Compare commits

..
Author SHA1 Message Date
Justin Mitchell a86a644adc Reduce TLS memory requirements for KOReader sync
Split heap gate into separate free-memory (50KB) and largest-block (20KB) thresholds based on field measurements. Enable wolfSSL single-precision ECC to use fixed 256-bit arrays instead of heap-allocated fast-math bignums, reducing TLS handshake memory footprint. Reclaim ~7KB by right-sizing ESP timer task stacks and move WiFi code out of IRAM to free ~25-30KB for heap. Add memory audit landmarks for font and EPUB allocations.
2026-07-14 14:53:41 -04:00
Justin Mitchell 02398c8a96 Add memory profiling for EPUB and heap diagnostics
Adds residentBytes() and cssRuleCount() methods to track EPUB memory usage including parsed CSS. Enhances memory audit logging with EPUB heap usage, max allocatable block size, and CSS rule count. Implements one-shot heap block map dump on first settled audit to identify fragmentation and long-lived allocations.
2026-07-14 13:21:15 -04:00
Justin Mitchell ba92cb902e Add heap memory reporting for fonts and sections
Implements reportMemory() methods across SdCardFont, SdCardFontManager, and Section classes to track resident heap usage. Adds heap audit logging in EpubReaderActivity to attribute memory to fonts, framebuffer, section data, and other components for measurement-driven optimization.
2026-07-14 12:08:29 -04:00
Justin Mitchell 4d19d38152 Add idle-time glyph prewarming for next page
Preload glyphs for the next page during idle time to reduce page-turn latency. After a 400ms debounce period, scan the next page in FCM scan mode (no pixels drawn) to cache missing glyphs from SD card, avoiding ~100ms of SD reads during the actual page turn. Prewarm is deferred when rendering is active, heap is low, or during rapid page-flipping.
2026-07-14 11:26:07 -04:00
Justin Mitchell 302c0771dd Batch file list responses to reduce TCP segments
Buffer JSON file list entries into ~1.4KB batches before sending to avoid one TCP segment per file. This eliminates client delayed ACK delays that were causing large directory listings to take tens of seconds. Falls back to per-entry sends if buffer allocation fails.
2026-07-14 05:15:00 -04:00
Justin Mitchell c1a396c1ba Stop BLE before initializing WiFi in activities
Explicitly stop the BLE stack before bringing up WiFi in CrossPointWebServerActivity, FontDownloadActivity, and OtaUpdateActivity. On ESP32-C3, the shared radio and heap between BLE and WiFi stacks causes WiFi to be permanently starved if initialized while NimBLE's ~50KB is still resident, as the WiFi driver sizes its RX/TX buffer pools at init time.
2026-07-14 05:04:22 -04:00
Justin Mitchell 078d9ef535 Update status bar immediately on BLE connect/disconnect
Previously the status bar showed 'BT connecting' until the next page turn. Now monitors connection state in loop() and redraws the status bar immediately when connection completes or disconnects, restoring the chapter/book title. The connecting message now takes over the entire title slot instead of prepending to it.
2026-07-14 04:47:48 -04:00
Justin Mitchell 17e4230068 Add async display refresh to overlap CPU work
Introduces non-blocking display refresh methods that allow CPU work (like grayscale rendering) to overlap with the e-ink panel's refresh time. The async path starts the waveform and returns immediately, with the caller responsible for waiting via waitRefreshComplete(). Falls back to blocking refresh when fadingFix is enabled or the panel lacks deferral support.
2026-07-14 04:42:27 -04:00
Justin Mitchell 34e7ed249b Merge remote-tracking branch 'origin/develop' into feat-bluetooth 2026-07-14 04:20:50 -04:00
Justin Mitchell c5787d1cc1 fix: Use HALF_REFRESH for sleep and boot instead of FULL (#2588)
Changes all sleep screen display refreshes and boot screens from
FULL_REFRESH to HALF_REFRESH to match OEM firmware behavior. The stock
firmware uses a single-pass 0xD7 waveform for sleep screens, not the
multi-flash GC waveform (0xF7) that FULL_REFRESH triggers. For grayscale
mode, HALF_REFRESH is required because the gray nudge LUT is calibrated
against the pixel charge state left by the single-pass waveform; using
FULL_REFRESH causes blotchy noise in gray areas. Also adds X3 wb_gc
passive byte (the one-byte 0x54 to 0x00, matching stock's passive WB
table in the gc nudge bank): Every X3 grayscale render, reader AA,
covers, and the sleep-cover nudge, gets it.
2026-07-13 17:06:09 -04:00
Husam Younis 2a19eb9e0d feat: Arabic/Farsi/Urdu glyphs in built-in UI fonts - PR 2/3 (#2596) 2026-07-13 22:35:47 +03:00
Uri Tauber fae3423dec feat: add portuguese-PT.yaml (#2597) 2026-07-13 22:27:23 +03:00
Husam YounisandUri Tauber 932a472835 feat: Arabic/Farsi/Urdu bidi reordering and contextual shaping — PR 1/3 (#2541)
Co-authored-by: Uri Tauber <uritaube@gmail.com>
2026-07-13 16:02:21 +03:00
Jan Steinke 552b2683e6 fix: keep list item bullet inline with nested paragraph text (#2589) 2026-07-13 12:06:43 +03:00
Mr.Catfood bfa1d706b1 feat: Hidden wifi ssid support (#2360) 2026-07-13 02:33:48 -04:00
Jacob Latonis 73ab9ab20d feat: implement captive portal redirects for auto-loading the management page on hotspot mode (#2550) 2026-07-13 00:10:23 -04:00
Nick Perez 3a97f3e63e feat: Send optional document metadata with KOSync progress uploads (#1820) 2026-07-12 23:50:38 -04:00
Matthías Páll Gissurarson 39ea4b045f feat: render placeholders while waiting for images to render (#1003) 2026-07-12 21:40:07 +03:00
Justin Mitchell 444d87de82 fix: Add framebuffer release/realloc and improved lazy indexing (#2563) 2026-07-12 13:16:48 -04:00
Leopoldo Pla Sempere 859f6cb0d5 chore: update Spanish, Catalan, and Valencian Wi-Fi strings (#2578) 2026-07-12 12:13:06 +03:00
hooligan333andErica Jensen d8139e9605 perf: release CSS rule map after warm open (#2439)
Co-authored-by: Erica Jensen <erica@mailershaven.com>
2026-07-11 22:59:31 -04:00
hooligan333andErica Jensen b596f21e61 perf: stream NCX/NAV TOC into parser, drop temp-file round-trip (#2440)
Co-authored-by: Erica Jensen <erica@mailershaven.com>
2026-07-11 22:57:48 -04:00
hooligan333andErica Jensen 5fbc657aeb perf: always binary-search idref lookups in content.opf (#2433)
Co-authored-by: Erica Jensen <erica@mailershaven.com>
2026-07-11 22:56:28 -04:00
Jason Huebel bb06219c9c docs: add script to generate EPUB from USER_GUIDE.md (#2152) 2026-07-11 22:54:32 -04:00
Alexander Hoff ❍andAlexander Hoffer 5202bbf911 feat: auto-connect saved Wi-Fi networks (#2189)
Co-authored-by: Alexander Hoffer <git@alexanderhoffer.com>
2026-07-11 22:47:26 -04:00
hooligan333andErica Jensen e0253a8664 perf: reserve CSS rule map before loading from cache (#2435)
Co-authored-by: Erica Jensen <erica@mailershaven.com>
2026-07-11 22:24:43 -04:00
hooligan333andErica Jensen e142e88ce7 perf: drop per-image delay(50) on chapter build, retry getDimensions (#2434)
Co-authored-by: Erica Jensen <erica@mailershaven.com>
2026-07-11 22:23:52 -04:00
Timo 6add0b91bc feat: Add Finnish hyphenation (#2084) 2026-07-11 22:16:42 -04:00
Leopoldo Pla Sempere 287457f7dd fix: handle low-bit-depth, upscaled, and SVG EPUB images (#2503) 2026-07-11 21:45:53 -04:00
Justin Mitchell 3e627112f6 fix: oom exceptions for OPDS, KOSync, and OTA via wolfssl (#2475) 2026-07-12 01:53:26 +03:00
Stefan Blixten Karlsson 1f5669a08a fix: Swedish translation (#2577) 2026-07-11 23:20:20 +03:00
Ing. Jan Kaláb 0dc92c142c fix: update czech.yaml (#2574) 2026-07-11 21:09:09 +03:00
Leopoldo Pla Sempere 4b34a576eb chore: update Spanish, Catalan, and Valencian translations (#2566) 2026-07-10 17:45:40 +03:00
4fb843ef92 perf: skip redundant progress writes when position is unchanged (#2436)
Co-authored-by: Erica Jensen <erica@mailershaven.com>
Co-authored-by: Uri Tauber <uritaube@gmail.com>
2026-07-10 10:37:43 +03:00
Justin Mitchell cecdbefa0e Normalize whitespace in comments and includes
Standardize spacing in inline comments and remove extra blank line in include statement for consistency
2026-07-09 00:21:25 -04:00
Justin Mitchell 4c5fd653c0 Add Bluetooth status icon to reader status bar
Display a Bluetooth icon in the status bar when BLE is connected. Also optimize memory management by lending the framebuffer instead of immediately tearing down BLE when heap is low, allowing BLE to remain active during rendering.
2026-07-09 00:13:54 -04:00
Justin Mitchell 05c1e9aa46 Add framebuffer lending for memory-intensive builds
Temporarily release framebuffer memory during section pagination to reduce heap pressure. The framebuffer can be released before memory-intensive operations and restored afterward, allowing BLE stack startup threshold to be lowered from 80KB to 70KB. Implements RAII-style FrameBufferBuildLoan class to ensure proper cleanup and automatic restart on restoration failure.
2026-07-09 00:04:11 -04:00
Justin Mitchell f3da5e4f06 Merge branch 'develop' of https://github.com/crosspoint-reader/crosspoint-reader into feat-bluetooth 2026-07-08 22:13:16 -04:00
Matteo Scopel a43061305a chore: update the Italian translation (#2559) 2026-07-08 22:22:47 +03:00
Uri Tauber 7ec07b4d9d fix: show "Failed to index" when failing to parse epub (#2556) 2026-07-08 21:22:35 +03:00
Uri Tauber c2c1badc7e chore: Refactor stores to use PersistableStore CRTP template (#2464) 2026-07-08 12:44:52 +03:00
Nick 5776911af0 fix: FontDecompressor OOM aborts on the render path (-fno-exceptions makes vector resize fatal) (#2526) 2026-07-07 09:06:18 +03:00
Pietro Campagnano 3c5c5e8aa7 feat: preview image files inline in web file browser (#2429) 2026-07-06 16:45:22 -04:00
Justin Mitchell 6f5c5a0900 fix: Flatten TextBlock word storage into single allocation (#2547) 2026-07-06 23:41:00 +03:00
Uri Tauber f2b00f6b93 chore: Replace product link with affiliate tracking link (#2401) 2026-07-06 23:13:27 +03:00
Uri TauberandBrooks Ilg 44ff313740 fix: render <br> between paragraphs as a visible section break (#2548)
Co-authored-by: Brooks Ilg <brooksmilg@gmail.com>
2026-07-06 20:10:31 +03:00
Justin Mitchell 6f0707e83c Suppress cppcheck warnings for CI compatibility
Add missingInclude suppression to prevent false positives on fresh CI checkouts where include paths are unresolved. Add inline suppression for constVariableReference warning where cppcheck cannot detect mutations without full include path resolution.
2026-07-06 08:55:24 -04:00
Justin Mitchell 7b6df60a54 Shrink NimBLE footprint to prevent stack overflow
Reduce BLE stack memory usage from ~68KB to ~52KB by disabling unused NimBLE roles (peripheral, broadcaster), limiting connections to 1, and reducing buffer counts for ACL, HCI events, and ATT entries. Remove unused cloud components (esp_insights, esp_rainmaker) that require unavailable server certificates. These changes prevent stack collision with the render shed, eliminating restart flaps on the reader device.
2026-07-06 08:48:44 -04:00
Justin Mitchell 1c13913713 Implement keep-if-fits buffer reuse to reduce heap fragmentation
Replace per-page buffer free+realloc pattern with capacity tracking that only reallocates when needed size exceeds current capacity. This prevents heap fragmentation from non-coalescing holes that occurred when each page's freed block rarely fit the next page's allocation. After a few page turns, capacities converge on the book's maximum and page turns stop touching the allocator entirely.
2026-07-06 08:30:17 -04:00
Justin Mitchell 613371b716 Add heap pressure management for BLE and rendering
Prevent OOM aborts by shedding BLE stack when free heap drops below 24KB before rendering. Lower BLE start threshold from 100KB to 80KB to match steady-state heap levels (~84KB). Reserve vector capacity upfront in page parsing to avoid reallocation crashes on fragmented heaps. Gate background section builds on heap availability.
2026-07-06 08:12:11 -04:00
Justin Mitchell 0d7a84e3c5 Rename variable count to scanCount for clarity
Improves code readability by using a more descriptive variable name that better indicates the variable holds the device count from a BLE scan.
2026-07-06 02:23:04 -04:00
Justin Mitchell 4c93950771 Merge branch 'pr-2527' into feat-bluetooth
# Conflicts:
#	src/activities/reader/EpubReaderActivity.cpp
2026-07-06 02:10:55 -04:00
Justin Mitchell 1d01eebf55 Reformat Bluetooth scan log statement 2026-07-06 02:06:25 -04:00
Justin Mitchell 9bf6e5f43c Merge remote-tracking branch 'origin/develop' into feat-bluetooth
# Conflicts:
#	.gitmodules
#	freeink-sdk
#	platformio.ini
#	src/activities/reader/EpubReaderActivity.cpp
2026-07-06 02:04:38 -04:00
Jacob Latonis ca1b833126 fix: follow spec for zxing qr code generation (#2540) 2026-07-06 00:33:34 +03:00
Nick ad3138983b fix: clear the BT-paused popup with an immediate redraw (toast semantics)
The popup lingered until the next page turn. E-ink has no free timers --
clearing costs a refresh whenever it happens -- so request the redraw
right away: the popup shows for the ~2 s page re-render, then clears.
2026-07-02 17:25:34 -05:00
Nick 793685e76b feat: user path to resume BT from low-memory pause via reader menu toggle
Field session: after a recovery teardown the heap settles at ~72 KB --
below the 100 KB start floor -- and never recovers on its own (the
defrag silent-restart only fires when a build FAILS, and builds succeed
now). BT stayed paused forever, the menu toggle claimed ON, and toggling
off/on changed nothing.

- Menu label tells the truth: ON / PAUSED (enabled but stack down) / OFF
  (new STR_STATE_PAUSED string)
- Toggling BT on below the heap floor silent-restarts into the current
  book: the fresh boot's ~118 KB passes the gate and BT auto-starts on
  resume. Explicit user intent is the right trigger for the defrag.
- Hoist the floor to bleinput::kStartMinFreeHeap, shared by the
  lifecycle gate and the toggle
2026-07-02 17:25:34 -05:00
Nick 551d29744a fix: stop BLE lifecycle oscillation after build recovery
The 70 KB restart floor was arithmetic nonsense: NimBLE takes ~57 KB, so
a restart at 70 KB free left ~13 KB -- below the 40 KB build pre-flight
-- so the next chapter build instantly re-entered recovery and tore BLE
back down. Field symptom: endless 'BT Connecting...' popup + redraw loop.

- Single conservative floor: 100 KB (57 KB stack + 40 KB build headroom)
- 30 s cool-down after any recovery teardown before the lifecycle may
  restart BLE, so a marginal heap can never flap; the 'BT paused (low
  memory)' popup shows instead and reading continues without the remote
2026-07-02 17:25:10 -05:00
Nick 74a0969cc6 fix: pre-flight heap floor before section builds; no inline BLE restart
Layout code (line-break DP arrays, CSS lookups, glyph buffers) allocates
via std::vector/std::string and abort()s on OOM under -fno-exceptions --
it cannot fail cleanly mid-build. Field crashes (X4, BLE resident):
builds entered at ~11 KB free and aborted in ParsedText::
computeLineBreaks; an inline BLE restart after recovery re-starved the
render and abort()ed in FontCacheManager's scanText_.reserve at ~8 KB.

- BUILD_MIN_FREE_HEAP (40 KB): pre-flight before the build; below the
  floor go straight to recovery instead of attempting a doomed build
- Recovery no longer restarts NimBLE inline; the lifecycle stays paused
  until the render completes (scoped unpause guard), then the main-loop
  lifecycle restarts BLE behind its own heap gate
2026-07-02 17:24:29 -05:00
Nick 06aa1ac2f7 feat: silent-restart defrag on section-build double failure + BLE debug flags
- EpubReaderActivity: when a section build fails even after the BLE
  teardown/retry, silentRestartToReader() as last-resort heap defrag,
  guarded by bootWasSilentRestart() to prevent reboot loops
- main/SilentRestart.h: expose bootWasSilentRestart()
- platformio.ini: enable FREEINK_BLE_HID_REPORT_DEBUG in env:default
2026-07-02 17:20:51 -05:00
Justin Mitchell c463da994e Add BLE lifecycle pause mechanism for memory mgmt
Introduces a global pause flag to temporarily block BLE stack auto-start during large memory allocations (e.g., in EPUB rendering). Also adds auto-restart logic for BLE scanning when device list is empty, and extensive debug logging for BLE scan lifecycle troubleshooting.
2026-06-30 16:31:54 -04:00
Justin Mitchell 988652513a Add FreeInk dependencies
Include BoardConfig, PowerManager, Rtc, Imu, FreeInkUI, and Icons libraries from the FreeInk SDK to support hardware abstraction layer functionality.
2026-06-24 17:41:36 -04:00
Justin Mitchell 28d0d6f5d2 Replace range-based for loop with std::fill
Use standard algorithm std::fill instead of manual loop to clear bleKeyMap array. This is more idiomatic C++ and expresses intent more clearly.
2026-06-24 17:15:44 -04:00
Justin Mitchell 568831f232 Update freeink-sdk submodule
Update freeink-sdk submodule from b026965 to a913bb3.
2026-06-24 17:10:58 -04:00
Justin Mitchell d6f5be6b7a Add keepsBluetoothAlive hook to Activity base class
Introduces a virtual method allowing activities to indicate whether they need the BLE stack to remain active. This enables selective teardown of Bluetooth to free heap memory, with the Bluetooth settings screen being able to override this for pairing and scanning functionality.
2026-06-24 17:00:52 -04:00
Justin Mitchell d30fde2f4d Add Bluetooth connecting popup message
Add new translation string for displaying a popup message while Bluetooth connection is in progress.
2026-06-24 16:21:49 -04:00
Justin Mitchell 6305777b22 Retry EPUB section build after freeing BLE stack
When building an EPUB section fails with Bluetooth enabled, temporarily stop the BLE stack to free up memory (~16KB), retry the build, then restart BLE. This works around memory fragmentation caused by the NimBLE stack that prevents allocating the large contiguous buffer needed for inflate/deflate operations. The recovery only runs once per uncached chapter since chapters are cached afterwards.
2026-06-24 16:13:43 -04:00
Justin Mitchell 9ab0b0bfb7 Add Bluetooth HID remote control support
Integrate BLE keyboard host functionality for page-turner remotes. Adds device pairing, button mapping, preset configurations for Free2/Free3 remotes, and persistent storage of mappings. Migrates from open-x4-sdk to freeink-sdk submodule which includes the BleKeyboardHost library. Implements CPU frequency locking during BLE operations to prevent watchdog timeouts.
2026-06-24 15:36:29 -04:00
180 changed files with 26422 additions and 8096 deletions
+6
View File
@@ -23,3 +23,9 @@ lib/EpdFont/scripts/output/
# (worktrees, scheduled-task locks, settings.local, scout CLEANUP.md) out.
.claude/*
!.claude/skills/
/managed_components
/.dummy
dependencies.lock
sdkconfig.default
sdkconfig.defaults
CMakeLists.txt
+2
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@@ -8,6 +8,8 @@ CrossPoint is open-source e-reader firmware - community-built, fully hackable, f
![CrossPoint Reader running on Xteink device](./docs/images/cover.jpg)
> If you're planning to buy an Xteink device, consider purchasing an **X3/X4 Developer Edition** through https://crosspointreader.com. CrossPoint receives a small share of each sale, helping fund development costs.
## What can CrossPoint do?
- **Reader engine**: EPUB 2/3 rendering with embedded-style option, image handling, hyphenation, kerning, chapter navigation, footnotes, bookmarks, go-to-percent, auto page turn, orientation control, focus reading, KOReader progress sync and more.
+1
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@@ -47,6 +47,7 @@ git ls-files --exclude-standard ${GIT_LS_FILES_FLAGS} \
| grep -v -E '^lib/EpdFont/builtinFonts/' \
| grep -v -E '^lib/Epub/Epub/hyphenation/generated/' \
| grep -v -E '^lib/uzlib/' \
| grep -v -E '^lib/miniz/third_party/' \
| xargs -r "${CLANG_FORMAT_BIN}" -style=file -i
# Restore strict pipeline failure handling for the rest of the script.
set -o pipefail
+26 -10
View File
@@ -90,13 +90,19 @@ if (parsedSize != fileSize) {
## `section.bin`
### Version 28
### Version 30
Each file in `sections/*.bin` stores one laid-out spine section. The header is
also the cache-busting key: if any layout-affecting setting differs from the
current reader settings, the section is discarded and rebuilt.
Version 28 includes:
Version 30 is binary-identical to version 29. The version was bumped because
Arabic contextual shaping changed text measurement (`getTextAdvanceX` now
measures the shaped visual text), so word positions cached by v29 no longer
match what `drawText` renders.
Version 28 introduced serialized word style bits for underline, strikethrough,
superscript, and subscript. The format also includes:
- cache-busting fields for paragraph alignment, hyphenation, embedded CSS,
image rendering mode, and Focus Reading
@@ -107,6 +113,10 @@ Version 28 includes:
- per-page footnote entries
- serialized word style bits for underline, strikethrough, superscript, and
subscript
- flat TextBlock word storage (v29): per-word arrays plus one shared
NUL-terminated text blob, replacing v28's length-prefixed word strings. The
on-disk order mirrors the in-RAM arena so the firmware reads a whole block
payload with a single allocation and a single SD read
ImHex pattern:
@@ -115,7 +125,7 @@ import std.mem;
import std.string;
import std.core;
#define EXPECTED_VERSION 28
#define EXPECTED_VERSION 30
#define MAX_STRING_LENGTH 65535
#define FOOTNOTE_NUMBER_LEN 32
#define FOOTNOTE_HREF_LEN 96
@@ -176,14 +186,20 @@ struct BlockStyle {
struct TextBlock {
u16 wordCount;
String words[wordCount];
s16 wordXPos[wordCount];
WordStyle wordStyle[wordCount];
u8 hasFocus;
if (hasFocus != 0) {
u8 wordFocusBoundary[wordCount] [[comment("UTF-8 byte boundary between bold prefix and suffix")]];
u16 wordFocusSuffixX[wordCount] [[comment("Suffix x offset from word start")]];
u16 textBytes [[comment("Total size of text[], including one NUL per word")]];
if (wordCount > 0) {
u16 textOff[wordCount] [[comment("Byte offset of word i's text within text[]")]];
s16 wordXPos[wordCount];
if (hasFocus != 0) {
u16 wordFocusSuffixX[wordCount] [[comment("Suffix x offset from word start")]];
}
WordStyle wordStyle[wordCount];
if (hasFocus != 0) {
u8 wordFocusBoundary[wordCount] [[comment("UTF-8 byte boundary between bold prefix and suffix")]];
}
char text[textBytes] [[comment("All words back to back, each NUL-terminated")]];
}
BlockStyle blockStyle;
+8 -3
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@@ -32,9 +32,14 @@ networks or in hotspot mode when you control who is connected.
## Join Network Mode
1. Select **Join Network**.
2. Pick a 2.4 GHz Wi-Fi network from the scan results.
3. Enter the password if prompted.
4. Save credentials if you want the reader to reconnect automatically next time.
2. If you have saved Wi-Fi credentials, CrossPoint first tries the last
connected network, then other visible saved networks in signal-strength
order. Press **Back** to cancel or **Confirm** to stop auto-connect and show
the network list.
3. If the network list is shown, pick a 2.4 GHz Wi-Fi network from the scan
results.
4. Enter the password if prompted.
5. Save credentials if you want the reader to reconnect automatically next time.
After connection, the reader shows:
+5 -4
View File
@@ -44,16 +44,17 @@ void EpdFont::getTextBounds(const char* string, const int startX, const int star
continue;
}
const int raiseBy = isCombining ? combiningMark::raiseAboveBase(glyph->top, glyph->height, lastBaseTop) : 0;
const combiningMark::Anchor anchor = combiningMark::anchorFor(cp);
const int raiseBy = isCombining ? combiningMark::raiseAboveBase(anchor, glyph->top, glyph->height, lastBaseTop) : 0;
if (!isCombining && prevCp != 0) {
const auto kernFP = getKerning(prevCp, cp); // 4.4 fixed-point kern
lastBaseX += fp4::toPixel(prevAdvanceFP + kernFP);
}
const int glyphBaseX =
isCombining ? combiningMark::centerOver(lastBaseX, lastBaseLeft, lastBaseWidth, glyph->left, glyph->width)
: lastBaseX;
const int glyphBaseX = isCombining ? combiningMark::anchorOver(anchor, lastBaseX, lastBaseLeft, lastBaseWidth,
glyph->left, glyph->width)
: lastBaseX;
const int glyphBaseY = startY - raiseBy;
*minX = std::min(*minX, glyphBaseX + glyph->left);
+76 -11
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@@ -36,24 +36,71 @@ namespace combiningMark {
constexpr int MIN_GAP_PX = 1;
/// Compute the cursor-X at which to render a combining mark so its bitmap
/// is visually centered over the base glyph's bitmap.
constexpr int centerOver(int baseCursorPos, int baseLeft, int baseWidth, int markLeft, int markWidth) {
return baseCursorPos + baseLeft + baseWidth / 2 - markWidth / 2 - markLeft;
/// Placement of a mark relative to its base glyph. The default heuristic —
/// centered over the base, raised clear of its top — suits Latin diacritics
/// and Arabic harakat, but misplaces the Hebrew niqqud whose identity depends
/// on position: dagesh sits inside the letter body, the shin/sin dots
/// distinguish the letter by sitting over its right/left arm, and holam hangs
/// over the left corner. "Native" anchors keep the glyph's font-designed
/// height (which may overlap the base) instead of raising it.
enum class Anchor : uint8_t {
CenterRaised, ///< centered over the base, lifted above its top (default)
CenterNative, ///< centered over the base at font-native height
RightNative, ///< right edges aligned, font-native height
LeftNative, ///< left edges aligned, font-native height
};
constexpr Anchor anchorFor(const uint32_t cp) {
switch (cp) {
case 0x05BC: // dagesh / mapiq / shuruk dot: inside the letter body
case 0x05BA: // holam haser for vav: straight above the vav stem
return Anchor::CenterNative;
case 0x05C1: // shin dot: over the letter's right arm
return Anchor::RightNative;
case 0x05B9: // holam: above the letter's left corner
case 0x05C2: // sin dot: over the letter's left arm
return Anchor::LeftNative;
default:
return Anchor::CenterRaised;
}
}
/// Rotated-90CW variant of centerOver. In the rotated coordinate system
/// Horizontal offset from the base bitmap's left edge to the mark bitmap's
/// left edge for a given anchor.
constexpr int anchorShift(const Anchor anchor, const int baseWidth, const int markWidth) {
switch (anchor) {
case Anchor::LeftNative:
return 0;
case Anchor::RightNative:
return baseWidth - markWidth;
default:
return baseWidth / 2 - markWidth / 2;
}
}
/// Compute the cursor-X at which to render a combining mark so its bitmap
/// lands at its anchor position over the base glyph's bitmap.
constexpr int anchorOver(const Anchor anchor, const int baseCursorPos, const int baseLeft, const int baseWidth,
const int markLeft, const int markWidth) {
return baseCursorPos + baseLeft + anchorShift(anchor, baseWidth, markWidth) - markLeft;
}
/// Rotated-90CW variant of anchorOver. In the rotated coordinate system
/// renderCharImpl uses (cursorY - left) instead of (cursorX + left), so
/// every left/width term inverts sign.
constexpr int centerOverRotated90CW(int baseCursorPos, int baseLeft, int baseWidth, int markLeft, int markWidth) {
return baseCursorPos - baseLeft - baseWidth / 2 + markWidth / 2 + markLeft;
constexpr int anchorOverRotated90CW(const Anchor anchor, const int baseCursorPos, const int baseLeft,
const int baseWidth, const int markLeft, const int markWidth) {
return baseCursorPos - baseLeft - anchorShift(anchor, baseWidth, markWidth) + markLeft;
}
/// For combining marks that sit entirely above the baseline, compute how many
/// pixels to raise the mark so there is at least MIN_GAP_PX between its bottom
/// edge and the top of the base glyph. Returns 0 for marks that extend to or
/// below the baseline (e.g. cedilla, dot-below, ogonek).
constexpr int raiseAboveBase(int markTop, int markHeight, int baseTop) {
/// below the baseline (e.g. cedilla, dot-below, ogonek) and for anchors that
/// keep the font-native height (dagesh must stay inside the letter, the
/// shin/sin dots touch its arms).
constexpr int raiseAboveBase(const Anchor anchor, const int markTop, const int markHeight, const int baseTop) {
if (anchor != Anchor::CenterRaised) return 0;
if (markTop - markHeight <= 0) return 0;
const int gap = markTop - markHeight - baseTop;
return (gap < MIN_GAP_PX) ? (MIN_GAP_PX - gap) : 0;
@@ -61,6 +108,20 @@ constexpr int raiseAboveBase(int markTop, int markHeight, int baseTop) {
} // namespace combiningMark
/// GCC/Clang (the ESP32 firmware toolchain) pack structs with __attribute__((packed)).
/// MSVC (host unit tests) has no equivalent attribute and instead needs a #pragma pack
/// region achieving the same 1-byte alignment. These macros keep the on-disk font layout
/// identical across both toolchains.
#if defined(_MSC_VER)
#define EPD_PACKED_BEGIN __pragma(pack(push, 1))
#define EPD_PACKED_END __pragma(pack(pop))
#define EPD_PACKED_ATTR
#else
#define EPD_PACKED_BEGIN
#define EPD_PACKED_END
#define EPD_PACKED_ATTR __attribute__((packed))
#endif
/// Fixed-point conventions used by EpdGlyph and EpdFontData:
/// advanceX: 12.4 unsigned fixed-point in uint16_t (use fp4::toPixel)
/// kernMatrix: 4.4 signed fixed-point in int8_t (use fp4::toPixel)
@@ -95,17 +156,21 @@ typedef struct {
/// Maps a codepoint to a kerning class ID, sorted by codepoint for binary search.
/// Class IDs are 1-based; codepoints not in the table have implicit class 0 (no kerning).
EPD_PACKED_BEGIN
typedef struct {
uint16_t codepoint; ///< Unicode codepoint
uint8_t classId; ///< 1-based kerning class ID
} __attribute__((packed)) EpdKernClassEntry;
} EPD_PACKED_ATTR EpdKernClassEntry;
EPD_PACKED_END
/// Ligature substitution for a specific glyph pair, sorted by `pair` for binary search.
/// `pair` encodes (leftCodepoint << 16 | rightCodepoint) for single-key lookup.
EPD_PACKED_BEGIN
typedef struct {
uint32_t pair; ///< Packed codepoint pair (left << 16 | right)
uint32_t ligatureCp; ///< Codepoint of the replacement ligature glyph
} __attribute__((packed)) EpdLigaturePair;
} EPD_PACKED_ATTR EpdLigaturePair;
EPD_PACKED_END
/// Data stored for FONT AS A WHOLE
typedef struct {
+31 -20
View File
@@ -33,12 +33,24 @@ void FontDecompressor::freePageBuffer() {
}
void FontDecompressor::freeHotGroup() {
hotGroup.clear();
hotGroup.shrink_to_fit();
free(hotGroup);
hotGroup = nullptr;
hotGroupCapacity = 0;
hotGroupFont = nullptr;
hotGroupIndex = UINT16_MAX;
hotGlyphBuf.clear();
hotGlyphBuf.shrink_to_fit();
free(hotGlyphBuf);
hotGlyphBuf = nullptr;
hotGlyphBufCapacity = 0;
}
bool FontDecompressor::ensureCapacity(uint8_t*& buf, uint32_t& capacity, uint32_t needed) {
if (capacity >= needed) return true;
// Grow-only, free-then-malloc: every caller fully rewrites the buffer after a grow, so the
// old contents are dead -- freeing first gives the allocator its best shot on a tight heap.
free(buf);
buf = static_cast<uint8_t*>(malloc(needed)); // owned by FontDecompressor, freed in freeHotGroup()
capacity = buf ? needed : 0;
return buf != nullptr;
}
uint16_t FontDecompressor::getGroupIndex(const EpdFontData* fontData, uint32_t glyphIndex) {
@@ -170,24 +182,20 @@ const uint8_t* FontDecompressor::getBitmap(const EpdFontData* fontData, const Ep
}
// Check if hot group already has this group decompressed — if not, decompress it
if (!(!hotGroup.empty() && hotGroupFont == fontData && hotGroupIndex == groupIndex)) {
if (!(hotGroup != nullptr && hotGroupFont == fontData && hotGroupIndex == groupIndex)) {
stats.cacheMisses++;
const EpdFontGroup& group = fontData->groups[groupIndex];
hotGroup.resize(group.uncompressedSize);
if (hotGroup.empty()) {
// ensureCapacity may free the buffer, so the cached-group identity dies with it either way.
hotGroupFont = nullptr;
hotGroupIndex = UINT16_MAX;
if (!ensureCapacity(hotGroup, hotGroupCapacity, group.uncompressedSize)) {
LOG_ERR("FDC", "Failed to allocate %u bytes for hot group %u", group.uncompressedSize, groupIndex);
hotGroupFont = nullptr;
hotGroupIndex = UINT16_MAX;
stats.getBitmapTimeUs += micros() - tStart;
return nullptr;
}
if (!decompressGroup(fontData, groupIndex, hotGroup.data(), group.uncompressedSize)) {
hotGroup.clear();
hotGroup.shrink_to_fit();
hotGroupFont = nullptr;
hotGroupIndex = UINT16_MAX;
if (!decompressGroup(fontData, groupIndex, hotGroup, group.uncompressedSize)) {
stats.getBitmapTimeUs += micros() - tStart;
return nullptr;
}
@@ -200,18 +208,16 @@ const uint8_t* FontDecompressor::getBitmap(const EpdFontData* fontData, const Ep
}
// Compact just the requested glyph from byte-aligned data into scratch buffer
if (glyph->dataLength > hotGlyphBuf.size()) {
hotGlyphBuf.resize(glyph->dataLength);
}
if (hotGlyphBuf.empty()) {
if (!ensureCapacity(hotGlyphBuf, hotGlyphBufCapacity, glyph->dataLength)) {
LOG_ERR("FDC", "Failed to allocate %u bytes for glyph scratch", (unsigned)glyph->dataLength);
stats.getBitmapTimeUs += micros() - tStart;
return nullptr;
}
uint32_t alignedOff = getAlignedOffset(fontData, groupIndex, glyphIndex);
compactSingleGlyph(&hotGroup[alignedOff], hotGlyphBuf.data(), glyph->width, glyph->height);
compactSingleGlyph(&hotGroup[alignedOff], hotGlyphBuf, glyph->width, glyph->height);
stats.getBitmapTimeUs += micros() - tStart;
return hotGlyphBuf.data();
return hotGlyphBuf;
}
// --- Prewarm: pre-decompress glyph bitmaps for a page of text ---
@@ -363,6 +369,11 @@ int FontDecompressor::prewarmCache(const EpdFontData* fontData, const char* utf8
}
stats.pageBufferBytes += totalBytes;
stats.pageGlyphsBytes += glyphCount * sizeof(PageGlyphEntry);
// MEMFIX-PORT: page-slot address landmark for the heap map; portable
// Landmark for the heap block map: page slots are the largest flash-font
// allocations and otherwise show up as anonymous ~4-20 KB used blocks.
LOG_DBG("FDC", "page slot buffer=%p bytes=%u glyphs=%u", static_cast<void*>(slot.buffer), (unsigned)totalBytes,
(unsigned)glyphCount);
slot.fontData = fontData;
slot.glyphCount = glyphCount;
+12 -5
View File
@@ -2,8 +2,6 @@
#include <InflateReader.h>
#include <vector>
#include "EpdFontData.h"
class FontDecompressor {
@@ -67,13 +65,22 @@ class FontDecompressor {
// Hot group: last decompressed group (byte-aligned) for non-prewarmed fallback path.
// Kept in byte-aligned format; individual glyphs are compacted on demand into hotGlyphBuf.
// Nothrow high-water malloc buffers, NOT std::vector: getBitmap() runs on the render path,
// and under -fno-exceptions a vector resize that hits OOM abort()s the firmware instead of
// failing (field crash: hotGroup.resize() -> std::bad_alloc -> abort with ~11 KB free).
// ensureCapacity() returns false on OOM so the caller can skip the glyph gracefully.
const EpdFontData* hotGroupFont = nullptr;
uint16_t hotGroupIndex = UINT16_MAX;
std::vector<uint8_t> hotGroup;
uint8_t* hotGroup = nullptr; // owned; freed in freeHotGroup()/dtor
uint32_t hotGroupCapacity = 0;
// Scratch buffer for compacting a single glyph from the hot group.
// Valid until the next getBitmap() call.
std::vector<uint8_t> hotGlyphBuf;
// Valid until the next getBitmap() call. Same ownership/OOM contract as hotGroup.
uint8_t* hotGlyphBuf = nullptr;
uint32_t hotGlyphBufCapacity = 0;
// Grow (never shrink) an owned buffer to at least `needed` bytes; false on OOM, buffer freed.
static bool ensureCapacity(uint8_t*& buf, uint32_t& capacity, uint32_t needed);
void freePageBuffer();
void freeHotGroup();
+81 -22
View File
@@ -68,6 +68,22 @@ bool collectUniqueCodepoints(const char* text, uint32_t* codepoints, uint32_t& c
const char* asCStr(const std::string& s) { return s.c_str(); }
const char* asCStr(const char* s) { return s; }
// Keep-if-fits buffer reuse: only reallocate when the needed size exceeds the
// current capacity. Freeing + reallocating slightly different sizes every page
// turn punches non-coalescing holes in the heap (the freed block rarely fits the
// next page's need), eroding the largest contiguous block all session. With
// reuse, capacities converge on the book's max page after a few turns and page
// turns stop touching the allocator. Only three small instantiations exist
// (interval/glyph/byte arrays), so template bloat is negligible.
template <typename T, typename CapT>
bool ensureArrayCapacity(T*& buf, CapT& capacity, const uint32_t needed) {
if (buf && capacity >= needed) return true;
delete[] buf;
buf = new (std::nothrow) T[needed > 0 ? needed : 1];
capacity = buf ? static_cast<CapT>(needed) : 0;
return buf != nullptr;
}
} // namespace
SdCardFont::~SdCardFont() { freeAll(); }
@@ -83,6 +99,9 @@ void SdCardFont::freeStyleMiniData(PerStyle& s) {
s.miniBitmap = nullptr;
s.miniIntervalCount = 0;
s.miniGlyphCount = 0;
s.miniIntervalCapacity = 0;
s.miniGlyphCapacity = 0;
s.miniBitmapCapacity = 0;
freeStyleMiniKern(s);
memset(&s.miniData, 0, sizeof(s.miniData));
s.epdFont.data = &s.stubData;
@@ -109,6 +128,9 @@ void SdCardFont::freeStyleMiniKern(PerStyle& s) {
s.miniKernRightEntryCount = 0;
s.miniKernLeftClassCount = 0;
s.miniKernRightClassCount = 0;
s.miniKernLeftCapacity = 0;
s.miniKernRightCapacity = 0;
s.miniKernMatrixCapacity = 0;
}
void SdCardFont::freeStyleAll(PerStyle& s) {
@@ -311,13 +333,13 @@ bool SdCardFont::buildMiniKernMatrix(PerStyle& s, const uint32_t* codepoints, ui
if (miniLookupKernClass(s.kernRightClasses, s.header.kernRightEntryCount, codepoints[i]) != 0) miniRightCount++;
}
// Step 4: allocate the three mini buffers. The matrix is <1KB in practice
// (<30 × <30 × 1 byte) so fragmentation is a non-issue.
// Step 4: size the three mini buffers (reused across pages when they fit; the
// per-page sizes vary by a few entries, which as free+realloc churn was punching
// non-coalescing holes in the heap every page turn).
const uint32_t matrixBytes = static_cast<uint32_t>(numLeft) * numRight;
s.miniKernLeftClasses = new (std::nothrow) EpdKernClassEntry[miniLeftCount];
s.miniKernRightClasses = new (std::nothrow) EpdKernClassEntry[miniRightCount];
s.miniKernMatrix = new (std::nothrow) int8_t[matrixBytes];
if (!s.miniKernLeftClasses || !s.miniKernRightClasses || !s.miniKernMatrix) {
if (!ensureArrayCapacity(s.miniKernLeftClasses, s.miniKernLeftCapacity, miniLeftCount) ||
!ensureArrayCapacity(s.miniKernRightClasses, s.miniKernRightCapacity, miniRightCount) ||
!ensureArrayCapacity(s.miniKernMatrix, s.miniKernMatrixCapacity, matrixBytes)) {
LOG_ERR("SDCF", "Failed to allocate mini kern (%u+%u+%u bytes)", miniLeftCount * 3u, miniRightCount * 3u,
matrixBytes);
freeStyleMiniKern(s);
@@ -793,12 +815,19 @@ int SdCardFont::prewarmStyle(uint8_t styleIdx, const uint32_t* codepoints, uint3
return missed;
}
// Build mini intervals from sorted codepoints
freeStyleMiniData(s);
// Build mini intervals from sorted codepoints. Reset counts and fall back to the
// stub until the rebuild completes, but KEEP the existing buffers (keep-if-fits
// reuse) — the free-and-realloc-per-page pattern here was a primary fragmenter.
s.miniIntervalCount = 0;
s.miniGlyphCount = 0;
s.miniKernLeftEntryCount = 0;
s.miniKernRightEntryCount = 0;
s.miniKernLeftClassCount = 0;
s.miniKernRightClassCount = 0;
memset(&s.miniData, 0, sizeof(s.miniData));
s.epdFont.data = &s.stubData;
uint32_t intervalCapacity = validCount;
s.miniIntervals = new (std::nothrow) EpdUnicodeInterval[intervalCapacity];
if (!s.miniIntervals) {
if (!ensureArrayCapacity(s.miniIntervals, s.miniIntervalCapacity, validCount)) {
LOG_ERR("SDCF", "Failed to allocate mini intervals for style %u", styleIdx);
delete[] mappings;
return static_cast<int>(cpCount);
@@ -816,15 +845,14 @@ int SdCardFont::prewarmStyle(uint8_t styleIdx, const uint32_t* codepoints, uint3
}
}
// Allocate mini glyph array
s.miniGlyphCount = validCount;
s.miniGlyphs = new (std::nothrow) EpdGlyph[s.miniGlyphCount];
if (!s.miniGlyphs) {
// Mini glyph array (reused across pages when it fits)
if (!ensureArrayCapacity(s.miniGlyphs, s.miniGlyphCapacity, validCount)) {
LOG_ERR("SDCF", "Failed to allocate mini glyphs for style %u", styleIdx);
delete[] mappings;
freeStyleMiniData(s);
return static_cast<int>(cpCount);
}
s.miniGlyphCount = validCount;
// Build sorted read order for sequential I/O
uint32_t* readOrder = new (std::nothrow) uint32_t[validCount];
@@ -891,8 +919,7 @@ int SdCardFont::prewarmStyle(uint8_t styleIdx, const uint32_t* codepoints, uint3
totalBitmapSize += s.miniGlyphs[i].dataLength;
}
s.miniBitmap = new (std::nothrow) uint8_t[totalBitmapSize > 0 ? totalBitmapSize : 1];
if (!s.miniBitmap) {
if (!ensureArrayCapacity(s.miniBitmap, s.miniBitmapCapacity, totalBitmapSize)) {
LOG_ERR("SDCF", "Failed to allocate mini bitmap (%u bytes) for style %u", totalBitmapSize, styleIdx);
delete[] readOrder;
delete[] mappings;
@@ -1195,7 +1222,8 @@ int SdCardFont::fetchAdvancesForCodepoints(uint32_t* codepoints, uint32_t cpCoun
}
template <typename Iter>
int SdCardFont::buildAdvanceTableRange(Iter begin, Iter end, bool includeSpace, bool includeHyphen, uint8_t styleMask) {
int SdCardFont::buildAdvanceTableRange(Iter begin, Iter end, bool includeSpace, bool includeHyphen, uint8_t styleMask,
const char* extraText) {
if (!loaded_) return -1;
styleMask = resolveStyleMask(styleMask);
if (styleMask == 0) return 0;
@@ -1215,6 +1243,9 @@ int SdCardFont::buildAdvanceTableRange(Iter begin, Iter end, bool includeSpace,
for (auto it = begin; it != end && !hitCap; ++it) {
hitCap = collectUniqueCodepoints(asCStr(*it), codepoints, cpCount, MAX_UNIQUE_CODEPOINTS);
}
if (extraText && !hitCap) {
hitCap = collectUniqueCodepoints(extraText, codepoints, cpCount, MAX_UNIQUE_CODEPOINTS);
}
if (includeSpace && std::none_of(codepoints, codepoints + cpCount, [](uint32_t c) { return c == ' '; }))
codepoints[cpCount++] = ' ';
@@ -1232,12 +1263,13 @@ int SdCardFont::buildAdvanceTableRange(Iter begin, Iter end, bool includeSpace,
return totalMissed;
}
int SdCardFont::buildAdvanceTable(const char* utf8Text, uint8_t styleMask) {
return buildAdvanceTableRange(&utf8Text, &utf8Text + 1, false, false, styleMask);
int SdCardFont::buildAdvanceTable(const char* utf8Text, uint8_t styleMask, const char* extraText) {
return buildAdvanceTableRange(&utf8Text, &utf8Text + 1, false, false, styleMask, extraText);
}
int SdCardFont::buildAdvanceTable(const std::vector<std::string>& words, bool includeHyphen, uint8_t styleMask) {
return buildAdvanceTableRange(words.begin(), words.end(), words.size() > 1, includeHyphen, styleMask);
int SdCardFont::buildAdvanceTable(const std::vector<std::string>& words, bool includeHyphen, uint8_t styleMask,
const char* extraText) {
return buildAdvanceTableRange(words.begin(), words.end(), words.size() > 1, includeHyphen, styleMask, extraText);
}
// --- Stats ---
@@ -1374,6 +1406,33 @@ const EpdGlyph* SdCardFont::onGlyphMiss(void* ctx, uint32_t codepoint) {
return &self->overflow_[slot].glyph;
}
size_t SdCardFont::reportMemory() const {
size_t total = 0;
for (uint8_t si = 0; si < MAX_STYLES; ++si) {
const auto& s = styles_[si];
if (!s.present) continue;
size_t fixed = 0; // loaded once per family: interval/kern/lig tables
if (s.fullIntervals) fixed += s.header.intervalCount * sizeof(EpdUnicodeInterval);
if (s.bmpIntervals) fixed += s.header.intervalCount * sizeof(PerStyle::BmpInterval16);
if (s.kernLeftClasses) fixed += s.header.kernLeftEntryCount * sizeof(EpdKernClassEntry);
if (s.kernRightClasses) fixed += s.header.kernRightEntryCount * sizeof(EpdKernClassEntry);
if (s.ligaturePairs) fixed += s.header.ligaturePairCount * sizeof(EpdLigaturePair);
// kept-if-fits mini arenas: capacity (not count) is what stays resident
size_t mini = s.miniIntervalCapacity * sizeof(EpdUnicodeInterval) + s.miniGlyphCapacity * sizeof(EpdGlyph) +
s.miniBitmapCapacity + s.miniKernLeftCapacity * sizeof(EpdKernClassEntry) +
s.miniKernRightCapacity * sizeof(EpdKernClassEntry) + s.miniKernMatrixCapacity;
const size_t adv = advanceTableSize_[si] * sizeof(AdvanceEntry);
LOG_DBG("SDCF", "mem style%u: fixed=%u mini=%u adv=%u", si, (unsigned)fixed, (unsigned)mini, (unsigned)adv);
total += fixed + mini + adv;
}
size_t overflowBytes = 0;
for (uint32_t i = 0; i < overflowCount_; ++i) {
if (overflow_[i].bitmap) overflowBytes += overflow_[i].glyph.dataLength;
}
total += overflowBytes + overflowCount_ * sizeof(OverflowEntry);
return total;
}
bool SdCardFont::isOverflowGlyph(const EpdGlyph* glyph) const {
for (uint32_t i = 0; i < overflowCount_; i++) {
if (&overflow_[i].glyph == glyph) return true;
+29 -5
View File
@@ -47,9 +47,12 @@ class SdCardFont {
// Build a compact advance-only table for layout measurement.
// Extracts ALL unique codepoints from words (no MAX_PAGE_GLYPHS cap),
// batch-reads advanceX from SD, stores in a sorted per-style table.
// extraText: optional additional codepoints to warm in the same SD pass
// (e.g. shaped Arabic presentation forms the measurement path will look up).
// Returns number of codepoints not found in font coverage.
int buildAdvanceTable(const char* utf8Text, uint8_t styleMask = 0x0F);
int buildAdvanceTable(const std::vector<std::string>& words, bool includeHyphen, uint8_t styleMask = 0x0F);
int buildAdvanceTable(const char* utf8Text, uint8_t styleMask = 0x0F, const char* extraText = nullptr);
int buildAdvanceTable(const std::vector<std::string>& words, bool includeHyphen, uint8_t styleMask = 0x0F,
const char* extraText = nullptr);
// Look up advanceX for a codepoint from the advance table.
// Returns the 12.4 fixed-point advance, or 0 if not found.
@@ -101,6 +104,11 @@ class SdCardFont {
uint32_t uniqueGlyphs = 0;
uint32_t bitmapBytes = 0;
};
// MEMFIX-PORT: SD font resident-bytes audit; portable
// Log per-style resident heap (full tables + kept-if-fits mini arenas +
// advance tables + overflow bitmaps) and return the total in bytes. Pure
// accounting — no allocation, no state change.
size_t reportMemory() const;
void logStats(const char* label = "SDCF");
void resetStats();
const Stats& getStats() const { return stats_; }
@@ -140,11 +148,13 @@ class SdCardFont {
// Full intervals loaded from file (kept in RAM for codepoint lookup)
EpdUnicodeInterval* fullIntervals = nullptr;
EPD_PACKED_BEGIN
struct BmpInterval16 {
uint16_t first;
uint16_t last;
uint16_t offset;
} __attribute__((packed));
} EPD_PACKED_ATTR;
EPD_PACKED_END
static_assert(sizeof(BmpInterval16) == 6, "BmpInterval16 must remain compact");
BmpInterval16* bmpIntervals = nullptr;
bool intervalsAreBmp16 = false;
@@ -163,13 +173,22 @@ class SdCardFont {
// Stub EpdFontData returned when not prewarmed
EpdFontData stubData{};
// Mini EpdFontData built during prewarm
// Mini EpdFontData built during prewarm. Buffers are kept-if-fits across pages
// (capacities below track allocated sizes): freeing and reallocating slightly
// different sizes on every page turn was a primary heap fragmenter — each page's
// freed hole rarely fit the next page's need, so maxAlloc eroded all session.
// After a few pages the capacities converge on the book's max and page turns
// stop allocating entirely. freeStyleMiniData() still releases everything (and
// zeroes capacities) for style eviction / font unload.
EpdFontData miniData{};
EpdUnicodeInterval* miniIntervals = nullptr;
EpdGlyph* miniGlyphs = nullptr;
uint8_t* miniBitmap = nullptr;
uint32_t miniIntervalCount = 0;
uint32_t miniGlyphCount = 0;
uint32_t miniIntervalCapacity = 0;
uint32_t miniGlyphCapacity = 0;
uint32_t miniBitmapCapacity = 0;
// Per-page mini kern matrix (built by buildMiniKernMatrix on each full
// prewarm). miniKernLeftClasses/miniKernRightClasses map ONLY the codepoints
@@ -184,6 +203,10 @@ class SdCardFont {
uint8_t miniKernLeftClassCount = 0;
uint8_t miniKernRightClassCount = 0;
int8_t* miniKernMatrix = nullptr;
// Kept-if-fits capacities, same rationale as the mini glyph buffers above.
uint16_t miniKernLeftCapacity = 0;
uint16_t miniKernRightCapacity = 0;
uint32_t miniKernMatrixCapacity = 0;
// The EpdFont whose data pointer we manage
EpdFont epdFont{&stubData};
@@ -249,7 +272,8 @@ class SdCardFont {
int32_t findGlobalGlyphIndex(const PerStyle& s, uint32_t codepoint) const;
int fetchAdvancesForCodepoints(uint32_t* codepoints, uint32_t cpCount, uint8_t styleMask);
template <typename Iter>
int buildAdvanceTableRange(Iter begin, Iter end, bool includeSpace, bool includeHyphen, uint8_t styleMask);
int buildAdvanceTableRange(Iter begin, Iter end, bool includeSpace, bool includeHyphen, uint8_t styleMask,
const char* extraText = nullptr);
int prewarmStyle(uint8_t styleIdx, const uint32_t* codepoints, uint32_t cpCount, bool metadataOnly);
// Global helpers
+8
View File
@@ -88,6 +88,14 @@ void SdCardFontManager::unloadAll(GfxRenderer& renderer) {
loadedPointSize_ = 0;
}
size_t SdCardFontManager::reportMemory() const {
size_t total = 0;
for (const auto& lf : loaded_) {
if (lf.font) total += lf.font->reportMemory();
}
return total;
}
int SdCardFontManager::getFontId(const std::string& familyName) const {
if (familyName != loadedFamilyName_ || loaded_.empty()) return 0;
return loaded_.front().fontId;
+4
View File
@@ -32,6 +32,10 @@ class SdCardFontManager {
// Get name of currently loaded family (empty if none).
const std::string& currentFamilyName() const { return loadedFamilyName_; };
// MEMFIX-PORT: font manager audit passthrough; portable
// Sum of loaded fonts' resident heap (see SdCardFont::reportMemory).
size_t reportMemory() const;
// Point size that was actually loaded.
// 0 if nothing loaded.
uint8_t currentPointSize() const { return loadedPointSize_; };
File diff suppressed because it is too large Load Diff
@@ -6,6 +6,8 @@
!NotoSerif/**
!NotoSans/
!NotoSans/**
!NotoSansArabic/
!NotoSansArabic/**
!NotoSansHebrew/
!NotoSansHebrew/**
!OpenDyslexic/
@@ -0,0 +1,93 @@
Copyright 2022 The Noto Project Authors (https://github.com/notofonts/arabic)
This Font Software is licensed under the SIL Open Font License, Version 1.1.
This license is copied below, and is also available with a FAQ at:
https://openfontlicense.org
-----------------------------------------------------------
SIL OPEN FONT LICENSE Version 1.1 - 26 February 2007
-----------------------------------------------------------
PREAMBLE
The goals of the Open Font License (OFL) are to stimulate worldwide
development of collaborative font projects, to support the font creation
efforts of academic and linguistic communities, and to provide a free and
open framework in which fonts may be shared and improved in partnership
with others.
The OFL allows the licensed fonts to be used, studied, modified and
redistributed freely as long as they are not sold by themselves. The
fonts, including any derivative works, can be bundled, embedded,
redistributed and/or sold with any software provided that any reserved
names are not used by derivative works. The fonts and derivatives,
however, cannot be released under any other type of license. The
requirement for fonts to remain under this license does not apply
to any document created using the fonts or their derivatives.
DEFINITIONS
"Font Software" refers to the set of files released by the Copyright
Holder(s) under this license and clearly marked as such. This may
include source files, build scripts and documentation.
"Reserved Font Name" refers to any names specified as such after the
copyright statement(s).
"Original Version" refers to the collection of Font Software components as
distributed by the Copyright Holder(s).
"Modified Version" refers to any derivative made by adding to, deleting,
or substituting -- in part or in whole -- any of the components of the
Original Version, by changing formats or by porting the Font Software to a
new environment.
"Author" refers to any designer, engineer, programmer, technical
writer or other person who contributed to the Font Software.
PERMISSION & CONDITIONS
Permission is hereby granted, free of charge, to any person obtaining
a copy of the Font Software, to use, study, copy, merge, embed, modify,
redistribute, and sell modified and unmodified copies of the Font
Software, subject to the following conditions:
1) Neither the Font Software nor any of its individual components,
in Original or Modified Versions, may be sold by itself.
2) Original or Modified Versions of the Font Software may be bundled,
redistributed and/or sold with any software, provided that each copy
contains the above copyright notice and this license. These can be
included either as stand-alone text files, human-readable headers or
in the appropriate machine-readable metadata fields within text or
binary files as long as those fields can be easily viewed by the user.
3) No Modified Version of the Font Software may use the Reserved Font
Name(s) unless explicit written permission is granted by the corresponding
Copyright Holder. This restriction only applies to the primary font name as
presented to the users.
4) The name(s) of the Copyright Holder(s) or the Author(s) of the Font
Software shall not be used to promote, endorse or advertise any
Modified Version, except to acknowledge the contribution(s) of the
Copyright Holder(s) and the Author(s) or with their explicit written
permission.
5) The Font Software, modified or unmodified, in part or in whole,
must be distributed entirely under this license, and must not be
distributed under any other license. The requirement for fonts to
remain under this license does not apply to any document created
using the Font Software.
TERMINATION
This license becomes null and void if any of the above conditions are
not met.
DISCLAIMER
THE FONT SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT
OF COPYRIGHT, PATENT, TRADEMARK, OR OTHER RIGHT. IN NO EVENT SHALL THE
COPYRIGHT HOLDER BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
INCLUDING ANY GENERAL, SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL
DAMAGES, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
FROM, OUT OF THE USE OR INABILITY TO USE THE FONT SOFTWARE OR FROM
OTHER DEALINGS IN THE FONT SOFTWARE.
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+33 -3
View File
@@ -31,19 +31,48 @@ done
UI_FONT_SIZES=(10 12)
UI_FONT_STYLES=("Regular" "Bold")
# Arabic glyphs for UI text (menus, file browser titles). The built-in fonts
# must cover the *output* of MiniBidi's do_shape() — contextual presentation
# forms — not base letters, or shaped UI text silently drops glyphs.
# Curated for firmware-size budget: core Arabic (Presentation Forms-B,
# incl. the Lam-Alef ligature forms) plus the Farsi/Urdu extra letters'
# Presentation Forms-A blocks, the few characters shaping leaves at their
# base codepoint, Arabic punctuation, and both digit sets. No harakat and
# no Sindhi/Pashto/Kurdish forms — book text gets those from SD-card fonts.
ARABIC_INTERVALS=(
--additional-intervals 0x060C,0x060C # Arabic comma
--additional-intervals 0x061B,0x061B # Arabic semicolon
--additional-intervals 0x061F,0x061F # Arabic question mark
--additional-intervals 0x0621,0x0621 # hamza (non-joining, never shaped)
--additional-intervals 0x0640,0x0640 # tatweel
--additional-intervals 0x0660,0x0669 # Arabic-Indic digits
--additional-intervals 0x06BA,0x06BA # noon ghunna base (initial/medial keep base cp)
--additional-intervals 0x06D4,0x06D4 # Urdu full stop
--additional-intervals 0x06F0,0x06F9 # extended Arabic-Indic digits (Farsi/Urdu)
--additional-intervals 0xFB56,0xFB59 # peh (Farsi)
--additional-intervals 0xFB66,0xFB69 # tteh (Urdu)
--additional-intervals 0xFB7A,0xFB7D # tcheh (Farsi)
--additional-intervals 0xFB88,0xFB95 # ddal, jeh, rreh (Urdu), keheh, gaf (Farsi/Urdu)
--additional-intervals 0xFB9E,0xFB9F # noon ghunna isolated/final (Urdu)
--additional-intervals 0xFBA6,0xFBB1 # heh goal, heh doachashmee, yeh barree(+hamza) (Urdu)
--additional-intervals 0xFBFC,0xFBFF # farsi yeh (Farsi/Urdu)
--additional-intervals 0xFE80,0xFEFC # Presentation Forms-B: core Arabic + Lam-Alef
)
for size in ${UI_FONT_SIZES[@]}; do
for style in ${UI_FONT_STYLES[@]}; do
font_name="ubuntu_${size}_$(echo $style | tr '[:upper:]' '[:lower:]')"
font_path="../builtinFonts/source/Ubuntu/Ubuntu-${style}.ttf"
hebrew_path="../builtinFonts/source/NotoSansHebrew/NotoSansHebrew-${style}.ttf"
arabic_path="../builtinFonts/source/NotoSansArabic/NotoSansArabic-${style}.ttf"
# Ubuntu lacks the Latin Extended Additional block (U+1EA0-U+1EF9) used for
# Vietnamese tone marks. Append a Vietnamese-only Ubuntu cut so those glyphs
# are filled from it while every glyph Ubuntu already has stays unchanged
# (fontstack is ordered by descending priority).
viet_path="../builtinFonts/source/Ubuntu/Ubuntu-Vietnamese-${style}.ttf"
output_path="../builtinFonts/${font_name}.h"
python fontconvert.py $font_name $size $font_path $hebrew_path $viet_path \
--additional-intervals 0x05D0,0x05EA > $output_path
python fontconvert.py $font_name $size $font_path $hebrew_path $arabic_path $viet_path \
--additional-intervals 0x05D0,0x05EA "${ARABIC_INTERVALS[@]}" > $output_path
echo "Generated $output_path"
done
done
@@ -51,7 +80,8 @@ done
python fontconvert.py notosans_8_regular 8 \
../builtinFonts/source/NotoSans/NotoSans-Regular.ttf \
../builtinFonts/source/NotoSansHebrew/NotoSansHebrew-Regular.ttf \
--additional-intervals 0x05D0,0x05EA > ../builtinFonts/notosans_8_regular.h
../builtinFonts/source/NotoSansArabic/NotoSansArabic-Regular.ttf \
--additional-intervals 0x05D0,0x05EA "${ARABIC_INTERVALS[@]}" > ../builtinFonts/notosans_8_regular.h
echo ""
echo "Running compression verification..."
+19 -59
View File
@@ -153,18 +153,11 @@ bool Epub::parseTocNcxFile() const {
LOG_DBG("EBP", "Parsing toc ncx file: %s", tocNcxItem.c_str());
const auto tmpNcxPath = getCachePath() + "/toc.ncx";
HalFile tempNcxFile;
if (!Storage.openFileForWrite("EBP", tmpNcxPath, tempNcxFile)) {
size_t ncxSize;
if (!getItemSize(tocNcxItem, &ncxSize)) {
LOG_ERR("EBP", "Could not get size of toc ncx file");
return false;
}
readItemContentsToStream(tocNcxItem, tempNcxFile, 1024);
// Explicitly close() file before reopening for reading
tempNcxFile.close();
if (!Storage.openFileForRead("EBP", tmpNcxPath, tempNcxFile)) {
return false;
}
const auto ncxSize = tempNcxFile.size();
TocNcxParser ncxParser(contentBasePath, ncxSize, bookMetadataCache.get());
@@ -173,29 +166,13 @@ bool Epub::parseTocNcxFile() const {
return false;
}
const auto ncxBuffer = static_cast<uint8_t*>(malloc(1024));
if (!ncxBuffer) {
LOG_ERR("EBP", "Could not allocate memory for toc ncx parser");
// Stream the decompressed NCX straight into the parser instead of round-tripping
// through a temp file on the SD card (decompress -> write -> reopen -> reread -> delete).
if (!readItemContentsToStream(tocNcxItem, ncxParser, 1024)) {
LOG_ERR("EBP", "Could not read toc ncx file");
return false;
}
while (tempNcxFile.available()) {
const auto readSize = tempNcxFile.read(ncxBuffer, 1024);
if (readSize == 0) break;
const auto processedSize = ncxParser.write(ncxBuffer, readSize);
if (processedSize != readSize) {
LOG_ERR("EBP", "Could not process all toc ncx data");
free(ncxBuffer);
return false;
}
}
free(ncxBuffer);
// Explicitly close() file before calling Storage.remove()
tempNcxFile.close();
Storage.remove(tmpNcxPath.c_str());
LOG_DBG("EBP", "Parsed TOC items");
return true;
}
@@ -209,18 +186,11 @@ bool Epub::parseTocNavFile() const {
LOG_DBG("EBP", "Parsing toc nav file: %s", tocNavItem.c_str());
const auto tmpNavPath = getCachePath() + "/toc.nav";
HalFile tempNavFile;
if (!Storage.openFileForWrite("EBP", tmpNavPath, tempNavFile)) {
size_t navSize;
if (!getItemSize(tocNavItem, &navSize)) {
LOG_ERR("EBP", "Could not get size of toc nav file");
return false;
}
readItemContentsToStream(tocNavItem, tempNavFile, 1024);
// Explicitly close() file before reopening for reading
tempNavFile.close();
if (!Storage.openFileForRead("EBP", tmpNavPath, tempNavFile)) {
return false;
}
const auto navSize = tempNavFile.size();
// Note: We can't use `contentBasePath` here as the nav file may be in a different folder to the content.opf
// and the HTMLX nav file will have hrefs relative to itself
@@ -232,28 +202,13 @@ bool Epub::parseTocNavFile() const {
return false;
}
const auto navBuffer = static_cast<uint8_t*>(malloc(1024));
if (!navBuffer) {
LOG_ERR("EBP", "Could not allocate memory for toc nav parser");
// Stream the decompressed nav document straight into the parser instead of round-tripping
// through a temp file on the SD card (decompress -> write -> reopen -> reread -> delete).
if (!readItemContentsToStream(tocNavItem, navParser, 1024)) {
LOG_ERR("EBP", "Could not read toc nav file");
return false;
}
while (tempNavFile.available()) {
const auto readSize = tempNavFile.read(navBuffer, 1024);
const auto processedSize = navParser.write(navBuffer, readSize);
if (processedSize != readSize) {
LOG_ERR("EBP", "Could not process all toc nav data");
free(navBuffer);
return false;
}
}
free(navBuffer);
// Explicitly close() file before calling Storage.remove()
tempNavFile.close();
Storage.remove(tmpNavPath.c_str());
LOG_DBG("EBP", "Parsed TOC nav items");
return true;
}
@@ -396,6 +351,11 @@ bool Epub::load(const bool buildIfMissing, const bool skipLoadingCss) {
Storage.removeDir((cachePath + "/sections").c_str());
}
}
// Release the resolved CSS rule map: it is only needed transiently while building
// section caches, and createSectionFile reloads it from cache on demand. Holding it
// resident pins tens of KB for the whole reading session (more on warm resume into
// an already-cached chapter, where createSectionFile never runs to clear it).
cssParser->clear();
LOG_DBG("EBP", "Loaded ePub: %s", filepath.c_str());
return true;
}
+12
View File
@@ -44,6 +44,18 @@ class Epub {
}
~Epub() = default;
std::string& getBasePath() { return contentBasePath; }
// MEMFIX-PORT: epub resident-bytes audit accessor; portable
// Approximate resident heap of the open book (audit): path strings, the CSS
// file list, and the parsed stylesheet. BookMetadataCache is file-backed
// (counts + HalFile handles) and contributes little.
size_t residentBytes() const {
size_t total = sizeof(Epub) + tocNcxItem.capacity() + tocNavItem.capacity() + filepath.capacity() +
contentBasePath.capacity() + cachePath.capacity();
for (const auto& f : cssFiles) total += sizeof(f) + (f.capacity() > 15 ? f.capacity() : 0);
if (cssParser) total += cssParser->residentBytes();
return total;
}
size_t cssRuleCount() const { return cssParser ? cssParser->ruleCount() : 0; }
bool load(bool buildIfMissing = true, bool skipLoadingCss = false);
bool clearCache() const;
void setupCacheDir() const;
+129 -58
View File
@@ -1,5 +1,6 @@
#include "BookMetadataCache.h"
#include <BufferedFile.h>
#include <Logging.h>
#include <Serialization.h>
#include <Utf8.h>
@@ -14,6 +15,52 @@ constexpr uint8_t BOOK_CACHE_VERSION = 8; // v8: TOC/book titles stored NFC-com
constexpr char bookBinFile[] = "/book.bin";
constexpr char tmpSpineBinFile[] = "/spine.bin.tmp";
constexpr char tmpTocBinFile[] = "/toc.bin.tmp";
// Buffer size for the buildBookBin streams. 3 buffers x 4KB, transient (freed on
// return); 4KB = 8 SD sectors per transfer, enough to stop the sector-cache thrash.
constexpr size_t BUILD_IO_BUFFER_SIZE = 4096;
// Entry (de)serializers, templated so they run over HalFile and the Buffered*
// wrappers alike (two instantiations each -- a few hundred bytes of flash, in
// exchange for the build path streaming at SD speed instead of per-pod).
template <typename F>
uint32_t writeSpineEntryTo(F& file, const BookMetadataCache::SpineEntry& entry) {
const uint32_t pos = file.position();
serialization::writeString(file, entry.href);
serialization::writePod(file, entry.cumulativeSize);
serialization::writePod(file, entry.tocIndex);
return pos;
}
template <typename F>
uint32_t writeTocEntryTo(F& file, const BookMetadataCache::TocEntry& entry) {
const uint32_t pos = file.position();
serialization::writeString(file, entry.title);
serialization::writeString(file, entry.href);
serialization::writeString(file, entry.anchor);
serialization::writePod(file, entry.level);
serialization::writePod(file, entry.spineIndex);
return pos;
}
template <typename F>
BookMetadataCache::SpineEntry readSpineEntryFrom(F& file) {
BookMetadataCache::SpineEntry entry;
serialization::readString(file, entry.href);
serialization::readPod(file, entry.cumulativeSize);
serialization::readPod(file, entry.tocIndex);
return entry;
}
template <typename F>
BookMetadataCache::TocEntry readTocEntryFrom(F& file) {
BookMetadataCache::TocEntry entry;
serialization::readString(file, entry.title);
serialization::readString(file, entry.href);
serialization::readString(file, entry.anchor);
serialization::readPod(file, entry.level);
serialization::readPod(file, entry.spineIndex);
return entry;
}
} // namespace
/* ============= WRITING / BUILDING FUNCTIONS ================ */
@@ -30,13 +77,23 @@ bool BookMetadataCache::beginContentOpfPass() {
LOG_DBG("BMC", "Beginning content opf pass");
// Open spine file for writing
return Storage.openFileForWrite("BMC", cachePath + tmpSpineBinFile, spineFile);
if (!Storage.openFileForWrite("BMC", cachePath + tmpSpineBinFile, spineFile)) {
return false;
}
// Wrapper OOM is fine: createSpineEntry falls back to unbuffered writes.
passOut = makeUniqueNoThrow<serialization::BufferedFileWriter>(spineFile, BUILD_IO_BUFFER_SIZE);
return true;
}
bool BookMetadataCache::endContentOpfPass() {
const bool flushed = !passOut || passOut->flush();
passOut.reset();
// Explicit close() required: member variable persists beyond function scope
spineFile.close();
return true;
if (!flushed) {
LOG_ERR("BMC", "Failed writing spine tmp file");
}
return flushed;
}
bool BookMetadataCache::beginTocPass() {
@@ -74,10 +131,17 @@ bool BookMetadataCache::beginTocPass() {
useSpineHrefIndex = false;
}
// Wrapper OOM is fine: createTocEntry falls back to unbuffered writes.
passOut = makeUniqueNoThrow<serialization::BufferedFileWriter>(tocFile, BUILD_IO_BUFFER_SIZE);
return true;
}
bool BookMetadataCache::endTocPass() {
const bool flushed = !passOut || passOut->flush();
passOut.reset();
if (!flushed) {
LOG_ERR("BMC", "Failed writing toc tmp file");
}
// Explicit close() required: member variables persist beyond function scope
tocFile.close();
spineFile.close();
@@ -86,7 +150,7 @@ bool BookMetadataCache::endTocPass() {
spineHrefIndex.shrink_to_fit();
useSpineHrefIndex = false;
return true;
return flushed;
}
bool BookMetadataCache::endWrite() {
@@ -119,6 +183,14 @@ bool BookMetadataCache::buildBookBin(const std::string& epubPath, const BookMeta
return false;
}
// Buffered streams for the whole build: every access below is sequential per
// file, but interleaved ACROSS files, which thrashes SdFat's single shared
// sector cache when unbuffered (one 512B SD transaction per 4-byte pod --
// measured 31s for a 1,732-spine omnibus). Three 4KB buffers, freed on return.
serialization::BufferedFileWriter bookOut(bookFile, BUILD_IO_BUFFER_SIZE);
serialization::BufferedFileReader spineIn(spineFile, BUILD_IO_BUFFER_SIZE);
serialization::BufferedFileReader tocIn(tocFile, BUILD_IO_BUFFER_SIZE);
constexpr uint32_t headerASize =
sizeof(BOOK_CACHE_VERSION) + /* LUT Offset */ sizeof(uint32_t) + sizeof(spineCount) + sizeof(tocCount);
const uint32_t metadataSize = metadata.title.size() + metadata.author.size() + metadata.language.size() +
@@ -128,31 +200,34 @@ bool BookMetadataCache::buildBookBin(const std::string& epubPath, const BookMeta
const uint32_t lutOffset = headerASize + metadataSize;
// Header A
serialization::writePod(bookFile, BOOK_CACHE_VERSION);
serialization::writePod(bookFile, lutOffset);
serialization::writePod(bookFile, spineCount);
serialization::writePod(bookFile, tocCount);
serialization::writePod(bookOut, BOOK_CACHE_VERSION);
serialization::writePod(bookOut, lutOffset);
serialization::writePod(bookOut, spineCount);
serialization::writePod(bookOut, tocCount);
// Metadata
serialization::writeString(bookFile, metadata.title);
serialization::writeString(bookFile, metadata.author);
serialization::writeString(bookFile, metadata.language);
serialization::writeString(bookFile, metadata.coverItemHref);
serialization::writeString(bookFile, metadata.textReferenceHref);
serialization::writeString(bookOut, metadata.title);
serialization::writeString(bookOut, metadata.author);
serialization::writeString(bookOut, metadata.language);
serialization::writeString(bookOut, metadata.coverItemHref);
serialization::writeString(bookOut, metadata.textReferenceHref);
// Loop through spine entries, writing LUT positions
spineFile.seek(0);
spineIn.seek(0);
for (int i = 0; i < spineCount; i++) {
uint32_t pos = spineFile.position();
auto spineEntry = readSpineEntry(spineFile);
serialization::writePod(bookFile, pos + lutOffset + lutSize);
const uint32_t pos = spineIn.position();
readSpineEntryFrom(spineIn);
serialization::writePod(bookOut, pos + lutOffset + lutSize);
}
// Total size of the spine tmp file: entries land in book.bin after the toc LUT
// and the full spine block, so toc LUT positions are offset by it.
const auto spineBytes = static_cast<uint32_t>(spineIn.position());
// Loop through toc entries, writing LUT positions
tocFile.seek(0);
tocIn.seek(0);
for (int i = 0; i < tocCount; i++) {
uint32_t pos = tocFile.position();
auto tocEntry = readTocEntry(tocFile);
serialization::writePod(bookFile, pos + lutOffset + lutSize + static_cast<uint32_t>(spineFile.position()));
const uint32_t pos = tocIn.position();
readTocEntryFrom(tocIn);
serialization::writePod(bookOut, pos + lutOffset + lutSize + spineBytes);
}
// LUTs complete
@@ -160,9 +235,9 @@ bool BookMetadataCache::buildBookBin(const std::string& epubPath, const BookMeta
// Build spineIndex->tocIndex mapping in one pass (O(n) instead of O(n*m))
std::deque<int16_t> spineToTocIndex(spineCount, -1);
tocFile.seek(0);
tocIn.seek(0);
for (int j = 0; j < tocCount; j++) {
auto tocEntry = readTocEntry(tocFile);
auto tocEntry = readTocEntryFrom(tocIn);
if (tocEntry.spineIndex >= 0 && tocEntry.spineIndex < spineCount) {
if (spineToTocIndex[tocEntry.spineIndex] == -1) {
spineToTocIndex[tocEntry.spineIndex] = static_cast<int16_t>(j);
@@ -197,9 +272,9 @@ bool BookMetadataCache::buildBookBin(const std::string& epubPath, const BookMeta
std::deque<ZipFile::SizeTarget> targets;
targets.resize(spineCount);
spineFile.seek(0);
spineIn.seek(0);
for (int i = 0; i < spineCount; i++) {
auto entry = readSpineEntry(spineFile);
auto entry = readSpineEntryFrom(spineIn);
std::string path = FsHelpers::normalisePath(entry.href);
ZipFile::SizeTarget t;
@@ -224,10 +299,10 @@ bool BookMetadataCache::buildBookBin(const std::string& epubPath, const BookMeta
}
uint32_t cumSize = 0;
spineFile.seek(0);
spineIn.seek(0);
int lastSpineTocIndex = -1;
for (int i = 0; i < spineCount; i++) {
auto spineEntry = readSpineEntry(spineFile);
auto spineEntry = readSpineEntryFrom(spineIn);
spineEntry.tocIndex = spineToTocIndex[i];
@@ -260,23 +335,33 @@ bool BookMetadataCache::buildBookBin(const std::string& epubPath, const BookMeta
spineEntry.cumulativeSize = cumSize;
// Write out spine data to book.bin
writeSpineEntry(bookFile, spineEntry);
writeSpineEntryTo(bookOut, spineEntry);
}
// Close opened zip file
zip.close();
// Loop through toc entries from toc file writing to book.bin
tocFile.seek(0);
tocIn.seek(0);
for (int i = 0; i < tocCount; i++) {
auto tocEntry = readTocEntry(tocFile);
writeTocEntry(bookFile, tocEntry);
auto tocEntry = readTocEntryFrom(tocIn);
writeTocEntryTo(bookOut, tocEntry);
}
const bool written = bookOut.flush();
// Explicit close() required: member variables persist beyond function scope
bookFile.close();
spineFile.close();
tocFile.close();
if (!written) {
// A short write (card full/removed) would leave a truncated book.bin that
// still passes the version check on load; remove it so the next open rebuilds.
LOG_ERR("BMC", "Failed writing book.bin, removing truncated file");
Storage.remove((cachePath + bookBinFile).c_str());
return false;
}
LOG_DBG("BMC", "Successfully built book.bin");
return true;
}
@@ -294,21 +379,11 @@ bool BookMetadataCache::cleanupTmpFiles() const {
}
uint32_t BookMetadataCache::writeSpineEntry(HalFile& file, const SpineEntry& entry) const {
const uint32_t pos = file.position();
serialization::writeString(file, entry.href);
serialization::writePod(file, entry.cumulativeSize);
serialization::writePod(file, entry.tocIndex);
return pos;
return writeSpineEntryTo(file, entry);
}
uint32_t BookMetadataCache::writeTocEntry(HalFile& file, const TocEntry& entry) const {
const uint32_t pos = file.position();
serialization::writeString(file, entry.title);
serialization::writeString(file, entry.href);
serialization::writeString(file, entry.anchor);
serialization::writePod(file, entry.level);
serialization::writePod(file, entry.spineIndex);
return pos;
return writeTocEntryTo(file, entry);
}
// Note: for the LUT to be accurate, this **MUST** be called for all spine items before `addTocEntry` is ever called
@@ -320,7 +395,11 @@ void BookMetadataCache::createSpineEntry(const std::string& href) {
}
const SpineEntry entry(href, 0, -1);
writeSpineEntry(spineFile, entry);
if (passOut) {
writeSpineEntryTo(*passOut, entry);
} else {
writeSpineEntry(spineFile, entry);
}
spineCount++;
}
@@ -368,7 +447,11 @@ void BookMetadataCache::createTocEntry(const std::string& title, const std::stri
// Compose the title to NFC at index time so the cache stores precomposed glyphs;
// device fonts have no combining-mark positioning, so NFD titles render broken.
const TocEntry entry(utf8ComposeNfc(title), href, anchor, level, spineIndex);
writeTocEntry(tocFile, entry);
if (passOut) {
writeTocEntryTo(*passOut, entry);
} else {
writeTocEntry(tocFile, entry);
}
tocCount++;
}
@@ -442,19 +525,7 @@ BookMetadataCache::TocEntry BookMetadataCache::getTocEntry(const int index) {
}
BookMetadataCache::SpineEntry BookMetadataCache::readSpineEntry(HalFile& file) const {
SpineEntry entry;
serialization::readString(file, entry.href);
serialization::readPod(file, entry.cumulativeSize);
serialization::readPod(file, entry.tocIndex);
return entry;
return readSpineEntryFrom(file);
}
BookMetadataCache::TocEntry BookMetadataCache::readTocEntry(HalFile& file) const {
TocEntry entry;
serialization::readString(file, entry.title);
serialization::readString(file, entry.href);
serialization::readString(file, entry.anchor);
serialization::readPod(file, entry.level);
serialization::readPod(file, entry.spineIndex);
return entry;
}
BookMetadataCache::TocEntry BookMetadataCache::readTocEntry(HalFile& file) const { return readTocEntryFrom(file); }
+7
View File
@@ -1,9 +1,11 @@
#pragma once
#include <BufferedFile.h>
#include <HalStorage.h>
#include <algorithm>
#include <deque>
#include <memory>
#include <string>
class BookMetadataCache {
@@ -54,6 +56,11 @@ class BookMetadataCache {
// Temp file handles during build
HalFile spineFile;
HalFile tocFile;
// Buffers the per-entry tmp-file writes during the OPF/TOC passes: those
// writes interleave with zip-inflate SD reads, and unbuffered they thrash
// SdFat's shared sector cache (one 512B transaction per 4-byte pod). One
// wrapper serves whichever pass is active (spine, then toc).
std::unique_ptr<serialization::BufferedFileWriter> passOut;
// Index for fast href→spineIndex lookup (used only for large EPUBs)
struct SpineHrefIndexEntry {
+36 -1
View File
@@ -39,7 +39,17 @@ std::unique_ptr<PageLine> PageLine::deserialize(HalFile& file) {
serialization::readPod(file, yPos);
auto tb = TextBlock::deserialize(file);
return std::unique_ptr<PageLine>(new PageLine(std::move(tb), xPos, yPos));
if (!tb) {
LOG_ERR("PGE", "Deserialization failed: null TextBlock");
return nullptr;
}
auto* line = new (std::nothrow) PageLine(std::move(tb), xPos, yPos);
if (!line) {
LOG_ERR("PGE", "Deserialization failed: could not allocate PageLine");
return nullptr;
}
return std::unique_ptr<PageLine>(line);
}
void PageImage::render(GfxRenderer& renderer, const int fontId, const int xOffset, const int yOffset) {
@@ -47,6 +57,10 @@ void PageImage::render(GfxRenderer& renderer, const int fontId, const int xOffse
imageBlock->render(renderer, xPos + xOffset, yPos + yOffset);
}
void PageImage::renderPlaceholder(GfxRenderer& renderer, const int xOffset, const int yOffset) const {
imageBlock->renderPlaceholder(renderer, xPos + xOffset, yPos + yOffset);
}
bool PageImage::serialize(HalFile& file) {
serialization::writePod(file, xPos);
serialization::writePod(file, yPos);
@@ -115,6 +129,17 @@ void Page::renderImages(GfxRenderer& renderer, const int fontId, const int xOffs
[](const PageElement& element) { return element.getTag() == TAG_PageImage; });
}
void Page::renderWithImagePlaceholders(GfxRenderer& renderer, const int fontId, const int xOffset,
const int yOffset) const {
for (const auto& element : elements) {
if (element->getTag() == TAG_PageImage) {
static_cast<const PageImage&>(*element).renderPlaceholder(renderer, xOffset, yOffset);
} else {
element->render(renderer, fontId, xOffset, yOffset);
}
}
}
bool Page::serialize(HalFile& file) const {
const uint16_t count = elements.size();
serialization::writePod(file, count);
@@ -148,6 +173,10 @@ std::unique_ptr<Page> Page::deserialize(HalFile& file) {
uint16_t count;
serialization::readPod(file, count);
// Reserve up front: growth-by-doubling needs old + new capacity live at once and
// reallocates repeatedly — a field crash (bad_alloc -> abort under -fno-exceptions)
// hit exactly this append path on a heavily fragmented heap.
page->elements.reserve(count);
for (uint16_t i = 0; i < count; i++) {
uint8_t tag;
@@ -155,9 +184,15 @@ std::unique_ptr<Page> Page::deserialize(HalFile& file) {
if (tag == TAG_PageLine) {
auto pl = PageLine::deserialize(file);
if (!pl) {
return nullptr;
}
page->elements.push_back(std::move(pl));
} else if (tag == TAG_PageImage) {
auto pi = PageImage::deserialize(file);
if (!pi) {
return nullptr;
}
page->elements.push_back(std::move(pi));
} else if (tag == TAG_PageHorizontalRule) {
auto rule = PageHorizontalRule::deserialize(file);
+9
View File
@@ -50,6 +50,7 @@ class PageImage final : public PageElement {
PageImage(std::shared_ptr<ImageBlock> block, const int16_t xPos, const int16_t yPos)
: PageElement(xPos, yPos), imageBlock(std::move(block)) {}
void render(GfxRenderer& renderer, int fontId, int xOffset, int yOffset) override;
void renderPlaceholder(GfxRenderer& renderer, int xOffset, int yOffset) const;
bool serialize(HalFile& file) override;
PageElementTag getTag() const override { return TAG_PageImage; }
static std::unique_ptr<PageImage> deserialize(HalFile& file);
@@ -89,6 +90,7 @@ class Page {
void render(GfxRenderer& renderer, int fontId, int xOffset, int yOffset) const;
void renderImages(GfxRenderer& renderer, int fontId, int xOffset, int yOffset) const;
void renderWithImagePlaceholders(GfxRenderer& renderer, int fontId, int xOffset, int yOffset) const;
bool serialize(HalFile& file) const;
static std::unique_ptr<Page> deserialize(HalFile& file);
@@ -98,6 +100,13 @@ class Page {
[](const std::shared_ptr<PageElement>& el) { return el->getTag() == TAG_PageImage; });
}
bool hasImagesNeedingDecode() const {
return std::any_of(elements.begin(), elements.end(), [](const std::shared_ptr<PageElement>& element) {
return element->getTag() == TAG_PageImage &&
static_cast<const PageImage&>(*element).getImageBlock().needsDecode();
});
}
// Get bounding box of all images on the page (union of image rects)
// Returns false if no images. Coordinates are relative to page origin.
bool getImageBoundingBox(int16_t& outX, int16_t& outY, int16_t& outW, int16_t& outH) const {
+15 -4
View File
@@ -2,6 +2,7 @@
#include <BidiUtils.h>
#include <GfxRenderer.h>
#include <Logging.h>
#include <Utf8.h>
#include <algorithm>
@@ -1133,8 +1134,14 @@ void ParsedText::extractLine(const size_t breakIndex, const int pageWidth, const
}
if (!lineHasFocusSplit) {
processLine(std::make_shared<TextBlock>(std::move(lineWords), std::move(lineXPos), std::move(lineWordStyles),
std::vector<uint8_t>{}, std::vector<uint16_t>{}, blockStyle));
// TextBlock flattens the vectors into its arena; they stay owned here and die at return.
auto block = std::make_shared<TextBlock>(lineWords, lineXPos, lineWordStyles, std::vector<uint8_t>{},
std::vector<uint16_t>{}, blockStyle);
if (!block->valid()) {
LOG_ERR("PTX", "Dropping line: TextBlock arena allocation failed");
return;
}
processLine(std::move(block));
return;
}
@@ -1179,6 +1186,10 @@ void ParsedText::extractLine(const size_t breakIndex, const int pageWidth, const
}
}
processLine(std::make_shared<TextBlock>(std::move(outWords), std::move(outXPos), std::move(outStyles),
std::move(outBoundaries), std::move(outSuffixX), blockStyle));
auto block = std::make_shared<TextBlock>(outWords, outXPos, outStyles, outBoundaries, outSuffixX, blockStyle);
if (!block->valid()) {
LOG_ERR("PTX", "Dropping line: TextBlock arena allocation failed");
return;
}
processLine(std::move(block));
}
+14 -5
View File
@@ -12,7 +12,12 @@
namespace {
// v28: text decoration bits now include line-through in serialized wordStyles.
constexpr uint8_t SECTION_FILE_VERSION = 28;
// v29: TextBlock word data stored as one flat arena (offset table + NUL-terminated
// text blob) instead of length-prefixed strings and per-field arrays.
// v30: Arabic shaping changed both drawing and measurement (getTextAdvanceX now
// measures the shaped visual text); cached word positions from v29 no longer
// match what drawText renders.
constexpr uint8_t SECTION_FILE_VERSION = 30;
// 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
@@ -25,7 +30,11 @@ constexpr uint8_t SECTION_FILE_INCOMPLETE_VERSION = 0;
// 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;
// MUST change in lockstep with SECTION_FILE_VERSION: the sentinel IS the partial's
// format version, so a stale-format partial otherwise passes the header check and
// only fails (noisily, via the block-decode error path) when a page is loaded.
// Derived so the pairing can't be forgotten: 0xFE for v28, 0xFD for v29, ...
constexpr uint8_t SECTION_FILE_PARTIAL_VERSION = 0xFE - (SECTION_FILE_VERSION - 28);
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) +
@@ -733,10 +742,10 @@ std::string Section::getTextFromSectionFile() {
if (el->getTag() == TAG_PageLine) {
const auto& line = static_cast<const PageLine&>(*el);
if (line.getBlock()) {
const auto& words = line.getBlock()->getWords();
for (const auto& w : words) {
const auto& block = *line.getBlock();
for (uint16_t i = 0; i < block.wordCount(); i++) {
if (!fullText.empty()) fullText += " ";
fullText += w;
fullText += block.wordText(i);
}
}
}
+15
View File
@@ -72,6 +72,7 @@ class Section {
// 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.
@@ -131,6 +132,20 @@ class Section {
// (covers finalized sections and partials from a previous session).
std::optional<uint16_t> findAnchor(const std::string& anchor) const;
// MEMFIX-PORT: section resident-bytes audit accessor; portable
// Approximate resident heap for the audit log. Steady state (no build) a
// Section holds little beyond itself; during a build the page LUT and path
// strings dominate (the parser's internal footprint is not walked here).
size_t residentBytes() const {
size_t total = sizeof(Section) + filePath.capacity();
if (build_) {
total += sizeof(BuildContext) + build_->lut.capacity() * sizeof(PageLutEntry) +
build_->parsePath.capacity() + build_->contentBase.capacity() + build_->imageBasePath.capacity() +
build_->htmlPath.capacity() + build_->tmpHtmlPath.capacity();
}
return total;
}
// 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;
+8
View File
@@ -32,6 +32,11 @@ struct BlockStyle {
bool isRtl = false; // true if resolved direction is RTL
bool directionDefined = false; // true if direction was explicitly set in CSS/HTML
// Set when this block was created by a <br> element. Used by startNewTextBlock to inject
// a full line-height gap when the <br> block stays empty (section-break use case).
// NOT propagated through getCombinedBlockStyle so it can't leak into sibling blocks.
bool fromBrElement = false;
// Combined insets (margin + padding)
[[nodiscard]] int16_t leftInset() const { return marginLeft + paddingLeft; }
[[nodiscard]] int16_t rightInset() const { return marginRight + paddingRight; }
@@ -92,6 +97,9 @@ struct BlockStyle {
result.directionDefined = true;
}
// fromBrElement is consumed by startNewTextBlock when an empty <br> block
// is merged with the following paragraph; never propagate it further.
result.fromBrElement = false;
return result;
}
+87 -10
View File
@@ -5,6 +5,8 @@
#include <Logging.h>
#include <Serialization.h>
#include <cstdlib>
#include "Epub/converters/DirectPixelWriter.h"
#include "Epub/converters/ImageDecoderFactory.h"
@@ -29,6 +31,54 @@ std::string getCachePath(const std::string& imagePath) {
return imagePath + ".pxc";
}
bool readValidCacheHeader(HalFile& cacheFile, const int expectedWidth, const int expectedHeight, uint16_t& cachedWidth,
uint16_t& cachedHeight) {
if (cacheFile.read(&cachedWidth, 2) != 2 || cacheFile.read(&cachedHeight, 2) != 2) {
return false;
}
const int widthDiff = abs(cachedWidth - expectedWidth);
const int heightDiff = abs(cachedHeight - expectedHeight);
if (widthDiff > 1 || heightDiff > 1) {
return false;
}
const size_t bytesPerRow = (cachedWidth + 3) / 4;
const size_t expectedSize = 4 + bytesPerRow * cachedHeight;
return cacheFile.size() >= expectedSize;
}
// Pages are deserialized afresh on each visit. Keep a bounded, allocation-free
// record so an image that failed renders its placeholder directly for the rest
// of the reader session instead of paying another placeholder refresh and
// decode. The reader clears this on entry so transient memory/storage failures
// are retried.
constexpr size_t MAX_SESSION_IMAGE_FAILURES = 16;
uint64_t failedImageHashes[MAX_SESSION_IMAGE_FAILURES];
size_t failedImageCount = 0;
uint64_t imagePathHash(const std::string& path) {
uint64_t hash = 14695981039346656037ull;
for (const char c : path) {
hash ^= static_cast<uint8_t>(c);
hash *= 1099511628211ull;
}
return hash;
}
bool imageFailedThisSession(const std::string& path) {
const uint64_t hash = imagePathHash(path);
for (size_t i = 0; i < failedImageCount; i++) {
if (failedImageHashes[i] == hash) return true;
}
return false;
}
void rememberImageFailure(const std::string& path) {
if (failedImageCount == MAX_SESSION_IMAGE_FAILURES || imageFailedThisSession(path)) return;
failedImageHashes[failedImageCount++] = imagePathHash(path);
}
bool renderFromCache(GfxRenderer& renderer, const std::string& cachePath, int x, int y, int expectedWidth,
int expectedHeight) {
HalFile cacheFile;
@@ -37,16 +87,8 @@ bool renderFromCache(GfxRenderer& renderer, const std::string& cachePath, int x,
}
uint16_t cachedWidth, cachedHeight;
if (cacheFile.read(&cachedWidth, 2) != 2 || cacheFile.read(&cachedHeight, 2) != 2) {
return false;
}
// Verify dimensions are close (allow 1 pixel tolerance for rounding differences)
int widthDiff = abs(cachedWidth - expectedWidth);
int heightDiff = abs(cachedHeight - expectedHeight);
if (widthDiff > 1 || heightDiff > 1) {
LOG_ERR("IMG", "Cache dimension mismatch: %dx%d vs %dx%d", cachedWidth, cachedHeight, expectedWidth,
expectedHeight);
if (!readValidCacheHeader(cacheFile, expectedWidth, expectedHeight, cachedWidth, cachedHeight)) {
LOG_ERR("IMG", "Invalid image cache: %s", cachePath.c_str());
return false;
}
@@ -119,6 +161,28 @@ bool renderFromCache(GfxRenderer& renderer, const std::string& cachePath, int x,
} // namespace
bool ImageBlock::hasValidCache() const {
const auto cachePath = getCachePath(imagePath);
HalFile cacheFile;
if (!Storage.openFileForRead("IMG", cachePath, cacheFile)) {
return false;
}
uint16_t cachedWidth, cachedHeight;
return readValidCacheHeader(cacheFile, width, height, cachedWidth, cachedHeight);
}
bool ImageBlock::needsDecode() const { return !imageFailedThisSession(imagePath) && !hasValidCache(); }
void ImageBlock::clearSessionRenderFailures() { failedImageCount = 0; }
void ImageBlock::renderPlaceholder(GfxRenderer& renderer, const int x, const int y) const {
renderer.fillRect(x, y, width, height, true);
if (width > 2 && height > 2) {
renderer.fillRect(x + 1, y + 1, width - 2, height - 2, false);
}
}
void ImageBlock::render(GfxRenderer& renderer, const int x, const int y) {
// The font-prewarm scan pass only accumulates glyphs; an image contributes
// none, and its DirectPixelWriter output bypasses the renderer's scan-mode
@@ -150,6 +214,11 @@ void ImageBlock::render(GfxRenderer& renderer, const int x, const int y) {
return;
}
if (imageFailedThisSession(imagePath)) {
renderPlaceholder(renderer, x, y);
return;
}
// Try to render from cache first
std::string cachePath = getCachePath(imagePath);
if (renderFromCache(renderer, cachePath, x, y, width, height)) {
@@ -161,6 +230,8 @@ void ImageBlock::render(GfxRenderer& renderer, const int x, const int y) {
HalFile file;
if (!Storage.openFileForRead("IMG", imagePath, file)) {
LOG_ERR("IMG", "Image file not found: %s", imagePath.c_str());
rememberImageFailure(imagePath);
renderPlaceholder(renderer, x, y);
return;
}
size_t fileSize = file.size();
@@ -168,6 +239,8 @@ void ImageBlock::render(GfxRenderer& renderer, const int x, const int y) {
if (fileSize == 0) {
LOG_ERR("IMG", "Image file is empty: %s", imagePath.c_str());
rememberImageFailure(imagePath);
renderPlaceholder(renderer, x, y);
return;
}
@@ -187,6 +260,8 @@ void ImageBlock::render(GfxRenderer& renderer, const int x, const int y) {
ImageToFramebufferDecoder* decoder = ImageDecoderFactory::getDecoder(imagePath);
if (!decoder) {
LOG_ERR("IMG", "No decoder found for image: %s", imagePath.c_str());
rememberImageFailure(imagePath);
renderPlaceholder(renderer, x, y);
return;
}
@@ -195,6 +270,8 @@ void ImageBlock::render(GfxRenderer& renderer, const int x, const int y) {
bool success = decoder->decodeToFramebuffer(imagePath, renderer, config);
if (!success) {
LOG_ERR("IMG", "Failed to decode image: %s", imagePath.c_str());
rememberImageFailure(imagePath);
renderPlaceholder(renderer, x, y);
return;
}
+4
View File
@@ -16,6 +16,10 @@ class ImageBlock final : public Block {
int16_t getHeight() const { return height; }
bool imageExists() const;
bool hasValidCache() const;
bool needsDecode() const;
void renderPlaceholder(GfxRenderer& renderer, int x, int y) const;
static void clearSessionRenderFailures();
BlockType getType() override { return IMAGE_BLOCK; }
bool isEmpty() override { return false; }
+182 -71
View File
@@ -3,19 +3,114 @@
#include <BidiUtils.h>
#include <GfxRenderer.h>
#include <Logging.h>
#include <Memory.h>
#include <Serialization.h>
#include <cstring>
void TextBlock::render(const GfxRenderer& renderer, const int fontId, const int x, const int y) const {
size_t TextBlock::arenaSize(const uint16_t wordCount, const bool hasFocus, const uint16_t textBytes) {
// Layout documented in TextBlock.h: 16-bit arrays first, then 8-bit arrays, then text.
size_t size = static_cast<size_t>(wordCount) * (sizeof(uint16_t) + sizeof(int16_t) + sizeof(uint8_t));
if (hasFocus) {
size += static_cast<size_t>(wordCount) * (sizeof(uint16_t) + sizeof(uint8_t));
}
return size + textBytes;
}
void TextBlock::bindArenaPointers() {
uint8_t* base = arena.get();
const size_t wc = numWords;
textOffArr = reinterpret_cast<const uint16_t*>(base);
xposArr = reinterpret_cast<const int16_t*>(base + wc * 2);
size_t off = wc * 4;
if (focusPresent) {
focusSuffixXArr = reinterpret_cast<const uint16_t*>(base + off);
off += wc * 2;
}
stylesArr = base + off;
off += wc;
if (focusPresent) {
focusBoundaryArr = base + off;
off += wc;
}
textArr = reinterpret_cast<const char*>(base + off);
}
TextBlock::TextBlock(const std::vector<std::string>& words, const std::vector<int16_t>& wordXpos,
const std::vector<EpdFontFamily::Style>& wordStyles, const std::vector<uint8_t>& focusBoundary,
const std::vector<uint16_t>& focusSuffixX, const BlockStyle& blockStyle)
: blockStyle(blockStyle) {
// Focus annotations are optional: empty vectors mean no word in this block has a split.
// When present, they must be sized in lockstep with words[].
const bool hasFocus = !wordFocusBoundary.empty();
if (words.size() != wordXpos.size() || words.size() != wordStyles.size() ||
(hasFocus && (words.size() != wordFocusBoundary.size() || words.size() != wordFocusSuffixX.size()))) {
LOG_ERR("TXB", "Render skipped: size mismatch (words=%u, xpos=%u, styles=%u, boundary=%u, suffixX=%u)\n",
(uint32_t)words.size(), (uint32_t)wordXpos.size(), (uint32_t)wordStyles.size(),
(uint32_t)wordFocusBoundary.size(), (uint32_t)wordFocusSuffixX.size());
const bool hasFocus = !focusBoundary.empty();
if (words.size() != wordXpos.size() || words.size() != wordStyles.size() || words.size() > 10000 ||
(hasFocus && (words.size() != focusBoundary.size() || words.size() != focusSuffixX.size()))) {
LOG_ERR("TXB", "Construction failed: size mismatch (words=%u, xpos=%u, styles=%u, boundary=%u, suffixX=%u)",
static_cast<uint32_t>(words.size()), static_cast<uint32_t>(wordXpos.size()),
static_cast<uint32_t>(wordStyles.size()), static_cast<uint32_t>(focusBoundary.size()),
static_cast<uint32_t>(focusSuffixX.size()));
isValid = false;
return;
}
numWords = static_cast<uint16_t>(words.size());
focusPresent = hasFocus;
if (numWords == 0) {
return; // valid empty block, no arena
}
// Pass 1: total text size, one NUL per word. A line is at most a physical
// row of the page, so uint16_t offsets are ample; reject anything larger.
size_t totalText = 0;
for (const auto& w : words) totalText += w.size() + 1;
if (totalText > UINT16_MAX) {
LOG_ERR("TXB", "Construction failed: text size %u exceeds arena limit", static_cast<uint32_t>(totalText));
numWords = 0;
focusPresent = false;
isValid = false;
return;
}
textBytes = static_cast<uint16_t>(totalText);
const size_t size = arenaSize(numWords, focusPresent, textBytes);
arena = makeUniqueNoThrow<uint8_t[]>(size);
if (!arena) {
LOG_ERR("TXB", "OOM: arena %u bytes", static_cast<uint32_t>(size));
numWords = 0;
textBytes = 0;
focusPresent = false;
isValid = false;
return;
}
bindArenaPointers();
// Pass 2: fill. Mutable aliases of the const views bound above.
auto* textOff = const_cast<uint16_t*>(textOffArr);
auto* xpos = const_cast<int16_t*>(xposArr);
auto* styles = const_cast<uint8_t*>(stylesArr);
auto* text = const_cast<char*>(textArr);
uint16_t off = 0;
for (uint16_t i = 0; i < numWords; i++) {
textOff[i] = off;
xpos[i] = wordXpos[i];
styles[i] = static_cast<uint8_t>(wordStyles[i]);
memcpy(text + off, words[i].data(), words[i].size());
off += static_cast<uint16_t>(words[i].size());
text[off++] = '\0';
}
if (focusPresent) {
auto* suffixX = const_cast<uint16_t*>(focusSuffixXArr);
auto* boundary = const_cast<uint8_t*>(focusBoundaryArr);
for (uint16_t i = 0; i < numWords; i++) {
suffixX[i] = focusSuffixX[i];
boundary[i] = focusBoundary[i];
}
}
}
void TextBlock::render(const GfxRenderer& renderer, const int fontId, const int x, const int y) const {
if (!isValid) {
LOG_ERR("TXB", "Render skipped: invalid block");
return;
}
@@ -54,12 +149,13 @@ void TextBlock::render(const GfxRenderer& renderer, const int fontId, const int
}
};
for (size_t i = 0; i < words.size(); i++) {
const int wordX = wordXpos[i] + x;
const EpdFontFamily::Style currentStyle = wordStyles[i];
const auto baseDir = static_cast<BidiUtils::BidiBaseDir>(
BidiUtils::detectParagraphLevel(words[i].c_str(), blockStyle.isRtl ? 1 : 0));
const uint8_t boundary = hasFocus ? wordFocusBoundary[i] : 0;
for (uint16_t i = 0; i < numWords; i++) {
const char* word = wordText(i);
const int wordX = xposArr[i] + x;
const EpdFontFamily::Style currentStyle = wordStyle(i);
const auto baseDir =
static_cast<BidiUtils::BidiBaseDir>(BidiUtils::detectParagraphLevel(word, blockStyle.isRtl ? 1 : 0));
const uint8_t boundary = focusBoundary(i);
// SUP/SUB shift the baseline passed to drawText; the glyph is also scaled 50% inside
// drawText, so these offsets are chosen relative to the full-size ascender:
@@ -82,14 +178,15 @@ void TextBlock::render(const GfxRenderer& renderer, const int fontId, const int
static_assert(sizeof(boldBuf) >= MAX_FOCUS_PREFIX_BYTES,
"boldBuf too small for max focus prefix (9 codepoints * 4 UTF-8 bytes + null)");
const auto boldStyle = static_cast<EpdFontFamily::Style>(currentStyle | EpdFontFamily::BOLD);
const size_t boldLen = std::min<size_t>({static_cast<size_t>(boundary), words[i].size(), sizeof(boldBuf) - 1});
memcpy(boldBuf, words[i].c_str(), boldLen);
const size_t boldLen =
std::min<size_t>({static_cast<size_t>(boundary), static_cast<size_t>(wordTextLen(i)), sizeof(boldBuf) - 1});
memcpy(boldBuf, word, boldLen);
boldBuf[boldLen] = '\0';
renderer.drawText(fontId, wordX, wordY, boldBuf, true, boldStyle, baseDir);
const int suffixX = wordX + wordFocusSuffixX[i];
renderer.drawText(fontId, suffixX, wordY, words[i].c_str() + boldLen, true, currentStyle, baseDir);
const int suffixX = wordX + focusSuffixXArr[i];
renderer.drawText(fontId, suffixX, wordY, word + boldLen, true, currentStyle, baseDir);
} else {
renderer.drawText(fontId, wordX, wordY, words[i].c_str(), true, currentStyle, baseDir);
renderer.drawText(fontId, wordX, wordY, word, true, currentStyle, baseDir);
}
if (scanning) {
@@ -97,18 +194,17 @@ void TextBlock::render(const GfxRenderer& renderer, const int fontId, const int
}
if (EpdFontFamily::hasTextDecoration(currentStyle)) {
const std::string& w = words[i];
int lineStartX = wordX;
int lineWidth = renderer.getTextWidth(fontId, w.c_str(), currentStyle, baseDir);
int lineWidth = renderer.getTextWidth(fontId, word, currentStyle, baseDir);
if ((currentStyle & (EpdFontFamily::SUP | EpdFontFamily::SUB)) != 0) {
lineWidth = (lineWidth + 1) / 2;
}
// 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;
if (wordTextLen(i) >= 3 && static_cast<uint8_t>(word[0]) == 0xE2 && static_cast<uint8_t>(word[1]) == 0x80 &&
static_cast<uint8_t>(word[2]) == 0x83) {
const char* visibleText = word + 3;
lineStartX += renderer.getTextAdvanceX(fontId, "\xe2\x80\x83", currentStyle);
lineWidth = renderer.getTextWidth(fontId, visibleText, currentStyle, baseDir);
if ((currentStyle & (EpdFontFamily::SUP | EpdFontFamily::SUB)) != 0) {
@@ -140,29 +236,23 @@ void TextBlock::render(const GfxRenderer& renderer, const int fontId, const int
}
bool TextBlock::serialize(HalFile& file) const {
// Focus annotations are optional; vectors are either empty (no splits in this block)
// or sized in lockstep with words[].
const bool hasFocus = !wordFocusBoundary.empty();
if (words.size() != wordXpos.size() || words.size() != wordStyles.size() ||
(hasFocus && (words.size() != wordFocusBoundary.size() || words.size() != wordFocusSuffixX.size()))) {
LOG_ERR("TXB", "Serialization failed: size mismatch (words=%u, xpos=%u, styles=%u, boundary=%u, suffixX=%u)\n",
static_cast<uint32_t>(words.size()), static_cast<uint32_t>(wordXpos.size()),
static_cast<uint32_t>(wordStyles.size()), static_cast<uint32_t>(wordFocusBoundary.size()),
static_cast<uint32_t>(wordFocusSuffixX.size()));
if (!isValid) {
LOG_ERR("TXB", "Serialization failed: invalid block");
return false;
}
// Word data
serialization::writePod(file, static_cast<uint16_t>(words.size()));
for (const auto& w : words) serialization::writeString(file, w);
for (auto x : wordXpos) serialization::writePod(file, x);
for (auto s : wordStyles) serialization::writePod(file, s);
// Focus block: 1-byte presence flag, followed by per-word vectors only when present.
// Saves 3 bytes/word when focus reading is disabled or no word on this line was split.
serialization::writePod(file, static_cast<uint8_t>(hasFocus ? 1 : 0));
if (hasFocus) {
for (auto b : wordFocusBoundary) serialization::writePod(file, b);
for (auto sx : wordFocusSuffixX) serialization::writePod(file, sx);
// Word data: scalars, then the arena verbatim -- its in-memory layout is
// exactly the on-disk layout (see TextBlock.h), so one write covers all
// per-word arrays and the text blob.
serialization::writePod(file, numWords);
serialization::writePod(file, static_cast<uint8_t>(focusPresent ? 1 : 0));
serialization::writePod(file, textBytes);
if (numWords > 0) {
const size_t size = arenaSize(numWords, focusPresent, textBytes);
if (file.write(arena.get(), size) != size) {
LOG_ERR("TXB", "Serialization failed: arena write (%u bytes)", static_cast<uint32_t>(size));
return false;
}
}
// Style (alignment + margins/padding/indent)
@@ -186,41 +276,64 @@ bool TextBlock::serialize(HalFile& file) const {
std::unique_ptr<TextBlock> TextBlock::deserialize(HalFile& file) {
uint16_t wc;
std::vector<std::string> words;
std::vector<int16_t> wordXpos;
std::vector<EpdFontFamily::Style> wordStyles;
std::vector<uint8_t> wordFocusBoundary;
std::vector<uint16_t> wordFocusSuffixX;
BlockStyle blockStyle;
// Word count
uint8_t hasFocus;
uint16_t textBytes;
serialization::readPod(file, wc);
serialization::readPod(file, hasFocus);
serialization::readPod(file, textBytes);
// Sanity check: prevent allocation of unreasonably large vectors (max 10000 words per block)
// Sanity checks: cap the arena allocation and reject impossible geometry
// (every word carries at least its NUL terminator).
if (wc > 10000) {
LOG_ERR("TXB", "Deserialization failed: word count %u exceeds maximum", wc);
return nullptr;
}
if ((wc == 0 && textBytes != 0) || (wc > 0 && textBytes < wc)) {
LOG_ERR("TXB", "Deserialization failed: bad text size %u for %u words", textBytes, wc);
return nullptr;
}
// Word data
words.resize(wc);
wordXpos.resize(wc);
wordStyles.resize(wc);
for (auto& w : words) serialization::readString(file, w);
for (auto& x : wordXpos) serialization::readPod(file, x);
for (auto& s : wordStyles) serialization::readPod(file, s);
// Focus block: presence flag, then vectors only if present. Empty vectors when absent
// signal "no splits in this block" to render() (zero per-word RAM cost).
uint8_t hasFocus;
serialization::readPod(file, hasFocus);
if (hasFocus) {
wordFocusBoundary.resize(wc);
wordFocusSuffixX.resize(wc);
for (auto& b : wordFocusBoundary) serialization::readPod(file, b);
for (auto& sx : wordFocusSuffixX) serialization::readPod(file, sx);
std::unique_ptr<TextBlock> block(new (std::nothrow) TextBlock());
if (!block) {
LOG_ERR("TXB", "OOM: TextBlock");
return nullptr;
}
block->numWords = wc;
block->textBytes = textBytes;
block->focusPresent = hasFocus != 0;
if (wc > 0) {
const size_t size = arenaSize(wc, block->focusPresent, textBytes);
block->arena = makeUniqueNoThrow<uint8_t[]>(size);
if (!block->arena) {
LOG_ERR("TXB", "OOM: arena %u bytes", static_cast<uint32_t>(size));
return nullptr;
}
if (file.read(block->arena.get(), size) != size) {
LOG_ERR("TXB", "Deserialization failed: arena read (%u bytes)", static_cast<uint32_t>(size));
return nullptr;
}
block->bindArenaPointers();
// Validate offsets before anything dereferences wordText(): offset 0 first,
// strictly increasing, in bounds, and every word NUL-terminated (word i ends
// at the byte before offset i+1; the last word at the last text byte).
const uint16_t* textOff = block->textOffArr;
const char* text = block->textArr;
if (textOff[0] != 0 || text[textBytes - 1] != '\0') {
LOG_ERR("TXB", "Deserialization failed: corrupt text layout");
return nullptr;
}
for (uint16_t i = 1; i < wc; i++) {
if (textOff[i] <= textOff[i - 1] || textOff[i] >= textBytes || text[textOff[i] - 1] != '\0') {
LOG_ERR("TXB", "Deserialization failed: corrupt word offset %u", i);
return nullptr;
}
}
}
// Style (alignment + margins/padding/indent)
BlockStyle& blockStyle = block->blockStyle;
serialization::readPod(file, blockStyle.alignment);
serialization::readPod(file, blockStyle.textAlignDefined);
serialization::readPod(file, blockStyle.marginTop);
@@ -236,7 +349,5 @@ std::unique_ptr<TextBlock> TextBlock::deserialize(HalFile& file) {
serialization::readPod(file, blockStyle.isRtl);
serialization::readPod(file, blockStyle.directionDefined);
return std::unique_ptr<TextBlock>(new TextBlock(std::move(words), std::move(wordXpos), std::move(wordStyles),
std::move(wordFocusBoundary), std::move(wordFocusSuffixX),
blockStyle));
return block;
}
+69 -28
View File
@@ -9,42 +9,83 @@
#include "Block.h"
#include "BlockStyle.h"
// Represents a line of text on a page
// Represents a line of text on a page.
//
// All per-word data lives in ONE flat heap allocation (the arena) instead of
// six parallel vectors: a resident page holds ~25-30 of these blocks, and the
// vector-of-string layout cost ~250 throwing allocations per page load, which
// was the primary driver of heap fragmentation on the ESP32-C3.
//
// Arena layout, in order (2-byte alignment holds by construction: all 16-bit
// arrays come first and the arena base is allocator-aligned; RISC-V faults on
// unaligned multi-byte access):
// uint16_t textOff[wordCount] byte offset of word i's text in text[]
// int16_t xpos[wordCount]
// uint16_t focusSuffixX[wordCount] present only when focusPresent
// uint8_t styles[wordCount]
// uint8_t focusBoundary[wordCount] present only when focusPresent
// char text[textBytes] all words back to back, NUL-terminated
//
// Each word is stored NUL-terminated so render() can hand `text + textOff[i]`
// straight to C APIs (drawText) with no std::string materialization.
//
// Focus split semantics (unchanged from the vector layout): boundary N > 0
// means the first N bytes of word i render bold, the remainder in the base
// style. N is bounded to 9 codepoints (<= 36 UTF-8 bytes) by the clamp in
// ParsedText::addWord. focusSuffixX is the pre-computed pixel offset from the
// word start to the regular suffix. Both arrays are omitted from the arena
// entirely when no word on the line has a split (zero per-word RAM cost when
// focus reading is disabled).
class TextBlock final : public Block {
private:
std::vector<std::string> words;
std::vector<int16_t> wordXpos;
std::vector<EpdFontFamily::Style> wordStyles;
// Per-word focus boundary: N > 0 means the first N bytes of words[i] are rendered bold,
// the remainder in the base style. 0 means no split (whole word uses wordStyles[i]).
// N encodes the bold PREFIX length only — bounded to 9 codepoints (≤36 UTF-8 bytes) by
// FOCUS_READING_PERCENT's 1..9 clamp in ParsedText::addWord, so it always fits in uint8_t.
// Vector is empty when no focus splits exist anywhere in the block (zero per-word RAM cost
// when focus reading is disabled, or on lines that happen to contain no splittable words).
std::vector<uint8_t> wordFocusBoundary;
// Pre-computed pixel offset from word start to the regular suffix, stored when boundary > 0.
// Eliminates getTextAdvanceX from the render path. 0 when boundary == 0.
// Empty in lockstep with wordFocusBoundary.
std::vector<uint16_t> wordFocusSuffixX;
BlockStyle blockStyle;
uint16_t numWords = 0;
uint16_t textBytes = 0; // total size of the text region, including NULs
bool focusPresent = false;
bool isValid = true;
// The ONLY allocation: makeUniqueNoThrow, so OOM yields an invalid block
// instead of abort() (bare new is not nothrow with -fno-exceptions).
std::unique_ptr<uint8_t[]> arena;
// Typed views into the arena, bound once after the arena is filled. All
// 16-bit bases sit at even offsets, so direct dereference is alignment-safe.
const uint16_t* textOffArr = nullptr;
const int16_t* xposArr = nullptr;
const uint16_t* focusSuffixXArr = nullptr; // null when !focusPresent
const uint8_t* stylesArr = nullptr;
const uint8_t* focusBoundaryArr = nullptr; // null when !focusPresent
const char* textArr = nullptr;
TextBlock() = default; // deserialize() fills the fields directly
static size_t arenaSize(uint16_t wordCount, bool hasFocus, uint16_t textBytes);
void bindArenaPointers();
public:
explicit TextBlock(std::vector<std::string> words, std::vector<int16_t> word_xpos,
std::vector<EpdFontFamily::Style> word_styles, std::vector<uint8_t> focus_boundary,
std::vector<uint16_t> focus_suffix_x, const BlockStyle& blockStyle = BlockStyle())
: words(std::move(words)),
wordXpos(std::move(word_xpos)),
wordStyles(std::move(word_styles)),
wordFocusBoundary(std::move(focus_boundary)),
wordFocusSuffixX(std::move(focus_suffix_x)),
blockStyle(blockStyle) {}
// Flatten-on-construct: copies the layout-time vectors into the arena; the
// vectors die with the caller. On arena OOM the block is empty and valid()
// is false -- callers must check and fail the line instead of using it.
explicit TextBlock(const std::vector<std::string>& words, const std::vector<int16_t>& wordXpos,
const std::vector<EpdFontFamily::Style>& wordStyles, const std::vector<uint8_t>& focusBoundary,
const std::vector<uint16_t>& focusSuffixX, const BlockStyle& blockStyle = BlockStyle());
~TextBlock() override = default;
TextBlock(const TextBlock&) = delete;
TextBlock& operator=(const TextBlock&) = delete;
void setBlockStyle(const BlockStyle& blockStyle) { this->blockStyle = blockStyle; }
const BlockStyle& getBlockStyle() const { return blockStyle; }
const std::vector<std::string>& getWords() const { return words; }
bool isEmpty() override { return words.empty(); }
size_t wordCount() const { return words.size(); }
// given a renderer works out where to break the words into lines
bool isEmpty() override { return numWords == 0; }
bool valid() const { return isValid; }
uint16_t wordCount() const { return numWords; }
// NUL-terminated by construction; safe to pass to C APIs directly.
const char* wordText(const uint16_t i) const { return textArr + textOffArr[i]; }
uint16_t wordTextLen(const uint16_t i) const {
const uint16_t end = (i + 1 < numWords) ? textOffArr[i + 1] : textBytes;
return end - textOffArr[i] - 1; // exclude the NUL
}
int16_t wordXpos(const uint16_t i) const { return xposArr[i]; }
EpdFontFamily::Style wordStyle(const uint16_t i) const { return static_cast<EpdFontFamily::Style>(stylesArr[i]); }
uint8_t focusBoundary(const uint16_t i) const { return focusPresent ? focusBoundaryArr[i] : 0; }
uint16_t focusSuffixX(const uint16_t i) const { return focusPresent ? focusSuffixXArr[i] : 0; }
void render(const GfxRenderer& renderer, int fontId, int x, int y) const;
BlockType getType() override { return TEXT_BLOCK; }
bool serialize(HalFile& file) const;
@@ -99,24 +99,58 @@ int bytesPerPixelFromType(int pixelType) {
}
}
int requiredPngInternalBufferBytes(int srcWidth, int pixelType) {
int packedRowBytes(int srcWidth, int bitsPerSample) { return (srcWidth * bitsPerSample + 7) / 8; }
int requiredPngInternalBufferBytes(int srcWidth, int pixelType, int bitsPerSample) {
// +1 filter byte per scanline, *2 for current+previous lines, +32 for alignment margin.
int pitch = srcWidth * bytesPerPixelFromType(pixelType);
if ((pixelType == PNG_PIXEL_GRAYSCALE || pixelType == PNG_PIXEL_INDEXED) && bitsPerSample < 8) {
pitch = packedRowBytes(srcWidth, bitsPerSample);
}
return ((pitch + 1) * 2) + 32;
}
bool isSupportedBitDepth(int pixelType, int bitsPerSample) {
if (bitsPerSample == 8) return true;
if (bitsPerSample != 1 && bitsPerSample != 2 && bitsPerSample != 4) return false;
return pixelType == PNG_PIXEL_GRAYSCALE || pixelType == PNG_PIXEL_INDEXED;
}
uint8_t readPackedSample(const uint8_t* pixels, int x, int bitsPerSample) {
if (bitsPerSample == 8) return pixels[x];
const int bitOffset = x * bitsPerSample;
const int shift = 8 - bitsPerSample - (bitOffset & 7);
const uint8_t mask = (1U << bitsPerSample) - 1;
return (pixels[bitOffset >> 3] >> shift) & mask;
}
uint8_t expandSampleToByte(uint8_t sample, int bitsPerSample) {
if (bitsPerSample == 8) return sample;
const uint8_t maxSample = (1U << bitsPerSample) - 1;
return static_cast<uint8_t>((sample * 255U) / maxSample);
}
// Convert entire source line to grayscale with alpha blending to white background.
// Low-bit-depth grayscale/indexed scanlines are packed most-significant sample first.
// For indexed PNGs with tRNS chunk, alpha values are stored at palette[768] onwards.
// Processing the whole line at once improves cache locality and reduces per-pixel overhead.
void convertLineToGray(uint8_t* pPixels, uint8_t* grayLine, int width, int pixelType, uint8_t* palette, int hasAlpha) {
void convertLineToGray(const uint8_t* pPixels, uint8_t* grayLine, int width, int pixelType, int bitsPerSample,
uint8_t* palette, int hasAlpha) {
switch (pixelType) {
case PNG_PIXEL_GRAYSCALE:
memcpy(grayLine, pPixels, width);
if (bitsPerSample == 8) {
memcpy(grayLine, pPixels, width);
} else {
for (int x = 0; x < width; x++) {
grayLine[x] = expandSampleToByte(readPackedSample(pPixels, x, bitsPerSample), bitsPerSample);
}
}
break;
case PNG_PIXEL_TRUECOLOR:
for (int x = 0; x < width; x++) {
uint8_t* p = &pPixels[x * 3];
const uint8_t* p = &pPixels[x * 3];
grayLine[x] = (uint8_t)((p[0] * 77 + p[1] * 150 + p[2] * 29) >> 8);
}
break;
@@ -125,7 +159,7 @@ void convertLineToGray(uint8_t* pPixels, uint8_t* grayLine, int width, int pixel
if (palette) {
if (hasAlpha) {
for (int x = 0; x < width; x++) {
uint8_t idx = pPixels[x];
uint8_t idx = readPackedSample(pPixels, x, bitsPerSample);
uint8_t* p = &palette[idx * 3];
uint8_t gray = (uint8_t)((p[0] * 77 + p[1] * 150 + p[2] * 29) >> 8);
uint8_t alpha = palette[768 + idx];
@@ -133,12 +167,15 @@ void convertLineToGray(uint8_t* pPixels, uint8_t* grayLine, int width, int pixel
}
} else {
for (int x = 0; x < width; x++) {
uint8_t* p = &palette[pPixels[x] * 3];
uint8_t idx = readPackedSample(pPixels, x, bitsPerSample);
uint8_t* p = &palette[idx * 3];
grayLine[x] = (uint8_t)((p[0] * 77 + p[1] * 150 + p[2] * 29) >> 8);
}
}
} else {
memcpy(grayLine, pPixels, width);
for (int x = 0; x < width; x++) {
grayLine[x] = expandSampleToByte(readPackedSample(pPixels, x, bitsPerSample), bitsPerSample);
}
}
break;
@@ -152,7 +189,7 @@ void convertLineToGray(uint8_t* pPixels, uint8_t* grayLine, int width, int pixel
case PNG_PIXEL_TRUECOLOR_ALPHA:
for (int x = 0; x < width; x++) {
uint8_t* p = &pPixels[x * 4];
const uint8_t* p = &pPixels[x * 4];
uint8_t gray = (uint8_t)((p[0] * 77 + p[1] * 150 + p[2] * 29) >> 8);
uint8_t alpha = p[3];
grayLine[x] = (uint8_t)((gray * alpha + 255 * (255 - alpha)) / 255);
@@ -172,74 +209,83 @@ int pngDrawCallback(PNGDRAW* pDraw) {
int srcY = pDraw->y;
int srcWidth = ctx->srcWidth;
// Calculate destination Y with scaling
int dstY = (int)(srcY * ctx->scale);
// Map source rows with the exact output-height ratio. During downscaling,
// multiple source rows can select the same output row; during upscaling, one
// source row must be repeated across every output row in its range. Emitting
// only the first row of an upscale leaves zero-filled (black) gaps in the
// streamed pixel cache.
int firstDstY = (srcY * ctx->dstHeight) / ctx->srcHeight;
int endDstY = firstDstY + 1;
if (ctx->dstHeight > ctx->srcHeight) {
endDstY = ((srcY + 1) * ctx->dstHeight) / ctx->srcHeight;
}
// Skip if we already rendered this destination row (multiple source rows map to same dest)
if (dstY == ctx->lastDstY) return 1;
ctx->lastDstY = dstY;
// Check bounds
if (dstY >= ctx->dstHeight) return 1;
int outY = ctx->config->y + dstY;
if (outY >= ctx->screenHeight) return 1;
if (firstDstY <= ctx->lastDstY) firstDstY = ctx->lastDstY + 1;
if (firstDstY >= endDstY || firstDstY >= ctx->dstHeight) return 1;
if (endDstY > ctx->dstHeight) endDstY = ctx->dstHeight;
// Convert entire source line to grayscale (improves cache locality)
convertLineToGray(pDraw->pPixels, ctx->grayLineBuffer, srcWidth, pDraw->iPixelType, pDraw->pPalette,
convertLineToGray(pDraw->pPixels, ctx->grayLineBuffer, srcWidth, pDraw->iPixelType, pDraw->iBpp, pDraw->pPalette,
pDraw->iHasAlpha);
// Render scaled row using Bresenham-style integer stepping (no floating-point division)
// Render scaled rows using Bresenham-style integer stepping (no floating-point division)
int dstWidth = ctx->dstWidth;
int outXBase = ctx->config->x;
int screenWidth = ctx->screenWidth;
bool useDithering = ctx->config->useDithering;
bool caching = ctx->caching;
// Pre-compute orientation and render-mode state once per row
// Pre-compute orientation and render-mode state once per callback.
DirectPixelWriter pw;
pw.init(*ctx->renderer);
pw.beginRow(outY);
// The cache streams to disk one row at a time. Flushing rows below this one
// (PNGdec delivers scanlines top to bottom) repositions the single-row band.
// A flush failure stops caching for the rest of the decode so we never write
// past the band buffer; finalize() then drops the partial file.
DirectCacheWriter cw;
if (caching) {
if (!ctx->cache.advanceTo(dstY)) {
caching = false;
ctx->caching = false;
} else {
cw.init(ctx->cache.buffer, ctx->cache.bytesPerRow, ctx->cache.bandRows, ctx->cache.originX);
cw.beginRow(outY, ctx->config->y + ctx->cache.bandStart);
}
}
for (int dstY = firstDstY; dstY < endDstY; dstY++) {
ctx->lastDstY = dstY;
int outY = ctx->config->y + dstY;
if (outY >= ctx->screenHeight) continue;
int srcX = 0;
int error = 0;
pw.beginRow(outY);
for (int dstX = 0; dstX < dstWidth; dstX++) {
int outX = outXBase + dstX;
if (outX < screenWidth) {
uint8_t gray = ctx->grayLineBuffer[srcX];
uint8_t ditheredGray;
if (useDithering) {
ditheredGray = applyBayerDither4Level(gray, outX, outY);
// The cache streams to disk one row at a time. Flushing rows below this one
// (PNGdec delivers scanlines top to bottom) repositions the single-row band.
// A flush failure stops caching for the rest of the decode so we never write
// past the band buffer; finalize() then drops the partial file.
bool caching = ctx->caching;
DirectCacheWriter cw;
if (caching) {
if (!ctx->cache.advanceTo(dstY)) {
caching = false;
ctx->caching = false;
} else {
ditheredGray = gray / 85;
if (ditheredGray > 3) ditheredGray = 3;
cw.init(ctx->cache.buffer, ctx->cache.bytesPerRow, ctx->cache.bandRows, ctx->cache.originX);
cw.beginRow(outY, ctx->config->y + ctx->cache.bandStart);
}
pw.writePixel(outX, ditheredGray);
if (caching) cw.writePixel(outX, ditheredGray);
}
// Bresenham-style stepping: advance srcX based on ratio srcWidth/dstWidth
error += srcWidth;
while (error >= dstWidth) {
error -= dstWidth;
srcX++;
int srcX = 0;
int error = 0;
for (int dstX = 0; dstX < dstWidth; dstX++) {
int outX = outXBase + dstX;
if (outX < screenWidth) {
uint8_t gray = ctx->grayLineBuffer[srcX];
uint8_t ditheredGray;
if (useDithering) {
ditheredGray = applyBayerDither4Level(gray, outX, outY);
} else {
ditheredGray = gray / 85;
if (ditheredGray > 3) ditheredGray = 3;
}
pw.writePixel(outX, ditheredGray);
if (caching) cw.writePixel(outX, ditheredGray);
}
// Bresenham-style stepping: advance srcX based on ratio srcWidth/dstWidth
error += srcWidth;
while (error >= dstWidth) {
error -= dstWidth;
srcX++;
}
}
}
@@ -332,30 +378,44 @@ bool PngToFramebufferConverter::decodeToFramebuffer(const std::string& imagePath
}
ctx.lastDstY = -1; // Reset row tracking
LOG_DBG("PNG", "PNG %dx%d -> %dx%d (scale %.2f), bpp: %d", ctx.srcWidth, ctx.srcHeight, ctx.dstWidth, ctx.dstHeight,
ctx.scale, png->getBpp());
const int pixelType = png->getPixelType();
const int requiredInternal = requiredPngInternalBufferBytes(ctx.srcWidth, pixelType);
const int bitsPerSample = png->getBpp();
LOG_DBG("PNG", "PNG %dx%d -> %dx%d (scale %.2f), type: %d, bpp: %d", ctx.srcWidth, ctx.srcHeight, ctx.dstWidth,
ctx.dstHeight, ctx.scale, pixelType, bitsPerSample);
const int requiredInternal = requiredPngInternalBufferBytes(ctx.srcWidth, pixelType, bitsPerSample);
if (requiredInternal > PNG_MAX_BUFFERED_PIXELS) {
LOG_ERR("PNG",
"PNG row buffer too small: need %d bytes for width=%d type=%d, configured PNG_MAX_BUFFERED_PIXELS=%d",
requiredInternal, ctx.srcWidth, pixelType, PNG_MAX_BUFFERED_PIXELS);
LOG_ERR(
"PNG",
"PNG row buffer too small: need %d bytes for width=%d type=%d bpp=%d, configured PNG_MAX_BUFFERED_PIXELS=%d",
requiredInternal, ctx.srcWidth, pixelType, bitsPerSample, PNG_MAX_BUFFERED_PIXELS);
LOG_ERR("PNG", "Aborting decode to avoid PNGdec internal buffer overflow");
return false;
}
if (png->getBpp() != 8) {
warnUnsupportedFeature("bit depth (" + std::to_string(png->getBpp()) + "bpp)", imagePath);
if (!isSupportedBitDepth(pixelType, bitsPerSample)) {
warnUnsupportedFeature(
"bit depth (" + std::to_string(bitsPerSample) + "bpp) for pixel type " + std::to_string(pixelType), imagePath);
return false;
}
// Allocate grayscale line buffer on demand (~3.2 KB) - freed after decode
const size_t grayBufSize = PNG_MAX_BUFFERED_PIXELS / 2;
ctx.grayLineBuffer = static_cast<uint8_t*>(malloc(grayBufSize));
if (!ctx.grayLineBuffer) {
// The converter expands each source row to 8-bit grayscale before dithering,
// so this scratch buffer is sized by source pixels even when PNGdec reads a
// packed 1/2/4-bit row internally.
constexpr size_t MAX_GRAY_LINE_BUFFER_BYTES = PNG_MAX_BUFFERED_PIXELS / 2;
const size_t grayBufSize = static_cast<size_t>(ctx.srcWidth);
if (grayBufSize > MAX_GRAY_LINE_BUFFER_BYTES) {
LOG_ERR("PNG", "Expanded gray row too wide: need %u bytes for width=%d, max=%u", static_cast<unsigned>(grayBufSize),
ctx.srcWidth, static_cast<unsigned>(MAX_GRAY_LINE_BUFFER_BYTES));
return false;
}
auto grayLineBuffer = makeUniqueNoThrow<uint8_t[]>(grayBufSize);
if (!grayLineBuffer) {
LOG_ERR("PNG", "Failed to allocate gray line buffer");
return false;
}
ctx.grayLineBuffer = grayLineBuffer.get();
// Stream the pixel cache to disk. PNGdec delivers source scanlines top to
// bottom and we emit at most one (downscaled) output row per callback, so the
@@ -375,7 +435,6 @@ bool PngToFramebufferConverter::decodeToFramebuffer(const std::string& imagePath
rc = png->decode(&ctx, 0);
unsigned long decodeTime = millis() - decodeStart;
free(ctx.grayLineBuffer);
ctx.grayLineBuffer = nullptr;
if (rc != PNG_SUCCESS) {
+3
View File
@@ -803,6 +803,9 @@ bool CssParser::loadFromCache() {
return false;
}
// Size the bucket array up front to avoid incremental rehashes while loading rules.
rulesBySelector_.reserve(ruleCount);
auto hasRemainingBytes = [&file](const size_t neededBytes) -> bool {
return static_cast<size_t>(file.available()) >= neededBytes;
};
+14
View File
@@ -67,6 +67,20 @@ class CssParser {
*/
[[nodiscard]] static CssStyle parseInlineStyle(std::string_view styleValue);
// MEMFIX-PORT: stylesheet resident-bytes audit accessor; portable
// Approximate resident heap of the parsed stylesheet, for the audit log.
// unordered_map cost model: bucket array + one node per rule (libstdc++ node
// overhead ~= 2 pointers + hash) + key string capacity when it exceeds SSO.
size_t residentBytes() const {
size_t total = rulesBySelector_.bucket_count() * sizeof(void*);
for (const auto& kv : rulesBySelector_) {
total += sizeof(void*) * 2 + sizeof(size_t); // node overhead
total += sizeof(kv);
if (kv.first.capacity() > 15) total += kv.first.capacity(); // beyond SSO
}
return total;
}
/**
* Check if any rules have been loaded
*/
+1 -1
View File
@@ -24,7 +24,7 @@ struct Iso639Mapping {
};
static constexpr Iso639Mapping kIso639Mappings[] = {{"eng", "en"}, {"fra", "fr"}, {"fre", "fr"}, {"deu", "de"},
{"ger", "de"}, {"rus", "ru"}, {"spa", "es"}, {"ita", "it"},
{"ukr", "uk"}, {"swe", "sv"}};
{"ukr", "uk"}, {"swe", "sv"}, {"fin", "fi"}};
// Maps a BCP-47 or ISO 639-2 language tag to a language-specific hyphenator.
const LanguageHyphenator* hyphenatorForLanguage(const std::string& langTag) {
@@ -7,6 +7,7 @@
#include "generated/hyph-de.trie.h"
#include "generated/hyph-en.trie.h"
#include "generated/hyph-es.trie.h"
#include "generated/hyph-fi.trie.h"
#include "generated/hyph-fr.trie.h"
#include "generated/hyph-it.trie.h"
#include "generated/hyph-pl.trie.h"
@@ -26,8 +27,9 @@ LanguageHyphenator italianHyphenator(it_patterns, isLatinLetter, toLowerLatin);
LanguageHyphenator swedishHyphenator(sv_patterns, isLatinLetter, toLowerLatin);
LanguageHyphenator ukrainianHyphenator(uk_patterns, isCyrillicLetter, toLowerCyrillic);
LanguageHyphenator polishHyphenator(pl_patterns, isLatinLetter, toLowerLatin);
LanguageHyphenator finnishHyphenator(fi_patterns, isLatinLetter, toLowerLatin);
using EntryArray = std::array<LanguageEntry, 9>;
using EntryArray = std::array<LanguageEntry, 10>;
const EntryArray& entries() {
static const EntryArray kEntries = {{{"english", "en", &englishHyphenator},
@@ -38,7 +40,8 @@ const EntryArray& entries() {
{"italian", "it", &italianHyphenator},
{"polish", "pl", &polishHyphenator},
{"swedish", "sv", &swedishHyphenator},
{"ukrainian", "uk", &ukrainianHyphenator}}};
{"ukrainian", "uk", &ukrainianHyphenator},
{"finnish", "fi", &finnishHyphenator}}};
return kEntries;
}
@@ -0,0 +1,95 @@
#pragma once
#include <cstddef>
#include <cstdint>
#include "Epub/hyphenation/SerializedHyphenationTrie.h"
// Auto-generated by generate_hyphenation_trie.py. Do not edit manually.
alignas(4) constexpr uint8_t fi_trie_data[] = {
0x01, 0x01, 0x16, 0x0B, 0x0C, 0x17, 0x0C, 0x15, 0x0C, 0x0B, 0x16, 0x29, 0x2B, 0x20, 0x1F, 0x0C,
0x33, 0x02, 0x0B, 0x02, 0x0B, 0x0C, 0x01, 0x0C, 0x34, 0x0B, 0x2A, 0x0B, 0x2A, 0x0B, 0x0C, 0x20,
0x0B, 0x21, 0xA0, 0x00, 0x41, 0xA0, 0x02, 0x51, 0x21, 0x69, 0xFD, 0x21, 0x6C, 0xFD, 0xA1, 0x00,
0x41, 0x62, 0xFD, 0xA0, 0x01, 0xA2, 0xA1, 0x00, 0x81, 0x6F, 0xFD, 0xA3, 0x00, 0x81, 0x69, 0x6F,
0x75, 0xF8, 0xF8, 0xF8, 0x28, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0x6C, 0x72, 0xDE, 0xDE, 0xEA,
0xDE, 0xDE, 0xDE, 0xF2, 0xF7, 0x22, 0xA4, 0xB6, 0xCD, 0xCD, 0xA1, 0x00, 0x81, 0x61, 0xD9, 0x28,
0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0x72, 0xC3, 0xC3, 0xC3, 0xC3, 0xC3, 0xC3, 0xF6, 0xFB,
0xA2, 0x00, 0x81, 0x61, 0x65, 0xC3, 0xC3, 0x48, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0x6C, 0x72,
0xFF, 0xAB, 0xFF, 0xAB, 0xFF, 0xAB, 0xFF, 0xAB, 0xFF, 0xAB, 0xFF, 0xAB, 0xFF, 0xE3, 0xFF, 0xF9,
0x49, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0x6C, 0x72, 0xFF, 0x92, 0xFF, 0x92, 0xFF, 0x92,
0xFF, 0x92, 0xFF, 0x92, 0xFF, 0x92, 0xFF, 0xC5, 0xFF, 0xA6, 0xFF, 0xCA, 0x47, 0x61, 0x65, 0x69,
0x6F, 0x75, 0x79, 0xC3, 0xFF, 0x76, 0xFF, 0x76, 0xFF, 0x76, 0xFF, 0x76, 0xFF, 0x76, 0xFF, 0x76,
0xFF, 0xA9, 0xA0, 0x00, 0xF1, 0x21, 0x73, 0xFD, 0xA1, 0x00, 0x41, 0x75, 0xFD, 0xA0, 0x00, 0x81,
0x43, 0x61, 0x65, 0x69, 0xFF, 0x63, 0xFF, 0x63, 0xFF, 0x63, 0xC1, 0x01, 0xA2, 0x61, 0xFF, 0x59,
0x4A, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0x6C, 0x72, 0x76, 0xFF, 0x42, 0xFF, 0xE8, 0xFF,
0x42, 0xFF, 0x42, 0xFF, 0x42, 0xFF, 0x42, 0xFF, 0x75, 0xFF, 0xED, 0xFF, 0xF0, 0xFF, 0xFA, 0xA1,
0x00, 0x41, 0x73, 0xCE, 0x47, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0xFF, 0xFB, 0xFF, 0x1E,
0xFF, 0x1E, 0xFF, 0x1E, 0xFF, 0x1E, 0xFF, 0x1E, 0xFF, 0x51, 0xA0, 0x01, 0x52, 0x21, 0x6F, 0xFD,
0x22, 0x74, 0x6E, 0xFD, 0xFD, 0xA0, 0x01, 0x73, 0x21, 0x6E, 0xFD, 0x22, 0x61, 0x6F, 0xFD, 0xFA,
0x21, 0x61, 0xEA, 0x21, 0x6B, 0xFD, 0x21, 0x65, 0xF2, 0xA4, 0x00, 0x41, 0x6E, 0x6A, 0x69, 0x6C,
0xE7, 0xF2, 0xFA, 0xFD, 0x21, 0x73, 0xE1, 0x21, 0x75, 0xFD, 0xA1, 0x00, 0x41, 0x64, 0xFD, 0x21,
0x74, 0xD6, 0x21, 0x73, 0xFD, 0x22, 0x65, 0x69, 0xFA, 0xFD, 0x21, 0x61, 0xCB, 0x21, 0x6E, 0xBD,
0x22, 0x74, 0x6F, 0xBD, 0xFD, 0x21, 0x69, 0xC0, 0x21, 0x61, 0xFD, 0xA4, 0x00, 0x41, 0x70, 0x73,
0x74, 0x6D, 0xEA, 0xEF, 0xF5, 0xFD, 0x21, 0x69, 0xD9, 0xA1, 0x00, 0x41, 0x6C, 0xFD, 0x47, 0x61,
0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0xFF, 0xBB, 0xFF, 0xCC, 0xFE, 0xA4, 0xFF, 0xED, 0xFE, 0xA4,
0xFF, 0xFB, 0xFE, 0xD7, 0xA0, 0x01, 0x41, 0x21, 0x73, 0xFD, 0x21, 0x75, 0xFD, 0xA1, 0x00, 0x41,
0x72, 0xFD, 0x49, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0x6C, 0x72, 0xFE, 0x80, 0xFF, 0xFB,
0xFE, 0x80, 0xFE, 0x80, 0xFE, 0x80, 0xFE, 0x80, 0xFE, 0xB3, 0xFF, 0x2B, 0xFE, 0x94, 0x21, 0x61,
0xDC, 0x48, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0x74, 0xFF, 0x3E, 0xFE, 0x61, 0xFE, 0x61,
0xFE, 0x61, 0xFE, 0x61, 0xFE, 0x61, 0xFE, 0x94, 0xFF, 0xFD, 0x42, 0x69, 0x65, 0xFF, 0x80, 0xFF,
0x40, 0x42, 0x6F, 0x65, 0xFF, 0x84, 0xFF, 0x47, 0x41, 0x75, 0xFF, 0x32, 0x21, 0x74, 0xFC, 0x42,
0x61, 0x6F, 0xFF, 0xFD, 0xFF, 0x36, 0xA4, 0x00, 0x41, 0x73, 0x6C, 0x6A, 0x70, 0xE4, 0xEB, 0xF9,
0xF2, 0x41, 0x79, 0xFF, 0x24, 0x21, 0x74, 0xFC, 0x21, 0x69, 0xFD, 0xA1, 0x00, 0x41, 0x73, 0xFD,
0x42, 0x2E, 0x6E, 0xFF, 0x15, 0xFF, 0x15, 0x21, 0x61, 0xF9, 0x21, 0x65, 0xFD, 0xA1, 0x00, 0x41,
0x64, 0xFD, 0x41, 0x65, 0xFE, 0xF8, 0x21, 0x6A, 0xFC, 0x42, 0x6B, 0x74, 0xFE, 0xFC, 0xFE, 0xFC,
0x21, 0x73, 0xF9, 0x21, 0x69, 0xFD, 0xC3, 0x00, 0x41, 0x68, 0x70, 0x73, 0xFF, 0xF0, 0xFF, 0xFD,
0xFF, 0x24, 0x41, 0x74, 0xFF, 0x23, 0xC2, 0x00, 0x41, 0x72, 0x68, 0xFF, 0x30, 0xFF, 0xFC, 0xA0,
0x00, 0x52, 0x21, 0x72, 0xFD, 0x21, 0x69, 0xFA, 0x21, 0x6C, 0xFD, 0xA0, 0x00, 0x61, 0x21, 0x68,
0xFD, 0x4A, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0x74, 0x70, 0x63, 0xFF, 0x95, 0xFF, 0xAA,
0xFF, 0xBC, 0xFF, 0xD5, 0xFD, 0xC1, 0xFF, 0xE5, 0xFD, 0xF4, 0xFF, 0xF1, 0xFF, 0xF7, 0xFF, 0xFD,
0x48, 0x61, 0x65, 0x69, 0x6F, 0x75, 0x79, 0xC3, 0x73, 0xFD, 0xA2, 0xFD, 0xA2, 0xFD, 0xA2, 0xFD,
0xA2, 0xFD, 0xA2, 0xFD, 0xA2, 0xFD, 0xD5, 0xFF, 0xDE, 0xA0, 0x00, 0x92, 0xA0, 0x00, 0xB2, 0xA0,
0x01, 0x01, 0xC3, 0x00, 0x61, 0x69, 0x65, 0x79, 0xFE, 0x20, 0xFE, 0x20, 0xFF, 0xFD, 0x22, 0xA4,
0xB6, 0xF4, 0xAD, 0x25, 0x79, 0x61, 0x6F, 0x75, 0xC3, 0xA8, 0xE6, 0xE6, 0xE9, 0xFB, 0x42, 0xB6,
0xA4, 0xFF, 0x9D, 0xFF, 0x9D, 0x46, 0x79, 0x61, 0x6F, 0x75, 0xC3, 0x65, 0xFF, 0x96, 0xFF, 0xD4,
0xFF, 0xD4, 0xFF, 0xD7, 0xFF, 0xF9, 0xFF, 0xD7, 0x22, 0xA4, 0xB6, 0xDB, 0xED, 0xA0, 0x00, 0x72,
0xA0, 0x00, 0x71, 0x21, 0xA4, 0xFD, 0x21, 0xC3, 0xFD, 0x21, 0xA4, 0xFD, 0x21, 0x69, 0xF4, 0xA0,
0x01, 0x22, 0x21, 0x70, 0xFD, 0x21, 0x6F, 0xFD, 0x21, 0x69, 0xFD, 0x26, 0x61, 0x6F, 0x75, 0xC3,
0x65, 0x6C, 0xE2, 0xE2, 0xE2, 0xEE, 0xF1, 0xFD, 0x22, 0xA4, 0xB6, 0xD8, 0xD8, 0x21, 0x61, 0xD3,
0xA0, 0x00, 0xB1, 0x24, 0x75, 0x69, 0x65, 0x6F, 0xCD, 0xCD, 0xFD, 0xFD, 0x24, 0x61, 0x65, 0x6F,
0x75, 0xF4, 0xF4, 0xF4, 0xF4, 0x25, 0x79, 0xC3, 0x61, 0x75, 0x69, 0xBB, 0xE3, 0xE8, 0xEE, 0xF7,
0xA0, 0x00, 0xD2, 0x22, 0xA4, 0xB6, 0xFD, 0xFD, 0x44, 0x61, 0x65, 0x6F, 0x69, 0xFF, 0x64, 0xFF,
0x64, 0xFF, 0x64, 0xFF, 0x64, 0x42, 0x65, 0x61, 0xFF, 0x9B, 0xFF, 0xCB, 0x21, 0x65, 0xC4, 0x22,
0x61, 0x75, 0xC1, 0xC1, 0xA0, 0x02, 0x32, 0x21, 0x73, 0xFD, 0x21, 0x6F, 0xFD, 0x49, 0x79, 0xC3,
0x75, 0x61, 0x65, 0x69, 0x6F, 0x73, 0x6C, 0xFF, 0x80, 0xFF, 0xD6, 0xFF, 0xDB, 0xFF, 0xB0, 0xFF,
0xE8, 0xFF, 0xEF, 0xFF, 0xF2, 0xFD, 0x70, 0xFF, 0xFD, 0x44, 0x69, 0x65, 0x6F, 0x75, 0xFF, 0x23,
0xFF, 0x23, 0xFF, 0x23, 0xFF, 0x23, 0x43, 0x75, 0x61, 0x65, 0xFF, 0x5A, 0xFF, 0x8A, 0xFF, 0x8A,
0x41, 0x76, 0xFF, 0x5F, 0x21, 0x61, 0xFC, 0xA0, 0x01, 0xC2, 0x21, 0x73, 0xFD, 0x21, 0x69, 0xFD,
0x21, 0x65, 0xFD, 0x43, 0x69, 0x6F, 0x6B, 0xFF, 0xF1, 0xFD, 0xF7, 0xFF, 0xFD, 0xA0, 0x01, 0xA4,
0x21, 0x73, 0xFD, 0x21, 0x61, 0xFD, 0x43, 0x6E, 0x74, 0x6B, 0xFC, 0x7D, 0xFC, 0x7D, 0xFF, 0xFD,
0x41, 0x69, 0xFC, 0x73, 0x22, 0x61, 0x6F, 0xF2, 0xFC, 0x21, 0x69, 0xFB, 0x48, 0xC3, 0x61, 0x75,
0x65, 0x6F, 0x69, 0x6C, 0x73, 0xFF, 0x3C, 0xFF, 0xAD, 0xFF, 0xBA, 0xFF, 0x20, 0xFF, 0x20, 0xFF,
0x50, 0xFF, 0xD7, 0xFF, 0xFD, 0x44, 0x61, 0x69, 0x75, 0x79, 0xFE, 0xB7, 0xFE, 0xB7, 0xFE, 0xB7,
0xFE, 0xB7, 0x42, 0x61, 0x69, 0xFE, 0xEE, 0xFE, 0xEE, 0x42, 0x75, 0x61, 0xFE, 0xE7, 0xFF, 0x17,
0x42, 0xA4, 0xB6, 0xFE, 0xE6, 0xFF, 0x30, 0x24, 0x65, 0x61, 0x75, 0xC3, 0xDE, 0xEB, 0xF2, 0xF9,
0x43, 0x61, 0x65, 0x6F, 0xFE, 0x8C, 0xFE, 0x8C, 0xFE, 0x8C, 0x42, 0x61, 0x75, 0xFE, 0xC6, 0xFE,
0xC6, 0x44, 0x75, 0x61, 0x65, 0x6F, 0xFE, 0xBF, 0xFE, 0xEF, 0xFE, 0xEF, 0xFE, 0xEF, 0x41, 0xB6,
0xFE, 0xB2, 0x21, 0xC3, 0xFC, 0x42, 0xA4, 0xB6, 0xFE, 0xB1, 0xFF, 0xFD, 0x43, 0x61, 0x6F, 0x79,
0xFE, 0xD4, 0xFE, 0xD4, 0xFE, 0xD4, 0x42, 0x61, 0x65, 0xFE, 0x56, 0xFE, 0x56, 0x26, 0x69, 0x61,
0x75, 0xC3, 0x65, 0x6F, 0xC3, 0xCD, 0xD4, 0xE8, 0xEF, 0xF9, 0xA0, 0x01, 0x11, 0x21, 0xA4, 0xFD,
0xA0, 0x01, 0xE2, 0x21, 0x6E, 0xFD, 0x21, 0x69, 0xFD, 0x21, 0x64, 0xFD, 0xA0, 0x02, 0x03, 0x21,
0x61, 0xFD, 0x21, 0x72, 0xFD, 0x21, 0x75, 0xFD, 0x21, 0x75, 0xFD, 0x23, 0xC3, 0x79, 0x73, 0xE2,
0xEE, 0xFD, 0x41, 0x72, 0xFD, 0xD9, 0x42, 0x6C, 0x68, 0xFC, 0x47, 0xFF, 0xFC, 0xC1, 0x00, 0x81,
0x69, 0xFB, 0xA6, 0x21, 0x76, 0xFA, 0x59, 0x62, 0x64, 0x66, 0x67, 0x68, 0x6A, 0x6B, 0x6C, 0x6D,
0x6E, 0x70, 0x72, 0x73, 0x74, 0x76, 0xC3, 0x79, 0x6F, 0x75, 0x61, 0x65, 0x69, 0x2E, 0x63, 0x71,
0xFB, 0xAE, 0xFB, 0xC9, 0xFB, 0xE1, 0xFB, 0xFA, 0xFC, 0x16, 0xFC, 0x16, 0xFC, 0x4A, 0xFC, 0x6E,
0xFC, 0x16, 0xFC, 0xE8, 0xFD, 0x0C, 0xFD, 0x2B, 0xFD, 0xCB, 0xFD, 0xEA, 0xFC, 0x16, 0xFE, 0x42,
0xFE, 0x65, 0xFE, 0x8F, 0xFE, 0xC7, 0xFF, 0x36, 0xFF, 0x71, 0xFF, 0xB7, 0xFF, 0xE5, 0xFF, 0xF0,
0xFF, 0xFD,
};
constexpr SerializedHyphenationPatterns fi_patterns = {
0x496u,
fi_trie_data,
sizeof(fi_trie_data),
};
+59 -24
View File
@@ -35,7 +35,7 @@ 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* IMAGE_TAGS[] = {"img", "image"};
constexpr const char* SKIP_TAGS[] = {"head"};
bool isWhitespace(const char c) { return c == ' ' || c == '\r' || c == '\n' || c == '\t'; }
@@ -225,6 +225,7 @@ void ChapterHtmlSlimParser::flushPartWordBuffer() {
currentTextBlock->addWord(partWordBuffer, fontStyle, false, nextWordContinues);
partWordBufferIndex = 0;
nextWordContinues = false;
listItemBulletOnly = false;
}
// start a new text block if needed
@@ -239,8 +240,28 @@ void ChapterHtmlSlimParser::startNewTextBlock(const BlockStyle& blockStyle) {
// open. Merge those into the new style so the first child in a container inherits
// the container's vertical spacing.
const auto style = currentTextBlock->getBlockStyle();
currentTextBlock->setBlockStyle(style.getCombinedBlockStyle(blockStyle, BlockStyle::CombineAxis::Vertical));
BlockStyle incoming = blockStyle;
if (style.fromBrElement) {
// The empty block was created by a <br> section separator. Inject a full line of
// blank space before the following paragraph so the scene/section break is visible.
// This only fires when the <br> block stayed empty (i.e. no inline text was added).
const int16_t lineHeight = static_cast<int16_t>(renderer.getLineHeight(fontId) * lineCompression + 0.5f);
incoming.marginTop = static_cast<int16_t>(incoming.marginTop + lineHeight);
}
currentTextBlock->setBlockStyle(style.getCombinedBlockStyle(incoming, BlockStyle::CombineAxis::Vertical));
flushPendingAnchor();
return;
}
// <li> added a bullet as the first word, making the block non-empty. When a nested
// block-level child (<p>, <div>, etc.) opens, reuse the block instead of flushing
// the bullet to its own line. The bullet stays inline with the child's text.
if (listItemBulletOnly) {
const auto style = currentTextBlock->getBlockStyle();
currentTextBlock->setBlockStyle(style.getCombinedBlockStyle(blockStyle, BlockStyle::CombineAxis::Vertical));
listItemBulletOnly = false;
flushPendingAnchor();
return;
}
@@ -252,6 +273,7 @@ void ChapterHtmlSlimParser::startNewTextBlock(const BlockStyle& blockStyle) {
flushPendingAnchor();
currentTextBlock.reset(new ParsedText(extraParagraphSpacing, hyphenationEnabled, focusReadingEnabled, blockStyle));
wordsExtractedInBlock = 0;
listItemBulletOnly = false;
}
void ChapterHtmlSlimParser::emitHorizontalRule(const BlockStyle& blockStyle) {
@@ -486,11 +508,18 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
for (int i = 0; atts[i]; i += 2) {
if (strcmp(atts[i], "src") == 0) {
src = atts[i + 1];
} else if (src.empty() && (strcmp(atts[i], "href") == 0 || strcmp(atts[i], "xlink:href") == 0)) {
src = atts[i + 1];
} else if (strcmp(atts[i], "alt") == 0) {
alt = atts[i + 1];
}
}
const size_t fragmentPos = src.find('#');
if (fragmentPos != std::string::npos) {
src.resize(fragmentPos);
}
// imageRendering: 0=display, 1=placeholder (alt text only), 2=suppress entirely
if (self->imageRendering == 2) {
self->skipUntilDepth = self->depth;
@@ -498,19 +527,6 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
return;
}
// Skip image if CSS display:none
if (self->cssParser) {
CssStyle imgDisplayStyle = self->cssParser->resolveStyle("img", classAttr);
if (!styleAttr.empty()) {
imgDisplayStyle.applyOver(CssParser::parseInlineStyle(styleAttr));
}
if (imgDisplayStyle.hasDisplay() && imgDisplayStyle.display == CssDisplay::None) {
self->skipUntilDepth = self->depth;
self->depth += 1;
return;
}
}
if (!src.empty() && self->imageRendering != 1) {
LOG_DBG("EHP", "Found image: src=%s", src.c_str());
@@ -534,24 +550,28 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
extractSuccess = self->epub->readItemContentsToStream(resolvedPath, cachedImageFile, 4096);
cachedImageFile.flush();
cachedImageFile.close();
delay(50); // Give SD card time to sync
}
if (extractSuccess) {
// Get image dimensions
// Get image dimensions, retrying to absorb SD-card sync latency on slow
// cards. Replaces a blanket delay(50) that cost ~50ms on every image, and
// closes the silent-drop bug where a single getDimensions failure was fatal.
ImageDimensions dims = {0, 0};
ImageToFramebufferDecoder* decoder = ImageDecoderFactory::getDecoder(cachedImagePath);
if (decoder && decoder->getDimensions(cachedImagePath, dims)) {
bool gotDimensions = false;
for (int attempt = 0; attempt < 3 && !gotDimensions; attempt++) {
if (attempt > 0) {
delay(50); // Give a slow SD card time to finish syncing before retrying
}
gotDimensions = decoder && decoder->getDimensions(cachedImagePath, dims);
}
if (gotDimensions) {
LOG_DBG("EHP", "Image dimensions: %dx%d", dims.width, dims.height);
int displayWidth = 0;
int displayHeight = 0;
const float emSize = static_cast<float>(self->renderer.getFontAscenderSize(self->fontId));
CssStyle imgStyle = self->cssParser ? self->cssParser->resolveStyle("img", classAttr) : CssStyle{};
// Merge inline style (e.g. style="height: 2em") so it overrides stylesheet rules
if (!styleAttr.empty()) {
imgStyle.applyOver(CssParser::parseInlineStyle(styleAttr));
}
const CssStyle& imgStyle = cssStyle;
const bool hasCssHeight = imgStyle.hasImageHeight();
const bool hasCssWidth = imgStyle.hasImageWidth();
@@ -855,7 +875,14 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
// flush word preceding <br/> to currentTextBlock before calling startNewTextBlock
self->flushPartWordBuffer();
}
self->startNewTextBlock(self->blockStyleStack.back().withoutBottom());
// Tag the new block so startNewTextBlock can inject a full line-height gap if
// the block remains empty (i.e. <br> is a section separator between paragraphs).
// If the block gets text added before the next block opens it becomes non-empty,
// goes through makePages() normally, and the flag has no effect (inline <br> case).
BlockStyle brStyle =
self->currentTextBlock ? self->currentTextBlock->getBlockStyle() : self->blockStyleStack.back();
brStyle.fromBrElement = true;
self->startNewTextBlock(brStyle);
} else {
self->currentCssStyle = cssStyle;
const auto accumulated = self->blockStyleStack.back().getCombinedBlockStyle(userAlignmentBlockStyle,
@@ -866,6 +893,7 @@ void XMLCALL ChapterHtmlSlimParser::startElement(void* userData, const XML_Char*
if (strcmp(name, "li") == 0) {
self->currentTextBlock->addWord("\xe2\x80\xa2", EpdFontFamily::REGULAR);
self->listItemBulletOnly = true;
}
}
} else if (matches(name, UNDERLINE_TAGS, std::size(UNDERLINE_TAGS))) {
@@ -1272,6 +1300,13 @@ void XMLCALL ChapterHtmlSlimParser::endElement(void* userData, const XML_Char* n
}
self->blockStyleStack.pop_back();
}
// </li> closes: if the bullet never got inline text (empty <li> or <li> with only
// block children that were flushed), clear the flag so the next sibling doesn't
// merge into this block.
if (strcmp(name, "li") == 0) {
self->listItemBulletOnly = false;
}
}
}
@@ -80,6 +80,7 @@ class ChapterHtmlSlimParser {
int tableDepth = 0;
int tableRowIndex = 0;
int tableColIndex = 0;
bool listItemBulletOnly = false; // true when currentTextBlock has only the <li> bullet
// Anchor-to-page mapping: tracks which page each HTML id attribute lands on
int completedPageCount = 0;
+6 -5
View File
@@ -137,8 +137,10 @@ void XMLCALL ContentOpfParser::startElement(void* userData, const XML_Char* name
LOG_ERR("COF", "Couldn't open temp items file for reading. This is probably going to be a fatal error.");
}
// Sort item index for binary search if we have enough items
if (self->itemIndex.size() >= LARGE_SPINE_THRESHOLD) {
// Sort the (unconditionally-built) item index so every idref lookup uses binary
// search. Without this, small/medium manifests fell back to an O(spine × manifest)
// linear rescan of .items.bin per itemref (up to ~200ms/item at large scale).
if (!self->itemIndex.empty()) {
std::sort(self->itemIndex.begin(), self->itemIndex.end(), [](const ItemIndexEntry& a, const ItemIndexEntry& b) {
return a.idHash < b.idHash || (a.idHash == b.idHash && a.idLen < b.idLen);
});
@@ -284,9 +286,8 @@ void XMLCALL ContentOpfParser::startElement(void* userData, const XML_Char* name
++it;
}
} else {
// Slow path: linear scan (for small manifests, keeps original behavior)
// TODO: This lookup is slow as need to scan through all items each time.
// It can take up to 200ms per item when getting to 1500 items.
// Fallback linear scan, only reached when the index is empty (no manifest
// items). The fast binary-search path above is used for all real manifests.
self->tempItemStore.seek(0);
std::string itemId;
while (self->tempItemStore.available()) {
+1 -3
View File
@@ -32,7 +32,7 @@ class ContentOpfParser final : public Print {
HalFile tempItemStore;
std::string coverItemId;
// Index for fast idref→href lookup (used only for large EPUBs)
// Index for fast idref→href lookup (binary search over .items.bin)
struct ItemIndexEntry {
uint32_t idHash; // FNV-1a hash of itemId
uint16_t idLen; // length for collision reduction
@@ -41,8 +41,6 @@ class ContentOpfParser final : public Print {
std::deque<ItemIndexEntry> itemIndex;
bool useItemIndex = false;
static constexpr uint16_t LARGE_SPINE_THRESHOLD = 400;
// FNV-1a hash function
static uint32_t fnvHash(const std::string& s) {
uint32_t hash = 2166136261u;
+14 -8
View File
@@ -62,7 +62,14 @@ void FontCacheManager::resetStats() {
bool FontCacheManager::isScanning() const { return scanMode_ == ScanMode::Scanning; }
void FontCacheManager::recordText(const char* text, int fontId, EpdFontFamily::Style style) {
scanText_ += text;
if (!text) return;
const size_t remaining = (scanTextLen_ < SCAN_TEXT_CAPACITY - 1) ? (SCAN_TEXT_CAPACITY - 1 - scanTextLen_) : 0;
if (remaining > 0) {
const size_t textLen = strnlen(text, remaining);
memcpy(scanText_ + scanTextLen_, text, textLen);
scanTextLen_ += textLen;
scanText_[scanTextLen_] = '\0';
}
if (scanFontId_ < 0) scanFontId_ = fontId;
const uint8_t baseStyle = static_cast<uint8_t>(style) & 0x03;
const unsigned char* p = reinterpret_cast<const unsigned char*>(text);
@@ -80,15 +87,15 @@ FontCacheManager::PrewarmScope::PrewarmScope(FontCacheManager& manager) : manage
manager_->scanMode_ = ScanMode::Scanning;
manager_->clearCache();
manager_->resetStats();
manager_->scanText_.clear();
manager_->scanText_.reserve(2048); // Pre-allocate to avoid heap fragmentation from repeated concat
manager_->scanTextLen_ = 0;
manager_->scanText_[0] = '\0';
memset(manager_->scanStyleCounts_, 0, sizeof(manager_->scanStyleCounts_));
manager_->scanFontId_ = -1;
}
void FontCacheManager::PrewarmScope::endScanAndPrewarm() {
manager_->scanMode_ = ScanMode::None;
if (manager_->scanText_.empty()) return;
if (manager_->scanTextLen_ == 0) return;
// Build style bitmask from all styles that appeared during the scan
uint8_t styleMask = 0;
@@ -97,11 +104,10 @@ void FontCacheManager::PrewarmScope::endScanAndPrewarm() {
}
if (styleMask == 0) styleMask = 1; // default to regular
manager_->prewarmCache(manager_->scanFontId_, manager_->scanText_.c_str(), styleMask);
manager_->prewarmCache(manager_->scanFontId_, manager_->scanText_, styleMask);
// Free scan string memory
manager_->scanText_.clear();
manager_->scanText_.shrink_to_fit();
manager_->scanTextLen_ = 0;
manager_->scanText_[0] = '\0';
}
FontCacheManager::PrewarmScope::~PrewarmScope() {
+4 -2
View File
@@ -2,9 +2,9 @@
#include <EpdFontFamily.h>
#include <cstddef>
#include <cstdint>
#include <map>
#include <string>
class FontDecompressor;
class SdCardFont;
@@ -51,7 +51,9 @@ class FontCacheManager {
enum class ScanMode : uint8_t { None, Scanning };
ScanMode scanMode_ = ScanMode::None;
std::string scanText_;
static constexpr size_t SCAN_TEXT_CAPACITY = 2048;
char scanText_[SCAN_TEXT_CAPACITY] = {};
size_t scanTextLen_ = 0;
uint32_t scanStyleCounts_[4] = {};
int scanFontId_ = -1;
};
+139 -32
View File
@@ -1,6 +1,7 @@
#include "GfxRenderer.h"
#include <BidiUtils.h>
#include <BuildScratch.h>
#include <FontDecompressor.h>
#include <HalGPIO.h>
#include <Logging.h>
@@ -24,6 +25,36 @@ uint8_t resolveSdCardStyle(const SdCardFont& font, const EpdFontFamily::Style st
namespace {
const char* resolveVisualText(const char* text, std::string& visualBuffer, BidiUtils::BidiBaseDir baseDir);
// Appends the shaped visual form of every RTL token in `text` to `shapedOut`.
// getTextAdvanceX() measures the bidi-reordered, Arabic-shaped codepoint stream,
// so the SD advance table must be warmed with the presentation forms as well as
// the logical codepoints — otherwise every RTL word measurement misses the fast
// path and falls through to onGlyphMiss(), which opens the .cpfont and reads
// glyph metadata + bitmap into the 8-slot overflow ring, once per glyph.
// Tokens without RTL lead bytes (0xD6-0xDB) are skipped with a byte scan, so
// pure-LTR text pays almost nothing.
void appendShapedRtlTokens(const char* text, std::string& shapedOut) {
const auto isBreak = [](const char c) { return c == ' ' || c == '\n' || c == '\r' || c == '\t'; };
std::string token;
std::string visual;
const char* p = text;
while (*p) {
while (*p && isBreak(*p)) ++p;
const char* start = p;
bool hasRtlBytes = false;
while (*p && !isBreak(*p)) {
const auto b = static_cast<unsigned char>(*p);
hasRtlBytes = hasRtlBytes || (b >= 0xD6 && b <= 0xDB);
++p;
}
if (!hasRtlBytes) continue;
token.assign(start, p - start);
if (BidiUtils::applyBidiVisual(token.c_str(), visual, static_cast<int>(BidiUtils::BidiBaseDir::AUTO))) {
shapedOut += visual;
}
}
}
} // namespace
const uint8_t* GfxRenderer::getGlyphBitmap(const EpdFontData* fontData, const EpdGlyph* glyph) const {
@@ -57,7 +88,9 @@ const uint8_t* GfxRenderer::getGlyphBitmap(const EpdFontData* fontData, const Ep
void GfxRenderer::ensureSdCardFontReady(int fontId, const char* utf8Text, uint8_t styleMask) const {
auto it = sdCardFonts_.find(fontId);
if (it != sdCardFonts_.end()) {
int missed = it->second->buildAdvanceTable(utf8Text, styleMask);
std::string shaped;
appendShapedRtlTokens(utf8Text, shaped);
int missed = it->second->buildAdvanceTable(utf8Text, styleMask, shaped.empty() ? nullptr : shaped.c_str());
if (missed > 0) {
LOG_DBG("GFX", "ensureSdCardFontReady: %d glyph(s) not found", missed);
}
@@ -71,7 +104,12 @@ void GfxRenderer::ensureSdCardFontReady(int fontId, const std::vector<std::strin
// Augment the persistent advance-only table for layout measurement.
// The table survives across paragraphs/sections (capped per font), so
// repeated indexing of the same SD font amortizes glyph-metric SD reads.
int missed = it->second->buildAdvanceTable(words, includeHyphen, styleMask);
std::string shaped;
for (const auto& w : words) {
appendShapedRtlTokens(w.c_str(), shaped);
}
int missed =
it->second->buildAdvanceTable(words, includeHyphen, styleMask, shaped.empty() ? nullptr : shaped.c_str());
if (missed > 0) {
LOG_DBG("GFX", "ensureSdCardFontReady: %d glyph(s) not found", missed);
}
@@ -91,6 +129,47 @@ void GfxRenderer::begin() {
bwBufferChunks.assign((frameBufferSize + BW_BUFFER_CHUNK_SIZE - 1) / BW_BUFFER_CHUNK_SIZE, nullptr);
}
void GfxRenderer::releaseFrameBufferForBuild() {
// Lend the framebuffer's bytes IN PLACE: the allocation is never freed, so
// it cannot move and repeated loans cannot fragment the heap (the previous
// free+realloc model measurably decayed the max contiguous block over a
// session). The bytes are deposited in the build-scratch registry so
// memory-hungry build phases (e.g. InflateStream's tinfl state + window)
// can claim them instead of allocating.
uint32_t size = 0;
uint8_t* scratch = display.lendFrameBufferStorage(&size);
frameBuffer = nullptr;
if (scratch) {
buildscratch::lend(scratch, size);
}
}
bool GfxRenderer::restoreFrameBufferAfterBuild() {
buildscratch::reclaim();
display.returnFrameBufferStorage(); // cannot fail: the allocation was never freed
frameBuffer = display.getFrameBuffer();
return frameBuffer != nullptr;
}
GfxRenderer::FrameBufferLoan::FrameBufferLoan(GfxRenderer& renderer) : renderer_(renderer) {
// Nesting guard: if the framebuffer is already lent out (an outer loan),
// stay inert so this end() cannot return storage the outer loan still owns.
if (!renderer_.hasFrameBuffer()) return;
renderer_.releaseFrameBufferForBuild();
active_ = true;
}
void GfxRenderer::FrameBufferLoan::end() {
if (!active_) return;
active_ = false;
if (!renderer_.restoreFrameBufferAfterBuild()) {
// Only reachable if the framebuffer never existed, which begin() already
// asserts against; kept as a backstop since running blind helps nobody.
LOG_ERR("GFX", "Framebuffer restore failed - restarting");
ESP.restart();
}
}
bool GfxRenderer::isFontCacheScanning() const { return fontCacheManager_ && fontCacheManager_->isScanning(); }
void GfxRenderer::insertFont(const int fontId, EpdFontFamily font) {
@@ -282,17 +361,8 @@ static void renderCharImpl(const GfxRenderer& renderer, GfxRenderer::RenderMode
const uint8_t bmpVal = 3 - ((byte >> bit_index) & 0x3);
if (renderMode == GfxRenderer::BW && bmpVal < 3) {
// Default: gray pixels paint solid black. Required when grayscale
// passes follow (their LUT lightens pixels it assumes were just
// driven solid black), and it is the plain non-AA look otherwise.
// Fast AA: partial (anti-aliased edge) coverage dithers with the
// same period-2 patterns as fillRectDither (dark grey = 50%
// checkerboard, light grey = 25%), approximating AA in a single
// BW pass. Skipped pixels leave the background untouched.
if (!renderer.isFastAntiAliasing() || bmpVal == 0 || (bmpVal == 1 && ((screenX + screenY) & 1) == 0) ||
(bmpVal == 2 && (screenX & 1) == 0 && (screenY & 1) == 0)) {
renderer.drawPixel(screenX, screenY, pixelState);
}
// Black (also paints over the grays in BW mode)
renderer.drawPixel(screenX, screenY, pixelState);
} else if (renderMode == GfxRenderer::GRAYSCALE_MSB && (bmpVal == 1 || bmpVal == 2)) {
// Light gray (also mark the MSB if it's going to be a dark gray too)
// Dedicated X3 gray LUTs now provide proper 4-level gray on both devices
@@ -427,18 +497,21 @@ void GfxRenderer::drawText(const int fontId, const int x, const int y, const cha
uint32_t cp;
uint32_t prevCp = 0;
while ((cp = utf8NextCodepoint(reinterpret_cast<const uint8_t**>(&textCursor)))) {
// Skip Hebrew Niqqud (vowel marks)
// Temporary: avoid adding Niqqud to built-in fonts. Remove when custom fonts are supported.
if (cp >= 0x0591 && cp <= 0x05C7) {
continue;
}
if (utf8IsCombiningMark(cp)) {
// RTL vowel marks (Hebrew niqqud, Arabic harakat) ride the combining-mark
// path: zero-advance overlays on the preceding base glyph (applyBidiVisual
// emits base-then-marks per UAX#9 L3). anchorFor pins position-sensitive
// niqqud (dagesh, shin/sin dots, holam) to their spot on the base; other
// marks stay centered, raised above the base or (kasra) at their
// font-native position. Fonts without their glyphs — the built-ins — miss
// the getGlyph lookup and skip them, as before.
if (utf8IsCombiningMark(cp) || BidiUtils::isTransparentMark(cp)) {
const EpdGlyph* combiningGlyph = font.getGlyph(cp, style);
if (!combiningGlyph) continue;
const int raiseBy = combiningMark::raiseAboveBase(combiningGlyph->top, combiningGlyph->height, lastBaseTop);
const int combiningX = combiningMark::centerOver(lastBaseX, lastBaseLeft, lastBaseWidth, combiningGlyph->left,
combiningGlyph->width);
const auto anchor = combiningMark::anchorFor(cp);
const int raiseBy =
combiningMark::raiseAboveBase(anchor, combiningGlyph->top, combiningGlyph->height, lastBaseTop);
const int combiningX = combiningMark::anchorOver(anchor, lastBaseX, lastBaseLeft, lastBaseWidth,
combiningGlyph->left, combiningGlyph->width);
renderCharImpl<TextRotation::None>(*this, renderMode, font, cp, combiningX, yPos - raiseBy, black, style);
continue;
}
@@ -1378,6 +1451,20 @@ void GfxRenderer::displayBuffer(const HalDisplay::RefreshMode refreshMode) const
display.displayBuffer(refreshMode, fadingFix);
}
void GfxRenderer::displayBufferAsync(const HalDisplay::RefreshMode refreshMode) const {
// The async path has no turn-off-screen hook, which the sunlight fading fix
// relies on; keep those users on the blocking path.
if (fadingFix) {
display.displayBuffer(refreshMode, fadingFix);
return;
}
display.displayBufferAsync(refreshMode);
}
void GfxRenderer::waitRefreshComplete() const { display.waitRefreshComplete(); }
bool GfxRenderer::supportsAsyncRefresh() const { return !fadingFix && display.supportsAsyncRefresh(); }
std::string GfxRenderer::truncatedText(const int fontId, const char* text, const int maxWidth,
const EpdFontFamily::Style style) const {
if (!text || maxWidth <= 0) return "";
@@ -1624,6 +1711,15 @@ int GfxRenderer::getKerning(const int fontId, const uint32_t leftCp, const uint3
}
int GfxRenderer::getTextAdvanceX(const int fontId, const char* text, EpdFontFamily::Style style) const {
// Measure the exact codepoint stream drawText renders: bidi-reordered and
// Arabic-shaped (contextual presentation forms, Lam-Alef collapse).
// Measuring the raw logical text counts the Alef a ligature absorbs and
// uses base-letter advances instead of presentation-form advances, so RTL
// lines come out wider than they draw — uneven word gaps and a ragged
// right margin.
std::string visual;
text = resolveVisualText(text, visual, BidiUtils::BidiBaseDir::AUTO);
// Advance table fast-path for SD card fonts during layout.
// No kerning/ligature lookup — consistent with previous metadataOnly behavior
// where kern/lig data was not loaded.
@@ -1639,6 +1735,10 @@ int GfxRenderer::getTextAdvanceX(const int fontId, const char* text, EpdFontFami
}
const auto& font = fontIt->second;
while (uint32_t cp = utf8NextCodepoint(reinterpret_cast<const uint8_t**>(&text))) {
// RTL vowel marks (niqqud/harakat) are zero-advance overlays in drawText — no width.
if (BidiUtils::isTransparentMark(cp)) {
continue;
}
int32_t advFP = sdIt->second->getAdvance(cp, styleIdx);
if (advFP == 0 && !utf8IsCombiningMark(cp)) {
const EpdGlyph* glyph = font.getGlyph(cp, style);
@@ -1661,6 +1761,10 @@ int GfxRenderer::getTextAdvanceX(const int fontId, const char* text, EpdFontFami
int32_t prevAdvanceFP = 0; // 12.4 fixed-point: prev glyph's advance + next kern for snap
const auto& font = fontIt->second;
while ((cp = utf8NextCodepoint(reinterpret_cast<const uint8_t**>(&text)))) {
// RTL vowel marks (niqqud/harakat) are zero-advance overlays in drawText — no width.
if (BidiUtils::isTransparentMark(cp)) {
continue;
}
if (utf8IsCombiningMark(cp)) {
continue;
}
@@ -1737,18 +1841,21 @@ void GfxRenderer::drawTextRotated90CW(const int fontId, const int x, const int y
uint32_t cp;
uint32_t prevCp = 0;
while ((cp = utf8NextCodepoint(reinterpret_cast<const uint8_t**>(&text)))) {
// Skip Hebrew Niqqud (vowel marks)
// Temporary: avoid adding Niqqud to built-in fonts. Remove when custom fonts are supported.
if (cp >= 0x0591 && cp <= 0x05C7) {
continue;
}
if (utf8IsCombiningMark(cp)) {
// RTL vowel marks (Hebrew niqqud, Arabic harakat) ride the combining-mark
// path: zero-advance overlays on the preceding base glyph (applyBidiVisual
// emits base-then-marks per UAX#9 L3). anchorFor pins position-sensitive
// niqqud (dagesh, shin/sin dots, holam) to their spot on the base; other
// marks stay centered, raised above the base or (kasra) at their
// font-native position. Fonts without their glyphs — the built-ins — miss
// the getGlyph lookup and skip them, as before.
if (utf8IsCombiningMark(cp) || BidiUtils::isTransparentMark(cp)) {
const EpdGlyph* combiningGlyph = font.getGlyph(cp, style);
if (!combiningGlyph) continue;
const int raiseBy = combiningMark::raiseAboveBase(combiningGlyph->top, combiningGlyph->height, lastBaseTop);
const auto anchor = combiningMark::anchorFor(cp);
const int raiseBy =
combiningMark::raiseAboveBase(anchor, combiningGlyph->top, combiningGlyph->height, lastBaseTop);
const int combiningX = x - raiseBy;
const int combiningY = combiningMark::centerOverRotated90CW(lastBaseY, lastBaseLeft, lastBaseWidth,
const int combiningY = combiningMark::anchorOverRotated90CW(anchor, lastBaseY, lastBaseLeft, lastBaseWidth,
combiningGlyph->left, combiningGlyph->width);
renderCharImpl<TextRotation::Rotated90CW>(*this, renderMode, font, cp, combiningX, combiningY, black, style);
continue;
+39 -9
View File
@@ -44,13 +44,6 @@ class GfxRenderer {
RenderMode renderMode;
Orientation orientation;
bool fadingFix;
// Fast text anti-aliasing: when set, BW-mode rendering of 2-bit glyphs
// dithers partial-coverage (gray) pixels instead of painting them solid
// black, approximating AA in a single BW pass with no grayscale refresh.
// Must stay false when grayscale LSB/MSB passes follow the BW render: the
// gray LUT lightens pixels it assumes were just driven solid black, and
// dither-skipped white pixels would take its white-drive frames unopposed.
bool fastAntiAliasing = false;
uint8_t* frameBuffer = nullptr;
uint16_t panelWidth = HalDisplay::DISPLAY_WIDTH;
uint16_t panelHeight = HalDisplay::DISPLAY_HEIGHT;
@@ -142,6 +135,17 @@ class GfxRenderer {
int getScreenWidth() const;
int getScreenHeight() const;
void displayBuffer(HalDisplay::RefreshMode refreshMode = HalDisplay::FAST_REFRESH) const;
// Non-blocking refresh: starts the waveform and returns so CPU work (e.g.
// grayscale strip rendering) can overlap the panel's refresh time. The
// framebuffer must stay untouched until waitRefreshComplete(). Falls back to
// a blocking refresh when fadingFix is enabled or the panel lacks deferral
// support. See HalDisplay::displayBufferAsync for the baseline contract.
void displayBufferAsync(HalDisplay::RefreshMode refreshMode = HalDisplay::FAST_REFRESH) const;
void waitRefreshComplete() const;
// True when displayBufferAsync() genuinely overlaps: panel defers and
// fadingFix isn't forcing the blocking path. Callers can skip overlap
// scaffolding (e.g. whole-plane grayscale buffers) when false.
bool supportsAsyncRefresh() const;
// EXPERIMENTAL: Windowed update - display only a rectangular region
// void displayWindow(int x, int y, int width, int height) const;
void invertScreen() const;
@@ -231,8 +235,6 @@ class GfxRenderer {
// Grayscale functions
void setRenderMode(const RenderMode mode) { this->renderMode = mode; }
RenderMode getRenderMode() const { return renderMode; }
void setFastAntiAliasing(const bool enabled) { this->fastAntiAliasing = enabled; }
bool isFastAntiAliasing() const { return fastAntiAliasing; }
// Grayscale preconditioning settle pass (no-op on X4). The rect overload
// takes the gray region in LOGICAL screen coordinates and rotates it to the
// panel; the no-arg overload settles the full frame. Call after the BW base
@@ -259,6 +261,34 @@ class GfxRenderer {
// Font helpers
const uint8_t* getGlyphBitmap(const EpdFontData* fontData, const EpdGlyph* glyph) const;
// Lend the 48 KB framebuffer's bytes to a memory-hungry phase (chapter
// builds) WITHOUT freeing the allocation, so it never moves and repeated
// loans cannot fragment the heap. Between release and restore NOTHING may
// draw or display — the panel keeps showing its last refreshed image. The
// lent bytes are published via buildscratch::claim() for consumers like
// InflateStream. restore returns the buffer white, so the caller must
// redraw the full screen; it cannot fail (no allocation involved).
void releaseFrameBufferForBuild();
bool restoreFrameBufferAfterBuild();
bool hasFrameBuffer() const { return frameBuffer != nullptr; }
// RAII form of the loan above, for blocking build regions with early-return
// error paths: restores on scope exit (or explicitly via end()). Display the
// popup/screen the panel should hold BEFORE constructing one. Constructing
// while the framebuffer is already lent yields an inert loan (nesting-safe).
class FrameBufferLoan {
public:
explicit FrameBufferLoan(GfxRenderer& renderer);
~FrameBufferLoan() { end(); }
void end();
FrameBufferLoan(const FrameBufferLoan&) = delete;
FrameBufferLoan& operator=(const FrameBufferLoan&) = delete;
private:
GfxRenderer& renderer_;
bool active_ = false;
};
// Low level functions
uint8_t* getFrameBuffer() const;
size_t getBufferSize() const;
+3 -2
View File
@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Рэжым вокладкі сну"
STR_HIDE_BATTERY: "Схаваць % батарэі"
STR_EXTRA_SPACING: "Дадат. інтэрвал абзаца"
STR_TEXT_AA: "Згладжванне тэксту"
STR_TEXT_AA_FULL: "Поўнае"
STR_TEXT_AA_FAST: "Хуткае"
STR_SHORT_PWR_BTN: "Кароткае націсканне PWR"
STR_ORIENTATION: "Арыентацыя чытання"
STR_SIDE_BTN_LAYOUT: "Бакавыя кнопкі"
@@ -89,6 +87,7 @@ STR_USERNAME: "Імя карыстальніка"
STR_PASSWORD: "Пароль"
STR_SYNC_SERVER_URL: "URL сервера сінхранізацыі"
STR_DOCUMENT_MATCHING: "Супастаўленне дакументаў"
STR_SEND_METADATA: "Адпраўляць метаданыя дакумента"
STR_AUTHENTICATE: "Аўтарызацыя"
STR_KOREADER_USERNAME: "Імя карыстальніка KOReader"
STR_KOREADER_PASSWORD: "Пароль KOReader"
@@ -302,3 +301,5 @@ 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"
STR_ADD_HIDDEN_NETWORK: "Дадаць схаваную сетку..."
STR_ENTER_WIFI_SSID: "Увядзіце назву сеткі (SSID)"
+64 -57
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@@ -7,7 +7,7 @@ STR_BOOTING: "ARRENCANT"
STR_SLEEPING: "ENTRANT EN REPÒS"
STR_ENTERING_SLEEP: "Entrant en repòs"
STR_BROWSE_FILES: "Explora fitxers"
STR_FILE_TRANSFER: "Transferència"
STR_FILE_TRANSFER: "Transferència de fitxers"
STR_SETTINGS_TITLE: "Configuració"
STR_CONTINUE_READING: "Continua llegint"
STR_NO_OPEN_BOOK: "Cap llibre obert"
@@ -18,6 +18,7 @@ STR_NO_CHAPTERS: "Sense capítols"
STR_END_OF_BOOK: "Final del llibre"
STR_EMPTY_CHAPTER: "Capítol buit"
STR_INDEXING: "S'està indexant"
STR_INDEX_FAILED: "No s'ha pogut indexar: llibre no vàlid"
STR_MEMORY_ERROR: "Error de memòria"
STR_PAGE_LOAD_ERROR: "Error en carregar la pàgina"
STR_EMPTY_FILE: "Fitxer buit"
@@ -28,60 +29,63 @@ STR_WIFI_NETWORKS: "Xarxes Wi-Fi"
STR_NO_NETWORKS: "No s'han trobat xarxes"
STR_NETWORKS_FOUND: "%zu xarxes trobades"
STR_SCANNING: "S'està escanejant..."
STR_FINDING_SAVED_WIFI: "S'estan cercant xarxes Wi-Fi desades..."
STR_CONNECTING: "S'està connectant..."
STR_CONNECTING_SAVED_WIFI: "S'està connectant a una xarxa Wi-Fi desada..."
STR_SHOW_NETWORKS: "Mostra"
STR_CONNECTED: "S'ha connectat!"
STR_CONNECTION_FAILED: "Error de connexió"
STR_FORGET_NETWORK: "Voleu oblidar aquesta xarxa?"
STR_SAVE_PASSWORD: "Voleu desar la contrasenya per a la propera vegada?"
STR_PRESS_OK_SCAN: "Premeu OK per tornar a escanejar"
STR_FORGET_NETWORK: "Vols oblidar aquesta xarxa?"
STR_SAVE_PASSWORD: "Vols desar la contrasenya per a la propera vegada?"
STR_PRESS_OK_SCAN: "Prem OK per tornar a escanejar"
STR_JOIN_NETWORK: "Uneix-te a una xarxa"
STR_CREATE_HOTSPOT: "Crea un punt d'accés"
STR_JOIN_DESC: "Connecta't a una xarxa Wi-Fi existent"
STR_HOTSPOT_DESC: "Crea una xarxa Wi-Fi per unir-s'hi"
STR_STARTING_HOTSPOT: "S'està iniciant el punt d'accés..."
STR_HOTSPOT_MODE: "Mode de punt d'accés"
STR_CONNECT_WIFI_HINT: "Connecteu el dispositiu a aquesta xarxa Wi-Fi"
STR_OPEN_URL_HINT: "Obriu aquest URL al navegador"
STR_CONNECT_WIFI_HINT: "Connecta el dispositiu a aquesta xarxa Wi-Fi"
STR_OPEN_URL_HINT: "Obre aquest URL al navegador"
STR_OR_HTTP_PREFIX: "o http://"
STR_SCAN_QR_HINT: "o escanegeu el codi QR amb el telèfon:"
STR_SCAN_QR_HINT: "o escaneja el codi QR amb el telèfon:"
STR_CALIBRE_WIRELESS: "Calibre sense fils"
STR_NETWORK_LEGEND: "* = Encriptat | + = Desat"
STR_MAC_ADDRESS: "Adreça MAC:"
STR_CHECKING_WIFI: "S'està comprovant el Wi-Fi..."
STR_ENTER_WIFI_PASSWORD: "Introduïu la contrasenya Wi-Fi"
STR_ENTER_WIFI_PASSWORD: "Introdueix la contrasenya Wi-Fi"
STR_TO_PREFIX: "a "
STR_CALIBRE_RECEIVING: "S'està rebent: "
STR_CALIBRE_RECEIVED: "S'ha rebut: "
STR_CALIBRE_INSTRUCTION_1: "1) Instal·leu el connector CrossPoint Reader"
STR_CALIBRE_INSTRUCTION_2: "2) Estigueu a la mateixa xarxa Wi-Fi"
STR_CALIBRE_INSTRUCTION_1: "1) Instal·la el connector CrossPoint Reader"
STR_CALIBRE_INSTRUCTION_2: "2) Estigues a la mateixa xarxa Wi-Fi"
STR_CALIBRE_INSTRUCTION_3: "3) A Calibre: \"Envia a un dispositiu\""
STR_CALIBRE_INSTRUCTION_4: "\"Mantingueu aquesta pantalla oberta mentre s'envia\""
STR_CALIBRE_INSTRUCTION_4: "\"Mantén aquesta pantalla oberta mentre s'envia\""
STR_CAT_DISPLAY: "Visualització"
STR_CAT_READER: "Lector"
STR_CAT_CONTROLS: "Controls"
STR_CAT_SYSTEM: "Sistema"
STR_SLEEP_SCREEN: "Pantalla de repòs"
STR_SLEEP_COVER_MODE: "Mode de pantalla de repòs"
STR_SLEEP_COVER_MODE: "Ajust de la portada en repòs"
STR_HIDE_BATTERY: "Oculta el % de bateria"
STR_EXTRA_SPACING: "Espaiat de paràgraf extra"
STR_TEXT_AA: "Antialiàsing del text"
STR_TEXT_AA_FULL: "Complet"
STR_TEXT_AA_FAST: "Ràpid"
STR_IMAGES: "Imatges"
STR_IMAGES_DISPLAY: "Mostrar"
STR_IMAGES_PLACEHOLDER: "Text de mostra"
STR_IMAGES_PLACEHOLDER: "Text alternatiu"
STR_IMAGES_SUPPRESS: "Suprimir"
STR_SHORT_PWR_BTN: "Clic curt del botó d'engegada"
STR_EOB_HOME: "Inici"
STR_EOB_CONTINUE_WITH: "Continua amb"
STR_SHORT_PWR_BTN: "Pulsació curta del botó d'engegada"
STR_ORIENTATION: "Orientació de lectura"
STR_SIDE_BTN_LAYOUT: "Disposició botons laterals"
STR_FRONT_BTN_FOLLOW_ORIENTATION: "Orientar botons frontals"
STR_LONG_PRESS_BEHAVIOR: "Comportament de prémer llargament el botó"
STR_LONG_PRESS_BEHAVIOR: "Acció en mantenir premut un botó"
STR_LONG_PRESS_BEHAVIOR_OFF: "Desactivat"
STR_LONG_PRESS_BEHAVIOR_SKIP: "Saltar capítols"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Canvi d'orientació"
STR_LONG_PRESS_MENU: "Funció de pulsació llarga"
STR_FONT_FAMILY: "Tipus de lletra"
STR_FONT_SIZE: "Mida de la lletra (UI)"
STR_FONT_FAMILY: "Font del lector"
STR_FONT_SIZE: "Cos de lletra del lector"
STR_LINE_SPACING: "Interlineat del lector"
STR_SCREEN_MARGIN: "Marge de pantalla del lector"
STR_PARA_ALIGNMENT: "Alineació de paràgrafs del lector"
@@ -90,15 +94,16 @@ STR_TIME_TO_SLEEP: "Temps per entrar en repòs"
STR_SHOW_HIDDEN_FILES: "Mostra fitxers 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"
STR_REFRESH_FREQ: "Freqüència de refresc"
STR_REFRESH_FREQ: "Freqüència d'actualització"
STR_KOREADER_SYNC: "Sincronització del KOReader"
STR_CHECK_UPDATES: "Comprova si hi ha actualitzacions"
STR_LANGUAGE: "Idioma"
STR_LANGUAGE: "Llengua"
STR_CLEAR_READING_CACHE: "Esborra la memòria cau de lectura"
STR_USERNAME: "Nom d'usuari"
STR_PASSWORD: "Contrasenya"
STR_SYNC_SERVER_URL: "URL del servidor de sincronització"
STR_DOCUMENT_MATCHING: "Coincidència de documents"
STR_SEND_METADATA: "Envia metadades del document"
STR_AUTHENTICATE: "Autentica"
STR_KOREADER_USERNAME: "Nom d'usuari del KOReader"
STR_KOREADER_PASSWORD: "Contrasenya del KOReader"
@@ -144,7 +149,7 @@ STR_PREV_NEXT: "Anterior/Següent"
STR_NEXT_PREV: "Següent/Anterior"
STR_KOSYNC: "KOSync"
STR_BOOKMARK_OPTION: "Punt de llibre"
STR_DISABLED: "Desactivats"
STR_DISABLED: "Sense funció"
STR_NOTO_SERIF: "Noto Serif"
STR_NOTO_SANS: "Noto Sans"
STR_SMALL: "Petita"
@@ -172,16 +177,16 @@ STR_UPDATING: "S'està actualitzant..."
STR_NO_UPDATE: "No hi ha actualitzacions disponibles"
STR_UPDATE_FAILED: "Ha fallat l'actualització"
STR_UPDATE_COMPLETE: "Actualització completada"
STR_POWER_ON_HINT: "Premeu i manteniu premut el botó d'encesa per tornar a engegar"
STR_POWER_ON_HINT: "Prem i mantén premut el botó d'encesa per tornar a engegar"
STR_NO_ENTRIES: "No s'ha trobat cap entrada"
STR_DOWNLOADING: "S'està baixant..."
STR_DOWNLOAD_FAILED: "Ha fallat la baixada"
STR_ERROR_MSG: "Error:"
STR_UNNAMED: "Sense nom"
STR_HOLD_OPEN_TO_DELETE: "Manteniu premut Obre per esborrar"
STR_HOLD_OPEN_TO_DELETE: "Mantén premut Obre per esborrar"
STR_NO_SERVER_URL: "No s'ha configurat cap URL de servidor"
STR_FETCH_FEED_FAILED: "Ha fallat l'obtenció del feed"
STR_PARSE_FEED_FAILED: "Ha fallat l'anàlisi del feed"
STR_FETCH_FEED_FAILED: "Ha fallat l'obtenció del canal de continguts"
STR_PARSE_FEED_FAILED: "Ha fallat l'anàlisi del canal de continguts"
STR_NETWORK_PREFIX: "Xarxa: "
STR_IP_ADDRESS_PREFIX: "Adreça IP: "
STR_ERROR_GENERAL_FAILURE: "Error: Fallada general"
@@ -194,7 +199,7 @@ STR_HOME: "« Inici"
STR_SELECT: "Selecciona"
STR_SELECTED: "Seleccionat"
STR_TOGGLE: "Canvia"
STR_TOGGLE_BOOKMARK: "Commuta punt de llibre"
STR_TOGGLE_BOOKMARK: "Afegeix o elimina el punt de llibre"
STR_CONFIRM: "Confirma"
STR_CANCEL: "Cancel·la"
STR_CONNECT: "Connecta"
@@ -213,7 +218,7 @@ STR_DIR_RIGHT: "Dreta"
STR_DIR_UP: "Amunt"
STR_DIR_DOWN: "Avall"
STR_OK_BUTTON: "OK"
STR_SLEEP_COVER_FILTER: "Filtre de pantalla de repòs"
STR_SLEEP_COVER_FILTER: "Filtre de la portada en repòs"
STR_FILTER_CONTRAST: "Contrast"
STR_CUSTOMISE_STATUS_BAR: "Personalitza la barra d'estat"
STR_CHAPTER_PAGE_COUNT: "Comptador de pàgines del capítol"
@@ -235,7 +240,7 @@ STR_THEME_CLASSIC: "Clàssic"
STR_THEME_LYRA: "Lyra"
STR_THEME_LYRA_EXTENDED: "Lyra Ampliat"
STR_SUNLIGHT_FADING_FIX: "Correcció de l'esvaïment pel sol"
STR_QUICK_RESUME_TIMEOUT: "Represa ràpida després del temps"
STR_QUICK_RESUME_TIMEOUT: "Represa ràpida per inactivitat"
STR_REMAP_FRONT_BUTTONS: "Reassigna els botons frontals"
STR_BOOKMARKS: "Punts de llibre"
STR_BOOKMARK_ADDED: "S'ha afegit el punt de llibre."
@@ -244,17 +249,17 @@ STR_OPDS_BROWSER: "Navegador OPDS"
STR_COVER_CUSTOM: "Portada + Personalitzat"
STR_QUICK_RESUME: "Represa ràpida"
STR_MENU_RECENT_BOOKS: "Llibres recents"
STR_REMOVE_FROM_RECENTS: "Voleu suprimir-lo de Llibres recents?"
STR_REMOVE_FROM_RECENTS: "Vols suprimir-lo de Llibres recents?"
STR_NO_RECENT_BOOKS: "No hi ha llibres recents"
STR_CALIBRE_DESC: "Usa les transferències sense fils de Calibre"
STR_FORGET_AND_REMOVE: "Voleu suprimir la contrasenya desada?"
STR_FORGET_AND_REMOVE: "Vols oblidar la xarxa i suprimir la contrasenya desada?"
STR_FORGET_BUTTON: "Oblida"
STR_CALIBRE_STARTING: "S'està iniciant el Calibre..."
STR_CALIBRE_SETUP: "Configura"
STR_CALIBRE_STATUS: "Estat"
STR_CLEAR_BUTTON: "Esborra"
STR_DEFAULT_VALUE: "Per defecte"
STR_REMAP_PROMPT: "Premeu un botó frontal per a cada rol"
STR_REMAP_PROMPT: "Prem un botó frontal per a cada rol"
STR_UNASSIGNED: "No assignat"
STR_ALREADY_ASSIGNED: "Ja assignat"
STR_REMAP_RESET_HINT: "Botó lateral Amunt: Restableix la disposició per defecte"
@@ -268,19 +273,19 @@ STR_GO_HOME_BUTTON: "Ves a l'inici"
STR_SYNC_PROGRESS: "Sincronitza el progrés"
STR_DELETE_CACHE: "Esborra la memòria cau del llibre"
STR_DELETE: "Esborra"
STR_CONFIRM_DELETE_BOOKMARK: "Voleu esborrar aquest punt de llibre?"
STR_CONFIRM_DELETE_BOOKMARK: "Vols esborrar aquest punt de llibre?"
STR_DISPLAY_QR: "Mostra la pàgina com a QR"
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_CALIBRE_URL_HINT: "Per al Calibre, afegeix /opds a la URL"
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"
STR_CALC_HASH: "S'està calculant l'empremta electrònica del document..."
STR_HASH_FAILED: "No s'ha pogut calcular l'empremta electrònica del document"
STR_FETCH_PROGRESS: "S'està obtenint el progrés remot..."
STR_UPLOAD_PROGRESS: "S'està pujant el progrés..."
STR_NO_CREDENTIALS_MSG: "No s'han configurat credencials"
STR_KOREADER_SETUP_HINT: "Configureu el compte de KOReader a la configuració"
STR_KOREADER_SETUP_HINT: "Configura el compte de KOReader a la configuració"
STR_PROGRESS_FOUND: "S'ha trobat progrés!"
STR_REMOTE_LABEL: "Remot:"
STR_LOCAL_LABEL: "Local:"
@@ -290,7 +295,7 @@ STR_DEVICE_FROM_FORMAT: " De: %s"
STR_APPLY_REMOTE: "Aplica el progrés remot"
STR_UPLOAD_LOCAL: "Puja el progrés local"
STR_NO_REMOTE_MSG: "No s'ha trobat progrés remot"
STR_UPLOAD_PROMPT: "Voleu pujar la posició actual?"
STR_UPLOAD_PROMPT: "Vols pujar la posició actual?"
STR_UPLOAD_SUCCESS: "Progrés pujat!"
STR_SYNC_FAILED_MSG: "Sincronització fallida"
STR_SAVE_PROGRESS_FAILED: "No s'ha pogut desar el progrés"
@@ -309,11 +314,11 @@ STR_SLEEP_NEVER: "Mai"
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)"
STR_AUTO_TURN_ENABLED: "Pas automàtic de pàgina activat"
STR_AUTO_TURN_PAGES_PER_MIN: "Pas automàtic de pàgina (pàg./min)"
STR_TILT_PAGE_TURN: "Pas de pàgina per inclinació"
STR_FORCE_REFRESH: "Refresca la pantalla"
STR_RESTARTING_HINT: "S'està reiniciant... Si el dispositiu no es reinicia, manteniu premut el botó d'encesa durant uns segons."
STR_RESTARTING_HINT: "S'està reiniciant... Si el dispositiu no es reinicia, mantén premut el botó d'encesa durant uns segons."
STR_NEXT_PAGE: "Pàgina següent »"
STR_PREV_PAGE: "« Pàgina anterior"
STR_XTC_STATUS_BAR: "Barra d'estat XTC"
@@ -342,20 +347,20 @@ STR_SERVER_NAME: "Nom del servidor"
STR_NO_SERVERS: "No hi ha servidors OPDS configurats"
STR_DELETE_SERVER: "Suprimeix el servidor"
STR_OPDS_SERVERS: "Servidors OPDS"
STR_MANAGE_FONTS: "Gestiona els tipus de lletra"
STR_FONT_BROWSER: "Navegador de tipus de lletra"
STR_LOADING_FONT_LIST: "S'està carregant la llista de tipus de lletra..."
STR_NO_FONTS_AVAILABLE: "No hi ha tipus de lletra disponibles"
STR_MANAGE_FONTS: "Gestiona les fonts"
STR_FONT_BROWSER: "Navegador de fonts"
STR_LOADING_FONT_LIST: "S'està carregant la llista de fonts..."
STR_NO_FONTS_AVAILABLE: "No hi ha fonts disponibles"
STR_FONT_PREVIEW_TEXT: "Jove xef, porti whisky amb quinze glaçons d'hidrogen, coi!"
STR_FONT_INSTALLED: "Tipus de lletra instal·lat!"
STR_FONT_INSTALL_FAILED: "Ha fallat la instal·lació del tipus de lletra"
STR_FONT_INSTALLED: "Font instal·lada!"
STR_FONT_INSTALL_FAILED: "Ha fallat la instal·lació de la font"
STR_INSTALLED: "Instal·lat"
STR_DOWNLOAD_ALL: "Descarrega-ho tot"
STR_UPDATE_ALL: "Actualitza-ho tot"
STR_UPDATE_AVAILABLE: "Actualitza"
STR_CRASH_TITLE: "Bloqueig del sistema"
STR_CRASH_DESCRIPTION: "S'ha desat un informe detallat a crash_report.txt. Incloeu aquest fitxer a l'informe d'errors."
STR_CRASH_REASON: "Motiu del bloqueig:"
STR_CRASH_TITLE: "Fallada del sistema"
STR_CRASH_DESCRIPTION: "S'ha desat un informe detallat a crash_report.txt. Inclou aquest fitxer a l'informe d'errors."
STR_CRASH_REASON: "Motiu de la fallada"
STR_CRASH_NO_REASON: "(No s'ha registrat cap motiu)"
STR_KB_HINT_MOVE_CURSOR: "Prem Esquerra o Dreta per moure el cursor"
STR_KB_HINT_RETURN_CURSOR: "Prem Esquerra per tornar a la posició del cursor"
@@ -368,20 +373,22 @@ STR_KB_TIPS: "Consells:"
STR_KB_HINT_RETURN_KEYBOARD: "Prem Avall per tornar al teclat"
STR_KB_HINT_EXIT_URL_MODE: "Prem ABC per sortir del mode URL"
STR_KB_HINT_CLEAR_TEXT: "Mantén premut DEL per esborrar tot el text"
STR_KB_HINT_SECONDARY_CHAR: "Mantén premut SELECT per al caràcter secundari"
STR_KB_HINT_UPPER_SECONDARY: "Mantén premut SELECT per MAJÚSCULES o caràcter secundari"
STR_KB_HINT_LOWER_SECONDARY: "Mantén premut SELECT per minúscules o caràcter secundari"
STR_KB_HINT_SECONDARY_CHAR: "Mantén premut SELECT: caràcter secundari"
STR_KB_HINT_UPPER_SECONDARY: "Mantén premut SELECT: majúscules o caràcter secundari"
STR_KB_HINT_LOWER_SECONDARY: "Mantén premut SELECT: minúscules o caràcter secundari"
STR_KB_HINT_URL_SNIPPETS: "Prem URL per inserir fragments"
STR_SD_FIRMWARE_UPDATE: "Actualització de firmware des de la targeta SD"
STR_SELECT_FIRMWARE_FILE: "Seleccioneu un fitxer de firmware (.bin)"
STR_SELECT_FIRMWARE_FILE: "Selecciona un fitxer de firmware (.bin)"
STR_NO_BIN_FILES: "No s'han trobat fitxers .bin"
STR_VALIDATING_FIRMWARE: "S'està validant el firmware..."
STR_INVALID_FIRMWARE: "Fitxer de firmware no vàlid"
STR_FIRMWARE_TOO_LARGE: "El firmware és massa gran per a la partició"
STR_FIRMWARE_TOO_SMALL: "El fitxer de firmware és massa petit"
STR_FIRMWARE_UPDATE_PROMPT: "Voleu actualitzar el firmware?"
STR_FIRMWARE_UPDATE_PROMPT: "Vols actualitzar el firmware?"
STR_FIRMWARE_FILE_OPEN_FAILED: "No es pot obrir el fitxer"
STR_FIRMWARE_WRITE_FAILED: "Ha fallat l'escriptura del firmware"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "No apagueu el dispositiu!"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "No apaguis el dispositiu!"
STR_RECOVERY_MODE: "Mode de recuperació"
STR_RECOVERY_MODE_HINT: "Poseu firmware.bin a l'arrel de la targeta SD i seleccioneu-lo"
STR_RECOVERY_MODE_HINT: "Posa firmware.bin a l'arrel de la targeta SD i selecciona'l"
STR_ADD_HIDDEN_NETWORK: "Afegeix una xarxa oculta..."
STR_ENTER_WIFI_SSID: "Introdueix el nom de la xarxa (SSID)"
+4 -3
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@@ -49,7 +49,7 @@ STR_NETWORK_LEGEND: "* = Šifrováno | + = Uloženo"
STR_MAC_ADDRESS: "MAC adresa:"
STR_CHECKING_WIFI: "Kontrola Wi-Fi..."
STR_ENTER_WIFI_PASSWORD: "Zadejte heslo Wi-Fi"
STR_TO_PREFIX: "pro"
STR_TO_PREFIX: "k "
STR_CALIBRE_RECEIVING: "Příjem:"
STR_CALIBRE_RECEIVED: "Přijato:"
STR_CALIBRE_INSTRUCTION_1: "1) Nainstalujte plugin CrossPoint Reader"
@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Obrazovka spánku Režim krytu"
STR_HIDE_BATTERY: "Skrýt baterii %"
STR_EXTRA_SPACING: "Extra mezery mezi odstavci"
STR_TEXT_AA: "Vyhlazování textu"
STR_TEXT_AA_FULL: "Plné"
STR_TEXT_AA_FAST: "Rychlé"
STR_SHORT_PWR_BTN: "Krátké stisknutí tlačítka napájení"
STR_ORIENTATION: "Orientace čtení"
STR_SIDE_BTN_LAYOUT: "Rozvržení bočních tlačítek (čtečka)"
@@ -94,6 +92,7 @@ STR_USERNAME: "Uživatelské jméno"
STR_PASSWORD: "Heslo"
STR_SYNC_SERVER_URL: "URL synch. serveru"
STR_DOCUMENT_MATCHING: "Párování dokumentů"
STR_SEND_METADATA: "Odesílat metadata dokumentu"
STR_AUTHENTICATE: "Ověření"
STR_KOREADER_USERNAME: "Uživ. jméno KOReaderu"
STR_KOREADER_PASSWORD: "Heslo KOReaderu"
@@ -277,3 +276,5 @@ STR_SLEEP_NEVER: "Nikdy"
STR_STEP_HINT_FRONT: "Přední tlačítka:"
STR_STEP_HINT_SIDE: "Boční tlačítka:"
STR_TILT_PAGE_TURN: "Otáčení stránek nakloněním"
STR_ADD_HIDDEN_NETWORK: "Přidat skrytou síť..."
STR_ENTER_WIFI_SSID: "Zadejte název sítě (SSID)"
+3 -2
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@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Hvile-skærm omslag-tilstand"
STR_HIDE_BATTERY: "Skjul batteri %"
STR_EXTRA_SPACING: "Ekstra afsnitsafstand"
STR_TEXT_AA: "Tekst Anti-Aliasing"
STR_TEXT_AA_FULL: "Fuld"
STR_TEXT_AA_FAST: "Hurtig"
STR_IMAGES: "Billeder"
STR_IMAGES_DISPLAY: "Vis"
STR_IMAGES_PLACEHOLDER: "Pladsholder"
@@ -99,6 +97,7 @@ STR_USERNAME: "Brugernavn"
STR_PASSWORD: "Adgangskode"
STR_SYNC_SERVER_URL: "Synkroniseringsserver-URL"
STR_DOCUMENT_MATCHING: "Dokumentsammenkobling"
STR_SEND_METADATA: "Send dokumentmetadata"
STR_AUTHENTICATE: "Godkend"
STR_KOREADER_USERNAME: "KOReader brugernavn"
STR_KOREADER_PASSWORD: "KOReader adgangskode"
@@ -305,3 +304,5 @@ STR_SCREENSHOT_BUTTON: "Tag skærmbillede"
STR_AUTO_TURN_ENABLED: "Automatisk sidevendning aktiveret: "
STR_AUTO_TURN_PAGES_PER_MIN: "Automatisk vending (sider per minut)"
STR_TILT_PAGE_TURN: "Vip for at vende side"
STR_ADD_HIDDEN_NETWORK: "Tilføj skjult netværk..."
STR_ENTER_WIFI_SSID: "Indtast netværksnavn (SSID)"
+3 -2
View File
@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Slaapscherm omslag-modus"
STR_HIDE_BATTERY: "Batterij % verbergen"
STR_EXTRA_SPACING: "Extra regelafstand alinea"
STR_TEXT_AA: "Tekst Anti-Aliasing"
STR_TEXT_AA_FULL: "Volledig"
STR_TEXT_AA_FAST: "Snel"
STR_IMAGES: "Afbeeldingen"
STR_IMAGES_DISPLAY: "Weergave"
STR_IMAGES_PLACEHOLDER: "Placeholder"
@@ -99,6 +97,7 @@ STR_USERNAME: "Gebruikersnaam"
STR_PASSWORD: "Wachtwoord"
STR_SYNC_SERVER_URL: "Sync-server URL"
STR_DOCUMENT_MATCHING: "Documentkoppeling"
STR_SEND_METADATA: "Documentmetadata versturen"
STR_AUTHENTICATE: "Authenticatie"
STR_KOREADER_USERNAME: "KOReader gebruikersnaam"
STR_KOREADER_PASSWORD: "KOReader wachtwoord"
@@ -305,3 +304,5 @@ STR_SCREENSHOT_BUTTON: "Screenshot maken"
STR_AUTO_TURN_ENABLED: "Automatisch omslaan ingeschakeld: "
STR_AUTO_TURN_PAGES_PER_MIN: "Autom. omslaan (pagina's per minuut)"
STR_TILT_PAGE_TURN: "Kantel om te bladeren"
STR_ADD_HIDDEN_NETWORK: "Verborgen netwerk toevoegen..."
STR_ENTER_WIFI_SSID: "Voer netwerknaam in (SSID)"
+26 -2
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@@ -18,6 +18,7 @@ STR_NO_CHAPTERS: "No chapters"
STR_END_OF_BOOK: "End of book"
STR_EMPTY_CHAPTER: "Empty chapter"
STR_INDEXING: "Indexing"
STR_INDEX_FAILED: "Failed to index - invalid book"
STR_MEMORY_ERROR: "Memory error"
STR_PAGE_LOAD_ERROR: "Page load error"
STR_EMPTY_FILE: "Empty file"
@@ -28,7 +29,10 @@ STR_WIFI_NETWORKS: "Wi-Fi Networks"
STR_NO_NETWORKS: "No networks found"
STR_NETWORKS_FOUND: "%zu networks found"
STR_SCANNING: "Scanning..."
STR_FINDING_SAVED_WIFI: "Finding saved Wi-Fi..."
STR_CONNECTING: "Connecting..."
STR_CONNECTING_SAVED_WIFI: "Connecting to saved Wi-Fi..."
STR_SHOW_NETWORKS: "Show"
STR_CONNECTED: "Connected!"
STR_CONNECTION_FAILED: "Connection Failed"
STR_FORGET_NETWORK: "Forget Network?"
@@ -49,6 +53,8 @@ STR_NETWORK_LEGEND: "* = Encrypted | + = Saved"
STR_MAC_ADDRESS: "MAC address:"
STR_CHECKING_WIFI: "Checking Wi-Fi..."
STR_ENTER_WIFI_PASSWORD: "Enter Wi-Fi password"
STR_ADD_HIDDEN_NETWORK: "Add hidden network..."
STR_ENTER_WIFI_SSID: "Enter network name (SSID)"
STR_TO_PREFIX: "to "
STR_CALIBRE_RECEIVING: "Receiving: "
STR_CALIBRE_RECEIVED: "Received: "
@@ -66,8 +72,6 @@ STR_SLEEP_COVER_MODE: "Sleep Screen Cover Mode"
STR_HIDE_BATTERY: "Hide Battery %"
STR_EXTRA_SPACING: "Extra Paragraph Spacing"
STR_TEXT_AA: "Text Anti-Aliasing"
STR_TEXT_AA_FULL: "Full"
STR_TEXT_AA_FAST: "Fast"
STR_IMAGES: "Images"
STR_IMAGES_DISPLAY: "Display"
STR_IMAGES_PLACEHOLDER: "Placeholder"
@@ -103,6 +107,7 @@ STR_USERNAME: "Username"
STR_PASSWORD: "Password"
STR_SYNC_SERVER_URL: "Sync Server URL"
STR_DOCUMENT_MATCHING: "Document Matching"
STR_SEND_METADATA: "Send Document Metadata"
STR_AUTHENTICATE: "Authenticate"
STR_KOREADER_USERNAME: "KOReader Username"
STR_KOREADER_PASSWORD: "KOReader Password"
@@ -290,6 +295,25 @@ STR_HW_BACK_LABEL: "Back (1st button)"
STR_HW_CONFIRM_LABEL: "Confirm (2nd button)"
STR_HW_LEFT_LABEL: "Left (3rd button)"
STR_HW_RIGHT_LABEL: "Right (4th button)"
STR_BLUETOOTH: "Bluetooth"
STR_TOGGLE_BLUETOOTH: "Toggle Bluetooth"
STR_BT_SCAN_PAIR: "Scan & Pair"
STR_BT_NO_DEVICES: "No devices found"
STR_BT_FREE_HINT1: "Set Free2/3 to Reader Mode and"
STR_BT_FREE_HINT2: "Volume Function to pair"
STR_BT_DISCONNECT: "Disconnect"
STR_BT_CONNECTED_TO: "Connected: %s"
STR_BT_NOT_CONNECTED: "Not connected"
STR_BT_PAIRED_DEVICES: "Paired Devices"
STR_BT_NO_PAIRED: "No paired devices"
STR_BT_MAP_BUTTONS: "Map Remote Buttons"
STR_BT_PRESS_REMOTE: "Press a button on your remote"
STR_BT_CONNECTING_POPUP: "BT Connecting..."
STR_BT_PAUSED_LOW_MEM_POPUP: "BT paused (low memory)"
STR_STATE_PAUSED: "PAUSED"
STR_BT_PAGE_FORWARD: "Page Forward"
STR_BT_PAGE_BACK: "Page Back"
STR_BT_FORGET_PROMPT: "Hold Confirm to forget"
STR_GO_TO_PERCENT: "Go to %"
STR_GO_HOME_BUTTON: "Go Home"
STR_SYNC_PROGRESS: "Sync Progress"
+3 -2
View File
@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Lepotilanäytön kansitila"
STR_HIDE_BATTERY: "Piilota akun %"
STR_EXTRA_SPACING: "Kappaleiden lisäväli"
STR_TEXT_AA: "Tekstin reunanpehmennys"
STR_TEXT_AA_FULL: "Täysi"
STR_TEXT_AA_FAST: "Nopea"
STR_SHORT_PWR_BTN: "Lyhyt virtapainikkeen painallus"
STR_ORIENTATION: "Lukusuunta"
STR_SIDE_BTN_LAYOUT: "Sivupainikkeiden asettelu (lukija)"
@@ -94,6 +92,7 @@ STR_USERNAME: "Käyttäjänimi"
STR_PASSWORD: "Salasana"
STR_SYNC_SERVER_URL: "Synkronointipalvelimen osoite"
STR_DOCUMENT_MATCHING: "Dokumenttien tunnistus"
STR_SEND_METADATA: "Lähetä asiakirjan metatiedot"
STR_AUTHENTICATE: "Tunnistaudu"
STR_KOREADER_USERNAME: "KOReader-käyttäjänimi"
STR_KOREADER_PASSWORD: "KOReader-salasana"
@@ -275,3 +274,5 @@ STR_SLEEP_NEVER: "Ei koskaan"
STR_STEP_HINT_FRONT: "Etupainikkeet:"
STR_STEP_HINT_SIDE: "Sivupainikkeet:"
STR_TILT_PAGE_TURN: "Sivunkääntö kallistamalla"
STR_ADD_HIDDEN_NETWORK: "Lisää piilotettu verkko..."
STR_ENTER_WIFI_SSID: "Anna verkon nimi (SSID)"
+3 -2
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@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Mode écran de veille"
STR_HIDE_BATTERY: "Masquer % batterie"
STR_EXTRA_SPACING: "Espacement paragraphes"
STR_TEXT_AA: "Lissage du texte"
STR_TEXT_AA_FULL: "Complet"
STR_TEXT_AA_FAST: "Rapide"
STR_IMAGES: "Images"
STR_IMAGES_DISPLAY: "Affichage"
STR_IMAGES_PLACEHOLDER: "Espace réservé"
@@ -99,6 +97,7 @@ STR_USERNAME: "Nom dutilisateur"
STR_PASSWORD: "Mot de passe"
STR_SYNC_SERVER_URL: "URL du serveur"
STR_DOCUMENT_MATCHING: "Correspondance"
STR_SEND_METADATA: "Envoyer métadonnées"
STR_AUTHENTICATE: "Connexion"
STR_KOREADER_USERNAME: "Utilisateur"
STR_KOREADER_PASSWORD: "Mot de passe"
@@ -306,3 +305,5 @@ 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)"
STR_TILT_PAGE_TURN: "Tourner par inclinaison"
STR_ADD_HIDDEN_NETWORK: "Ajouter un réseau masqué..."
STR_ENTER_WIFI_SSID: "Saisir le nom du réseau (SSID)"
+3 -2
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@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Standby-Bildmodus"
STR_HIDE_BATTERY: "Batterie % ausblenden"
STR_EXTRA_SPACING: "Absatzabstand"
STR_TEXT_AA: "Schriftglättung"
STR_TEXT_AA_FULL: "Voll"
STR_TEXT_AA_FAST: "Schnell"
STR_SHORT_PWR_BTN: "An-Taste kurz drücken"
STR_ORIENTATION: "Leseausrichtung"
STR_SIDE_BTN_LAYOUT: "Seitliche Tasten (Lesen)"
@@ -93,6 +91,7 @@ STR_USERNAME: "Benutzername"
STR_PASSWORD: "Passwort"
STR_SYNC_SERVER_URL: "Sync-Server-URL"
STR_DOCUMENT_MATCHING: "Dateizuordnung"
STR_SEND_METADATA: "Metadaten senden"
STR_AUTHENTICATE: "Authentifizieren"
STR_KOREADER_USERNAME: "KOReader-Benutzername"
STR_KOREADER_PASSWORD: "KOReader-Passwort"
@@ -382,3 +381,5 @@ STR_FIRMWARE_WRITE_FAILED: "Schreiben der Firmware-Datei ist fehlgeschlagen"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Nicht ausschalten!"
STR_RECOVERY_MODE: "Wiederherstellungsmodus"
STR_RECOVERY_MODE_HINT: "Lege firmware.bin im SD-Kartenwurzelverzeichnis ab und wähle es aus"
STR_ADD_HIDDEN_NETWORK: "Verstecktes Netzwerk hinzufügen..."
STR_ENTER_WIFI_SSID: "Netzwerknamen eingeben (SSID)"
+3 -2
View File
@@ -66,8 +66,6 @@ STR_SLEEP_COVER_MODE: "תצוגת כריכה במצב שינה"
STR_HIDE_BATTERY: "הסתר אחוזי סוללה"
STR_EXTRA_SPACING: "מרווח פסקאות מוגדל"
STR_TEXT_AA: "החלקת קצוות טקסט"
STR_TEXT_AA_FULL: "מלאה"
STR_TEXT_AA_FAST: "מהירה"
STR_IMAGES: "תמונות"
STR_IMAGES_DISPLAY: "הצג תמונות"
STR_IMAGES_PLACEHOLDER: "סמן"
@@ -97,6 +95,7 @@ STR_USERNAME: "שם משתמש"
STR_PASSWORD: "סיסמה"
STR_SYNC_SERVER_URL: "כתובת שרת סנכרון"
STR_DOCUMENT_MATCHING: "התאמת מסמכים"
STR_SEND_METADATA: "שלח מטא-נתוני מסמך"
STR_AUTHENTICATE: "התחבר"
STR_KOREADER_USERNAME: "שם משתמש ב-KOReader"
STR_KOREADER_PASSWORD: "סיסמת KOReader"
@@ -393,3 +392,5 @@ STR_SLEEP_TIMER_VALUE_FORMAT: "%u דקות"
STR_SLEEP_NEVER: "אף פעם"
STR_STEP_HINT_FRONT: "לחצנים קדמיים:"
STR_STEP_HINT_SIDE: "לחצני צד:"
STR_ADD_HIDDEN_NETWORK: "הוסף רשת מוסתרת..."
STR_ENTER_WIFI_SSID: "הזן שם רשת (SSID)"
+93 -2
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@@ -49,6 +49,8 @@ STR_NETWORK_LEGEND: "* = Titkosított | + = Mentett"
STR_MAC_ADDRESS: "MAC-cím:"
STR_CHECKING_WIFI: "Wi-Fi ellenőrzése..."
STR_ENTER_WIFI_PASSWORD: "Add meg a Wi-Fi jelszót"
STR_ADD_HIDDEN_NETWORK: "Rejtett hálózat hozzáadása..."
STR_ENTER_WIFI_SSID: "Add meg a hálózat nevét (SSID)"
STR_TO_PREFIX: "- "
STR_CALIBRE_RECEIVING: "Fogadás: "
STR_CALIBRE_RECEIVED: "Fogadva: "
@@ -65,8 +67,6 @@ STR_SLEEP_COVER_MODE: "Alvásképernyő borítómód"
STR_HIDE_BATTERY: "Akkumulátor % elrejtése"
STR_EXTRA_SPACING: "Extra bekezdésköz"
STR_TEXT_AA: "Szöveg élsimítás"
STR_TEXT_AA_FULL: "Teljes"
STR_TEXT_AA_FAST: "Gyors"
STR_IMAGES: "Képek"
STR_IMAGES_DISPLAY: "Megjelenítés"
STR_IMAGES_PLACEHOLDER: "Helyőrző"
@@ -96,6 +96,7 @@ STR_USERNAME: "Felhasználónév"
STR_PASSWORD: "Jelszó"
STR_SYNC_SERVER_URL: "Szinkronizálás szerver URL"
STR_DOCUMENT_MATCHING: "Dokumentum egyeztetés"
STR_SEND_METADATA: "Dokumentum metaadatok küldése"
STR_AUTHENTICATE: "Hitelesítés"
STR_KOREADER_USERNAME: "KOReader felhasználónév"
STR_KOREADER_PASSWORD: "KOReader jelszó"
@@ -302,3 +303,93 @@ STR_SCREENSHOT_BUTTON: "Képernyőkép készítése"
STR_AUTO_TURN_ENABLED: "Automatikus lapozás bekapcsolva: "
STR_AUTO_TURN_PAGES_PER_MIN: "Automatikus lapozás (oldal/perc)"
STR_TILT_PAGE_TURN: "Döntéses lapozás"
STR_ADD_SERVER: "Szerver hozzáadása"
STR_BOOKMARKS: "Könyvjelzők"
STR_BOOKMARK_ADDED: "Könyvjelző hozzáadva."
STR_BOOKMARK_OPTION: "Könyvjelző"
STR_BOTTOM: "Alul"
STR_CLOCK: "Óra"
STR_CLOCK_FORMAT: "Óraformátum"
STR_CLOCK_FORMAT_12H: "12 órás"
STR_CLOCK_FORMAT_24H: "24 órás"
STR_CLOCK_SYNC: "Óra szinkronizálása"
STR_CLOCK_SYNCED: "Óra szinkronizálva"
STR_CLOCK_SYNCING: "Szinkronizálás NTP-ről..."
STR_CLOCK_SYNC_FAIL: "Szinkronizálás sikertelen"
STR_CLOCK_SYNC_NOW: "Óra szinkronizálása most"
STR_CLOCK_SYNC_NO_WIFI: "Wi-Fi nincs csatlakoztatva"
STR_CLOCK_SYNC_NO_WIFI_HINT: "Először csatlakozz Wi-Fi-hez, majd próbáld újra."
STR_CLOCK_SYNC_OK: "Óra szinkronizálva"
STR_CLOCK_UTC_OFFSET: "Óra UTC eltolás"
STR_CONFIRM_DELETE_BOOKMARK: "Törlöd ezt a könyvjelzőt?"
STR_CONNECTING_SAVED_WIFI: "Csatlakozás mentett Wi-Fi-hez..."
STR_CRASH_DESCRIPTION: "A részletes jelentés a crash_report.txt fájlba lett mentve. Kérjük, csatold ezt a fájlt a hibajelentéshez."
STR_CRASH_NO_REASON: "(Nem került rögzítésre ok)"
STR_CRASH_REASON: "Összeomlás oka:"
STR_CRASH_TITLE: "Rendszerösszeomlás"
STR_CURRENT_TIME: "Aktuális idő:"
STR_DELETE_SERVER: "Szerver törlése"
STR_DISABLED: "Letiltva"
STR_DOWNLOAD_ALL: "Összes letöltése"
STR_EOB_CONTINUE_WITH: "Folytatás ezzel"
STR_EOB_HOME: "Kezdőképernyő"
STR_FINDING_SAVED_WIFI: "Mentett Wi-Fi keresése..."
STR_FIRMWARE_FILE_OPEN_FAILED: "A fájl nem nyitható meg"
STR_FIRMWARE_TOO_LARGE: "A firmware túl nagy a partícióhoz"
STR_FIRMWARE_TOO_SMALL: "A firmware fájl túl kicsi"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Ne kapcsold ki!"
STR_FIRMWARE_UPDATE_PROMPT: "Frissíted a firmware-t?"
STR_FIRMWARE_WRITE_FAILED: "A firmware írása sikertelen"
STR_FONT_BROWSER: "Betűtípus-böngésző"
STR_FONT_INSTALLED: "Betűtípus telepítve!"
STR_FONT_INSTALL_FAILED: "A betűtípus telepítése sikertelen"
STR_FORCE_REFRESH: "Képernyő frissítése"
STR_INDEX_FAILED: "Indexelés sikertelen érvénytelen könyv"
STR_INSTALLED: "Telepítve"
STR_INVALID_FIRMWARE: "Érvénytelen firmware fájl"
STR_KB_HINT_CLEAR_TEXT: "Tartsd nyomva a DEL-t az összes szöveg törléséhez"
STR_KB_HINT_EDIT_ENTRY: "Tartsd nyomva a FEL-t a bejegyzés szerkesztéséhez"
STR_KB_HINT_EXIT_URL_MODE: "Nyomd meg az ABC-t az URL mód elhagyásához"
STR_KB_HINT_HIDE_PASSWORD: "Tartsd nyomva a JOBBRA-t, majd nyomd meg a [***]-ot a jelszó elrejtéséhez"
STR_KB_HINT_LOWER_SECONDARY: "Tartsd nyomva a SELECT-et kisbetűért vagy másodlagos karakterért"
STR_KB_HINT_MOVE_CURSOR: "Nyomd meg a BALRA vagy JOBBRA gombot a kurzor mozgatásához"
STR_KB_HINT_RETURN_CURSOR: "Nyomd meg a BALRA-t a kurzorpozícióhoz való visszatéréshez"
STR_KB_HINT_RETURN_KEYBOARD: "Nyomd meg a LE-t a billentyűzethez való visszatéréshez"
STR_KB_HINT_SECONDARY_CHAR: "Tartsd nyomva a SELECT-et másodlagos karakterért"
STR_KB_HINT_SHOW_PASSWORD: "Tartsd nyomva a JOBBRA-t, majd nyomd meg az [abc]-t a jelszó megjelenítéséhez"
STR_KB_HINT_TOGGLE_HIDE_PASSWORD: "Nyomd meg a [***]-ot a jelszó elrejtéséhez"
STR_KB_HINT_TOGGLE_SHOW_PASSWORD: "Nyomd meg az [abc]-t a jelszó megjelenítéséhez"
STR_KB_HINT_UPPER_SECONDARY: "Tartsd nyomva a SELECT-et NAGYBETŰÉRT vagy másodlagos karakterért"
STR_KB_HINT_URL_SNIPPETS: "Nyomd meg az URL-t az URL-részletekért"
STR_KB_TIPS: "Tippek:"
STR_KOSYNC: "KOSync"
STR_LOADING_FONT_LIST: "Betűtípuslista betöltése..."
STR_LONG_PRESS_BEHAVIOR: "Hosszú gombnyomás viselkedése"
STR_LONG_PRESS_BEHAVIOR_OFF: "KI"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Tájolásváltás"
STR_LONG_PRESS_BEHAVIOR_SKIP: "Fejezetugrás"
STR_LONG_PRESS_MENU: "Hosszú nyomás Menü"
STR_MANAGE_FONTS: "Betűtípusok kezelése"
STR_NEXT_FIELD: "Következő"
STR_NEXT_PAGE: "Következő oldal »"
STR_NO_BIN_FILES: "Nincs .bin fájl"
STR_NO_FONTS_AVAILABLE: "Nincs elérhető betűtípus"
STR_NO_SERVERS: "Nincs beállított OPDS szerver"
STR_OPDS_SERVERS: "OPDS szerverek"
STR_PREV_PAGE: "« Előző oldal"
STR_PWR_BTN_FOOTNOTE_BACK: "Gyors visszatérés lábjegyzetből"
STR_RECOVERY_MODE: "Helyreállítási mód"
STR_RECOVERY_MODE_HINT: "Helyezd a firmware.bin fájlt az SD-kártya gyökerébe, majd válaszd ki"
STR_RESTARTING_HINT: "Újraindítás... Ha az eszköz nem indul újra, tartsd nyomva a bekapcsológombot néhány másodpercig."
STR_SD_FIRMWARE_UPDATE: "Firmware frissítés SD-kártyáról"
STR_SEARCH: "Keresés"
STR_SELECT_FIRMWARE_FILE: "Válassz firmware fájlt (.bin)"
STR_SERVER_NAME: "Szerver neve"
STR_SET_SLEEP_COVER: "Borító beállítása"
STR_SHOW_NETWORKS: "Megjelenítés"
STR_THEME_ROUNDEDRAFF: "RoundedRaff"
STR_TOP: "Felül"
STR_UPDATE_ALL: "Összes frissítése"
STR_UPDATE_AVAILABLE: "Frissítés"
STR_VALIDATING_FIRMWARE: "Firmware ellenőrzése..."
STR_XTC_STATUS_BAR: "XTC állapotsáv"
+6 -2
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@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Modalità copertina"
STR_HIDE_BATTERY: "Nascondi % batteria"
STR_EXTRA_SPACING: "Spaziatura extra paragrafi"
STR_TEXT_AA: "Anti-aliasing testo"
STR_TEXT_AA_FULL: "Completo"
STR_TEXT_AA_FAST: "Veloce"
STR_IMAGES: "Immagini"
STR_IMAGES_DISPLAY: "Visualizza"
STR_IMAGES_PLACEHOLDER: "Segnaposto"
@@ -100,6 +98,7 @@ STR_USERNAME: "Nome utente"
STR_PASSWORD: "Password"
STR_SYNC_SERVER_URL: "URL server di sincronizzazione"
STR_DOCUMENT_MATCHING: "Corrispondenza documenti"
STR_SEND_METADATA: "Invia metadati documento"
STR_AUTHENTICATE: "Autentica"
STR_KOREADER_USERNAME: "Nome utente KOReader"
STR_KOREADER_PASSWORD: "Password KOReader"
@@ -385,3 +384,8 @@ STR_DISABLED: "Disattivato"
STR_BOOKMARK_OPTION: "Segnalibro"
STR_KOSYNC: "KOSync"
STR_PWR_BTN_FOOTNOTE_BACK: "Rientro rapido dalle note"
STR_EOB_CONTINUE_WITH: "Continua con"
STR_EOB_HOME: "Home"
STR_INDEX_FAILED: "Indicizzazione fallita - libro non valido"
STR_ADD_HIDDEN_NETWORK: "Aggiungi rete nascosta..."
STR_ENTER_WIFI_SSID: "Inserisci il nome della rete (SSID)"
+3 -2
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@@ -64,8 +64,6 @@ STR_SLEEP_COVER_MODE: "Ұйқы экраны мұқаба режимі"
STR_HIDE_BATTERY: "Батарея % жасыру"
STR_EXTRA_SPACING: "Қосымша абзац аралығы"
STR_TEXT_AA: "Мәтін сырғытпасы"
STR_TEXT_AA_FULL: "Толық"
STR_TEXT_AA_FAST: "Жылдам"
STR_SHORT_PWR_BTN: "Қуат түймесін қысқа басу"
STR_ORIENTATION: "Оқу бағдары"
STR_SIDE_BTN_LAYOUT: "Бүйірлік түймелер орналасуы (оқырман)"
@@ -90,6 +88,7 @@ STR_USERNAME: "Пайдаланушы аты"
STR_PASSWORD: "Құпия сөз"
STR_SYNC_SERVER_URL: "Синхрондау сервері URL"
STR_DOCUMENT_MATCHING: "Құжат сәйкестендіру"
STR_SEND_METADATA: "Құжат метадеректерін жіберу"
STR_AUTHENTICATE: "Аутентификация"
STR_KOREADER_USERNAME: "KOReader пайдаланушы аты"
STR_KOREADER_PASSWORD: "KOReader құпия сөзі"
@@ -301,3 +300,5 @@ 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)"
STR_TILT_PAGE_TURN: "Еңкейту арқылы бет аудару"
STR_ADD_HIDDEN_NETWORK: "Жасырын желіні қосу..."
STR_ENTER_WIFI_SSID: "Желі атауын енгізіңіз (SSID)"
+3 -2
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@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Viršelio režimas"
STR_HIDE_BATTERY: "Slėpti baterijos %"
STR_EXTRA_SPACING: "Tarpai tarp pastraipų"
STR_TEXT_AA: "Teksto glotninimas"
STR_TEXT_AA_FULL: "Pilnas"
STR_TEXT_AA_FAST: "Greitas"
STR_IMAGES: "Paveikslėliai"
STR_IMAGES_DISPLAY: "Rodyti"
STR_IMAGES_PLACEHOLDER: "Vietaženklis"
@@ -96,6 +94,7 @@ STR_USERNAME: "Vartotojas"
STR_PASSWORD: "Slaptažodis"
STR_SYNC_SERVER_URL: "Serverio URL"
STR_DOCUMENT_MATCHING: "Atpažinimas"
STR_SEND_METADATA: "Siųsti dokumento metaduomenis"
STR_AUTHENTICATE: "Prisijungti"
STR_KOREADER_USERNAME: "KOReader vartotojas"
STR_KOREADER_PASSWORD: "KOReader slaptažodis"
@@ -302,3 +301,5 @@ STR_SCREENSHOT_BUTTON: "Ekrano nuotrauka"
STR_AUTO_TURN_ENABLED: "Auto-vertimas: "
STR_AUTO_TURN_PAGES_PER_MIN: "Auto-vertimas (psl/min)"
STR_TILT_PAGE_TURN: "Puslapio vertimas pakreipiant"
STR_ADD_HIDDEN_NETWORK: "Pridėti paslėptą tinklą..."
STR_ENTER_WIFI_SSID: "Įveskite tinklo pavadinimą (SSID)"
+3 -2
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@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Okładki wygaszacza"
STR_HIDE_BATTERY: "Ukryj % baterii"
STR_EXTRA_SPACING: "Dodatkowe odstępy paragrafów"
STR_TEXT_AA: "Wygładzanie tekstu"
STR_TEXT_AA_FULL: "Pełne"
STR_TEXT_AA_FAST: "Szybkie"
STR_IMAGES: "Obrazki"
STR_IMAGES_DISPLAY: "Pokazuj"
STR_IMAGES_PLACEHOLDER: "Ramki"
@@ -99,6 +97,7 @@ STR_USERNAME: "Użytkownik"
STR_PASSWORD: "Hasło"
STR_SYNC_SERVER_URL: "Serwer URL synchronizacji"
STR_DOCUMENT_MATCHING: "Dopasowanie dokumentów"
STR_SEND_METADATA: "Wyślij metadane dokumentu"
STR_AUTHENTICATE: "Uwierzytelnianie"
STR_KOREADER_USERNAME: "Użytkownik KOReader"
STR_KOREADER_PASSWORD: "Hasło KOReader"
@@ -362,3 +361,5 @@ STR_FIRMWARE_WRITE_FAILED: "Zapis oprogramowania nieudany"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Nie wyłączać!"
STR_RECOVERY_MODE: "Tryb przywracania"
STR_RECOVERY_MODE_HINT: "Umieść firmware.bin w głównym katalogu karty SD i wybierz go"
STR_ADD_HIDDEN_NETWORK: "Dodaj ukrytą sieć..."
STR_ENTER_WIFI_SSID: "Wprowadź nazwę sieci (SSID)"
@@ -66,8 +66,6 @@ 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_TEXT_AA_FULL: "Completa"
STR_TEXT_AA_FAST: "Rápida"
STR_IMAGES: "Imagens"
STR_IMAGES_DISPLAY: "Exibição"
STR_IMAGES_PLACEHOLDER: "Espaço reservado"
@@ -101,6 +99,7 @@ STR_USERNAME: "Nome de usuário"
STR_PASSWORD: "Senha"
STR_SYNC_SERVER_URL: "URL servidor sincronização"
STR_DOCUMENT_MATCHING: "Documento correspondente"
STR_SEND_METADATA: "Enviar metadados do doc."
STR_AUTHENTICATE: "Autenticar"
STR_KOREADER_USERNAME: "Usuário do KOReader"
STR_KOREADER_PASSWORD: "Senha do KOReader"
@@ -385,3 +384,5 @@ 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"
STR_ADD_HIDDEN_NETWORK: "Adicionar rede oculta..."
STR_ENTER_WIFI_SSID: "Insira o nome da rede (SSID)"
+394
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@@ -0,0 +1,394 @@
_language_name: "Português (Portugal)"
_language_code: "P2"
_order: "27"
STR_CROSSPOINT: "CrossPoint"
STR_BOOTING: "A INICIAR"
STR_SLEEPING: "EM REPOUSO"
STR_ENTERING_SLEEP: "A entrar em repouso"
STR_BROWSE_FILES: "Explorar ficheiros"
STR_FILE_TRANSFER: "Transferência de ficheiros"
STR_SETTINGS_TITLE: "Definições"
STR_CONTINUE_READING: "Continuar a ler"
STR_NO_OPEN_BOOK: "Nenhum livro aberto"
STR_START_READING: "Comece a ler abaixo"
STR_NO_FILES_FOUND: "Nenhum ficheiro encontrado"
STR_SELECT_CHAPTER: "Selecionar capítulo"
STR_NO_CHAPTERS: "Sem capítulos"
STR_END_OF_BOOK: "Fim do livro"
STR_EMPTY_CHAPTER: "Capítulo vazio"
STR_INDEXING: "A indexar"
STR_INDEX_FAILED: "Falha ao indexar - livro inválido"
STR_MEMORY_ERROR: "Erro de memória"
STR_PAGE_LOAD_ERROR: "Erro ao carregar a página"
STR_EMPTY_FILE: "Ficheiro vazio"
STR_OUT_OF_BOUNDS: "Fora dos limites"
STR_LOADING: "A carregar..."
STR_LOADING_POPUP: "A carregar"
STR_WIFI_NETWORKS: "Redes Wi-Fi"
STR_NO_NETWORKS: "Nenhuma rede encontrada"
STR_NETWORKS_FOUND: "%zu redes encontradas"
STR_SCANNING: "A procurar..."
STR_FINDING_SAVED_WIFI: "A procurar Wi-Fi guardado..."
STR_CONNECTING: "A ligar..."
STR_CONNECTING_SAVED_WIFI: "A ligar ao Wi-Fi guardado..."
STR_SHOW_NETWORKS: "Mostrar"
STR_CONNECTED: "Ligado!"
STR_CONNECTION_FAILED: "Falha na ligação"
STR_FORGET_NETWORK: "Esquecer rede?"
STR_SAVE_PASSWORD: "Guardar palavra-passe para a próxima vez?"
STR_PRESS_OK_SCAN: "Prima OK para procurar novamente"
STR_JOIN_NETWORK: "Aderir a uma rede"
STR_CREATE_HOTSPOT: "Criar ponto de acesso"
STR_JOIN_DESC: "Ligue-se a uma rede Wi-Fi existente"
STR_HOTSPOT_DESC: "Crie uma rede Wi-Fi para outras pessoas se ligarem"
STR_STARTING_HOTSPOT: "A iniciar ponto de acesso..."
STR_HOTSPOT_MODE: "Modo de ponto de acesso"
STR_CONNECT_WIFI_HINT: "Ligue o seu dispositivo a esta rede Wi-Fi"
STR_OPEN_URL_HINT: "Abra este URL no seu navegador"
STR_OR_HTTP_PREFIX: "ou http://"
STR_SCAN_QR_HINT: "ou leia o código QR com o seu telemóvel:"
STR_CALIBRE_WIRELESS: "Calibre sem fios"
STR_NETWORK_LEGEND: "* = Encriptada | + = Guardada"
STR_MAC_ADDRESS: "Endereço MAC:"
STR_CHECKING_WIFI: "A verificar o Wi-Fi..."
STR_ENTER_WIFI_PASSWORD: "Introduza a palavra-passe do Wi-Fi"
STR_ADD_HIDDEN_NETWORK: "Adicionar rede oculta..."
STR_ENTER_WIFI_SSID: "Introduza o nome da rede (SSID)"
STR_TO_PREFIX: "para "
STR_CALIBRE_RECEIVING: "A receber: "
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 para o dispositivo\""
STR_CALIBRE_INSTRUCTION_4: "\"Mantenha este ecrã aberto durante o envio\""
STR_CAT_DISPLAY: "Ecrã"
STR_CAT_READER: "Leitor"
STR_CAT_CONTROLS: "Controlos"
STR_CAT_SYSTEM: "Sistema"
STR_SLEEP_SCREEN: "Ecrã de repouso"
STR_QUICK_RESUME_TIMEOUT: "Retoma rápida após tempo limite"
STR_SLEEP_COVER_MODE: "Modo de capa no ecrã de repouso"
STR_HIDE_BATTERY: "Ocultar % da bateria"
STR_EXTRA_SPACING: "Espaçamento extra entre parágrafos"
STR_TEXT_AA: "Suavização do texto"
STR_IMAGES: "Imagens"
STR_IMAGES_DISPLAY: "Exibição"
STR_IMAGES_PLACEHOLDER: "Espaço reservado"
STR_IMAGES_SUPPRESS: "Suprimir"
STR_EOB_HOME: "Início"
STR_EOB_CONTINUE_WITH: "Continuar com"
STR_SHORT_PWR_BTN: "Clique curto no botão de energia"
STR_ORIENTATION: "Orientação de leitura"
STR_SIDE_BTN_LAYOUT: "Disposição dos botões laterais (leitor)"
STR_FRONT_BTN_FOLLOW_ORIENTATION: "Orientar botões frontais"
STR_LONG_PRESS_BEHAVIOR: "Comportamento de pressão longa"
STR_LONG_PRESS_BEHAVIOR_OFF: "DESL."
STR_LONG_PRESS_BEHAVIOR_SKIP: "Saltar capítulo"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Alterar orientação"
STR_LONG_PRESS_MENU: "Pressão longa no Menu"
STR_FONT_PREVIEW_TEXT: "A rápida raposa castanha salta por cima do cão preguiçoso"
STR_FONT_FAMILY: "Tipo de letra do leitor"
STR_FONT_SIZE: "Tamanho do tipo de letra"
STR_LINE_SPACING: "Espaçamento entre linhas"
STR_SCREEN_MARGIN: "Margens do ecrã"
STR_PARA_ALIGNMENT: "Alinhamento dos parágrafos"
STR_HYPHENATION: "Hifenização"
STR_TIME_TO_SLEEP: "Tempo até repousar"
STR_SHOW_HIDDEN_FILES: "Mostrar ficheiros ocultos"
STR_REMOVE_READ_FROM_RECENTS: "Limpar livros lidos da lista de recentes"
STR_MOVE_FINISHED_TO_READ: "Mover livros concluídos para a pasta Read"
STR_REFRESH_FREQ: "Frequência de atualização"
STR_KOREADER_SYNC: "Sincronização KOReader"
STR_CHECK_UPDATES: "Procurar atualizações"
STR_LANGUAGE: "Idioma"
STR_CLEAR_READING_CACHE: "Limpar cache de leitura"
STR_USERNAME: "Nome de utilizador"
STR_PASSWORD: "Palavra-passe"
STR_SYNC_SERVER_URL: "URL do servidor de sincronização"
STR_DOCUMENT_MATCHING: "Correspondência de documentos"
STR_SEND_METADATA: "Enviar metadados do documento"
STR_AUTHENTICATE: "Autenticar"
STR_KOREADER_USERNAME: "Utilizador do KOReader"
STR_KOREADER_PASSWORD: "Palavra-passe do KOReader"
STR_FILENAME: "Nome do ficheiro"
STR_BINARY: "Binário"
STR_SET_CREDENTIALS_FIRST: "Defina as credenciais primeiro"
STR_WIFI_CONN_FAILED: "Falha na ligação Wi-Fi"
STR_AUTHENTICATING: "A autenticar..."
STR_AUTH_SUCCESS: "Autenticado com sucesso!"
STR_KOREADER_AUTH: "Autenticação KOReader"
STR_SYNC_READY: "A sincronização KOReader está pronta a usar"
STR_AUTH_FAILED: "Falha na autenticação"
STR_DONE: "Concluído"
STR_CLEAR_CACHE_WARNING_1: "Isto irá limpar todos os dados de livros em cache."
STR_CLEAR_CACHE_WARNING_2: "Todo o progresso de leitura será perdido!"
STR_CLEAR_CACHE_WARNING_3: "Os livros terão de ser reindexados"
STR_CLEAR_CACHE_WARNING_4: "quando forem abertos novamente."
STR_CLEARING_CACHE: "A limpar a cache..."
STR_CACHE_CLEARED: "Cache limpa"
STR_ITEMS_REMOVED: "itens removidos"
STR_FAILED_LOWER: "falhou"
STR_CLEAR_CACHE_FAILED: "Falha ao limpar a cache"
STR_CHECK_SERIAL_OUTPUT: "Verifique a saída de série para obter detalhes"
STR_DARK: "Escuro"
STR_LIGHT: "Claro"
STR_CUSTOM: "Personalizado"
STR_COVER: "Capa"
STR_NONE_OPT: "Nenhum"
STR_FIT: "Ajustar"
STR_CROP: "Recortar"
STR_NEVER: "Nunca"
STR_IN_READER: "No leitor"
STR_ALWAYS: "Sempre"
STR_IGNORE: "Ignorar"
STR_SLEEP: "Repouso"
STR_PAGE_TURN: "Virar página"
STR_FORCE_REFRESH: "Atualizar ecrã"
STR_PORTRAIT: "Retrato"
STR_LANDSCAPE_CW: "Paisagem (Dir.)"
STR_INVERTED: "Invertido"
STR_ORIENTATION_INVERTED: "Retrato 180°"
STR_LANDSCAPE_CCW: "Paisagem (Esq.)"
STR_PREV_NEXT: "Ant/Seg"
STR_NEXT_PREV: "Seg/Ant"
STR_KOSYNC: "KOSync"
STR_BOOKMARK_OPTION: "Marcador"
STR_DISABLED: "Desativado"
STR_NOTO_SERIF: "Noto Serif"
STR_NOTO_SANS: "Noto Sans"
STR_SMALL: "Pequeno"
STR_MEDIUM: "Médio"
STR_LARGE: "Grande"
STR_X_LARGE: "Extra grande"
STR_TIGHT: "Apertado"
STR_NORMAL: "Normal"
STR_WIDE: "Largo"
STR_JUSTIFY: "Justificar"
STR_ALIGN_LEFT: "Esquerda"
STR_CENTER: "Centrar"
STR_ALIGN_RIGHT: "Direita"
STR_PAGES_1: "1 página"
STR_PAGES_5: "5 páginas"
STR_PAGES_10: "10 páginas"
STR_PAGES_15: "15 páginas"
STR_PAGES_30: "30 páginas"
STR_UPDATE: "Atualizar"
STR_CHECKING_UPDATE: "A procurar atualização..."
STR_NEW_UPDATE: "Nova atualização disponível!"
STR_CURRENT_VERSION: "Versão atual: "
STR_NEW_VERSION: "Nova versão: "
STR_UPDATING: "A atualizar..."
STR_NO_UPDATE: "Nenhuma atualização disponível"
STR_UPDATE_FAILED: "Falha na atualização"
STR_UPDATE_COMPLETE: "Atualização concluída"
STR_POWER_ON_HINT: "Prima sem soltar o botão de energia para voltar a ligar"
STR_RESTARTING_HINT: "A reiniciar... Se o dispositivo não reiniciar, mantenha premido o botão de energia durante alguns segundos."
STR_NO_ENTRIES: "Nenhum registo encontrado"
STR_DOWNLOADING: "A transferir..."
STR_DOWNLOAD_FAILED: "Falha na transferência"
STR_ERROR_MSG: "Erro:"
STR_UNNAMED: "Sem nome"
STR_HOLD_OPEN_TO_DELETE: "Mantenha premido Abrir para eliminar"
STR_NO_SERVER_URL: "Nenhum URL de servidor configurado"
STR_FETCH_FEED_FAILED: "Falha ao obter o feed"
STR_PARSE_FEED_FAILED: "Falha ao analisar o feed"
STR_NEXT_PAGE: "Página seguinte »"
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 de ligação esgotado"
STR_SD_CARD: "Cartão SD"
STR_BACK: "« Voltar"
STR_EXIT: "« Sair"
STR_HOME: "« Início"
STR_SELECT: "Selecionar"
STR_SELECTED: "Selecionado"
STR_TOGGLE: "Alternar"
STR_TOGGLE_BOOKMARK: "Alternar marcador"
STR_CONFIRM: "Confirmar"
STR_CANCEL: "Cancelar"
STR_CONNECT: "Ligar"
STR_OPEN: "Abrir"
STR_DOWNLOAD: "Transferir"
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"
STR_DIR_LEFT: "Esquerda"
STR_DIR_RIGHT: "Direita"
STR_DIR_UP: "Cima"
STR_DIR_DOWN: "Baixo"
STR_OK_BUTTON: "OK"
STR_SLEEP_COVER_FILTER: "Filtro da capa de ecrã de repouso"
STR_FILTER_CONTRAST: "Contraste"
STR_CUSTOMISE_STATUS_BAR: "Personalizar barra de estado"
STR_CHAPTER_PAGE_COUNT: "Contagem de páginas do capítulo"
STR_BOOK_PROGRESS_PERCENTAGE: "Percentagem de progresso do livro"
STR_PROGRESS_BAR: "Barra de progresso"
STR_PROGRESS_BAR_THICKNESS: "Espessura da barra de progresso"
STR_PROGRESS_BAR_THIN: "Fina"
STR_PROGRESS_BAR_MEDIUM: "Média"
STR_PROGRESS_BAR_THICK: "Grossa"
STR_BOOK: "Livro"
STR_CHAPTER: "Capítulo"
STR_EXAMPLE_CHAPTER: "Capítulo 21"
STR_EXAMPLE_BOOK: "Título do livro"
STR_PREVIEW: "Pré-visualização"
STR_TITLE: "Título"
STR_BATTERY: "Bateria"
STR_XTC_STATUS_BAR: "Barra de estado XTC"
STR_BOTTOM: "Inferior"
STR_TOP: "Superior"
STR_CLOCK: "Relógio"
STR_CLOCK_UTC_OFFSET: "Deslocamento 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: "Seguinte"
STR_CLOCK_SYNC: "Sincronizar relógio"
STR_CLOCK_SYNC_NOW: "Sincronizar relógio agora"
STR_CLOCK_SYNCING: "A sincronizar via NTP..."
STR_CLOCK_SYNC_OK: "Relógio sincronizado"
STR_CLOCK_SYNC_FAIL: "Falha na sincronização"
STR_CLOCK_SYNC_NO_WIFI: "Wi-Fi não ligado"
STR_CLOCK_SYNC_NO_WIFI_HINT: "Ligue-se primeiro ao Wi-Fi e, em seguida, tente novamente."
STR_CLOCK_SYNCED: "Relógio sincronizado"
STR_UI_THEME: "Tema da interface"
STR_THEME_CLASSIC: "Clássico"
STR_THEME_LYRA: "Lyra"
STR_THEME_ROUNDEDRAFF: "RoundedRaff"
STR_THEME_LYRA_EXTENDED: "Lyra Extended"
STR_SUNLIGHT_FADING_FIX: "Ajuste de desbotamento ao sol"
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: "Pesquisar"
STR_COVER_CUSTOM: "Capa + Personalizado"
STR_QUICK_RESUME: "Retoma rápida"
STR_MENU_RECENT_BOOKS: "Livros recentes"
STR_REMOVE_FROM_RECENTS: "Remover dos Livros recentes?"
STR_NO_RECENT_BOOKS: "Nenhum livro recente"
STR_CALIBRE_DESC: "Usar transferências sem fios de dispositivos do Calibre"
STR_FORGET_AND_REMOVE: "Esquecer rede e remover palavra-passe guardada?"
STR_FORGET_BUTTON: "Esquecer"
STR_CALIBRE_STARTING: "A iniciar o Calibre..."
STR_CALIBRE_SETUP: "Configuração"
STR_CALIBRE_STATUS: "Estado"
STR_CLEAR_BUTTON: "Limpar"
STR_DEFAULT_VALUE: "Predefinição"
STR_REMAP_PROMPT: "Prima um botão frontal para cada função"
STR_UNASSIGNED: "Não atribuído"
STR_ALREADY_ASSIGNED: "Já atribuído"
STR_REMAP_RESET_HINT: "Botão lateral Cima: Repor disposição predefinida"
STR_REMAP_CANCEL_HINT: "Botão lateral Baixo: Cancelar remapeamento"
STR_HW_BACK_LABEL: "Voltar (1º botão)"
STR_HW_CONFIRM_LABEL: "Confirmar (2º botão)"
STR_HW_LEFT_LABEL: "Esquerda (3º botão)"
STR_HW_RIGHT_LABEL: "Direita (4º botão)"
STR_GO_TO_PERCENT: "Ir para %"
STR_GO_HOME_BUTTON: "Ir para o Início"
STR_SYNC_PROGRESS: "Sincronizar progresso"
STR_DELETE_CACHE: "Eliminar cache do livro"
STR_DELETE: "Eliminar"
STR_CONFIRM_DELETE_BOOKMARK: "Eliminar 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_SYNCING_TIME: "A sincronizar a hora..."
STR_CALC_HASH: "A calcular o hash do documento..."
STR_HASH_FAILED: "Falha ao calcular o hash do documento"
STR_FETCH_PROGRESS: "A procurar progresso remoto..."
STR_UPLOAD_PROGRESS: "A enviar progresso..."
STR_NO_CREDENTIALS_MSG: "Nenhuma credencial configurada"
STR_KOREADER_SETUP_HINT: "Configure a conta do KOReader nas Definições"
STR_PROGRESS_FOUND: "Progresso encontrado!"
STR_REMOTE_LABEL: "Remoto:"
STR_LOCAL_LABEL: "Local:"
STR_PAGE_OVERALL_FORMAT: "Página %d, %.2f%% total"
STR_PAGE_TOTAL_OVERALL_FORMAT: "Página %d/%d, %.2f%% total"
STR_DEVICE_FROM_FORMAT: " De: %s"
STR_APPLY_REMOTE: "Aplicar progresso remoto"
STR_UPLOAD_LOCAL: "Enviar progresso local"
STR_NO_REMOTE_MSG: "Nenhum progresso remoto encontrado"
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 guardar o progresso"
STR_SECTION_PREFIX: "Secção "
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 das 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: "[ligação]"
STR_SCREENSHOT_BUTTON: "Captura de ecrã"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nunca"
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: "Eliminar servidor"
STR_OPDS_SERVERS: "Servidores OPDS"
STR_AUTO_TURN_ENABLED: "Virar página automático ativado: "
STR_AUTO_TURN_PAGES_PER_MIN: "Virar página automático (Páginas por minuto)"
STR_MANAGE_FONTS: "Gerir tipos de letra"
STR_FONT_BROWSER: "Navegador de tipos de letra"
STR_LOADING_FONT_LIST: "A carregar a lista de tipos de letra..."
STR_NO_FONTS_AVAILABLE: "Nenhum tipo de letra disponível"
STR_FONT_INSTALLED: "Tipo de letra instalado!"
STR_FONT_INSTALL_FAILED: "Falha na instalação do tipo de letra"
STR_INSTALLED: "Instalado"
STR_DOWNLOAD_ALL: "Transferir tudo"
STR_UPDATE_ALL: "Atualizar tudo"
STR_UPDATE_AVAILABLE: "Atualizar"
STR_CRASH_TITLE: "Falha do sistema"
STR_CRASH_DESCRIPTION: "Um relatório detalhado foi guardado em crash_report.txt. Por favor, inclua este ficheiro no seu relatório de erro."
STR_CRASH_REASON: "Motivo da falha:"
STR_CRASH_NO_REASON: "(Nenhum motivo foi registado)"
STR_TILT_PAGE_TURN: "Virar página por inclinação"
STR_KB_HINT_MOVE_CURSOR: "Prima ESQUERDA ou DIREITA para mover o cursor"
STR_KB_HINT_RETURN_CURSOR: "Prima ESQUERDA para regressar à posição do cursor"
STR_KB_HINT_HIDE_PASSWORD: "Mantenha premido DIREITA e depois prima [***] para ocultar a palavra-passe"
STR_KB_HINT_SHOW_PASSWORD: "Mantenha premido DIREITA e depois prima [abc] para mostrar a palavra-passe"
STR_KB_HINT_TOGGLE_HIDE_PASSWORD: "Prima [***] para ocultar a palavra-passe"
STR_KB_HINT_TOGGLE_SHOW_PASSWORD: "Prima [abc] para mostrar a palavra-passe"
STR_KB_HINT_EDIT_ENTRY: "Mantenha premido CIMA para editar a entrada"
STR_KB_TIPS: "Dicas:"
STR_KB_HINT_RETURN_KEYBOARD: "Prima BAIXO para regressar ao teclado"
STR_KB_HINT_EXIT_URL_MODE: "Prima ABC para sair do modo URL"
STR_KB_HINT_CLEAR_TEXT: "Mantenha premido DEL para limpar todo o texto"
STR_KB_HINT_SECONDARY_CHAR: "Mantenha premido SELECT para o carácter secundário"
STR_KB_HINT_UPPER_SECONDARY: "Mantenha premido SELECT para MAIÚSCULAS ou carácter secundário"
STR_KB_HINT_LOWER_SECONDARY: "Mantenha premido SELECT para minúsculas ou carácter secundário"
STR_KB_HINT_URL_SNIPPETS: "Prima URL para atalhos"
STR_SD_FIRMWARE_UPDATE: "Atualização de firmware via cartão SD"
STR_SELECT_FIRMWARE_FILE: "Selecione o ficheiro de firmware (.bin)"
STR_NO_BIN_FILES: "Nenhum ficheiro .bin encontrado"
STR_VALIDATING_FIRMWARE: "A validar o firmware..."
STR_INVALID_FIRMWARE: "Ficheiro de firmware inválido"
STR_FIRMWARE_TOO_LARGE: "Firmware demasiado grande para a partição"
STR_FIRMWARE_TOO_SMALL: "Ficheiro de firmware demasiado pequeno"
STR_FIRMWARE_UPDATE_PROMPT: "Atualizar firmware?"
STR_FIRMWARE_FILE_OPEN_FAILED: "Não foi possível abrir o ficheiro"
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 ficheiro firmware.bin na raiz do cartão SD e selecione-o"
+3 -2
View File
@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Mod ecran de repaus cu copertă"
STR_HIDE_BATTERY: "Ascunde procentul bateriei"
STR_EXTRA_SPACING: "Spaţiere suplimentară între paragrafe"
STR_TEXT_AA: "Anti-Aliasing text"
STR_TEXT_AA_FULL: "Complet"
STR_TEXT_AA_FAST: "Rapid"
STR_IMAGES: "Imagini"
STR_IMAGES_DISPLAY: "Afişare"
STR_IMAGES_PLACEHOLDER: "Substituent"
@@ -99,6 +97,7 @@ STR_USERNAME: "Utilizator"
STR_PASSWORD: "Parolă"
STR_SYNC_SERVER_URL: "URL server sincronizare"
STR_DOCUMENT_MATCHING: "Corespondenţă document"
STR_SEND_METADATA: "Trimite metadate document"
STR_AUTHENTICATE: "Autentificare"
STR_KOREADER_USERNAME: "Nume utilizator KOReader"
STR_KOREADER_PASSWORD: "Parolă KOReader"
@@ -305,3 +304,5 @@ STR_SCREENSHOT_BUTTON: "Captură ecran"
STR_AUTO_TURN_ENABLED: "Răsfoire automată: "
STR_AUTO_TURN_PAGES_PER_MIN: "Pagini pe minut"
STR_TILT_PAGE_TURN: "Întoarcere pagină prin înclinare"
STR_ADD_HIDDEN_NETWORK: "Adaugă rețea ascunsă..."
STR_ENTER_WIFI_SSID: "Introduceți numele rețelei (SSID)"
+3 -2
View File
@@ -66,8 +66,6 @@ STR_SLEEP_COVER_MODE: "Режим обложки сна"
STR_HIDE_BATTERY: "Скрыть % батареи"
STR_EXTRA_SPACING: "Доп. интервал абзаца"
STR_TEXT_AA: "Сглаживание текста"
STR_TEXT_AA_FULL: "Полное"
STR_TEXT_AA_FAST: "Быстрое"
STR_IMAGES: "Изображения"
STR_IMAGES_DISPLAY: "Показать"
STR_IMAGES_PLACEHOLDER: "Заглушки"
@@ -101,6 +99,7 @@ STR_USERNAME: "Имя пользователя"
STR_PASSWORD: "Пароль"
STR_SYNC_SERVER_URL: "URL сервера синхронизации"
STR_DOCUMENT_MATCHING: "Сопоставление документов"
STR_SEND_METADATA: "Отправлять метаданные"
STR_AUTHENTICATE: "Авторизация"
STR_KOREADER_USERNAME: "Имя пользователя KOReader"
STR_KOREADER_PASSWORD: "Пароль KOReader"
@@ -385,3 +384,5 @@ STR_FIRMWARE_WRITE_FAILED: "Ошибка записи прошивки"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Не выключайте питание!"
STR_RECOVERY_MODE: "Режим восстановления"
STR_RECOVERY_MODE_HINT: "Поместите firmware.bin в корень SD-карты и выберите его"
STR_ADD_HIDDEN_NETWORK: "Добавить скрытую сеть..."
STR_ENTER_WIFI_SSID: "Введите имя сети (SSID)"
+373 -372
View File
@@ -1,383 +1,384 @@
_language_name: "Slovenčina"
_language_code: "SK"
_order: "24"
STR_CROSSPOINT: "CrossPoint"
STR_BOOTING: "SPÚŠŤANIE"
STR_SLEEPING: "SPÁNOK"
STR_ENTERING_SLEEP: "Prechod do režimu spánku"
STR_BROWSE_FILES: "Prehliadať súbory"
STR_FILE_TRANSFER: "Prenos súborov"
STR_SETTINGS_TITLE: "Nastavenia"
STR_CONTINUE_READING: "Pokračovať v čítaní"
STR_NO_OPEN_BOOK: "Žiadna otvorená kniha"
STR_START_READING: "Začnite čítať nižšie"
STR_NO_FILES_FOUND: "Neboli nájdené žiadne súbory"
STR_SELECT_CHAPTER: "Vybrať kapitolu"
STR_NO_CHAPTERS: "Žiadne kapitoly"
STR_END_OF_BOOK: "Koniec knihy"
STR_EMPTY_CHAPTER: "Prázdna kapitola"
STR_INDEXING: "Indexovanie"
STR_MEMORY_ERROR: "Chyba pamäte"
STR_PAGE_LOAD_ERROR: "Chyba načítania stránky"
STR_EMPTY_FILE: "Prázdny súbor"
STR_OUT_OF_BOUNDS: "Mimo rozsahu"
STR_LOADING: "Načítava sa..."
STR_LOADING_POPUP: "Načítavanie"
STR_WIFI_NETWORKS: "Wi-Fi siete"
STR_NO_NETWORKS: "Nenašli sa žiadne siete"
STR_NETWORKS_FOUND: "Nájdených %zu sietí"
STR_SCANNING: "Skenovanie..."
STR_CONNECTING: "Pripájanie..."
STR_CONNECTED: "Pripojené!"
STR_CONNECTION_FAILED: "Pripojenie zlyhalo"
STR_FORGET_NETWORK: "Zabudnúť sieť?"
STR_SAVE_PASSWORD: "Uložiť heslo na nabudúce?"
STR_PRESS_OK_SCAN: "Stlačte OK pre opätovné skenovanie"
STR_JOIN_NETWORK: "Pripojiť sa k sieti"
STR_CREATE_HOTSPOT: "Vytvoriť hotspot"
STR_JOIN_DESC: "Pripojiť sa k existujúcej Wi-Fi sieti"
STR_HOTSPOT_DESC: "Vytvoriť Wi-Fi sieť, ku ktorej sa môžu pripojiť ostatní"
STR_STARTING_HOTSPOT: "Spúšťanie hotspotu..."
STR_HOTSPOT_MODE: "Režim hotspotu"
STR_CONNECT_WIFI_HINT: "Pripojte svoje zariadenie k tejto Wi-Fi sieti"
STR_OPEN_URL_HINT: "Otvorte túto URL adresu vo svojom prehliadači"
STR_OR_HTTP_PREFIX: "alebo http://"
STR_SCAN_QR_HINT: "alebo naskenujte QR kód telefónom:"
STR_CALIBRE_WIRELESS: "Calibre Wireless"
STR_NETWORK_LEGEND: "* = Šifrované | + = Uložené"
STR_MAC_ADDRESS: "MAC adresa:"
STR_CHECKING_WIFI: "Kontrola Wi-Fi..."
STR_ENTER_WIFI_PASSWORD: "Zadajte heslo Wi-Fi"
STR_TO_PREFIX: "pre"
STR_CALIBRE_RECEIVING: "Prijímanie:"
STR_CALIBRE_RECEIVED: "Prijaté:"
STR_CALIBRE_INSTRUCTION_1: "1) Nainštalujte plugin CrossPoint Reader"
STR_CALIBRE_INSTRUCTION_2: "2) Buďte v rovnakej Wi-Fi sieti"
STR_CALIBRE_INSTRUCTION_3: "3) V Calibre: „Odoslať do zariadenia“"
STR_CALIBRE_INSTRUCTION_4: "„Pri odosielaní nechajte túto obrazovku otvorenú“"
STR_CAT_DISPLAY: "Displej"
STR_CAT_READER: "Čítačka"
STR_CAT_CONTROLS: "Ovládanie"
STR_CAT_SYSTEM: "Systém"
STR_SLEEP_SCREEN: "Obrazovka spánku"
STR_QUICK_RESUME_TIMEOUT: "Rýchle obnovenie pri nečinnosti"
STR_SLEEP_COVER_MODE: "Obrazovka spánku režim krytu"
STR_HIDE_BATTERY: "Skryť % batérie"
STR_EXTRA_SPACING: "Dodatočné medzery medzi odsekmi"
STR_TEXT_AA: "Vyhladzovanie textu"
STR_TEXT_AA_FULL: "Plné"
STR_TEXT_AA_FAST: "Rýchle"
STR_IMAGES: "Obrázky"
STR_IMAGES_DISPLAY: "Zobraz"
STR_IMAGES_PLACEHOLDER: "Rezervované miesto"
STR_IMAGES_SUPPRESS: "Potlačiť"
STR_SHORT_PWR_BTN: "Krátke stlačenie tlačidla napájania"
STR_ORIENTATION: "Orientácia čítania"
STR_SIDE_BTN_LAYOUT: "Rozloženie bočných tlačidiel (čítačka)"
STR_FRONT_BTN_FOLLOW_ORIENTATION: "Prispôsobiť predné tlačidlá orientácii"
STR_LONG_PRESS_BEHAVIOR: "Správanie pri dlhom stlačení tlačidla"
STR_LONG_PRESS_BEHAVIOR_OFF: "VYP"
STR_LONG_PRESS_BEHAVIOR_SKIP: "Preskočiť kapitolu"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Zmeniť orientáciu"
STR_FONT_PREVIEW_TEXT: "Vypätá dcéra grófa Maxwella s IQ nižším ako kôň núti čeľaď hrýzť hŕbu jabĺk"
STR_FONT_FAMILY: "Rodina písiem čítačky"
STR_FONT_SIZE: "Veľkosť písma rozhrania"
STR_LINE_SPACING: "Riadkovanie čítačky"
STR_SCREEN_MARGIN: "Okraj obrazovky čítačky"
STR_PARA_ALIGNMENT: "Zarovnanie odsekov čítačky"
STR_HYPHENATION: "Delenie slov"
STR_TIME_TO_SLEEP: "Čas do uspania"
STR_SHOW_HIDDEN_FILES: "Zobraz Skryté Súbory"
STR_REMOVE_READ_FROM_RECENTS: "Odstrániť prečítané knihy zo zoznamu nedávnych"
STR_MOVE_FINISHED_TO_READ: "Presunúť prečítané knihy do priečinka Read"
STR_REFRESH_FREQ: "Frekvencia obnovovania"
STR_KOREADER_SYNC: "KOReader Sync"
STR_CHECK_UPDATES: "Skontrolovať aktualizácie"
STR_LANGUAGE: "Jazyk"
STR_CLEAR_READING_CACHE: "Vymazať vyrovnávaciu pamäť čítania"
STR_USERNAME: "Používateľské meno"
STR_PASSWORD: "Heslo"
STR_SYNC_SERVER_URL: "URL synchronizačného servera"
_language_name: "Slovenčina"
_language_code: "SK"
_order: "24"
STR_CROSSPOINT: "CrossPoint"
STR_BOOTING: "SPÚŠŤANIE"
STR_SLEEPING: "SPÁNOK"
STR_ENTERING_SLEEP: "Prechod do režimu spánku"
STR_BROWSE_FILES: "Prehliadať súbory"
STR_FILE_TRANSFER: "Prenos súborov"
STR_SETTINGS_TITLE: "Nastavenia"
STR_CONTINUE_READING: "Pokračovať v čítaní"
STR_NO_OPEN_BOOK: "Žiadna otvorená kniha"
STR_START_READING: "Začnite čítať nižšie"
STR_NO_FILES_FOUND: "Neboli nájdené žiadne súbory"
STR_SELECT_CHAPTER: "Vybrať kapitolu"
STR_NO_CHAPTERS: "Žiadne kapitoly"
STR_END_OF_BOOK: "Koniec knihy"
STR_EMPTY_CHAPTER: "Prázdna kapitola"
STR_INDEXING: "Indexovanie"
STR_MEMORY_ERROR: "Chyba pamäte"
STR_PAGE_LOAD_ERROR: "Chyba načítania stránky"
STR_EMPTY_FILE: "Prázdny súbor"
STR_OUT_OF_BOUNDS: "Mimo rozsahu"
STR_LOADING: "Načítava sa..."
STR_LOADING_POPUP: "Načítavanie"
STR_WIFI_NETWORKS: "Wi-Fi siete"
STR_NO_NETWORKS: "Nenašli sa žiadne siete"
STR_NETWORKS_FOUND: "Nájdených %zu sietí"
STR_SCANNING: "Skenovanie..."
STR_CONNECTING: "Pripájanie..."
STR_CONNECTED: "Pripojené!"
STR_CONNECTION_FAILED: "Pripojenie zlyhalo"
STR_FORGET_NETWORK: "Zabudnúť sieť?"
STR_SAVE_PASSWORD: "Uložiť heslo na nabudúce?"
STR_PRESS_OK_SCAN: "Stlačte OK pre opätovné skenovanie"
STR_JOIN_NETWORK: "Pripojiť sa k sieti"
STR_CREATE_HOTSPOT: "Vytvoriť hotspot"
STR_JOIN_DESC: "Pripojiť sa k existujúcej Wi-Fi sieti"
STR_HOTSPOT_DESC: "Vytvoriť Wi-Fi sieť, ku ktorej sa môžu pripojiť ostatní"
STR_STARTING_HOTSPOT: "Spúšťanie hotspotu..."
STR_HOTSPOT_MODE: "Režim hotspotu"
STR_CONNECT_WIFI_HINT: "Pripojte svoje zariadenie k tejto Wi-Fi sieti"
STR_OPEN_URL_HINT: "Otvorte túto URL adresu vo svojom prehliadači"
STR_OR_HTTP_PREFIX: "alebo http://"
STR_SCAN_QR_HINT: "alebo naskenujte QR kód telefónom:"
STR_CALIBRE_WIRELESS: "Calibre Wireless"
STR_NETWORK_LEGEND: "* = Šifrované | + = Uložené"
STR_MAC_ADDRESS: "MAC adresa:"
STR_CHECKING_WIFI: "Kontrola Wi-Fi..."
STR_ENTER_WIFI_PASSWORD: "Zadajte heslo Wi-Fi"
STR_TO_PREFIX: "pre"
STR_CALIBRE_RECEIVING: "Prijímanie:"
STR_CALIBRE_RECEIVED: "Prijaté:"
STR_CALIBRE_INSTRUCTION_1: "1) Nainštalujte plugin CrossPoint Reader"
STR_CALIBRE_INSTRUCTION_2: "2) Buďte v rovnakej Wi-Fi sieti"
STR_CALIBRE_INSTRUCTION_3: "3) V Calibre: „Odoslať do zariadenia“"
STR_CALIBRE_INSTRUCTION_4: "„Pri odosielaní nechajte túto obrazovku otvorenú“"
STR_CAT_DISPLAY: "Displej"
STR_CAT_READER: "Čítačka"
STR_CAT_CONTROLS: "Ovládanie"
STR_CAT_SYSTEM: "Systém"
STR_SLEEP_SCREEN: "Obrazovka spánku"
STR_QUICK_RESUME_TIMEOUT: "Rýchle obnovenie pri nečinnosti"
STR_SLEEP_COVER_MODE: "Obrazovka spánku režim krytu"
STR_HIDE_BATTERY: "Skryť % batérie"
STR_EXTRA_SPACING: "Dodatočné medzery medzi odsekmi"
STR_TEXT_AA: "Vyhladzovanie textu"
STR_IMAGES: "Obrázky"
STR_IMAGES_DISPLAY: "Zobraz"
STR_IMAGES_PLACEHOLDER: "Rezervované miesto"
STR_IMAGES_SUPPRESS: "Potlačiť"
STR_SHORT_PWR_BTN: "Krátke stlačenie tlačidla napájania"
STR_ORIENTATION: "Orientácia čítania"
STR_SIDE_BTN_LAYOUT: "Rozloženie bočných tlačidiel (čítačka)"
STR_FRONT_BTN_FOLLOW_ORIENTATION: "Prispôsobiť predné tlačidlá orientácii"
STR_LONG_PRESS_BEHAVIOR: "Správanie pri dlhom stlačení tlačidla"
STR_LONG_PRESS_BEHAVIOR_OFF: "VYP"
STR_LONG_PRESS_BEHAVIOR_SKIP: "Preskočiť kapitolu"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Zmeniť orientáciu"
STR_FONT_PREVIEW_TEXT: "Vypätá dcéra grófa Maxwella s IQ nižším ako kôň núti čeľaď hrýzť hŕbu jabĺk"
STR_FONT_FAMILY: "Rodina písiem čítačky"
STR_FONT_SIZE: "Veľkosť písma rozhrania"
STR_LINE_SPACING: "Riadkovanie čítačky"
STR_SCREEN_MARGIN: "Okraj obrazovky čítačky"
STR_PARA_ALIGNMENT: "Zarovnanie odsekov čítačky"
STR_HYPHENATION: "Delenie slov"
STR_TIME_TO_SLEEP: "Čas do uspania"
STR_SHOW_HIDDEN_FILES: "Zobraz Skryté Súbory"
STR_REMOVE_READ_FROM_RECENTS: "Odstrániť prečítané knihy zo zoznamu nedávnych"
STR_MOVE_FINISHED_TO_READ: "Presunúť prečítané knihy do priečinka Read"
STR_REFRESH_FREQ: "Frekvencia obnovovania"
STR_KOREADER_SYNC: "KOReader Sync"
STR_CHECK_UPDATES: "Skontrolovať aktualizácie"
STR_LANGUAGE: "Jazyk"
STR_CLEAR_READING_CACHE: "Vymazať vyrovnávaciu pamäť čítania"
STR_USERNAME: "Používateľské meno"
STR_PASSWORD: "Heslo"
STR_SYNC_SERVER_URL: "URL synchronizačného servera"
STR_DOCUMENT_MATCHING: "Párovanie dokumentov"
STR_AUTHENTICATE: "Overiť"
STR_KOREADER_USERNAME: "Používateľské meno KOReader"
STR_KOREADER_PASSWORD: "Heslo KOReader"
STR_FILENAME: "Názov súboru"
STR_BINARY: "Binárny"
STR_SET_CREDENTIALS_FIRST: "Najprv nastavte prihlasovacie údaje"
STR_WIFI_CONN_FAILED: "Pripojenie k Wi-Fi zlyhalo"
STR_AUTHENTICATING: "Overovanie..."
STR_AUTH_SUCCESS: "Overenie úspešné!"
STR_KOREADER_AUTH: "Overenie KOReader"
STR_SYNC_READY: "Synchronizácia KOReader je pripravená na použitie"
STR_AUTH_FAILED: "Overenie zlyhalo"
STR_DONE: "Hotovo"
STR_CLEAR_CACHE_WARNING_1: "Týmto vymažete všetky údaje kníh vo vyrovnávacej pamäti."
STR_CLEAR_CACHE_WARNING_2: "Všetok priebeh čítania bude stratený!"
STR_CLEAR_CACHE_WARNING_3: "Knihy bude potrebné znova indexovať"
STR_CLEAR_CACHE_WARNING_4: "pri ich opätovnom otvorení."
STR_CLEARING_CACHE: "Mazanie vyrovnávacej pamäte..."
STR_CACHE_CLEARED: "Vyrovnávacia pamäť vymazaná"
STR_ITEMS_REMOVED: "položiek odstránených"
STR_FAILED_LOWER: "zlyhalo"
STR_CLEAR_CACHE_FAILED: "Vymazanie vyrovnávacej pamäte zlyhalo"
STR_CHECK_SERIAL_OUTPUT: "Podrobnosti nájdete v sériovom výstupe"
STR_DARK: "Tmavý"
STR_LIGHT: "Svetlý"
STR_CUSTOM: "Vlastný"
STR_COVER: "Obálka"
STR_NONE_OPT: "Žiadny"
STR_FIT: "Prispôsobiť"
STR_CROP: "Orezať"
STR_NEVER: "Nikdy"
STR_IN_READER: "V čítačke"
STR_ALWAYS: "Vždy"
STR_IGNORE: "Ignorovať"
STR_SLEEP: "Spánok"
STR_PAGE_TURN: "Otáčanie stránok"
STR_FORCE_REFRESH: "Obnoviť obrazovku"
STR_PORTRAIT: "Na výšku"
STR_LANDSCAPE_CW: "Na šírku v smere hodinových ručičiek"
STR_SEND_METADATA: "Odosielať metadáta dokumentu"
STR_AUTHENTICATE: "Overiť"
STR_KOREADER_USERNAME: "Používateľské meno KOReader"
STR_KOREADER_PASSWORD: "Heslo KOReader"
STR_FILENAME: "Názov súboru"
STR_BINARY: "Binárny"
STR_SET_CREDENTIALS_FIRST: "Najprv nastavte prihlasovacie údaje"
STR_WIFI_CONN_FAILED: "Pripojenie k Wi-Fi zlyhalo"
STR_AUTHENTICATING: "Overovanie..."
STR_AUTH_SUCCESS: "Overenie úspešné!"
STR_KOREADER_AUTH: "Overenie KOReader"
STR_SYNC_READY: "Synchronizácia KOReader je pripravená na použitie"
STR_AUTH_FAILED: "Overenie zlyhalo"
STR_DONE: "Hotovo"
STR_CLEAR_CACHE_WARNING_1: "Týmto vymažete všetky údaje kníh vo vyrovnávacej pamäti."
STR_CLEAR_CACHE_WARNING_2: "Všetok priebeh čítania bude stratený!"
STR_CLEAR_CACHE_WARNING_3: "Knihy bude potrebné znova indexovať"
STR_CLEAR_CACHE_WARNING_4: "pri ich opätovnom otvorení."
STR_CLEARING_CACHE: "Mazanie vyrovnávacej pamäte..."
STR_CACHE_CLEARED: "Vyrovnávacia pamäť vymazaná"
STR_ITEMS_REMOVED: "položiek odstránených"
STR_FAILED_LOWER: "zlyhalo"
STR_CLEAR_CACHE_FAILED: "Vymazanie vyrovnávacej pamäte zlyhalo"
STR_CHECK_SERIAL_OUTPUT: "Podrobnosti nájdete v sériovom výstupe"
STR_DARK: "Tmavý"
STR_LIGHT: "Svetlý"
STR_CUSTOM: "Vlastný"
STR_COVER: "Obálka"
STR_NONE_OPT: "Žiadny"
STR_FIT: "Prispôsobiť"
STR_CROP: "Orezať"
STR_NEVER: "Nikdy"
STR_IN_READER: "V čítačke"
STR_ALWAYS: "Vždy"
STR_IGNORE: "Ignorovať"
STR_SLEEP: "Spánok"
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: "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"
STR_DISABLED: "Vypnuté"
STR_NOTO_SERIF: "Noto Serif"
STR_NOTO_SANS: "Noto Sans"
STR_SMALL: "Malý"
STR_MEDIUM: "Stredný"
STR_LARGE: "Veľký"
STR_X_LARGE: "Obrovský"
STR_TIGHT: "Tesný"
STR_NORMAL: "Normálny"
STR_WIDE: "Široký"
STR_JUSTIFY: "Zarovnať do bloku"
STR_ALIGN_LEFT: "Vľavo"
STR_CENTER: "Na stred"
STR_ALIGN_RIGHT: "Vpravo"
STR_PAGES_1: "1 strana"
STR_PAGES_5: "5 strán"
STR_PAGES_10: "10 strán"
STR_PAGES_15: "15 strán"
STR_PAGES_30: "30 strán"
STR_UPDATE: "Aktualizácia"
STR_CHECKING_UPDATE: "Kontrola aktualizácií…"
STR_NEW_UPDATE: "K dispozícii je nová aktualizácia!"
STR_CURRENT_VERSION: "Aktuálna verzia:"
STR_NEW_VERSION: "Nová verzia:"
STR_UPDATING: "Aktualizácia..."
STR_NO_UPDATE: "Nie je k dispozícii žiadna aktualizácia"
STR_UPDATE_FAILED: "Aktualizácia zlyhala"
STR_UPDATE_COMPLETE: "Aktualizácia dokončená"
STR_POWER_ON_HINT: "Stlačte a podržte tlačidlo napájania pre zapnutie"
STR_RESTARTING_HINT: "Reštartujem... Ak sa zariadenie nereštartuje, podrž tlačidlo na zapnutie niekoľko s."
STR_NO_ENTRIES: "Neboli nájdené žiadne položky"
STR_DOWNLOADING: "Sťahovanie..."
STR_DOWNLOAD_FAILED: "Sťahovanie zlyhalo"
STR_ERROR_MSG: "Chyba:"
STR_UNNAMED: "Nepomenované"
STR_LANDSCAPE_CCW: "Na šírku proti smeru hodinových ručičiek"
STR_PREV_NEXT: "Predchádzajúca/Nasledujúca"
STR_NEXT_PREV: "Nasledujúca/Predchádzajúca"
STR_DISABLED: "Vypnuté"
STR_NOTO_SERIF: "Noto Serif"
STR_NOTO_SANS: "Noto Sans"
STR_SMALL: "Malý"
STR_MEDIUM: "Stredný"
STR_LARGE: "Veľký"
STR_X_LARGE: "Obrovský"
STR_TIGHT: "Tesný"
STR_NORMAL: "Normálny"
STR_WIDE: "Široký"
STR_JUSTIFY: "Zarovnať do bloku"
STR_ALIGN_LEFT: "Vľavo"
STR_CENTER: "Na stred"
STR_ALIGN_RIGHT: "Vpravo"
STR_PAGES_1: "1 strana"
STR_PAGES_5: "5 strán"
STR_PAGES_10: "10 strán"
STR_PAGES_15: "15 strán"
STR_PAGES_30: "30 strán"
STR_UPDATE: "Aktualizácia"
STR_CHECKING_UPDATE: "Kontrola aktualizácií…"
STR_NEW_UPDATE: "K dispozícii je nová aktualizácia!"
STR_CURRENT_VERSION: "Aktuálna verzia:"
STR_NEW_VERSION: "Nová verzia:"
STR_UPDATING: "Aktualizácia..."
STR_NO_UPDATE: "Nie je k dispozícii žiadna aktualizácia"
STR_UPDATE_FAILED: "Aktualizácia zlyhala"
STR_UPDATE_COMPLETE: "Aktualizácia dokončená"
STR_POWER_ON_HINT: "Stlačte a podržte tlačidlo napájania pre zapnutie"
STR_RESTARTING_HINT: "Reštartujem... Ak sa zariadenie nereštartuje, podrž tlačidlo na zapnutie niekoľko s."
STR_NO_ENTRIES: "Neboli nájdené žiadne položky"
STR_DOWNLOADING: "Sťahovanie..."
STR_DOWNLOAD_FAILED: "Sťahovanie zlyhalo"
STR_ERROR_MSG: "Chyba:"
STR_UNNAMED: "Nepomenované"
STR_HOLD_OPEN_TO_DELETE: "Podržte Otvoriť pre vymazanie"
STR_NO_SERVER_URL: "Nie je nakonfigurovaná URL adresa servera"
STR_FETCH_FEED_FAILED: "Načítanie kanála zlyhalo"
STR_PARSE_FEED_FAILED: "Spracovanie kanála zlyhalo"
STR_NEXT_PAGE: "Ďaľsia strana »"
STR_PREV_PAGE: "« Predchádzajúca str."
STR_NETWORK_PREFIX: "Sieť:"
STR_IP_ADDRESS_PREFIX: "IP adresa:"
STR_ERROR_GENERAL_FAILURE: "Chyba: Všeobecná chyba"
STR_ERROR_NETWORK_NOT_FOUND: "Chyba: Sieť nebola nájdená"
STR_ERROR_CONNECTION_TIMEOUT: "Chyba: Časový limit pripojenia"
STR_SD_CARD: "SD karta"
STR_BACK: "« Späť"
STR_EXIT: "« Koniec"
STR_HOME: "« Domov"
STR_SELECT: "Vybrať"
STR_SELECTED: "Vybrané"
STR_NO_SERVER_URL: "Nie je nakonfigurovaná URL adresa servera"
STR_FETCH_FEED_FAILED: "Načítanie kanála zlyhalo"
STR_PARSE_FEED_FAILED: "Spracovanie kanála zlyhalo"
STR_NEXT_PAGE: "Ďaľsia strana »"
STR_PREV_PAGE: "« Predchádzajúca str."
STR_NETWORK_PREFIX: "Sieť:"
STR_IP_ADDRESS_PREFIX: "IP adresa:"
STR_ERROR_GENERAL_FAILURE: "Chyba: Všeobecná chyba"
STR_ERROR_NETWORK_NOT_FOUND: "Chyba: Sieť nebola nájdená"
STR_ERROR_CONNECTION_TIMEOUT: "Chyba: Časový limit pripojenia"
STR_SD_CARD: "SD karta"
STR_BACK: "« Späť"
STR_EXIT: "« Koniec"
STR_HOME: "« Domov"
STR_SELECT: "Vybrať"
STR_SELECTED: "Vybrané"
STR_TOGGLE: "Prepnúť"
STR_TOGGLE_BOOKMARK: "Prepnúť záložku"
STR_CONFIRM: "Potvrdiť"
STR_CANCEL: "Zrušiť"
STR_CONNECT: "Pripojiť"
STR_OPEN: "Otvoriť"
STR_DOWNLOAD: "Stiahnuť"
STR_RETRY: "Skúsiť znova"
STR_YES: "Áno"
STR_NO: "Nie"
STR_SHOW: "Zobraz"
STR_HIDE: "Skryť"
STR_STATE_ON: "ZAP"
STR_STATE_OFF: "VYP"
STR_NOT_SET: "Nenastavené"
STR_DIR_LEFT: "Vľavo"
STR_DIR_RIGHT: "Vpravo"
STR_DIR_UP: "Hore"
STR_DIR_DOWN: "Dole"
STR_OK_BUTTON: "OK"
STR_SLEEP_COVER_FILTER: "Filter obrazovky spánku"
STR_FILTER_CONTRAST: "Kontrast"
STR_CUSTOMISE_STATUS_BAR: "Uprav status bar"
STR_CHAPTER_PAGE_COUNT: "Počítadlo strán kapitoly"
STR_BOOK_PROGRESS_PERCENTAGE: "Prečítané percent"
STR_PROGRESS_BAR: "Ukazovateľ čítania"
STR_PROGRESS_BAR_THICKNESS: "Hrúbka indikátora priebehu"
STR_PROGRESS_BAR_THIN: "Tenký"
STR_PROGRESS_BAR_MEDIUM: "Stredný"
STR_PROGRESS_BAR_THICK: "Hrubý"
STR_BOOK: "Kniha"
STR_CHAPTER: "Kapitola"
STR_EXAMPLE_CHAPTER: "Kapitola 21"
STR_EXAMPLE_BOOK: "Názov knihy"
STR_PREVIEW: "Ukážka"
STR_TITLE: "Názov"
STR_BATTERY: "Batéria"
STR_XTC_STATUS_BAR: "Stavový panel XTC"
STR_BOTTOM: "Dole"
STR_TOP: "Hore"
STR_CLOCK: "Hodiny"
STR_CLOCK_UTC_OFFSET: "UTC posun hodín"
STR_CLOCK_FORMAT: "Formát času"
STR_CLOCK_FORMAT_24H: "24-hodinový"
STR_CLOCK_FORMAT_12H: "12-hodinový"
STR_CURRENT_TIME: "Aktuálny čas:"
STR_NEXT_FIELD: "Ďalej"
STR_CLOCK_SYNC: "Synchronizácia hodín"
STR_CLOCK_SYNC_NOW: "Synchronizovať teraz"
STR_CLOCK_SYNCING: "Synchronizácia cez NTP..."
STR_CLOCK_SYNC_OK: "Hodiny synchronizované"
STR_CLOCK_SYNC_FAIL: "Synchronizácia zlyhala"
STR_CLOCK_SYNC_NO_WIFI: "Wi-Fi nie je pripojená"
STR_CLOCK_SYNC_NO_WIFI_HINT: "Najprv sa pripojte k Wi-Fi a potom skúste znova."
STR_CLOCK_SYNCED: "Hodiny synchronizované"
STR_UI_THEME: "Téma rozhrania"
STR_THEME_CLASSIC: "Klasická"
STR_THEME_LYRA: "Lyra"
STR_THEME_ROUNDEDRAFF: "RoundedRaff"
STR_THEME_LYRA_EXTENDED: "Lyra Extended"
STR_SUNLIGHT_FADING_FIX: "Oprava blednutia na slnku"
STR_REMAP_FRONT_BUTTONS: "Premapovať predné tlačidlá"
STR_CONFIRM: "Potvrdiť"
STR_CANCEL: "Zrušiť"
STR_CONNECT: "Pripojiť"
STR_OPEN: "Otvoriť"
STR_DOWNLOAD: "Stiahnuť"
STR_RETRY: "Skúsiť znova"
STR_YES: "Áno"
STR_NO: "Nie"
STR_SHOW: "Zobraz"
STR_HIDE: "Skryť"
STR_STATE_ON: "ZAP"
STR_STATE_OFF: "VYP"
STR_NOT_SET: "Nenastavené"
STR_DIR_LEFT: "Vľavo"
STR_DIR_RIGHT: "Vpravo"
STR_DIR_UP: "Hore"
STR_DIR_DOWN: "Dole"
STR_OK_BUTTON: "OK"
STR_SLEEP_COVER_FILTER: "Filter obrazovky spánku"
STR_FILTER_CONTRAST: "Kontrast"
STR_CUSTOMISE_STATUS_BAR: "Uprav status bar"
STR_CHAPTER_PAGE_COUNT: "Počítadlo strán kapitoly"
STR_BOOK_PROGRESS_PERCENTAGE: "Prečítané percent"
STR_PROGRESS_BAR: "Ukazovateľ čítania"
STR_PROGRESS_BAR_THICKNESS: "Hrúbka indikátora priebehu"
STR_PROGRESS_BAR_THIN: "Tenký"
STR_PROGRESS_BAR_MEDIUM: "Stredný"
STR_PROGRESS_BAR_THICK: "Hrubý"
STR_BOOK: "Kniha"
STR_CHAPTER: "Kapitola"
STR_EXAMPLE_CHAPTER: "Kapitola 21"
STR_EXAMPLE_BOOK: "Názov knihy"
STR_PREVIEW: "Ukážka"
STR_TITLE: "Názov"
STR_BATTERY: "Batéria"
STR_XTC_STATUS_BAR: "Stavový panel XTC"
STR_BOTTOM: "Dole"
STR_TOP: "Hore"
STR_CLOCK: "Hodiny"
STR_CLOCK_UTC_OFFSET: "UTC posun hodín"
STR_CLOCK_FORMAT: "Formát času"
STR_CLOCK_FORMAT_24H: "24-hodinový"
STR_CLOCK_FORMAT_12H: "12-hodinový"
STR_CURRENT_TIME: "Aktuálny čas:"
STR_NEXT_FIELD: "Ďalej"
STR_CLOCK_SYNC: "Synchronizácia hodín"
STR_CLOCK_SYNC_NOW: "Synchronizovať teraz"
STR_CLOCK_SYNCING: "Synchronizácia cez NTP..."
STR_CLOCK_SYNC_OK: "Hodiny synchronizované"
STR_CLOCK_SYNC_FAIL: "Synchronizácia zlyhala"
STR_CLOCK_SYNC_NO_WIFI: "Wi-Fi nie je pripojená"
STR_CLOCK_SYNC_NO_WIFI_HINT: "Najprv sa pripojte k Wi-Fi a potom skúste znova."
STR_CLOCK_SYNCED: "Hodiny synchronizované"
STR_UI_THEME: "Téma rozhrania"
STR_THEME_CLASSIC: "Klasická"
STR_THEME_LYRA: "Lyra"
STR_THEME_ROUNDEDRAFF: "RoundedRaff"
STR_THEME_LYRA_EXTENDED: "Lyra Extended"
STR_SUNLIGHT_FADING_FIX: "Oprava blednutia na slnku"
STR_REMAP_FRONT_BUTTONS: "Premapovať predné tlačidlá"
STR_BOOKMARKS: "Záložky"
STR_BOOKMARK_ADDED: "Záložka pridaná."
STR_BOOKMARK_REMOVED: "Záložka odstránená."
STR_OPDS_BROWSER: "Prehliadač OPDS"
STR_SEARCH: "Hľadať"
STR_COVER_CUSTOM: "Obálka + Vlastné"
STR_QUICK_RESUME: "Rýchle obnovenie"
STR_MENU_RECENT_BOOKS: "Nedávne knihy"
STR_REMOVE_FROM_RECENTS: "Odstrániť z nedávnych kníh?"
STR_NO_RECENT_BOOKS: "Žiadne nedávne knihy"
STR_CALIBRE_DESC: "Používať bezdrôtové prenosy zariadení Calibre"
STR_FORGET_AND_REMOVE: "Zabudnúť sieť a odstrániť uložené heslo?"
STR_FORGET_BUTTON: "Zabudnúť"
STR_CALIBRE_STARTING: "Spúšťanie Calibre..."
STR_CALIBRE_SETUP: "Nastavenie"
STR_CALIBRE_STATUS: "Stav"
STR_CLEAR_BUTTON: "Vymazať"
STR_DEFAULT_VALUE: "Predvolené"
STR_REMAP_PROMPT: "Stlačte predné tlačidlo pre každú funkciu"
STR_UNASSIGNED: "Nepriradené"
STR_ALREADY_ASSIGNED: "Už priradené"
STR_REMAP_RESET_HINT: "Bočné tlačidlo Hore: Obnoviť predvolené rozloženie"
STR_REMAP_CANCEL_HINT: "Bočné tlačidlo Dole: Zrušiť premapovanie"
STR_HW_BACK_LABEL: "Späť (1. tlačidlo)"
STR_HW_CONFIRM_LABEL: "Potvrdiť (2. tlačidlo)"
STR_HW_LEFT_LABEL: "Vľavo (3. tlačidlo)"
STR_HW_RIGHT_LABEL: "Vpravo (4. tlačidlo)"
STR_GO_TO_PERCENT: "Prejsť na %"
STR_GO_HOME_BUTTON: "Prejsť na Domov"
STR_SYNC_PROGRESS: "Priebeh synchronizácie"
STR_DELETE_CACHE: "Vymazať vyrovnávaciu pamäť knihy"
STR_DELETE: "Vymazať"
STR_CONFIRM_DELETE_BOOKMARK: "Vymazať záložku?"
STR_DISPLAY_QR: "Zobraz stránku ako QR"
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_SYNCING_TIME: "Čas synchronizácie..."
STR_CALC_HASH: "Výpočet hashu dokumentu..."
STR_HASH_FAILED: "Nepodarilo sa vypočítať hash dokumentu"
STR_FETCH_PROGRESS: "Načítavanie vzdialeného priebehu..."
STR_UPLOAD_PROGRESS: "Nahrávanie priebehu..."
STR_NO_CREDENTIALS_MSG: "Prihlasovacie údaje nie sú nastavené"
STR_KOREADER_SETUP_HINT: "Nastavte účet KOReader v Nastaveniach"
STR_PROGRESS_FOUND: "Priebeh nájdený!"
STR_REMOTE_LABEL: "Vzdialený:"
STR_LOCAL_LABEL: "Lokálny:"
STR_PAGE_OVERALL_FORMAT: "Strana %d, celkovo %.2f%%"
STR_PAGE_TOTAL_OVERALL_FORMAT: "Strana %d/%d, celkovo %.2f%%"
STR_DEVICE_FROM_FORMAT: " Zo zariadenia: %s"
STR_APPLY_REMOTE: "Použiť vzdialený priebeh"
STR_UPLOAD_LOCAL: "Nahrať lokálny priebeh"
STR_NO_REMOTE_MSG: "Nenašiel sa žiadny vzdialený priebeh"
STR_UPLOAD_PROMPT: "Nahrať aktuálnu pozíciu?"
STR_UPLOAD_SUCCESS: "Priebeh nahraný!"
STR_SYNC_FAILED_MSG: "Synchronizácia zlyhala"
STR_SAVE_PROGRESS_FAILED: "Nepodarilo sa uložiť priebeh"
STR_SECTION_PREFIX: "Sekcia"
STR_UPLOAD: "Nahrať"
STR_BOOK_S_STYLE: "Štýl knihy"
STR_EMBEDDED_STYLE: "Vložený štýl"
STR_FOCUS_READING: "Sústredené čítanie"
STR_OPDS_SERVER_URL: "URL adresa OPDS servera"
STR_SET_SLEEP_COVER: "Nastav obal"
STR_FOOTNOTES: "Poznámky pod čiarou"
STR_NO_FOOTNOTES: "Žiadne poznámky pod čiarou"
STR_LINK: "[link]"
STR_SCREENSHOT_BUTTON: "Urobiť snímku obrazovky"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nikdy"
STR_OPDS_BROWSER: "Prehliadač OPDS"
STR_SEARCH: "Hľadať"
STR_COVER_CUSTOM: "Obálka + Vlastné"
STR_QUICK_RESUME: "Rýchle obnovenie"
STR_MENU_RECENT_BOOKS: "Nedávne knihy"
STR_REMOVE_FROM_RECENTS: "Odstrániť z nedávnych kníh?"
STR_NO_RECENT_BOOKS: "Žiadne nedávne knihy"
STR_CALIBRE_DESC: "Používať bezdrôtové prenosy zariadení Calibre"
STR_FORGET_AND_REMOVE: "Zabudnúť sieť a odstrániť uložené heslo?"
STR_FORGET_BUTTON: "Zabudnúť"
STR_CALIBRE_STARTING: "Spúšťanie Calibre..."
STR_CALIBRE_SETUP: "Nastavenie"
STR_CALIBRE_STATUS: "Stav"
STR_CLEAR_BUTTON: "Vymazať"
STR_DEFAULT_VALUE: "Predvolené"
STR_REMAP_PROMPT: "Stlačte predné tlačidlo pre každú funkciu"
STR_UNASSIGNED: "Nepriradené"
STR_ALREADY_ASSIGNED: "Už priradené"
STR_REMAP_RESET_HINT: "Bočné tlačidlo Hore: Obnoviť predvolené rozloženie"
STR_REMAP_CANCEL_HINT: "Bočné tlačidlo Dole: Zrušiť premapovanie"
STR_HW_BACK_LABEL: "Späť (1. tlačidlo)"
STR_HW_CONFIRM_LABEL: "Potvrdiť (2. tlačidlo)"
STR_HW_LEFT_LABEL: "Vľavo (3. tlačidlo)"
STR_HW_RIGHT_LABEL: "Vpravo (4. tlačidlo)"
STR_GO_TO_PERCENT: "Prejsť na %"
STR_GO_HOME_BUTTON: "Prejsť na Domov"
STR_SYNC_PROGRESS: "Priebeh synchronizácie"
STR_DELETE_CACHE: "Vymazať vyrovnávaciu pamäť knihy"
STR_DELETE: "Vymazať"
STR_CONFIRM_DELETE_BOOKMARK: "Vymazať záložku?"
STR_DISPLAY_QR: "Zobraz stránku ako QR"
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_SYNCING_TIME: "Čas synchronizácie..."
STR_CALC_HASH: "Výpočet hashu dokumentu..."
STR_HASH_FAILED: "Nepodarilo sa vypočítať hash dokumentu"
STR_FETCH_PROGRESS: "Načítavanie vzdialeného priebehu..."
STR_UPLOAD_PROGRESS: "Nahrávanie priebehu..."
STR_NO_CREDENTIALS_MSG: "Prihlasovacie údaje nie sú nastavené"
STR_KOREADER_SETUP_HINT: "Nastavte účet KOReader v Nastaveniach"
STR_PROGRESS_FOUND: "Priebeh nájdený!"
STR_REMOTE_LABEL: "Vzdialený:"
STR_LOCAL_LABEL: "Lokálny:"
STR_PAGE_OVERALL_FORMAT: "Strana %d, celkovo %.2f%%"
STR_PAGE_TOTAL_OVERALL_FORMAT: "Strana %d/%d, celkovo %.2f%%"
STR_DEVICE_FROM_FORMAT: " Zo zariadenia: %s"
STR_APPLY_REMOTE: "Použiť vzdialený priebeh"
STR_UPLOAD_LOCAL: "Nahrať lokálny priebeh"
STR_NO_REMOTE_MSG: "Nenašiel sa žiadny vzdialený priebeh"
STR_UPLOAD_PROMPT: "Nahrať aktuálnu pozíciu?"
STR_UPLOAD_SUCCESS: "Priebeh nahraný!"
STR_SYNC_FAILED_MSG: "Synchronizácia zlyhala"
STR_SAVE_PROGRESS_FAILED: "Nepodarilo sa uložiť priebeh"
STR_SECTION_PREFIX: "Sekcia"
STR_UPLOAD: "Nahrať"
STR_BOOK_S_STYLE: "Štýl knihy"
STR_EMBEDDED_STYLE: "Vložený štýl"
STR_FOCUS_READING: "Sústredené čítanie"
STR_OPDS_SERVER_URL: "URL adresa OPDS servera"
STR_SET_SLEEP_COVER: "Nastav obal"
STR_FOOTNOTES: "Poznámky pod čiarou"
STR_NO_FOOTNOTES: "Žiadne poznámky pod čiarou"
STR_LINK: "[link]"
STR_SCREENSHOT_BUTTON: "Urobiť snímku obrazovky"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Nikdy"
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"
STR_DELETE_SERVER: "Odstrániť server"
STR_OPDS_SERVERS: "OPDS servery"
STR_AUTO_TURN_ENABLED: "Automatické otáčanie strán zapnuté: "
STR_AUTO_TURN_PAGES_PER_MIN: "Automatické otáčanie (strán za minútu)"
STR_MANAGE_FONTS: "Správa písiem"
STR_FONT_BROWSER: "Prehliadač písiem"
STR_LOADING_FONT_LIST: "Načítava sa zoznam písiem..."
STR_NO_FONTS_AVAILABLE: "Nie sú dostupné žiadne písma"
STR_FONT_INSTALLED: "Písmo nainštalované!"
STR_FONT_INSTALL_FAILED: "Inštalácia písma zlyhala"
STR_INSTALLED: "Nainštalované"
STR_DOWNLOAD_ALL: "Stiahnuť všetko"
STR_UPDATE_ALL: "Aktualizovať všetko"
STR_UPDATE_AVAILABLE: "Aktualizovať"
STR_CRASH_TITLE: "Zlyhanie systému"
STR_CRASH_DESCRIPTION: "Podrobná správa bola uložená do súboru crash_report.txt. Priložte tento súbor k hláseniu chyby."
STR_CRASH_REASON: "Dôvod zlyhania:"
STR_CRASH_NO_REASON: "(Nebola zaznamenaná žiadna príčina)"
STR_TILT_PAGE_TURN: "Otáčanie strán naklonením"
STR_KB_HINT_MOVE_CURSOR: "Stlačte VĽAVO alebo VPRAVO pre presun kurzora"
STR_KB_HINT_RETURN_CURSOR: "Stlačte VĽAVO pre návrat na pozíciu kurzora"
STR_KB_HINT_HIDE_PASSWORD: "Podržte VPRAVO a potom stlačte [***] na skrytie hesla"
STR_KB_HINT_SHOW_PASSWORD: "Podržte VPRAVO a potom stlačte [abc] na zobrazenie hesla"
STR_KB_HINT_TOGGLE_HIDE_PASSWORD: "Stlačte [***] na skrytie hesla"
STR_KB_HINT_TOGGLE_SHOW_PASSWORD: "Stlačte [abc] na zobrazenie hesla"
STR_KB_HINT_EDIT_ENTRY: "Podržte HORE pre úpravu položky"
STR_KB_TIPS: "Tipy:"
STR_KB_HINT_RETURN_KEYBOARD: "Stlačte DOLE pre návrat ku klávesnici"
STR_KB_HINT_EXIT_URL_MODE: "Stlačte ABC pre ukončenie režimu URL"
STR_KB_HINT_CLEAR_TEXT: "Podržte DEL pre vymazanie celého textu"
STR_KB_HINT_SECONDARY_CHAR: "Podržte SELECT pre alternatívny znak"
STR_KB_HINT_UPPER_SECONDARY: "Podržte SELECT pre VEĽKÉ písmeno alebo alternatívny znak"
STR_KB_HINT_LOWER_SECONDARY: "Podržte SELECT pre malé písmeno alebo alternatívny znak"
STR_KB_HINT_URL_SNIPPETS: "Stlačte URL pre úryvky"
STR_SD_FIRMWARE_UPDATE: "Aktualizácia firmvéru z SD karty"
STR_SELECT_FIRMWARE_FILE: "Vyberte súbor firmvéru (.bin)"
STR_NO_BIN_FILES: "Nenašli sa žiadne súbory .bin"
STR_VALIDATING_FIRMWARE: "Overuje sa firmvér..."
STR_INVALID_FIRMWARE: "Neplatný súbor firmvéru"
STR_FIRMWARE_TOO_LARGE: "Firmvér je príliš veľký pre partíciu"
STR_FIRMWARE_TOO_SMALL: "Súbor firmvéru je príliš malý"
STR_FIRMWARE_UPDATE_PROMPT: "Aktualizovať firmvér?"
STR_FIRMWARE_FILE_OPEN_FAILED: "Nie je možné otvoriť súbor"
STR_FIRMWARE_WRITE_FAILED: "Zápis firmvéru zlyhal"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Nevypínajte zariadenie!"
STR_RECOVERY_MODE: "Režim obnovenia"
STR_RECOVERY_MODE_HINT: "Umiestnite firmware.bin do koreňového adresára SD karty a vyberte ho"
STR_ADD_SERVER: "Pridať server"
STR_SERVER_NAME: "Názov servera"
STR_NO_SERVERS: "Nie sú nakonfigurované žiadne OPDS servery"
STR_DELETE_SERVER: "Odstrániť server"
STR_OPDS_SERVERS: "OPDS servery"
STR_AUTO_TURN_ENABLED: "Automatické otáčanie strán zapnuté: "
STR_AUTO_TURN_PAGES_PER_MIN: "Automatické otáčanie (strán za minútu)"
STR_MANAGE_FONTS: "Správa písiem"
STR_FONT_BROWSER: "Prehliadač písiem"
STR_LOADING_FONT_LIST: "Načítava sa zoznam písiem..."
STR_NO_FONTS_AVAILABLE: "Nie sú dostupné žiadne písma"
STR_FONT_INSTALLED: "Písmo nainštalované!"
STR_FONT_INSTALL_FAILED: "Inštalácia písma zlyhala"
STR_INSTALLED: "Nainštalované"
STR_DOWNLOAD_ALL: "Stiahnuť všetko"
STR_UPDATE_ALL: "Aktualizovať všetko"
STR_UPDATE_AVAILABLE: "Aktualizovať"
STR_CRASH_TITLE: "Zlyhanie systému"
STR_CRASH_DESCRIPTION: "Podrobná správa bola uložená do súboru crash_report.txt. Priložte tento súbor k hláseniu chyby."
STR_CRASH_REASON: "Dôvod zlyhania:"
STR_CRASH_NO_REASON: "(Nebola zaznamenaná žiadna príčina)"
STR_TILT_PAGE_TURN: "Otáčanie strán naklonením"
STR_KB_HINT_MOVE_CURSOR: "Stlačte VĽAVO alebo VPRAVO pre presun kurzora"
STR_KB_HINT_RETURN_CURSOR: "Stlačte VĽAVO pre návrat na pozíciu kurzora"
STR_KB_HINT_HIDE_PASSWORD: "Podržte VPRAVO a potom stlačte [***] na skrytie hesla"
STR_KB_HINT_SHOW_PASSWORD: "Podržte VPRAVO a potom stlačte [abc] na zobrazenie hesla"
STR_KB_HINT_TOGGLE_HIDE_PASSWORD: "Stlačte [***] na skrytie hesla"
STR_KB_HINT_TOGGLE_SHOW_PASSWORD: "Stlačte [abc] na zobrazenie hesla"
STR_KB_HINT_EDIT_ENTRY: "Podržte HORE pre úpravu položky"
STR_KB_TIPS: "Tipy:"
STR_KB_HINT_RETURN_KEYBOARD: "Stlačte DOLE pre návrat ku klávesnici"
STR_KB_HINT_EXIT_URL_MODE: "Stlačte ABC pre ukončenie režimu URL"
STR_KB_HINT_CLEAR_TEXT: "Podržte DEL pre vymazanie celého textu"
STR_KB_HINT_SECONDARY_CHAR: "Podržte SELECT pre alternatívny znak"
STR_KB_HINT_UPPER_SECONDARY: "Podržte SELECT pre VEĽKÉ písmeno alebo alternatívny znak"
STR_KB_HINT_LOWER_SECONDARY: "Podržte SELECT pre malé písmeno alebo alternatívny znak"
STR_KB_HINT_URL_SNIPPETS: "Stlačte URL pre úryvky"
STR_SD_FIRMWARE_UPDATE: "Aktualizácia firmvéru z SD karty"
STR_SELECT_FIRMWARE_FILE: "Vyberte súbor firmvéru (.bin)"
STR_NO_BIN_FILES: "Nenašli sa žiadne súbory .bin"
STR_VALIDATING_FIRMWARE: "Overuje sa firmvér..."
STR_INVALID_FIRMWARE: "Neplatný súbor firmvéru"
STR_FIRMWARE_TOO_LARGE: "Firmvér je príliš veľký pre partíciu"
STR_FIRMWARE_TOO_SMALL: "Súbor firmvéru je príliš malý"
STR_FIRMWARE_UPDATE_PROMPT: "Aktualizovať firmvér?"
STR_FIRMWARE_FILE_OPEN_FAILED: "Nie je možné otvoriť súbor"
STR_FIRMWARE_WRITE_FAILED: "Zápis firmvéru zlyhal"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Nevypínajte zariadenie!"
STR_RECOVERY_MODE: "Režim obnovenia"
STR_RECOVERY_MODE_HINT: "Umiestnite firmware.bin do koreňového adresára SD karty a vyberte ho"
STR_ADD_HIDDEN_NETWORK: "Pridať skrytú sieť..."
STR_ENTER_WIFI_SSID: "Zadajte názov siete (SSID)"
+3 -2
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@@ -65,8 +65,6 @@ STR_SLEEP_COVER_MODE: "Način naslovnice v spanju"
STR_HIDE_BATTERY: "Skrij % baterije"
STR_EXTRA_SPACING: "Dodaten razmik med odstavki"
STR_TEXT_AA: "Glajenje besedila (AA)"
STR_TEXT_AA_FULL: "Polno"
STR_TEXT_AA_FAST: "Hitro"
STR_IMAGES: "Slike"
STR_IMAGES_DISPLAY: "Prikaži"
STR_IMAGES_PLACEHOLDER: "Oznaka mesta"
@@ -96,6 +94,7 @@ STR_USERNAME: "Uporabniško ime"
STR_PASSWORD: "Geslo"
STR_SYNC_SERVER_URL: "URL strežnika za sinhronizacijo"
STR_DOCUMENT_MATCHING: "Ujemanje dokumentov"
STR_SEND_METADATA: "Pošlji metapodatke dokumenta"
STR_AUTHENTICATE: "Avtentikacija"
STR_KOREADER_USERNAME: "KOReader uporabnik"
STR_KOREADER_PASSWORD: "KOReader geslo"
@@ -302,3 +301,5 @@ STR_SCREENSHOT_BUTTON: "Naredi posnetek zaslona"
STR_AUTO_TURN_ENABLED: "Samodejno obračanje: "
STR_AUTO_TURN_PAGES_PER_MIN: "Samodejno obračanje (strani na minuto)"
STR_TILT_PAGE_TURN: "Obračanje s priklonom"
STR_ADD_HIDDEN_NETWORK: "Dodaj skrito omrežje..."
STR_ENTER_WIFI_SSID: "Vnesite ime omrežja (SSID)"
+9 -2
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@@ -18,6 +18,7 @@ STR_NO_CHAPTERS: "Sin capítulos"
STR_END_OF_BOOK: "Fin del libro"
STR_EMPTY_CHAPTER: "Capítulo vacío"
STR_INDEXING: "Indexando"
STR_INDEX_FAILED: "No se pudo indexar: libro no válido"
STR_MEMORY_ERROR: "Error de memoria"
STR_PAGE_LOAD_ERROR: "Error al cargar la página"
STR_EMPTY_FILE: "Archivo vacío"
@@ -28,7 +29,10 @@ STR_WIFI_NETWORKS: "Redes Wi-Fi"
STR_NO_NETWORKS: "No hay redes disponibles"
STR_NETWORKS_FOUND: "%zu red(es) encontrada(s)"
STR_SCANNING: "Buscando..."
STR_FINDING_SAVED_WIFI: "Buscando redes Wi-Fi guardadas..."
STR_CONNECTING: "Conectando..."
STR_CONNECTING_SAVED_WIFI: "Conectando a una red Wi-Fi guardada..."
STR_SHOW_NETWORKS: "Mostrar"
STR_CONNECTED: "¡Conectado!"
STR_CONNECTION_FAILED: "Error de conexión"
STR_FORGET_NETWORK: "¿Olvidar la red?"
@@ -65,12 +69,12 @@ STR_SLEEP_COVER_MODE: "Modo de pantalla de suspensión"
STR_HIDE_BATTERY: "Ocultar % de batería"
STR_EXTRA_SPACING: "Espaciado entre párrafos"
STR_TEXT_AA: "Suavizado de texto"
STR_TEXT_AA_FULL: "Completo"
STR_TEXT_AA_FAST: "Rápido"
STR_IMAGES: "Imágenes"
STR_IMAGES_DISPLAY: "Mostrar"
STR_IMAGES_PLACEHOLDER: "Reemplazar"
STR_IMAGES_SUPPRESS: "Ocultar"
STR_EOB_HOME: "Inicio"
STR_EOB_CONTINUE_WITH: "Continuar con"
STR_SHORT_PWR_BTN: "Toque corto del encendido"
STR_ORIENTATION: "Orientación"
STR_SIDE_BTN_LAYOUT: "Función botones laterales (lector)"
@@ -100,6 +104,7 @@ STR_USERNAME: "Usuario"
STR_PASSWORD: "Contraseña"
STR_SYNC_SERVER_URL: "URL del servidor de sinc."
STR_DOCUMENT_MATCHING: "Coincidencia de doc."
STR_SEND_METADATA: "Enviar metadatos doc."
STR_AUTHENTICATE: "Autenticar"
STR_KOREADER_USERNAME: "Usuario de KOReader"
STR_KOREADER_PASSWORD: "Contraseña de KOReader"
@@ -385,3 +390,5 @@ STR_FIRMWARE_WRITE_FAILED: "Falló la escritura del firmware"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "¡No apague el dispositivo!"
STR_RECOVERY_MODE: "Modo de recuperación"
STR_RECOVERY_MODE_HINT: "Ponga firmware.bin en la raíz de la tarj. SD y selecciónelo"
STR_ADD_HIDDEN_NETWORK: "Añadir red oculta..."
STR_ENTER_WIFI_SSID: "Introduce el nombre de la red (SSID)"
+12 -5
View File
@@ -18,6 +18,7 @@ STR_NO_CHAPTERS: "Inga kapitel"
STR_END_OF_BOOK: "Slutet på boken"
STR_EMPTY_CHAPTER: "Tomt kapitel"
STR_INDEXING: "Indexerar"
STR_INDEX_FAILED: "Misslyckades att indexera - ogiltig bok"
STR_MEMORY_ERROR: "Minnesfel"
STR_PAGE_LOAD_ERROR: "Sidladdningsfel"
STR_EMPTY_FILE: "Tom fil"
@@ -61,17 +62,17 @@ STR_CAT_READER: "Läsare"
STR_CAT_CONTROLS: "Kontroller"
STR_CAT_SYSTEM: "System"
STR_SLEEP_SCREEN: "Viloskärm"
STR_SEAMLESS_SLEEP: "Sida som viloskärm"
STR_QUICK_RESUME_TIMEOUT: "Snabb återupptagning efter timeout"
STR_SLEEP_COVER_MODE: "Viloskärmens omslagsläge"
STR_HIDE_BATTERY: "Dölj batteriprocent"
STR_EXTRA_SPACING: "Extra paragrafmellanrum"
STR_TEXT_AA: "Textkantutjämning"
STR_TEXT_AA_FULL: "Full"
STR_TEXT_AA_FAST: "Snabb"
STR_IMAGES: "Bilder"
STR_IMAGES_DISPLAY: "Visa"
STR_IMAGES_PLACEHOLDER: "Platshållare"
STR_IMAGES_SUPPRESS: "Dölj"
STR_EOB_HOME: "Hem"
STR_EOB_CONTINUE_WITH: "Fortsätt med"
STR_SHORT_PWR_BTN: "Kort strömknappsklick"
STR_ORIENTATION: "Läsrikting"
STR_SIDE_BTN_LAYOUT: "Sidoknappslayout (Läsare)"
@@ -80,6 +81,7 @@ STR_LONG_PRESS_BEHAVIOR: "Beteende vid lång knapptryckning"
STR_LONG_PRESS_BEHAVIOR_OFF: "AV"
STR_LONG_PRESS_BEHAVIOR_SKIP: "Hoppa över kapitel"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Ändra orientering"
STR_LONG_PRESS_MENU: "Långtrycksmeny"
STR_FONT_PREVIEW_TEXT: "Flygande bäckasiner söka hwila på mjuka tuvor"
STR_FONT_FAMILY: "Eboksläsarens typsnittsfamilj"
STR_FONT_SIZE: "Eboksläsarens typsnittsstorlek"
@@ -100,6 +102,7 @@ STR_USERNAME: "Användarnamn"
STR_PASSWORD: "Lösenord"
STR_SYNC_SERVER_URL: "Synkronisera serveradress"
STR_DOCUMENT_MATCHING: "Dokumentmatchning"
STR_SEND_METADATA: "Skicka dokumentmetadata"
STR_AUTHENTICATE: "Autentisera "
STR_KOREADER_USERNAME: "KOReader användarnamn"
STR_KOREADER_PASSWORD: "KOReader lösenord"
@@ -144,6 +147,8 @@ STR_ORIENTATION_INVERTED: "Porträtt 180°"
STR_LANDSCAPE_CCW: "Landskap moturs"
STR_PREV_NEXT: "Förra/Nästa"
STR_NEXT_PREV: "Nästa/Förra"
STR_KOSYNC: "KOSync"
STR_BOOKMARK_OPTION: "Bokmärke"
STR_DISABLED: "Inaktiverad"
STR_NOTO_SERIF: "Noto Serif"
STR_NOTO_SANS: "Noto Sans"
@@ -257,7 +262,6 @@ STR_THEME_LYRA: "Lyra"
STR_THEME_ROUNDEDRAFF: "RoundedRaff"
STR_THEME_LYRA_EXTENDED: "Lyra utökad"
STR_SUNLIGHT_FADING_FIX: "Fix för solskensmattning"
STR_QUICK_RESUME_TIMEOUT: "Snabb återupptagning efter timeout"
STR_REMAP_FRONT_BUTTONS: "Ändra frontknappar"
STR_BOOKMARKS: "Bokmärken"
STR_BOOKMARK_ADDED: "Bokmärke tillagt."
@@ -323,15 +327,16 @@ STR_BOOK_S_STYLE: "Bokstil"
STR_EMBEDDED_STYLE: "Inbäddad stil"
STR_FOCUS_READING: "Fokusläsning"
STR_OPDS_SERVER_URL: "OPDS-serveradress"
STR_PWR_BTN_FOOTNOTE_BACK: "Snabbåtergång från fotnoter"
STR_SET_SLEEP_COVER: "Ställ in omslag"
STR_FOOTNOTES: "Fotnoter"
STR_NO_FOOTNOTES: "Inga fotnoter på den här sidan"
STR_LINK: "[länk]"
STR_SCREENSHOT_BUTTON: "Ta en skärmdump"
STR_SLEEP_TIMER_VALUE_FORMAT: "%u min"
STR_SLEEP_NEVER: "Aldrig"
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"
STR_NO_SERVERS: "Inga OPDS-servrar konfigurerade"
@@ -382,3 +387,5 @@ STR_FIRMWARE_WRITE_FAILED: "Skrivning till firmware misslyckades"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Stäng inte av!"
STR_RECOVERY_MODE: "Återställningsläge"
STR_RECOVERY_MODE_HINT: "Placera firmware.bin i SD-kortroten och välj den"
STR_ADD_HIDDEN_NETWORK: "Lägg till dolt nätverk..."
STR_ENTER_WIFI_SSID: "Ange nätverksnamn (SSID)"
+3 -2
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@@ -64,8 +64,6 @@ STR_SLEEP_COVER_MODE: "Uyku Ekranı Kapak Modu"
STR_HIDE_BATTERY: "Pil Yüzdesini Gizle"
STR_EXTRA_SPACING: "Ekstra Paragraf Boşluğu"
STR_TEXT_AA: "Metin Yumuşatma (AA)"
STR_TEXT_AA_FULL: "Tam"
STR_TEXT_AA_FAST: "Hızlı"
STR_SHORT_PWR_BTN: "Kısa Güç Tuşu Tıklaması"
STR_ORIENTATION: "Okuma Yönü"
STR_SIDE_BTN_LAYOUT: "Yan Tuş Dizilimi (okuyucu)"
@@ -94,6 +92,7 @@ STR_USERNAME: "Kullanıcı Adı"
STR_PASSWORD: "Şifre"
STR_SYNC_SERVER_URL: "Senkronizasyon Sunucu Adresi"
STR_DOCUMENT_MATCHING: "Belge Eşleştirme"
STR_SEND_METADATA: "Belge üst verisi gönder"
STR_AUTHENTICATE: "Kimlik Doğrula"
STR_KOREADER_USERNAME: "KOReader Kullanıcı Adı"
STR_KOREADER_PASSWORD: "KOReader Şifresi"
@@ -305,3 +304,5 @@ STR_SELECTED: "Seçili"
STR_SHOW: "Göster"
STR_TITLE: "Başlık"
STR_TILT_PAGE_TURN: "Eğerek sayfa çevirme"
STR_ADD_HIDDEN_NETWORK: "Gizli ağ ekle..."
STR_ENTER_WIFI_SSID: "Ağ adını girin (SSID)"
+3 -2
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@@ -66,8 +66,6 @@ STR_SLEEP_COVER_MODE: "Режим заповнення"
STR_HIDE_BATTERY: "Приховати % батареї"
STR_EXTRA_SPACING: "Додатковий інтервал між абзацами"
STR_TEXT_AA: "Згладжування тексту"
STR_TEXT_AA_FULL: "Повне"
STR_TEXT_AA_FAST: "Швидке"
STR_IMAGES: "Зображення"
STR_IMAGES_DISPLAY: "Показати"
STR_IMAGES_PLACEHOLDER: "Заглушка"
@@ -100,6 +98,7 @@ STR_USERNAME: "Ім'я користувача"
STR_PASSWORD: "Пароль"
STR_SYNC_SERVER_URL: "URL для синхронізації"
STR_DOCUMENT_MATCHING: "Порівняння документів"
STR_SEND_METADATA: "Надсилати метадані"
STR_AUTHENTICATE: "Автентифікувати"
STR_KOREADER_USERNAME: "Ім'я користувача KOReader"
STR_KOREADER_PASSWORD: "Пароль KOReader"
@@ -382,3 +381,5 @@ STR_FIRMWARE_WRITE_FAILED: "Помилка запису прошивки"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Не вимикайте пристрій!"
STR_RECOVERY_MODE: "Режим відновлення"
STR_RECOVERY_MODE_HINT: "Помістіть firmware.bin у корінь SD-карти та виберіть його"
STR_ADD_HIDDEN_NETWORK: "Додати приховану мережу..."
STR_ENTER_WIFI_SSID: "Введіть назву мережі (SSID)"
+65 -58
View File
@@ -7,7 +7,7 @@ STR_BOOTING: "ARRENCANT"
STR_SLEEPING: "ENTRANT EN REPÒS"
STR_ENTERING_SLEEP: "Entrant en repòs"
STR_BROWSE_FILES: "Explora arxius"
STR_FILE_TRANSFER: "Transferència"
STR_FILE_TRANSFER: "Transferència d'arxius"
STR_SETTINGS_TITLE: "Configuració"
STR_CONTINUE_READING: "Continua llegint"
STR_NO_OPEN_BOOK: "Cap llibre obert"
@@ -18,6 +18,7 @@ STR_NO_CHAPTERS: "Sense capítols"
STR_END_OF_BOOK: "Final del llibre"
STR_EMPTY_CHAPTER: "Capítol buit"
STR_INDEXING: "S'està indexant"
STR_INDEX_FAILED: "No s'ha pogut indexar: llibre no vàlid"
STR_MEMORY_ERROR: "Error de memòria"
STR_PAGE_LOAD_ERROR: "Error en carregar la pàgina"
STR_EMPTY_FILE: "Arxiu buit"
@@ -28,62 +29,65 @@ STR_WIFI_NETWORKS: "Xarxes Wi-Fi"
STR_NO_NETWORKS: "No s'han trobat xarxes"
STR_NETWORKS_FOUND: "%zu xarxes trobades"
STR_SCANNING: "S'està escanejant..."
STR_FINDING_SAVED_WIFI: "S'estan buscant xarxes Wi-Fi guardades..."
STR_CONNECTING: "S'està connectant..."
STR_CONNECTING_SAVED_WIFI: "S'està connectant a una xarxa Wi-Fi guardada..."
STR_SHOW_NETWORKS: "Mostra"
STR_CONNECTED: "S'ha connectat!"
STR_CONNECTION_FAILED: "Error de connexió"
STR_FORGET_NETWORK: "Voleu oblidar esta xarxa?"
STR_SAVE_PASSWORD: "Voleu guardar la contrasenya per a la pròxima vegada?"
STR_PRESS_OK_SCAN: "Premeu OK per tornar a escanejar"
STR_JOIN_NETWORK: "Uneix-te a una xarxa"
STR_FORGET_NETWORK: "Vols oblidar esta xarxa?"
STR_SAVE_PASSWORD: "Vols guardar la contrasenya per a la pròxima vegada?"
STR_PRESS_OK_SCAN: "Prem OK per tornar a escanejar"
STR_JOIN_NETWORK: "Unix-te a una xarxa"
STR_CREATE_HOTSPOT: "Crea un punt d'accés"
STR_JOIN_DESC: "Connecta't a una xarxa Wi-Fi existent"
STR_HOTSPOT_DESC: "Crea una xarxa Wi-Fi per unir-s'hi"
STR_STARTING_HOTSPOT: "S'està iniciant el punt d'accés..."
STR_HOTSPOT_MODE: "Mode de punt d'accés"
STR_CONNECT_WIFI_HINT: "Connecteu el dispositiu a esta xarxa Wi-Fi"
STR_OPEN_URL_HINT: "Obriu este URL al navegador"
STR_CONNECT_WIFI_HINT: "Connecta el dispositiu a esta xarxa Wi-Fi"
STR_OPEN_URL_HINT: "Obri este URL al navegador"
STR_OR_HTTP_PREFIX: "o http://"
STR_SCAN_QR_HINT: "o escanegeu el codi QR amb el telèfon:"
STR_SCAN_QR_HINT: "o escaneja el codi QR amb el telèfon:"
STR_CALIBRE_WIRELESS: "Calibre sense fils"
STR_NETWORK_LEGEND: "* = Encriptat | + = Guardat"
STR_MAC_ADDRESS: "Adreça MAC:"
STR_CHECKING_WIFI: "S'està comprovant el Wi-Fi..."
STR_ENTER_WIFI_PASSWORD: "Introduïu la contrasenya Wi-Fi"
STR_ENTER_WIFI_PASSWORD: "Introduïx la contrasenya Wi-Fi"
STR_TO_PREFIX: "a "
STR_CALIBRE_RECEIVING: "S'està rebent: "
STR_CALIBRE_RECEIVED: "S'ha rebut: "
STR_CALIBRE_INSTRUCTION_1: "1) Instal·leu el connector CrossPoint Reader"
STR_CALIBRE_INSTRUCTION_2: "2) Estigueu a la mateixa xarxa Wi-Fi"
STR_CALIBRE_INSTRUCTION_1: "1) Instal·la el connector CrossPoint Reader"
STR_CALIBRE_INSTRUCTION_2: "2) Estigues a la mateixa xarxa Wi-Fi"
STR_CALIBRE_INSTRUCTION_3: "3) A Calibre: \"Envia a un dispositiu\""
STR_CALIBRE_INSTRUCTION_4: "\"Mantingueu esta pantalla oberta mentre s'envia\""
STR_CALIBRE_INSTRUCTION_4: "\"Mantín esta pantalla oberta mentre s'envia\""
STR_CAT_DISPLAY: "Visualització"
STR_CAT_READER: "Lector"
STR_CAT_CONTROLS: "Controls"
STR_CAT_SYSTEM: "Sistema"
STR_SLEEP_SCREEN: "Pantalla de repòs"
STR_QUICK_RESUME_TIMEOUT: "Represa ràpida després del temps"
STR_SLEEP_COVER_MODE: "Mode de pantalla de repòs"
STR_QUICK_RESUME_TIMEOUT: "Represa ràpida per inactivitat"
STR_SLEEP_COVER_MODE: "Ajust de la portada en repòs"
STR_HIDE_BATTERY: "Oculta el % de bateria"
STR_EXTRA_SPACING: "Espaiat de paràgraf extra"
STR_TEXT_AA: "Antialiàsing del text"
STR_TEXT_AA_FULL: "Complet"
STR_TEXT_AA_FAST: "Ràpid"
STR_IMAGES: "Imatges"
STR_IMAGES_DISPLAY: "Mostrar"
STR_IMAGES_PLACEHOLDER: "Text de mostra"
STR_IMAGES_PLACEHOLDER: "Text alternatiu"
STR_IMAGES_SUPPRESS: "Eliminar"
STR_SHORT_PWR_BTN: "Clic curt del botó d'engegada"
STR_EOB_HOME: "Inici"
STR_EOB_CONTINUE_WITH: "Continua amb"
STR_SHORT_PWR_BTN: "Pulsació curta del botó d'engegada"
STR_ORIENTATION: "Orientació de lectura"
STR_SIDE_BTN_LAYOUT: "Disposició botons laterals"
STR_FRONT_BTN_FOLLOW_ORIENTATION: "Orientar botons frontals"
STR_LONG_PRESS_BEHAVIOR: "Comportament de prémer llargament el botó"
STR_LONG_PRESS_BEHAVIOR: "Acció en mantindre premut un botó"
STR_LONG_PRESS_BEHAVIOR_OFF: "Desactivat"
STR_LONG_PRESS_BEHAVIOR_SKIP: "Saltar capítols"
STR_LONG_PRESS_BEHAVIOR_ORIENTATION: "Canvi d'orientació"
STR_LONG_PRESS_MENU: "Funció de pulsació llarga"
STR_FONT_PREVIEW_TEXT: "Jove xef, porti whisky amb quinze glaçons d'hidrogen, coi!"
STR_FONT_FAMILY: "Família de fonts"
STR_FONT_SIZE: "Grandària de la lletra (UI)"
STR_FONT_SIZE: "Cos de lletra del lector"
STR_LINE_SPACING: "Interlineat del lector"
STR_SCREEN_MARGIN: "Marge de pantalla del lector"
STR_PARA_ALIGNMENT: "Alineació de paràgrafs del lector"
@@ -96,21 +100,22 @@ 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"
STR_REFRESH_FREQ: "Freqüència de refresc"
STR_REFRESH_FREQ: "Freqüència d'actualització"
STR_KOREADER_SYNC: "Sincronització del KOReader"
STR_CHECK_UPDATES: "Comprova si hi ha actualitzacions"
STR_LANGUAGE: "Idioma"
STR_LANGUAGE: "Llengua"
STR_CLEAR_READING_CACHE: "Esborra la memòria cau de lectura"
STR_USERNAME: "Nom d'usuari"
STR_PASSWORD: "Contrasenya"
STR_SYNC_SERVER_URL: "URL del servidor de sincronització"
STR_DOCUMENT_MATCHING: "Coincidència de documents"
STR_SEND_METADATA: "Envia metadades del document"
STR_AUTHENTICATE: "Autentica"
STR_KOREADER_USERNAME: "Nom d'usuari del KOReader"
STR_KOREADER_PASSWORD: "Contrasenya del KOReader"
STR_FILENAME: "Nom d'arxiu"
STR_BINARY: "Binari"
STR_SET_CREDENTIALS_FIRST: "Estableix les credencials primer"
STR_SET_CREDENTIALS_FIRST: "Establix les credencials primer"
STR_WIFI_CONN_FAILED: "Connexió Wi-Fi fallida"
STR_AUTHENTICATING: "S'està autenticant..."
STR_AUTH_SUCCESS: "Autenticació correcta!"
@@ -150,7 +155,7 @@ STR_PREV_NEXT: "Anterior/Següent"
STR_NEXT_PREV: "Següent/Anterior"
STR_KOSYNC: "KOSync"
STR_BOOKMARK_OPTION: "Punt de llibre"
STR_DISABLED: "Desactivats"
STR_DISABLED: "Sense funció"
STR_NOTO_SERIF: "Noto Serif"
STR_NOTO_SANS: "Noto Sans"
STR_SMALL: "Petita"
@@ -178,16 +183,16 @@ STR_UPDATING: "S'està actualitzant..."
STR_NO_UPDATE: "No hi ha actualitzacions disponibles"
STR_UPDATE_FAILED: "Ha fallat l'actualització"
STR_UPDATE_COMPLETE: "Actualització completada"
STR_POWER_ON_HINT: "Premeu i manteniu premut el botó d'encesa per tornar a engegar"
STR_POWER_ON_HINT: "Prem i mantín premut el botó d'encesa per tornar a engegar"
STR_NO_ENTRIES: "No s'ha trobat cap entrada"
STR_DOWNLOADING: "S'està baixant..."
STR_DOWNLOAD_FAILED: "Ha fallat la baixada"
STR_ERROR_MSG: "Error:"
STR_UNNAMED: "Sense nom"
STR_HOLD_OPEN_TO_DELETE: "Manteniu premut Obre per esborrar"
STR_HOLD_OPEN_TO_DELETE: "Mantín premut Obri per esborrar"
STR_NO_SERVER_URL: "No s'ha configurat cap URL de servidor"
STR_FETCH_FEED_FAILED: "Ha fallat l'obtenció del feed"
STR_PARSE_FEED_FAILED: "Ha fallat l'anàlisi del feed"
STR_FETCH_FEED_FAILED: "Ha fallat l'obtenció del canal de continguts"
STR_PARSE_FEED_FAILED: "Ha fallat l'anàlisi del canal de continguts"
STR_NETWORK_PREFIX: "Xarxa: "
STR_IP_ADDRESS_PREFIX: "Adreça IP: "
STR_ERROR_GENERAL_FAILURE: "Error: Fallada general"
@@ -200,11 +205,11 @@ STR_HOME: "« Inici"
STR_SELECT: "Selecciona"
STR_SELECTED: "Seleccionat"
STR_TOGGLE: "Canvia"
STR_TOGGLE_BOOKMARK: "Canvia punt de llibre"
STR_TOGGLE_BOOKMARK: "Afig o elimina el punt de llibre"
STR_CONFIRM: "Confirma"
STR_CANCEL: "Cancel·la"
STR_CONNECT: "Connecta"
STR_OPEN: "Obre"
STR_OPEN: "Obri"
STR_DOWNLOAD: "Descarrega"
STR_RETRY: "Reintenta"
STR_YES: "Sí"
@@ -219,7 +224,7 @@ STR_DIR_RIGHT: "Dreta"
STR_DIR_UP: "Amunt"
STR_DIR_DOWN: "Avall"
STR_OK_BUTTON: "OK"
STR_SLEEP_COVER_FILTER: "Filtre de pantalla de repòs"
STR_SLEEP_COVER_FILTER: "Filtre de la portada en repòs"
STR_FILTER_CONTRAST: "Contrast"
STR_CUSTOMISE_STATUS_BAR: "Personalitza la barra d'estat"
STR_CHAPTER_PAGE_COUNT: "Comptador de pàgines del capítol"
@@ -249,20 +254,20 @@ STR_OPDS_BROWSER: "Navegador OPDS"
STR_COVER_CUSTOM: "Portada + Personalitzat"
STR_QUICK_RESUME: "Represa ràpida"
STR_MENU_RECENT_BOOKS: "Llibres recents"
STR_REMOVE_FROM_RECENTS: "Voleu eliminar-lo de Llibres recents?"
STR_REMOVE_FROM_RECENTS: "Vols eliminar-lo de Llibres recents?"
STR_NO_RECENT_BOOKS: "No hi ha llibres recents"
STR_CALIBRE_DESC: "Utilitza les transferències sense fils de Calibre"
STR_FORGET_AND_REMOVE: "Voleu eliminar la contrasenya guardada?"
STR_FORGET_AND_REMOVE: "Vols oblidar la xarxa i eliminar la contrasenya guardada?"
STR_FORGET_BUTTON: "Oblida"
STR_CALIBRE_STARTING: "S'està iniciant el Calibre..."
STR_CALIBRE_SETUP: "Configura"
STR_CALIBRE_STATUS: "Estat"
STR_CLEAR_BUTTON: "Esborra"
STR_DEFAULT_VALUE: "Per defecte"
STR_REMAP_PROMPT: "Premeu un botó frontal per a cada rol"
STR_REMAP_PROMPT: "Prem un botó frontal per a cada rol"
STR_UNASSIGNED: "No assignat"
STR_ALREADY_ASSIGNED: "Ja assignat"
STR_REMAP_RESET_HINT: "Botó lateral Amunt: Restableix la disposició per defecte"
STR_REMAP_RESET_HINT: "Botó lateral Amunt: Restablix la disposició per defecte"
STR_REMAP_CANCEL_HINT: "Botó lateral Avall: Cancel·la la reassignació"
STR_HW_BACK_LABEL: "Arrere (1r botó)"
STR_HW_CONFIRM_LABEL: "Confirma (2n botó)"
@@ -273,19 +278,19 @@ STR_GO_HOME_BUTTON: "Ves a l'inici"
STR_SYNC_PROGRESS: "Sincronitza el progrés"
STR_DELETE_CACHE: "Esborra la memòria cau del llibre"
STR_DELETE: "Esborra"
STR_CONFIRM_DELETE_BOOKMARK: "Voleu esborrar este punt de llibre?"
STR_CONFIRM_DELETE_BOOKMARK: "Vols esborrar este punt de llibre?"
STR_DISPLAY_QR: "Mostra la pàgina com a QR"
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_CALIBRE_URL_HINT: "Per al Calibre, afig /opds a la URL"
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"
STR_CALC_HASH: "S'està calculant l'empremta electrònica del document..."
STR_HASH_FAILED: "No s'ha pogut calcular l'empremta electrònica del document"
STR_FETCH_PROGRESS: "S'està obtenint el progrés remot..."
STR_UPLOAD_PROGRESS: "S'està pujant el progrés..."
STR_NO_CREDENTIALS_MSG: "No s'han configurat credencials"
STR_KOREADER_SETUP_HINT: "Configureu el compte de KOReader en Configuració"
STR_KOREADER_SETUP_HINT: "Configura el compte de KOReader en Configuració"
STR_PROGRESS_FOUND: "S'ha trobat progrés!"
STR_REMOTE_LABEL: "Remot:"
STR_LOCAL_LABEL: "Local:"
@@ -295,7 +300,7 @@ STR_DEVICE_FROM_FORMAT: " De: %s"
STR_APPLY_REMOTE: "Aplica el progrés remot"
STR_UPLOAD_LOCAL: "Puja el progrés local"
STR_NO_REMOTE_MSG: "No s'ha trobat progrés remot"
STR_UPLOAD_PROMPT: "Voleu pujar la posició actual?"
STR_UPLOAD_PROMPT: "Vols pujar la posició actual?"
STR_UPLOAD_SUCCESS: "Progrés pujat!"
STR_SYNC_FAILED_MSG: "Sincronització fallida"
STR_SAVE_PROGRESS_FAILED: "No s'ha pogut guardar el progrés"
@@ -310,11 +315,11 @@ STR_FOOTNOTES: "Notes al peu"
STR_NO_FOOTNOTES: "No hi ha notes al peu en esta pàgina"
STR_LINK: "[enllaç]"
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)"
STR_AUTO_TURN_ENABLED: "Pas automàtic de pàgina activat"
STR_AUTO_TURN_PAGES_PER_MIN: "Pas automàtic de pàgina (pàg./min)"
STR_TILT_PAGE_TURN: "Pas de pàgina per inclinació"
STR_FORCE_REFRESH: "Refresca la pantalla"
STR_RESTARTING_HINT: "S'està reiniciant... Si el dispositiu no es reinicia, manteniu premut el botó d'encesa durant uns segons."
STR_RESTARTING_HINT: "S'està reiniciant... Si el dispositiu no es reinicia, mantín premut el botó d'encesa durant uns segons."
STR_NEXT_PAGE: "Pàgina següent »"
STR_PREV_PAGE: "« Pàgina anterior"
STR_XTC_STATUS_BAR: "Barra d'estat XTC"
@@ -353,35 +358,37 @@ STR_INSTALLED: "Instal·lat"
STR_DOWNLOAD_ALL: "Descarrega-ho tot"
STR_UPDATE_ALL: "Actualitza-ho tot"
STR_UPDATE_AVAILABLE: "Actualitza"
STR_CRASH_TITLE: "Bloqueig del sistema"
STR_CRASH_DESCRIPTION: "S'ha guardat un informe detallat a crash_report.txt. Incloeu este arxiu en l'informe d'errors."
STR_CRASH_REASON: "Motiu del bloqueig:"
STR_CRASH_TITLE: "Fallada del sistema"
STR_CRASH_DESCRIPTION: "S'ha guardat un informe detallat a crash_report.txt. Inclou este arxiu en l'informe d'errors."
STR_CRASH_REASON: "Motiu de la fallada"
STR_CRASH_NO_REASON: "(No s'ha registrat cap motiu)"
STR_KB_HINT_MOVE_CURSOR: "Prem Esquerra o Dreta per moure el cursor"
STR_KB_HINT_RETURN_CURSOR: "Prem Esquerra per tornar a la posició del cursor"
STR_KB_HINT_HIDE_PASSWORD: "Mantén premut Dreta i prem [***] per ocultar la contrasenya"
STR_KB_HINT_SHOW_PASSWORD: "Mantén premut Dreta i prem [abc] per mostrar la contrasenya"
STR_KB_HINT_HIDE_PASSWORD: "Mantín premut Dreta i prem [***] per ocultar la contrasenya"
STR_KB_HINT_SHOW_PASSWORD: "Mantín premut Dreta i prem [abc] per mostrar la contrasenya"
STR_KB_HINT_TOGGLE_HIDE_PASSWORD: "Prem [***] per ocultar la contrasenya"
STR_KB_HINT_TOGGLE_SHOW_PASSWORD: "Prem [abc] per mostrar la contrasenya"
STR_KB_HINT_EDIT_ENTRY: "Mantén premut Amunt per editar l'entrada"
STR_KB_HINT_EDIT_ENTRY: "Mantín premut Amunt per editar l'entrada"
STR_KB_TIPS: "Consells:"
STR_KB_HINT_RETURN_KEYBOARD: "Prem Avall per tornar al teclat"
STR_KB_HINT_EXIT_URL_MODE: "Prem ABC per eixir del mode URL"
STR_KB_HINT_CLEAR_TEXT: "Mantén premut DEL per esborrar tot el text"
STR_KB_HINT_SECONDARY_CHAR: "Mantén premut SELECT per al caràcter secundari"
STR_KB_HINT_UPPER_SECONDARY: "Mantén premut SELECT per MAJÚSCULES o caràcter secundari"
STR_KB_HINT_LOWER_SECONDARY: "Mantén premut SELECT per minúscules o caràcter secundari"
STR_KB_HINT_CLEAR_TEXT: "Mantín premut DEL per esborrar tot el text"
STR_KB_HINT_SECONDARY_CHAR: "Mantín premut SELECT: caràcter secundari"
STR_KB_HINT_UPPER_SECONDARY: "Mantín premut SELECT: majúscules o caràcter secundari"
STR_KB_HINT_LOWER_SECONDARY: "Mantín premut SELECT: minúscules o caràcter secundari"
STR_KB_HINT_URL_SNIPPETS: "Prem URL per inserir fragments"
STR_SD_FIRMWARE_UPDATE: "Actualització de firmware des de la targeta SD"
STR_SELECT_FIRMWARE_FILE: "Seleccioneu un arxiu de firmware (.bin)"
STR_SELECT_FIRMWARE_FILE: "Selecciona un arxiu de firmware (.bin)"
STR_NO_BIN_FILES: "No s'han trobat arxius .bin"
STR_VALIDATING_FIRMWARE: "S'està validant el firmware..."
STR_INVALID_FIRMWARE: "Arxiu de firmware no vàlid"
STR_FIRMWARE_TOO_LARGE: "El firmware és massa gran per a la partició"
STR_FIRMWARE_TOO_SMALL: "L'arxiu de firmware és massa menut"
STR_FIRMWARE_UPDATE_PROMPT: "Voleu actualitzar el firmware?"
STR_FIRMWARE_UPDATE_PROMPT: "Vols actualitzar el firmware?"
STR_FIRMWARE_FILE_OPEN_FAILED: "No es pot obrir l'arxiu"
STR_FIRMWARE_WRITE_FAILED: "Ha fallat l'escriptura del firmware"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "No apagueu el dispositiu!"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "No apagues el dispositiu!"
STR_RECOVERY_MODE: "Mode de recuperació"
STR_RECOVERY_MODE_HINT: "Poseu firmware.bin a l'arrel de la targeta SD i seleccioneu-lo"
STR_RECOVERY_MODE_HINT: "Posa firmware.bin a l'arrel de la targeta SD i selecciona'l"
STR_ADD_HIDDEN_NETWORK: "Afig una xarxa oculta..."
STR_ENTER_WIFI_SSID: "Introduïx el nom de la xarxa (SSID)"
+3 -2
View File
@@ -66,8 +66,6 @@ STR_SLEEP_COVER_MODE: "Kiểu ảnh bìa màn hình ngủ"
STR_HIDE_BATTERY: "Ẩn % pin"
STR_EXTRA_SPACING: "Giãn cách đoạn thêm"
STR_TEXT_AA: "Khử răng cưa chữ"
STR_TEXT_AA_FULL: "Đầy đủ"
STR_TEXT_AA_FAST: "Nhanh"
STR_IMAGES: "Hình ảnh"
STR_IMAGES_DISPLAY: "Hiển thị"
STR_IMAGES_PLACEHOLDER: "Khung thay thế"
@@ -100,6 +98,7 @@ STR_USERNAME: "Tên đăng nhập"
STR_PASSWORD: "Mật khẩu"
STR_SYNC_SERVER_URL: "URL máy chủ đồng bộ"
STR_DOCUMENT_MATCHING: "Khớp tài liệu"
STR_SEND_METADATA: "Gửi siêu dữ liệu tài liệu"
STR_AUTHENTICATE: "Xác thực"
STR_KOREADER_USERNAME: "Tên đăng nhập KOReader"
STR_KOREADER_PASSWORD: "Mật khẩu KOReader"
@@ -381,3 +380,5 @@ STR_FIRMWARE_WRITE_FAILED: "Ghi firmware thất bại"
STR_FIRMWARE_UPDATE_DO_NOT_POWER_OFF: "Không được tắt nguồn!"
STR_RECOVERY_MODE: "Chế độ phục hồi"
STR_RECOVERY_MODE_HINT: "Đặt firmware.bin ở thư mục gốc thẻ SD rồi chọn"
STR_ADD_HIDDEN_NETWORK: "Thêm mạng ẩn..."
STR_ENTER_WIFI_SSID: "Nhập tên mạng (SSID)"
+5
View File
@@ -13,6 +13,11 @@ enum class InflateStatus {
// Streaming deflate decompressor wrapping uzlib.
//
// NOTE: retained ONLY for FontDecompressor's tiny one-shot flash-resident group
// decompressions, where uzlib's ~1KB state beats tinfl's ~11KB on the
// OOM-sensitive render path. All throughput paths (zip entries, PNG IDAT) use
// InflateStream (lib/miniz), which decodes several times faster.
//
// Two modes:
// init(false) — one-shot: input is a contiguous buffer, call read() once.
// init(true) — streaming: allocates a 32KB ring buffer for back-references
+28 -96
View File
@@ -1,118 +1,45 @@
#include "KOReaderCredentialStore.h"
#include <HalStorage.h>
#include <Logging.h>
#include <MD5Builder.h>
#include <ObfuscationUtils.h>
#include <Serialization.h>
#include "KOReaderJsonIO.h"
// Initialize the static instance
KOReaderCredentialStore KOReaderCredentialStore::instance;
namespace {
// File format version (for binary migration)
constexpr uint8_t KOREADER_FILE_VERSION = 1;
// File paths
constexpr char KOREADER_FILE_BIN[] = "/.crosspoint/koreader.bin";
constexpr char KOREADER_FILE_JSON[] = "/.crosspoint/koreader.json";
constexpr char KOREADER_FILE_BAK[] = "/.crosspoint/koreader.bin.bak";
// Default sync server URL
constexpr char DEFAULT_SERVER_URL[] = "https://sync.koreader.rocks:443";
// Legacy obfuscation key - "KOReader" in ASCII (only used for binary migration)
constexpr uint8_t LEGACY_OBFUSCATION_KEY[] = {0x4B, 0x4F, 0x52, 0x65, 0x61, 0x64, 0x65, 0x72};
constexpr size_t LEGACY_KEY_LENGTH = sizeof(LEGACY_OBFUSCATION_KEY);
void legacyDeobfuscate(std::string& data) {
for (size_t i = 0; i < data.size(); i++) {
data[i] ^= LEGACY_OBFUSCATION_KEY[i % LEGACY_KEY_LENGTH];
}
}
} // namespace
bool KOReaderCredentialStore::saveToFile() const {
Storage.mkdir("/.crosspoint");
return KOReaderJsonIO::save(*this, KOREADER_FILE_JSON);
void KOReaderCredentialStore::toJson(JsonDocument& doc) const {
doc["username"] = getUsername();
doc["password_obf"] = obfuscation::obfuscateToBase64(getPassword());
doc["serverUrl"] = getServerUrl();
doc["matchMethod"] = static_cast<uint8_t>(getMatchMethod());
doc["sendMetadata"] = getSendMetadata();
}
bool KOReaderCredentialStore::loadFromFile() {
// Try JSON first
if (Storage.exists(KOREADER_FILE_JSON)) {
String json = Storage.readFile(KOREADER_FILE_JSON);
if (!json.isEmpty()) {
bool resave = false;
bool result = KOReaderJsonIO::load(*this, json.c_str(), &resave);
if (result && resave) {
saveToFile();
LOG_DBG("KRS", "Resaved KOReader credentials to update format");
}
return result;
}
}
bool KOReaderCredentialStore::fromJson(JsonVariantConst doc) {
std::string user = doc["username"] | "";
// Fall back to binary migration
if (Storage.exists(KOREADER_FILE_BIN)) {
if (loadFromBinaryFile()) {
if (saveToFile()) {
Storage.rename(KOREADER_FILE_BIN, KOREADER_FILE_BAK);
LOG_DBG("KRS", "Migrated koreader.bin to koreader.json");
return true;
} else {
LOG_ERR("KRS", "Failed to save KOReader credentials during migration");
return false;
}
}
}
bool needsResave = false;
std::string pass = extractPassword(doc, needsResave);
LOG_DBG("KRS", "No credentials file found");
return false;
}
setCredentials(user, pass);
setServerUrl(doc["serverUrl"] | "");
bool KOReaderCredentialStore::loadFromBinaryFile() {
HalFile file;
if (!Storage.openFileForRead("KRS", KOREADER_FILE_BIN, file)) {
return false;
}
uint8_t version;
serialization::readPod(file, version);
if (version != KOREADER_FILE_VERSION) {
LOG_DBG("KRS", "Unknown file version: %u", version);
return false;
}
if (file.available()) {
serialization::readString(file, username);
uint8_t method = doc["matchMethod"] | (uint8_t)0;
if (method <= static_cast<uint8_t>(DocumentMatchMethod::BINARY)) {
setMatchMethod(static_cast<DocumentMatchMethod>(method));
} else {
username.clear();
LOG_DBG("KRS", "Invalid matchMethod %u in JSON, resetting to FILENAME", method);
setMatchMethod(DocumentMatchMethod::FILENAME);
}
setSendMetadata(doc["sendMetadata"] | false);
if (needsResave) {
LOG_DBG("KRS", "Resaved KOReader credentials to update format");
saveToFile();
}
if (file.available()) {
serialization::readString(file, password);
legacyDeobfuscate(password);
} else {
password.clear();
}
if (file.available()) {
serialization::readString(file, serverUrl);
} else {
serverUrl.clear();
}
if (file.available()) {
uint8_t method;
serialization::readPod(file, method);
matchMethod = static_cast<DocumentMatchMethod>(method);
} else {
matchMethod = DocumentMatchMethod::FILENAME;
}
LOG_DBG("KRS", "Loaded KOReader credentials from binary for user: %s", username.c_str());
return true;
}
@@ -173,3 +100,8 @@ void KOReaderCredentialStore::setMatchMethod(DocumentMatchMethod method) {
matchMethod = method;
LOG_DBG("KRS", "Set match method: %s", method == DocumentMatchMethod::FILENAME ? "Filename" : "Binary");
}
void KOReaderCredentialStore::setSendMetadata(bool enabled) {
sendMetadata = enabled;
LOG_DBG("KRS", "Set send metadata: %s", enabled ? "true" : "false");
}
+15 -13
View File
@@ -1,4 +1,7 @@
#pragma once
#include <ArduinoJson.h>
#include <PersistableStore.h>
#include <cstdint>
#include <string>
@@ -14,30 +17,25 @@ enum class DocumentMatchMethod : uint8_t {
* and base64-encoded before writing to JSON (not cryptographically secure,
* but prevents casual reading and ties credentials to the specific device).
*/
class KOReaderCredentialStore {
class KOReaderCredentialStore : public PersistableStore<KOReaderCredentialStore> {
private:
static KOReaderCredentialStore instance;
std::string username;
std::string password;
std::string serverUrl; // Custom sync server URL (empty = default)
DocumentMatchMethod matchMethod = DocumentMatchMethod::FILENAME; // Default to filename for compatibility
bool sendMetadata = false; // Send document metadata with progress sync
// Private constructor for singleton
KOReaderCredentialStore() = default;
~KOReaderCredentialStore() = default;
bool loadFromBinaryFile();
friend class PersistableStore<KOReaderCredentialStore>;
public:
// Delete copy constructor and assignment
KOReaderCredentialStore(const KOReaderCredentialStore&) = delete;
KOReaderCredentialStore& operator=(const KOReaderCredentialStore&) = delete;
// Get singleton instance
static KOReaderCredentialStore& getInstance() { return instance; }
// Save/load from SD card
bool saveToFile() const;
bool loadFromFile();
static const char* getFilePath() { return "/.crosspoint/koreader.json"; }
void toJson(JsonDocument& doc) const;
bool fromJson(JsonVariantConst doc);
// Credential management
void setCredentials(const std::string& user, const std::string& pass);
@@ -63,6 +61,10 @@ class KOReaderCredentialStore {
// Document matching method
void setMatchMethod(DocumentMatchMethod method);
DocumentMatchMethod getMatchMethod() const { return matchMethod; }
// Send metadata setting
void setSendMetadata(bool enabled);
bool getSendMetadata() const { return sendMetadata; }
};
// Helper macro to access credential store
-51
View File
@@ -1,51 +0,0 @@
#include "KOReaderJsonIO.h"
#include <ArduinoJson.h>
#include <HalStorage.h>
#include <Logging.h>
#include <ObfuscationUtils.h>
#include "KOReaderCredentialStore.h"
namespace KOReaderJsonIO {
bool save(const KOReaderCredentialStore& store, const char* path) {
JsonDocument doc;
doc["username"] = store.getUsername();
doc["password_obf"] = obfuscation::obfuscateToBase64(store.getPassword());
doc["serverUrl"] = store.getServerUrl();
doc["matchMethod"] = static_cast<uint8_t>(store.getMatchMethod());
String json;
serializeJson(doc, json);
return Storage.writeFile(path, json);
}
bool load(KOReaderCredentialStore& store, const char* json, bool* needsResave) {
if (needsResave) *needsResave = false;
JsonDocument doc;
auto error = deserializeJson(doc, json);
if (error) {
LOG_ERR("KRS", "JSON parse error: %s", error.c_str());
return false;
}
std::string user = doc["username"] | std::string("");
bool ok = false;
std::string pass = obfuscation::deobfuscateFromBase64(doc["password_obf"] | "", &ok);
if (!ok || pass.empty()) {
pass = doc["password"] | std::string("");
if (!pass.empty() && needsResave) *needsResave = true;
}
store.setCredentials(user, pass);
store.setServerUrl(doc["serverUrl"] | std::string(""));
uint8_t method = doc["matchMethod"] | (uint8_t)0;
store.setMatchMethod(static_cast<DocumentMatchMethod>(method));
return true;
}
} // namespace KOReaderJsonIO
-8
View File
@@ -1,8 +0,0 @@
#pragma once
class KOReaderCredentialStore;
namespace KOReaderJsonIO {
bool save(const KOReaderCredentialStore& store, const char* path);
bool load(KOReaderCredentialStore& store, const char* json, bool* needsResave);
} // namespace KOReaderJsonIO
+98 -133
View File
@@ -2,10 +2,10 @@
#include <ArduinoJson.h>
#include <Logging.h>
#include <esp_crt_bundle.h>
#include <esp_http_client.h>
#include <SecureHttpClient.h>
#include <base64.h>
#include <ctime>
#include <string>
#include "KOReaderCredentialStore.h"
@@ -16,82 +16,49 @@ namespace {
constexpr char DEVICE_NAME[] = "CrossPoint";
constexpr char DEVICE_ID[] = "crosspoint-reader";
// Small TLS buffers to fit in ESP32-C3's limited heap (~46KB free after WiFi).
// KOSync payloads are tiny JSON (<1KB), so 2KB buffers are sufficient.
// Default 16KB buffers cause OOM during TLS handshake.
constexpr int HTTP_BUF_SIZE = 2048;
// KOSync's TLS-1.3 servers can't be reached through the precompiled system
// mbedTLS (TLS 1.3 is stubbed out), so requests run over wolfSSL via
// SecureHttpClient. The handshake still needs working heap; gate on it. wolfSSL's
// footprint is smaller than mbedTLS's old ~48KB peak, but keep a conservative
// floor. Check both total free heap and largest contiguous block so fragmented
// heap does not fall through into a failed TLS allocation path.
// MEMFIX-PORT: TLS heap gate; portable
// Field data (July 2026): launching sync from a reader session lands at
// 51.9-58.2 KB free / 42-53 KB maxAlloc after WiFi comes up. wolfSSL handles
// allocation failure by returning MEMORY_E (no abort under -fno-exceptions),
// so an optimistic attempt degrades to the same clean "sync failed" as the
// gate — the gate only needs to keep out states where a doomed handshake
// would waste tens of seconds, not guarantee success.
//
// Free and largest-block have separate requirements: with SP ECC
// (WOLFSSL_HAVE_SP_ECC) the handshake's crypto uses fixed 256-bit arrays, so
// the largest single TLS allocation is the ~17 KB wolfSSL record buffer, not
// a run of fast-math bignums. A handshake was measured succeeding inside a
// 43 KB largest block; requiring 50 KB contiguous refused syncs that fit.
constexpr uint32_t MIN_FREE_FOR_TLS = 50000;
constexpr uint32_t MIN_BLOCK_FOR_TLS = 20000;
// Cloudflare tunnels send a 3-cert Google Trust Services chain. During the TLS handshake
// mbedTLS makes many small allocations that collectively consume ~48KB of heap. With only
// ~50KB free after WiFi connects, the session drove min-free-ever down to 2600 bytes before
// failing with MBEDTLS_ERR_X509_ALLOC_FAILED (-0x2880). Check total free heap (not max
// contiguous block) because the failure mode is aggregate exhaustion, not one large alloc.
constexpr uint32_t MIN_HEAP_FOR_TLS = 55000;
// Response buffer for reading HTTP body
struct ResponseBuffer {
char* data = nullptr;
int len = 0;
int capacity = 0;
~ResponseBuffer() { free(data); }
bool ensure(int size) {
if (size <= capacity) return true;
char* newData = (char*)realloc(data, size);
if (!newData) return false;
data = newData;
capacity = size;
return true;
}
};
// HTTP event handler to collect response body
esp_err_t httpEventHandler(esp_http_client_event_t* evt) {
auto* buf = static_cast<ResponseBuffer*>(evt->user_data);
if (evt->event_id == HTTP_EVENT_ON_DATA && buf) {
if (buf->ensure(buf->len + evt->data_len + 1)) {
memcpy(buf->data + buf->len, evt->data, evt->data_len);
buf->len += evt->data_len;
buf->data[buf->len] = '\0';
} else {
LOG_ERR("KOSync", "Response buffer allocation failed (%d bytes)", evt->data_len);
}
}
return ESP_OK;
// Apply the shared KOSync auth headers after begin(). x-auth-* is the native
// KOSync scheme; Basic auth is added for Calibre-Web-Automated compatibility.
void applyAuthHeaders(freeink::SecureHttpClient& http) {
http.addHeader("Accept", "application/vnd.koreader.v1+json");
http.addHeader("x-auth-user", KOREADER_STORE.getUsername());
http.addHeader("x-auth-key", KOREADER_STORE.getMd5Password());
const std::string credentials = KOREADER_STORE.getUsername() + ":" + KOREADER_STORE.getPassword();
const String encoded = base64::encode(credentials.c_str());
http.addHeader("Authorization", std::string("Basic ") + encoded.c_str());
}
// Create configured esp_http_client with small TLS buffers
esp_http_client_handle_t createClient(const char* url, ResponseBuffer* buf,
esp_http_client_method_t method = HTTP_METHOD_GET) {
esp_http_client_config_t config = {};
config.url = url;
config.event_handler = httpEventHandler;
config.user_data = buf;
config.method = method;
config.timeout_ms = 15000;
config.buffer_size = HTTP_BUF_SIZE;
config.buffer_size_tx = HTTP_BUF_SIZE;
config.crt_bundle_attach = esp_crt_bundle_attach;
// HTTP Basic Auth for Calibre-Web-Automated compatibility
config.username = KOREADER_STORE.getUsername().c_str();
config.password = KOREADER_STORE.getPassword().c_str();
config.auth_type = HTTP_AUTH_TYPE_BASIC;
esp_http_client_handle_t client = esp_http_client_init(&config);
if (!client) return nullptr;
// KOSync auth headers
if (esp_http_client_set_header(client, "Accept", "application/vnd.koreader.v1+json") != ESP_OK ||
esp_http_client_set_header(client, "x-auth-user", KOREADER_STORE.getUsername().c_str()) != ESP_OK ||
esp_http_client_set_header(client, "x-auth-key", KOREADER_STORE.getMd5Password().c_str()) != ESP_OK) {
LOG_ERR("KOSync", "Failed to set auth headers");
esp_http_client_cleanup(client);
return nullptr;
// True when free heap is too low to risk a TLS handshake.
bool insufficientHeap() {
const uint32_t freeHeap = ESP.getFreeHeap();
const uint32_t maxAllocHeap = ESP.getMaxAllocHeap();
if (freeHeap < MIN_FREE_FOR_TLS || maxAllocHeap < MIN_BLOCK_FOR_TLS) {
LOG_ERR("KOSync", "Insufficient heap for TLS handshake: %u bytes free (need %u), %u max alloc (need %u)", freeHeap,
MIN_FREE_FOR_TLS, maxAllocHeap, MIN_BLOCK_FOR_TLS);
return true;
}
return client;
return false;
}
} // namespace
@@ -102,26 +69,24 @@ KOReaderSyncClient::Error KOReaderSyncClient::authenticate() {
return NO_CREDENTIALS;
}
std::string url = KOREADER_STORE.getBaseUrl() + "/users/auth";
const uint32_t freeHeap = ESP.getFreeHeap();
LOG_DBG("KOSync", "Authenticating: %s (heap: %u)", url.c_str(), (unsigned)freeHeap);
if (freeHeap < MIN_HEAP_FOR_TLS) {
LOG_ERR("KOSync", "Insufficient heap for TLS handshake: %u bytes free (need %u)", freeHeap, MIN_HEAP_FOR_TLS);
return LOW_MEMORY;
const std::string url = KOREADER_STORE.getBaseUrl() + "/users/auth";
LOG_DBG("KOSync", "Authenticating: %s (heap: %u)", url.c_str(), (unsigned)ESP.getFreeHeap());
if (insufficientHeap()) return LOW_MEMORY;
freeink::SecureHttpClient http;
http.setInsecure();
if (!http.begin(url)) {
LOG_ERR("KOSync", "Bad URL: %s", url.c_str());
return NETWORK_ERROR;
}
ResponseBuffer buf;
esp_http_client_handle_t client = createClient(url.c_str(), &buf);
if (!client) return NETWORK_ERROR;
esp_err_t err = esp_http_client_perform(client);
const int httpCode = esp_http_client_get_status_code(client);
applyAuthHeaders(http);
const int httpCode = http.GET();
http.end();
lastHttpCode = httpCode;
esp_http_client_cleanup(client);
LOG_DBG("KOSync", "Auth response: %d (err: %d)", httpCode, err);
LOG_DBG("KOSync", "Auth response: %d", httpCode);
if (err != ESP_OK) return NETWORK_ERROR;
if (httpCode <= 0) return NETWORK_ERROR;
if (httpCode == 200) return OK;
if (httpCode == 401) return AUTH_FAILED;
return SERVER_ERROR;
@@ -135,30 +100,31 @@ KOReaderSyncClient::Error KOReaderSyncClient::getProgress(const std::string& doc
return NO_CREDENTIALS;
}
std::string url = KOREADER_STORE.getBaseUrl() + "/syncs/progress/" + documentHash;
const uint32_t freeHeap = ESP.getFreeHeap();
LOG_DBG("KOSync", "Getting progress: %s (heap: %u)", url.c_str(), (unsigned)freeHeap);
if (freeHeap < MIN_HEAP_FOR_TLS) {
LOG_ERR("KOSync", "Insufficient heap for TLS handshake: %u bytes free (need %u)", freeHeap, MIN_HEAP_FOR_TLS);
return LOW_MEMORY;
const std::string url = KOREADER_STORE.getBaseUrl() + "/syncs/progress/" + documentHash;
LOG_DBG("KOSync", "Getting progress: %s (heap: %u)", url.c_str(), (unsigned)ESP.getFreeHeap());
if (insufficientHeap()) return LOW_MEMORY;
freeink::SecureHttpClient http;
http.setInsecure();
if (!http.begin(url)) {
LOG_ERR("KOSync", "Bad URL: %s", url.c_str());
return NETWORK_ERROR;
}
applyAuthHeaders(http);
const int httpCode = http.GET();
lastHttpCode = httpCode;
LOG_DBG("KOSync", "Get progress response: %d", httpCode);
if (httpCode <= 0) {
http.end();
return NETWORK_ERROR;
}
ResponseBuffer buf;
esp_http_client_handle_t client = createClient(url.c_str(), &buf);
if (!client) return NETWORK_ERROR;
esp_err_t err = esp_http_client_perform(client);
const int httpCode = esp_http_client_get_status_code(client);
lastHttpCode = httpCode;
esp_http_client_cleanup(client);
LOG_DBG("KOSync", "Get progress response: %d (err: %d)", httpCode, err);
if (err != ESP_OK) return NETWORK_ERROR;
if (httpCode == 200 && buf.data) {
if (httpCode == 200) {
JsonDocument doc;
const DeserializationError error = deserializeJson(doc, buf.data);
const DeserializationError error = deserializeJson(doc, http.getString().c_str());
http.end();
if (error) {
LOG_ERR("KOSync", "JSON parse failed: %s", error.c_str());
@@ -176,6 +142,7 @@ KOReaderSyncClient::Error KOReaderSyncClient::getProgress(const std::string& doc
return OK;
}
http.end();
if (httpCode == 401) return AUTH_FAILED;
if (httpCode == 404) return NOT_FOUND;
return SERVER_ERROR;
@@ -188,17 +155,19 @@ KOReaderSyncClient::Error KOReaderSyncClient::updateProgress(const KOReaderProgr
return NO_CREDENTIALS;
}
std::string url = KOREADER_STORE.getBaseUrl() + "/syncs/progress";
const uint32_t freeHeap = ESP.getFreeHeap();
LOG_DBG("KOSync", "Updating progress: %s (heap: %u)", url.c_str(), (unsigned)freeHeap);
if (freeHeap < MIN_HEAP_FOR_TLS) {
LOG_ERR("KOSync", "Insufficient heap for TLS handshake: %u bytes free (need %u)", freeHeap, MIN_HEAP_FOR_TLS);
return LOW_MEMORY;
}
const std::string url = KOREADER_STORE.getBaseUrl() + "/syncs/progress";
LOG_DBG("KOSync", "Updating progress: %s (heap: %u)", url.c_str(), (unsigned)ESP.getFreeHeap());
if (insufficientHeap()) return LOW_MEMORY;
// Build JSON body
JsonDocument doc;
doc["document"] = progress.document;
if (progress.metadata.has_value()) {
auto meta = doc["metadata"].to<JsonObject>();
meta["filename"] = progress.metadata->filename;
meta["title"] = progress.metadata->title;
meta["authors"] = progress.metadata->authors;
}
doc["progress"] = progress.progress;
doc["percentage"] = progress.percentage;
doc["device"] = DEVICE_NAME;
@@ -209,25 +178,21 @@ KOReaderSyncClient::Error KOReaderSyncClient::updateProgress(const KOReaderProgr
LOG_DBG("KOSync", "Request body: %s", body.c_str());
ResponseBuffer buf;
esp_http_client_handle_t client = createClient(url.c_str(), &buf, HTTP_METHOD_PUT);
if (!client) return NETWORK_ERROR;
if (esp_http_client_set_header(client, "Content-Type", "application/json") != ESP_OK ||
esp_http_client_set_post_field(client, body.c_str(), body.length()) != ESP_OK) {
LOG_ERR("KOSync", "Failed to set request body");
esp_http_client_cleanup(client);
freeink::SecureHttpClient http;
http.setInsecure();
if (!http.begin(url)) {
LOG_ERR("KOSync", "Bad URL: %s", url.c_str());
return NETWORK_ERROR;
}
esp_err_t err = esp_http_client_perform(client);
const int httpCode = esp_http_client_get_status_code(client);
applyAuthHeaders(http);
http.addHeader("Content-Type", "application/json");
const int httpCode = http.sendRequest("PUT", body);
http.end();
lastHttpCode = httpCode;
esp_http_client_cleanup(client);
LOG_DBG("KOSync", "Update progress response: %d (err: %d)", httpCode, err);
LOG_DBG("KOSync", "Update progress response: %d", httpCode);
if (err != ESP_OK) return NETWORK_ERROR;
if (httpCode <= 0) return NETWORK_ERROR;
if (httpCode == 200 || httpCode == 202) return OK;
if (httpCode == 401) return AUTH_FAILED;
return SERVER_ERROR;
+20 -6
View File
@@ -1,16 +1,30 @@
#pragma once
#include <cstdint>
#include <optional>
#include <string>
/**
* Optional document metadata sent alongside progress sync requests.
* Mirrors the metadata object added in KOReader PR #15306.
* The official sync server ignores this field; custom servers may use it.
*/
struct KOReaderMetadata {
std::string filename; // e.g. "my_book.epub"
std::string title; // Document title from EPUB metadata
std::string authors; // Author(s) from EPUB metadata
};
/**
* Progress data from KOReader sync server.
*/
struct KOReaderProgress {
std::string document; // Document hash
std::string progress; // XPath-like progress string
float percentage; // Progress percentage (0.0 to 1.0)
std::string device; // Device name
std::string deviceId; // Device ID
int64_t timestamp; // Unix timestamp of last update
std::string document; // Document hash
std::string progress; // XPath-like progress string
float percentage; // Progress percentage (0.0 to 1.0)
std::string device; // Device name
std::string deviceId; // Device ID
int64_t timestamp; // Unix timestamp of last update
std::optional<KOReaderMetadata> metadata; // Optional document metadata
};
/**
+51
View File
@@ -0,0 +1,51 @@
#include "BuildScratch.h"
#include <Logging.h>
#include <atomic>
namespace buildscratch {
namespace {
uint8_t* block = nullptr;
size_t blockLen = 0;
// atomic exchange so an opportunistic claim from another task can never
// double-hand-out the block (single core, but FreeRTOS preempts).
std::atomic<bool> claimed{false};
} // namespace
void lend(uint8_t* buf, const size_t len) {
if (block) {
LOG_ERR("SCR", "Build scratch lent twice; ignoring second lend");
return;
}
block = buf;
blockLen = len;
claimed.store(false);
}
void reclaim() {
if (claimed.load()) {
// A consumer still holds the block. The storage stays valid (it is the
// framebuffer allocation, never freed) but its contents are about to be
// clobbered; the consumer's output will be garbage. Loud log so a
// lifetime bug is visible instead of a silent corrupt decode.
LOG_ERR("SCR", "Build scratch reclaimed while still claimed");
}
block = nullptr;
blockLen = 0;
claimed.store(false);
}
uint8_t* claim(const size_t minLen, size_t* lenOut) {
if (!block || blockLen < minLen) return nullptr;
bool expected = false;
if (!claimed.compare_exchange_strong(expected, true)) return nullptr;
if (lenOut) *lenOut = blockLen;
return block;
}
void release(const uint8_t* p) {
if (p && p == block) claimed.store(false);
}
} // namespace buildscratch
+27
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@@ -0,0 +1,27 @@
#pragma once
#include <cstddef>
#include <cstdint>
// Registry for the framebuffer bytes lent out during a build phase
// (GfxRenderer::FrameBufferLoan). The lender (GfxRenderer) deposits the block
// with lend()/reclaim(); a memory-hungry consumer (e.g. InflateStream's ~43KB
// tinfl state + window) may claim() it instead of allocating from the heap.
//
// Exactly one claimant at a time; claim() returns nullptr when the block is
// absent or already claimed, and consumers must fall back to the heap. The
// underlying storage is the framebuffer allocation itself, which is never
// freed -- so even the pathological case (reclaim() while still claimed, which
// logs an error) reads garbage, never freed memory.
namespace buildscratch {
// Lender side (GfxRenderer only).
void lend(uint8_t* buf, size_t len);
void reclaim();
// Consumer side: exclusive claim of the whole block if it is at least minLen
// bytes; nullptr means "use the heap". Release with the same pointer.
uint8_t* claim(size_t minLen, size_t* lenOut = nullptr);
void release(const uint8_t* p);
} // namespace buildscratch
+73 -1
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@@ -11,6 +11,13 @@ extern "C" {
#include <Utf8.h>
#include <cstring>
#include <mutex>
// Guards the static bidi_char buffers in applyBidiVisual() and
// computeVisualWordOrder(). The bidi+shaping pipeline is not reentrant;
// this mutex serialises access so multi-core callers don't corrupt each
// other's intermediate state.
static std::mutex bidiMutex;
namespace {
@@ -68,11 +75,25 @@ int detectParagraphLevel(const char* utf8, const int fallbackLevel, const int ma
return fallbackLevel & 1;
}
bool isTransparentMark(const uint32_t cp) {
// RTL-script combining marks: Hebrew niqqud/cantillation and Arabic
// harakat/Quranic annotation. Transparent for Arabic joining (do_shape
// skips them), zero-advance for measurement, and rendered as overlays on
// the preceding base glyph when the active font carries their glyphs.
// The cp >= 0x0591 guard keeps Latin combining marks (U+0300-U+036F, also
// NSM) on their existing utf8IsCombiningMark() rendering path.
return cp >= 0x0591 && bidi_class(cp) == NSM;
}
bool applyBidiVisual(const char* utf8, std::string& out, int paragraphLevel) {
if (!utf8 || !*utf8) return false;
const std::lock_guard<std::mutex> lock(bidiMutex);
static bidi_char line[BIDI_MAX_LINE];
static bidi_char shaped[BIDI_MAX_LINE];
int count = 0;
int lastBase = -1; // last non-formatter character (mintty's ibase)
uint8_t pendingJoiners = 0; // ZWJ/ZWNJ seen since lastBase
auto* p = reinterpret_cast<const unsigned char*>(utf8);
while (*p) {
if (count >= BIDI_MAX_LINE) {
@@ -84,18 +105,66 @@ bool applyBidiVisual(const char* utf8, std::string& out, int paragraphLevel) {
if (!cp || cp == REPLACEMENT_GLYPH) break;
line[count].origwc = line[count].wc = cp;
line[count].index = static_cast<uint16_t>(count);
line[count].joiners = 0;
// Flag Arabic joining formatters mintty-style (termline.c): the ZWJ/ZWNJ
// goes into the low nibble of the character it follows and the high
// nibble of the character it precedes. Flags are assigned in logical
// order here; do_shape() reads them after reordering.
if (cp == 0x200C || cp == 0x200D) {
const uint8_t joiner = (cp == 0x200D) ? ZWJ : ZWNJ;
if (lastBase >= 0) line[lastBase].joiners |= joiner;
pendingJoiners |= joiner;
} else {
line[count].joiners = pendingJoiners << 4;
pendingJoiners = 0;
lastBase = count;
}
count++;
}
if (!count) return false;
const bool autodir = (paragraphLevel < 0);
const int level = autodir ? 0 : (paragraphLevel & 1);
// Order matters (mintty does the same): do_bidi() first to obtain visual
// order, then do_shape() — contextual forms are resolved from *visual*
// adjacency, and shaping presentation forms must never be reordered.
do_bidi(autodir, level, line, count);
do_shape(line, shaped, count);
out.clear();
out.reserve(std::strlen(utf8));
// Lam-Alef collapse sentinel and zero-width joining formatters have done
// their job during shaping and have no glyphs to render.
const auto filtered = [](const uint32_t cp) { return cp == LIGATURE_PLACEHOLDER || cp == 0x200C || cp == 0x200D; };
for (int i = 0; i < count; i++) {
utf8AppendCodepoint(line[i].wc, out);
const uint32_t cp = shaped[i].wc;
if (filtered(cp)) continue;
if (!isTransparentMark(cp)) {
utf8AppendCodepoint(cp, out);
continue;
}
// UAX#9 rule L3: reversing an RTL run leaves combining marks *before*
// their base character. The renderer overlays a mark on the most
// recently drawn glyph, so emit the base first, then its marks in
// logical order. `index` is the original logical position: a base
// following its marks with a *lower* index means the run was reversed.
int j = i; // [i, j) = the run of marks (and filtered entries)
while (j < count && (filtered(shaped[j].wc) || isTransparentMark(shaped[j].wc))) j++;
if (j < count && shaped[j].index < shaped[i].index) {
utf8AppendCodepoint(shaped[j].wc, out);
for (int k = j - 1; k >= i; k--) {
if (isTransparentMark(shaped[k].wc)) utf8AppendCodepoint(shaped[k].wc, out);
}
i = j; // base already emitted
} else {
// Unreversed (or trailing, base-less) marks already follow their base.
for (int k = i; k < j; k++) {
if (isTransparentMark(shaped[k].wc)) utf8AppendCodepoint(shaped[k].wc, out);
}
i = j - 1;
}
}
return true;
}
@@ -105,6 +174,7 @@ bool computeVisualWordOrder(const std::vector<std::string>& words, bool paragrap
visualOrder.clear();
const size_t nWords = words.size();
if (nWords <= 1 || nWords > BIDI_MAX_LINE) return false;
const std::lock_guard<std::mutex> lock(bidiMutex);
static bidi_char line[BIDI_MAX_LINE];
int count = 0;
@@ -121,6 +191,7 @@ bool computeVisualWordOrder(const std::vector<std::string>& words, bool paragrap
if (!cp || cp == REPLACEMENT_GLYPH) break;
line[count].origwc = line[count].wc = cp;
line[count].index = static_cast<uint16_t>(w);
line[count].joiners = 0;
count++;
}
@@ -131,6 +202,7 @@ bool computeVisualWordOrder(const std::vector<std::string>& words, bool paragrap
}
line[count].origwc = line[count].wc = ' ';
line[count].index = static_cast<uint16_t>(nWords);
line[count].joiners = 0;
count++;
}
}
+8
View File
@@ -13,6 +13,14 @@ bool startsWithRtl(const char* utf8, int maxStrongChars = RTL_PARAGRAPH_PROBE_DE
int detectParagraphLevel(const char* utf8, int fallbackLevel = 0, int maxStrongChars = 64);
// True for RTL-script non-spacing marks (Hebrew niqqud/cantillation, Arabic
// harakat and Quranic annotation): zero-width for measurement, transparent for
// Arabic joining, and rendered as overlays on the preceding base glyph when
// the active font carries their glyphs (SD fonts; built-in fonts don't).
// Latin combining marks (U+0300-U+036F) intentionally return false — they are
// handled by the utf8IsCombiningMark() rendering path.
bool isTransparentMark(uint32_t cp);
// paragraphLevel: -1 = auto-detect, 0 = LTR, 1 = RTL
bool applyBidiVisual(const char* utf8, std::string& out, int paragraphLevel = -1);
+48 -6
View File
@@ -1,15 +1,19 @@
/* bidiclasses.t — bidi class table for CrossPoint Hebrew/English epub.
/* bidiclasses.t — bidi class table for CrossPoint RTL (Hebrew/Arabic) epub.
*
* Coverage rationale:
* Hebrew + English is the primary target. However, CrossPoint renders
* Latin and Cyrillic scripts for many other languages, so these MUST be
* classified as L (not fall through to ON) to avoid regression when they
* appear adjacent to Hebrew runs.
* Hebrew and Arabic-script languages (Arabic, Farsi, Urdu, Sindhi, Pashto,
* Kurdish) are the RTL targets. CrossPoint also renders Latin and Cyrillic
* scripts for many other languages, so these MUST be classified as L (not
* fall through to ON) to avoid regression when they appear adjacent to
* RTL runs.
*
* Scripts NOT in this table fall through to ON correct per UAX#9 for
* scripts CrossPoint's fonts don't support (CJK, Arabic, Devanagari, etc.)
* scripts CrossPoint's fonts don't support (CJK, Devanagari, etc.)
* ON is the right class for "unknown" it behaves neutrally.
*
* Arabic ranges are sourced from Unicode UCD extracted/DerivedBidiClass.txt
* (values verified against Unicode 17.0.0).
*
* Entries sorted ascending by first (binary search requirement).
*/
@@ -84,6 +88,36 @@
{0x05D0, 0x05EA, R}, /* alef … tav */
{0x05F0, 0x05F4, R}, /* alternative forms + geresh/gershayim */
/* ── Arabic / Perso-Arabic (DerivedBidiClass.txt) */
/* Letters are AL (Arabic Letter), harakat/marks are NSM, Arabic-Indic
digits are AN, extended (Farsi/Urdu) digits are EN.
0x0606-0x0607, 0x060E-0x060F, 0x06DE, 0x06E9 are ON fall through. */
{0x0600, 0x0605, AN}, /* Arabic number signs (Cf) */
{0x0608, 0x0608, AL}, /* Arabic ray */
{0x0609, 0x060A, ET}, /* per mille / per ten thousand */
{0x060B, 0x060B, AL}, /* afghani sign */
{0x060C, 0x060C, CS}, /* Arabic comma */
{0x060D, 0x060D, AL}, /* Arabic date separator */
{0x0610, 0x061A, NSM}, /* honorifics + small marks */
{0x061B, 0x061F, AL}, /* semicolon, ALM, end-of-text, hamza mark, question mark */
{0x0620, 0x064A, AL}, /* core Arabic letters + tatweel */
{0x064B, 0x065F, NSM}, /* harakat (fathatan … wavy hamza below) */
{0x0660, 0x0669, AN}, /* Arabic-Indic digits ٠-٩ */
{0x066A, 0x066A, ET}, /* Arabic percent sign */
{0x066B, 0x066C, AN}, /* decimal / thousands separators */
{0x066D, 0x066F, AL}, /* five-pointed star, dotless beh/qaf */
{0x0670, 0x0670, NSM}, /* superscript alef */
{0x0671, 0x06D5, AL}, /* extended letters: Farsi, Urdu, Sindhi, Pashto, Kurdish */
{0x06D6, 0x06DC, NSM}, /* Quranic annotation marks */
{0x06DD, 0x06DD, AN}, /* end of ayah */
{0x06DF, 0x06E4, NSM},
{0x06E5, 0x06E6, AL}, /* small waw / small yeh */
{0x06E7, 0x06E8, NSM},
{0x06EA, 0x06ED, NSM},
{0x06EE, 0x06EF, AL}, /* dal/reh with inverted V */
{0x06F0, 0x06F9, EN}, /* extended Arabic-Indic digits ۰-۹ (Farsi/Urdu) EN per UCD */
{0x06FA, 0x06FF, AL},
/* ── Latin Extended Additional (L) ─────────────────────────────────── */
/* Covers accented chars for Vietnamese, Welsh, Romanian, etc.
Not currently rendered by CrossPoint fonts, but costs only 2 table rows. */
@@ -110,6 +144,14 @@
{0x2069, 0x2069, PDI},
{0x206A, 0x206F, BN},
/* ── Arabic presentation forms (output of do_shape()) ───────────────── */
/* Contextual/ligature forms emitted by the shaper must classify as AL so
a reshaped line still resolves RTL. Ranges per DerivedBidiClass.txt;
0xFBC3-0xFBD2 are ON fall through. */
{0xFB50, 0xFBC2, AL}, /* Presentation Forms-A: Perso-Arabic contextual forms */
{0xFBD3, 0xFBFF, AL}, /* Presentation Forms-A: NG … Farsi Yeh forms */
{0xFE70, 0xFE74, AL}, /* Presentation Forms-B: harakat isolated forms */
{0xFE76, 0xFEFC, AL}, /* Presentation Forms-B: contextual forms + Lam-Alef ligatures */
/* ── Byte Order Mark ────────────────────────────────────────────────── */
{0xFEFF, 0xFEFF, BN},
+339
View File
@@ -127,6 +127,345 @@ ucschar mirror(ucschar c) {
return p ? p->to : c;
}
/* ═══════════════════════════════════════════════════════════════════════
* Arabic contextual shaping — do_shape()
*
* Ported from mintty src/minibidi.c (https://github.com/mintty/mintty),
* original author Ahmad Khalifa (www.arabeyes.org), maintained by
* Thomas Wolff. MIT licence.
*
* CrossPoint deviations from the upstream code, each marked inline:
* 1. Joining-context lookups skip NSM marks (harakat). mintty stores
* combining marks out-of-line in terminal cells, so they never appear
* in its bidi_char array; in CrossPoint they are real array entries
* and must be transparent for joining (Unicode joining type T).
* 2. The Alef absorbed into a Lam-Alef ligature is overwritten with
* LIGATURE_PLACEHOLDER instead of a space: a terminal must keep the
* cell, a proportional-text renderer must drop the character.
* 3. The STYPE/SISOLATED macros became functions backed by a second
* lookup table covering Perso-Arabic letters outside mintty's native
* U+0621U+064A range (Farsi پ چ ژ گ, Urdu ٹ ڈ ڑ ں ہ ے, plus Sindhi/
* Pashto/Kurdish letters). Joining types are sourced from Unicode
* ArabicShaping.txt and presentation forms from UnicodeData.txt
* (Arabic Presentation Forms-A), both Unicode 17.0.0. Letters with a
* joining type but no presentation-form codepoints keep their base
* codepoint (neighbours still shape correctly around them).
* U+200C/U+200D also get their ArabicShaping.txt types (U and C) so
* that in-stream ZWJ/ZWNJ — which mintty never has in its array —
* affect adjacency the same way the joiners flags do.
* ═══════════════════════════════════════════════════════════════════════ */
/* Shaping Types (mintty) */
enum {
SL, /* Left-Joining, doesn't exist in U+0600 - U+06FF */
SR, /* Right-Joining, i.e. has Isolated, Final */
SD, /* Dual-Joining, i.e. has Isolated, Final, Initial, Medial */
SU, /* Non-Joining */
SC /* Join-Causing, like U+0640 (TATWEEL) */
};
typedef struct {
uchar type;
uchar form_b; /* isolated form = 0xFE00 + form_b (Presentation Forms-B) */
} shape_node;
/* Kept near the actual table, for verification. (mintty) */
enum { SHAPE_FIRST = 0x621, SHAPE_LAST = 0x64A };
/* mintty's shapetypes[] — verbatim */
static const shape_node shapetypes[] = {
/* index, Typ, Iso, Ligature Index */
/* 621 */ {SU, 0x80},
/* 622 */ {SR, 0x81},
/* 623 */ {SR, 0x83},
/* 624 */ {SR, 0x85},
/* 625 */ {SR, 0x87},
/* 626 */ {SD, 0x89},
/* 627 */ {SR, 0x8D},
/* 628 */ {SD, 0x8F},
/* 629 */ {SR, 0x93},
/* 62A */ {SD, 0x95},
/* 62B */ {SD, 0x99},
/* 62C */ {SD, 0x9D},
/* 62D */ {SD, 0xA1},
/* 62E */ {SD, 0xA5},
/* 62F */ {SR, 0xA9},
/* 630 */ {SR, 0xAB},
/* 631 */ {SR, 0xAD},
/* 632 */ {SR, 0xAF},
/* 633 */ {SD, 0xB1},
/* 634 */ {SD, 0xB5},
/* 635 */ {SD, 0xB9},
/* 636 */ {SD, 0xBD},
/* 637 */ {SD, 0xC1},
/* 638 */ {SD, 0xC5},
/* 639 */ {SD, 0xC9},
/* 63A */ {SD, 0xCD},
/* 63B */ {SU, 0x0},
/* 63C */ {SU, 0x0},
/* 63D */ {SU, 0x0},
/* 63E */ {SU, 0x0},
/* 63F */ {SU, 0x0},
/* 640 */ {SC, 0x0},
/* 641 */ {SD, 0xD1},
/* 642 */ {SD, 0xD5},
/* 643 */ {SD, 0xD9},
/* 644 */ {SD, 0xDD},
/* 645 */ {SD, 0xE1},
/* 646 */ {SD, 0xE5},
/* 647 */ {SD, 0xE9},
/* 648 */ {SR, 0xED},
/* 649 */ {SR, 0xEF},
/* 64A */ {SD, 0xF1}};
/* ── CrossPoint extension: joining types outside U+0621U+064A ──────────
* Source: Unicode ArabicShaping.txt (joining type column). Ranges of
* letters sharing one type are collapsed. Sorted ascending (binary
* search). Anything not listed here or in shapetypes[] is SU. */
static const struct {
ucschar first, last;
uchar type;
} xjointypes[] = {
{0x0620, 0x0620, SD}, /* kashmiri yeh */
{0x066E, 0x066F, SD}, /* dotless beh/qaf */
{0x0671, 0x0673, SR}, /* alef wasla + wavy-hamza alefs */
{0x0675, 0x0677, SR}, /* high-hamza alef/waw */
{0x0678, 0x0687, SD}, /* high-hamza yeh, beh group (ٹ ٺ ٻ … پ), hah group (چ ڇ) */
{0x0688, 0x0699, SR}, /* dal group (ڈ ڊ ڌ …), reh group (ڑ ړ ژ …) */
{0x069A, 0x06BF, SD}, /* seen/sad/feh/qaf/kaf/gaf/lam/noon groups (ک گ ں ھ …) */
{0x06C0, 0x06C0, SR}, /* heh with yeh above */
{0x06C1, 0x06C2, SD}, /* heh goal (ہ) */
{0x06C3, 0x06CB, SR}, /* teh marbuta goal, waw group (ۆ ۇ ۋ …) */
{0x06CC, 0x06CC, SD}, /* farsi yeh (ی) */
{0x06CD, 0x06CD, SR}, /* yeh with tail */
{0x06CE, 0x06CE, SD}, /* farsi yeh with V (Kurdish ێ) */
{0x06CF, 0x06CF, SR}, /* waw with dot above */
{0x06D0, 0x06D1, SD}, /* e (Pashto ې), yeh three dots below */
{0x06D2, 0x06D3, SR}, /* yeh barree (ے ۓ) */
{0x06D5, 0x06D5, SR}, /* ae (Kurdish ە) */
{0x06EE, 0x06EF, SR}, /* dal/reh with inverted V */
{0x06FA, 0x06FC, SD}, /* sheen/dad/ghain with dot below */
{0x06FF, 0x06FF, SD}, /* heh with inverted V */
{0x200C, 0x200C, SU}, /* ZWNJ — joining type U per ArabicShaping.txt */
{0x200D, 0x200D, SC}, /* ZWJ — joining type C per ArabicShaping.txt */
};
/* ── CrossPoint extension: presentation forms outside U+0621U+064A ─────
* Source: UnicodeData.txt, Arabic Presentation Forms-A (U+FB50U+FBFF).
* forms = number of consecutive presentation forms allocated for the
* letter, always in the order isolated, final, initial, medial (matching
* the SHAPE_* offsets below): 2 = isolated+final, 4 = all.
* Letters absent here have no presentation forms and keep their base
* codepoint. Sorted ascending (binary search). */
static const struct {
ucschar cp;
ucschar isolated;
uchar forms;
} xshapeforms[] = {
{0x0671, 0xFB50, 2}, /* alef wasla */
{0x0679, 0xFB66, 4}, /* tteh (Urdu ٹ) */
{0x067A, 0xFB5E, 4}, /* tteheh */
{0x067B, 0xFB52, 4}, /* beeh (Sindhi ٻ) */
{0x067E, 0xFB56, 4}, /* peh (Farsi پ) */
{0x067F, 0xFB62, 4}, /* teheh */
{0x0680, 0xFB5A, 4}, /* beheh (Sindhi ڀ) */
{0x0683, 0xFB76, 4}, /* nyeh (Sindhi ڃ) */
{0x0684, 0xFB72, 4}, /* dyeh (Sindhi ڄ) */
{0x0686, 0xFB7A, 4}, /* tcheh (Farsi چ) */
{0x0687, 0xFB7E, 4}, /* tcheheh (Sindhi ڇ) */
{0x0688, 0xFB88, 2}, /* ddal (Urdu ڈ) */
{0x068C, 0xFB84, 2}, /* dahal (Sindhi ڌ) */
{0x068D, 0xFB82, 2}, /* ddahal (Sindhi ڍ) */
{0x068E, 0xFB86, 2}, /* dul (Sindhi ڎ) */
{0x0691, 0xFB8C, 2}, /* rreh (Urdu ڑ) */
{0x0698, 0xFB8A, 2}, /* jeh (Farsi ژ) */
{0x06A4, 0xFB6A, 4}, /* veh (Kurdish ڤ) */
{0x06A6, 0xFB6E, 4}, /* peheh (Sindhi ڦ) */
{0x06A9, 0xFB8E, 4}, /* keheh (Farsi/Urdu ک) */
{0x06AD, 0xFBD3, 4}, /* ng */
{0x06AF, 0xFB92, 4}, /* gaf (Farsi/Urdu گ) */
{0x06B1, 0xFB9A, 4}, /* ngoeh (Sindhi ڱ) */
{0x06B3, 0xFB96, 4}, /* gueh (Sindhi ڳ) */
{0x06BA, 0xFB9E, 2}, /* noon ghunna (Urdu ں) — dual-joining but only
isolated+final forms exist; initial/medial
contexts keep the base codepoint */
{0x06BB, 0xFBA0, 4}, /* rnoon (Sindhi ڻ) */
{0x06BE, 0xFBAA, 4}, /* heh doachashmee (Urdu ھ) */
{0x06C0, 0xFBA4, 2}, /* heh with yeh above */
{0x06C1, 0xFBA6, 4}, /* heh goal (Urdu ہ) */
{0x06C5, 0xFBE0, 2}, /* kirghiz oe */
{0x06C6, 0xFBD9, 2}, /* oe (Kurdish ۆ) */
{0x06C7, 0xFBD7, 2}, /* u (ۇ) */
{0x06C8, 0xFBDB, 2}, /* yu */
{0x06C9, 0xFBE2, 2}, /* kirghiz yu */
{0x06CB, 0xFBDE, 2}, /* ve */
{0x06CC, 0xFBFC, 4}, /* farsi yeh (Farsi/Urdu ی) */
{0x06D0, 0xFBE4, 4}, /* e (Pashto ې) */
{0x06D2, 0xFBAE, 2}, /* yeh barree (Urdu ے) */
{0x06D3, 0xFBB0, 2}, /* yeh barree with hamza above (ۓ) */
};
/* Contextual form offsets from the isolated form — identical ordering in
Presentation Forms-A and -B, matching mintty's SFINAL/SINITIAL/SMEDIAL
(+1/+2/+3) macros. */
enum { SHAPE_ISOLATED = 0, SHAPE_FINAL = 1, SHAPE_INITIAL = 2, SHAPE_MEDIAL = 3 };
/* STYPE equivalent (mintty macro → function to add the extended table) */
static uchar stype(ucschar c) {
if (c >= SHAPE_FIRST && c <= SHAPE_LAST) return shapetypes[c - SHAPE_FIRST].type;
int i = -1, j = lengthof(xjointypes);
while (j - i > 1) {
int k = (i + j) / 2;
if (c < xjointypes[k].first)
j = k;
else if (c > xjointypes[k].last)
i = k;
else
return xjointypes[k].type;
}
return SU;
}
/* SISOLATED/SFINAL/SINITIAL/SMEDIAL equivalent.
form is one of the SHAPE_* offsets; returns c unchanged when the letter
has no presentation form allocated for that context. */
static ucschar shape_form(ucschar c, uchar form) {
if (c >= SHAPE_FIRST && c <= SHAPE_LAST) {
const uchar form_b = shapetypes[c - SHAPE_FIRST].form_b;
return form_b ? 0xFE00 + form_b + form : c;
}
int i = -1, j = lengthof(xshapeforms);
while (j - i > 1) {
int k = (i + j) / 2;
if (c < xshapeforms[k].cp)
j = k;
else if (c > xshapeforms[k].cp)
i = k;
else
return form < xshapeforms[k].forms ? xshapeforms[k].isolated + form : c;
}
return c;
}
/* CrossPoint deviation 1: NSM marks (harakat) sit between letters in our
array but are transparent for joining (Unicode joining type T). These
helpers find the effective joining neighbour. */
static int next_non_nsm(const bidi_char* line, int i, int count) {
int j = i + 1;
while (j < count && bidi_class(line[j].wc) == NSM) j++;
return j;
}
static int prev_non_nsm(const bidi_char* line, int i) {
int j = i - 1;
while (j >= 0 && bidi_class(line[j].wc) == NSM) j--;
return j;
}
/* The Main shaping function (mintty, structure preserved).
*
* line: visual-order buffer — must have been passed through do_bidi() first
* to: output buffer for the shaped data
* count: number of characters in line
*/
int do_shape(bidi_char* line, bidi_char* to, int count) {
for (int i = 0; i < count; i++) {
to[i] = line[i];
int tempShape = stype(line[i].wc);
switch (tempShape) {
case SR: { /* Right-Joining, i.e. has Isolated, Final */
const int nx = next_non_nsm(line, i, count); /* deviation 1: was i + 1 */
tempShape = (nx < count) ? stype(line[nx].wc) : SU;
if (tempShape == SL || tempShape == SD || tempShape == SC)
to[i].wc = shape_form(line[i].wc, SHAPE_FINAL);
else
to[i].wc = shape_form(line[i].wc, SHAPE_ISOLATED);
break;
}
case SD: { /* Dual-Joining, i.e. has Isolated, Final, Initial, Medial */
const int nx = next_non_nsm(line, i, count); /* deviation 1: was i + 1 */
const int pv = prev_non_nsm(line, i); /* deviation 1: was i - 1 */
/* Make Ligatures */
tempShape = (nx < count) ? stype(line[nx].wc) : SU;
if (line[i].wc == 0x644) { /* Lam: the Alef variant is at pv (visually left) */
int ligFlag = 0;
switch (pv >= 0 ? line[pv].wc : 0) {
case 0x622: /* Alef with Madda above → لآ */
ligFlag = 1;
to[i].wc = (tempShape == SL || tempShape == SD || tempShape == SC) ? 0xFEF6 : 0xFEF5;
break;
case 0x623: /* Alef with Hamza above → لأ */
ligFlag = 1;
to[i].wc = (tempShape == SL || tempShape == SD || tempShape == SC) ? 0xFEF8 : 0xFEF7;
break;
case 0x625: /* Alef with Hamza below → لإ */
ligFlag = 1;
to[i].wc = (tempShape == SL || tempShape == SD || tempShape == SC) ? 0xFEFA : 0xFEF9;
break;
case 0x627: /* Alef → لا */
ligFlag = 1;
to[i].wc = (tempShape == SL || tempShape == SD || tempShape == SC) ? 0xFEFC : 0xFEFB;
break;
}
if (ligFlag) {
to[pv].wc = LIGATURE_PLACEHOLDER; /* deviation 2: mintty writes 0x20 */
break;
}
}
/* Arabic joining formatters: adapt forms (mintty) */
const uchar joiners = line[i].joiners & 0xF;
const uchar prevjoiners = line[i].joiners >> 4;
if (prevjoiners == ZWNJ) {
/* backward join blocked; initial only if the visually-right
(logically next) neighbour joins, else isolated */
tempShape = (pv >= 0) ? stype(line[pv].wc) : SU;
if (tempShape == SR || tempShape == SD || tempShape == SC)
to[i].wc = shape_form(line[i].wc, SHAPE_INITIAL);
else
to[i].wc = shape_form(line[i].wc, SHAPE_ISOLATED);
} else if (prevjoiners == (ZWJ | ZWNJ)) {
to[i].wc = shape_form(line[i].wc, SHAPE_MEDIAL);
} else if (prevjoiners == ZWJ) {
to[i].wc = shape_form(line[i].wc, SHAPE_FINAL);
} else if (joiners & ZWNJ) {
/* forward join blocked; final only if the visually-left
(logically previous) neighbour joins, else isolated —
tempShape still holds stype(nx) from above */
if (tempShape == SL || tempShape == SD || tempShape == SC)
to[i].wc = shape_form(line[i].wc, SHAPE_FINAL);
else
to[i].wc = shape_form(line[i].wc, SHAPE_ISOLATED);
} else if (tempShape == SL || tempShape == SD || tempShape == SC) {
/* visually-right neighbour joins → final, or medial if the
visually-left neighbour joins too */
tempShape = (pv >= 0) ? stype(line[pv].wc) : SU;
if (tempShape == SR || tempShape == SD || tempShape == SC)
to[i].wc = shape_form(line[i].wc, SHAPE_MEDIAL);
else
to[i].wc = shape_form(line[i].wc, SHAPE_FINAL);
} else {
/* visually-right neighbour doesn't join → isolated, or initial
if the visually-left neighbour joins */
tempShape = (pv >= 0) ? stype(line[pv].wc) : SU;
if (tempShape == SR || tempShape == SD || tempShape == SC)
to[i].wc = shape_form(line[i].wc, SHAPE_INITIAL);
else
to[i].wc = shape_form(line[i].wc, SHAPE_ISOLATED);
}
break;
}
default:
/* SU, SL, SC and non-Arabic characters pass through unchanged */
break;
}
}
return 1;
}
/* ═══════════════════════════════════════════════════════════════════════
* Directional Status Stack
* (replaces GCC nested functions — ESP32C3 has no executable stack)
+52 -5
View File
@@ -5,8 +5,10 @@
* minibidi.h — standalone header for ESP32C3 BiDi calculations
*
* Derived from [mintty](https://github.com/mintty/mintty/) (Thomas Wolff, MIT licence).
* Stripped of: Arabic shaping, box-drawing mirror, terminal dependencies,
* GCC nested functions, VLAs, and non-Hebrew/English Unicode data.
* Includes: UAX#9 bidi (do_bidi) and Arabic contextual shaping (do_shape),
* both ported from mintty src/minibidi.c (Ahmad Khalifa, Thomas Wolff).
* Stripped of: box-drawing mirror, terminal dependencies, GCC nested
* functions, VLAs, and Unicode data for scripts CrossPoint doesn't render.
*/
#include <stdbool.h>
@@ -34,13 +36,18 @@ typedef uint32_t ucschar; /* Unicode codepoint; BMP-only content fits uint16_t
#define BIDI_MAX_LINE 128
/* ── bidi_char ───────────────────────────────────────────────────────── */
/* origwc: the codepoint as it came from the epub text stream
wc: working codepoint (may be replaced by mirrored form after do_bidi)
index: original logical position, so the caller can reorder glyphs */
/* origwc: the codepoint as it came from the epub text stream
wc: working codepoint (may be replaced by mirrored form after
do_bidi, or by an Arabic contextual form after do_shape)
index: original logical position, so the caller can reorder glyphs
joiners: ZWJ/ZWNJ context for Arabic shaping, mintty layout:
low nibble = joiners that logically FOLLOW this character,
high nibble = joiners that logically PRECEDE this character */
typedef struct {
ucschar origwc;
ucschar wc;
uint16_t index;
uint8_t joiners;
} bidi_char;
/* ── Bidi character classes (UAX #9) ────────────────────────────────── */
@@ -71,6 +78,20 @@ enum {
PDI, /* Pop Directional Isolate */
};
/* ── Arabic joining formatter flags (bidi_char.joiners nibbles) ─────── */
/* Values match mintty's minibidi.h: ZWNJ 0x01, ZWJ 0x02. do_shape()
compares nibble values directly, so these must not be changed. */
enum {
ZWNJ = 0x01, /* U+200C ZERO WIDTH NON-JOINER */
ZWJ = 0x02, /* U+200D ZERO WIDTH JOINER */
};
/* Sentinel written by do_shape() over the Alef absorbed into a Lam-Alef
ligature. Callers must filter it out when emitting shaped text.
(Upstream mintty writes a space instead — a terminal must keep the cell;
a proportional-text renderer must drop the character entirely.) */
#define LIGATURE_PLACEHOLDER 0xFFFFu
/* ── Public API ──────────────────────────────────────────────────────── */
/*
@@ -94,6 +115,32 @@ bool is_rtl_class(uchar bc);
*/
ucschar mirror(ucschar ch);
/*
* do_shape(line, to, count)
*
* Applies Arabic contextual shaping (and Lam-Alef ligation) to
* `line[0..count-1]`, writing the result to `to[0..count-1]`.
*
* MUST be called AFTER do_bidi(): the algorithm resolves joining from
* VISUAL adjacency (line[i-1] is the visually-left neighbour, line[i+1]
* the visually-right one), exactly like upstream mintty.
*
* line: visual-order input; the joiners field must be populated by the
* caller (in logical order, before do_bidi) for ZWJ/ZWNJ support
* to: output buffer, same size as line; non-Arabic entries are copied
* through unchanged. An Alef absorbed by a Lam-Alef ligature is
* replaced with LIGATURE_PLACEHOLDER — filter it on emission.
* count: number of characters (≤ BIDI_MAX_LINE)
*
* Returns 1.
*
* Ported from mintty src/minibidi.c (Ahmad Khalifa, Thomas Wolff,
* MIT licence), https://github.com/mintty/mintty — with CrossPoint
* extensions for Perso-Arabic letters and in-stream diacritics, see
* minibidi.c for details.
*/
int do_shape(bidi_char* line, bidi_char* to, int count);
/*
* do_bidi(autodir, paragraphLevel, line, count)
*
+55 -18
View File
@@ -5,6 +5,17 @@
#include <cstring>
namespace {
constexpr size_t ENTRY_STORAGE_CAPACITY = 64;
constexpr size_t MAX_ENTRIES = ENTRY_STORAGE_CAPACITY - 2;
constexpr size_t MAX_TITLE_CHARS = 160;
constexpr size_t MAX_AUTHOR_CHARS = 120;
constexpr size_t MAX_ID_CHARS = 128;
constexpr size_t MAX_HREF_CHARS = 768;
constexpr size_t MAX_SEARCH_TEMPLATE_CHARS = 768;
constexpr size_t MAX_PAGE_URL_CHARS = 768;
} // namespace
OpdsParser::OpdsParser() {
parser = XML_ParserCreate(nullptr);
if (!parser) {
@@ -12,6 +23,7 @@ OpdsParser::OpdsParser() {
LOG_DBG("OPDS", "Couldn't allocate memory for parser");
return;
}
entries.reserve(ENTRY_STORAGE_CAPACITY);
XML_SetUserData(parser, this);
XML_SetElementHandler(parser, startElement, endElement);
XML_SetCharacterDataHandler(parser, characterData);
@@ -71,6 +83,8 @@ void OpdsParser::clear() {
currentEntry = OpdsEntry{};
currentText.clear();
inEntry = inTitle = inAuthor = inAuthorName = inId = false;
collectCurrentEntry = false;
feedTruncated = false;
}
std::vector<OpdsEntry> OpdsParser::getBooks() const {
@@ -88,9 +102,33 @@ const char* OpdsParser::findAttribute(const XML_Char** atts, const char* name) {
return nullptr;
}
void OpdsParser::assignBounded(std::string& target, const char* value, const size_t maxLen) {
if (!value) {
target.clear();
return;
}
target.assign(value, strnlen(value, maxLen));
}
void OpdsParser::appendBounded(std::string& target, const char* value, const size_t len, const size_t maxLen) {
if (target.size() >= maxLen) return;
const size_t remaining = maxLen - target.size();
target.append(value, len < remaining ? len : remaining);
}
void XMLCALL OpdsParser::startElement(void* userData, const XML_Char* name, const XML_Char** atts) {
auto* self = static_cast<OpdsParser*>(userData);
if (strcmp(name, "entry") == 0 || strstr(name, ":entry") != nullptr) {
self->inEntry = true;
self->collectCurrentEntry = self->entries.size() < MAX_ENTRIES;
self->feedTruncated = self->feedTruncated || !self->collectCurrentEntry;
self->currentEntry = OpdsEntry{};
self->currentText.clear();
self->inTitle = self->inAuthor = self->inAuthorName = self->inId = false;
return;
}
if (strcmp(name, "link") == 0 || strstr(name, ":link") != nullptr) {
const char* href = findAttribute(atts, "href");
if (href) {
@@ -98,17 +136,16 @@ void XMLCALL OpdsParser::startElement(void* userData, const XML_Char* name, cons
const char* type = findAttribute(atts, "type");
if (rel && strcmp(rel, "search") == 0) {
std::string sHref(href);
if (sHref.find("{searchTerms}") != std::string::npos) {
self->searchTemplate = sHref;
if (strstr(href, "{searchTerms}") != nullptr) {
assignBounded(self->searchTemplate, href, MAX_SEARCH_TEMPLATE_CHARS);
}
} else if (rel && strcmp(rel, "next") == 0 && !self->inEntry) {
self->nextPageUrl = href;
assignBounded(self->nextPageUrl, href, MAX_PAGE_URL_CHARS);
} else if (rel && strcmp(rel, "previous") == 0 && !self->inEntry) {
self->prevPageUrl = href;
assignBounded(self->prevPageUrl, href, MAX_PAGE_URL_CHARS);
}
if (self->inEntry) {
if (self->inEntry && self->collectCurrentEntry) {
if (rel && type && strstr(rel, "opds-spec.org/acquisition") != nullptr &&
strcmp(type, "application/epub+zip") == 0) {
// Prefer plain EPUB links over derived formats when multiple
@@ -119,25 +156,19 @@ void XMLCALL OpdsParser::startElement(void* userData, const XML_Char* name, cons
self->currentEntry.href.find("/epub/") != std::string::npos);
if (self->currentEntry.type != OpdsEntryType::BOOK || (isPlainEpub && !alreadyHasPlainEpub)) {
self->currentEntry.type = OpdsEntryType::BOOK;
self->currentEntry.href = href;
assignBounded(self->currentEntry.href, href, MAX_HREF_CHARS);
}
} else if (type && strstr(type, "application/atom+xml") != nullptr) {
if (self->currentEntry.type != OpdsEntryType::BOOK) {
self->currentEntry.type = OpdsEntryType::NAVIGATION;
self->currentEntry.href = href;
assignBounded(self->currentEntry.href, href, MAX_HREF_CHARS);
}
}
}
}
}
if (strcmp(name, "entry") == 0 || strstr(name, ":entry") != nullptr) {
self->inEntry = true;
self->currentEntry = OpdsEntry{};
return;
}
if (!self->inEntry) return;
if (!self->inEntry || !self->collectCurrentEntry) return;
if (strcmp(name, "title") == 0 || strstr(name, ":title") != nullptr) {
self->inTitle = true;
@@ -157,10 +188,11 @@ void XMLCALL OpdsParser::endElement(void* userData, const XML_Char* name) {
auto* self = static_cast<OpdsParser*>(userData);
if (strcmp(name, "entry") == 0 || strstr(name, ":entry") != nullptr) {
if (!self->currentEntry.title.empty() && !self->currentEntry.href.empty()) {
if (self->collectCurrentEntry && !self->currentEntry.title.empty() && !self->currentEntry.href.empty()) {
self->entries.push_back(self->currentEntry);
}
self->inEntry = false;
self->collectCurrentEntry = false;
} else if (self->inEntry) {
if (strcmp(name, "title") == 0 || strstr(name, ":title") != nullptr) {
if (self->inTitle) self->currentEntry.title = self->currentText;
@@ -179,7 +211,12 @@ void XMLCALL OpdsParser::endElement(void* userData, const XML_Char* name) {
void XMLCALL OpdsParser::characterData(void* userData, const XML_Char* s, const int len) {
auto* self = static_cast<OpdsParser*>(userData);
if (self->inTitle || self->inAuthorName || self->inId) {
self->currentText.append(s, len);
if (!self->collectCurrentEntry) return;
if (self->inTitle) {
appendBounded(self->currentText, s, len, MAX_TITLE_CHARS);
} else if (self->inAuthorName) {
appendBounded(self->currentText, s, len, MAX_AUTHOR_CHARS);
} else if (self->inId) {
appendBounded(self->currentText, s, len, MAX_ID_CHARS);
}
}
+5
View File
@@ -61,6 +61,7 @@ class OpdsParser final : public Print {
void flush() override;
bool error() const;
bool truncated() const { return feedTruncated; }
operator bool() { return !error(); }
@@ -93,6 +94,8 @@ class OpdsParser final : public Print {
std::string prevPageUrl;
// Helper to find attribute value
static const char* findAttribute(const XML_Char** atts, const char* name);
static void assignBounded(std::string& target, const char* value, size_t maxLen);
static void appendBounded(std::string& target, const char* value, size_t len, size_t maxLen);
XML_Parser parser = nullptr;
std::vector<OpdsEntry> entries;
@@ -105,6 +108,8 @@ class OpdsParser final : public Print {
bool inAuthor = false;
bool inAuthorName = false;
bool inId = false;
bool collectCurrentEntry = false;
bool errorOccured = false;
bool feedTruncated = false;
};
+18 -22
View File
@@ -2,7 +2,7 @@
#include <HalDisplay.h>
#include <HalStorage.h>
#include <InflateReader.h>
#include <InflateStream.h>
#include <Logging.h>
#include <cstdio>
@@ -174,9 +174,8 @@ void writeBmpHeader2bit(Print& bmpOut, const int width, const int height) {
} // namespace
// Context for streaming PNG decompression
// IMPORTANT: reader must be the first field - the uzlib callback casts uzlib_uncomp* to PngDecodeContext*
struct PngDecodeContext {
InflateReader reader; // Must be first — callback casts uzlib_uncomp* to PngDecodeContext*
InflateStream reader;
HalFile* file;
// PNG image properties
@@ -195,7 +194,7 @@ struct PngDecodeContext {
uint32_t chunkBytesRemaining; // bytes left in current IDAT chunk
bool idatFinished; // no more IDAT chunks
// File read buffer for feeding uzlib
// File read buffer for feeding the inflate stream
uint8_t readBuf[2048];
// Palette for indexed color (type 3)
@@ -229,21 +228,21 @@ static bool findNextIdatChunk(PngDecodeContext& ctx) {
}
}
// uzlib callback: reads the next batch of IDAT data from the file
static int pngIdatReadCallback(uzlib_uncomp* uncomp) {
auto* ctx = reinterpret_cast<PngDecodeContext*>(uncomp);
// Fill callback: reads the next batch of IDAT data from the file
static size_t pngIdatFillCallback(void* vctx, const uint8_t** data) {
auto* ctx = static_cast<PngDecodeContext*>(vctx);
if (ctx->idatFinished) return -1;
if (ctx->idatFinished) return 0;
// Skip 4-byte CRC and find next IDAT chunk when current chunk is exhausted
while (ctx->chunkBytesRemaining == 0) {
if (!ctx->file->seekCur(4)) { // skip 4-byte CRC of previous IDAT
ctx->idatFinished = true;
return -1;
return 0;
}
if (!findNextIdatChunk(*ctx)) {
ctx->idatFinished = true;
return -1;
return 0;
}
}
@@ -251,18 +250,15 @@ static int pngIdatReadCallback(uzlib_uncomp* uncomp) {
size_t toRead = sizeof(ctx->readBuf);
if (toRead > ctx->chunkBytesRemaining) toRead = ctx->chunkBytesRemaining;
int bytesRead = ctx->file->read(ctx->readBuf, toRead);
const int bytesRead = ctx->file->read(ctx->readBuf, toRead);
if (bytesRead <= 0) {
ctx->idatFinished = true;
return -1;
return 0;
}
ctx->chunkBytesRemaining -= bytesRead;
// Give uzlib the buffer (skip first byte since we return it directly)
uncomp->source = ctx->readBuf + 1;
uncomp->source_limit = ctx->readBuf + bytesRead;
return ctx->readBuf[0];
*data = ctx->readBuf;
return static_cast<size_t>(bytesRead);
}
// Decode one scanline: decompress filter byte + raw bytes, then unfilter
@@ -555,16 +551,16 @@ bool PngToBmpConverter::pngFileToBmpStreamInternal(HalFile& pngFile, Print& bmpO
return false;
}
// Initialize streaming decompressor with 32KB ring buffer for back-reference history
// Initialize streaming decompressor with 32KB window for back-reference history
if (!ctx.reader.init(true)) {
LOG_ERR("PNG", "Failed to init inflate reader");
LOG_ERR("PNG", "Failed to init inflate stream");
free(ctx.currentRow);
free(ctx.previousRow);
return false;
}
ctx.reader.setReadCallback(pngIdatReadCallback);
// PNG IDAT data is zlib-wrapped: consume the 2-byte zlib header (CMF + FLG)
ctx.reader.skipZlibHeader();
ctx.reader.setFill(pngIdatFillCallback, &ctx);
// PNG IDAT data is zlib-wrapped (2-byte header + trailing adler32)
ctx.reader.setZlibWrapped();
// Calculate output dimensions (same logic as JpegToBmpConverter)
int outWidth = width;
+161
View File
@@ -0,0 +1,161 @@
#pragma once
#include <HalStorage.h>
#include <Memory.h>
#include <algorithm>
#include <cstring>
#include <string>
namespace serialization {
// Sequential buffered wrappers over HalFile.
//
// SdFat keeps ONE shared 512-byte sector cache per volume, so interleaving small
// reads/writes across two or more files evicts and reloads that sector on nearly
// every call -- each 4-byte pod becomes a full SD transaction (measured: 31s to
// stream ~200KB through BookMetadataCache::buildBookBin on a 1,732-spine EPUB).
// Batching into chunk-sized transfers keeps each file at sequential SD speed.
//
// Heap: one fixed buffer per wrapper, allocated once at construction and freed at
// scope exit. If the allocation fails the wrapper degrades to unbuffered
// passthrough -- correct, just slow -- so callers never need an OOM path.
//
// Constraint: the wrapper must be the file's ONLY accessor while alive (it tracks
// the underlying position itself); mixing direct HalFile calls in desynchronizes it.
class BufferedFileWriter {
public:
BufferedFileWriter(HalFile& file, const size_t capacity)
: file(file), buf(makeUniqueNoThrow<uint8_t[]>(capacity)), cap(buf ? capacity : 0), pos(file.position()) {}
~BufferedFileWriter() { flush(); }
BufferedFileWriter(const BufferedFileWriter&) = delete;
BufferedFileWriter& operator=(const BufferedFileWriter&) = delete;
void write(const void* src, const size_t len) {
pos += len;
const auto* p = static_cast<const uint8_t*>(src);
if (fill + len > cap) {
flushBuffer();
}
if (len >= cap) { // also the cap == 0 passthrough
okFlag &= file.write(p, len) == len;
return;
}
// Typed local: cppcheck misreads unique_ptr<uint8_t[]>::get() arithmetic as void*.
uint8_t* const data = buf.get();
memcpy(data + fill, p, len);
fill += len;
}
// Logical write position (bytes written since the file was opened).
size_t position() const { return pos; }
// Flush buffered bytes; returns false if any write so far has failed short.
bool flush() {
flushBuffer();
return okFlag;
}
private:
void flushBuffer() {
if (fill == 0) return;
okFlag &= file.write(buf.get(), fill) == fill;
fill = 0;
}
HalFile& file;
std::unique_ptr<uint8_t[]> buf;
const size_t cap;
size_t fill = 0;
size_t pos;
bool okFlag = true;
};
class BufferedFileReader {
public:
BufferedFileReader(HalFile& file, const size_t capacity)
: file(file), buf(makeUniqueNoThrow<uint8_t[]>(capacity)), cap(buf ? capacity : 0), bufStart(file.position()) {}
BufferedFileReader(const BufferedFileReader&) = delete;
BufferedFileReader& operator=(const BufferedFileReader&) = delete;
size_t read(void* dst, size_t len) {
auto* p = static_cast<uint8_t*>(dst);
if (cap == 0) { // passthrough
const int n = file.read(p, len);
const size_t got = n < 0 ? 0 : static_cast<size_t>(n);
bufStart += got;
return got;
}
size_t total = 0;
while (len > 0) {
if (off == fill) {
bufStart += fill;
off = 0;
const int n = file.read(buf.get(), cap);
fill = n < 0 ? 0 : static_cast<size_t>(n);
if (fill == 0) break; // EOF or error
}
const size_t chunk = std::min(len, fill - off);
// Typed local: cppcheck misreads unique_ptr<uint8_t[]>::get() arithmetic as void*.
const uint8_t* const data = buf.get();
memcpy(p, data + off, chunk);
p += chunk;
off += chunk;
len -= chunk;
total += chunk;
}
return total;
}
// Logical read position.
size_t position() const { return bufStart + off; }
bool seek(const size_t target) {
// Within the buffered window: just move the cursor.
if (cap != 0 && target >= bufStart && target < bufStart + fill) {
off = target - bufStart;
return true;
}
if (!file.seek(target)) return false;
bufStart = target;
fill = 0;
off = 0;
return true;
}
private:
HalFile& file;
std::unique_ptr<uint8_t[]> buf;
const size_t cap;
size_t fill = 0;
size_t off = 0;
size_t bufStart;
};
// serialization:: overloads mirroring the HalFile ones in Serialization.h.
template <typename T>
void writePod(BufferedFileWriter& out, const T& value) {
out.write(&value, sizeof(T));
}
template <typename T>
void readPod(BufferedFileReader& in, T& value) {
in.read(&value, sizeof(T));
}
inline void writeString(BufferedFileWriter& out, const std::string& s) {
const uint32_t len = s.size();
writePod(out, len);
out.write(s.data(), len);
}
inline void readString(BufferedFileReader& in, std::string& s) {
uint32_t len;
readPod(in, len);
s.resize(len);
if (len > 0) {
in.read(&s[0], len);
}
}
} // namespace serialization
+45
View File
@@ -0,0 +1,45 @@
#include "PersistableStore.h"
#include <HalStorage.h>
#include <Logging.h>
#include <ObfuscationUtils.h>
bool PersistableStoreBase::writeDocToFile(const char* path, const JsonDocument& doc) {
Storage.mkdir("/.crosspoint");
String json;
serializeJson(doc, json);
if (!Storage.writeFile(path, json)) {
LOG_ERR("PERSIST", "Failed to write %s", path);
return false;
}
return true;
}
bool PersistableStoreBase::readDocFromFile(const char* path, JsonDocument& doc) {
if (!Storage.exists(path)) {
return false; // Expected on first boot — not an error.
}
String json = Storage.readFile(path);
if (json.isEmpty()) {
LOG_ERR("PERSIST", "Failed to read %s (empty)", path);
return false;
}
auto error = deserializeJson(doc, json);
if (error) {
LOG_ERR("PERSIST", "JSON parse error in %s: %s", path, error.c_str());
return false;
}
return true;
}
std::string PersistableStoreBase::extractPassword(JsonVariantConst doc, bool& needsResave) {
bool ok = false;
std::string pass = obfuscation::deobfuscateFromBase64(doc["password_obf"] | "", &ok);
if (!ok) {
// Deobfuscation failed — fall back to legacy plaintext password.
pass = doc["password"] | "";
if (!pass.empty()) needsResave = true;
}
// A successfully decoded empty string is a legitimate value; preserve as-is.
return pass;
}
+82
View File
@@ -0,0 +1,82 @@
#pragma once
#include <Arduino.h>
#include <ArduinoJson.h>
#include <string>
/**
* @brief Non-template core of PersistableStore.
*
* All ArduinoJson parse/serialize machinery is instantiated once here (in
* PersistableStore.cpp) instead of in every store's translation unit. GCC
* emits the JSON serializer/parser templates as local .isra clones per TU
* (~0.5KB each), so keeping serializeJson/deserializeJson out of the stores
* is what makes the abstraction flash-neutral.
*/
class PersistableStoreBase {
protected:
PersistableStoreBase() = default;
~PersistableStoreBase() = default;
// Serializes doc and writes it to path (ensures /.crosspoint exists). Logs on failure.
static bool writeDocToFile(const char* path, const JsonDocument& doc);
// Reads path and parses it into doc. Returns false silently when the file
// does not exist (expected on first boot); logs on read/parse failure.
static bool readDocFromFile(const char* path, JsonDocument& doc);
/**
* Helper function for extracting an obfuscated password from a JSON value.
* Accepts JsonVariantConst so callers can pass either a whole JsonDocument
* or a JsonObject element (e.g. inside an array iteration).
* If the decoded password requires a resave (e.g. from plaintext fallback), `needsResave` is set to true.
*/
static std::string extractPassword(JsonVariantConst doc, bool& needsResave);
};
/**
* @brief Base class for persistable singletons using CRTP.
*
* Derived classes must provide:
* - A private default constructor
* - friend class PersistableStore<Derived>;
* - static const char* getFilePath();
* - void toJson(JsonDocument& doc) const;
* - bool fromJson(JsonVariantConst doc);
*
* Note for implementers: read string values as `const char*` (e.g.
* `obj["name"] | ""`), never as `| std::string("")` — ArduinoJson's
* std::string converter drags a per-TU copy of the whole JSON serializer
* into flash via its serializeJson fallback.
*/
template <typename T>
class PersistableStore : public PersistableStoreBase {
protected:
PersistableStore() = default;
~PersistableStore() = default;
public:
// Delete copy constructor and assignment
PersistableStore(const PersistableStore&) = delete;
PersistableStore& operator=(const PersistableStore&) = delete;
static T& getInstance() {
static T instance;
return instance;
}
bool saveToFile() const {
JsonDocument doc;
static_cast<const T*>(this)->toJson(doc);
return writeDocToFile(T::getFilePath(), doc);
}
bool loadFromFile() {
JsonDocument doc;
if (!readDocFromFile(T::getFilePath(), doc)) {
return false;
}
return static_cast<T*>(this)->fromJson(doc.as<JsonVariantConst>());
}
};
+22 -22
View File
@@ -1,13 +1,12 @@
#include "ZipFile.h"
#include <HalStorage.h>
#include <InflateReader.h>
#include <InflateStream.h>
#include <Logging.h>
#include <algorithm>
struct ZipInflateCtx {
InflateReader reader; // Must be first — callback casts uzlib_uncomp* to ZipInflateCtx*
HalFile* file = nullptr;
size_t fileRemaining = 0;
uint8_t* readBuf = nullptr;
@@ -40,19 +39,16 @@ class ScopedOpenClose final {
bool ok = true; // true when zip was already open (no open() call needed)
};
int zipReadCallback(uzlib_uncomp* uncomp) {
auto* ctx = reinterpret_cast<ZipInflateCtx*>(uncomp);
if (ctx->fileRemaining == 0) return -1;
size_t zipFillCallback(void* vctx, const uint8_t** data) {
auto* ctx = static_cast<ZipInflateCtx*>(vctx);
if (ctx->fileRemaining == 0) return 0;
const size_t toRead = ctx->fileRemaining < ctx->readBufSize ? ctx->fileRemaining : ctx->readBufSize;
const size_t bytesRead = ctx->file->read(ctx->readBuf, toRead);
ctx->fileRemaining -= bytesRead;
if (bytesRead == 0) return -1;
uncomp->source = ctx->readBuf + 1;
uncomp->source_limit = ctx->readBuf + bytesRead;
return ctx->readBuf[0];
*data = ctx->readBuf;
return bytesRead;
}
} // namespace
@@ -410,15 +406,18 @@ uint8_t* ZipFile::readFileToMemory(const char* filename, size_t* size, const boo
ctx.readBuf = fileReadBuffer;
ctx.readBufSize = 1024;
if (!ctx.reader.init(true)) {
LOG_ERR("ZIP", "Failed to init inflate reader");
// One-shot mode: `data` holds the entire output, so back-references
// resolve inside it and no 32KB window is allocated.
InflateStream inflate;
if (!inflate.init(false)) {
LOG_ERR("ZIP", "Failed to init inflate stream");
free(fileReadBuffer);
free(data);
return nullptr;
}
ctx.reader.setReadCallback(zipReadCallback);
inflate.setFill(zipFillCallback, &ctx);
if (!ctx.reader.read(data, inflatedDataSize)) {
if (!inflate.read(data, inflatedDataSize)) {
LOG_ERR("ZIP", "Failed to inflate file");
free(fileReadBuffer);
free(data);
@@ -501,20 +500,21 @@ bool ZipFile::readFileToStream(const char* filename, Print& out, const size_t ch
ctx.readBuf = fileReadBuffer;
ctx.readBufSize = chunkSize;
if (!ctx.reader.init(true)) {
LOG_ERR("ZIP", "Failed to init inflate reader");
InflateStream inflate;
if (!inflate.init(true)) {
LOG_ERR("ZIP", "Failed to init inflate stream");
free(outputBuffer);
free(fileReadBuffer);
return false;
}
ctx.reader.setReadCallback(zipReadCallback);
inflate.setFill(zipFillCallback, &ctx);
bool success = false;
size_t totalProduced = 0;
while (true) {
size_t produced;
const InflateStatus status = ctx.reader.readAtMost(outputBuffer, chunkSize, &produced);
const InflateStream::Status status = inflate.readAtMost(outputBuffer, chunkSize, &produced);
totalProduced += produced;
if (totalProduced > static_cast<size_t>(inflatedDataSize)) {
@@ -530,7 +530,7 @@ bool ZipFile::readFileToStream(const char* filename, Print& out, const size_t ch
}
}
if (status == InflateStatus::Done) {
if (status == InflateStream::Status::Done) {
if (totalProduced != static_cast<size_t>(inflatedDataSize)) {
LOG_ERR("ZIP", "Decompressed size mismatch (expected %zu, got %zu)", static_cast<size_t>(inflatedDataSize),
totalProduced);
@@ -541,16 +541,16 @@ bool ZipFile::readFileToStream(const char* filename, Print& out, const size_t ch
break;
}
if (status == InflateStatus::Error) {
if (status == InflateStream::Status::Error) {
LOG_ERR("ZIP", "Decompression failed");
break;
}
// InflateStatus::Ok: output buffer full, continue
// InflateStream::Status::Ok: output buffer full, continue
}
free(outputBuffer);
free(fileReadBuffer);
return success; // ctx.reader destructor frees the ring buffer
return success; // inflate destructor frees the decompressor state + window
}
LOG_ERR("ZIP", "Unsupported compression method");

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