2026-01-19 06:55:35 -05:00
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#include "ProgressMapper.h"
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2026-02-13 12:16:39 +01:00
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#include <Logging.h>
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2026-01-19 06:55:35 -05:00
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#include <cmath>
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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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// Calculate page progress within current spine item
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float intraSpineProgress = 0.0f;
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if (pos.totalPages > 0) {
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intraSpineProgress = static_cast<float>(pos.pageNumber) / static_cast<float>(pos.totalPages);
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}
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// Calculate overall book progress (0.0-1.0)
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result.percentage = epub->calculateProgress(pos.spineIndex, intraSpineProgress);
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// Generate XPath with estimated paragraph position based on page
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result.xpath = generateXPath(pos.spineIndex, pos.pageNumber, pos.totalPages);
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// Get chapter info for logging
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const int tocIndex = epub->getTocIndexForSpineIndex(pos.spineIndex);
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const std::string chapterName = (tocIndex >= 0) ? epub->getTocItem(tocIndex).title : "unknown";
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2026-02-13 12:16:39 +01:00
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LOG_DBG("ProgressMapper", "CrossPoint -> KOReader: chapter='%s', page=%d/%d -> %.2f%% at %s", chapterName.c_str(),
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pos.pageNumber, pos.totalPages, result.percentage * 100, result.xpath.c_str());
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2026-01-19 06:55:35 -05:00
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return result;
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}
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CrossPointPosition ProgressMapper::toCrossPoint(const std::shared_ptr<Epub>& epub, const KOReaderPosition& koPos,
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2026-02-19 11:38:46 +01:00
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int currentSpineIndex, int totalPagesInCurrentSpine) {
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CrossPointPosition result;
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result.spineIndex = 0;
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result.pageNumber = 0;
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2026-02-19 11:38:46 +01:00
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result.totalPages = 0;
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const size_t bookSize = epub->getBookSize();
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if (bookSize == 0) {
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return result;
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}
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2026-02-19 11:38:46 +01:00
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// Use percentage-based lookup for both spine and page positioning
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// XPath parsing is unreliable since CrossPoint doesn't preserve detailed HTML structure
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const size_t targetBytes = static_cast<size_t>(bookSize * koPos.percentage);
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// Find the spine item that contains this byte position
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const int spineCount = epub->getSpineItemsCount();
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bool spineFound = false;
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for (int i = 0; i < spineCount; i++) {
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const size_t cumulativeSize = epub->getCumulativeSpineItemSize(i);
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if (cumulativeSize >= targetBytes) {
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result.spineIndex = i;
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spineFound = true;
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break;
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2026-01-19 06:55:35 -05:00
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}
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2026-02-19 11:38:46 +01:00
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}
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// If no spine item was found (e.g., targetBytes beyond last cumulative size),
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// default to the last spine item so we map to the end of the book instead of the beginning.
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if (!spineFound && spineCount > 0) {
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result.spineIndex = spineCount - 1;
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}
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// Estimate page number within the spine item using percentage
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if (result.spineIndex < epub->getSpineItemsCount()) {
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const size_t prevCumSize = (result.spineIndex > 0) ? epub->getCumulativeSpineItemSize(result.spineIndex - 1) : 0;
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const size_t currentCumSize = epub->getCumulativeSpineItemSize(result.spineIndex);
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const size_t spineSize = currentCumSize - prevCumSize;
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2026-02-19 11:38:46 +01:00
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int estimatedTotalPages = 0;
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// If we are in the same spine, use the known total pages
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if (result.spineIndex == currentSpineIndex && totalPagesInCurrentSpine > 0) {
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estimatedTotalPages = totalPagesInCurrentSpine;
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}
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// Otherwise try to estimate based on density from current spine
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else if (currentSpineIndex >= 0 && currentSpineIndex < epub->getSpineItemsCount() && totalPagesInCurrentSpine > 0) {
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const size_t prevCurrCumSize =
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(currentSpineIndex > 0) ? epub->getCumulativeSpineItemSize(currentSpineIndex - 1) : 0;
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const size_t currCumSize = epub->getCumulativeSpineItemSize(currentSpineIndex);
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const size_t currSpineSize = currCumSize - prevCurrCumSize;
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if (currSpineSize > 0) {
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float ratio = static_cast<float>(spineSize) / static_cast<float>(currSpineSize);
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estimatedTotalPages = static_cast<int>(totalPagesInCurrentSpine * ratio);
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if (estimatedTotalPages < 1) estimatedTotalPages = 1;
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2026-01-19 06:55:35 -05:00
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}
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}
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2026-02-19 11:38:46 +01:00
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result.totalPages = estimatedTotalPages;
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if (spineSize > 0 && estimatedTotalPages > 0) {
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const size_t bytesIntoSpine = (targetBytes > prevCumSize) ? (targetBytes - prevCumSize) : 0;
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const float intraSpineProgress = static_cast<float>(bytesIntoSpine) / static_cast<float>(spineSize);
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const float clampedProgress = std::max(0.0f, std::min(1.0f, intraSpineProgress));
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result.pageNumber = static_cast<int>(clampedProgress * estimatedTotalPages);
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result.pageNumber = std::max(0, std::min(result.pageNumber, estimatedTotalPages - 1));
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}
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2026-01-19 06:55:35 -05:00
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}
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2026-02-13 12:16:39 +01:00
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LOG_DBG("ProgressMapper", "KOReader -> CrossPoint: %.2f%% at %s -> spine=%d, page=%d", koPos.percentage * 100,
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koPos.xpath.c_str(), result.spineIndex, result.pageNumber);
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2026-01-19 06:55:35 -05:00
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return result;
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}
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std::string ProgressMapper::generateXPath(int spineIndex, int pageNumber, int totalPages) {
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2026-02-19 11:38:46 +01:00
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// Use 0-based DocFragment indices for KOReader
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// Use a simple xpath pointing to the DocFragment - KOReader will use the percentage for fine positioning within it
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// Avoid specifying paragraph numbers as they may not exist in the target document
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return "/body/DocFragment[" + std::to_string(spineIndex) + "]/body";
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2026-01-19 06:55:35 -05:00
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}
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