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https://github.com/leejet/stable-diffusion.cpp.git
synced 2025-12-12 13:28:37 +00:00
refactor: add user data pointer to the image preview callback (#1001)
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52b67c538b
commit
0249509a30
@ -151,6 +151,7 @@ struct SDParams {
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preview_t preview_method = PREVIEW_NONE;
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int preview_interval = 1;
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std::string preview_path = "preview.png";
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float preview_fps = 16;
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bool taesd_preview = false;
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bool preview_noisy = false;
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@ -1638,25 +1639,22 @@ bool load_images_from_dir(const std::string dir,
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return true;
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}
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std::string preview_path;
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float preview_fps;
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void step_callback(int step, int frame_count, sd_image_t* image, bool is_noisy) {
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void step_callback(int step, int frame_count, sd_image_t* image, bool is_noisy, void* data) {
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(void)step;
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(void)is_noisy;
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SDParams* params = (SDParams*)data;
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// is_noisy is set to true if the preview corresponds to noisy latents, false if it's denoised latents
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// unused in this app, it will either be always noisy or always denoised here
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if (frame_count == 1) {
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stbi_write_png(preview_path.c_str(), image->width, image->height, image->channel, image->data, 0);
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stbi_write_png(params->preview_path.c_str(), image->width, image->height, image->channel, image->data, 0);
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} else {
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create_mjpg_avi_from_sd_images(preview_path.c_str(), image, frame_count, preview_fps);
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create_mjpg_avi_from_sd_images(params->preview_path.c_str(), image, frame_count, params->preview_fps);
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}
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}
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int main(int argc, const char* argv[]) {
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SDParams params;
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parse_args(argc, argv, params);
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preview_path = params.preview_path;
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if (params.video_frames > 4) {
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size_t last_dot_pos = params.preview_path.find_last_of(".");
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std::string base_path = params.preview_path;
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@ -1667,12 +1665,12 @@ int main(int argc, const char* argv[]) {
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std::transform(file_ext.begin(), file_ext.end(), file_ext.begin(), ::tolower);
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}
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if (file_ext == ".png") {
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preview_path = base_path + ".avi";
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params.preview_path = base_path + ".avi";
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}
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}
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preview_fps = params.fps;
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params.preview_fps = params.fps;
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if (params.preview_method == PREVIEW_PROJ)
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preview_fps /= 4.0f;
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params.preview_fps /= 4.0f;
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params.sample_params.guidance.slg.layers = params.skip_layers.data();
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params.sample_params.guidance.slg.layer_count = params.skip_layers.size();
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@ -1680,7 +1678,7 @@ int main(int argc, const char* argv[]) {
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params.high_noise_sample_params.guidance.slg.layer_count = params.high_noise_skip_layers.size();
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sd_set_log_callback(sd_log_cb, (void*)¶ms);
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sd_set_preview_callback((sd_preview_cb_t)step_callback, params.preview_method, params.preview_interval, !params.preview_noisy, params.preview_noisy);
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sd_set_preview_callback(step_callback, params.preview_method, params.preview_interval, !params.preview_noisy, params.preview_noisy, (void*)¶ms);
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if (params.verbose) {
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print_params(params);
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@ -1307,7 +1307,8 @@ public:
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enum SDVersion version,
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preview_t preview_mode,
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ggml_tensor* result,
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std::function<void(int, int, sd_image_t*, bool)> step_callback,
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std::function<void(int, int, sd_image_t*, bool, void*)> step_callback,
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void* step_callback_data,
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bool is_noisy) {
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const uint32_t channel = 3;
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uint32_t width = latents->ne[0];
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@ -1378,7 +1379,7 @@ public:
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for (int i = 0; i < frames; i++) {
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images[i] = {width, height, channel, data + i * width * height * channel};
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}
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step_callback(step, frames, images, is_noisy);
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step_callback(step, frames, images, is_noisy, step_callback_data);
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free(data);
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free(images);
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} else {
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@ -1432,7 +1433,7 @@ public:
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images[i].data = ggml_tensor_to_sd_image(result, i, ggml_n_dims(latents) == 4);
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}
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step_callback(step, frames, images, is_noisy);
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step_callback(step, frames, images, is_noisy, step_callback_data);
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ggml_ext_tensor_scale_inplace(result, 0);
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for (int i = 0; i < frames; i++) {
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@ -1581,8 +1582,9 @@ public:
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}
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auto denoise = [&](ggml_tensor* input, float sigma, int step) -> ggml_tensor* {
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auto sd_preview_cb = sd_get_preview_callback();
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auto sd_preview_mode = sd_get_preview_mode();
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auto sd_preview_cb = sd_get_preview_callback();
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auto sd_preview_cb_data = sd_get_preview_callback_data();
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auto sd_preview_mode = sd_get_preview_mode();
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if (step == 1 || step == -1) {
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pretty_progress(0, (int)steps, 0);
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}
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@ -1651,7 +1653,7 @@ public:
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}
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if (sd_preview_cb != nullptr && sd_should_preview_noisy()) {
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if (step % sd_get_preview_interval() == 0) {
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preview_image(work_ctx, step, noised_input, version, sd_preview_mode, preview_tensor, sd_preview_cb, true);
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preview_image(work_ctx, step, noised_input, version, sd_preview_mode, preview_tensor, sd_preview_cb, sd_preview_cb_data, true);
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}
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}
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@ -1799,7 +1801,7 @@ public:
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if (sd_preview_cb != nullptr && sd_should_preview_denoised()) {
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if (step % sd_get_preview_interval() == 0) {
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preview_image(work_ctx, step, denoised, version, sd_preview_mode, preview_tensor, sd_preview_cb, false);
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preview_image(work_ctx, step, denoised, version, sd_preview_mode, preview_tensor, sd_preview_cb, sd_preview_cb_data, false);
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}
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}
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@ -283,11 +283,11 @@ typedef struct sd_ctx_t sd_ctx_t;
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typedef void (*sd_log_cb_t)(enum sd_log_level_t level, const char* text, void* data);
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typedef void (*sd_progress_cb_t)(int step, int steps, float time, void* data);
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typedef void (*sd_preview_cb_t)(int step, int frame_count, sd_image_t* frames, bool is_noisy);
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typedef void (*sd_preview_cb_t)(int step, int frame_count, sd_image_t* frames, bool is_noisy, void* data);
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SD_API void sd_set_log_callback(sd_log_cb_t sd_log_cb, void* data);
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SD_API void sd_set_progress_callback(sd_progress_cb_t cb, void* data);
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SD_API void sd_set_preview_callback(sd_preview_cb_t cb, enum preview_t mode, int interval, bool denoised, bool noisy);
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SD_API void sd_set_preview_callback(sd_preview_cb_t cb, enum preview_t mode, int interval, bool denoised, bool noisy, void* data);
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SD_API int32_t get_num_physical_cores();
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SD_API const char* sd_get_system_info();
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7
util.cpp
7
util.cpp
@ -187,6 +187,7 @@ static sd_progress_cb_t sd_progress_cb = nullptr;
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void* sd_progress_cb_data = nullptr;
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static sd_preview_cb_t sd_preview_cb = nullptr;
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static void* sd_preview_cb_data = nullptr;
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preview_t sd_preview_mode = PREVIEW_NONE;
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int sd_preview_interval = 1;
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bool sd_preview_denoised = true;
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@ -335,8 +336,9 @@ void sd_set_progress_callback(sd_progress_cb_t cb, void* data) {
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sd_progress_cb = cb;
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sd_progress_cb_data = data;
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}
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void sd_set_preview_callback(sd_preview_cb_t cb, preview_t mode = PREVIEW_PROJ, int interval = 1, bool denoised = true, bool noisy = false) {
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void sd_set_preview_callback(sd_preview_cb_t cb, preview_t mode, int interval, bool denoised, bool noisy, void* data) {
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sd_preview_cb = cb;
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sd_preview_cb_data = data;
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sd_preview_mode = mode;
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sd_preview_interval = interval;
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sd_preview_denoised = denoised;
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@ -346,6 +348,9 @@ void sd_set_preview_callback(sd_preview_cb_t cb, preview_t mode = PREVIEW_PROJ,
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sd_preview_cb_t sd_get_preview_callback() {
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return sd_preview_cb;
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}
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void* sd_get_preview_callback_data() {
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return sd_preview_cb_data;
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}
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preview_t sd_get_preview_mode() {
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return sd_preview_mode;
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