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@@ -125,6 +125,23 @@ Notes:
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- rendering favors reusing precomputed layout data to keep page turns responsive on constrained hardware
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- progress/session state is persisted so the reader can reopen at the last position after reboot/sleep
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## KOReader sync position mapping
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KOReader sync integration is implemented under `lib/KOReaderSync/` and is used by
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`src/activities/reader/KOReaderSyncActivity.*`.
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Position translation currently follows a dual-path strategy:
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- CrossPoint -> KOReader: prefer element-level XPath extracted from the current
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spine XHTML; fallback to chapter-level `DocFragment` path when needed.
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- KOReader -> CrossPoint: prefer incoming XPath resolution; fallback to
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percentage-based estimation if XPath is invalid or cannot be resolved.
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Detailed algorithm and constraints (including low-memory rationale for ESP32-C3)
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are documented in:
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- [KOReader Sync XPath Mapping](koreader-sync-xpath-mapping.md)
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## State and persistence
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Two singletons are central:
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@@ -0,0 +1,83 @@
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# KOReader Sync XPath Mapping
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This note documents how CrossPoint maps reading positions to and from KOReader sync payloads.
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## Problem
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CrossPoint internally stores position as:
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- `spineIndex` (chapter index)
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- `pageNumber` + `totalPages`
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KOReader sync payload stores:
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- `progress` (XPath-like location)
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- `percentage` (overall progress)
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A direct 1:1 mapping is not guaranteed because page layout differs between engines/devices.
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## Current Strategy
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### CrossPoint -> KOReader
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Implemented in `ProgressMapper::toKOReader`.
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1. Compute overall `percentage` from chapter/page.
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2. Attempt to compute a real element-level XPath via `ChapterXPathIndexer::findXPathForProgress`.
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3. If XPath extraction fails, fallback to synthetic chapter path:
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- `/body/DocFragment[N]/body`
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### KOReader -> CrossPoint
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Implemented in `ProgressMapper::toCrossPoint`.
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1. Attempt to parse `DocFragment[N]` from incoming XPath.
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2. If valid, attempt XPath-to-offset mapping via `ChapterXPathIndexer::findProgressForXPath`.
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3. Convert resolved intra-spine progress to page estimate.
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4. If XPath path is invalid/unresolvable, fallback to percentage-based chapter/page estimation.
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## ChapterXPathIndexer Design
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The module reparses **one spine XHTML** on demand using Expat and builds temporary anchors:
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- anchor: `<xpath, textOffset>`
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- `textOffset` counts non-whitespace bytes
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Matching for reverse lookup:
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1. exact path match
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2. index-insensitive path match (`div[2]` vs `div[3]` tolerated)
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3. ancestor fallback
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If no match is found, caller must fallback to percentage.
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## Memory / Safety Constraints (ESP32-C3)
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The implementation intentionally avoids full DOM storage.
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- Parse one chapter only.
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- Keep anchors in transient vectors only for duration of call.
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- Free XML parser and chapter byte buffer on all success/failure paths.
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- No persistent cache structures are introduced by this module.
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## Known Limitations
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- Page number on reverse mapping is still an estimate (renderer differences).
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- Image-only/low-text chapters may yield coarse anchors.
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- Extremely malformed XHTML can force fallback behavior.
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## Operational Logging
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`ProgressMapper` logs mapping source in reverse direction:
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- `xpath` when XPath mapping path was used
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- `percentage` when fallback path was used
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It also logs exactness (`exact=yes/no`) for XPath matches.
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## Validation
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Use test vectors in:
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- `test/koreader_sync/roundtrip_vectors.md`
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- `test/koreader_sync/memory_resource_qa.md`
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@@ -13,6 +13,10 @@
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namespace {
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// Anchor used for both mapping directions.
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// textOffset is counted as visible (non-whitespace) bytes from chapter start.
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// xpath points to the nearest element path at/near that offset.
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struct XPathAnchor {
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size_t textOffset = 0;
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std::string xpath;
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@@ -24,6 +28,9 @@ struct StackNode {
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bool hasTextAnchor = false;
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};
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// ParserState is intentionally ephemeral and created per lookup call.
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// It holds only one spine parse worth of data to avoid retaining structures
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// that would increase long-lived heap usage on the ESP32-C3.
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struct ParserState {
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explicit ParserState(const int spineIndex) : spineIndex(spineIndex) { siblingCounters.emplace_back(); }
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@@ -37,6 +44,11 @@ struct ParserState {
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std::string baseXPath() const { return "/body/DocFragment[" + std::to_string(spineIndex) + "]/body"; }
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// Canonicalize incoming KOReader XPath before matching:
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// - remove all whitespace
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// - lowercase tags
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// - strip optional trailing /text()
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// - strip trailing slash
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static std::string normalizeXPath(const std::string& input) {
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if (input.empty()) {
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return "";
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@@ -65,6 +77,8 @@ struct ParserState {
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return out;
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}
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// Remove bracketed numeric predicates so paths can be compared even when
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// index counters differ between parser implementations.
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static std::string removeIndices(const std::string& xpath) {
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std::string out;
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out.reserve(xpath.size());
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@@ -96,6 +110,9 @@ struct ParserState {
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return depth;
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}
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// Resolve a path to the best anchor offset.
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// If exact node path is not found, progressively trim trailing segments and
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// match ancestors to obtain a stable approximate location.
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bool pickBestAnchorByPath(const std::string& targetPath, const bool ignoreIndices, size_t& outTextOffset,
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bool& outExact) const {
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if (targetPath.empty() || anchors.empty()) {
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@@ -147,6 +164,7 @@ struct ParserState {
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return value;
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}
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// Elements that should not contribute text position anchors.
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static bool isSkippableTag(const std::string& tag) { return tag == "head" || tag == "script" || tag == "style"; }
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static bool isWhitespaceOnly(const XML_Char* text, const int len) {
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@@ -158,6 +176,8 @@ struct ParserState {
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return true;
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}
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// Count non-whitespace bytes to keep offsets stable against formatting-only
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// differences and indentation in source XHTML.
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static size_t countVisibleBytes(const XML_Char* text, const int len) {
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size_t count = 0;
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for (int i = 0; i < len; i++) {
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@@ -192,6 +212,8 @@ struct ParserState {
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return xpath;
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}
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// Adds first anchor for an element when text begins and periodic anchors in
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// longer runs so matching has sufficient granularity without exploding memory.
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void addAnchorIfNeeded() {
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if (!insideBody() || stack.empty()) {
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return;
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@@ -269,6 +291,7 @@ struct ParserState {
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return it->xpath;
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}
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// Convert path -> progress ratio by matching to nearest available anchor.
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bool chooseProgressForXPath(const std::string& xpath, float& outIntraSpineProgress, bool& outExactMatch) const {
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if (anchors.empty()) {
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return false;
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@@ -6,38 +6,58 @@
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#include <string>
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/**
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* Builds element-level XPath anchors for a spine item and picks the best match
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* for an intra-spine progress value.
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* Lightweight XPath/progress bridge for KOReader sync.
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*
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* Why this exists:
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* - CrossPoint stores reading position as chapter/page.
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* - KOReader sync uses XPath + percentage.
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*
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* This utility reparses exactly one spine XHTML item with Expat and builds
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* transient text anchors (<xpath, textOffset>) so we can translate in both
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* directions without keeping a full DOM in memory.
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*
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* Design constraints (ESP32-C3):
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* - No persistent full-book structures.
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* - Parse-on-demand and free memory immediately.
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* - Keep fallback behavior deterministic if parsing/matching fails.
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*/
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class ChapterXPathIndexer {
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public:
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/**
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* Convert an intra-spine progress ratio to the nearest element-level XPath.
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*
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* @param epub Loaded EPUB instance
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* @param spineIndex Current spine item index
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* @param intraSpineProgress Position within the spine item [0.0, 1.0]
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* @return Best matching XPath, or empty string on failure
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* @return Best matching XPath for KOReader, or empty string on failure
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*/
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static std::string findXPathForProgress(const std::shared_ptr<Epub>& epub, int spineIndex, float intraSpineProgress);
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/**
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* Resolve a KOReader XPath to an intra-spine progress value.
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* Resolve a KOReader XPath to an intra-spine progress ratio.
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*
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* Matching strategy:
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* 1) exact anchor path match,
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* 2) index-insensitive path match,
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* 3) ancestor fallback.
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*
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* @param epub Loaded EPUB instance
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* @param spineIndex Spine item index to parse
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* @param xpath Incoming KOReader XPath
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* @param outIntraSpineProgress Resolved position within spine [0.0, 1.0]
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* @param outExactMatch True when an exact anchor match was found
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* @return true if an exact or ancestor match was resolved
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* @param outExactMatch True only for full exact path match
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* @return true if any match was resolved; false means caller should fallback
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*/
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static bool findProgressForXPath(const std::shared_ptr<Epub>& epub, int spineIndex, const std::string& xpath,
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float& outIntraSpineProgress, bool& outExactMatch);
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/**
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* Parse the DocFragment index from a KOReader-style XPath.
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* Parse DocFragment index from KOReader-style path segment:
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* /body/DocFragment[N]/body/...
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*
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* @param xpath KOReader XPath
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* @param outSpineIndex Parsed DocFragment index (0-based)
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* @return true when DocFragment[...] is present and valid
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* @return true when DocFragment[N] exists and N is valid integer >= 0
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*/
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static bool tryExtractSpineIndexFromXPath(const std::string& xpath, int& outSpineIndex);
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};
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@@ -6,7 +6,6 @@
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#include "ChapterXPathIndexer.h"
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KOReaderPosition ProgressMapper::toKOReader(const std::shared_ptr<Epub>& epub, const CrossPointPosition& pos) {
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KOReaderPosition result;
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@@ -27,9 +27,16 @@ struct KOReaderPosition {
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* CrossPoint tracks position as (spineIndex, pageNumber).
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* KOReader uses XPath-like strings + percentage.
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*
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* CrossPoint first tries to extract an element-level XPath by reparsing the
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* current spine XHTML and mapping intra-spine progress to text anchors.
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* If extraction fails, it falls back to a synthetic chapter-level XPath.
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* Forward mapping (CrossPoint -> KOReader):
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* - Prefer element-level XPath extracted from current spine XHTML.
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* - Fallback to synthetic chapter XPath if extraction fails.
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*
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* Reverse mapping (KOReader -> CrossPoint):
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* - Prefer incoming XPath (DocFragment + element path) when resolvable.
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* - Fallback to percentage-based approximation when XPath is missing/invalid.
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*
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* This keeps behavior stable on low-memory devices while improving round-trip
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* sync precision when KOReader provides detailed paths.
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*/
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class ProgressMapper {
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public:
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@@ -45,8 +52,9 @@ class ProgressMapper {
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/**
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* Convert KOReader position to CrossPoint format.
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*
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* Note: The returned pageNumber may be approximate since different
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* rendering settings produce different page counts.
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* Uses XPath-first resolution when possible and percentage fallback otherwise.
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* Returned pageNumber can still be approximate because page counts differ
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* across renderer/font/layout settings.
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*
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* @param epub The EPUB book
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* @param koPos KOReader position
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