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65 Commits
Author SHA1 Message Date
henryruhs 2f388a4d1c vibe code to recent v4 changes 2026-06-15 15:18:21 +02:00
harisreedhar e003785ecb fix asset loading issue 2026-02-24 19:06:44 +05:30
HarisreedharandGitHub 6f70f51d5e Merge pull request #1028 from facefusion/poc/api-update
refactor api
2026-01-26 16:45:32 +05:30
harisreedhar b7b60c186f refactor api 2026-01-26 16:37:33 +05:30
henryruhs ed1c9b0b24 POC for API 2025-12-20 22:16:40 +01:00
henryruhs 72bb4b8865 POC for API 2025-12-20 18:47:38 +01:00
henryruhsandClaude 423fee9d7f feat: add API process functionality
This commit adds comprehensive API process functionality including:
- Remote streaming support
- Session management and context handling
- Media type support (video/audio/image)
- Asset management and path isolation
- Workflow refactoring and optimization
- Security improvements and state violation handling
- Gallery and image resolution features
- Audio support
- Analysis tools
- Version guard

🤖 Generated with [Claude Code](https://claude.com/claude-code)

Co-Authored-By: Claude <noreply@anthropic.com>
2025-12-20 14:35:07 +01:00
harisreedhar bed330f701 create to_image.py 2025-12-19 16:49:31 +05:30
HarisreedharandGitHub 3b93008906 Merge pull request #1009 from facefusion/feat/audio-to-image-as-frames
audio to image as frames
2025-12-19 16:41:21 +05:30
harisreedhar f9f3a9e62b audio to image as frames 2025-12-19 16:03:37 +05:30
harisreedhar 3479cd0af3 audio to image as frames 2025-12-18 19:56:31 +05:30
henryruhs 1e8e763516 Rename local(s) to locale(s) 2025-12-17 18:50:50 +01:00
harisreedharandhenryruhs b2a2f84c24 workflows rename 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 0773403d4b workflows rename 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 23f865640a image to video as sequence 2025-12-17 18:42:13 +01:00
Henry Ruhs 396610e88c feat/ping-endpoint (#1001)
* api: add WebSocket /ping endpoint and update session guard to support WebSocket subprotocol auth; add tests (test_api_ping.py)

* Initial websocket support using ping

* Initial websocket support using ping

* Initial websocket support using ping

* Combine imports
2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 286d25e91d use common analyse_image method 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs deb5909f91 to video unification 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 17f24784ad to video unification 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs e9d9dec598 detect workflow 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 12ab871289 changes
restructure conditional methods to a fall-through pattern

common process_temp_frame for all workflow
2025-12-17 18:42:13 +01:00
Henry Ruhs 44830ffd9d Feat/session context (#993)
* Add simple session context

* Add simple session context
2025-12-17 18:42:13 +01:00
Henry Ruhs e13b81207c Add simple path isolation (#992) 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs c7e61d1678 update ffmpeg.set_loop
add test

introduce spawn_frames
2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 50473df4c0 changes 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 2dbf4523fe remove --keep-temp 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 1cfabf6639 Part 2 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 03d1555a6f Part 2 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs cba29311c1 fix 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 35c2022700 part 1 2025-12-17 18:42:13 +01:00
henryruhs 549de72bef Switch workflow args order in tests, Remove old choices in processors 2025-12-17 18:42:13 +01:00
henryruhs 9e6c070629 Switch workflow args order in tests, Remove old choices in processors 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs d4a4cf71d4 add todo
add test

cleanup

remove -w

move --workflow position

fix test

add --worflow, audio-to-image, image-to-image, image-to-video
2025-12-17 18:42:13 +01:00
Henry Ruhs 6180ccf6e6 Scope for Args (#988)
* Add API scopes

* Add API scopes

* Add API scopes

* Add API scopes

* Add API scopes

* Add API scopes

* Add API scopes

* Add API scopes

* Remove system memory limit (#986)

# Conflicts:
#	facefusion/program.py

* Add session_id, make token size more reasonable (#983)

* Add session_id, make token size more reasonable

* Use more direct approach

* Fix more stuff

* Fix ignore comments

* Fix naming

* Fix lint
2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 65a61d5001 changes 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 7ccf4d5eda changes 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs b035f1a6e5 changes 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 588eb049b0 rename to target_path 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 0a4e1c639d fix exit-helper 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 85b6d962f2 refactor temp handling from target-path to output-path 2025-12-17 18:42:13 +01:00
henryruhs 6f89e7db51 Burn it with fire 2025-12-17 18:42:13 +01:00
henryruhs 69ad7572c6 Burn it with fire 2025-12-17 18:42:13 +01:00
Henry Ruhs 68a56588e3 Remove system memory limit (#986) 2025-12-17 18:42:13 +01:00
Henry Ruhs 4b0d6c3333 Add session_id, make token size more reasonable (#983)
* Add session_id, make token size more reasonable

* Use more direct approach
2025-12-17 18:42:13 +01:00
Henry Ruhs 3daf049684 Local API (#982)
* Introduce API scelleton

* Raw impl for session

* Simple state endpoint

* Apply _body naming

* Finalize session testing and comment out tons of useless code

* Clean and refactor part1

* Clean and refactor part2

* Clean and refactor part2

* Clean and refactor part2

* Clean and refactor part2

* Refactor middleware

* Refactor middleware

* Clean and refactor part3

* TDD and 2 beers

* TDD and 2 beers

* Complete state endpoints

* You can only set what is already present

* Use only JSON as response

* Use default logger

* Improve auth extraction

* Extend api command with more args

* Adjust API messages
2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs f745ddc831 remove output_path argument 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 8f27d5dd08 remove output_path argument from merge_video() 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs a6bd2cdcc7 remove output_video_fps argument from merge_video() 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 3ef90673b5 rename method argument 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 29e3014945 fix 2025-12-17 18:42:13 +01:00
harisreedharandhenryruhs 7e2f793cf4 remove same file extension constraint 2025-12-17 18:42:13 +01:00
Henry Ruhs 0d2a434e61 Refactor reusable workflow tasks (#980)
* Refactor reusable workflow tasks

* Refactor reusable workflow tasks

* Make it borderline again
2025-12-17 18:42:13 +01:00
Henry Ruhs cfa2216d0c Feels so good to get rid of Gradio (#978) 2025-12-17 18:42:13 +01:00
henryruhs 20293d1fa3 Mark es temporary v4 2025-12-17 18:42:13 +01:00
Henry RuhsandGitHub a7f3de3dbc Rename local(s) to locale(s) (#1008) 2025-12-17 18:37:51 +01:00
Henry RuhsandGitHub 666c15f9da Patch 3.5.2 (#1002)
* Remove old files

* Fix some spacing

* Introduce retry to download

* More testing

* Better installer scripting (#994)

* Better installer scripting

* Add migraphx installer support

* Add migraphx installer support

* Ignore issue

* Ignore issue

* Make --force-install optional
2025-12-13 08:37:15 +01:00
420d738a6b 3.5.1 (#985)
* Fix type for device id

* Fix type for device id

* Fix order

* Remove comma

* Replace Generator typing

* Replace Generator typing

* Conditional kill myself (#984)

* Introduce conditional remove mask

* fix

---------

Co-authored-by: harisreedhar <h4harisreedhar.s.s@gmail.com>

---------

Co-authored-by: harisreedhar <h4harisreedhar.s.s@gmail.com>
2025-11-19 17:39:42 +01:00
henryruhs 81c5e85dea Remove invalid command 2025-11-07 12:37:21 +01:00
8bf9170577 3.5.0 (#977)
* Mark as NEXT

* Reduce caching to avoid RAM explosion

* Reduce caching to avoid RAM explosion

* Update dependencies

* add face-detector-pad-factor

* update facefusion.ini

* fix test

* change pad to margin

* fix order

* add prepare margin

* use 50% max margin

* Minor fixes part2

* Minor fixes part3

* Minor fixes part4

* Minor fixes part1

* Downgrade onnxruntime as of BiRefNet broken on CPU

add test

update

update facefusion.ini

add birefnet

* rename models

add more models

* Fix versions

* Add .claude to gitignore

* add normalize color

add 4 channel

add colors

* worflows

* cleanup

* cleanup

* cleanup

* cleanup

* add more models (#961)

* Fix naming

* changes

* Fix style and mock Gradio

* Fix style and mock Gradio

* Fix style and mock Gradio

* apply clamp

* remove clamp

* Add normalizer test

* Introduce sanitizer for the rescue (#963)

* Introduce sanitizer for the rescue

* Introduce sanitizer for the rescue

* Introduce sanitizer for the rescue

* prepare ffmpeg for alpha support

* Some cleanup

* Some cleanup

* Fix CI

* List as TypeAlias is not allowed (#967)

* List as TypeAlias is not allowed

* List as TypeAlias is not allowed

* List as TypeAlias is not allowed

* List as TypeAlias is not allowed

* Add mpeg and mxf support (#968)

* Add mpeg support

* Add mxf support

* Adjust fix_xxx_encoder for the new formats

* Extend output pattern for batch-run (#969)

* Extend output pattern for batch-run

* Add {target_extension} to allowed mixed files

* Catch invalid output pattern keys

* alpha support

* cleanup

* cleanup

* add ProcessorOutputs type

* fix preview and streamer, support alpha for background_remover

* Refactor/open close processors (#972)

* Introduce open/close processors

* Add locales for translator

* Introduce __autoload__ for translator

* More cleanup

* Fix import issues

* Resolve the scope situation for locals

* Fix installer by not using translator

* Fixes after merge

* Fixes after merge

* Fix translator keys in ui

* Use LOCALS in installer

* Update and partial fix DirectML

* Use latest onnxruntime

* Fix performance

* Fix lint issues

* fix mask

* fix lint

* fix lint

* Remove default from translator.get()

* remove 'framerate='

* fix test

* Rename and reorder models

* Align naming

* add alpha preview

* fix frame-by-frame

* Add alpha effect via css

* preview support alpha channel

* fix preview modes

* Use official assets repositories

* Add support for u2net_cloth

* fix naming

* Add more models

* Add vendor, license and year direct to the models

* Add vendor, license and year direct to the models

* Update dependencies, Minor CSS adjustment

* Ready for 3.5.0

* Fix naming

* Update about messages

* Fix return

* Use groups to show/hide

* Update preview

* Conditional merge mask

* Conditional merge mask

* Fix import order

---------

Co-authored-by: harisreedhar <h4harisreedhar.s.s@gmail.com>
Co-authored-by: Harisreedhar <46858047+harisreedhar@users.noreply.github.com>
2025-11-03 14:05:15 +01:00
189d750621 3.4.2 (#975)
* Reduce caching to avoid RAM explosion

* Reduce caching to avoid RAM explosion

* Reduce caching to avoid RAM explosion

* fix bounding_box scale

* Bump to 3.4.2

* More conservative on audio caching

* Fix coverage issue

* Fix coverage issue

---------

Co-authored-by: harisreedhar <h4harisreedhar.s.s@gmail.com>
2025-10-29 11:51:42 +01:00
Henry RuhsandGitHub f3be23d19b Patch (#947)
* Fix preview when using frame enhancer

* Fix version conflict numpy vs. cv2

* Use latest numpy

* Introduce scale_face() to match size of temp frames and target frames

* Remove hardcoded backend for camera under Windows

* Up and downgrade some dependencies

* Up and downgrade some dependencies

* Up and downgrade some dependencies
2025-09-11 16:58:39 +02:00
henryruhs 16e84b43ce Update preview 2025-09-08 10:54:22 +02:00
da0da3a4b4 Next (#945)
* Rename calcXXX to calculateXXX

* Add migraphx support

* Add migraphx support

* Add migraphx support

* Add migraphx support

* Add migraphx support

* Add migraphx support

* Use True for the flags

* Add migraphx support

* add face-swapper-weight

* add face-swapper-weight to facefusion.ini

* changes

* change choice

* Fix typing for xxxWeight

* Feat/log inference session (#906)

* Log inference session, Introduce time helper

* Log inference session, Introduce time helper

* Log inference session, Introduce time helper

* Log inference session, Introduce time helper

* Mark as NEXT

* Follow industry standard x1, x2, y1 and y2

* Follow industry standard x1, x2, y1 and y2

* Follow industry standard in terms of naming (#908)

* Follow industry standard in terms of naming

* Improve xxx_embedding naming

* Fix norm vs. norms

* Reduce timeout to 5

* Sort out voice_extractor once again

* changes

* Introduce many to the occlusion mask (#910)

* Introduce many to the occlusion mask

* Then we use minimum

* Add support for wmv

* Run platform tests before has_execution_provider (#911)

* Add support for wmv

* Introduce benchmark mode (#912)

* Honestly makes no difference to me

* Honestly makes no difference to me

* Fix wording

* Bring back YuNet (#922)

* Reintroduce YuNet without cv2 dependency

* Fix variable naming

* Avoid RGB to YUV colorshift using libx264rgb

* Avoid RGB to YUV colorshift using libx264rgb

* Make libx264 the default again

* Make libx264 the default again

* Fix types in ffmpeg builder

* Fix quality stuff in ffmpeg builder

* Fix quality stuff in ffmpeg builder

* Add libx264rgb to test

* Revamp Processors (#923)

* Introduce new concept of pure target frames

* Radical refactoring of process flow

* Introduce new concept of pure target frames

* Fix webcam

* Minor improvements

* Minor improvements

* Use deque for video processing

* Use deque for video processing

* Extend the video manager

* Polish deque

* Polish deque

* Deque is not even used

* Improve speed with multiple futures

* Fix temp frame mutation and

* Fix RAM usage

* Remove old types and manage method

* Remove execution_queue_count

* Use init_state for benchmarker to avoid issues

* add voice extractor option

* Change the order of voice extractor in code

* Use official download urls

* Use official download urls

* add gui

* fix preview

* Add remote updates for voice extractor

* fix crash on headless-run

* update test_job_helper.py

* Fix it for good

* Remove pointless method

* Fix types and unused imports

* Revamp reference (#925)

* Initial revamp of face references

* Initial revamp of face references

* Initial revamp of face references

* Terminate find_similar_faces

* Improve find mutant faces

* Improve find mutant faces

* Move sort where it belongs

* Forward reference vision frame

* Forward reference vision frame also in preview

* Fix reference selection

* Use static video frame

* Fix CI

* Remove reference type from frame processors

* Improve some naming

* Fix types and unused imports

* Fix find mutant faces

* Fix find mutant faces

* Fix imports

* Correct naming

* Correct naming

* simplify pad

* Improve webcam performance on highres

* Camera manager (#932)

* Introduce webcam manager

* Fix order

* Rename to camera manager, improve video manager

* Fix CI

* Remove optional

* Fix naming in webcam options

* Avoid using temp faces (#933)

* output video scale

* Fix imports

* output image scale

* upscale fix (not limiter)

* add unit test scale_resolution & remove unused methods

* fix and add test

* fix

* change pack_resolution

* fix tests

* Simplify output scale testing

* Fix benchmark UI

* Fix benchmark UI

* Update dependencies

* Introduce REAL multi gpu support using multi dimensional inference pool (#935)

* Introduce REAL multi gpu support using multi dimensional inference pool

* Remove the MULTI:GPU flag

* Restore "processing stop"

* Restore "processing stop"

* Remove old templates

* Go fill in with caching

* add expression restorer areas

* re-arrange

* rename method

* Fix stop for extract frames and merge video

* Replace arcface_converter models with latest crossface models

* Replace arcface_converter models with latest crossface models

* Move module logs to debug mode

* Refactor/streamer (#938)

* Introduce webcam manager

* Fix order

* Rename to camera manager, improve video manager

* Fix CI

* Fix naming in webcam options

* Move logic over to streamer

* Fix streamer, improve webcam experience

* Improve webcam experience

* Revert method

* Revert method

* Improve webcam again

* Use release on capture instead

* Only forward valid frames

* Fix resolution logging

* Add AVIF support

* Add AVIF support

* Limit avif to unix systems

* Drop avif

* Drop avif

* Drop avif

* Default to Documents in the UI if output path is not set

* Update wording.py (#939)

"succeed" is grammatically incorrect in the given context. To succeed is the infinitive form of the verb. Correct would be either "succeeded" or alternatively a form involving the noun "success".

* Fix more grammar issue

* Fix more grammar issue

* Sort out caching

* Move webcam choices back to UI

* Move preview options to own file (#940)

* Fix Migraphx execution provider

* Fix benchmark

* Reuse blend frame method

* Fix CI

* Fix CI

* Fix CI

* Hotfix missing check in face debugger, Enable logger for preview

* Fix reference selection (#942)

* Fix reference selection

* Fix reference selection

* Fix reference selection

* Fix reference selection

* Side by side preview (#941)

* Initial side by side preview

* More work on preview, remove UI only stuff from vision.py

* Improve more

* Use fit frame

* Add different fit methods for vision

* Improve preview part2

* Improve preview part3

* Improve preview part4

* Remove none as choice

* Remove useless methods

* Fix CI

* Fix naming

* use 1024 as preview resolution default

* Fix fit_cover_frame

* Uniform fit_xxx_frame methods

* Add back disabled logger

* Use ui choices alias

* Extract select face logic from processors (#943)

* Extract select face logic from processors to use it for face by face in preview

* Fix order

* Remove old code

* Merge methods

* Refactor face debugger (#944)

* Refactor huge method of face debugger

* Remove text metrics from face debugger

* Remove useless copy of temp frame

* Resort methods

* Fix spacing

* Remove old method

* Fix hard exit to work without signals

* Prevent upscaling for face-by-face

* Switch to version

* Improve exiting

---------

Co-authored-by: harisreedhar <h4harisreedhar.s.s@gmail.com>
Co-authored-by: Harisreedhar <46858047+harisreedhar@users.noreply.github.com>
Co-authored-by: Rafael Tappe Maestro <rafael@tappemaestro.com>
2025-09-08 10:43:58 +02:00
henryruhs 7b8bea4e0a Make HyperSwap the default 2025-07-10 15:22:41 +02:00
henryruhs b3678c4e4c Fix Gradio 2025-07-10 15:10:44 +02:00
253 changed files with 9620 additions and 7167 deletions
+2
View File
@@ -0,0 +1,2 @@
[run]
patch = subprocess
Binary file not shown.

Before

Width:  |  Height:  |  Size: 1.3 MiB

+2
View File
@@ -35,6 +35,7 @@ jobs:
python-version: '3.12'
- run: python install.py --onnxruntime default --skip-conda
- run: pip install pytest
- run: pip install httpx
- run: pytest
report:
needs: test
@@ -52,6 +53,7 @@ jobs:
- run: pip install coveralls
- run: pip install pytest
- run: pip install pytest-cov
- run: pip install httpx
- run: pytest tests --cov facefusion
- run: coveralls --service github
env:
+2 -1
View File
@@ -1,6 +1,7 @@
__pycache__
.assets
.claude
.caches
.jobs
.idea
.jobs
.vscode
+1 -7
View File
@@ -8,12 +8,6 @@ FaceFusion
![License](https://img.shields.io/badge/license-OpenRAIL--AS-green)
Preview
-------
![Preview](https://raw.githubusercontent.com/facefusion/facefusion/master/.github/preview.png?sanitize=true)
Installation
------------
@@ -34,10 +28,10 @@ options:
commands:
run run the program
headless-run run the program in headless mode
batch-run run the program in batch mode
force-download force automate downloads and exit
benchmark benchmark the program
api start the API server
job-list list jobs by status
job-create create a drafted job
job-submit submit a drafted job to become a queued job
+19 -11
View File
@@ -1,3 +1,6 @@
[workflow]
workflow =
[paths]
temp_path =
jobs_path =
@@ -13,6 +16,7 @@ output_pattern =
[face_detector]
face_detector_model =
face_detector_size =
face_detector_margin =
face_detector_angles =
face_detector_score =
@@ -40,32 +44,37 @@ face_mask_regions =
face_mask_blur =
face_mask_padding =
[voice_extractor]
voice_extractor_model =
[frame_extraction]
trim_frame_start =
trim_frame_end =
temp_frame_format =
keep_temp =
[output_creation]
output_image_quality =
output_image_resolution =
output_image_scale =
output_audio_encoder =
output_audio_quality =
output_audio_volume =
output_video_encoder =
output_video_preset =
output_video_quality =
output_video_resolution =
output_video_scale =
output_video_fps =
[processors]
processors =
age_modifier_model =
age_modifier_direction =
background_remover_model =
background_remover_color =
deep_swapper_model =
deep_swapper_morph =
expression_restorer_model =
expression_restorer_factor =
expression_restorer_areas =
face_debugger_items =
face_editor_model =
face_editor_eyebrow_direction =
@@ -87,6 +96,7 @@ face_enhancer_blend =
face_enhancer_weight =
face_swapper_model =
face_swapper_pixel_boost =
face_swapper_weight =
frame_colorizer_model =
frame_colorizer_size =
frame_colorizer_blend =
@@ -95,28 +105,26 @@ frame_enhancer_blend =
lip_syncer_model =
lip_syncer_weight =
[uis]
open_browser =
ui_layouts =
ui_workflow =
[download]
download_providers =
download_scope =
[benchmark]
benchmark_mode =
benchmark_resolutions =
benchmark_cycle_count =
[api]
api_host =
api_port =
[execution]
execution_device_id =
execution_device_ids =
execution_providers =
execution_thread_count =
execution_queue_count =
[memory]
video_memory_strategy =
system_memory_limit =
[misc]
log_level =
+15
View File
@@ -0,0 +1,15 @@
from typing import Optional
from starlette.datastructures import Headers
from starlette.types import Scope
def get_sec_websocket_protocol(scope : Scope) -> Optional[str]:
protocol_header = Headers(scope = scope).get('Sec-WebSocket-Protocol')
if protocol_header:
protocol, _, _ = protocol_header.partition(',')
return protocol.strip()
return None
+50
View File
@@ -0,0 +1,50 @@
from typing import Optional
from facefusion.audio import detect_audio_duration
from facefusion.filesystem import is_audio, is_image, is_video
from facefusion.types import AudioMetadata, ImageMetadata, MediaType, VideoMetadata
from facefusion.vision import count_video_frame_total, detect_image_resolution, detect_video_duration, detect_video_fps, detect_video_resolution
def extract_audio_metadata(file_path : str) -> AudioMetadata:
metadata : AudioMetadata =\
{
'duration': detect_audio_duration(file_path),
'sample_rate': 0,
'frame_total': 0,
'channels': 0,
'format': ''
}
return metadata
def extract_image_metadata(file_path : str) -> ImageMetadata:
resolution = detect_image_resolution(file_path)
metadata : ImageMetadata =\
{
'resolution': resolution if resolution else (0, 0)
}
return metadata
def extract_video_metadata(file_path : str) -> VideoMetadata:
resolution = detect_video_resolution(file_path)
fps = detect_video_fps(file_path)
metadata : VideoMetadata =\
{
'duration': detect_video_duration(file_path),
'frame_total': count_video_frame_total(file_path),
'fps': fps if fps else 0.0,
'resolution': resolution if resolution else (0, 0)
}
return metadata
def detect_media_type(file_path : str) -> Optional[MediaType]:
if is_audio(file_path):
return 'audio'
if is_image(file_path):
return 'image'
if is_video(file_path):
return 'video'
return None
+92
View File
@@ -0,0 +1,92 @@
import os
import uuid
from datetime import datetime, timedelta
from typing import List, Optional, cast
from facefusion.apis.asset_helper import detect_media_type, extract_audio_metadata, extract_image_metadata, extract_video_metadata
from facefusion.filesystem import get_file_format, get_file_name
from facefusion.types import AssetId, AssetSet, AssetStore, AssetType, AudioAsset, AudioFormat, ImageAsset, ImageFormat, SessionId, VideoAsset, VideoFormat
ASSET_STORE : AssetStore = {}
def create_asset(session_id : SessionId, asset_type : AssetType, asset_path : str) -> Optional[AudioAsset | ImageAsset | VideoAsset]:
asset_id = str(uuid.uuid4())
asset_name = get_file_name(asset_path)
asset_format = get_file_format(asset_path)
asset_size = os.path.getsize(asset_path)
media_type = detect_media_type(asset_path)
created_at = datetime.now()
expires_at = created_at + timedelta(hours = 2)
if session_id not in ASSET_STORE:
ASSET_STORE[session_id] = {}
if media_type == 'audio':
ASSET_STORE[session_id][asset_id] = cast(AudioAsset,
{
'id': asset_id,
'created_at': created_at,
'expires_at': expires_at,
'type': asset_type,
'media': media_type,
'name': asset_name,
'format': cast(AudioFormat, asset_format),
'size': asset_size,
'path': asset_path,
'metadata': extract_audio_metadata(asset_path)
})
if media_type == 'image':
ASSET_STORE[session_id][asset_id] = cast(ImageAsset,
{
'id': asset_id,
'created_at': created_at,
'expires_at': expires_at,
'type': asset_type,
'media': media_type,
'name': asset_name,
'format': cast(ImageFormat, asset_format),
'size': asset_size,
'path': asset_path,
'metadata': extract_image_metadata(asset_path)
})
if media_type == 'video':
ASSET_STORE[session_id][asset_id] = cast(VideoAsset,
{
'id': asset_id,
'created_at': created_at,
'expires_at': expires_at,
'type': asset_type,
'media': media_type,
'name': asset_name,
'format': cast(VideoFormat, asset_format),
'size': asset_size,
'path': asset_path,
'metadata': extract_video_metadata(asset_path)
})
return ASSET_STORE[session_id].get(asset_id)
def get_assets(session_id : SessionId) -> Optional[AssetSet]:
return ASSET_STORE.get(session_id)
def get_asset(session_id : SessionId, asset_id : AssetId) -> Optional[AudioAsset | ImageAsset | VideoAsset]:
if session_id in ASSET_STORE:
return ASSET_STORE.get(session_id).get(asset_id)
return None
def delete_assets(session_id : SessionId, asset_ids : List[AssetId]) -> None:
if session_id in ASSET_STORE:
for asset_id in asset_ids:
if asset_id in ASSET_STORE.get(session_id):
del ASSET_STORE[session_id][asset_id]
return None
def clear() -> None:
ASSET_STORE.clear()
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from typing import Any, Dict
from starlette.requests import Request
from starlette.responses import JSONResponse
from starlette.status import HTTP_200_OK
import facefusion.choices
from facefusion.execution import get_available_execution_providers
from facefusion.ffmpeg import get_available_encoder_set
from facefusion.processors.modules.face_debugger import choices as face_debugger_choices
from facefusion.processors.modules.face_enhancer import choices as face_enhancer_choices
from facefusion.processors.modules.face_swapper import choices as face_swapper_choices
from facefusion.processors.modules.frame_enhancer import choices as frame_enhancer_choices
async def get_choices(request : Request) -> JSONResponse:
available_execution_providers = get_available_execution_providers()
available_encoder_set = get_available_encoder_set()
choices_data : Dict[str, Any] =\
{
'face_detector_models': facefusion.choices.face_detector_models,
'face_detector_set': facefusion.choices.face_detector_set,
'face_landmarker_models': facefusion.choices.face_landmarker_models,
'face_selector_modes': facefusion.choices.face_selector_modes,
'face_selector_orders': facefusion.choices.face_selector_orders,
'face_selector_genders': facefusion.choices.face_selector_genders,
'face_selector_races': facefusion.choices.face_selector_races,
'face_occluder_models': facefusion.choices.face_occluder_models,
'face_parser_models': facefusion.choices.face_parser_models,
'face_mask_types': facefusion.choices.face_mask_types,
'face_mask_areas': facefusion.choices.face_mask_areas,
'face_mask_regions': facefusion.choices.face_mask_regions,
'voice_extractor_models': facefusion.choices.voice_extractor_models,
'workflows': facefusion.choices.workflows,
'audio_formats': facefusion.choices.audio_formats,
'image_formats': facefusion.choices.image_formats,
'video_formats': facefusion.choices.video_formats,
'temp_frame_formats': facefusion.choices.temp_frame_formats,
'output_audio_encoders': available_encoder_set.get('audio'),
'output_video_encoders': available_encoder_set.get('video'),
'output_video_presets': facefusion.choices.output_video_presets,
'execution_providers': available_execution_providers,
'video_memory_strategies': facefusion.choices.video_memory_strategies,
'log_levels': facefusion.choices.log_levels,
'face_swapper_models': face_swapper_choices.face_swapper_models,
'face_swapper_set': face_swapper_choices.face_swapper_set,
'face_enhancer_models': face_enhancer_choices.face_enhancer_models,
'frame_enhancer_models': frame_enhancer_choices.frame_enhancer_models,
'face_debugger_items': face_debugger_choices.face_debugger_items,
'face_detector_angles': list(facefusion.choices.face_detector_angles),
'face_detector_score_range':
{
'min': min(facefusion.choices.face_detector_score_range),
'max': max(facefusion.choices.face_detector_score_range),
'step': facefusion.choices.face_detector_score_range[1] - facefusion.choices.face_detector_score_range[0]
},
'face_landmarker_score_range':
{
'min': min(facefusion.choices.face_landmarker_score_range),
'max': max(facefusion.choices.face_landmarker_score_range),
'step': facefusion.choices.face_landmarker_score_range[1] - facefusion.choices.face_landmarker_score_range[0]
},
'face_mask_blur_range':
{
'min': min(facefusion.choices.face_mask_blur_range),
'max': max(facefusion.choices.face_mask_blur_range),
'step': facefusion.choices.face_mask_blur_range[1] - facefusion.choices.face_mask_blur_range[0]
},
'face_mask_padding_range':
{
'min': min(facefusion.choices.face_mask_padding_range),
'max': max(facefusion.choices.face_mask_padding_range),
'step': 1
},
'face_selector_age_range':
{
'min': min(facefusion.choices.face_selector_age_range),
'max': max(facefusion.choices.face_selector_age_range),
'step': 1
},
'reference_face_distance_range':
{
'min': min(facefusion.choices.reference_face_distance_range),
'max': max(facefusion.choices.reference_face_distance_range),
'step': facefusion.choices.reference_face_distance_range[1] - facefusion.choices.reference_face_distance_range[0]
},
'output_image_quality_range':
{
'min': min(facefusion.choices.output_image_quality_range),
'max': max(facefusion.choices.output_image_quality_range),
'step': 1
},
'output_image_scale_range':
{
'min': min(facefusion.choices.output_image_scale_range),
'max': max(facefusion.choices.output_image_scale_range),
'step': facefusion.choices.output_image_scale_range[1] - facefusion.choices.output_image_scale_range[0]
},
'output_audio_quality_range':
{
'min': min(facefusion.choices.output_audio_quality_range),
'max': max(facefusion.choices.output_audio_quality_range),
'step': 1
},
'output_audio_volume_range':
{
'min': min(facefusion.choices.output_audio_volume_range),
'max': max(facefusion.choices.output_audio_volume_range),
'step': 1
},
'output_video_quality_range':
{
'min': min(facefusion.choices.output_video_quality_range),
'max': max(facefusion.choices.output_video_quality_range),
'step': 1
},
'output_video_scale_range':
{
'min': min(facefusion.choices.output_video_scale_range),
'max': max(facefusion.choices.output_video_scale_range),
'step': facefusion.choices.output_video_scale_range[1] - facefusion.choices.output_video_scale_range[0]
},
'execution_thread_count_range':
{
'min': min(facefusion.choices.execution_thread_count_range),
'max': max(facefusion.choices.execution_thread_count_range),
'step': 1
},
'face_detector_margin_range':
{
'min': min(facefusion.choices.face_detector_margin_range),
'max': max(facefusion.choices.face_detector_margin_range),
'step': 1
},
'face_swapper_weight_range':
{
'min': min(face_swapper_choices.face_swapper_weight_range),
'max': max(face_swapper_choices.face_swapper_weight_range),
'step': face_swapper_choices.face_swapper_weight_range[1] - face_swapper_choices.face_swapper_weight_range[0]
},
'face_enhancer_blend_range':
{
'min': min(face_enhancer_choices.face_enhancer_blend_range),
'max': max(face_enhancer_choices.face_enhancer_blend_range),
'step': 1
},
'face_enhancer_weight_range':
{
'min': min(face_enhancer_choices.face_enhancer_weight_range),
'max': max(face_enhancer_choices.face_enhancer_weight_range),
'step': face_enhancer_choices.face_enhancer_weight_range[1] - face_enhancer_choices.face_enhancer_weight_range[0]
},
'frame_enhancer_blend_range':
{
'min': min(frame_enhancer_choices.frame_enhancer_blend_range),
'max': max(frame_enhancer_choices.frame_enhancer_blend_range),
'step': 1
}
}
return JSONResponse(choices_data, status_code = HTTP_200_OK)
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from starlette.applications import Starlette
from starlette.middleware import Middleware
from starlette.middleware.cors import CORSMiddleware
from starlette.routing import Route, WebSocketRoute
from facefusion.apis.choices import get_choices
from facefusion.apis.endpoints.assets import delete_asset, delete_assets, get_asset, get_assets, upload_asset
from facefusion.apis.endpoints.ping import websocket_ping
from facefusion.apis.endpoints.session import create_session, create_session_guard, destroy_session, get_session, refresh_session
from facefusion.apis.endpoints.state import get_state, set_state
from facefusion.apis.endpoints.stream import delete_stream, post_stream, websocket_stream
from facefusion.apis.metrics import websocket_metrics
from facefusion.apis.remote import remote
from facefusion.apis.timeline import get_timeline
from facefusion.apis.version import create_version_guard
def create_api() -> Starlette:
version_guard = Middleware(create_version_guard)
session_guard = Middleware(create_session_guard)
routes =\
[
Route('/session', create_session, methods = [ 'POST' ], middleware = [ version_guard ]),
Route('/session', get_session, methods = [ 'GET' ], middleware = [ version_guard, session_guard ]),
Route('/session', refresh_session, methods = [ 'PUT' ], middleware = [ version_guard ]),
Route('/session', destroy_session, methods = [ 'DELETE' ], middleware = [ version_guard, session_guard ]),
Route('/state', get_state, methods = [ 'GET' ], middleware = [ version_guard, session_guard ]),
Route('/state', set_state, methods = [ 'PUT' ], middleware = [ version_guard, session_guard ]),
Route('/assets', get_assets, methods = [ 'GET' ], middleware = [ version_guard, session_guard ]),
Route('/assets', upload_asset, methods = [ 'POST' ], middleware = [ version_guard, session_guard ]),
Route('/assets/{asset_id}', get_asset, methods = [ 'GET' ], middleware = [ version_guard, session_guard ]),
Route('/assets/{asset_id}', delete_asset, methods = [ 'DELETE' ], middleware = [ version_guard, session_guard ]),
Route('/assets', delete_assets, methods = [ 'DELETE' ], middleware = [ version_guard, session_guard ]),
Route('/choices', get_choices, methods = [ 'GET' ], middleware = [ version_guard, session_guard ]),
Route('/remote', remote, methods = [ 'POST' ], middleware = [ version_guard, session_guard ]),
Route('/timeline/{count:int}', get_timeline, methods = [ 'GET' ], middleware = [ version_guard, session_guard ]),
Route('/stream', post_stream, methods = [ 'POST' ], middleware = [ version_guard, session_guard ]),
Route('/stream', delete_stream, methods = [ 'DELETE' ], middleware = [ version_guard, session_guard ]),
WebSocketRoute('/stream', websocket_stream, middleware = [ version_guard, session_guard ]),
WebSocketRoute('/metrics', websocket_metrics, middleware = [ version_guard, session_guard ]),
WebSocketRoute('/ping', websocket_ping, middleware = [ version_guard, session_guard ])
]
api = Starlette(routes = routes)
api.add_middleware(CORSMiddleware, allow_origins = [ '*' ], allow_methods = [ '*' ], allow_headers = [ '*' ])
return api
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import tempfile
from typing import Any, Dict, List, Optional
from starlette.datastructures import UploadFile
from starlette.requests import Request
from starlette.responses import FileResponse, JSONResponse, Response
from starlette.status import HTTP_200_OK, HTTP_201_CREATED, HTTP_400_BAD_REQUEST, HTTP_404_NOT_FOUND
from facefusion import session_manager
from facefusion.apis import asset_store
from facefusion.apis.asset_helper import detect_media_type
from facefusion.apis.endpoints.session import extract_access_token
from facefusion.filesystem import get_file_extension, remove_file
from facefusion.types import AudioAsset, ImageAsset, VideoAsset
def translate_asset(asset : AudioAsset | ImageAsset | VideoAsset) -> Optional[Dict[str, Any]]:
return\
{
'id': asset.get('id'),
'created_at': asset.get('created_at').isoformat(),
'expires_at': asset.get('expires_at').isoformat(),
'type': asset.get('type'),
'media_type': asset.get('media'),
'filename': asset.get('name'),
'format': asset.get('format'),
'size': asset.get('size'),
'metadata': asset.get('metadata')
}
async def upload_asset(request : Request) -> Response:
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
asset_type = request.query_params.get('type')
if session_id and asset_type in [ 'source', 'target' ]:
form = await request.form()
upload_files = form.getlist('file')
asset_paths = await save_asset_files(upload_files) # type: ignore[arg-type]
if asset_paths:
asset_ids : List[str] = []
for asset_path in asset_paths:
asset = asset_store.create_asset(session_id, asset_type, asset_path) # type: ignore[arg-type]
asset_id = asset.get('id')
if asset_id:
asset_ids.append(asset_id)
if asset_ids:
if asset_type == 'target':
return JSONResponse(
{
'asset_id': asset_ids[0]
}, status_code = HTTP_201_CREATED)
return JSONResponse(
{
'asset_ids': asset_ids
}, status_code = HTTP_201_CREATED)
return Response(status_code = HTTP_400_BAD_REQUEST)
async def save_asset_files(upload_files : List[UploadFile]) -> List[str]:
asset_paths : List[str] = []
for upload_file in upload_files:
upload_file_extension = get_file_extension(upload_file.filename)
with tempfile.NamedTemporaryFile(suffix = upload_file_extension, delete = False) as temp_file:
while upload_chunk := await upload_file.read(1024):
temp_file.write(upload_chunk)
temp_file.flush()
media_type = detect_media_type(temp_file.name)
if media_type:
asset_paths.append(temp_file.name)
else:
remove_file(temp_file.name)
return asset_paths
async def get_assets(request : Request) -> Response:
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
asset_type = request.query_params.get('type')
if session_id:
asset_set = asset_store.get_assets(session_id)
assets = []
if asset_set:
for asset in asset_set.values():
if not asset_type or asset.get('type') == asset_type:
assets.append(translate_asset(asset))
return JSONResponse(
{
'assets': assets,
'count': len(assets)
}, status_code = HTTP_200_OK)
return Response(status_code = HTTP_400_BAD_REQUEST)
async def get_asset(request : Request) -> Response:
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
asset_id = request.path_params.get('asset_id')
action = request.query_params.get('action')
if session_id and asset_id:
asset = asset_store.get_asset(session_id, asset_id)
if asset:
if action == 'download':
return FileResponse(asset.get('path'), filename = asset.get('name'))
return JSONResponse(translate_asset(asset), status_code = HTTP_200_OK)
return Response(status_code = HTTP_404_NOT_FOUND)
async def delete_asset(request : Request) -> Response:
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
asset_id = request.path_params.get('asset_id')
if session_id and asset_id:
asset_set = asset_store.get_assets(session_id)
if asset_set and asset_id in asset_set:
remove_file(asset_set.get(asset_id).get('path'))
asset_store.delete_assets(session_id, [ asset_id ])
return Response(status_code = HTTP_200_OK)
return Response(status_code = HTTP_404_NOT_FOUND)
async def delete_assets(request : Request) -> Response:
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
body = await request.json()
asset_ids = body.get('asset_ids')
if session_id and asset_ids:
asset_set = asset_store.get_assets(session_id)
if asset_set:
for asset_id in asset_ids:
if asset_id in asset_set:
remove_file(asset_set.get(asset_id).get('path'))
asset_store.delete_assets(session_id, asset_ids)
return Response(status_code = HTTP_200_OK)
return Response(status_code = HTTP_404_NOT_FOUND)
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from starlette.websockets import WebSocket
from facefusion.apis.api_helper import get_sec_websocket_protocol
async def websocket_ping(websocket : WebSocket) -> None:
subprotocol = get_sec_websocket_protocol(websocket.scope)
await websocket.accept(subprotocol = subprotocol)
try:
while True:
await websocket.receive()
except Exception:
pass
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import os
import secrets
from typing import Optional
from starlette.datastructures import Headers
from starlette.requests import Request
from starlette.responses import JSONResponse
from starlette.status import HTTP_200_OK, HTTP_201_CREATED, HTTP_401_UNAUTHORIZED, HTTP_426_UPGRADE_REQUIRED
from starlette.types import ASGIApp, Receive, Scope, Send
from facefusion import session_context, session_manager, translator
from facefusion.apis.api_helper import get_sec_websocket_protocol
from facefusion.types import Token
async def create_session(request : Request) -> JSONResponse:
body = await request.json()
if not body.get('api_key') or body.get('api_key') == os.getenv('FACEFUSION_API_KEY'):
session_id = secrets.token_urlsafe(16)
session = session_manager.create_session()
session_context.set_session_id(session_id)
session_manager.set_session(session_id, session)
return JSONResponse(
{
'access_token': session.get('access_token'),
'refresh_token': session.get('refresh_token')
}, status_code = HTTP_201_CREATED)
return JSONResponse(
{
'message': translator.get('something_went_wrong', 'facefusion.apis')
}, status_code = HTTP_401_UNAUTHORIZED)
async def get_session(request : Request) -> JSONResponse:
access_token = extract_access_token(request.scope)
if access_token:
session_id = session_manager.find_session_id(access_token)
if session_id:
session = session_manager.get_session(session_id)
return JSONResponse(
{
'access_token': session.get('access_token'),
'refresh_token': session.get('refresh_token'),
'created_at': session.get('created_at').isoformat(),
'expires_at': session.get('expires_at').isoformat()
}, status_code = HTTP_200_OK)
return JSONResponse(
{
'message': translator.get('something_went_wrong', 'facefusion.apis')
}, status_code = HTTP_401_UNAUTHORIZED)
async def refresh_session(request : Request) -> JSONResponse:
body = await request.json()
for session_id, session in session_manager.SESSIONS.items():
if session.get('refresh_token') == body.get('refresh_token'):
__session__ = session_manager.create_session()
session_manager.set_session(session_id, __session__)
return JSONResponse(
{
'access_token': __session__.get('access_token'),
'refresh_token': __session__.get('refresh_token')
}, status_code = HTTP_200_OK)
return JSONResponse(
{
'message': translator.get('something_went_wrong', 'facefusion.apis')
}, status_code = HTTP_401_UNAUTHORIZED)
async def destroy_session(request : Request) -> JSONResponse:
access_token = extract_access_token(request.scope)
if access_token:
session_id = session_manager.find_session_id(access_token)
if session_id:
session_manager.clear_session(session_id)
return JSONResponse(
{
'message': translator.get('ok', 'facefusion.apis')
}, status_code = HTTP_200_OK)
return JSONResponse(
{
'message': translator.get('something_went_wrong', 'facefusion.apis')
}, status_code = HTTP_401_UNAUTHORIZED)
def create_session_guard(app : ASGIApp) -> ASGIApp:
async def middleware(scope : Scope, receive : Receive, send : Send) -> None:
access_token = extract_access_token(scope)
if access_token:
session_id = session_manager.find_session_id(access_token)
if session_id:
if session_manager.validate_session(session_id):
session_context.set_session_id(session_id)
return await app(scope, receive, send)
response = JSONResponse(
{
'message': translator.get('invalid_access_token', 'facefusion.apis')
}, status_code = HTTP_426_UPGRADE_REQUIRED)
return await response(scope, receive, send)
response = JSONResponse(
{
'message': translator.get('invalid_access_token', 'facefusion.apis')
}, status_code = HTTP_401_UNAUTHORIZED)
return await response(scope, receive, send)
return middleware
def extract_access_token(scope : Scope) -> Optional[Token]:
if scope.get('type') == 'http':
auth_header = Headers(scope = scope).get('Authorization')
if auth_header:
auth_prefix, _, access_token = auth_header.partition(' ')
if auth_prefix.lower() == 'bearer' and access_token:
return access_token
if scope.get('type') == 'websocket':
subprotocol = get_sec_websocket_protocol(scope)
if subprotocol:
protocol_prefix, _, access_token = subprotocol.partition('.')
if protocol_prefix == 'access_token' and access_token:
return access_token
return None
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from starlette.requests import Request
from starlette.responses import JSONResponse
from starlette.status import HTTP_200_OK, HTTP_404_NOT_FOUND
from facefusion import args_store, session_manager, state_manager, translator
from facefusion.apis import asset_store
from facefusion.apis.endpoints.session import extract_access_token
async def get_state(request : Request) -> JSONResponse:
api_args = args_store.filter_api_args(state_manager.get_state())
return JSONResponse(state_manager.collect_state(api_args), status_code = HTTP_200_OK)
async def set_state(request : Request) -> JSONResponse:
action = request.query_params.get('action')
asset_type = request.query_params.get('asset_type')
if action == 'select' and asset_type == 'source':
return await select_source(request)
if action == 'select' and asset_type == 'target':
return await select_target(request)
body = await request.json()
api_args = args_store.get_api_args()
for key, value in body.items():
if key in api_args:
state_manager.set_item(key, value)
__api_args__ = args_store.filter_api_args(state_manager.get_state())
return JSONResponse(state_manager.collect_state(__api_args__), status_code = HTTP_200_OK)
async def select_source(request : Request) -> JSONResponse:
body = await request.json()
asset_ids = body.get('asset_ids')
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
if isinstance(asset_ids, list) and session_id:
source_paths = []
for asset_id in asset_ids:
asset = asset_store.get_asset(session_id, asset_id)
if asset:
source_paths.append(asset.get('path'))
state_manager.set_item('source_paths', source_paths)
__api_args__ = args_store.filter_api_args(state_manager.get_state())
return JSONResponse(state_manager.collect_state(__api_args__), status_code = HTTP_200_OK)
return JSONResponse(
{
'message': translator.get('source_asset_not_found', 'facefusion.apis')
}, status_code = HTTP_404_NOT_FOUND)
async def select_target(request : Request) -> JSONResponse:
body = await request.json()
asset_id = body.get('asset_id')
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
if isinstance(asset_id, str) and session_id:
asset = asset_store.get_asset(session_id, asset_id)
if asset:
state_manager.set_item('target_path', asset.get('path'))
__api_args__ = args_store.filter_api_args(state_manager.get_state())
return JSONResponse(state_manager.collect_state(__api_args__), status_code = HTTP_200_OK)
return JSONResponse(
{
'message': translator.get('target_asset_not_found', 'facefusion.apis')
}, status_code = HTTP_404_NOT_FOUND)
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from starlette.requests import Request
from starlette.responses import Response
from starlette.status import HTTP_200_OK, HTTP_201_CREATED, HTTP_404_NOT_FOUND
from starlette.websockets import WebSocket, WebSocketState
from facefusion import session_context, session_manager
from facefusion.apis.api_helper import get_sec_websocket_protocol
from facefusion.apis.endpoints.session import extract_access_token
from facefusion.apis.stream_manager import destroy_stream, process_image, process_video
async def websocket_stream(websocket : WebSocket) -> None:
subprotocol = get_sec_websocket_protocol(websocket.scope)
access_token = extract_access_token(websocket.scope)
session_id = session_manager.find_session_id(access_token)
session_context.set_session_id(session_id)
await websocket.accept(subprotocol = subprotocol)
await process_image(websocket)
if websocket.client_state == WebSocketState.CONNECTED:
await websocket.close()
async def post_stream(request : Request) -> Response:
headers =\
{
'Location': request.url_for('delete_stream').path
}
content_type = request.headers.get('content-type')
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
session_context.set_session_id(session_id)
if session_id and content_type == 'application/sdp':
sdp_offer = await request.body()
sdp_answer = process_video(session_id, sdp_offer.decode())
if sdp_answer:
return Response(sdp_answer, status_code = HTTP_201_CREATED, media_type = 'application/sdp', headers = headers)
return Response(status_code = HTTP_404_NOT_FOUND)
async def delete_stream(request : Request) -> Response:
access_token = extract_access_token(request.scope)
session_id = session_manager.find_session_id(access_token)
if session_id and destroy_stream(session_id):
return Response(status_code = HTTP_200_OK)
return Response(status_code = HTTP_404_NOT_FOUND)
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from facefusion.types import Locales
LOCALES : Locales =\
{
'en':
{
'ok': 'ok',
'something_went_wrong': 'something went wrong',
'invalid_access_token': 'invalid access token',
'invalid_refresh_token': 'invalid refresh token',
'source_asset_not_found': 'source asset not found',
'target_asset_not_found': 'target asset not found'
}
}
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from facefusion.types import Locals
LOCALS : Locals =\
{
'en':
{
'ok': 'ok',
'something_went_wrong': 'something went wrong',
'invalid_access_token': 'invalid access token',
'invalid_refresh_token': 'invalid refresh token'
}
}
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import asyncio
from functools import lru_cache
from typing import Any, Dict, Optional, cast
from starlette.datastructures import Headers
from starlette.websockets import WebSocket, WebSocketDisconnect
from facefusion import state_manager
from facefusion.execution import detect_execution_devices
from facefusion.system import get_cpu_info, get_disk_info, get_load_average, get_network_info
from facefusion.system import get_operating_system_info, get_python_info, get_ram_info, get_temperature_info
from facefusion.types import SystemInfo
@lru_cache(maxsize = 1)
def get_cached_static_system_info() -> Dict[str, Any]:
return\
{
'operating_system': get_operating_system_info(),
'python': get_python_info()
}
@lru_cache(maxsize = 1)
def get_cached_semi_static_system_info(temp_path : Optional[str]) -> Dict[str, Any]:
return\
{
'disk': get_disk_info(temp_path),
'network': get_network_info()
}
def get_optimized_system_info(temp_path : Optional[str] = None) -> SystemInfo:
static_data = get_cached_static_system_info()
semi_static_data = get_cached_semi_static_system_info(temp_path)
dynamic_data : Dict[str, Any] =\
{
'cpu': get_cpu_info(),
'ram': get_ram_info(),
'temperatures': get_temperature_info(),
'load_average': get_load_average()
}
return cast(SystemInfo, {**static_data, **semi_static_data, **dynamic_data})
async def websocket_metrics(websocket : WebSocket) -> None:
subprotocol = get_requested_subprotocol(websocket)
await websocket.accept(subprotocol = subprotocol)
try:
while True:
temp_path = state_manager.get_temp_path()
execution_devices = detect_execution_devices()
system_info = get_optimized_system_info(temp_path)
metrics =\
{
'devices': execution_devices,
'system': system_info
}
await websocket.send_json(metrics)
await asyncio.sleep(2)
except (WebSocketDisconnect, Exception):
pass
def get_requested_subprotocol(websocket : WebSocket) -> Optional[str]:
headers = Headers(scope = websocket.scope)
protocol_header = headers.get('Sec-WebSocket-Protocol')
if protocol_header:
protocol, _, _ = protocol_header.partition(',')
return protocol.strip()
return None
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import os
import tempfile
from typing import Any, Dict, List
import httpx
import yt_dlp # type: ignore
from gallery_dl import config as gallery_config, extractor as gallery_extractor, job as gallery_job
from starlette.requests import Request
from starlette.responses import JSONResponse
from starlette.status import HTTP_200_OK, HTTP_201_CREATED, HTTP_400_BAD_REQUEST, HTTP_500_INTERNAL_SERVER_ERROR
from facefusion import logger
from facefusion.apis import asset_store
from facefusion.choices import audio_formats
from facefusion.session_context import get_session_id
def resolve_image_urls(url : str) -> List[str]:
gallery_config.load()
image_urls : List[str] = []
try:
for extractor_instance in gallery_extractor.extractors():
if extractor_instance.pattern and extractor_instance.pattern.match(url):
logger.info(f'Detected gallery URL using extractor: {extractor_instance.__name__}', __name__)
extractor_obj = extractor_instance.from_url(url)
if extractor_obj:
for msg in extractor_obj:
if isinstance(msg, tuple) and len(msg) >= 2:
msg_type = msg[0]
if msg_type == 5:
image_data = msg[1]
image_url = image_data.get('url')
if image_url:
image_urls.append(image_url)
break
if not image_urls:
logger.info('Not a gallery URL, treating as direct image URL', __name__)
image_urls = [url]
except Exception as e:
logger.error(f'Failed to extract image URLs: {e}', __name__)
logger.info('Falling back to treating as direct image URL', __name__)
image_urls = [url]
return image_urls
def download_images_from_url(url : str, asset_type : str) -> List[str]:
gallery_config.load()
temp_dir = tempfile.gettempdir()
asset_ids : List[str] = []
is_gallery = False
for extractor_instance in gallery_extractor.extractors():
if extractor_instance.pattern and extractor_instance.pattern.match(url):
logger.info(f'Detected gallery URL using extractor: {extractor_instance.__name__}', __name__)
is_gallery = True
output_dir = os.path.join(temp_dir, f'facefusion_gallery_{os.urandom(8).hex()}')
os.makedirs(output_dir, exist_ok = True)
gallery_config.set((), 'base-directory', output_dir)
gallery_config.set((), 'skip', False)
gdl_job = gallery_job.DownloadJob(url)
gdl_job.run()
session_id = get_session_id()
for root, dirs, files in os.walk(output_dir):
for filename in files:
file_path = os.path.join(root, filename)
asset = asset_store.create_asset(session_id, asset_type, file_path)
if asset:
asset_ids.append(asset.get('id'))
logger.info(f'Registered image as asset {asset.get("id")}', __name__)
break
if not is_gallery:
logger.info('Not a gallery URL, treating as direct image URL', __name__)
with httpx.stream('GET', url, timeout = 30, follow_redirects = True) as response:
response.raise_for_status()
content_type = response.headers.get('content-type', '')
if not content_type.startswith('image/'):
raise ValueError(f'URL does not point to an image. Content-Type: {content_type}')
file_extension = None
if 'image/jpeg' in content_type or 'image/jpg' in content_type:
file_extension = '.jpg'
if 'image/png' in content_type:
file_extension = '.png'
if 'image/gif' in content_type:
file_extension = '.gif'
if 'image/webp' in content_type:
file_extension = '.webp'
if not file_extension:
url_path = url.split('?')[0]
if '.' in url_path:
file_extension = '.' + url_path.split('.')[-1].lower()
else:
file_extension = '.jpg'
filename = f'facefusion_image_{os.urandom(8).hex()}{file_extension}'
file_path = os.path.join(temp_dir, filename)
with open(file_path, 'wb') as f:
for chunk in response.iter_bytes(chunk_size = 8192):
f.write(chunk)
session_id = get_session_id()
asset = asset_store.create_asset(session_id, asset_type, file_path)
if asset:
asset_ids.append(asset.get('id'))
logger.info(f'Downloaded and registered image as asset {asset.get("id")}', __name__)
return asset_ids
def download_audio_from_url(url : str, asset_type : str) -> List[str]:
temp_dir = tempfile.gettempdir()
asset_ids : List[str] = []
# Extract file extension from URL
url_path = url.split('?')[0]
url_extension = os.path.splitext(url_path)[1].lstrip('.')
# Validate extension against supported audio formats
if url_extension not in audio_formats:
raise ValueError(f'Unsupported audio format: {url_extension}. Supported formats: {", ".join(audio_formats)}')
logger.info(f'Downloading audio from URL with extension: {url_extension}', __name__)
with httpx.stream('GET', url, timeout = 30, follow_redirects = True) as response:
response.raise_for_status()
filename = f'facefusion_audio_{os.urandom(8).hex()}.{url_extension}'
file_path = os.path.join(temp_dir, filename)
with open(file_path, 'wb') as f:
for chunk in response.iter_bytes(chunk_size = 8192):
f.write(chunk)
session_id = get_session_id()
asset = asset_store.create_asset(session_id, asset_type, file_path)
if asset:
asset_ids.append(asset.get('id'))
logger.info(f'Downloaded and registered audio as asset {asset.get("id")}', __name__)
return asset_ids
async def remote(request : Request) -> JSONResponse:
body = await request.json()
url = body.get('url')
action = request.query_params.get('action')
media_type = request.query_params.get('media_type', 'video')
asset_type = request.query_params.get('asset_type', 'target')
if not action:
return JSONResponse({'message': 'No action provided. Must be "resolve" or "download"'}, status_code = HTTP_400_BAD_REQUEST)
if action not in ['resolve', 'download']:
return JSONResponse({'message': 'Invalid action. Must be "resolve" or "download"'}, status_code = HTTP_400_BAD_REQUEST)
if media_type not in ['image', 'video', 'audio']:
return JSONResponse({'message': 'Invalid media_type. Must be "image", "video", or "audio"'}, status_code = HTTP_400_BAD_REQUEST)
if asset_type not in ['source', 'target']:
return JSONResponse({'message': 'Invalid asset_type. Must be "source" or "target"'}, status_code = HTTP_400_BAD_REQUEST)
if not url:
return JSONResponse({'message': 'No URL provided'}, status_code = HTTP_400_BAD_REQUEST)
if not isinstance(url, str):
return JSONResponse({'message': 'URL must be a string'}, status_code = HTTP_400_BAD_REQUEST)
url = url.strip()
if not url.startswith('http://') and not url.startswith('https://'):
return JSONResponse({'message': 'URL must start with http:// or https://'}, status_code = HTTP_400_BAD_REQUEST)
quality = body.get('quality', '720p')
if quality not in ['360p', '480p', '720p', '1080p']:
return JSONResponse({'message': 'Quality must be 360p, 480p, 720p, or 1080p'}, status_code = HTTP_400_BAD_REQUEST)
if action == 'resolve':
if media_type == 'image':
image_urls = resolve_image_urls(url)
logger.info(f'Resolved {len(image_urls)} image URL(s)', __name__)
response_data =\
{
'message': 'Image URL(s) resolved successfully',
'image_urls': image_urls,
'count': len(image_urls)
}
return JSONResponse(response_data, status_code = HTTP_200_OK)
quality_map =\
{
'360p': 'bestvideo[height<=360][ext=mp4]+bestaudio[ext=m4a]/best[height<=360]',
'480p': 'bestvideo[height<=480][ext=mp4]+bestaudio[ext=m4a]/best[height<=480]',
'720p': 'bestvideo[height<=720][ext=mp4]+bestaudio[ext=m4a]/best[height<=720]',
'1080p': 'bestvideo[height<=1080][ext=mp4]+bestaudio[ext=m4a]/best[height<=1080]'
}
ydl_opts : Dict[str, Any] =\
{
'format': quality_map[quality],
'quiet': True,
'no_warnings': True
}
logger.info(f'Extracting stream URL from {url} at {quality}', __name__)
try:
ydl = yt_dlp.YoutubeDL(ydl_opts)
info = ydl.extract_info(url, download = False)
except Exception as e:
logger.error(f'Failed to extract video information: {e}', __name__)
return JSONResponse({'message': f'Failed to extract video information: {str(e)}'}, status_code = HTTP_500_INTERNAL_SERVER_ERROR)
if not info:
logger.error('Failed to extract video information', __name__)
return JSONResponse({'message': 'Failed to extract video information'}, status_code = HTTP_500_INTERNAL_SERVER_ERROR)
stream_url = info.get('url')
if not stream_url:
if 'requested_formats' in info and len(info['requested_formats']) > 0:
stream_url = info['requested_formats'][0].get('url')
logger.info('Using URL from requested_formats (video track)', __name__)
elif 'formats' in info and len(info['formats']) > 0:
for fmt in reversed(info['formats']):
if fmt.get('url') and fmt.get('vcodec') != 'none':
stream_url = fmt['url']
logger.info(f'Using URL from format: {fmt.get("format_id")}', __name__)
break
if not stream_url:
logger.error('No stream URL found in any format', __name__)
logger.debug(f'Available keys in info: {list(info.keys())}', __name__)
return JSONResponse({'message': 'No stream URL found'}, status_code = HTTP_500_INTERNAL_SERVER_ERROR)
audio_url = None
if 'requested_formats' in info and len(info['requested_formats']) > 1:
audio_url = info['requested_formats'][1].get('url')
if audio_url:
logger.info('Found separate audio track URL', __name__)
duration = info.get('duration')
fps = info.get('fps')
width = info.get('width')
height = info.get('height')
total_frames = None
if duration and fps:
total_frames = int(duration * fps)
logger.info(f'Calculated total frames: {total_frames} ({duration}s * {fps} fps)', __name__)
logger.info('Stream URL extracted successfully', __name__)
response_data =\
{
'message': 'Stream URL resolved successfully',
'stream_url': stream_url,
'audio_url': audio_url,
'duration': duration,
'fps': fps,
'total_frames': total_frames,
'width': width,
'height': height
}
return JSONResponse(response_data, status_code = HTTP_200_OK)
if action == 'download':
if media_type == 'image':
try:
asset_ids = download_images_from_url(url, asset_type)
except ValueError as e:
return JSONResponse({'message': str(e)}, status_code = HTTP_400_BAD_REQUEST)
except Exception as e:
logger.error(f'Failed to download image(s): {e}', __name__)
return JSONResponse({'message': f'Failed to download image(s): {str(e)}'}, status_code = HTTP_500_INTERNAL_SERVER_ERROR)
response_data =\
{
'message': f'Downloaded and registered {len(asset_ids)} image(s)',
'asset_ids': asset_ids,
'count': len(asset_ids)
}
return JSONResponse(response_data, status_code = HTTP_201_CREATED)
if media_type == 'audio':
try:
asset_ids = download_audio_from_url(url, asset_type)
except ValueError as e:
return JSONResponse({'message': str(e)}, status_code = HTTP_400_BAD_REQUEST)
except Exception as e:
logger.error(f'Failed to download audio: {e}', __name__)
return JSONResponse({'message': f'Failed to download audio: {str(e)}'}, status_code = HTTP_500_INTERNAL_SERVER_ERROR)
response_data =\
{
'message': f'Downloaded and registered {len(asset_ids)} audio file(s)',
'asset_ids': asset_ids,
'count': len(asset_ids)
}
return JSONResponse(response_data, status_code = HTTP_201_CREATED)
quality_map =\
{
'360p': 'bestvideo[height<=360][ext=mp4]+bestaudio[ext=m4a]/best[height<=360][ext=mp4]/best[height<=360]',
'480p': 'bestvideo[height<=480][ext=mp4]+bestaudio[ext=m4a]/best[height<=480][ext=mp4]/best[height<=480]',
'720p': 'bestvideo[height<=720][ext=mp4]+bestaudio[ext=m4a]/best[height<=720][ext=mp4]/best[height<=720]',
'1080p': 'bestvideo[height<=1080][ext=mp4]+bestaudio[ext=m4a]/best[height<=1080][ext=mp4]/best[height<=1080]'
}
temp_dir = tempfile.gettempdir()
output_path = os.path.join(temp_dir, 'facefusion_remote_%(id)s.%(ext)s')
download_opts : Dict[str, Any] =\
{
'format': quality_map[quality],
'outtmpl': output_path,
'quiet': False,
'no_warnings': False
}
logger.info(f'Downloading video from {url} at {quality}', __name__)
ydl = yt_dlp.YoutubeDL(download_opts)
info = ydl.extract_info(url, download = True)
if not info:
logger.error('Failed to download video', __name__)
return JSONResponse({'message': 'Failed to download video'}, status_code = HTTP_500_INTERNAL_SERVER_ERROR)
downloaded_file = ydl.prepare_filename(info)
if not os.path.exists(downloaded_file):
logger.error(f'Downloaded file not found: {downloaded_file}', __name__)
return JSONResponse({'message': 'Downloaded file not found'}, status_code = HTTP_500_INTERNAL_SERVER_ERROR)
duration = info.get('duration')
fps = info.get('fps')
width = info.get('width')
height = info.get('height')
total_frames = None
if duration and fps:
total_frames = int(duration * fps)
logger.info(f'Calculated total frames: {total_frames} ({duration}s * {fps} fps)', __name__)
session_id = get_session_id()
asset = asset_store.create_asset(session_id, asset_type, downloaded_file)
asset_id = asset.get('id') if asset else None
logger.info(f'Video downloaded and registered as asset {asset_id}', __name__)
response_data =\
{
'message': 'Video downloaded and registered as asset',
'asset_id': asset_id,
'metadata':
{
'duration': duration,
'fps': fps,
'total_frames': total_frames,
'width': width,
'height': height
}
}
return JSONResponse(response_data, status_code = HTTP_201_CREATED)
return JSONResponse({'message': 'Invalid request'}, status_code = HTTP_400_BAD_REQUEST)
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import ctypes
import time
from functools import partial
from queue import Queue
from typing import Optional, Tuple
import numpy
from facefusion import rtc
from facefusion.apis.stream_event import create_receive_event
from facefusion.codecs import opus_decoder, opus_encoder
from facefusion.types import AudioCodec, AudioFrame, OpusDecoder, RtcPeer, RtcPeerAudio
def run_audio_encode_loop(rtc_peer : RtcPeer, audio_queue : Queue[Tuple[float, AudioFrame]]) -> None:
temp_audio_time, temp_audio_frame = audio_queue.get()
audio_encoder = opus_encoder.create(48000, 2)
audio_timestamp = 0
while numpy.any(temp_audio_frame):
audio_frame_size = len(temp_audio_frame) // 2
audio_buffer = opus_encoder.encode(audio_encoder, temp_audio_frame.tobytes(), audio_frame_size)
if audio_buffer:
rtc.send_audio(rtc_peer, audio_buffer, audio_timestamp)
audio_timestamp += audio_frame_size
temp_audio_time, temp_audio_frame = audio_queue.get()
opus_encoder.destroy(audio_encoder)
def receive_audio_frames(rtc_peer_audio : RtcPeerAudio, audio_queue : Queue[Tuple[float, AudioFrame]]) -> None:
audio_track = rtc_peer_audio.get('receiver_track')
audio_codec = rtc_peer_audio.get('codec')
audio_decoder = create_audio_decoder(audio_codec)
audio_frame_handler = partial(handle_audio_frame, audio_codec, audio_decoder, audio_queue)
receive_event = create_receive_event(audio_track, audio_frame_handler)
receive_event.wait()
empty_audio_frame = numpy.empty(0)
audio_queue.put((0.0, empty_audio_frame))
destroy_audio_decoder(audio_codec, audio_decoder)
def decode_audio_frame(audio_codec : AudioCodec, audio_decoder : OpusDecoder, input_buffer : bytes) -> Optional[bytes]:
if audio_codec == 'opus':
return opus_decoder.decode(audio_decoder, input_buffer, 960, 2)
return None
def create_audio_decoder(audio_codec : AudioCodec) -> Optional[OpusDecoder]:
if audio_codec == 'opus':
return opus_decoder.create(48000, 2)
return None
def destroy_audio_decoder(audio_codec : AudioCodec, audio_decoder : OpusDecoder) -> None:
if audio_codec == 'opus':
opus_decoder.destroy(audio_decoder)
#todo: Alias Time for float
def handle_audio_frame(audio_codec : AudioCodec, audio_decoder : OpusDecoder, audio_queue : Queue[Tuple[float, AudioFrame]], track : int, data : ctypes.c_void_p, size : int, info : ctypes.c_void_p, pointer : ctypes.c_void_p) -> None:
audio_buffer = ctypes.string_at(data, size)
audio_frame = decode_audio_frame(audio_codec, audio_decoder, audio_buffer)
if audio_frame:
temp_audio_frame = numpy.frombuffer(audio_frame, dtype = numpy.float32)
audio_queue.put((time.monotonic(), temp_audio_frame))
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import ctypes
import threading
from functools import partial
from facefusion.libraries import datachannel as datachannel_module
from facefusion.types import FrameHandler
def create_receive_event(track : int, frame_handler : FrameHandler) -> threading.Event:
datachannel_library = datachannel_module.create_static_library()
receive_event = threading.Event()
frame_callback = ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_void_p, ctypes.c_int, ctypes.c_void_p, ctypes.c_void_p)(frame_handler)
close_callback = ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_void_p)(partial(dispatch_event, receive_event))
datachannel_library.rtcSetFrameCallback(track, frame_callback)
datachannel_library.rtcSetClosedCallback(track, close_callback)
receive_event.frame_callback = frame_callback # type: ignore[attr-defined]
receive_event.close_callback = close_callback # type: ignore[attr-defined]
return receive_event
def dispatch_event(event : threading.Event, track : int, pointer : ctypes.c_void_p) -> None:
event.set()
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import ctypes
import threading
from collections.abc import AsyncIterator
from concurrent.futures import Future, ThreadPoolExecutor
from queue import Queue
from typing import Optional, Tuple
import cv2
import numpy
from starlette.websockets import WebSocket
from facefusion import rtc, rtc_store, state_manager, streamer
from facefusion.apis.stream_audio import receive_audio_frames, run_audio_encode_loop
from facefusion.apis.stream_video import receive_video_frames, run_video_encode_loop
from facefusion.libraries import datachannel as datachannel_module
from facefusion.types import AudioCodec, AudioFrame, PeerConnection, Resolution, RtcPeer, RtcPeerAudio, SdpAnswer, SdpOffer, SessionId, VideoCodec, VisionFrame
async def process_image(websocket : WebSocket) -> None:
capture_vision_frame = await anext(receive_vision_frames(websocket), None)
if numpy.any(capture_vision_frame):
output_vision_frame = streamer.process_stream_frame(capture_vision_frame)
is_success, output_frame_buffer = cv2.imencode('.jpg', output_vision_frame)
if is_success:
await websocket.send_bytes(output_frame_buffer.tobytes())
async def receive_vision_frames(websocket : WebSocket) -> AsyncIterator[VisionFrame]:
websocket_event = await websocket.receive()
while websocket_event.get('type') == 'websocket.receive':
frame_buffer = websocket_event.get('bytes') or bytes()
vision_frame = cv2.imdecode(numpy.frombuffer(frame_buffer, numpy.uint8), cv2.IMREAD_COLOR)
if numpy.any(vision_frame):
yield vision_frame
websocket_event = await websocket.receive()
def process_video(session_id : SessionId, sdp_offer : SdpOffer) -> Optional[SdpAnswer]:
video_codec : VideoCodec = 'vp8'
if rtc.get_payload_type(sdp_offer, 'vp9'):
video_codec = 'vp9'
if rtc.get_payload_type(sdp_offer, 'av1'):
video_codec = 'av1'
video_payload_type = rtc.get_payload_type(sdp_offer, video_codec)
if video_payload_type:
peer_connection : PeerConnection = rtc.create_peer_connection()
video_receiver_track = rtc.add_video_track(peer_connection, 'recvonly', video_codec, video_payload_type)
video_sender_track = rtc.add_video_track(peer_connection, 'sendonly', video_codec, video_payload_type)
sender_bitrate = ctypes.c_uint(0)
receiver_bitrate = ctypes.c_uint(8000)
rtc.wire_sender_bitrate(video_sender_track, sender_bitrate)
audio_codec : AudioCodec = 'opus'
audio_payload_type = rtc.get_payload_type(sdp_offer, audio_codec)
if audio_payload_type:
audio_receiver_track = rtc.add_audio_track(peer_connection, 'recvonly', audio_codec, audio_payload_type)
audio_sender_track = rtc.add_audio_track(peer_connection, 'sendonly', audio_codec, audio_payload_type)
rtc.set_remote_description(peer_connection, sdp_offer)
sdp_answer = rtc.create_sdp_answer(peer_connection)
if sdp_answer:
rtc_peer : RtcPeer =\
{
'peer_connection': peer_connection,
'video':
{
'sender_track': video_sender_track,
'receiver_track': video_receiver_track,
'codec': video_codec
},
'sender_bitrate': sender_bitrate,
'receiver_bitrate': receiver_bitrate
}
if audio_payload_type:
rtc_peer['audio'] = RtcPeerAudio(
sender_track = audio_sender_track,
receiver_track = audio_receiver_track,
codec = audio_codec
)
rtc_store.init_peers(session_id)
rtc_store.get_peers(session_id).append(rtc_peer)
threading.Thread(target = run_peer_loop, args = (session_id, rtc_peer), daemon = True).start()
return sdp_answer
datachannel_module.create_static_library().rtcDeletePeerConnection(peer_connection)
return None
def run_peer_loop(session_id : SessionId, rtc_peer : RtcPeer) -> None:
execution_thread_count = state_manager.get_item('execution_thread_count')
#todo: is bytes, Resolution not a XXXPointer type
video_queue : Queue[Tuple[float, Future[Tuple[bytes, Resolution]]]] = Queue(maxsize = execution_thread_count)
audio_queue : Queue[Tuple[float, AudioFrame]] = Queue(maxsize = execution_thread_count * 10)
video_executor = ThreadPoolExecutor(max_workers = execution_thread_count)
video_receiver_thread = threading.Thread(target = receive_video_frames, args = (rtc_peer.get('video'), video_queue, video_executor), daemon = True)
video_encoder_thread = threading.Thread(target = run_video_encode_loop, args = (rtc_peer, video_queue), daemon = True)
video_receiver_thread.start()
video_encoder_thread.start()
if rtc_peer.get('audio'):
audio_receiver_thread = threading.Thread(target = receive_audio_frames, args = (rtc_peer.get('audio'), audio_queue), daemon = True)
audio_encoder_thread = threading.Thread(target = run_audio_encode_loop, args = (rtc_peer, audio_queue), daemon = True)
audio_receiver_thread.start()
audio_encoder_thread.start()
audio_receiver_thread.join()
audio_encoder_thread.join()
video_receiver_thread.join()
video_encoder_thread.join()
video_executor.shutdown(wait = True)
rtc_store.delete_peers(session_id)
def destroy_stream(session_id : SessionId) -> bool:
if rtc_store.has_peers(session_id):
rtc_store.delete_peers(session_id)
return not rtc_store.has_peers(session_id)
return False
+204
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@@ -0,0 +1,204 @@
import ctypes
import time
from concurrent.futures import Future, ThreadPoolExecutor
from functools import partial
from queue import Queue
from typing import Optional, Tuple
import cv2
import numpy
from facefusion import rtc, streamer
from facefusion.apis.stream_event import create_receive_event
from facefusion.codecs import aom_decoder, aom_encoder, vpx_decoder, vpx_encoder
from facefusion.types import AomDecoder, AomEncoder, AomPointer, BitRate, Resolution, RtcPeer, RtcPeerVideo, VideoCodec, VisionFrame, VpxDecoder, VpxEncoder, VpxPointer
def run_video_encode_loop(rtc_peer : RtcPeer, video_queue : Queue[Tuple[float, Future[Tuple[bytes, Resolution]]]]) -> None:
video_codec = rtc_peer.get('video').get('codec')
video_time, video_future = video_queue.get()
video_buffer, video_resolution = video_future.result()
if video_buffer:
temp_resolution : Resolution = video_resolution
temp_bitrate : BitRate = 8000
video_encoder = create_video_encoder(video_codec, temp_resolution, temp_bitrate)
temp_video_time = video_time
frame_index = 0
while video_buffer:
encode_start = time.monotonic()
sender_bitrate = calculate_sender_bitrate(rtc_peer, temp_bitrate)
if video_resolution[0] - temp_resolution[0] or video_resolution[1] - temp_resolution[1]:
temp_resolution = video_resolution
update_video_encoder_resolution(video_codec, video_encoder, temp_resolution)
if sender_bitrate - temp_bitrate:
temp_bitrate = sender_bitrate
update_video_encoder_bitrate(video_codec, video_encoder, temp_bitrate)
__video_buffer__ = encode_video_frame(video_codec, video_encoder, video_buffer, temp_resolution, frame_index)
if __video_buffer__:
video_timestamp = int(video_time * 90000)
rtc.send_video(rtc_peer, __video_buffer__, video_timestamp)
encode_time = time.monotonic() - encode_start
frame_interval = video_time - temp_video_time
temp_video_time = video_time
receiver_bitrate = calculate_receiver_bitrate(rtc_peer, encode_time, frame_interval)
rtc.adapt_receiver_bitrate(rtc_peer, receiver_bitrate)
frame_index += 1
video_time, video_future = video_queue.get()
video_buffer, video_resolution = video_future.result()
destroy_video_encoder(video_codec, video_encoder)
rtc.clear_bitrate(rtc_peer)
def receive_video_frames(rtc_peer_video : RtcPeerVideo, video_queue : Queue[Tuple[float, Future[Tuple[bytes, Resolution]]]], video_executor : ThreadPoolExecutor) -> None:
video_track = rtc_peer_video.get('receiver_track')
video_codec = rtc_peer_video.get('codec')
video_decoder = create_video_decoder(video_codec)
video_frame_handler = partial(handle_video_frame, video_codec, video_decoder, video_queue, video_executor)
receive_event = create_receive_event(video_track, video_frame_handler)
receive_event.wait()
empty_future : Future[Tuple[bytes, Resolution]] = Future()
empty_future.set_result((bytes(), (0, 0)))
video_queue.put((0.0, empty_future))
destroy_video_decoder(video_codec, video_decoder)
def process_video_frame(input_vision_frame : VisionFrame) -> Tuple[bytes, Resolution]:
output_vision_frame = streamer.process_stream_frame(input_vision_frame)
output_resolution : Resolution = (output_vision_frame.shape[1], output_vision_frame.shape[0])
output_buffer = cv2.cvtColor(output_vision_frame, cv2.COLOR_BGR2YUV_I420).tobytes()
return output_buffer, output_resolution
def calculate_receiver_bitrate(rtc_peer : RtcPeer, encode_time : float, frame_interval : float) -> BitRate:
min_bitrate : BitRate = 500
max_bitrate : BitRate = 8000
bitrate : BitRate = rtc_peer.get('receiver_bitrate').value
if frame_interval > 0:
scale = frame_interval / encode_time
bitrate = int(bitrate * scale)
bitrate = max(min_bitrate, min(max_bitrate, bitrate))
return bitrate
#todo: does not feel final as this is an clamp and not calculate
def calculate_sender_bitrate(rtc_peer : RtcPeer, bitrate : BitRate) -> BitRate:
min_bitrate : BitRate = 500
max_bitrate : BitRate = 8000
peer_bitrate : BitRate = rtc_peer.get('sender_bitrate').value
if peer_bitrate > 0:
bitrate = max(min_bitrate, min(max_bitrate, peer_bitrate))
return bitrate
def decode_video_frame(video_codec : VideoCodec, video_decoder : VpxDecoder | AomDecoder, input_buffer : bytes) -> Optional[VisionFrame]:
if video_codec == 'av1':
aom_pointer = aom_decoder.decode(video_decoder, input_buffer)
if aom_pointer:
return normalize_vision_frame(aom_pointer)
if video_codec in [ 'vp8', 'vp9' ]:
vpx_pointer = vpx_decoder.decode(video_decoder, input_buffer)
if vpx_pointer:
return normalize_vision_frame(vpx_pointer)
return None
def encode_video_frame(video_codec : VideoCodec, video_encoder : VpxEncoder | AomEncoder, input_buffer : bytes, frame_resolution : Resolution, frame_index : int) -> bytes:
if video_codec == 'av1':
return aom_encoder.encode(video_encoder, input_buffer, frame_resolution, frame_index)
if video_codec in [ 'vp8', 'vp9' ]:
return vpx_encoder.encode(video_encoder, input_buffer, frame_resolution, frame_index)
return bytes()
def normalize_vision_frame(frame_pointer : AomPointer | VpxPointer) -> VisionFrame:
frame_width, frame_height = frame_pointer.get('resolution')
vision_frame = numpy.frombuffer(frame_pointer.get('buffer'), dtype = numpy.uint8).reshape((frame_height * 3 // 2, frame_width))
return cv2.cvtColor(vision_frame, cv2.COLOR_YUV2BGR_I420)
def create_video_decoder(video_codec : VideoCodec) -> Optional[VpxDecoder | AomDecoder]:
if video_codec == 'av1':
return aom_decoder.create(8)
if video_codec in [ 'vp8', 'vp9' ]:
return vpx_decoder.create(video_codec, 8)
return None
def create_video_encoder(video_codec : VideoCodec, frame_resolution : Resolution, bitrate : BitRate) -> Optional[VpxEncoder | AomEncoder]:
if video_codec == 'av1':
return aom_encoder.create(frame_resolution, bitrate, 8, 10)
if video_codec in [ 'vp8', 'vp9' ]:
return vpx_encoder.create(video_codec, frame_resolution, bitrate, 8, 10)
return None
def destroy_video_decoder(video_codec : VideoCodec, video_decoder : VpxDecoder | AomDecoder) -> None:
if video_codec == 'av1':
aom_decoder.destroy(video_decoder)
if video_codec in [ 'vp8', 'vp9' ]:
vpx_decoder.destroy(video_decoder)
def destroy_video_encoder(video_codec : VideoCodec, video_encoder : VpxEncoder | AomEncoder) -> None:
if video_codec == 'av1':
aom_encoder.destroy(video_encoder)
if video_codec in [ 'vp8', 'vp9' ]:
vpx_encoder.destroy(video_encoder)
def update_video_encoder_resolution(video_codec : VideoCodec, video_encoder : VpxEncoder | AomEncoder, frame_resolution : Resolution) -> bool:
if video_codec == 'av1':
return aom_encoder.update_resolution(video_encoder, frame_resolution)
if video_codec in [ 'vp8', 'vp9' ]:
return vpx_encoder.update_resolution(video_encoder, frame_resolution)
return False
def update_video_encoder_bitrate(video_codec : VideoCodec, video_encoder : VpxEncoder | AomEncoder, bitrate : BitRate) -> bool:
if video_codec == 'av1':
return aom_encoder.update_bitrate(video_encoder, bitrate)
if video_codec in [ 'vp8', 'vp9' ]:
return vpx_encoder.update_bitrate(video_encoder, bitrate)
return False
#todo: we can remove the dead args or pass audio buffer
def handle_video_frame(video_codec : VideoCodec, video_decoder : VpxDecoder | AomDecoder, video_queue : Queue[Tuple[float, Future[Tuple[bytes, Resolution]]]], video_executor : ThreadPoolExecutor, track : int, data : ctypes.c_void_p, size : int, info : ctypes.c_void_p, pointer : ctypes.c_void_p) -> None:
video_buffer = ctypes.string_at(data, size)
vision_frame = decode_video_frame(video_codec, video_decoder, video_buffer)
if numpy.any(vision_frame) and video_queue.qsize() < video_queue.maxsize:
video_future = video_executor.submit(process_video_frame, vision_frame)
video_queue.put((time.monotonic(), video_future))
+207
View File
@@ -0,0 +1,207 @@
import base64
import subprocess
from typing import List, Optional
import cv2
import numpy
from starlette.requests import Request
from starlette.responses import JSONResponse
from starlette.status import HTTP_200_OK, HTTP_400_BAD_REQUEST
from facefusion import logger
from facefusion.apis import asset_store
from facefusion.filesystem import is_video
from facefusion.video_manager import get_video_capture
from facefusion.vision import fit_contain_frame
def extract_frame_at_timestamp(stream_url : str, timestamp : float, width : int, height : int) -> Optional[numpy.ndarray]:
ffmpeg_command =\
[
'ffmpeg',
'-user_agent', 'Mozilla/5.0 (Windows NT 10.0; Win64; x64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/91.0.4472.124 Safari/537.36',
'-ss', str(timestamp),
'-i', stream_url,
'-vf', f'scale={width}:{height}',
'-frames:v', '1',
'-f', 'rawvideo',
'-pix_fmt', 'bgr24',
'-'
]
try:
result = subprocess.run(ffmpeg_command, capture_output = True, timeout = 10)
if result.returncode == 0 and result.stdout:
frame_size = width * height * 3
if len(result.stdout) >= frame_size:
frame = numpy.frombuffer(result.stdout[:frame_size], dtype = numpy.uint8).reshape((height, width, 3))
return frame
except Exception as e:
logger.debug(f'Failed to extract frame at {timestamp}s: {e}', __name__)
return None
async def get_timeline(request: Request) -> JSONResponse:
"""
Return N preview frames (as base64 JPEGs) from the target video,
resized to specified resolution for timeline preview.
Route: /timeline/{count:int}?target_path=...&is_remote_stream=true&duration=120&fps=30&target_width=1920&target_height=1080&width=160&height=120
"""
# Extract and validate requested count
try:
count = int(request.path_params.get('count', 0))
except (TypeError, ValueError):
return JSONResponse({'message': 'Invalid count parameter'}, status_code=HTTP_400_BAD_REQUEST)
if count <= 0:
return JSONResponse({'message': 'Count must be a positive integer'}, status_code=HTTP_400_BAD_REQUEST)
# Extract and validate preview resolution parameters
try:
preview_width = int(request.query_params.get('width', 160))
preview_height = int(request.query_params.get('height', 120))
except (TypeError, ValueError):
return JSONResponse({'message': 'Invalid width or height parameter'}, status_code=HTTP_400_BAD_REQUEST)
if preview_width <= 0 or preview_height <= 0 or preview_width > 1920 or preview_height > 1080:
return JSONResponse({'message': 'Width and height must be between 1 and 1920x1080'}, status_code=HTTP_400_BAD_REQUEST)
# Extract target_path or asset_id (one is required)
target_path = request.query_params.get('target_path')
asset_id = request.query_params.get('asset_id')
# Extract is_remote_stream flag
is_remote_stream_param = request.query_params.get('is_remote_stream', 'false').lower()
is_remote_stream = is_remote_stream_param in ['true', '1', 'yes']
# Resolve asset_id to path if provided (for local files)
if asset_id and not target_path:
from facefusion.session_context import get_session_id
session_id = get_session_id()
asset = asset_store.get_asset(session_id, asset_id)
if not asset:
return JSONResponse({'message': f'Asset not found: {asset_id}'}, status_code=HTTP_400_BAD_REQUEST)
target_path = asset.get('path')
if not target_path:
return JSONResponse({'message': 'Asset has no path'}, status_code=HTTP_400_BAD_REQUEST)
is_remote_stream = False # Assets are always local files
logger.debug(f'Resolved asset_id {asset_id} to path for timeline preview', __name__)
# Now check if we have a target_path
if not target_path:
return JSONResponse({'message': 'Missing required parameter: either target_path or asset_id'}, status_code=HTTP_400_BAD_REQUEST)
# Extract video metadata (optional for local files, required for remote streams)
duration = None
fps = None
width = 1280
height = 720
if request.query_params.get('duration'):
try:
duration = float(request.query_params.get('duration'))
except (TypeError, ValueError):
return JSONResponse({'message': 'Invalid duration parameter'}, status_code=HTTP_400_BAD_REQUEST)
if request.query_params.get('fps'):
try:
fps = float(request.query_params.get('fps'))
except (TypeError, ValueError):
return JSONResponse({'message': 'Invalid fps parameter'}, status_code=HTTP_400_BAD_REQUEST)
if request.query_params.get('target_width'):
try:
width = int(request.query_params.get('target_width'))
except (TypeError, ValueError):
return JSONResponse({'message': 'Invalid target_width parameter'}, status_code=HTTP_400_BAD_REQUEST)
if request.query_params.get('target_height'):
try:
height = int(request.query_params.get('target_height'))
except (TypeError, ValueError):
return JSONResponse({'message': 'Invalid target_height parameter'}, status_code=HTTP_400_BAD_REQUEST)
previews: List[str] = []
if is_remote_stream:
if not duration or duration <= 0:
return JSONResponse({'message': 'Duration not available for remote stream'}, status_code=HTTP_400_BAD_REQUEST)
frame_total = 0
if duration and fps:
try:
frame_total = int(float(duration) * float(fps))
except Exception:
frame_total = 0
sample_count = min(count, frame_total) if frame_total > 0 else count
timestamps = list(numpy.linspace(0, float(duration), num=sample_count, endpoint=False))
logger.info(f'Extracting {sample_count} frames from remote stream using ffmpeg', __name__)
for timestamp in timestamps:
frame = extract_frame_at_timestamp(target_path, timestamp, width, height)
if frame is None:
logger.warn(f'Failed to extract frame at {timestamp}s', __name__)
continue
thumb_bgr = fit_contain_frame(frame, (preview_width, preview_height))
if thumb_bgr.shape[1] != preview_width or thumb_bgr.shape[0] != preview_height:
thumb_bgr = cv2.resize(thumb_bgr, (preview_width, preview_height))
ok_enc, buf = cv2.imencode('.jpg', thumb_bgr, [cv2.IMWRITE_JPEG_QUALITY, 50])
if not ok_enc:
logger.warn(f'JPEG encode failed for timestamp {timestamp}s', __name__)
continue
b64 = base64.b64encode(buf.tobytes()).decode('ascii')
previews.append(b64)
else:
video_capture = get_video_capture(target_path)
if not video_capture or not video_capture.isOpened():
logger.error(f'Unable to open video capture for target: {target_path}', __name__)
return JSONResponse({'message': 'Unable to open target video'}, status_code=HTTP_400_BAD_REQUEST)
frame_total = int(video_capture.get(cv2.CAP_PROP_FRAME_COUNT) or 0)
if frame_total <= 0 and is_video(target_path):
return JSONResponse({'message': 'Could not determine frame count for target video'}, status_code=HTTP_400_BAD_REQUEST)
sample_count = min(count, frame_total)
indices: List[int] = list(numpy.linspace(1, frame_total, num=sample_count, endpoint=True, dtype=int))
for frame_number in indices:
video_capture.set(cv2.CAP_PROP_POS_FRAMES, max(0, frame_number - 1))
ok_read, frame = video_capture.read()
if not ok_read or frame is None:
logger.warn(f'Failed reading frame {frame_number}', __name__)
continue
thumb_bgr = fit_contain_frame(frame, (preview_width, preview_height))
if thumb_bgr.shape[1] != preview_width or thumb_bgr.shape[0] != preview_height:
thumb_bgr = cv2.resize(thumb_bgr, (preview_width, preview_height))
ok_enc, buf = cv2.imencode('.jpg', thumb_bgr, [cv2.IMWRITE_JPEG_QUALITY, 50])
if not ok_enc:
logger.warn(f'JPEG encode failed for frame {frame_number}', __name__)
continue
b64 = base64.b64encode(buf.tobytes()).decode('ascii')
previews.append(b64)
logger.info(f'Returned {len(previews)}/{sample_count} timeline frames at {preview_width}x{preview_height}', __name__)
return JSONResponse({
'message': 'ok',
'count': len(previews),
'requested': count,
'width': preview_width,
'height': preview_height,
'format': 'jpeg',
'frames': previews
}, status_code=HTTP_200_OK)
+98
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@@ -0,0 +1,98 @@
import subprocess
from functools import lru_cache
from typing import Optional
from starlette.datastructures import Headers
from starlette.requests import Request
from starlette.responses import JSONResponse
from starlette.types import ASGIApp, Receive, Scope, Send
from starlette.websockets import WebSocket
@lru_cache(maxsize = 1)
def get_api_version() -> str:
try:
result = subprocess.run(['git', 'rev-parse', 'HEAD'], capture_output = True, text = True, check = True)
return result.stdout.strip()
except Exception:
return 'unknown'
def check_version_match(request : Request) -> Optional[JSONResponse]:
client_version = request.headers.get('X-API-Version')
server_version = get_api_version()
if not client_version:
return JSONResponse({'error': 'Missing X-API-Version header', 'server_version': server_version}, status_code = 400)
if client_version != server_version:
return JSONResponse({'error': 'Version mismatch', 'client_version': client_version, 'server_version': server_version}, status_code = 409)
return None
def check_version_match_websocket(websocket : WebSocket) -> Optional[str]:
client_version = websocket.headers.get('X-API-Version')
server_version = get_api_version()
if not client_version:
return f'Missing X-API-Version header, server version: {server_version}'
if client_version != server_version:
return f'Version mismatch: client={client_version}, server={server_version}'
return None
async def version_guard_middleware(scope : Scope, receive : Receive, send : Send, app : ASGIApp) -> None:
if scope['type'] == 'http':
# Skip version check for OPTIONS requests (CORS preflight)
if scope.get('method') == 'OPTIONS':
await app(scope, receive, send)
return
headers = Headers(scope = scope)
client_version = headers.get('X-API-Version')
server_version = get_api_version()
if not client_version:
response = JSONResponse({'error': 'Missing X-API-Version header', 'server_version': server_version}, status_code = 400)
await response(scope, receive, send)
return
if client_version != server_version:
response = JSONResponse({'error': 'Version mismatch', 'client_version': client_version, 'server_version': server_version}, status_code = 409)
await response(scope, receive, send)
return
if scope['type'] == 'websocket':
headers = Headers(scope = scope)
client_version = headers.get('X-API-Version')
# For WebSocket connections, also check subprotocols since browsers can't set custom headers
if not client_version:
protocol_header = headers.get('Sec-WebSocket-Protocol')
if protocol_header:
# Parse subprotocols to find api_version
protocols = [p.strip() for p in protocol_header.split(',')]
for protocol in protocols:
if protocol.startswith('api_version.'):
client_version = protocol.split('.', 1)[1]
break
server_version = get_api_version()
if not client_version or client_version != server_version:
websocket = WebSocket(scope, receive = receive, send = send)
reason = f'Missing X-API-Version header, server version: {server_version}' if not client_version else f'Version mismatch: client={client_version}, server={server_version}'
await websocket.close(code = 1008, reason = reason)
return
await app(scope, receive, send)
def create_version_guard(app : ASGIApp) -> ASGIApp:
async def version_guard_app(scope : Scope, receive : Receive, send : Send) -> None:
await version_guard_middleware(scope, receive, send, app)
return version_guard_app
+2 -2
View File
@@ -10,7 +10,7 @@ def detect_app_context() -> AppContext:
while frame:
if os.path.join('facefusion', 'jobs') in frame.f_code.co_filename:
return 'cli'
if os.path.join('facefusion', 'uis') in frame.f_code.co_filename:
return 'ui'
if os.path.join('facefusion', 'apis') in frame.f_code.co_filename:
return 'api'
frame = frame.f_back
return 'cli'
@@ -1,47 +1,15 @@
from facefusion import state_manager
from facefusion.filesystem import get_file_name, is_image, is_video, resolve_file_paths
from facefusion.jobs import job_store
from facefusion.normalizer import normalize_fps, normalize_padding
from facefusion.filesystem import get_file_name, is_video, resolve_file_paths
from facefusion.normalizer import normalize_fps, normalize_space
from facefusion.processors.core import get_processors_modules
from facefusion.types import ApplyStateItem, Args
from facefusion.vision import create_image_resolutions, create_video_resolutions, detect_image_resolution, detect_video_fps, detect_video_resolution, pack_resolution
def reduce_step_args(args : Args) -> Args:
step_args =\
{
key: args[key] for key in args if key in job_store.get_step_keys()
}
return step_args
def reduce_job_args(args : Args) -> Args:
job_args =\
{
key: args[key] for key in args if key in job_store.get_job_keys()
}
return job_args
def collect_step_args() -> Args:
step_args =\
{
key: state_manager.get_item(key) for key in job_store.get_step_keys() #type:ignore[arg-type]
}
return step_args
def collect_job_args() -> Args:
job_args =\
{
key: state_manager.get_item(key) for key in job_store.get_job_keys() #type:ignore[arg-type]
}
return job_args
from facefusion.vision import detect_video_fps
def apply_args(args : Args, apply_state_item : ApplyStateItem) -> None:
# general
apply_state_item('command', args.get('command'))
# workflow
apply_state_item('workflow', args.get('workflow'))
# paths
apply_state_item('temp_path', args.get('temp_path'))
apply_state_item('jobs_path', args.get('jobs_path'))
@@ -55,6 +23,7 @@ def apply_args(args : Args, apply_state_item : ApplyStateItem) -> None:
# face detector
apply_state_item('face_detector_model', args.get('face_detector_model'))
apply_state_item('face_detector_size', args.get('face_detector_size'))
apply_state_item('face_detector_margin', normalize_space(args.get('face_detector_margin')))
apply_state_item('face_detector_angles', args.get('face_detector_angles'))
apply_state_item('face_detector_score', args.get('face_detector_score'))
# face landmarker
@@ -77,34 +46,23 @@ def apply_args(args : Args, apply_state_item : ApplyStateItem) -> None:
apply_state_item('face_mask_areas', args.get('face_mask_areas'))
apply_state_item('face_mask_regions', args.get('face_mask_regions'))
apply_state_item('face_mask_blur', args.get('face_mask_blur'))
apply_state_item('face_mask_padding', normalize_padding(args.get('face_mask_padding')))
apply_state_item('face_mask_padding', normalize_space(args.get('face_mask_padding')))
# voice extractor
apply_state_item('voice_extractor_model', args.get('voice_extractor_model'))
# frame extraction
apply_state_item('trim_frame_start', args.get('trim_frame_start'))
apply_state_item('trim_frame_end', args.get('trim_frame_end'))
apply_state_item('temp_frame_format', args.get('temp_frame_format'))
apply_state_item('keep_temp', args.get('keep_temp'))
# output creation
apply_state_item('output_image_quality', args.get('output_image_quality'))
if is_image(args.get('target_path')):
output_image_resolution = detect_image_resolution(args.get('target_path'))
output_image_resolutions = create_image_resolutions(output_image_resolution)
if args.get('output_image_resolution') in output_image_resolutions:
apply_state_item('output_image_resolution', args.get('output_image_resolution'))
else:
apply_state_item('output_image_resolution', pack_resolution(output_image_resolution))
apply_state_item('output_image_scale', args.get('output_image_scale'))
apply_state_item('output_audio_encoder', args.get('output_audio_encoder'))
apply_state_item('output_audio_quality', args.get('output_audio_quality'))
apply_state_item('output_audio_volume', args.get('output_audio_volume'))
apply_state_item('output_video_encoder', args.get('output_video_encoder'))
apply_state_item('output_video_preset', args.get('output_video_preset'))
apply_state_item('output_video_quality', args.get('output_video_quality'))
if is_video(args.get('target_path')):
output_video_resolution = detect_video_resolution(args.get('target_path'))
output_video_resolutions = create_video_resolutions(output_video_resolution)
if args.get('output_video_resolution') in output_video_resolutions:
apply_state_item('output_video_resolution', args.get('output_video_resolution'))
else:
apply_state_item('output_video_resolution', pack_resolution(output_video_resolution))
apply_state_item('output_video_scale', args.get('output_video_scale'))
if args.get('output_video_fps') or is_video(args.get('target_path')):
output_video_fps = normalize_fps(args.get('output_video_fps')) or detect_video_fps(args.get('target_path'))
apply_state_item('output_video_fps', output_video_fps)
@@ -113,24 +71,22 @@ def apply_args(args : Args, apply_state_item : ApplyStateItem) -> None:
apply_state_item('processors', args.get('processors'))
for processor_module in get_processors_modules(available_processors):
processor_module.apply_args(args, apply_state_item)
# uis
apply_state_item('open_browser', args.get('open_browser'))
apply_state_item('ui_layouts', args.get('ui_layouts'))
apply_state_item('ui_workflow', args.get('ui_workflow'))
# execution
apply_state_item('execution_device_id', args.get('execution_device_id'))
apply_state_item('execution_device_ids', args.get('execution_device_ids'))
apply_state_item('execution_providers', args.get('execution_providers'))
apply_state_item('execution_thread_count', args.get('execution_thread_count'))
apply_state_item('execution_queue_count', args.get('execution_queue_count'))
# download
apply_state_item('download_providers', args.get('download_providers'))
apply_state_item('download_scope', args.get('download_scope'))
# benchmark
apply_state_item('benchmark_mode', args.get('benchmark_mode'))
apply_state_item('benchmark_resolutions', args.get('benchmark_resolutions'))
apply_state_item('benchmark_cycle_count', args.get('benchmark_cycle_count'))
# api
apply_state_item('api_host', args.get('api_host'))
apply_state_item('api_port', args.get('api_port'))
# memory
apply_state_item('video_memory_strategy', args.get('video_memory_strategy'))
apply_state_item('system_memory_limit', args.get('system_memory_limit'))
# misc
apply_state_item('log_level', args.get('log_level'))
apply_state_item('halt_on_error', args.get('halt_on_error'))
+66
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@@ -0,0 +1,66 @@
from typing import List
from facefusion.types import Args, ArgsStore, Scope
ARGS_STORE : ArgsStore =\
{
'api': [],
'cli': [],
'sys': []
}
def get_api_args() -> List[str]:
return ARGS_STORE.get('api')
def get_sys_args() -> List[str]:
return ARGS_STORE.get('sys')
def get_cli_args() -> List[str]:
return ARGS_STORE.get('cli')
def register_args(keys : List[str], scopes : List[Scope]) -> None:
for key in keys:
for scope in scopes:
if scope == 'api':
ARGS_STORE['api'].append(key)
if scope == 'cli':
ARGS_STORE['cli'].append(key)
if scope == 'sys':
ARGS_STORE['sys'].append(key)
def filter_api_args(args : Args) -> Args:
api_args =\
{
key: args.get(key) for key in args if key in get_api_args() #type:ignore[literal-required]
}
return api_args
def filter_sys_args(args : Args) -> Args:
sys_args =\
{
key: args.get(key) for key in args if key in get_sys_args() #type:ignore[literal-required]
}
return sys_args
def filter_cli_args(args : Args) -> Args:
cli_args =\
{
key: args.get(key) for key in args if key in get_cli_args() #type:ignore[literal-required]
}
return cli_args
def filter_step_args(args : Args) -> Args:
step_args =\
{
key: args.get(key) for key in args if key in get_cli_args() and key not in get_sys_args() #type:ignore[literal-required]
}
return step_args
+111
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@@ -0,0 +1,111 @@
import os
import uuid
from datetime import datetime, timezone
from typing import Any, Dict, List, Optional, TypeAlias
from facefusion import filesystem, state_manager
from facefusion.session_context import get_session_id
AssetRegistry : TypeAlias = Dict[str, Dict[str, Any]]
def get_asset_registry() -> AssetRegistry:
registry = state_manager.get_item('asset_registry')
if not registry:
registry = {}
state_manager.set_item('asset_registry', registry)
return registry
def register(asset_type : str, file_path : str, filename : str = None, metadata : Optional[Dict[str, Any]] = None) -> str:
if asset_type not in ['source', 'target', 'output']:
raise ValueError(f"Invalid asset_type: {asset_type}. Must be 'source', 'target', or 'output'")
asset_id = str(uuid.uuid4())
session_id = get_session_id()
if not session_id:
raise ValueError("No active session - cannot register asset without session_id")
if not filename:
filename = os.path.basename(file_path)
file_size = os.path.getsize(file_path)
file_format = filesystem.get_file_format(file_path)
media_type = None
if filesystem.is_image(file_path):
media_type = 'image'
if filesystem.is_video(file_path):
media_type = 'video'
if filesystem.is_audio(file_path):
media_type = 'audio'
asset_data =\
{
'id': asset_id,
'session_id': session_id,
'type': asset_type,
'media_type': media_type,
'format': file_format,
'path': file_path,
'filename': filename,
'size': file_size,
'created_at': datetime.now(timezone.utc).isoformat()
}
if metadata:
asset_data['metadata'] = metadata
registry = get_asset_registry()
registry[asset_id] = asset_data
state_manager.set_item('asset_registry', registry)
return asset_id
def get_asset(asset_id : str) -> Optional[Dict[str, Any]]:
registry = get_asset_registry()
return registry.get(asset_id)
def list_assets(asset_type : Optional[str] = None) -> List[Dict[str, Any]]:
registry = get_asset_registry()
session_id = get_session_id()
assets = list(registry.values())
if session_id:
assets = [a for a in assets if a.get('session_id') == session_id]
if asset_type:
if asset_type not in ['source', 'target', 'output']:
raise ValueError(f"Invalid asset_type: {asset_type}")
assets = [a for a in assets if a.get('type') == asset_type]
return assets
def delete_asset(asset_id : str) -> bool:
registry = get_asset_registry()
asset = registry.get(asset_id)
if not asset:
return False
file_path = asset.get('path')
if file_path and os.path.exists(file_path):
os.remove(file_path)
del registry[asset_id]
state_manager.set_item('asset_registry', registry)
return True
def cleanup_session_assets(session_id : str) -> None:
registry = get_asset_registry()
assets_to_delete = [aid for aid, asset in registry.items() if asset.get('session_id') == session_id]
for asset_id in assets_to_delete:
delete_asset(asset_id)
+35 -7
View File
@@ -1,5 +1,6 @@
import math
from functools import lru_cache
from typing import Any, List, Optional
from typing import Any, List, Optional, Tuple
import numpy
import scipy
@@ -7,11 +8,12 @@ from numpy.typing import NDArray
from facefusion.ffmpeg import read_audio_buffer
from facefusion.filesystem import is_audio
from facefusion.types import Audio, AudioFrame, Fps, Mel, MelFilterBank, Spectrogram
from facefusion.media_helper import restrict_trim_frame
from facefusion.types import Audio, AudioFrame, Duration, Fps, Mel, MelFilterBank, Spectrogram
from facefusion.voice_extractor import batch_extract_voice
@lru_cache()
@lru_cache(maxsize = 64)
def read_static_audio(audio_path : str, fps : Fps) -> Optional[List[AudioFrame]]:
return read_audio(audio_path, fps)
@@ -31,7 +33,7 @@ def read_audio(audio_path : str, fps : Fps) -> Optional[List[AudioFrame]]:
return None
@lru_cache()
@lru_cache(maxsize = 64)
def read_static_voice(audio_path : str, fps : Fps) -> Optional[List[AudioFrame]]:
return read_voice(audio_path, fps)
@@ -118,12 +120,12 @@ def convert_mel_to_hertz(mel : Mel) -> NDArray[Any]:
def create_mel_filter_bank() -> MelFilterBank:
audio_sample_rate = 16000
audio_min_frequency = 55.0
audio_max_frequency = 7600.0
audio_frequency_min = 55.0
audio_frequency_max = 7600.0
mel_filter_total = 80
mel_bin_total = 800
mel_filter_bank = numpy.zeros((mel_filter_total, mel_bin_total // 2 + 1))
mel_frequency_range = numpy.linspace(convert_hertz_to_mel(audio_min_frequency), convert_hertz_to_mel(audio_max_frequency), mel_filter_total + 2)
mel_frequency_range = numpy.linspace(convert_hertz_to_mel(audio_frequency_min), convert_hertz_to_mel(audio_frequency_max), mel_filter_total + 2)
indices = numpy.floor((mel_bin_total + 1) * convert_mel_to_hertz(mel_frequency_range) / audio_sample_rate).astype(numpy.int16)
for index in range(mel_filter_total):
@@ -141,3 +143,29 @@ def create_spectrogram(audio : Audio) -> Spectrogram:
spectrogram = scipy.signal.stft(audio, nperseg = mel_bin_total, nfft = mel_bin_total, noverlap = mel_bin_overlap)[2]
spectrogram = numpy.dot(mel_filter_bank, numpy.abs(spectrogram))
return spectrogram
def count_audio_frame_total(audio_path : str, fps : Fps) -> int:
audio_duration = detect_audio_duration(audio_path)
if audio_duration > 0:
return math.ceil(audio_duration * fps)
return 0
def detect_audio_duration(audio_path : str) -> Duration:
audio_sample_rate = 48000
audio_sample_size = 16
audio_channel_total = 2
if is_audio(audio_path):
audio_buffer = read_audio_buffer(audio_path, audio_sample_rate, audio_sample_size, audio_channel_total)
if audio_buffer:
audio = numpy.frombuffer(audio_buffer, dtype = numpy.int16).reshape(-1, audio_channel_total)
audio_duration = len(audio) / audio_sample_rate
return audio_duration
return 0
def restrict_trim_audio_frame(audio_path : str, fps : Fps, trim_frame_start : Optional[int], trim_frame_end : Optional[int]) -> Tuple[int, int]:
audio_frame_total = count_audio_frame_total(audio_path, fps)
return restrict_trim_frame(audio_frame_total, trim_frame_start, trim_frame_end)
+16 -11
View File
@@ -3,15 +3,16 @@ import os
import statistics
import tempfile
from time import perf_counter
from typing import Generator, List
from typing import Iterator, List
import facefusion.choices
from facefusion import core, state_manager
from facefusion import content_analyser, core, state_manager
from facefusion.cli_helper import render_table
from facefusion.download import conditional_download, resolve_download_url
from facefusion.face_store import clear_static_faces
from facefusion.filesystem import get_file_extension
from facefusion.types import BenchmarkCycleSet
from facefusion.vision import count_video_frame_total, detect_video_fps, detect_video_resolution, pack_resolution
from facefusion.vision import count_video_frame_total, detect_video_fps
def pre_check() -> bool:
@@ -30,7 +31,7 @@ def pre_check() -> bool:
return True
def run() -> Generator[List[BenchmarkCycleSet], None, None]:
def run() -> Iterator[List[BenchmarkCycleSet]]:
benchmark_resolutions = state_manager.get_item('benchmark_resolutions')
benchmark_cycle_count = state_manager.get_item('benchmark_cycle_count')
@@ -42,11 +43,11 @@ def run() -> Generator[List[BenchmarkCycleSet], None, None]:
state_manager.init_item('video_memory_strategy', 'tolerant')
benchmarks = []
target_paths = [facefusion.choices.benchmark_set.get(benchmark_resolution) for benchmark_resolution in benchmark_resolutions if benchmark_resolution in facefusion.choices.benchmark_set]
target_paths = [ facefusion.choices.benchmark_set.get(benchmark_resolution) for benchmark_resolution in benchmark_resolutions if benchmark_resolution in facefusion.choices.benchmark_set ]
for target_path in target_paths:
state_manager.set_item('target_path', target_path)
state_manager.set_item('output_path', suggest_output_path(state_manager.get_item('target_path')))
state_manager.init_item('target_path', target_path)
state_manager.init_item('output_path', suggest_output_path(state_manager.get_item('target_path')))
benchmarks.append(cycle(benchmark_cycle_count))
yield benchmarks
@@ -54,13 +55,17 @@ def run() -> Generator[List[BenchmarkCycleSet], None, None]:
def cycle(cycle_count : int) -> BenchmarkCycleSet:
process_times = []
video_frame_total = count_video_frame_total(state_manager.get_item('target_path'))
output_video_resolution = detect_video_resolution(state_manager.get_item('target_path'))
state_manager.set_item('output_video_resolution', pack_resolution(output_video_resolution))
state_manager.set_item('output_video_fps', detect_video_fps(state_manager.get_item('target_path')))
state_manager.init_item('output_video_fps', detect_video_fps(state_manager.get_item('target_path')))
core.conditional_process()
if state_manager.get_item('benchmark_mode') == 'warm':
core.conditional_process()
for index in range(cycle_count):
if state_manager.get_item('benchmark_mode') == 'cold':
content_analyser.analyse_image.cache_clear()
content_analyser.analyse_video.cache_clear()
clear_static_faces()
start_time = perf_counter()
core.conditional_process()
end_time = perf_counter()
+53
View File
@@ -0,0 +1,53 @@
from typing import List
import cv2
from facefusion.types import CameraPoolSet
CAMERA_POOL_SET : CameraPoolSet =\
{
'capture': {}
}
def get_local_camera_capture(camera_id : int) -> cv2.VideoCapture:
camera_key = str(camera_id)
if camera_key not in CAMERA_POOL_SET.get('capture'):
camera_capture = cv2.VideoCapture(camera_id)
if camera_capture.isOpened():
CAMERA_POOL_SET['capture'][camera_key] = camera_capture
return CAMERA_POOL_SET.get('capture').get(camera_key)
def get_remote_camera_capture(camera_url : str) -> cv2.VideoCapture:
if camera_url not in CAMERA_POOL_SET.get('capture'):
camera_capture = cv2.VideoCapture(camera_url)
if camera_capture.isOpened():
CAMERA_POOL_SET['capture'][camera_url] = camera_capture
return CAMERA_POOL_SET.get('capture').get(camera_url)
def clear_camera_pool() -> None:
for camera_capture in CAMERA_POOL_SET.get('capture').values():
camera_capture.release()
CAMERA_POOL_SET['capture'].clear()
def detect_local_camera_ids(id_start : int, id_end : int) -> List[int]:
local_camera_ids = []
for camera_id in range(id_start, id_end):
cv2.setLogLevel(0)
camera_capture = get_local_camera_capture(camera_id)
cv2.setLogLevel(3)
if camera_capture and camera_capture.isOpened():
local_camera_ids.append(camera_id)
return local_camera_ids
+18 -14
View File
@@ -2,14 +2,15 @@ import logging
from typing import List, Sequence
from facefusion.common_helper import create_float_range, create_int_range
from facefusion.types import Angle, AudioEncoder, AudioFormat, AudioTypeSet, BenchmarkResolution, BenchmarkSet, DownloadProvider, DownloadProviderSet, DownloadScope, EncoderSet, ExecutionProvider, ExecutionProviderSet, FaceDetectorModel, FaceDetectorSet, FaceLandmarkerModel, FaceMaskArea, FaceMaskAreaSet, FaceMaskRegion, FaceMaskRegionSet, FaceMaskType, FaceOccluderModel, FaceParserModel, FaceSelectorMode, FaceSelectorOrder, Gender, ImageFormat, ImageTypeSet, JobStatus, LogLevel, LogLevelSet, Race, Score, TempFrameFormat, UiWorkflow, VideoEncoder, VideoFormat, VideoMemoryStrategy, VideoPreset, VideoTypeSet, WebcamMode
from facefusion.types import Angle, AudioEncoder, AudioFormat, AudioTypeSet, BenchmarkMode, BenchmarkResolution, BenchmarkSet, DownloadProvider, DownloadProviderSet, DownloadScope, EncoderSet, ExecutionProvider, ExecutionProviderSet, FaceDetectorModel, FaceDetectorSet, FaceLandmarkerModel, FaceMaskArea, FaceMaskAreaSet, FaceMaskRegion, FaceMaskRegionSet, FaceMaskType, FaceOccluderModel, FaceParserModel, FaceSelectorMode, FaceSelectorOrder, Gender, ImageFormat, ImageTypeSet, JobStatus, LogLevel, LogLevelSet, Race, Score, TempFrameFormat, VideoEncoder, VideoFormat, VideoMemoryStrategy, VideoPreset, VideoTypeSet, VoiceExtractorModel, WorkFlow
face_detector_set : FaceDetectorSet =\
{
'many': [ '640x640' ],
'retinaface': [ '160x160', '320x320', '480x480', '512x512', '640x640' ],
'scrfd': [ '160x160', '320x320', '480x480', '512x512', '640x640' ],
'yolo_face': [ '640x640' ]
'yolo_face': [ '640x640' ],
'yunet': [ '640x640' ]
}
face_detector_models : List[FaceDetectorModel] = list(face_detector_set.keys())
face_landmarker_models : List[FaceLandmarkerModel] = [ 'many', '2dfan4', 'peppa_wutz' ]
@@ -17,7 +18,7 @@ face_selector_modes : List[FaceSelectorMode] = [ 'many', 'one', 'reference' ]
face_selector_orders : List[FaceSelectorOrder] = [ 'left-right', 'right-left', 'top-bottom', 'bottom-top', 'small-large', 'large-small', 'best-worst', 'worst-best' ]
face_selector_genders : List[Gender] = [ 'female', 'male' ]
face_selector_races : List[Race] = [ 'white', 'black', 'latino', 'asian', 'indian', 'arabic' ]
face_occluder_models : List[FaceOccluderModel] = [ 'xseg_1', 'xseg_2', 'xseg_3' ]
face_occluder_models : List[FaceOccluderModel] = [ 'many', 'xseg_1', 'xseg_2', 'xseg_3' ]
face_parser_models : List[FaceParserModel] = [ 'bisenet_resnet_18', 'bisenet_resnet_34' ]
face_mask_types : List[FaceMaskType] = [ 'box', 'occlusion', 'area', 'region' ]
face_mask_area_set : FaceMaskAreaSet =\
@@ -42,6 +43,10 @@ face_mask_region_set : FaceMaskRegionSet =\
face_mask_areas : List[FaceMaskArea] = list(face_mask_area_set.keys())
face_mask_regions : List[FaceMaskRegion] = list(face_mask_region_set.keys())
voice_extractor_models : List[VoiceExtractorModel] = [ 'kim_vocal_1', 'kim_vocal_2', 'uvr_mdxnet' ]
workflows : List[WorkFlow] = [ 'auto', 'audio-to-image', 'image-to-image', 'image-to-video' ]
audio_type_set : AudioTypeSet =\
{
'flac': 'audio/flac',
@@ -65,8 +70,11 @@ video_type_set : VideoTypeSet =\
'm4v': 'video/mp4',
'mkv': 'video/x-matroska',
'mp4': 'video/mp4',
'mpeg': 'video/mpeg',
'mov': 'video/quicktime',
'webm': 'video/webm'
'mxf': 'application/mxf',
'webm': 'video/webm',
'wmv': 'video/x-ms-wmv'
}
audio_formats : List[AudioFormat] = list(audio_type_set.keys())
image_formats : List[ImageFormat] = list(image_type_set.keys())
@@ -76,15 +84,13 @@ temp_frame_formats : List[TempFrameFormat] = [ 'bmp', 'jpeg', 'png', 'tiff' ]
output_encoder_set : EncoderSet =\
{
'audio': [ 'flac', 'aac', 'libmp3lame', 'libopus', 'libvorbis', 'pcm_s16le', 'pcm_s32le' ],
'video': [ 'libx264', 'libx265', 'libvpx-vp9', 'h264_nvenc', 'hevc_nvenc', 'h264_amf', 'hevc_amf', 'h264_qsv', 'hevc_qsv', 'h264_videotoolbox', 'hevc_videotoolbox', 'rawvideo' ]
'video': [ 'libx264', 'libx264rgb', 'libx265', 'libvpx-vp9', 'h264_nvenc', 'hevc_nvenc', 'h264_amf', 'hevc_amf', 'h264_qsv', 'hevc_qsv', 'h264_videotoolbox', 'hevc_videotoolbox', 'rawvideo' ]
}
output_audio_encoders : List[AudioEncoder] = output_encoder_set.get('audio')
output_video_encoders : List[VideoEncoder] = output_encoder_set.get('video')
output_video_presets : List[VideoPreset] = [ 'ultrafast', 'superfast', 'veryfast', 'faster', 'fast', 'medium', 'slow', 'slower', 'veryslow' ]
image_template_sizes : List[float] = [ 0.25, 0.5, 0.75, 1, 1.5, 2, 2.5, 3, 3.5, 4 ]
video_template_sizes : List[int] = [ 240, 360, 480, 540, 720, 1080, 1440, 2160, 4320 ]
benchmark_modes : List[BenchmarkMode] = [ 'warm', 'cold' ]
benchmark_set : BenchmarkSet =\
{
'240p': '.assets/examples/target-240p.mp4',
@@ -97,15 +103,13 @@ benchmark_set : BenchmarkSet =\
}
benchmark_resolutions : List[BenchmarkResolution] = list(benchmark_set.keys())
webcam_modes : List[WebcamMode] = [ 'inline', 'udp', 'v4l2' ]
webcam_resolutions : List[str] = [ '320x240', '640x480', '800x600', '1024x768', '1280x720', '1280x960', '1920x1080', '2560x1440', '3840x2160' ]
execution_provider_set : ExecutionProviderSet =\
{
'cuda': 'CUDAExecutionProvider',
'tensorrt': 'TensorrtExecutionProvider',
'directml': 'DmlExecutionProvider',
'rocm': 'ROCMExecutionProvider',
'migraphx': 'MIGraphXExecutionProvider',
'openvino': 'OpenVINOExecutionProvider',
'coreml': 'CoreMLExecutionProvider',
'cpu': 'CPUExecutionProvider'
@@ -145,13 +149,11 @@ log_level_set : LogLevelSet =\
}
log_levels : List[LogLevel] = list(log_level_set.keys())
ui_workflows : List[UiWorkflow] = [ 'instant_runner', 'job_runner', 'job_manager' ]
job_statuses : List[JobStatus] = [ 'drafted', 'queued', 'completed', 'failed' ]
benchmark_cycle_count_range : Sequence[int] = create_int_range(1, 10, 1)
execution_thread_count_range : Sequence[int] = create_int_range(1, 32, 1)
execution_queue_count_range : Sequence[int] = create_int_range(1, 4, 1)
system_memory_limit_range : Sequence[int] = create_int_range(0, 128, 4)
face_detector_margin_range : Sequence[int] = create_int_range(0, 100, 1)
face_detector_angles : Sequence[Angle] = create_int_range(0, 270, 90)
face_detector_score_range : Sequence[Score] = create_float_range(0.0, 1.0, 0.05)
face_landmarker_score_range : Sequence[Score] = create_float_range(0.0, 1.0, 0.05)
@@ -160,6 +162,8 @@ face_mask_padding_range : Sequence[int] = create_int_range(0, 100, 1)
face_selector_age_range : Sequence[int] = create_int_range(0, 100, 1)
reference_face_distance_range : Sequence[float] = create_float_range(0.0, 1.0, 0.05)
output_image_quality_range : Sequence[int] = create_int_range(0, 100, 1)
output_image_scale_range : Sequence[float] = create_float_range(0.25, 8.0, 0.25)
output_audio_quality_range : Sequence[int] = create_int_range(0, 100, 1)
output_audio_volume_range : Sequence[int] = create_int_range(0, 100, 1)
output_video_quality_range : Sequence[int] = create_int_range(0, 100, 1)
output_video_scale_range : Sequence[float] = create_float_range(0.25, 8.0, 0.25)
+4 -4
View File
@@ -1,10 +1,10 @@
from typing import Tuple
from typing import List, Tuple
from facefusion.logger import get_package_logger
from facefusion.types import TableContents, TableHeaders
from facefusion.types import TableContent, TableHeader
def render_table(headers : TableHeaders, contents : TableContents) -> None:
def render_table(headers : List[TableHeader], contents : List[List[TableContent]]) -> None:
package_logger = get_package_logger()
table_column, table_separator = create_table_parts(headers, contents)
@@ -19,7 +19,7 @@ def render_table(headers : TableHeaders, contents : TableContents) -> None:
package_logger.critical(table_separator)
def create_table_parts(headers : TableHeaders, contents : TableContents) -> Tuple[str, str]:
def create_table_parts(headers : List[TableHeader], contents : List[List[TableContent]]) -> Tuple[str, str]:
column_parts = []
separator_parts = []
widths = [ len(header) for header in headers ]
View File
+70
View File
@@ -0,0 +1,70 @@
import ctypes
import struct
from typing import Optional
from facefusion.libraries import aom as aom_module
from facefusion.types import AomDecoder, AomPointer
def create(thread_count : int) -> Optional[AomDecoder]:
aom_library = aom_module.create_static_library()
if aom_library:
aom_decoder = ctypes.create_string_buffer(128)
aom_codec = ctypes.c_void_p.in_dll(aom_library, 'aom_codec_av1_dx_algo')
config_buffer = ctypes.create_string_buffer(128)
struct.pack_into('I', config_buffer, 0, thread_count)
struct.pack_into('I', config_buffer, 12, 1)
if aom_library.aom_codec_dec_init_ver(aom_decoder, ctypes.byref(aom_codec), config_buffer, 0, 22) == 0:
return aom_decoder
return None
def decode(aom_decoder : AomDecoder, input_buffer : bytes) -> Optional[AomPointer]:
aom_library = aom_module.create_static_library()
if aom_library and input_buffer:
input_total = len(input_buffer)
temp_buffer = ctypes.create_string_buffer(input_buffer)
if aom_library.aom_codec_decode(aom_decoder, temp_buffer, input_total, None) == 0:
address = aom_library.aom_codec_get_frame(aom_decoder, ctypes.byref(ctypes.c_void_p(0)))
if address:
frame_width = ctypes.c_uint.from_address(address + 28).value & ~1
frame_height = ctypes.c_uint.from_address(address + 32).value & ~1
return AomPointer(
buffer = collect(address, frame_width, frame_height),
resolution = (frame_width, frame_height)
)
return None
def collect(address : int, frame_width : int, frame_height : int) -> bytes:
output_parts = []
for index in range(3):
plane_pointer = ctypes.c_void_p.from_address(address + 64 + index * 8).value
stride = ctypes.c_int.from_address(address + 88 + index * 4).value
plane_width = frame_width >> (index > 0)
plane_height = frame_height >> (index > 0)
if stride == plane_width:
output_parts.append(ctypes.string_at(plane_pointer, plane_width * plane_height))
else:
for row in range(plane_height):
output_parts.append(ctypes.string_at(plane_pointer + row * stride, plane_width))
return bytes().join(output_parts)
def destroy(aom_decoder : AomDecoder) -> None:
aom_library = aom_module.create_static_library()
if aom_library:
aom_library.aom_codec_destroy(aom_decoder)
+94
View File
@@ -0,0 +1,94 @@
import ctypes
import struct
from typing import Optional
from facefusion.libraries import aom as aom_module
from facefusion.types import AomEncoder, BitRate, Resolution
def create(frame_resolution : Resolution, bitrate : BitRate, thread_count : int, cpu_count : int) -> Optional[AomEncoder]:
aom_library = aom_module.create_static_library()
if aom_library:
aom_encoder = ctypes.create_string_buffer(1152)
aom_codec = ctypes.c_void_p.in_dll(aom_library, 'aom_codec_av1_cx_algo')
config_buffer = ctypes.create_string_buffer(1024)
if aom_library.aom_codec_enc_config_default(ctypes.byref(aom_codec), config_buffer, 1) == 0:
struct.pack_into('I', config_buffer, 4, thread_count)
struct.pack_into('I', config_buffer, 12, frame_resolution[0])
struct.pack_into('I', config_buffer, 16, frame_resolution[1])
struct.pack_into('I', config_buffer, 136, bitrate)
struct.pack_into('I', config_buffer, 192, 30)
if aom_library.aom_codec_enc_init_ver(aom_encoder, ctypes.byref(aom_codec), config_buffer, 0, 25) == 0:
aom_library.aom_codec_control(aom_encoder, 13, ctypes.c_int(cpu_count))
aom_library.aom_codec_control(aom_encoder, 75, ctypes.c_int(1))
aom_library.aom_codec_control(aom_encoder, 106, ctypes.c_int(0))
aom_library.aom_codec_control(aom_encoder, 122, ctypes.c_int(0))
aom_library.aom_codec_control(aom_encoder, 123, ctypes.c_int(0))
ctypes.memmove(ctypes.addressof(aom_encoder) + 128, config_buffer, 1024)
return aom_encoder
return None
def encode(aom_encoder : AomEncoder, input_buffer : bytes, frame_resolution : Resolution, frame_index : int) -> bytes:
aom_library = aom_module.create_static_library()
output_buffer = bytes()
if aom_library:
temp_buffer = ctypes.create_string_buffer(256)
encode_buffer = ctypes.create_string_buffer(input_buffer)
if aom_library.aom_img_wrap(temp_buffer, 0x102, frame_resolution[0], frame_resolution[1], 1, encode_buffer) and aom_library.aom_codec_encode(aom_encoder, temp_buffer, frame_index, 1, 0, 1) == 0:
output_buffer = collect(aom_encoder)
return output_buffer
def collect(aom_encoder : AomEncoder) -> bytes:
aom_library = aom_module.create_static_library()
output_parts = []
packet_cursor = ctypes.c_void_p(0)
packet = aom_library.aom_codec_get_cx_data(aom_encoder, ctypes.byref(packet_cursor))
while packet:
if ctypes.c_int.from_address(packet).value == 0:
buffer_pointer = ctypes.c_void_p.from_address(packet + 8).value
buffer_size = ctypes.c_size_t.from_address(packet + 16).value
output_parts.append(ctypes.string_at(buffer_pointer, buffer_size))
packet = aom_library.aom_codec_get_cx_data(aom_encoder, ctypes.byref(packet_cursor))
return bytes().join(output_parts)
def update_resolution(aom_encoder : AomEncoder, frame_resolution : Resolution) -> bool:
aom_library = aom_module.create_static_library()
if aom_library:
struct.pack_into('I', aom_encoder, 128 + 12, frame_resolution[0])
struct.pack_into('I', aom_encoder, 128 + 16, frame_resolution[1])
return aom_library.aom_codec_enc_config_set(aom_encoder, ctypes.cast(ctypes.addressof(aom_encoder) + 128, ctypes.c_void_p)) == 0
return False
def update_bitrate(aom_encoder : AomEncoder, bitrate : BitRate) -> bool:
aom_library = aom_module.create_static_library()
if aom_library:
struct.pack_into('I', aom_encoder, 128 + 136, bitrate)
return aom_library.aom_codec_enc_config_set(aom_encoder, ctypes.cast(ctypes.addressof(aom_encoder) + 128, ctypes.c_void_p)) == 0
return False
def destroy(aom_encoder : AomEncoder) -> None:
aom_library = aom_module.create_static_library()
if aom_library:
aom_library.aom_codec_destroy(aom_encoder)
+36
View File
@@ -0,0 +1,36 @@
import ctypes
from typing import Optional
from facefusion.libraries import opus as opus_module
from facefusion.types import OpusDecoder
def create(sample_rate : int, channel_total : int) -> Optional[OpusDecoder]:
opus_library = opus_module.create_static_library()
if opus_library:
return opus_library.opus_decoder_create(sample_rate, channel_total, ctypes.byref(ctypes.c_int(0)))
return None
def decode(opus_decoder : OpusDecoder, input_buffer : bytes, frame_size : int, channel_total : int) -> bytes:
opus_library = opus_module.create_static_library()
output_buffer = bytes()
if opus_library:
input_total = len(input_buffer)
decode_buffer = (ctypes.c_float * (frame_size * channel_total))()
decode_length = opus_library.opus_decode_float(opus_decoder, input_buffer, input_total, decode_buffer, frame_size, 0)
if decode_length:
output_buffer = ctypes.string_at(ctypes.addressof(decode_buffer), decode_length * channel_total * ctypes.sizeof(ctypes.c_float))
return output_buffer
def destroy(opus_decoder : OpusDecoder) -> None:
opus_library = opus_module.create_static_library()
if opus_library:
opus_library.opus_decoder_destroy(opus_decoder)
+36
View File
@@ -0,0 +1,36 @@
import ctypes
from typing import Optional
from facefusion.libraries import opus as opus_module
from facefusion.types import OpusEncoder
def create(sample_rate : int, channel_total : int) -> Optional[OpusEncoder]:
opus_library = opus_module.create_static_library()
if opus_library:
return opus_library.opus_encoder_create(sample_rate, channel_total, 2049, ctypes.byref(ctypes.c_int(0)))
return None
def encode(opus_encoder : OpusEncoder, input_buffer : bytes, frame_size : int) -> bytes:
opus_library = opus_module.create_static_library()
output_buffer = bytes()
if opus_library:
temp_buffer = ctypes.create_string_buffer(2048)
encode_buffer = ctypes.cast(ctypes.create_string_buffer(input_buffer), ctypes.POINTER(ctypes.c_float))
encode_length = opus_library.opus_encode_float(opus_encoder, encode_buffer, frame_size, temp_buffer, 2048)
if encode_length:
output_buffer = temp_buffer.raw[:encode_length]
return output_buffer
def destroy(opus_encoder : OpusEncoder) -> None:
opus_library = opus_module.create_static_library()
if opus_library:
opus_library.opus_encoder_destroy(opus_encoder)
+74
View File
@@ -0,0 +1,74 @@
import ctypes
import struct
from typing import Optional
from facefusion.libraries import vpx as vpx_module
from facefusion.types import VpxDecoder, VpxPointer, VxpVideoCodec
def create(video_codec : VxpVideoCodec, thread_count : int) -> Optional[VpxDecoder]:
vpx_library = vpx_module.create_static_library()
if vpx_library:
vpx_decoder = ctypes.create_string_buffer(64)
vpx_algo = 'vpx_codec_vp8_dx_algo'
if video_codec == 'vp9':
vpx_algo = 'vpx_codec_vp9_dx_algo'
vpx_codec = ctypes.c_void_p.in_dll(vpx_library, vpx_algo)
config_buffer = ctypes.create_string_buffer(128)
struct.pack_into('I', config_buffer, 0, thread_count)
if vpx_library.vpx_codec_dec_init_ver(vpx_decoder, ctypes.byref(vpx_codec), config_buffer, 0, 12) == 0:
return vpx_decoder
return None
def decode(vpx_decoder : VpxDecoder, input_buffer : bytes) -> Optional[VpxPointer]:
vpx_library = vpx_module.create_static_library()
if vpx_library and input_buffer:
input_total = len(input_buffer)
temp_buffer = ctypes.create_string_buffer(input_buffer)
if vpx_library.vpx_codec_decode(vpx_decoder, temp_buffer, input_total, None, 0) == 0:
address = vpx_library.vpx_codec_get_frame(vpx_decoder, ctypes.byref(ctypes.c_void_p(0)))
if address:
frame_width = ctypes.c_uint.from_address(address + 24).value & ~1
frame_height = ctypes.c_uint.from_address(address + 28).value & ~1
return VpxPointer(
buffer = collect(address, frame_width, frame_height),
resolution = (frame_width, frame_height)
)
return None
def collect(address : int, frame_width : int, frame_height : int) -> bytes:
output_parts = []
for index in range(3):
plane_pointer = ctypes.c_void_p.from_address(address + 48 + index * 8).value
stride = ctypes.c_int.from_address(address + 80 + index * 4).value
plane_width = frame_width >> (index > 0)
plane_height = frame_height >> (index > 0)
if stride == plane_width:
output_parts.append(ctypes.string_at(plane_pointer, plane_width * plane_height))
else:
for row in range(plane_height):
output_parts.append(ctypes.string_at(plane_pointer + row * stride, plane_width))
return bytes().join(output_parts)
def destroy(vpx_decoder : VpxDecoder) -> None:
vpx_library = vpx_module.create_static_library()
if vpx_library:
vpx_library.vpx_codec_destroy(vpx_decoder)
+104
View File
@@ -0,0 +1,104 @@
import ctypes
import struct
from typing import Optional
from facefusion.libraries import vpx as vpx_module
from facefusion.types import BitRate, Resolution, VpxEncoder, VxpVideoCodec
def create(video_codec : VxpVideoCodec, frame_resolution : Resolution, bitrate : BitRate, thread_count : int, cpu_count : int) -> Optional[VpxEncoder]:
vpx_library = vpx_module.create_static_library()
if vpx_library:
vpx_encoder = ctypes.create_string_buffer(640)
vpx_algo = 'vpx_codec_vp8_cx_algo'
if video_codec == 'vp9':
vpx_algo = 'vpx_codec_vp9_cx_algo'
vpx_codec = ctypes.c_void_p.in_dll(vpx_library, vpx_algo)
config_buffer = ctypes.create_string_buffer(512)
if vpx_library.vpx_codec_enc_config_default(ctypes.byref(vpx_codec), config_buffer, 0) == 0:
struct.pack_into('I', config_buffer, 4, thread_count)
struct.pack_into('I', config_buffer, 12, frame_resolution[0])
struct.pack_into('I', config_buffer, 16, frame_resolution[1])
struct.pack_into('I', config_buffer, 28, 1)
struct.pack_into('I', config_buffer, 36, 0)
struct.pack_into('I', config_buffer, 44, 0)
struct.pack_into('I', config_buffer, 72, 0)
struct.pack_into('I', config_buffer, 112, bitrate)
struct.pack_into('I', config_buffer, 116, 2)
struct.pack_into('I', config_buffer, 120, 50)
struct.pack_into('I', config_buffer, 124, 50)
struct.pack_into('I', config_buffer, 128, 50)
if vpx_library.vpx_codec_enc_init_ver(vpx_encoder, ctypes.byref(vpx_codec), config_buffer, 0, 39) == 0:
vpx_library.vpx_codec_control_(vpx_encoder, 13, ctypes.c_int(cpu_count))
vpx_library.vpx_codec_control_(vpx_encoder, 12, ctypes.c_int(0))
vpx_library.vpx_codec_control_(vpx_encoder, 27, ctypes.c_int(10))
ctypes.memmove(ctypes.addressof(vpx_encoder) + 64, config_buffer, 512)
return vpx_encoder
return None
def encode(vpx_encoder : VpxEncoder, input_buffer : bytes, frame_resolution : Resolution, frame_index : int) -> bytes:
vpx_library = vpx_module.create_static_library()
output_buffer = bytes()
if vpx_library:
temp_buffer = ctypes.create_string_buffer(256)
encode_buffer = ctypes.create_string_buffer(input_buffer)
if vpx_library.vpx_img_wrap(temp_buffer, 0x102, frame_resolution[0], frame_resolution[1], 1, encode_buffer) and vpx_library.vpx_codec_encode(vpx_encoder, temp_buffer, frame_index, 1, 0, 1) == 0:
output_buffer = collect(vpx_encoder)
return output_buffer
def collect(vpx_encoder : VpxEncoder) -> bytes:
vpx_library = vpx_module.create_static_library()
output_parts = []
packet_cursor = ctypes.c_void_p(0)
packet = vpx_library.vpx_codec_get_cx_data(vpx_encoder, ctypes.byref(packet_cursor))
while packet:
if ctypes.c_int.from_address(packet).value == 0:
buffer_pointer = ctypes.c_void_p.from_address(packet + 8).value
buffer_size = ctypes.c_size_t.from_address(packet + 16).value
output_parts.append(ctypes.string_at(buffer_pointer, buffer_size))
packet = vpx_library.vpx_codec_get_cx_data(vpx_encoder, ctypes.byref(packet_cursor))
return bytes().join(output_parts)
def update_resolution(vpx_encoder : VpxEncoder, frame_resolution : Resolution) -> bool:
vpx_library = vpx_module.create_static_library()
if vpx_library:
struct.pack_into('I', vpx_encoder, 64 + 12, frame_resolution[0])
struct.pack_into('I', vpx_encoder, 64 + 16, frame_resolution[1])
return vpx_library.vpx_codec_enc_config_set(vpx_encoder, ctypes.cast(ctypes.addressof(vpx_encoder) + 64, ctypes.c_void_p)) == 0
return False
def update_bitrate(vpx_encoder : VpxEncoder, bitrate : BitRate) -> bool:
vpx_library = vpx_module.create_static_library()
if vpx_library:
struct.pack_into('I', vpx_encoder, 64 + 112, bitrate)
return vpx_library.vpx_codec_enc_config_set(vpx_encoder, ctypes.cast(ctypes.addressof(vpx_encoder) + 64, ctypes.c_void_p)) == 0
return False
def destroy(vpx_encoder : VpxEncoder) -> None:
vpx_library = vpx_module.create_static_library()
if vpx_library:
vpx_library.vpx_codec_destroy(vpx_encoder)
+4 -4
View File
@@ -15,11 +15,11 @@ def is_windows() -> bool:
def create_int_metavar(int_range : Sequence[int]) -> str:
return '[' + str(int_range[0]) + '..' + str(int_range[-1]) + ':' + str(calc_int_step(int_range)) + ']'
return '[' + str(int_range[0]) + '..' + str(int_range[-1]) + ':' + str(calculate_int_step(int_range)) + ']'
def create_float_metavar(float_range : Sequence[float]) -> str:
return '[' + str(float_range[0]) + '..' + str(float_range[-1]) + ':' + str(calc_float_step(float_range)) + ']'
return '[' + str(float_range[0]) + '..' + str(float_range[-1]) + ':' + str(calculate_float_step(float_range)) + ']'
def create_int_range(start : int, end : int, step : int) -> Sequence[int]:
@@ -42,11 +42,11 @@ def create_float_range(start : float, end : float, step : float) -> Sequence[flo
return float_range
def calc_int_step(int_range : Sequence[int]) -> int:
def calculate_int_step(int_range : Sequence[int]) -> int:
return int_range[1] - int_range[0]
def calc_float_step(float_range : Sequence[float]) -> float:
def calculate_float_step(float_range : Sequence[float]) -> float:
return round(float_range[1] - float_range[0], 2)
+33 -11
View File
@@ -4,23 +4,30 @@ from typing import List, Tuple
import numpy
from tqdm import tqdm
from facefusion import inference_manager, state_manager, wording
from facefusion import inference_manager, state_manager, translator
from facefusion.common_helper import is_macos
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url
from facefusion.execution import has_execution_provider
from facefusion.filesystem import resolve_relative_path
from facefusion.thread_helper import conditional_thread_semaphore
from facefusion.types import Detection, DownloadScope, DownloadSet, ExecutionProvider, Fps, InferencePool, ModelSet, VisionFrame
from facefusion.vision import detect_video_fps, fit_frame, read_image, read_video_frame
from facefusion.vision import detect_video_fps, fit_contain_frame, read_image, read_video_frame
STREAM_COUNTER = 0
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'nsfw_1':
{
'__metadata__':
{
'vendor': 'EraX',
'license': 'Apache-2.0',
'year': 2024
},
'hashes':
{
'content_analyser':
@@ -43,6 +50,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'nsfw_2':
{
'__metadata__':
{
'vendor': 'Marqo',
'license': 'Apache-2.0',
'year': 2024
},
'hashes':
{
'content_analyser':
@@ -65,6 +78,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'nsfw_3':
{
'__metadata__':
{
'vendor': 'Freepik',
'license': 'MIT',
'year': 2025
},
'hashes':
{
'content_analyser':
@@ -101,7 +120,7 @@ def clear_inference_pool() -> None:
def resolve_execution_providers() -> List[ExecutionProvider]:
if has_execution_provider('coreml'):
if is_macos() and has_execution_provider('coreml'):
return [ 'cpu' ]
return state_manager.get_item('execution_providers')
@@ -137,13 +156,13 @@ def analyse_frame(vision_frame : VisionFrame) -> bool:
return detect_nsfw(vision_frame)
@lru_cache(maxsize = None)
@lru_cache()
def analyse_image(image_path : str) -> bool:
vision_frame = read_image(image_path)
return analyse_frame(vision_frame)
@lru_cache(maxsize = None)
@lru_cache()
def analyse_video(video_path : str, trim_frame_start : int, trim_frame_end : int) -> bool:
video_fps = detect_video_fps(video_path)
frame_range = range(trim_frame_start, trim_frame_end)
@@ -151,16 +170,19 @@ def analyse_video(video_path : str, trim_frame_start : int, trim_frame_end : int
total = 0
counter = 0
with tqdm(total = len(frame_range), desc = wording.get('analysing'), unit = 'frame', ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
with tqdm(total = len(frame_range), desc = translator.get('analysing'), unit = 'frame', ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
for frame_number in frame_range:
if frame_number % int(video_fps) == 0:
vision_frame = read_video_frame(video_path, frame_number)
total += 1
if analyse_frame(vision_frame):
counter += 1
if counter > 0 and total > 0:
rate = counter / total * 100
progress.set_postfix(rate = rate)
progress.update()
@@ -196,8 +218,8 @@ def detect_with_nsfw_3(vision_frame : VisionFrame) -> bool:
return bool(detection_score > 10.5)
def forward_nsfw(vision_frame : VisionFrame, nsfw_model : str) -> Detection:
content_analyser = get_inference_pool().get(nsfw_model)
def forward_nsfw(vision_frame : VisionFrame, model_name : str) -> Detection:
content_analyser = get_inference_pool().get(model_name)
with conditional_thread_semaphore():
detection = content_analyser.run(None,
@@ -205,7 +227,7 @@ def forward_nsfw(vision_frame : VisionFrame, nsfw_model : str) -> Detection:
'input': vision_frame
})[0]
if nsfw_model in [ 'nsfw_2', 'nsfw_3' ]:
if model_name in [ 'nsfw_2', 'nsfw_3' ]:
return detection[0]
return detection
@@ -217,7 +239,7 @@ def prepare_detect_frame(temp_vision_frame : VisionFrame, model_name : str) -> V
model_mean = model_set.get('mean')
model_standard_deviation = model_set.get('standard_deviation')
detect_vision_frame = fit_frame(temp_vision_frame, model_size)
detect_vision_frame = fit_contain_frame(temp_vision_frame, model_size)
detect_vision_frame = detect_vision_frame[:, :, ::-1] / 255.0
detect_vision_frame -= model_mean
detect_vision_frame /= model_standard_deviation
+103 -259
View File
@@ -5,28 +5,23 @@ import signal
import sys
from time import time
import numpy
import uvicorn
from facefusion import benchmarker, cli_helper, content_analyser, face_classifier, face_detector, face_landmarker, face_masker, face_recognizer, hash_helper, logger, process_manager, state_manager, video_manager, voice_extractor, wording
from facefusion.args import apply_args, collect_job_args, reduce_job_args, reduce_step_args
from facefusion.common_helper import get_first
from facefusion.content_analyser import analyse_image, analyse_video
from facefusion import args_store, benchmarker, cli_helper, content_analyser, face_classifier, face_detector, face_landmarker, face_masker, face_recognizer, hash_helper, logger, state_manager, translator, voice_extractor
from facefusion.apis.core import create_api
from facefusion.args_helper import apply_args
from facefusion.download import conditional_download_hashes, conditional_download_sources
from facefusion.exit_helper import hard_exit, signal_exit
from facefusion.face_analyser import get_average_face, get_many_faces, get_one_face
from facefusion.face_selector import sort_and_filter_faces
from facefusion.face_store import append_reference_face, clear_reference_faces, get_reference_faces
from facefusion.ffmpeg import copy_image, extract_frames, finalize_image, merge_video, replace_audio, restore_audio
from facefusion.filesystem import filter_audio_paths, get_file_name, is_image, is_video, resolve_file_paths, resolve_file_pattern
from facefusion.filesystem import get_file_extension, get_file_name, resolve_file_paths, resolve_file_pattern
from facefusion.filesystem import has_audio, has_image, has_video
from facefusion.jobs import job_helper, job_manager, job_runner
from facefusion.jobs.job_list import compose_job_list
from facefusion.memory import limit_system_memory
from facefusion.libraries import aom as aom_module, datachannel as datachannel_module, opus as opus_module, vpx as vpx_module
from facefusion.processors.core import get_processors_modules
from facefusion.program import create_program
from facefusion.program_helper import validate_args
from facefusion.temp_helper import clear_temp_directory, create_temp_directory, get_temp_file_path, move_temp_file, resolve_temp_frame_paths
from facefusion.types import Args, ErrorCode
from facefusion.vision import pack_resolution, read_image, read_static_images, read_video_frame, restrict_image_resolution, restrict_trim_frame, restrict_video_fps, restrict_video_resolution, unpack_resolution
from facefusion.types import Args, ErrorCode, WorkFlow
from facefusion.workflows import audio_to_image, image_to_image, image_to_video
def cli() -> None:
@@ -50,51 +45,40 @@ def cli() -> None:
def route(args : Args) -> None:
system_memory_limit = state_manager.get_item('system_memory_limit')
if system_memory_limit and system_memory_limit > 0:
limit_system_memory(system_memory_limit)
if state_manager.get_item('command') == 'force-download':
error_code = force_download()
return hard_exit(error_code)
hard_exit(error_code)
if state_manager.get_item('command') == 'benchmark':
if not common_pre_check() or not processors_pre_check() or not benchmarker.pre_check():
return hard_exit(2)
hard_exit(2)
benchmarker.render()
if state_manager.get_item('command') == 'api':
logger.info(translator.get('api_started').format(host = state_manager.get_item('api_host'), port = state_manager.get_item('api_port')), __name__)
uvicorn.run(create_api(), host = state_manager.get_item('api_host'), port = state_manager.get_item('api_port'))
hard_exit(1)
if state_manager.get_item('command') in [ 'job-list', 'job-create', 'job-submit', 'job-submit-all', 'job-delete', 'job-delete-all', 'job-add-step', 'job-remix-step', 'job-insert-step', 'job-remove-step' ]:
if not job_manager.init_jobs(state_manager.get_item('jobs_path')):
if not job_manager.init_jobs(state_manager.get_jobs_path()):
hard_exit(1)
error_code = route_job_manager(args)
hard_exit(error_code)
if state_manager.get_item('command') == 'run':
import facefusion.uis.core as ui
if not common_pre_check() or not processors_pre_check():
return hard_exit(2)
for ui_layout in ui.get_ui_layouts_modules(state_manager.get_item('ui_layouts')):
if not ui_layout.pre_check():
return hard_exit(2)
ui.init()
ui.launch()
if state_manager.get_item('command') == 'headless-run':
if not job_manager.init_jobs(state_manager.get_item('jobs_path')):
if not job_manager.init_jobs(state_manager.get_jobs_path()):
hard_exit(1)
error_core = process_headless(args)
hard_exit(error_core)
error_code = process_headless(args)
hard_exit(error_code)
if state_manager.get_item('command') == 'batch-run':
if not job_manager.init_jobs(state_manager.get_item('jobs_path')):
if not job_manager.init_jobs(state_manager.get_jobs_path()):
hard_exit(1)
error_core = process_batch(args)
hard_exit(error_core)
error_code = process_batch(args)
hard_exit(error_code)
if state_manager.get_item('command') in [ 'job-run', 'job-run-all', 'job-retry', 'job-retry-all' ]:
if not job_manager.init_jobs(state_manager.get_item('jobs_path')):
if not job_manager.init_jobs(state_manager.get_jobs_path()):
hard_exit(1)
error_code = route_job_runner()
hard_exit(error_code)
@@ -102,15 +86,15 @@ def route(args : Args) -> None:
def pre_check() -> bool:
if sys.version_info < (3, 10):
logger.error(wording.get('python_not_supported').format(version = '3.10'), __name__)
logger.error(translator.get('python_not_supported').format(version = '3.10'), __name__)
return False
if not shutil.which('curl'):
logger.error(wording.get('curl_not_installed'), __name__)
logger.error(translator.get('curl_not_installed'), __name__)
return False
if not shutil.which('ffmpeg'):
logger.error(wording.get('ffmpeg_not_installed'), __name__)
logger.error(translator.get('ffmpeg_not_installed'), __name__)
return False
return True
@@ -118,19 +102,23 @@ def pre_check() -> bool:
def common_pre_check() -> bool:
common_modules =\
[
aom_module,
datachannel_module,
content_analyser,
face_classifier,
face_detector,
face_landmarker,
face_masker,
face_recognizer,
voice_extractor
opus_module,
voice_extractor,
vpx_module
]
content_analyser_content = inspect.getsource(content_analyser).encode()
is_valid = hash_helper.create_hash(content_analyser_content) == 'b159fd9d'
content_analyser_hash = hash_helper.create_hash(content_analyser_content)
return all(module.pre_check() for module in common_modules) and is_valid
return all(module.pre_check() for module in common_modules) and content_analyser_hash == 'b14e7b92'
def processors_pre_check() -> bool:
@@ -178,113 +166,113 @@ def route_job_manager(args : Args) -> ErrorCode:
if state_manager.get_item('command') == 'job-create':
if job_manager.create_job(state_manager.get_item('job_id')):
logger.info(wording.get('job_created').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('job_created').format(job_id = state_manager.get_item('job_id')), __name__)
return 0
logger.error(wording.get('job_not_created').format(job_id = state_manager.get_item('job_id')), __name__)
logger.error(translator.get('job_not_created').format(job_id = state_manager.get_item('job_id')), __name__)
return 1
if state_manager.get_item('command') == 'job-submit':
if job_manager.submit_job(state_manager.get_item('job_id')):
logger.info(wording.get('job_submitted').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('job_submitted').format(job_id = state_manager.get_item('job_id')), __name__)
return 0
logger.error(wording.get('job_not_submitted').format(job_id = state_manager.get_item('job_id')), __name__)
logger.error(translator.get('job_not_submitted').format(job_id = state_manager.get_item('job_id')), __name__)
return 1
if state_manager.get_item('command') == 'job-submit-all':
if job_manager.submit_jobs(state_manager.get_item('halt_on_error')):
logger.info(wording.get('job_all_submitted'), __name__)
logger.info(translator.get('job_all_submitted'), __name__)
return 0
logger.error(wording.get('job_all_not_submitted'), __name__)
logger.error(translator.get('job_all_not_submitted'), __name__)
return 1
if state_manager.get_item('command') == 'job-delete':
if job_manager.delete_job(state_manager.get_item('job_id')):
logger.info(wording.get('job_deleted').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('job_deleted').format(job_id = state_manager.get_item('job_id')), __name__)
return 0
logger.error(wording.get('job_not_deleted').format(job_id = state_manager.get_item('job_id')), __name__)
logger.error(translator.get('job_not_deleted').format(job_id = state_manager.get_item('job_id')), __name__)
return 1
if state_manager.get_item('command') == 'job-delete-all':
if job_manager.delete_jobs(state_manager.get_item('halt_on_error')):
logger.info(wording.get('job_all_deleted'), __name__)
logger.info(translator.get('job_all_deleted'), __name__)
return 0
logger.error(wording.get('job_all_not_deleted'), __name__)
logger.error(translator.get('job_all_not_deleted'), __name__)
return 1
if state_manager.get_item('command') == 'job-add-step':
step_args = reduce_step_args(args)
step_args = args_store.filter_step_args(args)
if job_manager.add_step(state_manager.get_item('job_id'), step_args):
logger.info(wording.get('job_step_added').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('job_step_added').format(job_id = state_manager.get_item('job_id')), __name__)
return 0
logger.error(wording.get('job_step_not_added').format(job_id = state_manager.get_item('job_id')), __name__)
logger.error(translator.get('job_step_not_added').format(job_id = state_manager.get_item('job_id')), __name__)
return 1
if state_manager.get_item('command') == 'job-remix-step':
step_args = reduce_step_args(args)
step_args = args_store.filter_step_args(args)
if job_manager.remix_step(state_manager.get_item('job_id'), state_manager.get_item('step_index'), step_args):
logger.info(wording.get('job_remix_step_added').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
logger.info(translator.get('job_remix_step_added').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
return 0
logger.error(wording.get('job_remix_step_not_added').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
logger.error(translator.get('job_remix_step_not_added').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
return 1
if state_manager.get_item('command') == 'job-insert-step':
step_args = reduce_step_args(args)
step_args = args_store.filter_step_args(args)
if job_manager.insert_step(state_manager.get_item('job_id'), state_manager.get_item('step_index'), step_args):
logger.info(wording.get('job_step_inserted').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
logger.info(translator.get('job_step_inserted').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
return 0
logger.error(wording.get('job_step_not_inserted').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
logger.error(translator.get('job_step_not_inserted').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
return 1
if state_manager.get_item('command') == 'job-remove-step':
if job_manager.remove_step(state_manager.get_item('job_id'), state_manager.get_item('step_index')):
logger.info(wording.get('job_step_removed').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
logger.info(translator.get('job_step_removed').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
return 0
logger.error(wording.get('job_step_not_removed').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
logger.error(translator.get('job_step_not_removed').format(job_id = state_manager.get_item('job_id'), step_index = state_manager.get_item('step_index')), __name__)
return 1
return 1
def route_job_runner() -> ErrorCode:
if state_manager.get_item('command') == 'job-run':
logger.info(wording.get('running_job').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('running_job').format(job_id = state_manager.get_item('job_id')), __name__)
if job_runner.run_job(state_manager.get_item('job_id'), process_step):
logger.info(wording.get('processing_job_succeed').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('processing_job_succeeded').format(job_id = state_manager.get_item('job_id')), __name__)
return 0
logger.info(wording.get('processing_job_failed').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('processing_job_failed').format(job_id = state_manager.get_item('job_id')), __name__)
return 1
if state_manager.get_item('command') == 'job-run-all':
logger.info(wording.get('running_jobs'), __name__)
logger.info(translator.get('running_jobs'), __name__)
if job_runner.run_jobs(process_step, state_manager.get_item('halt_on_error')):
logger.info(wording.get('processing_jobs_succeed'), __name__)
logger.info(translator.get('processing_jobs_succeeded'), __name__)
return 0
logger.info(wording.get('processing_jobs_failed'), __name__)
logger.info(translator.get('processing_jobs_failed'), __name__)
return 1
if state_manager.get_item('command') == 'job-retry':
logger.info(wording.get('retrying_job').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('retrying_job').format(job_id = state_manager.get_item('job_id')), __name__)
if job_runner.retry_job(state_manager.get_item('job_id'), process_step):
logger.info(wording.get('processing_job_succeed').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('processing_job_succeeded').format(job_id = state_manager.get_item('job_id')), __name__)
return 0
logger.info(wording.get('processing_job_failed').format(job_id = state_manager.get_item('job_id')), __name__)
logger.info(translator.get('processing_job_failed').format(job_id = state_manager.get_item('job_id')), __name__)
return 1
if state_manager.get_item('command') == 'job-retry-all':
logger.info(wording.get('retrying_jobs'), __name__)
logger.info(translator.get('retrying_jobs'), __name__)
if job_runner.retry_jobs(process_step, state_manager.get_item('halt_on_error')):
logger.info(wording.get('processing_jobs_succeed'), __name__)
logger.info(translator.get('processing_jobs_succeeded'), __name__)
return 0
logger.info(wording.get('processing_jobs_failed'), __name__)
logger.info(translator.get('processing_jobs_failed'), __name__)
return 1
return 2
def process_headless(args : Args) -> ErrorCode:
job_id = job_helper.suggest_job_id('headless')
step_args = reduce_step_args(args)
step_args = args_store.filter_step_args(args)
if job_manager.create_job(job_id) and job_manager.add_step(job_id, step_args) and job_manager.submit_job(job_id) and job_runner.run_job(job_id, process_step):
return 0
@@ -293,17 +281,21 @@ def process_headless(args : Args) -> ErrorCode:
def process_batch(args : Args) -> ErrorCode:
job_id = job_helper.suggest_job_id('batch')
step_args = reduce_step_args(args)
job_args = reduce_job_args(args)
source_paths = resolve_file_pattern(job_args.get('source_pattern'))
target_paths = resolve_file_pattern(job_args.get('target_pattern'))
step_args = args_store.filter_step_args(args)
source_paths = resolve_file_pattern(step_args.get('source_pattern'))
target_paths = resolve_file_pattern(step_args.get('target_pattern'))
if job_manager.create_job(job_id):
if source_paths and target_paths:
for index, (source_path, target_path) in enumerate(itertools.product(source_paths, target_paths)):
step_args['source_paths'] = [ source_path ]
step_args['target_path'] = target_path
step_args['output_path'] = job_args.get('output_pattern').format(index = index)
try:
step_args['output_path'] = step_args.get('output_pattern').format(index = index, source_name = get_file_name(source_path), target_name = get_file_name(target_path), target_extension = get_file_extension(target_path))
except KeyError:
return 1
if not job_manager.add_step(job_id, step_args):
return 1
if job_manager.submit_job(job_id) and job_runner.run_job(job_id, process_step):
@@ -312,7 +304,12 @@ def process_batch(args : Args) -> ErrorCode:
if not source_paths and target_paths:
for index, target_path in enumerate(target_paths):
step_args['target_path'] = target_path
step_args['output_path'] = job_args.get('output_pattern').format(index = index)
try:
step_args['output_path'] = step_args.get('output_pattern').format(index = index, target_name = get_file_name(target_path), target_extension = get_file_extension(target_path))
except KeyError:
return 1
if not job_manager.add_step(job_id, step_args):
return 1
if job_manager.submit_job(job_id) and job_runner.run_job(job_id, process_step):
@@ -321,12 +318,13 @@ def process_batch(args : Args) -> ErrorCode:
def process_step(job_id : str, step_index : int, step_args : Args) -> bool:
clear_reference_faces()
step_total = job_manager.count_step_total(job_id)
step_args.update(collect_job_args())
apply_args(step_args, state_manager.set_item)
cli_args = args_store.filter_cli_args(state_manager.get_state()) #type:ignore[arg-type]
args = cli_args.copy()
args.update(step_args)
apply_args(args, state_manager.set_item)
logger.info(wording.get('processing_step').format(step_current = step_index + 1, step_total = step_total), __name__)
logger.info(translator.get('processing_step').format(step_current = step_index + 1, step_total = step_total), __name__)
if common_pre_check() and processors_pre_check():
error_code = conditional_process()
return error_code == 0
@@ -336,182 +334,28 @@ def process_step(job_id : str, step_index : int, step_args : Args) -> bool:
def conditional_process() -> ErrorCode:
start_time = time()
if state_manager.get_item('workflow') == 'auto':
state_manager.set_item('workflow', detect_workflow())
for processor_module in get_processors_modules(state_manager.get_item('processors')):
if not processor_module.pre_process('output'):
return 2
conditional_append_reference_faces()
if is_image(state_manager.get_item('target_path')):
return process_image(start_time)
if is_video(state_manager.get_item('target_path')):
return process_video(start_time)
if state_manager.get_item('workflow') == 'audio-to-image':
return audio_to_image.process(start_time)
if state_manager.get_item('workflow') == 'image-to-image':
return image_to_image.process(start_time)
if state_manager.get_item('workflow') == 'image-to-video':
return image_to_video.process(start_time)
return 0
def conditional_append_reference_faces() -> None:
if 'reference' in state_manager.get_item('face_selector_mode') and not get_reference_faces():
source_frames = read_static_images(state_manager.get_item('source_paths'))
source_faces = get_many_faces(source_frames)
source_face = get_average_face(source_faces)
if is_video(state_manager.get_item('target_path')):
reference_frame = read_video_frame(state_manager.get_item('target_path'), state_manager.get_item('reference_frame_number'))
else:
reference_frame = read_image(state_manager.get_item('target_path'))
reference_faces = sort_and_filter_faces(get_many_faces([ reference_frame ]))
reference_face = get_one_face(reference_faces, state_manager.get_item('reference_face_position'))
append_reference_face('origin', reference_face)
def detect_workflow() -> WorkFlow:
if has_video([ state_manager.get_item('target_path') ]):
return 'image-to-video'
if source_face and reference_face:
for processor_module in get_processors_modules(state_manager.get_item('processors')):
abstract_reference_frame = processor_module.get_reference_frame(source_face, reference_face, reference_frame)
if numpy.any(abstract_reference_frame):
abstract_reference_faces = sort_and_filter_faces(get_many_faces([ abstract_reference_frame ]))
abstract_reference_face = get_one_face(abstract_reference_faces, state_manager.get_item('reference_face_position'))
append_reference_face(processor_module.__name__, abstract_reference_face)
if has_audio(state_manager.get_item('source_paths')) and has_image([ state_manager.get_item('target_path') ]):
return 'audio-to-image'
def process_image(start_time : float) -> ErrorCode:
if analyse_image(state_manager.get_item('target_path')):
return 3
logger.debug(wording.get('clearing_temp'), __name__)
clear_temp_directory(state_manager.get_item('target_path'))
logger.debug(wording.get('creating_temp'), __name__)
create_temp_directory(state_manager.get_item('target_path'))
process_manager.start()
temp_image_resolution = pack_resolution(restrict_image_resolution(state_manager.get_item('target_path'), unpack_resolution(state_manager.get_item('output_image_resolution'))))
logger.info(wording.get('copying_image').format(resolution = temp_image_resolution), __name__)
if copy_image(state_manager.get_item('target_path'), temp_image_resolution):
logger.debug(wording.get('copying_image_succeed'), __name__)
else:
logger.error(wording.get('copying_image_failed'), __name__)
process_manager.end()
return 1
temp_image_path = get_temp_file_path(state_manager.get_item('target_path'))
for processor_module in get_processors_modules(state_manager.get_item('processors')):
logger.info(wording.get('processing'), processor_module.__name__)
processor_module.process_image(state_manager.get_item('source_paths'), temp_image_path, temp_image_path)
processor_module.post_process()
if is_process_stopping():
process_manager.end()
return 4
logger.info(wording.get('finalizing_image').format(resolution = state_manager.get_item('output_image_resolution')), __name__)
if finalize_image(state_manager.get_item('target_path'), state_manager.get_item('output_path'), state_manager.get_item('output_image_resolution')):
logger.debug(wording.get('finalizing_image_succeed'), __name__)
else:
logger.warn(wording.get('finalizing_image_skipped'), __name__)
logger.debug(wording.get('clearing_temp'), __name__)
clear_temp_directory(state_manager.get_item('target_path'))
if is_image(state_manager.get_item('output_path')):
seconds = '{:.2f}'.format((time() - start_time) % 60)
logger.info(wording.get('processing_image_succeed').format(seconds = seconds), __name__)
else:
logger.error(wording.get('processing_image_failed'), __name__)
process_manager.end()
return 1
process_manager.end()
return 0
def process_video(start_time : float) -> ErrorCode:
trim_frame_start, trim_frame_end = restrict_trim_frame(state_manager.get_item('target_path'), state_manager.get_item('trim_frame_start'), state_manager.get_item('trim_frame_end'))
if analyse_video(state_manager.get_item('target_path'), trim_frame_start, trim_frame_end):
return 3
logger.debug(wording.get('clearing_temp'), __name__)
clear_temp_directory(state_manager.get_item('target_path'))
logger.debug(wording.get('creating_temp'), __name__)
create_temp_directory(state_manager.get_item('target_path'))
process_manager.start()
temp_video_resolution = pack_resolution(restrict_video_resolution(state_manager.get_item('target_path'), unpack_resolution(state_manager.get_item('output_video_resolution'))))
temp_video_fps = restrict_video_fps(state_manager.get_item('target_path'), state_manager.get_item('output_video_fps'))
logger.info(wording.get('extracting_frames').format(resolution = temp_video_resolution, fps = temp_video_fps), __name__)
if extract_frames(state_manager.get_item('target_path'), temp_video_resolution, temp_video_fps, trim_frame_start, trim_frame_end):
logger.debug(wording.get('extracting_frames_succeed'), __name__)
else:
if is_process_stopping():
process_manager.end()
return 4
logger.error(wording.get('extracting_frames_failed'), __name__)
process_manager.end()
return 1
temp_frame_paths = resolve_temp_frame_paths(state_manager.get_item('target_path'))
if temp_frame_paths:
for processor_module in get_processors_modules(state_manager.get_item('processors')):
logger.info(wording.get('processing'), processor_module.__name__)
processor_module.process_video(state_manager.get_item('source_paths'), temp_frame_paths)
processor_module.post_process()
if is_process_stopping():
return 4
else:
logger.error(wording.get('temp_frames_not_found'), __name__)
process_manager.end()
return 1
logger.info(wording.get('merging_video').format(resolution = state_manager.get_item('output_video_resolution'), fps = state_manager.get_item('output_video_fps')), __name__)
if merge_video(state_manager.get_item('target_path'), temp_video_fps, state_manager.get_item('output_video_resolution'), state_manager.get_item('output_video_fps'), trim_frame_start, trim_frame_end):
logger.debug(wording.get('merging_video_succeed'), __name__)
else:
if is_process_stopping():
process_manager.end()
return 4
logger.error(wording.get('merging_video_failed'), __name__)
process_manager.end()
return 1
if state_manager.get_item('output_audio_volume') == 0:
logger.info(wording.get('skipping_audio'), __name__)
move_temp_file(state_manager.get_item('target_path'), state_manager.get_item('output_path'))
else:
source_audio_path = get_first(filter_audio_paths(state_manager.get_item('source_paths')))
if source_audio_path:
if replace_audio(state_manager.get_item('target_path'), source_audio_path, state_manager.get_item('output_path')):
video_manager.clear_video_pool()
logger.debug(wording.get('replacing_audio_succeed'), __name__)
else:
video_manager.clear_video_pool()
if is_process_stopping():
process_manager.end()
return 4
logger.warn(wording.get('replacing_audio_skipped'), __name__)
move_temp_file(state_manager.get_item('target_path'), state_manager.get_item('output_path'))
else:
if restore_audio(state_manager.get_item('target_path'), state_manager.get_item('output_path'), trim_frame_start, trim_frame_end):
video_manager.clear_video_pool()
logger.debug(wording.get('restoring_audio_succeed'), __name__)
else:
video_manager.clear_video_pool()
if is_process_stopping():
process_manager.end()
return 4
logger.warn(wording.get('restoring_audio_skipped'), __name__)
move_temp_file(state_manager.get_item('target_path'), state_manager.get_item('output_path'))
logger.debug(wording.get('clearing_temp'), __name__)
clear_temp_directory(state_manager.get_item('target_path'))
if is_video(state_manager.get_item('output_path')):
seconds = '{:.2f}'.format((time() - start_time))
logger.info(wording.get('processing_video_succeed').format(seconds = seconds), __name__)
else:
logger.error(wording.get('processing_video_failed'), __name__)
process_manager.end()
return 1
process_manager.end()
return 0
def is_process_stopping() -> bool:
if process_manager.is_stopping():
process_manager.end()
logger.info(wording.get('processing_stopped'), __name__)
return process_manager.is_pending()
return 'image-to-image'
+7 -6
View File
@@ -1,27 +1,28 @@
import itertools
import shutil
from typing import List
from facefusion import metadata
from facefusion.types import Commands
from facefusion.types import Command
def run(commands : Commands) -> Commands:
def run(commands : List[Command]) -> List[Command]:
user_agent = metadata.get('name') + '/' + metadata.get('version')
return [ shutil.which('curl'), '--user-agent', user_agent, '--insecure', '--location', '--silent' ] + commands
def chain(*commands : Commands) -> Commands:
def chain(*commands : List[Command]) -> List[Command]:
return list(itertools.chain(*commands))
def head(url : str) -> Commands:
def head(url : str) -> List[Command]:
return [ '-I', url ]
def download(url : str, download_file_path : str) -> Commands:
def download(url : str, download_file_path : str) -> List[Command]:
return [ '--create-dirs', '--continue-at', '-', '--output', download_file_path, url ]
def set_timeout(timeout : int) -> Commands:
def set_timeout(timeout : int) -> List[Command]:
return [ '--connect-timeout', str(timeout) ]
+12 -12
View File
@@ -7,13 +7,13 @@ from urllib.parse import urlparse
from tqdm import tqdm
import facefusion.choices
from facefusion import curl_builder, logger, process_manager, state_manager, wording
from facefusion import curl_builder, logger, process_manager, state_manager, translator
from facefusion.filesystem import get_file_name, get_file_size, is_file, remove_file
from facefusion.hash_helper import validate_hash
from facefusion.types import Commands, DownloadProvider, DownloadSet
from facefusion.types import Command, DownloadProvider, DownloadSet
def open_curl(commands : Commands) -> subprocess.Popen[bytes]:
def open_curl(commands : List[Command]) -> subprocess.Popen[bytes]:
commands = curl_builder.run(commands)
return subprocess.Popen(commands, stdin = subprocess.PIPE, stdout = subprocess.PIPE)
@@ -26,10 +26,10 @@ def conditional_download(download_directory_path : str, urls : List[str]) -> Non
download_size = get_static_download_size(url)
if initial_size < download_size:
with tqdm(total = download_size, initial = initial_size, desc = wording.get('downloading'), unit = 'B', unit_scale = True, unit_divisor = 1024, ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
with tqdm(total = download_size, initial = initial_size, desc = translator.get('downloading'), unit = 'B', unit_scale = True, unit_divisor = 1024, ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
commands = curl_builder.chain(
curl_builder.download(url, download_file_path),
curl_builder.set_timeout(10)
curl_builder.set_timeout(5)
)
open_curl(commands)
current_size = initial_size
@@ -41,7 +41,7 @@ def conditional_download(download_directory_path : str, urls : List[str]) -> Non
progress.update(current_size - progress.n)
@lru_cache(maxsize = None)
@lru_cache(maxsize = 64)
def get_static_download_size(url : str) -> int:
commands = curl_builder.chain(
curl_builder.head(url),
@@ -59,7 +59,7 @@ def get_static_download_size(url : str) -> int:
return 0
@lru_cache(maxsize = None)
@lru_cache(maxsize = 64)
def ping_static_url(url : str) -> bool:
commands = curl_builder.chain(
curl_builder.head(url),
@@ -87,10 +87,10 @@ def conditional_download_hashes(hash_set : DownloadSet) -> bool:
for valid_hash_path in valid_hash_paths:
valid_hash_file_name = get_file_name(valid_hash_path)
logger.debug(wording.get('validating_hash_succeed').format(hash_file_name = valid_hash_file_name), __name__)
logger.debug(translator.get('validating_hash_succeeded').format(hash_file_name = valid_hash_file_name), __name__)
for invalid_hash_path in invalid_hash_paths:
invalid_hash_file_name = get_file_name(invalid_hash_path)
logger.error(wording.get('validating_hash_failed').format(hash_file_name = invalid_hash_file_name), __name__)
logger.error(translator.get('validating_hash_failed').format(hash_file_name = invalid_hash_file_name), __name__)
if not invalid_hash_paths:
process_manager.end()
@@ -114,13 +114,13 @@ def conditional_download_sources(source_set : DownloadSet) -> bool:
for valid_source_path in valid_source_paths:
valid_source_file_name = get_file_name(valid_source_path)
logger.debug(wording.get('validating_source_succeed').format(source_file_name = valid_source_file_name), __name__)
logger.debug(translator.get('validating_source_succeeded').format(source_file_name = valid_source_file_name), __name__)
for invalid_source_path in invalid_source_paths:
invalid_source_file_name = get_file_name(invalid_source_path)
logger.error(wording.get('validating_source_failed').format(source_file_name = invalid_source_file_name), __name__)
logger.error(translator.get('validating_source_failed').format(source_file_name = invalid_source_file_name), __name__)
if remove_file(invalid_source_path):
logger.error(wording.get('deleting_corrupt_source').format(source_file_name = invalid_source_file_name), __name__)
logger.error(translator.get('deleting_corrupt_source').format(source_file_name = invalid_source_file_name), __name__)
if not invalid_source_paths:
process_manager.end()
+11 -7
View File
@@ -28,7 +28,7 @@ def get_available_execution_providers() -> List[ExecutionProvider]:
return available_execution_providers
def create_inference_session_providers(execution_device_id : str, execution_providers : List[ExecutionProvider]) -> List[InferenceSessionProvider]:
def create_inference_session_providers(execution_device_id : int, execution_providers : List[ExecutionProvider]) -> List[InferenceSessionProvider]:
inference_session_providers : List[InferenceSessionProvider] = []
for execution_provider in execution_providers:
@@ -53,6 +53,12 @@ def create_inference_session_providers(execution_device_id : str, execution_prov
{
'device_id': execution_device_id
}))
if execution_provider == 'migraphx':
inference_session_providers.append((facefusion.choices.execution_provider_set.get(execution_provider),
{
'device_id': execution_device_id,
'migraphx_model_cache_dir': '.caches'
}))
if execution_provider == 'openvino':
inference_session_providers.append((facefusion.choices.execution_provider_set.get(execution_provider),
{
@@ -83,12 +89,10 @@ def resolve_cudnn_conv_algo_search() -> str:
return 'EXHAUSTIVE'
def resolve_openvino_device_type(execution_device_id : str) -> str:
if execution_device_id == '0':
def resolve_openvino_device_type(execution_device_id : int) -> str:
if execution_device_id == 0:
return 'GPU'
if execution_device_id == '':
return 'MULTI:GPU'
return 'GPU.' + execution_device_id
return 'GPU.' + str(execution_device_id)
def run_nvidia_smi() -> subprocess.Popen[bytes]:
@@ -96,7 +100,7 @@ def run_nvidia_smi() -> subprocess.Popen[bytes]:
return subprocess.Popen(commands, stdout = subprocess.PIPE)
@lru_cache(maxsize = None)
@lru_cache()
def detect_static_execution_devices() -> List[ExecutionDevice]:
return detect_execution_devices()
+11 -3
View File
@@ -1,3 +1,4 @@
import os
import signal
import sys
from time import sleep
@@ -8,8 +9,11 @@ from facefusion.temp_helper import clear_temp_directory
from facefusion.types import ErrorCode
def fatal_exit(error_code : ErrorCode) -> None:
os._exit(error_code)
def hard_exit(error_code : ErrorCode) -> None:
signal.signal(signal.SIGINT, signal.SIG_IGN)
sys.exit(error_code)
@@ -18,9 +22,13 @@ def signal_exit(signum : int, frame : FrameType) -> None:
def graceful_exit(error_code : ErrorCode) -> None:
signal.signal(signal.SIGINT, signal.SIG_IGN)
process_manager.stop()
while process_manager.is_processing():
sleep(0.5)
if state_manager.get_item('target_path'):
clear_temp_directory(state_manager.get_item('target_path'))
if state_manager.get_item('output_path'):
clear_temp_directory(state_manager.get_temp_path(), state_manager.get_item('output_path'))
hard_exit(error_code)
+31 -12
View File
@@ -5,10 +5,10 @@ import numpy
from facefusion import state_manager
from facefusion.common_helper import get_first
from facefusion.face_classifier import classify_face
from facefusion.face_detector import detect_faces, detect_rotated_faces
from facefusion.face_detector import detect_faces, detect_faces_by_angle
from facefusion.face_helper import apply_nms, convert_to_face_landmark_5, estimate_face_angle, get_nms_threshold
from facefusion.face_landmarker import detect_face_landmark, estimate_face_landmark_68_5
from facefusion.face_recognizer import calc_embedding
from facefusion.face_recognizer import calculate_face_embedding
from facefusion.face_store import get_static_faces, set_static_faces
from facefusion.types import BoundingBox, Face, FaceLandmark5, FaceLandmarkSet, FaceScoreSet, Score, VisionFrame
@@ -45,15 +45,15 @@ def create_faces(vision_frame : VisionFrame, bounding_boxes : List[BoundingBox],
'detector': face_score,
'landmarker': face_landmark_score_68
}
embedding, normed_embedding = calc_embedding(vision_frame, face_landmark_set.get('5/68'))
face_embedding, face_embedding_norm = calculate_face_embedding(vision_frame, face_landmark_set.get('5/68'))
gender, age, race = classify_face(vision_frame, face_landmark_set.get('5/68'))
faces.append(Face(
bounding_box = bounding_box,
score_set = face_score_set,
landmark_set = face_landmark_set,
angle = face_angle,
embedding = embedding,
normed_embedding = normed_embedding,
embedding = face_embedding,
embedding_norm = face_embedding_norm,
gender = gender,
age = age,
race = race
@@ -69,23 +69,23 @@ def get_one_face(faces : List[Face], position : int = 0) -> Optional[Face]:
def get_average_face(faces : List[Face]) -> Optional[Face]:
embeddings = []
normed_embeddings = []
face_embeddings = []
face_embeddings_norm = []
if faces:
first_face = get_first(faces)
for face in faces:
embeddings.append(face.embedding)
normed_embeddings.append(face.normed_embedding)
face_embeddings.append(face.embedding)
face_embeddings_norm.append(face.embedding_norm)
return Face(
bounding_box = first_face.bounding_box,
score_set = first_face.score_set,
landmark_set = first_face.landmark_set,
angle = first_face.angle,
embedding = numpy.mean(embeddings, axis = 0),
normed_embedding = numpy.mean(normed_embeddings, axis = 0),
embedding = numpy.mean(face_embeddings, axis = 0),
embedding_norm = numpy.mean(face_embeddings_norm, axis = 0),
gender = first_face.gender,
age = first_face.age,
race = first_face.race
@@ -110,7 +110,7 @@ def get_many_faces(vision_frames : List[VisionFrame]) -> List[Face]:
if face_detector_angle == 0:
bounding_boxes, face_scores, face_landmarks_5 = detect_faces(vision_frame)
else:
bounding_boxes, face_scores, face_landmarks_5 = detect_rotated_faces(vision_frame, face_detector_angle)
bounding_boxes, face_scores, face_landmarks_5 = detect_faces_by_angle(vision_frame, face_detector_angle)
all_bounding_boxes.extend(bounding_boxes)
all_face_scores.extend(face_scores)
all_face_landmarks_5.extend(face_landmarks_5)
@@ -122,3 +122,22 @@ def get_many_faces(vision_frames : List[VisionFrame]) -> List[Face]:
many_faces.extend(faces)
set_static_faces(vision_frame, faces)
return many_faces
def scale_face(target_face : Face, target_vision_frame : VisionFrame, temp_vision_frame : VisionFrame) -> Face:
scale_x = temp_vision_frame.shape[1] / target_vision_frame.shape[1]
scale_y = temp_vision_frame.shape[0] / target_vision_frame.shape[0]
bounding_box = target_face.bounding_box * [ scale_x, scale_y, scale_x, scale_y ]
landmark_set =\
{
'5': target_face.landmark_set.get('5') * numpy.array([ scale_x, scale_y ]),
'5/68': target_face.landmark_set.get('5/68') * numpy.array([ scale_x, scale_y ]),
'68': target_face.landmark_set.get('68') * numpy.array([ scale_x, scale_y ]),
'68/5': target_face.landmark_set.get('68/5') * numpy.array([ scale_x, scale_y ])
}
return target_face._replace(
bounding_box = bounding_box,
landmark_set = landmark_set
)
+7 -1
View File
@@ -11,12 +11,18 @@ from facefusion.thread_helper import conditional_thread_semaphore
from facefusion.types import Age, DownloadScope, FaceLandmark5, Gender, InferencePool, ModelOptions, ModelSet, Race, VisionFrame
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'fairface':
{
'__metadata__':
{
'vendor': 'dchen236',
'license': 'Non-Commercial',
'year': 2021
},
'hashes':
{
'face_classifier':
+154 -19
View File
@@ -6,19 +6,25 @@ import numpy
from facefusion import inference_manager, state_manager
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url
from facefusion.face_helper import create_rotated_matrix_and_size, create_static_anchors, distance_to_bounding_box, distance_to_face_landmark_5, normalize_bounding_box, transform_bounding_box, transform_points
from facefusion.face_helper import create_rotation_matrix_and_size, create_static_anchors, distance_to_bounding_box, distance_to_face_landmark_5, normalize_bounding_box, transform_bounding_box, transform_points
from facefusion.filesystem import resolve_relative_path
from facefusion.thread_helper import thread_semaphore
from facefusion.types import Angle, BoundingBox, Detection, DownloadScope, DownloadSet, FaceLandmark5, InferencePool, ModelSet, Score, VisionFrame
from facefusion.types import Angle, BoundingBox, Detection, DownloadScope, DownloadSet, FaceLandmark5, InferencePool, Margin, ModelSet, Score, VisionFrame
from facefusion.vision import restrict_frame, unpack_resolution
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'retinaface':
{
'__metadata__':
{
'vendor': 'InsightFace',
'license': 'Non-Commercial',
'year': 2020
},
'hashes':
{
'retinaface':
@@ -38,6 +44,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'scrfd':
{
'__metadata__':
{
'vendor': 'InsightFace',
'license': 'Non-Commercial',
'year': 2021
},
'hashes':
{
'scrfd':
@@ -57,6 +69,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'yolo_face':
{
'__metadata__':
{
'vendor': 'derronqi',
'license': 'GPL-3.0',
'year': 2022
},
'hashes':
{
'yolo_face':
@@ -73,6 +91,31 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
'path': resolve_relative_path('../.assets/models/yoloface_8n.onnx')
}
}
},
'yunet':
{
'__metadata__':
{
'vendor': 'OpenCV',
'license': 'MIT',
'year': 2023
},
'hashes':
{
'yunet':
{
'url': resolve_download_url('models-3.4.0', 'yunet_2023_mar.hash'),
'path': resolve_relative_path('../.assets/models/yunet_2023_mar.hash')
}
},
'sources':
{
'yunet':
{
'url': resolve_download_url('models-3.4.0', 'yunet_2023_mar.onnx'),
'path': resolve_relative_path('../.assets/models/yunet_2023_mar.onnx')
}
}
}
}
@@ -94,7 +137,7 @@ def collect_model_downloads() -> Tuple[DownloadSet, DownloadSet]:
model_hash_set = {}
model_source_set = {}
for face_detector_model in [ 'retinaface', 'scrfd', 'yolo_face' ]:
for face_detector_model in [ 'retinaface', 'scrfd', 'yolo_face', 'yunet' ]:
if state_manager.get_item('face_detector_model') in [ 'many', face_detector_model ]:
model_hash_set[face_detector_model] = model_set.get(face_detector_model).get('hashes').get(face_detector_model)
model_source_set[face_detector_model] = model_set.get(face_detector_model).get('sources').get(face_detector_model)
@@ -109,39 +152,56 @@ def pre_check() -> bool:
def detect_faces(vision_frame : VisionFrame) -> Tuple[List[BoundingBox], List[Score], List[FaceLandmark5]]:
margin_top, margin_right, margin_bottom, margin_left = prepare_margin(vision_frame)
margin_vision_frame = numpy.pad(vision_frame, ((margin_top, margin_bottom), (margin_left, margin_right), (0, 0)))
all_bounding_boxes : List[BoundingBox] = []
all_face_scores : List[Score] = []
all_face_landmarks_5 : List[FaceLandmark5] = []
if state_manager.get_item('face_detector_model') in [ 'many', 'retinaface' ]:
bounding_boxes, face_scores, face_landmarks_5 = detect_with_retinaface(vision_frame, state_manager.get_item('face_detector_size'))
bounding_boxes, face_scores, face_landmarks_5 = detect_with_retinaface(margin_vision_frame, state_manager.get_item('face_detector_size'))
all_bounding_boxes.extend(bounding_boxes)
all_face_scores.extend(face_scores)
all_face_landmarks_5.extend(face_landmarks_5)
if state_manager.get_item('face_detector_model') in [ 'many', 'scrfd' ]:
bounding_boxes, face_scores, face_landmarks_5 = detect_with_scrfd(vision_frame, state_manager.get_item('face_detector_size'))
bounding_boxes, face_scores, face_landmarks_5 = detect_with_scrfd(margin_vision_frame, state_manager.get_item('face_detector_size'))
all_bounding_boxes.extend(bounding_boxes)
all_face_scores.extend(face_scores)
all_face_landmarks_5.extend(face_landmarks_5)
if state_manager.get_item('face_detector_model') in [ 'many', 'yolo_face' ]:
bounding_boxes, face_scores, face_landmarks_5 = detect_with_yolo_face(vision_frame, state_manager.get_item('face_detector_size'))
bounding_boxes, face_scores, face_landmarks_5 = detect_with_yolo_face(margin_vision_frame, state_manager.get_item('face_detector_size'))
all_bounding_boxes.extend(bounding_boxes)
all_face_scores.extend(face_scores)
all_face_landmarks_5.extend(face_landmarks_5)
all_bounding_boxes = [ normalize_bounding_box(all_bounding_box) for all_bounding_box in all_bounding_boxes ]
if state_manager.get_item('face_detector_model') == 'yunet':
bounding_boxes, face_scores, face_landmarks_5 = detect_with_yunet(margin_vision_frame, state_manager.get_item('face_detector_size'))
all_bounding_boxes.extend(bounding_boxes)
all_face_scores.extend(face_scores)
all_face_landmarks_5.extend(face_landmarks_5)
all_bounding_boxes = [ normalize_bounding_box(all_bounding_box) - numpy.array([ margin_left, margin_top, margin_left, margin_top ]) for all_bounding_box in all_bounding_boxes ]
all_face_landmarks_5 = [ all_face_landmark_5 - numpy.array([ margin_left, margin_top ]) for all_face_landmark_5 in all_face_landmarks_5 ]
return all_bounding_boxes, all_face_scores, all_face_landmarks_5
def detect_rotated_faces(vision_frame : VisionFrame, angle : Angle) -> Tuple[List[BoundingBox], List[Score], List[FaceLandmark5]]:
rotated_matrix, rotated_size = create_rotated_matrix_and_size(angle, vision_frame.shape[:2][::-1])
rotated_vision_frame = cv2.warpAffine(vision_frame, rotated_matrix, rotated_size)
rotated_inverse_matrix = cv2.invertAffineTransform(rotated_matrix)
bounding_boxes, face_scores, face_landmarks_5 = detect_faces(rotated_vision_frame)
bounding_boxes = [ transform_bounding_box(bounding_box, rotated_inverse_matrix) for bounding_box in bounding_boxes ]
face_landmarks_5 = [ transform_points(face_landmark_5, rotated_inverse_matrix) for face_landmark_5 in face_landmarks_5 ]
def prepare_margin(vision_frame : VisionFrame) -> Margin:
margin_top = int(vision_frame.shape[0] * numpy.interp(state_manager.get_item('face_detector_margin')[0], [ 0, 100 ], [ 0, 0.5 ]))
margin_right = int(vision_frame.shape[1] * numpy.interp(state_manager.get_item('face_detector_margin')[1], [ 0, 100 ], [ 0, 0.5 ]))
margin_bottom = int(vision_frame.shape[0] * numpy.interp(state_manager.get_item('face_detector_margin')[2], [ 0, 100 ], [ 0, 0.5 ]))
margin_left = int(vision_frame.shape[1] * numpy.interp(state_manager.get_item('face_detector_margin')[3], [ 0, 100 ], [ 0, 0.5 ]))
return margin_top, margin_right, margin_bottom, margin_left
def detect_faces_by_angle(vision_frame : VisionFrame, face_angle : Angle) -> Tuple[List[BoundingBox], List[Score], List[FaceLandmark5]]:
rotation_matrix, rotation_size = create_rotation_matrix_and_size(face_angle, vision_frame.shape[:2][::-1])
rotation_vision_frame = cv2.warpAffine(vision_frame, rotation_matrix, rotation_size)
rotation_inverse_matrix = cv2.invertAffineTransform(rotation_matrix)
bounding_boxes, face_scores, face_landmarks_5 = detect_faces(rotation_vision_frame)
bounding_boxes = [ transform_bounding_box(bounding_box, rotation_inverse_matrix) for bounding_box in bounding_boxes ]
face_landmarks_5 = [ transform_points(face_landmark_5, rotation_inverse_matrix) for face_landmark_5 in face_landmarks_5 ]
return bounding_boxes, face_scores, face_landmarks_5
@@ -162,7 +222,8 @@ def detect_with_retinaface(vision_frame : VisionFrame, face_detector_size : str)
detection = forward_with_retinaface(detect_vision_frame)
for index, feature_stride in enumerate(feature_strides):
keep_indices = numpy.where(detection[index] >= face_detector_score)[0]
face_scores_raw = detection[index]
keep_indices = numpy.where(face_scores_raw >= face_detector_score)[0]
if numpy.any(keep_indices):
stride_height = face_detector_height // feature_stride
@@ -180,7 +241,7 @@ def detect_with_retinaface(vision_frame : VisionFrame, face_detector_size : str)
bounding_box_raw[3] * ratio_height
]))
for face_score_raw in detection[index][keep_indices]:
for face_score_raw in face_scores_raw[keep_indices]:
face_scores.append(face_score_raw[0])
for face_landmark_raw_5 in distance_to_face_landmark_5(anchors, face_landmarks_5_raw)[keep_indices]:
@@ -206,7 +267,8 @@ def detect_with_scrfd(vision_frame : VisionFrame, face_detector_size : str) -> T
detection = forward_with_scrfd(detect_vision_frame)
for index, feature_stride in enumerate(feature_strides):
keep_indices = numpy.where(detection[index] >= face_detector_score)[0]
face_scores_raw = detection[index]
keep_indices = numpy.where(face_scores_raw >= face_detector_score)[0]
if numpy.any(keep_indices):
stride_height = face_detector_height // feature_stride
@@ -224,7 +286,7 @@ def detect_with_scrfd(vision_frame : VisionFrame, face_detector_size : str) -> T
bounding_box_raw[3] * ratio_height
]))
for face_score_raw in detection[index][keep_indices]:
for face_score_raw in face_scores_raw[keep_indices]:
face_scores.append(face_score_raw[0])
for face_landmark_raw_5 in distance_to_face_landmark_5(anchors, face_landmarks_5_raw)[keep_indices]:
@@ -271,6 +333,67 @@ def detect_with_yolo_face(vision_frame : VisionFrame, face_detector_size : str)
return bounding_boxes, face_scores, face_landmarks_5
def detect_with_yunet(vision_frame : VisionFrame, face_detector_size : str) -> Tuple[List[BoundingBox], List[Score], List[FaceLandmark5]]:
bounding_boxes = []
face_scores = []
face_landmarks_5 = []
feature_strides = [ 8, 16, 32 ]
feature_map_channel = 3
anchor_total = 1
face_detector_score = state_manager.get_item('face_detector_score')
face_detector_width, face_detector_height = unpack_resolution(face_detector_size)
temp_vision_frame = restrict_frame(vision_frame, (face_detector_width, face_detector_height))
ratio_height = vision_frame.shape[0] / temp_vision_frame.shape[0]
ratio_width = vision_frame.shape[1] / temp_vision_frame.shape[1]
detect_vision_frame = prepare_detect_frame(temp_vision_frame, face_detector_size)
detect_vision_frame = normalize_detect_frame(detect_vision_frame, [ 0, 255 ])
detection = forward_with_yunet(detect_vision_frame)
for index, feature_stride in enumerate(feature_strides):
face_scores_raw = (detection[index] * detection[index + feature_map_channel]).reshape(-1)
keep_indices = numpy.where(face_scores_raw >= face_detector_score)[0]
if numpy.any(keep_indices):
stride_height = face_detector_height // feature_stride
stride_width = face_detector_width // feature_stride
anchors = create_static_anchors(feature_stride, anchor_total, stride_height, stride_width)
bounding_boxes_center = detection[index + feature_map_channel * 2].squeeze(0)[:, :2] * feature_stride + anchors
bounding_boxes_size = numpy.exp(detection[index + feature_map_channel * 2].squeeze(0)[:, 2:4]) * feature_stride
face_landmarks_5_raw = detection[index + feature_map_channel * 3].squeeze(0)
bounding_boxes_raw = numpy.stack(
[
bounding_boxes_center[:, 0] - bounding_boxes_size[:, 0] / 2,
bounding_boxes_center[:, 1] - bounding_boxes_size[:, 1] / 2,
bounding_boxes_center[:, 0] + bounding_boxes_size[:, 0] / 2,
bounding_boxes_center[:, 1] + bounding_boxes_size[:, 1] / 2
], axis = -1)
for bounding_box_raw in bounding_boxes_raw[keep_indices]:
bounding_boxes.append(numpy.array(
[
bounding_box_raw[0] * ratio_width,
bounding_box_raw[1] * ratio_height,
bounding_box_raw[2] * ratio_width,
bounding_box_raw[3] * ratio_height
]))
face_scores.extend(face_scores_raw[keep_indices])
face_landmarks_5_raw = numpy.concatenate(
[
face_landmarks_5_raw[:, [0, 1]] * feature_stride + anchors,
face_landmarks_5_raw[:, [2, 3]] * feature_stride + anchors,
face_landmarks_5_raw[:, [4, 5]] * feature_stride + anchors,
face_landmarks_5_raw[:, [6, 7]] * feature_stride + anchors,
face_landmarks_5_raw[:, [8, 9]] * feature_stride + anchors
], axis = -1).reshape(-1, 5, 2)
for face_landmark_raw_5 in face_landmarks_5_raw[keep_indices]:
face_landmarks_5.append(face_landmark_raw_5 * [ ratio_width, ratio_height ])
return bounding_boxes, face_scores, face_landmarks_5
def forward_with_retinaface(detect_vision_frame : VisionFrame) -> Detection:
face_detector = get_inference_pool().get('retinaface')
@@ -307,6 +430,18 @@ def forward_with_yolo_face(detect_vision_frame : VisionFrame) -> Detection:
return detection
def forward_with_yunet(detect_vision_frame : VisionFrame) -> Detection:
face_detector = get_inference_pool().get('yunet')
with thread_semaphore():
detection = face_detector.run(None,
{
'input': detect_vision_frame
})
return detection
def prepare_detect_frame(temp_vision_frame : VisionFrame, face_detector_size : str) -> VisionFrame:
face_detector_width, face_detector_height = unpack_resolution(face_detector_size)
detect_vision_frame = numpy.zeros((face_detector_height, face_detector_width, 3))
+41 -39
View File
@@ -69,8 +69,8 @@ WARP_TEMPLATE_SET : WarpTemplateSet =\
def estimate_matrix_by_face_landmark_5(face_landmark_5 : FaceLandmark5, warp_template : WarpTemplate, crop_size : Size) -> Matrix:
normed_warp_template = WARP_TEMPLATE_SET.get(warp_template) * crop_size
affine_matrix = cv2.estimateAffinePartial2D(face_landmark_5, normed_warp_template, method = cv2.RANSAC, ransacReprojThreshold = 100)[0]
warp_template_norm = WARP_TEMPLATE_SET.get(warp_template) * crop_size
affine_matrix = cv2.estimateAffinePartial2D(face_landmark_5, warp_template_norm, method = cv2.RANSAC, ransacReprojThreshold = 100)[0]
return affine_matrix
@@ -98,59 +98,59 @@ def warp_face_by_translation(temp_vision_frame : VisionFrame, translation : Tran
return crop_vision_frame, affine_matrix
def paste_back(temp_vision_frame : VisionFrame, crop_vision_frame : VisionFrame, crop_mask : Mask, affine_matrix : Matrix) -> VisionFrame:
paste_bounding_box, paste_matrix = calc_paste_area(temp_vision_frame, crop_vision_frame, affine_matrix)
x_min, y_min, x_max, y_max = paste_bounding_box
paste_width = x_max - x_min
paste_height = y_max - y_min
inverse_mask = cv2.warpAffine(crop_mask, paste_matrix, (paste_width, paste_height)).clip(0, 1)
inverse_mask = numpy.expand_dims(inverse_mask, axis = -1)
def paste_back(temp_vision_frame : VisionFrame, crop_vision_frame : VisionFrame, crop_vision_mask : Mask, affine_matrix : Matrix) -> VisionFrame:
paste_bounding_box, paste_matrix = calculate_paste_area(temp_vision_frame, crop_vision_frame, affine_matrix)
x1, y1, x2, y2 = paste_bounding_box
paste_width = x2 - x1
paste_height = y2 - y1
inverse_vision_mask = cv2.warpAffine(crop_vision_mask, paste_matrix, (paste_width, paste_height)).clip(0, 1)
inverse_vision_mask = numpy.expand_dims(inverse_vision_mask, axis = -1)
inverse_vision_frame = cv2.warpAffine(crop_vision_frame, paste_matrix, (paste_width, paste_height), borderMode = cv2.BORDER_REPLICATE)
temp_vision_frame = temp_vision_frame.copy()
paste_vision_frame = temp_vision_frame[y_min:y_max, x_min:x_max]
paste_vision_frame = paste_vision_frame * (1 - inverse_mask) + inverse_vision_frame * inverse_mask
temp_vision_frame[y_min:y_max, x_min:x_max] = paste_vision_frame.astype(temp_vision_frame.dtype)
paste_vision_frame = temp_vision_frame[y1:y2, x1:x2]
paste_vision_frame = paste_vision_frame * (1 - inverse_vision_mask) + inverse_vision_frame * inverse_vision_mask
temp_vision_frame[y1:y2, x1:x2] = paste_vision_frame.astype(temp_vision_frame.dtype)
return temp_vision_frame
def calc_paste_area(temp_vision_frame : VisionFrame, crop_vision_frame : VisionFrame, affine_matrix : Matrix) -> Tuple[BoundingBox, Matrix]:
def calculate_paste_area(temp_vision_frame : VisionFrame, crop_vision_frame : VisionFrame, affine_matrix : Matrix) -> Tuple[BoundingBox, Matrix]:
temp_height, temp_width = temp_vision_frame.shape[:2]
crop_height, crop_width = crop_vision_frame.shape[:2]
inverse_matrix = cv2.invertAffineTransform(affine_matrix)
crop_points = numpy.array([ [ 0, 0 ], [ crop_width, 0 ], [ crop_width, crop_height ], [ 0, crop_height ] ])
paste_region_points = transform_points(crop_points, inverse_matrix)
min_point = numpy.floor(paste_region_points.min(axis = 0)).astype(int)
max_point = numpy.ceil(paste_region_points.max(axis = 0)).astype(int)
x_min, y_min = numpy.clip(min_point, 0, [ temp_width, temp_height ])
x_max, y_max = numpy.clip(max_point, 0, [ temp_width, temp_height ])
paste_bounding_box = numpy.array([ x_min, y_min, x_max, y_max ])
paste_region_point_min = numpy.floor(paste_region_points.min(axis = 0)).astype(int)
paste_region_point_max = numpy.ceil(paste_region_points.max(axis = 0)).astype(int)
x1, y1 = numpy.clip(paste_region_point_min, 0, [ temp_width, temp_height ])
x2, y2 = numpy.clip(paste_region_point_max, 0, [ temp_width, temp_height ])
paste_bounding_box = numpy.array([ x1, y1, x2, y2 ])
paste_matrix = inverse_matrix.copy()
paste_matrix[0, 2] -= x_min
paste_matrix[1, 2] -= y_min
paste_matrix[0, 2] -= x1
paste_matrix[1, 2] -= y1
return paste_bounding_box, paste_matrix
@lru_cache(maxsize = None)
@lru_cache()
def create_static_anchors(feature_stride : int, anchor_total : int, stride_height : int, stride_width : int) -> Anchors:
y, x = numpy.mgrid[:stride_height, :stride_width][::-1]
x, y = numpy.mgrid[:stride_width, :stride_height]
anchors = numpy.stack((y, x), axis = -1)
anchors = (anchors * feature_stride).reshape((-1, 2))
anchors = numpy.stack([ anchors ] * anchor_total, axis = 1).reshape((-1, 2))
return anchors
def create_rotated_matrix_and_size(angle : Angle, size : Size) -> Tuple[Matrix, Size]:
rotated_matrix = cv2.getRotationMatrix2D((size[0] / 2, size[1] / 2), angle, 1)
rotated_size = numpy.dot(numpy.abs(rotated_matrix[:, :2]), size)
rotated_matrix[:, -1] += (rotated_size - size) * 0.5 #type:ignore[misc]
rotated_size = int(rotated_size[0]), int(rotated_size[1])
return rotated_matrix, rotated_size
def create_rotation_matrix_and_size(angle : Angle, size : Size) -> Tuple[Matrix, Size]:
rotation_matrix = cv2.getRotationMatrix2D((size[0] / 2, size[1] / 2), angle, 1)
rotation_size = numpy.dot(numpy.abs(rotation_matrix[:, :2]), size)
rotation_matrix[:, -1] += (rotation_size - size) * 0.5 #type:ignore[misc]
rotation_size = int(rotation_size[0]), int(rotation_size[1])
return rotation_matrix, rotation_size
def create_bounding_box(face_landmark_68 : FaceLandmark68) -> BoundingBox:
min_x, min_y = numpy.min(face_landmark_68, axis = 0)
max_x, max_y = numpy.max(face_landmark_68, axis = 0)
bounding_box = normalize_bounding_box(numpy.array([ min_x, min_y, max_x, max_y ]))
x1, y1 = numpy.min(face_landmark_68, axis = 0)
x2, y2 = numpy.max(face_landmark_68, axis = 0)
bounding_box = normalize_bounding_box(numpy.array([ x1, y1, x2, y2 ]))
return bounding_box
@@ -229,8 +229,8 @@ def estimate_face_angle(face_landmark_68 : FaceLandmark68) -> Angle:
def apply_nms(bounding_boxes : List[BoundingBox], scores : List[Score], score_threshold : float, nms_threshold : float) -> Sequence[int]:
normed_bounding_boxes = [ (x1, y1, x2 - x1, y2 - y1) for (x1, y1, x2, y2) in bounding_boxes ]
keep_indices = cv2.dnn.NMSBoxes(normed_bounding_boxes, scores, score_threshold = score_threshold, nms_threshold = nms_threshold)
bounding_boxes_norm = [ (x1, y1, x2 - x1, y2 - y1) for (x1, y1, x2, y2) in bounding_boxes ]
keep_indices = cv2.dnn.NMSBoxes(bounding_boxes_norm, scores, score_threshold = score_threshold, nms_threshold = nms_threshold)
return keep_indices
@@ -246,9 +246,11 @@ def get_nms_threshold(face_detector_model : FaceDetectorModel, face_detector_ang
return 0.4
def merge_matrix(matrices : List[Matrix]) -> Matrix:
merged_matrix = numpy.vstack([ matrices[0], [ 0, 0, 1 ] ])
for matrix in matrices[1:]:
matrix = numpy.vstack([ matrix, [ 0, 0, 1 ] ])
merged_matrix = numpy.dot(merged_matrix, matrix)
return merged_matrix[:2, :]
def merge_matrix(temp_matrices : List[Matrix]) -> Matrix:
matrix = numpy.vstack([temp_matrices[0], [0, 0, 1]])
for temp_matrix in temp_matrices[1:]:
temp_matrix = numpy.vstack([ temp_matrix, [ 0, 0, 1 ] ])
matrix = numpy.dot(temp_matrix, matrix)
return matrix[:2, :]
+26 -8
View File
@@ -6,18 +6,24 @@ import numpy
from facefusion import inference_manager, state_manager
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url
from facefusion.face_helper import create_rotated_matrix_and_size, estimate_matrix_by_face_landmark_5, transform_points, warp_face_by_translation
from facefusion.face_helper import create_rotation_matrix_and_size, estimate_matrix_by_face_landmark_5, transform_points, warp_face_by_translation
from facefusion.filesystem import resolve_relative_path
from facefusion.thread_helper import conditional_thread_semaphore
from facefusion.types import Angle, BoundingBox, DownloadScope, DownloadSet, FaceLandmark5, FaceLandmark68, InferencePool, ModelSet, Prediction, Score, VisionFrame
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'2dfan4':
{
'__metadata__':
{
'vendor': 'breadbread1984',
'license': 'MIT',
'year': 2018
},
'hashes':
{
'2dfan4':
@@ -38,6 +44,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'peppa_wutz':
{
'__metadata__':
{
'vendor': 'Unknown',
'license': 'Apache-2.0',
'year': 2023
},
'hashes':
{
'peppa_wutz':
@@ -58,6 +70,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'fan_68_5':
{
'__metadata__':
{
'vendor': 'FaceFusion',
'license': 'OpenRAIL-M',
'year': 2024
},
'hashes':
{
'fan_68_5':
@@ -136,14 +154,14 @@ def detect_with_2dfan4(temp_vision_frame: VisionFrame, bounding_box: BoundingBox
model_size = create_static_model_set('full').get('2dfan4').get('size')
scale = 195 / numpy.subtract(bounding_box[2:], bounding_box[:2]).max().clip(1, None)
translation = (model_size[0] - numpy.add(bounding_box[2:], bounding_box[:2]) * scale) * 0.5
rotated_matrix, rotated_size = create_rotated_matrix_and_size(face_angle, model_size)
rotation_matrix, rotation_size = create_rotation_matrix_and_size(face_angle, model_size)
crop_vision_frame, affine_matrix = warp_face_by_translation(temp_vision_frame, translation, scale, model_size)
crop_vision_frame = cv2.warpAffine(crop_vision_frame, rotated_matrix, rotated_size)
crop_vision_frame = cv2.warpAffine(crop_vision_frame, rotation_matrix, rotation_size)
crop_vision_frame = conditional_optimize_contrast(crop_vision_frame)
crop_vision_frame = crop_vision_frame.transpose(2, 0, 1).astype(numpy.float32) / 255.0
face_landmark_68, face_heatmap = forward_with_2dfan4(crop_vision_frame)
face_landmark_68 = face_landmark_68[:, :, :2][0] / 64 * 256
face_landmark_68 = transform_points(face_landmark_68, cv2.invertAffineTransform(rotated_matrix))
face_landmark_68 = transform_points(face_landmark_68, cv2.invertAffineTransform(rotation_matrix))
face_landmark_68 = transform_points(face_landmark_68, cv2.invertAffineTransform(affine_matrix))
face_landmark_score_68 = numpy.amax(face_heatmap, axis = (2, 3))
face_landmark_score_68 = numpy.mean(face_landmark_score_68)
@@ -155,15 +173,15 @@ def detect_with_peppa_wutz(temp_vision_frame : VisionFrame, bounding_box : Bound
model_size = create_static_model_set('full').get('peppa_wutz').get('size')
scale = 195 / numpy.subtract(bounding_box[2:], bounding_box[:2]).max().clip(1, None)
translation = (model_size[0] - numpy.add(bounding_box[2:], bounding_box[:2]) * scale) * 0.5
rotated_matrix, rotated_size = create_rotated_matrix_and_size(face_angle, model_size)
rotation_matrix, rotation_size = create_rotation_matrix_and_size(face_angle, model_size)
crop_vision_frame, affine_matrix = warp_face_by_translation(temp_vision_frame, translation, scale, model_size)
crop_vision_frame = cv2.warpAffine(crop_vision_frame, rotated_matrix, rotated_size)
crop_vision_frame = cv2.warpAffine(crop_vision_frame, rotation_matrix, rotation_size)
crop_vision_frame = conditional_optimize_contrast(crop_vision_frame)
crop_vision_frame = crop_vision_frame.transpose(2, 0, 1).astype(numpy.float32) / 255.0
crop_vision_frame = numpy.expand_dims(crop_vision_frame, axis = 0)
prediction = forward_with_peppa_wutz(crop_vision_frame)
face_landmark_68 = prediction.reshape(-1, 3)[:, :2] / 64 * model_size[0]
face_landmark_68 = transform_points(face_landmark_68, cv2.invertAffineTransform(rotated_matrix))
face_landmark_68 = transform_points(face_landmark_68, cv2.invertAffineTransform(rotation_matrix))
face_landmark_68 = transform_points(face_landmark_68, cv2.invertAffineTransform(affine_matrix))
face_landmark_score_68 = prediction.reshape(-1, 3)[:, 2].mean()
face_landmark_score_68 = numpy.interp(face_landmark_score_68, [ 0, 0.95 ], [ 0, 1 ])
+51 -12
View File
@@ -12,12 +12,18 @@ from facefusion.thread_helper import conditional_thread_semaphore
from facefusion.types import DownloadScope, DownloadSet, FaceLandmark68, FaceMaskArea, FaceMaskRegion, InferencePool, Mask, ModelSet, Padding, VisionFrame
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'xseg_1':
{
'__metadata__':
{
'vendor': 'DeepFaceLab',
'license': 'GPL-3.0',
'year': 2021
},
'hashes':
{
'face_occluder':
@@ -38,6 +44,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'xseg_2':
{
'__metadata__':
{
'vendor': 'DeepFaceLab',
'license': 'GPL-3.0',
'year': 2021
},
'hashes':
{
'face_occluder':
@@ -58,6 +70,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'xseg_3':
{
'__metadata__':
{
'vendor': 'DeepFaceLab',
'license': 'GPL-3.0',
'year': 2021
},
'hashes':
{
'face_occluder':
@@ -78,6 +96,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'bisenet_resnet_18':
{
'__metadata__':
{
'vendor': 'yakhyo',
'license': 'MIT',
'year': 2024
},
'hashes':
{
'face_parser':
@@ -98,6 +122,12 @@ def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
},
'bisenet_resnet_34':
{
'__metadata__':
{
'vendor': 'yakhyo',
'license': 'MIT',
'year': 2024
},
'hashes':
{
'face_parser':
@@ -137,7 +167,7 @@ def collect_model_downloads() -> Tuple[DownloadSet, DownloadSet]:
model_source_set = {}
for face_occluder_model in [ 'xseg_1', 'xseg_2', 'xseg_3' ]:
if state_manager.get_item('face_occluder_model') == face_occluder_model:
if state_manager.get_item('face_occluder_model') in [ 'many', face_occluder_model ]:
model_hash_set[face_occluder_model] = model_set.get(face_occluder_model).get('hashes').get('face_occluder')
model_source_set[face_occluder_model] = model_set.get(face_occluder_model).get('sources').get('face_occluder')
@@ -171,14 +201,24 @@ def create_box_mask(crop_vision_frame : VisionFrame, face_mask_blur : float, fac
def create_occlusion_mask(crop_vision_frame : VisionFrame) -> Mask:
model_name = state_manager.get_item('face_occluder_model')
model_size = create_static_model_set('full').get(model_name).get('size')
prepare_vision_frame = cv2.resize(crop_vision_frame, model_size)
prepare_vision_frame = numpy.expand_dims(prepare_vision_frame, axis = 0).astype(numpy.float32) / 255.0
prepare_vision_frame = prepare_vision_frame.transpose(0, 1, 2, 3)
occlusion_mask = forward_occlude_face(prepare_vision_frame)
occlusion_mask = occlusion_mask.transpose(0, 1, 2).clip(0, 1).astype(numpy.float32)
occlusion_mask = cv2.resize(occlusion_mask, crop_vision_frame.shape[:2][::-1])
temp_masks = []
if state_manager.get_item('face_occluder_model') == 'many':
model_names = [ 'xseg_1', 'xseg_2', 'xseg_3' ]
else:
model_names = [ state_manager.get_item('face_occluder_model') ]
for model_name in model_names:
model_size = create_static_model_set('full').get(model_name).get('size')
prepare_vision_frame = cv2.resize(crop_vision_frame, model_size)
prepare_vision_frame = numpy.expand_dims(prepare_vision_frame, axis = 0).astype(numpy.float32) / 255.0
prepare_vision_frame = prepare_vision_frame.transpose(0, 1, 2, 3)
temp_mask = forward_occlude_face(prepare_vision_frame, model_name)
temp_mask = temp_mask.transpose(0, 1, 2).clip(0, 1).astype(numpy.float32)
temp_mask = cv2.resize(temp_mask, crop_vision_frame.shape[:2][::-1])
temp_masks.append(temp_mask)
occlusion_mask = numpy.minimum.reduce(temp_masks)
occlusion_mask = (cv2.GaussianBlur(occlusion_mask.clip(0, 1), (0, 0), 5).clip(0.5, 1) - 0.5) * 2
return occlusion_mask
@@ -214,8 +254,7 @@ def create_region_mask(crop_vision_frame : VisionFrame, face_mask_regions : List
return region_mask
def forward_occlude_face(prepare_vision_frame : VisionFrame) -> Mask:
model_name = state_manager.get_item('face_occluder_model')
def forward_occlude_face(prepare_vision_frame : VisionFrame, model_name : str) -> Mask:
face_occluder = get_inference_pool().get(model_name)
with conditional_thread_semaphore():
+14 -8
View File
@@ -11,12 +11,18 @@ from facefusion.thread_helper import conditional_thread_semaphore
from facefusion.types import DownloadScope, Embedding, FaceLandmark5, InferencePool, ModelOptions, ModelSet, VisionFrame
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'arcface':
{
'__metadata__':
{
'vendor': 'InsightFace',
'license': 'Non-Commercial',
'year': 2018
},
'hashes':
{
'face_recognizer':
@@ -62,26 +68,26 @@ def pre_check() -> bool:
return conditional_download_hashes(model_hash_set) and conditional_download_sources(model_source_set)
def calc_embedding(temp_vision_frame : VisionFrame, face_landmark_5 : FaceLandmark5) -> Tuple[Embedding, Embedding]:
def calculate_face_embedding(temp_vision_frame : VisionFrame, face_landmark_5 : FaceLandmark5) -> Tuple[Embedding, Embedding]:
model_template = get_model_options().get('template')
model_size = get_model_options().get('size')
crop_vision_frame, matrix = warp_face_by_face_landmark_5(temp_vision_frame, face_landmark_5, model_template, model_size)
crop_vision_frame = crop_vision_frame / 127.5 - 1
crop_vision_frame = crop_vision_frame[:, :, ::-1].transpose(2, 0, 1).astype(numpy.float32)
crop_vision_frame = numpy.expand_dims(crop_vision_frame, axis = 0)
embedding = forward(crop_vision_frame)
embedding = embedding.ravel()
normed_embedding = embedding / numpy.linalg.norm(embedding)
return embedding, normed_embedding
face_embedding = forward(crop_vision_frame)
face_embedding = face_embedding.ravel()
face_embedding_norm = face_embedding / numpy.linalg.norm(face_embedding)
return face_embedding, face_embedding_norm
def forward(crop_vision_frame : VisionFrame) -> Embedding:
face_recognizer = get_inference_pool().get('face_recognizer')
with conditional_thread_semaphore():
embedding = face_recognizer.run(None,
face_embedding = face_recognizer.run(None,
{
'input': crop_vision_frame
})[0]
return embedding
return face_embedding
+37 -15
View File
@@ -3,31 +3,53 @@ from typing import List
import numpy
from facefusion import state_manager
from facefusion.types import Face, FaceSelectorOrder, FaceSet, Gender, Race, Score
from facefusion.face_analyser import get_many_faces, get_one_face
from facefusion.types import Face, FaceSelectorOrder, Gender, Race, Score, VisionFrame
def find_similar_faces(faces : List[Face], reference_faces : FaceSet, face_distance : float) -> List[Face]:
similar_faces : List[Face] = []
def select_faces(reference_vision_frame : VisionFrame, target_vision_frame : VisionFrame) -> List[Face]:
target_faces = get_many_faces([ target_vision_frame ])
if faces and reference_faces:
for reference_set in reference_faces:
if not similar_faces:
for reference_face in reference_faces[reference_set]:
for face in faces:
if compare_faces(face, reference_face, face_distance):
similar_faces.append(face)
return similar_faces
if state_manager.get_item('face_selector_mode') == 'many':
return sort_and_filter_faces(target_faces)
if state_manager.get_item('face_selector_mode') == 'one':
target_face = get_one_face(sort_and_filter_faces(target_faces))
if target_face:
return [ target_face ]
if state_manager.get_item('face_selector_mode') == 'reference':
reference_faces = get_many_faces([ reference_vision_frame ])
reference_faces = sort_and_filter_faces(reference_faces)
reference_face = get_one_face(reference_faces, state_manager.get_item('reference_face_position'))
if reference_face:
match_faces = find_match_faces([ reference_face ], target_faces, state_manager.get_item('reference_face_distance'))
return match_faces
return []
def find_match_faces(reference_faces : List[Face], target_faces : List[Face], face_distance : float) -> List[Face]:
match_faces : List[Face] = []
for reference_face in reference_faces:
if reference_face:
for index, target_face in enumerate(target_faces):
if compare_faces(target_face, reference_face, face_distance):
match_faces.append(target_faces[index])
return match_faces
def compare_faces(face : Face, reference_face : Face, face_distance : float) -> bool:
current_face_distance = calc_face_distance(face, reference_face)
current_face_distance = calculate_face_distance(face, reference_face)
current_face_distance = float(numpy.interp(current_face_distance, [ 0, 2 ], [ 0, 1 ]))
return current_face_distance < face_distance
def calc_face_distance(face : Face, reference_face : Face) -> float:
if hasattr(face, 'normed_embedding') and hasattr(reference_face, 'normed_embedding'):
return 1 - numpy.dot(face.normed_embedding, reference_face.normed_embedding)
def calculate_face_distance(face : Face, reference_face : Face) -> float:
if hasattr(face, 'embedding_norm') and hasattr(reference_face, 'embedding_norm'):
return 1 - numpy.dot(face.embedding_norm, reference_face.embedding_norm)
return 0
+2 -17
View File
@@ -1,12 +1,11 @@
from typing import List, Optional
from facefusion.hash_helper import create_hash
from facefusion.types import Face, FaceSet, FaceStore, VisionFrame
from facefusion.types import Face, FaceStore, VisionFrame
FACE_STORE : FaceStore =\
{
'static_faces': {},
'reference_faces': {}
'static_faces': {}
}
@@ -27,17 +26,3 @@ def set_static_faces(vision_frame : VisionFrame, faces : List[Face]) -> None:
def clear_static_faces() -> None:
FACE_STORE['static_faces'].clear()
def get_reference_faces() -> Optional[FaceSet]:
return FACE_STORE.get('reference_faces')
def append_reference_face(name : str, face : Face) -> None:
if name not in FACE_STORE.get('reference_faces'):
FACE_STORE['reference_faces'][name] = []
FACE_STORE['reference_faces'][name].append(face)
def clear_reference_faces() -> None:
FACE_STORE['reference_faces'].clear()
+59 -35
View File
@@ -7,14 +7,14 @@ from typing import List, Optional, cast
from tqdm import tqdm
import facefusion.choices
from facefusion import ffmpeg_builder, logger, process_manager, state_manager, wording
from facefusion import ffmpeg_builder, logger, process_manager, state_manager, translator
from facefusion.filesystem import get_file_format, remove_file
from facefusion.temp_helper import get_temp_file_path, get_temp_frames_pattern
from facefusion.types import AudioBuffer, AudioEncoder, Commands, EncoderSet, Fps, UpdateProgress, VideoEncoder, VideoFormat
from facefusion.vision import detect_video_duration, detect_video_fps, predict_video_frame_total
from facefusion.types import AudioBuffer, AudioEncoder, Command, EncoderSet, Fps, Resolution, UpdateProgress, VideoEncoder, VideoFormat
from facefusion.vision import detect_video_duration, detect_video_fps, pack_resolution, predict_video_frame_total
def run_ffmpeg_with_progress(commands : Commands, update_progress : UpdateProgress) -> subprocess.Popen[bytes]:
def run_ffmpeg_with_progress(commands : List[Command], update_progress : UpdateProgress) -> subprocess.Popen[bytes]:
log_level = state_manager.get_item('log_level')
commands.extend(ffmpeg_builder.set_progress())
commands.extend(ffmpeg_builder.cast_stream())
@@ -23,8 +23,10 @@ def run_ffmpeg_with_progress(commands : Commands, update_progress : UpdateProgre
while process_manager.is_processing():
try:
while __line__ := process.stdout.readline().decode().lower():
if process_manager.is_stopping():
process.terminate()
if 'frame=' in __line__:
_, frame_number = __line__.split('frame=')
update_progress(int(frame_number))
@@ -36,8 +38,6 @@ def run_ffmpeg_with_progress(commands : Commands, update_progress : UpdateProgre
continue
return process
if process_manager.is_stopping():
process.terminate()
return process
@@ -45,7 +45,7 @@ def update_progress(progress : tqdm, frame_number : int) -> None:
progress.update(frame_number - progress.n)
def run_ffmpeg(commands : Commands) -> subprocess.Popen[bytes]:
def run_ffmpeg(commands : List[Command]) -> subprocess.Popen[bytes]:
log_level = state_manager.get_item('log_level')
commands = ffmpeg_builder.run(commands)
process = subprocess.Popen(commands, stderr = subprocess.PIPE, stdout = subprocess.PIPE)
@@ -61,10 +61,11 @@ def run_ffmpeg(commands : Commands) -> subprocess.Popen[bytes]:
if process_manager.is_stopping():
process.terminate()
return process
def open_ffmpeg(commands : Commands) -> subprocess.Popen[bytes]:
def open_ffmpeg(commands : List[Command]) -> subprocess.Popen[bytes]:
commands = ffmpeg_builder.run(commands)
return subprocess.Popen(commands, stdin = subprocess.PIPE, stdout = subprocess.PIPE)
@@ -106,41 +107,59 @@ def get_available_encoder_set() -> EncoderSet:
return available_encoder_set
def extract_frames(target_path : str, temp_video_resolution : str, temp_video_fps : Fps, trim_frame_start : int, trim_frame_end : int) -> bool:
def extract_frames(target_path : str, output_path : str, temp_video_resolution : Resolution, temp_video_fps : Fps, trim_frame_start : int, trim_frame_end : int) -> bool:
extract_frame_total = predict_video_frame_total(target_path, temp_video_fps, trim_frame_start, trim_frame_end)
temp_frames_pattern = get_temp_frames_pattern(target_path, '%08d')
temp_frames_pattern = get_temp_frames_pattern(state_manager.get_temp_path(), output_path, state_manager.get_item('temp_frame_format'), '%08d')
commands = ffmpeg_builder.chain(
ffmpeg_builder.set_input(target_path),
ffmpeg_builder.set_media_resolution(temp_video_resolution),
ffmpeg_builder.set_media_resolution(pack_resolution(temp_video_resolution)),
ffmpeg_builder.set_frame_quality(0),
ffmpeg_builder.select_frame_range(trim_frame_start, trim_frame_end, temp_video_fps),
ffmpeg_builder.prevent_frame_drop(),
ffmpeg_builder.set_output(temp_frames_pattern)
)
with tqdm(total = extract_frame_total, desc = wording.get('extracting'), unit = 'frame', ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
with tqdm(total = extract_frame_total, desc = translator.get('extracting'), unit = 'frame', ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
process = run_ffmpeg_with_progress(commands, partial(update_progress, progress))
return process.returncode == 0
def copy_image(target_path : str, temp_image_resolution : str) -> bool:
temp_image_path = get_temp_file_path(target_path)
def spawn_frames(target_path : str, output_path : str, temp_video_resolution : Resolution, temp_video_fps : Fps, trim_frame_start : int, trim_frame_end : int) -> bool:
spawn_frame_total = trim_frame_end - trim_frame_start
duration = spawn_frame_total / temp_video_fps
temp_frames_pattern = get_temp_frames_pattern(state_manager.get_temp_path(), output_path, state_manager.get_item('temp_frame_format'), '%08d')
commands = ffmpeg_builder.chain(
ffmpeg_builder.set_loop(),
ffmpeg_builder.set_input(target_path),
ffmpeg_builder.set_video_duration(duration),
ffmpeg_builder.set_video_fps(temp_video_fps),
ffmpeg_builder.set_media_resolution(pack_resolution(temp_video_resolution)),
ffmpeg_builder.set_output(temp_frames_pattern)
)
with tqdm(total = spawn_frame_total, desc = translator.get('spawning'), unit = 'frame', ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
process = run_ffmpeg_with_progress(commands, partial(update_progress, progress))
return process.returncode == 0
def copy_image(target_path : str, output_path : str, temp_image_resolution : Resolution) -> bool:
temp_image_path = get_temp_file_path(state_manager.get_temp_path(), output_path)
commands = ffmpeg_builder.chain(
ffmpeg_builder.set_input(target_path),
ffmpeg_builder.set_media_resolution(temp_image_resolution),
ffmpeg_builder.set_media_resolution(pack_resolution(temp_image_resolution)),
ffmpeg_builder.set_image_quality(target_path, 100),
ffmpeg_builder.force_output(temp_image_path)
)
return run_ffmpeg(commands).returncode == 0
def finalize_image(target_path : str, output_path : str, output_image_resolution : str) -> bool:
def finalize_image(output_path : str, output_image_resolution : Resolution) -> bool:
output_image_quality = state_manager.get_item('output_image_quality')
temp_image_path = get_temp_file_path(target_path)
temp_image_path = get_temp_file_path(state_manager.get_temp_path(), output_path)
commands = ffmpeg_builder.chain(
ffmpeg_builder.set_input(temp_image_path),
ffmpeg_builder.set_media_resolution(output_image_resolution),
ffmpeg_builder.set_image_quality(target_path, output_image_quality),
ffmpeg_builder.set_media_resolution(pack_resolution(output_image_resolution)),
ffmpeg_builder.set_image_quality(output_path, output_image_quality),
ffmpeg_builder.force_output(output_path)
)
return run_ffmpeg(commands).returncode == 0
@@ -168,8 +187,8 @@ def restore_audio(target_path : str, output_path : str, trim_frame_start : int,
output_audio_quality = state_manager.get_item('output_audio_quality')
output_audio_volume = state_manager.get_item('output_audio_volume')
target_video_fps = detect_video_fps(target_path)
temp_video_path = get_temp_file_path(target_path)
temp_video_format = cast(VideoFormat, get_file_format(temp_video_path))
temp_video_path = get_temp_file_path(state_manager.get_temp_path(), output_path)
temp_video_format = cast(VideoFormat, get_file_format(output_path))
temp_video_duration = detect_video_duration(temp_video_path)
output_audio_encoder = fix_audio_encoder(temp_video_format, output_audio_encoder)
@@ -189,12 +208,12 @@ def restore_audio(target_path : str, output_path : str, trim_frame_start : int,
return run_ffmpeg(commands).returncode == 0
def replace_audio(target_path : str, audio_path : str, output_path : str) -> bool:
def replace_audio(audio_path : str, output_path : str) -> bool:
output_audio_encoder = state_manager.get_item('output_audio_encoder')
output_audio_quality = state_manager.get_item('output_audio_quality')
output_audio_volume = state_manager.get_item('output_audio_volume')
temp_video_path = get_temp_file_path(target_path)
temp_video_format = cast(VideoFormat, get_file_format(temp_video_path))
temp_video_path = get_temp_file_path(state_manager.get_temp_path(), output_path)
temp_video_format = cast(VideoFormat, get_file_format(output_path))
temp_video_duration = detect_video_duration(temp_video_path)
output_audio_encoder = fix_audio_encoder(temp_video_format, output_audio_encoder)
@@ -211,30 +230,33 @@ def replace_audio(target_path : str, audio_path : str, output_path : str) -> boo
return run_ffmpeg(commands).returncode == 0
def merge_video(target_path : str, temp_video_fps : Fps, output_video_resolution : str, output_video_fps : Fps, trim_frame_start : int, trim_frame_end : int) -> bool:
def merge_video(target_path : str, output_path : str, temp_video_fps : Fps, output_video_resolution : Resolution, trim_frame_start : int, trim_frame_end : int) -> bool:
output_video_fps = state_manager.get_item('output_video_fps')
output_video_encoder = state_manager.get_item('output_video_encoder')
output_video_quality = state_manager.get_item('output_video_quality')
output_video_preset = state_manager.get_item('output_video_preset')
merge_frame_total = predict_video_frame_total(target_path, output_video_fps, trim_frame_start, trim_frame_end)
temp_video_path = get_temp_file_path(target_path)
temp_video_format = cast(VideoFormat, get_file_format(temp_video_path))
temp_frames_pattern = get_temp_frames_pattern(target_path, '%08d')
temp_video_path = get_temp_file_path(state_manager.get_temp_path(), output_path)
temp_video_format = cast(VideoFormat, get_file_format(output_path))
temp_frames_pattern = get_temp_frames_pattern(state_manager.get_temp_path(), output_path, state_manager.get_item('temp_frame_format'), '%08d')
output_video_encoder = fix_video_encoder(temp_video_format, output_video_encoder)
commands = ffmpeg_builder.chain(
ffmpeg_builder.set_input_fps(temp_video_fps),
ffmpeg_builder.set_input(temp_frames_pattern),
ffmpeg_builder.set_media_resolution(output_video_resolution),
ffmpeg_builder.set_media_resolution(pack_resolution(output_video_resolution)),
ffmpeg_builder.set_video_encoder(output_video_encoder),
ffmpeg_builder.set_video_quality(output_video_encoder, output_video_quality),
ffmpeg_builder.set_video_preset(output_video_encoder, output_video_preset),
ffmpeg_builder.set_video_fps(output_video_fps),
ffmpeg_builder.concat(
ffmpeg_builder.set_video_fps(output_video_fps),
ffmpeg_builder.keep_video_alpha(output_video_encoder)
),
ffmpeg_builder.set_pixel_format(output_video_encoder),
ffmpeg_builder.set_video_colorspace('bt709'),
ffmpeg_builder.force_output(temp_video_path)
)
with tqdm(total = merge_frame_total, desc = wording.get('merging'), unit = 'frame', ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
with tqdm(total = merge_frame_total, desc = translator.get('merging'), unit = 'frame', ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
process = run_ffmpeg_with_progress(commands, partial(update_progress, progress))
return process.returncode == 0
@@ -265,17 +287,19 @@ def concat_video(output_path : str, temp_output_paths : List[str]) -> bool:
def fix_audio_encoder(video_format : VideoFormat, audio_encoder : AudioEncoder) -> AudioEncoder:
if video_format == 'avi' and audio_encoder == 'libopus':
return 'aac'
if video_format == 'm4v':
if video_format in [ 'm4v', 'mpeg', 'wmv' ]:
return 'aac'
if video_format == 'mov' and audio_encoder in [ 'flac', 'libopus' ]:
return 'aac'
if video_format == 'mxf':
return 'pcm_s16le'
if video_format == 'webm':
return 'libopus'
return audio_encoder
def fix_video_encoder(video_format : VideoFormat, video_encoder : VideoEncoder) -> VideoEncoder:
if video_format == 'm4v':
if video_format in [ 'm4v', 'mpeg', 'mxf', 'wmv' ]:
return 'libx264'
if video_format in [ 'mkv', 'mp4' ] and video_encoder == 'rawvideo':
return 'libx264'
+81 -58
View File
@@ -1,54 +1,73 @@
import itertools
import shutil
from typing import Optional
from typing import List, Optional
import numpy
from facefusion.filesystem import get_file_format
from facefusion.types import AudioEncoder, Commands, Duration, Fps, StreamMode, VideoEncoder, VideoPreset
from facefusion.types import AudioEncoder, Command, CommandSet, Duration, Fps, StreamMode, VideoEncoder, VideoPreset
def run(commands : Commands) -> Commands:
def run(commands : List[Command]) -> List[Command]:
return [ shutil.which('ffmpeg'), '-loglevel', 'error' ] + commands
def chain(*commands : Commands) -> Commands:
def chain(*commands : List[Command]) -> List[Command]:
return list(itertools.chain(*commands))
def get_encoders() -> Commands:
def concat(*__commands__ : List[Command]) -> List[Command]:
commands = []
command_set : CommandSet = {}
for command in __commands__:
for argument, value in zip(command[::2], command[1::2]):
command_set.setdefault(argument, []).append(value)
for argument, values in command_set.items():
commands.append(argument)
commands.append(','.join(values))
return commands
def get_encoders() -> List[Command]:
return [ '-encoders' ]
def set_hardware_accelerator(value : str) -> Commands:
def set_hardware_accelerator(value : str) -> List[Command]:
return [ '-hwaccel', value ]
def set_progress() -> Commands:
def set_progress() -> List[Command]:
return [ '-progress' ]
def set_input(input_path : str) -> Commands:
def set_input(input_path : str) -> List[Command]:
return [ '-i', input_path ]
def set_input_fps(input_fps : Fps) -> Commands:
def set_input_fps(input_fps : Fps) -> List[Command]:
return [ '-r', str(input_fps)]
def set_output(output_path : str) -> Commands:
def set_output(output_path : str) -> List[Command]:
return [ output_path ]
def force_output(output_path : str) -> Commands:
def force_output(output_path : str) -> List[Command]:
return [ '-y', output_path ]
def cast_stream() -> Commands:
def set_loop() -> List[Command]:
return [ '-loop', '1' ]
def cast_stream() -> List[Command]:
return [ '-' ]
def set_stream_mode(stream_mode : StreamMode) -> Commands:
def set_stream_mode(stream_mode : StreamMode) -> List[Command]:
if stream_mode == 'udp':
return [ '-f', 'mpegts' ]
if stream_mode == 'v4l2':
@@ -56,25 +75,27 @@ def set_stream_mode(stream_mode : StreamMode) -> Commands:
return []
def set_stream_quality(stream_quality : int) -> Commands:
def set_stream_quality(stream_quality : int) -> List[Command]:
return [ '-b:v', str(stream_quality) + 'k' ]
def unsafe_concat() -> Commands:
def unsafe_concat() -> List[Command]:
return [ '-f', 'concat', '-safe', '0' ]
def set_pixel_format(video_encoder : VideoEncoder) -> Commands:
def set_pixel_format(video_encoder : VideoEncoder) -> List[Command]:
if video_encoder == 'rawvideo':
return [ '-pix_fmt', 'rgb24' ]
if video_encoder == 'libvpx-vp9':
return [ '-pix_fmt', 'yuva420p' ]
return [ '-pix_fmt', 'yuv420p' ]
def set_frame_quality(frame_quality : int) -> Commands:
def set_frame_quality(frame_quality : int) -> List[Command]:
return [ '-q:v', str(frame_quality) ]
def select_frame_range(frame_start : int, frame_end : int, video_fps : Fps) -> Commands:
def select_frame_range(frame_start : int, frame_end : int, video_fps : Fps) -> List[Command]:
if isinstance(frame_start, int) and isinstance(frame_end, int):
return [ '-vf', 'trim=start_frame=' + str(frame_start) + ':end_frame=' + str(frame_end) + ',fps=' + str(video_fps) ]
if isinstance(frame_start, int):
@@ -84,11 +105,11 @@ def select_frame_range(frame_start : int, frame_end : int, video_fps : Fps) -> C
return [ '-vf', 'fps=' + str(video_fps) ]
def prevent_frame_drop() -> Commands:
def prevent_frame_drop() -> List[Command]:
return [ '-vsync', '0' ]
def select_media_range(frame_start : int, frame_end : int, media_fps : Fps) -> Commands:
def select_media_range(frame_start : int, frame_end : int, media_fps : Fps) -> List[Command]:
commands = []
if isinstance(frame_start, int):
@@ -98,35 +119,35 @@ def select_media_range(frame_start : int, frame_end : int, media_fps : Fps) -> C
return commands
def select_media_stream(media_stream : str) -> Commands:
def select_media_stream(media_stream : str) -> List[Command]:
return [ '-map', media_stream ]
def set_media_resolution(video_resolution : str) -> Commands:
def set_media_resolution(video_resolution : str) -> List[Command]:
return [ '-s', video_resolution ]
def set_image_quality(image_path : str, image_quality : int) -> Commands:
def set_image_quality(image_path : str, image_quality : int) -> List[Command]:
if get_file_format(image_path) == 'webp':
image_compression = image_quality
else:
image_compression = round(31 - (image_quality * 0.31))
return [ '-q:v', str(image_quality) ]
image_compression = round(31 - (image_quality * 0.31))
return [ '-q:v', str(image_compression) ]
def set_audio_encoder(audio_codec : str) -> Commands:
def set_audio_encoder(audio_codec : str) -> List[Command]:
return [ '-c:a', audio_codec ]
def copy_audio_encoder() -> Commands:
def copy_audio_encoder() -> List[Command]:
return set_audio_encoder('copy')
def set_audio_sample_rate(audio_sample_rate : int) -> Commands:
def set_audio_sample_rate(audio_sample_rate : int) -> List[Command]:
return [ '-ar', str(audio_sample_rate) ]
def set_audio_sample_size(audio_sample_size : int) -> Commands:
def set_audio_sample_size(audio_sample_size : int) -> List[Command]:
if audio_sample_size == 16:
return [ '-f', 's16le' ]
if audio_sample_size == 32:
@@ -134,62 +155,62 @@ def set_audio_sample_size(audio_sample_size : int) -> Commands:
return []
def set_audio_channel_total(audio_channel_total : int) -> Commands:
def set_audio_channel_total(audio_channel_total : int) -> List[Command]:
return [ '-ac', str(audio_channel_total) ]
def set_audio_quality(audio_encoder : AudioEncoder, audio_quality : int) -> Commands:
def set_audio_quality(audio_encoder : AudioEncoder, audio_quality : int) -> List[Command]:
if audio_encoder == 'aac':
audio_compression = round(numpy.interp(audio_quality, [ 0, 100 ], [ 0.1, 2.0 ]), 1)
audio_compression = numpy.round(numpy.interp(audio_quality, [ 0, 100 ], [ 0.1, 2.0 ]), 1).astype(float).item()
return [ '-q:a', str(audio_compression) ]
if audio_encoder == 'libmp3lame':
audio_compression = round(numpy.interp(audio_quality, [ 0, 100 ], [ 9, 0 ]))
audio_compression = numpy.round(numpy.interp(audio_quality, [ 0, 100 ], [ 9, 0 ])).astype(int).item()
return [ '-q:a', str(audio_compression) ]
if audio_encoder == 'libopus':
audio_bit_rate = round(numpy.interp(audio_quality, [ 0, 100 ], [ 64, 256 ]))
audio_bit_rate = numpy.round(numpy.interp(audio_quality, [ 0, 100 ], [ 64, 256 ])).astype(int).item()
return [ '-b:a', str(audio_bit_rate) + 'k' ]
if audio_encoder == 'libvorbis':
audio_compression = round(numpy.interp(audio_quality, [ 0, 100 ], [ -1, 10 ]), 1)
audio_compression = numpy.round(numpy.interp(audio_quality, [ 0, 100 ], [ -1, 10 ]), 1).astype(float).item()
return [ '-q:a', str(audio_compression) ]
return []
def set_audio_volume(audio_volume : int) -> Commands:
def set_audio_volume(audio_volume : int) -> List[Command]:
return [ '-filter:a', 'volume=' + str(audio_volume / 100) ]
def set_video_encoder(video_encoder : str) -> Commands:
def set_video_encoder(video_encoder : str) -> List[Command]:
return [ '-c:v', video_encoder ]
def copy_video_encoder() -> Commands:
def copy_video_encoder() -> List[Command]:
return set_video_encoder('copy')
def set_video_quality(video_encoder : VideoEncoder, video_quality : int) -> Commands:
if video_encoder in [ 'libx264', 'libx265' ]:
video_compression = round(numpy.interp(video_quality, [ 0, 100 ], [ 51, 0 ]))
def set_video_quality(video_encoder : VideoEncoder, video_quality : int) -> List[Command]:
if video_encoder in [ 'libx264', 'libx264rgb', 'libx265' ]:
video_compression = numpy.round(numpy.interp(video_quality, [ 0, 100 ], [ 51, 0 ])).astype(int).item()
return [ '-crf', str(video_compression) ]
if video_encoder == 'libvpx-vp9':
video_compression = round(numpy.interp(video_quality, [ 0, 100 ], [ 63, 0 ]))
video_compression = numpy.round(numpy.interp(video_quality, [ 0, 100 ], [ 63, 0 ])).astype(int).item()
return [ '-crf', str(video_compression) ]
if video_encoder in [ 'h264_nvenc', 'hevc_nvenc' ]:
video_compression = round(numpy.interp(video_quality, [ 0, 100 ], [ 51, 0 ]))
video_compression = numpy.round(numpy.interp(video_quality, [ 0, 100 ], [ 51, 0 ])).astype(int).item()
return [ '-cq', str(video_compression) ]
if video_encoder in [ 'h264_amf', 'hevc_amf' ]:
video_compression = round(numpy.interp(video_quality, [ 0, 100 ], [ 51, 0 ]))
video_compression = numpy.round(numpy.interp(video_quality, [ 0, 100 ], [ 51, 0 ])).astype(int).item()
return [ '-qp_i', str(video_compression), '-qp_p', str(video_compression), '-qp_b', str(video_compression) ]
if video_encoder in [ 'h264_qsv', 'hevc_qsv' ]:
video_compression = round(numpy.interp(video_quality, [ 0, 100 ], [ 51, 0 ]))
video_compression = numpy.round(numpy.interp(video_quality, [ 0, 100 ], [ 51, 0 ])).astype(int).item()
return [ '-qp', str(video_compression) ]
if video_encoder in [ 'h264_videotoolbox', 'hevc_videotoolbox' ]:
video_bit_rate = round(numpy.interp(video_quality, [ 0, 100 ], [ 1024, 50512 ]))
video_bit_rate = numpy.round(numpy.interp(video_quality, [ 0, 100 ], [ 1024, 50512 ])).astype(int).item()
return [ '-b:v', str(video_bit_rate) + 'k' ]
return []
def set_video_preset(video_encoder : VideoEncoder, video_preset : VideoPreset) -> Commands:
if video_encoder in [ 'libx264', 'libx265' ]:
def set_video_preset(video_encoder : VideoEncoder, video_preset : VideoPreset) -> List[Command]:
if video_encoder in [ 'libx264', 'libx264rgb', 'libx265' ]:
return [ '-preset', video_preset ]
if video_encoder in [ 'h264_nvenc', 'hevc_nvenc' ]:
return [ '-preset', map_nvenc_preset(video_preset) ]
@@ -200,23 +221,25 @@ def set_video_preset(video_encoder : VideoEncoder, video_preset : VideoPreset) -
return []
def set_video_colorspace(video_colorspace : str) -> Commands:
return [ '-colorspace', video_colorspace ]
def set_video_fps(video_fps : Fps) -> List[Command]:
return [ '-vf', 'fps=' + str(video_fps) ]
def set_video_fps(video_fps : Fps) -> Commands:
return [ '-vf', 'framerate=fps=' + str(video_fps) ]
def set_video_duration(video_duration : Duration) -> Commands:
def set_video_duration(video_duration : Duration) -> List[Command]:
return [ '-t', str(video_duration) ]
def capture_video() -> Commands:
def keep_video_alpha(video_encoder : VideoEncoder) -> List[Command]:
if video_encoder == 'libvpx-vp9':
return [ '-vf', 'format=yuva420p' ]
return []
def capture_video() -> List[Command]:
return [ '-f', 'rawvideo', '-pix_fmt', 'rgb24' ]
def ignore_video_stream() -> Commands:
def ignore_video_stream() -> List[Command]:
return [ '-vn' ]
+3 -10
View File
@@ -36,19 +36,12 @@ def get_file_format(file_path : str) -> Optional[str]:
return 'jpeg'
if file_extension == '.tif':
return 'tiff'
if file_extension == '.mpg':
return 'mpeg'
return file_extension.lstrip('.')
return None
def same_file_extension(first_file_path : str, second_file_path : str) -> bool:
first_file_extension = get_file_extension(first_file_path)
second_file_extension = get_file_extension(second_file_path)
if first_file_extension and second_file_extension:
return get_file_extension(first_file_path) == get_file_extension(second_file_path)
return False
def is_file(file_path : str) -> bool:
if file_path:
return os.path.isfile(file_path)
@@ -99,7 +92,7 @@ def has_video(video_paths : List[str]) -> bool:
def are_videos(video_paths : List[str]) -> bool:
if video_paths:
return any(map(is_video, video_paths))
return all(map(is_video, video_paths))
return False
+45 -24
View File
@@ -1,41 +1,48 @@
import importlib
from time import sleep
import random
from time import sleep, time
from typing import List
from onnxruntime import InferenceSession
from facefusion import process_manager, state_manager
from facefusion import logger, process_manager, state_manager, translator
from facefusion.app_context import detect_app_context
from facefusion.execution import create_inference_session_providers
from facefusion.filesystem import is_file
from facefusion.common_helper import is_windows
from facefusion.execution import create_inference_session_providers, has_execution_provider
from facefusion.exit_helper import fatal_exit
from facefusion.filesystem import get_file_name, is_file
from facefusion.time_helper import calculate_end_time
from facefusion.types import DownloadSet, ExecutionProvider, InferencePool, InferencePoolSet
INFERENCE_POOL_SET : InferencePoolSet =\
{
'cli': {},
'ui': {}
'api': {}
}
def get_inference_pool(module_name : str, model_names : List[str], model_source_set : DownloadSet) -> InferencePool:
while process_manager.is_checking():
sleep(0.5)
execution_device_id = state_manager.get_item('execution_device_id')
execution_device_ids = state_manager.get_item('execution_device_ids')
execution_providers = resolve_execution_providers(module_name)
app_context = detect_app_context()
inference_context = get_inference_context(module_name, model_names, execution_device_id, execution_providers)
if app_context == 'cli' and INFERENCE_POOL_SET.get('ui').get(inference_context):
INFERENCE_POOL_SET['cli'][inference_context] = INFERENCE_POOL_SET.get('ui').get(inference_context)
if app_context == 'ui' and INFERENCE_POOL_SET.get('cli').get(inference_context):
INFERENCE_POOL_SET['ui'][inference_context] = INFERENCE_POOL_SET.get('cli').get(inference_context)
if not INFERENCE_POOL_SET.get(app_context).get(inference_context):
INFERENCE_POOL_SET[app_context][inference_context] = create_inference_pool(model_source_set, execution_device_id, execution_providers)
for execution_device_id in execution_device_ids:
inference_context = get_inference_context(module_name, model_names, execution_device_id, execution_providers)
return INFERENCE_POOL_SET.get(app_context).get(inference_context)
if app_context == 'cli' and INFERENCE_POOL_SET.get('api').get(inference_context):
INFERENCE_POOL_SET['cli'][inference_context] = INFERENCE_POOL_SET.get('api').get(inference_context)
if app_context == 'api' and INFERENCE_POOL_SET.get('cli').get(inference_context):
INFERENCE_POOL_SET['api'][inference_context] = INFERENCE_POOL_SET.get('cli').get(inference_context)
if not INFERENCE_POOL_SET.get(app_context).get(inference_context):
INFERENCE_POOL_SET[app_context][inference_context] = create_inference_pool(model_source_set, execution_device_id, execution_providers)
current_inference_context = get_inference_context(module_name, model_names, random.choice(execution_device_ids), execution_providers)
return INFERENCE_POOL_SET.get(app_context).get(current_inference_context)
def create_inference_pool(model_source_set : DownloadSet, execution_device_id : str, execution_providers : List[ExecutionProvider]) -> InferencePool:
def create_inference_pool(model_source_set : DownloadSet, execution_device_id : int, execution_providers : List[ExecutionProvider]) -> InferencePool:
inference_pool : InferencePool = {}
for model_name in model_source_set.keys():
@@ -47,22 +54,36 @@ def create_inference_pool(model_source_set : DownloadSet, execution_device_id :
def clear_inference_pool(module_name : str, model_names : List[str]) -> None:
execution_device_id = state_manager.get_item('execution_device_id')
execution_device_ids = state_manager.get_item('execution_device_ids')
execution_providers = resolve_execution_providers(module_name)
app_context = detect_app_context()
inference_context = get_inference_context(module_name, model_names, execution_device_id, execution_providers)
if INFERENCE_POOL_SET.get(app_context).get(inference_context):
del INFERENCE_POOL_SET[app_context][inference_context]
if is_windows() and has_execution_provider('directml'):
INFERENCE_POOL_SET[app_context].clear()
for execution_device_id in execution_device_ids:
inference_context = get_inference_context(module_name, model_names, execution_device_id, execution_providers)
if INFERENCE_POOL_SET.get(app_context).get(inference_context):
del INFERENCE_POOL_SET[app_context][inference_context]
def create_inference_session(model_path : str, execution_device_id : str, execution_providers : List[ExecutionProvider]) -> InferenceSession:
inference_session_providers = create_inference_session_providers(execution_device_id, execution_providers)
return InferenceSession(model_path, providers = inference_session_providers)
def create_inference_session(model_path : str, execution_device_id : int, execution_providers : List[ExecutionProvider]) -> InferenceSession:
model_file_name = get_file_name(model_path)
start_time = time()
try:
inference_session_providers = create_inference_session_providers(execution_device_id, execution_providers)
inference_session = InferenceSession(model_path, providers = inference_session_providers)
logger.debug(translator.get('loading_model_succeeded').format(model_name = model_file_name, seconds = calculate_end_time(start_time)), __name__)
return inference_session
except Exception:
logger.error(translator.get('loading_model_failed').format(model_name = model_file_name), __name__)
fatal_exit(1)
def get_inference_context(module_name : str, model_names : List[str], execution_device_id : str, execution_providers : List[ExecutionProvider]) -> str:
inference_context = '.'.join([ module_name ] + model_names + [ execution_device_id ] + list(execution_providers))
def get_inference_context(module_name : str, model_names : List[str], execution_device_id : int, execution_providers : List[ExecutionProvider]) -> str:
inference_context = '.'.join([ module_name ] + model_names + [ str(execution_device_id) ] + list(execution_providers))
return inference_context
+14 -10
View File
@@ -7,18 +7,24 @@ from argparse import ArgumentParser, HelpFormatter
from functools import partial
from types import FrameType
from facefusion import metadata, wording
from facefusion import metadata
from facefusion.common_helper import is_linux, is_windows
LOCALS =\
{
'install_dependency': 'install the {dependency} package',
'skip_conda': 'skip the conda environment check',
'conda_not_activated': 'conda is not activated'
}
ONNXRUNTIME_SET =\
{
'default': ('onnxruntime', '1.22.0')
'default': ('onnxruntime', '1.23.2')
}
if is_windows() or is_linux():
ONNXRUNTIME_SET['cuda'] = ('onnxruntime-gpu', '1.22.0')
ONNXRUNTIME_SET['openvino'] = ('onnxruntime-openvino', '1.22.0')
ONNXRUNTIME_SET['cuda'] = ('onnxruntime-gpu', '1.23.2')
ONNXRUNTIME_SET['openvino'] = ('onnxruntime-openvino', '1.23.0')
if is_windows():
ONNXRUNTIME_SET['directml'] = ('onnxruntime-directml', '1.17.3')
ONNXRUNTIME_SET['directml'] = ('onnxruntime-directml', '1.23.0')
if is_linux():
ONNXRUNTIME_SET['rocm'] = ('onnxruntime-rocm', '1.21.0')
@@ -26,8 +32,8 @@ if is_linux():
def cli() -> None:
signal.signal(signal.SIGINT, signal_exit)
program = ArgumentParser(formatter_class = partial(HelpFormatter, max_help_position = 50))
program.add_argument('--onnxruntime', help = wording.get('help.install_dependency').format(dependency = 'onnxruntime'), choices = ONNXRUNTIME_SET.keys(), required = True)
program.add_argument('--skip-conda', help = wording.get('help.skip_conda'), action = 'store_true')
program.add_argument('--onnxruntime', help = LOCALS.get('install_dependency').format(dependency = 'onnxruntime'), choices = ONNXRUNTIME_SET.keys(), required = True)
program.add_argument('--skip-conda', help = LOCALS.get('skip_conda'), action = 'store_true')
program.add_argument('-v', '--version', version = metadata.get('name') + ' ' + metadata.get('version'), action = 'version')
run(program)
@@ -42,7 +48,7 @@ def run(program : ArgumentParser) -> None:
onnxruntime_name, onnxruntime_version = ONNXRUNTIME_SET.get(args.onnxruntime)
if not args.skip_conda and not has_conda:
sys.stdout.write(wording.get('conda_not_activated') + os.linesep)
sys.stdout.write(LOCALS.get('conda_not_activated') + os.linesep)
sys.exit(1)
with open('requirements.txt') as file:
@@ -92,5 +98,3 @@ def run(program : ArgumentParser) -> None:
subprocess.call([ shutil.which('conda'), 'env', 'config', 'vars', 'set', 'PATH=' + os.pathsep.join(library_paths) ])
if args.onnxruntime == 'directml':
subprocess.call([ shutil.which('pip'), 'install', 'numpy==1.26.4', '--force-reinstall' ])
+6 -4
View File
@@ -7,10 +7,12 @@ from facefusion.filesystem import get_file_extension, get_file_name
def get_step_output_path(job_id : str, step_index : int, output_path : str) -> Optional[str]:
if output_path:
output_directory_path, _ = os.path.split(output_path)
output_file_name = get_file_name(_)
output_file_extension = get_file_extension(_)
return os.path.join(output_directory_path, output_file_name + '-' + job_id + '-' + str(step_index) + output_file_extension)
output_directory_path, output_file_path = os.path.split(output_path)
output_file_name = get_file_name(output_file_path)
output_file_extension = get_file_extension(output_file_path)
if output_file_name and output_file_extension:
return os.path.join(output_directory_path, output_file_name + '-' + job_id + '-' + str(step_index) + output_file_extension)
return None
+6 -6
View File
@@ -1,15 +1,15 @@
from datetime import datetime
from typing import Optional, Tuple
from typing import List, Optional, Tuple
from facefusion.date_helper import describe_time_ago
from facefusion.jobs import job_manager
from facefusion.types import JobStatus, TableContents, TableHeaders
from facefusion.time_helper import describe_time_ago
from facefusion.types import JobStatus, TableContent, TableHeader
def compose_job_list(job_status : JobStatus) -> Tuple[TableHeaders, TableContents]:
def compose_job_list(job_status : JobStatus) -> Tuple[List[TableHeader], List[List[TableContent]]]:
jobs = job_manager.find_jobs(job_status)
job_headers : TableHeaders = [ 'job id', 'steps', 'date created', 'date updated', 'job status' ]
job_contents : TableContents = []
job_headers : List[TableHeader] = [ 'job id', 'steps', 'date created', 'date updated', 'job status' ]
job_contents : List[List[TableContent]] = []
for index, job_id in enumerate(jobs):
if job_manager.validate_job(job_id):
+1 -1
View File
@@ -3,10 +3,10 @@ from copy import copy
from typing import List, Optional
import facefusion.choices
from facefusion.date_helper import get_current_date_time
from facefusion.filesystem import create_directory, get_file_name, is_directory, is_file, move_file, remove_directory, remove_file, resolve_file_pattern
from facefusion.jobs.job_helper import get_step_output_path
from facefusion.json import read_json, write_json
from facefusion.time_helper import get_current_date_time
from facefusion.types import Args, Job, JobSet, JobStatus, JobStep, JobStepStatus
JOBS_PATH : Optional[str] = None
-27
View File
@@ -1,27 +0,0 @@
from typing import List
from facefusion.types import JobStore
JOB_STORE : JobStore =\
{
'job_keys': [],
'step_keys': []
}
def get_job_keys() -> List[str]:
return JOB_STORE.get('job_keys')
def get_step_keys() -> List[str]:
return JOB_STORE.get('step_keys')
def register_job_keys(step_keys : List[str]) -> None:
for step_key in step_keys:
JOB_STORE['job_keys'].append(step_key)
def register_step_keys(job_keys : List[str]) -> None:
for job_key in job_keys:
JOB_STORE['step_keys'].append(job_key)
+134
View File
@@ -0,0 +1,134 @@
import ctypes
from functools import lru_cache
from typing import Optional
from facefusion.common_helper import is_linux, is_macos, is_windows
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url_by_provider
from facefusion.filesystem import resolve_relative_path
from facefusion.types import LibrarySet
@lru_cache
def create_static_library_set() -> Optional[LibrarySet]:
if is_linux():
return\
{
'hashes':
{
'aom':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libaom.hash'),
'path': resolve_relative_path('../.libraries/libaom.hash')
}
},
'sources':
{
'aom':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libaom.so'),
'path': resolve_relative_path('../.libraries/libaom.so')
}
}
}
if is_macos():
return\
{
'hashes':
{
'aom':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libaom.hash'),
'path': resolve_relative_path('../.libraries/libaom.hash')
}
},
'sources':
{
'aom':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libaom.dylib'),
'path': resolve_relative_path('../.libraries/libaom.dylib')
}
}
}
if is_windows():
return\
{
'hashes':
{
'aom':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/aom.hash'),
'path': resolve_relative_path('../.libraries/aom.hash')
}
},
'sources':
{
'aom':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/aom.dll'),
'path': resolve_relative_path('../.libraries/aom.dll')
}
}
}
return None
def pre_check() -> bool:
library_hash_set = create_static_library_set().get('hashes')
library_source_set = create_static_library_set().get('sources')
return conditional_download_hashes(library_hash_set) and conditional_download_sources(library_source_set)
@lru_cache
def create_static_library() -> Optional[ctypes.CDLL]:
library_path = create_static_library_set().get('sources').get('aom').get('path')
if library_path:
if is_windows():
library = ctypes.CDLL(library_path, winmode = 0)
else:
library = ctypes.CDLL(library_path)
if library:
return init_ctypes(library)
return None
def init_ctypes(library : ctypes.CDLL) -> ctypes.CDLL:
library.aom_codec_enc_config_default.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_uint ]
library.aom_codec_enc_config_default.restype = ctypes.c_int
library.aom_codec_enc_init_ver.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_void_p, ctypes.c_long, ctypes.c_int ]
library.aom_codec_enc_init_ver.restype = ctypes.c_int
library.aom_codec_encode.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_int64, ctypes.c_ulong, ctypes.c_long, ctypes.c_ulong ]
library.aom_codec_encode.restype = ctypes.c_int
library.aom_codec_get_cx_data.argtypes = [ ctypes.c_void_p, ctypes.POINTER(ctypes.c_void_p) ]
library.aom_codec_get_cx_data.restype = ctypes.c_void_p
library.aom_codec_enc_config_set.argtypes = [ ctypes.c_void_p, ctypes.c_void_p ]
library.aom_codec_enc_config_set.restype = ctypes.c_int
library.aom_codec_destroy.argtypes = [ ctypes.c_void_p ]
library.aom_codec_destroy.restype = ctypes.c_int
library.aom_img_wrap.argtypes = [ ctypes.c_void_p, ctypes.c_int, ctypes.c_uint, ctypes.c_uint, ctypes.c_uint, ctypes.c_void_p ]
library.aom_img_wrap.restype = ctypes.c_void_p
library.aom_codec_control.argtypes = [ ctypes.c_void_p, ctypes.c_int, ctypes.c_int ]
library.aom_codec_control.restype = ctypes.c_int
library.aom_codec_dec_init_ver.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_void_p, ctypes.c_long, ctypes.c_int ]
library.aom_codec_dec_init_ver.restype = ctypes.c_int
library.aom_codec_decode.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_uint, ctypes.c_void_p ]
library.aom_codec_decode.restype = ctypes.c_int
library.aom_codec_get_frame.argtypes = [ ctypes.c_void_p, ctypes.POINTER(ctypes.c_void_p) ]
library.aom_codec_get_frame.restype = ctypes.c_void_p
return library
+294
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@@ -0,0 +1,294 @@
import ctypes
from functools import lru_cache
from typing import Optional
from facefusion.common_helper import is_linux, is_macos, is_windows
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url_by_provider
from facefusion.filesystem import resolve_relative_path
from facefusion.types import LibrarySet
@lru_cache
def create_static_library_set() -> Optional[LibrarySet]:
if is_linux():
return\
{
'hashes':
{
'crypto':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libcrypto.hash'),
'path': resolve_relative_path('../.libraries/libcrypto.hash')
},
'datachannel':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libdatachannel_next.hash'),
'path': resolve_relative_path('../.libraries/libdatachannel_next.hash')
},
'ssl':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libssl.hash'),
'path': resolve_relative_path('../.libraries/libssl.hash')
}
},
'sources':
{
'crypto':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libcrypto.so'),
'path': resolve_relative_path('../.libraries/libcrypto.so')
},
'datachannel':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libdatachannel_next.so'),
'path': resolve_relative_path('../.libraries/libdatachannel_next.so')
},
'ssl':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libssl.so'),
'path': resolve_relative_path('../.libraries/libssl.so')
}
}
}
if is_macos():
return\
{
'hashes':
{
'crypto':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libcrypto.hash'),
'path': resolve_relative_path('../.libraries/libcrypto.hash')
},
'datachannel':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libdatachannel_next.hash'),
'path': resolve_relative_path('../.libraries/libdatachannel_next.hash')
},
'ssl':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libssl.hash'),
'path': resolve_relative_path('../.libraries/libssl.hash')
}
},
'sources':
{
'crypto':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libcrypto.dylib'),
'path': resolve_relative_path('../.libraries/libcrypto.dylib')
},
'datachannel':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libdatachannel_next.dylib'),
'path': resolve_relative_path('../.libraries/libdatachannel_next.dylib')
},
'ssl':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libssl.dylib'),
'path': resolve_relative_path('../.libraries/libssl.dylib')
}
}
}
if is_windows():
return\
{
'hashes':
{
'crypto':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/crypto.hash'),
'path': resolve_relative_path('../.libraries/crypto.hash')
},
'datachannel':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/datachannel_next.hash'),
'path': resolve_relative_path('../.libraries/datachannel_next.hash')
},
'ssl':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/ssl.hash'),
'path': resolve_relative_path('../.libraries/ssl.hash')
}
},
'sources':
{
'crypto':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/crypto.dll'),
'path': resolve_relative_path('../.libraries/crypto.dll')
},
'datachannel':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/datachannel_next.dll'),
'path': resolve_relative_path('../.libraries/datachannel_next.dll')
},
'ssl':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/ssl.dll'),
'path': resolve_relative_path('../.libraries/ssl.dll')
}
}
}
return None
def pre_check() -> bool:
library_hash_set = create_static_library_set().get('hashes')
library_source_set = create_static_library_set().get('sources')
return conditional_download_hashes(library_hash_set) and conditional_download_sources(library_source_set)
@lru_cache
def create_static_library() -> Optional[ctypes.CDLL]:
crypto_source_path = create_static_library_set().get('sources').get('crypto').get('path')
datachannel_source_path = create_static_library_set().get('sources').get('datachannel').get('path')
ssl_source_path = create_static_library_set().get('sources').get('ssl').get('path')
if crypto_source_path and datachannel_source_path and ssl_source_path:
if is_windows():
ctypes.CDLL(crypto_source_path, winmode = 0)
ctypes.CDLL(ssl_source_path, winmode = 0)
library = ctypes.CDLL(datachannel_source_path, winmode = 0)
else:
ctypes.CDLL(crypto_source_path)
ctypes.CDLL(ssl_source_path)
library = ctypes.CDLL(datachannel_source_path)
if library:
return init_ctypes(library)
return None
def init_ctypes(library : ctypes.CDLL) -> ctypes.CDLL:
library.rtcInitLogger.argtypes = [ ctypes.c_int, ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_char_p) ]
library.rtcInitLogger.restype = None
library.rtcInitLogger(2, ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_char_p)(0))
library.rtcCreatePeerConnection.restype = ctypes.c_int
library.rtcDeletePeerConnection.argtypes = [ ctypes.c_int ]
library.rtcDeletePeerConnection.restype = ctypes.c_int
library.rtcSetLocalDescription.argtypes = [ ctypes.c_int, ctypes.c_char_p ]
library.rtcSetLocalDescription.restype = ctypes.c_int
library.rtcSetRemoteDescription.argtypes = [ ctypes.c_int, ctypes.c_char_p, ctypes.c_char_p ]
library.rtcSetRemoteDescription.restype = ctypes.c_int
library.rtcAddTrackEx.restype = ctypes.c_int
library.rtcSendMessage.argtypes = [ ctypes.c_int, ctypes.c_void_p, ctypes.c_int ]
library.rtcSendMessage.restype = ctypes.c_int
library.rtcSetAV1Packetizer.restype = ctypes.c_int
library.rtcSetVP8Packetizer.restype = ctypes.c_int
library.rtcSetVP9Packetizer.restype = ctypes.c_int
library.rtcChainRtcpSrReporter.argtypes = [ ctypes.c_int ]
library.rtcChainRtcpSrReporter.restype = ctypes.c_int
library.rtcSetTrackRtpTimestamp.argtypes = [ ctypes.c_int, ctypes.c_uint32 ]
library.rtcSetTrackRtpTimestamp.restype = ctypes.c_int
library.rtcIsOpen.argtypes = [ ctypes.c_int ]
library.rtcIsOpen.restype = ctypes.c_bool
library.rtcChainRtcpNackResponder.argtypes = [ ctypes.c_int, ctypes.c_uint ]
library.rtcChainRtcpNackResponder.restype = ctypes.c_int
library.rtcGetLocalDescription.argtypes = [ ctypes.c_int, ctypes.c_char_p, ctypes.c_int ]
library.rtcGetLocalDescription.restype = ctypes.c_int
library.rtcSetOpusPacketizer.restype = ctypes.c_int
library.rtcGetPayloadTypesForCodec.argtypes = [ ctypes.c_char_p, ctypes.c_char_p, ctypes.POINTER(ctypes.c_int), ctypes.c_int ]
library.rtcGetPayloadTypesForCodec.restype = ctypes.c_int
library.rtcSetAV1Depacketizer.argtypes = [ ctypes.c_int, ctypes.c_int ]
library.rtcSetAV1Depacketizer.restype = ctypes.c_int
library.rtcSetVP8Depacketizer.restype = ctypes.c_int
library.rtcSetVP9Depacketizer.restype = ctypes.c_int
library.rtcSetOpusDepacketizer.restype = ctypes.c_int
library.rtcChainRtcpReceivingSession.argtypes = [ ctypes.c_int ]
library.rtcChainRtcpReceivingSession.restype = ctypes.c_int
library.rtcSetFrameCallback.argtypes = [ ctypes.c_int, ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_void_p, ctypes.c_int, ctypes.c_void_p, ctypes.c_void_p) ]
library.rtcSetFrameCallback.restype = ctypes.c_int
library.rtcSetUserPointer.argtypes = [ ctypes.c_int, ctypes.c_void_p ]
library.rtcSetUserPointer.restype = None
library.rtcChainRembHandler.argtypes = [ ctypes.c_int, ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_uint, ctypes.c_void_p) ]
library.rtcChainRembHandler.restype = ctypes.c_int
library.rtcRequestBitrate.argtypes = [ ctypes.c_int, ctypes.c_uint ]
library.rtcRequestBitrate.restype = ctypes.c_int
library.rtcSetClosedCallback.argtypes = [ ctypes.c_int, ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_void_p) ]
library.rtcSetClosedCallback.restype = ctypes.c_int
return library
def define_rtc_configuration() -> ctypes.Structure:
return type('RTC_CONFIGURATION', (ctypes.Structure,),
{
'_fields_':
[
('iceServers', ctypes.POINTER(ctypes.c_char_p)),
('iceServersCount', ctypes.c_int),
('proxyServer', ctypes.c_char_p),
('bindAddress', ctypes.c_char_p),
('certificateType', ctypes.c_int),
('iceTransportPolicy', ctypes.c_int),
('enableIceTcp', ctypes.c_bool),
('enableIceUdpMux', ctypes.c_bool),
('disableAutoNegotiation', ctypes.c_bool),
('forceMediaTransport', ctypes.c_bool),
('portRangeBegin', ctypes.c_ushort),
('portRangeEnd', ctypes.c_ushort),
('mtu', ctypes.c_int),
('maxMessageSize', ctypes.c_int)
]
})()
def define_rtc_track_init() -> ctypes.Structure:
return type('RTC_TRACK_INIT', (ctypes.Structure,),
{
'_fields_':
[
('direction', ctypes.c_int),
('codec', ctypes.c_int),
('payloadType', ctypes.c_int),
('ssrc', ctypes.c_uint32),
('mid', ctypes.c_char_p),
('name', ctypes.c_char_p),
('msid', ctypes.c_char_p),
('trackId', ctypes.c_char_p),
('profile', ctypes.c_char_p)
]
})()
def define_rtc_packetizer_init() -> ctypes.Structure:
return type('RTC_PACKETIZER_INIT', (ctypes.Structure,),
{
'_fields_':
[
('ssrc', ctypes.c_uint32),
('cname', ctypes.c_char_p),
('payloadType', ctypes.c_uint8),
('clockRate', ctypes.c_uint32),
('sequenceNumber', ctypes.c_uint16),
('timestamp', ctypes.c_uint32),
('maxFragmentSize', ctypes.c_uint16),
('nalSeparator', ctypes.c_int),
('obuPacketization', ctypes.c_int)
]
})()
+121
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import ctypes
from functools import lru_cache
from typing import Optional
from facefusion.common_helper import is_linux, is_macos, is_windows
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url_by_provider
from facefusion.filesystem import resolve_relative_path
from facefusion.types import LibrarySet
@lru_cache
def create_static_library_set() -> Optional[LibrarySet]:
if is_linux():
return\
{
'hashes':
{
'opus':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libopus.hash'),
'path': resolve_relative_path('../.libraries/libopus.hash')
}
},
'sources':
{
'opus':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libopus.so'),
'path': resolve_relative_path('../.libraries/libopus.so')
}
}
}
if is_macos():
return\
{
'hashes':
{
'opus':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libopus.hash'),
'path': resolve_relative_path('../.libraries/libopus.hash')
}
},
'sources':
{
'opus':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libopus.dylib'),
'path': resolve_relative_path('../.libraries/libopus.dylib')
}
}
}
if is_windows():
return\
{
'hashes':
{
'opus':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/opus.hash'),
'path': resolve_relative_path('../.libraries/opus.hash')
}
},
'sources':
{
'opus':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/opus.dll'),
'path': resolve_relative_path('../.libraries/opus.dll')
}
}
}
return None
def pre_check() -> bool:
library_hash_set = create_static_library_set().get('hashes')
library_source_set = create_static_library_set().get('sources')
return conditional_download_hashes(library_hash_set) and conditional_download_sources(library_source_set)
@lru_cache
def create_static_library() -> Optional[ctypes.CDLL]:
library_path = create_static_library_set().get('sources').get('opus').get('path')
if library_path:
if is_windows():
library = ctypes.CDLL(library_path, winmode = 0)
else:
library = ctypes.CDLL(library_path)
if library:
return init_ctypes(library)
return None
def init_ctypes(library : ctypes.CDLL) -> ctypes.CDLL:
library.opus_encoder_create.argtypes = [ ctypes.c_int, ctypes.c_int, ctypes.c_int, ctypes.POINTER(ctypes.c_int) ]
library.opus_encoder_create.restype = ctypes.c_void_p
library.opus_encode_float.argtypes = [ ctypes.c_void_p, ctypes.POINTER(ctypes.c_float), ctypes.c_int, ctypes.c_char_p, ctypes.c_int ]
library.opus_encode_float.restype = ctypes.c_int
library.opus_encoder_destroy.argtypes = [ ctypes.c_void_p ]
library.opus_encoder_destroy.restype = None
library.opus_decoder_create.argtypes = [ ctypes.c_int, ctypes.c_int, ctypes.POINTER(ctypes.c_int) ]
library.opus_decoder_create.restype = ctypes.c_void_p
library.opus_decode_float.argtypes = [ ctypes.c_void_p, ctypes.c_char_p, ctypes.c_int, ctypes.POINTER(ctypes.c_float), ctypes.c_int, ctypes.c_int ]
library.opus_decode_float.restype = ctypes.c_int
library.opus_decoder_destroy.argtypes = [ ctypes.c_void_p ]
library.opus_decoder_destroy.restype = None
return library
+134
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import ctypes
from functools import lru_cache
from typing import Optional
from facefusion.common_helper import is_linux, is_macos, is_windows
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url_by_provider
from facefusion.filesystem import resolve_relative_path
from facefusion.types import LibrarySet
@lru_cache
def create_static_library_set() -> Optional[LibrarySet]:
if is_linux():
return\
{
'hashes':
{
'vpx':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libvpx.hash'),
'path': resolve_relative_path('../.libraries/libvpx.hash')
}
},
'sources':
{
'vpx':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'linux/libvpx.so'),
'path': resolve_relative_path('../.libraries/libvpx.so')
}
}
}
if is_macos():
return\
{
'hashes':
{
'vpx':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libvpx.hash'),
'path': resolve_relative_path('../.libraries/libvpx.hash')
}
},
'sources':
{
'vpx':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'macos/libvpx.dylib'),
'path': resolve_relative_path('../.libraries/libvpx.dylib')
}
}
}
if is_windows():
return\
{
'hashes':
{
'vpx':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/vpx.hash'),
'path': resolve_relative_path('../.libraries/vpx.hash')
}
},
'sources':
{
'vpx':
{
'url': resolve_download_url_by_provider('huggingface', 'libraries-4.0.0', 'windows/vpx.dll'),
'path': resolve_relative_path('../.libraries/vpx.dll')
}
}
}
return None
def pre_check() -> bool:
library_hash_set = create_static_library_set().get('hashes')
library_source_set = create_static_library_set().get('sources')
return conditional_download_hashes(library_hash_set) and conditional_download_sources(library_source_set)
@lru_cache
def create_static_library() -> Optional[ctypes.CDLL]:
library_path = create_static_library_set().get('sources').get('vpx').get('path')
if library_path:
if is_windows():
library = ctypes.CDLL(library_path, winmode = 0)
else:
library = ctypes.CDLL(library_path)
if library:
return init_ctypes(library)
return None
def init_ctypes(library : ctypes.CDLL) -> ctypes.CDLL:
library.vpx_codec_enc_config_default.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_uint ]
library.vpx_codec_enc_config_default.restype = ctypes.c_int
library.vpx_codec_enc_init_ver.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_void_p, ctypes.c_long, ctypes.c_int ]
library.vpx_codec_enc_init_ver.restype = ctypes.c_int
library.vpx_codec_encode.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_int64, ctypes.c_ulong, ctypes.c_long, ctypes.c_ulong ]
library.vpx_codec_encode.restype = ctypes.c_int
library.vpx_codec_get_cx_data.argtypes = [ ctypes.c_void_p, ctypes.POINTER(ctypes.c_void_p) ]
library.vpx_codec_get_cx_data.restype = ctypes.c_void_p
library.vpx_codec_enc_config_set.argtypes = [ ctypes.c_void_p, ctypes.c_void_p ]
library.vpx_codec_enc_config_set.restype = ctypes.c_int
library.vpx_codec_destroy.argtypes = [ ctypes.c_void_p ]
library.vpx_codec_destroy.restype = ctypes.c_int
library.vpx_img_wrap.argtypes = [ ctypes.c_void_p, ctypes.c_int, ctypes.c_uint, ctypes.c_uint, ctypes.c_uint, ctypes.c_void_p ]
library.vpx_img_wrap.restype = ctypes.c_void_p
library.vpx_codec_control_.argtypes = [ ctypes.c_void_p, ctypes.c_int, ctypes.c_int ]
library.vpx_codec_control_.restype = ctypes.c_int
library.vpx_codec_dec_init_ver.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_void_p, ctypes.c_long, ctypes.c_int ]
library.vpx_codec_dec_init_ver.restype = ctypes.c_int
library.vpx_codec_decode.argtypes = [ ctypes.c_void_p, ctypes.c_void_p, ctypes.c_uint, ctypes.c_void_p, ctypes.c_long ]
library.vpx_codec_decode.restype = ctypes.c_int
library.vpx_codec_get_frame.argtypes = [ ctypes.c_void_p, ctypes.POINTER(ctypes.c_void_p) ]
library.vpx_codec_get_frame.restype = ctypes.c_void_p
return library
+272
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@@ -0,0 +1,272 @@
from facefusion.types import Locals
LOCALS : Locals =\
{
'en':
{
'conda_not_activated': 'conda is not activated',
'python_not_supported': 'python version is not supported, upgrade to {version} or higher',
'curl_not_installed': 'curl is not installed',
'ffmpeg_not_installed': 'ffmpeg is not installed',
'creating_temp': 'creating temporary resources',
'extracting_frames': 'extracting frames with a resolution of {resolution} and {fps} frames per second',
'extracting_frames_succeeded': 'extracting frames succeeded',
'extracting_frames_failed': 'extracting frames failed',
'spawning_frames_succeeded': 'spawning frames succeeded',
'spawning_frames_failed': 'spawning frames failed',
'analysing': 'analysing',
'extracting': 'extracting',
'spawning': 'spawning',
'streaming': 'streaming',
'processing': 'processing',
'merging': 'merging',
'downloading': 'downloading',
'temp_frames_not_found': 'temporary frames not found',
'copying_image': 'copying image with a resolution of {resolution}',
'copying_image_succeeded': 'copying image succeeded',
'copying_image_failed': 'copying image failed',
'finalizing_image': 'finalizing image with a resolution of {resolution}',
'finalizing_image_succeeded': 'finalizing image succeeded',
'finalizing_image_skipped': 'finalizing image skipped',
'merging_video': 'merging video with a resolution of {resolution} and {fps} frames per second',
'merging_video_succeeded': 'merging video succeeded',
'merging_video_failed': 'merging video failed',
'skipping_audio': 'skipping audio',
'replacing_audio_succeeded': 'replacing audio succeeded',
'replacing_audio_skipped': 'replacing audio skipped',
'restoring_audio_succeeded': 'restoring audio succeeded',
'restoring_audio_skipped': 'restoring audio skipped',
'clearing_temp': 'clearing temporary resources',
'processing_stopped': 'processing stopped',
'processing_image_succeeded': 'processing to image succeeded in {seconds} seconds',
'processing_image_failed': 'processing to image failed',
'processing_video_succeeded': 'processing to video succeeded in {seconds} seconds',
'processing_video_failed': 'processing to video failed',
'choose_image_source': 'choose an image for the source',
'choose_audio_source': 'choose an audio for the source',
'choose_video_target': 'choose a video for the target',
'choose_image_or_video_target': 'choose an image or video for the target',
'specify_image_or_video_output': 'specify the output image or video within a directory',
'match_target_and_output_extension': 'match the target and output extension',
'no_source_face_detected': 'no source face detected',
'processor_not_loaded': 'processor {processor} could not be loaded',
'processor_not_implemented': 'processor {processor} not implemented correctly',
'stream_not_loaded': 'stream {stream_mode} could not be loaded',
'stream_not_supported': 'stream not supported',
'api_started': 'started API on {host}:{port}',
'job_created': 'job {job_id} created',
'job_not_created': 'job {job_id} not created',
'job_submitted': 'job {job_id} submitted',
'job_not_submitted': 'job {job_id} not submitted',
'job_all_submitted': 'jobs submitted',
'job_all_not_submitted': 'jobs not submitted',
'job_deleted': 'job {job_id} deleted',
'job_not_deleted': 'job {job_id} not deleted',
'job_all_deleted': 'jobs deleted',
'job_all_not_deleted': 'jobs not deleted',
'job_step_added': 'step added to job {job_id}',
'job_step_not_added': 'step not added to job {job_id}',
'job_remix_step_added': 'step {step_index} remixed from job {job_id}',
'job_remix_step_not_added': 'step {step_index} not remixed from job {job_id}',
'job_step_inserted': 'step {step_index} inserted to job {job_id}',
'job_step_not_inserted': 'step {step_index} not inserted to job {job_id}',
'job_step_removed': 'step {step_index} removed from job {job_id}',
'job_step_not_removed': 'step {step_index} not removed from job {job_id}',
'running_job': 'running queued job {job_id}',
'running_jobs': 'running all queued jobs',
'retrying_job': 'retrying failed job {job_id}',
'retrying_jobs': 'retrying all failed jobs',
'processing_job_succeeded': 'processing of job {job_id} succeeded',
'processing_jobs_succeeded': 'processing of all jobs succeeded',
'processing_job_failed': 'processing of job {job_id} failed',
'processing_jobs_failed': 'processing of all jobs failed',
'processing_step': 'processing step {step_current} of {step_total}',
'validating_hash_succeeded': 'validating hash for {hash_file_name} succeeded',
'validating_hash_failed': 'validating hash for {hash_file_name} failed',
'validating_source_succeeded': 'validating source for {source_file_name} succeeded',
'validating_source_failed': 'validating source for {source_file_name} failed',
'deleting_corrupt_source': 'deleting corrupt source for {source_file_name}',
'loading_model_succeeded': 'loading model {model_name} succeeded in {seconds} seconds',
'loading_model_failed': 'loading model {model_name} failed',
'time_ago_now': 'just now',
'time_ago_minutes': '{minutes} minutes ago',
'time_ago_hours': '{hours} hours and {minutes} minutes ago',
'time_ago_days': '{days} days, {hours} hours and {minutes} minutes ago',
'point': '.',
'comma': ',',
'colon': ':',
'question_mark': '?',
'exclamation_mark': '!',
'help':
{
'install_dependency': 'choose the variant of {dependency} to install',
'skip_conda': 'skip the conda environment check',
'workflow': 'choose the workflow',
'config_path': 'choose the config file to override defaults',
'temp_path': 'specify the directory for the temporary resources',
'jobs_path': 'specify the directory to store jobs',
'source_paths': 'choose the image or audio paths',
'target_path': 'choose the image or video path',
'output_path': 'specify the image or video within a directory',
'source_pattern': 'choose the image or audio pattern',
'target_pattern': 'choose the image or video pattern',
'output_pattern': 'specify the image or video pattern',
'face_detector_model': 'choose the model responsible for detecting the faces',
'face_detector_size': 'specify the frame size provided to the face detector',
'face_detector_margin': 'apply top, right, bottom and left margin to the frame',
'face_detector_angles': 'specify the angles to rotate the frame before detecting faces',
'face_detector_score': 'filter the detected faces based on the confidence score',
'face_landmarker_model': 'choose the model responsible for detecting the face landmarks',
'face_landmarker_score': 'filter the detected face landmarks based on the confidence score',
'face_selector_mode': 'use reference based tracking or simple matching',
'face_selector_order': 'specify the order of the detected faces',
'face_selector_age_start': 'filter the detected faces based on the starting age',
'face_selector_age_end': 'filter the detected faces based on the ending age',
'face_selector_gender': 'filter the detected faces based on their gender',
'face_selector_race': 'filter the detected faces based on their race',
'reference_face_position': 'specify the position used to create the reference face',
'reference_face_distance': 'specify the similarity between the reference face and target face',
'reference_frame_number': 'specify the frame used to create the reference face',
'face_occluder_model': 'choose the model responsible for the occlusion mask',
'face_parser_model': 'choose the model responsible for the region mask',
'face_mask_types': 'mix and match different face mask types (choices: {choices})',
'face_mask_areas': 'choose the items used for the area mask (choices: {choices})',
'face_mask_regions': 'choose the items used for the region mask (choices: {choices})',
'face_mask_blur': 'specify the degree of blur applied to the box mask',
'face_mask_padding': 'apply top, right, bottom and left padding to the box mask',
'voice_extractor_model': 'choose the model responsible for extracting the voices',
'trim_frame_start': 'specify the starting frame of the target video',
'trim_frame_end': 'specify the ending frame of the target video',
'temp_frame_format': 'specify the temporary resources format',
'output_image_quality': 'specify the image quality which translates to the image compression',
'output_image_scale': 'specify the image scale based on the target image',
'output_audio_encoder': 'specify the encoder used for the audio',
'output_audio_quality': 'specify the audio quality which translates to the audio compression',
'output_audio_volume': 'specify the audio volume based on the target video',
'output_video_encoder': 'specify the encoder used for the video',
'output_video_preset': 'balance fast video processing and video file size',
'output_video_quality': 'specify the video quality which translates to the video compression',
'output_video_scale': 'specify the video scale based on the target video',
'output_video_fps': 'specify the video fps based on the target video',
'processors': 'load a single or multiple processors (choices: {choices}, ...)',
'background-remover-model': 'choose the model responsible for removing the background',
'background-remover-color': 'apply red, green blue and alpha values of the background',
'download_providers': 'download using different providers (choices: {choices}, ...)',
'download_scope': 'specify the download scope',
'benchmark_mode': 'choose the benchmark mode',
'benchmark_resolutions': 'choose the resolutions for the benchmarks (choices: {choices}, ...)',
'benchmark_cycle_count': 'specify the amount of cycles per benchmark',
'api_host': 'specify the API host',
'api_port': 'specify the API port',
'execution_device_ids': 'specify the devices used for processing',
'execution_providers': 'inference using different providers (choices: {choices}, ...)',
'execution_thread_count': 'specify the amount of parallel threads while processing',
'video_memory_strategy': 'balance fast processing and low VRAM usage',
'log_level': 'adjust the message severity displayed in the terminal',
'halt_on_error': 'halt the program once an error occurred',
'run': 'run the program',
'batch_run': 'run the program in batch mode',
'force_download': 'force automate downloads and exit',
'benchmark': 'benchmark the program',
'api': 'start the API server',
'job_id': 'specify the job id',
'job_status': 'specify the job status',
'step_index': 'specify the step index',
'job_list': 'list jobs by status',
'job_create': 'create a drafted job',
'job_submit': 'submit a drafted job to become a queued job',
'job_submit_all': 'submit all drafted jobs to become a queued jobs',
'job_delete': 'delete a drafted, queued, failed or completed job',
'job_delete_all': 'delete all drafted, queued, failed and completed jobs',
'job_add_step': 'add a step to a drafted job',
'job_remix_step': 'remix a previous step from a drafted job',
'job_insert_step': 'insert a step to a drafted job',
'job_remove_step': 'remove a step from a drafted job',
'job_run': 'run a queued job',
'job_run_all': 'run all queued jobs',
'job_retry': 'retry a failed job',
'job_retry_all': 'retry all failed jobs'
},
'about':
{
'fund': 'fund training server',
'subscribe': 'become a member',
'join': 'join our community'
},
'uis':
{
'apply_button': 'APPLY',
'benchmark_mode_dropdown': 'BENCHMARK MODE',
'benchmark_cycle_count_slider': 'BENCHMARK CYCLE COUNT',
'benchmark_resolutions_checkbox_group': 'BENCHMARK RESOLUTIONS',
'clear_button': 'CLEAR',
'common_options_checkbox_group': 'OPTIONS',
'download_providers_checkbox_group': 'DOWNLOAD PROVIDERS',
'execution_providers_checkbox_group': 'EXECUTION PROVIDERS',
'execution_thread_count_slider': 'EXECUTION THREAD COUNT',
'face_detector_angles_checkbox_group': 'FACE DETECTOR ANGLES',
'face_detector_model_dropdown': 'FACE DETECTOR MODEL',
'face_detector_margin_slider': 'FACE DETECTOR MARGIN',
'face_detector_score_slider': 'FACE DETECTOR SCORE',
'face_detector_size_dropdown': 'FACE DETECTOR SIZE',
'face_landmarker_model_dropdown': 'FACE LANDMARKER MODEL',
'face_landmarker_score_slider': 'FACE LANDMARKER SCORE',
'face_mask_blur_slider': 'FACE MASK BLUR',
'face_mask_padding_bottom_slider': 'FACE MASK PADDING BOTTOM',
'face_mask_padding_left_slider': 'FACE MASK PADDING LEFT',
'face_mask_padding_right_slider': 'FACE MASK PADDING RIGHT',
'face_mask_padding_top_slider': 'FACE MASK PADDING TOP',
'face_mask_areas_checkbox_group': 'FACE MASK AREAS',
'face_mask_regions_checkbox_group': 'FACE MASK REGIONS',
'face_mask_types_checkbox_group': 'FACE MASK TYPES',
'face_selector_age_range_slider': 'FACE SELECTOR AGE',
'face_selector_gender_dropdown': 'FACE SELECTOR GENDER',
'face_selector_mode_dropdown': 'FACE SELECTOR MODE',
'face_selector_order_dropdown': 'FACE SELECTOR ORDER',
'face_selector_race_dropdown': 'FACE SELECTOR RACE',
'face_occluder_model_dropdown': 'FACE OCCLUDER MODEL',
'face_parser_model_dropdown': 'FACE PARSER MODEL',
'voice_extractor_model_dropdown': 'VOICE EXTRACTOR MODEL',
'job_list_status_checkbox_group': 'JOB STATUS',
'job_manager_job_action_dropdown': 'JOB_ACTION',
'job_manager_job_id_dropdown': 'JOB ID',
'job_manager_step_index_dropdown': 'STEP INDEX',
'job_runner_job_action_dropdown': 'JOB ACTION',
'job_runner_job_id_dropdown': 'JOB ID',
'log_level_dropdown': 'LOG LEVEL',
'output_audio_encoder_dropdown': 'OUTPUT AUDIO ENCODER',
'output_audio_quality_slider': 'OUTPUT AUDIO QUALITY',
'output_audio_volume_slider': 'OUTPUT AUDIO VOLUME',
'output_image_or_video': 'OUTPUT',
'output_image_quality_slider': 'OUTPUT IMAGE QUALITY',
'output_image_scale_slider': 'OUTPUT IMAGE SCALE',
'output_path_textbox': 'OUTPUT PATH',
'output_video_encoder_dropdown': 'OUTPUT VIDEO ENCODER',
'output_video_fps_slider': 'OUTPUT VIDEO FPS',
'output_video_preset_dropdown': 'OUTPUT VIDEO PRESET',
'output_video_quality_slider': 'OUTPUT VIDEO QUALITY',
'output_video_scale_slider': 'OUTPUT VIDEO SCALE',
'preview_frame_slider': 'PREVIEW FRAME',
'preview_image': 'PREVIEW',
'preview_mode_dropdown': 'PREVIEW MODE',
'preview_resolution_dropdown': 'PREVIEW RESOLUTION',
'processors_checkbox_group': 'PROCESSORS',
'reference_face_distance_slider': 'REFERENCE FACE DISTANCE',
'reference_face_gallery': 'REFERENCE FACE',
'refresh_button': 'REFRESH',
'source_file': 'SOURCE',
'start_button': 'START',
'stop_button': 'STOP',
'target_file': 'TARGET',
'temp_frame_format_dropdown': 'TEMP FRAME FORMAT',
'terminal_textbox': 'TERMINAL',
'trim_frame_slider': 'TRIM FRAME',
'video_memory_strategy_dropdown': 'VIDEO MEMORY STRATEGY',
'webcam_fps_slider': 'WEBCAM FPS',
'webcam_image': 'WEBCAM',
'webcam_device_id_dropdown': 'WEBCAM DEVICE ID',
'webcam_mode_radio': 'WEBCAM MODE',
'webcam_resolution_dropdown': 'WEBCAM RESOLUTION'
}
}
}
+17
View File
@@ -0,0 +1,17 @@
from typing import Optional, Tuple
def restrict_trim_frame(frame_total : int, trim_frame_start : Optional[int], trim_frame_end : Optional[int]) -> Tuple[int, int]:
if isinstance(trim_frame_start, int):
trim_frame_start = max(0, min(trim_frame_start, frame_total))
if isinstance(trim_frame_end, int):
trim_frame_end = max(0, min(trim_frame_end, frame_total))
if isinstance(trim_frame_start, int) and isinstance(trim_frame_end, int):
return trim_frame_start, trim_frame_end
if isinstance(trim_frame_start, int):
return trim_frame_start, frame_total
if isinstance(trim_frame_end, int):
return 0, trim_frame_end
return 0, frame_total
-21
View File
@@ -1,21 +0,0 @@
from facefusion.common_helper import is_macos, is_windows
if is_windows():
import ctypes
else:
import resource
def limit_system_memory(system_memory_limit : int = 1) -> bool:
if is_macos():
system_memory_limit = system_memory_limit * (1024 ** 6)
else:
system_memory_limit = system_memory_limit * (1024 ** 3)
try:
if is_windows():
ctypes.windll.kernel32.SetProcessWorkingSetSize(-1, ctypes.c_size_t(system_memory_limit), ctypes.c_size_t(system_memory_limit)) #type:ignore[attr-defined]
else:
resource.setrlimit(resource.RLIMIT_DATA, (system_memory_limit, system_memory_limit))
return True
except Exception:
return False
+2 -4
View File
@@ -4,7 +4,7 @@ METADATA =\
{
'name': 'FaceFusion',
'description': 'Industry leading face manipulation platform',
'version': '3.3.1',
'version': 'v4',
'license': 'OpenRAIL-AS',
'author': 'Henry Ruhs',
'url': 'https://facefusion.io'
@@ -12,6 +12,4 @@ METADATA =\
def get(key : str) -> Optional[str]:
if key in METADATA:
return METADATA.get(key)
return None
return METADATA.get(key)
+1 -1
View File
@@ -5,7 +5,7 @@ import onnx
from facefusion.types import ModelInitializer
@lru_cache(maxsize = None)
@lru_cache()
def get_static_model_initializer(model_path : str) -> ModelInitializer:
model = onnx.load(model_path)
return onnx.numpy_helper.to_array(model.graph.initializer[-1])
+22 -10
View File
@@ -1,17 +1,29 @@
from typing import List, Optional
from facefusion.types import Fps, Padding
from facefusion.types import Color, Fps, Padding
def normalize_padding(padding : Optional[List[int]]) -> Optional[Padding]:
if padding and len(padding) == 1:
return tuple([ padding[0] ] * 4) #type:ignore[return-value]
if padding and len(padding) == 2:
return tuple([ padding[0], padding[1], padding[0], padding[1] ]) #type:ignore[return-value]
if padding and len(padding) == 3:
return tuple([ padding[0], padding[1], padding[2], padding[1] ]) #type:ignore[return-value]
if padding and len(padding) == 4:
return tuple(padding) #type:ignore[return-value]
def normalize_color(channels : Optional[List[int]]) -> Optional[Color]:
if channels and len(channels) == 1:
return tuple([ channels[0], channels[0], channels[0], 255 ]) #type:ignore[return-value]
if channels and len(channels) == 2:
return tuple([ channels[0], channels[1], channels[0], 255 ]) #type:ignore[return-value]
if channels and len(channels) == 3:
return tuple([ channels[0], channels[1], channels[2], 255 ]) #type:ignore[return-value]
if channels and len(channels) == 4:
return tuple(channels) #type:ignore[return-value]
return None
def normalize_space(spaces : Optional[List[int]]) -> Optional[Padding]:
if spaces and len(spaces) == 1:
return tuple([spaces[0]] * 4) #type:ignore[return-value]
if spaces and len(spaces) == 2:
return tuple([spaces[0], spaces[1], spaces[0], spaces[1]]) #type:ignore[return-value]
if spaces and len(spaces) == 3:
return tuple([spaces[0], spaces[1], spaces[2], spaces[1]]) #type:ignore[return-value]
if spaces and len(spaces) == 4:
return tuple(spaces) #type:ignore[return-value]
return None
+1 -9
View File
@@ -1,6 +1,4 @@
from typing import Generator, List
from facefusion.types import ProcessState, QueuePayload
from facefusion.types import ProcessState
PROCESS_STATE : ProcessState = 'pending'
@@ -45,9 +43,3 @@ def stop() -> None:
def end() -> None:
set_process_state('pending')
def manage(queue_payloads : List[QueuePayload]) -> Generator[QueuePayload, None, None]:
for query_payload in queue_payloads:
if is_processing():
yield query_payload
+6 -61
View File
@@ -1,15 +1,10 @@
import importlib
import os
from concurrent.futures import ThreadPoolExecutor, as_completed
from queue import Queue
from types import ModuleType
from typing import Any, List
from tqdm import tqdm
from facefusion import logger, state_manager, wording
from facefusion import logger, translator
from facefusion.exit_helper import hard_exit
from facefusion.types import ProcessFrames, QueuePayload
PROCESSORS_METHODS =\
[
@@ -20,26 +15,22 @@ PROCESSORS_METHODS =\
'pre_check',
'pre_process',
'post_process',
'get_reference_frame',
'process_frame',
'process_frames',
'process_image',
'process_video'
'process_frame'
]
def load_processor_module(processor : str) -> Any:
try:
processor_module = importlib.import_module('facefusion.processors.modules.' + processor)
processor_module = importlib.import_module('facefusion.processors.modules.' + processor + '.core')
for method_name in PROCESSORS_METHODS:
if not hasattr(processor_module, method_name):
raise NotImplementedError
except ModuleNotFoundError as exception:
logger.error(wording.get('processor_not_loaded').format(processor = processor), __name__)
logger.error(translator.get('processor_not_loaded').format(processor = processor), __name__)
logger.debug(exception.msg, __name__)
hard_exit(1)
except NotImplementedError:
logger.error(wording.get('processor_not_implemented').format(processor = processor), __name__)
logger.error(translator.get('processor_not_implemented').format(processor = processor), __name__)
hard_exit(1)
return processor_module
@@ -51,49 +42,3 @@ def get_processors_modules(processors : List[str]) -> List[ModuleType]:
processor_module = load_processor_module(processor)
processor_modules.append(processor_module)
return processor_modules
def multi_process_frames(source_paths : List[str], temp_frame_paths : List[str], process_frames : ProcessFrames) -> None:
queue_payloads = create_queue_payloads(temp_frame_paths)
with tqdm(total = len(queue_payloads), desc = wording.get('processing'), unit = 'frame', ascii = ' =', disable = state_manager.get_item('log_level') in [ 'warn', 'error' ]) as progress:
progress.set_postfix(execution_providers = state_manager.get_item('execution_providers'))
with ThreadPoolExecutor(max_workers = state_manager.get_item('execution_thread_count')) as executor:
futures = []
queue : Queue[QueuePayload] = create_queue(queue_payloads)
queue_per_future = max(len(queue_payloads) // state_manager.get_item('execution_thread_count') * state_manager.get_item('execution_queue_count'), 1)
while not queue.empty():
future = executor.submit(process_frames, source_paths, pick_queue(queue, queue_per_future), progress.update)
futures.append(future)
for future_done in as_completed(futures):
future_done.result()
def create_queue(queue_payloads : List[QueuePayload]) -> Queue[QueuePayload]:
queue : Queue[QueuePayload] = Queue()
for queue_payload in queue_payloads:
queue.put(queue_payload)
return queue
def pick_queue(queue : Queue[QueuePayload], queue_per_future : int) -> List[QueuePayload]:
queues = []
for _ in range(queue_per_future):
if not queue.empty():
queues.append(queue.get())
return queues
def create_queue_payloads(temp_frame_paths : List[str]) -> List[QueuePayload]:
queue_payloads = []
temp_frame_paths = sorted(temp_frame_paths, key = os.path.basename)
for frame_number, frame_path in enumerate(temp_frame_paths):
frame_payload : QueuePayload =\
{
'frame_number': frame_number,
'frame_path': frame_path
}
queue_payloads.append(frame_payload)
return queue_payloads
+3 -3
View File
@@ -63,15 +63,15 @@ def limit_expression(expression : LivePortraitExpression) -> LivePortraitExpress
return numpy.clip(expression, EXPRESSION_MIN, EXPRESSION_MAX)
def limit_euler_angles(target_pitch : LivePortraitPitch, target_yaw : LivePortraitYaw, target_roll : LivePortraitRoll, output_pitch : LivePortraitPitch, output_yaw : LivePortraitYaw, output_roll : LivePortraitRoll) -> Tuple[LivePortraitPitch, LivePortraitYaw, LivePortraitRoll]:
pitch_min, pitch_max, yaw_min, yaw_max, roll_min, roll_max = calc_euler_limits(target_pitch, target_yaw, target_roll)
def limit_angle(target_pitch : LivePortraitPitch, target_yaw : LivePortraitYaw, target_roll : LivePortraitRoll, output_pitch : LivePortraitPitch, output_yaw : LivePortraitYaw, output_roll : LivePortraitRoll) -> Tuple[LivePortraitPitch, LivePortraitYaw, LivePortraitRoll]:
pitch_min, pitch_max, yaw_min, yaw_max, roll_min, roll_max = calculate_euler_limits(target_pitch, target_yaw, target_roll)
output_pitch = numpy.clip(output_pitch, pitch_min, pitch_max)
output_yaw = numpy.clip(output_yaw, yaw_min, yaw_max)
output_roll = numpy.clip(output_roll, roll_min, roll_max)
return output_pitch, output_yaw, output_roll
def calc_euler_limits(pitch : LivePortraitPitch, yaw : LivePortraitYaw, roll : LivePortraitRoll) -> Tuple[float, float, float, float, float, float]:
def calculate_euler_limits(pitch : LivePortraitPitch, yaw : LivePortraitYaw, roll : LivePortraitRoll) -> Tuple[float, float, float, float, float, float]:
pitch_min = -30.0
pitch_max = 30.0
yaw_min = -60.0
@@ -0,0 +1,8 @@
from typing import List, Sequence
from facefusion.common_helper import create_int_range
from facefusion.processors.modules.age_modifier.types import AgeModifierModel
age_modifier_models : List[AgeModifierModel] = [ 'styleganex_age' ]
age_modifier_direction_range : Sequence[int] = create_int_range(-100, 100, 1)
@@ -1,38 +1,42 @@
from argparse import ArgumentParser
from functools import lru_cache
from typing import List
import cv2
import numpy
import facefusion.args_store
import facefusion.choices
import facefusion.jobs.job_manager
import facefusion.jobs.job_store
import facefusion.processors.core as processors
from facefusion import config, content_analyser, face_classifier, face_detector, face_landmarker, face_masker, face_recognizer, inference_manager, logger, process_manager, state_manager, video_manager, wording
from facefusion.common_helper import create_int_metavar
from facefusion import config, content_analyser, face_classifier, face_detector, face_landmarker, face_masker, face_recognizer, inference_manager, logger, state_manager, translator, video_manager
from facefusion.common_helper import create_int_metavar, is_macos
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url
from facefusion.execution import has_execution_provider
from facefusion.face_analyser import get_many_faces, get_one_face
from facefusion.face_analyser import scale_face
from facefusion.face_helper import merge_matrix, paste_back, scale_face_landmark_5, warp_face_by_face_landmark_5
from facefusion.face_masker import create_box_mask, create_occlusion_mask
from facefusion.face_selector import find_similar_faces, sort_and_filter_faces
from facefusion.face_store import get_reference_faces
from facefusion.filesystem import in_directory, is_image, is_video, resolve_relative_path, same_file_extension
from facefusion.processors import choices as processors_choices
from facefusion.processors.types import AgeModifierDirection, AgeModifierInputs
from facefusion.face_selector import select_faces
from facefusion.filesystem import in_directory, is_image, is_video, resolve_relative_path
from facefusion.processors.modules.age_modifier import choices as age_modifier_choices
from facefusion.processors.modules.age_modifier.types import AgeModifierDirection, AgeModifierInputs
from facefusion.processors.types import ProcessorOutputs
from facefusion.program_helper import find_argument_group
from facefusion.thread_helper import thread_semaphore
from facefusion.types import ApplyStateItem, Args, DownloadScope, Face, InferencePool, ModelOptions, ModelSet, ProcessMode, QueuePayload, UpdateProgress, VisionFrame
from facefusion.vision import match_frame_color, read_image, read_static_image, write_image
from facefusion.types import ApplyStateItem, Args, DownloadScope, Face, InferencePool, ModelOptions, ModelSet, ProcessMode, VisionFrame
from facefusion.vision import match_frame_color, read_static_image, read_static_video_frame
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'styleganex_age':
{
'__metadata__':
{
'vendor': 'williamyang1991',
'license': 'S-Lab-1.0',
'year': 2023
},
'hashes':
{
'age_modifier':
@@ -83,9 +87,9 @@ def get_model_options() -> ModelOptions:
def register_args(program : ArgumentParser) -> None:
group_processors = find_argument_group(program, 'processors')
if group_processors:
group_processors.add_argument('--age-modifier-model', help = wording.get('help.age_modifier_model'), default = config.get_str_value('processors', 'age_modifier_model', 'styleganex_age'), choices = processors_choices.age_modifier_models)
group_processors.add_argument('--age-modifier-direction', help = wording.get('help.age_modifier_direction'), type = int, default = config.get_int_value('processors', 'age_modifier_direction', '0'), choices = processors_choices.age_modifier_direction_range, metavar = create_int_metavar(processors_choices.age_modifier_direction_range))
facefusion.jobs.job_store.register_step_keys([ 'age_modifier_model', 'age_modifier_direction' ])
group_processors.add_argument('--age-modifier-model', help = translator.get('help.model', __package__), default = config.get_str_value('processors', 'age_modifier_model', 'styleganex_age'), choices = age_modifier_choices.age_modifier_models)
group_processors.add_argument('--age-modifier-direction', help = translator.get('help.direction', __package__), type = int, default = config.get_int_value('processors', 'age_modifier_direction', '0'), choices = age_modifier_choices.age_modifier_direction_range, metavar = create_int_metavar(age_modifier_choices.age_modifier_direction_range))
facefusion.args_store.register_args([ 'age_modifier_model', 'age_modifier_direction' ], scopes = [ 'api', 'cli' ])
def apply_args(args : Args, apply_state_item : ApplyStateItem) -> None:
@@ -102,19 +106,17 @@ def pre_check() -> bool:
def pre_process(mode : ProcessMode) -> bool:
if mode in [ 'output', 'preview' ] and not is_image(state_manager.get_item('target_path')) and not is_video(state_manager.get_item('target_path')):
logger.error(wording.get('choose_image_or_video_target') + wording.get('exclamation_mark'), __name__)
logger.error(translator.get('choose_image_or_video_target') + translator.get('exclamation_mark'), __name__)
return False
if mode == 'output' and not in_directory(state_manager.get_item('output_path')):
logger.error(wording.get('specify_image_or_video_output') + wording.get('exclamation_mark'), __name__)
return False
if mode == 'output' and not same_file_extension(state_manager.get_item('target_path'), state_manager.get_item('output_path')):
logger.error(wording.get('match_target_and_output_extension') + wording.get('exclamation_mark'), __name__)
logger.error(translator.get('specify_image_or_video_output') + translator.get('exclamation_mark'), __name__)
return False
return True
def post_process() -> None:
read_static_image.cache_clear()
read_static_video_frame.cache_clear()
video_manager.clear_video_pool()
if state_manager.get_item('video_memory_strategy') in [ 'strict', 'moderate' ]:
clear_inference_pool()
@@ -143,8 +145,8 @@ def modify_age(target_face : Face, temp_vision_frame : VisionFrame) -> VisionFra
if 'occlusion' in state_manager.get_item('face_mask_types'):
occlusion_mask = create_occlusion_mask(crop_vision_frame)
combined_matrix = merge_matrix([ extend_affine_matrix, cv2.invertAffineTransform(affine_matrix) ])
occlusion_mask = cv2.warpAffine(occlusion_mask, combined_matrix, model_sizes.get('target_with_background'))
temp_matrix = merge_matrix([ extend_affine_matrix, cv2.invertAffineTransform(affine_matrix) ])
occlusion_mask = cv2.warpAffine(occlusion_mask, temp_matrix, model_sizes.get('target_with_background'))
crop_masks.append(occlusion_mask)
crop_vision_frame = prepare_vision_frame(crop_vision_frame)
@@ -164,7 +166,7 @@ def forward(crop_vision_frame : VisionFrame, extend_vision_frame : VisionFrame,
age_modifier = get_inference_pool().get('age_modifier')
age_modifier_inputs = {}
if has_execution_provider('coreml'):
if is_macos() and has_execution_provider('coreml'):
age_modifier.set_providers([ facefusion.choices.execution_provider_set.get('cpu') ])
for age_modifier_input in age_modifier.get_inputs():
@@ -199,56 +201,16 @@ def normalize_extend_frame(extend_vision_frame : VisionFrame) -> VisionFrame:
return extend_vision_frame
def get_reference_frame(source_face : Face, target_face : Face, temp_vision_frame : VisionFrame) -> VisionFrame:
return modify_age(target_face, temp_vision_frame)
def process_frame(inputs : AgeModifierInputs) -> VisionFrame:
reference_faces = inputs.get('reference_faces')
def process_frame(inputs : AgeModifierInputs) -> ProcessorOutputs:
reference_vision_frame = inputs.get('reference_vision_frame')
target_vision_frame = inputs.get('target_vision_frame')
many_faces = sort_and_filter_faces(get_many_faces([ target_vision_frame ]))
temp_vision_frame = inputs.get('temp_vision_frame')
temp_vision_mask = inputs.get('temp_vision_mask')
target_faces = select_faces(reference_vision_frame, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'many':
if many_faces:
for target_face in many_faces:
target_vision_frame = modify_age(target_face, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'one':
target_face = get_one_face(many_faces)
if target_face:
target_vision_frame = modify_age(target_face, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'reference':
similar_faces = find_similar_faces(many_faces, reference_faces, state_manager.get_item('reference_face_distance'))
if similar_faces:
for similar_face in similar_faces:
target_vision_frame = modify_age(similar_face, target_vision_frame)
return target_vision_frame
if target_faces:
for target_face in target_faces:
target_face = scale_face(target_face, target_vision_frame, temp_vision_frame)
temp_vision_frame = modify_age(target_face, temp_vision_frame)
def process_frames(source_path : List[str], queue_payloads : List[QueuePayload], update_progress : UpdateProgress) -> None:
reference_faces = get_reference_faces() if 'reference' in state_manager.get_item('face_selector_mode') else None
for queue_payload in process_manager.manage(queue_payloads):
target_vision_path = queue_payload['frame_path']
target_vision_frame = read_image(target_vision_path)
output_vision_frame = process_frame(
{
'reference_faces': reference_faces,
'target_vision_frame': target_vision_frame
})
write_image(target_vision_path, output_vision_frame)
update_progress(1)
def process_image(source_path : str, target_path : str, output_path : str) -> None:
reference_faces = get_reference_faces() if 'reference' in state_manager.get_item('face_selector_mode') else None
target_vision_frame = read_static_image(target_path)
output_vision_frame = process_frame(
{
'reference_faces': reference_faces,
'target_vision_frame': target_vision_frame
})
write_image(output_path, output_vision_frame)
def process_video(source_paths : List[str], temp_frame_paths : List[str]) -> None:
processors.multi_process_frames(None, temp_frame_paths, process_frames)
return temp_vision_frame, temp_vision_mask
@@ -0,0 +1,18 @@
from facefusion.types import Locals
LOCALS : Locals =\
{
'en':
{
'help':
{
'model': 'choose the model responsible for aging the face',
'direction': 'specify the direction in which the age should be modified'
},
'uis':
{
'direction_slider': 'AGE MODIFIER DIRECTION',
'model_dropdown': 'AGE MODIFIER MODEL'
}
}
}
@@ -0,0 +1,17 @@
from typing import Any, Literal, TypeAlias, TypedDict
from numpy.typing import NDArray
from facefusion.types import Mask, VisionFrame
AgeModifierInputs = TypedDict('AgeModifierInputs',
{
'reference_vision_frame' : VisionFrame,
'target_vision_frame' : VisionFrame,
'temp_vision_frame' : VisionFrame,
'temp_vision_mask' : Mask
})
AgeModifierModel = Literal['styleganex_age']
AgeModifierDirection : TypeAlias = NDArray[Any]
@@ -0,0 +1,8 @@
from typing import List, Sequence
from facefusion.common_helper import create_int_range
from facefusion.processors.modules.background_remover.types import BackgroundRemoverModel
background_remover_models : List[BackgroundRemoverModel] = [ 'ben_2', 'birefnet_general', 'birefnet_portrait', 'isnet_general', 'modnet', 'ormbg', 'rmbg_1.4', 'rmbg_2.0', 'silueta', 'u2net_cloth', 'u2net_general', 'u2net_human', 'u2netp' ]
background_remover_color_range : Sequence[int] = create_int_range(0, 255, 1)
@@ -0,0 +1,521 @@
from argparse import ArgumentParser
from functools import lru_cache, partial
from typing import List, Tuple
import cv2
import numpy
import facefusion.args_store
import facefusion.jobs.job_manager
from facefusion import config, content_analyser, inference_manager, logger, state_manager, translator, video_manager
from facefusion.common_helper import is_macos
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url
from facefusion.execution import has_execution_provider
from facefusion.filesystem import in_directory, is_image, is_video, resolve_relative_path
from facefusion.normalizer import normalize_color
from facefusion.processors.modules.background_remover import choices as background_remover_choices
from facefusion.processors.modules.background_remover.types import BackgroundRemoverInputs
from facefusion.processors.types import ProcessorOutputs
from facefusion.program_helper import find_argument_group
from facefusion.sanitizer import sanitize_int_range
from facefusion.thread_helper import thread_semaphore
from facefusion.types import ApplyStateItem, Args, DownloadScope, ExecutionProvider, InferencePool, Mask, ModelOptions, ModelSet, ProcessMode, VisionFrame
from facefusion.vision import read_static_image, read_static_video_frame
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'ben_2':
{
'__metadata__':
{
'vendor': 'PramaLLC',
'license': 'MIT',
'year': 2025
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'ben_2.hash'),
'path': resolve_relative_path('../.assets/models/ben_2.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'ben_2.onnx'),
'path': resolve_relative_path('../.assets/models/ben_2.onnx')
}
},
'size': (1024, 1024),
'mean': [ 0.0, 0.0, 0.0 ],
'standard_deviation': [ 1.0, 1.0, 1.0 ]
},
'birefnet_general':
{
'__metadata__':
{
'vendor': 'ZhengPeng7',
'license': 'MIT',
'year': 2024
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'birefnet_general.hash'),
'path': resolve_relative_path('../.assets/models/birefnet_general.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'birefnet_general.onnx'),
'path': resolve_relative_path('../.assets/models/birefnet_general.onnx')
}
},
'size': (1024, 1024),
'mean': [ 0.0, 0.0, 0.0 ],
'standard_deviation': [ 1.0, 1.0, 1.0 ]
},
'birefnet_portrait':
{
'__metadata__':
{
'vendor': 'ZhengPeng7',
'license': 'MIT',
'year': 2024
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'birefnet_portrait.hash'),
'path': resolve_relative_path('../.assets/models/birefnet_portrait.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'birefnet_portrait.onnx'),
'path': resolve_relative_path('../.assets/models/birefnet_portrait.onnx')
}
},
'size': (1024, 1024),
'mean': [ 0.0, 0.0, 0.0 ],
'standard_deviation': [ 1.0, 1.0, 1.0 ]
},
'isnet_general':
{
'__metadata__':
{
'vendor': 'xuebinqin',
'license': 'Apache-2.0',
'year': 2022
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'isnet_general.hash'),
'path': resolve_relative_path('../.assets/models/isnet_general.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'isnet_general.onnx'),
'path': resolve_relative_path('../.assets/models/isnet_general.onnx')
}
},
'size': (1024, 1024),
'mean': [ 0.5, 0.5, 0.5 ],
'standard_deviation': [ 1.0, 1.0, 1.0 ]
},
'modnet':
{
'__metadata__':
{
'vendor': 'ZHKKKe',
'license': 'Apache-2.0',
'year': 2020
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'modnet.hash'),
'path': resolve_relative_path('../.assets/models/modnet.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'modnet.onnx'),
'path': resolve_relative_path('../.assets/models/modnet.onnx')
}
},
'size': (512, 512),
'mean': [ 0.5, 0.5, 0.5 ],
'standard_deviation': [ 0.5, 0.5, 0.5 ]
},
'ormbg':
{
'__metadata__':
{
'vendor': 'schirrmacher',
'license': 'Apache-2.0',
'year': 2024
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'ormbg.hash'),
'path': resolve_relative_path('../.assets/models/ormbg.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'ormbg.onnx'),
'path': resolve_relative_path('../.assets/models/ormbg.onnx')
}
},
'size': (1024, 1024),
'mean': [ 0.0, 0.0, 0.0 ],
'standard_deviation': [ 1.0, 1.0, 1.0 ]
},
'rmbg_1.4':
{
'__metadata__':
{
'vendor': 'Bria',
'license': 'Non-Commercial',
'year': 2023
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'rmbg_1.4.hash'),
'path': resolve_relative_path('../.assets/models/rmbg_1.4.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'rmbg_1.4.onnx'),
'path': resolve_relative_path('../.assets/models/rmbg_1.4.onnx')
}
},
'size': (1024, 1024),
'mean': [ 0.5, 0.5, 0.5 ],
'standard_deviation': [ 1.0, 1.0, 1.0 ]
},
'rmbg_2.0':
{
'__metadata__':
{
'vendor': 'Bria',
'license': 'Non-Commercial',
'year': 2024
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'rmbg_2.0.hash'),
'path': resolve_relative_path('../.assets/models/rmbg_2.0.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'rmbg_2.0.onnx'),
'path': resolve_relative_path('../.assets/models/rmbg_2.0.onnx')
}
},
'size': (1024, 1024),
'mean': [ 0.485, 0.456, 0.406 ],
'standard_deviation': [ 0.229, 0.224, 0.225 ]
},
'silueta':
{
'__metadata__':
{
'vendor': 'Kikedao',
'license': 'Apache-2.0',
'year': 2022
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'silueta.hash'),
'path': resolve_relative_path('../.assets/models/silueta.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'silueta.onnx'),
'path': resolve_relative_path('../.assets/models/silueta.onnx')
}
},
'size': (320, 320),
'mean': [ 0.485, 0.456, 0.406 ],
'standard_deviation': [ 0.229, 0.224, 0.225 ]
},
'u2net_cloth':
{
'__metadata__':
{
'vendor': 'levindabhi',
'license': 'MIT',
'year': 2021
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'u2net_cloth.hash'),
'path': resolve_relative_path('../.assets/models/u2net_cloth.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'u2net_cloth.onnx'),
'path': resolve_relative_path('../.assets/models/u2net_cloth.onnx')
}
},
'size': (768, 768),
'mean': [ 0.485, 0.456, 0.406 ],
'standard_deviation': [ 0.229, 0.224, 0.225 ]
},
'u2net_general':
{
'__metadata__':
{
'vendor': 'xuebinqin',
'license': 'Apache-2.0',
'year': 2020
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'u2net_general.hash'),
'path': resolve_relative_path('../.assets/models/u2net_general.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'u2net_general.onnx'),
'path': resolve_relative_path('../.assets/models/u2net_general.onnx')
}
},
'size': (320, 320),
'mean': [ 0.485, 0.456, 0.406 ],
'standard_deviation': [ 0.229, 0.224, 0.225 ]
},
'u2net_human':
{
'__metadata__':
{
'vendor': 'xuebinqin',
'license': 'Apache-2.0',
'year': 2021
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'u2net_human.hash'),
'path': resolve_relative_path('../.assets/models/u2net_human.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'u2net_human.onnx'),
'path': resolve_relative_path('../.assets/models/u2net_human.onnx')
}
},
'size': (320, 320),
'mean': [ 0.485, 0.456, 0.406 ],
'standard_deviation': [ 0.229, 0.224, 0.225 ]
},
'u2netp':
{
'__metadata__':
{
'vendor': 'xuebinqin',
'license': 'Apache-2.0',
'year': 2021
},
'hashes':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'u2netp.hash'),
'path': resolve_relative_path('../.assets/models/u2netp.hash')
}
},
'sources':
{
'background_remover':
{
'url': resolve_download_url('models-3.5.0', 'u2netp.onnx'),
'path': resolve_relative_path('../.assets/models/u2netp.onnx')
}
},
'size': (320, 320),
'mean': [ 0.485, 0.456, 0.406 ],
'standard_deviation': [ 0.229, 0.224, 0.225 ]
}
}
def get_inference_pool() -> InferencePool:
model_names = [ state_manager.get_item('background_remover_model') ]
model_source_set = get_model_options().get('sources')
return inference_manager.get_inference_pool(__name__, model_names, model_source_set)
def clear_inference_pool() -> None:
model_names = [ state_manager.get_item('background_remover_model') ]
inference_manager.clear_inference_pool(__name__, model_names)
def resolve_execution_providers() -> List[ExecutionProvider]:
if is_macos() and has_execution_provider('coreml'):
return [ 'cpu' ]
return state_manager.get_item('execution_providers')
def get_model_options() -> ModelOptions:
model_name = state_manager.get_item('background_remover_model')
return create_static_model_set('full').get(model_name)
def register_args(program : ArgumentParser) -> None:
group_processors = find_argument_group(program, 'processors')
if group_processors:
group_processors.add_argument('--background-remover-model', help = translator.get('help.model', __package__), default = config.get_str_value('processors', 'background_remover_model', 'rmbg_2.0'), choices = background_remover_choices.background_remover_models)
group_processors.add_argument('--background-remover-color', help = translator.get('help.color', __package__), type = partial(sanitize_int_range, int_range = background_remover_choices.background_remover_color_range), default = config.get_int_list('processors', 'background_remover_color', '0 0 0 0'), nargs ='+')
facefusion.args_store.register_args([ 'background_remover_model', 'background_remover_color' ], scopes = [ 'api', 'cli' ])
def apply_args(args : Args, apply_state_item : ApplyStateItem) -> None:
apply_state_item('background_remover_model', args.get('background_remover_model'))
apply_state_item('background_remover_color', normalize_color(args.get('background_remover_color')))
def pre_check() -> bool:
model_hash_set = get_model_options().get('hashes')
model_source_set = get_model_options().get('sources')
return conditional_download_hashes(model_hash_set) and conditional_download_sources(model_source_set)
def pre_process(mode : ProcessMode) -> bool:
if mode in [ 'output', 'preview' ] and not is_image(state_manager.get_item('target_path')) and not is_video(state_manager.get_item('target_path')):
logger.error(translator.get('choose_image_or_video_target') + translator.get('exclamation_mark'), __name__)
return False
if mode == 'output' and not in_directory(state_manager.get_item('output_path')):
logger.error(translator.get('specify_image_or_video_output') + translator.get('exclamation_mark'), __name__)
return False
return True
def post_process() -> None:
read_static_image.cache_clear()
read_static_video_frame.cache_clear()
video_manager.clear_video_pool()
if state_manager.get_item('video_memory_strategy') in [ 'strict', 'moderate' ]:
clear_inference_pool()
if state_manager.get_item('video_memory_strategy') == 'strict':
content_analyser.clear_inference_pool()
def remove_background(temp_vision_frame : VisionFrame) -> Tuple[VisionFrame, Mask]:
temp_vision_mask = forward(prepare_temp_frame(temp_vision_frame))
temp_vision_mask = normalize_vision_mask(temp_vision_mask)
temp_vision_mask = cv2.resize(temp_vision_mask, temp_vision_frame.shape[:2][::-1])
temp_vision_frame = apply_background_color(temp_vision_frame, temp_vision_mask)
return temp_vision_frame, temp_vision_mask
def forward(temp_vision_frame : VisionFrame) -> VisionFrame:
background_remover = get_inference_pool().get('background_remover')
model_name = state_manager.get_item('background_remover_model')
with thread_semaphore():
remove_vision_frame = background_remover.run(None,
{
'input': temp_vision_frame
})[0]
if model_name == 'u2net_cloth':
remove_vision_frame = numpy.argmax(remove_vision_frame, axis = 1)
return remove_vision_frame
def prepare_temp_frame(temp_vision_frame : VisionFrame) -> VisionFrame:
model_size = get_model_options().get('size')
model_mean = get_model_options().get('mean')
model_standard_deviation = get_model_options().get('standard_deviation')
temp_vision_frame = cv2.resize(temp_vision_frame, model_size)
temp_vision_frame = temp_vision_frame[:, :, ::-1] / 255.0
temp_vision_frame = (temp_vision_frame - model_mean) / model_standard_deviation
temp_vision_frame = temp_vision_frame.transpose(2, 0, 1)
temp_vision_frame = numpy.expand_dims(temp_vision_frame, axis = 0).astype(numpy.float32)
return temp_vision_frame
def normalize_vision_mask(temp_vision_mask : Mask) -> Mask:
temp_vision_mask = numpy.squeeze(temp_vision_mask).clip(0, 1) * 255
temp_vision_mask = numpy.clip(temp_vision_mask, 0, 255).astype(numpy.uint8)
return temp_vision_mask
def apply_background_color(temp_vision_frame : VisionFrame, temp_vision_mask : Mask) -> VisionFrame:
background_remover_color = state_manager.get_item('background_remover_color')
temp_vision_mask = temp_vision_mask.astype(numpy.float32) / 255
temp_vision_mask = numpy.expand_dims(temp_vision_mask, axis = 2)
temp_vision_mask = (1 - temp_vision_mask) * background_remover_color[-1] / 255
color_frame = numpy.zeros_like(temp_vision_frame)
color_frame[:, :, 0] = background_remover_color[2]
color_frame[:, :, 1] = background_remover_color[1]
color_frame[:, :, 2] = background_remover_color[0]
temp_vision_frame = temp_vision_frame * (1 - temp_vision_mask) + color_frame * temp_vision_mask
temp_vision_frame = temp_vision_frame.astype(numpy.uint8)
return temp_vision_frame
def process_frame(inputs : BackgroundRemoverInputs) -> ProcessorOutputs:
temp_vision_frame = inputs.get('temp_vision_frame')
temp_vision_frame, temp_vision_mask = remove_background(temp_vision_frame)
temp_vision_mask = numpy.minimum.reduce([ temp_vision_mask, inputs.get('temp_vision_mask') ])
return temp_vision_frame, temp_vision_mask
@@ -0,0 +1,21 @@
from facefusion.types import Locals
LOCALS : Locals =\
{
'en':
{
'help':
{
'model': 'choose the model responsible for removing the background',
'color': 'apply red, green blue and alpha values to the background'
},
'uis':
{
'model_dropdown': 'BACKGROUND REMOVER MODEL',
'color_red_number': 'BACKGROUND COLOR RED',
'color_green_number': 'BACKGROUND COLOR GREEN',
'color_blue_number': 'BACKGROUND COLOR BLUE',
'color_alpha_number': 'BACKGROUND COLOR ALPHA'
}
}
}
@@ -0,0 +1,12 @@
from typing import Literal, TypedDict
from facefusion.types import Mask, VisionFrame
BackgroundRemoverInputs = TypedDict('BackgroundRemoverInputs',
{
'target_vision_frame' : VisionFrame,
'temp_vision_frame' : VisionFrame,
'temp_vision_mask' : Mask
})
BackgroundRemoverModel = Literal['ben_2', 'birefnet_general', 'birefnet_portrait', 'isnet_general', 'modnet', 'ormbg', 'rmbg_1.4', 'rmbg_2.0', 'silueta', 'u2net_cloth', 'u2net_general', 'u2net_human', 'u2netp']
@@ -1,10 +1,9 @@
from typing import List, Sequence
from facefusion.common_helper import create_float_range, create_int_range
from facefusion.common_helper import create_int_range
from facefusion.filesystem import get_file_name, resolve_file_paths, resolve_relative_path
from facefusion.processors.types import AgeModifierModel, DeepSwapperModel, ExpressionRestorerModel, FaceDebuggerItem, FaceEditorModel, FaceEnhancerModel, FaceSwapperModel, FaceSwapperSet, FrameColorizerModel, FrameEnhancerModel, LipSyncerModel
from facefusion.processors.modules.deep_swapper.types import DeepSwapperModel
age_modifier_models : List[AgeModifierModel] = [ 'styleganex_age' ]
deep_swapper_models : List[DeepSwapperModel] =\
[
'druuzil/adam_levine_320',
@@ -174,51 +173,4 @@ if custom_model_file_paths:
model_id = '/'.join([ 'custom', get_file_name(model_file_path) ])
deep_swapper_models.append(model_id)
expression_restorer_models : List[ExpressionRestorerModel] = [ 'live_portrait' ]
face_debugger_items : List[FaceDebuggerItem] = [ 'bounding-box', 'face-landmark-5', 'face-landmark-5/68', 'face-landmark-68', 'face-landmark-68/5', 'face-mask', 'face-detector-score', 'face-landmarker-score', 'age', 'gender', 'race' ]
face_editor_models : List[FaceEditorModel] = [ 'live_portrait' ]
face_enhancer_models : List[FaceEnhancerModel] = [ 'codeformer', 'gfpgan_1.2', 'gfpgan_1.3', 'gfpgan_1.4', 'gpen_bfr_256', 'gpen_bfr_512', 'gpen_bfr_1024', 'gpen_bfr_2048', 'restoreformer_plus_plus' ]
face_swapper_set : FaceSwapperSet =\
{
'blendswap_256': [ '256x256', '384x384', '512x512', '768x768', '1024x1024' ],
'ghost_1_256': [ '256x256', '512x512', '768x768', '1024x1024' ],
'ghost_2_256': [ '256x256', '512x512', '768x768', '1024x1024' ],
'ghost_3_256': [ '256x256', '512x512', '768x768', '1024x1024' ],
'hififace_unofficial_256': [ '256x256', '512x512', '768x768', '1024x1024' ],
'hyperswap_1a_256': [ '256x256', '512x512', '768x768', '1024x1024' ],
'hyperswap_1b_256': [ '256x256', '512x512', '768x768', '1024x1024' ],
'hyperswap_1c_256': [ '256x256', '512x512', '768x768', '1024x1024' ],
'inswapper_128': [ '128x128', '256x256', '384x384', '512x512', '768x768', '1024x1024' ],
'inswapper_128_fp16': [ '128x128', '256x256', '384x384', '512x512', '768x768', '1024x1024' ],
'simswap_256': [ '256x256', '512x512', '768x768', '1024x1024' ],
'simswap_unofficial_512': [ '512x512', '768x768', '1024x1024' ],
'uniface_256': [ '256x256', '512x512', '768x768', '1024x1024' ]
}
face_swapper_models : List[FaceSwapperModel] = list(face_swapper_set.keys())
frame_colorizer_models : List[FrameColorizerModel] = [ 'ddcolor', 'ddcolor_artistic', 'deoldify', 'deoldify_artistic', 'deoldify_stable' ]
frame_colorizer_sizes : List[str] = [ '192x192', '256x256', '384x384', '512x512' ]
frame_enhancer_models : List[FrameEnhancerModel] = [ 'clear_reality_x4', 'lsdir_x4', 'nomos8k_sc_x4', 'real_esrgan_x2', 'real_esrgan_x2_fp16', 'real_esrgan_x4', 'real_esrgan_x4_fp16', 'real_esrgan_x8', 'real_esrgan_x8_fp16', 'real_hatgan_x4', 'real_web_photo_x4', 'realistic_rescaler_x4', 'remacri_x4', 'siax_x4', 'span_kendata_x4', 'swin2_sr_x4', 'ultra_sharp_x4', 'ultra_sharp_2_x4' ]
lip_syncer_models : List[LipSyncerModel] = [ 'edtalk_256', 'wav2lip_96', 'wav2lip_gan_96' ]
age_modifier_direction_range : Sequence[int] = create_int_range(-100, 100, 1)
deep_swapper_morph_range : Sequence[int] = create_int_range(0, 100, 1)
expression_restorer_factor_range : Sequence[int] = create_int_range(0, 100, 1)
face_editor_eyebrow_direction_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_eye_gaze_horizontal_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_eye_gaze_vertical_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_eye_open_ratio_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_lip_open_ratio_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_mouth_grim_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_mouth_pout_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_mouth_purse_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_mouth_smile_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_mouth_position_horizontal_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_mouth_position_vertical_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_head_pitch_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_head_yaw_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_editor_head_roll_range : Sequence[float] = create_float_range(-1.0, 1.0, 0.05)
face_enhancer_blend_range : Sequence[int] = create_int_range(0, 100, 1)
face_enhancer_weight_range : Sequence[float] = create_float_range(0.0, 1.0, 0.05)
frame_colorizer_blend_range : Sequence[int] = create_int_range(0, 100, 1)
frame_enhancer_blend_range : Sequence[int] = create_int_range(0, 100, 1)
lip_syncer_weight_range : Sequence[float] = create_float_range(0.0, 1.0, 0.05)
@@ -1,32 +1,31 @@
from argparse import ArgumentParser
from functools import lru_cache
from typing import List, Tuple
from typing import Tuple
import cv2
import numpy
from cv2.typing import Size
import facefusion.args_store
import facefusion.jobs.job_manager
import facefusion.jobs.job_store
import facefusion.processors.core as processors
from facefusion import config, content_analyser, face_classifier, face_detector, face_landmarker, face_masker, face_recognizer, inference_manager, logger, process_manager, state_manager, video_manager, wording
from facefusion import config, content_analyser, face_classifier, face_detector, face_landmarker, face_masker, face_recognizer, inference_manager, logger, state_manager, translator, video_manager
from facefusion.common_helper import create_int_metavar
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url_by_provider
from facefusion.face_analyser import get_many_faces, get_one_face
from facefusion.face_analyser import scale_face
from facefusion.face_helper import paste_back, warp_face_by_face_landmark_5
from facefusion.face_masker import create_area_mask, create_box_mask, create_occlusion_mask, create_region_mask
from facefusion.face_selector import find_similar_faces, sort_and_filter_faces
from facefusion.face_store import get_reference_faces
from facefusion.filesystem import get_file_name, in_directory, is_image, is_video, resolve_file_paths, resolve_relative_path, same_file_extension
from facefusion.processors import choices as processors_choices
from facefusion.processors.types import DeepSwapperInputs, DeepSwapperMorph
from facefusion.face_selector import select_faces
from facefusion.filesystem import get_file_name, in_directory, is_image, is_video, resolve_file_paths, resolve_relative_path
from facefusion.processors.modules.deep_swapper import choices as deep_swapper_choices
from facefusion.processors.modules.deep_swapper.types import DeepSwapperInputs, DeepSwapperMorph
from facefusion.processors.types import ProcessorOutputs
from facefusion.program_helper import find_argument_group
from facefusion.thread_helper import thread_semaphore
from facefusion.types import ApplyStateItem, Args, DownloadScope, Face, InferencePool, Mask, ModelOptions, ModelSet, ProcessMode, QueuePayload, UpdateProgress, VisionFrame
from facefusion.vision import conditional_match_frame_color, read_image, read_static_image, write_image
from facefusion.types import ApplyStateItem, Args, DownloadScope, Face, InferencePool, Mask, ModelOptions, ModelSet, ProcessMode, VisionFrame
from facefusion.vision import conditional_match_frame_color, read_static_image, read_static_video_frame
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
model_config = []
@@ -277,9 +276,9 @@ def get_model_size() -> Size:
def register_args(program : ArgumentParser) -> None:
group_processors = find_argument_group(program, 'processors')
if group_processors:
group_processors.add_argument('--deep-swapper-model', help = wording.get('help.deep_swapper_model'), default = config.get_str_value('processors', 'deep_swapper_model', 'iperov/elon_musk_224'), choices = processors_choices.deep_swapper_models)
group_processors.add_argument('--deep-swapper-morph', help = wording.get('help.deep_swapper_morph'), type = int, default = config.get_int_value('processors', 'deep_swapper_morph', '100'), choices = processors_choices.deep_swapper_morph_range, metavar = create_int_metavar(processors_choices.deep_swapper_morph_range))
facefusion.jobs.job_store.register_step_keys([ 'deep_swapper_model', 'deep_swapper_morph' ])
group_processors.add_argument('--deep-swapper-model', help = translator.get('help.model', __package__), default = config.get_str_value('processors', 'deep_swapper_model', 'iperov/elon_musk_224'), choices = deep_swapper_choices.deep_swapper_models)
group_processors.add_argument('--deep-swapper-morph', help = translator.get('help.morph', __package__), type = int, default = config.get_int_value('processors', 'deep_swapper_morph', '100'), choices = deep_swapper_choices.deep_swapper_morph_range, metavar = create_int_metavar(deep_swapper_choices.deep_swapper_morph_range))
facefusion.args_store.register_args([ 'deep_swapper_model', 'deep_swapper_morph' ], scopes = [ 'api', 'cli' ])
def apply_args(args : Args, apply_state_item : ApplyStateItem) -> None:
@@ -298,19 +297,17 @@ def pre_check() -> bool:
def pre_process(mode : ProcessMode) -> bool:
if mode in [ 'output', 'preview' ] and not is_image(state_manager.get_item('target_path')) and not is_video(state_manager.get_item('target_path')):
logger.error(wording.get('choose_image_or_video_target') + wording.get('exclamation_mark'), __name__)
logger.error(translator.get('choose_image_or_video_target') + translator.get('exclamation_mark'), __name__)
return False
if mode == 'output' and not in_directory(state_manager.get_item('output_path')):
logger.error(wording.get('specify_image_or_video_output') + wording.get('exclamation_mark'), __name__)
return False
if mode == 'output' and not same_file_extension(state_manager.get_item('target_path'), state_manager.get_item('output_path')):
logger.error(wording.get('match_target_and_output_extension') + wording.get('exclamation_mark'), __name__)
logger.error(translator.get('specify_image_or_video_output') + translator.get('exclamation_mark'), __name__)
return False
return True
def post_process() -> None:
read_static_image.cache_clear()
read_static_video_frame.cache_clear()
video_manager.clear_video_pool()
if state_manager.get_item('video_memory_strategy') in [ 'strict', 'moderate' ]:
clear_inference_pool()
@@ -409,56 +406,16 @@ def prepare_crop_mask(crop_source_mask : Mask, crop_target_mask : Mask) -> Mask:
return crop_mask
def get_reference_frame(source_face : Face, target_face : Face, temp_vision_frame : VisionFrame) -> VisionFrame:
return swap_face(target_face, temp_vision_frame)
def process_frame(inputs : DeepSwapperInputs) -> VisionFrame:
reference_faces = inputs.get('reference_faces')
def process_frame(inputs : DeepSwapperInputs) -> ProcessorOutputs:
reference_vision_frame = inputs.get('reference_vision_frame')
target_vision_frame = inputs.get('target_vision_frame')
many_faces = sort_and_filter_faces(get_many_faces([ target_vision_frame ]))
temp_vision_frame = inputs.get('temp_vision_frame')
temp_vision_mask = inputs.get('temp_vision_mask')
target_faces = select_faces(reference_vision_frame, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'many':
if many_faces:
for target_face in many_faces:
target_vision_frame = swap_face(target_face, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'one':
target_face = get_one_face(many_faces)
if target_face:
target_vision_frame = swap_face(target_face, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'reference':
similar_faces = find_similar_faces(many_faces, reference_faces, state_manager.get_item('reference_face_distance'))
if similar_faces:
for similar_face in similar_faces:
target_vision_frame = swap_face(similar_face, target_vision_frame)
return target_vision_frame
if target_faces:
for target_face in target_faces:
target_face = scale_face(target_face, target_vision_frame, temp_vision_frame)
temp_vision_frame = swap_face(target_face, temp_vision_frame)
def process_frames(source_path : List[str], queue_payloads : List[QueuePayload], update_progress : UpdateProgress) -> None:
reference_faces = get_reference_faces() if 'reference' in state_manager.get_item('face_selector_mode') else None
for queue_payload in process_manager.manage(queue_payloads):
target_vision_path = queue_payload['frame_path']
target_vision_frame = read_image(target_vision_path)
output_vision_frame = process_frame(
{
'reference_faces': reference_faces,
'target_vision_frame': target_vision_frame
})
write_image(target_vision_path, output_vision_frame)
update_progress(1)
def process_image(source_path : str, target_path : str, output_path : str) -> None:
reference_faces = get_reference_faces() if 'reference' in state_manager.get_item('face_selector_mode') else None
target_vision_frame = read_static_image(target_path)
output_vision_frame = process_frame(
{
'reference_faces': reference_faces,
'target_vision_frame': target_vision_frame
})
write_image(output_path, output_vision_frame)
def process_video(source_paths : List[str], temp_frame_paths : List[str]) -> None:
processors.multi_process_frames(None, temp_frame_paths, process_frames)
return temp_vision_frame, temp_vision_mask
@@ -0,0 +1,18 @@
from facefusion.types import Locals
LOCALS : Locals =\
{
'en':
{
'help':
{
'model': 'choose the model responsible for swapping the face',
'morph': 'morph between source face and target faces'
},
'uis':
{
'model_dropdown': 'DEEP SWAPPER MODEL',
'morph_slider': 'DEEP SWAPPER MORPH'
}
}
}
@@ -0,0 +1,17 @@
from typing import Any, TypeAlias, TypedDict
from numpy.typing import NDArray
from facefusion.types import Mask, VisionFrame
DeepSwapperInputs = TypedDict('DeepSwapperInputs',
{
'reference_vision_frame' : VisionFrame,
'target_vision_frame' : VisionFrame,
'temp_vision_frame' : VisionFrame,
'temp_vision_mask' : Mask
})
DeepSwapperModel : TypeAlias = str
DeepSwapperMorph : TypeAlias = NDArray[Any]
@@ -0,0 +1,10 @@
from typing import List, Sequence
from facefusion.common_helper import create_int_range
from facefusion.processors.modules.expression_restorer.types import ExpressionRestorerArea, ExpressionRestorerModel
expression_restorer_models : List[ExpressionRestorerModel] = [ 'live_portrait' ]
expression_restorer_areas : List[ExpressionRestorerArea] = [ 'upper-face', 'lower-face' ]
expression_restorer_factor_range : Sequence[int] = create_int_range(0, 100, 1)
@@ -1,37 +1,42 @@
from argparse import ArgumentParser
from functools import lru_cache
from typing import List, Tuple
from typing import Tuple
import cv2
import numpy
import facefusion.args_store
import facefusion.jobs.job_manager
import facefusion.jobs.job_store
import facefusion.processors.core as processors
from facefusion import config, content_analyser, face_classifier, face_detector, face_landmarker, face_masker, face_recognizer, inference_manager, logger, process_manager, state_manager, video_manager, wording
from facefusion import config, content_analyser, face_classifier, face_detector, face_landmarker, face_masker, face_recognizer, inference_manager, logger, state_manager, translator, video_manager
from facefusion.common_helper import create_int_metavar
from facefusion.download import conditional_download_hashes, conditional_download_sources, resolve_download_url
from facefusion.face_analyser import get_many_faces, get_one_face
from facefusion.face_analyser import scale_face
from facefusion.face_helper import paste_back, warp_face_by_face_landmark_5
from facefusion.face_masker import create_box_mask, create_occlusion_mask
from facefusion.face_selector import find_similar_faces, sort_and_filter_faces
from facefusion.face_store import get_reference_faces
from facefusion.filesystem import in_directory, is_image, is_video, resolve_relative_path, same_file_extension
from facefusion.processors import choices as processors_choices
from facefusion.face_selector import select_faces
from facefusion.filesystem import in_directory, is_image, is_video, resolve_relative_path
from facefusion.processors.live_portrait import create_rotation, limit_expression
from facefusion.processors.types import ExpressionRestorerInputs, LivePortraitExpression, LivePortraitFeatureVolume, LivePortraitMotionPoints, LivePortraitPitch, LivePortraitRoll, LivePortraitScale, LivePortraitTranslation, LivePortraitYaw
from facefusion.processors.modules.expression_restorer import choices as expression_restorer_choices
from facefusion.processors.modules.expression_restorer.types import ExpressionRestorerInputs
from facefusion.processors.types import LivePortraitExpression, LivePortraitFeatureVolume, LivePortraitMotionPoints, LivePortraitPitch, LivePortraitRoll, LivePortraitScale, LivePortraitTranslation, LivePortraitYaw, ProcessorOutputs
from facefusion.program_helper import find_argument_group
from facefusion.thread_helper import conditional_thread_semaphore, thread_semaphore
from facefusion.types import ApplyStateItem, Args, DownloadScope, Face, InferencePool, ModelOptions, ModelSet, ProcessMode, QueuePayload, UpdateProgress, VisionFrame
from facefusion.vision import read_image, read_static_image, read_video_frame, write_image
from facefusion.types import ApplyStateItem, Args, DownloadScope, Face, InferencePool, ModelOptions, ModelSet, ProcessMode, VisionFrame
from facefusion.vision import read_static_image, read_static_video_frame
@lru_cache(maxsize = None)
@lru_cache()
def create_static_model_set(download_scope : DownloadScope) -> ModelSet:
return\
{
'live_portrait':
{
'__metadata__':
{
'vendor': 'KwaiVGI',
'license': 'MIT',
'year': 2024
},
'hashes':
{
'feature_extractor':
@@ -94,14 +99,16 @@ def get_model_options() -> ModelOptions:
def register_args(program : ArgumentParser) -> None:
group_processors = find_argument_group(program, 'processors')
if group_processors:
group_processors.add_argument('--expression-restorer-model', help = wording.get('help.expression_restorer_model'), default = config.get_str_value('processors', 'expression_restorer_model', 'live_portrait'), choices = processors_choices.expression_restorer_models)
group_processors.add_argument('--expression-restorer-factor', help = wording.get('help.expression_restorer_factor'), type = int, default = config.get_int_value('processors', 'expression_restorer_factor', '80'), choices = processors_choices.expression_restorer_factor_range, metavar = create_int_metavar(processors_choices.expression_restorer_factor_range))
facefusion.jobs.job_store.register_step_keys([ 'expression_restorer_model', 'expression_restorer_factor' ])
group_processors.add_argument('--expression-restorer-model', help = translator.get('help.model', __package__), default = config.get_str_value('processors', 'expression_restorer_model', 'live_portrait'), choices = expression_restorer_choices.expression_restorer_models)
group_processors.add_argument('--expression-restorer-factor', help = translator.get('help.factor', __package__), type = int, default = config.get_int_value('processors', 'expression_restorer_factor', '80'), choices = expression_restorer_choices.expression_restorer_factor_range, metavar = create_int_metavar(expression_restorer_choices.expression_restorer_factor_range))
group_processors.add_argument('--expression-restorer-areas', help = translator.get('help.areas', __package__).format(choices = ', '.join(expression_restorer_choices.expression_restorer_areas)), default = config.get_str_list('processors', 'expression_restorer_areas', ' '.join(expression_restorer_choices.expression_restorer_areas)), choices = expression_restorer_choices.expression_restorer_areas, nargs ='+', metavar ='EXPRESSION_RESTORER_AREAS')
facefusion.args_store.register_args([ 'expression_restorer_model', 'expression_restorer_factor', 'expression_restorer_areas' ], scopes = [ 'api', 'cli' ])
def apply_args(args : Args, apply_state_item : ApplyStateItem) -> None:
apply_state_item('expression_restorer_model', args.get('expression_restorer_model'))
apply_state_item('expression_restorer_factor', args.get('expression_restorer_factor'))
apply_state_item('expression_restorer_areas', args.get('expression_restorer_areas'))
def pre_check() -> bool:
@@ -113,22 +120,20 @@ def pre_check() -> bool:
def pre_process(mode : ProcessMode) -> bool:
if mode == 'stream':
logger.error(wording.get('stream_not_supported') + wording.get('exclamation_mark'), __name__)
logger.error(translator.get('stream_not_supported') + translator.get('exclamation_mark'), __name__)
return False
if mode in [ 'output', 'preview' ] and not is_image(state_manager.get_item('target_path')) and not is_video(state_manager.get_item('target_path')):
logger.error(wording.get('choose_image_or_video_target') + wording.get('exclamation_mark'), __name__)
logger.error(translator.get('choose_image_or_video_target') + translator.get('exclamation_mark'), __name__)
return False
if mode == 'output' and not in_directory(state_manager.get_item('output_path')):
logger.error(wording.get('specify_image_or_video_output') + wording.get('exclamation_mark'), __name__)
return False
if mode == 'output' and not same_file_extension(state_manager.get_item('target_path'), state_manager.get_item('output_path')):
logger.error(wording.get('match_target_and_output_extension') + wording.get('exclamation_mark'), __name__)
logger.error(translator.get('specify_image_or_video_output') + translator.get('exclamation_mark'), __name__)
return False
return True
def post_process() -> None:
read_static_image.cache_clear()
read_static_video_frame.cache_clear()
video_manager.clear_video_pool()
if state_manager.get_item('video_memory_strategy') in [ 'strict', 'moderate' ]:
clear_inference_pool()
@@ -141,46 +146,58 @@ def post_process() -> None:
face_recognizer.clear_inference_pool()
def restore_expression(source_vision_frame : VisionFrame, target_face : Face, temp_vision_frame : VisionFrame) -> VisionFrame:
def restore_expression(target_face : Face, target_vision_frame : VisionFrame, temp_vision_frame : VisionFrame) -> VisionFrame:
model_template = get_model_options().get('template')
model_size = get_model_options().get('size')
expression_restorer_factor = float(numpy.interp(float(state_manager.get_item('expression_restorer_factor')), [ 0, 100 ], [ 0, 1.2 ]))
source_vision_frame = cv2.resize(source_vision_frame, temp_vision_frame.shape[:2][::-1])
source_crop_vision_frame, _ = warp_face_by_face_landmark_5(source_vision_frame, target_face.landmark_set.get('5/68'), model_template, model_size)
target_crop_vision_frame, affine_matrix = warp_face_by_face_landmark_5(temp_vision_frame, target_face.landmark_set.get('5/68'), model_template, model_size)
box_mask = create_box_mask(target_crop_vision_frame, state_manager.get_item('face_mask_blur'), (0, 0, 0, 0))
target_crop_vision_frame, _ = warp_face_by_face_landmark_5(target_vision_frame, target_face.landmark_set.get('5/68'), model_template, model_size)
temp_crop_vision_frame, affine_matrix = warp_face_by_face_landmark_5(temp_vision_frame, target_face.landmark_set.get('5/68'), model_template, model_size)
box_mask = create_box_mask(temp_crop_vision_frame, state_manager.get_item('face_mask_blur'), (0, 0, 0, 0))
crop_masks =\
[
box_mask
]
if 'occlusion' in state_manager.get_item('face_mask_types'):
occlusion_mask = create_occlusion_mask(target_crop_vision_frame)
occlusion_mask = create_occlusion_mask(temp_crop_vision_frame)
crop_masks.append(occlusion_mask)
source_crop_vision_frame = prepare_crop_frame(source_crop_vision_frame)
target_crop_vision_frame = prepare_crop_frame(target_crop_vision_frame)
target_crop_vision_frame = apply_restore(source_crop_vision_frame, target_crop_vision_frame, expression_restorer_factor)
target_crop_vision_frame = normalize_crop_frame(target_crop_vision_frame)
temp_crop_vision_frame = prepare_crop_frame(temp_crop_vision_frame)
temp_crop_vision_frame = apply_restore(target_crop_vision_frame, temp_crop_vision_frame, expression_restorer_factor)
temp_crop_vision_frame = normalize_crop_frame(temp_crop_vision_frame)
crop_mask = numpy.minimum.reduce(crop_masks).clip(0, 1)
temp_vision_frame = paste_back(temp_vision_frame, target_crop_vision_frame, crop_mask, affine_matrix)
return temp_vision_frame
paste_vision_frame = paste_back(temp_vision_frame, temp_crop_vision_frame, crop_mask, affine_matrix)
return paste_vision_frame
def apply_restore(source_crop_vision_frame : VisionFrame, target_crop_vision_frame : VisionFrame, expression_restorer_factor : float) -> VisionFrame:
feature_volume = forward_extract_feature(target_crop_vision_frame)
source_expression = forward_extract_motion(source_crop_vision_frame)[5]
pitch, yaw, roll, scale, translation, target_expression, motion_points = forward_extract_motion(target_crop_vision_frame)
def apply_restore(target_crop_vision_frame : VisionFrame, temp_crop_vision_frame : VisionFrame, expression_restorer_factor : float) -> VisionFrame:
feature_volume = forward_extract_feature(temp_crop_vision_frame)
target_expression = forward_extract_motion(target_crop_vision_frame)[5]
pitch, yaw, roll, scale, translation, temp_expression, motion_points = forward_extract_motion(temp_crop_vision_frame)
rotation = create_rotation(pitch, yaw, roll)
source_expression[:, [ 0, 4, 5, 8, 9 ]] = target_expression[:, [ 0, 4, 5, 8, 9 ]]
source_expression = source_expression * expression_restorer_factor + target_expression * (1 - expression_restorer_factor)
source_expression = limit_expression(source_expression)
source_motion_points = scale * (motion_points @ rotation.T + source_expression) + translation
target_expression = restrict_expression_areas(temp_expression, target_expression)
target_expression = target_expression * expression_restorer_factor + temp_expression * (1 - expression_restorer_factor)
target_expression = limit_expression(target_expression)
target_motion_points = scale * (motion_points @ rotation.T + target_expression) + translation
crop_vision_frame = forward_generate_frame(feature_volume, source_motion_points, target_motion_points)
temp_motion_points = scale * (motion_points @ rotation.T + temp_expression) + translation
crop_vision_frame = forward_generate_frame(feature_volume, target_motion_points, temp_motion_points)
return crop_vision_frame
def restrict_expression_areas(temp_expression : LivePortraitExpression, target_expression : LivePortraitExpression) -> LivePortraitExpression:
expression_restorer_areas = state_manager.get_item('expression_restorer_areas')
if 'upper-face' not in expression_restorer_areas:
target_expression[:, [1, 2, 6, 10, 11, 12, 13, 15, 16]] = temp_expression[:, [1, 2, 6, 10, 11, 12, 13, 15, 16]]
if 'lower-face' not in expression_restorer_areas:
target_expression[:, [3, 7, 14, 17, 18, 19, 20]] = temp_expression[:, [3, 7, 14, 17, 18, 19, 20]]
target_expression[:, [0, 4, 5, 8, 9]] = temp_expression[:, [0, 4, 5, 8, 9]]
return target_expression
def forward_extract_feature(crop_vision_frame : VisionFrame) -> LivePortraitFeatureVolume:
feature_extractor = get_inference_pool().get('feature_extractor')
@@ -205,15 +222,15 @@ def forward_extract_motion(crop_vision_frame : VisionFrame) -> Tuple[LivePortrai
return pitch, yaw, roll, scale, translation, expression, motion_points
def forward_generate_frame(feature_volume : LivePortraitFeatureVolume, source_motion_points : LivePortraitMotionPoints, target_motion_points : LivePortraitMotionPoints) -> VisionFrame:
def forward_generate_frame(feature_volume : LivePortraitFeatureVolume, target_motion_points : LivePortraitMotionPoints, temp_motion_points : LivePortraitMotionPoints) -> VisionFrame:
generator = get_inference_pool().get('generator')
with thread_semaphore():
crop_vision_frame = generator.run(None,
{
'feature_volume': feature_volume,
'source': source_motion_points,
'target': target_motion_points
'source': target_motion_points,
'target': temp_motion_points
})[0][0]
return crop_vision_frame
@@ -235,64 +252,16 @@ def normalize_crop_frame(crop_vision_frame : VisionFrame) -> VisionFrame:
return crop_vision_frame
def get_reference_frame(source_face : Face, target_face : Face, temp_vision_frame : VisionFrame) -> VisionFrame:
pass
def process_frame(inputs : ExpressionRestorerInputs) -> VisionFrame:
reference_faces = inputs.get('reference_faces')
source_vision_frame = inputs.get('source_vision_frame')
def process_frame(inputs : ExpressionRestorerInputs) -> ProcessorOutputs:
reference_vision_frame = inputs.get('reference_vision_frame')
target_vision_frame = inputs.get('target_vision_frame')
many_faces = sort_and_filter_faces(get_many_faces([ target_vision_frame ]))
temp_vision_frame = inputs.get('temp_vision_frame')
temp_vision_mask = inputs.get('temp_vision_mask')
target_faces = select_faces(reference_vision_frame, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'many':
if many_faces:
for target_face in many_faces:
target_vision_frame = restore_expression(source_vision_frame, target_face, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'one':
target_face = get_one_face(many_faces)
if target_face:
target_vision_frame = restore_expression(source_vision_frame, target_face, target_vision_frame)
if state_manager.get_item('face_selector_mode') == 'reference':
similar_faces = find_similar_faces(many_faces, reference_faces, state_manager.get_item('reference_face_distance'))
if similar_faces:
for similar_face in similar_faces:
target_vision_frame = restore_expression(source_vision_frame, similar_face, target_vision_frame)
return target_vision_frame
if target_faces:
for target_face in target_faces:
target_face = scale_face(target_face, target_vision_frame, temp_vision_frame)
temp_vision_frame = restore_expression(target_face, target_vision_frame, temp_vision_frame)
def process_frames(source_path : List[str], queue_payloads : List[QueuePayload], update_progress : UpdateProgress) -> None:
reference_faces = get_reference_faces() if 'reference' in state_manager.get_item('face_selector_mode') else None
for queue_payload in process_manager.manage(queue_payloads):
frame_number = queue_payload.get('frame_number')
if state_manager.get_item('trim_frame_start'):
frame_number += state_manager.get_item('trim_frame_start')
source_vision_frame = read_video_frame(state_manager.get_item('target_path'), frame_number)
target_vision_path = queue_payload.get('frame_path')
target_vision_frame = read_image(target_vision_path)
output_vision_frame = process_frame(
{
'reference_faces': reference_faces,
'source_vision_frame': source_vision_frame,
'target_vision_frame': target_vision_frame
})
write_image(target_vision_path, output_vision_frame)
update_progress(1)
def process_image(source_path : str, target_path : str, output_path : str) -> None:
reference_faces = get_reference_faces() if 'reference' in state_manager.get_item('face_selector_mode') else None
source_vision_frame = read_static_image(state_manager.get_item('target_path'))
target_vision_frame = read_static_image(target_path)
output_vision_frame = process_frame(
{
'reference_faces': reference_faces,
'source_vision_frame': source_vision_frame,
'target_vision_frame': target_vision_frame
})
write_image(output_path, output_vision_frame)
def process_video(source_paths : List[str], temp_frame_paths : List[str]) -> None:
processors.multi_process_frames(None, temp_frame_paths, process_frames)
return temp_vision_frame, temp_vision_mask

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