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import math
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import gradio as gr
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import modules.scripts as scripts
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from modules import images
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from modules.processing import fix_seed, process_images
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from modules.shared import opts, state
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def draw_xy_grid(xs, ys, x_label, y_label, cell):
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res = []
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ver_texts = [[images.GridAnnotation(y_label(y))] for y in ys]
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hor_texts = [[images.GridAnnotation(x_label(x))] for x in xs]
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first_processed = None
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state.job_count = len(xs) * len(ys)
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for y_i, y in enumerate(ys):
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for x_i, x in enumerate(xs):
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state.job = f"{x_i + y_i * len(xs) + 1} out of {len(xs) * len(ys)}"
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processed = cell(x, y)
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if first_processed is None:
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first_processed = processed
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res.append(processed.images[0])
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grid = images.image_grid(res, rows=len(ys))
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grid = images.draw_grid_annotations(
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grid, res[0].width, res[0].height, hor_texts, ver_texts
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)
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first_processed.images = [grid]
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return first_processed
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class PromptMatrix(scripts.Script):
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def title(self):
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return "Prompt Matrix"
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def ui(self, is_img2img):
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gr.HTML("<br>")
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with gr.Row():
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with gr.Column():
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put_at_start = gr.Checkbox(
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value=False,
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label="Put variable parts at start of prompt",
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elem_id=self.elem_id("put_at_start"),
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)
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different_seeds = gr.Checkbox(
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value=False,
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label="Use different seed for each picture",
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elem_id=self.elem_id("different_seeds"),
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)
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with gr.Column():
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prompt_type = gr.Radio(
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label="Select prompt",
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choices=("positive", "negative"),
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value="positive",
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elem_id=self.elem_id("prompt_type"),
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)
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variations_delimiter = gr.Radio(
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label="Select joining char",
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choices=("comma", "space"),
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value="comma",
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elem_id=self.elem_id("variations_delimiter"),
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)
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with gr.Column():
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margin_size = gr.Slider(
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label="Grid margins (px)",
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value=0,
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minimum=0,
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maximum=500,
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step=2,
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elem_id=self.elem_id("margin_size"),
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)
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return [
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put_at_start,
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different_seeds,
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prompt_type,
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variations_delimiter,
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margin_size,
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]
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def run(
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self,
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p,
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put_at_start,
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different_seeds,
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prompt_type,
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variations_delimiter,
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margin_size,
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):
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fix_seed(p)
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if prompt_type not in ("positive", "negative"):
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raise ValueError(f"Unknown prompt type {prompt_type}")
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if variations_delimiter not in ("comma", "space"):
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raise ValueError(f"Unknown variations delimiter {variations_delimiter}")
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prompt = p.prompt if prompt_type == "positive" else p.negative_prompt
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original_prompt = prompt[0] if isinstance(prompt, list) else prompt
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positive_prompt = p.prompt[0] if isinstance(p.prompt, list) else p.prompt
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delimiter = ", " if variations_delimiter == "comma" else " "
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all_prompts = []
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prompt_matrix_parts = original_prompt.split("|")
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combination_count = 2 ** (len(prompt_matrix_parts) - 1)
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for combination_num in range(combination_count):
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selected_prompts = [
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text.strip().strip(",")
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for n, text in enumerate(prompt_matrix_parts[1:])
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if combination_num & (1 << n)
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]
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if put_at_start:
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selected_prompts = selected_prompts + [prompt_matrix_parts[0]]
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else:
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selected_prompts = [prompt_matrix_parts[0]] + selected_prompts
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all_prompts.append(delimiter.join(selected_prompts))
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p.n_iter = math.ceil(len(all_prompts) / p.batch_size)
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p.do_not_save_grid = True
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print(f"PromptMatrix: creating {len(all_prompts)} images in {p.n_iter} batches")
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if prompt_type == "positive":
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p.prompt = all_prompts
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else:
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p.negative_prompt = all_prompts
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p.prompt_for_display = positive_prompt
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p.seed = [
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p.seed + (i if different_seeds else 0) for i in range(len(all_prompts))
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]
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processed = process_images(p)
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grid = images.image_grid(
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processed.images,
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p.batch_size,
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rows=1 << ((len(prompt_matrix_parts) - 1) // 2),
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)
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grid = images.draw_prompt_matrix(
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grid,
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processed.images[0].width,
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processed.images[0].height,
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prompt_matrix_parts,
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margin_size,
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)
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processed.images.insert(0, grid)
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processed.index_of_first_image = 1
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processed.infotexts.insert(0, processed.infotexts[0])
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if opts.grid_save:
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images.save_image(
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processed.images[0],
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p.outpath_grids,
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"prompt_matrix",
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extension=opts.grid_format,
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prompt=original_prompt,
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seed=processed.seed,
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grid=True,
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p=p,
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)
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return processed
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