Files
Crosspoint/lib/Epub/Epub/Page.cpp
T

178 lines
5.3 KiB
C++

#include "Page.h"
#include <GfxRenderer.h>
#include <Logging.h>
#include <Serialization.h>
#include <new>
void PageLine::render(GfxRenderer& renderer, const int fontId, const int xOffset, const int yOffset) {
block->render(renderer, fontId, xPos + xOffset, yPos + yOffset);
}
bool PageLine::serialize(HalFile& file) {
serialization::writePod(file, xPos);
serialization::writePod(file, yPos);
// serialize TextBlock pointed to by PageLine
return block->serialize(file);
}
std::unique_ptr<PageLine> PageLine::deserialize(HalFile& file) {
int16_t xPos;
int16_t yPos;
serialization::readPod(file, xPos);
serialization::readPod(file, yPos);
auto tb = TextBlock::deserialize(file);
return std::unique_ptr<PageLine>(new PageLine(std::move(tb), xPos, yPos));
}
void PageImage::render(GfxRenderer& renderer, const int fontId, const int xOffset, const int yOffset) {
// Images don't use fontId or text rendering
imageBlock->render(renderer, xPos + xOffset, yPos + yOffset);
}
bool PageImage::serialize(HalFile& file) {
serialization::writePod(file, xPos);
serialization::writePod(file, yPos);
// serialize ImageBlock
return imageBlock->serialize(file);
}
std::unique_ptr<PageImage> PageImage::deserialize(HalFile& file) {
int16_t xPos;
int16_t yPos;
serialization::readPod(file, xPos);
serialization::readPod(file, yPos);
auto ib = ImageBlock::deserialize(file);
return std::unique_ptr<PageImage>(new PageImage(std::move(ib), xPos, yPos));
}
void PageHorizontalRule::render(GfxRenderer& renderer, const int fontId, const int xOffset, const int yOffset) {
(void)fontId;
if (width == 0 || thickness == 0) {
return;
}
renderer.drawLine(xPos + xOffset, yPos + yOffset, xPos + xOffset + width - 1, yPos + yOffset, thickness, true);
}
bool PageHorizontalRule::serialize(HalFile& file) {
serialization::writePod(file, xPos);
serialization::writePod(file, yPos);
serialization::writePod(file, width);
serialization::writePod(file, thickness);
return true;
}
std::unique_ptr<PageHorizontalRule> PageHorizontalRule::deserialize(HalFile& file) {
int16_t xPos = 0;
int16_t yPos = 0;
uint16_t width = 0;
uint8_t thickness = 0;
serialization::readPod(file, xPos);
serialization::readPod(file, yPos);
serialization::readPod(file, width);
serialization::readPod(file, thickness);
if (width == 0 || thickness == 0) {
LOG_ERR("PGE", "Deserialization failed: invalid horizontal rule metadata (width=%u thickness=%u)", width,
thickness);
return nullptr;
}
auto* rule = new (std::nothrow) PageHorizontalRule(width, thickness, xPos, yPos);
if (!rule) {
LOG_ERR("PGE", "Deserialization failed: could not allocate PageHorizontalRule");
return nullptr;
}
return std::unique_ptr<PageHorizontalRule>(rule);
}
void Page::render(GfxRenderer& renderer, const int fontId, const int xOffset, const int yOffset) const {
for (auto& element : elements) {
element->render(renderer, fontId, xOffset, yOffset);
}
}
bool Page::serialize(HalFile& file) const {
const uint16_t count = elements.size();
serialization::writePod(file, count);
for (const auto& el : elements) {
// Use getTag() method to determine type
serialization::writePod(file, static_cast<uint8_t>(el->getTag()));
if (!el->serialize(file)) {
return false;
}
}
// Serialize footnotes (clamp to MAX_FOOTNOTES_PER_PAGE to match addFootnote/deserialize limits)
const uint16_t fnCount = std::min<uint16_t>(footnotes.size(), MAX_FOOTNOTES_PER_PAGE);
serialization::writePod(file, fnCount);
for (uint16_t i = 0; i < fnCount; i++) {
const auto& fn = footnotes[i];
if (file.write(fn.number, sizeof(fn.number)) != sizeof(fn.number) ||
file.write(fn.href, sizeof(fn.href)) != sizeof(fn.href)) {
LOG_ERR("PGE", "Failed to write footnote");
return false;
}
}
return true;
}
std::unique_ptr<Page> Page::deserialize(HalFile& file) {
auto page = std::unique_ptr<Page>(new Page());
uint16_t count;
serialization::readPod(file, count);
for (uint16_t i = 0; i < count; i++) {
uint8_t tag;
serialization::readPod(file, tag);
if (tag == TAG_PageLine) {
auto pl = PageLine::deserialize(file);
page->elements.push_back(std::move(pl));
} else if (tag == TAG_PageImage) {
auto pi = PageImage::deserialize(file);
page->elements.push_back(std::move(pi));
} else if (tag == TAG_PageHorizontalRule) {
auto rule = PageHorizontalRule::deserialize(file);
if (!rule) {
return nullptr;
}
page->elements.push_back(std::move(rule));
} else {
LOG_ERR("PGE", "Deserialization failed: Unknown tag %u", tag);
return nullptr;
}
}
// Deserialize footnotes
uint16_t fnCount;
serialization::readPod(file, fnCount);
if (fnCount > MAX_FOOTNOTES_PER_PAGE) {
LOG_ERR("PGE", "Invalid footnote count %u", fnCount);
return nullptr;
}
page->footnotes.resize(fnCount);
for (uint16_t i = 0; i < fnCount; i++) {
auto& entry = page->footnotes[i];
if (file.read(entry.number, sizeof(entry.number)) != sizeof(entry.number) ||
file.read(entry.href, sizeof(entry.href)) != sizeof(entry.href)) {
LOG_ERR("PGE", "Failed to read footnote %u", i);
return nullptr;
}
entry.number[sizeof(entry.number) - 1] = '\0';
entry.href[sizeof(entry.href) - 1] = '\0';
}
return page;
}