xyz_grid.py 35 KB

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  1. from collections import namedtuple
  2. from copy import copy
  3. from itertools import permutations, chain
  4. import random
  5. import csv
  6. import os.path
  7. from io import StringIO
  8. from PIL import Image
  9. import numpy as np
  10. import modules.scripts as scripts
  11. import gradio as gr
  12. from modules import images, sd_samplers, processing, sd_models, sd_vae, sd_samplers_kdiffusion, errors
  13. from modules.processing import process_images, Processed, StableDiffusionProcessingTxt2Img
  14. from modules.shared import opts, state
  15. import modules.shared as shared
  16. import modules.sd_samplers
  17. import modules.sd_models
  18. import modules.sd_vae
  19. import re
  20. from modules.ui_components import ToolButton
  21. fill_values_symbol = "\U0001f4d2" # 📒
  22. AxisInfo = namedtuple('AxisInfo', ['axis', 'values'])
  23. def apply_field(field):
  24. def fun(p, x, xs):
  25. setattr(p, field, x)
  26. return fun
  27. def apply_prompt(p, x, xs):
  28. if xs[0] not in p.prompt and xs[0] not in p.negative_prompt:
  29. raise RuntimeError(f"Prompt S/R did not find {xs[0]} in prompt or negative prompt.")
  30. p.prompt = p.prompt.replace(xs[0], x)
  31. p.negative_prompt = p.negative_prompt.replace(xs[0], x)
  32. def apply_order(p, x, xs):
  33. token_order = []
  34. # Initally grab the tokens from the prompt, so they can be replaced in order of earliest seen
  35. for token in x:
  36. token_order.append((p.prompt.find(token), token))
  37. token_order.sort(key=lambda t: t[0])
  38. prompt_parts = []
  39. # Split the prompt up, taking out the tokens
  40. for _, token in token_order:
  41. n = p.prompt.find(token)
  42. prompt_parts.append(p.prompt[0:n])
  43. p.prompt = p.prompt[n + len(token):]
  44. # Rebuild the prompt with the tokens in the order we want
  45. prompt_tmp = ""
  46. for idx, part in enumerate(prompt_parts):
  47. prompt_tmp += part
  48. prompt_tmp += x[idx]
  49. p.prompt = prompt_tmp + p.prompt
  50. def confirm_samplers(p, xs):
  51. for x in xs:
  52. if x.lower() not in sd_samplers.samplers_map:
  53. raise RuntimeError(f"Unknown sampler: {x}")
  54. def apply_checkpoint(p, x, xs):
  55. info = modules.sd_models.get_closet_checkpoint_match(x)
  56. if info is None:
  57. raise RuntimeError(f"Unknown checkpoint: {x}")
  58. p.override_settings['sd_model_checkpoint'] = info.name
  59. def confirm_checkpoints(p, xs):
  60. for x in xs:
  61. if modules.sd_models.get_closet_checkpoint_match(x) is None:
  62. raise RuntimeError(f"Unknown checkpoint: {x}")
  63. def apply_clip_skip(p, x, xs):
  64. opts.data["CLIP_stop_at_last_layers"] = x
  65. def apply_upscale_latent_space(p, x, xs):
  66. if x.lower().strip() != '0':
  67. opts.data["use_scale_latent_for_hires_fix"] = True
  68. else:
  69. opts.data["use_scale_latent_for_hires_fix"] = False
  70. def find_vae(name: str):
  71. if name.lower() in ['auto', 'automatic']:
  72. return modules.sd_vae.unspecified
  73. if name.lower() == 'none':
  74. return None
  75. else:
  76. choices = [x for x in sorted(modules.sd_vae.vae_dict, key=lambda x: len(x)) if name.lower().strip() in x.lower()]
  77. if len(choices) == 0:
  78. print(f"No VAE found for {name}; using automatic")
  79. return modules.sd_vae.unspecified
  80. else:
  81. return modules.sd_vae.vae_dict[choices[0]]
  82. def apply_vae(p, x, xs):
  83. modules.sd_vae.reload_vae_weights(shared.sd_model, vae_file=find_vae(x))
  84. def apply_styles(p: StableDiffusionProcessingTxt2Img, x: str, _):
  85. p.styles.extend(x.split(','))
  86. def apply_uni_pc_order(p, x, xs):
  87. opts.data["uni_pc_order"] = min(x, p.steps - 1)
  88. def apply_face_restore(p, opt, x):
  89. opt = opt.lower()
  90. if opt == 'codeformer':
  91. is_active = True
  92. p.face_restoration_model = 'CodeFormer'
  93. elif opt == 'gfpgan':
  94. is_active = True
  95. p.face_restoration_model = 'GFPGAN'
  96. else:
  97. is_active = opt in ('true', 'yes', 'y', '1')
  98. p.restore_faces = is_active
  99. def apply_override(field, boolean: bool = False):
  100. def fun(p, x, xs):
  101. if boolean:
  102. x = True if x.lower() == "true" else False
  103. p.override_settings[field] = x
  104. return fun
  105. def boolean_choice(reverse: bool = False):
  106. def choice():
  107. return ["False", "True"] if reverse else ["True", "False"]
  108. return choice
  109. def format_value_add_label(p, opt, x):
  110. if type(x) == float:
  111. x = round(x, 8)
  112. return f"{opt.label}: {x}"
  113. def format_value(p, opt, x):
  114. if type(x) == float:
  115. x = round(x, 8)
  116. return x
  117. def format_value_join_list(p, opt, x):
  118. return ", ".join(x)
  119. def do_nothing(p, x, xs):
  120. pass
  121. def format_nothing(p, opt, x):
  122. return ""
  123. def format_remove_path(p, opt, x):
  124. return os.path.basename(x)
  125. def str_permutations(x):
  126. """dummy function for specifying it in AxisOption's type when you want to get a list of permutations"""
  127. return x
  128. def list_to_csv_string(data_list):
  129. with StringIO() as o:
  130. csv.writer(o).writerow(data_list)
  131. return o.getvalue().strip()
  132. class AxisOption:
  133. def __init__(self, label, type, apply, format_value=format_value_add_label, confirm=None, cost=0.0, choices=None):
  134. self.label = label
  135. self.type = type
  136. self.apply = apply
  137. self.format_value = format_value
  138. self.confirm = confirm
  139. self.cost = cost
  140. self.choices = choices
  141. class AxisOptionImg2Img(AxisOption):
  142. def __init__(self, *args, **kwargs):
  143. super().__init__(*args, **kwargs)
  144. self.is_img2img = True
  145. class AxisOptionTxt2Img(AxisOption):
  146. def __init__(self, *args, **kwargs):
  147. super().__init__(*args, **kwargs)
  148. self.is_img2img = False
  149. axis_options = [
  150. AxisOption("Nothing", str, do_nothing, format_value=format_nothing),
  151. AxisOption("Seed", int, apply_field("seed")),
  152. AxisOption("Var. seed", int, apply_field("subseed")),
  153. AxisOption("Var. strength", float, apply_field("subseed_strength")),
  154. AxisOption("Steps", int, apply_field("steps")),
  155. AxisOptionTxt2Img("Hires steps", int, apply_field("hr_second_pass_steps")),
  156. AxisOption("CFG Scale", float, apply_field("cfg_scale")),
  157. AxisOptionImg2Img("Image CFG Scale", float, apply_field("image_cfg_scale")),
  158. AxisOption("Prompt S/R", str, apply_prompt, format_value=format_value),
  159. AxisOption("Prompt order", str_permutations, apply_order, format_value=format_value_join_list),
  160. AxisOptionTxt2Img("Sampler", str, apply_field("sampler_name"), format_value=format_value, confirm=confirm_samplers, choices=lambda: [x.name for x in sd_samplers.samplers]),
  161. AxisOptionTxt2Img("Hires sampler", str, apply_field("hr_sampler_name"), confirm=confirm_samplers, choices=lambda: [x.name for x in sd_samplers.samplers_for_img2img]),
  162. AxisOptionImg2Img("Sampler", str, apply_field("sampler_name"), format_value=format_value, confirm=confirm_samplers, choices=lambda: [x.name for x in sd_samplers.samplers_for_img2img]),
  163. AxisOption("Checkpoint name", str, apply_checkpoint, format_value=format_remove_path, confirm=confirm_checkpoints, cost=1.0, choices=lambda: sorted(sd_models.checkpoints_list, key=str.casefold)),
  164. AxisOption("Negative Guidance minimum sigma", float, apply_field("s_min_uncond")),
  165. AxisOption("Sigma Churn", float, apply_field("s_churn")),
  166. AxisOption("Sigma min", float, apply_field("s_tmin")),
  167. AxisOption("Sigma max", float, apply_field("s_tmax")),
  168. AxisOption("Sigma noise", float, apply_field("s_noise")),
  169. AxisOption("Schedule type", str, apply_override("k_sched_type"), choices=lambda: list(sd_samplers_kdiffusion.k_diffusion_scheduler)),
  170. AxisOption("Schedule min sigma", float, apply_override("sigma_min")),
  171. AxisOption("Schedule max sigma", float, apply_override("sigma_max")),
  172. AxisOption("Schedule rho", float, apply_override("rho")),
  173. AxisOption("Eta", float, apply_field("eta")),
  174. AxisOption("Clip skip", int, apply_clip_skip),
  175. AxisOption("Denoising", float, apply_field("denoising_strength")),
  176. AxisOptionTxt2Img("Hires upscaler", str, apply_field("hr_upscaler"), choices=lambda: [*shared.latent_upscale_modes, *[x.name for x in shared.sd_upscalers]]),
  177. AxisOptionImg2Img("Cond. Image Mask Weight", float, apply_field("inpainting_mask_weight")),
  178. AxisOption("VAE", str, apply_vae, cost=0.7, choices=lambda: ['None'] + list(sd_vae.vae_dict)),
  179. AxisOption("Styles", str, apply_styles, choices=lambda: list(shared.prompt_styles.styles)),
  180. AxisOption("UniPC Order", int, apply_uni_pc_order, cost=0.5),
  181. AxisOption("Face restore", str, apply_face_restore, format_value=format_value),
  182. AxisOption("Token merging ratio", float, apply_override('token_merging_ratio')),
  183. AxisOption("Token merging ratio high-res", float, apply_override('token_merging_ratio_hr')),
  184. AxisOption("Always discard next-to-last sigma", str, apply_override('always_discard_next_to_last_sigma', boolean=True), choices=boolean_choice(reverse=True)),
  185. ]
  186. def draw_xyz_grid(p, xs, ys, zs, x_labels, y_labels, z_labels, cell, draw_legend, include_lone_images, include_sub_grids, first_axes_processed, second_axes_processed, margin_size):
  187. hor_texts = [[images.GridAnnotation(x)] for x in x_labels]
  188. ver_texts = [[images.GridAnnotation(y)] for y in y_labels]
  189. title_texts = [[images.GridAnnotation(z)] for z in z_labels]
  190. list_size = (len(xs) * len(ys) * len(zs))
  191. processed_result = None
  192. state.job_count = list_size * p.n_iter
  193. def process_cell(x, y, z, ix, iy, iz):
  194. nonlocal processed_result
  195. def index(ix, iy, iz):
  196. return ix + iy * len(xs) + iz * len(xs) * len(ys)
  197. state.job = f"{index(ix, iy, iz) + 1} out of {list_size}"
  198. processed: Processed = cell(x, y, z, ix, iy, iz)
  199. if processed_result is None:
  200. # Use our first processed result object as a template container to hold our full results
  201. processed_result = copy(processed)
  202. processed_result.images = [None] * list_size
  203. processed_result.all_prompts = [None] * list_size
  204. processed_result.all_seeds = [None] * list_size
  205. processed_result.infotexts = [None] * list_size
  206. processed_result.index_of_first_image = 1
  207. idx = index(ix, iy, iz)
  208. if processed.images:
  209. # Non-empty list indicates some degree of success.
  210. processed_result.images[idx] = processed.images[0]
  211. processed_result.all_prompts[idx] = processed.prompt
  212. processed_result.all_seeds[idx] = processed.seed
  213. processed_result.infotexts[idx] = processed.infotexts[0]
  214. else:
  215. cell_mode = "P"
  216. cell_size = (processed_result.width, processed_result.height)
  217. if processed_result.images[0] is not None:
  218. cell_mode = processed_result.images[0].mode
  219. # This corrects size in case of batches:
  220. cell_size = processed_result.images[0].size
  221. processed_result.images[idx] = Image.new(cell_mode, cell_size)
  222. if first_axes_processed == 'x':
  223. for ix, x in enumerate(xs):
  224. if second_axes_processed == 'y':
  225. for iy, y in enumerate(ys):
  226. for iz, z in enumerate(zs):
  227. process_cell(x, y, z, ix, iy, iz)
  228. else:
  229. for iz, z in enumerate(zs):
  230. for iy, y in enumerate(ys):
  231. process_cell(x, y, z, ix, iy, iz)
  232. elif first_axes_processed == 'y':
  233. for iy, y in enumerate(ys):
  234. if second_axes_processed == 'x':
  235. for ix, x in enumerate(xs):
  236. for iz, z in enumerate(zs):
  237. process_cell(x, y, z, ix, iy, iz)
  238. else:
  239. for iz, z in enumerate(zs):
  240. for ix, x in enumerate(xs):
  241. process_cell(x, y, z, ix, iy, iz)
  242. elif first_axes_processed == 'z':
  243. for iz, z in enumerate(zs):
  244. if second_axes_processed == 'x':
  245. for ix, x in enumerate(xs):
  246. for iy, y in enumerate(ys):
  247. process_cell(x, y, z, ix, iy, iz)
  248. else:
  249. for iy, y in enumerate(ys):
  250. for ix, x in enumerate(xs):
  251. process_cell(x, y, z, ix, iy, iz)
  252. if not processed_result:
  253. # Should never happen, I've only seen it on one of four open tabs and it needed to refresh.
  254. print("Unexpected error: Processing could not begin, you may need to refresh the tab or restart the service.")
  255. return Processed(p, [])
  256. elif not any(processed_result.images):
  257. print("Unexpected error: draw_xyz_grid failed to return even a single processed image")
  258. return Processed(p, [])
  259. z_count = len(zs)
  260. for i in range(z_count):
  261. start_index = (i * len(xs) * len(ys)) + i
  262. end_index = start_index + len(xs) * len(ys)
  263. grid = images.image_grid(processed_result.images[start_index:end_index], rows=len(ys))
  264. if draw_legend:
  265. grid = images.draw_grid_annotations(grid, processed_result.images[start_index].size[0], processed_result.images[start_index].size[1], hor_texts, ver_texts, margin_size)
  266. processed_result.images.insert(i, grid)
  267. processed_result.all_prompts.insert(i, processed_result.all_prompts[start_index])
  268. processed_result.all_seeds.insert(i, processed_result.all_seeds[start_index])
  269. processed_result.infotexts.insert(i, processed_result.infotexts[start_index])
  270. sub_grid_size = processed_result.images[0].size
  271. z_grid = images.image_grid(processed_result.images[:z_count], rows=1)
  272. if draw_legend:
  273. z_grid = images.draw_grid_annotations(z_grid, sub_grid_size[0], sub_grid_size[1], title_texts, [[images.GridAnnotation()]])
  274. processed_result.images.insert(0, z_grid)
  275. # TODO: Deeper aspects of the program rely on grid info being misaligned between metadata arrays, which is not ideal.
  276. # processed_result.all_prompts.insert(0, processed_result.all_prompts[0])
  277. # processed_result.all_seeds.insert(0, processed_result.all_seeds[0])
  278. processed_result.infotexts.insert(0, processed_result.infotexts[0])
  279. return processed_result
  280. class SharedSettingsStackHelper(object):
  281. def __enter__(self):
  282. self.CLIP_stop_at_last_layers = opts.CLIP_stop_at_last_layers
  283. self.vae = opts.sd_vae
  284. self.uni_pc_order = opts.uni_pc_order
  285. def __exit__(self, exc_type, exc_value, tb):
  286. opts.data["sd_vae"] = self.vae
  287. opts.data["uni_pc_order"] = self.uni_pc_order
  288. modules.sd_models.reload_model_weights()
  289. modules.sd_vae.reload_vae_weights()
  290. opts.data["CLIP_stop_at_last_layers"] = self.CLIP_stop_at_last_layers
  291. re_range = re.compile(r"\s*([+-]?\s*\d+)\s*-\s*([+-]?\s*\d+)(?:\s*\(([+-]\d+)\s*\))?\s*")
  292. re_range_float = re.compile(r"\s*([+-]?\s*\d+(?:.\d*)?)\s*-\s*([+-]?\s*\d+(?:.\d*)?)(?:\s*\(([+-]\d+(?:.\d*)?)\s*\))?\s*")
  293. re_range_count = re.compile(r"\s*([+-]?\s*\d+)\s*-\s*([+-]?\s*\d+)(?:\s*\[(\d+)\s*])?\s*")
  294. re_range_count_float = re.compile(r"\s*([+-]?\s*\d+(?:.\d*)?)\s*-\s*([+-]?\s*\d+(?:.\d*)?)(?:\s*\[(\d+(?:.\d*)?)\s*])?\s*")
  295. class Script(scripts.Script):
  296. def title(self):
  297. return "X/Y/Z plot"
  298. def ui(self, is_img2img):
  299. self.current_axis_options = [x for x in axis_options if type(x) == AxisOption or x.is_img2img == is_img2img]
  300. with gr.Row():
  301. with gr.Column(scale=19):
  302. with gr.Row():
  303. x_type = gr.Dropdown(label="X type", choices=[x.label for x in self.current_axis_options], value=self.current_axis_options[1].label, type="index", elem_id=self.elem_id("x_type"))
  304. x_values = gr.Textbox(label="X values", lines=1, elem_id=self.elem_id("x_values"))
  305. x_values_dropdown = gr.Dropdown(label="X values", visible=False, multiselect=True, interactive=True)
  306. fill_x_button = ToolButton(value=fill_values_symbol, elem_id="xyz_grid_fill_x_tool_button", visible=False)
  307. with gr.Row():
  308. y_type = gr.Dropdown(label="Y type", choices=[x.label for x in self.current_axis_options], value=self.current_axis_options[0].label, type="index", elem_id=self.elem_id("y_type"))
  309. y_values = gr.Textbox(label="Y values", lines=1, elem_id=self.elem_id("y_values"))
  310. y_values_dropdown = gr.Dropdown(label="Y values", visible=False, multiselect=True, interactive=True)
  311. fill_y_button = ToolButton(value=fill_values_symbol, elem_id="xyz_grid_fill_y_tool_button", visible=False)
  312. with gr.Row():
  313. z_type = gr.Dropdown(label="Z type", choices=[x.label for x in self.current_axis_options], value=self.current_axis_options[0].label, type="index", elem_id=self.elem_id("z_type"))
  314. z_values = gr.Textbox(label="Z values", lines=1, elem_id=self.elem_id("z_values"))
  315. z_values_dropdown = gr.Dropdown(label="Z values", visible=False, multiselect=True, interactive=True)
  316. fill_z_button = ToolButton(value=fill_values_symbol, elem_id="xyz_grid_fill_z_tool_button", visible=False)
  317. with gr.Row(variant="compact", elem_id="axis_options"):
  318. with gr.Column():
  319. draw_legend = gr.Checkbox(label='Draw legend', value=True, elem_id=self.elem_id("draw_legend"))
  320. no_fixed_seeds = gr.Checkbox(label='Keep -1 for seeds', value=False, elem_id=self.elem_id("no_fixed_seeds"))
  321. with gr.Column():
  322. include_lone_images = gr.Checkbox(label='Include Sub Images', value=False, elem_id=self.elem_id("include_lone_images"))
  323. include_sub_grids = gr.Checkbox(label='Include Sub Grids', value=False, elem_id=self.elem_id("include_sub_grids"))
  324. with gr.Column():
  325. use_dropdown = gr.Checkbox(label='use dropdown', value=True, elem_id=self.elem_id("use_dropdown"))
  326. with gr.Column():
  327. margin_size = gr.Slider(label="Grid margins (px)", minimum=0, maximum=500, value=0, step=2, elem_id=self.elem_id("margin_size"))
  328. with gr.Row(variant="compact", elem_id="swap_axes"):
  329. swap_xy_axes_button = gr.Button(value="Swap X/Y axes", elem_id="xy_grid_swap_axes_button")
  330. swap_yz_axes_button = gr.Button(value="Swap Y/Z axes", elem_id="yz_grid_swap_axes_button")
  331. swap_xz_axes_button = gr.Button(value="Swap X/Z axes", elem_id="xz_grid_swap_axes_button")
  332. def swap_axes(axis1_type, axis1_values, axis1_values_dropdown, axis2_type, axis2_values, axis2_values_dropdown):
  333. return self.current_axis_options[axis2_type].label, axis2_values, axis2_values_dropdown, self.current_axis_options[axis1_type].label, axis1_values, axis1_values_dropdown
  334. xy_swap_args = [x_type, x_values, x_values_dropdown, y_type, y_values, y_values_dropdown]
  335. swap_xy_axes_button.click(swap_axes, inputs=xy_swap_args, outputs=xy_swap_args)
  336. yz_swap_args = [y_type, y_values, y_values_dropdown, z_type, z_values, z_values_dropdown]
  337. swap_yz_axes_button.click(swap_axes, inputs=yz_swap_args, outputs=yz_swap_args)
  338. xz_swap_args = [x_type, x_values, x_values_dropdown, z_type, z_values, z_values_dropdown]
  339. swap_xz_axes_button.click(swap_axes, inputs=xz_swap_args, outputs=xz_swap_args)
  340. def fill(axis_type):
  341. axis = self.current_axis_options[axis_type]
  342. if axis.choices:
  343. if use_dropdown.value:
  344. return gr.update(), axis.choices()
  345. else:
  346. return list_to_csv_string(axis.choices()), gr.update()
  347. else:
  348. return gr.update(), gr.update()
  349. fill_x_button.click(fn=fill, inputs=[x_type], outputs=[x_values, x_values_dropdown])
  350. fill_y_button.click(fn=fill, inputs=[y_type], outputs=[y_values, y_values_dropdown])
  351. fill_z_button.click(fn=fill, inputs=[z_type], outputs=[z_values, z_values_dropdown])
  352. def select_axis(axis_type, axis_values_dropdown):
  353. choices = self.current_axis_options[axis_type].choices
  354. has_choices = choices is not None
  355. current_values = axis_values_dropdown
  356. if has_choices:
  357. choices = choices()
  358. if isinstance(current_values, str):
  359. current_values = current_values.split(",")
  360. current_values = list(filter(lambda x: x in choices, current_values))
  361. return gr.Button.update(visible=has_choices), gr.Textbox.update(visible=not has_choices or not use_dropdown.value), gr.update(choices=choices if has_choices else None, visible=has_choices and use_dropdown.value, value=current_values)
  362. x_type.change(fn=select_axis, inputs=[x_type, x_values_dropdown], outputs=[fill_x_button, x_values, x_values_dropdown])
  363. y_type.change(fn=select_axis, inputs=[y_type, y_values_dropdown], outputs=[fill_y_button, y_values, y_values_dropdown])
  364. z_type.change(fn=select_axis, inputs=[z_type, z_values_dropdown], outputs=[fill_z_button, z_values, z_values_dropdown])
  365. def change_choice_mode(_use_dropdown, x_type, x_values_dropdown, y_type, y_values_dropdown, z_type, z_values_dropdown):
  366. use_dropdown.value = _use_dropdown
  367. _fill_x_button, _x_values, _x_values_dropdown = select_axis(x_type, x_values_dropdown)
  368. _fill_y_button, _y_values, _y_values_dropdown = select_axis(y_type, y_values_dropdown)
  369. _fill_z_button, _z_values, _z_values_dropdown = select_axis(z_type, z_values_dropdown)
  370. return _fill_x_button, _x_values, _x_values_dropdown, _fill_y_button, _y_values, _y_values_dropdown, _fill_z_button, _z_values, _z_values_dropdown
  371. use_dropdown.change(fn=change_choice_mode, inputs=[use_dropdown, x_type, x_values_dropdown, y_type, y_values_dropdown, z_type, z_values_dropdown], outputs=[fill_x_button, x_values, x_values_dropdown, fill_y_button, y_values, y_values_dropdown, fill_z_button, z_values, z_values_dropdown])
  372. def get_dropdown_update_from_params(axis, params):
  373. val_key = f"{axis} Values"
  374. vals = params.get(val_key, "")
  375. valslist = [x.strip() for x in chain.from_iterable(csv.reader(StringIO(vals))) if x]
  376. return gr.update(value=valslist)
  377. self.infotext_fields = (
  378. (x_type, "X Type"),
  379. (x_values, "X Values"),
  380. (x_values_dropdown, lambda params: get_dropdown_update_from_params("X", params)),
  381. (y_type, "Y Type"),
  382. (y_values, "Y Values"),
  383. (y_values_dropdown, lambda params: get_dropdown_update_from_params("Y", params)),
  384. (z_type, "Z Type"),
  385. (z_values, "Z Values"),
  386. (z_values_dropdown, lambda params: get_dropdown_update_from_params("Z", params)),
  387. )
  388. return [x_type, x_values, x_values_dropdown, y_type, y_values, y_values_dropdown, z_type, z_values, z_values_dropdown, draw_legend, include_lone_images, include_sub_grids, no_fixed_seeds, margin_size, use_dropdown]
  389. def run(self, p, x_type, x_values, x_values_dropdown, y_type, y_values, y_values_dropdown, z_type, z_values, z_values_dropdown, draw_legend, include_lone_images, include_sub_grids, no_fixed_seeds, margin_size, use_dropdown):
  390. if not no_fixed_seeds:
  391. modules.processing.fix_seed(p)
  392. if not opts.return_grid:
  393. p.batch_size = 1
  394. def process_axis(opt, vals, vals_dropdown):
  395. if opt.label == 'Nothing':
  396. return [0]
  397. if opt.choices is not None and use_dropdown:
  398. valslist = vals_dropdown
  399. else:
  400. valslist = [x.strip() for x in chain.from_iterable(csv.reader(StringIO(vals))) if x]
  401. if opt.type == int:
  402. valslist_ext = []
  403. for val in valslist:
  404. m = re_range.fullmatch(val)
  405. mc = re_range_count.fullmatch(val)
  406. if m is not None:
  407. start = int(m.group(1))
  408. end = int(m.group(2))+1
  409. step = int(m.group(3)) if m.group(3) is not None else 1
  410. valslist_ext += list(range(start, end, step))
  411. elif mc is not None:
  412. start = int(mc.group(1))
  413. end = int(mc.group(2))
  414. num = int(mc.group(3)) if mc.group(3) is not None else 1
  415. valslist_ext += [int(x) for x in np.linspace(start=start, stop=end, num=num).tolist()]
  416. else:
  417. valslist_ext.append(val)
  418. valslist = valslist_ext
  419. elif opt.type == float:
  420. valslist_ext = []
  421. for val in valslist:
  422. m = re_range_float.fullmatch(val)
  423. mc = re_range_count_float.fullmatch(val)
  424. if m is not None:
  425. start = float(m.group(1))
  426. end = float(m.group(2))
  427. step = float(m.group(3)) if m.group(3) is not None else 1
  428. valslist_ext += np.arange(start, end + step, step).tolist()
  429. elif mc is not None:
  430. start = float(mc.group(1))
  431. end = float(mc.group(2))
  432. num = int(mc.group(3)) if mc.group(3) is not None else 1
  433. valslist_ext += np.linspace(start=start, stop=end, num=num).tolist()
  434. else:
  435. valslist_ext.append(val)
  436. valslist = valslist_ext
  437. elif opt.type == str_permutations:
  438. valslist = list(permutations(valslist))
  439. valslist = [opt.type(x) for x in valslist]
  440. # Confirm options are valid before starting
  441. if opt.confirm:
  442. opt.confirm(p, valslist)
  443. return valslist
  444. x_opt = self.current_axis_options[x_type]
  445. if x_opt.choices is not None and use_dropdown:
  446. x_values = ",".join(x_values_dropdown)
  447. xs = process_axis(x_opt, x_values, x_values_dropdown)
  448. y_opt = self.current_axis_options[y_type]
  449. if y_opt.choices is not None and use_dropdown:
  450. y_values = ",".join(y_values_dropdown)
  451. ys = process_axis(y_opt, y_values, y_values_dropdown)
  452. z_opt = self.current_axis_options[z_type]
  453. if z_opt.choices is not None and use_dropdown:
  454. z_values = ",".join(z_values_dropdown)
  455. zs = process_axis(z_opt, z_values, z_values_dropdown)
  456. # this could be moved to common code, but unlikely to be ever triggered anywhere else
  457. Image.MAX_IMAGE_PIXELS = None # disable check in Pillow and rely on check below to allow large custom image sizes
  458. grid_mp = round(len(xs) * len(ys) * len(zs) * p.width * p.height / 1000000)
  459. assert grid_mp < opts.img_max_size_mp, f'Error: Resulting grid would be too large ({grid_mp} MPixels) (max configured size is {opts.img_max_size_mp} MPixels)'
  460. def fix_axis_seeds(axis_opt, axis_list):
  461. if axis_opt.label in ['Seed', 'Var. seed']:
  462. return [int(random.randrange(4294967294)) if val is None or val == '' or val == -1 else val for val in axis_list]
  463. else:
  464. return axis_list
  465. if not no_fixed_seeds:
  466. xs = fix_axis_seeds(x_opt, xs)
  467. ys = fix_axis_seeds(y_opt, ys)
  468. zs = fix_axis_seeds(z_opt, zs)
  469. if x_opt.label == 'Steps':
  470. total_steps = sum(xs) * len(ys) * len(zs)
  471. elif y_opt.label == 'Steps':
  472. total_steps = sum(ys) * len(xs) * len(zs)
  473. elif z_opt.label == 'Steps':
  474. total_steps = sum(zs) * len(xs) * len(ys)
  475. else:
  476. total_steps = p.steps * len(xs) * len(ys) * len(zs)
  477. if isinstance(p, StableDiffusionProcessingTxt2Img) and p.enable_hr:
  478. if x_opt.label == "Hires steps":
  479. total_steps += sum(xs) * len(ys) * len(zs)
  480. elif y_opt.label == "Hires steps":
  481. total_steps += sum(ys) * len(xs) * len(zs)
  482. elif z_opt.label == "Hires steps":
  483. total_steps += sum(zs) * len(xs) * len(ys)
  484. elif p.hr_second_pass_steps:
  485. total_steps += p.hr_second_pass_steps * len(xs) * len(ys) * len(zs)
  486. else:
  487. total_steps *= 2
  488. total_steps *= p.n_iter
  489. image_cell_count = p.n_iter * p.batch_size
  490. cell_console_text = f"; {image_cell_count} images per cell" if image_cell_count > 1 else ""
  491. plural_s = 's' if len(zs) > 1 else ''
  492. print(f"X/Y/Z plot will create {len(xs) * len(ys) * len(zs) * image_cell_count} images on {len(zs)} {len(xs)}x{len(ys)} grid{plural_s}{cell_console_text}. (Total steps to process: {total_steps})")
  493. shared.total_tqdm.updateTotal(total_steps)
  494. state.xyz_plot_x = AxisInfo(x_opt, xs)
  495. state.xyz_plot_y = AxisInfo(y_opt, ys)
  496. state.xyz_plot_z = AxisInfo(z_opt, zs)
  497. # If one of the axes is very slow to change between (like SD model
  498. # checkpoint), then make sure it is in the outer iteration of the nested
  499. # `for` loop.
  500. first_axes_processed = 'z'
  501. second_axes_processed = 'y'
  502. if x_opt.cost > y_opt.cost and x_opt.cost > z_opt.cost:
  503. first_axes_processed = 'x'
  504. if y_opt.cost > z_opt.cost:
  505. second_axes_processed = 'y'
  506. else:
  507. second_axes_processed = 'z'
  508. elif y_opt.cost > x_opt.cost and y_opt.cost > z_opt.cost:
  509. first_axes_processed = 'y'
  510. if x_opt.cost > z_opt.cost:
  511. second_axes_processed = 'x'
  512. else:
  513. second_axes_processed = 'z'
  514. elif z_opt.cost > x_opt.cost and z_opt.cost > y_opt.cost:
  515. first_axes_processed = 'z'
  516. if x_opt.cost > y_opt.cost:
  517. second_axes_processed = 'x'
  518. else:
  519. second_axes_processed = 'y'
  520. grid_infotext = [None] * (1 + len(zs))
  521. def cell(x, y, z, ix, iy, iz):
  522. if shared.state.interrupted:
  523. return Processed(p, [], p.seed, "")
  524. pc = copy(p)
  525. pc.styles = pc.styles[:]
  526. x_opt.apply(pc, x, xs)
  527. y_opt.apply(pc, y, ys)
  528. z_opt.apply(pc, z, zs)
  529. try:
  530. res = process_images(pc)
  531. except Exception as e:
  532. errors.display(e, "generating image for xyz plot")
  533. res = Processed(p, [], p.seed, "")
  534. # Sets subgrid infotexts
  535. subgrid_index = 1 + iz
  536. if grid_infotext[subgrid_index] is None and ix == 0 and iy == 0:
  537. pc.extra_generation_params = copy(pc.extra_generation_params)
  538. pc.extra_generation_params['Script'] = self.title()
  539. if x_opt.label != 'Nothing':
  540. pc.extra_generation_params["X Type"] = x_opt.label
  541. pc.extra_generation_params["X Values"] = x_values
  542. if x_opt.label in ["Seed", "Var. seed"] and not no_fixed_seeds:
  543. pc.extra_generation_params["Fixed X Values"] = ", ".join([str(x) for x in xs])
  544. if y_opt.label != 'Nothing':
  545. pc.extra_generation_params["Y Type"] = y_opt.label
  546. pc.extra_generation_params["Y Values"] = y_values
  547. if y_opt.label in ["Seed", "Var. seed"] and not no_fixed_seeds:
  548. pc.extra_generation_params["Fixed Y Values"] = ", ".join([str(y) for y in ys])
  549. grid_infotext[subgrid_index] = processing.create_infotext(pc, pc.all_prompts, pc.all_seeds, pc.all_subseeds)
  550. # Sets main grid infotext
  551. if grid_infotext[0] is None and ix == 0 and iy == 0 and iz == 0:
  552. pc.extra_generation_params = copy(pc.extra_generation_params)
  553. if z_opt.label != 'Nothing':
  554. pc.extra_generation_params["Z Type"] = z_opt.label
  555. pc.extra_generation_params["Z Values"] = z_values
  556. if z_opt.label in ["Seed", "Var. seed"] and not no_fixed_seeds:
  557. pc.extra_generation_params["Fixed Z Values"] = ", ".join([str(z) for z in zs])
  558. grid_infotext[0] = processing.create_infotext(pc, pc.all_prompts, pc.all_seeds, pc.all_subseeds)
  559. return res
  560. with SharedSettingsStackHelper():
  561. processed = draw_xyz_grid(
  562. p,
  563. xs=xs,
  564. ys=ys,
  565. zs=zs,
  566. x_labels=[x_opt.format_value(p, x_opt, x) for x in xs],
  567. y_labels=[y_opt.format_value(p, y_opt, y) for y in ys],
  568. z_labels=[z_opt.format_value(p, z_opt, z) for z in zs],
  569. cell=cell,
  570. draw_legend=draw_legend,
  571. include_lone_images=include_lone_images,
  572. include_sub_grids=include_sub_grids,
  573. first_axes_processed=first_axes_processed,
  574. second_axes_processed=second_axes_processed,
  575. margin_size=margin_size
  576. )
  577. if not processed.images:
  578. # It broke, no further handling needed.
  579. return processed
  580. z_count = len(zs)
  581. # Set the grid infotexts to the real ones with extra_generation_params (1 main grid + z_count sub-grids)
  582. processed.infotexts[:1+z_count] = grid_infotext[:1+z_count]
  583. if not include_lone_images:
  584. # Don't need sub-images anymore, drop from list:
  585. processed.images = processed.images[:z_count+1]
  586. if opts.grid_save:
  587. # Auto-save main and sub-grids:
  588. grid_count = z_count + 1 if z_count > 1 else 1
  589. for g in range(grid_count):
  590. # TODO: See previous comment about intentional data misalignment.
  591. adj_g = g-1 if g > 0 else g
  592. images.save_image(processed.images[g], p.outpath_grids, "xyz_grid", info=processed.infotexts[g], extension=opts.grid_format, prompt=processed.all_prompts[adj_g], seed=processed.all_seeds[adj_g], grid=True, p=processed)
  593. if not include_sub_grids:
  594. # Done with sub-grids, drop all related information:
  595. for _ in range(z_count):
  596. del processed.images[1]
  597. del processed.all_prompts[1]
  598. del processed.all_seeds[1]
  599. del processed.infotexts[1]
  600. return processed