Datasets:
Download instanthdr_render.py from Bugjudger/HDR_Pretrain: direct link, hf CLI and curl.
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- Download file 12.9 kB
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https://huggingface.co/datasets/Bugjudger/HDR_Pretrain/resolve/main/instanthdr_render.py
- Command line
-
hf download hf://datasets/Bugjudger/HDR_Pretrain/instanthdr_render.py
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curl -L -o instanthdr_render.py https://huggingface.co/datasets/Bugjudger/HDR_Pretrain/resolve/main/instanthdr_render.py
12.9 kB
| import bpy | |
| import os | |
| import json | |
| import math | |
| import numpy as np | |
| import random | |
| from math import radians | |
| import struct | |
| import mathutils | |
| # --- Config Parameters --- | |
| CONFIG = { | |
| "RESULTS_PATH": os.environ.get("RESULTS_PATH"), | |
| "EXPOSURES": [0.125, 0.25, 1.0, 2.0, 8.0], | |
| # "EXPOSURES": [0.666, 0.333, 0.166, 0.1, 0.05], | |
| # "EXPOSURES": [0.333, 0.125, 0.066, 0.0333, 0.0166], | |
| # "EXPOSURES": [0.333, 0.166, 0.1, 0.05, 0.0222], | |
| # "EXPOSURES": [2.0, 1.0, 0.5, 0.25, 0.125], | |
| # "EXPOSURES": [0.03125, 0.125, 0.5, 2.0, 8], | |
| # "EXPOSURES": [0.0625, 0.25, 1, 4.0, 16], | |
| # "EXPOSURES": [0.125, 0.5, 2.0, 8.0, 32.0], | |
| # "EXPOSURES": [8, 32, 128, 512, 2048], | |
| # ================ Upload From Camera ================ | |
| "ROWS": 5, | |
| "COLS": 7, | |
| "ROT_STEP": 2.5, | |
| # "ROT_STEP": 5.0, | |
| "RESOLUTION": 448, | |
| "SAMPLES": 2048, | |
| "TONEMAP_POOL": ['AgX', 'Filmic', 'Standard'], | |
| } | |
| chosen_tonemap = None | |
| import math | |
| def update_config_from_camera(): | |
| cam = bpy.data.objects.get('Camera') | |
| if not cam: | |
| print("Error: No object named 'Camera' found in the scene") | |
| return | |
| loc = cam.location | |
| CONFIG["INIT_LOC"] = np.array([[loc.x], [loc.z], [-loc.y]]) | |
| CONFIG["RADIUS"] = loc.length | |
| CONFIG["MAX_DISTANCE"] = loc.length * 1.5 | |
| rot = cam.rotation_euler | |
| pitch = math.degrees(rot.x) - 90 | |
| yaw = math.degrees(rot.z) | |
| roll = math.degrees(rot.y) | |
| CONFIG["INIT_ROT"] = [pitch, yaw, roll] | |
| print(f"--- CONFIG updated automatically ---") | |
| print(f"INIT_LOC: {CONFIG['INIT_LOC'].flatten()}") | |
| print(f"INIT_ROT: {CONFIG['INIT_ROT']}") | |
| print(f"RADIUS: {CONFIG['RADIUS']:.4f}") | |
| print(f"MAX_DISTANCE: {CONFIG['MAX_DISTANCE']:.4f}") | |
| def setup_environment(): | |
| global chosen_tonemap | |
| scene = bpy.context.scene | |
| scene.render.engine = 'CYCLES' | |
| scene.cycles.samples = CONFIG["SAMPLES"] | |
| scene.render.resolution_x = CONFIG["RESOLUTION"] | |
| scene.render.resolution_y = CONFIG["RESOLUTION"] | |
| scene.render.resolution_percentage = 100 | |
| scene.render.dither_intensity = 0.0 | |
| scene.render.film_transparent = True | |
| scene.render.use_persistent_data = True | |
| # Default HDR output settings | |
| scene.render.image_settings.file_format = 'OPEN_EXR' | |
| scene.render.image_settings.color_depth = '32' | |
| # Randomly select Tonemapping | |
| chosen_tonemap = random.choice(CONFIG["TONEMAP_POOL"]) if chosen_tonemap is None else chosen_tonemap | |
| bpy.context.scene.view_settings.view_transform = chosen_tonemap | |
| # GPU acceleration | |
| try: | |
| cprefs = bpy.context.preferences.addons['cycles'].preferences | |
| cprefs.compute_device_type = 'OPTIX' | |
| cprefs.get_devices() | |
| for d in cprefs.devices: d.use = True | |
| scene.cycles.device = 'GPU' | |
| except: | |
| print("Using CPU Rendering...") | |
| def setup_nodes(save_root): | |
| scene = bpy.context.scene | |
| scene.use_nodes = True | |
| tree = scene.node_tree | |
| tree.nodes.clear() | |
| rl = tree.nodes.new('CompositorNodeRLayers') | |
| scene.view_layers["ViewLayer"].use_pass_normal = True | |
| scene.view_layers["ViewLayer"].use_pass_z = True | |
| # --- 1. Depth and normal output (PNG) --- | |
| aux_out = tree.nodes.new('CompositorNodeOutputFile') | |
| aux_out.format.file_format = 'PNG' | |
| map_node = tree.nodes.new('CompositorNodeMapRange') | |
| map_node.inputs['From Max'].default_value = CONFIG["MAX_DISTANCE"] | |
| map_node.inputs['To Min'].default_value = 1 | |
| map_node.inputs['To Max'].default_value = 0 | |
| tree.links.new(rl.outputs['Depth'], map_node.inputs[0]) | |
| aux_out.file_slots[0].path = "depth_" | |
| tree.links.new(map_node.outputs[0], aux_out.inputs[0]) | |
| aux_out.file_slots.new("normal_") | |
| tree.links.new(rl.outputs['Normal'], aux_out.inputs[1]) | |
| # --- 2. Exposure bracket LDR output --- | |
| ldr_out = tree.nodes.new('CompositorNodeOutputFile') | |
| ldr_out.format.file_format = 'PNG' | |
| ldr_out.base_path = "" | |
| ldr_out.file_slots.clear() | |
| for i, exp_val in enumerate(CONFIG["EXPOSURES"]): | |
| mix_node = tree.nodes.new('CompositorNodeMixRGB') | |
| mix_node.blend_type = 'MULTIPLY' | |
| mix_node.inputs[2].default_value = (exp_val, exp_val, exp_val, 1) | |
| mix_node.inputs[0].default_value = 1.0 | |
| slot_name = f"ldr_exp_{str(i).replace('.', '_')}_" | |
| ldr_out.file_slots.new(slot_name) | |
| tree.links.new(rl.outputs['Image'], mix_node.inputs[1]) | |
| tree.links.new(mix_node.outputs[0], ldr_out.inputs[i]) | |
| return aux_out, ldr_out | |
| def get_pose_matrix(pitch_deg, yaw_deg, radius): | |
| phi, theta = radians(pitch_deg), radians(yaw_deg) | |
| trans_t = np.array([[1,0,0,0],[0,1,0,0],[0,0,1,radius],[0,0,0,1]], dtype=float) | |
| rot_phi = np.array([[1,0,0,0],[0,np.cos(phi),-np.sin(phi),0],[0,np.sin(phi),np.cos(phi),0],[0,0,0,1]], dtype=float) | |
| rot_theta = np.array([[np.cos(theta),0,np.sin(theta),0],[0,1,0,0],[-np.sin(theta),0,np.cos(theta),0],[0,0,0,1]], dtype=float) | |
| return rot_theta @ (rot_phi @ trans_t) | |
| def save_as_cameras_bin(data, file_path): | |
| if os.path.exists(file_path): | |
| print(f"Already have {file_path}. Skipping...") | |
| return | |
| w = int(data["w"]) # Width | |
| h = int(data["h"]) # Height | |
| fx = data["fl_x"] # Horizontal focal length | |
| fy = data["fl_y"] # Vertical focal length | |
| cx = data["cx"] # Principal point X | |
| cy = data["cy"] # Principal point Y | |
| with open(file_path, "wb") as f: | |
| # A. First write the camera count: 1 camera (format Q represents uint64) | |
| f.write(struct.pack("<Q", 1)) | |
| # Set ID to 1 (I), set model to 1 for PINHOLE (i), Width (Q), Height (Q) | |
| f.write(struct.pack("<iiQQ", 1, 1, w, h)) | |
| # C. Write the 4 core camera intrinsic parameters: fx, fy, cx, cy (format dddd represents 4 doubles) | |
| f.write(struct.pack("<dddd", fx, fy, cx, cy)) | |
| def save_all_frames_to_bin(json_data, bin_path): | |
| flip_mat = mathutils.Matrix.Scale(-1, 4, (0,1,0)) @ mathutils.Matrix.Scale(-1, 4, (0,0,1)) | |
| if os.path.exists(bin_path): | |
| f = open(bin_path, "r+b") | |
| total = struct.unpack("<Q", f.read(8))[0] | |
| f.seek(0, 2) # Move to the end of the file | |
| else: | |
| f = open(bin_path, "wb") | |
| f.write(struct.pack("<Q", 0)) | |
| total = 0 | |
| for frame in json_data["frames"]: | |
| total += 1 | |
| m = mathutils.Matrix(frame["transform_matrix"]) | |
| w2c = (m @ flip_mat).inverted() | |
| q = w2c.to_quaternion() | |
| t = w2c.translation | |
| # Match the reader exactly: <I dddd ddd I -> 64 bytes | |
| f.write(struct.pack( | |
| "<I dddd ddd I", | |
| total, | |
| q.w, q.x, q.y, q.z, | |
| t.x, t.y, t.z, | |
| 1 | |
| )) | |
| name = os.path.basename(frame["file_path"]) # train_hdr_000.exr | |
| name = name.replace("train_hdr_", "train_ldr_").replace("test_hdr_", "test_ldr_").replace(".exr", "_3.png") | |
| name = name.encode("utf-8") + b"\x00" | |
| # name = os.path.basename(frame["file_path"]).encode("utf-8") + b"\x00" | |
| f.write(name) | |
| f.write(struct.pack("<Q", 0)) # num_points = 0 | |
| f.seek(0) | |
| f.write(struct.pack("<Q", total)) | |
| f.close() | |
| return | |
| def render_task(is_train=True): | |
| global chosen_tonemap | |
| sub_folder = "train" if is_train else "test" | |
| flag = 1 if is_train else 0 | |
| # Resolve outputs from the dataset root, independently of the .blend location. | |
| root_path = os.path.join(os.path.dirname(os.path.abspath(__file__)), CONFIG["RESULTS_PATH"]) | |
| setup_environment() | |
| cam = bpy.data.objects['Camera'] | |
| bpy.context.scene.camera = cam | |
| bpy.context.scene.frame_set(1) | |
| if cam.animation_data: | |
| cam.animation_data_clear() | |
| aux_node, ldr_node = setup_nodes(root_path) | |
| # Set up the camera rig | |
| if 'Empty' in bpy.data.objects: | |
| bpy.data.objects.remove(bpy.data.objects['Empty'], do_unlink=True) | |
| b_empty = bpy.data.objects.new("Empty", None) | |
| bpy.context.scene.collection.objects.link(b_empty) | |
| cam.parent = b_empty | |
| cam.location = (0, 0, 0) | |
| cam.rotation_euler = (0, 0, 0) | |
| base_matrix = get_pose_matrix(CONFIG["INIT_ROT"][0], CONFIG["INIT_ROT"][1], CONFIG["RADIUS"]) | |
| # json_data = {'camera_angle_x': cam.data.angle_x, 'frames': []} | |
| res_x, res_y = bpy.context.scene.render.resolution_x, bpy.context.scene.render.resolution_y | |
| fl_x = (res_x / 2) / math.tan(cam.data.angle_x / 2) | |
| fl_y = (res_y / 2) / math.tan(cam.data.angle_y / 2) | |
| json_data = { | |
| "camera_angle_x": cam.data.angle_x, | |
| "camera_angle_y": cam.data.angle_y, | |
| "fl_x": fl_x, | |
| "fl_y": fl_y, | |
| "cx": res_x / 2, | |
| "cy": res_y / 2, | |
| "w": res_x, | |
| "h": res_y, | |
| 'tonemapping': chosen_tonemap, # New field | |
| 'look': bpy.context.scene.view_settings.look, | |
| 'exposure_bracket': CONFIG["EXPOSURES"], | |
| "frames": [] | |
| } | |
| exposure_data = {} | |
| sparse_path = os.path.join(root_path, 'sparse', '0') | |
| os.makedirs(sparse_path, exist_ok=True) | |
| save_as_cameras_bin(json_data, os.path.join(sparse_path, 'cameras.bin')) | |
| count = 0 | |
| row_cen, col_cen = (CONFIG["ROWS"]-1)/2, (CONFIG["COLS"]-1)/2 | |
| for r in range(CONFIG["ROWS"]): | |
| for c in range(CONFIG["COLS"]): | |
| if (r + c) % 2 == flag: continue | |
| # Calculate the camera pose | |
| curr_pitch = (r - row_cen) * CONFIG["ROT_STEP"] + CONFIG["INIT_ROT"][0] | |
| curr_yaw = (c - col_cen) * CONFIG["ROT_STEP"] + CONFIG["INIT_ROT"][1] | |
| trans_m = get_pose_matrix(curr_pitch, curr_yaw, CONFIG["RADIUS"]) | |
| loc_offset = trans_m[:3, 3:] - base_matrix[:3, 3:] + CONFIG["INIT_LOC"] | |
| b_empty.location = (loc_offset[0][0], -loc_offset[2][0], loc_offset[1][0]) | |
| b_empty.rotation_euler = (radians(curr_pitch + 90), 0, radians(curr_yaw)) | |
| # bpy.context.view_layer.update() | |
| # DEBUG | |
| # b_empty.location = (2.5, 1.437, 0.4669) | |
| # b_empty.rotation_euler = (radians(80.914), 0, radians(-246.58)) | |
| # print(b_empty.location) | |
| # print(b_empty.rotation_euler) | |
| # print((curr_pitch + 90, 0, curr_yaw)) | |
| # print(cam.location) | |
| # print(cam.rotation_euler) | |
| # print("Camera world position:", cam.matrix_world.to_translation()) | |
| # print(cam.data.lens) | |
| # print(cam.data.sensor_width) | |
| # while True: | |
| # pass | |
| # Set output paths | |
| hdr_dir = os.path.join(root_path, 'images_hdr') | |
| img_dir = os.path.join(root_path, 'images') | |
| depth_dir = os.path.join(root_path, 'depth') | |
| normal_dir = os.path.join(root_path, 'normal') | |
| for d in [hdr_dir, img_dir, depth_dir, normal_dir]: | |
| if not os.path.exists(d): os.makedirs(d) | |
| bpy.context.scene.render.filepath = os.path.join(hdr_dir, f"{sub_folder}_hdr_{count:03d}.exr") | |
| ldr_node.base_path = img_dir | |
| for i, exp_val in enumerate(CONFIG["EXPOSURES"]): | |
| slot_filename = f"{sub_folder}_ldr_{count:03d}_{i}_" | |
| ldr_node.file_slots[i].path = slot_filename | |
| slot_filename = f"{sub_folder}_ldr_{count:03d}_{i}.png" | |
| exposure_data[slot_filename] = exp_val | |
| aux_node.base_path = root_path | |
| aux_node.file_slots[0].path = f"depth/{sub_folder}_depth_{count:03d}_" # Automatically save to the depth subfolder | |
| aux_node.file_slots[1].path = f"normal/{sub_folder}_normal_{count:03d}_" | |
| # Render | |
| bpy.ops.render.render(write_still=True) | |
| # Clean up all PNG suffixes in one pass | |
| for folder in [img_dir, depth_dir, normal_dir]: | |
| for f in os.listdir(folder): | |
| if f.endswith("0001.png"): | |
| os.rename(os.path.join(folder, f), os.path.join(folder, f.replace("_0001.png", ".png"))) | |
| # Save random information to JSON | |
| json_data['frames'].append({ | |
| 'file_path': os.path.join(f"{CONFIG['RESULTS_PATH']}", 'images_hdr', f"{sub_folder}_hdr_{count:03d}.exr"), | |
| 'transform_matrix': [list(row) for row in cam.matrix_world], | |
| }) | |
| count += 1 | |
| with open(os.path.join(root_path, f"transforms_{sub_folder}.json"), 'w') as f: | |
| json.dump(json_data, f, indent=4) | |
| save_all_frames_to_bin(json_data, os.path.join(sparse_path, 'images.bin')) | |
| path = os.path.join(root_path, "exposure.json") | |
| json_data = json.load(open(path)) if os.path.exists(path) else {} | |
| json_data.update(exposure_data) | |
| with open(path, "w") as f: | |
| json.dump(json_data, f, indent=4) | |
| if __name__ == "__main__": | |
| update_config_from_camera() | |
| render_task(True) | |
| render_task(False) | |