fewer SD writes inflating the HTML; a 1KB chunk turned a 584KB
// single-spine novel into ~570 tiny writes (multi-second). 8KB keeps the transient buffers
// small while cutting the write count 8x.
streamed = epub->readItemContentsToStream(localPath, tmpHtml, 8192);
fileSize = tmpHtml.size();
// Explicitly close() file before calling Storage.remove()
tmpHtml.close();
// If streaming failed, remove the incomplete file immediately
if (!streamed && Storage.exists(tmpHtmlPath.c_str())) {
Storage.remove(tmpHtmlPath.c_str());
LOG_DBG("SCT", "Removed incomplete temp file after failed attempt");
}
}
// Remove any incomplete file from previous attempt before retrying
if (Storage.exists(tmpHtmlPath.c_str())) {
Storage.remove(tmpHtmlPath.c_str());
if (!streamed) {
LOG_ERR("SCT", "Failed to stream item contents to temp file after retries");
return false;
}
HalFile tmpHtml;
if (!Storage.openFileForWrite("SCT", tmpHtmlPath, tmpHtml)) {
continue;
}
success = epub->readItemContentsToStream(localPath, tmpHtml, 1024);
fileSize = tmpHtml.size();
// Explicitly close() file before calling Storage.remove()
tmpHtml.close();
LOG_DBG("SCT", "Streamed temp HTML to %s (%d bytes)", tmpHtmlPath.c_str(), fileSize);
// If streaming failed, remove the incomplete file immediately
if (!success && Storage.exists(tmpHtmlPath.c_str())) {
Storage.remove(tmpHtmlPath.c_str());
LOG_DBG("SCT", "Removed incomplete temp file after failed attempt");
// Promote to the persistent HTML cache immediately -- the inflate is complete and the bytes are
// valid regardless of whether the layout build finishes, so reopening (even a window-only spine
// that never finalizes its .bin) skips re-inflation. If the rename fails we just parse the temp.
if (Storage.rename(tmpHtmlPath.c_str(), htmlPath.c_str())) {
htmlCached = true;
} else {
LOG_DBG("SCT", "Failed to promote HTML cache; parsing from temp");
}
}
if (!success) {
LOG_ERR("SCT", "Failed to stream item contents to temp file after retries");
return false;
}
LOG_DBG("SCT", "Streamed temp HTML to %s (%d bytes)", tmpHtmlPath.c_str(), fileSize);
if (!Storage.openFileForWrite("SCT", filePath, file)) {
if (!Storage.openFileForWrite("SCT", binTmpPath(), file)) {
if (!reusedHtml) Storage.remove(tmpHtmlPath.c_str());
return false;
}
// Header is written with the incomplete-version sentinel; finalizeBuild() commits it.
writeSectionFileHeader(fontId, lineCompression, extraParagraphSpacing, paragraphAlignment, viewportWidth,
viewportHeight, hyphenationEnabled, embeddedStyle, imageRendering, focusReadingEnabled);
std::vector<PageLutEntry> lut = {};
auto ctx = makeUniqueNoThrow<BuildContext>();
if (!ctx) {
LOG_ERR("SCT", "OOM: BuildContext");
file.close();
Storage.remove(binTmpPath().c_str());
if (!reusedHtml) Storage.remove(tmpHtmlPath.c_str());
return false;
}
// htmlCached == "htmlPath is the live cache" (reused, or just promoted). finalizeBuild/abandonBuild
// then leave the cached HTML alone; only an un-promoted temp (rename failed) is theirs to clean up.
ctx->reusedHtml = htmlCached;
ctx->htmlPath = htmlPath;
ctx->tmpHtmlPath = tmpHtmlPath;
ctx->parsePath = htmlCached ? htmlPath : tmpHtmlPath;
// Derive the content base directory and image cache path prefix for the parser
size_t lastSlash = localPath.find_last_of('/');
std::string contentBase = (lastSlash != std::string::npos) ? localPath.substr(0, lastSlash + 1) : "";
std::string imageBasePath = epub->getCachePath() + "/img_" + std::to_string(spineIndex) + "_";
const size_t lastSlash = localPath.find_last_of('/');
ctx->contentBase = (lastSlash != std::string::npos) ? localPath.substr(0, lastSlash + 1) : "";
ctx->imageBasePath = epub->getCachePath() + "/img_" + std::to_string(spineIndex) + "_";
CssParser* cssParser = nullptr;
if (embeddedStyle) {
cssParser = epub->getCssParser();
if (cssParser) {
if (!cssParser->loadFromCache()) {
LOG_ERR("SCT", "Failed to load CSS from cache");
}
ctx->cssParser = epub->getCssParser();
if (ctx->cssParser && !ctx->cssParser->loadFromCache()) {
LOG_ERR("SCT", "Failed to load CSS from cache");
}
}
@@ -235,104 +367,367 @@ bool Section::createSectionFile(const int fontId, const float lineCompression, c
}
}
ChapterHtmlSlimParser visitor(
epub, tmpHtmlPath, renderer, fontId, lineCompression, extraParagraphSpacing, paragraphAlignment, viewportWidth,
viewportHeight, hyphenationEnabled, focusReadingEnabled,
[this, &lut](std::unique_ptr<Page> page, const uint16_t paragraphIndex, const uint16_t listItemIndex) {
lut.push_back({this->onPageComplete(std::move(page)), paragraphIndex, listItemIndex});
// The parser stores the path/contentBase/imageBasePath by reference, so they must
// live in the BuildContext (which outlives the parser). The page-complete callback
// captures the BuildContext pointer to append to its in-RAM LUT; build_ owns the
// context for the parser's whole lifetime.
BuildContext* ctxPtr = ctx.get();
ctx->parser = makeUniqueNoThrow<ChapterHtmlSlimParser>(
epub, ctxPtr->parsePath, renderer, fontId, lineCompression, extraParagraphSpacing, paragraphAlignment,
viewportWidth, viewportHeight, hyphenationEnabled, focusReadingEnabled,
[this, ctxPtr](std::unique_ptr<Page> page, const uint16_t paragraphIndex, const uint16_t listItemIndex) {
ctxPtr->lut.push_back({this->onPageComplete(std::move(page)), paragraphIndex, listItemIndex});
},
embeddedStyle, contentBase, imageBasePath, imageRendering, std::move(tocAnchors), popupFn, cssParser);
Hyphenator::setPreferredLanguage(epub->getLanguage());
success = visitor.parseAndBuildPages();
Storage.remove(tmpHtmlPath.c_str());
if (!success) {
LOG_ERR("SCT", "Failed to parse XML and build pages");
// Explicitly close() file before calling Storage.remove()
embeddedStyle, ctxPtr->contentBase, ctxPtr->imageBasePath, imageRendering, std::move(tocAnchors), popupFn,
ctxPtr->cssParser);
if (!ctx->parser) {
LOG_ERR("SCT", "OOM: ChapterHtmlSlimParser");
if (ctx->cssParser) ctx->cssParser->clear();
file.close();
Storage.remove(filePath.c_str());
if (cssParser) {
cssParser->clear();
}
Storage.remove(binTmpPath().c_str());
if (!reusedHtml) Storage.remove(tmpHtmlPath.c_str());
return false;
}
Hyphenator::setPreferredLanguage(epub->getLanguage());
build_ = std::move(ctx);
if (!build_->parser->beginParse()) {
LOG_ERR("SCT", "Failed to begin parse");
abandonBuild();
return false;
}
build_->totalBytes = build_->parser->parseTotalBytes();
return true;
}
bool Section::buildSomeMore(const int maxPages) {
if (!build_ || !build_->parser) {
LOG_ERR("SCT", "buildSomeMore with no active build");
return false;
}
// Pace on pages laid out by THIS build, not pageCount: during a rebuild over a partial,
// pageCount stays pinned at the partial's watermark until the build passes it, which
// would otherwise turn one "small" chunk into a blocking rebuild of the whole watermark.
const int startCount = builtPageCount_;
for (;;) {
const auto status = build_->parser->parseStep();
if (status == ChapterHtmlSlimParser::ParseStatus::Error) {
LOG_ERR("SCT", "Parse error during incremental build");
abandonBuild();
return false;
}
if (status == ChapterHtmlSlimParser::ParseStatus::Done) {
return finalizeBuild();
}
// ParseStatus::More: yield once we've laid out the requested number of pages.
if (maxPages > 0 && (builtPageCount_ - startCount) >= maxPages) {
build_->bytesConsumed = build_->parser->parseBytesConsumed();
return true;
}
}
}
bool Section::hasHtmlCache() const {
const std::string htmlPath = epub->getCachePath() + "/html/" + std::to_string(spineIndex) + ".html";
return Storage.exists(htmlPath.c_str());
}
std::optional<uint16_t> Section::findAnchorDuringBuild(const std::string& anchor) const {
if (!build_ || !build_->parser) return std::nullopt;
for (const auto& [key, page] : build_->parser->getAnchors()) {
if (key == anchor) return page;
}
return std::nullopt;
}
std::optional<uint16_t> Section::findAnchor(const std::string& anchor) const {
if (const auto page = findAnchorDuringBuild(anchor)) {
return page;
}
// Fall back to the on-disk anchor map: a finalized section, or a partial whose map
// covers everything up to its watermark (nullopt past it -- build further and retry).
return getPageForAnchor(anchor);
}
uint16_t Section::estimatedTotalPages() const {
// Extrapolation from a suspended session's watermark trailer. A static snapshot, so no EMA
// damping is needed. Also the best guess while a rebuild is running but hasn't laid out
// enough pages yet to extrapolate from its own progress.
const auto partialEstimate = [this]() -> uint16_t {
if (!partial_ || partialBytesConsumed_ == 0 || partialTotalBytes_ <= partialBytesConsumed_) {
return pageCount;
}
const uint64_t est = static_cast<uint64_t>(partialPageCount_) * partialTotalBytes_ / partialBytesConsumed_;
if (est <= pageCount) return pageCount;
return est > 60000 ? 60000 : static_cast<uint16_t>(est);
};
if (!build_) {
return partial_ ? partialEstimate() : pageCount; // partial -> extrapolate, finalized -> exact
}
const uint32_t consumed = build_->bytesConsumed;
const uint32_t total = build_->totalBytes;
if (builtPageCount_ == 0 || consumed == 0 || total <= consumed) return partialEstimate();
// Raw extrapolation: scale the pages built so far by the fraction of HTML still unparsed. This
// re-derives from a growing, non-uniform sample, so it jitters up and down as the build crosses
// dense vs sparse regions of the chapter.
const uint64_t raw = static_cast<uint64_t>(builtPageCount_) * total / consumed;
// Damp that jitter with an exponential moving average. Step it once per build advance (keyed on
// bytesConsumed) rather than per status-bar redraw, so the smoothing rate doesn't depend on how
// often we repaint. As the build nears the end, consumed -> total and raw -> the built count, so
// the average settles onto the true count (and finalizeBuild then returns the exact pageCount).
constexpr float ALPHA = 0.25f; // weight of each new sample; lower = steadier but slower to settle
if (build_->smoothedEstimate <= 0) {
build_->smoothedEstimate = static_cast<float>(raw); // seed on the first estimate
} else if (consumed != build_->smoothedAtConsumed) {
build_->smoothedEstimate += ALPHA * (static_cast<float>(raw) - build_->smoothedEstimate);
}
build_->smoothedAtConsumed = consumed;
const uint64_t est = static_cast<uint64_t>(build_->smoothedEstimate + 0.5f);
if (est <= pageCount) return pageCount; // never fewer than the pages already available
return est > 60000 ? 60000 : static_cast<uint16_t>(est);
}
// Write the LUTs and anchor map into the open tmp .bin, patch the header with the built
// page count and table offsets, stamp `version` as the commit point, then swap the tmp
// file over filePath. For SECTION_FILE_PARTIAL_VERSION a watermark trailer
// (bytesConsumed, totalBytes) is appended after the li LUT so a later open can estimate
// the total page count. The parser must still be alive (anchors are read from it).
// On failure the tmp is removed and any pre-existing file at filePath is left intact.
bool Section::commitBuildFile(const uint8_t version, const uint32_t bytesConsumed, const uint32_t totalBytes) {
const bool asPartial = (version == SECTION_FILE_PARTIAL_VERSION);
const auto failCommit = [this]() {
// Explicit close() required before remove (member variable, O_RDWR handle).
file.close();
Storage.remove(binTmpPath().c_str());
return false;
};
const uint32_t lutOffset = file.position();
bool hasFailedLutRecords = false;
// Write LUT
for (const auto& entry : lut) {
for (const auto& entry : build_->lut) {
if (entry.fileOffset == 0) {
hasFailedLutRecords = true;
break;
LOG_ERR("SCT", "Failed to write LUT due to invalid page positions");
return failCommit();
}
serialization::writePod(file, entry.fileOffset);
}
if (hasFailedLutRecords) {
LOG_ERR("SCT", "Failed to write LUT due to invalid page positions");
// Explicitly close() file before calling Storage.remove()
file.close();
Storage.remove(filePath.c_str());
return false;
}
// Write anchor-to-page map for fragment navigation (e.g. footnote targets)
// Write anchor-to-page map for fragment navigation (e.g. footnote targets). For a
// partial, skip anchors that landed on the incomplete trailing page the suspend drops.
const uint32_t anchorMapOffset = file.position();
const auto& anchors = visitor.getAnchors();
serialization::writePod(file, static_cast<uint16_t>(anchors.size()));
const auto& anchors = build_->parser->getAnchors();
uint16_t anchorCount = 0;
for (const auto& [anchor, page] : anchors) {
if (!asPartial || page < builtPageCount_) anchorCount++;
}
serialization::writePod(file, anchorCount);
for (const auto& [anchor, page] : anchors) {
if (asPartial && page >= builtPageCount_) continue;
serialization::writeString(file, anchor);
serialization::writePod(file, page);
}
const uint32_t paragraphLutOffset = file.position();
serialization::writePod(file, static_cast<uint16_t>(lut.size()));
for (const auto& entry : lut) {
serialization::writePod(file, static_cast<uint16_t>(build_->lut.size()));
for (const auto& entry : build_->lut) {
serialization::writePod(file, entry.paragraphIndex);
}
const uint32_t liLutFileOffset = static_cast<uint32_t>(file.position());
for (const auto& entry : lut) {
for (const auto& entry : build_->lut) {
serialization::writePod(file, entry.listItemIndex);
}
// Patch header with final pageCount, lutOffset, anchorMapOffset, paragraphLutOffset, and liLutOffset
file.seek(HEADER_SIZE - sizeof(uint32_t) * 4 - sizeof(pageCount));
serialization::writePod(file, pageCount);
if (asPartial) {
// Watermark trailer, located on load as liLutOffset + pageCount * sizeof(uint16_t).
serialization::writePod(file, bytesConsumed);
serialization::writePod(file, totalBytes);
}
// Patch header with the built page count and section offsets...
file.seek(HEADER_SIZE - sizeof(uint32_t) * 4 - sizeof(builtPageCount_));
serialization::writePod(file, builtPageCount_);
serialization::writePod(file, lutOffset);
serialization::writePod(file, anchorMapOffset);
serialization::writePod(file, paragraphLutOffset);
serialization::writePod(file, liLutFileOffset);
// ...then commit by overwriting the sentinel version with the real one. Writing the
// version last makes it the commit point: a crash before here leaves version 0.
file.seek(0);
serialization::writePod(file, version);
// Explicit close() required: member variable persists beyond function scope
file.close();
if (cssParser) {
cssParser->clear();
// Swap into place. A crash between remove and rename loses the old file but keeps a
// fully-committed tmp; the next build just removes it and rebuilds.
if (Storage.exists(filePath.c_str())) {
Storage.remove(filePath.c_str());
}
if (!Storage.rename(binTmpPath().c_str(), filePath.c_str())) {
LOG_ERR("SCT", "Failed to move built section into place");
Storage.remove(binTmpPath().c_str());
return false;
}
return true;
}
std::unique_ptr<Page> Section::loadPageFromSectionFile() {
if (!Storage.openFileForRead("SCT", filePath, file)) {
bool Section::finalizeBuild() {
// Flush the trailing page (emits the last page via the completePageFn into the LUT).
build_->parser->finishParse();
if (!build_->reusedHtml) {
// Parse succeeded: promote the freshly unzipped HTML to the persistent cache so future
// rebuilds skip zip inflation. If promotion fails, drop the temp -- the build still succeeded.
if (!Storage.rename(build_->tmpHtmlPath.c_str(), build_->htmlPath.c_str())) {
LOG_DBG("SCT", "Failed to promote HTML cache, removing temp");
Storage.remove(build_->tmpHtmlPath.c_str());
}
}
const bool committed = commitBuildFile(SECTION_FILE_VERSION, 0, 0);
if (build_->cssParser) build_->cssParser->clear();
build_.reset();
if (!committed) {
// commitBuildFile removed filePath before the failed swap, so nothing valid remains.
partial_ = false;
partialPageCount_ = 0;
pageCount = 0;
builtPageCount_ = 0;
return false;
}
buildComplete_ = true;
partial_ = false;
partialPageCount_ = 0;
pageCount = builtPageCount_;
return true;
}
void Section::suspendBuild() {
if (!build_) return;
// Only worth persisting if this build produced pages a pre-existing partial doesn't
// already cover; otherwise keep the older (bigger) partial and just drop the tmp.
const bool worthKeeping = builtPageCount_ > 0 && (!partial_ || builtPageCount_ > partialPageCount_);
bool committed = false;
if (worthKeeping) {
// Capture the parse watermark and commit before tearing the parser down (the anchor
// map is read from it). The incomplete trailing page is intentionally not flushed:
// only fully laid-out pages are persisted, and the rebuild re-derives the rest.
const uint32_t consumed = static_cast<uint32_t>(build_->parser->parseBytesConsumed());
committed = commitBuildFile(SECTION_FILE_PARTIAL_VERSION, consumed, build_->totalBytes);
if (committed) {
partial_ = true;
partialPageCount_ = builtPageCount_;
partialBytesConsumed_ = consumed;
partialTotalBytes_ = build_->totalBytes;
LOG_INF("SCT", "Suspended build: %u pages persisted", builtPageCount_);
}
}
if (build_->parser) build_->parser->abortParse();
if (build_->cssParser) build_->cssParser->clear();
if (!committed && file) {
// Explicit close() required before remove (member variable, O_RDWR handle).
file.close();
Storage.remove(binTmpPath().c_str());
}
if (!build_->reusedHtml && Storage.exists(build_->tmpHtmlPath.c_str())) {
Storage.remove(build_->tmpHtmlPath.c_str());
}
build_.reset();
buildComplete_ = false;
pageCount = partial_ ? partialPageCount_ : 0;
builtPageCount_ = 0;
}
void Section::abandonBuild() {
if (!build_) return;
if (build_->parser) build_->parser->abortParse();
if (build_->cssParser) build_->cssParser->clear();
if (file) {
// Explicit close() required before remove (member variable, O_RDWR handle).
file.close();
Storage.remove(binTmpPath().c_str());
}
// A parse error would recur against the same HTML, so drop any partial too -- resuming
// from it would just re-enter the failing build every open.
if (Storage.exists(filePath.c_str())) {
Storage.remove(filePath.c_str());
}
if (!build_->reusedHtml && Storage.exists(build_->tmpHtmlPath.c_str())) {
Storage.remove(build_->tmpHtmlPath.c_str());
}
build_.reset();
buildComplete_ = false;
partial_ = false;
partialPageCount_ = 0;
pageCount = 0;
builtPageCount_ = 0;
}
std::unique_ptr<Page> Section::loadPageDuringBuild(const int page) {
if (!build_ || page < 0 || page >= static_cast<int>(build_->lut.size()) || !file) {
return nullptr;
}
const uint32_t pos = build_->lut[page].fileOffset;
if (pos == 0) {
return nullptr;
}
// The .bin is open O_RDWR for the build. Read the already-written page, then restore
// the write cursor so the next onPageComplete keeps appending where it left off.
const uint32_t writePos = file.position();
file.seek(pos);
auto p = Page::deserialize(file);
file.seek(writePos);
return p;
}
// Read a page from the committed file at filePath (finalized section or partial from a
// previous session). Uses a local handle so it is safe while a build holds the member
// `file` open on the tmp .bin.
std::unique_ptr<Page> Section::loadPageAt(const int page) const {
HalFile f;
if (!Storage.openFileForRead("SCT", filePath, f)) {
return nullptr;
}
file.seek(HEADER_SIZE - sizeof(uint32_t) * 4);
f.seek(HEADER_SIZE - sizeof(uint32_t) * 4);
uint32_t lutOffset;
serialization::readPod(file, lutOffset);
file.seek(lutOffset + sizeof(uint32_t) * currentPage);
serialization::readPod(f, lutOffset);
f.seek(lutOffset + sizeof(uint32_t) * page);
uint32_t pagePos;
serialization::readPod(file, pagePos);
file.seek(pagePos);
serialization::readPod(f, pagePos);
f.seek(pagePos);
auto page = Page::deserialize(file);
// Explicit close() required: member variable persists beyond function scope
file.close();
return page;
return Page::deserialize(f);
// No f.close() needed -- DESTRUCTOR_CLOSES_FILE=1 handles it at scope exit
}
std::unique_ptr<Page> Section::loadPage(const int page) {
if (page < 0) {
return nullptr;
}
if (build_ && page < static_cast<int>(build_->lut.size())) {
return loadPageDuringBuild(page);
}
// Not (yet) in the active build: serve from the file on disk -- a finalized section,
// or a partial from a previous session whose pages the rebuild hasn't reached again.
const int onDisk = partial_ ? partialPageCount_ : (build_ ? 0 : pageCount);
if (page >= onDisk) {
return nullptr;
}
return loadPageAt(page);
}
std::string Section::getTextFromSectionFile() {
std::string fullText;
auto p = this->loadPageFromSectionFile();
auto p = loadPage(currentPage);
if (p) {
for (const auto& el : p->elements) {
if (el->getTag() == TAG_PageLine) {
@@ -361,6 +756,15 @@ std::optional<uint16_t> Section::getCachedPageCount() const {
return std::nullopt;
}
// Only a finalized section's count is the chapter total; a partial's count is just the
// suspended build's watermark, which would skew progress mapping. Callers fall back to
// their own estimates.
uint8_t version;
serialization::readPod(f, version);
if (version != SECTION_FILE_VERSION) {
return std::nullopt;
}
f.seek(HEADER_SIZE - sizeof(uint32_t) * 4 - sizeof(uint16_t));
uint16_t count;
serialization::readPod(f, count);
+105 -7
View File
@@ -3,11 +3,14 @@
#include <memory>
#include <optional>
#include <string>
#include <vector>
#include "Epub.h"
class Page;
class GfxRenderer;
class ChapterHtmlSlimParser;
class CssParser;
class Section {
std::shared_ptr<Epub> epub;
@@ -21,16 +24,67 @@ class Section {
bool embeddedStyle, uint8_t imageRendering, bool focusReadingEnabled);
uint32_t onPageComplete(std::unique_ptr<Page> page);
// Page-offset table entry, kept in RAM while an incremental build is running so
// already-built pages can be located in the partially-written .bin.
struct PageLutEntry {
uint32_t fileOffset;
uint16_t paragraphIndex;
uint16_t listItemIndex;
};
// Held only while an incremental build is in progress (see startBuild). Carries the
// live parser plus the strings it references (the parser stores them by reference)
// and the in-RAM page-offset table.
struct BuildContext {
std::unique_ptr<ChapterHtmlSlimParser> parser;
std::vector<PageLutEntry> lut;
std::string parsePath;
std::string contentBase;
std::string imageBasePath;
std::string htmlPath;
std::string tmpHtmlPath;
bool reusedHtml = false;
CssParser* cssParser = nullptr;
// HTML byte progress, for estimating the section's total page count while it's still building.
uint32_t bytesConsumed = 0;
uint32_t totalBytes = 0;
// Exponentially-smoothed page-count estimate (0 = not yet seeded) and the bytesConsumed at its
// last update. The raw byte-ratio estimate jitters as the build crosses dense/sparse regions;
// the EMA is stepped once per build advance (not per redraw) to damp that wobble.
float smoothedEstimate = 0;
uint32_t smoothedAtConsumed = 0;
};
std::unique_ptr<BuildContext> build_;
bool buildComplete_ = false;
// Pages laid out by the active build (== build_->lut.size()). Distinct from pageCount,
// which is the pages *available to read* and also counts a loaded partial file's pages.
uint16_t builtPageCount_ = 0;
// A partial section file (suspended build from a previous session) is loaded at filePath.
// Its pages 0..partialPageCount_-1 are readable while a rebuild extends past them.
bool partial_ = false;
uint16_t partialPageCount_ = 0;
// Parse watermark from the partial's trailer, for estimating the total page count.
uint32_t partialBytesConsumed_ = 0;
uint32_t partialTotalBytes_ = 0;
bool finalizeBuild();
// Write the LUTs/anchor map (and, for a partial, the watermark trailer), patch the
// header, stamp the version byte, and swap the tmp .bin over filePath.
bool commitBuildFile(uint8_t version, uint32_t bytesConsumed, uint32_t totalBytes);
// Builds write here and are swapped over filePath only on commit, so a prior
// partial/finalized file stays readable while a rebuild is in progress.
std::string binTmpPath() const { return filePath + ".part"; }
std::unique_ptr<Page> loadPageAt(int page) const;
// Read a page already laid out by the in-progress build (page < build LUT size), from
// the partially-written tmp .bin without disturbing the build's write cursor.
std::unique_ptr<Page> loadPageDuringBuild(int page);
public:
uint16_t pageCount = 0;
int currentPage = 0;
explicit Section(const std::shared_ptr<Epub>& epub, const int spineIndex, GfxRenderer& renderer)
: epub(epub),
spineIndex(spineIndex),
renderer(renderer),
filePath(epub->getCachePath() + "/sections/" + std::to_string(spineIndex) + ".bin") {}
~Section() = default;
// Constructor and destructor are out-of-line: BuildContext holds a unique_ptr to the
// forward-declared ChapterHtmlSlimParser, whose full definition is only visible in the .cpp.
explicit Section(const std::shared_ptr<Epub>& epub, int spineIndex, GfxRenderer& renderer);
~Section();
bool loadSectionFile(int fontId, float lineCompression, bool extraParagraphSpacing, uint8_t paragraphAlignment,
uint16_t viewportWidth, uint16_t viewportHeight, bool hyphenationEnabled, bool embeddedStyle,
uint8_t imageRendering, bool focusReadingEnabled);
@@ -39,12 +93,56 @@ class Section {
uint16_t viewportWidth, uint16_t viewportHeight, bool hyphenationEnabled, bool embeddedStyle,
uint8_t imageRendering, bool focusReadingEnabled,
const std::function<void()>& popupFn = nullptr);
std::unique_ptr<Page> loadPageFromSectionFile();
// Incremental build: lay out the section a few pages at a time so a large chapter
// can show its first page immediately and keep the UI responsive while the rest
// builds. createSectionFile() above is the one-shot wrapper over these.
// if (!startBuild(...)) fail;
// each tick: buildSomeMore(N); render up to pageCount; when isBuildComplete() stop.
bool startBuild(int fontId, float lineCompression, bool extraParagraphSpacing, uint8_t paragraphAlignment,
uint16_t viewportWidth, uint16_t viewportHeight, bool hyphenationEnabled, bool embeddedStyle,
uint8_t imageRendering, bool focusReadingEnabled, const std::function<void()>& popupFn = nullptr);
// Lay out up to maxPages more pages (maxPages <= 0 = build to completion). Returns
// false on error (the build is abandoned). Sets isBuildComplete() when finished.
bool buildSomeMore(int maxPages);
bool isBuilding() const { return static_cast<bool>(build_); }
bool isBuildComplete() const { return buildComplete_; }
// Best-known total page count: the exact pageCount once finalized, or a smoothed byte-based
// estimate (pages so far scaled by totalBytes/bytesConsumed, damped by an EMA) while a giant spine
// is still building, so "page X of Y" / progress don't read off the small build watermark.
uint16_t estimatedTotalPages() const;
void abandonBuild();
// Persist an in-progress build as a partial section file (version sentinel + LUTs +
// watermark trailer) instead of discarding it, so the next open of this spine can show
// its pages instantly and only rebuild in the background. Called by the destructor, so
// any teardown path (exit, sleep, navigation) keeps the work already done. Keeps a
// pre-existing partial when it covers more pages than this build reached.
void suspendBuild();
// True when a partial file was loaded: pageCount is a watermark, not the chapter total.
bool isPartial() const { return partial_; }
// Unified page read: from the active build if it has reached the page, otherwise from
// the on-disk file (finalized section, or a partial the rebuild hasn't caught up to).
std::unique_ptr<Page> loadPage(int page);
std::string getTextFromSectionFile();
// Resolve an anchor from the in-progress build first, then the on-disk anchor map
// (covers finalized sections and partials from a previous session).
std::optional<uint16_t> findAnchor(const std::string& anchor) const;
// True if this spine's unzipped HTML is already cached, so a build won't pay the (multi-second on a
// giant spine) zip inflation. Lets the reader skip the indexing popup on a fast reopen/rebuild.
bool hasHtmlCache() const;
// Look up the page number for an anchor id from the section cache file.
std::optional<uint16_t> getPageForAnchor(const std::string& anchor) const;
// Look up an anchor among the pages built so far by the in-progress build, so an anchor jump
// (TOC / chapter select, usually the chapter top = page 0) can resolve without laying out the
// whole chapter. Returns nullopt if the anchor hasn't been reached yet (build more) or no build.
std::optional<uint16_t> findAnchorDuringBuild(const std::string& anchor) const;
// Get the page count from the section cache file without fully loading it.
std::optional<uint16_t> getCachedPageCount() const;
+71 -5
View File
@@ -21,6 +21,39 @@ void TextBlock::render(const GfxRenderer& renderer, const int fontId, const int
const bool scanning = renderer.isFontCacheScanning();
const int ascender = renderer.getFontAscenderSize(fontId);
struct DecorationLineTracker {
EpdFontFamily::Style style;
int yOffset;
int startX = -1;
int endX = -1;
int yPos = 0;
bool active() const { return startX != -1; }
void reset() {
startX = -1;
endX = -1;
yPos = 0;
}
};
DecorationLineTracker decorationLines[] = {
{EpdFontFamily::UNDERLINE, ascender + 2},
{EpdFontFamily::STRIKETHROUGH, ascender * 4 / 5},
};
const auto flushDecoration = [&](DecorationLineTracker& line) {
if (line.active()) {
renderer.drawLine(line.startX, line.yPos, line.endX, line.yPos, 2, true);
line.reset();
}
};
const auto flushDecorations = [&]() {
for (auto& line : decorationLines) {
flushDecoration(line);
}
};
for (size_t i = 0; i < words.size(); i++) {
const int wordX = wordXpos[i] + x;
const EpdFontFamily::Style currentStyle = wordStyles[i];
@@ -59,18 +92,51 @@ void TextBlock::render(const GfxRenderer& renderer, const int fontId, const int
renderer.drawText(fontId, wordX, wordY, words[i].c_str(), true, currentStyle, baseDir);
}
if (!scanning && (currentStyle & EpdFontFamily::UNDERLINE) != 0) {
if (scanning) {
continue;
}
if (EpdFontFamily::hasTextDecoration(currentStyle)) {
const std::string& w = words[i];
int underlineWidth = renderer.getTextWidth(fontId, w.c_str(), currentStyle, baseDir);
const int underlineY = wordY + ascender + 2;
int lineStartX = wordX;
int lineWidth = renderer.getTextWidth(fontId, w.c_str(), currentStyle, baseDir);
if ((currentStyle & (EpdFontFamily::SUP | EpdFontFamily::SUB)) != 0) {
underlineWidth = (underlineWidth + 1) / 2;
lineWidth = (lineWidth + 1) / 2;
}
renderer.drawLine(wordX, underlineY, wordX + underlineWidth, underlineY, true);
// Do not decorate the synthetic em-space used for paragraph indentation.
if (w.size() >= 3 && static_cast<uint8_t>(w[0]) == 0xE2 && static_cast<uint8_t>(w[1]) == 0x80 &&
static_cast<uint8_t>(w[2]) == 0x83) {
const char* visibleText = w.c_str() + 3;
lineStartX += renderer.getTextAdvanceX(fontId, "\xe2\x80\x83", currentStyle);
lineWidth = renderer.getTextWidth(fontId, visibleText, currentStyle, baseDir);
if ((currentStyle & (EpdFontFamily::SUP | EpdFontFamily::SUB)) != 0) {
lineWidth = (lineWidth + 1) / 2;
}
}
for (auto& line : decorationLines) {
if ((currentStyle & line.style) == 0) {
flushDecoration(line);
continue;
}
const int lineY = wordY + line.yOffset;
if (line.active() && line.yPos != lineY) {
flushDecoration(line);
}
if (!line.active()) {
line.startX = lineStartX;
line.yPos = lineY;
}
line.endX = lineStartX + lineWidth;
}
} else {
flushDecorations();
}
}
flushDecorations();
}
bool TextBlock::serialize(HalFile& file) const {
+15 -13
View File
@@ -67,13 +67,6 @@ constexpr bool iequalsAscii(std::string_view value, std::string_view lowercaseKe
[](char a, char b) { return asciiToLower(a) == b; });
}
// Case-insensitive ASCII substring search. Only needed by text-decoration,
// which accepts multi-value strings like "underline solid red".
constexpr bool icontainsAscii(std::string_view value, std::string_view lowercaseKeyword) {
return std::search(value.begin(), value.end(), lowercaseKeyword.begin(), lowercaseKeyword.end(),
[](char a, char b) { return asciiToLower(a) == b; }) != value.end();
}
// Walk s and invoke fn(token) for each non-empty run between delimiters.
// Tokens are boundary-trimmed and yielded as string_views into s; no
// allocation. Runs of consecutive delimiters coalesce — no empty tokens are
@@ -252,11 +245,20 @@ CssFontWeight CssParser::interpretFontWeight(std::string_view val) {
}
CssTextDecoration CssParser::interpretDecoration(std::string_view val) {
// text-decoration can have multiple space-separated values
if (icontainsAscii(val, "underline")) {
return CssTextDecoration::Underline;
}
return CssTextDecoration::None;
// text-decoration can have multiple space-separated values. Compare whole tokens
// so malformed values like "notunderline" do not accidentally enable a line.
CssTextDecoration result = CssTextDecoration::None;
bool explicitNone = false;
forEachDelimitedToken(val, isCssWhitespace, [&](const std::string_view token) {
if (iequalsAscii(token, "none")) {
explicitNone = true;
} else if (iequalsAscii(token, "underline")) {
result = result | CssTextDecoration::Underline;
} else if (iequalsAscii(token, "line-through")) {
result = result | CssTextDecoration::LineThrough;
}
});
return explicitNone ? CssTextDecoration::None : result;
}
CssLength CssParser::interpretLength(std::string_view val) {
@@ -868,7 +870,7 @@ bool CssParser::loadFromCache() {
rulesBySelector_.clear();
return false;
}
style.textDecoration = static_cast<CssTextDecoration>(enumVal);
style.textDecoration = static_cast<CssTextDecoration>(enumVal & CSS_TEXT_DECORATION_MASK);
if (file.read(&enumVal, 1) != 1) {
rulesBySelector_.clear();
+1 -1
View File
@@ -33,7 +33,7 @@
class CssParser {
public:
// Bump when CSS cache format or rules change; section caches are invalidated when this changes
static constexpr uint8_t CSS_CACHE_VERSION = 6;
static constexpr uint8_t CSS_CACHE_VERSION = 7;
explicit CssParser(std::string cachePath) : cachePath(std::move(cachePath)) {}
~CssParser() = default;
+13 -2
View File
@@ -52,8 +52,19 @@ enum class CssFontStyle : uint8_t { Normal = 0, Italic = 1 };
// Font weight options - CSS supports 100-900, we simplify to normal/bold
enum class CssFontWeight : uint8_t { Normal = 0, Bold = 1 };
// Text decoration options
enum class CssTextDecoration : uint8_t { None = 0, Underline = 1 };
// Text decoration options. Values are bit flags so CSS can combine multiple line decorations.
enum class CssTextDecoration : uint8_t { None = 0, Underline = 1, LineThrough = 2 };
constexpr CssTextDecoration operator|(const CssTextDecoration a, const CssTextDecoration b) {
return static_cast<CssTextDecoration>(static_cast<uint8_t>(a) | static_cast<uint8_t>(b));
}
constexpr CssTextDecoration operator&(const CssTextDecoration a, const CssTextDecoration b) {
return static_cast<CssTextDecoration>(static_cast<uint8_t>(a) & static_cast<uint8_t>(b));
}
constexpr uint8_t CSS_TEXT_DECORATION_MASK =
static_cast<uint8_t>(CssTextDecoration::Underline) | static_cast<uint8_t>(CssTextDecoration::LineThrough);
// Display options - only None and Block are relevant for e-ink rendering
enum class CssDisplay : uint8_t { Block = 0, None = 1 };
+137 -93
View File
@@ -34,6 +34,7 @@ constexpr const char* BLOCK_TAGS[] = {"p", "li", "div", "br", "blockquote"};
constexpr const char* BOLD_TAGS[] = {"b", "strong"};
constexpr const char* ITALIC_TAGS[] = {"i", "em"};
constexpr const char* UNDERLINE_TAGS[] = {"u", "ins"};
constexpr const char* LINETHROUGH_TAGS[] = {"del", "s", "strike"};
constexpr const char* IMAGE_TAGS[] = {"img"};
constexpr const char* SKIP_TAGS[] = {"head"};
@@ -89,13 +90,50 @@ void ChapterHtmlSlimParser::applyDirectionToEntry(StyleStackEntry& entry, const
}
}
// Update effective bold/italic/underline based on block style and inline style stack
EpdFontFamily::Style ChapterHtmlSlimParser::fontStyleForTextDecoration(const CssTextDecoration decoration) {
EpdFontFamily::Style style = EpdFontFamily::REGULAR;
if ((decoration & CssTextDecoration::Underline) != CssTextDecoration::None) {
style = static_cast<EpdFontFamily::Style>(style | EpdFontFamily::UNDERLINE);
}
if ((decoration & CssTextDecoration::LineThrough) != CssTextDecoration::None) {
style = static_cast<EpdFontFamily::Style>(style | EpdFontFamily::STRIKETHROUGH);
}
return style;
}
void ChapterHtmlSlimParser::applyTextDecorationToEntry(StyleStackEntry& entry, const CssStyle& css) {
if (css.hasTextDecoration()) {
entry.hasTextDecoration = true;
entry.textDecoration = css.textDecoration;
}
}
void ChapterHtmlSlimParser::pushDecorationStyleEntry(const CssTextDecoration defaultDecoration,
const CssStyle& cssStyle) {
StyleStackEntry entry;
entry.depth = depth;
entry.hasTextDecoration = true;
entry.textDecoration = cssStyle.hasTextDecoration() ? cssStyle.textDecoration : defaultDecoration;
if (cssStyle.hasFontWeight()) {
entry.hasBold = true;
entry.bold = cssStyle.fontWeight == CssFontWeight::Bold;
}
if (cssStyle.hasFontStyle()) {
entry.hasItalic = true;
entry.italic = cssStyle.fontStyle == CssFontStyle::Italic;
}
applyDirectionToEntry(entry, cssStyle);
inlineStyleStack.push_back(entry);
updateEffectiveInlineStyle();
}
// Update effective bold/italic/decorations based on block style and inline style stack
void ChapterHtmlSlimParser::updateEffectiveInlineStyle() {
// Start with block-level styles
effectiveBold = currentCssStyle.hasFontWeight() && currentCssStyle.fontWeight == CssFontWeight::Bold;
effectiveItalic = currentCssStyle.hasFontStyle() && currentCssStyle.fontStyle == CssFontStyle::Italic;
effectiveUnderline =
currentCssStyle.hasTextDecoration() && currentCssStyle.textDecoration == CssTextDecoration::Underline;
effectiveTextDecoration =
currentCssStyle.hasTextDecoration() ? currentCssStyle.textDecoration : CssTextDecoration::None;
effectiveDirectionDefined = currentCssStyle.hasDirection();
effectiveDirection = currentCssStyle.direction;
effectiveSup = false;
@@ -109,8 +147,10 @@ void ChapterHtmlSlimParser::updateEffectiveInlineStyle() {
if (entry.hasItalic) {
effectiveItalic = entry.italic;
}
if (entry.hasUnderline) {
effectiveUnderline = entry.underline;
// CSS line decorations propagate through descendants; child entries add
// their own lines but cannot cancel an ancestor's already active line.
if (entry.hasTextDecoration) {
effectiveTextDecoration = effectiveTextDecoration | entry.textDecoration;
}
if (entry.hasDirection) {
effectiveDirectionDefined = true;
@@ -164,7 +204,6 @@ void ChapterHtmlSlimParser::flushPartWordBuffer() {
// Determine font style from depth-based tracking and CSS effective style
const bool isBold = boldUntilDepth < depth || effectiveBold;
const bool isItalic = italicUntilDepth < depth || effectiveItalic;
const bool isUnderline = underlineUntilDepth < depth || effectiveUnderline;
// Combine style flags using bitwise OR
EpdFontFamily::Style fontStyle = EpdFontFamily::REGULAR;
@@ -174,9 +213,7 @@ void ChapterHtmlSlimParser::flushPartWordBuffer() {
if (isItalic) {
fontStyle = static_cast<EpdFontFamily::Style>(fontStyle | EpdFontFamily::ITALIC);
}
if (isUnderline) {
fontStyle = static_cast<EpdFontFamily::Style>(fontStyle | EpdFontFamily::UNDERLINE);
}
fontStyle = static_cast<EpdFontFamily::Style>(fontStyle | fontStyleForTextDecoration(effectiveTextDecoration));
if (effectiveSup) {
fontStyle = static_cast<EpdFontFamily::Style>(fontStyle | EpdFontFamily::SUP);
} else if (effectiveSub) {
@@ -420,14 +457,15 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
headerStyle.bold = false;
headerStyle.hasItalic = true;
headerStyle.italic = true;
headerStyle.hasUnderline = true;
headerStyle.underline = false;
self->inlineStyleStack.push_back(headerStyle);
self->updateEffectiveInlineStyle();
const CssTextDecoration savedTextDecoration = self->effectiveTextDecoration;
self->effectiveTextDecoration = CssTextDecoration::None;
self->characterData(userData, headerText.c_str(), static_cast<int>(headerText.length()));
if (self->partWordBufferIndex > 0) {
self->flushPartWordBuffer();
}
self->effectiveTextDecoration = savedTextDecoration;
self->nextWordContinues = false;
self->inlineStyleStack.pop_back();
self->updateEffectiveInlineStyle();
@@ -760,12 +798,11 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
self->currentFootnote.number[0] = '\0';
self->currentFootnoteLinkTextLen = 0;
// Apply underline style to visually indicate the link
self->underlineUntilDepth = std::min(self->underlineUntilDepth, self->depth);
// Apply underline style to visually indicate the link.
StyleStackEntry entry;
entry.depth = self->depth;
entry.hasUnderline = true;
entry.underline = true;
entry.hasTextDecoration = true;
entry.textDecoration = CssTextDecoration::Underline;
applyDirectionToEntry(entry, cssStyle);
self->inlineStyleStack.push_back(entry);
self->updateEffectiveInlineStyle();
@@ -837,23 +874,14 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
self->flushPartWordBuffer();
self->nextWordContinues = true;
}
self->underlineUntilDepth = std::min(self->underlineUntilDepth, self->depth);
// Push inline style entry for underline tag
StyleStackEntry entry;
entry.depth = self->depth; // Track depth for matching pop
entry.hasUnderline = true;
entry.underline = true;
if (cssStyle.hasFontWeight()) {
entry.hasBold = true;
entry.bold = cssStyle.fontWeight == CssFontWeight::Bold;
self->pushDecorationStyleEntry(CssTextDecoration::Underline, cssStyle);
} else if (matches(name, LINETHROUGH_TAGS, std::size(LINETHROUGH_TAGS))) {
// Flush buffer before style change so preceding text gets current style
if (self->partWordBufferIndex > 0) {
self->flushPartWordBuffer();
self->nextWordContinues = true;
}
if (cssStyle.hasFontStyle()) {
entry.hasItalic = true;
entry.italic = cssStyle.fontStyle == CssFontStyle::Italic;
}
applyDirectionToEntry(entry, cssStyle);
self->inlineStyleStack.push_back(entry);
self->updateEffectiveInlineStyle();
self->pushDecorationStyleEntry(CssTextDecoration::LineThrough, cssStyle);
} else if (matches(name, BOLD_TAGS, std::size(BOLD_TAGS))) {
// Flush buffer before style change so preceding text gets current style
if (self->partWordBufferIndex > 0) {
@@ -870,10 +898,7 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
entry.hasItalic = true;
entry.italic = cssStyle.fontStyle == CssFontStyle::Italic;
}
if (cssStyle.hasTextDecoration()) {
entry.hasUnderline = true;
entry.underline = cssStyle.textDecoration == CssTextDecoration::Underline;
}
applyTextDecorationToEntry(entry, cssStyle);
applyDirectionToEntry(entry, cssStyle);
self->inlineStyleStack.push_back(entry);
self->updateEffectiveInlineStyle();
@@ -893,10 +918,7 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
entry.hasBold = true;
entry.bold = cssStyle.fontWeight == CssFontWeight::Bold;
}
if (cssStyle.hasTextDecoration()) {
entry.hasUnderline = true;
entry.underline = cssStyle.textDecoration == CssTextDecoration::Underline;
}
applyTextDecorationToEntry(entry, cssStyle);
applyDirectionToEntry(entry, cssStyle);
self->inlineStyleStack.push_back(entry);
self->updateEffectiveInlineStyle();
@@ -935,10 +957,7 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
entry.hasItalic = true;
entry.italic = cssStyle.fontStyle == CssFontStyle::Italic;
}
if (cssStyle.hasTextDecoration()) {
entry.hasUnderline = true;
entry.underline = cssStyle.textDecoration == CssTextDecoration::Underline;
}
applyTextDecorationToEntry(entry, cssStyle);
applyDirectionToEntry(entry, cssStyle);
if (cssStyle.hasVerticalAlign()) {
if (cssStyle.verticalAlign == CssVerticalAlign::Super) {
@@ -1150,9 +1169,8 @@ void XMLCALL ChapterHtmlSlimParser::endElement(void* userData, const XML_Char* n
!self->inlineStyleStack.empty() && self->inlineStyleStack.back().depth == self->depth - 1;
const bool willClearBold = self->boldUntilDepth == self->depth - 1;
const bool willClearItalic = self->italicUntilDepth == self->depth - 1;
const bool willClearUnderline = self->underlineUntilDepth == self->depth - 1;
const bool styleWillChange = willPopStyleStack || willClearBold || willClearItalic || willClearUnderline;
const bool styleWillChange = willPopStyleStack || willClearBold || willClearItalic;
const bool headerOrBlockTag = isHeaderOrBlock(name);
const bool tableStructuralTag = isTableStructuralTag(name);
@@ -1171,7 +1189,8 @@ void XMLCALL ChapterHtmlSlimParser::endElement(void* userData, const XML_Char* n
!matches(name, IMAGE_TAGS, std::size(IMAGE_TAGS)) && self->depth != 1;
const bool shouldFlush = styleWillChange || headerOrBlockTag || matches(name, BOLD_TAGS, std::size(BOLD_TAGS)) ||
matches(name, ITALIC_TAGS, std::size(ITALIC_TAGS)) ||
matches(name, UNDERLINE_TAGS, std::size(UNDERLINE_TAGS)) || tableStructuralTag ||
matches(name, UNDERLINE_TAGS, std::size(UNDERLINE_TAGS)) ||
matches(name, LINETHROUGH_TAGS, std::size(LINETHROUGH_TAGS)) || tableStructuralTag ||
matches(name, IMAGE_TAGS, std::size(IMAGE_TAGS)) || self->depth == 1;
if (shouldFlush) {
@@ -1230,11 +1249,6 @@ void XMLCALL ChapterHtmlSlimParser::endElement(void* userData, const XML_Char* n
self->italicUntilDepth = INT_MAX;
}
// Leaving underline tag
if (self->underlineUntilDepth == self->depth) {
self->underlineUntilDepth = INT_MAX;
}
// Pop from inline style stack if we pushed an entry at this depth
// This handles all inline elements: b, i, u, span, etc.
if (!self->inlineStyleStack.empty() && self->inlineStyleStack.back().depth == self->depth) {
@@ -1261,7 +1275,9 @@ void XMLCALL ChapterHtmlSlimParser::endElement(void* userData, const XML_Char* n
}
}
bool ChapterHtmlSlimParser::parseAndBuildPages() {
ChapterHtmlSlimParser::~ChapterHtmlSlimParser() { abortParse(); }
bool ChapterHtmlSlimParser::beginParse() {
// Initialize block style stack with a root entry representing "no ancestor block elements".
// The user's paragraph alignment is set as the default so child elements without explicit
// text-align inherit it correctly through getCombinedBlockStyle.
@@ -1279,67 +1295,78 @@ bool ChapterHtmlSlimParser::parseAndBuildPages() {
paragraphAlignmentBlockStyle.alignment = align;
startNewTextBlock(paragraphAlignmentBlockStyle);
XML_Parser parser = XML_ParserCreate(nullptr);
int done;
if (!parser) {
xmlParser_ = XML_ParserCreate(nullptr);
if (!xmlParser_) {
LOG_ERR("EHP", "Couldn't allocate memory for parser");
return false;
}
// Handle HTML entities (like &nbsp;) that aren't in XML spec or DTD
// Using DefaultHandlerExpand preserves normal entity expansion from DOCTYPE
XML_SetDefaultHandlerExpand(parser, defaultHandlerExpand);
XML_SetDefaultHandlerExpand(xmlParser_, defaultHandlerExpand);
HalFile file;
if (!Storage.openFileForRead("EHP", filepath, file)) {
destroyXmlParser(parser);
if (!Storage.openFileForRead("EHP", filepath, parseFile_)) {
destroyXmlParser(xmlParser_);
xmlParser_ = nullptr;
return false;
}
// Get file size to decide whether to show indexing popup.
if (popupFn && file.size() >= MIN_SIZE_FOR_POPUP) {
if (popupFn && parseFile_.size() >= MIN_SIZE_FOR_POPUP) {
popupFn();
}
XML_SetUserData(parser, this);
XML_SetElementHandler(parser, startElement, endElement);
XML_SetCharacterDataHandler(parser, characterData);
XML_SetUserData(xmlParser_, this);
XML_SetElementHandler(xmlParser_, startElement, endElement);
XML_SetCharacterDataHandler(xmlParser_, characterData);
// Compute the time taken to parse and build pages
const uint32_t chapterStartTime = millis();
do {
void* const buf = XML_GetBuffer(parser, PARSE_BUFFER_SIZE);
if (!buf) {
LOG_ERR("EHP", "Couldn't allocate memory for buffer");
destroyXmlParser(parser);
file.close();
return false;
}
parseStartTime_ = millis();
return true;
}
const size_t len = file.read(buf, PARSE_BUFFER_SIZE);
ChapterHtmlSlimParser::ParseStatus ChapterHtmlSlimParser::parseStep() {
void* const buf = XML_GetBuffer(xmlParser_, PARSE_BUFFER_SIZE);
if (!buf) {
LOG_ERR("EHP", "Couldn't allocate memory for buffer");
return ParseStatus::Error;
}
if (len == 0 && file.available() > 0) {
LOG_ERR("EHP", "File read error");
destroyXmlParser(parser);
file.close();
return false;
}
const size_t len = parseFile_.read(buf, PARSE_BUFFER_SIZE);
done = file.available() == 0;
if (len == 0 && parseFile_.available() > 0) {
LOG_ERR("EHP", "File read error");
return ParseStatus::Error;
}
if (XML_ParseBuffer(parser, static_cast<int>(len), done) == XML_STATUS_ERROR) {
LOG_ERR("EHP", "Parse error at line %lu:\n%s", XML_GetCurrentLineNumber(parser),
XML_ErrorString(XML_GetErrorCode(parser)));
destroyXmlParser(parser);
file.close();
return false;
}
} while (!done);
LOG_DBG("EHP", "Time to parse and build pages: %lu ms", millis() - chapterStartTime);
const int done = parseFile_.available() == 0;
destroyXmlParser(parser);
file.close();
if (XML_ParseBuffer(xmlParser_, static_cast<int>(len), done) == XML_STATUS_ERROR) {
LOG_ERR("EHP", "Parse error at line %lu:\n%s", XML_GetCurrentLineNumber(xmlParser_),
XML_ErrorString(XML_GetErrorCode(xmlParser_)));
return ParseStatus::Error;
}
return done ? ParseStatus::Done : ParseStatus::More;
}
void ChapterHtmlSlimParser::abortParse() {
if (xmlParser_) {
destroyXmlParser(xmlParser_);
xmlParser_ = nullptr;
}
// Only close the file if it was successfully opened in beginParse()
if (parseFile_.isOpen()) {
parseFile_.close();
}
}
bool ChapterHtmlSlimParser::finishParse() {
if (xmlParser_) {
LOG_DBG("EHP", "Time to parse and build pages: %lu ms", millis() - parseStartTime_);
destroyXmlParser(xmlParser_);
xmlParser_ = nullptr;
}
parseFile_.close();
// Process last page if there is still text
if (currentTextBlock) {
@@ -1357,6 +1384,23 @@ bool ChapterHtmlSlimParser::parseAndBuildPages() {
return true;
}
bool ChapterHtmlSlimParser::parseAndBuildPages() {
if (!beginParse()) {
return false;
}
for (;;) {
const ParseStatus status = parseStep();
if (status == ParseStatus::Error) {
abortParse();
return false;
}
if (status == ParseStatus::Done) {
break;
}
}
return finishParse();
}
void ChapterHtmlSlimParser::addLineToPage(std::shared_ptr<TextBlock> line) {
const int lineHeight = renderer.getLineHeight(fontId) * lineCompression;
+38 -4
View File
@@ -1,5 +1,6 @@
#pragma once
#include <HalStorage.h>
#include <expat.h>
#include <climits>
@@ -31,7 +32,6 @@ class ChapterHtmlSlimParser {
int skipUntilDepth = INT_MAX;
int boldUntilDepth = INT_MAX;
int italicUntilDepth = INT_MAX;
int underlineUntilDepth = INT_MAX;
// buffer for building up words from characters, will auto break if longer than this
// leave one char at end for null pointer
char partWordBuffer[MAX_WORD_SIZE + 1] = {};
@@ -60,7 +60,8 @@ class ChapterHtmlSlimParser {
int depth = 0;
bool hasBold = false, bold = false;
bool hasItalic = false, italic = false;
bool hasUnderline = false, underline = false;
bool hasTextDecoration = false;
CssTextDecoration textDecoration = CssTextDecoration::None;
bool hasDirection = false;
CssTextDirection direction = CssTextDirection::Ltr;
bool hasSup = false, sup = false;
@@ -71,7 +72,7 @@ class ChapterHtmlSlimParser {
CssStyle currentCssStyle;
bool effectiveBold = false;
bool effectiveItalic = false;
bool effectiveUnderline = false;
CssTextDecoration effectiveTextDecoration = CssTextDecoration::None;
bool effectiveDirectionDefined = false;
CssTextDirection effectiveDirection = CssTextDirection::Ltr;
bool effectiveSup = false;
@@ -96,12 +97,25 @@ class ChapterHtmlSlimParser {
std::vector<std::pair<int, FootnoteEntry>> pendingFootnotes; // <wordIndex, entry>
int wordsExtractedInBlock = 0;
// Resumable parse state. The one-shot parseAndBuildPages() drives these
// internally; the incremental section builder drives them across render ticks
// so a large single chapter can yield between pages instead of blocking the UI
// until the whole thing is laid out. parseFile_ and the expat parser stay alive
// for the lifetime of the parse so it can be paused and resumed at buffer
// boundaries.
XML_Parser xmlParser_ = nullptr;
HalFile parseFile_;
uint32_t parseStartTime_ = 0;
void updateEffectiveInlineStyle();
void startNewTextBlock(const BlockStyle& blockStyle);
void flushPendingAnchor();
void flushPartWordBuffer();
void makePages();
static EpdFontFamily::Style fontStyleForTextDecoration(CssTextDecoration decoration);
static void applyDirectionToEntry(StyleStackEntry& entry, const CssStyle& css);
static void applyTextDecorationToEntry(StyleStackEntry& entry, const CssStyle& css);
void pushDecorationStyleEntry(CssTextDecoration defaultDecoration, const CssStyle& cssStyle);
void emitHorizontalRule(const BlockStyle& blockStyle);
// XML callbacks
static void XMLCALL startElement(void* userData, const XML_Char* name, const XML_Char** atts);
@@ -141,8 +155,28 @@ class ChapterHtmlSlimParser {
imageBasePath(imageBasePath),
tocAnchors(std::move(tocAnchors)) {}
~ChapterHtmlSlimParser() = default;
~ChapterHtmlSlimParser();
// One-shot parse: builds every page before returning (begin + step* + finish).
bool parseAndBuildPages();
// Resumable parse, for the incremental section builder. Drive as:
// if (!beginParse()) fail;
// loop: switch (parseStep()) { More: keep going / yield; Done: finishParse(); Error: abortParse(); }
// Pages are emitted via completePageFn as they complete during parseStep(), so
// the caller can stop once enough pages are built and resume on a later tick.
enum class ParseStatus { More, Done, Error };
bool beginParse();
ParseStatus parseStep();
bool finishParse(); // flush the trailing page and tear down; returns true
void abortParse(); // tear down without flushing (error / abandon)
void addLineToPage(std::shared_ptr<TextBlock> line);
const std::vector<std::pair<std::string, uint16_t>>& getAnchors() const { return anchorData; }
// Byte progress of the in-flight parse, used to estimate a still-building section's total page
// count (a giant single-spine book never fully lays out, so its real count is unknown). Valid
// between beginParse() and finishParse()/abortParse().
size_t parseBytesConsumed() { return parseFile_ ? parseFile_.position() : 0; }
size_t parseTotalBytes() { return parseFile_ ? parseFile_.size() : 0; }
};
+70 -54
View File
@@ -3,6 +3,7 @@
#include <algorithm>
#include <cctype>
#include <cstring>
#include <string_view>
#include <vector>
namespace FsHelpers {
@@ -36,12 +37,14 @@ std::string decodeUriEscapes(const std::string& path) {
}
std::string normalisePath(const std::string& path) {
std::vector<std::string> components;
std::string component;
std::vector<std::string_view> components;
components.reserve(8); // Eight nested folders is more than we might expect
for (const auto c : path) {
if (c == '/') {
if (!component.empty()) {
size_t start = 0;
for (size_t i = 0; i <= path.length(); ++i) {
if (i == path.length() || path[i] == '/') {
if (i > start) {
std::string_view component(path.data() + start, i - start);
if (component == "..") {
if (!components.empty()) {
components.pop_back();
@@ -49,28 +52,80 @@ std::string normalisePath(const std::string& path) {
} else {
components.push_back(component);
}
component.clear();
}
} else {
component += c;
start = i + 1;
}
}
if (!component.empty()) {
components.push_back(component);
if (components.empty()) {
return "";
}
size_t total_len = 0;
for (const auto& c : components) {
total_len += c.length() + 1;
}
std::string result;
for (const auto& c : components) {
if (!result.empty()) {
result += "/";
result.reserve(total_len - 1);
for (size_t i = 0; i < components.size(); ++i) {
if (i > 0) {
result += '/';
}
result += c;
result.append(components[i].data(), components[i].length());
}
return result;
}
bool naturalLess(const std::string& str1, const std::string& str2) {
// Naive natural sort: numeric-aware, case-insensitive
const char* s1 = str1.c_str();
const char* s2 = str2.c_str();
// ctype functions require unsigned char values: passing a negative char (UTF-8
// bytes above 0x7f with signed char) is undefined behavior
const auto isDigit = [](const char c) { return isdigit(static_cast<unsigned char>(c)) != 0; };
// Iterate while both strings have characters
while (*s1 && *s2) {
// Check if both are at the start of a number
if (isDigit(*s1) && isDigit(*s2)) {
// Skip leading zeros and track them
while (*s1 == '0') s1++;
while (*s2 == '0') s2++;
// Count digits to compare lengths first
int len1 = 0, len2 = 0;
while (isDigit(s1[len1])) len1++;
while (isDigit(s2[len2])) len2++;
// Different length so return smaller integer value
if (len1 != len2) return len1 < len2;
// Same length so compare digit by digit
for (int i = 0; i < len1; i++) {
if (s1[i] != s2[i]) return s1[i] < s2[i];
}
// Numbers equal so advance pointers
s1 += len1;
s2 += len2;
} else {
// Regular case-insensitive character comparison
const int c1 = tolower(static_cast<unsigned char>(*s1));
const int c2 = tolower(static_cast<unsigned char>(*s2));
if (c1 != c2) return c1 < c2;
s1++;
s2++;
}
}
// One string is prefix of other
return *s1 == '\0' && *s2 != '\0';
}
void sortFileList(std::vector<std::string>& strs) {
std::sort(begin(strs), end(strs), [](const std::string& str1, const std::string& str2) {
// Directories first
@@ -78,46 +133,7 @@ void sortFileList(std::vector<std::string>& strs) {
bool isDir2 = str2.back() == '/';
if (isDir1 != isDir2) return isDir1;
// Start naive natural sort
const char* s1 = str1.c_str();
const char* s2 = str2.c_str();
// Iterate while both strings have characters
while (*s1 && *s2) {
// Check if both are at the start of a number
if (isdigit(*s1) && isdigit(*s2)) {
// Skip leading zeros and track them
while (*s1 == '0') s1++;
while (*s2 == '0') s2++;
// Count digits to compare lengths first
int len1 = 0, len2 = 0;
while (isdigit(s1[len1])) len1++;
while (isdigit(s2[len2])) len2++;
// Different length so return smaller integer value
if (len1 != len2) return len1 < len2;
// Same length so compare digit by digit
for (int i = 0; i < len1; i++) {
if (s1[i] != s2[i]) return s1[i] < s2[i];
}
// Numbers equal so advance pointers
s1 += len1;
s2 += len2;
} else {
// Regular case-insensitive character comparison
char c1 = tolower(*s1);
char c2 = tolower(*s2);
if (c1 != c2) return c1 < c2;
s1++;
s2++;
}
}
// One string is prefix of other
return *s1 == '\0' && *s2 != '\0';
return naturalLess(str1, str2);
});
}
+4
View File
@@ -11,6 +11,10 @@ std::string decodeUriEscapes(const std::string& path);
std::string normalisePath(const std::string& path);
// Numeric-aware, case-insensitive comparison ("2" < "10"). Returns true when str1 orders
// before str2. Same ordering sortFileList applies within the file/directory groups.
bool naturalLess(const std::string& str1, const std::string& str2);
void sortFileList(std::vector<std::string>& strs);
/**
+203 -17
View File
@@ -661,8 +661,10 @@ void GfxRenderer::drawRoundedRect(const int x, const int y, const int width, con
}
void GfxRenderer::fillRect(const int x, const int y, const int width, const int height, const bool state) const {
for (int fillY = y; fillY < y + height; fillY++) {
drawLine(x, fillY, x + width - 1, fillY, state);
if (state) {
fillRectImpl<Color::Black>(x, y, width, height);
} else {
fillRectImpl<Color::White>(x, y, width, height);
}
}
@@ -694,26 +696,194 @@ void GfxRenderer::drawPixelDither<Color::DarkGray>(const int x, const int y) con
}
void GfxRenderer::fillRectDither(const int x, const int y, const int width, const int height, Color color) const {
if (color == Color::Clear) {
} else if (color == Color::Black) {
fillRect(x, y, width, height, true);
} else if (color == Color::White) {
fillRect(x, y, width, height, false);
} else if (color == Color::LightGray) {
for (int fillY = y; fillY < y + height; fillY++) {
for (int fillX = x; fillX < x + width; fillX++) {
drawPixelDither<Color::LightGray>(fillX, fillY);
switch (color) {
case Color::Clear:
break;
case Color::Black:
fillRectImpl<Color::Black>(x, y, width, height);
break;
case Color::White:
fillRectImpl<Color::White>(x, y, width, height);
break;
case Color::LightGray:
fillRectImpl<Color::LightGray>(x, y, width, height);
break;
case Color::DarkGray:
fillRectImpl<Color::DarkGray>(x, y, width, height);
break;
}
}
template <Color C>
void GfxRenderer::fillRectImpl(const int x, const int y, const int width, const int height) const {
if constexpr (C == Color::Clear) return;
if (width <= 0 || height <= 0) return;
if (fontCacheManager_ && fontCacheManager_->isScanning()) return;
// Clip in logical space.
const int screenW = getScreenWidth();
const int screenH = getScreenHeight();
const int lx0 = std::max(0, x);
const int ly0 = std::max(0, y);
const int lx1 = std::min(screenW, x + width);
const int ly1 = std::min(screenH, y + height);
if (lx0 >= lx1 || ly0 >= ly1) return;
// Rotate the two opposing logical corners into physical-framebuffer space.
// The bounding rect in physical space is the rect we need to fill — rotation
// is rigid (no shear/stretch) so the bbox of the two corners IS the rect.
int paX, paY, pbX, pbY;
rotateCoordinates(orientation, lx0, ly0, &paX, &paY, panelWidth, panelHeight);
rotateCoordinates(orientation, lx1 - 1, ly1 - 1, &pbX, &pbY, panelWidth, panelHeight);
const int phyX0 = std::min(paX, pbX);
const int phyX1 = std::max(paX, pbX); // inclusive
int phyY0 = std::min(paY, pbY);
int phyY1 = std::max(paY, pbY);
// Strip mode: clip Y range to the active band and redirect writes.
uint8_t* target = getWriteTarget();
const int originY = getWriteOriginY();
const int writeRows = getWriteRows();
phyY0 = std::max(phyY0, originY);
phyY1 = std::min(phyY1, originY + writeRows - 1);
if (phyY0 > phyY1) return;
// Bit/byte layout: MSB-first within a byte, so phyX → bit (7 - (phyX & 7)).
// Head and tail masks cover only the in-rect bits of the first/last byte.
const int byteStart = phyX0 >> 3;
const int byteEnd = phyX1 >> 3; // inclusive
const uint8_t headMask = static_cast<uint8_t>(0xFFu >> (phyX0 & 7));
const uint8_t tailMask = static_cast<uint8_t>(0xFFu << (7 - (phyX1 & 7)));
const int32_t panelStride = static_cast<int32_t>(panelWidthBytes);
if constexpr (C == Color::Black || C == Color::White) {
// Solid fill. Framebuffer: 0 = black, 1 = white.
const uint8_t fillByte = (C == Color::Black) ? 0x00u : 0xFFu;
for (int py = phyY0; py <= phyY1; ++py) {
uint8_t* row = target + static_cast<int32_t>(py - originY) * panelStride;
if (byteStart == byteEnd) {
const uint8_t mask = headMask & tailMask;
if constexpr (C == Color::Black) {
row[byteStart] &= static_cast<uint8_t>(~mask);
} else {
row[byteStart] |= mask;
}
} else {
if constexpr (C == Color::Black) {
row[byteStart] &= static_cast<uint8_t>(~headMask);
if (byteEnd > byteStart + 1) {
memset(row + byteStart + 1, fillByte, byteEnd - byteStart - 1);
}
row[byteEnd] &= static_cast<uint8_t>(~tailMask);
} else {
row[byteStart] |= headMask;
if (byteEnd > byteStart + 1) {
memset(row + byteStart + 1, fillByte, byteEnd - byteStart - 1);
}
row[byteEnd] |= tailMask;
}
}
}
} else if (color == Color::DarkGray) {
for (int fillY = y; fillY < y + height; fillY++) {
for (int fillX = x; fillX < x + width; fillX++) {
drawPixelDither<Color::DarkGray>(fillX, fillY);
} else {
// Dither (LightGray / DarkGray). Both patterns have period 2 in logical
// (x, y), so per physical row we precompute one byte that represents the
// pattern across an 8-pixel stretch — every full byte in the row uses
// that same value.
//
// dlxPerPhyX / dlyPerPhyX: how logical (x, y) change as phyX increments
// along a physical row. Derived from inverting rotateCoordinates.
int dlxPerPhyX = 0, dlyPerPhyX = 0;
switch (orientation) {
case Portrait:
dlxPerPhyX = 0;
dlyPerPhyX = 1;
break;
case PortraitInverted:
dlxPerPhyX = 0;
dlyPerPhyX = -1;
break;
case LandscapeClockwise:
dlxPerPhyX = -1;
dlyPerPhyX = 0;
break;
case LandscapeCounterClockwise:
dlxPerPhyX = 1;
dlyPerPhyX = 0;
break;
}
// The dither pattern has period 2 in logical space, and each orientation
// maps py to logical coords with a fixed parity relationship. The
// blackMask byte therefore repeats with period 2 in py. Precompute both
// variants outside the row loop to eliminate the per-row switch + 8-bit
// construction loop.
uint8_t blackMasks[2];
for (int parityIdx = 0; parityIdx < 2; ++parityIdx) {
const int samplePy = phyY0 + parityIdx;
int lxBase = 0, lyBase = 0;
switch (orientation) {
case Portrait:
lxBase = panelHeight - 1 - samplePy;
lyBase = byteStart * 8;
break;
case PortraitInverted:
lxBase = samplePy;
lyBase = panelWidth - 1 - byteStart * 8;
break;
case LandscapeClockwise:
lxBase = panelWidth - 1 - byteStart * 8;
lyBase = panelHeight - 1 - samplePy;
break;
case LandscapeCounterClockwise:
lxBase = byteStart * 8;
lyBase = samplePy;
break;
}
uint8_t mask = 0;
for (int b = 0; b < 8; ++b) {
const int lx = lxBase + b * dlxPerPhyX;
const int ly = lyBase + b * dlyPerPhyX;
bool isBlack;
if constexpr (C == Color::LightGray) {
isBlack = ((lx & 1) == 0) && ((ly & 1) == 0);
} else { // DarkGray
isBlack = (((lx + ly) & 1) == 0);
}
if (isBlack) mask |= static_cast<uint8_t>(1u << (7 - b));
}
blackMasks[samplePy & 1] = mask;
}
for (int py = phyY0; py <= phyY1; ++py) {
const uint8_t blackMask = blackMasks[py & 1];
const uint8_t whiteMask = static_cast<uint8_t>(~blackMask);
// Dither writes BOTH inks (the slow path called drawPixel for every
// pixel — setting or clearing — so we must do the same). Inside the
// rect mask: write whiteMask (1s where white, 0s where black). Outside
// the rect mask: leave the framebuffer untouched.
uint8_t* row = target + static_cast<int32_t>(py - originY) * panelStride;
if (byteStart == byteEnd) {
const uint8_t rectMask = headMask & tailMask;
row[byteStart] = static_cast<uint8_t>((row[byteStart] & ~rectMask) | (rectMask & whiteMask));
} else {
row[byteStart] = static_cast<uint8_t>((row[byteStart] & ~headMask) | (headMask & whiteMask));
if (byteEnd > byteStart + 1) {
// Period 2, so every full byte in this row is exactly whiteMask.
memset(row + byteStart + 1, whiteMask, byteEnd - byteStart - 1);
}
row[byteEnd] = static_cast<uint8_t>((row[byteEnd] & ~tailMask) | (tailMask & whiteMask));
}
}
}
}
template void GfxRenderer::fillRectImpl<Color::Black>(int, int, int, int) const;
template void GfxRenderer::fillRectImpl<Color::White>(int, int, int, int) const;
template void GfxRenderer::fillRectImpl<Color::LightGray>(int, int, int, int) const;
template void GfxRenderer::fillRectImpl<Color::DarkGray>(int, int, int, int) const;
void GfxRenderer::maskRoundedRectOutsideCorners(const int x, const int y, const int width, const int height,
const int radius, const Color color) const {
if (radius <= 0 || color == Color::Clear) {
@@ -884,8 +1054,24 @@ void GfxRenderer::drawImage(const uint8_t bitmap[], const int x, const int y, co
display.drawImage(bitmap, rotatedX, rotatedY, width, height);
}
void GfxRenderer::drawIcon(const uint8_t bitmap[], const int x, const int y, const int width, const int height) const {
display.drawImageTransparent(bitmap, y, getScreenWidth() - width - x, height, width);
void GfxRenderer::drawIcon(const uint8_t bitmap[], const int x, const int y, const int size) const {
// Plot the icon pixel-by-pixel through drawPixel (which applies the orientation
// transform) instead of the byte-aligned framebuffer blit. The blit snaps the
// icon's position to 8px (one byte) along the rotated axis, which prevents it
// from aligning with adjacent text; per-pixel plotting is pixel-precise.
// Icons are square and 1bpp (MSB-first, bit==0 = ink). The (size-1-row, col)
// mapping reproduces the Portrait orientation the blit produced; drawIcon is
// only called by the UI themes, which all render in forced Portrait.
const int rowBytes = (size + 7) / 8;
for (int row = 0; row < size; row++) {
for (int col = 0; col < size; col++) {
const uint8_t byte = bitmap[row * rowBytes + (col >> 3)];
const bool ink = ((byte >> (7 - (col & 7))) & 1) == 0;
if (ink) {
drawPixel(x + (size - 1 - row), y + col, true);
}
}
}
}
void GfxRenderer::drawBitmap(const Bitmap& bitmap, const int x, const int y, const int maxWidth, const int maxHeight,
+7 -1
View File
@@ -81,6 +81,12 @@ class GfxRenderer {
void drawPixelDither(int x, int y) const;
template <Color color>
void fillArc(int maxRadius, int cx, int cy, int xDir, int yDir) const;
// Byte-aligned, orientation-specialized rectangle fill. Rotates the rect's
// two opposing corners into physical-framebuffer space once, then walks each
// physical row with head-mask / middle memset / tail-mask byte writes — no
// per-pixel rotation, no per-pixel RMW.
template <Color color>
void fillRectImpl(int x, int y, int width, int height) const;
public:
explicit GfxRenderer(HalDisplay& halDisplay)
@@ -177,7 +183,7 @@ class GfxRenderer {
void fillRoundedRect(int x, int y, int width, int height, int cornerRadius, bool roundTopLeft, bool roundTopRight,
bool roundBottomLeft, bool roundBottomRight, Color color) const;
void drawImage(const uint8_t bitmap[], int x, int y, int width, int height) const;
void drawIcon(const uint8_t bitmap[], int x, int y, int width, int height) const;
void drawIcon(const uint8_t bitmap[], int x, int y, int size) const;
void drawBitmap(const Bitmap& bitmap, int x, int y, int maxWidth, int maxHeight, float cropX = 0,
float cropY = 0) const;
void drawBitmap1Bit(const Bitmap& bitmap, int x, int y, int maxWidth, int maxHeight) const;
+3 -2
View File
@@ -126,6 +126,7 @@ STR_PAGE_TURN: "Перагортванне"
STR_PORTRAIT: "Партрэт"
STR_LANDSCAPE_CW: "Ландшафт (CW)"
STR_INVERTED: "Інверсія"
STR_ORIENTATION_INVERTED: "Партрэт 180°"
STR_LANDSCAPE_CCW: "Ландшафт (CCW)"
STR_PREV_NEXT: "Назад/Наперад"
STR_NEXT_PREV: "Наперад/Назад"
@@ -235,7 +236,6 @@ STR_CHAPTER_PREFIX: "Раздзел:"
STR_PAGES_SEPARATOR: "стар. |"
STR_BOOK_PREFIX: "Кніга:"
STR_CALIBRE_URL_HINT: "Для Calibre дадайце /opds да URL"
STR_PERCENT_STEP_HINT: "Улева/Управа: 1% Уверх/Уніз: 10%"
STR_SYNCING_TIME: "Сінхранізацыя часу..."
STR_CALC_HASH: "Вылічэнне хэша дакумента..."
STR_HASH_FAILED: "Не ўдалося вылічыць хэш дакумента"
@@ -295,7 +295,8 @@ STR_NO_FOOTNOTES: "На гэтай старонцы няма зносак"
STR_LINK: "[спасылка]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u хв"
STR_SLEEP_NEVER: "Ніколі"
STR_SLEEP_TIMER_STEP_HINT: "Улева/Управа: 1 хв Уверх/Уніз: 5 хв"
STR_STEP_HINT_FRONT: "Пярэднія кнопкі:"
STR_STEP_HINT_SIDE: "Бакавыя кнопкі:"
STR_AUTO_TURN_ENABLED: "Аўтаперагортванне: "
STR_AUTO_TURN_PAGES_PER_MIN: "Аўтаперагортванне (старонак за хвіліну)"
STR_TILT_PAGE_TURN: "Перагортванне нахілам"
+3 -2
View File
@@ -136,6 +136,7 @@ STR_PAGE_TURN: "Canvi de pàgina"
STR_PORTRAIT: "Vertical"
STR_LANDSCAPE_CW: "Horitzontal horari"
STR_INVERTED: "Invertit"
STR_ORIENTATION_INVERTED: "Vertical 180°"
STR_LANDSCAPE_CCW: "Horitzontal antihorari"
STR_PREV_NEXT: "Anterior/Següent"
STR_NEXT_PREV: "Següent/Anterior"
@@ -271,7 +272,6 @@ STR_CHAPTER_PREFIX: "Capítol: "
STR_PAGES_SEPARATOR: " pàgines | "
STR_BOOK_PREFIX: "Llibre: "
STR_CALIBRE_URL_HINT: "Per al Calibre, afegiu /opds a la URL"
STR_PERCENT_STEP_HINT: "Esquerra/Dreta: 1% Amunt/Avall: 10%"
STR_SYNCING_TIME: "S'està sincronitzant el temps..."
STR_CALC_HASH: "S'està calculant el hash del document..."
STR_HASH_FAILED: "No s'ha pogut calcular el hash del document"
@@ -304,7 +304,8 @@ STR_NO_FOOTNOTES: "No hi ha notes al peu en aquesta pàgina"
STR_LINK: "[enllaç]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Mai"
STR_SLEEP_TIMER_STEP_HINT: "Esquerra/Dreta: 1 min Amunt/Avall: 5 min"
STR_STEP_HINT_FRONT: "Botons frontals:"
STR_STEP_HINT_SIDE: "Botons laterals:"
STR_SCREENSHOT_BUTTON: "Fes una captura de pantalla"
STR_AUTO_TURN_ENABLED: "Passar automàtic activat: "
STR_AUTO_TURN_PAGES_PER_MIN: "Passar automàtic (pàgines per minut)"
+4 -3
View File
@@ -58,7 +58,7 @@ STR_CALIBRE_INSTRUCTION_3: "3) V Calibre: „Odeslat do zařízení“"
STR_CALIBRE_INSTRUCTION_4: "„Při odesílání ponechat tuto obrazovku otevřenou“"
STR_CAT_DISPLAY: "Displej"
STR_CAT_READER: "Čtečka"
STR_CAT_CONTROLS: "Ovládací prvky"
STR_CAT_CONTROLS: "Ovládání"
STR_CAT_SYSTEM: "Systém"
STR_SLEEP_SCREEN: "Obrazovka spánku"
STR_SLEEP_COVER_MODE: "Obrazovka spánku Režim krytu"
@@ -131,6 +131,7 @@ STR_PAGE_TURN: "Otáčení stránek"
STR_PORTRAIT: "Na výšku"
STR_LANDSCAPE_CW: "Na šířku po směru hod. ručiček"
STR_INVERTED: "Invertovaný"
STR_ORIENTATION_INVERTED: "Na výšku 180°"
STR_LANDSCAPE_CCW: "Na šířku proti směru hod. ručiček"
STR_PREV_NEXT: "Předchozí/Další"
STR_NEXT_PREV: "Další/Předchozí"
@@ -242,7 +243,6 @@ STR_CHAPTER_PREFIX: "Kapitola:"
STR_PAGES_SEPARATOR: "stránek |"
STR_BOOK_PREFIX: "Kniha:"
STR_CALIBRE_URL_HINT: "Pro Calibre přidejte /opds do URL adresy"
STR_PERCENT_STEP_HINT: "Vlevo/Vpravo: 1 % Nahoru/Dolů: 10 %"
STR_SYNCING_TIME: "Čas synchronizace..."
STR_CALC_HASH: "Výpočet hashe dokumentu..."
STR_HASH_FAILED: "Nepodařilo se vypočítat hash dokumentu"
@@ -272,5 +272,6 @@ STR_OPDS_SERVER_URL: "URL serveru OPDS"
STR_SCREENSHOT_BUTTON: "Udělat snímek obrazovky"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nikdy"
STR_SLEEP_TIMER_STEP_HINT: "Vlevo/Vpravo: 1 min Nahoru/Dolů: 5 min"
STR_STEP_HINT_FRONT: "Přední tlačítka:"
STR_STEP_HINT_SIDE: "Boční tlačítka:"
STR_TILT_PAGE_TURN: "Otáčení stránek nakloněním"
+3 -2
View File
@@ -136,6 +136,7 @@ STR_PAGE_TURN: "Sideskift"
STR_PORTRAIT: "Portræt"
STR_LANDSCAPE_CW: "Liggende med uret"
STR_INVERTED: "Inverteret"
STR_ORIENTATION_INVERTED: "Portræt 180°"
STR_LANDSCAPE_CCW: "Liggende mod uret"
STR_PREV_NEXT: "Forrige/Næste"
STR_NEXT_PREV: "Næste/Forrige"
@@ -265,7 +266,6 @@ STR_CHAPTER_PREFIX: "Kapitel: "
STR_PAGES_SEPARATOR: " sider | "
STR_BOOK_PREFIX: "Bog: "
STR_CALIBRE_URL_HINT: "Tilføj /opds til din URL for Calibre"
STR_PERCENT_STEP_HINT: "Venstre/Højre: 1% Op/Ned: 10%"
STR_SYNCING_TIME: "Synkroniserer tid..."
STR_CALC_HASH: "Beregner dokument-hash..."
STR_HASH_FAILED: "Kunne ikke beregne dokument-hash"
@@ -297,7 +297,8 @@ STR_NO_FOOTNOTES: "Ingen fodnoter på denne side"
STR_LINK: "[link]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Aldrig"
STR_SLEEP_TIMER_STEP_HINT: "Venstre/Højre: 1 min Op/Ned: 5 min"
STR_STEP_HINT_FRONT: "Frontknapper:"
STR_STEP_HINT_SIDE: "Sideknapper:"
STR_SCREENSHOT_BUTTON: "Tag skærmbillede"
STR_AUTO_TURN_ENABLED: "Automatisk sidevendning aktiveret: "
STR_AUTO_TURN_PAGES_PER_MIN: "Automatisk vending (sider per minut)"
+4 -3
View File
@@ -135,7 +135,8 @@ STR_SLEEP: "Slaap"
STR_PAGE_TURN: "Pagina omslaan"
STR_PORTRAIT: "Staand"
STR_LANDSCAPE_CW: "Liggend (rechtsom)"
STR_INVERTED: "Omgekeerd"
STR_INVERTED: "Geïnverteerd"
STR_ORIENTATION_INVERTED: "Staand 180°"
STR_LANDSCAPE_CCW: "Liggend (linksom)"
STR_PREV_NEXT: "Vorige/Volgende"
STR_NEXT_PREV: "Volgende/Vorige"
@@ -265,7 +266,6 @@ STR_CHAPTER_PREFIX: "Hoofdstuk: "
STR_PAGES_SEPARATOR: " pagina's | "
STR_BOOK_PREFIX: "Boek: "
STR_CALIBRE_URL_HINT: "Voeg voor Calibre /opds toe aan de URL"
STR_PERCENT_STEP_HINT: "Links/Rechts: 1% Omhoog/Omlaag: 10%"
STR_SYNCING_TIME: "Tijd synchroniseren..."
STR_CALC_HASH: "Document-hash berekenen..."
STR_HASH_FAILED: "Document-hash berekenen mislukt"
@@ -297,7 +297,8 @@ STR_NO_FOOTNOTES: "Geen voetnoten op deze pagina"
STR_LINK: "[link]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nooit"
STR_SLEEP_TIMER_STEP_HINT: "Links/Rechts: 1 min Omhoog/Omlaag: 5 min"
STR_STEP_HINT_FRONT: "Voorknoppen:"
STR_STEP_HINT_SIDE: "Zijknoppen:"
STR_SCREENSHOT_BUTTON: "Screenshot maken"
STR_AUTO_TURN_ENABLED: "Automatisch omslaan ingeschakeld: "
STR_AUTO_TURN_PAGES_PER_MIN: "Autom. omslaan (pagina's per minuut)"
+5 -2
View File
@@ -70,6 +70,8 @@ STR_IMAGES: "Images"
STR_IMAGES_DISPLAY: "Display"
STR_IMAGES_PLACEHOLDER: "Placeholder"
STR_IMAGES_SUPPRESS: "Suppress"
STR_EOB_HOME: "Home"
STR_EOB_CONTINUE_WITH: "Continue with"
STR_SHORT_PWR_BTN: "Short Power Button Click"
STR_ORIENTATION: "Reading Orientation"
STR_SIDE_BTN_LAYOUT: "Side Button Layout (reader)"
@@ -139,6 +141,7 @@ STR_FORCE_REFRESH: "Refresh Screen"
STR_PORTRAIT: "Portrait"
STR_LANDSCAPE_CW: "Landscape CW"
STR_INVERTED: "Inverted"
STR_ORIENTATION_INVERTED: "Portrait 180°"
STR_LANDSCAPE_CCW: "Landscape CCW"
STR_PREV_NEXT: "Prev/Next"
STR_NEXT_PREV: "Next/Prev"
@@ -313,7 +316,6 @@ STR_CHAPTER_PREFIX: "Chapter: "
STR_PAGES_SEPARATOR: " pages | "
STR_BOOK_PREFIX: "Book: "
STR_CALIBRE_URL_HINT: "For Calibre, add /opds to your URL"
STR_PERCENT_STEP_HINT: "Left/Right: 1% Up/Down: 10%"
STR_SYNCING_TIME: "Syncing time..."
STR_CALC_HASH: "Calculating document hash..."
STR_HASH_FAILED: "Failed to calculate document hash"
@@ -348,7 +350,8 @@ STR_LINK: "[link]"
STR_SCREENSHOT_BUTTON: "Take screenshot"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Never"
STR_SLEEP_TIMER_STEP_HINT: "Left/Right: 1 min Up/Down: 5 min"
STR_STEP_HINT_FRONT: "Front buttons:"
STR_STEP_HINT_SIDE: "Side buttons:"
STR_ADD_SERVER: "Add Server"
STR_SERVER_NAME: "Server Name"
STR_NO_SERVERS: "No OPDS servers configured"
+4 -3
View File
@@ -130,7 +130,8 @@ STR_SLEEP: "Lepotila"
STR_PAGE_TURN: "Sivunkääntö"
STR_PORTRAIT: "Pysty"
STR_LANDSCAPE_CW: "Vaaka myötäpäivään"
STR_INVERTED: "Käännetty"
STR_INVERTED: "Käänteinen"
STR_ORIENTATION_INVERTED: "Pysty 180°"
STR_LANDSCAPE_CCW: "Vaaka vastapäivään"
STR_PREV_NEXT: "Edell/Seur"
STR_NEXT_PREV: "Seur/Edell"
@@ -240,7 +241,6 @@ STR_CHAPTER_PREFIX: "Luku: "
STR_PAGES_SEPARATOR: " sivua | "
STR_BOOK_PREFIX: "Kirja: "
STR_CALIBRE_URL_HINT: "Calibrelle lisää /opds osoitteeseen"
STR_PERCENT_STEP_HINT: "Vasen/Oikea: 1% Ylös/Alas: 10%"
STR_SYNCING_TIME: "Synkronoidaan aikaa..."
STR_CALC_HASH: "Lasketaan dokumentin tarkistussummaa..."
STR_HASH_FAILED: "Dokumentin tiivisteen laskenta epäonnistui"
@@ -270,5 +270,6 @@ STR_OPDS_SERVER_URL: "OPDS-palvelimen osoite"
STR_SCREENSHOT_BUTTON: "Ota kuvakaappaus"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Ei koskaan"
STR_SLEEP_TIMER_STEP_HINT: "Vasen/Oikea: 1 min Ylös/Alas: 5 min"
STR_STEP_HINT_FRONT: "Etupainikkeet:"
STR_STEP_HINT_SIDE: "Sivupainikkeet:"
STR_TILT_PAGE_TURN: "Sivunkääntö kallistamalla"
+3 -2
View File
@@ -136,6 +136,7 @@ STR_PAGE_TURN: "Page suivante"
STR_PORTRAIT: "Portrait"
STR_LANDSCAPE_CW: "Paysage"
STR_INVERTED: "Inversé"
STR_ORIENTATION_INVERTED: "Portrait 180°"
STR_LANDSCAPE_CCW: "Paysage inversé"
STR_PREV_NEXT: "Préc/Suiv"
STR_NEXT_PREV: "Suiv/Préc"
@@ -266,7 +267,6 @@ STR_CHAPTER_PREFIX: "Chapitre : "
STR_PAGES_SEPARATOR: " pages | "
STR_BOOK_PREFIX: "Livre : "
STR_CALIBRE_URL_HINT: "Pour Calibre, ajoutez /opds à lURL"
STR_PERCENT_STEP_HINT: "Gauche/Droite : 1% Haut/Bas : 10%"
STR_SYNCING_TIME: "Synchro de lheure…"
STR_CALC_HASH: "Calcul hash doc…"
STR_HASH_FAILED: "Échec calcul hash"
@@ -298,7 +298,8 @@ STR_NO_FOOTNOTES: "Aucune note sur cette page"
STR_LINK: "[lien]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Jamais"
STR_SLEEP_TIMER_STEP_HINT: "Gauche/Droite : 1 min Haut/Bas : 5 min"
STR_STEP_HINT_FRONT: "Boutons avant :"
STR_STEP_HINT_SIDE: "Boutons latéraux :"
STR_SCREENSHOT_BUTTON: "Capture d'écran"
STR_AUTO_TURN_ENABLED: "Tourne-page auto : "
STR_AUTO_TURN_PAGES_PER_MIN: "Tourne-page auto (pages par minute)"
+7 -5
View File
@@ -70,7 +70,7 @@ STR_ORIENTATION: "Leseausrichtung"
STR_SIDE_BTN_LAYOUT: "Seitliche Tasten (Lesen)"
STR_FRONT_BTN_FOLLOW_ORIENTATION: "Vordere Tasten ausrichten"
STR_LONG_PRESS_BEHAVIOR: "Verhalten bei langem Tastendruck"
STR_LONG_PRESS_BEHAVIOR_OFF: "AUS"
STR_LONG_PRESS_BEHAVIOR_OFF: "Aus"
STR_LONG_PRESS_BEHAVIOR_SKIP: "Kapitel überspringen"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Ausrichtung ändern"
STR_FONT_PREVIEW_TEXT: "Victor jagt zwölf Boxkämpfer quer über den großen Sylter Deich"
@@ -79,8 +79,9 @@ STR_FONT_SIZE: "Schriftgröße"
STR_LINE_SPACING: "Lese-Zeilenabstand"
STR_SCREEN_MARGIN: "Lese-Seitenränder"
STR_PARA_ALIGNMENT: "Lese-Absatzausrichtung"
STR_LONG_PRESS_MENU: "Menütaste lang drücken"
STR_HYPHENATION: "Silbentrennung"
STR_TIME_TO_SLEEP: "Standby nach"
STR_TIME_TO_SLEEP: "Standby-Modus nach"
STR_REFRESH_FREQ: "Anti-Ghosting nach"
STR_KOREADER_SYNC: "KOReader-Synchr."
STR_CHECK_UPDATES: "Nach Updates suchen"
@@ -129,7 +130,8 @@ STR_PAGE_TURN: "Umblättern"
STR_FORCE_REFRESH: "Bildschirm regenerieren"
STR_PORTRAIT: "Hochformat"
STR_LANDSCAPE_CW: "Querformat rechts"
STR_INVERTED: "Hochformat 180°"
STR_INVERTED: "Invertiert"
STR_ORIENTATION_INVERTED: "Hochformat 180°"
STR_LANDSCAPE_CCW: "Querformat links"
STR_PREV_NEXT: "Zurück/Weiter"
STR_NEXT_PREV: "Weiter/Zurück"
@@ -286,7 +288,6 @@ STR_CHAPTER_PREFIX: "Kapitel:"
STR_PAGES_SEPARATOR: " Seiten | "
STR_BOOK_PREFIX: "Buch: "
STR_CALIBRE_URL_HINT: "Calibre: URL um /opds ergänzen"
STR_PERCENT_STEP_HINT: "links/rechts: 1% hoch/runter: 10%"
STR_SYNCING_TIME: "Zeit synchronisieren…"
STR_CALC_HASH: "Dokument-Hash berechnen…"
STR_HASH_FAILED: "Dokument-Hash fehlgeschlagen"
@@ -320,7 +321,8 @@ STR_NO_FOOTNOTES: "Keine Fußnoten auf dieser Seite"
STR_LINK: "[Link]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u Min."
STR_SLEEP_NEVER: "Nie"
STR_SLEEP_TIMER_STEP_HINT: "Links/Rechts: 1 Min. Hoch/Runter: 5 Min."
STR_STEP_HINT_FRONT: "Vordere Tasten:"
STR_STEP_HINT_SIDE: "Seitentasten:"
STR_ADD_SERVER: "Server hinzufügen"
STR_SERVER_NAME: "Servername"
STR_NO_SERVERS: "Keine OPDS-Server konfiguriert"
+4 -3
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@@ -134,7 +134,8 @@ STR_PAGE_TURN: "העברת דף"
STR_FORCE_REFRESH: "רענון מסך מלא"
STR_PORTRAIT: "לאורך"
STR_LANDSCAPE_CW: "לרוחב (ימינה)"
STR_INVERTED: "הפוך"
STR_INVERTED: יפוך צבעים"
STR_ORIENTATION_INVERTED: "לאורך 180°"
STR_LANDSCAPE_CCW: "לרוחב (שמאלה)"
STR_PREV_NEXT: "הקודם/הבא"
STR_NEXT_PREV: "הבא/הקודם"
@@ -267,7 +268,6 @@ STR_CHAPTER_PREFIX: "פרק: "
STR_PAGES_SEPARATOR: " דפים | "
STR_BOOK_PREFIX: "ספר: "
STR_CALIBRE_URL_HINT: "עבור Calibre, הוסף /opds לכתובת ה-URL"
STR_PERCENT_STEP_HINT: "שמאל/ימין: 1% למעלה/למטה: 10%"
STR_SYNCING_TIME: "מסנכרן שעון..."
STR_CALC_HASH: "מחשב האש..."
STR_HASH_FAILED: "חישוב האש נכשל"
@@ -389,4 +389,5 @@ STR_BOOKMARK_OPTION: "סימנייה"
STR_PWR_BTN_FOOTNOTE_BACK: "חזרה מהירה מהערות שוליים"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u דקות"
STR_SLEEP_NEVER: "אף פעם"
STR_SLEEP_TIMER_STEP_HINT: "שמאל/ימין: 1 דק' למעלה/למטה: 5 דק'"
STR_STEP_HINT_FRONT: "לחצנים קדמיים:"
STR_STEP_HINT_SIDE: "לחצני צד:"
+4 -3
View File
@@ -132,7 +132,8 @@ STR_SLEEP: "Alvás"
STR_PAGE_TURN: "Lapozás"
STR_PORTRAIT: "Álló"
STR_LANDSCAPE_CW: "Fekvő jobbra"
STR_INVERTED: "Fordított"
STR_INVERTED: "Invertált"
STR_ORIENTATION_INVERTED: "Álló 180°"
STR_LANDSCAPE_CCW: "Fekvő balra"
STR_PREV_NEXT: "Előző/Következő"
STR_NEXT_PREV: "Következő/Előző"
@@ -262,7 +263,6 @@ STR_CHAPTER_PREFIX: "Fejezet: "
STR_PAGES_SEPARATOR: " oldal | "
STR_BOOK_PREFIX: "Könyv: "
STR_CALIBRE_URL_HINT: "Calibre esetén adj /opds-t az URL-hez"
STR_PERCENT_STEP_HINT: "Bal/Jobb: 1% Fel/Le: 10%"
STR_SYNCING_TIME: "Idő szinkronizálása..."
STR_CALC_HASH: "Dokumentum hash kiszámítása..."
STR_HASH_FAILED: "Dokumentum hash kiszámítása sikertelen"
@@ -294,7 +294,8 @@ STR_NO_FOOTNOTES: "Nincsenek lábjegyzetek ezen az oldalon"
STR_LINK: "[link]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u perc"
STR_SLEEP_NEVER: "Soha"
STR_SLEEP_TIMER_STEP_HINT: "Bal/Jobb: 1 perc Fel/Le: 5 perc"
STR_STEP_HINT_FRONT: "Elülső gombok:"
STR_STEP_HINT_SIDE: "Oldalsó gombok:"
STR_SCREENSHOT_BUTTON: "Képernyőkép készítése"
STR_AUTO_TURN_ENABLED: "Automatikus lapozás bekapcsolva: "
STR_AUTO_TURN_PAGES_PER_MIN: "Automatikus lapozás (oldal/perc)"
+4 -3
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@@ -137,7 +137,8 @@ STR_PAGE_TURN: "Cambio pagina"
STR_FORCE_REFRESH: "Refresh"
STR_PORTRAIT: "Verticale"
STR_LANDSCAPE_CW: "Orizzontale Dx"
STR_INVERTED: "Capovolto"
STR_INVERTED: "Invertito"
STR_ORIENTATION_INVERTED: "Verticale 180°"
STR_LANDSCAPE_CCW: "Orizzontale Sx"
STR_PREV_NEXT: "Prec/Succ"
STR_NEXT_PREV: "Succ/Prec"
@@ -273,7 +274,6 @@ STR_CHAPTER_PREFIX: "Capitolo: "
STR_PAGES_SEPARATOR: " pagine | "
STR_BOOK_PREFIX: "Libro: "
STR_CALIBRE_URL_HINT: "Per Calibre, aggiungere /opds all'URL"
STR_PERCENT_STEP_HINT: "Sinistra/Destra: 1% Su/Giù: 10%"
STR_SYNCING_TIME: "Sincronizzazione orario..."
STR_CALC_HASH: "Calcolo hash documento..."
STR_HASH_FAILED: "Impossibile calcolare l'hash del documento"
@@ -306,7 +306,8 @@ STR_NO_FOOTNOTES: "Nessuna nota in questa pagina"
STR_LINK: "[link]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Mai"
STR_SLEEP_TIMER_STEP_HINT: "Sinistra/Destra: 1 min Su/Giù: 5 min"
STR_STEP_HINT_FRONT: "Pulsanti frontali:"
STR_STEP_HINT_SIDE: "Pulsanti laterali:"
STR_SCREENSHOT_BUTTON: "Screenshot"
STR_ADD_SERVER: "Aggiungi server"
STR_SERVER_NAME: "Nome server"
+4 -3
View File
@@ -126,7 +126,8 @@ STR_SLEEP: "Ұйқы"
STR_PAGE_TURN: "Бет аудару"
STR_PORTRAIT: "Тік бағдар"
STR_LANDSCAPE_CW: "Көлденең (сағат бағытымен)"
STR_INVERTED: "Төңкерілген"
STR_INVERTED: "Инверсия"
STR_ORIENTATION_INVERTED: "Тік бағдар 180°"
STR_LANDSCAPE_CCW: "Көлденең (сағат тіліне қарсы)"
STR_PREV_NEXT: "Алдыңғы/Келесі"
STR_NEXT_PREV: "Келесі/Алдыңғы"
@@ -236,7 +237,6 @@ STR_CHAPTER_PREFIX: "Тарау: "
STR_PAGES_SEPARATOR: " бет | "
STR_BOOK_PREFIX: "Кітап: "
STR_CALIBRE_URL_HINT: "Calibre үшін URL-ге /opds қосыңыз"
STR_PERCENT_STEP_HINT: "Сол/Оң: 1% Жоғары/Төмен: 10%"
STR_SYNCING_TIME: "Уақыт синхрондалуда..."
STR_CALC_HASH: "Құжат хэші есептелуде..."
STR_HASH_FAILED: "Құжат хэшін есептеу сәтсіз"
@@ -293,7 +293,8 @@ STR_NO_FOOTNOTES: "Бұл бетте түсіндірме жазбалар жо
STR_LINK: "[сілтеме]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u мин"
STR_SLEEP_NEVER: "Ешқашан"
STR_SLEEP_TIMER_STEP_HINT: "Сол/Оң: 1 мин Жоғары/Төмен: 5 мин"
STR_STEP_HINT_FRONT: "Алдыңғы түймелер:"
STR_STEP_HINT_SIDE: "Бүйір түймелері:"
STR_SCREENSHOT_BUTTON: "Скриншот түсіру"
STR_AUTO_TURN_ENABLED: "Автоматты бет аудару қосулы: "
STR_AUTO_TURN_PAGES_PER_MIN: "Автоматты бет аудару (минутына бет саны)"
+4 -3
View File
@@ -132,7 +132,8 @@ STR_SLEEP: "Miegas"
STR_PAGE_TURN: "Versti psl."
STR_PORTRAIT: "Stačias"
STR_LANDSCAPE_CW: "Gulsčias (P)"
STR_INVERTED: "Apverstas"
STR_INVERTED: "Invertuotas"
STR_ORIENTATION_INVERTED: "Stačias 180°"
STR_LANDSCAPE_CCW: "Gulsčias (A)"
STR_PREV_NEXT: "Atgal/Pirmyn"
STR_NEXT_PREV: "Pirmyn/Atgal"
@@ -262,7 +263,6 @@ STR_CHAPTER_PREFIX: "Sk: "
STR_PAGES_SEPARATOR: " psl. | "
STR_BOOK_PREFIX: "Kn: "
STR_CALIBRE_URL_HINT: "Pridėkite /opds prie URL"
STR_PERCENT_STEP_HINT: "K/D: 1% | V/A: 10%"
STR_SYNCING_TIME: "Sinchr. laikas..."
STR_CALC_HASH: "Skaičiuojama maiša..."
STR_HASH_FAILED: "Maišos klaida"
@@ -294,7 +294,8 @@ STR_NO_FOOTNOTES: "Šiame psl. išnašų nėra"
STR_LINK: "[nuoroda]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min."
STR_SLEEP_NEVER: "Niekada"
STR_SLEEP_TIMER_STEP_HINT: "Kairė/Dešinė: 1 min. Viršus/Apačia: 5 min."
STR_STEP_HINT_FRONT: "Priekiniai mygtukai:"
STR_STEP_HINT_SIDE: "Šoniniai mygtukai:"
STR_SCREENSHOT_BUTTON: "Ekrano nuotrauka"
STR_AUTO_TURN_ENABLED: "Auto-vertimas: "
STR_AUTO_TURN_PAGES_PER_MIN: "Auto-vertimas (psl/min)"
+4 -3
View File
@@ -136,7 +136,8 @@ STR_PAGE_TURN: "Nast. str."
STR_FORCE_REFRESH: "Odśwież ekran"
STR_PORTRAIT: "Pionowo"
STR_LANDSCAPE_CW: "Poziomo P"
STR_INVERTED: "Odwrócony"
STR_INVERTED: "Inwersja"
STR_ORIENTATION_INVERTED: "Pionowo 180°"
STR_LANDSCAPE_CCW: "Poziomo L"
STR_PREV_NEXT: "Poprz./Nast."
STR_NEXT_PREV: "Nast./Poprz."
@@ -274,7 +275,6 @@ STR_CHAPTER_PREFIX: "Rozdział: "
STR_PAGES_SEPARATOR: " stron | "
STR_BOOK_PREFIX: "Książka: "
STR_CALIBRE_URL_HINT: "Dla Calibre, dodaj /opds do adresu URL"
STR_PERCENT_STEP_HINT: "Lewo/Prawo: 1% Góra/Dół: 10%"
STR_SYNCING_TIME: "Synchronizacja czasu..."
STR_CALC_HASH: "Obliczanie sumy kontrolnej..."
STR_HASH_FAILED: "Błąd obliczania sumy kontrolnej"
@@ -307,7 +307,8 @@ STR_NO_FOOTNOTES: "Brak przypisów na tej stronie"
STR_LINK: "[link]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nigdy"
STR_SLEEP_TIMER_STEP_HINT: "Lewo/Prawo: 1 min Góra/Dół: 5 min"
STR_STEP_HINT_FRONT: "Przyciski przednie:"
STR_STEP_HINT_SIDE: "Przyciski boczne:"
STR_SCREENSHOT_BUTTON: "Zrób zrzut ekranu"
STR_ADD_SERVER: "Dodaj serwer"
STR_SERVER_NAME: "Nazwa serwera"
+137 -28
View File
@@ -19,7 +19,7 @@ STR_END_OF_BOOK: "Fim do livro"
STR_EMPTY_CHAPTER: "Capítulo vazio"
STR_INDEXING: "Indexando"
STR_MEMORY_ERROR: "Erro de memória"
STR_PAGE_LOAD_ERROR: "Erro página"
STR_PAGE_LOAD_ERROR: "Erro ao carregar pág."
STR_EMPTY_FILE: "Arquivo vazio"
STR_OUT_OF_BOUNDS: "Fora dos limites"
STR_LOADING: "Carregando..."
@@ -32,8 +32,8 @@ STR_CONNECTING: "Conectando..."
STR_CONNECTED: "Conectado!"
STR_CONNECTION_FAILED: "Falha na conexão"
STR_FORGET_NETWORK: "Esquecer rede?"
STR_SAVE_PASSWORD: "Salvar senha a próxima vez?"
STR_PRESS_OK_SCAN: "Pressione OK procurar novamente"
STR_SAVE_PASSWORD: "Salvar senha na próxima vez?"
STR_PRESS_OK_SCAN: "Pressione OK para buscar novamente"
STR_JOIN_NETWORK: "Entrar em uma rede"
STR_CREATE_HOTSPOT: "Criar hotspot"
STR_JOIN_DESC: "Conecte-se a uma rede Wi-Fi existente"
@@ -41,7 +41,7 @@ STR_HOTSPOT_DESC: "Crie uma rede Wi-Fi para outras pessoas entrarem"
STR_STARTING_HOTSPOT: "Iniciando hotspot..."
STR_HOTSPOT_MODE: "Modo hotspot"
STR_CONNECT_WIFI_HINT: "Conecte seu dispositivo a esta rede Wi-Fi"
STR_OPEN_URL_HINT: "Abra este URL seu navegador"
STR_OPEN_URL_HINT: "Abra esta URL no seu navegador"
STR_OR_HTTP_PREFIX: "ou http://"
STR_SCAN_QR_HINT: "ou escaneie o QR code com seu celular:"
STR_CALIBRE_WIRELESS: "Calibre sem fio"
@@ -50,30 +50,36 @@ STR_MAC_ADDRESS: "Endereço MAC:"
STR_CHECKING_WIFI: "Verificando Wi-Fi..."
STR_ENTER_WIFI_PASSWORD: "Digite a senha Wi-Fi"
STR_TO_PREFIX: "para"
STR_CALIBRE_RECEIVING: "Recebendo:"
STR_CALIBRE_RECEIVED: "Recebido:"
STR_CALIBRE_RECEIVING: "Recebendo: "
STR_CALIBRE_RECEIVED: "Recebido: "
STR_CALIBRE_INSTRUCTION_1: "1) Instale o plugin CrossPoint Reader"
STR_CALIBRE_INSTRUCTION_2: "2) Esteja na mesma rede Wi-Fi"
STR_CALIBRE_INSTRUCTION_3: "3) No Calibre: \"Enviar o dispositivo\""
STR_CALIBRE_INSTRUCTION_3: "3) No Calibre: \"Enviar ao dispositivo\""
STR_CALIBRE_INSTRUCTION_4: "\"Mantenha esta tela aberta durante o envio\""
STR_CAT_DISPLAY: "Tela"
STR_CAT_READER: "Leitor"
STR_CAT_CONTROLS: "Controles"
STR_CAT_SYSTEM: "Sistema"
STR_SLEEP_SCREEN: "Tela de repouso"
STR_QUICK_RESUME_TIMEOUT: "Retomada rápida após tempo limite"
STR_SLEEP_COVER_MODE: "Modo capa tela repouso"
STR_HIDE_BATTERY: "Ocultar % da bateria"
STR_EXTRA_SPACING: "Espaço de parágrafos extra"
STR_TEXT_AA: "Suavização de texto"
STR_IMAGES: "Imagens"
STR_IMAGES_DISPLAY: "Exibição"
STR_IMAGES_PLACEHOLDER: "Espaço reservado"
STR_IMAGES_SUPPRESS: "Ocultar"
STR_SHORT_PWR_BTN: "Clique curto botão ligar"
STR_ORIENTATION: "Orientação de leitura"
STR_SIDE_BTN_LAYOUT: "Disposição botões laterais"
STR_FRONT_BTN_FOLLOW_ORIENTATION: "Orientar botões frontais"
STR_LONG_PRESS_BEHAVIOR: "Comportamento do botão de premir e segurar"
STR_LONG_PRESS_BEHAVIOR_OFF: "Desligado"
STR_LONG_PRESS_BEHAVIOR_SKIP: "Saltar capítulo"
STR_LONG_PRESS_BEHAVIOR: "Comportamento de Pressionar e segurar"
STR_LONG_PRESS_BEHAVIOR_OFF: "DESL."
STR_LONG_PRESS_BEHAVIOR_SKIP: "Pular capítulo"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Alterar orientação"
STR_FONT_PREVIEW_TEXT: "Vejo galã sexy pôr quinze kiwis à força em baú achatado"
STR_LONG_PRESS_MENU: "Pressionar e segurar Menu"
STR_FONT_PREVIEW_TEXT: "Um pequeno jabuti xereta viu dez cegonhas felizes. "
STR_FONT_FAMILY: "Fonte do leitor"
STR_FONT_SIZE: "Tam. fonte UI"
STR_LINE_SPACING: "Espaçamento entre linhas"
@@ -81,6 +87,7 @@ STR_SCREEN_MARGIN: "Margens da tela"
STR_PARA_ALIGNMENT: "Alinhamento parágrafo"
STR_HYPHENATION: "Hifenização"
STR_TIME_TO_SLEEP: "Tempo para repousar"
STR_SHOW_HIDDEN_FILES: "Mostrar arquivos ocultos"
STR_REMOVE_READ_FROM_RECENTS: "Limpar livros lidos da lista de recentes"
STR_MOVE_FINISHED_TO_READ: "Mover livros lidos para a pasta Read"
STR_REFRESH_FREQ: "Frequência atualização"
@@ -128,12 +135,17 @@ STR_ALWAYS: "Sempre"
STR_IGNORE: "Ignorar"
STR_SLEEP: "Repouso"
STR_PAGE_TURN: "Virar página"
STR_FORCE_REFRESH: "Atualizar tela"
STR_PORTRAIT: "Retrato"
STR_LANDSCAPE_CW: "Paisagem H"
STR_INVERTED: "Invertido"
STR_ORIENTATION_INVERTED: "Retrato 180°"
STR_LANDSCAPE_CCW: "Paisagem AH"
STR_PREV_NEXT: "Ant/Próx"
STR_NEXT_PREV: "Próx/Ant"
STR_KOSYNC: "KOSync"
STR_BOOKMARK_OPTION: "Marcador"
STR_DISABLED: "Desabilitado"
STR_NOTO_SERIF: "Noto Serif"
STR_NOTO_SANS: "Noto Sans"
STR_SMALL: "Pequeno"
@@ -161,17 +173,21 @@ STR_UPDATING: "Atualizando..."
STR_NO_UPDATE: "Nenhuma atualização disponível"
STR_UPDATE_FAILED: "Falha na atualização"
STR_UPDATE_COMPLETE: "Atualização concluída"
STR_POWER_ON_HINT: "Pressione e segure o botão energia ligar novamente"
STR_NO_ENTRIES: "Nenhum entries encontrado"
STR_POWER_ON_HINT: "Pressione e segure o botão de energia para ligar novamente"
STR_RESTARTING_HINT: "Reiniciando... Se não reiniciar, pressione e segure o botão de energia por alguns segundos."
STR_NO_ENTRIES: "Nenhuma entrada encontrada"
STR_DOWNLOADING: "Baixando..."
STR_DOWNLOAD_FAILED: "Falha no download"
STR_ERROR_MSG: "Erro:"
STR_UNNAMED: "Sem nome"
STR_HOLD_OPEN_TO_DELETE: "Segure 'Abrir' para excluir"
STR_NO_SERVER_URL: "Nenhum URL servidor configurado"
STR_FETCH_FEED_FAILED: "Falha ao buscar o feed"
STR_PARSE_FEED_FAILED: "Falha ao interpretar o feed"
STR_NETWORK_PREFIX: "Rede:"
STR_IP_ADDRESS_PREFIX: "Endereço IP:"
STR_NEXT_PAGE: "Próxima Página »"
STR_PREV_PAGE: "« Página Anterior"
STR_NETWORK_PREFIX: "Rede: "
STR_IP_ADDRESS_PREFIX: "Endereço IP: "
STR_ERROR_GENERAL_FAILURE: "Erro: falha geral"
STR_ERROR_NETWORK_NOT_FOUND: "Erro: rede não encontrada"
STR_ERROR_CONNECTION_TIMEOUT: "Erro: tempo limite conexão"
@@ -180,10 +196,9 @@ STR_BACK: "« Voltar"
STR_EXIT: "« Sair"
STR_HOME: "« Início"
STR_SELECT: "Escolher"
STR_SELECTED: "Selecionado"
STR_TOGGLE: "Alternar"
STR_TOGGLE_BOOKMARK: "Alternar marcador"
STR_BOOKMARK_REMOVED: "Marcador removido."
STR_HOLD_OPEN_TO_DELETE: "Mantenha Abrir pressionado para excluir"
STR_CONFIRM: "Confirmar"
STR_CANCEL: "Cancelar"
STR_CONNECT: "Conectar"
@@ -192,6 +207,8 @@ STR_DOWNLOAD: "Baixar"
STR_RETRY: "Tentar novamente"
STR_YES: "Sim"
STR_NO: "Não"
STR_SHOW: "Mostrar"
STR_HIDE: "Ocultar"
STR_STATE_ON: "LIG."
STR_STATE_OFF: "DESL."
STR_NOT_SET: "Não definido"
@@ -202,15 +219,51 @@ STR_DIR_DOWN: "Baixo"
STR_OK_BUTTON: "OK"
STR_SLEEP_COVER_FILTER: "Filtro capa tela repouso"
STR_FILTER_CONTRAST: "Contraste"
STR_UI_THEME: "Tema da interface"
STR_CUSTOMISE_STATUS_BAR: "Customizar Barra de Status"
STR_CHAPTER_PAGE_COUNT: "Páginas do Capítulo"
STR_BOOK_PROGRESS_PERCENTAGE: "Porcentagem de Progresso"
STR_PROGRESS_BAR: "Barra de Progresso"
STR_PROGRESS_BAR_THICKNESS: "Espessura da Barra de Progresso"
STR_PROGRESS_BAR_THIN: "Fino"
STR_PROGRESS_BAR_MEDIUM: "Médio"
STR_PROGRESS_BAR_THICK: "Grosso"
STR_BOOK: "Livro"
STR_CHAPTER: "Capítulo"
STR_EXAMPLE_CHAPTER: "Capítulo 21"
STR_EXAMPLE_BOOK: "Título do Livro"
STR_PREVIEW: "Prévia"
STR_TITLE: "Título"
STR_BATTERY: "Bateria"
STR_XTC_STATUS_BAR: "Barra de Status XTC"
STR_BOTTOM: "Baixo"
STR_TOP: "Topo"
STR_CLOCK: "Relógio"
STR_CLOCK_UTC_OFFSET: "Offset UTC do Relógio"
STR_CLOCK_FORMAT: "Formato do Relógio"
STR_CLOCK_FORMAT_24H: "24 horas"
STR_CLOCK_FORMAT_12H: "12 horas"
STR_CURRENT_TIME: "Hora atual:"
STR_NEXT_FIELD: "Próximo"
STR_CLOCK_SYNC: "Sincronizar Relógio"
STR_CLOCK_SYNC_NOW: "Sincronizar relógio agora"
STR_CLOCK_SYNCING: "Sincronizando via NTP..."
STR_CLOCK_SYNC_OK: "Relógio sincronizado"
STR_CLOCK_SYNC_FAIL: "Falha na sincronização"
STR_CLOCK_SYNC_NO_WIFI: "Wi-Fi não conectado"
STR_CLOCK_SYNC_NO_WIFI_HINT: "Conecte ao Wi-Fi primeiro, depois tente novamente."
STR_CLOCK_SYNCED: "Relógio sincronizado"
STR_UI_THEME: "Tema"
STR_THEME_CLASSIC: "Clássico"
STR_THEME_LYRA: "Lyra"
STR_THEME_ROUNDEDRAFF: "RoundedRaff"
STR_THEME_LYRA_EXTENDED: "Lyra Extended"
STR_THEME_LYRA_EXTENDED: "Lyra Estendido"
STR_SUNLIGHT_FADING_FIX: "Ajuste desbotamento ao sol"
STR_QUICK_RESUME_TIMEOUT: "Retomada rápida após tempo limite"
STR_REMAP_FRONT_BUTTONS: "Remapear botões frontais"
STR_BOOKMARKS: "Marcadores"
STR_BOOKMARK_ADDED: "Marcador adicionado."
STR_BOOKMARK_REMOVED: "Marcador removido."
STR_OPDS_BROWSER: "Navegador OPDS"
STR_SEARCH: "Busca"
STR_COVER_CUSTOM: "Capa + personalizado"
STR_QUICK_RESUME: "Retomada rápida"
STR_MENU_RECENT_BOOKS: "Livros recentes"
@@ -224,11 +277,11 @@ STR_CALIBRE_SETUP: "Configuração"
STR_CALIBRE_STATUS: "Status"
STR_CLEAR_BUTTON: "Limpar"
STR_DEFAULT_VALUE: "Padrão"
STR_REMAP_PROMPT: "Pressione um botão frontal cada função"
STR_REMAP_PROMPT: "Pressione um botão frontal para cada função"
STR_UNASSIGNED: "Não atribuído"
STR_ALREADY_ASSIGNED: "Já atribuído"
STR_REMAP_RESET_HINT: "Botão lateral cima: redefinir o disposição padrão"
STR_REMAP_CANCEL_HINT: "Botão lateral baixo: cancelar remapeamento"
STR_REMAP_RESET_HINT: "Botão lateral de cima: redefinir layout padrão"
STR_REMAP_CANCEL_HINT: "Botão lateral de baixo: cancelar remapeamento"
STR_HW_BACK_LABEL: "Voltar (1º botão)"
STR_HW_CONFIRM_LABEL: "Confirmar (2º botão)"
STR_HW_LEFT_LABEL: "Esquerda (3º botão)"
@@ -238,14 +291,15 @@ STR_GO_HOME_BUTTON: "Ir para o início"
STR_SYNC_PROGRESS: "Sincronizar progresso"
STR_DELETE_CACHE: "Excluir cache do livro"
STR_DELETE: "Excluir"
STR_CONFIRM_DELETE_BOOKMARK: "Excluir este marcador?"
STR_DISPLAY_QR: "Mostrar página como QR"
STR_CHAPTER_PREFIX: "Capítulo:"
STR_PAGES_SEPARATOR: "páginas |"
STR_BOOK_PREFIX: "Livro:"
STR_CALIBRE_URL_HINT: "Para o Calibre, adicione /opds ao seu URL"
STR_PERCENT_STEP_HINT: "Esq/Dir: 1% Cima/Baixo: 10%"
STR_SYNCING_TIME: "Sincronizando horário..."
STR_CALC_HASH: "Calculando hash documento..."
STR_HASH_FAILED: "Falha ao calcular o hash documento"
STR_CALC_HASH: "Calculando hash do documento..."
STR_HASH_FAILED: "Falha ao calcular o hash do documento"
STR_FETCH_PROGRESS: "Buscando progresso remoto..."
STR_UPLOAD_PROGRESS: "Enviando progresso..."
STR_NO_CREDENTIALS_MSG: "Nenhuma credencial configurada"
@@ -263,14 +317,69 @@ STR_UPLOAD_PROMPT: "Enviar posição atual?"
STR_UPLOAD_SUCCESS: "Progresso enviado!"
STR_SYNC_FAILED_MSG: "Falha na sincronização"
STR_SAVE_PROGRESS_FAILED: "Não foi possível salvar o progresso"
STR_SECTION_PREFIX: "Seção"
STR_SECTION_PREFIX: "Seção "
STR_UPLOAD: "Enviar"
STR_BOOK_S_STYLE: "Estilo do livro"
STR_EMBEDDED_STYLE: "Estilo embutido"
STR_FOCUS_READING: "Leitura focada"
STR_OPDS_SERVER_URL: "URL do servidor OPDS"
STR_PWR_BTN_FOOTNOTE_BACK: "Retorno rápido de notas de rodapé"
STR_SET_SLEEP_COVER: "Definir capa"
STR_FOOTNOTES: "Notas de rodapé"
STR_NO_FOOTNOTES: "Nenhuma nota de rodapé nesta página"
STR_LINK: "[link]"
STR_SCREENSHOT_BUTTON: "Capturar tela"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nunca"
STR_SLEEP_TIMER_STEP_HINT: "Esq/Dir: 1 min Cima/Baixo: 5 min"
STR_STEP_HINT_FRONT: "Botões frontais:"
STR_STEP_HINT_SIDE: "Botões laterais:"
STR_ADD_SERVER: "Adicionar Servidor"
STR_SERVER_NAME: "Nome do Servidor"
STR_NO_SERVERS: "Nenhum servidor OPDS configurado"
STR_DELETE_SERVER: "Excluir Servidor"
STR_OPDS_SERVERS: "Servidores OPDS"
STR_AUTO_TURN_ENABLED: "Virada automática ativada: "
STR_AUTO_TURN_PAGES_PER_MIN: "Virada automática (páginas por minuto)"
STR_MANAGE_FONTS: "Gerenciar fontes"
STR_FONT_BROWSER: "Navegador de fontes"
STR_LOADING_FONT_LIST: "Carregando lista de fontes..."
STR_NO_FONTS_AVAILABLE: "Nenhuma fonte disponível"
STR_FONT_INSTALLED: "Fonte instalada!"
STR_FONT_INSTALL_FAILED: "Falha na instalação da fonte"
STR_INSTALLED: "Instalada"
STR_DOWNLOAD_ALL: "Baixar tudo"
STR_UPDATE_ALL: "Atualizar tudo"
STR_UPDATE_AVAILABLE: "Atualizar"
STR_CRASH_TITLE: "Falha do sistema"
STR_CRASH_DESCRIPTION: "Um relatório detalhado foi salvo em crash_report.txt. Por favor, inclua este arquivo no seu relatório de erro."
STR_CRASH_REASON: "Motivo da falha:"
STR_CRASH_NO_REASON: "(Nenhum motivo registrado)"
STR_TILT_PAGE_TURN: "Virar página por inclinação"
STR_KB_HINT_MOVE_CURSOR: "Pressione ESQ ou DIR para mover o cursor"
STR_KB_HINT_RETURN_CURSOR: "Pressione ESQ para retornar à posição do cursor"
STR_KB_HINT_HIDE_PASSWORD: "Segure DIR e pressione [***] para ocultar a senha"
STR_KB_HINT_SHOW_PASSWORD: "Segure DIR e pressione [abc] para exibir a senha"
STR_KB_HINT_TOGGLE_HIDE_PASSWORD: "Pressione [***] para ocultar a senha"
STR_KB_HINT_TOGGLE_SHOW_PASSWORD: "Pressione [abc] para exibir a senha"
STR_KB_HINT_EDIT_ENTRY: "Segure CIMA para editar a entrada"
STR_KB_TIPS: "Dicas:"
STR_KB_HINT_RETURN_KEYBOARD: "Pressione BAIXO para retornar ao teclado"
STR_KB_HINT_EXIT_URL_MODE: "Pressione ABC para sair do modo URL"
STR_KB_HINT_CLEAR_TEXT: "Segure DEL para limpar todo o texto"
STR_KB_HINT_SECONDARY_CHAR: "Segure SELECT para caractere secundário"
STR_KB_HINT_UPPER_SECONDARY: "Segure SELECT para MAIÚSCULO ou caractere secundário"
STR_KB_HINT_LOWER_SECONDARY: "Segure SELECT para minúsculo ou caractere secundário"
STR_KB_HINT_URL_SNIPPETS: "Pressione URL para atalhos"
STR_SD_FIRMWARE_UPDATE: "Atualização de firmware via cartão SD"
STR_SELECT_FIRMWARE_FILE: "Selecione o arquivo de firmware (.bin)"
STR_NO_BIN_FILES: "Nenhum arquivo .bin encontrado"
STR_VALIDATING_FIRMWARE: "Validando firmware..."
STR_INVALID_FIRMWARE: "Arquivo de firmware inválido"
STR_FIRMWARE_TOO_LARGE: "Firmware grande demais para a partição"
STR_FIRMWARE_TOO_SMALL: "Arquivo de firmware pequeno demais"
STR_FIRMWARE_UPDATE_PROMPT: "Atualizar firmware?"
STR_FIRMWARE_FILE_OPEN_FAILED: "Não foi possível abrir o arquivo"
STR_FIRMWARE_WRITE_FAILED: "Falha na gravação do firmware"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Não desligue o dispositivo!"
STR_RECOVERY_MODE: "Modo de Recuperação"
STR_RECOVERY_MODE_HINT: "Coloque o arquivo firmware.bin na raiz do cartão SD e selecione-o"
+3 -2
View File
@@ -136,6 +136,7 @@ STR_PAGE_TURN: "Răsfoire pagină"
STR_PORTRAIT: "Vertical"
STR_LANDSCAPE_CW: "Orizontal dreapta"
STR_INVERTED: "Invers"
STR_ORIENTATION_INVERTED: "Vertical 180°"
STR_LANDSCAPE_CCW: "Orizontal stânga"
STR_PREV_NEXT: "Înainte/Înapoi"
STR_NEXT_PREV: "Înapoi/Înainte"
@@ -265,7 +266,6 @@ STR_CHAPTER_PREFIX: "Capitol: "
STR_PAGES_SEPARATOR: " pagini | "
STR_BOOK_PREFIX: "Carte: "
STR_CALIBRE_URL_HINT: "Pentru Calibre, adăugaţi /opds la URL"
STR_PERCENT_STEP_HINT: "Stânga/Dreapta: 1% Sus/Jos: 10%"
STR_SYNCING_TIME: "Timp de sincronizare..."
STR_CALC_HASH: "Calcularea hash-ului documentului..."
STR_HASH_FAILED: "Eşec la calcularea hash-ului documentului"
@@ -297,7 +297,8 @@ STR_NO_FOOTNOTES: "Nicio notă de subsol"
STR_LINK: "[link]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Niciodată"
STR_SLEEP_TIMER_STEP_HINT: "Stânga/Dreapta: 1 min Sus/Jos: 5 min"
STR_STEP_HINT_FRONT: "Butoane frontale:"
STR_STEP_HINT_SIDE: "Butoane laterale:"
STR_SCREENSHOT_BUTTON: "Captură ecran"
STR_AUTO_TURN_ENABLED: "Răsfoire automată: "
STR_AUTO_TURN_PAGES_PER_MIN: "Pagini pe minut"
+3 -2
View File
@@ -140,6 +140,7 @@ STR_FORCE_REFRESH: "Обновление экрана"
STR_PORTRAIT: "Портрет"
STR_LANDSCAPE_CW: "Ландшафт (CW)"
STR_INVERTED: "Инверсия"
STR_ORIENTATION_INVERTED: "Портрет 180°"
STR_LANDSCAPE_CCW: "Ландшафт (CCW)"
STR_PREV_NEXT: "Назад/Вперёд"
STR_NEXT_PREV: "Вперёд/Назад"
@@ -297,7 +298,6 @@ STR_CHAPTER_PREFIX: "Глава: "
STR_PAGES_SEPARATOR: " стр. | "
STR_BOOK_PREFIX: "Книга: "
STR_CALIBRE_URL_HINT: "Для Calibre добавьте /opds к URL"
STR_PERCENT_STEP_HINT: "Влево/Вправо: 1% Вверх/Вниз: 10%"
STR_SYNCING_TIME: "Синхронизация времени..."
STR_CALC_HASH: "Расчёт хэша документа..."
STR_HASH_FAILED: "Не удалось вычислить хэш документа"
@@ -331,7 +331,8 @@ STR_LINK: "[ссылка]"
STR_SCREENSHOT_BUTTON: "Сделать снимок экрана"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u мин"
STR_SLEEP_NEVER: "Никогда"
STR_SLEEP_TIMER_STEP_HINT: "Влево/Вправо: 1 мин Вверх/Вниз: 5 мин"
STR_STEP_HINT_FRONT: "Передние кнопки:"
STR_STEP_HINT_SIDE: "Боковые кнопки:"
STR_ADD_SERVER: "Добавить сервер"
STR_SERVER_NAME: "Имя сервера"
STR_NO_SERVERS: "Нет настроенных серверов OPDS"
+4 -3
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@@ -137,7 +137,8 @@ STR_PAGE_TURN: "Otáčanie stránok"
STR_FORCE_REFRESH: "Obnoviť obrazovku"
STR_PORTRAIT: "Na výšku"
STR_LANDSCAPE_CW: "Na šírku v smere hodinových ručičiek"
STR_INVERTED: "Obrátený"
STR_INVERTED: "Invertovaný"
STR_ORIENTATION_INVERTED: "Na výšku 180°"
STR_LANDSCAPE_CCW: "Na šírku proti smeru hodinových ručičiek"
STR_PREV_NEXT: "Predchádzajúca/Nasledujúca"
STR_NEXT_PREV: "Nasledujúca/Predchádzajúca"
@@ -293,7 +294,6 @@ STR_CHAPTER_PREFIX: "Kapitola:"
STR_PAGES_SEPARATOR: "strán |"
STR_BOOK_PREFIX: "Kniha:"
STR_CALIBRE_URL_HINT: "Pre Calibre pridajte /opds na koniec URL adresy"
STR_PERCENT_STEP_HINT: "Vľavo/Vpravo: 1 % Hore/Dole: 10 %"
STR_SYNCING_TIME: "Čas synchronizácie..."
STR_CALC_HASH: "Výpočet hashu dokumentu..."
STR_HASH_FAILED: "Nepodarilo sa vypočítať hash dokumentu"
@@ -327,7 +327,8 @@ STR_LINK: "[link]"
STR_SCREENSHOT_BUTTON: "Urobiť snímku obrazovky"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nikdy"
STR_SLEEP_TIMER_STEP_HINT: "Vľavo/Vpravo: 1 min Hore/Dole: 5 min"
STR_STEP_HINT_FRONT: "Predné tlačidlá:"
STR_STEP_HINT_SIDE: "Bočné tlačidlá:"
STR_ADD_SERVER: "Pridať server"
STR_SERVER_NAME: "Názov servera"
STR_NO_SERVERS: "Nie sú nakonfigurované žiadne OPDS servery"
+4 -3
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@@ -132,7 +132,8 @@ STR_SLEEP: "Spanje"
STR_PAGE_TURN: "Obračanje strani"
STR_PORTRAIT: "Pokončno"
STR_LANDSCAPE_CW: "Ležeče (v smeri urinega kazalca)"
STR_INVERTED: "Obrnjeno"
STR_INVERTED: "Invertirano"
STR_ORIENTATION_INVERTED: "Pokončno 180°"
STR_LANDSCAPE_CCW: "Ležeče (proti smeri urinega kazalca)"
STR_PREV_NEXT: "Nazaj/Naprej"
STR_NEXT_PREV: "Naprej/Nazaj"
@@ -262,7 +263,6 @@ STR_CHAPTER_PREFIX: "Poglavje: "
STR_PAGES_SEPARATOR: " strani | "
STR_BOOK_PREFIX: "Knjiga: "
STR_CALIBRE_URL_HINT: "Za Calibre dodaj /opds svojemu URL-ju"
STR_PERCENT_STEP_HINT: "Levo/desno: 1% Gor/dol: 10%"
STR_SYNCING_TIME: "Sinhronizacija časa..."
STR_CALC_HASH: "Izračunavanje podpisa dokumenta..."
STR_HASH_FAILED: "Izračun podpisa dokumenta ni uspel"
@@ -294,7 +294,8 @@ STR_NO_FOOTNOTES: "Na tej strani ni opomb"
STR_LINK: "[povezava]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nikoli"
STR_SLEEP_TIMER_STEP_HINT: "Levo/desno: 1 min Gor/dol: 5 min"
STR_STEP_HINT_FRONT: "Sprednji gumbi:"
STR_STEP_HINT_SIDE: "Stranski gumbi:"
STR_SCREENSHOT_BUTTON: "Naredi posnetek zaslona"
STR_AUTO_TURN_ENABLED: "Samodejno obračanje: "
STR_AUTO_TURN_PAGES_PER_MIN: "Samodejno obračanje (strani na minuto)"
+3 -2
View File
@@ -138,6 +138,7 @@ STR_FORCE_REFRESH: "Refrescar pant."
STR_PORTRAIT: "Vertical"
STR_LANDSCAPE_CW: "Horizontal (horario)"
STR_INVERTED: "Invertido"
STR_ORIENTATION_INVERTED: "Al revés"
STR_LANDSCAPE_CCW: "Horizontal (antihorario)"
STR_PREV_NEXT: "Ant./Sig."
STR_NEXT_PREV: "Sig./Ant."
@@ -296,7 +297,6 @@ STR_CHAPTER_PREFIX: "Cap.: "
STR_PAGES_SEPARATOR: " pág. | "
STR_BOOK_PREFIX: "Libro: "
STR_CALIBRE_URL_HINT: "Para Calibre, agregue /opds a su URL"
STR_PERCENT_STEP_HINT: "Izq./Dcha.: 1% | Subir/Bajar: 10%"
STR_SYNCING_TIME: "Tiempo de sincronización..."
STR_CALC_HASH: "Calculando hash del documento..."
STR_HASH_FAILED: "No se pudo calcular el hash del documento"
@@ -330,7 +330,8 @@ STR_NO_FOOTNOTES: "No hay notas al pie de esta página"
STR_LINK: "[enlace]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min."
STR_SLEEP_NEVER: "Nunca"
STR_SLEEP_TIMER_STEP_HINT: "Izq./Dcha.: 1 min. Subir/Bajar: 5 min."
STR_STEP_HINT_FRONT: "Botones frontales:"
STR_STEP_HINT_SIDE: "Botones laterales:"
STR_SCREENSHOT_BUTTON: "Tomar captura de pantalla"
STR_ADD_SERVER: "Agregar servidor"
STR_SERVER_NAME: "Nombre de servidor"
+3 -2
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@@ -138,6 +138,7 @@ STR_FORCE_REFRESH: "Uppdatera skärmen"
STR_PORTRAIT: "Porträtt"
STR_LANDSCAPE_CW: "Landskap medurs"
STR_INVERTED: "Inverterad"
STR_ORIENTATION_INVERTED: "Porträtt 180°"
STR_LANDSCAPE_CCW: "Landskap moturs"
STR_PREV_NEXT: "Förra/Nästa"
STR_NEXT_PREV: "Nästa/Förra"
@@ -294,7 +295,6 @@ STR_CHAPTER_PREFIX: "Kapitel:"
STR_PAGES_SEPARATOR: " sidor | "
STR_BOOK_PREFIX: "Bok:"
STR_CALIBRE_URL_HINT: "För Calibre: lägg till /opds i din adress"
STR_PERCENT_STEP_HINT: "Vänster/Höger: 1% Upp/Ner 10%"
STR_SYNCING_TIME: "Synkroniserar tid…"
STR_CALC_HASH: "Beräknar dokumenthash"
STR_HASH_FAILED: "Misslyckades att beräkna dokumenthash"
@@ -327,7 +327,8 @@ STR_NO_FOOTNOTES: "Inga fotnoter på den här sidan"
STR_LINK: "[länk]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Aldrig"
STR_SLEEP_TIMER_STEP_HINT: "Vänster/Höger: 1 min Upp/Ner: 5 min"
STR_STEP_HINT_FRONT: "Framknappar:"
STR_STEP_HINT_SIDE: "Sidoknappar:"
STR_SCREENSHOT_BUTTON: "Ta en skärmdump"
STR_ADD_SERVER: "Lägg till server"
STR_SERVER_NAME: "Servernamn"
+4 -3
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@@ -130,7 +130,8 @@ STR_SLEEP: "Uyku"
STR_PAGE_TURN: "Sayfa Çevirme"
STR_PORTRAIT: "Dikey"
STR_LANDSCAPE_CW: "Yatay (Saat Yönü)"
STR_INVERTED: "Ters"
STR_INVERTED: "Negatif"
STR_ORIENTATION_INVERTED: "Dikey 180°"
STR_LANDSCAPE_CCW: "Yatay (Saat Yönü Tersi)"
STR_PREV_NEXT: "Önceki/Sonraki"
STR_NEXT_PREV: "Sonraki/Önceki"
@@ -240,7 +241,6 @@ STR_CHAPTER_PREFIX: "Bölüm: "
STR_PAGES_SEPARATOR: " sayfa | "
STR_BOOK_PREFIX: "Kitap: "
STR_CALIBRE_URL_HINT: "Calibre için URL'nize /opds ekleyin"
STR_PERCENT_STEP_HINT: "Sol/Sağ: %1 Yukarı/Aşağı: %10"
STR_SYNCING_TIME: "Zaman senkronize ediliyor..."
STR_CALC_HASH: "Belge özeti hesaplanıyor..."
STR_HASH_FAILED: "Belge özeti hesaplanamadı"
@@ -288,7 +288,8 @@ STR_IMAGES_SUPPRESS: "Bastır"
STR_LINK: "[bağlantı]"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u dak"
STR_SLEEP_NEVER: "Asla"
STR_SLEEP_TIMER_STEP_HINT: "Sol/Sağ: 1 dak Yukarı/Aşağı: 5 dak"
STR_STEP_HINT_FRONT: "Ön tuşlar:"
STR_STEP_HINT_SIDE: "Yan tuşlar:"
STR_NO_FILES_FOUND: "Dosya bulunamadı"
STR_NO_FOOTNOTES: "Bu sayfada dipnot yok"
STR_PREVIEW: "Önizleme"
+4 -3
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@@ -137,7 +137,8 @@ STR_PAGE_TURN: "Наст. сторінка"
STR_FORCE_REFRESH: "Оновити екран"
STR_PORTRAIT: "Книжкова"
STR_LANDSCAPE_CW: "Альбом. за год."
STR_INVERTED: "Перевернутий"
STR_INVERTED: "Інверсія"
STR_ORIENTATION_INVERTED: "Книжкова 180°"
STR_LANDSCAPE_CCW: "Альбом. проти год."
STR_PREV_NEXT: "Попер/Наст"
STR_NEXT_PREV: "Наст/Попер"
@@ -293,7 +294,6 @@ STR_CHAPTER_PREFIX: "Розділ: "
STR_PAGES_SEPARATOR: " сторінок | "
STR_BOOK_PREFIX: "Книга: "
STR_CALIBRE_URL_HINT: "Для Calibre додайте /opds до вашої URL"
STR_PERCENT_STEP_HINT: "Вліво/Вправо: 1% Вгору/Вниз: 10%"
STR_SYNCING_TIME: "Синхронізація часу..."
STR_CALC_HASH: "Обчислення хешу документа..."
STR_HASH_FAILED: "Не вдалося обчислити хеш документа"
@@ -328,7 +328,8 @@ STR_LINK: "[посилання]"
STR_SCREENSHOT_BUTTON: "Знімок екрана"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u хв"
STR_SLEEP_NEVER: "Ніколи"
STR_SLEEP_TIMER_STEP_HINT: "Вліво/Вправо: 1 хв Вгору/Вниз: 5 хв"
STR_STEP_HINT_FRONT: "Передні кнопки:"
STR_STEP_HINT_SIDE: "Бічні кнопки:"
STR_ADD_SERVER: "Додати сервер"
STR_SERVER_NAME: "Назва сервера"
STR_NO_SERVERS: "Не налаштовано жодного сервера OPDS"
+3 -2
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@@ -89,7 +89,8 @@ STR_HYPHENATION: "Partició de mots"
STR_TIME_TO_SLEEP: "Temps per entrar en repòs"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Mai"
STR_SLEEP_TIMER_STEP_HINT: "Esquerra/Dreta: 1 min Amunt/Avall: 5 min"
STR_STEP_HINT_FRONT: "Botons frontals:"
STR_STEP_HINT_SIDE: "Botons laterals:"
STR_SHOW_HIDDEN_FILES: "Mostra arxius ocults"
STR_REMOVE_READ_FROM_RECENTS: "Esborra els llibres llegits de la llista de recents"
STR_MOVE_FINISHED_TO_READ: "Mou els llibres acabats a la carpeta Read"
@@ -141,6 +142,7 @@ STR_PAGE_TURN: "Canvi de pàgina"
STR_PORTRAIT: "Vertical"
STR_LANDSCAPE_CW: "Horitzontal horari"
STR_INVERTED: "Invertit"
STR_ORIENTATION_INVERTED: "Vertical 180°"
STR_LANDSCAPE_CCW: "Horitzontal antihorari"
STR_PREV_NEXT: "Anterior/Següent"
STR_NEXT_PREV: "Següent/Anterior"
@@ -275,7 +277,6 @@ STR_CHAPTER_PREFIX: "Capítol: "
STR_PAGES_SEPARATOR: " pàgines | "
STR_BOOK_PREFIX: "Llibre: "
STR_CALIBRE_URL_HINT: "Per al Calibre, afegiu /opds a la URL"
STR_PERCENT_STEP_HINT: "Esquerra/Dreta: 1% Amunt/Avall: 10%"
STR_SYNCING_TIME: "S'està sincronitzant el temps..."
STR_CALC_HASH: "S'està calculant el hash del document..."
STR_HASH_FAILED: "No s'ha pogut calcular el hash del document"
+4 -3
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@@ -137,7 +137,8 @@ STR_PAGE_TURN: "Lật trang"
STR_FORCE_REFRESH: "Làm tươi màn hình"
STR_PORTRAIT: "Dọc"
STR_LANDSCAPE_CW: "Ngang (thuận)"
STR_INVERTED: "Lật ngược"
STR_INVERTED: "Đảo màu"
STR_ORIENTATION_INVERTED: "Dọc 180°"
STR_LANDSCAPE_CCW: "Ngang (ngược)"
STR_PREV_NEXT: "Trước/Sau"
STR_NEXT_PREV: "Sau/Trước"
@@ -293,7 +294,6 @@ STR_CHAPTER_PREFIX: "Chương: "
STR_PAGES_SEPARATOR: " trang | "
STR_BOOK_PREFIX: "Sách: "
STR_CALIBRE_URL_HINT: "Với Calibre, thêm /opds vào URL"
STR_PERCENT_STEP_HINT: "Trái/Phải: 1% Lên/Xuống: 10%"
STR_SYNCING_TIME: "Đang đồng bộ giờ..."
STR_CALC_HASH: "Đang tính mã băm tài liệu..."
STR_HASH_FAILED: "Không tính được mã băm tài liệu"
@@ -327,7 +327,8 @@ STR_LINK: "[liên kết]"
STR_SCREENSHOT_BUTTON: "Chụp màn hình"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u phút"
STR_SLEEP_NEVER: "Không bao giờ"
STR_SLEEP_TIMER_STEP_HINT: "Trái/Phải: 1 phút Lên/Xuống: 5 phút"
STR_STEP_HINT_FRONT: "Nút trước:"
STR_STEP_HINT_SIDE: "Nút bên:"
STR_ADD_SERVER: "Thêm máy chủ"
STR_SERVER_NAME: "Tên máy chủ"
STR_NO_SERVERS: "Chưa cấu hình máy chủ OPDS"
+10 -5
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@@ -278,13 +278,18 @@ class XPathParagraphResolver final : public Print {
path.push_back({name, siblingIndex});
parentStates.emplace_back();
// Count both <p> and <li> as paragraph-like positions, matching how the section
// layout tracks them (xpathParagraphIndex and xpathListItemIndex). This ensures
// KOReader progress in list items maps to the correct XPath.
if (name == "p") {
paragraphCount++;
if (paragraphCount == targetParagraph) {
xpath = buildParagraphXPath(spineIndex, path, 0, 0);
stopped = true;
XML_StopParser(parser, XML_FALSE);
}
} else if (name == "li") {
paragraphCount++;
}
if (paragraphCount == targetParagraph) {
xpath = buildParagraphXPath(spineIndex, path, 0, 0);
stopped = true;
XML_StopParser(parser, XML_FALSE);
}
depth++;
+5 -4
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@@ -709,12 +709,13 @@ SavedProgressPosition ProgressMapper::toSavedProgress(const std::shared_ptr<Epub
float intra =
(pos.totalPages > 1) ? static_cast<float>(pos.pageNumber) / static_cast<float>(pos.totalPages - 1) : 0.0f;
result.percentage = epub->calculateProgress(pos.spineIndex, intra);
// Progress-based XPath correctly handles both <p> and <li> positions.
result.xpath = ChapterXPathResolver::findXPathForProgress(epub, pos.spineIndex, intra);
// Fall back to paragraph-index lookup when progress-based resolution fails.
if (result.xpath.empty() && pos.hasParagraphIndex && pos.paragraphIndex > 0) {
if (pos.hasParagraphIndex && pos.paragraphIndex > 0) {
result.xpath = ChapterXPathResolver::findXPathForParagraph(epub, pos.spineIndex, pos.paragraphIndex);
}
// Fall back to progress-based XPath, then synthetic progress mapping.
if (result.xpath.empty()) {
result.xpath = ChapterXPathResolver::findXPathForProgress(epub, pos.spineIndex, intra);
}
if (result.xpath.empty()) {
result.xpath = generateXPath(epub, pos.spineIndex, intra);
}
+5 -4
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@@ -10,7 +10,11 @@ OpdsParser::OpdsParser() {
if (!parser) {
errorOccured = true;
LOG_DBG("OPDS", "Couldn't allocate memory for parser");
return;
}
XML_SetUserData(parser, this);
XML_SetElementHandler(parser, startElement, endElement);
XML_SetCharacterDataHandler(parser, characterData);
}
OpdsParser::~OpdsParser() { destroyXmlParser(parser); }
@@ -20,10 +24,6 @@ size_t OpdsParser::write(uint8_t c) { return write(&c, 1); }
size_t OpdsParser::write(const uint8_t* xmlData, const size_t length) {
if (errorOccured) return length;
XML_SetUserData(parser, this);
XML_SetElementHandler(parser, startElement, endElement);
XML_SetCharacterDataHandler(parser, characterData);
const char* currentPos = reinterpret_cast<const char*>(xmlData);
size_t remaining = length;
constexpr size_t chunkSize = 1024;
@@ -54,6 +54,7 @@ size_t OpdsParser::write(const uint8_t* xmlData, const size_t length) {
}
void OpdsParser::flush() {
if (errorOccured || !parser) return;
if (XML_Parse(parser, nullptr, 0, XML_TRUE) != XML_STATUS_OK) {
errorOccured = true;
destroyXmlParser(parser);
+1 -1
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@@ -42,7 +42,7 @@ std::string Txt::getTitle() const {
// Remove .txt extension
if (FsHelpers::hasTxtExtension(filename)) {
filename = filename.substr(0, filename.length() - 4);
filename.resize(filename.length() - 4);
}
return filename;
+11
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@@ -82,6 +82,17 @@ void HalDisplay::copyGrayscaleBuffers(const uint8_t* lsbBuffer, const uint8_t* m
}
void HalDisplay::displayGrayscaleBase(RefreshMode fallback, bool turnOffScreen) {
// X3: a HALF fallback means the caller wants a clean base (e.g. the sleep
// cover, a full-screen swap from arbitrary prior content). Without this, the
// X3 grayscale base takes its gentle differential happy path and the prior
// home/reader frame ghosts through the soft aa_pre_bw_mid waveform. Forcing a
// resync makes displayGrayscaleBase clear first, matching displayBuffer(HALF).
// The reader's FAST path is deliberately left on the differential path so
// per-page grayscale stays cheap.
if (gpio.deviceIsX3() && fallback == RefreshMode::HALF_REFRESH) {
einkDisplay.requestResync(1);
}
einkDisplay.displayGrayscaleBase(convertRefreshMode(fallback), turnOffScreen);
}
+3 -3
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@@ -55,9 +55,9 @@ class HalDisplay {
void preconditionGrayscale(uint16_t x, uint16_t y, uint16_t w, uint16_t h);
// Display the framebuffer as the base frame for a grayscale overlay that
// follows. X3 uses the OEM differential base waveform ("AA-pre-BW(mid)");
// other panels display normally with `fallback` mode (previous behavior).
// Deliberately does NOT force the X3 resync that displayBuffer(HALF) does.
// follows. On X3, HALF fallback first requests a resync to match
// displayBuffer(HALF); FAST fallback keeps the OEM differential base waveform
// ("AA-pre-BW(mid)"). Other panels display normally with `fallback` mode.
void displayGrayscaleBase(RefreshMode fallback = HALF_REFRESH, bool turnOffScreen = false);
void copyGrayscaleBuffers(const uint8_t* lsbBuffer, const uint8_t* msbBuffer);