Initial release
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#ifndef __EXAMPLE_RESOURCE_OWNERS_H__
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#define __EXAMPLE_RESOURCE_OWNERS_H__
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#include <cstdio>
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#include <cstdlib>
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#include <cstring>
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#include <memory>
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#include <utility>
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#include <vector>
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#include "stable-diffusion.h"
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struct FreeDeleter {
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void operator()(void* ptr) const {
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free(ptr);
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}
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};
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struct FileCloser {
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void operator()(FILE* file) const {
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if (file != nullptr) {
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fclose(file);
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}
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}
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};
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struct SDCtxDeleter {
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void operator()(sd_ctx_t* ctx) const {
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if (ctx != nullptr) {
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free_sd_ctx(ctx);
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}
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}
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};
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struct UpscalerCtxDeleter {
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void operator()(upscaler_ctx_t* ctx) const {
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if (ctx != nullptr) {
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free_upscaler_ctx(ctx);
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}
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}
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};
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struct ADetailerCtxDeleter {
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void operator()(adetailer_ctx_t* ctx) const {
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if (ctx != nullptr) {
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free_adetailer_ctx(ctx);
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}
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}
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};
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template <typename T>
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using FreeUniquePtr = std::unique_ptr<T, FreeDeleter>;
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using FilePtr = std::unique_ptr<FILE, FileCloser>;
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using SDCtxPtr = std::unique_ptr<sd_ctx_t, SDCtxDeleter>;
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using UpscalerCtxPtr = std::unique_ptr<upscaler_ctx_t, UpscalerCtxDeleter>;
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using ADetailerCtxPtr = std::unique_ptr<adetailer_ctx_t, ADetailerCtxDeleter>;
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class SDImageOwner {
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private:
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static sd_image_t copy_image(const sd_image_t& image) {
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if (image.data == nullptr) {
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return {image.width, image.height, image.channel, nullptr};
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}
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const size_t byte_count = static_cast<size_t>(image.width) * image.height * image.channel;
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uint8_t* raw_copy = static_cast<uint8_t*>(malloc(byte_count));
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if (raw_copy == nullptr) {
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return {0, 0, 0, nullptr};
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}
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std::memcpy(raw_copy, image.data, byte_count);
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return {image.width, image.height, image.channel, raw_copy};
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}
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sd_image_t image_ = {0, 0, 0, nullptr};
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public:
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SDImageOwner() = default;
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explicit SDImageOwner(sd_image_t image)
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: image_(image) {
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}
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SDImageOwner(const SDImageOwner& other)
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: image_(copy_image(other.image_)) {
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}
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SDImageOwner& operator=(const SDImageOwner& other) {
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if (this != &other) {
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reset(copy_image(other.image_));
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}
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return *this;
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}
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SDImageOwner(SDImageOwner&& other) noexcept
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: image_(other.release()) {
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}
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SDImageOwner& operator=(SDImageOwner&& other) noexcept {
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if (this != &other) {
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reset();
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image_ = other.release();
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}
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return *this;
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}
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~SDImageOwner() {
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reset();
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}
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sd_image_t* put() {
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if (image_.data != nullptr) {
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free(image_.data);
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image_.data = nullptr;
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}
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image_.width = 0;
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image_.height = 0;
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image_.channel = 0;
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return &image_;
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}
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sd_image_t& get() {
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return image_;
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}
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const sd_image_t& get() const {
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return image_;
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}
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sd_image_t release() {
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sd_image_t image = image_;
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image_ = {0, 0, 0, nullptr};
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return image;
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}
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void reset(sd_image_t image = {0, 0, 0, nullptr}) {
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if (image_.data != nullptr) {
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free(image_.data);
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}
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image_ = image;
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}
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};
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class SDAudioOwner {
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private:
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uint32_t sample_rate_ = 0;
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uint32_t channels_ = 0;
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std::vector<float> samples_;
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public:
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SDAudioOwner() = default;
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void reset(std::vector<float> samples = {}, uint32_t sample_rate = 0, uint32_t channels = 0) {
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samples_ = std::move(samples);
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sample_rate_ = sample_rate;
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channels_ = channels;
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}
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bool empty() const {
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return samples_.empty();
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}
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sd_audio_t get() {
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return {sample_rate_,
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channels_,
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channels_ == 0 ? 0 : static_cast<uint64_t>(samples_.size() / channels_),
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samples_.empty() ? nullptr : samples_.data()};
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}
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const std::vector<float>& samples() const {
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return samples_;
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}
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};
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class SDImageVec {
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private:
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std::vector<sd_image_t> images_;
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public:
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SDImageVec() = default;
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SDImageVec(const SDImageVec&) = delete;
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SDImageVec& operator=(const SDImageVec&) = delete;
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SDImageVec(SDImageVec&& other) noexcept
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: images_(std::move(other.images_)) {
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}
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SDImageVec& operator=(SDImageVec&& other) noexcept {
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if (this != &other) {
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clear();
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images_ = std::move(other.images_);
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}
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return *this;
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}
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~SDImageVec() {
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clear();
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}
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void push_back(sd_image_t image) {
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images_.push_back(image);
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}
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void push_back(SDImageOwner&& image) {
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images_.push_back(image.release());
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}
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void reserve(size_t count) {
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images_.reserve(count);
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}
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void adopt(sd_image_t* images, int count) {
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clear();
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if (images == nullptr || count <= 0) {
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free(images);
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return;
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}
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images_.reserve(static_cast<size_t>(count));
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for (int i = 0; i < count; ++i) {
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images_.push_back(images[i]);
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}
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free(images);
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}
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size_t size() const {
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return images_.size();
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}
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bool empty() const {
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return images_.empty();
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}
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int count() const {
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return static_cast<int>(images_.size());
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}
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explicit operator bool() const {
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return !images_.empty();
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}
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sd_image_t* data() {
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return images_.data();
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}
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const sd_image_t* data() const {
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return images_.data();
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}
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sd_image_t& operator[](size_t index) {
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return images_[index];
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}
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const sd_image_t& operator[](size_t index) const {
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return images_[index];
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}
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std::vector<sd_image_t>& raw() {
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return images_;
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}
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const std::vector<sd_image_t>& raw() const {
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return images_;
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}
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void clear() {
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for (sd_image_t& image : images_) {
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free(image.data);
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image.data = nullptr;
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}
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images_.clear();
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}
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};
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#endif // __EXAMPLE_RESOURCE_OWNERS_H__
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