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18 Commits
Author SHA1 Message Date
Josh Hawkins 5437192289 report null instead of 0 for a stream with no cached bandwidth sample 2026-08-17 09:06:54 -05:00
Josh Hawkins aaf96522f4 test 2026-08-17 08:32:20 -05:00
Josh Hawkins 5f66220d2e docs 2026-08-17 08:31:02 -05:00
Josh Hawkins 7b277a0956 frontend 2026-08-17 08:31:02 -05:00
Josh Hawkins ea4dcb875a backend 2026-08-17 08:31:02 -05:00
Josh HawkinsandGitHub b45f0cdf66 Refactor birdseye activity modes as a list and add alerts/detections (#24012)
* backend

* tests

* frontend and i18n

* e2e test schema

* docs
2026-08-17 07:10:09 -06:00
Josh HawkinsandGitHub 2e647040d8 Improve History's seek startup time and recordings query performance (#24011)
* serve a segment startup ladder so seeks begin playing sooner

nginx-vod was handed one 10s segment per recording file, so every playlist start had to download and decode a full segment before the first frame. Declare real keyframe data per clip and let nginx cut short leading segments from it.

- add vod_bootstrap_segment_durations 1000/2000/4000 so each playlist starts with 1s/2s/4s segments before settling at 10s
- emit real clip-relative keyFrameDurations (plus firstKeyFrameOffset when nonzero) from the recording keyframe index; rows without an index keep the whole-clip declaration, the only safe cut without keyframe knowledge
- drop the manifest's segment_duration field, which was always inert: nginx-vod parses only camelCase segmentDuration
- rebuild the player source at the seek target, quantized to a 10s grid, so the ladder applies to every seek and seek URLs stay repeatable for nginx's mapping and response caches
- route the seek model, in-range checks, and the stale-report guard through the source window rather than the chunk range
- bridge repositioning seeks (>2s from the last played timestamp) through the preview player and hold the release anchor one commit, so neither path paints a stale frame
- clear a pending loading timer before replacing it; an orphaned timer escaped onPlaying's clearTimeout and flashed loading mid-playback

* keep recordings queries on their indexes

Several recordings queries degraded into full scans or large sorts on big databases: the planner ignored index order, or the query shape gave it nothing tight to seek on. Reshape them into bounded seeks and add the composite index the per-stream lookups need.

- index recordings on (camera, stream_type, start_time DESC) and drop the (camera, stream_type) index it supersedes
- walk the recordings summary day by day with EXISTS probes and per-camera MIN/MAX seeks, skipping ahead over empty gaps instead of bucketing every row for the requested cameras
- run the summary endpoint on the event loop rather than the threadpool
- bound the unavailable-recordings query by start_time per camera and merge the results in Python
- bound the expire query's start_time so it seeks the retention window instead of scanning a camera's whole history
- enumerate deleted cameras with one index seek each rather than a camera NOT IN (...) scan
- compute bandwidth with segment_size filtered in a CASE projection; as a WHERE predicate it baited the planner into the (camera, segment_size) index plus a full sort of the camera's history
- fall back to a 1000-segment window when the recent 100 are all zero-size, so an ingest glitch doesn't report zero bandwidth
- limit the needs_refresh count instead of counting every segment
- cover sub-only and sparse calendar days, midnight-spanning day attribution, multi-camera gap merging, deleted-camera expiry, and zero-size segment runs

* fix mypy
2026-08-17 07:09:10 -06:00
Josh HawkinsandGitHub 429a03081f Enable PTZ control setup in the Add Camera Wizard (#23444)
* add ptz controls to camera via wizard when onvif has already been probed

* i18n

* add e2e test

* backend add and remove subscriber

* tweaks

* turn on switch by default if pan and/or tilt capability is available

* fix test
2026-08-16 13:43:28 -06:00
Josh HawkinsandGitHub 836b0bbb9f Add sub stream recording with adaptive quality playback (#24009)
* add sub stream recording with adaptive quality playback

Optionally record a second, lower bitrate stream alongside the main
recording stream via a `record_sub` input role and `record.sub` config block, with its own retention windows.
Recordings rows now carry the stream type plus the media details needed to serve both streams from one manifest: video codec, audio presence, audio codec and rate, and a record-time keyframe index.

Playback resolves coverage across both streams and merges them into a single VOD sequence, falling back to a discontinuity manifest with per-clip init segments when the media signatures differ. The player exposes a quality selector, and an auto governor picks the stream from stall time, bandwidth, codec support, and the save-data hint.

* fix tests and i18n
2026-08-16 12:59:03 -06:00
Josh HawkinsandGitHub 6fe7d68fe7 stop creating a config subscriber per capture thread (#24002) 2026-08-15 14:24:00 -06:00
Josh HawkinsandGitHub 8731df9ce3 Guard lookups when adding/deleting cameras at runtime (#23994)
* Guard object processor queue handlers against unknown cameras

* Skip embeddings post processing for removed cameras

* End review segments for removed cameras

* Drop queued autotracker moves for removed cameras

* Release tracked event thumbnails when skipping a removed camera

* Add locked accessors for camera states

* Read camera states through the processor accessors

* Guard output and recording paths against cameras not yet known

* Resolve camera state once in ONVIF, notification, and transcription paths
2026-08-15 06:32:47 -06:00
Ersa Oktavian RamadanandJosh Hawkins 74c932c3f5 Refactor Birdseye activity types as composable booleans (#23940)
* Add combined motion and object Birdseye mode

Add a motion_objects mode that keeps Birdseye active when motion is detected or a confirmed tracked object is present, including stationary objects.

Wire the mode through configuration, runtime commands, API schemas, documentation, and UI labels. Exclude false-positive trackers and add regression coverage for Birdseye activation and MQTT validation.

* Refactor Birdseye activity types as booleans

Replace combination-specific Birdseye modes with composable boolean activity types for motion, active objects, stationary objects, and continuous display.

Preserve legacy single-mode configuration and MQTT inputs, support canonical comma-separated MQTT combinations, and allow scalar YAML values to be replaced by nested settings through the config API.

* Preserve OpenVINO config translations

Regenerate the configuration translations with the OpenVINO detector schema available so the unrelated production detector labels remain intact.

* Preserve partial Birdseye mode overrides

Allow an empty activity selection with a canonical NONE MQTT state so partial camera and profile overrides can disable inherited flags without failing validation.

Add regression coverage for camera and profile inheritance, document the NONE contract, and keep the generated schema fixture scoped to Birdseye.

* Address Birdseye activity review feedback

Move scalar mode compatibility into the 0.18-1 config migration and reject empty activity selections instead of publishing a NONE state.

Pass activity signals through a frozen dataclass, preserve existing active-object tracker behavior, and require confirmed stationary objects. Revert the generic YAML mutation and cover migration, inheritance, MQTT, and activation regressions.

* Move Birdseye migration to 0.19

Use the 0.19-0 configuration revision for converting scalar Birdseye modes to composable activity flags, and update the migration regression coverage accordingly.

* Remove Birdseye migration test

Drop the dedicated config migration test as requested during review while retaining the 0.19-0 migration implementation.
2026-08-14 10:05:08 -05:00
Josh Hawkins a0042b8d7f Fix birdseye layout overlap with mixed landscape/portrait cameras (#22917)
* fix birdseye layout calculation

replace the two pass layout with a single pass pixel space algorithm

* add test
2026-08-14 10:05:08 -05:00
Nicolas MowenandJosh Hawkins 659d26658b Don't require object type for parameter in categorized names tool 2026-08-14 10:05:08 -05:00
6c47bbfbbc Dynamically resolve Intel NPU (#23761)
* Add support for newer Intel NPU busy time counter

* Resolve Intel NPU device dynamically

---------

Co-authored-by: Filious Louis <1417132+fjlouis@users.noreply.github.com>
2026-08-14 10:05:08 -05:00
DoFabienandJosh Hawkins c4d53484b7 Improve recording timeline and VOD query performance (#23862)
* Improve recording timeline and VOD query performance

* Add recording query boundary tests
2026-08-14 10:05:08 -05:00
Nicolas MowenandJosh Hawkins 928dac506a GenAI Chat Prompt Refinements (#23864)
* Prompt refactoring and optimization

* Update spec
2026-08-14 10:05:08 -05:00
Nicolas MowenandJosh Hawkins c1bde8ca20 Update to 0.19 2026-08-14 10:05:08 -05:00
398 changed files with 11196 additions and 20685 deletions
+1 -1
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@@ -1,7 +1,7 @@
default_target: local
COMMIT_HASH := $(shell git log -1 --pretty=format:"%h"|tail -1)
VERSION = 0.18.0
VERSION = 0.19.0
IMAGE_REPO ?= ghcr.io/blakeblackshear/frigate
GITHUB_REF_NAME ?= $(shell git rev-parse --abbrev-ref HEAD)
BOARDS= #Initialized empty
@@ -75,6 +75,12 @@ http {
vod_align_segments_to_key_frames on;
vod_manifest_segment_durations_mode accurate;
vod_ignore_edit_list on;
# short leading segments at each playlist start; sources start at
# the seek target, so the ladder applies to every seek. Only
# effective when clips declare real keyFrameDurations
vod_bootstrap_segment_durations 1000;
vod_bootstrap_segment_durations 2000;
vod_bootstrap_segment_durations 4000;
vod_segment_duration 10000;
# MPEG-TS settings (not used when fMP4 is enabled, kept for reference)
+48 -6
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@@ -251,11 +251,15 @@ birdseye:
# Optional: Encoding quality of the mpeg1 feed (default: shown below)
# 1 is the highest quality, and 31 is the lowest. Lower quality feeds utilize less CPU resources.
quality: 8
# Optional: Mode of the view. Available options are: objects, motion, and continuous
# objects - cameras are included if they have had a tracked object within the last 30 seconds
# motion - cameras are included if motion was detected in the last 30 seconds
# continuous - all cameras are included always
mode: objects
# Optional: Activity types that include cameras in Birdseye (default: shown below)
# Multiple activity types can be listed at the same time.
# continuous: all cameras are included always
# motion: included if motion was detected within the inactivity threshold
# all_objects: included if a tracked object was present within the inactivity threshold
# alerts: included while an alert review item is in progress
# detections: included while a detection review item is in progress
modes:
- all_objects
# Optional: Threshold for camera activity to stop showing camera (default: shown below)
inactivity_threshold: 30
# Optional: Configure the birdseye layout
@@ -287,6 +291,8 @@ ffmpeg:
detect: -threads 2 -f rawvideo -pix_fmt yuv420p
# Optional: output args for record streams (default: shown below)
record: preset-record-generic
# Optional: output args for sub stream record streams (default: the record output args above)
# record_sub: preset-record-generic
# Optional: Time in seconds to wait before ffmpeg retries connecting to the camera. (default: shown below)
# If set too low, frigate will retry a connection to the camera's stream too frequently, using up the limited streams some cameras can allow at once
# If set too high, then if a ffmpeg crash or camera stream timeout occurs, you could potentially lose up to a maximum of retry_interval second(s) of footage
@@ -637,6 +643,42 @@ record:
# For example, if the camera retain mode is "motion", the segments without motion are
# never stored, so setting the mode to "all" here won't bring them back.
mode: motion
# Optional: Sub stream recording settings
# Records a second, lower quality stream for quality selection during playback
# and extended low quality retention. Requires the record_sub role to be assigned
# to one of the camera's inputs.
sub:
# Optional: Enable sub stream recording (default: shown below)
# NOTE: Recording must also be enabled for sub stream recording to run.
enabled: False
# Optional: Continuous retention settings for sub stream recordings
continuous:
# Optional: Number of days to retain sub stream recordings regardless of tracked objects or motion (default: shown below)
days: 0
# Optional: Motion retention settings for sub stream recordings
motion:
# Optional: Number of days to retain sub stream recordings triggered by motion (default: shown below)
days: 0
# Optional: Retention settings for sub stream recordings of alerts
# NOTE: Pre and post capture windows are taken from the main alerts config above.
alerts:
# Required: Retention days (default: shown below)
days: 10
# Optional: Mode for retention. (default: shown below)
# all - save all sub stream recording segments for alerts regardless of activity
# motion - save all sub stream recording segments for alerts with any detected motion
# active_objects - save all sub stream recording segments for alerts with active/moving objects
mode: motion
# Optional: Retention settings for sub stream recordings of detections
# NOTE: Pre and post capture windows are taken from the main detections config above.
detections:
# Required: Retention days (default: shown below)
days: 10
# Optional: Mode for retention. (default: shown below)
# all - save all sub stream recording segments for detections regardless of activity
# motion - save all sub stream recording segments for detections with any detected motion
# active_objects - save all sub stream recording segments for detections with active/moving objects
mode: motion
# Optional: Configuration for the snapshots written to the clips directory for each tracked object
# Timestamp, bounding_box, crop and height settings are applied by default to API requests for snapshots.
@@ -888,7 +930,7 @@ cameras:
# Required: the path to the stream
# NOTE: path may include environment variables or docker secrets, which must begin with 'FRIGATE_' and be referenced in {}
- path: rtsp://viewer:{FRIGATE_RTSP_PASSWORD}@10.0.10.10:554/cam/realmonitor?channel=1&subtype=2
# Required: list of roles for this stream. valid values are: audio,detect,record
# Required: list of roles for this stream. valid values are: audio,detect,record,record_sub
# NOTICE: In addition to assigning the audio, detect, and record roles
# they must also be enabled in the camera config.
roles:
+23 -16
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@@ -18,13 +18,17 @@ Each camera tile in Birdseye is composed from the frames of the stream assigned
## Birdseye Behavior
### Birdseye Modes
### Birdseye Activity Types
Birdseye offers different modes to customize which cameras show under which circumstances.
Birdseye offers independent activity types that control when cameras are shown. Multiple activity types can be listed together.
- **continuous:** All cameras are always included
- **motion:** Cameras that have detected motion within the last 30 seconds are included
- **objects:** Cameras that have tracked an active object within the last 30 seconds are included
- **continuous:** The camera is always included
- **motion:** The camera is included when motion was detected within the last 30 seconds
- **all_objects:** The camera is included when a tracked object is present, active or stationary
- **alerts:** The camera is included while an alert review item is in progress
- **detections:** The camera is included while a detection review item is in progress
`alerts` and `detections` follow the review item's own lifetime, so the camera is removed as soon as the review item ends. Which objects qualify for each is set in [review configuration](./review.md).
### Custom Birdseye Icon
@@ -39,27 +43,29 @@ To include a camera in Birdseye view only for specific circumstances, or exclude
**Global settings:** Navigate to <NavPath path="Settings > System > Birdseye" /> to configure the default Birdseye behavior for all cameras.
**Per-camera overrides:** Navigate to <NavPath path="Settings > Camera configuration > Birdseye" /> to override the mode or disable Birdseye for a specific camera.
**Per-camera overrides:** Navigate to <NavPath path="Settings > Camera configuration > Birdseye" /> to override the activity types or disable Birdseye for a specific camera.
| Field | Description |
| ------------------- | ------------------------------------------------------------- |
| **Enable Birdseye** | Whether this camera appears in Birdseye view |
| **Tracking mode** | When to show the camera: `continuous`, `motion`, or `objects` |
| Field | Description |
| ---------------------- | ---------------------------------------------------------- |
| **Enable Birdseye** | Whether this camera appears in Birdseye view |
| **Activity types** | Conditions that determine when to show the camera |
</TabItem>
<TabItem value="yaml">
```yaml {8-10,12-14}
```yaml {10-12,15-16}
# Include all cameras by default in Birdseye view
birdseye:
enabled: True
mode: continuous
modes:
- continuous
cameras:
front:
# Only include the "front" camera in Birdseye view when objects are detected
# Only include the "front" camera in Birdseye view when an alert is in progress
birdseye:
mode: objects
modes:
- alerts
back:
# Exclude the "back" camera from Birdseye view
birdseye:
@@ -71,7 +77,7 @@ cameras:
### Birdseye Inactivity
By default birdseye shows all cameras that have had the configured activity in the last 30 seconds. This threshold can be configured.
By default birdseye shows all cameras that have had the configured activity in the last 30 seconds. This threshold can be configured, and applies to the `motion` and `all_objects` activity types only.
<ConfigTabs>
<TabItem value="ui">
@@ -140,7 +146,8 @@ Navigate to <NavPath path="Settings > System > Birdseye" /> and in the **Camera
# Include all cameras by default in Birdseye view
birdseye:
enabled: True
mode: continuous
modes:
- continuous
cameras:
front:
@@ -106,3 +106,5 @@ Output arguments are passed to FFmpeg after your camera source and control how r
| preset-record-mjpeg | Record - MJPEG Cameras | Record an MJPEG stream | Restreaming the MJPEG stream is recommended instead |
| preset-record-jpeg | Record - JPEG Cameras | Record a live JPEG | Restreaming the live JPEG is recommended instead |
| preset-record-ubiquiti | Record - Ubiquiti Cameras | Record a Ubiquiti stream with audio | Handles Ubiquiti's non-standard audio format |
These presets apply to the `record` output args. If [sub stream recording](/configuration/record#sub-stream-recording) is enabled, the same args are used for the `record_sub` role unless `output_args.record_sub` is set, which accepts the same presets and manual args.
+5 -9
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@@ -59,17 +59,13 @@ Running Generative AI models on CPU is not recommended, as high inference times
### Recommended Local Models
#### Vision models
You must use a vision-capable model with Frigate. The following models are recommended for local deployment of the `descriptions` and `chat` roles:
| Model | Notes |
| ------------------- | -------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
| `qwen3-vl` | Strong visual and situational understanding, enhanced ability to identify smaller objects and interactions with object. |
| `qwen3.6`/`qwen3.8` | Strong situational understanding, but missing DeepStack from qwen3-vl leading to worse performance for identifying objects in people's hand and other small details. |
| `gemma4` | Strong situational understanding, sometimes resorts to more vague terms like 'interacts' instead of assigning a specific action. |
#### Embedding models
| Model | Notes |
| ---------- | -------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
| `qwen3-vl` | Strong visual and situational understanding, enhanced ability to identify smaller objects and interactions with object. |
| `qwen3.6` | Strong situational understanding, but missing DeepStack from qwen3-vl leading to worse performance for identifying objects in people's hand and other small details. |
| `gemma4` | Strong situational understanding, sometimes resorts to more vague terms like 'interacts' instead of assigning a specific action. |
The `embeddings` role needs a different kind of model. Text queries are matched against the stored image embeddings, so the model must be trained to place images and text into the same vector space. A chat or description model will still return vectors when asked, but those vectors are not trained for retrieval and text searches will return poor matches with no error to indicate why.
@@ -8,7 +8,7 @@ import TabItem from "@theme/TabItem";
import NavPath from "@site/src/components/NavPath";
import FaqItem from "@site/src/components/FaqItem";
Frigate can recognize license plates on vehicles and automatically add the detected characters to the `recognized_license_plate` field or a [known](#matching) name as a `sub_label` to tracked objects of type `car`, `motorcycle`, `bus`, `truck`, `school_bus`, or `garbage_truck`, depending on which of those labels your model detects. A common use case may be to read the license plates of cars pulling into a driveway or cars passing by on a street.
Frigate can recognize license plates on vehicles and automatically add the detected characters to the `recognized_license_plate` field or a [known](#matching) name as a `sub_label` to tracked objects of type `car` or `motorcycle`. A common use case may be to read the license plates of cars pulling into a driveway or cars passing by on a street.
LPR works best when the license plate is clearly visible to the camera. For moving vehicles, Frigate continuously refines the recognition process, keeping the most confident result. When a vehicle becomes stationary, LPR continues to run for a short time after to attempt recognition.
@@ -24,7 +24,7 @@ When a plate is recognized, the details are:
- Viewable in the Details pane in Review/History.
- Viewable in the Tracked Object Details pane in Explore (sub labels and recognized license plates).
- Filterable through the More Filters menu in Explore.
- Published via the `frigate/events` MQTT topic as a `sub_label` ([known](#matching)) or `recognized_license_plate` (unknown) for the vehicle tracked object.
- Published via the `frigate/events` MQTT topic as a `sub_label` ([known](#matching)) or `recognized_license_plate` (unknown) for the `car` or `motorcycle` tracked object.
- Published via the `frigate/tracked_object_update` MQTT topic with `name` (if [known](#matching)) and `plate`.
## Model Requirements
@@ -35,7 +35,7 @@ Users without a model that detects license plates can still run LPR. Frigate use
:::note
In the default mode, Frigate's LPR needs to first detect a vehicle before it can recognize a license plate. If you're using a dedicated LPR camera and have a zoomed-in view where a vehicle will not be detected, you can still run LPR, but the configuration parameters will differ from the default mode. See the [Dedicated LPR Cameras](#dedicated-lpr-cameras) section below.
In the default mode, Frigate's LPR needs to first detect a `car` or `motorcycle` before it can recognize a license plate. If you're using a dedicated LPR camera and have a zoomed-in view where a `car` or `motorcycle` will not be detected, you can still run LPR, but the configuration parameters will differ from the default mode. See the [Dedicated LPR Cameras](#dedicated-lpr-cameras) section below.
:::
@@ -86,7 +86,7 @@ cameras:
</TabItem>
</ConfigTabs>
For non-dedicated LPR cameras, ensure that your camera is configured to detect vehicle objects, and that a vehicle is actually being detected by Frigate. Otherwise, LPR will not run. The object types that can carry a plate are defined by your model's `attributes_map`, so if your model detects other vehicle labels, you can add them there.
For non-dedicated LPR cameras, ensure that your camera is configured to detect objects of type `car` or `motorcycle`, and that a car or motorcycle is actually being detected by Frigate. Otherwise, LPR will not run.
Like the other real-time processors in Frigate, license plate recognition runs on the camera stream defined by the `detect` role in your config. To ensure optimal performance, select a suitable resolution for this stream in your camera's firmware that fits your specific scene and requirements.
@@ -158,7 +158,7 @@ lpr:
Navigate to <NavPath path="Settings > Enrichments > License plate recognition" />.
- **Known plates**: Assign custom `sub_label` values to vehicle objects when a recognized plate matches a known value. These labels appear in the UI, filters, and notifications. Unknown plates are still saved but are added to the `recognized_license_plate` field rather than the `sub_label`.
- **Known plates**: Assign custom `sub_label` values to `car` and `motorcycle` objects when a recognized plate matches a known value. These labels appear in the UI, filters, and notifications. Unknown plates are still saved but are added to the `recognized_license_plate` field rather than the `sub_label`.
- **Match distance**: Allows for minor variations (missing/incorrect characters) when matching a detected plate to a known plate. For example, setting to `1` allows a plate `ABCDE` to match `ABCBE` or `ABCD`. This parameter will _not_ operate on known plates that are defined as regular expressions.
</TabItem>
@@ -316,7 +316,7 @@ lpr:
:::note
If a camera is configured to detect vehicles but you don't want Frigate to run LPR for that camera, disable LPR at the camera level:
If a camera is configured to detect `car` or `motorcycle` but you don't want Frigate to run LPR for that camera, disable LPR at the camera level:
<ConfigTabs>
<TabItem value="ui">
@@ -456,7 +456,7 @@ With this setup:
- Snapshots will have license plate bounding boxes on them.
- The `frigate/events` MQTT topic will publish tracked object updates.
- Debug view will display `license_plate` bounding boxes.
- If you are using a Frigate+ model and want to submit images from your dedicated LPR camera for model training and fine-tuning, annotate both the vehicle and the `license_plate` in the snapshots on the Frigate+ website, even if the vehicle is barely visible.
- If you are using a Frigate+ model and want to submit images from your dedicated LPR camera for model training and fine-tuning, annotate both the `car` / `motorcycle` and the `license_plate` in the snapshots on the Frigate+ website, even if the car is barely visible.
### Using the Secondary LPR Pipeline (Without Frigate+)
@@ -611,9 +611,9 @@ If you are still having issues detecting plates, start with a basic configuratio
</FaqItem>
<FaqItem id="can-i-run-lpr-without-detecting-car-or-motorcycle-objects" question={<>Can I run LPR without detecting vehicle objects?</>}>
<FaqItem id="can-i-run-lpr-without-detecting-car-or-motorcycle-objects" question={<>Can I run LPR without detecting <code>car</code> or <code>motorcycle</code> objects?</>}>
In normal LPR mode, Frigate requires a vehicle to be detected first before recognizing a license plate. If you have a dedicated LPR camera, you can change the camera `type` to `"lpr"` to use the Dedicated LPR Camera algorithm. This comes with important caveats, though. See the [Dedicated LPR Cameras](#dedicated-lpr-cameras) section above.
In normal LPR mode, Frigate requires a `car` or `motorcycle` to be detected first before recognizing a license plate. If you have a dedicated LPR camera, you can change the camera `type` to `"lpr"` to use the Dedicated LPR Camera algorithm. This comes with important caveats, though. See the [Dedicated LPR Cameras](#dedicated-lpr-cameras) section above.
</FaqItem>
@@ -699,7 +699,7 @@ lpr:
4. Ensure the characters on detected plates are being _recognized_.
- Check the **Plate recognition** inference time in Enrichment metrics (<NavPath path="System metrics > Enrichments" />). High inference times (> 100ms) could lead to poor recognition results, especially for dedicated LPR cameras where the plate crosses the frame quickly.
- Enable `debug_save_plates` to save images of detected text on plates to the clips directory (`/media/frigate/clips/lpr`). Ensure these images are readable and the text is clear.
- Watch the debug view to see plates recognized in real-time. For non-dedicated LPR cameras, the vehicle's label will change to the recognized plate when LPR is enabled and working.
- Watch the debug view to see plates recognized in real-time. For non-dedicated LPR cameras, the `car` or `motorcycle` label will change to the recognized plate when LPR is enabled and working.
- Adjust `recognition_threshold` settings per the suggestions [above](#advanced-configuration).
</FaqItem>
@@ -714,13 +714,13 @@ LPR's performance impact depends on your hardware. Ensure you have at least 4GB
The YOLOv9 license plate detector model will run (and the metric will appear) if you've enabled LPR but haven't defined `license_plate` as an object to track, either at the global or camera level.
If you are detecting vehicles on cameras where you don't want to run LPR, make sure you disable LPR it at the camera level. And if you do want to run LPR on those cameras, make sure you define `license_plate` as an object to track.
If you are detecting `car` or `motorcycle` on cameras where you don't want to run LPR, make sure you disable LPR it at the camera level. And if you do want to run LPR on those cameras, make sure you define `license_plate` as an object to track.
</FaqItem>
<FaqItem id="it-looks-like-frigate-picked-up-my-cameras-timestamp-or-overlay-text-as-the-license-plate-how-can-i-prevent-this" question="It looks like Frigate picked up my camera's timestamp or overlay text as the license plate. How can I prevent this?">
This could happen if vehicles travel close to your camera's timestamp or overlay text. You could either move the text through your camera's firmware, or apply a mask to it in Frigate.
This could happen if cars or motorcycles travel close to your camera's timestamp or overlay text. You could either move the text through your camera's firmware, or apply a mask to it in Frigate.
If you are using a model that natively detects `license_plate`, add an _object mask_ of type `license_plate` and a _motion mask_ over your text.
+158 -1
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@@ -9,7 +9,7 @@ import NavPath from "@site/src/components/NavPath";
Recordings can be enabled and are stored at `/media/frigate/recordings`. The folder structure for the recordings is `YYYY-MM-DD/HH/<camera_name>/MM.SS.mp4` in **UTC time**. These recordings are written directly from your camera stream without re-encoding. Each camera supports a configurable retention policy. Frigate chooses the largest matching retention value between the recording retention and the tracked object retention when determining if a recording should be removed.
New recording segments are written from the camera stream to cache, they are only moved to disk if they pass a validation check and match the setup recording retention policy.
New recording segments are written from the camera stream to cache, they are only moved to disk if they match the setup recording retention policy.
:::tip
@@ -275,6 +275,163 @@ record:
This configuration will retain recording segments that overlap with alerts and detections for 10 days. Because multiple tracked objects can reference the same recording segments, this avoids storing duplicate footage for overlapping tracked objects and reduces overall storage needs.
## Sub Stream Recording
In addition to the main recording stream, Frigate can record a second, lower quality stream for each camera. This serves two purposes:
- **Quality selection during playback**: A quality selector (`Auto`, `Original`, or `Low`) appears in History view for cameras with sub stream recording enabled. `Original` and `Low` play only that stream's recordings. Time ranges where the selected stream has no footage are skipped during playback, and the selector notes when the selected stream has no recordings at all in the viewed time range. With `Auto` (the default), playback prefers the original quality and automatically falls back to the low quality stream when the connection cannot keep up, or for time ranges where the original recordings have expired. The selector shows each stream's video codec and audio details beneath the options; footage recorded by older Frigate versions shows no details.
- **Extended retention**: Sub stream recordings have their own retention settings, fully independent of the main recordings. By giving the low quality recordings a longer retention period, you can keep weeks or months of low quality history using a fraction of the storage, and that history remains playable after the main recordings expire. Playback falls back to the low quality recordings automatically, and the timeline shows a muted treatment for time ranges where only low quality footage remains.
### Configuring sub stream recording
Sub stream recording uses the `record_sub` input role. This role can be assigned to the same input as `detect`, so in the common case where detect already uses the camera's sub stream, no additional camera connection is needed. Like the main recording stream, sub stream segments are copied directly from the camera stream without re-encoding, so the recording quality is determined by the source stream.
The following examples keep 7 days of full quality continuous recordings and 60 days of low quality continuous recordings:
<ConfigTabs>
<TabItem value="ui">
Navigate to <NavPath path="Settings > Camera configuration > Streams (FFmpeg)" /> and select the camera.
- In **Camera inputs**, enable the **Record (Sub Stream)** role on the stream you want to record at low quality, commonly the same stream that has the **Detect** role. Only one stream may have this role, and it cannot be assigned to the same stream as the **Record** role.
Navigate to <NavPath path="Settings > Camera configuration > Recording" /> and select the camera.
- Set **Enable recording** to on
- Set **Continuous retention > Retention days** to `7`
- Set **Sub stream recording > Enable sub stream recording** to on
- Set **Sub stream recording > Sub stream continuous retention > Retention days** to `60`
The camera setup wizard also offers the **Record (Sub Stream)** role when assigning stream roles for a newly added camera.
</TabItem>
<TabItem value="yaml">
```yaml
cameras:
front_door:
ffmpeg:
inputs:
- path: rtsp://camera/main
roles:
- record
- path: rtsp://camera/sub
roles:
- detect
- record_sub
record:
enabled: true
continuous:
days: 7
sub:
enabled: true
continuous:
days: 60
```
If your camera does not provide a suitable sub stream (or the sub stream is already used at a resolution you don't want to record), you can use a go2rtc transcode as the source for `record_sub` instead:
```yaml
go2rtc:
streams:
front_door: rtsp://camera/main
front_door_lq: ffmpeg:front_door#video=h264#width=854#hardware
cameras:
front_door:
ffmpeg:
inputs:
- path: rtsp://127.0.0.1:8554/front_door
input_args: preset-rtsp-restream
roles:
- detect
- record
- path: rtsp://127.0.0.1:8554/front_door_lq
input_args: preset-rtsp-restream
roles:
- record_sub
record:
enabled: true
continuous:
days: 7
sub:
enabled: true
continuous:
days: 60
```
</TabItem>
</ConfigTabs>
The `record.sub` config supports the same retention structure as the main recording config: `continuous`, `motion`, `alerts`, and `detections` each with their own `days` (and `mode` for alerts and detections). The pre-capture and post-capture windows for alerts and detections are taken from the main `record.alerts` and `record.detections` config. Extending `sub.alerts.days` or `sub.detections.days` beyond the main values also keeps those review items visible in the review timeline for the longer window, with playback falling back to the low quality stream once the main recordings expire.
:::note
Recording must be enabled (`record.enabled`) for sub stream recording to run, and Frigate will fail to start if `record.sub.enabled` is set without a `record_sub` role assigned to one of the camera's inputs.
:::
### How Auto picks a quality
`Auto` measures throughput on every segment download and compares it against the original stream's bitrate (computed from the recorded footage itself). Playback drops to the low quality stream when any of these happen:
- A freeze lasts 4 seconds (10 seconds when it starts within 2 seconds of a seek, since the seek target is rarely buffered), or freezes total 7 seconds within the last minute.
- 3 downloads in a row measure below the original bitrate plus 10%, dropping quality before a stall ever becomes visible.
- No first frame appears within 10 seconds, or loading fails outright.
Playback returns to full quality only when measured throughput exceeds the original bitrate by 50%, checked continuously while playing the low quality stream and again at each new hour. The asymmetric thresholds (1.1x to drop, 1.5x to return) keep a borderline connection from switching back and forth.
The most recent measurement is remembered on the device: a connection last measured below the original bitrate (or below 3 Mbps when the bitrate is not yet known) starts playback on the low quality stream so a first frame appears immediately, then upgrades within a few segments if the speed allows.
The quality selector shows which stream Auto is currently playing and why. A browser with Data Saver enabled stays on the low quality stream, a browser that cannot decode the original stream's codec (for example H.265 without HEVC support) plays the low quality stream for that camera, and pinning `Original` or `Low` bypasses Auto entirely.
### Sub stream output args
By default the sub stream is recorded with the same [output args](/configuration/ffmpeg_presets#output-args-presets) as the main recording stream, so it inherits any customization made to `ffmpeg.output_args.record`. Setting `ffmpeg.output_args.record_sub` gives the sub stream its own args instead. Like all `ffmpeg` config, this can be set globally or per camera.
The most common reason to set this is a pair of streams whose audio differs. Many cameras send AAC on the main stream but PCM on the sub stream, and PCM cannot be copied into an mp4 recording. Copying the main stream's audio avoids re-encoding audio that is already AAC, while the sub stream still needs to be transcoded:
```yaml
ffmpeg:
output_args:
# main stream audio is already AAC, so copy it
record: preset-record-generic-audio-copy
# sub stream audio is PCM, so transcode it to AAC
record_sub: preset-record-generic-audio-aac
```
Other reasons to set this are recording a sub stream whose codec needs a different preset than the main stream, such as `preset-record-mjpeg`, or forcing a matching audio sample rate across the two streams with manual args ending in `-c:a aac -ar 16000`.
:::warning
Avoid removing audio from only one of the two streams (for example with `-an`). When one stream has audio and the other does not, playback of time ranges that combine both qualities is silent, so stripping audio from the sub stream also silences the merged timeline.
:::
### Which stream do features use?
As a general rule, features that read recordings prefer the main stream and fall back to the sub stream for time ranges where the main recordings have expired. Analytics features use only the main stream.
| Feature | Stream used |
| ---------------------------------------------------------------------------------------- | ------------------------------------------------------------------------------------------------------------- |
| Recording playback (History and Review) | Both (main preferred with sub fallback by default), or exactly one stream when a quality is selected manually |
| Tracking details and Explore clip playback | Main, falling back to sub where the main recordings have expired |
| Exports and clip downloads | Main; sub is used when no main recordings remain in the range (streams are never mixed in one file) |
| Frames grabbed from a recording in History (download snapshot, submit frame to Frigate+) | Main preferred, sub fallback |
| Audio extraction (e.g., transcription) | Main preferred, sub fallback |
| Motion search | Main only |
| Review timeline motion data | Main only |
| Storage usage statistics | Both streams counted, and listed separately per camera |
This table covers only features that read recordings from disk. Tracked object snapshots and thumbnails (the images shown in Explore and sent with notifications, and the images submitted to Frigate+ from a tracked object) are captured live from the `detect` stream as the object is tracked, never from recordings, so sub stream recording does not affect them.
### Trade-offs
- Recording a second stream increases overall storage use. The increase is typically small relative to the main recordings, since the low quality stream is much smaller.
- The go2rtc transcode approach continuously encodes the low quality stream, which uses CPU or GPU resources. This cost only applies to the transcode path; recording the camera's native sub stream does not re-encode. See the [go2rtc hardware acceleration documentation](https://github.com/AlexxIT/go2rtc?tab=readme-ov-file#source-ffmpeg) for accelerating the transcode.
- Many camera sub streams do not include audio. If the source stream has no audio, the low quality recordings will not have audio.
- **Matching video codecs and audio settings between the two streams gives the smoothest playback.** When playback combines both qualities on one timeline (the default `Auto` behavior: for example original quality during events with low quality in between, or low quality history after the original recordings expire) and the streams use different video codecs or audio settings, for example H.265 on the main stream and H.264 on the sub stream, or 16 kHz audio on one and 8 kHz on the other, playback still works: Frigate inserts a decoder reset at each quality transition, which can cause a barely-perceptible pause there. Configuring both streams in the camera's firmware to use the same video codec, audio codec, and sample rate makes transitions fully seamless, and a mismatched audio sample rate can also be corrected with [sub stream output args](#sub-stream-output-args). If one stream has audio and the other does not, combined time ranges play **without audio**; selecting a single quality with the playback selector always keeps that stream's audio.
## Can I have "continuous" recordings, but only at certain times?
Using Frigate UI, Home Assistant, or MQTT, cameras can be automated to only record in certain situations or at certain times.
+13 -10
View File
@@ -553,22 +553,25 @@ must be enabled in the configuration.
Topic with current state of Birdseye for a camera. Published values are `ON` and `OFF`.
### `frigate/<camera_name>/birdseye_mode/set`
### `frigate/<camera_name>/birdseye_modes/set`
Topic to set Birdseye mode for a camera. Birdseye offers different modes to customize under which circumstances the camera is shown.
Topic to set the Birdseye activity types for a camera. Send one uppercase activity type or combine multiple types with commas, for example `MOTION,ALERTS`.
_Note: Changing the value from `CONTINUOUS` -> `MOTION | OBJECTS` will take up to 30 seconds for
_Note: Changing the value from `CONTINUOUS` to non-continuous activity types will take up to 30 seconds for
the camera to be removed from the view._
| Command | Description |
| ------------ | ----------------------------------------------------------------- |
| `CONTINUOUS` | Always included |
| `MOTION` | Show when detected motion within the last 30 seconds are included |
| `OBJECTS` | Shown if an active object tracked within the last 30 seconds |
| Command | Description |
| ------------- | ---------------------------------------------------------------- |
| `CONTINUOUS` | Always included |
| `MOTION` | Shown if motion was detected within the last 30 seconds |
| `ALL_OBJECTS` | Shown if a tracked object was present within the last 30 seconds |
| `ALERTS` | Shown while an alert review item is in progress |
| `DETECTIONS` | Shown while a detection review item is in progress |
| `NONE` | Never included |
### `frigate/<camera_name>/birdseye_mode/state`
### `frigate/<camera_name>/birdseye_modes/state`
Topic with current state of the Birdseye mode for a camera. Published values are `CONTINUOUS`, `MOTION`, `OBJECTS`.
Topic with the current Birdseye activity types for a camera. Multiple enabled types are published as a comma-separated value in the order `CONTINUOUS`, `MOTION`, `ALL_OBJECTS`, `ALERTS`, `DETECTIONS`. `NONE` is published when no activity types are enabled.
### `frigate/<camera_name>/notifications/set`
+5 -7
View File
@@ -66,19 +66,17 @@ An FFmpeg message meaning it probed the stream but never saw enough decodable vi
## Recording
<FaqItem id="no-new-recording-segments" question="No new recording segments were created (or: No new valid recording segments were created / No valid segments created since last invalid segment) for <camera> in the last 120s">
<FaqItem id="no-new-recording-segments" question="No new recording segments were created for <camera> in the last 120s">
Frigate's record watchdog is restarting the record FFmpeg process because the camera stopped producing usable recordings. The wording distinguishes the cases: `No new recording segments` means no new segment file reached the cache, so ffmpeg isn't getting video out of the record stream; the two `valid` variants mean recordings are arriving but keep failing validation. Either way the fault is on the camera or network side, and the restart is Frigate trying to recover.
Frigate's record watchdog is restarting the record FFmpeg process because no valid segment has reached the cache. This means the record stream is not connecting or the segments are being rejected (see the audio-codec entry below).
See [Recordings: no new recording segments were created](/troubleshooting/recordings#no-new-recording-segments-were-created).
See [Recordings: the record stream isn't connecting](/troubleshooting/recordings#the-record-stream-isnt-connecting).
</FaqItem>
<FaqItem id="invalid-or-missing-video-stream-in-segment" question="Invalid or missing video stream in segment. Discarding. / Discarding a corrupt recording segment / Failed to probe corrupt segment / Invalid recording segment detected">
<FaqItem id="invalid-or-missing-video-stream-in-segment" question="Invalid or missing video stream in segment. Discarding.">
A cached recording segment failed validation and was deleted, either because it had no readable video stream or because its length was impossible. This nearly always means the camera stopped sending usable video partway through the segment: a camera that rebooted, dropped the connection, or ran out of simultaneous connections, or an unreliable link such as WiFi or a failing switch port. Broken camera timestamps (a "Smart Codec" / H.264+ mode) cause the corrupt-segment variants. The same stream failure trips the record watchdog, so the restarts above usually appear alongside these messages.
See [Recordings: invalid or missing video stream in segment](/troubleshooting/recordings#invalid-or-missing-video-stream-in-segment).
A cached recording segment failed validation (no readable video stream) and was deleted. The most common cause is a segment that was truncated because the record FFmpeg process was killed mid-write, so this often appears alongside, and as a consequence of, the record-stream restarts above. A segment containing only audio triggers it too.
</FaqItem>
+1 -41
View File
@@ -3,31 +3,7 @@ id: cpu
title: High CPU Usage
---
High CPU usage can impact Frigate's performance and responsiveness. This guide explains how to interpret the CPU values Frigate reports and outlines the most effective configuration changes to help reduce CPU consumption and optimize resource usage.
## Understanding Frigate's Reported CPU Usage
Frigate's CPU percentages often look much higher than what the host reports. Usually both numbers are correct and are simply measured against different denominators, so confirm you actually have a problem before tuning anything.
### Per-process values are relative to a single core
The values Frigate reports for FFmpeg, capture, detect, detector, and other processes follow the same convention as `top`: 100% means one CPU core is fully saturated, not that the whole system is saturated. A multithreaded process such as FFmpeg can legitimately report well over 100%.
Host and hypervisor tools instead report a percentage of the machine's total capacity across all cores. This includes `docker stats`, the `htop` summary, the Proxmox summary graph, the Unraid dashboard, Synology Resource Monitor, and Home Assistant's system monitor sensors. To reconcile the two:
```
host percentage ≈ (sum of Frigate's process percentages) / (number of cores)
```
On a 4 core system, an FFmpeg process reporting 100% is consuming one quarter of the machine, so the host will show roughly 25 to 30% once the remaining Frigate processes are included. That same 100% on a 16 core system is about 6%. Frigate's own warning thresholds use the per-core convention as well, so an FFmpeg process is flagged at 20% of a single core, not 20% of the system.
### Instantaneous samples and averages measure different things
Frigate collects stats every 15 seconds, and the `cpu` value covers only the interval since the previous collection. The `cpu_average` value in the stats API and MQTT payload is the average across the entire life of the process, and it is what the high CPU usage warnings are based on. Host dashboards generally plot data averaged over a longer window, so a single Frigate sample can show a peak that a host graph never displays. A process that has just started, such as FFmpeg after a camera reconnect, reports 0 until it has been sampled twice.
### The system-wide value depends on what the container can see
The system CPU value is read from `/proc/stat`. Under Docker that file belongs to the host, so the value covers the entire machine including workloads unrelated to Frigate, and it will not match `docker stats` for the Frigate container. Under an LXC container, lxcfs virtualizes `/proc/stat` and the value reflects only the cores assigned to the container. In a virtual machine, the guest sees only its assigned vCPUs while the hypervisor divides by every physical thread on the node, so guest and host percentages will not agree even when both are accurate.
High CPU usage can impact Frigate's performance and responsiveness. This guide outlines the most effective configuration changes to help reduce CPU consumption and optimize resource usage.
## 1. Hardware Acceleration for Video Decoding
@@ -96,19 +72,3 @@ The model you use significantly impacts detector performance. Frigate provides d
- Larger models (640x640): Slower inference, can sometimes have higher accuracy on very large objects that take up a majority of the frame.
For more detail on picking the right size, see [Choosing a model size](../configuration/object_detectors.md#choosing-a-model-size).
## 3. Reducing Detector CPU Usage
**Priority: High**
The **Detector CPU Usage** metric measures the CPU spent converting frames into the tensor format the model expects and post-processing the model's output. It does not include inference, so this value can be high even when you've configured a GPU, NPU, or Coral for object detection.
This metric scales with how many detections per second Frigate runs and how expensive each one is to prepare. Tuning [motion detection](../configuration/motion_detection) is usually the first recommendation to reduce the number of detections. Additionally, you can:
- **Lower `detect -> fps`.** 5 is the recommended value for nearly all cameras. Running at 10 doubles the frames eligible for detection and is one of the largest contributors to this metric.
- **Use a 320x320 model.** A 640x640 model has 4 times as many pixels to transpose, convert, and copy on every inference.
- **Prefer a model that takes integer input.** Models configured with `input_dtype: float` require each frame to be converted to float32 and normalized on the CPU first. Models taking `int` input, such as the tflite models used by the Edge TPU, skip that step.
- **Do not match the detect resolution to the model resolution.** The detect stream should match your camera's aspect ratio, for example `1280x720`, not the model's input size. Frigate crops and scales regions of motion itself, so an oversized detect stream only adds work.
- **Tune stationary object behavior.** Objects that never settle into a stationary state are re-detected continuously. Raising `detect -> stationary -> interval` reduces how often detection runs on objects that are already parked. See [stationary objects](../configuration/stationary_objects).
Adding [more detector instances](#multiple-detector-instances) spreads this work across more CPU cores, but does not reduce the total CPU used.
-6
View File
@@ -133,12 +133,6 @@ cameras:
height: 720
```
### What is the `version` key in my config file?
`version` records the config format that your config was last migrated to. On startup Frigate compares it against the format the running version expects, and if it is older it copies your config to `/config/backup_config.yaml`, rewrites it to the new format, and updates `version` as the final step. A config with no `version` key is assumed to predate 0.14 and is migrated from there.
Frigate manages this key for you, so do not set or edit it. Raising it makes Frigate skip migrations your config still needs, and lowering it re-runs migrations against config that has already been converted. Either can leave you with a config that no longer validates.
### Why does Frigate keep creating new tracked objects for my parked car?
Stationary tracking is designed to _prevent_ this: a parked car should remain a single tracked object rather than generating new ones. If you're repeatedly getting new tracked objects for the same car, it's likely that Frigate is losing the object and re-detecting it as a new one.
-44
View File
@@ -209,50 +209,6 @@ If the record stream uses a "Smart Codec"/H.264+ mode or changes encoding parame
</FaqItem>
<FaqItem id="invalid-or-missing-video-stream-in-segment" question="I see the message: WARNING : Invalid or missing video stream in segment ... Discarding.">
Every recording segment is validated before it leaves the cache. Frigate probes each finished `.mp4` in `/tmp/cache` and requires a readable video stream and a valid duration before moving to storage. A segment that fails is deleted, so those ~10 seconds of footage are lost. Three messages come from this check:
- `Invalid or missing video stream in segment <path>. Discarding.` The segment holds no video, or could not be read at all.
- `Failed to probe corrupt segment <path>` followed by `Discarding a corrupt recording segment: <path>`. The segment was read, but its length could not be determined.
- `Discarding a corrupt recording segment: <path>` on its own. The segment's length is impossible (empty, or longer than ten minutes), which points at broken timestamps coming from the camera.
For each one, the camera watchdog also logs `Invalid recording segment detected for <camera> at <timestamp>`.
:::warning
This is almost always a **camera or network problem**, not a Frigate one. A segment is only complete once ffmpeg has finished writing it, so anything that interrupts the stream partway through leaves behind a file that cannot be saved. Frigate is reporting the interruption, not causing it.
:::
#### Start with the camera and the network
- **The camera dropped the connection.** Cameras reboot, reinitialize their stream when switching to night mode, and cut clients off when they are overloaded or out of simultaneous connections. Count everything pulling from the camera at once: Frigate's detect and record streams, go2rtc, a phone app, and any other NVR each use one. Routing all roles through a single [RTSP restream](/configuration/restream#reduce-connections-to-camera) so the camera only ever sees one connection often resolves this by itself.
- **The link to the camera is unreliable.** WiFi cameras, powerline adapters, a saturated uplink, a failing switch port, or a marginal cable all produce this pattern, and usually only on one camera at a time. WiFi cameras are [not recommended](https://ipcamtalk.com/threads/multiple-cameras-high-bandwidth.77100/#post-861110).
- **The camera cannot reliably send what it is being asked for.** A high bitrate 4K stream can be more than the camera's own hardware can encode and push out under load. Lower the bitrate, or record a lower-resolution profile.
- **The camera is using a "Smart Codec", H.264+, or H.265+ mode.** These change encoding parameters mid-stream and produce the broken timestamps behind the corrupt-segment variant. Turn the mode off and set the camera's keyframe interval equal to its frame rate. See [Segments are only ~1 second long](#segments-are-only-1-second-long).
Read the rest of the Frigate and/or go2rtc log around the **first** occurrence. When the camera or the network is at fault, other messages show up with it, such as `No frames received from <camera> in 20 seconds`, `Non-monotonic DTS`, `RTP: PT=xx: bad cseq`, `error while decoding MB`, or a connection timeout. Each of those is explained in [Common error messages](/troubleshooting/common_errors). To confirm the camera is the source, open its stream in the [go2rtc web interface](/troubleshooting/go2rtc) on port `1984` or play the same URL in VLC, and leave it running long enough for the failures to happen again.
#### If the camera and network check out
- **Audio the recording cannot store.** Some cameras send G.711 audio, which cannot be saved in an MP4 and stops segments from finalizing. See [Incompatible audio codec](#incompatible-audio-codec-recordings-silently-fail-to-save).
- **Frigate itself was stopped or restarted.** A single warning per camera around a restart is expected and needs no action.
- **The system ran out of room or memory.** A full `/tmp/cache`, or the host killing Frigate for using too much memory, cuts off the segment being written. Both leave other errors in the log alongside this one. See [No space left on device](#errno-28-no-space-left-on-device).
</FaqItem>
<FaqItem id="no-new-recording-segments-were-created" question="I see the message: ERROR : No new recording segments were created for <camera> in the last 120s. Restarting the ffmpeg record process...">
When a camera stops producing usable recordings for two minutes, Frigate restarts that camera's record process to try to recover. The wording tells you how far the recordings got:
- **`No new recording segments were created`**: no new segment file showed up in the cache at all, so ffmpeg isn't getting video out of the record stream. The camera is unreachable or refusing the connection, the stream URL, path, or credentials are wrong, or the camera accepted the connection and then sent nothing. See [The record stream isn't connecting](#the-record-stream-isnt-connecting).
- **`No new valid recording segments were created`** and **`No valid segments created since last invalid segment`**: recordings are arriving, but they keep failing validation, so the camera is sending video that cannot be saved. See [Invalid or missing video stream in segment](#invalid-or-missing-video-stream-in-segment) above.
The restart is Frigate recovering from a problem, not causing one. One of these after a camera reboot or a brief network drop is normal. Seeing them repeat every couple of minutes means the camera or the network is still failing, and the restarts can extend the damage, because each one cuts off the segment that was being written. Work from the earliest failure in that camera's log rather than from the restarts.
</FaqItem>
<FaqItem id="i-see-the-message-warning--unable-to-keep-up-with-recording-segments-in-cache-for-camera-keeping-the-5-most-recent-segments-out-of-6-and-discarding-the-rest" question="I see the message: WARNING : Unable to keep up with recording segments in cache for camera. Keeping the 5 most recent segments out of 6 and discarding the rest...">
This warning means the recording maintainer cannot move recording segments from the RAM cache to disk fast enough. When the cache fills up, Frigate discards the oldest segments to avoid running out of memory and crashing, so you lose recorded footage. This is almost always a storage throughput or system resource problem. Work through the steps below to identify which.
+176 -13
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@@ -713,7 +713,7 @@ paths:
| `improve_contrast` | `ON`, `OFF` |
| `ptz_autotracker` | `ON`, `OFF` |
| `birdseye` | `ON`, `OFF` |
| `birdseye_mode` | `CONTINUOUS`, `MOTION`, `OBJECTS` |
| `birdseye_modes` | `CONTINUOUS`, `MOTION`, `ALL_OBJECTS`, `ALERTS`, `DETECTIONS`, `NONE`, or a comma-separated combination |
| `motion_contour_area` | integer |
| `motion_threshold` | integer |
| `motion_mask` | `ON`, `OFF` |
@@ -803,7 +803,7 @@ paths:
| `improve_contrast` | `ON`, `OFF` |
| `ptz_autotracker` | `ON`, `OFF` |
| `birdseye` | `ON`, `OFF` |
| `birdseye_mode` | `CONTINUOUS`, `MOTION`, `OBJECTS` |
| `birdseye_modes` | `CONTINUOUS`, `MOTION`, `ALL_OBJECTS`, `ALERTS`, `DETECTIONS`, `NONE`, or a comma-separated combination |
| `motion_contour_area` | integer |
| `motion_threshold` | integer |
| `motion_mask` | `ON`, `OFF` |
@@ -1476,7 +1476,7 @@ paths:
- Classification
summary: Get custom classification attributes
description: |-
**Access:** Authenticated user with access to all cameras.
**Access:** Admin role required.
Returns custom classification attributes for a given object type.
Only includes models with classification_type set to 'attribute'.
@@ -1510,8 +1510,8 @@ paths:
schema:
$ref: '#/components/schemas/HTTPValidationError'
security:
- frigateUserAuth: []
x-required-role: all_cameras
- frigateAdminAuth: []
x-required-role: admin
/classification/{name}/train:
get:
tags:
@@ -2308,15 +2308,15 @@ paths:
$ref: '#/components/schemas/HTTPValidationError'
security:
- frigateUserAuth: []
x-required-role: camera
description: '**Access:** Authenticated user with access to the referenced camera.'
x-required-role: any
description: '**Access:** Any authenticated user.'
/review/summarize/start/{start_ts}/end/{end_ts}:
post:
tags:
- Review
summary: Generate Review Summary
description: |-
**Access:** Authenticated user with access to all cameras.
**Access:** Admin role required.
Use GenAI to summarize review items over a period of time.
operationId:
@@ -2347,8 +2347,8 @@ paths:
schema:
$ref: '#/components/schemas/HTTPValidationError'
security:
- frigateUserAuth: []
x-required-role: all_cameras
- frigateAdminAuth: []
x-required-role: admin
/:
get:
tags:
@@ -2946,6 +2946,44 @@ paths:
- frigateUserAuth: []
x-required-role: any
description: '**Access:** Any authenticated user.'
/categorized_object_names:
get:
tags:
- App
summary: Get known object names by object type
description: |-
**Access:** Any authenticated user.
Returns the sub labels and attributes this install can attach,
grouped by object type. Unlike /sub_labels, which reflects what has already been
detected, this reads the config and model files, so it covers recognized face
names, named license plates, custom object classification categories, and the
detector attributes of tracked objects.
operationId: categorized_object_names_categorized_object_names_get
parameters:
- name: object_type
in: query
required: false
schema:
anyOf:
- type: string
- type: 'null'
title: Object Type
responses:
'200':
description: Successful Response
content:
application/json:
schema: {}
'422':
description: Validation Error
content:
application/json:
schema:
$ref: '#/components/schemas/HTTPValidationError'
security:
- frigateUserAuth: []
x-required-role: any
/audio_labels:
get:
tags:
@@ -5984,6 +6022,65 @@ paths:
security:
- frigateUserAuth: []
x-required-role: camera
/vod/{camera_name}/{stream}/start/{start_ts}/end/{end_ts}:
get:
tags:
- Media
summary: Vod Ts Stream
description: |-
**Access:** Authenticated user with access to the referenced camera.
Returns an HLS playlist pinned to one stream type (main or sub) for the specified timestamp-range on the specified camera. Append /master.m3u8 or /index.m3u8 for HLS playback.
operationId:
vod_ts_stream_vod__camera_name___stream__start__start_ts__end__end_ts__get
parameters:
- name: camera_name
in: path
required: true
schema:
anyOf:
- type: string
- type: 'null'
title: Camera Name
- name: stream
in: path
required: true
schema:
$ref: '#/components/schemas/VodStreamPreference'
- name: start_ts
in: path
required: true
schema:
type: number
title: Start Ts
- name: end_ts
in: path
required: true
schema:
type: number
title: End Ts
- name: force_discontinuity
in: query
required: false
schema:
type: boolean
default: false
title: Force Discontinuity
responses:
'200':
description: Successful Response
content:
application/json:
schema: {}
'422':
description: Validation Error
content:
application/json:
schema:
$ref: '#/components/schemas/HTTPValidationError'
security:
- frigateUserAuth: []
x-required-role: camera
/events/{event_id}/snapshot.jpg:
get:
tags:
@@ -6922,6 +7019,63 @@ paths:
security:
- frigateUserAuth: []
x-required-role: camera
/{camera_name}/recordings/coverage:
get:
tags:
- Recordings
summary: Recordings Coverage
description: |-
**Access:** Authenticated user with access to the referenced camera.
Returns merged recording coverage spans plus codec compatibility.
codecs_compatible is false only when more than one known video codec
appears across the range's rows, the case where the merged vod route
degrades to a single-stream manifest.
operationId: recordings_coverage__camera_name__recordings_coverage_get
parameters:
- name: camera_name
in: path
required: true
schema:
anyOf:
- type: string
- type: 'null'
title: Camera Name
- name: after
in: query
required: true
schema:
type: number
title: After
- name: before
in: query
required: true
schema:
type: number
title: Before
- name: timelines
in: query
required: false
schema:
type: boolean
default: false
title: Timelines
responses:
'200':
description: Successful Response
content:
application/json:
schema: {}
'422':
description: Validation Error
content:
application/json:
schema:
$ref: '#/components/schemas/HTTPValidationError'
security:
- frigateUserAuth: []
x-required-role: camera
/{camera_name}/recordings:
get:
tags:
@@ -7109,9 +7263,7 @@ paths:
schema:
$ref: '#/components/schemas/DebugReplayStartResponse'
'400':
description: Invalid camera or time range
'404':
description: No recordings in the requested time range
description: Invalid camera, time range, or no recordings
'409':
description: A replay session is already active
'422':
@@ -8905,6 +9057,17 @@ components:
- msg
- type
title: ValidationError
VodStreamPreference:
type: string
enum:
- main
- sub
title: VodStreamPreference
description: |-
Stream pin for the path-segment VOD route.
nginx-vod derives its mapping fetch URI from the playlist URL path
(query params are dropped), so the preference must be a path segment.
securitySchemes:
frigateAdminAuth:
type: apiKey
+23
View File
@@ -71,6 +71,7 @@ from frigate.util.config import (
find_config_file,
redact_credential,
)
from frigate.util.object_names import get_categorized_object_names
from frigate.util.schema import get_config_schema
from frigate.util.services import (
get_nvidia_driver_info,
@@ -1313,6 +1314,28 @@ def get_sub_labels(
return JSONResponse(content=sub_labels)
@router.get(
"/categorized_object_names",
dependencies=[Depends(allow_any_authenticated())],
summary="Get known object names by object type",
description="""Returns the sub labels and attributes this install can attach,
grouped by object type. Unlike /sub_labels, which reflects what has already been
detected, this reads the config and model files, so it covers recognized face
names, named license plates, custom object classification categories, and the
detector attributes of tracked objects.""",
)
def categorized_object_names(
request: Request,
object_type: str | None = None,
allowed_cameras: list[str] = Depends(get_allowed_cameras_for_filter),
):
return JSONResponse(
content=get_categorized_object_names(
request.app.frigate_config, allowed_cameras, object_type
)
)
@router.get("/audio_labels", dependencies=[Depends(allow_any_authenticated())])
def get_audio_labels():
labels = load_labels("/audio-labelmap.txt", prefill=521)
+4 -26
View File
@@ -83,9 +83,9 @@ def require_admin_by_default():
"/nvinfo",
"/labels",
"/sub_labels",
"/categorized_object_names",
"/plus/models",
"/recognized_license_plates",
"/classification/attributes",
"/timeline",
"/timeline/hourly",
"/recordings/storage",
@@ -972,7 +972,6 @@ def delete_user(request: Request, username: str):
summary="Update user password",
description="Updates a user's password. Users can only change their own password unless they have admin role. Requires the current password to verify identity for non-admin users. Password must be at least 12 characters long. If user changes their own password, a new JWT cookie is automatically issued.",
)
@limiter.limit(limit_value=rateLimiter.get_limit)
async def update_password(
request: Request,
username: str,
@@ -986,11 +985,10 @@ async def update_password(
current_username = current_user.get("username")
current_role = current_user.get("role")
# Only admins may target another account. This has to cover every non-admin
# role rather than just viewer, since custom roles are arbitrary names
if current_role != "admin" and current_username != username:
# viewers can only change their own password
if current_role == "viewer" and current_username != username:
raise HTTPException(
status_code=403, detail="Users can only update their own password"
status_code=403, detail="Viewers can only update their own password"
)
HASH_ITERATIONS = request.app.frigate_config.auth.hash_iterations
@@ -1254,23 +1252,3 @@ async def get_allowed_cameras_for_filter(request: Request):
all_camera_names = set(request.app.frigate_config.cameras.keys())
roles_dict = request.app.frigate_config.auth.roles
return User.get_allowed_cameras(role, roles_dict, all_camera_names)
async def require_full_camera_access(
request: Request,
allowed_cameras: list[str] = Depends(get_allowed_cameras_for_filter),
):
"""Dependency for endpoints returning data that spans every camera.
Some responses cannot be meaningfully scoped to a subset of cameras, so
rather than filter them the endpoint is limited to callers who can already
see every camera. Admin and viewer always qualify; a custom role qualifies
only when its camera list covers all configured cameras.
"""
all_camera_names = set(request.app.frigate_config.cameras.keys())
if not all_camera_names.issubset(allowed_cameras):
raise HTTPException(
status_code=403,
detail="Access to all cameras is required for this endpoint",
)
+38 -1
View File
@@ -651,6 +651,32 @@ async def _connect_onvif_camera(
raise first_error
def _supports_continuous_pan_tilt(nodes) -> bool:
"""Whether any PTZ node advertises continuous pan/tilt velocity.
The web UI's directional controls issue ContinuousMove with a PanTilt
velocity, so continuous pan/tilt is what makes those controls usable. This
is intentionally narrower than ptz_supported, which is true for any device
exposing the ONVIF PTZ service - including zoom/focus-only varifocal lenses.
"""
for node in nodes or []:
spaces = getattr(node, "SupportedPTZSpaces", None) or (
node.get("SupportedPTZSpaces") if isinstance(node, dict) else None
)
if spaces is None:
continue
continuous = getattr(spaces, "ContinuousPanTiltVelocitySpace", None) or (
spaces.get("ContinuousPanTiltVelocitySpace")
if isinstance(spaces, dict)
else None
)
if continuous:
return True
return False
@router.get(
"/onvif/probe",
dependencies=[Depends(require_role(["admin"]))],
@@ -808,6 +834,7 @@ async def onvif_probe(
# Check PTZ support and capabilities
ptz_supported = False
pan_tilt_supported = False
presets_count = 0
autotrack_supported = False
@@ -841,6 +868,15 @@ async def onvif_probe(
logger.debug(f"Failed to get presets: {e}")
presets_count = 0
# Check for real (continuous) pan/tilt, which the UI controls need
if ptz_supported:
try:
nodes = await ptz_service.GetNodes()
pan_tilt_supported = _supports_continuous_pan_tilt(nodes)
logger.debug(f"Continuous pan/tilt supported: {pan_tilt_supported}")
except Exception as e:
logger.debug(f"Failed to read PTZ nodes for pan/tilt support: {e}")
# Check for autotracking support - requires both FOV relative movement and MoveStatus
if ptz_supported and first_profile_token and ptz_config_token:
# First check for FOV relative movement support
@@ -960,6 +996,7 @@ async def onvif_probe(
"firmware_version": device_info["firmware_version"],
"profiles_count": profiles_count,
"ptz_supported": ptz_supported,
"pan_tilt_supported": pan_tilt_supported,
"presets_count": presets_count,
"autotrack_supported": autotrack_supported,
}
@@ -1349,7 +1386,7 @@ def camera_set(
| `improve_contrast` | `ON`, `OFF` |
| `ptz_autotracker` | `ON`, `OFF` |
| `birdseye` | `ON`, `OFF` |
| `birdseye_mode` | `CONTINUOUS`, `MOTION`, `OBJECTS` |
| `birdseye_modes` | `CONTINUOUS`, `MOTION`, `ALL_OBJECTS`, `ALERTS`, `DETECTIONS`, `NONE`, or a comma-separated combination |
| `motion_contour_area` | integer |
| `motion_threshold` | integer |
| `motion_mask` | `ON`, `OFF` |
+27 -4
View File
@@ -50,6 +50,7 @@ from frigate.jobs.vlm_watch import (
stop_vlm_watch_job,
)
from frigate.models import Event
from frigate.util.object_names import get_categorized_object_names
logger = logging.getLogger(__name__)
@@ -539,6 +540,11 @@ async def execute_tool(
if tool_name == "search_objects":
return await _execute_search_objects(request, arguments, allowed_cameras)
if tool_name == "get_categorized_object_names":
return JSONResponse(
content=_execute_get_categorized_object_names(request, allowed_cameras)
)
if tool_name == "find_similar_objects":
result = await _execute_find_similar_objects(
request, arguments, allowed_cameras
@@ -591,7 +597,7 @@ async def _execute_get_live_context(
try:
frame_processor = request.app.detected_frames_processor
camera_state = frame_processor.camera_states.get(camera)
camera_state = frame_processor.get_camera_state(camera)
if camera_state is None:
return {
@@ -655,7 +661,7 @@ async def _get_live_frame_image_url(
return None
try:
frame_processor = request.app.detected_frames_processor
if camera not in frame_processor.camera_states:
if frame_processor.get_camera_state(camera) is None:
return None
frame = frame_processor.get_current_frame(camera, {})
if frame is None:
@@ -717,6 +723,21 @@ async def _execute_set_camera_state(
return {"success": True, "camera": camera, "feature": feature, "value": value}
def _execute_get_categorized_object_names(
request: Request,
allowed_cameras: list[str],
) -> dict[str, Any]:
names = get_categorized_object_names(request.app.frigate_config, allowed_cameras)
if not names:
return {
"names": {},
"message": "No names configured; search by label or semantic_query.",
}
return {"names": names}
async def _execute_tool_internal(
tool_name: str,
arguments: dict[str, Any],
@@ -741,6 +762,8 @@ async def _execute_tool_internal(
except (json.JSONDecodeError, AttributeError) as e:
logger.warning(f"Failed to extract tool result: {e}")
return {"error": "Failed to parse tool result"}
elif tool_name == "get_categorized_object_names":
return _execute_get_categorized_object_names(request, allowed_cameras)
elif tool_name == "find_similar_objects":
return await _execute_find_similar_objects(request, arguments, allowed_cameras)
elif tool_name == "set_camera_state":
@@ -773,8 +796,8 @@ async def _execute_tool_internal(
else:
logger.error(
"Tool call failed: unknown tool %r. Expected one of: search_objects, find_similar_objects, "
"get_live_context, start_camera_watch, stop_camera_watch, get_profile_status, get_recap. "
"Arguments received: %s",
"get_categorized_object_names, get_live_context, start_camera_watch, stop_camera_watch, "
"get_profile_status, get_recap. Arguments received: %s",
tool_name,
json.dumps(arguments),
)
+1 -2
View File
@@ -14,7 +14,7 @@ from fastapi.responses import JSONResponse
from peewee import DoesNotExist
from playhouse.shortcuts import model_to_dict
from frigate.api.auth import require_full_camera_access, require_role
from frigate.api.auth import require_role
from frigate.api.defs.request.classification_body import (
AudioTranscriptionBody,
DeleteFaceImagesBody,
@@ -741,7 +741,6 @@ def get_classification_dataset(name: str):
@router.get(
"/classification/attributes",
dependencies=[Depends(require_full_camera_access)],
summary="Get custom classification attributes",
description="""Returns custom classification attributes for a given object type.
Only includes models with classification_type set to 'attribute'.
+1 -11
View File
@@ -13,7 +13,6 @@ from frigate.api.auth import require_role
from frigate.api.defs.tags import Tags
from frigate.jobs.debug_replay import (
ExportDebugReplaySource,
NoRecordingsError,
RecordingDebugReplaySource,
start_debug_replay_job,
)
@@ -75,8 +74,7 @@ class DebugReplayStopResponse(BaseModel):
response_model=DebugReplayStartResponse,
status_code=202,
responses={
400: {"description": "Invalid camera or time range"},
404: {"description": "No recordings in the requested time range"},
400: {"description": "Invalid camera, time range, or no recordings"},
409: {"description": "A replay session is already active"},
},
dependencies=[Depends(require_role(["admin"]))],
@@ -115,14 +113,6 @@ async def start_debug_replay(request: Request, body: DebugReplayStartBody):
},
status_code=409,
)
except NoRecordingsError:
return JSONResponse(
content={
"success": False,
"message": "No recordings found in the selected time range",
},
status_code=404,
)
except ValueError:
logger.exception("Rejected debug replay start request")
return JSONResponse(
+2 -2
View File
@@ -1313,7 +1313,7 @@ async def set_sub_label(
if request.app.detected_frames_processor:
tracked_obj: TrackedObject = None
for state in request.app.detected_frames_processor.camera_states.values():
for state in request.app.detected_frames_processor.get_camera_states():
tracked_obj = state.tracked_objects.get(event_id)
if tracked_obj is not None:
@@ -1372,7 +1372,7 @@ async def set_plate(
if request.app.detected_frames_processor:
tracked_obj: TrackedObject = None
for state in request.app.detected_frames_processor.camera_states.values():
for state in request.app.detected_frames_processor.get_camera_states():
tracked_obj = state.tracked_objects.get(event_id)
if tracked_obj is not None:
+1 -20
View File
@@ -9,7 +9,6 @@ import zipfile
from collections import deque
from collections.abc import Iterator
from pathlib import Path
from urllib.parse import quote
import psutil
from fastapi import APIRouter, Depends, Query, Request
@@ -454,22 +453,6 @@ def _stream_case_archive(exports: list[Export]) -> Iterator[bytes]:
yield from buffer.drain()
def _content_disposition(filename: str, ascii_fallback: str) -> str:
"""Build an attachment Content-Disposition that survives non-ASCII names.
Header values are encoded as latin-1, so a name outside that range cannot
go in filename at all. RFC 6266 handles this with a pair: a plain ASCII
filename for old clients, plus a percent-encoded UTF-8 filename* that
every current browser prefers.
"""
ascii_name = filename if filename.isascii() else ascii_fallback
return (
f'attachment; filename="{ascii_name}"; '
f"filename*=UTF-8''{quote(filename, safe='')}"
)
@router.get(
"/cases/{case_id}/download",
dependencies=[Depends(allow_any_authenticated())],
@@ -512,9 +495,7 @@ def download_export_case(
_stream_case_archive(exports),
media_type="application/zip",
headers={
"Content-Disposition": _content_disposition(
f"{archive_base}.zip", f"{case_id}.zip"
),
"Content-Disposition": f'attachment; filename="{archive_base}.zip"',
},
)
+255 -128
View File
@@ -8,6 +8,7 @@ import os
import subprocess as sp
import time
from datetime import UTC, datetime, timedelta
from enum import Enum
from pathlib import Path as FilePath
from typing import Any
from urllib.parse import unquote
@@ -39,8 +40,9 @@ from frigate.config.camera.snapshots import SnapshotsConfig
from frigate.const import (
CACHE_DIR,
INSTALL_DIR,
MAX_SEGMENT_DURATION,
PREVIEW_FRAME_TYPE,
STREAM_TYPE_MAIN,
STREAM_TYPE_SUB,
)
from frigate.models import Event, Previews, Recordings, Regions, ReviewSegment
from frigate.output.preview import get_most_recent_preview_frame
@@ -52,12 +54,34 @@ from frigate.util.file import (
load_event_snapshot_image,
)
from frigate.util.image import get_image_from_recording, get_image_quality_params
from frigate.util.media import get_keyframe_before
from frigate.util.object import create_empty_regions_grid
from frigate.util.recording_coverage import (
build_spans,
null_audio_glitches,
plan_clip,
resolve_coverage,
stream_has_audio,
)
logger = logging.getLogger(__name__)
# must match the patched MAX_CLIPS in docker/main/build_nginx.sh; a
# normal hour needs ~360, one clip per recording file
NGINX_VOD_MAX_CLIPS = 1080
class VodStreamPreference(str, Enum):
"""Stream pin for the path-segment VOD route.
nginx-vod derives its mapping fetch URI from the playlist URL path
(query params are dropped), so the preference must be a path segment.
"""
main = STREAM_TYPE_MAIN
sub = STREAM_TYPE_SUB
router = APIRouter(tags=[Tags.media])
@@ -319,7 +343,7 @@ async def get_snapshot_from_recording(
& (frame_time <= Recordings.end_time)
)
.where(Recordings.camera == camera_name)
.order_by(Recordings.start_time.desc())
.order_by(Recordings.stream_type.asc(), Recordings.start_time.desc())
.limit(1)
.get()
)
@@ -338,7 +362,7 @@ async def get_snapshot_from_recording(
& (frame_time <= Recordings.end_time)
)
.where(Recordings.camera == camera_name)
.order_by(Recordings.start_time.desc())
.order_by(Recordings.stream_type.asc(), Recordings.start_time.desc())
.limit(1)
.get()
)
@@ -398,7 +422,7 @@ async def submit_recording_snapshot_to_plus(
(frame_time >= Recordings.start_time) & (frame_time <= Recordings.end_time)
)
.where(Recordings.camera == camera_name)
.order_by(Recordings.start_time.desc())
.order_by(Recordings.stream_type.asc(), Recordings.start_time.desc())
.limit(1)
)
@@ -472,20 +496,29 @@ async def recording_clip(
FilePath(file_path).unlink(missing_ok=True)
break
recordings = (
Recordings.select(
Recordings.path,
Recordings.start_time,
Recordings.end_time,
def get_clip_query(stream_type: str):
return (
Recordings.select(
Recordings.path,
Recordings.start_time,
Recordings.end_time,
)
.where(
(Recordings.start_time.between(start_ts, end_ts))
| (Recordings.end_time.between(start_ts, end_ts))
| ((start_ts > Recordings.start_time) & (end_ts < Recordings.end_time))
)
.where(Recordings.camera == camera_name)
.where(Recordings.stream_type == stream_type)
.order_by(Recordings.start_time.asc())
)
.where(
(Recordings.start_time.between(start_ts, end_ts))
| (Recordings.end_time.between(start_ts, end_ts))
| ((start_ts > Recordings.start_time) & (end_ts < Recordings.end_time))
)
.where(Recordings.camera == camera_name)
.order_by(Recordings.start_time.asc())
)
# never mix streams in one concat; use main when available and
# fall back to sub for expired-main history
recordings = get_clip_query(STREAM_TYPE_MAIN)
if recordings.count() == 0:
recordings = get_clip_query(STREAM_TYPE_SUB)
if recordings.count() == 0:
return JSONResponse(
@@ -549,17 +582,60 @@ async def recording_clip(
)
@router.get(
"/vod/{camera_name}/start/{start_ts}/end/{end_ts}",
dependencies=[Depends(require_camera_access)],
description="Returns an HLS playlist for the specified timestamp-range on the specified camera. Append /master.m3u8 or /index.m3u8 for HLS playback.",
)
async def vod_ts(
def _build_vod_clip(
row: Any, start: float, end: float
) -> tuple[dict[str, Any], int] | None:
"""Build one nginx-vod clip dict + duration (ms) for a recording row trimmed to [start, end).
Realization comes entirely from the shared plan_clip, so the coverage
endpoint's realized timelines match this manifest by construction.
"""
plan = plan_clip(row, start, end)
if plan.skipped:
return None
clip: dict[str, Any] = {"type": "source", "path": row.path}
if plan.clip_from_ms is not None:
clip["clipFrom"] = plan.clip_from_ms
if plan.key_frame_durations is not None:
# real gaps enable keyframe-aligned sub-file segments (bootstrap
# ladder); the whole-clip fallback keeps one segment per file,
# the only safe cut without an index
if plan.first_key_frame_offset_ms > 0:
clip["firstKeyFrameOffset"] = plan.first_key_frame_offset_ms
clip["keyFrameDurations"] = plan.key_frame_durations
else:
clip["keyFrameDurations"] = [plan.duration_ms]
logger.debug(
"VOD: added clip %s duration_ms=%s clipFrom=%s",
row.path,
plan.duration_ms,
clip.get("clipFrom"),
)
return clip, plan.duration_ms
async def _vod_response(
camera_name: str,
start_ts: float,
end_ts: float,
force_discontinuity: bool = False,
):
stream_preference: str | None = None,
) -> JSONResponse:
"""Build an nginx-vod mapping JSON for a camera over a timestamp range.
Always a single-sequence mapping; quality selection happens in the
frontend by choosing between this route and the stream-pinned routes.
Args:
camera_name: The camera to build the mapping for
start_ts: Range start as a unix timestamp
end_ts: Range end as a unix timestamp
force_discontinuity: Emit HLS discontinuity markers between clips
stream_preference: Pin the manifest to one stream type ("main" or
"sub"), serving only that stream's recordings
"""
logger.debug(
"VOD: Generating VOD for %s from %s to %s with force_discontinuity=%s",
camera_name,
@@ -567,104 +643,85 @@ async def vod_ts(
end_ts,
force_discontinuity,
)
recordings = (
Recordings.select(
Recordings.path,
Recordings.duration,
Recordings.end_time,
Recordings.start_time,
)
.where(
Recordings.start_time.between(start_ts, end_ts)
| Recordings.end_time.between(start_ts, end_ts)
| ((start_ts > Recordings.start_time) & (end_ts < Recordings.end_time))
)
.where(Recordings.camera == camera_name)
.order_by(Recordings.start_time.asc())
.iterator()
intervals = resolve_coverage(camera_name, start_ts, end_ts)
# rows contradicting their stream's audio composition are
# truncated-shutdown glitches
main_audio = stream_has_audio(intervals, main=True)
sub_audio = stream_has_audio(intervals, main=False)
spans = build_spans(
null_audio_glitches(intervals, main_audio, sub_audio),
stream_preference,
)
clips = []
durations = []
min_duration_ms = 100 # Minimum 100ms to ensure at least one video frame
max_duration_ms = MAX_SEGMENT_DURATION * 1000
recording: Recordings
for recording in recordings:
durations: list[int] = []
clips: list[dict[str, Any]] = []
# gathered after glitch-nulling and span building, so the policy
# decisions below reflect the manifest's real contents
video_codecs: set[str] = set()
audio_presence: set[bool] = set()
audio_params: set[tuple[str | None, int | None]] = set()
span_streams: set[bool] = set()
for row, span_start, span_end, span_is_main in spans:
logger.debug(
"VOD: processing recording: %s start=%s end=%s duration=%s",
recording.path,
recording.start_time,
recording.end_time,
recording.duration,
row.path,
row.start_time,
row.end_time,
row.duration,
)
built = _build_vod_clip(row, span_start, span_end)
clip = {"type": "source", "path": recording.path}
duration = int(recording.duration * 1000)
# adjust start offset if start_ts is after recording.start_time
if start_ts > recording.start_time:
inpoint = int((start_ts - recording.start_time) * 1000)
clip["clipFrom"] = inpoint
duration -= inpoint
logger.debug(
"VOD: applied clipFrom %sms to %s",
inpoint,
recording.path,
)
# adjust end if recording.end_time is after end_ts
if recording.end_time > end_ts:
duration -= int((recording.end_time - end_ts) * 1000)
# nginx-vod-module pushes clipFrom forward to the next keyframe,
# which can leave too few frames and produce an empty/unplayable
# segment. Snap clipFrom back to the preceding keyframe so the
# segment always starts with a decodable frame.
if "clipFrom" in clip:
keyframe_ms = get_keyframe_before(recording.path, clip["clipFrom"])
if keyframe_ms is not None:
gained = clip["clipFrom"] - keyframe_ms
clip["clipFrom"] = keyframe_ms
duration += gained
logger.debug(
"VOD: snapped clipFrom to keyframe at %sms for %s, duration now %sms",
keyframe_ms,
recording.path,
duration,
)
else:
# could not read keyframes, remove clipFrom to use full recording
logger.debug(
"VOD: no keyframe info for %s, removing clipFrom to use full recording",
recording.path,
)
del clip["clipFrom"]
duration = int(recording.duration * 1000)
if recording.end_time > end_ts:
duration -= int((recording.end_time - end_ts) * 1000)
if duration < min_duration_ms:
# skip if the clip has no valid duration (too short to contain frames)
logger.debug(
"VOD: skipping recording %s - resulting duration %sms too short",
recording.path,
duration,
)
if built is None:
continue
if min_duration_ms <= duration < max_duration_ms:
clip["keyFrameDurations"] = [duration]
clips.append(clip)
durations.append(duration)
logger.debug(
"VOD: added clip %s duration_ms=%s clipFrom=%s",
recording.path,
duration,
clip.get("clipFrom"),
)
else:
logger.warning(f"Recording clip is missing or empty: {recording.path}")
clips.append(built[0])
durations.append(built[1])
span_streams.add(span_is_main)
if row.video_codec is not None:
video_codecs.add(row.video_codec)
audio_presence.add(row.has_audio is not False)
# legacy rows contribute no signature, so uniformly-unknown
# history keeps the legacy shape
if row.has_audio is not False and (
row.audio_codec is not None or row.audio_rate is not None
):
audio_params.add((row.audio_codec, row.audio_rate))
# nginx-vod requires a uniform track count per sequence, and adding or
# removing an audio track across an MSE discontinuity is unproven
if len(audio_presence) > 1:
logger.debug(
"VOD: %s mixes audio-bearing and audio-less recordings between "
"%s and %s; serving the range without audio",
camera_name,
start_ts,
end_ts,
)
for clip in clips:
clip["tracks"] = "v"
# discontinuity mode emits per-clip init segments, letting the decoder
# reconfigure at each boundary. Stream type counts as a signature of
# its own: the two encoders differ in SPS/PPS even when codec name and
# audio params match, and a single-init manifest then decode-fails on
# players that only configure from the init segment (iOS)
use_discontinuity = (
len(video_codecs) > 1 or len(audio_params) > 1 or len(span_streams) > 1
)
if use_discontinuity:
logger.debug(
"VOD: %s mixes media signatures between %s and %s (video codecs "
"%s, audio params %s, streams %s); serving a discontinuity "
"manifest with per-clip init segments",
camera_name,
start_ts,
end_ts,
sorted(video_codecs),
sorted(audio_params, key=str),
sorted(span_streams),
)
if not clips:
logger.error(
@@ -678,16 +735,50 @@ async def vod_ts(
status_code=404,
)
if len(clips) > NGINX_VOD_MAX_CLIPS:
logger.warning(
"VOD: %s needs %d clips between %s and %s, exceeding nginx's "
"limit of %d; playback of this range will fail. This usually "
"means the camera produced abnormally short recording segments "
"(check the stream's timestamps)",
camera_name,
len(clips),
start_ts,
end_ts,
NGINX_VOD_MAX_CLIPS,
)
# segmentation comes from the vod_* nginx directives plus per-clip
# keyFrameDurations; a segment_duration field here was always ignored
# (nginx-vod parses only camelCase segmentDuration)
hour_ago = datetime.now() - timedelta(hours=1)
return JSONResponse(
content={
"cache": hour_ago.timestamp() > start_ts,
"discontinuity": force_discontinuity,
"consistentSequenceMediaInfo": True,
"durations": durations,
"segment_duration": max(durations),
"sequences": [{"clips": clips}],
}
content = {
"cache": hour_ago.timestamp() > start_ts,
"discontinuity": force_discontinuity or use_discontinuity,
"consistentSequenceMediaInfo": True,
"durations": durations,
"sequences": [{"clips": clips}],
}
if use_discontinuity:
# clip-indexed naming is what makes nginx-vod emit per-clip
# EXT-X-MAP outside of its live mode
content["initialClipIndex"] = 1
return JSONResponse(content=content)
@router.get(
"/vod/{camera_name}/start/{start_ts}/end/{end_ts}",
dependencies=[Depends(require_camera_access)],
description="Returns an HLS playlist for the specified timestamp-range on the specified camera. Append /master.m3u8 or /index.m3u8 for HLS playback.",
)
async def vod_ts(
camera_name: str,
start_ts: float,
end_ts: float,
force_discontinuity: bool = False,
):
return await _vod_response(
camera_name, start_ts, end_ts, force_discontinuity=force_discontinuity
)
@@ -776,7 +867,43 @@ async def vod_clip(
start_ts: float,
end_ts: float,
):
return await vod_ts(camera_name, start_ts, end_ts, force_discontinuity=True)
# the tracking-details player corrects its timeline from
# sequences[0].clips[0].clipFrom
return await _vod_response(
camera_name,
start_ts,
end_ts,
force_discontinuity=True,
)
# registered after /vod/clip/... on purpose: both routes are six path
# segments, Starlette matches structurally in registration order, and the
# enum validation on {stream} would otherwise 422 every /vod/clip request
@router.get(
"/vod/{camera_name}/{stream}/start/{start_ts}/end/{end_ts}",
dependencies=[Depends(require_camera_access)],
description="Returns an HLS playlist pinned to one stream type (main or sub) for the specified timestamp-range on the specified camera. Append /master.m3u8 or /index.m3u8 for HLS playback.",
)
async def vod_ts_stream(
camera_name: str,
stream: VodStreamPreference,
start_ts: float,
end_ts: float,
force_discontinuity: bool = False,
):
"""VOD for a timestamp range pinned to one stream type.
How the frontend selects quality, now that mappings are always
single-sequence.
"""
return await _vod_response(
camera_name,
start_ts,
end_ts,
force_discontinuity=force_discontinuity,
stream_preference=stream.value,
)
@router.get(
@@ -820,7 +947,7 @@ async def event_snapshot(
# see if the object is currently being tracked
try:
camera_states: list[CameraState] = (
request.app.detected_frames_processor.camera_states.values()
request.app.detected_frames_processor.get_camera_states()
)
for camera_state in camera_states:
if event_id in camera_state.tracked_objects:
@@ -898,7 +1025,7 @@ async def event_thumbnail(
if thumbnail_bytes is None:
# see if the object is currently being tracked
try:
camera_states = request.app.detected_frames_processor.camera_states.values()
camera_states = request.app.detected_frames_processor.get_camera_states()
for camera_state in camera_states:
if event_id in camera_state.tracked_objects:
tracked_obj = camera_state.tracked_objects.get(event_id)
@@ -1127,7 +1254,7 @@ async def event_snapshot_clean(request: Request, event_id: str, download: bool =
# see if the object is currently being tracked
try:
camera_states = (
request.app.detected_frames_processor.camera_states.values()
request.app.detected_frames_processor.get_camera_states()
)
for camera_state in camera_states:
if event_id in camera_state.tracked_objects:
-102
View File
@@ -1,10 +1,8 @@
"""Notification apis."""
import ipaddress
import logging
import os
from typing import Any
from urllib.parse import urlparse
from cryptography.hazmat.primitives import serialization
from fastapi import APIRouter, Depends, Request
@@ -21,95 +19,6 @@ logger = logging.getLogger(__name__)
router = APIRouter(tags=[Tags.notifications])
# Push endpoints are opaque URLs but stay well under this in practice
MAX_ENDPOINT_LENGTH = 2048
# Suffixes that only ever resolve on the local network
INTERNAL_HOST_SUFFIXES = (".local", ".localdomain", ".internal", ".home.arpa")
def _validate_push_endpoint(endpoint: Any) -> str | None:
"""Return a reason the endpoint is unusable, or None when it is valid.
Subscriptions are issued by the browser vendor's push service, so a valid
endpoint is always a public https URL. Anything else is either a broken
registration or an attempt to aim the notification sender somewhere it
should not reach.
"""
if not isinstance(endpoint, str) or not endpoint:
return "endpoint must be a url"
if len(endpoint) > MAX_ENDPOINT_LENGTH:
return "endpoint is too long"
try:
parsed = urlparse(endpoint)
port = parsed.port
except ValueError:
return "endpoint is not a valid url"
if parsed.scheme != "https":
return "endpoint must use https"
if parsed.username or parsed.password:
return "endpoint must not include credentials"
if port is not None and port != 443:
return "endpoint must use the default https port"
hostname = parsed.hostname
if not hostname:
return "endpoint must include a hostname"
try:
address = ipaddress.ip_address(hostname)
except ValueError:
address = None
if address is not None:
# A push service is never reachable at an address only this network can
# route, so anything non-global is a misconfiguration at best
if not address.is_global:
return "endpoint must not use a private address"
elif hostname == "localhost" or "." not in hostname:
return "endpoint must use a fully qualified hostname"
elif hostname.endswith(INTERNAL_HOST_SUFFIXES):
return "endpoint must not use an internal hostname"
# The subscription token lives in the path, and webpush.py assumes there is
# a separator after the host when it builds the VAPID audience
if len(parsed.path) <= 1:
return "endpoint must include a subscription path"
return None
def _validate_subscription(sub: Any) -> str | None:
"""Return a reason the subscription is unusable, or None when it is valid."""
if not isinstance(sub, dict):
return "subscription must be an object"
reason = _validate_push_endpoint(sub.get("endpoint"))
if reason:
return reason
keys = sub.get("keys")
if not isinstance(keys, dict):
return "subscription must include keys"
# WebPusher raises on a missing key, which would break every send for the
# user rather than just this registration
for name in ("p256dh", "auth"):
value = keys.get(name)
if not isinstance(value, str) or not value:
return f"subscription keys must include {name}"
return None
@router.get(
"/notifications/pubkey",
@@ -162,17 +71,6 @@ def register_notifications(request: Request, body: dict = None):
status_code=400,
)
reason = _validate_subscription(sub)
if reason:
logger.warning(
"Rejected notification registration for %s: %s", username, reason
)
return JSONResponse(
content={"success": False, "message": f"Invalid subscription: {reason}"},
status_code=400,
)
try:
User.update(notification_tokens=User.notification_tokens.append(sub)).where(
User.username == username
+190 -56
View File
@@ -25,8 +25,20 @@ from frigate.api.defs.query.recordings_query_parameters import (
)
from frigate.api.defs.response.generic_response import GenericResponse
from frigate.api.defs.tags import Tags
from frigate.const import RECORD_DIR
from frigate.const import (
MAX_SEGMENT_DURATION,
RECORD_DIR,
STREAM_TYPE_MAIN,
STREAM_TYPE_SUB,
)
from frigate.models import Event, Recordings
from frigate.util.recording_coverage import (
coverage_spans,
known_video_codecs,
realized_timelines,
resolve_coverage,
stream_media_summary,
)
from frigate.util.time import get_dst_transitions
logger = logging.getLogger(__name__)
@@ -59,7 +71,7 @@ def get_recordings_storage_usage(request: Request):
@router.get("/recordings/summary", dependencies=[Depends(allow_any_authenticated())])
def all_recordings_summary(
async def all_recordings_summary(
request: Request,
params: MediaRecordingsSummaryQueryParams = Depends(),
allowed_cameras: list[str] = Depends(get_allowed_cameras_for_filter),
@@ -76,18 +88,23 @@ def all_recordings_summary(
else:
camera_list = allowed_cameras
time_range_query = (
Recordings.select(
fn.MIN(Recordings.start_time).alias("min_time"),
fn.MAX(Recordings.start_time).alias("max_time"),
min_time: float | None = None
max_time: float | None = None
for camera in camera_list:
cam_min = (
Recordings.select(fn.MIN(Recordings.start_time))
.where(Recordings.camera == camera)
.scalar()
)
.where(Recordings.camera << camera_list)
.dicts()
.get()
)
min_time = time_range_query.get("min_time")
max_time = time_range_query.get("max_time")
if cam_min is None:
continue
cam_max = (
Recordings.select(fn.MAX(Recordings.start_time))
.where(Recordings.camera == camera)
.scalar()
)
min_time = cam_min if min_time is None else min(min_time, cam_min)
max_time = cam_max if max_time is None else max(max_time, cam_max)
if min_time is None or max_time is None:
return JSONResponse(content={})
@@ -97,22 +114,60 @@ def all_recordings_summary(
days: dict[str, bool] = {}
for period_start, period_end, period_offset in dst_periods:
day_expr = ((Recordings.start_time + period_offset) / 86400).cast("int")
first_start = max(min_time, period_start - MAX_SEGMENT_DURATION)
first_day = int((first_start + period_offset) // 86400)
last_day = int((min(max_time, period_end) + period_offset) // 86400)
period_query = (
Recordings.select(day_expr.alias("day_idx"))
.where(
(Recordings.camera << camera_list)
& (Recordings.end_time >= period_start)
& (Recordings.start_time <= period_end)
day_idx = first_day
while day_idx <= last_day:
day_str = (dt.date(1970, 1, 1) + dt.timedelta(days=day_idx)).isoformat()
day_start = day_idx * 86400 - period_offset
day_end = day_start + 86400
if day_str in days:
day_idx += 1
continue
if day_end <= period_end:
upper = Recordings.start_time < day_end
else:
upper = Recordings.start_time <= period_end
has_recordings = (
Recordings.select(Recordings.id)
.where(
(Recordings.camera << camera_list)
& (Recordings.end_time >= period_start)
& (Recordings.start_time >= day_start)
& upper
)
.exists()
)
.distinct()
.namedtuples()
)
if has_recordings:
days[day_str] = True
day_idx += 1
continue
for g in period_query:
day_str = (dt.date(1970, 1, 1) + dt.timedelta(days=g.day_idx)).isoformat()
days[day_str] = True
# empty day
next_start: float | None = None
for camera in camera_list:
cam_next = (
Recordings.select(fn.MIN(Recordings.start_time))
.where(
Recordings.camera == camera,
Recordings.start_time >= day_end,
Recordings.start_time <= period_end,
)
.scalar()
)
if cam_next is not None and (
next_start is None or cam_next < next_start
):
next_start = cam_next
if next_start is None:
break
day_idx = max(day_idx + 1, int((next_start + period_offset) // 86400))
return JSONResponse(content=dict(sorted(days.items())))
@@ -149,23 +204,28 @@ async def recordings_summary(camera_name: str, timezone: str = "utc"):
period_hour_modifier = f"{hours_offset} hour"
period_minute_modifier = f"{minutes_offset} minute"
hour_expression = fn.strftime(
"%Y-%m-%d %H",
fn.datetime(
Recordings.start_time,
"unixepoch",
period_hour_modifier,
period_minute_modifier,
),
)
# sub rows duplicate the camera's motion/object stats, so
# aggregating them too would double-count
recording_groups = (
Recordings.select(
fn.strftime(
"%Y-%m-%d %H",
fn.datetime(
Recordings.start_time,
"unixepoch",
period_hour_modifier,
period_minute_modifier,
),
).alias("hour"),
hour_expression.alias("hour"),
fn.SUM(Recordings.duration).alias("duration"),
fn.SUM(Recordings.motion).alias("motion"),
fn.SUM(Recordings.objects).alias("objects"),
)
.where(
(Recordings.camera == camera_name)
& (Recordings.stream_type == STREAM_TYPE_MAIN)
& (Recordings.end_time >= period_start)
& (Recordings.start_time <= period_end)
)
@@ -174,6 +234,23 @@ async def recordings_summary(camera_name: str, timezone: str = "utc"):
.namedtuples()
)
# sub recordings can outlive main, so hours covered only by sub
# rows are reported too, flagged as sub_only
sub_groups = (
Recordings.select(
hour_expression.alias("hour"),
fn.SUM(Recordings.duration).alias("duration"),
)
.where(
(Recordings.camera == camera_name)
& (Recordings.stream_type == STREAM_TYPE_SUB)
& (Recordings.end_time >= period_start)
& (Recordings.start_time <= period_end)
)
.group_by((Recordings.start_time + period_offset).cast("int") / 3600)
.namedtuples()
)
event_groups = (
Event.select(
fn.strftime(
@@ -197,17 +274,43 @@ async def recordings_summary(camera_name: str, timezone: str = "utc"):
event_map = {g.hour: g.count for g in event_groups}
for recording_group in recording_groups:
parts = recording_group.hour.split()
hour_stats = [
(
g.hour,
{
"motion": g.motion,
"objects": g.objects,
"duration": round(g.duration),
},
)
for g in recording_groups
]
main_hours = {group_hour for group_hour, _ in hour_stats}
hour_stats.extend(
(
g.hour,
{
"motion": 0,
"objects": 0,
"duration": round(g.duration),
"sub_only": True,
},
)
for g in sub_groups
if g.hour not in main_hours
)
# restore the most-recent-first ordering after merging in sub hours
hour_stats.sort(key=lambda entry: entry[0], reverse=True)
for group_hour, stats in hour_stats:
parts = group_hour.split()
hour = parts[1]
day = parts[0]
events_count = event_map.get(recording_group.hour, 0)
events_count = event_map.get(group_hour, 0)
hour_data = {
"hour": hour,
"events": events_count,
"motion": recording_group.motion,
"objects": recording_group.objects,
"duration": round(recording_group.duration),
**stats,
}
if day in days:
# merge counts if already present (edge-case at DST boundary)
@@ -223,6 +326,35 @@ async def recordings_summary(camera_name: str, timezone: str = "utc"):
return JSONResponse(content=list(days.values()))
@router.get(
"/{camera_name}/recordings/coverage",
dependencies=[Depends(require_camera_access)],
)
async def recordings_coverage(
camera_name: str, after: float, before: float, timelines: bool = False
):
"""Returns merged recording coverage spans plus codec compatibility.
codecs_compatible is false only when more than one known video codec
appears across the range's rows, the case where the merged vod route
degrades to a single-stream manifest.
"""
intervals = resolve_coverage(camera_name, after, before)
content = {
"spans": coverage_spans(intervals),
"codecs_compatible": len(known_video_codecs(intervals)) <= 1,
"streams": stream_media_summary(intervals),
}
# pure computation (shared plan_clip, record-time keyframe index), but
# opt-in for payload hygiene: day-level requests need only the spans
if timelines:
content["timelines"] = realized_timelines(intervals)
return JSONResponse(content=content)
@router.get("/{camera_name}/recordings", dependencies=[Depends(require_camera_access)])
async def recordings(
camera_name: str,
@@ -243,6 +375,8 @@ async def recordings(
)
.where(
Recordings.camera == camera_name,
Recordings.stream_type == STREAM_TYPE_MAIN,
Recordings.start_time >= after - MAX_SEGMENT_DURATION,
Recordings.end_time >= after,
Recordings.start_time <= before,
)
@@ -282,22 +416,22 @@ async def no_recordings(
)
scale = params.scale
clauses = [
(Recordings.end_time >= after) & (Recordings.start_time <= before),
(Recordings.camera << camera_list),
]
recordings: list[tuple[float, float]] = []
for camera in camera_list:
recordings.extend(
Recordings.select(Recordings.start_time, Recordings.end_time)
.where(
Recordings.camera == camera,
Recordings.start_time >= after - MAX_SEGMENT_DURATION,
Recordings.end_time >= after,
Recordings.start_time <= before,
)
.tuples()
.iterator()
)
# Get recording start times
data: list[Recordings] = (
Recordings.select(Recordings.start_time, Recordings.end_time)
.where(reduce(operator.and_, clauses))
.order_by(Recordings.start_time.asc())
.dicts()
.iterator()
)
# Convert recordings to list of (start, end) tuples, ordered by start_time
recordings = [(r["start_time"], r["end_time"]) for r in data]
# the merge pass below expects a single start-ordered timeline
recordings.sort()
# Merge overlapping/adjacent recordings into covered intervals. The query
# orders by start_time, so a single pass merges them
+4 -8
View File
@@ -17,7 +17,6 @@ from frigate.api.auth import (
get_allowed_cameras_for_filter,
get_current_user,
require_camera_access,
require_full_camera_access,
require_role,
)
from frigate.api.defs.query.review_query_parameters import (
@@ -33,6 +32,7 @@ from frigate.api.defs.response.review_response import (
ReviewSummaryResponse,
)
from frigate.api.defs.tags import Tags
from frigate.const import STREAM_TYPE_MAIN
from frigate.embeddings import EmbeddingsContext
from frigate.models import Recordings, ReviewSegment, UserReviewStatus
from frigate.review.types import SeverityEnum
@@ -598,6 +598,8 @@ def motion_activity(
clauses = [(Recordings.start_time > after) & (Recordings.end_time < before)]
clauses.append(Recordings.motion > 0)
# sub rows duplicate the camera's motion stats, so only count main rows
clauses.append(Recordings.stream_type == STREAM_TYPE_MAIN)
if cameras != "all":
requested = set(cameras.split(","))
@@ -710,7 +712,6 @@ async def get_review(request: Request, review_id: str):
dependencies=[Depends(allow_any_authenticated())],
)
async def set_not_reviewed(
request: Request,
review_id: str,
current_user: dict = Depends(get_current_user),
):
@@ -729,8 +730,6 @@ async def set_not_reviewed(
status_code=404,
)
await require_camera_access(review.camera, request=request)
try:
user_review = UserReviewStatus.get(
UserReviewStatus.user_id == user_id,
@@ -747,12 +746,9 @@ async def set_not_reviewed(
)
# Intentionally not camera scoped, as the summary correlates each flagged event
# with overlapping activity on other cameras. Restricted to callers who can
# already see every camera, so the unscoped query discloses nothing.
@router.post(
"/review/summarize/start/{start_ts}/end/{end_ts}",
dependencies=[Depends(require_full_camera_access)],
dependencies=[Depends(require_role(["admin"]))],
description="Use GenAI to summarize review items over a period of time.",
)
def generate_review_summary(request: Request, start_ts: float, end_ts: float):
+2 -7
View File
@@ -60,11 +60,6 @@ class CameraState:
# face/LPR pipelines when using a model without built-in detection.
self.face_recognition_min_obj_area: int = 0
self.lpr_min_obj_area: int = 0
self.lp_objects = {
label
for label, attributes in config.model.attributes_map.items()
if "license_plate" in attributes
}
if (
self.camera_config.face_recognition.enabled
@@ -457,7 +452,7 @@ class CameraState:
and obj_area >= self.face_recognition_min_obj_area
and updated_obj.obj_data.get("sub_label") is None
) or (
obj_label in self.lp_objects
obj_label in ("car", "motorcycle")
and self.lpr_min_obj_area > 0
and obj_area >= self.lpr_min_obj_area
and updated_obj.obj_data.get("sub_label") is None
@@ -553,7 +548,7 @@ class CameraState:
current_best.thumbnail_data is not None
and obj.thumbnail_data is not None
and is_better_thumbnail(
obj.thumbnail_attributes,
object_type,
current_best.thumbnail_data,
obj.thumbnail_data,
self.camera_config.frame_shape,
+17 -8
View File
@@ -11,7 +11,11 @@ from frigate.camera.activity_manager import AudioActivityManager, CameraActivity
from frigate.comms.base_communicator import Communicator
from frigate.comms.runtime_state import RuntimeStatePersistence
from frigate.comms.webpush import WebPushClient
from frigate.config import BirdseyeModeEnum, FrigateConfig
from frigate.config import (
FrigateConfig,
birdseye_modes_from_mqtt_payload,
birdseye_modes_to_mqtt_payload,
)
from frigate.config.camera.updater import (
CameraConfigUpdateEnum,
CameraConfigUpdatePublisher,
@@ -84,7 +88,7 @@ class Dispatcher:
"recordings": self._on_recordings_command,
"snapshots": self._on_snapshots_command,
"birdseye": self._on_birdseye_command,
"birdseye_mode": self._on_birdseye_mode_command,
"birdseye_modes": self._on_birdseye_modes_command,
"review_alerts": self._on_alerts_command,
"review_detections": self._on_detections_command,
"object_descriptions": self._on_object_description_command,
@@ -879,11 +883,12 @@ class Dispatcher:
)
self.publish(f"{camera_name}/birdseye/state", payload, retain=True)
def _on_birdseye_mode_command(self, camera_name: str, payload: str) -> None:
def _on_birdseye_modes_command(self, camera_name: str, payload: str) -> None:
"""Callback for birdseye mode topic."""
if payload not in ["CONTINUOUS", "MOTION", "OBJECTS"]:
logger.info(f"Invalid birdseye_mode command: {payload}")
modes = birdseye_modes_from_mqtt_payload(payload)
if modes is None:
logger.info("Invalid birdseye_modes command: %s", payload)
return
birdseye_settings = self.config.cameras[camera_name].birdseye
@@ -892,16 +897,20 @@ class Dispatcher:
logger.info(f"Birdseye mode not enabled for {camera_name}")
return
birdseye_settings.mode = BirdseyeModeEnum(payload.lower())
birdseye_settings.modes = modes
logger.info(
f"Setting birdseye mode for {camera_name} to {birdseye_settings.mode}"
f"Setting birdseye mode for {camera_name} to {birdseye_settings.modes}"
)
self.config_updater.publish_update(
CameraConfigUpdateTopic(CameraConfigUpdateEnum.birdseye, camera_name),
birdseye_settings,
)
self.publish(f"{camera_name}/birdseye_mode/state", payload, retain=True)
self.publish(
f"{camera_name}/birdseye_modes/state",
birdseye_modes_to_mqtt_payload(modes),
retain=True,
)
def _on_camera_notification_command(self, camera_name: str, payload: str) -> None:
"""Callback for camera level notifications topic."""
+4 -4
View File
@@ -7,7 +7,7 @@ import paho.mqtt.client as mqtt
from paho.mqtt.enums import CallbackAPIVersion
from frigate.comms.base_communicator import Communicator
from frigate.config import FrigateConfig
from frigate.config import FrigateConfig, birdseye_modes_to_mqtt_payload
logger = logging.getLogger(__name__)
@@ -123,9 +123,9 @@ class MqttClient(Communicator):
retain=True,
)
self.publish(
f"{camera_name}/birdseye_mode/state",
f"{camera_name}/birdseye_modes/state",
(
camera.birdseye.mode.value.upper()
birdseye_modes_to_mqtt_payload(camera.birdseye.modes)
if camera.birdseye.enabled
else "OFF"
),
@@ -270,7 +270,7 @@ class MqttClient(Communicator):
"motion_threshold",
"motion_contour_area",
"birdseye",
"birdseye_mode",
"birdseye_modes",
"review_alerts",
"review_detections",
"object_descriptions",
+13 -13
View File
@@ -89,9 +89,7 @@ class WebPushClient(Communicator):
# notification and auth config updater
self.global_config_subscriber = ConfigSubscriber("config/")
self.config_subscriber = CameraConfigUpdateSubscriber(
self.config,
self.config.cameras,
[CameraConfigUpdateEnum.add, CameraConfigUpdateEnum.notifications],
self.config, self.config.cameras, [CameraConfigUpdateEnum.notifications]
)
self._refresh_user_cameras()
@@ -215,12 +213,12 @@ class WebPushClient(Communicator):
self.suspended_cameras[camera] = 0
self.last_camera_notification_time[camera] = 0
self._refresh_user_cameras()
if topic == "reviews":
decoded = json.loads(payload)
camera = decoded["before"]["camera"]
if not self.config.cameras[camera].notifications.enabled:
camera_config = self.config.cameras.get(camera)
if camera_config is None or not camera_config.notifications.enabled:
return
if self.is_camera_suspended(camera):
logger.debug(f"Notifications for {camera} are currently suspended.")
@@ -234,13 +232,14 @@ class WebPushClient(Communicator):
# ensure notifications are enabled and the specific trigger has
# notification action enabled
camera_config = self.config.cameras.get(camera)
if (
not self.config.cameras[camera].notifications.enabled
or name not in self.config.cameras[camera].semantic_search.triggers
camera_config is None
or not camera_config.notifications.enabled
or name not in camera_config.semantic_search.triggers
or "notification"
not in self.config.cameras[camera]
.semantic_search.triggers[name]
.actions
not in camera_config.semantic_search.triggers[name].actions
):
return
@@ -251,7 +250,9 @@ class WebPushClient(Communicator):
elif topic == "camera_monitoring":
decoded = json.loads(payload)
camera = decoded["camera"]
if not self.config.cameras[camera].notifications.enabled:
camera_config = self.config.cameras.get(camera)
if camera_config is None or not camera_config.notifications.enabled:
return
if self.is_camera_suspended(camera):
logger.debug(f"Notifications for {camera} are currently suspended.")
@@ -421,7 +422,6 @@ class WebPushClient(Communicator):
# Don't notify if message is an update and important fields don't have an update
if (
state == "update"
and payload["before"]["severity"] == payload["after"]["severity"]
and len(payload["before"]["data"]["objects"])
== len(payload["after"]["data"]["objects"])
and len(payload["before"]["data"]["zones"])
+52 -16
View File
@@ -9,21 +9,57 @@ __all__ = [
"BirdseyeConfig",
"BirdseyeLayoutConfig",
"BirdseyeModeEnum",
"birdseye_modes_from_mqtt_payload",
"birdseye_modes_to_mqtt_payload",
]
# canonical MQTT payload for an empty mode list
MQTT_NO_MODES = "NONE"
class BirdseyeModeEnum(str, Enum):
objects = "objects"
motion = "motion"
continuous = "continuous"
motion = "motion"
all_objects = "all_objects"
alerts = "alerts"
detections = "detections"
@classmethod
def get_index(cls, type):
return list(cls).index(type)
@classmethod
def get(cls, index):
return list(cls)[index]
def birdseye_modes_from_mqtt_payload(payload: str) -> list[BirdseyeModeEnum] | None:
"""Parse an uppercase MQTT payload into activity modes, or None when invalid."""
raw_modes = payload.split(",")
if any(not raw_mode or raw_mode != raw_mode.upper() for raw_mode in raw_modes):
return None
if raw_modes == [MQTT_NO_MODES]:
return []
modes: list[BirdseyeModeEnum] = []
for raw_mode in raw_modes:
try:
mode = BirdseyeModeEnum(raw_mode.lower())
except ValueError:
return None
if mode in modes:
return None
modes.append(mode)
return modes
def birdseye_modes_to_mqtt_payload(modes: list[BirdseyeModeEnum]) -> str:
"""Serialize activity modes for MQTT state topics."""
payload = ",".join(mode.value.upper() for mode in BirdseyeModeEnum if mode in modes)
return payload or MQTT_NO_MODES
def default_birdseye_modes() -> list[BirdseyeModeEnum]:
"""Return the default Birdseye activity modes."""
return [BirdseyeModeEnum.all_objects]
class BirdseyeLayoutConfig(FrigateBaseModel):
@@ -47,10 +83,10 @@ class BirdseyeConfig(FrigateBaseModel):
title="Enable Birdseye",
description="Enable or disable the Birdseye view feature.",
)
mode: BirdseyeModeEnum = Field(
default=BirdseyeModeEnum.objects,
title="Tracking mode",
description="Mode for including cameras in Birdseye: 'objects', 'motion', or 'continuous'.",
modes: list[BirdseyeModeEnum] = Field(
default_factory=default_birdseye_modes,
title="Activity types",
description="Activity types that include cameras in Birdseye.",
)
restream: bool = Field(
@@ -102,10 +138,10 @@ class BirdseyeCameraConfig(BaseModel):
title="Enable Birdseye",
description="Enable or disable the Birdseye view feature.",
)
mode: BirdseyeModeEnum = Field(
default=BirdseyeModeEnum.objects,
title="Tracking mode",
description="Mode for including cameras in Birdseye: 'objects', 'motion', or 'continuous'.",
modes: list[BirdseyeModeEnum] = Field(
default_factory=default_birdseye_modes,
title="Activity types",
description="Activity types that include cameras in Birdseye.",
)
order: int = Field(
+28 -1
View File
@@ -3,7 +3,12 @@ from enum import Enum
from pydantic import Field, PrivateAttr, model_validator
from frigate.const import CACHE_DIR, CACHE_SEGMENT_FORMAT, REGEX_CAMERA_NAME
from frigate.const import (
CACHE_DIR,
CACHE_SEGMENT_FORMAT,
REGEX_CAMERA_NAME,
SUB_CACHE_TAG,
)
from frigate.ffmpeg_presets import (
parse_preset_hardware_acceleration_decode,
parse_preset_hardware_acceleration_scale,
@@ -294,6 +299,28 @@ class CameraConfig(FrigateBaseModel):
+ ffmpeg_output_args
)
if (
"record_sub" in ffmpeg_input.roles
and self.record.enabled
and self.record.sub.enabled
):
sub_output_args = self.ffmpeg.output_args.effective_record_sub
record_args = get_ffmpeg_arg_list(
parse_preset_output_record(
sub_output_args,
self.ffmpeg.apple_compatibility,
)
or sub_output_args
)
ffmpeg_output_args = (
record_args
+ [
f"{os.path.join(CACHE_DIR, self.name)}{SUB_CACHE_TAG}@{CACHE_SEGMENT_FORMAT}.mp4"
]
+ ffmpeg_output_args
)
# if there aren't any outputs enabled for this input
if len(ffmpeg_output_args) == 0:
return None
+15
View File
@@ -42,6 +42,20 @@ class FfmpegOutputArgsConfig(FrigateBaseModel):
title="Record output arguments",
description="Default output arguments for record role streams.",
)
record_sub: str | list[str] = Field(
default_factory=list,
title="Sub stream record output arguments",
description="Output arguments for record_sub role streams. The record output arguments are used when this is not set.",
)
@property
def effective_record_sub(self) -> str | list[str]:
"""Output arguments used for the record_sub role.
Falls back to the record arguments rather than to the stock preset so
that a customized record value keeps applying to both recorded streams.
"""
return self.record_sub or self.record
class FfmpegConfig(FrigateBaseModel):
@@ -99,6 +113,7 @@ class FfmpegConfig(FrigateBaseModel):
class CameraRoleEnum(str, Enum):
audio = "audio"
record = "record"
record_sub = "record_sub"
detect = "detect"
+52
View File
@@ -13,6 +13,7 @@ __all__ = [
"RecordExportConfig",
"RecordPreviewConfig",
"RecordQualityEnum",
"RecordSubConfig",
"EventsConfig",
"ReviewRetainConfig",
"RecordRetainConfig",
@@ -110,6 +111,34 @@ class RecordExportConfig(FrigateBaseModel):
)
class RecordSubConfig(FrigateBaseModel):
enabled: bool = Field(
default=False,
title="Enable sub stream recording",
description="Enable recording of a second, lower quality stream for adaptive quality playback and extended retention.",
)
continuous: RecordRetainConfig = Field(
default_factory=RecordRetainConfig,
title="Sub stream continuous retention",
description="Number of days to retain sub stream recordings regardless of tracked objects or motion.",
)
motion: RecordRetainConfig = Field(
default_factory=RecordRetainConfig,
title="Sub stream motion retention",
description="Number of days to retain sub stream recordings triggered by motion.",
)
alerts: ReviewRetainConfig = Field(
default_factory=ReviewRetainConfig,
title="Sub stream alert retention",
description="Retention settings for sub stream recordings of alerts.",
)
detections: ReviewRetainConfig = Field(
default_factory=ReviewRetainConfig,
title="Sub stream detection retention",
description="Retention settings for sub stream recordings of detections.",
)
class RecordConfig(FrigateBaseModel):
enabled: bool = Field(
default=False,
@@ -151,12 +180,35 @@ class RecordConfig(FrigateBaseModel):
title="Preview config",
description="Settings controlling the quality of recording previews shown in the UI.",
)
sub: RecordSubConfig = Field(
default_factory=RecordSubConfig,
title="Sub stream recording",
description="Settings for recording a second, lower quality stream.",
)
enabled_in_config: bool | None = Field(
default=None,
title="Original recording state",
description="Indicates whether recording was enabled in the original static configuration.",
)
@property
def effective_alert_days(self) -> float:
"""Alert retention extended to the sub stream window when sub is enabled.
Review items and tracked objects must stay visible for as long as
either stream still has recordings.
"""
if self.sub.enabled:
return max(self.alerts.retain.days, self.sub.alerts.days)
return self.alerts.retain.days
@property
def effective_detection_days(self) -> float:
"""Detection retention extended to the sub window when sub is enabled."""
if self.sub.enabled:
return max(self.detections.retain.days, self.sub.detections.days)
return self.detections.retain.days
@property
def event_pre_capture(self) -> int:
return max(
+6 -1
View File
@@ -129,8 +129,13 @@ class CameraConfigUpdateSubscriber:
config.objects = updated_config
elif update_type == CameraConfigUpdateEnum.record:
old_enabled_in_config = config.record.enabled_in_config
old_sub_enabled = config.record.sub.enabled
config.record = updated_config
if old_enabled_in_config != updated_config.enabled_in_config:
# the record and record_sub ffmpeg outputs are gated on these
if (
old_enabled_in_config != updated_config.enabled_in_config
or old_sub_enabled != updated_config.sub.enabled
):
config.recreate_ffmpeg_cmds()
elif update_type == CameraConfigUpdateEnum.review:
config.review = updated_config
+31 -8
View File
@@ -255,6 +255,15 @@ def verify_config_roles(camera_config: CameraConfig) -> None:
f"Camera {camera_config.name} has record enabled, but record is not assigned to an input."
)
if (
camera_config.record.enabled
and camera_config.record.sub.enabled
and "record_sub" not in assigned_roles
):
raise ValueError(
f"Camera {camera_config.name} has sub stream recording enabled, but record_sub is not assigned to an input."
)
if camera_config.audio.enabled and "audio" not in assigned_roles:
raise ValueError(
f"Camera {camera_config.name} has audio events enabled, but audio is not assigned to an input."
@@ -275,13 +284,11 @@ def verify_valid_live_stream_names(
)
def verify_recording_segments_setup_with_reasonable_time(
camera_config: CameraConfig,
def verify_record_output_args_segment_time(
camera_config: CameraConfig, output_args: str | list[str], role: str
) -> None:
"""Verify that recording segments are setup and segment time is not greater than 60."""
record_args: list[str] = get_ffmpeg_arg_list(
camera_config.ffmpeg.output_args.record
)
"""Verify that a recording role's output args segment at a reasonable time."""
record_args: list[str] = get_ffmpeg_arg_list(output_args)
if record_args[0].startswith("preset"):
return
@@ -291,16 +298,32 @@ def verify_recording_segments_setup_with_reasonable_time(
except ValueError:
raise ValueError(
f"Camera {camera_config.name} has no segment_time in \
recording output args, segment args are required for record."
{role} output args, segment args are required for record."
) from None
if int(record_args[seg_arg_index + 1]) > 60:
raise ValueError(
f"Camera {camera_config.name} has invalid segment_time output arg, \
f"Camera {camera_config.name} has invalid segment_time in {role} output args, \
segment_time must be 60 or less."
)
def verify_recording_segments_setup_with_reasonable_time(
camera_config: CameraConfig,
) -> None:
"""Verify that recording segments are setup and segment time is not greater than 60."""
verify_record_output_args_segment_time(
camera_config, camera_config.ffmpeg.output_args.record, "recording"
)
if camera_config.record.sub.enabled:
verify_record_output_args_segment_time(
camera_config,
camera_config.ffmpeg.output_args.effective_record_sub,
"sub stream recording",
)
def verify_zone_objects_are_tracked(camera_config: CameraConfig) -> None:
"""Verify that user has not entered zone objects that are not in the tracking config."""
for zone_name, zone in camera_config.zones.items():
+7 -2
View File
@@ -8,6 +8,7 @@ from datetime import UTC, datetime
from pathlib import Path
from typing import Any
from frigate.config.camera.birdseye import birdseye_modes_to_mqtt_payload
from frigate.config.camera.updater import (
CameraConfigUpdateEnum,
CameraConfigUpdatePublisher,
@@ -42,8 +43,12 @@ SECTION_STATE_TOPICS: dict[str, list[tuple[str, Callable[[Any], Any]]]] = {
"birdseye": [
("birdseye", lambda c: "ON" if c.birdseye.enabled else "OFF"),
(
"birdseye_mode",
lambda c: c.birdseye.mode.value.upper() if c.birdseye.enabled else "OFF",
"birdseye_modes",
lambda c: (
birdseye_modes_to_mqtt_payload(c.birdseye.modes)
if c.birdseye.enabled
else "OFF"
),
),
],
"detect": [("detect", lambda c: "ON" if c.detect.enabled else "OFF")],
+6 -4
View File
@@ -23,6 +23,12 @@ SHM_FRAMES_VAR = "SHM_MAX_FRAMES"
REDACTED_CREDENTIAL_SENTINEL = "__FRIGATE_SAVED_CREDENTIAL__"
# Stream type constants
STREAM_TYPE_MAIN = "main"
STREAM_TYPE_SUB = "sub"
SUB_CACHE_TAG = "@sub"
# Attribute & Object constants
DEFAULT_ATTRIBUTE_LABEL_MAP = {
@@ -44,11 +50,7 @@ DEFAULT_ATTRIBUTE_LABEL_MAP = {
"ups",
"usps",
],
"truck": ["license_plate"],
"garbage_truck": ["license_plate"],
"motorcycle": ["license_plate"],
"bus": ["license_plate"],
"school_bus": ["license_plate"],
}
ATTRIBUTE_LABEL_DISPLAY_MAP = {
"amazon": "Amazon",
@@ -1290,7 +1290,7 @@ class LicensePlateProcessingMixin:
and obj_data.get("label") != "license_plate"
):
logger.debug(
f"{camera}: Not a processing license plate for {obj_data.get('label', 'unknown')}."
f"{camera}: Not a processing license plate for non car/motorcycle object."
)
return
@@ -1367,7 +1367,7 @@ class LicensePlateProcessingMixin:
if not license_plate:
logger.debug(
f"{camera}: Detected no license plates for {obj_data.get('label', 'unknown')} object."
f"{camera}: Detected no license plates for car/motorcycle object."
)
return
@@ -83,6 +83,10 @@ class AudioTranscriptionPostProcessor(PostProcessorApi):
"""
event_id = data["event_id"]
camera_name = data["camera"]
camera_config = self.config.cameras.get(camera_name)
if camera_config is None:
return
if data_type == PostProcessDataEnum.recording:
start_ts = data["frame_time"]
@@ -104,7 +108,7 @@ class AudioTranscriptionPostProcessor(PostProcessorApi):
try:
audio_data = get_audio_from_recording(
self.config.cameras[camera_name].ffmpeg,
camera_config.ffmpeg,
camera_name,
start_ts,
end_ts,
@@ -151,7 +151,12 @@ class ObjectDescriptionProcessor(PostProcessorApi):
logger.error(f"Event {event_id} not found for description regeneration")
return
camera_config = self.config.cameras[str(event.camera)]
camera_config = self.config.cameras.get(str(event.camera))
if camera_config is None:
logger.error("Camera %s no longer exists", event.camera)
return
if not camera_config.objects.genai.enabled and not force:
logger.error(f"GenAI not enabled for camera {event.camera}")
return
@@ -137,7 +137,10 @@ class ReviewDescriptionProcessor(PostProcessorApi):
return
camera = data["after"]["camera"]
camera_config = self.config.cameras[camera]
camera_config = self.config.cameras.get(camera)
if camera_config is None:
return
if not camera_config.review.genai.enabled:
return
+30 -25
View File
@@ -25,31 +25,25 @@ def is_arm64_platform() -> bool:
return machine in ("aarch64", "arm64", "armv8", "armv7l")
def get_ort_session_options(model_type: str | None = None) -> ort.SessionOptions | None:
def get_ort_session_options(
is_complex_model: bool = False,
) -> ort.SessionOptions | None:
"""Get ONNX Runtime session options with appropriate settings.
Args:
model_type: Model being loaded, used to pin its graph optimization level.
is_complex_model: Whether the model needs basic optimization to avoid graph fusion issues.
Returns:
SessionOptions with a pinned optimization level, or None for default settings.
SessionOptions with appropriate optimization level, or None for default settings.
"""
# Import here to avoid circular imports
from frigate.embeddings.types import EnrichmentModelTypeEnum
if is_complex_model:
sess_options = ort.SessionOptions()
sess_options.graph_optimization_level = (
ort.GraphOptimizationLevel.ORT_ENABLE_BASIC
)
return sess_options
if model_type == EnrichmentModelTypeEnum.jina_v2.value:
# below EXTENDED the CUDA EP returns an identical vector for every image,
# and ORT_ENABLE_ALL fails to build on CPU with a SimplifiedLayerNormFusion error
level = ort.GraphOptimizationLevel.ORT_ENABLE_EXTENDED
elif model_type == EnrichmentModelTypeEnum.jina_v1.value:
# aggressive optimizations create or expect nodes that don't exist
level = ort.GraphOptimizationLevel.ORT_ENABLE_BASIC
else:
return None
sess_options = ort.SessionOptions()
sess_options.graph_optimization_level = level
return sess_options
return None
# Import OpenVINO only when needed to avoid circular dependencies
@@ -121,6 +115,21 @@ class BaseModelRunner(ABC):
class ONNXModelRunner(BaseModelRunner):
"""Run ONNX models using ONNX Runtime."""
@staticmethod
def is_cpu_complex_model(model_type: str) -> bool:
"""Check if model needs basic optimization level to avoid graph fusion issues.
Some models (like Jina-CLIP) have issues with aggressive optimizations like
SimplifiedLayerNormFusion that create or expect nodes that don't exist.
"""
# Import here to avoid circular imports
from frigate.embeddings.types import EnrichmentModelTypeEnum
return model_type in [
EnrichmentModelTypeEnum.jina_v1.value,
EnrichmentModelTypeEnum.jina_v2.value,
]
@staticmethod
def is_migraphx_complex_model(model_type: str) -> bool:
# Import here to avoid circular imports
@@ -314,12 +323,6 @@ class OpenVINOModelRunner(BaseModelRunner):
if device in ["GPU", "AUTO", "NPU"]:
self.ov_core.set_property(device, {"PERFORMANCE_HINT": "LATENCY"})
if device in ["GPU", "AUTO"]:
try:
self.ov_core.set_property("GPU", {"GPU_QUEUE_THROTTLE": "LOW"})
except Exception as e:
logger.debug(f"GPU_QUEUE_THROTTLE not supported: {e}")
if device == "NPU" and OpenVINOModelRunner.is_detection_model(model_type):
try:
self.ov_core.set_property(device, {"NPU_TURBO": "YES"})
@@ -623,7 +626,9 @@ def get_optimized_runner(
return ONNXModelRunner(
ort.InferenceSession(
model_path,
sess_options=get_ort_session_options(model_type),
sess_options=get_ort_session_options(
ONNXModelRunner.is_cpu_complex_model(model_type)
),
providers=providers,
provider_options=options,
),
+20 -1
View File
@@ -609,6 +609,18 @@ class EmbeddingMaintainer(threading.Thread):
# Embed the thumbnail
self._embed_thumbnail(event_id, thumbnail)
# every post processor below reads config.cameras[camera], but
# tracked_events still has to be released or the thumbnails held
# for this event leak, same as the two exits above
if camera not in self.config.cameras:
logger.debug("Skipping post processing for removed camera %s", camera)
for processor in self.post_processors:
if isinstance(processor, ObjectDescriptionProcessor):
processor.cleanup_event(event_id)
continue
# call any defined post processors
for processor in self.post_processors:
if isinstance(processor, LicensePlatePostProcessor):
@@ -666,11 +678,18 @@ class EmbeddingMaintainer(threading.Thread):
to_remove = []
for id, data in self.detected_license_plates.items():
camera_config = self.config.cameras.get(data["camera"])
if camera_config is None:
# camera was removed, drop the entry rather than expiring it
to_remove.append(id)
continue
last_seen = data.get("last_seen", 0)
if not last_seen:
continue
if now - last_seen > self.config.cameras[data["camera"]].lpr.expire_time:
if now - last_seen > camera_config.lpr.expire_time:
to_remove.append(id)
for id in to_remove:
self.event_metadata_publisher.publish(
+8 -8
View File
@@ -197,9 +197,11 @@ class EventCleanup(threading.Thread):
def expire_clips(self) -> list[str]:
## Expire events from unlisted cameras based on the global config
# effective days cover the sub window, keeping tracked objects in
# Explore while sub recordings and review items still exist
expire_days = max(
self.config.record.alerts.retain.days,
self.config.record.detections.retain.days,
self.config.record.effective_alert_days,
self.config.record.effective_detection_days,
)
file_extension = None # mp4 clips are no longer stored in /clips
update_params = {"has_clip": False}
@@ -278,15 +280,13 @@ class EventCleanup(threading.Thread):
## Expire events from cameras based on the camera config
for name, camera in self.config.cameras.items():
expire_days = max(
camera.record.alerts.retain.days,
camera.record.detections.retain.days,
)
# effective days cover the sub window, keeping tracked objects
# in Explore while sub recordings and review items still exist
alert_expire_date = (
now - datetime.timedelta(days=camera.record.alerts.retain.days)
now - datetime.timedelta(days=camera.record.effective_alert_days)
).timestamp()
detection_expire_date = (
now - datetime.timedelta(days=camera.record.detections.retain.days)
now - datetime.timedelta(days=camera.record.effective_detection_days)
).timestamp()
# grab all events after specific time
expired_events = (
+2 -2
View File
@@ -245,7 +245,7 @@ class GeminiClient(GenAIClient):
)
gemini_messages.append(
types.Content(
role="user",
role="function",
parts=[
types.Part.from_function_response(
name=msg.get("name")
@@ -501,7 +501,7 @@ class GeminiClient(GenAIClient):
)
gemini_messages.append(
types.Content(
role="user",
role="function",
parts=[
types.Part.from_function_response(
name=msg.get("name")
+66 -122
View File
@@ -262,6 +262,10 @@ def get_tool_definitions(
`attribute` parameter is exposed for filtering by their labels. When the
embeddings model only understands English (JinaV1), the `semantic_query`
description instructs the model to write the query in English.
Descriptions here stay mechanical: which tool to reach for, and how the
filters relate to each other, is stated once in the system prompt so the
guidance is not paid for twice on every request.
"""
search_objects_properties: dict[str, Any] = {
"camera": {
@@ -270,26 +274,13 @@ def get_tool_definitions(
},
"label": {
"type": "string",
"description": (
"Generic object class to filter by — one of the tracked detector "
"labels such as 'person', 'package', 'car', 'dog', 'bird'. Use "
"this for broad queries like 'show me all cars today'. Combine "
"with semantic_query when the user also describes appearance or "
"behavior (e.g. label='person', semantic_query='riding a lawn "
"mower')."
),
"description": "Tracked object class to filter by.",
},
"sub_label": {
"type": "string",
"description": (
"Filter by a DISCRETE NAMED entity recognized in the detection. "
"Use this for: a known person's name ('John'), a delivery "
"company ('Amazon', 'UPS'), a recognized animal species or "
"breed ('blue jay', 'cardinal', 'golden retriever'), or a "
"license plate string. When filtering by a specific name, set "
"only sub_label and leave label unset. Do NOT use sub_label "
"for descriptions of appearance, clothing, or actions — those "
"belong in semantic_query."
"Name recognized in the detection: a person, delivery company, "
"animal species or breed, or license plate."
),
},
"after": {
@@ -313,20 +304,11 @@ def get_tool_definitions(
}
if attribute_classifications:
model_outline = "; ".join(
f"{m['name']} (applies to {', '.join(m['objects']) or 'any object'})"
for m in attribute_classifications
)
search_objects_properties["attribute"] = {
"type": "string",
"description": (
"Filter by a classification attribute label produced by a "
"configured attribute classification model. Use this INSTEAD "
"of semantic_query when the user's request matches one of "
"these classifications. Configured models: "
f"{model_outline}. "
"Set the value to the attribute label that matches the user's "
"phrasing (case-sensitive)."
"Attribute label produced by a configured classification model "
"(case-sensitive)."
),
}
@@ -334,29 +316,12 @@ def get_tool_definitions(
search_objects_properties["semantic_query"] = {
"type": "string",
"description": (
"Optional natural-language description of a PHYSICAL "
"CHARACTERISTIC, APPEARANCE, or ACTIVITY the user mentioned, "
"used to semantically narrow results. Only set this when the "
"user describes something beyond what label and sub_label can "
"express on their own.\n"
"USE for descriptive phrases like: 'riding a lawn mower', "
"'wearing a red jacket', 'carrying a package', 'walking a "
"dog', 'on a bicycle', 'holding an umbrella'.\n"
"DO NOT USE for:\n"
"- specific named people, pets, or delivery companies → use sub_label\n"
"- animal species or breed names like 'blue jay', 'cardinal', "
"'golden retriever' → use sub_label\n"
"- license plate strings → use sub_label\n"
"- generic object queries like 'all cars today' or 'every "
"person' → use label alone with no semantic_query\n"
"When set, combine with label/time/camera/zone filters as "
"usual (e.g. label='person', semantic_query='riding a lawn "
"mower', after='2024-05-01T00:00:00Z')."
"Description of an appearance or activity, used to semantically "
"narrow results."
+ (
" The configured embeddings model only understands "
"English, so always write semantic_query in English, "
"translating the user's description if they phrased it "
"in another language."
" The configured embeddings model only understands English, so "
"always write this in English, translating the user's "
"description if they phrased it in another language."
if embeddings_language == "english"
else ""
)
@@ -364,26 +329,10 @@ def get_tool_definitions(
}
search_objects_description = (
"Search the historical record of detected objects in Frigate. "
"Use this ONLY for questions about the PAST — e.g. 'did anyone come by today?', "
"'when was the last car?', 'show me detections from yesterday'. "
"Do NOT use this for monitoring or alerting requests about future events — "
"use start_camera_watch instead for those. "
"An 'object' in Frigate represents a tracked detection (e.g., a person, package, car).\n\n"
"Choose filters based on what the user is asking for:\n"
"- Generic class query ('show me all cars today'): set `label` only.\n"
"- Specific NAMED entity (known person, delivery company, animal "
"species/breed like 'blue jay' or 'golden retriever', license "
"plate): set `sub_label` only and leave `label` unset.\n"
"Search the historical record of tracked detections. Use this ONLY for "
"questions about the PAST, e.g. 'did anyone come by today?', 'when was the "
"last car?'. For alerting on future events use start_camera_watch instead."
)
if semantic_search_enabled:
search_objects_description += (
"- Physical CHARACTERISTIC, APPEARANCE, or ACTIVITY that is not a "
"discrete name ('person riding a lawn mower', 'someone in a red "
"jacket', 'person carrying a package'): set `semantic_query` with "
"the descriptive phrase, optionally alongside `label` for the "
"object class. Do NOT put descriptive phrases in sub_label."
)
return [
{
@@ -398,20 +347,30 @@ def get_tool_definitions(
"required": [],
},
},
{
"type": "function",
"function": {
"name": "get_categorized_object_names",
"description": (
"Every name that can be attached as a sub_label, grouped by object "
"type: recognized faces, named license plates, classification "
"categories, and delivery logos. Takes no arguments and always "
"returns the complete map."
),
"parameters": {
"type": "object",
"properties": {},
"required": [],
},
},
},
{
"type": "function",
"function": {
"name": "find_similar_objects",
"description": (
"Find tracked objects that are visually and semantically similar "
"to a specific past event. Use this when the user references a "
"particular object they have seen and wants to find other "
"sightings of the same or similar one ('that green car', 'the "
"person in the red jacket', 'the package that was delivered'). "
"Prefer this over search_objects whenever the user's intent is "
"'find more like this specific one.' Use search_objects first "
"only if you need to locate the anchor event. Requires semantic "
"search to be enabled."
"Find tracked objects visually and semantically similar to a "
"specific past event. Requires semantic search to be enabled."
),
"parameters": {
"type": "object",
@@ -473,9 +432,8 @@ def get_tool_definitions(
"function": {
"name": "set_camera_state",
"description": (
"Change a camera's feature state (e.g., turn detection on/off, enable/disable recordings). "
"Use camera='*' to apply to all cameras at once. "
"Only call this tool when the user explicitly asks to change a camera setting. "
"Change a camera's feature state, e.g. turn detection on or off. "
"Only call this when the user explicitly asks to change a setting. "
"Requires admin privileges."
),
"parameters": {
@@ -495,7 +453,7 @@ def get_tool_definitions(
"motion",
"enabled",
"birdseye",
"birdseye_mode",
"birdseye_modes",
"improve_contrast",
"ptz_autotracker",
"motion_contour_area",
@@ -510,14 +468,14 @@ def get_tool_definitions(
],
"description": (
"The feature to change. Most features accept ON or OFF. "
"birdseye_mode accepts CONTINUOUS, MOTION, or OBJECTS. "
"birdseye_modes accepts CONTINUOUS, MOTION, ALL_OBJECTS, ALERTS, DETECTIONS, NONE, or a comma-separated combination. "
"motion_contour_area and motion_threshold accept a number. "
"profile accepts a profile name or 'none' to deactivate (requires camera='*')."
),
},
"value": {
"type": "string",
"description": "The value to set. ON or OFF for toggles, a number for thresholds, a profile name or 'none' for profile.",
"description": "The value to set, as accepted by the chosen feature.",
},
},
"required": ["camera", "feature", "value"],
@@ -529,11 +487,9 @@ def get_tool_definitions(
"function": {
"name": "get_live_context",
"description": (
"Get the current live image and detection information for a single camera: objects being tracked, "
"zones, timestamps. Use this to understand what is visible in the live view. "
"Call this when answering questions about what is happening right now on a specific camera. "
"Operates on one camera at a time; call the tool again for each additional camera. "
"Wildcards and empty values are not accepted."
"Current live image and detections (tracked objects, zones, "
"timestamps) for one camera. Use this for questions about what is "
"happening right now. Call it again for each additional camera."
),
"parameters": {
"type": "object",
@@ -541,8 +497,8 @@ def get_tool_definitions(
"camera": {
"type": "string",
"description": (
"Exact name of a single camera to get live context for. "
"Wildcards (e.g. '*', 'all') and empty strings are not accepted."
"Exact name of a single camera. Wildcards (e.g. '*', "
"'all') and empty strings are not accepted."
),
},
},
@@ -555,10 +511,9 @@ def get_tool_definitions(
"function": {
"name": "start_camera_watch",
"description": (
"Start a continuous VLM watch job that monitors a camera and sends a notification "
"when a specified condition is met. Use this when the user wants to be alerted about "
"a future event, e.g. 'tell me when guests arrive' or 'notify me when the package is picked up'. "
"Only one watch job can run at a time. Returns a job ID."
"Start a continuous watch job that monitors a camera and notifies "
"the user when a condition is met, e.g. 'tell me when guests "
"arrive'. Only one watch job can run at a time. Returns a job ID."
),
"parameters": {
"type": "object",
@@ -598,10 +553,7 @@ def get_tool_definitions(
"type": "function",
"function": {
"name": "stop_camera_watch",
"description": (
"Cancel the currently running VLM watch job. Use this when the user wants to "
"stop a previously started watch, e.g. 'stop watching the front door'."
),
"description": "Cancel the currently running watch job.",
"parameters": {
"type": "object",
"properties": {},
@@ -614,11 +566,9 @@ def get_tool_definitions(
"function": {
"name": "get_profile_status",
"description": (
"Get the current profile status including the active profile and "
"timestamps of when each profile was last activated. Use this to "
"determine time periods for recap requests — e.g. when the user asks "
"'what happened while I was away?', call this first to find the relevant "
"time window based on profile activation history."
"Get the active profile and when each profile was last activated. "
"Call this before get_recap to derive the time window for requests "
"like 'what happened while I was away?'."
),
"parameters": {
"type": "object",
@@ -632,11 +582,9 @@ def get_tool_definitions(
"function": {
"name": "get_recap",
"description": (
"Get a recap of all activity (alerts and detections) for a given time period. "
"Use this after calling get_profile_status to retrieve what happened during "
"a specific window — e.g. 'what happened while I was away?'. Returns a "
"chronological list of activity with camera, objects, zones, and GenAI-generated "
"descriptions when available. Summarize the results for the user."
"Get all activity (alerts and detections) for a time period, as a "
"chronological list with camera, objects, zones, and descriptions "
"when available. Summarize the results for the user."
),
"parameters": {
"type": "object",
@@ -723,14 +671,13 @@ def build_chat_system_prompt(
)
speed_units_section = f"\n\nReport object speeds to the user in {speed_unit}."
semantic_search_section = ""
filter_routing_section = (
"\n\nWhen routing a search_objects call, pick filters by the shape of the user's request:\n"
"- Generic class ('show me all cars today'): set `label` only.\n"
"- Specific named entity — a known person ('John'), delivery company ('Amazon'), animal species/breed ('blue jay', 'golden retriever'), or license plate: set `sub_label` only and leave `label` unset. Call get_categorized_object_names first and use the exact spelling it returns; a guessed spelling matches nothing. If the name is absent, say it is not configured rather than searching for it."
)
if semantic_search_enabled:
semantic_search_section = (
"\n\nWhen routing a search_objects call, pick filters by the shape of the user's request:\n"
"- Generic class ('show me all cars today'): set `label` only.\n"
"- Specific named entity — a known person ('John'), delivery company ('Amazon'), animal species/breed ('blue jay', 'cardinal', 'golden retriever'), or license plate: set `sub_label` only and leave `label` unset.\n"
"- Physical characteristic, appearance, or activity that is NOT a discrete name ('find me people riding a lawn mower', 'someone in a red jacket', 'a person carrying a package'): set `semantic_query` with the descriptive phrase, optionally combined with `label` for the object class. Never put descriptive phrases in `sub_label`."
)
filter_routing_section += "\n- Physical characteristic, appearance, or activity that is NOT a discrete name ('riding a lawn mower', 'someone in a red jacket'): set `semantic_query` with the descriptive phrase, optionally combined with `label`. Never put descriptive phrases in `sub_label`."
attribute_classification_section = ""
if attribute_classifications:
@@ -739,9 +686,9 @@ def build_chat_system_prompt(
for m in attribute_classifications
)
attribute_classification_section = (
"\n\nAttribute classification models are configured for the following object types:\n"
"\n\nConfigured attribute classification models:\n"
f"{model_lines}\n"
"When the user's request matches one of these classifications, set the search_objects `attribute` field to the matching label rather than using `semantic_query`. Reserve `semantic_query` for descriptive phrases that fall outside the configured attribute labels."
"When the user's request matches one of these classifications, set the search_objects `attribute` field to the matching label (case-sensitive) rather than using `semantic_query`. Reserve `semantic_query` for descriptive phrases outside the configured attribute labels."
)
return f"""You are a helpful assistant for Frigate, a security camera NVR system. You help users answer questions about their cameras, detected objects, and events.
@@ -750,9 +697,6 @@ Current server local date and time: {current_date_str} at {current_time_str}
Do not start your response with phrases like "I will check...", "Let me see...", or "Let me look...". Answer directly.
Always present times to the user in the server's local timezone. When tool results include start_time_local and end_time_local, use those exact strings when listing or describing detection times—do not convert or invent timestamps. Do not use UTC or ISO format with Z for the user-facing answer unless the tool result only provides Unix timestamps without local time fields.
When users ask about "today", "yesterday", "this week", etc., use the current date above as reference.
When searching for objects or events, use ISO 8601 format for dates (e.g., {current_date_str}T00:00:00Z for the start of today).
Always be accurate with time calculations based on the current date provided.
Always present times in the server's local timezone. When tool results include start_time_local and end_time_local, quote those strings exactly; never convert or invent timestamps, and fall back to UTC or ISO format only when a result has no local time fields. Resolve relative dates like "today" or "this week" against the current date above, and pass dates to tools in ISO 8601 (e.g. {current_date_str}T00:00:00Z for the start of today).
When a user refers to a specific object they have seen or describe with identifying details ("that green car", "the person in the red jacket", "a package left today"), prefer the find_similar_objects tool over search_objects. Use search_objects first only to locate the anchor event, then pass its id to find_similar_objects. For generic queries like "show me all cars today", keep using search_objects. If a user message begins with [attached_event:<id>], treat that event id as the anchor for any similarity or "tell me more" request in the same message and call find_similar_objects with that id.{semantic_search_section}{attribute_classification_section}{cameras_section}{speed_units_section}"""
When the user refers to a specific object they have seen ("that green car", "the person in the red jacket", "a package left today"), prefer find_similar_objects over search_objects, using search_objects only to locate the anchor event and passing its id along. Keep search_objects for generic queries like "show me all cars today". If a user message begins with [attached_event:<id>], treat that id as the anchor for any similarity or "tell me more" request in the same message.{filter_routing_section}{attribute_classification_section}{cameras_section}{speed_units_section}"""
+1 -5
View File
@@ -115,10 +115,6 @@ def query_recordings(source_camera: str, start_ts: float, end_ts: float) -> Mode
return cast(ModelSelect, query)
class NoRecordingsError(ValueError):
"""Raised when no recordings exist in the requested time range."""
class DebugReplaySource(ABC):
"""Abstract source for a debug replay session.
@@ -191,7 +187,7 @@ class RecordingDebugReplaySource(DebugReplaySource):
raise ValueError("End time must be after start time")
if not query_recordings(self._camera, self._start_ts, self._end_ts).count():
raise NoRecordingsError(
raise ValueError(
f"No recordings found for camera '{self._camera}' in the specified time range"
)
+2 -1
View File
@@ -15,7 +15,7 @@ import numpy as np
from frigate.comms.inter_process import InterProcessRequestor
from frigate.config import FrigateConfig
from frigate.const import UPDATE_JOB_STATE
from frigate.const import STREAM_TYPE_MAIN, UPDATE_JOB_STATE
from frigate.jobs.job import Job
from frigate.jobs.manager import (
get_job_by_id,
@@ -485,6 +485,7 @@ class MotionSearchRunner(threading.Thread):
)
)
.where(Recordings.camera == camera_name)
.where(Recordings.stream_type == STREAM_TYPE_MAIN)
.order_by(Recordings.start_time.asc())
)
+6
View File
@@ -79,6 +79,12 @@ class Recordings(Model):
segment_size = FloatField(default=0) # this should be stored as MB
regions = IntegerField(null=True)
motion_heatmap = JSONField(null=True) # 16x16 grid, 256 values (0-255)
keyframes = JSONField(null=True) # ms offsets; NULL = unprobed (legacy rows)
stream_type = CharField(default="main", max_length=8)
has_audio = BooleanField(null=True) # NULL = unknown (legacy rows)
audio_rate = IntegerField(null=True) # Hz; NULL = unknown (legacy rows)
audio_codec = CharField(null=True, max_length=20) # NULL = unknown (legacy rows)
video_codec = CharField(null=True, max_length=20) # NULL = unknown (legacy rows)
class ExportCase(Model):
+179 -130
View File
@@ -9,6 +9,7 @@ import queue
import subprocess as sp
import threading
import traceback
from dataclasses import dataclass
from multiprocessing.synchronize import Event as MpEvent
from typing import Any
@@ -16,9 +17,11 @@ import cv2
import numpy as np
from frigate.comms.inter_process import InterProcessRequestor
from frigate.comms.review_updater import ReviewDataSubscriber
from frigate.config import BirdseyeModeEnum, FfmpegConfig, FrigateConfig
from frigate.const import BASE_DIR, BIRDSEYE_PIPE, INSTALL_DIR, UPDATE_BIRDSEYE_LAYOUT
from frigate.output.ws_auth import ws_has_camera_access
from frigate.review.types import SeverityEnum
from frigate.util.image import (
SharedMemoryFrameManager,
copy_yuv_to_position,
@@ -28,6 +31,15 @@ from frigate.util.image import (
logger = logging.getLogger(__name__)
@dataclass(frozen=True, slots=True)
class BirdseyeActivity:
"""Activity signals used to decide whether a camera is shown in Birdseye."""
has_object: bool
has_motion: bool
severity: str | None
def get_standard_aspect_ratio(width: int, height: int) -> tuple[int, int]:
"""Ensure that only standard aspect ratios are used."""
# it is important that all ratios have the same scale
@@ -357,6 +369,7 @@ class BirdsEyeFrameManager:
settings.detect.height,
],
"last_active_frame": 0.0,
"live_active": False,
"current_frame": 0.0,
"layout_frame": 0.0,
"channel_dims": {
@@ -408,19 +421,33 @@ class BirdsEyeFrameManager:
channel_dims,
)
def camera_active(
self, mode: Any, object_box_count: int, motion_box_count: int
def camera_threshold_active(
self,
modes: list[BirdseyeModeEnum],
activity: BirdseyeActivity,
) -> bool:
if mode == BirdseyeModeEnum.continuous:
return True
"""Return whether activity subject to inactivity_threshold is present."""
return (BirdseyeModeEnum.motion in modes and activity.has_motion) or (
BirdseyeModeEnum.all_objects in modes and activity.has_object
)
if mode == BirdseyeModeEnum.motion and motion_box_count > 0:
return True
if mode == BirdseyeModeEnum.objects and object_box_count > 0:
return True
return False
def camera_live_active(
self,
modes: list[BirdseyeModeEnum],
activity: BirdseyeActivity,
) -> bool:
"""Return whether activity that ends the moment it stops is present."""
return (
BirdseyeModeEnum.continuous in modes
or (
BirdseyeModeEnum.alerts in modes
and activity.severity == SeverityEnum.alert
)
or (
BirdseyeModeEnum.detections in modes
and activity.severity == SeverityEnum.detection
)
)
def get_camera_coordinates(self) -> dict[str, dict[str, int]]:
"""Return the coordinates of each camera in the current layout."""
@@ -451,9 +478,15 @@ class BirdsEyeFrameManager:
and self.config.cameras[cam].birdseye.enabled
and self.config.cameras[cam].enabled_in_config
and self.config.cameras[cam].enabled
and cam_data["last_active_frame"] > 0
and cam_data["current_frame_time"] - cam_data["last_active_frame"]
< self.config.birdseye.inactivity_threshold
and (
cam_data["live_active"]
or (
cam_data["last_active_frame"] > 0
and cam_data["current_frame_time"]
- cam_data["last_active_frame"]
< self.config.birdseye.inactivity_threshold
)
)
]
)
logger.debug(f"Active cameras: {active_cameras}")
@@ -470,7 +503,9 @@ class BirdsEyeFrameManager:
limited_active_cameras = sorted(
active_cameras,
key=lambda active_camera: (
self.cameras[active_camera]["current_frame_time"]
0.0
if self.cameras[active_camera]["live_active"]
else self.cameras[active_camera]["current_frame_time"]
- self.cameras[active_camera]["last_active_frame"]
),
)
@@ -604,112 +639,92 @@ class BirdsEyeFrameManager:
) -> list[list[Any]] | None:
"""Calculate the optimal layout for 2+ cameras."""
def map_layout(
camera_layout: list[list[Any]], row_height: int
) -> tuple[int, int, list[list[Any]] | None]:
"""Map the calculated layout."""
candidate_layout = []
starting_x = 0
x = 0
max_width = 0
y = 0
def find_available_x(
current_x: int,
width: int,
reserved_ranges: list[tuple[int, int]],
max_width: int,
) -> int | None:
"""Find the first horizontal slot that does not collide with reservations."""
x = current_x
for row in camera_layout:
final_row = []
max_width = max(max_width, x)
x = starting_x
for cameras in row:
camera_dims = self.cameras[cameras[0]]["dimensions"].copy()
camera_aspect = cameras[1]
for reserved_start, reserved_end in sorted(reserved_ranges):
if x >= reserved_end:
continue
if camera_dims[1] > camera_dims[0]:
scaled_height = int(row_height * 2)
scaled_width = int(scaled_height * camera_aspect)
starting_x = scaled_width
else:
scaled_height = row_height
scaled_width = int(scaled_height * camera_aspect)
if x + width <= reserved_start:
return x
# layout is too large
if (
x + scaled_width > self.canvas.width
or y + scaled_height > self.canvas.height
):
return x + scaled_width, y + scaled_height, None
x = max(x, reserved_end)
final_row.append((cameras[0], (x, y, scaled_width, scaled_height)))
x += scaled_width
if x + width <= max_width:
return x
y += row_height
candidate_layout.append(final_row)
if max_width == 0:
max_width = x
return max_width, y, candidate_layout
canvas_aspect_x, canvas_aspect_y = self.canvas.get_aspect(coefficient)
camera_layout: list[list[Any]] = []
camera_layout.append([])
starting_x = 0
x = starting_x
y = 0
y_i = 0
max_y = 0
for camera in cameras_to_add:
camera_dims = self.cameras[camera]["dimensions"].copy()
camera_aspect_x, camera_aspect_y = self.canvas.get_camera_aspect(
camera, camera_dims[0], camera_dims[1]
)
if camera_dims[1] > camera_dims[0]:
portrait = True
else:
portrait = False
if (x + camera_aspect_x) <= canvas_aspect_x:
# insert if camera can fit on current row
camera_layout[y_i].append(
(
camera,
camera_aspect_x / camera_aspect_y,
)
)
if portrait:
starting_x = camera_aspect_x
else:
max_y = max(
max_y,
camera_aspect_y,
)
x += camera_aspect_x
else:
# move on to the next row and insert
y += max_y
y_i += 1
camera_layout.append([])
x = starting_x
if x + camera_aspect_x > canvas_aspect_x:
return None
camera_layout[y_i].append(
(
camera,
camera_aspect_x / camera_aspect_y,
)
)
x += camera_aspect_x
if y + max_y > canvas_aspect_y:
return None
row_height = int(self.canvas.height / coefficient)
total_width, total_height, standard_candidate_layout = map_layout(
camera_layout, row_height
)
def map_layout(row_height: int) -> tuple[int, int, list[list[Any]] | None]:
"""Lay out cameras row by row while reserving portrait spans for the next row."""
candidate_layout: list[list[Any]] = []
reserved_ranges: dict[int, list[tuple[int, int]]] = {}
current_row: list[Any] = []
row_index = 0
row_y = 0
row_x = 0
max_width = 0
max_height = 0
for camera in cameras_to_add:
camera_dims = self.cameras[camera]["dimensions"].copy()
camera_aspect_x, camera_aspect_y = self.canvas.get_camera_aspect(
camera, camera_dims[0], camera_dims[1]
)
portrait = camera_dims[1] > camera_dims[0]
scaled_height = row_height * 2 if portrait else row_height
scaled_width = int(scaled_height * (camera_aspect_x / camera_aspect_y))
while True:
x = find_available_x(
row_x,
scaled_width,
reserved_ranges.get(row_index, []),
self.canvas.width,
)
if x is not None and row_y + scaled_height <= self.canvas.height:
current_row.append(
(camera, (x, row_y, scaled_width, scaled_height))
)
row_x = x + scaled_width
max_width = max(max_width, row_x)
max_height = max(max_height, row_y + scaled_height)
if portrait:
reserved_ranges.setdefault(row_index + 1, []).append(
(x, row_x)
)
break
if current_row:
candidate_layout.append(current_row)
current_row = []
row_index += 1
row_y = row_index * row_height
row_x = 0
if row_y + scaled_height > self.canvas.height:
overflow_width = max(max_width, scaled_width)
overflow_height = row_y + scaled_height
return overflow_width, overflow_height, None
if current_row:
candidate_layout.append(current_row)
return max_width, max_height, candidate_layout
row_height = max(1, int(self.canvas.height / coefficient))
total_width, total_height, standard_candidate_layout = map_layout(row_height)
if not standard_candidate_layout:
# if standard layout didn't work
@@ -718,9 +733,9 @@ class BirdsEyeFrameManager:
total_width / self.canvas.width,
total_height / self.canvas.height,
)
row_height = int(row_height / scale_down_percent)
row_height = max(1, int(row_height / scale_down_percent))
total_width, total_height, standard_candidate_layout = map_layout(
camera_layout, row_height
row_height
)
if not standard_candidate_layout:
@@ -734,8 +749,8 @@ class BirdsEyeFrameManager:
1 / (total_width / self.canvas.width),
1 / (total_height / self.canvas.height),
)
row_height = int(row_height * scale_up_percent)
_, _, scaled_layout = map_layout(camera_layout, row_height)
row_height = max(1, int(row_height * scale_up_percent))
_, _, scaled_layout = map_layout(row_height)
if scaled_layout:
return scaled_layout
@@ -745,8 +760,7 @@ class BirdsEyeFrameManager:
def update(
self,
camera: str,
object_count: int,
motion_count: int,
activity: BirdseyeActivity,
frame_time: float,
frame: np.ndarray,
) -> tuple[bool, bool]:
@@ -760,22 +774,30 @@ class BirdsEyeFrameManager:
return False, False
force_update = False
camera_state = self.cameras.get(camera)
if camera_state is None:
return False, False
# disabling birdseye is a little tricky
if not camera_config.birdseye.enabled or not camera_config.enabled:
# if we've rendered a frame (we have a value for last_active_frame)
# then we need to set it to zero
if self.cameras[camera]["last_active_frame"] > 0:
self.cameras[camera]["last_active_frame"] = 0
# if we've rendered a frame (we have activity state) then clear it
if camera_state["last_active_frame"] > 0 or camera_state["live_active"]:
camera_state["last_active_frame"] = 0
camera_state["live_active"] = False
force_update = True
else:
return False, False
# update the last active frame for the camera
self.cameras[camera]["current_frame"] = frame.copy()
self.cameras[camera]["current_frame_time"] = frame_time
if self.camera_active(camera_config.birdseye.mode, object_count, motion_count):
self.cameras[camera]["last_active_frame"] = frame_time
camera_state["current_frame"] = frame.copy()
camera_state["current_frame_time"] = frame_time
modes = camera_config.birdseye.modes
if self.camera_threshold_active(modes, activity):
camera_state["last_active_frame"] = frame_time
camera_state["live_active"] = self.camera_live_active(modes, activity)
now = datetime.datetime.now().timestamp()
@@ -834,6 +856,8 @@ class Birdseye:
self.frame_manager = SharedMemoryFrameManager()
self.stop_event = stop_event
self.requestor = InterProcessRequestor()
self.review_subscriber = ReviewDataSubscriber("")
self.review_severity: dict[str, str] = {}
self.idle_fps: float = self.config.birdseye.idle_heartbeat_fps
self._idle_interval: float | None = (
(1.0 / self.idle_fps) if self.idle_fps > 0 else None
@@ -864,6 +888,21 @@ class Birdseye:
self.birdseye_manager.clear_frame()
self.__send_new_frame()
def check_review_updates(self) -> None:
"""Drain review updates so each camera's active severity stays current."""
while True:
update = self.review_subscriber.check_for_update(timeout=0)
if update is None:
break
camera = update["after"]["camera"]
if update["type"] == "end":
self.review_severity.pop(camera, None)
else:
self.review_severity[camera] = update["after"]["severity"]
def add_camera(self, camera: str) -> None:
"""Add a camera to the birdseye manager."""
self.birdseye_manager.add_camera(camera)
@@ -872,6 +911,7 @@ class Birdseye:
def remove_camera(self, camera: str) -> None:
"""Remove a camera from the birdseye manager."""
self.birdseye_manager.remove_camera(camera)
self.review_severity.pop(camera, None)
logger.debug(f"Removed camera {camera} from birdseye")
def write_data(
@@ -882,10 +922,18 @@ class Birdseye:
frame_time: float,
frame: np.ndarray,
) -> None:
activity = BirdseyeActivity(
has_object=any(
not tracked_object["false_positive"]
for tracked_object in current_tracked_objects
),
has_motion=bool(motion_boxes),
severity=self.review_severity.get(camera),
)
frame_changed, frame_layout_changed = self.birdseye_manager.update(
camera,
len([o for o in current_tracked_objects if not o["stationary"]]),
len(motion_boxes),
activity,
frame_time,
frame,
)
@@ -906,5 +954,6 @@ class Birdseye:
self.__send_new_frame()
def stop(self) -> None:
self.review_subscriber.stop()
self.converter.join()
self.broadcaster.join()
+17 -7
View File
@@ -51,8 +51,12 @@ def check_disabled_camera_update(
for camera, last_update in write_times.items():
offline_time = now - last_update
camera_config = config.cameras.get(camera)
if config.cameras[camera].enabled:
if camera_config is None:
continue
if camera_config.enabled:
has_enabled_camera = True
else:
# flag camera as offline when it is disabled
@@ -62,8 +66,8 @@ def check_disabled_camera_update(
# last camera update was more than 1 second ago
# need to send empty data to birdseye because current
# frame is now out of date
cam_width = config.cameras[camera].detect.width
cam_height = config.cameras[camera].detect.height
cam_width = camera_config.detect.width
cam_height = camera_config.detect.height
if cam_width is None or cam_height is None:
raise ValueError(f"Camera {camera} detect dimensions not configured")
@@ -184,6 +188,11 @@ class OutputProcess(FrigateProcess):
self.config.birdseye = birdseye_config
logger.debug("Applied dynamic birdseye config update")
# drain review updates every iteration, not just when birdseye is
# being consumed, so a dropped end never strands a camera
if birdseye is not None:
birdseye.check_review_updates()
# check if there is an updated config
updates = config_subscriber.check_for_updates()
@@ -309,10 +318,11 @@ class OutputProcess(FrigateProcess):
regions,
) = data
frame = frame_manager.get(
frame_name, self.config.cameras[camera].frame_shape_yuv
)
frame_manager.close(frame_name)
camera_config = self.config.cameras.get(camera)
if camera_config is not None:
frame_manager.get(frame_name, camera_config.frame_shape_yuv)
frame_manager.close(frame_name)
detection_subscriber.stop()
+21 -20
View File
@@ -799,14 +799,24 @@ class PtzAutoTracker:
except TimeoutError:
continue
# both are popped when the camera is deleted, so resolve them once
# here and use the locals for the rest of the move; a move already
# in flight then finishes against valid objects
metrics = self.ptz_metrics.get(camera)
camera_config = self.config.cameras.get(camera)
if metrics is None or camera_config is None:
logger.debug("%s: Dropping queued move, camera was removed", camera)
continue
async with self.move_queue_locks[camera]:
frame_time, pan, tilt, zoom = move_data
# if we're receiving move requests during a PTZ move, ignore them
if ptz_moving_at_frame_time(
frame_time,
self.ptz_metrics[camera].start_time.value,
self.ptz_metrics[camera].stop_time.value,
metrics.start_time.value,
metrics.stop_time.value,
):
logger.debug(
f"{camera}: Move queue: PTZ moving, dequeueing move request - frame time: {frame_time}, final pan: {pan}, final tilt: {tilt}, final zoom: {zoom}"
@@ -815,7 +825,7 @@ class PtzAutoTracker:
else:
if (
self.config.cameras[camera].onvif.autotracking.zooming
camera_config.onvif.autotracking.zooming
== ZoomingModeEnum.relative
):
await self.onvif._move_relative(camera, pan, tilt, zoom, 1)
@@ -824,25 +834,22 @@ class PtzAutoTracker:
await self.onvif._move_relative(camera, pan, tilt, 0, 1)
# Wait until the camera finishes moving
while not self.ptz_metrics[camera].motor_stopped.is_set():
while not metrics.motor_stopped.is_set():
await self.onvif.get_camera_status(camera)
if (
zoom > 0
and self.ptz_metrics[camera].zoom_level.value != zoom
):
if zoom > 0 and metrics.zoom_level.value != zoom:
await self.onvif._zoom_absolute(camera, zoom, 1)
# Wait until the camera finishes moving
while not self.ptz_metrics[camera].motor_stopped.is_set():
while not metrics.motor_stopped.is_set():
await self.onvif.get_camera_status(camera)
if self.config.cameras[camera].onvif.autotracking.movement_weights:
if camera_config.onvif.autotracking.movement_weights:
logger.debug(
f"{camera}: Predicted movement time: {self._predict_movement_time(camera, pan, tilt)}"
)
logger.debug(
f"{camera}: Actual movement time: {self.ptz_metrics[camera].stop_time.value - self.ptz_metrics[camera].start_time.value}"
f"{camera}: Actual movement time: {metrics.stop_time.value - metrics.start_time.value}"
)
# save metrics for better estimate calculations
@@ -851,21 +858,15 @@ class PtzAutoTracker:
and len(self.move_metrics[camera])
< AUTOTRACKING_MAX_MOVE_METRICS
and (pan != 0 or tilt != 0)
and self.config.cameras[
camera
].onvif.autotracking.calibrate_on_startup
and camera_config.onvif.autotracking.calibrate_on_startup
):
logger.debug(f"{camera}: Adding new values to move metrics")
self.move_metrics[camera].append(
{
"pan": pan,
"tilt": tilt,
"start_timestamp": self.ptz_metrics[
camera
].start_time.value,
"end_timestamp": self.ptz_metrics[
camera
].stop_time.value,
"start_timestamp": metrics.start_time.value,
"end_timestamp": metrics.stop_time.value,
}
)
+92 -56
View File
@@ -72,7 +72,11 @@ class OnvifController:
self.config_subscriber = CameraConfigUpdateSubscriber(
self.config,
self.config.cameras,
[CameraConfigUpdateEnum.onvif],
[
CameraConfigUpdateEnum.onvif,
CameraConfigUpdateEnum.add,
CameraConfigUpdateEnum.remove,
],
)
asyncio.run_coroutine_threadsafe(self._init_cameras(), self.loop)
@@ -101,6 +105,16 @@ class OnvifController:
if update_type == CameraConfigUpdateEnum.onvif.name:
for cam_name in cameras:
await self._reinit_camera(cam_name)
elif update_type == CameraConfigUpdateEnum.add.name:
# a camera added at runtime only needs ONVIF set up if
# it actually has an onvif host configured
for cam_name in cameras:
cam = self.config.cameras.get(cam_name)
if cam and cam.onvif.host:
await self._reinit_camera(cam_name)
elif update_type == CameraConfigUpdateEnum.remove.name:
for cam_name in cameras:
await self._remove_camera(cam_name)
except Exception:
logger.error("Error checking for ONVIF config updates")
@@ -113,6 +127,18 @@ class OnvifController:
except Exception:
logger.debug(f"Error closing ONVIF session for {cam_name}")
async def _remove_camera(self, cam_name: str) -> None:
"""Tear down the ONVIF session for a camera removed at runtime."""
if cam_name not in self.cams and cam_name not in self.camera_configs:
return
logger.debug(f"Tearing down ONVIF for {cam_name} after camera removal")
await self._close_camera(cam_name)
self.cams.pop(cam_name, None)
self.camera_configs.pop(cam_name, None)
self.failed_cams.pop(cam_name, None)
self.status_locks.pop(cam_name, None)
async def _reinit_camera(self, cam_name: str) -> None:
"""Re-initialize a camera after config change."""
logger.info(f"Re-initializing ONVIF for {cam_name} due to config change")
@@ -180,6 +206,11 @@ class OnvifController:
return False
async def _init_onvif(self, camera_name: str) -> bool:
camera_config = self.config.cameras.get(camera_name)
if camera_config is None:
return False
onvif: ONVIFCamera = self.cams[camera_name]["onvif"]
try:
await onvif.update_xaddrs()
@@ -235,7 +266,7 @@ class OnvifController:
p.token,
)
configured_profile = self.config.cameras[camera_name].onvif.profile
configured_profile = camera_config.onvif.profile
profile = None
if configured_profile is not None:
@@ -339,7 +370,7 @@ class OnvifController:
except (AttributeError, TypeError):
fov_space_id = None
autotracking_config = self.config.cameras[camera_name].onvif.autotracking
autotracking_config = camera_config.onvif.autotracking
autotracking_enabled = (
autotracking_config.enabled_in_config and autotracking_config.enabled
)
@@ -614,6 +645,11 @@ class OnvifController:
logger.error(f"{camera_name} does not support ONVIF RelativeMove (FOV).")
return
metrics = self.ptz_metrics.get(camera_name)
if metrics is None:
return
logger.debug(
f"{camera_name} called RelativeMove: pan: {pan} tilt: {tilt} zoom: {zoom}"
)
@@ -627,15 +663,11 @@ class OnvifController:
self.cams[camera_name]["active"] = True
# only track start_time for autotracking
if self.ptz_metrics[camera_name].autotracker_enabled.value:
self.ptz_metrics[camera_name].motor_stopped.clear()
logger.debug(
f"{camera_name}: PTZ start time: {self.ptz_metrics[camera_name].frame_time.value}"
)
self.ptz_metrics[camera_name].start_time.value = self.ptz_metrics[
camera_name
].frame_time.value
self.ptz_metrics[camera_name].stop_time.value = 0
if metrics.autotracker_enabled.value:
metrics.motor_stopped.clear()
logger.debug(f"{camera_name}: PTZ start time: {metrics.frame_time.value}")
metrics.start_time.value = metrics.frame_time.value
metrics.stop_time.value = 0
move_request = self.cams[camera_name]["relative_move_request"]
@@ -697,9 +729,14 @@ class OnvifController:
logger.error(f"{preset} is not a valid preset for {camera_name}")
return
metrics = self.ptz_metrics.get(camera_name)
if metrics is None:
return
self.cams[camera_name]["active"] = True
self.ptz_metrics[camera_name].start_time.value = 0
self.ptz_metrics[camera_name].stop_time.value = 0
metrics.start_time.value = 0
metrics.stop_time.value = 0
move_request = self.cams[camera_name]["move_request"]
preset_token = self.cams[camera_name]["presets"][preset]
@@ -738,6 +775,11 @@ class OnvifController:
logger.error(f"{camera_name} does not support ONVIF AbsoluteMove zooming.")
return
metrics = self.ptz_metrics.get(camera_name)
if metrics is None:
return
logger.debug(f"{camera_name} called AbsoluteMove: zoom: {zoom}")
if self.cams[camera_name]["active"]:
@@ -747,14 +789,10 @@ class OnvifController:
return
self.cams[camera_name]["active"] = True
self.ptz_metrics[camera_name].motor_stopped.clear()
logger.debug(
f"{camera_name}: PTZ start time: {self.ptz_metrics[camera_name].frame_time.value}"
)
self.ptz_metrics[camera_name].start_time.value = self.ptz_metrics[
camera_name
].frame_time.value
self.ptz_metrics[camera_name].stop_time.value = 0
metrics.motor_stopped.clear()
logger.debug(f"{camera_name}: PTZ start time: {metrics.frame_time.value}")
metrics.start_time.value = metrics.frame_time.value
metrics.stop_time.value = 0
move_request = self.cams[camera_name]["absolute_move_request"]
# function takes in 0 to 1 for zoom, interpolate to the values of the camera.
@@ -875,16 +913,18 @@ class OnvifController:
Returns camera details including features and presets if available.
"""
if not self.config.cameras[camera_name].enabled:
camera_config = self.config.cameras.get(camera_name)
if camera_config is None:
return {}
if not camera_config.enabled:
logger.debug(
f"Camera {camera_name} disabled, won't try to initialize ONVIF"
)
return {}
if camera_name not in self.cams.keys() and (
camera_name not in self.config.cameras
or not self.config.cameras[camera_name].onvif.host
):
if camera_name not in self.cams.keys() and (not camera_config.onvif.host):
logger.debug(f"ONVIF is not configured for {camera_name}")
return {}
@@ -985,6 +1025,12 @@ class OnvifController:
logger.error(f"ONVIF is not configured for {camera_name}")
return
metrics = self.ptz_metrics.get(camera_name)
camera_config = self.config.cameras.get(camera_name)
if metrics is None or camera_config is None:
return
if not self.cams[camera_name]["init"]:
if not await self._init_onvif(camera_name):
return
@@ -1023,36 +1069,29 @@ class OnvifController:
zoom_status is None or zoom_status == "IDLE"
):
self.cams[camera_name]["active"] = False
if not self.ptz_metrics[camera_name].motor_stopped.is_set():
self.ptz_metrics[camera_name].motor_stopped.set()
if not metrics.motor_stopped.is_set():
metrics.motor_stopped.set()
logger.debug(
f"{camera_name}: PTZ stop time: {self.ptz_metrics[camera_name].frame_time.value}"
f"{camera_name}: PTZ stop time: {metrics.frame_time.value}"
)
self.ptz_metrics[camera_name].stop_time.value = self.ptz_metrics[
camera_name
].frame_time.value
metrics.stop_time.value = metrics.frame_time.value
else:
self.cams[camera_name]["active"] = True
if self.ptz_metrics[camera_name].motor_stopped.is_set():
self.ptz_metrics[camera_name].motor_stopped.clear()
if metrics.motor_stopped.is_set():
metrics.motor_stopped.clear()
logger.debug(
f"{camera_name}: PTZ start time: {self.ptz_metrics[camera_name].frame_time.value}"
f"{camera_name}: PTZ start time: {metrics.frame_time.value}"
)
self.ptz_metrics[camera_name].start_time.value = self.ptz_metrics[
camera_name
].frame_time.value
self.ptz_metrics[camera_name].stop_time.value = 0
metrics.start_time.value = metrics.frame_time.value
metrics.stop_time.value = 0
if (
self.config.cameras[camera_name].onvif.autotracking.zooming
!= ZoomingModeEnum.disabled
):
if camera_config.onvif.autotracking.zooming != ZoomingModeEnum.disabled:
# store absolute zoom level as 0 to 1 interpolated from the values of the camera
self.ptz_metrics[camera_name].zoom_level.value = numpy.interp(
metrics.zoom_level.value = numpy.interp(
round(status.Position.Zoom.x, 2),
[
self.cams[camera_name]["absolute_zoom_range"]["XRange"]["Min"],
@@ -1061,25 +1100,22 @@ class OnvifController:
[0, 1],
)
logger.debug(
f"{camera_name}: Camera zoom level: {self.ptz_metrics[camera_name].zoom_level.value}"
f"{camera_name}: Camera zoom level: {metrics.zoom_level.value}"
)
# some hikvision cams won't update MoveStatus, so warn if it hasn't changed
if (
not self.ptz_metrics[camera_name].motor_stopped.is_set()
and not self.ptz_metrics[camera_name].reset.is_set()
and self.ptz_metrics[camera_name].start_time.value != 0
and self.ptz_metrics[camera_name].frame_time.value
> (self.ptz_metrics[camera_name].start_time.value + 10)
and self.ptz_metrics[camera_name].stop_time.value == 0
not metrics.motor_stopped.is_set()
and not metrics.reset.is_set()
and metrics.start_time.value != 0
and metrics.frame_time.value > (metrics.start_time.value + 10)
and metrics.stop_time.value == 0
):
logger.debug(
f"Start time: {self.ptz_metrics[camera_name].start_time.value}, Stop time: {self.ptz_metrics[camera_name].stop_time.value}, Frame time: {self.ptz_metrics[camera_name].frame_time.value}"
f"Start time: {metrics.start_time.value}, Stop time: {metrics.stop_time.value}, Frame time: {metrics.frame_time.value}"
)
# set the stop time so we don't come back into this again and spam the logs
self.ptz_metrics[camera_name].stop_time.value = self.ptz_metrics[
camera_name
].frame_time.value
metrics.stop_time.value = metrics.frame_time.value
logger.warning(
f"Camera {camera_name} is still in ONVIF 'MOVING' status."
)
+135 -30
View File
@@ -12,7 +12,14 @@ from typing import Any
from playhouse.sqlite_ext import SqliteExtDatabase
from frigate.config import CameraConfig, FrigateConfig, RetainModeEnum
from frigate.const import CACHE_DIR, CLIPS_DIR, MAX_WAL_SIZE, RECORD_DIR
from frigate.const import (
CACHE_DIR,
CLIPS_DIR,
MAX_WAL_SIZE,
RECORD_DIR,
STREAM_TYPE_MAIN,
STREAM_TYPE_SUB,
)
from frigate.models import Previews, Recordings, ReviewSegment, UserReviewStatus
from frigate.util.builtin import clear_and_unlink
from frigate.util.media import remove_empty_directories
@@ -20,6 +27,29 @@ from frigate.util.media import remove_empty_directories
logger = logging.getLogger(__name__)
def _filter_reviews_for_pass(
reviews: list[Any],
now: datetime.datetime,
alerts_days: float,
detections_days: float,
) -> list[Any]:
"""Limit reviews to those still within this pass's per-severity retention window.
Review rows survive to the longer of the main and sub retention windows,
so a pass that honored all of them would let extended sub retention keep
main recordings alive too. Filtering preserves sort order for the overlap
loop in expire_existing_camera_recordings.
"""
alert_cutoff = (now - datetime.timedelta(days=alerts_days)).timestamp()
detection_cutoff = (now - datetime.timedelta(days=detections_days)).timestamp()
return [
r
for r in reviews
if r.end_time is None
or (r.end_time >= (alert_cutoff if r.severity == "alert" else detection_cutoff))
]
class RecordingCleanup(threading.Thread):
"""Cleanup existing recordings based on retention config."""
@@ -65,11 +95,14 @@ class RecordingCleanup(threading.Thread):
self, config: CameraConfig, now: datetime.datetime
) -> set[Path]:
"""Delete review segments that are expired"""
alert_expire_date = (
now - datetime.timedelta(days=config.record.alerts.retain.days)
).timestamp()
# review rows survive to the longer of the main and sub windows so
# they stay visible while either stream still has recordings
alert_days = config.record.effective_alert_days
detection_days = config.record.effective_detection_days
alert_expire_date = (now - datetime.timedelta(days=alert_days)).timestamp()
detection_expire_date = (
now - datetime.timedelta(days=config.record.detections.retain.days)
now - datetime.timedelta(days=detection_days)
).timestamp()
expired_reviews = (
ReviewSegment.select(ReviewSegment.id, ReviewSegment.thumb_path)
@@ -109,8 +142,11 @@ class RecordingCleanup(threading.Thread):
def expire_existing_camera_recordings(
self,
stream_type: str,
continuous_expire_date: float,
motion_expire_date: float,
alerts_retain_mode: RetainModeEnum,
detections_retain_mode: RetainModeEnum,
config: CameraConfig,
reviews: list[Any],
) -> set[Path]:
@@ -130,6 +166,11 @@ class RecordingCleanup(threading.Thread):
)
.where(
(Recordings.camera == config.name)
& (Recordings.stream_type == stream_type)
& (
Recordings.start_time
< max(continuous_expire_date, motion_expire_date)
)
& (
(
(Recordings.end_time < continuous_expire_date)
@@ -175,9 +216,9 @@ class RecordingCleanup(threading.Thread):
):
keep = True
mode = (
config.record.alerts.retain.mode
alerts_retain_mode
if review.severity == "alert"
else config.record.detections.retain.mode
else detections_retain_mode
)
break
@@ -216,6 +257,10 @@ class RecordingCleanup(threading.Thread):
Recordings.id << deleted_recordings_list[i : i + max_deletes]
).execute()
# previews follow main retention, so only the main pass expires them
if stream_type != STREAM_TYPE_MAIN:
return maybe_empty_dirs
previews = (
Previews.select(
Previews.id,
@@ -292,27 +337,45 @@ class RecordingCleanup(threading.Thread):
expire_before = (
datetime.datetime.now() - datetime.timedelta(days=expire_days)
).timestamp()
no_camera_recordings = (
Recordings.select(
Recordings.id,
Recordings.path,
)
.where(
Recordings.camera.not_in(list(self.config.cameras.keys())), # type: ignore[call-arg, arg-type, misc]
Recordings.end_time < expire_before,
)
.namedtuples()
.iterator()
)
# enumerate the distinct cameras with one index seek each
db_cameras: list[str] = []
last_camera: str | None = None
while True:
query = Recordings.select(Recordings.camera)
if last_camera is not None:
query = query.where(Recordings.camera > last_camera)
next_camera = query.order_by(Recordings.camera.asc()).limit(1).scalar()
if next_camera is None:
break
db_cameras.append(next_camera)
last_camera = next_camera
maybe_empty_dirs = set()
deleted_recordings = set()
for recording in no_camera_recordings:
recording_path = Path(recording.path)
recording_path.unlink(missing_ok=True)
deleted_recordings.add(recording.id)
maybe_empty_dirs.add(recording_path.parent)
for camera in db_cameras:
if camera in self.config.cameras:
continue
no_camera_recordings = (
Recordings.select(
Recordings.id,
Recordings.path,
)
.where(
Recordings.camera == camera,
Recordings.end_time < expire_before,
)
.namedtuples()
.iterator()
)
for recording in no_camera_recordings:
recording_path = Path(recording.path)
recording_path.unlink(missing_ok=True)
deleted_recordings.add(recording.id)
maybe_empty_dirs.add(recording_path.parent)
logger.debug(f"Expiring {len(deleted_recordings)} recordings")
# delete up to 100,000 at a time
@@ -342,6 +405,20 @@ class RecordingCleanup(threading.Thread):
)
).timestamp()
# computed here so the reviews window below covers both passes
sub_continuous_expire_date = (
now - datetime.timedelta(days=config.record.sub.continuous.days)
).timestamp()
sub_motion_expire_date = (
now
- datetime.timedelta(
days=max(
config.record.sub.motion.days,
config.record.sub.continuous.days,
) # can't keep motion for less than continuous
)
).timestamp()
# Get all the reviews to check against
reviews = (
ReviewSegment.select(
@@ -351,18 +428,46 @@ class RecordingCleanup(threading.Thread):
)
.where(
ReviewSegment.camera == camera,
# candidate recordings can extend up to continuous_expire_date
# (the no-motion no-audio branch of the recordings query),
# so reviews must cover that full range to avoid deleting
# segments that overlap recent alerts/detections.
ReviewSegment.start_time < continuous_expire_date,
# candidate recordings reach the later of the two passes'
# continuous cutoffs, so reviews must cover that whole
# range or segments overlapping recent alerts get deleted
ReviewSegment.start_time
< max(continuous_expire_date, sub_continuous_expire_date),
)
.order_by(ReviewSegment.start_time)
.namedtuples()
)
maybe_empty_dirs |= self.expire_existing_camera_recordings(
continuous_expire_date, motion_expire_date, config, reviews
STREAM_TYPE_MAIN,
continuous_expire_date,
motion_expire_date,
config.record.alerts.retain.mode,
config.record.detections.retain.mode,
config,
_filter_reviews_for_pass(
reviews,
now,
config.record.alerts.retain.days,
config.record.detections.retain.days,
),
)
# runs even when sub recording is disabled so old rows still
# expire
maybe_empty_dirs |= self.expire_existing_camera_recordings(
STREAM_TYPE_SUB,
sub_continuous_expire_date,
sub_motion_expire_date,
config.record.sub.alerts.mode,
config.record.sub.detections.mode,
config,
_filter_reviews_for_pass(
reviews,
now,
config.record.sub.alerts.days,
config.record.sub.detections.days,
),
)
logger.debug(f"End camera: {camera}.")
+38 -30
View File
@@ -12,6 +12,7 @@ import threading
from collections.abc import Callable
from enum import Enum
from pathlib import Path
from typing import Any
import pytz # type: ignore[import-untyped]
from peewee import DoesNotExist
@@ -24,6 +25,8 @@ from frigate.const import (
EXPORT_DIR,
MAX_PLAYLIST_SECONDS,
PREVIEW_FRAME_TYPE,
STREAM_TYPE_MAIN,
STREAM_TYPE_SUB,
)
from frigate.ffmpeg_presets import (
EncodeTypeEnum,
@@ -283,6 +286,29 @@ class RecordingExporter(threading.Thread):
return input_duration * factor
def _get_recordings_for_range(self, stream_type: str) -> list[Any]:
"""Fetch one stream type's recording rows overlapping the export range."""
return list(
Recordings.select(
Recordings.start_time,
Recordings.end_time,
)
.where(
Recordings.start_time.between(self.start_time, self.end_time)
| Recordings.end_time.between(self.start_time, self.end_time)
| (
(self.start_time > Recordings.start_time)
& (self.end_time < Recordings.end_time)
)
)
.where(
(Recordings.camera == self.camera)
& (Recordings.stream_type == stream_type)
)
.order_by(Recordings.start_time.asc())
.iterator()
)
def _sum_source_duration_seconds(self) -> float | None:
"""Sum saved-video seconds inside [start_time, end_time].
@@ -293,19 +319,12 @@ class RecordingExporter(threading.Thread):
"""
try:
if self.playback_source == PlaybackSourceEnum.recordings:
rows = (
Recordings.select(Recordings.start_time, Recordings.end_time)
.where(
Recordings.start_time.between(self.start_time, self.end_time)
| Recordings.end_time.between(self.start_time, self.end_time)
| (
(self.start_time > Recordings.start_time)
& (self.end_time < Recordings.end_time)
)
)
.where(Recordings.camera == self.camera)
.iterator()
)
# never mix streams in one estimate; use main when available
# and fall back to sub for expired-main history
rows = self._get_recordings_for_range(STREAM_TYPE_MAIN)
if not rows:
rows = self._get_recordings_for_range(STREAM_TYPE_SUB)
else:
rows = (
Previews.select(Previews.start_time, Previews.end_time)
@@ -691,23 +710,12 @@ class RecordingExporter(threading.Thread):
if type(internal_port) is str:
internal_port = int(internal_port.split(":")[-1])
recordings = list(
Recordings.select(
Recordings.start_time,
Recordings.end_time,
)
.where(
Recordings.start_time.between(self.start_time, self.end_time)
| Recordings.end_time.between(self.start_time, self.end_time)
| (
(self.start_time > Recordings.start_time)
& (self.end_time < Recordings.end_time)
)
)
.where(Recordings.camera == self.camera)
.order_by(Recordings.start_time.asc())
.iterator()
)
# never mix streams in one playlist; use main when available and
# fall back to sub for expired-main history
recordings = self._get_recordings_for_range(STREAM_TYPE_MAIN)
if not recordings:
recordings = self._get_recordings_for_range(STREAM_TYPE_SUB)
playlist_lines: list[str] = []
if (self.end_time - self.start_time) <= MAX_PLAYLIST_SECONDS:
+342 -89
View File
@@ -15,6 +15,7 @@ from typing import Any
import numpy as np
import psutil
from peewee import fn
from frigate.comms.detections_updater import DetectionSubscriber, DetectionTypeEnum
from frigate.comms.inter_process import InterProcessRequestor
@@ -35,15 +36,48 @@ from frigate.const import (
MAX_SEGMENT_DURATION,
MAX_SEGMENTS_IN_CACHE,
RECORD_DIR,
STREAM_TYPE_MAIN,
STREAM_TYPE_SUB,
SUB_CACHE_TAG,
)
from frigate.models import Recordings, ReviewSegment
from frigate.review.types import SeverityEnum
from frigate.util.media import get_keyframe_offsets
from frigate.util.services import get_video_properties
logger = logging.getLogger(__name__)
STALE_RECORDINGS_INFO_TTL = MAX_SEGMENTS_IN_CACHE * MAX_SEGMENT_DURATION * 2
# cache filenames have whole-second resolution, so a contiguous segment's
# parsed start lands up to 1s before the previous segment's true end
SEGMENT_CHAIN_TOLERANCE_S = 1.0
# against an mtime-measured start, disagreement beyond this means
# accumulated probe-duration error and the chain re-anchors on the mtime
SEGMENT_CHAIN_DRIFT_LIMIT_S = 0.5
# probing every cached segment at once starves the camera and detection
# processes, and the probes then blow their own timeouts together, so
# segments get discarded as corrupt and the record watchdog restarts ffmpeg
MAX_CONCURRENT_SEGMENT_PROBES = 4
def parse_cache_segment_name(basename: str) -> tuple[str, str, str] | None:
"""Parse a cache segment basename into (camera, stream_type, date).
Main segments are named {camera}@{date}; sub segments {camera}@sub@{date}.
"""
try:
prefix, date = basename.rsplit("@", maxsplit=1)
except ValueError:
return None
if prefix.endswith(SUB_CACHE_TAG):
return (prefix[: -len(SUB_CACHE_TAG)], STREAM_TYPE_SUB, date)
return (prefix, STREAM_TYPE_MAIN, date)
class SegmentInfo:
def __init__(
@@ -83,6 +117,10 @@ class SegmentInfo:
class RecordingMaintainer(threading.Thread):
# move_files replaces this per cycle: an asyncio primitive binds to the
# first event loop that contends it, and every cycle runs in a new loop
probe_semaphore = asyncio.Semaphore(MAX_CONCURRENT_SEGMENT_PROBES)
def __init__(self, config: FrigateConfig, stop_event: MpEvent):
super().__init__(name="recording_maintainer")
self.config = config
@@ -100,10 +138,101 @@ class RecordingMaintainer(threading.Thread):
self.stop_event = stop_event
self.object_recordings_info: dict[str, list] = defaultdict(list)
self.audio_recordings_info: dict[str, list] = defaultdict(list)
self.end_time_cache: dict[str, tuple[datetime.datetime, float]] = {}
# cache_path -> (end_time, duration, has_audio, audio_rate,
# audio_codec, video_codec, keyframes)
self.end_time_cache: dict[
str,
tuple[
datetime.datetime,
float,
bool | None,
int | None,
str | None,
str | None,
list[int] | None,
],
] = {}
# last known capture end per (camera, stream_type); 0.0 marks a key
# whose DB seed found no rows
self.last_segment_end: dict[tuple[str, str], float] = {}
self.unexpected_cache_files_logged: bool = False
def _get_last_segment_end(self, camera: str, stream_type: str) -> float | None:
"""Return the last known capture end time for a camera stream.
Lazily seeds from the most recent stored recording so start-time
chains survive restarts.
"""
key = (camera, stream_type)
if key not in self.last_segment_end:
last_db_end = (
Recordings.select(fn.MAX(Recordings.end_time))
.where(
Recordings.camera == camera,
Recordings.stream_type == stream_type,
)
.scalar()
)
# the 0.0 sentinel keeps the seed query from repeating
self.last_segment_end[key] = last_db_end if last_db_end is not None else 0.0
return self.last_segment_end[key] or None
def _resolve_segment_start(
self,
camera: str,
stream_type: str,
filename_start: datetime.datetime,
duration: float,
cache_path: str,
) -> datetime.datetime:
"""Resolve a segment's true start time from its cache file.
Cache filenames carry whole-second resolution, so the parsed start
sits up to 1s early. The cache file's mtime is the wall clock when
ffmpeg rolled the segment, so mtime minus the probed duration
restores the fractional start. Contiguous segments still chain to
the previous segment's end so rows stay exactly adjacent.
"""
filename_ts = filename_start.timestamp()
measured: float | None = None
try:
mtime = os.path.getmtime(cache_path)
except OSError:
mtime = None
if mtime is not None:
candidate = mtime - duration
# media shorter than its wall span (a stalled stream, an early
# close) derives a start past the truncation window, where the
# floored filename start is safer
if 0 <= candidate - filename_ts < SEGMENT_CHAIN_TOLERANCE_S:
measured = candidate
last_end = self._get_last_segment_end(camera, stream_type)
if measured is not None:
if (
last_end is not None
and abs(last_end - measured) < SEGMENT_CHAIN_DRIFT_LIMIT_S
):
return datetime.datetime.fromtimestamp(last_end, tz=datetime.UTC)
return datetime.datetime.fromtimestamp(measured, tz=datetime.UTC)
# no usable mtime: capture is continuous within a run, so a
# filename start just before the previous end chains to that end
if (
last_end is not None
and 0 <= last_end - filename_ts < SEGMENT_CHAIN_TOLERANCE_S
):
return datetime.datetime.fromtimestamp(last_end, tz=datetime.UTC)
return filename_start
async def move_files(self) -> None:
self.probe_semaphore = asyncio.Semaphore(MAX_CONCURRENT_SEGMENT_PROBES)
cache_files = [
d
for d in os.listdir(CACHE_DIR)
@@ -117,13 +246,17 @@ class RecordingMaintainer(threading.Thread):
for cache in cache_files:
cache_path = os.path.join(CACHE_DIR, cache)
basename = os.path.splitext(cache)[0]
try:
camera, date = basename.rsplit("@", maxsplit=1)
except ValueError:
parsed = parse_cache_segment_name(basename)
if parsed is None:
if not self.unexpected_cache_files_logged:
logger.warning("Skipping unexpected files in cache")
self.unexpected_cache_files_logged = True
continue
camera, stream_type, date = parsed
# this topic feeds main-stream health/sync consumers only
if stream_type == STREAM_TYPE_SUB:
continue
start_time = datetime.datetime.strptime(
date, CACHE_SEGMENT_FORMAT
@@ -167,8 +300,10 @@ class RecordingMaintainer(threading.Thread):
except psutil.Error:
continue
# group recordings by camera (skip in-use for validation/moving)
grouped_recordings: defaultdict[str, list[dict[str, Any]]] = defaultdict(list)
# group recordings by camera and stream type (skip in-use for validation/moving)
grouped_recordings: defaultdict[tuple[str, str], list[dict[str, Any]]] = (
defaultdict(list)
)
for cache in cache_files:
# Skip files currently in use
if cache in files_in_use:
@@ -176,32 +311,35 @@ class RecordingMaintainer(threading.Thread):
cache_path = os.path.join(CACHE_DIR, cache)
basename = os.path.splitext(cache)[0]
try:
camera, date = basename.rsplit("@", maxsplit=1)
except ValueError:
parsed = parse_cache_segment_name(basename)
if parsed is None:
if not self.unexpected_cache_files_logged:
logger.warning("Skipping unexpected files in cache")
self.unexpected_cache_files_logged = True
continue
camera, stream_type, date = parsed
# important that start_time is utc because recordings are stored and compared in utc
start_time = datetime.datetime.strptime(
date, CACHE_SEGMENT_FORMAT
).astimezone(datetime.UTC)
grouped_recordings[camera].append(
grouped_recordings[(camera, stream_type)].append(
{
"cache_path": cache_path,
"start_time": start_time,
"stream_type": stream_type,
}
)
# delete all cached files past the most recent MAX_SEGMENTS_IN_CACHE
keep_count = MAX_SEGMENTS_IN_CACHE
for camera in grouped_recordings.keys():
for key in grouped_recordings.keys():
camera, stream_type = key
# sort based on start time
grouped_recordings[camera] = sorted(
grouped_recordings[camera], key=lambda s: s["start_time"]
grouped_recordings[key] = sorted(
grouped_recordings[key], key=lambda s: s["start_time"]
)
camera_info = self.object_recordings_info[camera]
@@ -216,7 +354,7 @@ class RecordingMaintainer(threading.Thread):
r["start_time"].timestamp()
< most_recently_processed_frame_time
),
grouped_recordings[camera],
grouped_recordings[key],
)
)
)
@@ -226,103 +364,133 @@ class RecordingMaintainer(threading.Thread):
logger.warning(
f"Unable to keep up with recording segments in cache for {camera}. Keeping the {keep_count} most recent segments out of {processed_segment_count} and discarding the rest..."
)
to_remove = grouped_recordings[camera][:-keep_count]
to_remove = grouped_recordings[key][:-keep_count]
for rec in to_remove:
cache_path = rec["cache_path"]
Path(cache_path).unlink(missing_ok=True)
self.end_time_cache.pop(cache_path, None)
grouped_recordings[camera] = grouped_recordings[camera][-keep_count:]
grouped_recordings[key] = grouped_recordings[key][-keep_count:]
# see if detection has failed and unprocessed segments need to be deleted
unprocessed_segment_count = (
len(grouped_recordings[camera]) - processed_segment_count
len(grouped_recordings[key]) - processed_segment_count
)
if unprocessed_segment_count > keep_count:
logger.warning(
f"Too many unprocessed recording segments in cache for {camera}. This likely indicates an issue with the detect stream, keeping the {keep_count} most recent segments out of {unprocessed_segment_count} and discarding the rest..."
)
to_remove = grouped_recordings[camera][:-keep_count]
to_remove = grouped_recordings[key][:-keep_count]
for rec in to_remove:
cache_path = rec["cache_path"]
Path(cache_path).unlink(missing_ok=True)
self.end_time_cache.pop(cache_path, None)
grouped_recordings[camera] = grouped_recordings[camera][-keep_count:]
grouped_recordings[key] = grouped_recordings[key][-keep_count:]
tasks = []
for camera, recordings in grouped_recordings.items():
# frame stats are shared per camera across stream types, so trimming
# to one stream's oldest cache would pop frames the other still needs
min_start_per_camera: dict[str, float] = {}
for key, recordings in grouped_recordings.items():
camera, _ = key
oldest_start = recordings[0]["start_time"].timestamp()
if (
camera not in min_start_per_camera
or oldest_start < min_start_per_camera[camera]
):
min_start_per_camera[camera] = oldest_start
for camera, min_start in min_start_per_camera.items():
# clear out all the object recording info for old frames
while (
len(self.object_recordings_info[camera]) > 0
and self.object_recordings_info[camera][0][0]
< recordings[0]["start_time"].timestamp()
and self.object_recordings_info[camera][0][0] < min_start
):
self.object_recordings_info[camera].pop(0)
# clear out all the audio recording info for old frames
while (
len(self.audio_recordings_info[camera]) > 0
and self.audio_recordings_info[camera][0][0]
< recordings[0]["start_time"].timestamp()
and self.audio_recordings_info[camera][0][0] < min_start
):
self.audio_recordings_info[camera].pop(0)
# get all reviews with the end time after the start of the oldest cache file
# or with end_time None
reviews = (
ReviewSegment.select(
ReviewSegment.start_time,
ReviewSegment.end_time,
ReviewSegment.severity,
ReviewSegment.data,
tasks = []
reviews_by_camera: dict[str, Any] = {}
for key, recordings in grouped_recordings.items():
camera, stream_type = key
# get all reviews with the end time after the start of the oldest
# cache file or with end_time None; shared across stream types
if camera not in reviews_by_camera:
reviews_by_camera[camera] = (
ReviewSegment.select(
ReviewSegment.start_time,
ReviewSegment.end_time,
ReviewSegment.severity,
ReviewSegment.data,
)
.where(
ReviewSegment.camera == camera,
(ReviewSegment.end_time == None)
| (ReviewSegment.end_time >= min_start_per_camera[camera]),
)
.order_by(ReviewSegment.start_time)
)
.where(
ReviewSegment.camera == camera,
(ReviewSegment.end_time == None)
| (
ReviewSegment.end_time
>= recordings[0]["start_time"].timestamp()
),
)
.order_by(ReviewSegment.start_time)
)
reviews = reviews_by_camera[camera]
tasks.extend(
[self.validate_and_move_segment(camera, reviews, r) for r in recordings]
)
# publish most recently available recording time and None if disabled
camera_cfg = self.config.cameras.get(camera)
self.recordings_publisher.publish(
(
camera,
recordings[0]["start_time"].timestamp()
if camera_cfg and camera_cfg.record.enabled
else None,
None,
),
RecordingsDataTypeEnum.saved.value,
)
if stream_type == STREAM_TYPE_MAIN:
camera_cfg = self.config.cameras.get(camera)
self.recordings_publisher.publish(
(
camera,
recordings[0]["start_time"].timestamp()
if camera_cfg and camera_cfg.record.enabled
else None,
None,
),
RecordingsDataTypeEnum.saved.value,
)
self._expire_stale_recordings_info(grouped_recordings)
recordings_to_insert: list[dict[str, Any] | None] = await asyncio.gather(*tasks)
# fire and forget recordings entries
self.requestor.send_data(
INSERT_MANY_RECORDINGS,
[r for r in recordings_to_insert if r is not None],
# one segment must not abort the cycle: an exception propagating out
# of gather would abandon the other segments' in-flight probes
results: list[dict[str, Any] | None | BaseException] = await asyncio.gather(
*tasks, return_exceptions=True
)
recordings_to_insert: list[dict[str, Any]] = []
for result in results:
if isinstance(result, BaseException):
logger.error(
"Failed to validate and move a recording segment", exc_info=result
)
continue
if result is not None:
recordings_to_insert.append(result)
# fire and forget recordings entries
self.requestor.send_data(INSERT_MANY_RECORDINGS, recordings_to_insert)
def _expire_stale_recordings_info(
self, grouped_recordings: defaultdict[str, list[dict[str, Any]]]
self, grouped_recordings: defaultdict[tuple[str, str], list[dict[str, Any]]]
) -> None:
expire_before = datetime.datetime.now().timestamp() - STALE_RECORDINGS_INFO_TTL
# a camera is still active when any of its streams cached segments
cameras_with_cache = {camera for camera, _ in grouped_recordings}
for recordings_info in (
self.object_recordings_info,
self.audio_recordings_info,
):
for camera in list(recordings_info.keys()):
if camera in grouped_recordings:
if camera in cameras_with_cache:
continue
info = recordings_info[camera]
while info and info[0][0] < expire_before:
@@ -337,64 +505,121 @@ class RecordingMaintainer(threading.Thread):
) -> dict[str, Any] | None:
cache_path: str = recording["cache_path"]
start_time: datetime.datetime = recording["start_time"]
stream_type: str = recording["stream_type"]
# Just delete files if camera removed or recordings are turned off
if (
camera not in self.config.cameras
or not self.config.cameras[camera].record.enabled
or (
stream_type == STREAM_TYPE_SUB
and not self.config.cameras[camera].record.sub.enabled
)
):
self.drop_segment(cache_path)
return None
if cache_path in self.end_time_cache:
end_time, duration = self.end_time_cache[cache_path]
(
end_time,
duration,
has_audio,
audio_rate,
audio_codec,
video_codec,
keyframes,
) = self.end_time_cache[cache_path]
# recover the resolved start rather than reusing the truncated
# filename timestamp
start_time = end_time - datetime.timedelta(seconds=duration)
else:
segment_info = await get_video_properties(
self.config.ffmpeg, cache_path, get_duration=True
)
async with self.probe_semaphore:
segment_info = await get_video_properties(
self.config.ffmpeg, cache_path, get_duration=True
)
if not segment_info.get("has_valid_video", False):
logger.warning(
f"Invalid or missing video stream in segment {cache_path}. Discarding."
)
self.recordings_publisher.publish(
(camera, start_time.timestamp(), cache_path),
RecordingsDataTypeEnum.invalid.value,
)
if stream_type == STREAM_TYPE_MAIN:
self.recordings_publisher.publish(
(camera, start_time.timestamp(), cache_path),
RecordingsDataTypeEnum.invalid.value,
)
self.drop_segment(cache_path)
return None
duration = float(segment_info.get("duration", -1))
has_audio = segment_info.get("has_audio")
audio_rate = segment_info.get("audio_rate")
audio_codec = segment_info.get("audio_codec")
video_codec = segment_info.get("video_codec")
# ensure duration is within expected length
if 0 < duration < MAX_SEGMENT_DURATION:
# playback snaps mid-file entry points against these offsets
# instead of probing files on demand
async with self.probe_semaphore:
keyframes = await get_keyframe_offsets(cache_path)
start_time = self._resolve_segment_start(
camera, stream_type, start_time, duration, cache_path
)
end_time = start_time + datetime.timedelta(seconds=duration)
self.end_time_cache[cache_path] = (end_time, duration)
self.end_time_cache[cache_path] = (
end_time,
duration,
has_audio,
audio_rate,
audio_codec,
video_codec,
keyframes,
)
# segments later discarded by retention still advance the
# chain for the next kept segment
self.last_segment_end[(camera, stream_type)] = end_time.timestamp()
else:
if duration == -1:
logger.warning(f"Failed to probe corrupt segment {cache_path}")
logger.warning(f"Discarding a corrupt recording segment: {cache_path}")
self.recordings_publisher.publish(
(camera, start_time.timestamp(), cache_path),
RecordingsDataTypeEnum.invalid.value,
)
if stream_type == STREAM_TYPE_MAIN:
self.recordings_publisher.publish(
(camera, start_time.timestamp(), cache_path),
RecordingsDataTypeEnum.invalid.value,
)
self.drop_segment(cache_path)
return None
# this segment has a valid duration and has video data, so publish an update
self.recordings_publisher.publish(
(camera, start_time.timestamp(), cache_path),
RecordingsDataTypeEnum.valid.value,
)
if stream_type == STREAM_TYPE_MAIN:
self.recordings_publisher.publish(
(camera, start_time.timestamp(), cache_path),
RecordingsDataTypeEnum.valid.value,
)
record_config = self.config.cameras[camera].record
# sub's alerts/detections carry the retain mode directly, unlike
# main's nested retain config
if stream_type == STREAM_TYPE_SUB:
continuous_days = record_config.sub.continuous.days
motion_days = record_config.sub.motion.days
alerts_retain_mode = record_config.sub.alerts.mode
detections_retain_mode = record_config.sub.detections.mode
else:
continuous_days = record_config.continuous.days
motion_days = record_config.motion.days
alerts_retain_mode = record_config.alerts.retain.mode
detections_retain_mode = record_config.detections.retain.mode
segment_stats: SegmentInfo | None = None
highest = None
if record_config.continuous.days > 0:
if continuous_days > 0:
highest = "continuous"
elif record_config.motion.days > 0:
elif motion_days > 0:
highest = "motion"
# if we have continuous or motion recording enabled
@@ -426,11 +651,17 @@ class RecordingMaintainer(threading.Thread):
if not segment_stats.should_discard_segment(record_mode):
return await self.move_segment(
camera,
stream_type,
start_time,
end_time,
duration,
cache_path,
segment_stats,
has_audio,
audio_rate,
audio_codec,
video_codec,
keyframes,
)
# we fell through the continuous / motion check, so we need to check the review items
@@ -459,9 +690,9 @@ class RecordingMaintainer(threading.Thread):
if overlaps:
record_mode = (
record_config.alerts.retain.mode
alerts_retain_mode
if review.severity == "alert"
else record_config.detections.retain.mode
else detections_retain_mode
)
if segment_stats is None:
@@ -471,11 +702,17 @@ class RecordingMaintainer(threading.Thread):
# move from cache to recordings immediately
return await self.move_segment(
camera,
stream_type,
start_time,
end_time,
duration,
cache_path,
segment_stats,
has_audio,
audio_rate,
audio_codec,
video_codec,
keyframes,
)
else:
self.drop_segment(cache_path)
@@ -614,17 +851,24 @@ class RecordingMaintainer(threading.Thread):
async def move_segment(
self,
camera: str,
stream_type: str,
start_time: datetime.datetime,
end_time: datetime.datetime,
duration: float,
cache_path: str,
segment_info: SegmentInfo,
has_audio: bool | None = None,
audio_rate: int | None = None,
audio_codec: str | None = None,
video_codec: str | None = None,
keyframes: list[int] | None = None,
) -> dict[str, Any] | None:
# directory will be in utc due to start_time being in utc
# sub segments get a tagged directory to avoid filename collisions
directory = os.path.join(
RECORD_DIR,
start_time.strftime("%Y-%m-%d/%H"),
camera,
camera if stream_type == STREAM_TYPE_MAIN else f"{camera}{SUB_CACHE_TAG}",
)
os.makedirs(directory, exist_ok=True)
@@ -684,6 +928,7 @@ class RecordingMaintainer(threading.Thread):
return {
Recordings.id.name: f"{start_time.timestamp()}-{rand_id}",
Recordings.camera.name: camera,
Recordings.stream_type.name: stream_type,
Recordings.path.name: file_path,
Recordings.start_time.name: start_time.timestamp(),
Recordings.end_time.name: end_time.timestamp(),
@@ -695,6 +940,11 @@ class RecordingMaintainer(threading.Thread):
Recordings.dBFS.name: segment_info.average_dBFS,
Recordings.segment_size.name: segment_size,
Recordings.motion_heatmap.name: segment_info.motion_heatmap,
Recordings.has_audio.name: has_audio,
Recordings.audio_rate.name: audio_rate,
Recordings.audio_codec.name: audio_codec,
Recordings.video_codec.name: video_codec,
Recordings.keyframes.name: keyframes,
}
except Exception as e:
logger.error(f"Unable to store recording segment {cache_path}")
@@ -745,7 +995,9 @@ class RecordingMaintainer(threading.Thread):
regions,
) = data
if self.config.cameras[camera].record.enabled:
camera_config = self.config.cameras.get(camera)
if camera_config is not None and camera_config.record.enabled:
self.object_recordings_info[camera].append(
(
frame_time,
@@ -762,7 +1014,9 @@ class RecordingMaintainer(threading.Thread):
audio_detections,
) = data
if self.config.cameras[camera].record.enabled:
camera_config = self.config.cameras.get(camera)
if camera_config is not None and camera_config.record.enabled:
self.audio_recordings_info[camera].append(
(
frame_time,
@@ -784,11 +1038,10 @@ class RecordingMaintainer(threading.Thread):
try:
asyncio.run(self.move_files())
except Exception as e:
logger.error(
except Exception:
logger.exception(
"Error occurred when attempting to maintain recording cache"
)
logger.error(e)
duration = datetime.datetime.now().timestamp() - run_start
wait_time = max(0, 5 - duration)
+9
View File
@@ -418,6 +418,11 @@ class ReviewSegmentMaintainer(threading.Thread):
return None
def _handle_camera_removed(self, camera: str) -> None:
"""Close out a deleted camera's segment so a reused name cannot inherit it."""
self.forcibly_end_segment(camera)
self.indefinite_events.pop(camera, None)
def update_existing_segment(
self,
segment: PendingReviewSegment,
@@ -666,6 +671,10 @@ class ReviewSegmentMaintainer(threading.Thread):
for camera in updated_topics["enabled"]:
self.forcibly_end_segment(camera)
if "remove" in updated_topics:
for camera in updated_topics["remove"]:
self._handle_camera_removed(camera)
result = self.detection_subscriber.check_for_update(timeout=1)
if not result:
+99 -32
View File
@@ -6,10 +6,15 @@ import threading
from multiprocessing.synchronize import Event as MpEvent
from pathlib import Path
from peewee import SQL, fn
from peewee import SQL, Case, fn
from frigate.config import FrigateConfig
from frigate.const import RECORD_DIR, REPLAY_CAMERA_PREFIX
from frigate.const import (
RECORD_DIR,
REPLAY_CAMERA_PREFIX,
STREAM_TYPE_MAIN,
STREAM_TYPE_SUB,
)
from frigate.models import Event, Recordings
from frigate.util.builtin import clear_and_unlink
@@ -30,6 +35,35 @@ class StorageMaintainer(threading.Thread):
self.stop_event = stop_event
self.camera_storage_stats: dict[str, dict] = {}
def _recent_stream_bandwidth(
self, camera: str, stream_type: str, window: int
) -> float | None:
"""Average MB/s over a stream's most recent rows, or None if no sample.
Zero-size rows are excluded inside the projection, not the WHERE
clause: a segment_size predicate baits the planner into the
(camera, segment_size) index plus a full sort of the camera's
history instead of the time-ordered index.
"""
recent = (
Recordings.select(
Case(
None,
[(Recordings.segment_size > 0, bandwidth_equation)],
None,
).alias("bw")
)
.where(
Recordings.camera == camera,
Recordings.stream_type == stream_type,
)
.order_by(Recordings.start_time.desc())
.limit(window)
.alias("recent")
)
avg: float | None = Recordings.select(fn.AVG(SQL("bw"))).from_(recent).scalar()
return avg
def calculate_camera_bandwidth(self) -> None:
"""Calculate an average MB/hr for each camera."""
for camera in self.config.cameras.keys():
@@ -42,39 +76,50 @@ class StorageMaintainer(threading.Thread):
if self.camera_storage_stats.get(camera, {}).get("needs_refresh", True):
self.camera_storage_stats[camera] = {
"needs_refresh": (
Recordings.select(fn.COUNT("*"))
Recordings.select(Recordings.id)
.where(Recordings.camera == camera, Recordings.segment_size > 0)
.scalar()
.limit(50)
.count()
< 50
)
}
# calculate MB/hr from last 100 segments
try:
# Subquery to get last 100 segments, then average their bandwidth
last_100 = (
Recordings.select(bandwidth_equation.alias("bw"))
.where(Recordings.camera == camera, Recordings.segment_size > 0)
.order_by(Recordings.start_time.desc())
.limit(100)
.alias("recent")
)
bandwidth = round(
Recordings.select(fn.AVG(SQL("bw"))).from_(last_100).scalar()
* 3600,
2,
)
if bandwidth > MAX_CALCULATED_BANDWIDTH:
logger.warning(
f"{camera} has a bandwidth of {bandwidth} MB/hr which exceeds the expected maximum. This typically indicates an issue with the cameras recordings."
# calculate MB/hr from the last 100 segments of each stream
# type and sum the rates; mixing streams would average small
# sub segments against large main segments and underestimate
# the true write rate
bandwidth_by_stream: dict[str, float] = {}
for stream_type in (STREAM_TYPE_MAIN, STREAM_TYPE_SUB):
avg_bw = self._recent_stream_bandwidth(camera, stream_type, 100)
if avg_bw is None:
# the recent window can be all zero-size ingest
# glitches; look further back before concluding
# the stream writes nothing
avg_bw = self._recent_stream_bandwidth(
camera, stream_type, 1000
)
bandwidth = MAX_CALCULATED_BANDWIDTH
except TypeError:
bandwidth = 0
if avg_bw is not None:
bandwidth_by_stream[stream_type] = round(avg_bw * 3600, 2)
bandwidth = round(sum(bandwidth_by_stream.values()), 2)
if bandwidth > MAX_CALCULATED_BANDWIDTH:
logger.warning(
f"{camera} has a bandwidth of {bandwidth} MB/hr which exceeds the expected maximum. This typically indicates an issue with the cameras recordings."
)
# scale each stream so the per stream values still sum to
# the clamped total the UI displays alongside them
scale = MAX_CALCULATED_BANDWIDTH / bandwidth
bandwidth_by_stream = {
stream_type: round(value * scale, 2)
for stream_type, value in bandwidth_by_stream.items()
}
bandwidth = MAX_CALCULATED_BANDWIDTH
self.camera_storage_stats[camera]["bandwidth"] = bandwidth
self.camera_storage_stats[camera]["bandwidth_by_stream"] = (
bandwidth_by_stream
)
logger.debug(f"{camera} has a bandwidth of {bandwidth} MiB/hr.")
def calculate_camera_usages(self) -> dict[str, dict]:
@@ -86,20 +131,42 @@ class StorageMaintainer(threading.Thread):
if camera.startswith(REPLAY_CAMERA_PREFIX):
continue
camera_storage = (
Recordings.select(fn.SUM(Recordings.segment_size))
.where(Recordings.camera == camera, Recordings.segment_size != 0)
.scalar()
stream_usages = {
row["stream_type"]: row["usage"] or 0
for row in (
Recordings.select(
Recordings.stream_type,
fn.SUM(Recordings.segment_size).alias("usage"),
)
.where(Recordings.camera == camera, Recordings.segment_size != 0)
.group_by(Recordings.stream_type)
.dicts()
)
}
stream_bandwidths = self.camera_storage_stats.get(camera, {}).get(
"bandwidth_by_stream", {}
)
camera_key = (
getattr(self.config.cameras[camera], "friendly_name", None) or camera
)
usages[camera_key] = {
"usage": camera_storage,
"usage": sum(stream_usages.values()),
"bandwidth": self.camera_storage_stats.get(camera, {}).get(
"bandwidth", 0
),
# only streams with segments on disk are reported, so a camera
# keeps its sub entry until sub retention expires those segments.
# bandwidth is null rather than 0 when the cache holds no sample
# for the stream, since 0 would claim it writes nothing
"streams": {
stream_type: {
"usage": stream_usages[stream_type],
"bandwidth": stream_bandwidths.get(stream_type),
}
for stream_type in (STREAM_TYPE_MAIN, STREAM_TYPE_SUB)
if stream_usages.get(stream_type)
},
}
return usages
@@ -2,7 +2,6 @@
from unittest.mock import patch
from frigate.jobs.debug_replay import NoRecordingsError
from frigate.models import Event, Recordings, ReviewSegment
from frigate.test.http_api.base_http_test import AuthTestClient, BaseTestHttp
@@ -67,32 +66,6 @@ class TestDebugReplayAPI(BaseTestHttp):
# (CodeQL: information exposure through an exception).
self.assertEqual(body["message"], "Invalid debug replay parameters")
def test_start_returns_404_when_no_recordings(self):
with patch(
"frigate.api.debug_replay.start_debug_replay_job",
side_effect=NoRecordingsError(
"No recordings found for camera 'front' in the specified time range"
),
):
with AuthTestClient(self.app) as client:
resp = client.post(
"/debug_replay/start",
json={
"camera": "front",
"start_time": 100,
"end_time": 200,
},
)
self.assertEqual(resp.status_code, 404)
body = resp.json()
self.assertFalse(body["success"])
# Message is hard-coded so we don't echo exception text back to clients
# (CodeQL: information exposure through an exception).
self.assertEqual(
body["message"], "No recordings found in the selected time range"
)
def test_start_returns_409_when_session_already_active(self):
with patch(
"frigate.api.debug_replay.start_debug_replay_job",
@@ -440,68 +440,3 @@ class TestGo2rtcStreamAccess(BaseTestHttp):
f"limited_user should be denied on alias back_door_main; "
f"got {resp.status_code}"
)
class TestReviewSummaryAccess(BaseTestHttp):
"""Tests for POST /review/summarize/start/{start_ts}/end/{end_ts}.
The summary correlates each flagged event with overlapping activity on
other cameras, so it is gated on full camera access rather than scoped to
the caller's cameras. These tests pin that decision so the dependency is
not loosened without first scoping the query.
GenAI is not configured in unit tests, so an authorized request returns 400
while an unauthorized one is rejected with 403 before the handler runs.
"""
def setUp(self):
super().setUp([Event, ReviewSegment, Recordings])
self.minimal_config = _MULTI_CAMERA_CONFIG
self.app = super().create_app()
def tearDown(self):
self.app.dependency_overrides.clear()
super().tearDown()
def _summarize(self, allowed_cameras: list[str]):
async def mock_cameras(request: Request):
return allowed_cameras
self.app.dependency_overrides[get_allowed_cameras_for_filter] = mock_cameras
with AuthTestClient(self.app) as client:
return client.post("/review/summarize/start/0/end/9999999999")
def _assert_allowed(self, resp):
assert resp.status_code not in (401, 403), (
f"Caller should not be blocked; got {resp.status_code}"
)
def test_partial_camera_access_blocked(self):
assert self._summarize(["front_door"]).status_code == 403
def test_no_camera_access_blocked(self):
assert self._summarize([]).status_code == 403
def test_full_camera_access_allowed(self):
# Covers admin and viewer, which always resolve to every camera, and a
# custom role whose list happens to name them all.
self._assert_allowed(self._summarize(["front_door", "back_door"]))
def _summarize_as_role(self, role: str):
"""Summarize using the real role to allowed-cameras resolution."""
self.app.dependency_overrides.pop(get_allowed_cameras_for_filter, None)
with AuthTestClient(self.app) as client:
return client.post(
"/review/summarize/start/0/end/9999999999",
headers={"remote-user": "test", "remote-role": role},
)
def test_viewer_role_allowed(self):
# viewer is never camera restricted, so it resolves to every camera.
self._assert_allowed(self._summarize_as_role("viewer"))
def test_admin_role_allowed(self):
self._assert_allowed(self._summarize_as_role("admin"))
def test_restricted_role_blocked(self):
assert self._summarize_as_role("limited_user").status_code == 403
+16 -9
View File
@@ -7,7 +7,7 @@ from unittest.mock import MagicMock, Mock, patch
import ruamel.yaml
from frigate.config import FrigateConfig
from frigate.config import BirdseyeModeEnum, FrigateConfig
from frigate.config.camera.updater import (
CameraConfigUpdateEnum,
CameraConfigUpdatePublisher,
@@ -383,12 +383,15 @@ class TestConfigSetWildcardPropagation(BaseTestHttp):
Global birdseye only seeds enabled and mode; the camera copies are what
the output process actually reads. Sending just the global object makes
a worker guess which cameras were inheriting, and the only available
guess (mode still equals the previous global) wrongly claims a camera
whose explicit yaml mode happens to match.
guess (modes still equals the previous global) wrongly claims a camera
whose explicit yaml modes happens to match.
"""
self.minimal_config["birdseye"] = {"enabled": True, "mode": "motion"}
self.minimal_config["birdseye"] = {
"enabled": True,
"modes": ["motion"],
}
# explicit override that matches the global value being replaced
self.minimal_config["cameras"]["front_door"]["birdseye"] = {"mode": "motion"}
self.minimal_config["cameras"]["front_door"]["birdseye"] = {"modes": ["motion"]}
config_path = self._write_config_file()
mock_find_config.return_value = config_path
@@ -399,7 +402,7 @@ class TestConfigSetWildcardPropagation(BaseTestHttp):
resp = client.put(
"/config/set",
json={
"config_data": {"birdseye": {"mode": "continuous"}},
"config_data": {"birdseye": {"modes": ["continuous"]}},
"update_topic": "config/birdseye",
"requires_restart": 0,
},
@@ -411,7 +414,7 @@ class TestConfigSetWildcardPropagation(BaseTestHttp):
mock_publisher.publisher.publish.assert_called_once()
topic, settings = mock_publisher.publisher.publish.call_args[0]
self.assertEqual(topic, "config/birdseye")
self.assertEqual(settings.mode.value, "continuous")
self.assertEqual(settings.modes, [BirdseyeModeEnum.continuous])
published = {
call[0][0].camera: call[0][1]
@@ -425,8 +428,12 @@ class TestConfigSetWildcardPropagation(BaseTestHttp):
)
# the override survives, the inheriting camera follows global
self.assertEqual(published["front_door"].mode.value, "motion")
self.assertEqual(published["back_yard"].mode.value, "continuous")
self.assertEqual(
published["front_door"].modes, [BirdseyeModeEnum.motion]
)
self.assertEqual(
published["back_yard"].modes, [BirdseyeModeEnum.continuous]
)
finally:
os.unlink(config_path)
-78
View File
@@ -1,7 +1,5 @@
import io
import os
import tempfile
import zipfile
from unittest.mock import patch
from frigate.jobs.export import (
@@ -1433,79 +1431,3 @@ class TestHttpExport(BaseTestHttp):
)
assert response.status_code == 403
def test_download_export_case_with_multibyte_name(self):
"""A case name outside latin-1 must not break the response headers."""
case = ExportCase.create(
id="case_multibyte",
name="テスト事案",
description="",
created_at=10,
updated_at=10,
)
with tempfile.TemporaryDirectory() as tmpdir:
video_path = os.path.join(tmpdir, "multibyte_export.mp4")
with open(video_path, "wb") as handle:
handle.write(b"video")
Export.create(
id="export_multibyte",
camera="front_door",
name="現場カメラ",
date=100,
video_path=video_path,
thumb_path=os.path.join(tmpdir, "multibyte_export.webp"),
in_progress=False,
export_case=case,
)
with AuthTestClient(self.app) as client:
response = client.get(f"/cases/{case.id}/download")
assert response.status_code == 200
# RFC 5987/6266: the UTF-8 name rides in filename*, and a latin-1 safe
# fallback stays in filename for old clients.
assert response.headers["content-disposition"] == (
'attachment; filename="case_multibyte.zip"; '
"filename*=UTF-8''%E3%83%86%E3%82%B9%E3%83%88%E4%BA%8B%E6%A1%88.zip"
)
archive = zipfile.ZipFile(io.BytesIO(response.content))
assert archive.namelist() == ["現場カメラ.mp4"]
def test_download_export_case_with_ascii_name(self):
"""An ASCII case name still gets a plain, readable filename."""
case = ExportCase.create(
id="case_ascii",
name="Burglary 2026-08",
description="",
created_at=10,
updated_at=10,
)
with tempfile.TemporaryDirectory() as tmpdir:
video_path = os.path.join(tmpdir, "ascii_export.mp4")
with open(video_path, "wb") as handle:
handle.write(b"video")
Export.create(
id="export_ascii",
camera="front_door",
name="Front door",
date=100,
video_path=video_path,
thumb_path=os.path.join(tmpdir, "ascii_export.webp"),
in_progress=False,
export_case=case,
)
with AuthTestClient(self.app) as client:
response = client.get(f"/cases/{case.id}/download")
assert response.status_code == 200
assert (
response.headers["content-disposition"]
== 'attachment; filename="Burglary 2026-08.zip"; '
"filename*=UTF-8''Burglary%202026-08.zip"
)
File diff suppressed because it is too large Load Diff
-113
View File
@@ -1,113 +0,0 @@
"""Tests for password change authorization."""
from fastapi import Request
from frigate.api.auth import get_current_user, hash_password, verify_password
from frigate.models import Event, Recordings, ReviewSegment, User
from frigate.test.http_api.base_http_test import AuthTestClient, BaseTestHttp
# Config carrying a custom role, which is the class of user the literal
# "viewer" check used to let through.
_CUSTOM_ROLE_CONFIG = {
"mqtt": {"host": "mqtt"},
"auth": {"roles": {"neighbor": ["front_door"]}, "hash_iterations": 10},
"cameras": {
"front_door": {
"ffmpeg": {
"inputs": [{"path": "rtsp://10.0.0.1:554/video", "roles": ["detect"]}]
},
"detect": {"height": 1080, "width": 1920, "fps": 5},
},
},
}
ADMIN_PASSWORD = "admin-real-password"
NEW_PASSWORD = "AttackerChosenPassword123!"
class TestUpdatePasswordAccess(BaseTestHttp):
def setUp(self):
super().setUp([Event, ReviewSegment, Recordings, User])
self.minimal_config = _CUSTOM_ROLE_CONFIG
self.app = super().create_app()
User.insert(
username="admin",
password_hash=hash_password(ADMIN_PASSWORD, iterations=10),
role="admin",
notification_tokens=[],
).execute()
async def mock_get_current_user(request: Request):
return {
"username": request.headers.get("remote-user"),
"role": request.headers.get("remote-role"),
}
self.app.dependency_overrides[get_current_user] = mock_get_current_user
def tearDown(self):
self.app.dependency_overrides.clear()
super().tearDown()
def _change_password(self, actor: str, role: str, target: str, old_password: str):
with AuthTestClient(self.app) as client:
return client.put(
f"/users/{target}/password",
json={"password": NEW_PASSWORD, "old_password": old_password},
headers={"remote-user": actor, "remote-role": role},
)
def _admin_password_unchanged(self) -> bool:
return verify_password(ADMIN_PASSWORD, User.get_by_id("admin").password_hash)
def test_custom_role_cannot_target_another_account(self):
resp = self._change_password("neighbor", "neighbor", "admin", "wrong-guess")
assert resp.status_code == 403
assert self._admin_password_unchanged()
def test_custom_role_cannot_target_another_account_with_correct_password(self):
# The 403 must land before old_password is checked, so knowing the
# target's password is not a way through
resp = self._change_password("neighbor", "neighbor", "admin", ADMIN_PASSWORD)
assert resp.status_code == 403
assert self._admin_password_unchanged()
def test_viewer_cannot_target_another_account(self):
resp = self._change_password("viewer_user", "viewer", "admin", ADMIN_PASSWORD)
assert resp.status_code == 403
assert self._admin_password_unchanged()
def test_admin_can_target_another_account(self):
User.insert(
username="neighbor",
password_hash=hash_password("neighbor-password", iterations=10),
role="neighbor",
notification_tokens=[],
).execute()
resp = self._change_password("admin", "admin", "neighbor", "")
assert resp.status_code == 200
def test_non_admin_can_change_own_password(self):
User.insert(
username="neighbor",
password_hash=hash_password("neighbor-password", iterations=10),
role="neighbor",
notification_tokens=[],
).execute()
resp = self._change_password(
"neighbor", "neighbor", "neighbor", "neighbor-password"
)
assert resp.status_code == 200
def test_non_admin_own_password_still_requires_old_password(self):
User.insert(
username="neighbor",
password_hash=hash_password("neighbor-password", iterations=10),
role="neighbor",
notification_tokens=[],
).execute()
resp = self._change_password("neighbor", "neighbor", "neighbor", "wrong-guess")
assert resp.status_code == 401
+471 -4
View File
@@ -1,13 +1,75 @@
"""Test camera user and password cleanup."""
"""Tests for Birdseye canvas sizing and layout behavior."""
import multiprocessing as mp
import unittest
from unittest.mock import Mock
from frigate.config import FrigateConfig
from frigate.output.birdseye import BirdsEyeFrameManager, get_canvas_shape
from frigate.config import (
BirdseyeModeEnum,
FrigateConfig,
birdseye_modes_from_mqtt_payload,
birdseye_modes_to_mqtt_payload,
)
from frigate.output.birdseye import (
Birdseye,
BirdseyeActivity,
BirdsEyeFrameManager,
get_canvas_shape,
)
class TestBirdseye(unittest.TestCase):
def _build_manager(
self, camera_dimensions: dict[str, tuple[int, int]]
) -> BirdsEyeFrameManager:
config = {
"mqtt": {"host": "mqtt"},
"birdseye": {"width": 1280, "height": 720},
"cameras": {},
}
for order, (camera, dimensions) in enumerate(
camera_dimensions.items(), start=1
):
config["cameras"][camera] = {
"ffmpeg": {
"inputs": [
{
"path": f"rtsp://10.0.0.1:554/{camera}",
"roles": ["detect"],
}
]
},
"detect": {
"width": dimensions[0],
"height": dimensions[1],
"fps": 5,
},
"birdseye": {"order": order},
}
return BirdsEyeFrameManager(FrigateConfig(**config), mp.Event())
def _assert_no_overlaps(
self, layout: list[list[tuple[str, tuple[int, int, int, int]]]]
):
rectangles = [position for row in layout for _, position in row]
for index, rect in enumerate(rectangles):
x1, y1, width1, height1 = rect
for other in rectangles[index + 1 :]:
x2, y2, width2, height2 = other
overlap = (
x1 < x2 + width2
and x2 < x1 + width1
and y1 < y2 + height2
and y2 < y1 + height1
)
self.assertFalse(
overlap,
msg=f"Overlapping rectangles found: {rect} and {other}",
)
def test_16x9(self):
"""Test 16x9 aspect ratio works as expected for birdseye."""
width = 1280
@@ -48,6 +110,258 @@ class TestBirdseye(unittest.TestCase):
assert canvas_width == width # width will be the same
assert canvas_height != height
def test_portrait_camera_does_not_overlap_next_row(self):
"""Portrait cameras should reserve their real horizontal position on the next row."""
manager = self._build_manager(
{
"cam_a": (1280, 720),
"cam_p": (360, 640),
"cam_b": (1280, 720),
"cam_c": (640, 480),
}
)
layout = manager.calculate_layout(["cam_a", "cam_p", "cam_b", "cam_c"], 3)
self.assertIsNotNone(layout)
assert layout is not None
self._assert_no_overlaps(layout)
cam_c = [
position for row in layout for camera, position in row if camera == "cam_c"
][0]
self.assertEqual(cam_c[0], 0)
def test_portrait_reservation_only_applies_to_next_row(self):
"""Portrait reservations should not push later rows after the span ends."""
manager = self._build_manager(
{
"cam_a": (1280, 720),
"cam_p": (360, 640),
"cam_b": (1280, 720),
"cam_c": (1280, 720),
"cam_d": (1280, 720),
"cam_e": (1280, 720),
}
)
layout = manager.calculate_layout(
["cam_a", "cam_p", "cam_b", "cam_c", "cam_d", "cam_e"],
3,
)
self.assertIsNotNone(layout)
assert layout is not None
self._assert_no_overlaps(layout)
cam_e = [
position for row in layout for camera, position in row if camera == "cam_e"
][0]
self.assertEqual(cam_e[0], 0)
def test_multiple_portraits_reserve_distinct_ranges(self):
"""Multiple portrait cameras in one row should reserve separate spans below them."""
manager = self._build_manager(
{
"cam_a": (640, 480),
"cam_p1": (360, 640),
"cam_p2": (360, 640),
"cam_b": (640, 480),
"cam_c": (1280, 720),
"cam_d": (640, 480),
}
)
layout = manager.calculate_layout(
["cam_a", "cam_p1", "cam_p2", "cam_b", "cam_c", "cam_d"],
4,
)
self.assertIsNotNone(layout)
assert layout is not None
self._assert_no_overlaps(layout)
def test_two_landscapes_then_portrait_then_two_landscapes(self):
"""A portrait after two landscapes should reserve only its own tail span."""
manager = self._build_manager(
{
"cam_a": (1280, 720),
"cam_b": (1280, 720),
"cam_p": (360, 640),
"cam_c": (1280, 720),
"cam_d": (1280, 720),
}
)
layout = manager.calculate_layout(
["cam_a", "cam_b", "cam_p", "cam_c", "cam_d"],
3,
)
self.assertIsNotNone(layout)
assert layout is not None
self._assert_no_overlaps(layout)
cam_c = [
position for row in layout for camera, position in row if camera == "cam_c"
][0]
cam_d = [
position for row in layout for camera, position in row if camera == "cam_d"
][0]
self.assertEqual(cam_c[0], 0)
self.assertEqual(cam_d[0], cam_c[0] + cam_c[2])
class TestBirdseyeActivity(unittest.TestCase):
"""Test which camera activity is included in each Birdseye mode."""
def setUp(self):
config = {
"mqtt": {"enabled": False},
"birdseye": {
"enabled": True,
"modes": ["motion", "all_objects"],
},
"cameras": {
"front": {
"ffmpeg": {
"inputs": [
{"path": "rtsp://10.0.0.1:554/video", "roles": ["detect"]}
]
},
"detect": {"height": 1080, "width": 1920, "fps": 5},
}
},
}
self.manager = BirdsEyeFrameManager(FrigateConfig(**config), mp.Event())
def test_each_mode_matches_only_its_own_activity(self):
motion_activity = BirdseyeActivity(
has_object=False, has_motion=True, severity=None
)
object_activity = BirdseyeActivity(
has_object=True, has_motion=False, severity=None
)
no_activity = BirdseyeActivity(
has_object=False, has_motion=False, severity=None
)
assert self.manager.camera_threshold_active(
[BirdseyeModeEnum.motion], motion_activity
)
assert not self.manager.camera_threshold_active(
[BirdseyeModeEnum.motion], object_activity
)
assert self.manager.camera_threshold_active(
[BirdseyeModeEnum.all_objects], object_activity
)
assert not self.manager.camera_threshold_active(
[BirdseyeModeEnum.all_objects], motion_activity
)
assert self.manager.camera_live_active(
[BirdseyeModeEnum.continuous], no_activity
)
def test_continuous_is_not_threshold_activity(self):
no_activity = BirdseyeActivity(
has_object=False, has_motion=False, severity=None
)
assert not self.manager.camera_threshold_active(
[BirdseyeModeEnum.continuous], no_activity
)
def test_modes_can_be_combined(self):
modes = [BirdseyeModeEnum.motion, BirdseyeModeEnum.all_objects]
assert self.manager.camera_threshold_active(
modes, BirdseyeActivity(has_object=False, has_motion=True, severity=None)
)
assert self.manager.camera_threshold_active(
modes, BirdseyeActivity(has_object=True, has_motion=False, severity=None)
)
assert not self.manager.camera_threshold_active(
modes, BirdseyeActivity(has_object=False, has_motion=False, severity=None)
)
def test_empty_modes_never_activate(self):
activity = BirdseyeActivity(has_object=True, has_motion=True, severity=None)
assert not self.manager.camera_threshold_active([], activity)
assert not self.manager.camera_live_active([], activity)
def test_alerts_and_detections_match_review_severity(self):
alert = BirdseyeActivity(has_object=False, has_motion=False, severity="alert")
detection = BirdseyeActivity(
has_object=False, has_motion=False, severity="detection"
)
idle = BirdseyeActivity(has_object=False, has_motion=False, severity=None)
assert self.manager.camera_live_active([BirdseyeModeEnum.alerts], alert)
assert not self.manager.camera_live_active([BirdseyeModeEnum.alerts], detection)
assert not self.manager.camera_live_active([BirdseyeModeEnum.alerts], idle)
assert self.manager.camera_live_active([BirdseyeModeEnum.detections], detection)
assert not self.manager.camera_live_active([BirdseyeModeEnum.detections], alert)
def test_review_severity_is_not_threshold_activity(self):
alert = BirdseyeActivity(has_object=False, has_motion=False, severity="alert")
assert not self.manager.camera_threshold_active(
[BirdseyeModeEnum.alerts, BirdseyeModeEnum.motion], alert
)
def test_all_objects_covers_active_and_stationary_objects(self):
birdseye = Birdseye.__new__(Birdseye)
birdseye.birdseye_manager = Mock()
birdseye.birdseye_manager.update.return_value = (False, False)
birdseye._idle_interval = None
birdseye.review_severity = {}
frame = Mock()
birdseye.write_data(
"front",
[
{"stationary": True, "false_positive": True},
{"stationary": True, "false_positive": False},
],
[[0, 0, 10, 10]],
1.0,
frame,
)
birdseye.birdseye_manager.update.assert_called_once_with(
"front",
BirdseyeActivity(has_object=True, has_motion=True, severity=None),
1.0,
frame,
)
def test_false_positives_do_not_count_as_objects(self):
birdseye = Birdseye.__new__(Birdseye)
birdseye.birdseye_manager = Mock()
birdseye.birdseye_manager.update.return_value = (False, False)
birdseye._idle_interval = None
birdseye.review_severity = {}
frame = Mock()
birdseye.write_data(
"front",
[
{"stationary": True, "false_positive": True},
{"stationary": False, "false_positive": True},
],
[],
1.0,
frame,
)
birdseye.birdseye_manager.update.assert_called_once_with(
"front",
BirdseyeActivity(has_object=False, has_motion=False, severity=None),
1.0,
frame,
)
class TestBirdseyeCameraOrder(unittest.TestCase):
"""Test that birdseye reacts to camera order changes without a restart."""
@@ -55,7 +369,7 @@ class TestBirdseyeCameraOrder(unittest.TestCase):
def setUp(self):
config = {
"mqtt": {"enabled": False},
"birdseye": {"enabled": True, "mode": "continuous"},
"birdseye": {"enabled": True, "modes": ["continuous"]},
"cameras": {
camera: {
"ffmpeg": {
@@ -77,6 +391,7 @@ class TestBirdseyeCameraOrder(unittest.TestCase):
camera_data["current_frame"] = None
camera_data["current_frame_time"] = 1.0
camera_data["last_active_frame"] = 1.0
camera_data["live_active"] = True
def layout_order(self) -> list[str]:
"""Return the cameras in the order the current layout renders them."""
@@ -114,3 +429,155 @@ class TestBirdseyeCameraOrder(unittest.TestCase):
assert not layout_changed
assert self.layout_order() == ["back", "front", "side"]
class TestBirdseyeLiveActivity(unittest.TestCase):
"""Test that live activity bypasses the inactivity threshold."""
def setUp(self):
config = {
"mqtt": {"enabled": False},
"birdseye": {
"enabled": True,
"modes": ["continuous"],
"inactivity_threshold": 30,
},
"cameras": {
camera: {
"ffmpeg": {
"inputs": [
{"path": "rtsp://10.0.0.1:554/video", "roles": ["detect"]}
]
},
"detect": {"height": 1080, "width": 1920, "fps": 5},
}
for camera in ("back", "front")
},
}
self.config = FrigateConfig(**config)
self.manager = BirdsEyeFrameManager(self.config, mp.Event())
for camera_data in self.manager.cameras.values():
camera_data["current_frame"] = None
camera_data["current_frame_time"] = 1000.0
camera_data["last_active_frame"] = 0.0
camera_data["live_active"] = False
def test_live_active_camera_is_shown_without_a_recent_active_frame(self):
self.manager.cameras["front"]["live_active"] = True
self.manager.update_frame()
assert self.manager.active_cameras == {"front"}
def test_live_active_camera_drops_out_immediately(self):
self.manager.cameras["front"]["live_active"] = True
self.manager.update_frame()
assert self.manager.active_cameras == {"front"}
self.manager.cameras["front"]["live_active"] = False
self.manager.update_frame()
assert self.manager.active_cameras == set()
def test_threshold_activity_lingers_then_expires(self):
self.manager.cameras["front"]["last_active_frame"] = 980.0
self.manager.update_frame()
assert self.manager.active_cameras == {"front"}
self.manager.cameras["front"]["last_active_frame"] = 960.0
self.manager.update_frame()
assert self.manager.active_cameras == set()
def test_max_cameras_ranks_live_active_cameras_first(self):
self.config.birdseye.layout.max_cameras = 1
self.manager.cameras["front"]["live_active"] = True
self.manager.cameras["back"]["last_active_frame"] = 995.0
self.manager.update_frame()
assert self.manager.active_cameras == {"front"}
class TestBirdseyeModePayload(unittest.TestCase):
"""Test the MQTT payload contract for Birdseye activity modes."""
def test_single_mode_round_trips(self):
modes = birdseye_modes_from_mqtt_payload("ALERTS")
assert modes == [BirdseyeModeEnum.alerts]
assert birdseye_modes_to_mqtt_payload(modes) == "ALERTS"
def test_combined_modes_are_published_in_enum_order(self):
modes = birdseye_modes_from_mqtt_payload("ALERTS,MOTION")
assert modes == [BirdseyeModeEnum.alerts, BirdseyeModeEnum.motion]
assert birdseye_modes_to_mqtt_payload(modes) == "MOTION,ALERTS"
def test_none_round_trips_to_an_empty_list(self):
assert birdseye_modes_from_mqtt_payload("NONE") == []
assert birdseye_modes_to_mqtt_payload([]) == "NONE"
def test_invalid_payloads_are_rejected(self):
for payload in (
"UNKNOWN",
"motion",
"MOTION_OBJECTS",
"NONE,MOTION",
"MOTION,MOTION",
"MOTION,",
"",
):
with self.subTest(payload=payload):
assert birdseye_modes_from_mqtt_payload(payload) is None
class TestBirdseyeReviewSeverity(unittest.TestCase):
"""Test that review updates drive the per-camera severity map."""
def setUp(self):
self.birdseye = Birdseye.__new__(Birdseye)
self.birdseye.review_subscriber = Mock()
self.birdseye.review_severity = {}
self.birdseye.birdseye_manager = Mock()
self.birdseye.birdseye_manager.update.return_value = (False, False)
self.birdseye._idle_interval = None
def _drain(self, *updates):
self.birdseye.review_subscriber.check_for_update.side_effect = [*updates, None]
self.birdseye.check_review_updates()
def test_new_segment_sets_severity(self):
self._drain({"type": "new", "after": {"camera": "front", "severity": "alert"}})
assert self.birdseye.review_severity == {"front": "alert"}
def test_update_upgrades_severity(self):
self._drain(
{"type": "new", "after": {"camera": "front", "severity": "detection"}},
{"type": "update", "after": {"camera": "front", "severity": "alert"}},
)
assert self.birdseye.review_severity == {"front": "alert"}
def test_end_clears_severity(self):
self._drain(
{"type": "new", "after": {"camera": "front", "severity": "alert"}},
{"type": "end", "after": {"camera": "front", "severity": "alert"}},
)
assert self.birdseye.review_severity == {}
def test_write_data_passes_the_tracked_severity(self):
self.birdseye.review_severity = {"front": "alert"}
frame = Mock()
self.birdseye.write_data("front", [], [], 1.0, frame)
self.birdseye.birdseye_manager.update.assert_called_once_with(
"front",
BirdseyeActivity(has_object=False, has_motion=False, severity="alert"),
1.0,
frame,
)
+102
View File
@@ -0,0 +1,102 @@
"""Tests for dynamic camera config updates recreating ffmpeg commands."""
import unittest
from unittest.mock import patch
from frigate.config import CameraConfig, FrigateConfig
from frigate.config.camera.updater import (
CameraConfigUpdateEnum,
CameraConfigUpdateSubscriber,
)
from frigate.const import SUB_CACHE_TAG
def _build_camera_config(sub_enabled: bool) -> CameraConfig:
config = FrigateConfig(
**{
"mqtt": {"host": "mqtt"},
"cameras": {
"front_door": {
"ffmpeg": {
"inputs": [
{
"path": "rtsp://10.0.0.1:554/video",
"roles": ["detect", "record"],
},
{
"path": "rtsp://10.0.0.1:554/video2",
"roles": ["record_sub"],
},
]
},
"record": {"enabled": True, "sub": {"enabled": sub_enabled}},
}
},
}
)
return config.cameras["front_door"]
def _has_sub_output(camera_config: CameraConfig) -> bool:
return any(
SUB_CACHE_TAG in part for c in camera_config.ffmpeg_cmds for part in c["cmd"]
)
class TestRecordUpdateRecreatesFfmpegCmds(unittest.TestCase):
def setUp(self):
# avoid binding a real ZMQ socket; updates are fed directly through
# the mocked subscriber below
patcher = patch("frigate.config.camera.updater.ConfigSubscriber")
patcher.start()
self.addCleanup(patcher.stop)
def _push_record_update(
self, subscriber: CameraConfigUpdateSubscriber, record_config
) -> None:
subscriber.subscriber.check_for_update.side_effect = [
("config/cameras/front_door/record", record_config),
(None, None),
]
subscriber.check_for_updates()
def test_enabling_sub_recreates_ffmpeg_cmds(self):
camera_config = _build_camera_config(sub_enabled=False)
subscriber = CameraConfigUpdateSubscriber(
None, {"front_door": camera_config}, [CameraConfigUpdateEnum.record]
)
assert not _has_sub_output(camera_config)
self._push_record_update(
subscriber, _build_camera_config(sub_enabled=True).record
)
assert _has_sub_output(camera_config)
def test_disabling_sub_recreates_ffmpeg_cmds(self):
camera_config = _build_camera_config(sub_enabled=True)
subscriber = CameraConfigUpdateSubscriber(
None, {"front_door": camera_config}, [CameraConfigUpdateEnum.record]
)
assert _has_sub_output(camera_config)
self._push_record_update(
subscriber, _build_camera_config(sub_enabled=False).record
)
assert not _has_sub_output(camera_config)
def test_unchanged_record_update_keeps_existing_cmds(self):
camera_config = _build_camera_config(sub_enabled=False)
subscriber = CameraConfigUpdateSubscriber(
None, {"front_door": camera_config}, [CameraConfigUpdateEnum.record]
)
cmds_before = camera_config.ffmpeg_cmds
# neither enabled_in_config nor sub.enabled changed, so the
# commands should not be rebuilt
self._push_record_update(
subscriber, _build_camera_config(sub_enabled=False).record
)
assert camera_config.ffmpeg_cmds is cmds_before
+227
View File
@@ -0,0 +1,227 @@
"""Regression tests for runtime camera add and delete handling."""
import asyncio
import threading
import unittest
from types import SimpleNamespace
from unittest.mock import MagicMock
# LicensePlatePostProcessor is imported via the maintainer rather than from
# data_processing.post.license_plate, which circularly imports back through
# frigate.embeddings before that package finishes initializing
from frigate.embeddings.maintainer import (
EmbeddingMaintainer,
LicensePlatePostProcessor,
)
from frigate.ptz.autotrack import PtzAutoTracker
from frigate.review.maintainer import ReviewSegmentMaintainer
from frigate.track.object_processing import TrackedObjectProcessor
def _make_processor() -> TrackedObjectProcessor:
"""Build a processor with no cameras, bypassing __init__."""
processor = TrackedObjectProcessor.__new__(TrackedObjectProcessor)
processor.camera_states = {}
processor.camera_states_lock = threading.Lock()
processor.config = SimpleNamespace(cameras={})
processor.event_sender = MagicMock()
processor.detection_publisher = MagicMock()
processor.ongoing_manual_events = {}
return processor
class TestObjectProcessorUnknownCamera(unittest.TestCase):
def test_save_lpr_snapshot_ignores_unknown_camera(self):
processor = _make_processor()
# 1x1 png, base64; decoding must not be what fails
payload = (
"iVBORw0KGgoAAAANSUhEUgAAAAEAAAABCAYAAAAfFcSJAAAADUlEQVR42mP8z8BQDwAEhQGAhKmMIQAAAABJRU5ErkJggg==",
"1234.5-abcdef",
"deleted_cam",
)
processor.save_lpr_snapshot(payload)
processor.event_sender.publish.assert_not_called()
def test_create_manual_event_ignores_unknown_camera(self):
processor = _make_processor()
payload = (
1234.5,
"deleted_cam",
"person",
"1234.5-abcdef",
True,
0.9,
None,
None,
"api",
False,
None,
)
processor.create_manual_event(payload)
processor.event_sender.publish.assert_not_called()
self.assertEqual(processor.ongoing_manual_events, {})
def test_create_lpr_event_ignores_unknown_camera(self):
processor = _make_processor()
payload = (
1234.5,
"deleted_cam",
"license_plate",
"1234.5-abcdef",
True,
0.9,
None,
"ABC123",
)
processor.create_lpr_event(payload)
processor.event_sender.publish.assert_not_called()
self.assertEqual(processor.ongoing_manual_events, {})
def test_create_manual_event_ignores_camera_added_but_not_yet_drained(self):
"""The add window: present in config.cameras, absent from camera_states.
debug_replay writes the camera into the shared config before publishing
add, so a guard on config.cameras passes here and falls through to
camera_states. This test fails against such a guard.
"""
processor = _make_processor()
processor.config = SimpleNamespace(
cameras={
"new_cam": SimpleNamespace(
record=SimpleNamespace(event_pre_capture=5, enabled=True)
)
}
)
payload = (
1234.5,
"new_cam",
"person",
"1234.5-abcdef",
True,
0.9,
None,
None,
"api",
False,
None,
)
processor.create_manual_event(payload)
processor.event_sender.publish.assert_not_called()
class TestEmbeddingsUnknownCamera(unittest.TestCase):
def _make_maintainer(self) -> EmbeddingMaintainer:
maintainer = EmbeddingMaintainer.__new__(EmbeddingMaintainer)
maintainer.config = SimpleNamespace(cameras={})
maintainer.event_end_subscriber = MagicMock()
maintainer.realtime_processors = [MagicMock()]
# spec is required: the dispatch loop is a chain of isinstance checks,
# and a bare MagicMock matches none of them, so the crashing branch
# would never run and the test would pass against unfixed code
maintainer.post_processors = [MagicMock(spec=LicensePlatePostProcessor)]
maintainer.detected_license_plates = {"1234.5-abcdef": {"obj_data": {}}}
maintainer.recordings_available_through = {"deleted_cam": 1234.5}
maintainer.event_metadata_publisher = MagicMock()
return maintainer
def test_process_finalized_skips_unknown_camera(self):
maintainer = self._make_maintainer()
# updated_db=False bypasses the Event.get branch, which would hit the
# database and mask the KeyError this test is about
maintainer.event_end_subscriber.check_for_update.side_effect = [
("1234.5-abcdef", "deleted_cam", False),
None,
]
maintainer._process_finalized()
maintainer.post_processors[0].process_data.assert_not_called()
def test_process_finalized_still_expires_realtime_state(self):
"""The guard must not skip per-event cleanup, only post processing."""
maintainer = self._make_maintainer()
maintainer.event_end_subscriber.check_for_update.side_effect = [
("1234.5-abcdef", "deleted_cam", False),
None,
]
maintainer._process_finalized()
maintainer.realtime_processors[0].expire_object.assert_called_once_with(
"1234.5-abcdef", "deleted_cam"
)
def test_expire_dedicated_lpr_drops_entry_for_unknown_camera(self):
maintainer = self._make_maintainer()
maintainer.detected_license_plates = {
"1234.5-abcdef": {"camera": "deleted_cam", "last_seen": 1.0}
}
maintainer._expire_dedicated_lpr()
self.assertEqual(maintainer.detected_license_plates, {})
class TestReviewMaintainerRemoval(unittest.TestCase):
def test_camera_removal_ends_segment_and_clears_state(self):
maintainer = ReviewSegmentMaintainer.__new__(ReviewSegmentMaintainer)
maintainer.active_review_segments = {"deleted_cam": MagicMock()}
maintainer.indefinite_events = {"deleted_cam": {"1234.5-abcdef": 1.0}}
maintainer.forcibly_end_segment = MagicMock()
maintainer._handle_camera_removed("deleted_cam")
maintainer.forcibly_end_segment.assert_called_once_with("deleted_cam")
self.assertNotIn("deleted_cam", maintainer.indefinite_events)
class TestAutotrackerMoveQueue(unittest.TestCase):
def test_move_queue_drops_move_for_removed_camera(self):
tracker = PtzAutoTracker.__new__(PtzAutoTracker)
tracker.stop_event = MagicMock()
# one pass through the loop, then stop
tracker.stop_event.is_set.side_effect = [False, True]
tracker.ptz_metrics = {}
tracker.move_queues = {"deleted_cam": asyncio.Queue()}
tracker.move_queue_locks = {"deleted_cam": asyncio.Lock()}
tracker.onvif = MagicMock()
tracker.config = SimpleNamespace(cameras={})
tracker.move_queues["deleted_cam"].put_nowait((1234.5, 0.1, 0.1, 0.0))
asyncio.run(tracker._process_move_queue("deleted_cam"))
tracker.onvif._move_relative.assert_not_called()
class TestCameraStateAccessors(unittest.TestCase):
def test_get_camera_state_returns_none_for_unknown_camera(self):
processor = _make_processor()
self.assertIsNone(processor.get_camera_state("deleted_cam"))
def test_get_camera_states_returns_a_snapshot_not_a_view(self):
"""A live values() view raises RuntimeError if the writer pops mid-iteration."""
processor = _make_processor()
processor.camera_states = {"one": MagicMock(), "two": MagicMock()}
states = processor.get_camera_states()
processor.camera_states.pop("one")
self.assertEqual(len(states), 2)
def test_get_current_frame_time_is_zero_for_unknown_camera(self):
processor = _make_processor()
self.assertEqual(processor.get_current_frame_time("deleted_cam"), 0.0)
+237 -24
View File
@@ -1,13 +1,14 @@
import json
import os
import unittest
from copy import deepcopy
from unittest.mock import patch
import numpy as np
from pydantic import ValidationError
from ruamel.yaml.constructor import DuplicateKeyError
from frigate.config import BirdseyeModeEnum, FrigateConfig
from frigate.config import BirdseyeModeEnum, FrigateConfig, RetainModeEnum
from frigate.const import MODEL_CACHE_DIR
from frigate.detectors import DetectorTypeEnum
from frigate.util.builtin import deep_merge
@@ -170,7 +171,7 @@ class TestConfig(unittest.TestCase):
def test_override_birdseye(self):
config = {
"mqtt": {"host": "mqtt"},
"birdseye": {"enabled": True, "mode": "continuous"},
"birdseye": {"enabled": True, "modes": ["continuous"]},
"cameras": {
"back": {
"ffmpeg": {
@@ -183,19 +184,28 @@ class TestConfig(unittest.TestCase):
"width": 1920,
"fps": 5,
},
"birdseye": {"enabled": False, "mode": "motion"},
"birdseye": {
"enabled": False,
"modes": ["motion"],
},
}
},
}
frigate_config = FrigateConfig(**config)
assert not frigate_config.cameras["back"].birdseye.enabled
assert frigate_config.cameras["back"].birdseye.mode is BirdseyeModeEnum.motion
assert frigate_config.cameras["back"].birdseye.modes == [
BirdseyeModeEnum.motion
]
def test_override_birdseye_non_inheritable(self):
config = {
"mqtt": {"host": "mqtt"},
"birdseye": {"enabled": True, "mode": "continuous", "height": 1920},
"birdseye": {
"enabled": True,
"modes": ["continuous"],
"height": 1920,
},
"cameras": {
"back": {
"ffmpeg": {
@@ -217,29 +227,38 @@ class TestConfig(unittest.TestCase):
def test_inherit_birdseye(self):
config = {
"mqtt": {"host": "mqtt"},
"birdseye": {"enabled": True, "mode": "continuous"},
"cameras": {
"back": {
"ffmpeg": {
"inputs": [
{"path": "rtsp://10.0.0.1:554/video", "roles": ["detect"]}
]
},
"detect": {
"height": 1080,
"width": 1920,
"fps": 5,
},
}
},
**self.minimal,
"birdseye": {"enabled": True, "modes": ["continuous"]},
}
frigate_config = FrigateConfig(**config)
assert frigate_config.cameras["back"].birdseye.enabled
assert (
frigate_config.cameras["back"].birdseye.mode is BirdseyeModeEnum.continuous
)
assert frigate_config.cameras["back"].birdseye.modes == [
BirdseyeModeEnum.continuous
]
def test_camera_modes_replace_the_global_list(self):
"""A camera list fully replaces the global one, it does not merge into it."""
config = {
**self.minimal,
"birdseye": {"modes": ["motion", "all_objects"]},
}
config["cameras"]["back"]["birdseye"] = {"modes": ["alerts"]}
frigate_config = FrigateConfig(**config)
assert frigate_config.cameras["back"].birdseye.modes == [
BirdseyeModeEnum.alerts
]
def test_camera_can_select_no_modes(self):
config = {
**self.minimal,
"birdseye": {"modes": ["motion"]},
}
config["cameras"]["back"]["birdseye"] = {"modes": []}
frigate_config = FrigateConfig(**config)
assert frigate_config.cameras["back"].birdseye.modes == []
def test_override_tracked_objects(self):
config = {
@@ -877,6 +896,162 @@ class TestConfig(unittest.TestCase):
assert len(ffmpeg_cmds) == 1
assert "clips" not in ffmpeg_cmds[0]["roles"]
def test_record_sub_cmd_writes_sub_cache_path(self):
config = {
"mqtt": {"host": "mqtt"},
"cameras": {
"back": {
"ffmpeg": {
"inputs": [
{
"path": "rtsp://10.0.0.1:554/video",
"roles": ["detect", "record"],
},
{
"path": "rtsp://10.0.0.1:554/video2",
"roles": ["record_sub"],
},
]
},
"record": {"enabled": True, "sub": {"enabled": True}},
}
},
}
frigate_config = FrigateConfig(**config)
cmds = frigate_config.cameras["back"].ffmpeg_cmds
sub_cmds = [c for c in cmds if "record_sub" in c["roles"]]
assert len(sub_cmds) == 1
joined = " ".join(sub_cmds[0]["cmd"])
assert "back@sub@" in joined
def test_record_sub_disabled_no_sub_cache_path(self):
config = {
"mqtt": {"host": "mqtt"},
"cameras": {
"back": {
"ffmpeg": {
"inputs": [
{
"path": "rtsp://10.0.0.1:554/video",
"roles": ["detect", "record"],
},
]
},
"record": {"enabled": True, "sub": {"enabled": False}},
}
},
}
frigate_config = FrigateConfig(**config)
cmds = frigate_config.cameras["back"].ffmpeg_cmds
assert all("@sub@" not in " ".join(c["cmd"]) for c in cmds)
def _sub_record_config(self, ffmpeg_extra: dict | None = None) -> dict:
return {
"mqtt": {"host": "mqtt"},
"cameras": {
"back": {
"ffmpeg": {
"inputs": [
{
"path": "rtsp://10.0.0.1:554/video",
"roles": ["detect", "record"],
},
{
"path": "rtsp://10.0.0.1:554/video2",
"roles": ["record_sub"],
},
],
**(ffmpeg_extra or {}),
},
"record": {"enabled": True, "sub": {"enabled": True}},
}
},
}
def _sub_record_cmd(self, config: dict) -> str:
cmds = FrigateConfig(**config).cameras["back"].ffmpeg_cmds
sub_cmds = [c for c in cmds if "record_sub" in c["roles"]]
assert len(sub_cmds) == 1
return " ".join(sub_cmds[0]["cmd"])
def test_record_sub_output_args_inherit_record(self):
config = self._sub_record_config(
{"output_args": {"record": "preset-record-generic-audio-copy"}}
)
cmd = self._sub_record_cmd(config)
# the customized record args, not the stock aac default
assert "-c copy" in cmd
assert "-c:a aac" not in cmd
def test_record_sub_output_args_override_record(self):
config = self._sub_record_config(
{
"output_args": {
"record": "preset-record-generic-audio-aac",
"record_sub": "preset-record-generic",
}
}
)
cmd = self._sub_record_cmd(config)
assert "-c copy -an" in cmd
assert "-c:a aac" not in cmd
def test_record_output_args_unaffected_by_record_sub(self):
config = self._sub_record_config(
{
"output_args": {
"record": "preset-record-generic-audio-aac",
"record_sub": "preset-record-generic",
}
}
)
cmds = FrigateConfig(**config).cameras["back"].ffmpeg_cmds
record_cmd = " ".join(next(c for c in cmds if "record" in c["roles"])["cmd"])
assert "-c:a aac" in record_cmd
def test_record_sub_manual_output_args(self):
config = self._sub_record_config(
{
"output_args": {
"record_sub": "-f segment -segment_time 10 -segment_format mp4 -reset_timestamps 1 -strftime 1 -c:v copy -c:a aac -ar 16000"
}
}
)
assert "-ar 16000" in self._sub_record_cmd(config)
def test_fails_on_bad_record_sub_segment_time(self):
config = self._sub_record_config(
{
"output_args": {
"record_sub": "-f segment -segment_time 70 -segment_format mp4 -reset_timestamps 1 -strftime 1 -c copy -an"
}
}
)
self.assertRaisesRegex(
ValueError,
"segment_time",
lambda: FrigateConfig(**config).cameras,
)
def test_record_sub_segment_time_not_checked_when_disabled(self):
config = self._sub_record_config(
{
"output_args": {
"record_sub": "-f segment -segment_time 70 -segment_format mp4 -reset_timestamps 1 -strftime 1 -c copy -an"
}
}
)
config["cameras"]["back"]["record"]["sub"]["enabled"] = False
FrigateConfig(**config).cameras
def test_max_disappeared_default(self):
config = {
"mqtt": {"host": "mqtt"},
@@ -1119,6 +1294,44 @@ class TestConfig(unittest.TestCase):
self.assertRaises(ValueError, lambda: FrigateConfig(**config))
def test_record_sub_config_defaults(self):
config = FrigateConfig(**self.minimal)
record = config.cameras["back"].record
assert record.sub.enabled is False
assert record.sub.continuous.days == 0
assert record.sub.alerts.mode == RetainModeEnum.motion
def test_record_sub_enabled_requires_role(self):
config = deepcopy(self.minimal)
config["cameras"]["back"]["ffmpeg"]["inputs"] = [
{"path": "rtsp://10.0.0.1:554/video", "roles": ["detect", "record"]},
]
config["cameras"]["back"]["record"] = {
"enabled": True,
"sub": {"enabled": True},
}
# no record_sub role assigned -> must raise
self.assertRaisesRegex(
ValueError,
"record_sub is not assigned",
lambda: FrigateConfig(**config),
)
def test_record_sub_role_accepted(self):
config = deepcopy(self.minimal)
config["cameras"]["back"]["ffmpeg"]["inputs"] = [
{"path": "rtsp://10.0.0.1:554/video", "roles": ["detect", "record"]},
{"path": "rtsp://10.0.0.1:554/video2", "roles": ["record_sub"]},
]
config["cameras"]["back"]["record"] = {
"enabled": True,
"sub": {"enabled": True, "continuous": {"days": 30}},
}
parsed = FrigateConfig(**config)
assert parsed.cameras["back"].record.sub.continuous.days == 30
def test_works_on_missing_role_multiple_cams(self):
config = {
"mqtt": {"host": "mqtt"},
+1 -2
View File
@@ -9,7 +9,6 @@ from unittest.mock import MagicMock, patch
from frigate.debug_replay import DebugReplayManager
from frigate.jobs.debug_replay import (
DebugReplayJob,
NoRecordingsError,
RecordingDebugReplaySource,
cancel_debug_replay_job,
get_active_runner,
@@ -130,7 +129,7 @@ class TestStartDebugReplayJob(unittest.TestCase):
empty_qs = MagicMock()
empty_qs.count.return_value = 0
with patch("frigate.jobs.debug_replay.query_recordings", return_value=empty_qs):
with self.assertRaises(NoRecordingsError):
with self.assertRaises(ValueError):
start_debug_replay_job(
source=RecordingDebugReplaySource(
source_camera="front",
-41
View File
@@ -1,41 +0,0 @@
"""Tests for ONNX Runtime session option selection."""
import unittest
import onnxruntime as ort
from frigate.detectors.detection_runners import get_ort_session_options
from frigate.detectors.detector_config import ModelTypeEnum
from frigate.embeddings.types import EnrichmentModelTypeEnum
class TestGetOrtSessionOptions(unittest.TestCase):
def test_jina_v2_uses_extended(self):
"""jina-clip-v2 returns an identical vector for every image on the CUDA
execution provider at anything below EXTENDED."""
options = get_ort_session_options(EnrichmentModelTypeEnum.jina_v2.value)
self.assertIsNotNone(options)
self.assertEqual(
options.graph_optimization_level,
ort.GraphOptimizationLevel.ORT_ENABLE_EXTENDED,
)
def test_jina_v1_uses_basic(self):
options = get_ort_session_options(EnrichmentModelTypeEnum.jina_v1.value)
self.assertIsNotNone(options)
self.assertEqual(
options.graph_optimization_level,
ort.GraphOptimizationLevel.ORT_ENABLE_BASIC,
)
def test_other_models_use_defaults(self):
for model_type in [
None,
EnrichmentModelTypeEnum.paddleocr.value,
EnrichmentModelTypeEnum.arcface.value,
ModelTypeEnum.rfdetr.value,
]:
with self.subTest(model_type=model_type):
self.assertIsNone(get_ort_session_options(model_type))
@@ -8,6 +8,7 @@ from unittest.mock import MagicMock, patch
from frigate.app import FrigateApp
from frigate.comms.dispatcher import Dispatcher
from frigate.comms.runtime_state import RuntimeStatePersistence
from frigate.config import BirdseyeModeEnum
def _make_camera_mock(
@@ -51,6 +52,60 @@ def _build_dispatcher(cameras: dict[str, MagicMock]) -> Dispatcher:
return Dispatcher(config, config_updater, onvif, ptz_metrics, communicators)
class TestBirdseyeModeCommands(unittest.TestCase):
"""Verify Birdseye mode commands use the activity list contract."""
def setUp(self) -> None:
self.camera = _make_camera_mock()
self.camera.birdseye.enabled = True
self.dispatcher = _build_dispatcher({"front_door": self.camera})
self.dispatcher.publish = MagicMock()
def test_combined_modes_are_accepted(self) -> None:
self.dispatcher._on_birdseye_modes_command("front_door", "ALERTS,MOTION")
self.assertEqual(
self.camera.birdseye.modes,
[BirdseyeModeEnum.alerts, BirdseyeModeEnum.motion],
)
self.dispatcher.config_updater.publish_update.assert_called_once()
self.dispatcher.publish.assert_called_once_with(
"front_door/birdseye_modes/state",
"MOTION,ALERTS",
retain=True,
)
def test_single_activity_type_is_accepted(self) -> None:
self.dispatcher._on_birdseye_modes_command("front_door", "ALL_OBJECTS")
self.assertEqual(self.camera.birdseye.modes, [BirdseyeModeEnum.all_objects])
self.dispatcher.publish.assert_called_once_with(
"front_door/birdseye_modes/state", "ALL_OBJECTS", retain=True
)
def test_none_clears_every_activity_type(self) -> None:
self.dispatcher._on_birdseye_modes_command("front_door", "NONE")
self.assertEqual(self.camera.birdseye.modes, [])
self.dispatcher.publish.assert_called_once_with(
"front_door/birdseye_modes/state", "NONE", retain=True
)
def test_unknown_mode_is_rejected(self) -> None:
for payload in (
"UNKNOWN",
"motion",
"MOTION_OBJECTS",
"NONE,MOTION",
"MOTION,MOTION",
"MOTION,",
):
with self.subTest(payload=payload):
self.dispatcher._on_birdseye_modes_command("front_door", payload)
self.dispatcher.config_updater.publish_update.assert_not_called()
class TestRestoreRuntimeState(unittest.TestCase):
"""Verify replay routes through handlers and tolerates missing entries."""
+127
View File
@@ -0,0 +1,127 @@
"""Tests for sub stream retention extending event clip lifetimes."""
import datetime
import unittest
from unittest.mock import MagicMock
from playhouse.sqlite_ext import SqliteExtDatabase
from frigate.config import FrigateConfig
from frigate.events.cleanup import EventCleanup
from frigate.models import Event, Timeline
class TestEventCleanupSubRetention(unittest.TestCase):
def setUp(self):
# in-memory database keeps these tests isolated from the shared
# on-disk test.db used by the http api tests
self.db = SqliteExtDatabase(":memory:")
models = [Event, Timeline]
self.db.bind(models)
self.db.create_tables(models)
def tearDown(self):
self.db.close()
def _build_cleanup(self, record_config: dict) -> EventCleanup:
config = FrigateConfig(
**{
"mqtt": {"host": "mqtt"},
"cameras": {
"front_door": {
"ffmpeg": {
"inputs": [
{
"path": "rtsp://10.0.0.1:554/video",
"roles": ["detect", "record"],
},
{
"path": "rtsp://10.0.0.1:554/video2",
"roles": ["record_sub"],
},
]
},
"record": record_config,
}
},
}
)
return EventCleanup(config, MagicMock(), MagicMock())
def _insert_event(self, id: str, age_days: float, severity: str = "alert") -> None:
end_time = (
datetime.datetime.now() - datetime.timedelta(days=age_days)
).timestamp()
Event.create(
id=id,
label="person",
camera="front_door",
start_time=end_time - 10,
end_time=end_time,
top_score=0.9,
score=0.9,
false_positive=False,
zones=[],
thumbnail="",
has_clip=True,
has_snapshot=False,
region=[],
box=[],
area=0,
retain_indefinitely=False,
plus_id="",
model_hash="",
detector_type="cpu",
model_type="ssd",
data={"max_severity": severity},
)
def test_sub_alerts_days_extends_event_clip_retention(self):
# a 20-day-old alert event keeps its clip for the 60 day sub window
# so Explore stays coherent with the surviving sub recordings
cleanup = self._build_cleanup(
{
"enabled": True,
"alerts": {"retain": {"days": 10}},
"sub": {"enabled": True, "alerts": {"days": 60}},
}
)
self._insert_event("e1", 20)
expired = cleanup.expire_clips()
assert "e1" not in expired
assert Event.get(Event.id == "e1").has_clip is True
def test_event_clip_expires_when_sub_disabled(self):
# with sub recording disabled, the 20-day-old alert event expires
# under the 10 day main alerts retention exactly as before
cleanup = self._build_cleanup(
{
"enabled": True,
"alerts": {"retain": {"days": 10}},
"sub": {"enabled": False, "alerts": {"days": 60}},
}
)
self._insert_event("e1", 20)
expired = cleanup.expire_clips()
assert "e1" in expired
assert Event.get(Event.id == "e1").has_clip is False
def test_sub_detections_days_extends_event_clip_retention(self):
# detection severity uses the sub detections window
cleanup = self._build_cleanup(
{
"enabled": True,
"detections": {"retain": {"days": 10}},
"sub": {"enabled": True, "detections": {"days": 60}},
}
)
self._insert_event("e1", 20, severity="detection")
expired = cleanup.expire_clips()
assert "e1" not in expired
assert Event.get(Event.id == "e1").has_clip is True
+88 -1
View File
@@ -1,7 +1,12 @@
import unittest
from io import StringIO
from unittest.mock import MagicMock, patch
from frigate.util.services import get_amd_gpu_stats, get_intel_gpu_stats
from frigate.util.services import (
get_amd_gpu_stats,
get_intel_gpu_stats,
get_openvino_npu_stats,
)
class TestGpuStats(unittest.TestCase):
@@ -17,6 +22,88 @@ class TestGpuStats(unittest.TestCase):
amd_stats = get_amd_gpu_stats()
assert amd_stats == {"gpu": "4.17%", "mem": "60.37%"}
@patch("frigate.util.services.time.sleep")
@patch("frigate.util.services.time.time", side_effect=[0.0, 1.0])
@patch(
"frigate.util.services.os.readlink",
return_value="/sys/bus/pci/drivers/intel_vpu",
)
@patch(
"frigate.util.services.glob.glob",
return_value=["/sys/class/accel/accel0"],
)
@patch(
"builtins.open",
side_effect=[StringIO("1000"), StringIO("1250")],
)
def test_openvino_npu_stats_discovers_accel0(
self, open_file, glob, readlink, time, sleep
):
assert get_openvino_npu_stats() == {"npu": "25.0", "mem": "-%"}
open_file.assert_any_call(
"/sys/class/accel/accel0/device/power/runtime_active_time"
)
@patch("frigate.util.services.time.sleep")
@patch("frigate.util.services.time.time", side_effect=[0.0, 1.0])
@patch(
"frigate.util.services.os.readlink",
side_effect=[
"/sys/bus/pci/drivers/other",
"/sys/bus/pci/drivers/intel_vpu",
],
)
@patch(
"frigate.util.services.glob.glob",
return_value=[
"/sys/class/accel/accel0",
"/sys/class/accel/accel1",
],
)
@patch(
"builtins.open",
side_effect=[StringIO("1000"), StringIO("1250")],
)
def test_openvino_npu_stats_skips_non_intel_accelerator(
self, open_file, glob, readlink, time, sleep
):
assert get_openvino_npu_stats() == {"npu": "25.0", "mem": "-%"}
open_file.assert_any_call(
"/sys/class/accel/accel1/device/power/runtime_active_time"
)
@patch(
"frigate.util.services.os.readlink",
return_value="/sys/bus/pci/drivers/other",
)
@patch(
"frigate.util.services.glob.glob",
return_value=["/sys/class/accel/accel0"],
)
@patch("builtins.open")
def test_openvino_npu_stats_no_intel_accelerator(self, open_file, glob, readlink):
assert get_openvino_npu_stats() is None
open_file.assert_not_called()
@patch(
"frigate.util.services.os.readlink",
return_value="/sys/bus/pci/drivers/intel_vpu",
)
@patch(
"frigate.util.services.glob.glob",
return_value=["/sys/class/accel/accel0"],
)
@patch("builtins.open", side_effect=FileNotFoundError)
def test_openvino_npu_stats_runtime_counter_unavailable(
self, open_file, glob, readlink
):
assert get_openvino_npu_stats() is None
open_file.assert_called_once_with(
"/sys/class/accel/accel0/device/power/runtime_active_time"
)
@patch("frigate.stats.intel_gpu_info.intel_gpu_name_resolver.get_names")
@patch("frigate.util.services.time.sleep")
@patch("frigate.util.services.time.monotonic")
+10 -3
View File
@@ -98,7 +98,9 @@ class TestMaintainer(unittest.IsolatedAsyncioTestCase):
end_time = now - datetime.timedelta(seconds=10)
cache_path = "/tmp/cache/test_cam@20260417150000+0000.mp4"
maintainer.end_time_cache = {cache_path: (end_time, 10.0)}
maintainer.end_time_cache = {
cache_path: (end_time, 10.0, None, None, None, None, None)
}
# Single processed frame well past end_time with no motion/objects.
maintainer.object_recordings_info["test_cam"] = [(now.timestamp(), [], [], [])]
maintainer.audio_recordings_info["test_cam"] = []
@@ -109,7 +111,11 @@ class TestMaintainer(unittest.IsolatedAsyncioTestCase):
result = await maintainer.validate_and_move_segment(
"test_cam",
reviews=[],
recording={"start_time": start_time, "cache_path": cache_path},
recording={
"start_time": start_time,
"cache_path": cache_path,
"stream_type": "main",
},
)
self.assertIsNone(result)
@@ -137,7 +143,8 @@ class TestMaintainer(unittest.IsolatedAsyncioTestCase):
(recent, 0, []),
]
grouped_recordings = {"present_cam": [{"start_time": ancient}]}
# keyed by (camera, stream_type), matching what move_files passes
grouped_recordings = {("present_cam", "main"): [{"start_time": ancient}]}
maintainer._expire_stale_recordings_info(grouped_recordings)
+19 -1
View File
@@ -6,7 +6,7 @@ import os
import unittest
from unittest.mock import MagicMock, patch
from frigate.config import FrigateConfig
from frigate.config import BirdseyeModeEnum, FrigateConfig
from frigate.config.camera.profile import CameraProfileConfig
from frigate.config.profile import ProfileDefinitionConfig
from frigate.config.profile_manager import PERSISTENCE_FILE, ProfileManager
@@ -560,6 +560,24 @@ class TestProfileManager(unittest.TestCase):
assert err is None
assert self.config.cameras["front"].enabled is False
@patch.object(ProfileManager, "_persist_active_profile")
def test_profile_replaces_birdseye_activity_modes(self, mock_persist):
"""A profile mode list replaces the base list rather than merging into it."""
self.config.profiles["away"] = ProfileDefinitionConfig(friendly_name="Away")
self.config.cameras["front"].birdseye.modes = [
BirdseyeModeEnum.motion,
BirdseyeModeEnum.all_objects,
]
self.config.cameras["front"].profiles["away"] = CameraProfileConfig(
birdseye={"modes": ["alerts"]}
)
self.manager = ProfileManager(self.config, self.mock_updater)
err = self.manager.activate_profile("away")
assert err is None
assert self.config.cameras["front"].birdseye.modes == [BirdseyeModeEnum.alerts]
@patch.object(ProfileManager, "_persist_active_profile")
def test_deactivate_restores_enabled(self, mock_persist):
"""Deactivating a profile restores the camera's base enabled state."""
+253
View File
@@ -0,0 +1,253 @@
"""Tests for independent sub stream retention in recording cleanup."""
import datetime
import unittest
from unittest.mock import MagicMock
from playhouse.sqlite_ext import SqliteExtDatabase
from frigate.config import FrigateConfig
from frigate.models import Previews, Recordings, ReviewSegment, UserReviewStatus
from frigate.record.cleanup import RecordingCleanup
class TestRecordingCleanupSubRetention(unittest.TestCase):
def setUp(self):
# in-memory database keeps these tests isolated from the shared
# on-disk test.db used by the http api tests
self.db = SqliteExtDatabase(":memory:")
models = [Previews, Recordings, ReviewSegment, UserReviewStatus]
self.db.bind(models)
self.db.create_tables(models)
def tearDown(self):
self.db.close()
def _build_cleanup(self, record_config: dict) -> RecordingCleanup:
config = FrigateConfig(
**{
"mqtt": {"host": "mqtt"},
"cameras": {
"front_door": {
"ffmpeg": {
"inputs": [
{
"path": "rtsp://10.0.0.1:554/video",
"roles": ["detect", "record"],
},
{
"path": "rtsp://10.0.0.1:554/video2",
"roles": ["record_sub"],
},
]
},
"record": record_config,
}
},
}
)
return RecordingCleanup(config, MagicMock())
def _insert_recording(
self,
id: str,
stream_type: str,
age_days: float,
motion: int = 0,
camera: str = "front_door",
) -> None:
end_time = (
datetime.datetime.now() - datetime.timedelta(days=age_days)
).timestamp()
Recordings.create(
id=id,
camera=camera,
path=f"/media/frigate/recordings/{id}.mp4",
start_time=end_time - 10,
end_time=end_time,
duration=10,
motion=motion,
objects=0,
dBFS=0,
segment_size=0,
stream_type=stream_type,
)
def test_sub_recordings_expire_independently(self):
# main retention 7 days, sub retention 30 days; rows 10 days old
# -> main row deleted, sub row kept
cleanup = self._build_cleanup(
{
"enabled": True,
"continuous": {"days": 7},
"sub": {"enabled": True, "continuous": {"days": 30}},
}
)
self._insert_recording("m1", "main", 10)
self._insert_recording("s1", "sub", 10)
cleanup.expire_recordings()
assert Recordings.get_or_none(Recordings.id == "m1") is None
assert Recordings.get_or_none(Recordings.id == "s1") is not None
def test_sub_recordings_expire_after_sub_retention(self):
# sub retention 30 days; sub row 40 days old -> deleted
cleanup = self._build_cleanup(
{
"enabled": True,
"continuous": {"days": 7},
"sub": {"enabled": True, "continuous": {"days": 30}},
}
)
self._insert_recording("s_old", "sub", 40)
self._insert_recording("s_new", "sub", 10)
cleanup.expire_recordings()
assert Recordings.get_or_none(Recordings.id == "s_old") is None
assert Recordings.get_or_none(Recordings.id == "s_new") is not None
def test_sub_recordings_overlapping_recent_reviews_survive(self):
# sub retention shorter than main: the reviews window must reach the
# sub pass cutoff or sub segments overlapping recent alerts are
# deleted on the first cleanup after being stored
cleanup = self._build_cleanup(
{
"enabled": True,
"continuous": {"days": 7},
"sub": {"enabled": True, "alerts": {"mode": "motion"}},
}
)
self._insert_recording("m1", "main", 1, motion=10)
self._insert_recording("s1", "sub", 1, motion=10)
# alert review covering the same time window as the recordings
recording = Recordings.get(Recordings.id == "s1")
ReviewSegment.create(
id="r1",
camera="front_door",
start_time=recording.start_time,
end_time=recording.end_time,
severity="alert",
thumb_path="/media/frigate/clips/review/thumb-r1.webp",
data={},
)
cleanup.expire_recordings()
assert Recordings.get_or_none(Recordings.id == "m1") is not None
assert Recordings.get_or_none(Recordings.id == "s1") is not None
def test_sub_alerts_days_extends_review_and_sub_retention(self):
# a 20-day-old alert review survives for the 60 day sub window and
# keeps the sub row alive, but must not hold the main row past the
# 10 day main alerts window
cleanup = self._build_cleanup(
{
"enabled": True,
"continuous": {"days": 7},
"sub": {"enabled": True, "alerts": {"days": 60}},
}
)
self._insert_recording("m1", "main", 20, motion=10)
self._insert_recording("s1", "sub", 20, motion=10)
# alert review covering the same time window as the recordings
recording = Recordings.get(Recordings.id == "s1")
ReviewSegment.create(
id="r1",
camera="front_door",
start_time=recording.start_time,
end_time=recording.end_time,
severity="alert",
thumb_path="/media/frigate/clips/review/thumb-r1.webp",
data={},
)
cleanup.expire_recordings()
assert ReviewSegment.get_or_none(ReviewSegment.id == "r1") is not None
assert Recordings.get_or_none(Recordings.id == "m1") is None
assert Recordings.get_or_none(Recordings.id == "s1") is not None
def test_main_review_lifetime_unchanged_when_sub_disabled(self):
# with sub recording disabled, the 20-day-old alert review expires
# under the 10 day main alerts retention exactly as before
cleanup = self._build_cleanup(
{
"enabled": True,
"continuous": {"days": 7},
"sub": {"enabled": False, "alerts": {"days": 60}},
}
)
end_time = (datetime.datetime.now() - datetime.timedelta(days=20)).timestamp()
ReviewSegment.create(
id="r1",
camera="front_door",
start_time=end_time - 10,
end_time=end_time,
severity="alert",
thumb_path="/media/frigate/clips/review/thumb-r1.webp",
data={},
)
cleanup.expire_recordings()
assert ReviewSegment.get_or_none(ReviewSegment.id == "r1") is None
def test_disabled_sub_still_expires_old_sub_rows(self):
# sub disabled but old sub rows remain: the sub pass still runs and
# expires them by the sub config dates
cleanup = self._build_cleanup(
{
"enabled": True,
"continuous": {"days": 7},
"sub": {"enabled": False, "continuous": {"days": 30}},
}
)
self._insert_recording("s_old", "sub", 40)
self._insert_recording("s_new", "sub", 10)
cleanup.expire_recordings()
assert Recordings.get_or_none(Recordings.id == "s_old") is None
assert Recordings.get_or_none(Recordings.id == "s_new") is not None
def test_deleted_camera_recordings_expire(self):
# rows for a camera no longer in the config expire by the GLOBAL
# record retention window; newer orphan rows and configured-camera
# rows are untouched by the deleted-cameras sweep
config = FrigateConfig(
**{
"mqtt": {"host": "mqtt"},
"record": {"continuous": {"days": 7}},
"cameras": {
"front_door": {
"ffmpeg": {
"inputs": [
{
"path": "rtsp://10.0.0.1:554/video",
"roles": ["detect", "record"],
},
]
},
"record": {"enabled": True, "continuous": {"days": 7}},
}
},
}
)
cleanup = RecordingCleanup(config, MagicMock())
self._insert_recording("gone_old", "main", 10, camera="removed_cam")
self._insert_recording("gone_new", "main", 5, camera="removed_cam")
self._insert_recording("gone_blank", "main", 10, camera="")
self._insert_recording("kept", "main", 5)
cleanup.expire_recordings()
assert Recordings.get_or_none(Recordings.id == "gone_old") is None
assert Recordings.get_or_none(Recordings.id == "gone_new") is not None
# empty-string camera names sort before every real name and must
# still be enumerated by the sweep
assert Recordings.get_or_none(Recordings.id == "gone_blank") is None
assert Recordings.get_or_none(Recordings.id == "kept") is not None
+544
View File
@@ -0,0 +1,544 @@
"""Tests for sub stream cache segment handling in the recording maintainer."""
import datetime
import os
import tempfile
import unittest
from collections import defaultdict
from unittest.mock import AsyncMock, MagicMock, patch
from playhouse.sqlite_ext import SqliteExtDatabase
from frigate.config import FrigateConfig
from frigate.models import Recordings
from frigate.record.maintainer import (
RecordingMaintainer,
SegmentInfo,
parse_cache_segment_name,
)
def _build_chaining_maintainer(
t0: float, retention: str = "continuous"
) -> RecordingMaintainer:
"""Build a maintainer for start-time chaining tests.
Built without __init__ to avoid the IPC scaffolding; move_segment and
drop_segment are mocked so the times passed downstream are observable.
"""
camera_config = MagicMock()
camera_config.record.enabled = True
camera_config.record.event_pre_capture = 0
camera_config.detect.width = 1920
camera_config.detect.height = 1080
camera_config.record.continuous.days = 1 if retention == "continuous" else 0
camera_config.record.motion.days = 0 if retention == "continuous" else 1
# no spec: pydantic fields like config.ffmpeg are not visible to
# spec'd mocks, and the probe path needs them
config = MagicMock()
config.cameras = {"test_cam": camera_config}
maintainer = RecordingMaintainer.__new__(RecordingMaintainer)
maintainer.config = config
maintainer.end_time_cache = {}
maintainer.object_recordings_info = defaultdict(list)
maintainer.audio_recordings_info = defaultdict(list)
maintainer.recordings_publisher = MagicMock()
maintainer.drop_segment = MagicMock()
maintainer.move_segment = AsyncMock(return_value=None)
# pre-seed the chain state so the lazy DB seed query is not attempted
maintainer.last_segment_end = {("test_cam", "main"): 0.0}
# a processed frame far past any segment end marks segments ready
maintainer.object_recordings_info["test_cam"] = [(t0 + 1000, [], [], [])]
return maintainer
async def _validate_segment(
maintainer: RecordingMaintainer,
t0: float,
offset: float,
duration: float,
mtime: float | None = None,
):
"""Run validate_and_move_segment for a segment named t0+offset.
mtime injects the cache file's close time; None simulates a missing file.
"""
start = datetime.datetime.fromtimestamp(t0 + offset, tz=datetime.UTC)
probe = AsyncMock(return_value={"has_valid_video": True, "duration": duration})
getmtime = (
MagicMock(side_effect=OSError("missing"))
if mtime is None
else MagicMock(return_value=mtime)
)
with (
patch("frigate.record.maintainer.get_video_properties", probe),
patch(
"frigate.record.maintainer.get_keyframe_offsets",
AsyncMock(return_value=[0]),
),
patch("frigate.record.maintainer.os.path.getmtime", getmtime),
):
return await maintainer.validate_and_move_segment(
"test_cam",
reviews=[],
recording={
"start_time": start,
"cache_path": f"/tmp/cache/test_cam@chain{offset}.mp4",
"stream_type": "main",
},
)
class TestParseCacheSegmentName(unittest.TestCase):
def test_parses_main_segment(self):
camera, stream_type, date = parse_cache_segment_name(
"front_door@20260610143022+0000"
)
assert camera == "front_door"
assert stream_type == "main"
assert date == "20260610143022+0000"
def test_parses_sub_segment(self):
camera, stream_type, date = parse_cache_segment_name(
"front_door@sub@20260610143022+0000"
)
assert camera == "front_door"
assert stream_type == "sub"
assert date == "20260610143022+0000"
def test_returns_none_for_unexpected_name(self):
assert parse_cache_segment_name("no_at_sign_here") is None
class TestValidateAndMoveSubSegment(unittest.IsolatedAsyncioTestCase):
"""Behavioral tests for sub stream segments in validate_and_move_segment.
The maintainer is built without __init__ to avoid the ZMQ scaffolding
the real constructor sets up.
"""
def _build_maintainer(self, camera_config: MagicMock) -> RecordingMaintainer:
config = MagicMock(spec=FrigateConfig)
config.cameras = {"test_cam": camera_config}
maintainer = RecordingMaintainer.__new__(RecordingMaintainer)
maintainer.config = config
maintainer.end_time_cache = {}
maintainer.object_recordings_info = defaultdict(list)
maintainer.audio_recordings_info = defaultdict(list)
maintainer.drop_segment = MagicMock()
maintainer.recordings_publisher = MagicMock()
maintainer.move_segment = AsyncMock(return_value=None)
return maintainer
async def test_drops_sub_segment_when_sub_recording_disabled(self):
camera_config = MagicMock()
camera_config.record.enabled = True
camera_config.record.sub.enabled = False
maintainer = self._build_maintainer(camera_config)
cache_path = "/tmp/cache/test_cam@sub@20260610143022+0000.mp4"
result = await maintainer.validate_and_move_segment(
"test_cam",
reviews=[],
recording={
"start_time": datetime.datetime.now(datetime.UTC),
"cache_path": cache_path,
"stream_type": "sub",
},
)
self.assertIsNone(result)
maintainer.drop_segment.assert_called_once_with(cache_path)
maintainer.move_segment.assert_not_awaited()
async def test_sub_segment_uses_sub_continuous_retention(self):
# main continuous/motion are disabled, but sub continuous is enabled;
# the sub segment must be kept based on the sub retention config
camera_config = MagicMock()
camera_config.record.enabled = True
camera_config.record.sub.enabled = True
camera_config.record.continuous.days = 0
camera_config.record.motion.days = 0
camera_config.record.sub.continuous.days = 1
camera_config.record.sub.motion.days = 0
maintainer = self._build_maintainer(camera_config)
now = datetime.datetime.now(datetime.UTC)
start_time = now - datetime.timedelta(seconds=20)
end_time = now - datetime.timedelta(seconds=10)
cache_path = "/tmp/cache/test_cam@sub@20260610143022+0000.mp4"
# pre-fill the end time cache so no ffprobe is attempted; the
# audio and codec fields stay unknown without one
maintainer.end_time_cache = {
cache_path: (end_time, 10.0, None, None, None, None, None)
}
# a processed frame past end_time so the segment is considered ready
maintainer.object_recordings_info["test_cam"] = [(now.timestamp(), [], [], [])]
result = await maintainer.validate_and_move_segment(
"test_cam",
reviews=[],
recording={
"start_time": start_time,
"cache_path": cache_path,
"stream_type": "sub",
},
)
self.assertIsNone(result)
maintainer.move_segment.assert_awaited_once()
call_args = maintainer.move_segment.await_args.args
self.assertEqual(call_args[0], "test_cam")
self.assertEqual(call_args[1], "sub")
maintainer.drop_segment.assert_not_called()
class TestSegmentAudioPresence(unittest.IsolatedAsyncioTestCase):
"""Audio presence must flow from the segment probe into the DB insert."""
def _build_maintainer(self) -> RecordingMaintainer:
camera_config = MagicMock()
camera_config.record.enabled = True
camera_config.record.continuous.days = 1
camera_config.record.motion.days = 0
# no spec: pydantic fields like config.ffmpeg are not visible to
# spec'd mocks, and the probe/move paths need them
config = MagicMock()
config.cameras = {"test_cam": camera_config}
maintainer = RecordingMaintainer.__new__(RecordingMaintainer)
maintainer.config = config
maintainer.end_time_cache = {}
maintainer.object_recordings_info = defaultdict(list)
maintainer.audio_recordings_info = defaultdict(list)
maintainer.recordings_publisher = MagicMock()
# pre-seed the chain state so the lazy DB seed query is not attempted
maintainer.last_segment_end = {("test_cam", "main"): 0.0}
return maintainer
async def test_probe_audio_presence_reaches_move_segment(self):
for has_audio, audio_rate, audio_codec, video_codec in (
(True, 16000, "aac", "hevc"),
(True, 8000, "pcm_alaw", "h264"),
(False, None, None, "h264"),
(False, None, None, None),
):
with self.subTest(
has_audio=has_audio,
audio_rate=audio_rate,
audio_codec=audio_codec,
video_codec=video_codec,
):
maintainer = self._build_maintainer()
maintainer.move_segment = AsyncMock(return_value=None)
now = datetime.datetime.now(datetime.UTC)
start_time = now - datetime.timedelta(seconds=20)
cache_path = "/tmp/cache/test_cam@20260610143022+0000.mp4"
# a processed frame past the segment end marks it ready
maintainer.object_recordings_info["test_cam"] = [
(now.timestamp(), [], [], [])
]
probe = AsyncMock(
return_value={
"has_valid_video": True,
"width": 1920,
"height": 1080,
"duration": 10.0,
"has_audio": has_audio,
"audio_rate": audio_rate,
"audio_codec": audio_codec,
"video_codec": video_codec,
}
)
with (
patch("frigate.record.maintainer.get_video_properties", probe),
patch(
"frigate.record.maintainer.get_keyframe_offsets",
AsyncMock(return_value=[0, 2000]),
),
):
await maintainer.validate_and_move_segment(
"test_cam",
reviews=[],
recording={
"start_time": start_time,
"cache_path": cache_path,
"stream_type": "main",
},
)
maintainer.move_segment.assert_awaited_once()
call_args = maintainer.move_segment.await_args.args
self.assertEqual(call_args[7], has_audio)
self.assertEqual(call_args[8], audio_rate)
self.assertEqual(call_args[9], audio_codec)
self.assertEqual(call_args[11], [0, 2000])
self.assertEqual(call_args[10], video_codec)
# the probe result is cached alongside the end time so the
# cached path stays as informed as the probed path
self.assertEqual(maintainer.end_time_cache[cache_path][2], has_audio)
self.assertEqual(maintainer.end_time_cache[cache_path][3], audio_rate)
self.assertEqual(maintainer.end_time_cache[cache_path][4], audio_codec)
self.assertEqual(maintainer.end_time_cache[cache_path][5], video_codec)
async def test_move_segment_insert_includes_has_audio(self):
for has_audio, audio_rate, audio_codec, video_codec in (
(True, 16000, "aac", "hevc"),
(False, None, None, None),
):
with self.subTest(
has_audio=has_audio,
audio_rate=audio_rate,
audio_codec=audio_codec,
video_codec=video_codec,
):
maintainer = self._build_maintainer()
maintainer.config.ffmpeg.ffmpeg_path = "ffmpeg"
start_time = datetime.datetime.now(datetime.UTC)
end_time = start_time + datetime.timedelta(seconds=10)
proc = MagicMock()
proc.returncode = 0
proc.wait = AsyncMock(return_value=0)
with tempfile.TemporaryDirectory() as tmpdir:
cache_path = os.path.join(
tmpdir, "test_cam@20260610143022+0000.mp4"
)
with open(cache_path, "wb") as f:
f.write(b"\x00" * 16)
with (
patch(
"frigate.record.maintainer.RECORD_DIR",
os.path.join(tmpdir, "recordings"),
),
patch(
"frigate.record.maintainer.asyncio.create_subprocess_exec",
AsyncMock(return_value=proc),
),
):
result = await maintainer.move_segment(
"test_cam",
"main",
start_time,
end_time,
10.0,
cache_path,
SegmentInfo(0, 0, 0, 0),
has_audio,
audio_rate,
audio_codec,
video_codec,
)
self.assertIsNotNone(result)
self.assertEqual(result[Recordings.has_audio.name], has_audio)
self.assertEqual(result[Recordings.audio_rate.name], audio_rate)
self.assertEqual(result[Recordings.audio_codec.name], audio_codec)
self.assertEqual(result[Recordings.video_codec.name], video_codec)
class TestSegmentStartChaining(unittest.IsolatedAsyncioTestCase):
"""Contiguous segments must chain start times across filename truncation.
A contiguous segment's parsed start lands up to 1s before the previous
segment's fractional end, and must snap to it without ever snapping
across a genuine gap.
"""
T0 = datetime.datetime(2026, 6, 10, 14, 30, 22, tzinfo=datetime.UTC).timestamp()
async def test_contiguous_segment_snaps_to_previous_end(self):
maintainer = _build_chaining_maintainer(self.T0)
# segment A named at a whole second with a fractional duration
await _validate_segment(maintainer, self.T0, 0, 10.4)
# segment B's filename truncates its true start (T0 + 10.4) to T0 + 10
await _validate_segment(maintainer, self.T0, 10, 10.4)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 2)
self.assertEqual(calls[0].args[2].timestamp(), self.T0)
self.assertAlmostEqual(calls[0].args[3].timestamp(), self.T0 + 10.4, places=3)
self.assertAlmostEqual(calls[1].args[2].timestamp(), self.T0 + 10.4, places=3)
self.assertAlmostEqual(calls[1].args[3].timestamp(), self.T0 + 20.8, places=3)
async def test_genuine_gap_is_not_snapped(self):
maintainer = _build_chaining_maintainer(self.T0)
await _validate_segment(maintainer, self.T0, 0, 10.4)
# a segment starting well after the previous end is a genuine gap
await _validate_segment(maintainer, self.T0, 30, 10.4)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 2)
self.assertEqual(calls[1].args[2].timestamp(), self.T0 + 30)
self.assertAlmostEqual(calls[1].args[3].timestamp(), self.T0 + 40.4, places=3)
async def test_difference_over_tolerance_is_not_snapped(self):
# a last end far ahead of the parsed start (dual recorders or
# cache-pressure deletions) must never pull the start forward
maintainer = _build_chaining_maintainer(self.T0)
maintainer.last_segment_end = {("test_cam", "main"): self.T0 + 5.0}
await _validate_segment(maintainer, self.T0, 0, 10.4)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 1)
self.assertEqual(calls[0].args[2].timestamp(), self.T0)
async def test_start_after_last_end_within_tolerance_is_not_snapped(self):
maintainer = _build_chaining_maintainer(self.T0)
await _validate_segment(maintainer, self.T0, 0, 10.4)
# parsed start T0 + 11 is after the last end (T0 + 10.4): a real
# sub-second gap, never snapped backwards
await _validate_segment(maintainer, self.T0, 11, 10.4)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 2)
self.assertEqual(calls[1].args[2].timestamp(), self.T0 + 11)
async def test_chain_survives_retention_discarded_segment(self):
# motion retention: A and C overlap motion frames, B has none and is
# discarded, but capture continued through B so C chains to B's end
maintainer = _build_chaining_maintainer(self.T0, retention="motion")
maintainer.object_recordings_info["test_cam"] = [
(self.T0 + 5, [], [(0, 0, 10, 10)], []),
(self.T0 + 25, [], [(0, 0, 10, 10)], []),
(self.T0 + 1000, [], [], []),
]
await _validate_segment(maintainer, self.T0, 0, 10.4)
await _validate_segment(maintainer, self.T0, 10, 10.4)
await _validate_segment(maintainer, self.T0, 20, 10.4)
calls = maintainer.move_segment.await_args_list
# B was discarded by motion retention, only A and C moved
self.assertEqual(len(calls), 2)
maintainer.drop_segment.assert_called_once_with(
"/tmp/cache/test_cam@chain10.mp4"
)
# C snaps to B's end (T0 + 20.8), not A's end (T0 + 10.4)
self.assertAlmostEqual(calls[1].args[2].timestamp(), self.T0 + 20.8, places=3)
self.assertAlmostEqual(calls[1].args[3].timestamp(), self.T0 + 31.2, places=3)
class TestSegmentStartMtimeAnchoring(unittest.IsolatedAsyncioTestCase):
"""Segment starts must anchor to the cache file's close time.
mtime is the wall clock when ffmpeg rolled the segment, so mtime minus
the probed duration restores the fractional start the filename floored
away. Contiguous segments still chain within probe jitter.
"""
T0 = datetime.datetime(2026, 8, 7, 9, 15, 42, tzinfo=datetime.UTC).timestamp()
async def test_mtime_restores_fractional_start(self):
maintainer = _build_chaining_maintainer(self.T0)
# true start T0 + 0.437; the filename floored it to T0
await _validate_segment(
maintainer, self.T0, 0, 10.0, mtime=self.T0 + 0.437 + 10.0
)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 1)
self.assertAlmostEqual(calls[0].args[2].timestamp(), self.T0 + 0.437, places=3)
self.assertAlmostEqual(calls[0].args[3].timestamp(), self.T0 + 10.437, places=3)
async def test_chain_wins_within_probe_jitter(self):
maintainer = _build_chaining_maintainer(self.T0)
await _validate_segment(
maintainer, self.T0, 0, 10.0, mtime=self.T0 + 0.437 + 10.0
)
# B measures T0 + 10.420, a 17ms disagreement with A's chained end
# (T0 + 10.437): the chain wins so the rows stay exactly adjacent
await _validate_segment(
maintainer, self.T0, 10, 10.0, mtime=self.T0 + 10.420 + 10.0
)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 2)
self.assertAlmostEqual(calls[1].args[2].timestamp(), self.T0 + 10.437, places=3)
self.assertAlmostEqual(calls[1].args[3].timestamp(), self.T0 + 20.437, places=3)
async def test_chain_reanchors_when_drifted(self):
maintainer = _build_chaining_maintainer(self.T0)
# accumulated probe error left the chain 0.7s past the measured start
maintainer.last_segment_end = {("test_cam", "main"): self.T0 + 0.9}
await _validate_segment(
maintainer, self.T0, 0, 10.0, mtime=self.T0 + 0.2 + 10.0
)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 1)
self.assertAlmostEqual(calls[0].args[2].timestamp(), self.T0 + 0.2, places=3)
async def test_implausible_mtime_falls_back_to_filename_chain(self):
maintainer = _build_chaining_maintainer(self.T0)
maintainer.last_segment_end = {("test_cam", "main"): self.T0 + 0.4}
# a stalled stream: media (8s) is shorter than the wall span to the
# close time (9.5s), so mtime - duration lands outside the window
await _validate_segment(maintainer, self.T0, 0, 8.0, mtime=self.T0 + 9.5)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 1)
self.assertAlmostEqual(calls[0].args[2].timestamp(), self.T0 + 0.4, places=3)
class TestSegmentChainSeeding(unittest.IsolatedAsyncioTestCase):
"""Chain state must lazily seed from the DB so chains survive restarts."""
T0 = datetime.datetime(2026, 6, 10, 14, 30, 22, tzinfo=datetime.UTC).timestamp()
def setUp(self):
self.db = SqliteExtDatabase(":memory:")
self.db.bind([Recordings])
self.db.create_tables([Recordings])
def tearDown(self):
self.db.close()
async def test_seeds_chain_from_db_once(self):
maintainer = _build_chaining_maintainer(self.T0)
# empty chain state forces the lazy DB seed on first encounter
maintainer.last_segment_end = {}
Recordings.create(
id="seed-row",
camera="test_cam",
path="/recordings/seed.mp4",
start_time=self.T0 - 10,
end_time=self.T0 + 0.35,
duration=10.35,
stream_type="main",
)
with patch.object(Recordings, "select", wraps=Recordings.select) as select_spy:
await _validate_segment(maintainer, self.T0, 0, 10.4)
await _validate_segment(maintainer, self.T0, 10, 10.4)
# the seed query runs once; the second segment uses in-memory state
self.assertEqual(select_spy.call_count, 1)
calls = maintainer.move_segment.await_args_list
self.assertEqual(len(calls), 2)
# first segment snaps to the stored fractional end_time
self.assertAlmostEqual(calls[0].args[2].timestamp(), self.T0 + 0.35, places=3)
self.assertAlmostEqual(calls[0].args[3].timestamp(), self.T0 + 10.75, places=3)
# second segment chains off the first's in-memory end
self.assertAlmostEqual(calls[1].args[2].timestamp(), self.T0 + 10.75, places=3)
+376
View File
@@ -0,0 +1,376 @@
"""Tests for the unified recording coverage resolver."""
import asyncio
import json
import unittest
from types import SimpleNamespace
from playhouse.sqlite_ext import SqliteExtDatabase
from frigate.api.media import _vod_response
from frigate.const import MAX_SEGMENT_DURATION
from frigate.models import Recordings
from frigate.util.recording_coverage import (
_rows_query,
coverage_spans,
plan_clip,
realized_timeline,
resolve_coverage,
stream_media_summary,
)
class CoverageDbTestCase(unittest.TestCase):
def setUp(self):
# in-memory database keeps these tests isolated from the shared
# on-disk test.db used by the http api tests
self.db = SqliteExtDatabase(":memory:")
models = [Recordings]
self.db.bind(models)
self.db.create_tables(models)
def tearDown(self):
self.db.close()
def _insert(
self,
id,
start,
end,
stream_type,
camera="front_door",
video_codec=None,
audio_rate=None,
audio_codec=None,
has_audio=None,
segment_size=0,
keyframes=None,
):
Recordings.create(
id=id,
camera=camera,
path=f"/tmp/{id}.mp4",
start_time=start,
end_time=end,
duration=end - start,
stream_type=stream_type,
video_codec=video_codec,
audio_rate=audio_rate,
audio_codec=audio_codec,
has_audio=has_audio,
segment_size=segment_size,
keyframes=keyframes,
)
class TestRecordingCoverage(CoverageDbTestCase):
def test_both_streams_offset_boundaries(self):
# main: [1000,1010) [1010,1020) sub: [1003,1013) [1013,1023)
self._insert("m1", 1000.0, 1010.0, "main")
self._insert("m2", 1010.0, 1020.0, "main")
self._insert("s1", 1003.0, 1013.0, "sub")
self._insert("s2", 1013.0, 1023.0, "sub")
intervals = resolve_coverage("front_door", 1000.0, 1020.0)
# boundaries: 1000,1003,1010,1013,1020
assert [round(i.start_time) for i in intervals] == [1000, 1003, 1010, 1013]
assert intervals[0].main is not None and intervals[0].sub is None
assert intervals[1].main is not None and intervals[1].sub is not None
def test_sub_only_when_main_expired(self):
self._insert("s1", 1000.0, 1010.0, "sub")
intervals = resolve_coverage("front_door", 1000.0, 1010.0)
assert len(intervals) == 1
assert intervals[0].main is None and intervals[0].sub is not None
def test_gap_when_neither_exists(self):
self._insert("m1", 1000.0, 1010.0, "main")
self._insert("m2", 1030.0, 1040.0, "main")
intervals = resolve_coverage("front_door", 1000.0, 1040.0)
assert len(intervals) == 2 # the [1010,1030) gap produces no interval
def test_spans_merge_same_availability(self):
self._insert("m1", 1000.0, 1010.0, "main")
self._insert("m2", 1010.0, 1020.0, "main")
spans = coverage_spans(resolve_coverage("front_door", 1000.0, 1020.0))
assert spans == [
{"start_time": 1000.0, "end_time": 1020.0, "streams": ["main"]}
]
def test_requested_range_clamps_intervals(self):
# query range partially overlaps the rows; the first and last
# intervals must be clamped to the requested [after, before]
self._insert("m1", 1000.0, 1010.0, "main")
self._insert("m2", 1010.0, 1020.0, "main")
intervals = resolve_coverage("front_door", 1005.0, 1015.0)
assert intervals[0].start_time == 1005.0
assert intervals[-1].end_time == 1015.0
spans = coverage_spans(intervals)
assert spans == [
{"start_time": 1005.0, "end_time": 1015.0, "streams": ["main"]}
]
def test_stream_media_summary_newest_known_wins(self):
# the newer main row's NULL codecs must not mask the older row's
# known codecs, while its known audio fields take precedence
self._insert(
"m1",
1000.0,
1010.0,
"main",
video_codec="hevc",
audio_rate=16000,
audio_codec="aac",
)
self._insert("m2", 1010.0, 1020.0, "main", audio_rate=8000, has_audio=True)
self._insert("s1", 1000.0, 1010.0, "sub", has_audio=False)
summary = stream_media_summary(resolve_coverage("front_door", 1000.0, 1020.0))
assert summary == {
"main": {
"video_codec": "hevc",
"audio_rate": 8000,
"audio_codec": "aac",
"has_audio": True,
"bitrate": None,
},
"sub": {
"video_codec": None,
"audio_rate": None,
"audio_codec": None,
"has_audio": False,
"bitrate": None,
},
}
def test_stream_media_summary_omits_absent_stream(self):
self._insert("m1", 1000.0, 1010.0, "main", video_codec="h264")
summary = stream_media_summary(resolve_coverage("front_door", 1000.0, 1010.0))
assert list(summary.keys()) == ["main"]
assert stream_media_summary([]) == {}
def test_stream_media_summary_bitrate_weighted_by_duration(self):
# main: 10 MiB over 10s + 30 MiB over 20s -> 40 MiB / 30s
self._insert("m1", 1000.0, 1010.0, "main", segment_size=10)
self._insert("m2", 1010.0, 1030.0, "main", segment_size=30)
# sub rows without a stored size (legacy default 0) report None
self._insert("s1", 1000.0, 1030.0, "sub")
summary = stream_media_summary(resolve_coverage("front_door", 1000.0, 1030.0))
expected = int(40 * 1024 * 1024 * 8 / 30)
assert summary["main"]["bitrate"] == expected
assert summary["sub"]["bitrate"] is None
def test_stream_media_summary_bitrate_skips_zero_size_rows(self):
# the zero-size glitch row contributes neither bytes nor seconds
self._insert("m1", 1000.0, 1010.0, "main", segment_size=5)
self._insert("m2", 1010.0, 1020.0, "main", segment_size=0)
summary = stream_media_summary(resolve_coverage("front_door", 1000.0, 1020.0))
expected = int(5 * 1024 * 1024 * 8 / 10)
assert summary["main"]["bitrate"] == expected
def test_other_camera_rows_excluded(self):
self._insert("m1", 1000.0, 1010.0, "main")
self._insert("o1", 1000.0, 1010.0, "main", camera="back_yard")
self._insert("o2", 1000.0, 1010.0, "sub", camera="back_yard")
intervals = resolve_coverage("front_door", 1000.0, 1010.0)
assert len(intervals) == 1
assert intervals[0].main is not None and intervals[0].sub is None
assert resolve_coverage("side_gate", 1000.0, 1010.0) == []
def test_realized_timeline_snap_lead_in(self):
"""A mid-file resume's back-snap lead-in appears in the realized duration.
Sub resumes at 1010 with a 7000ms inpoint; the stored keyframe
index snaps back to 6000ms, so the clip serves 1000ms of pre-span
content on top of the 3000ms span.
"""
self._insert("m1", 1000.0, 1010.0, "main")
self._insert("s1", 1003.0, 1013.0, "sub", keyframes=[0, 2000, 4000, 6000, 8000])
timeline = realized_timeline(
resolve_coverage("front_door", 1000.0, 1013.0), None
)
assert timeline == [
{"start_time": 1000.0, "end_time": 1010.0, "duration": 10000},
{"start_time": 1010.0, "end_time": 1013.0, "duration": 4000},
]
def test_realized_timeline_no_keyframe_index_serves_whole_file(self):
"""A row without a stored keyframe index serves the whole file.
NULL keyframes mean the record-time probe failed, so a mid-file
entry cannot be snapped to a decodable frame.
"""
self._insert("m1", 1000.0, 1010.0, "main")
self._insert("s1", 1003.0, 1013.0, "sub")
timeline = realized_timeline(
resolve_coverage("front_door", 1000.0, 1013.0), None
)
# the resume clip serves all 10000ms of the sub file for a 3000ms span
assert timeline[1] == {
"start_time": 1010.0,
"end_time": 1013.0,
"duration": 10000,
}
def test_realized_timeline_pinned_stream_no_mid_range_lead_in(self):
"""A pinned stream's spans start at its own file starts: no lead-in."""
self._insert("s1", 1000.0, 1010.0, "sub", keyframes=[0, 5000])
self._insert("s2", 1010.0, 1020.0, "sub", keyframes=[0, 5000])
timeline = realized_timeline(
resolve_coverage("front_door", 1000.0, 1020.0), "sub"
)
assert [t["duration"] for t in timeline] == [10000, 10000]
def test_rows_query_scan_is_bounded_below(self):
"""The row query must give SQLite a lower bound on start_time.
Without one the best index range is (camera=? AND start_time<?),
which walks the camera's entire history on every coverage call:
~20s on a cold page cache, blocking the API event loop.
"""
# the index the planner picks in production (migration 020)
self.db.execute_sql(
"CREATE INDEX recordings_api_recordings_summary ON recordings "
'("camera", "start_time" DESC, "duration", "motion", "objects")'
)
sql, params = _rows_query("front_door", 2000.0, 3000.0, "main").sql()
plan = " ".join(
row[-1] for row in self.db.execute_sql("EXPLAIN QUERY PLAN " + sql, params)
)
assert "start_time>?" in plan and "start_time<?" in plan, plan
def test_longest_segment_spanning_window_start_included(self):
# a maximum-length segment overlapping `after` sits right at the
# start_time lower bound the query is allowed to apply
self._insert("m1", 1000.0, 1000.0 + MAX_SEGMENT_DURATION - 0.5, "main")
intervals = resolve_coverage("front_door", 1599.0, 1700.0)
assert len(intervals) == 1
assert intervals[0].main is not None
def test_plan_clip_skips_too_short(self):
"""A clip left with under 100ms of media is skipped (duration 0 in timelines)."""
row = SimpleNamespace(
path="/tmp/x.mp4",
start_time=1000.0,
end_time=1000.15,
duration=0.15,
keyframes=[0, 100],
)
plan = plan_clip(row, 1000.1, 1000.15)
assert plan.skipped
assert plan.duration_ms == 0
class TestVodManifestPolicy(CoverageDbTestCase):
"""Discontinuity policy of the vod mapping builder."""
def _mapping(self, start, end, stream=None):
response = asyncio.run(
_vod_response("front_door", start, end, stream_preference=stream)
)
return json.loads(response.body)
def _insert_stream(self, prefix, stream_type, spans):
for idx, (start, end) in enumerate(spans):
self._insert(
f"{prefix}{idx}",
start,
end,
stream_type,
video_codec="h264",
audio_codec="aac",
audio_rate=16000,
has_audio=True,
)
def test_cross_stream_handoff_forces_discontinuity(self):
# codec and audio params match on both streams, so only the stream
# mix can force per-clip init segments here
self._insert_stream("m", "main", [(1000.0, 1010.0)])
self._insert_stream("s", "sub", [(1000.0, 1010.0), (1010.0, 1020.0)])
mapping = self._mapping(1000.0, 1020.0)
assert mapping["discontinuity"] is True
assert mapping["initialClipIndex"] == 1
assert len(mapping["sequences"][0]["clips"]) == 2
def test_single_stream_range_stays_consistent(self):
self._insert_stream("s", "sub", [(1000.0, 1010.0), (1010.0, 1020.0)])
mapping = self._mapping(1000.0, 1020.0)
assert mapping["discontinuity"] is False
assert "initialClipIndex" not in mapping
def test_pinned_stream_over_mixed_coverage_stays_consistent(self):
self._insert_stream("m", "main", [(1000.0, 1010.0), (1010.0, 1020.0)])
self._insert_stream("s", "sub", [(1000.0, 1010.0), (1010.0, 1020.0)])
mapping = self._mapping(1000.0, 1020.0, stream="sub")
assert mapping["discontinuity"] is False
assert "initialClipIndex" not in mapping
class TestClipKeyFrames(unittest.TestCase):
"""Keyframe data emitted for nginx-vod segmentation."""
def _row(self, keyframes):
return SimpleNamespace(
path="/tmp/kf.mp4",
start_time=1000.0,
end_time=1010.0,
duration=10.0,
keyframes=keyframes,
)
def test_whole_file_clip_emits_keyframe_gaps(self):
keyframes = [0, 1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000]
plan = plan_clip(self._row(keyframes), 1000.0, 1010.0)
assert plan.clip_from_ms is None
assert plan.key_frame_durations == [1000] * 9
assert plan.first_key_frame_offset_ms == 0
def test_mid_file_clip_offsets_are_clip_relative(self):
# start 3.5s in: clipFrom snaps back to the 3000ms keyframe, so
# the emitted offsets must be relative to that snapped start
keyframes = [0, 1000, 2000, 3000, 4000, 5000, 6000, 7000, 8000, 9000]
plan = plan_clip(self._row(keyframes), 1003.5, 1010.0)
assert plan.clip_from_ms == 3000
assert plan.duration_ms == 7000
assert plan.key_frame_durations == [1000] * 6
assert plan.first_key_frame_offset_ms == 0
def test_no_index_reports_none(self):
plan = plan_clip(self._row(None), 1000.0, 1010.0)
assert plan.key_frame_durations is None
def test_single_keyframe_in_range_reports_none(self):
# one cut point cannot split anything; the manifest falls back
# to a whole-clip declaration
plan = plan_clip(self._row([0]), 1000.0, 1010.0)
assert plan.key_frame_durations is None
def test_keyframe_on_clip_end_excluded(self):
# a keyframe landing exactly on the clip end would only declare
# a zero-length tail segment
plan = plan_clip(self._row([0, 5000, 10000]), 1000.0, 1010.0)
assert plan.key_frame_durations == [5000]
class TestVodManifestKeyFrames(CoverageDbTestCase):
"""Mapping emission of real vs placeholder keyFrameDurations."""
def _clips(self, start, end):
response = asyncio.run(_vod_response("front_door", start, end))
return json.loads(response.body)["sequences"][0]["clips"]
def test_indexed_row_emits_real_gaps(self):
self._insert(
"m1",
1000.0,
1010.0,
"main",
keyframes=[0, 2000, 4000, 6000, 8000],
)
clips = self._clips(1000.0, 1010.0)
assert clips[0]["keyFrameDurations"] == [2000, 2000, 2000, 2000]
assert "firstKeyFrameOffset" not in clips[0]
def test_unindexed_row_keeps_whole_clip_placeholder(self):
self._insert("m1", 1000.0, 1010.0, "main")
clips = self._clips(1000.0, 1010.0)
assert clips[0]["keyFrameDurations"] == [10000]
+204 -4
View File
@@ -11,8 +11,9 @@ from playhouse.sqlite_ext import SqliteExtDatabase
from playhouse.sqliteq import SqliteQueueDatabase
from frigate.config import FrigateConfig
from frigate.const import STREAM_TYPE_MAIN, STREAM_TYPE_SUB
from frigate.models import Event, Recordings
from frigate.storage import StorageMaintainer
from frigate.storage import MAX_CALCULATED_BANDWIDTH, StorageMaintainer
from frigate.test.const import TEST_DB, TEST_DB_CLEANUPS
@@ -114,8 +115,16 @@ class TestHttp(unittest.TestCase):
)
storage.calculate_camera_bandwidth()
assert storage.camera_storage_stats == {
"front_door": {"bandwidth": 1440, "needs_refresh": True},
"back_door": {"bandwidth": 2880, "needs_refresh": True},
"front_door": {
"bandwidth": 1440,
"bandwidth_by_stream": {STREAM_TYPE_MAIN: 1440},
"needs_refresh": True,
},
"back_door": {
"bandwidth": 2880,
"bandwidth_by_stream": {STREAM_TYPE_MAIN: 2880},
"needs_refresh": True,
},
}
def test_segment_calculations_with_zero_segments(self):
@@ -136,9 +145,198 @@ class TestHttp(unittest.TestCase):
)
storage.calculate_camera_bandwidth()
assert storage.camera_storage_stats == {
"front_door": {"bandwidth": 0, "needs_refresh": True},
"front_door": {
"bandwidth": 0,
"bandwidth_by_stream": {},
"needs_refresh": True,
},
}
def test_segment_calculations_with_recent_zero_segments(self):
"""A run of recent zero-size segments must not zero out the bandwidth.
Older nonzero segments still describe the camera's real write rate.
"""
config = FrigateConfig(**self.minimal_config)
storage = StorageMaintainer(config, MagicMock())
time_keep = datetime.datetime.now().timestamp()
for i in range(10):
_insert_mock_recording(
f"nonzero_{i}.frontdoor",
os.path.join(self.test_dir, f"nonzero_{i}.tmp"),
time_keep + i * 10,
time_keep + i * 10 + 10,
camera="front_door",
seg_size=4,
seg_dur=10,
)
for i in range(100):
_insert_mock_recording(
f"zero_{i}.frontdoor",
os.path.join(self.test_dir, f"zero_{i}.tmp"),
time_keep + 1000 + i * 10,
time_keep + 1000 + i * 10 + 10,
camera="front_door",
seg_size=0,
seg_dur=10,
)
storage.calculate_camera_bandwidth()
assert storage.camera_storage_stats == {
"front_door": {
"bandwidth": 1440,
"bandwidth_by_stream": {STREAM_TYPE_MAIN: 1440},
"needs_refresh": True,
},
}
def test_camera_usages_split_by_stream_type(self):
"""Usage and bandwidth are reported per stream type."""
config = FrigateConfig(**self.minimal_config)
storage = StorageMaintainer(config, MagicMock())
time_keep = datetime.datetime.now().timestamp()
_insert_mock_recording(
"1234567.frontdoor",
os.path.join(self.test_dir, "main.tmp"),
time_keep,
time_keep + 10,
seg_size=20,
seg_dur=10,
stream_type=STREAM_TYPE_MAIN,
)
_insert_mock_recording(
"1234568.frontdoor",
os.path.join(self.test_dir, "sub.tmp"),
time_keep,
time_keep + 10,
seg_size=2,
seg_dur=10,
stream_type=STREAM_TYPE_SUB,
)
storage.calculate_camera_bandwidth()
usages = storage.calculate_camera_usages()
assert usages["front_door"]["usage"] == 22
assert usages["front_door"]["bandwidth"] == 7920
assert usages["front_door"]["streams"] == {
STREAM_TYPE_MAIN: {"usage": 20, "bandwidth": 7200},
STREAM_TYPE_SUB: {"usage": 2, "bandwidth": 720},
}
def test_camera_usages_omits_streams_without_segments(self):
"""A camera with no sub segments reports no sub entry."""
config = FrigateConfig(**self.minimal_config)
storage = StorageMaintainer(config, MagicMock())
time_keep = datetime.datetime.now().timestamp()
_insert_mock_recording(
"1234567.frontdoor",
os.path.join(self.test_dir, "main.tmp"),
time_keep,
time_keep + 10,
seg_size=20,
seg_dur=10,
)
storage.calculate_camera_bandwidth()
usages = storage.calculate_camera_usages()
assert usages["front_door"]["usage"] == 20
assert usages["front_door"]["streams"] == {
STREAM_TYPE_MAIN: {"usage": 20, "bandwidth": 7200},
}
def test_camera_bandwidth_clamp_scales_stream_values(self):
"""Clamping the total keeps the per stream values summing to it."""
config = FrigateConfig(**self.minimal_config)
storage = StorageMaintainer(config, MagicMock())
time_keep = datetime.datetime.now().timestamp()
_insert_mock_recording(
"1234567.frontdoor",
os.path.join(self.test_dir, "main.tmp"),
time_keep,
time_keep + 10,
seg_size=40,
seg_dur=10,
stream_type=STREAM_TYPE_MAIN,
)
_insert_mock_recording(
"1234568.frontdoor",
os.path.join(self.test_dir, "sub.tmp"),
time_keep,
time_keep + 10,
seg_size=4,
seg_dur=10,
stream_type=STREAM_TYPE_SUB,
)
storage.calculate_camera_bandwidth()
stats = storage.camera_storage_stats["front_door"]
assert stats["bandwidth"] == MAX_CALCULATED_BANDWIDTH
assert (
round(sum(stats["bandwidth_by_stream"].values()), 2)
== MAX_CALCULATED_BANDWIDTH
)
def test_stream_bandwidth_is_none_without_a_cached_sample(self):
"""A stream that appears after the bandwidth cache freezes has no estimate.
Sub stream recording can be toggled on at runtime, so the cache can hold
a main-only sample while sub segments are already landing on disk.
Reporting 0 there would claim the sub stream costs nothing.
"""
config = FrigateConfig(**self.minimal_config)
storage = StorageMaintainer(config, MagicMock())
time_keep = datetime.datetime.now().timestamp()
for i in range(60):
_insert_mock_recording(
f"main_{i}.frontdoor",
os.path.join(self.test_dir, f"main_{i}.tmp"),
time_keep + i * 10,
time_keep + i * 10 + 10,
seg_size=20,
seg_dur=10,
)
# 50 or more segments flips needs_refresh off, freezing the cache
storage.calculate_camera_bandwidth()
assert storage.camera_storage_stats["front_door"]["needs_refresh"] is False
for i in range(60):
_insert_mock_recording(
f"sub_{i}.frontdoor",
os.path.join(self.test_dir, f"sub_{i}.tmp"),
time_keep + 5000 + i * 10,
time_keep + 5000 + i * 10 + 10,
seg_size=2,
seg_dur=10,
stream_type=STREAM_TYPE_SUB,
)
storage.calculate_camera_bandwidth()
streams = storage.calculate_camera_usages()["front_door"]["streams"]
assert streams[STREAM_TYPE_SUB]["usage"] == 120
assert streams[STREAM_TYPE_SUB]["bandwidth"] is None
assert streams[STREAM_TYPE_MAIN]["bandwidth"] == 7200
def test_camera_usages_with_no_recordings(self):
"""A camera with no segments reports zero usage and no streams."""
config = FrigateConfig(**self.minimal_config)
storage = StorageMaintainer(config, MagicMock())
storage.calculate_camera_bandwidth()
usages = storage.calculate_camera_usages()
assert usages["front_door"]["usage"] == 0
assert usages["front_door"]["streams"] == {}
def test_storage_cleanup(self):
"""Ensure that all recordings are cleaned up when necessary."""
config = FrigateConfig(**self.minimal_config)
@@ -297,6 +495,7 @@ def _insert_mock_recording(
camera="front_door",
seg_size=8,
seg_dur=10,
stream_type=STREAM_TYPE_MAIN,
) -> Event:
"""Inserts a basic recording model with a given id."""
# we must open the file so storage maintainer will delete it
@@ -313,4 +512,5 @@ def _insert_mock_recording(
motion=True,
objects=True,
segment_size=seg_size,
stream_type=stream_type,
).execute()
-150
View File
@@ -1,150 +0,0 @@
"""Tests for push notification subscription validation."""
import unittest
from frigate.api.notification import _validate_push_endpoint, _validate_subscription
VALID_ENDPOINTS = [
"https://fcm.googleapis.com/fcm/send/dGhpcy1pcy1hLXRva2Vu",
"https://updates.push.services.mozilla.com/wpush/v2/dGhpcy1pcy1hLXRva2Vu",
"https://web.push.apple.com/dGhpcy1pcy1hLXRva2Vu",
"https://wns2-by3p.notify.windows.com/w/?token=dGhpcy1pcy1hLXRva2Vu",
"https://fcm.googleapis.com:443/fcm/send/dGhpcy1pcy1hLXRva2Vu",
]
def _subscription(endpoint: str) -> dict:
return {
"endpoint": endpoint,
"keys": {"p256dh": "cHVibGljLWtleQ", "auth": "YXV0aC1zZWNyZXQ"},
}
class TestValidatePushEndpoint(unittest.TestCase):
def test_accepts_real_push_service_endpoints(self):
for endpoint in VALID_ENDPOINTS:
with self.subTest(endpoint=endpoint):
self.assertIsNone(_validate_push_endpoint(endpoint))
def test_rejects_http(self):
self.assertIsNotNone(
_validate_push_endpoint("http://fcm.googleapis.com/fcm/send/token")
)
def test_rejects_non_http_schemes(self):
for endpoint in (
"file:///etc/passwd",
"ftp://example.com/token",
"//example.com/token",
):
with self.subTest(endpoint=endpoint):
self.assertIsNotNone(_validate_push_endpoint(endpoint))
def test_rejects_localhost(self):
for endpoint in (
"https://localhost/token",
"https://localhost:443/token",
"https://127.0.0.1/token",
"https://[::1]/token",
):
with self.subTest(endpoint=endpoint):
self.assertIsNotNone(_validate_push_endpoint(endpoint))
def test_rejects_private_addresses(self):
for endpoint in (
"https://192.168.1.10/token",
"https://10.0.0.5/token",
"https://172.16.0.1/token",
"https://169.254.169.254/token",
"https://0.0.0.0/token",
):
with self.subTest(endpoint=endpoint):
self.assertIsNotNone(_validate_push_endpoint(endpoint))
def test_rejects_internal_hostnames(self):
for endpoint in (
"https://frigate/token",
"https://nas.local/token",
"https://push.internal/token",
"https://host.home.arpa/token",
):
with self.subTest(endpoint=endpoint):
self.assertIsNotNone(_validate_push_endpoint(endpoint))
def test_rejects_non_default_port(self):
self.assertIsNotNone(
_validate_push_endpoint("https://fcm.googleapis.com:8080/fcm/send/token")
)
def test_rejects_embedded_credentials(self):
self.assertIsNotNone(
_validate_push_endpoint(
"https://user:pass@fcm.googleapis.com/fcm/send/token"
)
)
def test_rejects_endpoint_without_path(self):
for endpoint in ("https://fcm.googleapis.com", "https://fcm.googleapis.com/"):
with self.subTest(endpoint=endpoint):
self.assertIsNotNone(_validate_push_endpoint(endpoint))
def test_rejects_endpoint_that_breaks_audience_parsing(self):
# webpush.py locates the host by searching for a separator after index
# 10, which raises ValueError when the url has no path at all
endpoint = "https://fcm.googleapis.com"
with self.assertRaises(ValueError):
endpoint.index("/", 10)
self.assertIsNotNone(_validate_push_endpoint(endpoint))
def test_rejects_missing_or_non_string_endpoint(self):
for endpoint in (None, "", 5, {"url": "https://example.com/token"}):
with self.subTest(endpoint=endpoint):
self.assertIsNotNone(_validate_push_endpoint(endpoint))
def test_rejects_overlong_endpoint(self):
self.assertIsNotNone(
_validate_push_endpoint(f"https://fcm.googleapis.com/{'a' * 4096}")
)
class TestValidateSubscription(unittest.TestCase):
def test_accepts_valid_subscription(self):
self.assertIsNone(_validate_subscription(_subscription(VALID_ENDPOINTS[0])))
def test_accepts_extra_fields_sent_by_the_browser(self):
sub = _subscription(VALID_ENDPOINTS[0])
sub["expirationTime"] = None
self.assertIsNone(_validate_subscription(sub))
def test_rejects_non_object(self):
for sub in ("https://fcm.googleapis.com/fcm/send/token", ["endpoint"], 5):
with self.subTest(sub=sub):
self.assertIsNotNone(_validate_subscription(sub))
def test_rejects_bad_endpoint(self):
self.assertIsNotNone(
_validate_subscription(_subscription("https://localhost/t"))
)
def test_rejects_missing_keys(self):
sub = _subscription(VALID_ENDPOINTS[0])
del sub["keys"]
self.assertIsNotNone(_validate_subscription(sub))
def test_rejects_incomplete_keys(self):
for keys in (
{"p256dh": "cHVibGljLWtleQ"},
{"auth": "YXV0aC1zZWNyZXQ"},
{"p256dh": "cHVibGljLWtleQ", "auth": ""},
{"p256dh": None, "auth": "YXV0aC1zZWNyZXQ"},
):
with self.subTest(keys=keys):
sub = _subscription(VALID_ENDPOINTS[0])
sub["keys"] = keys
self.assertIsNotNone(_validate_subscription(sub))
if __name__ == "__main__":
unittest.main()
+60 -21
View File
@@ -68,6 +68,7 @@ class TrackedObjectProcessor(threading.Thread):
self.tracked_objects_queue = tracked_objects_queue
self.stop_event: MpEvent = stop_event
self.camera_states: dict[str, CameraState] = {}
self.camera_states_lock = threading.Lock()
self.frame_manager = SharedMemoryFrameManager()
self.last_motion_detected: dict[str, float] = {}
self.ptz_autotracker_thread = ptz_autotracker_thread
@@ -236,7 +237,9 @@ class TrackedObjectProcessor(threading.Thread):
camera_state.on("end", end)
camera_state.on("snapshot", snapshot)
camera_state.on("camera_activity", camera_activity)
self.camera_states[camera] = camera_state
with self.camera_states_lock:
self.camera_states[camera] = camera_state
def should_save_snapshot(self, camera: str, obj: TrackedObject) -> bool:
if obj.false_positive:
@@ -324,9 +327,22 @@ class TrackedObjectProcessor(threading.Thread):
# reset the last_motion so redundant `off` commands aren't sent
self.last_motion_detected[camera] = 0
def get_camera_state(self, camera: str) -> CameraState | None:
"""Returns the state for a camera, or None if it does not exist."""
with self.camera_states_lock:
return self.camera_states.get(camera)
def get_camera_states(self) -> list[CameraState]:
"""Returns a snapshot of camera states that is safe to iterate."""
with self.camera_states_lock:
return list(self.camera_states.values())
def get_best(self, camera: str, label: str) -> dict[str, Any]:
# TODO: need a lock here
camera_state = self.camera_states[camera]
camera_state = self.get_camera_state(camera)
if camera_state is None:
return {}
if label in camera_state.best_objects:
best_obj = camera_state.best_objects[label]
@@ -350,17 +366,21 @@ class TrackedObjectProcessor(threading.Thread):
(self.config.birdseye.height * 3 // 2, self.config.birdseye.width),
)
if camera not in self.camera_states:
camera_state = self.get_camera_state(camera)
if camera_state is None:
return None
return self.camera_states[camera].get_current_frame(draw_options)
return camera_state.get_current_frame(draw_options)
def get_current_frame_time(self, camera: str) -> float:
"""Returns the latest frame time for a given camera."""
if camera not in self.camera_states:
camera_state = self.get_camera_state(camera)
if camera_state is None:
return 0.0
return self.camera_states[camera].current_frame_time
return camera_state.current_frame_time
def set_sub_label(
self, event_id: str, sub_label: str | None, score: float | None
@@ -498,14 +518,18 @@ class TrackedObjectProcessor(threading.Thread):
# save the snapshot image
(frame, event_id, camera) = payload
camera_state = self.camera_states.get(camera)
if camera_state is None:
logger.debug("Discarding LPR snapshot for unknown camera %s", camera)
return
img = cv2.imdecode(
np.frombuffer(base64.b64decode(frame), dtype=np.uint8),
cv2.IMREAD_COLOR,
)
self.camera_states[camera].save_manual_event_image(
img, event_id, "license_plate", {}
)
camera_state.save_manual_event_image(img, event_id, "license_plate", {})
def create_manual_event(self, payload: tuple) -> None:
(
@@ -522,13 +546,17 @@ class TrackedObjectProcessor(threading.Thread):
pre_capture,
) = payload
camera_state = self.camera_states.get(camera_name)
if camera_state is None:
logger.debug("Discarding manual event for unknown camera %s", camera_name)
return
# save the snapshot image
self.camera_states[camera_name].save_manual_event_image(
None, event_id, label, draw
)
camera_state.save_manual_event_image(None, event_id, label, draw)
end_time = frame_time + duration if duration is not None else None
start_time = (
frame_time - self.config.cameras[camera_name].record.event_pre_capture
frame_time - camera_state.camera_config.record.event_pre_capture
if pre_capture is None
else frame_time - pre_capture
)
@@ -548,7 +576,7 @@ class TrackedObjectProcessor(threading.Thread):
"camera": camera_name,
"start_time": start_time,
"end_time": end_time,
"has_clip": self.config.cameras[camera_name].record.enabled
"has_clip": camera_state.camera_config.record.enabled
and include_recording,
"has_snapshot": True,
"snapshot_clean": True,
@@ -591,6 +619,12 @@ class TrackedObjectProcessor(threading.Thread):
plate,
) = payload
camera_state = self.camera_states.get(camera_name)
if camera_state is None:
logger.debug("Discarding LPR event for unknown camera %s", camera_name)
return
# send event to event maintainer
self.event_sender.publish(
(
@@ -605,9 +639,9 @@ class TrackedObjectProcessor(threading.Thread):
"score": score,
"camera": camera_name,
"start_time": frame_time
- self.config.cameras[camera_name].record.event_pre_capture,
- camera_state.camera_config.record.event_pre_capture,
"end_time": None,
"has_clip": self.config.cameras[camera_name].record.enabled
"has_clip": camera_state.camera_config.record.enabled
and include_recording,
"has_snapshot": True,
"snapshot_clean": True,
@@ -699,7 +733,10 @@ class TrackedObjectProcessor(threading.Thread):
continue
camera_state.shutdown()
self.camera_states.pop(camera)
with self.camera_states_lock:
self.camera_states.pop(camera)
self.camera_activity.pop(camera, None)
self.last_motion_detected.pop(camera, None)
@@ -715,8 +752,6 @@ class TrackedObjectProcessor(threading.Thread):
if camera_state is None:
continue
camera_state = self.camera_states[camera]
if camera_state.prev_enabled and not current_enabled:
logger.debug(f"Not processing objects for disabled camera {camera}")
self.force_end_all_events(camera, camera_state)
@@ -812,7 +847,11 @@ class TrackedObjectProcessor(threading.Thread):
break
event_id, camera, _ = update
self.camera_states[camera].finished(event_id)
camera_state = self.camera_states.get(camera)
# the camera may have been removed while its event was pending
if camera_state is not None:
camera_state.finished(event_id)
# shut down camera states
for state in self.camera_states.values():
+1 -6
View File
@@ -54,11 +54,6 @@ class TrackedObject:
self.obj_data = obj_data
self.colormap = model_config.colormap
self.logos = model_config.all_attribute_logos
self.thumbnail_attributes = [
attr
for attr in model_config.attributes_map.get(obj_data["label"], [])
if attr in model_config.non_logo_attributes
]
self.camera_config = camera_config
self.ui_config = ui_config
self.frame_cache = frame_cache
@@ -154,7 +149,7 @@ class TrackedObject:
if not self.false_positive and has_valid_frame:
# determine if this frame is a better thumbnail
if self.thumbnail_data is None or is_better_thumbnail(
self.thumbnail_attributes,
self.obj_data["label"],
self.thumbnail_data,
obj_data,
self.camera_config.frame_shape,
+31 -15
View File
@@ -6,12 +6,33 @@ import subprocess as sp
from pathvalidate import sanitize_filename
from frigate.const import CACHE_DIR
from frigate.const import CACHE_DIR, STREAM_TYPE_MAIN, STREAM_TYPE_SUB
from frigate.models import Recordings
logger = logging.getLogger(__name__)
def _get_recordings_for_range(
camera_name: str, start_ts: float, end_ts: float, stream_type: str
) -> list[Recordings]:
"""Fetch one stream type's recording rows overlapping the requested range."""
return list(
Recordings.select(
Recordings.path,
Recordings.start_time,
Recordings.end_time,
)
.where(
(Recordings.start_time.between(start_ts, end_ts))
| (Recordings.end_time.between(start_ts, end_ts))
| ((start_ts > Recordings.start_time) & (end_ts < Recordings.end_time))
)
.where(Recordings.camera == camera_name)
.where(Recordings.stream_type == stream_type)
.order_by(Recordings.start_time.asc())
)
def get_audio_from_recording(
ffmpeg,
camera_name: str,
@@ -31,22 +52,17 @@ def get_audio_from_recording(
Returns:
Bytes of WAV audio data or None if extraction failed
"""
# Fetch all relevant recording segments
recordings = (
Recordings.select(
Recordings.path,
Recordings.start_time,
Recordings.end_time,
)
.where(
(Recordings.start_time.between(start_ts, end_ts))
| (Recordings.end_time.between(start_ts, end_ts))
| ((start_ts > Recordings.start_time) & (end_ts < Recordings.end_time))
)
.where(Recordings.camera == camera_name)
.order_by(Recordings.start_time.asc())
# Fetch all relevant recording segments; never mix streams in one
# concat, so prefer main and fall back to sub for expired-main history
recordings = _get_recordings_for_range(
camera_name, start_ts, end_ts, STREAM_TYPE_MAIN
)
if not recordings:
recordings = _get_recordings_for_range(
camera_name, start_ts, end_ts, STREAM_TYPE_SUB
)
if not recordings:
logger.debug(
f"No recordings found for {camera_name} between {start_ts} and {end_ts}"
+2
View File
@@ -18,6 +18,7 @@ from frigate.const import (
CLIPS_DIR,
MODEL_CACHE_DIR,
PROCESS_PRIORITY_LOW,
STREAM_TYPE_MAIN,
UPDATE_MODEL_STATE,
)
from frigate.log import redirect_output_to_logger, suppress_stderr_during
@@ -555,6 +556,7 @@ def _extract_keyframes(
(timestamp >= Recordings.start_time)
& (timestamp <= Recordings.end_time)
& (Recordings.camera == camera)
& (Recordings.stream_type == STREAM_TYPE_MAIN)
)
.order_by(Recordings.start_time.desc())
.limit(1)
+52 -2
View File
@@ -20,7 +20,7 @@ from frigate.util.services import get_video_properties
logger = logging.getLogger(__name__)
CURRENT_CONFIG_VERSION = "0.18-0"
CURRENT_CONFIG_VERSION = "0.19-0"
DEFAULT_CONFIG_FILE = os.path.join(CONFIG_DIR, "config.yml")
@@ -93,6 +93,7 @@ def migrate_frigate_config(config_file: str):
logger.info("copying config as backup...")
shutil.copy(config_file, os.path.join(CONFIG_DIR, "backup_config.yaml"))
new_config = config
if previous_version < "0.14":
logger.info(f"Migrating frigate config from {previous_version} to 0.14...")
@@ -147,6 +148,13 @@ def migrate_frigate_config(config_file: str):
yaml.dump(new_config, f)
previous_version = "0.18-0"
if previous_version < "0.19-0":
logger.info(f"Migrating frigate config from {previous_version} to 0.19-0...")
new_config = migrate_019_0(new_config)
with open(config_file, "w") as f:
yaml.dump(new_config, f)
previous_version = "0.19-0"
logger.info("Finished frigate config migration...")
@@ -525,6 +533,28 @@ def _convert_legacy_mask_to_dict(
return result
# the 0.18 scalar Birdseye modes, mapped to their activity mode names
_LEGACY_BIRDSEYE_MODES = {
"continuous": "continuous",
"motion": "motion",
"objects": "all_objects",
}
def _migrate_birdseye_mode(birdseye: dict[str, Any] | None) -> None:
"""Convert a scalar Birdseye mode to an activity mode list."""
if not birdseye or not isinstance(birdseye.get("mode"), str):
return
legacy_mode = birdseye["mode"]
if legacy_mode not in _LEGACY_BIRDSEYE_MODES:
return
del birdseye["mode"]
birdseye["modes"] = [_LEGACY_BIRDSEYE_MODES[legacy_mode]]
def migrate_018_0(config: dict[str, dict[str, Any]]) -> dict[str, dict[str, Any]]:
"""Handle migrating frigate config to 0.18-0"""
new_config = config.copy()
@@ -533,7 +563,7 @@ def migrate_018_0(config: dict[str, dict[str, Any]]) -> dict[str, dict[str, Any]
genai = new_config.get("genai")
if genai and genai.get("provider"):
genai["roles"] = ["descriptions", "chat"]
genai["roles"] = ["embeddings", "descriptions", "chat"]
new_config["genai"] = {"default": genai}
# Remove deprecated sync_recordings from global record config
@@ -658,6 +688,26 @@ def migrate_018_0(config: dict[str, dict[str, Any]]) -> dict[str, dict[str, Any]
return new_config
def migrate_019_0(config: dict[str, dict[str, Any]]) -> dict[str, dict[str, Any]]:
"""Handle migrating Frigate config to 0.19-0."""
new_config = config.copy()
_migrate_birdseye_mode(new_config.get("birdseye"))
for name, camera in new_config.get("cameras", {}).items():
camera_config: dict[str, dict[str, Any]] = camera.copy()
_migrate_birdseye_mode(camera_config.get("birdseye"))
for profile in camera_config.get("profiles", {}).values():
if isinstance(profile, dict):
_migrate_birdseye_mode(profile.get("birdseye"))
new_config["cameras"][name] = camera_config
new_config["version"] = "0.19-0"
return new_config
def get_relative_coordinates(
mask: str | list | None,
frame_shape: tuple[int, int],
+13 -5
View File
@@ -67,7 +67,7 @@ def has_better_attr(current_thumb, new_obj, attr_label) -> bool:
def is_better_thumbnail(
label_attributes: list[str],
label: str,
current_thumb: dict[str, Any],
new_obj: dict[str, Any],
frame_shape: tuple[int, int],
@@ -76,12 +76,20 @@ def is_better_thumbnail(
# cutoff images are less ideal, but they should also be smaller?
# better scores are obviously better too
for attr_label in label_attributes:
if has_better_attr(current_thumb, new_obj, attr_label):
# check face on person
if label == "person":
if has_better_attr(current_thumb, new_obj, "face"):
return True
# if the current thumb has a face attr, dont update unless it gets better
if any([a["label"] == "face" for a in current_thumb["attributes"]]):
return False
# if the current thumb has the attr, dont update unless it gets better
if any([a["label"] == attr_label for a in current_thumb["attributes"]]):
# check license_plate on car
if label in ["car", "motorcycle"]:
if has_better_attr(current_thumb, new_obj, "license_plate"):
return True
# if the current thumb has a license_plate attr, dont update unless it gets better
if any([a["label"] == "license_plate" for a in current_thumb["attributes"]]):
return False
# if the new_thumb is on an edge, and the current thumb is not
+33 -31
View File
@@ -1,10 +1,11 @@
"""Recordings Utilities."""
import asyncio
import contextlib
import datetime
import errno
import logging
import os
import subprocess as sp
from collections.abc import Iterable
from dataclasses import dataclass, field
from pathlib import Path
@@ -879,38 +880,43 @@ def sync_all_media(
return results
def get_keyframe_before(path: str, offset_ms: int) -> int | None:
"""Get the timestamp (ms) of the last keyframe at or before offset_ms.
async def get_keyframe_offsets(path: str) -> list[int] | None:
"""Get every video keyframe offset (ms from segment start) in an mp4.
Uses ffprobe packet index to read keyframe positions from the mp4 file.
Returns None if ffprobe fails or no keyframe is found before the offset.
Runs at record time so playback never needs to probe. Returns None if
ffprobe fails, so the caller stores NULL and playback falls back to
serving whole files.
"""
proc = None
try:
result = sp.run(
[
FFPROBE_PATH,
"-select_streams",
"v:0",
"-show_entries",
"packet=pts_time,flags",
"-of",
"csv=p=0",
"-loglevel",
"error",
path,
],
capture_output=True,
timeout=5,
proc = await asyncio.create_subprocess_exec(
FFPROBE_PATH,
"-select_streams",
"v:0",
"-show_entries",
"packet=pts_time,flags",
"-of",
"csv=p=0",
"-loglevel",
"error",
path,
stdout=asyncio.subprocess.PIPE,
stderr=asyncio.subprocess.DEVNULL,
)
except (sp.TimeoutExpired, FileNotFoundError):
stdout, _ = await asyncio.wait_for(proc.communicate(), timeout=5)
except (TimeoutError, FileNotFoundError):
if proc is not None and proc.returncode is None:
with contextlib.suppress(ProcessLookupError):
proc.kill()
with contextlib.suppress(TimeoutError):
await asyncio.wait_for(proc.communicate(), timeout=2)
return None
if result.returncode != 0:
if proc.returncode != 0:
return None
offset_s = offset_ms / 1000.0
best_ms = None
for line in result.stdout.decode().strip().splitlines():
offsets: list[int] = []
for line in stdout.decode().strip().splitlines():
parts = line.strip().split(",")
if len(parts) != 2:
continue
@@ -918,12 +924,8 @@ def get_keyframe_before(path: str, offset_ms: int) -> int | None:
if "K" not in flags:
continue
try:
ts = float(ts_str)
offsets.append(int(float(ts_str) * 1000))
except ValueError:
continue
if ts <= offset_s:
best_ms = int(ts * 1000)
else:
break
return best_ms
return offsets
+209
View File
@@ -0,0 +1,209 @@
"""Aggregation of the known sub label names an object can be tagged with."""
import logging
import os
from pathvalidate import sanitize_filename
from frigate.config import FrigateConfig
from frigate.config.classification import ObjectClassificationType
from frigate.const import CLIPS_DIR, FACE_DIR, MODEL_CACHE_DIR
from frigate.util.builtin import load_labels
logger = logging.getLogger(__name__)
# subdirectory of FACE_DIR holding unassigned training images, not a face name
FACE_TRAIN_DIR = "train"
# category used by classification models for "no match", never attached to an object
CLASSIFICATION_NONE_CATEGORY = "none"
def get_categorized_object_names(
config: FrigateConfig,
allowed_cameras: list[str],
object_type: str | None = None,
) -> dict[str, list[str]]:
"""Collect every sub label name this install can attach, by object type.
Unlike the database-backed /sub_labels endpoint, this reads the config and
model files, so it also covers names that are configured but have not been
detected yet. Names come from the detector's logo attributes (limited to
objects the allowed cameras actually track), LPR known plate names,
registered face names, and custom object classification categories.
Structural attributes such as `face` and `license_plate` are excluded: they
describe a part of an object rather than naming it, and are never attached
as a sub label.
Args:
config: The running Frigate config
allowed_cameras: Cameras the requesting user may see
object_type: Optional object label to restrict the result to
Returns:
Mapping of object label to its known sub label names, sorted and
deduplicated. Object types with no known names are omitted.
"""
tracked_objects = _get_tracked_objects(config, allowed_cameras)
names: dict[str, set[str]] = {}
logos = set(config.model.all_attribute_logos)
# 1. detector logo attributes, only for objects that are actually tracked
for label, label_attributes in config.model.attributes_map.items():
if label not in tracked_objects:
continue
label_logos = logos.intersection(label_attributes)
if label_logos:
names.setdefault(label, set()).update(label_logos)
# 2. LPR known plate names, for objects that can carry a plate
if config.lpr.known_plates and _lpr_enabled(config, allowed_cameras):
known_plates = set(config.lpr.known_plates)
for label in _objects_with_attribute(config, tracked_objects, "license_plate"):
names.setdefault(label, set()).update(known_plates)
# 3. registered face names, for objects that can carry a face
if _face_recognition_enabled(config, allowed_cameras):
face_names = _get_face_names()
if face_names:
for label in _objects_with_attribute(config, tracked_objects, "face"):
names.setdefault(label, set()).update(face_names)
# 4. custom object classification categories
for model_key, model_config in config.classification.custom.items():
if not model_config.enabled or model_config.object_config is None:
continue
if (
model_config.object_config.classification_type
!= ObjectClassificationType.sub_label
):
continue
categories = _get_classification_categories(model_key)
if not categories:
continue
for label in model_config.object_config.objects:
names.setdefault(label, set()).update(categories)
return {
label: sorted(label_names)
for label, label_names in sorted(names.items())
if label_names and (object_type is None or label == object_type)
}
def _get_tracked_objects(config: FrigateConfig, allowed_cameras: list[str]) -> set[str]:
"""Get the union of objects tracked by the cameras the user can see."""
tracked: set[str] = set()
for camera_name in allowed_cameras:
camera_config = config.cameras.get(camera_name)
if camera_config is None:
continue
tracked.update(camera_config.objects.track)
return tracked
def _objects_with_attribute(
config: FrigateConfig, tracked_objects: set[str], attribute: str
) -> set[str]:
"""Get the tracked objects that a given attribute can be recognized on.
The attribute may also be tracked as an object in its own right, as
`license_plate` is on a dedicated LPR camera, in which case the name is
attached to that object directly.
"""
objects = {
label
for label, label_attributes in config.model.attributes_map.items()
if attribute in label_attributes and label in tracked_objects
}
if attribute in tracked_objects:
objects.add(attribute)
return objects
def _lpr_enabled(config: FrigateConfig, allowed_cameras: list[str]) -> bool:
return any(
config.cameras[camera_name].lpr.enabled
for camera_name in allowed_cameras
if camera_name in config.cameras
)
def _face_recognition_enabled(
config: FrigateConfig, allowed_cameras: list[str]
) -> bool:
return any(
config.cameras[camera_name].face_recognition.enabled
for camera_name in allowed_cameras
if camera_name in config.cameras
)
def _get_face_names() -> set[str]:
"""Get the names of every registered face collection."""
if not os.path.exists(FACE_DIR):
return set()
try:
entries = os.listdir(FACE_DIR)
except OSError:
logger.debug("Failed to read face directory %s", FACE_DIR)
return set()
return {
name
for name in entries
if name != FACE_TRAIN_DIR and os.path.isdir(os.path.join(FACE_DIR, name))
}
def _get_classification_categories(model_key: str) -> set[str]:
"""Get the categories a custom classification model can output.
The trained labelmap is authoritative, but it only exists once the model
has been trained, so fall back to the dataset directories that will become
the labelmap on the next training run.
"""
safe_key = sanitize_filename(model_key)
categories: set[str] = set()
labelmap_path = os.path.join(MODEL_CACHE_DIR, safe_key, "labelmap.txt")
if os.path.exists(labelmap_path):
try:
labelmap = load_labels(labelmap_path, prefill=0, indexed=False)
except OSError:
logger.debug("Failed to read labelmap %s", labelmap_path)
labelmap = {}
categories.update(label for label in labelmap.values() if label)
dataset_dir = os.path.join(CLIPS_DIR, safe_key, "dataset")
if os.path.exists(dataset_dir):
try:
entries = os.listdir(dataset_dir)
except OSError:
logger.debug("Failed to read dataset directory %s", dataset_dir)
entries = []
categories.update(
name for name in entries if os.path.isdir(os.path.join(dataset_dir, name))
)
categories.discard(CLASSIFICATION_NONE_CATEGORY)
return categories
+460
View File
@@ -0,0 +1,460 @@
"""Merge main and sub stream recording rows into a unified coverage timeline."""
import logging
from dataclasses import dataclass
from typing import Any
from frigate.const import MAX_SEGMENT_DURATION, STREAM_TYPE_MAIN, STREAM_TYPE_SUB
from frigate.models import Recordings
logger = logging.getLogger(__name__)
# intervals shorter than this are boundary artifacts, not playable content
MIN_INTERVAL_S = 0.1
@dataclass
class CoverageInterval:
"""A time span annotated with the recording row covering it per stream."""
start_time: float
end_time: float
main: Any | None
sub: Any | None
def _rows_query(camera: str, after: float, before: float, stream_type: str) -> Any:
return (
Recordings.select(
Recordings.path,
Recordings.start_time,
Recordings.end_time,
Recordings.duration,
Recordings.has_audio,
Recordings.audio_rate,
Recordings.audio_codec,
Recordings.video_codec,
Recordings.segment_size,
Recordings.keyframes,
)
.where(
(Recordings.camera == camera)
& (Recordings.stream_type == stream_type)
& (Recordings.end_time > after)
& (Recordings.start_time < before)
& (Recordings.start_time > after - MAX_SEGMENT_DURATION)
)
.order_by(Recordings.start_time.asc())
.namedtuples()
)
def _get_rows(camera: str, after: float, before: float, stream_type: str) -> list[Any]:
return list(_rows_query(camera, after, before, stream_type))
def _covering(
rows: list[Any], idx: int, start: float, end: float
) -> tuple[Any | None, int]:
"""Find the row covering [start, end), advancing idx (rows are sorted, non-overlapping)."""
while idx < len(rows) and rows[idx].end_time <= start:
idx += 1
if idx < len(rows) and rows[idx].start_time <= start and rows[idx].end_time >= end:
return rows[idx], idx
return None, idx
def resolve_coverage(
camera: str, after: float, before: float
) -> list[CoverageInterval]:
"""Resolve the unified coverage timeline for a camera and time range.
Returns intervals bounded by the union of both streams' segment edges,
clamped to [after, before]. Ranges covered by neither stream produce no
interval (a gap).
"""
main_rows = _get_rows(camera, after, before, STREAM_TYPE_MAIN)
sub_rows = _get_rows(camera, after, before, STREAM_TYPE_SUB)
boundaries: set[float] = set()
for row in main_rows + sub_rows:
boundaries.add(max(row.start_time, after))
boundaries.add(min(row.end_time, before))
ordered = sorted(boundaries)
intervals: list[CoverageInterval] = []
main_idx = 0
sub_idx = 0
for i in range(len(ordered) - 1):
start, end = ordered[i], ordered[i + 1]
if end - start < MIN_INTERVAL_S:
continue
main_row, main_idx = _covering(main_rows, main_idx, start, end)
sub_row, sub_idx = _covering(sub_rows, sub_idx, start, end)
if main_row is None and sub_row is None:
continue
intervals.append(CoverageInterval(start, end, main_row, sub_row))
return intervals
def known_video_codecs(intervals: list[CoverageInterval]) -> set[str]:
"""Collect the known video codecs across all rows in a coverage window.
NULL codecs (legacy rows probed before the column existed) are
excluded, so uniformly-unknown data reports an empty set.
"""
return {
row.video_codec
for interval in intervals
for row in (interval.main, interval.sub)
if row is not None and row.video_codec is not None
}
def stream_media_summary(
intervals: list[CoverageInterval],
) -> dict[str, dict[str, Any]]:
"""Summarize the most recently known media details per stream.
Every field reports the newest non-NULL value across that stream's
rows, so an older row can still supply a value a legacy newer row
lacks. A stream with no rows is omitted entirely.
"""
fields = ("video_codec", "audio_rate", "audio_codec", "has_audio")
summary: dict[str, dict[str, Any]] = {}
for stream_type in (STREAM_TYPE_MAIN, STREAM_TYPE_SUB):
# the same row can back many intervals, so dedupe by path
rows = {
row.path: row
for interval in intervals
if (row := getattr(interval, stream_type)) is not None
}
if not rows:
continue
newest_first = sorted(rows.values(), key=lambda r: r.start_time, reverse=True)
stream_summary: dict[str, Any] = {field: None for field in fields}
for field in fields:
for row in newest_first:
value = getattr(row, field)
if value is not None:
stream_summary[field] = value
break
# segment_size is stored in MiB; totalling bytes and seconds
# weights by duration, unlike averaging per-row ratios
total_bytes = 0.0
total_seconds = 0.0
for row in rows.values():
size = row.segment_size
if size is None or size <= 0 or row.duration is None or row.duration <= 0:
continue
total_bytes += size * 1024 * 1024
total_seconds += row.duration
stream_summary["bitrate"] = (
int(total_bytes * 8 / total_seconds) if total_seconds > 0 else None
)
summary[stream_type] = stream_summary
return summary
def coverage_spans(intervals: list[CoverageInterval]) -> list[dict[str, Any]]:
"""Collapse intervals into contiguous spans of identical stream availability."""
spans: list[dict[str, Any]] = []
for interval in intervals:
streams = [
t
for t, row in (
(STREAM_TYPE_MAIN, interval.main),
(STREAM_TYPE_SUB, interval.sub),
)
if row is not None
]
if (
spans
and spans[-1]["end_time"] == interval.start_time
and spans[-1]["streams"] == streams
):
spans[-1]["end_time"] = interval.end_time
else:
spans.append(
{
"start_time": interval.start_time,
"end_time": interval.end_time,
"streams": streams,
}
)
return spans
def stream_has_audio(intervals: list[CoverageInterval], main: bool) -> bool:
"""Whether a stream is audio-bearing over a coverage window.
A stream counts as audio-bearing unless EVERY one of its rows reports
has_audio False; NULL (legacy or undetermined) counts as audio.
"""
return any(
row is not None and row.has_audio is not False
for row in ((interval.main if main else interval.sub) for interval in intervals)
)
def null_audio_glitches(
intervals: list[CoverageInterval], main_audio: bool, sub_audio: bool
) -> list[CoverageInterval]:
"""Treat video-only glitch rows on audio-bearing streams as no recording.
nginx-vod requires every clip in a sequence to carry the same track
count, so a truncated video-only segment (a backend restart can flush
a sub-second file before any audio packet landed) poisons every
manifest that includes it. Nulling the row turns the glitch into a
hole the span builder skips like any recording gap.
"""
result: list[CoverageInterval] = []
for interval in intervals:
main = interval.main
sub = interval.sub
if main is not None and main_audio and main.has_audio is False:
main = None
if sub is not None and sub_audio and sub.has_audio is False:
sub = None
if main is None and sub is None:
continue
if main is interval.main and sub is interval.sub:
result.append(interval)
else:
result.append(
CoverageInterval(interval.start_time, interval.end_time, main, sub)
)
return result
def build_spans(
intervals: list[CoverageInterval], stream: str | None
) -> list[list[Any]]:
"""Merge coverage intervals into single-sequence spans of one row each.
Each span is [row, start, end, is_main]; is_main lets the manifest
builder detect cross-stream hand-offs. A pinned stream serves only
its own rows; otherwise main is preferred and sub fills the gaps.
Intervals served by the same row merge on row identity alone, since
splitting a row mid-file would re-snap to a keyframe and repeat
content.
"""
spans: list[list[Any]] = []
last_is_main: bool | None = None
for interval in intervals:
if stream == STREAM_TYPE_MAIN:
row, is_main = interval.main, True
elif stream == STREAM_TYPE_SUB:
row, is_main = interval.sub, False
elif interval.main is not None:
row, is_main = interval.main, True
else:
row, is_main = interval.sub, False
if row is None:
continue
if spans and spans[-1][0] == row:
spans[-1][2] = interval.end_time
else:
start = interval.start_time
# adjacent same-stream rows routinely overlap; trimming the
# previous span's end is free, where starting this span
# mid-file would cost a clipFrom keyframe snap. Inclusive on
# the span end, since sub-MIN_INTERVAL_S overlaps are dropped
# by the resolver and leave the previous span ending a hair
# past this row's start
if (
spans
and is_main == last_is_main
and spans[-1][1] < row.start_time <= spans[-1][2]
):
spans[-1][2] = row.start_time
start = row.start_time
spans.append([row, start, interval.end_time, is_main])
last_is_main = is_main
return spans
def _keyframe_before(keyframes: Any, offset_ms: int) -> int | None:
"""Last stored keyframe offset at or before offset_ms.
keyframes is the row's record-time keyframe index (ms from segment
start). Returns None when the row has no usable index, which callers
treat as "serve the whole file".
"""
if not keyframes:
return None
candidates = [k for k in keyframes if k <= offset_ms]
return max(candidates) if candidates else None
@dataclass
class ClipPlan:
"""The exact playlist realization of one span.
clip_from_ms is the keyframe-snapped clipFrom, or None when the whole
file is served. skipped means the clip is omitted from the manifest.
key_frame_durations / first_key_frame_offset_ms carry clip-relative
keyframe data for nginx-vod sub-file segmentation; None means no
usable index, and the manifest declares one whole-clip segment (the
only safe cut without keyframe knowledge).
"""
clip_from_ms: int | None
duration_ms: int
skipped: bool
key_frame_durations: list[int] | None = None
first_key_frame_offset_ms: int = 0
def plan_clip(row: Any, start: float, end: float) -> ClipPlan:
"""Plan one nginx-vod clip for a recording row trimmed to [start, end).
The single source of truth for clip realization: the vod mapping
builder emits exactly this plan and the coverage timelines report it
to the frontend, so the playhead model matches the playlist by
construction rather than accumulating drift at each hand-off.
"""
min_duration_ms = 100 # Minimum 100ms to ensure at least one video frame
max_duration_ms = MAX_SEGMENT_DURATION * 1000
clip_from: int | None = None
duration = int(row.duration * 1000)
# adjust start offset if start is after the recording start
inpoint = int((start - row.start_time) * 1000) if start > row.start_time else 0
if inpoint > 0:
clip_from = inpoint
duration -= inpoint
# adjust end if the recording ends after the requested end
if row.end_time > end:
duration -= int((row.end_time - end) * 1000)
# nginx-vod-module pushes clipFrom forward to the next keyframe,
# which can leave too few frames for a playable segment; snapping
# back to the preceding keyframe always starts on a decodable frame
if clip_from is not None:
keyframe_ms = _keyframe_before(row.keyframes, clip_from)
if keyframe_ms is not None:
gained = clip_from - keyframe_ms
clip_from = keyframe_ms
duration += gained
logger.debug(
"VOD: snapped clipFrom to keyframe at %sms for %s, duration now %sms",
keyframe_ms,
row.path,
duration,
)
else:
logger.debug(
"VOD: no keyframe index for %s, removing clipFrom to use full recording",
row.path,
)
clip_from = None
duration = int(row.duration * 1000)
if row.end_time > end:
duration -= int((row.end_time - end) * 1000)
if duration < min_duration_ms:
logger.debug(
"VOD: skipping recording %s - resulting duration %sms too short",
row.path,
duration,
)
return ClipPlan(None, 0, True)
if duration >= max_duration_ms:
logger.warning(f"Recording clip is missing or empty: {row.path}")
return ClipPlan(None, 0, True)
return ClipPlan(
clip_from,
duration,
False,
*_clip_key_frames(row.keyframes, clip_from, duration),
)
def _clip_key_frames(
keyframes: Any, clip_from: int | None, duration: int
) -> tuple[list[int] | None, int]:
"""Clip-relative keyframe gaps and first offset for a served range.
nginx-vod validates firstKeyFrameOffset against the clip duration,
so offsets are clip-relative. A keyframe exactly on the clip end is
excluded (it would declare a zero-length tail), and fewer than two
keyframes returns (None, 0): one cut point cannot split anything.
"""
if not keyframes:
return None, 0
clip_start = clip_from if clip_from is not None else 0
relative = [
int(k) - clip_start
for k in keyframes
if clip_start <= k < clip_start + duration
]
if len(relative) < 2:
return None, 0
return [b - a for a, b in zip(relative, relative[1:])], relative[0]
def realized_timeline(
intervals: list[CoverageInterval], stream: str | None
) -> list[dict[str, Any]]:
"""The exact playlist timeline a vod route will realize for a range.
Each item pairs a span's wall-clock bounds with the duration (ms) of
the manifest clip serving it, including keyframe back-snap lead-in,
so summing durations reproduces playlist time exactly. A span whose
clip is skipped reports duration 0.
"""
return [
{
"start_time": span_start,
"end_time": span_end,
"duration": plan.duration_ms,
}
for row, span_start, span_end, _ in build_spans(intervals, stream)
for plan in (plan_clip(row, span_start, span_end),)
]
def realized_timelines(
intervals: list[CoverageInterval],
) -> dict[str, list[dict[str, Any]]]:
"""All three variant timelines for a coverage window.
Applies the same glitch-nulling as the manifest builder, then
assembles each variant's realized spans. Keyframe snapping reads the
per-row index stored at record time, so no file is touched.
"""
main_audio = stream_has_audio(intervals, main=True)
sub_audio = stream_has_audio(intervals, main=False)
nulled = null_audio_glitches(intervals, main_audio, sub_audio)
return {
"auto": realized_timeline(nulled, None),
"main": realized_timeline(nulled, STREAM_TYPE_MAIN),
"sub": realized_timeline(nulled, STREAM_TYPE_SUB),
}
+184 -27
View File
@@ -1,6 +1,8 @@
"""Utilities for services."""
import asyncio
import contextlib
import glob
import json
import logging
import os
@@ -670,19 +672,33 @@ def get_intel_gpu_stats(
def get_openvino_npu_stats() -> dict[str, str] | None:
"""Get NPU stats using openvino."""
NPU_RUNTIME_PATH = "/sys/devices/pci0000:00/0000:00:0b.0/power/runtime_active_time"
for accel_path in sorted(glob.glob("/sys/class/accel/accel*")):
try:
driver = os.path.basename(os.readlink(f"{accel_path}/device/driver"))
except OSError:
continue
if driver != "intel_vpu":
continue
try:
runtime_path = f"{accel_path}/device/power/runtime_active_time"
with open(runtime_path) as f:
initial_runtime = float(f.read().strip())
break
except (FileNotFoundError, PermissionError, ValueError):
continue
else:
return None
try:
with open(NPU_RUNTIME_PATH) as f:
initial_runtime = float(f.read().strip())
initial_time = time.time()
# Sleep for 1 second to get an accurate reading
time.sleep(1.0)
# Read runtime value again
with open(NPU_RUNTIME_PATH) as f:
with open(runtime_path) as f:
current_runtime = float(f.read().strip())
current_time = time.time()
@@ -1241,8 +1257,22 @@ async def get_video_properties(
async def probe_with_ffprobe(
url: str,
rtsp_transport: str | None = None,
) -> tuple[bool, int, int, str | None, float]:
"""Fallback using ffprobe: returns (valid, width, height, codec, duration)."""
) -> tuple[
bool,
int,
int,
str | None,
str | None,
float,
bool | None,
int | None,
str | None,
]:
"""Probe using ffprobe: returns (valid, width, height, fourcc, video_codec, duration, has_audio, audio_rate, audio_codec).
ffprobe reports the codec name directly, so fourcc and
video_codec are the same value on this path.
"""
cmd = [ffmpeg.ffprobe_path]
if rtsp_transport:
cmd += ["-rtsp_transport", rtsp_transport]
@@ -1270,19 +1300,17 @@ async def get_video_properties(
clean_camera_user_pass(url),
rtsp_transport or "default",
)
proc.kill()
await proc.wait()
return False, 0, 0, None, -1
return False, 0, 0, None, None, -1, None, None, None
if proc.returncode != 0:
return False, 0, 0, None, -1
return False, 0, 0, None, None, -1, None, None, None
data = json.loads(stdout.decode())
video_streams = [
s for s in data.get("streams", []) if s.get("codec_type") == "video"
]
if not video_streams:
return False, 0, 0, None, -1
return False, 0, 0, None, None, -1, None, None, None
v = video_streams[0]
width = int(v.get("width", 0))
@@ -1292,16 +1320,70 @@ async def get_video_properties(
duration_str = data.get("format", {}).get("duration")
duration = float(duration_str) if duration_str else -1.0
return True, width, height, codec, duration
except (json.JSONDecodeError, ValueError, KeyError, sp.SubprocessError):
return False, 0, 0, None, -1
audio_streams = [
s for s in data.get("streams", []) if s.get("codec_type") == "audio"
]
has_audio = bool(audio_streams)
def probe_with_cv2(url: str) -> tuple[bool, int, int, str | None, float]:
"""Primary attempt using cv2: returns (valid, width, height, fourcc, duration)."""
# codec and sample rate distinguish audio tracks whose decoder
# configs cannot share an HLS sequence
audio_rate: int | None = None
audio_codec: str | None = None
if audio_streams:
try:
audio_rate = int(audio_streams[0]["sample_rate"])
except (KeyError, TypeError, ValueError):
audio_rate = None
audio_codec = audio_streams[0].get("codec_name")
return (
True,
width,
height,
codec,
codec,
duration,
has_audio,
audio_rate,
audio_codec,
)
except (json.JSONDecodeError, ValueError, KeyError, sp.SubprocessError):
return False, 0, 0, None, None, -1, None, None, None
finally:
# callers run in a per-cycle event loop, and an ffprobe still
# running when that loop closes is finalized against a dead loop
# ("Event loop is closed"). Draining after the kill is what
# closes the pipes and their transports
if proc is not None and proc.returncode is None:
with contextlib.suppress(ProcessLookupError):
proc.kill()
with contextlib.suppress(TimeoutError):
await asyncio.wait_for(proc.communicate(), timeout=2)
def probe_with_cv2(
url: str,
) -> tuple[
bool,
int,
int,
str | None,
str | None,
float,
bool | None,
int | None,
str | None,
]:
"""Probe using cv2: returns (valid, width, height, fourcc, video_codec, duration, has_audio, audio_rate, audio_codec).
cv2 cannot report audio streams or a normalized codec name, so
has_audio, audio_rate, audio_codec, and video_codec are always
None (unknown) on this path.
"""
cap = cv2.VideoCapture(url)
if not cap.isOpened():
cap.release()
return False, 0, 0, None, -1
return False, 0, 0, None, None, -1, None, None, None
width = int(cap.get(cv2.CAP_PROP_FRAME_WIDTH))
height = int(cap.get(cv2.CAP_PROP_FRAME_HEIGHT))
@@ -1320,7 +1402,7 @@ async def get_video_properties(
duration = total_frames / fps
cap.release()
return valid, width, height, fourcc, duration
return valid, width, height, fourcc, None, duration, None, None, None
is_rtsp = url.startswith("rtsp://")
@@ -1328,24 +1410,99 @@ async def get_video_properties(
# skip cv2 for RTSP: its FFmpeg backend has a hardcoded ~30s internal
# timeout that cannot be shortened per-call, and ffprobe bounded by
# -rw_timeout handles RTSP probing reliably
has_video, width, height, fourcc, duration = await probe_with_ffprobe(url)
(
has_video,
width,
height,
fourcc,
video_codec,
duration,
has_audio,
audio_rate,
audio_codec,
) = await probe_with_ffprobe(url)
elif get_duration:
# ffprobe first: segment validation also needs audio presence,
# which cv2 cannot report
(
has_video,
width,
height,
fourcc,
video_codec,
duration,
has_audio,
audio_rate,
audio_codec,
) = await probe_with_ffprobe(url)
# fallback to cv2 if needed; audio stays unknown there
if not has_video or duration < 0:
(
has_video,
width,
height,
fourcc,
video_codec,
duration,
has_audio,
audio_rate,
audio_codec,
) = probe_with_cv2(url)
else:
# try cv2 first for local files, HTTP, RTMP
has_video, width, height, fourcc, duration = probe_with_cv2(url)
(
has_video,
width,
height,
fourcc,
video_codec,
duration,
has_audio,
audio_rate,
audio_codec,
) = probe_with_cv2(url)
# fallback to ffprobe if needed
if not has_video or (get_duration and duration < 0):
has_video, width, height, fourcc, duration = await probe_with_ffprobe(url)
if not has_video:
(
has_video,
width,
height,
fourcc,
video_codec,
duration,
has_audio,
audio_rate,
audio_codec,
) = await probe_with_ffprobe(url)
# last resort for RTSP: try TCP transport, since default UDP may be blocked
if (not has_video or (get_duration and duration < 0)) and is_rtsp:
has_video, width, height, fourcc, duration = await probe_with_ffprobe(
url, rtsp_transport="tcp"
)
(
has_video,
width,
height,
fourcc,
video_codec,
duration,
has_audio,
audio_rate,
audio_codec,
) = await probe_with_ffprobe(url, rtsp_transport="tcp")
result: dict[str, Any] = {"has_valid_video": has_video}
if has_video:
result.update({"width": width, "height": height})
result.update(
{
"width": width,
"height": height,
"has_audio": has_audio,
"audio_rate": audio_rate,
"audio_codec": audio_codec,
"video_codec": video_codec,
}
)
if fourcc:
result["fourcc"] = fourcc
if get_duration:
+14 -4
View File
@@ -216,10 +216,20 @@ def process_frames(
# remove license_plate from attributes if this camera is a dedicated LPR cam
if camera_config.type == CameraTypeEnum.lpr:
attributes_map = {
label: [attr for attr in attributes if attr != "license_plate"]
for label, attributes in model_config.attributes_map.items()
}
modified_attributes_map = model_config.attributes_map.copy()
if (
"car" in modified_attributes_map
and "license_plate" in modified_attributes_map["car"]
):
modified_attributes_map["car"] = [
attr
for attr in modified_attributes_map["car"]
if attr != "license_plate"
]
attributes_map = modified_attributes_map
all_attributes = [
attr for attr in model_config.all_attributes if attr != "license_plate"
]
+51 -43
View File
@@ -54,59 +54,48 @@ def capture_frames(
skipped_eps = EventsPerSecond()
skipped_eps.start()
config_subscriber = CameraConfigUpdateSubscriber(
None, {config.name: config}, [CameraConfigUpdateEnum.enabled]
)
while not stop_event.is_set():
# CameraWatchdog applies enabled updates onto this same CameraConfig
# before it stops ffmpeg. Do not subscribe here: it would be rebuilt per
# ffmpeg restart and strand a pipe in the idle main process config PUB.
if not config.enabled:
logger.debug(f"Stopping capture thread for disabled {config.name}")
break
def get_enabled_state():
"""Fetch the latest enabled state from ZMQ."""
config_subscriber.check_for_updates()
return config.enabled
try:
while not stop_event.is_set():
if not get_enabled_state():
logger.debug(f"Stopping capture thread for disabled {config.name}")
fps.value = frame_rate.eps()
skipped_fps.value = skipped_eps.eps()
current_frame.value = datetime.now().timestamp()
frame_name = f"{config.name}_frame{frame_index}"
frame_buffer = frame_manager.write(frame_name)
try:
frame_buffer[:] = ffmpeg_process.stdout.read(frame_size)
except Exception:
# shutdown has been initiated
if stop_event.is_set():
break
fps.value = frame_rate.eps()
skipped_fps.value = skipped_eps.eps()
current_frame.value = datetime.now().timestamp()
frame_name = f"{config.name}_frame{frame_index}"
frame_buffer = frame_manager.write(frame_name)
try:
frame_buffer[:] = ffmpeg_process.stdout.read(frame_size)
except Exception:
# shutdown has been initiated
if stop_event.is_set():
break
logger.error(f"{config.name}: Unable to read frames from ffmpeg process.")
if ffmpeg_process.poll() is not None:
logger.error(
f"{config.name}: Unable to read frames from ffmpeg process."
f"{config.name}: ffmpeg process is not running. exiting capture thread..."
)
break
if ffmpeg_process.poll() is not None:
logger.error(
f"{config.name}: ffmpeg process is not running. exiting capture thread..."
)
break
continue
continue
frame_rate.update()
frame_rate.update()
# don't lock the queue to check, just try since it should rarely be full
try:
# add to the queue
frame_queue.put((frame_name, current_frame.value), False)
frame_manager.close(frame_name)
except queue.Full:
# if the queue is full, skip this frame
skipped_eps.update()
# don't lock the queue to check, just try since it should rarely be full
try:
# add to the queue
frame_queue.put((frame_name, current_frame.value), False)
frame_manager.close(frame_name)
except queue.Full:
# if the queue is full, skip this frame
skipped_eps.update()
frame_index = 0 if frame_index == shm_frame_count - 1 else frame_index + 1
finally:
config_subscriber.stop()
frame_index = 0 if frame_index == shm_frame_count - 1 else frame_index + 1
class CameraWatchdog(threading.Thread):
@@ -158,6 +147,7 @@ class CameraWatchdog(threading.Thread):
self.requestor = InterProcessRequestor()
self.was_enabled = self.config.enabled
self.was_record_enabled_in_config = self.config.record.enabled_in_config
self.was_record_sub_enabled = self.config.record.sub.enabled
self.segment_subscriber = RecordingsDataSubscriber(RecordingsDataTypeEnum.all)
self.latest_valid_segment_time: float = 0
@@ -323,6 +313,24 @@ class CameraWatchdog(threading.Thread):
self.was_record_enabled_in_config = record_enabled_in_config
continue
record_sub_enabled = self.config.record.sub.enabled
if record_sub_enabled != self.was_record_sub_enabled:
# adding and removing the record_sub output both require a
# restart, unlike the main record toggle
if record_enabled_in_config and enabled:
self.logger.debug(
f"Sub stream recording toggled in config for {self.config.name}, restarting ffmpeg"
)
self.stop_all_ffmpeg()
self.start_all_ffmpeg()
self.latest_valid_segment_time = 0
self.latest_invalid_segment_time = 0
self.latest_cache_segment_time = 0
self.record_enable_time = datetime.now().astimezone(UTC)
last_restart_time = datetime.now().timestamp()
self.was_record_sub_enabled = record_sub_enabled
continue
if not enabled:
continue
+2 -8
View File
@@ -94,7 +94,6 @@ SPEC_SERVERS = [
PUBLIC = "public"
AUTHENTICATED = "any"
CAMERA = "camera"
ALL_CAMERAS = "all_cameras"
ADMIN = "admin"
ADMIN_SCHEME = "frigateAdminAuth"
@@ -129,7 +128,6 @@ ACCESS_NOTES = {
PUBLIC: "**Access:** Public — no authentication required.",
AUTHENTICATED: "**Access:** Any authenticated user.",
CAMERA: "**Access:** Authenticated user with access to the referenced camera.",
ALL_CAMERAS: "**Access:** Authenticated user with access to all cameras.",
ADMIN: "**Access:** Admin role required.",
}
@@ -199,8 +197,6 @@ def _route_markers(route: APIRoute) -> tuple[set[str], list[str] | None]:
pass
elif name in ("require_camera_access", "require_go2rtc_stream_access"):
markers.add(CAMERA)
elif name == "require_full_camera_access":
markers.add(ALL_CAMERAS)
elif "auth_checker" in qualname:
markers.add(AUTHENTICATED)
elif "public_checker" in qualname:
@@ -258,8 +254,6 @@ def _classify_base(
# Explicit route-level markers win, in order of specificity.
if ADMIN in markers:
return ADMIN, admin_roles or ["admin"], None
if ALL_CAMERAS in markers:
return ALL_CAMERAS, None, None
if CAMERA in markers:
return CAMERA, None, None
if AUTHENTICATED in markers:
@@ -343,8 +337,8 @@ def security_for(level: str) -> list:
return []
if level == ADMIN:
return [{ADMIN_SCHEME: []}]
# AUTHENTICATED, CAMERA and ALL_CAMERAS all require any authenticated
# session; the camera scoping is conveyed in the note and x-required-role.
# AUTHENTICATED and CAMERA both require any authenticated session; the
# camera-specific scoping is conveyed in the note and x-required-role.
return [{USER_SCHEME: []}]
@@ -0,0 +1,49 @@
"""Peewee migrations -- 036_add_recordings_stream_metadata.py.
Some examples (model - class or model name)::
> Model = migrator.orm['model_name'] # Return model in current state by name
> migrator.sql(sql) # Run custom SQL
> migrator.python(func, *args, **kwargs) # Run python code
> migrator.create_model(Model) # Create a model (could be used as decorator)
> migrator.remove_model(model, cascade=True) # Remove a model
> migrator.add_fields(model, **fields) # Add fields to a model
> migrator.change_fields(model, **fields) # Change fields
> migrator.remove_fields(model, *field_names, cascade=True)
> migrator.rename_field(model, old_field_name, new_field_name)
> migrator.rename_table(model, new_table_name)
> migrator.add_index(model, *col_names, unique=False)
> migrator.drop_index(model, *col_names)
> migrator.add_not_null(model, *field_names)
> migrator.drop_not_null(model, *field_names)
> migrator.add_default(model, field_name, default)
"""
import peewee as pw
SQL = pw.SQL
def migrate(migrator, database, fake=False, **kwargs):
migrator.sql(
'ALTER TABLE "recordings" ADD COLUMN "stream_type" VARCHAR(8) NOT NULL DEFAULT \'main\''
)
migrator.sql(
'CREATE INDEX IF NOT EXISTS "recordings_camera_stream_type" ON "recordings" ("camera", "stream_type")'
)
# nullable so legacy rows stay NULL, meaning unknown
migrator.sql('ALTER TABLE "recordings" ADD COLUMN "has_audio" INTEGER')
migrator.sql('ALTER TABLE "recordings" ADD COLUMN "audio_rate" INTEGER')
migrator.sql('ALTER TABLE "recordings" ADD COLUMN "audio_codec" TEXT')
migrator.sql('ALTER TABLE "recordings" ADD COLUMN "video_codec" TEXT')
# keyframe offsets in ms from segment start; nullable so legacy rows
# stay NULL and playback serves whole files for them
migrator.sql('ALTER TABLE "recordings" ADD COLUMN "keyframes" TEXT')
def rollback(migrator, database, fake=False, **kwargs):
pass
@@ -0,0 +1,43 @@
"""Peewee migrations -- 037_add_recordings_stream_index.py.
Some examples (model - class or model name)::
> Model = migrator.orm['model_name'] # Return model in current state by name
> migrator.sql(sql) # Run custom SQL
> migrator.python(func, *args, **kwargs) # Run python code
> migrator.create_model(Model) # Create a model (could be used as decorator)
> migrator.remove_model(model, cascade=True) # Remove a model
> migrator.add_fields(model, **fields) # Add fields to a model
> migrator.change_fields(model, **fields) # Change fields
> migrator.remove_fields(model, *field_names, cascade=True)
> migrator.rename_field(model, old_field_name, new_field_name)
> migrator.rename_table(model, new_table_name)
> migrator.add_index(model, *col_names, unique=False)
> migrator.drop_index(model, *col_names)
> migrator.add_not_null(model, *field_names)
> migrator.drop_not_null(model, *field_names)
> migrator.add_default(model, field_name, default)
"""
import peewee as pw
SQL = pw.SQL
def migrate(migrator, database, fake=False, **kwargs):
# time-ordered per-stream lookups (bandwidth estimation, pinned-stream
# queries) need this ordering; without it, a per-stream ORDER BY
# start_time query on a camera with no rows for that stream walks the
# camera's entire history via per-row table lookups
migrator.sql(
'CREATE INDEX IF NOT EXISTS "recordings_camera_stream_type_start_time" ON "recordings" ("camera", "stream_type", "start_time" DESC)'
)
# the 036 index is a strict prefix of the one above, so keeping it
# would only add write amplification on the hottest table
migrator.sql('DROP INDEX IF EXISTS "recordings_camera_stream_type"')
def rollback(migrator, database, fake=False, **kwargs):
pass
File diff suppressed because one or more lines are too long
File diff suppressed because one or more lines are too long
+25
View File
@@ -867,6 +867,31 @@ test.describe("Multi-Camera Export from History @high", () => {
await frigateApp.page.route("**/api/recordings/unavailable**", (route) =>
route.fulfill({ json: [] }),
);
// registered after the broad recordings route so it wins the match;
// coverage is an object, and the array above crashes the player
await frigateApp.page.route("**/api/*/recordings/coverage**", (route) =>
route.fulfill({
json: {
spans: [
{
start_time: playbackTime - 3600,
end_time: playbackTime + 600,
streams: ["main"],
},
],
codecs_compatible: true,
streams: {
main: {
video_codec: "h264",
audio_rate: null,
audio_codec: null,
has_audio: false,
bitrate: 2_000_000,
},
},
},
}),
);
await frigateApp.goto(`/review?timestamp=front_door_${playbackTime}`);
}
@@ -0,0 +1,187 @@
/**
* Add-camera wizard — PTZ controls pane.
*
* The pane lives on Step 3 (Stream Configuration) and only appears when the
* ONVIF probe from Step 2 reported `ptz_supported`. These tests drive the
* wizard to Step 3 with a mocked probe and assert the pane's contract:
* 1. Visible + enabled when the probe reports PTZ, with the connection
* fields collapsed by default and pre-filled once expanded.
* 2. Toggling the switch off hides the disclosure and its fields.
* 3. Clearing the host shows the validation warning and blocks "Next".
* 4. Absent entirely when the probe reports no PTZ support.
*
* The save path (writing the `onvif` section to config/set) runs through
* Step 4's live-validation flow, which registers go2rtc streams and renders
* MSE previews that are unreliable in headless Chromium. Consistent with
* clone-camera.spec.ts, that assertion is deferred to manual QA; the logic is
* covered by the Step 4 -> parent handleSave wiring.
*/
import { test, expect } from "../../fixtures/frigate-test";
import type { Page, Locator } from "@playwright/test";
const PTZ_PROBE = {
success: true,
host: "192.168.1.100",
port: 80,
manufacturer: "Acme",
model: "PTZ-1",
firmware_version: "1.0",
profiles_count: 1,
ptz_supported: true,
pan_tilt_supported: true,
presets_count: 2,
autotrack_supported: false,
rtsp_candidates: [
{
source: "GetStreamUri",
profile_token: "profile_1",
uri: "rtsp://admin:pw@192.168.1.100:554/stream1",
},
],
};
async function mockProbe(page: Page, probe: object) {
await page.route("**/api/onvif/probe**", (route) =>
route.fulfill({ json: probe }),
);
}
/** Open the wizard and drive Step 1 -> Step 2 -> Step 3. */
async function gotoStep3(page: Page, host = "192.168.1.100") {
await page.getByRole("button", { name: /Add New Camera/i }).click();
const dialog = page.getByRole("dialog");
await expect(dialog).toBeVisible();
// Step 1: name + host (probe mode is the default), then Continue.
await dialog.getByPlaceholder(/front_door/i).fill("ptz_test_camera");
await dialog.getByPlaceholder("192.168.1.100").fill(host);
await dialog.getByRole("button", { name: /^Continue$/i }).click();
// Step 2: the probe auto-runs on mount; once candidates exist, Next enables.
const next = dialog.getByRole("button", { name: /^Next$/i });
await expect(next).toBeEnabled({ timeout: 10_000 });
await next.click();
// Step 3 is the stream-configuration step; key off a stable control rather
// than the description text (which has been reworded).
await expect(
dialog.getByRole("button", { name: /Add Another Stream/i }),
).toBeVisible();
return dialog;
}
/** The PTZ enable switch (scoped to the PTZ card header row). */
function ptzSwitch(dialog: Locator) {
return dialog
.locator("div.justify-between", { hasText: "Enable PTZ Controls" })
.getByRole("switch");
}
/** Expand the (collapsed-by-default) ONVIF connection-detail fields. */
async function expandOnvifDetails(dialog: Locator) {
await dialog
.getByRole("button", { name: /ONVIF connection details/i })
.click();
}
test.describe("Camera wizard PTZ pane @medium @mobile", () => {
test.beforeEach(async ({ frigateApp }) => {
// not in the default mock; unmocked it 500s and trips the error collector
await frigateApp.page.route("**/api/config/raw_paths", (route) =>
route.fulfill({ json: {} }),
);
await frigateApp.goto("/settings?page=cameraManagement");
await expect(
frigateApp.page.getByRole("heading", { name: /Manage Cameras/i }),
).toBeVisible();
});
test("shows an enabled PTZ pane with collapsed, pre-filled fields", async ({
frigateApp,
}) => {
await mockProbe(frigateApp.page, PTZ_PROBE);
const dialog = await gotoStep3(frigateApp.page);
// Card is present with the detected note and the switch defaults on.
await expect(
dialog.getByText("Enable PTZ Controls", { exact: true }),
).toBeVisible();
await expect(
dialog.getByText(/PTZ support has been detected via ONVIF/i),
).toBeVisible();
await expect(ptzSwitch(dialog)).toBeChecked();
// Connection fields are collapsed by default.
await expect(dialog.getByPlaceholder("192.168.1.100")).toHaveCount(0);
// Expanding reveals the host pre-filled from the probe.
await expandOnvifDetails(dialog);
await expect(dialog.getByPlaceholder("192.168.1.100")).toHaveValue(
"192.168.1.100",
);
});
test("toggling the switch off hides the disclosure and fields", async ({
frigateApp,
}) => {
await mockProbe(frigateApp.page, PTZ_PROBE);
const dialog = await gotoStep3(frigateApp.page);
await expandOnvifDetails(dialog);
await expect(dialog.getByPlaceholder("192.168.1.100")).toBeVisible();
await ptzSwitch(dialog).click();
await expect(dialog.getByPlaceholder("192.168.1.100")).toHaveCount(0);
await expect(
dialog.getByRole("button", { name: /ONVIF connection details/i }),
).toHaveCount(0);
});
test("clearing the host shows the warning and blocks Next", async ({
frigateApp,
}) => {
await mockProbe(frigateApp.page, PTZ_PROBE);
const dialog = await gotoStep3(frigateApp.page);
await expandOnvifDetails(dialog);
await dialog.getByPlaceholder("192.168.1.100").fill("");
await expect(
dialog.getByText(/An ONVIF host and port are required/i),
).toBeVisible();
await expect(
dialog.getByRole("button", { name: /^Next$/i }),
).toBeDisabled();
});
test("shows the pane but leaves the switch off without continuous pan/tilt", async ({
frigateApp,
}) => {
// e.g. a varifocal camera: PTZ service present, but zoom/focus only
await mockProbe(frigateApp.page, {
...PTZ_PROBE,
pan_tilt_supported: false,
});
const dialog = await gotoStep3(frigateApp.page);
await expect(
dialog.getByText("Enable PTZ Controls", { exact: true }),
).toBeVisible();
await expect(ptzSwitch(dialog)).not.toBeChecked();
// with the switch off, the connection fields are not shown
await expect(dialog.getByPlaceholder("192.168.1.100")).toHaveCount(0);
});
test("hides the PTZ pane when the probe reports no PTZ support", async ({
frigateApp,
}) => {
await mockProbe(frigateApp.page, { ...PTZ_PROBE, ptz_supported: false });
const dialog = await gotoStep3(frigateApp.page);
await expect(
dialog.getByText("Enable PTZ Controls", { exact: true }),
).toHaveCount(0);
});
});

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