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94 lines
3.9 KiB
Markdown
94 lines
3.9 KiB
Markdown
| Supported Targets | ESP32-P4 |
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| ----------------- | -------- |
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# JPEG encode example
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## Overview
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This example demonstrates how to use the JPEG hardware [encoder](https://docs.espressif.com/projects/esp-idf/en/latest/esp32p4/api-reference/peripherals/jpeg.html) to encode a 1080p picture:
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This example makes use of the hardware-based JPEG encoder. If you have multiple pictures that need to be decoded, such as *.rgb -> *.jpg, you can use this example to accelerate encoding.
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## How to use example
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### Hardware Required
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* An Espressif development board based on a chip listed in supported targets
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* A USB cable for power supply and serial communication
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* Computer with ESP-IDF installed and configured
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* ffmpeg can also be used to produce rgb picture. For example `ffmpeg -i input.jpg -pix_fmt rgb24 output.rgb`
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### Build and Flash
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Before you start build and flash this example, please put the image `esp1080.rgb` in your sdcard.
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Enter `idf.py -p PORT flash monitor` to build, flash and monitor the project.
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(To exit the serial monitor, type ``Ctrl-]``.)
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See the [Getting Started Guide](https://docs.espressif.com/projects/esp-idf/en/latest/get-started/index.html) for full steps to configure and use ESP-IDF to build projects.
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## Example Output
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```text
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Loading embedded BGR24 image from flash...
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Embedded raw image size: 2764800 bytes
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Encoding BGR24(raw) -> JPEG...
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Encoded JPEG size: 30795 bytes
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JPEG_META width=1280 height=720 format=JPEG encoding=base64 size=30795
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JPEG_BASE64_BEGIN
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JPEG_BASE64 ...
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JPEG_BASE64 ...
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JPEG_BASE64_END
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JPEG encode demo done.
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```
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## Pytest Visual Check
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The accompanying `pytest_jpeg_encode.py` script captures the `JPEG_META` and `JPEG_BASE64` output, reconstructs the encoded JPEG, and saves it as:
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- `dut.logdir/jpeg_encode_result.jpeg`
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It also compares the generated JPEG with `golden_output.jpeg`. This turns the example into both a functional regression test and a host-side artifact generator that makes the encoded result easy to inspect.
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## Running Pytest Locally And Viewing The Image
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To run the pytest helper locally on hardware, build the example for your target first, then invoke the test script with the target and serial port:
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```bash
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pytest pytest_jpeg_encode.py --target esp32p4 --port PORT
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```
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Replace `esp32p4` with another supported target such as `esp32s31` when needed.
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`pytest-embedded` stores per-test logs under `$IDF_PATH/pytest-embedded/`. The script writes the reconstructed image to `jpeg_encode_result.jpeg` inside that test log directory, so after the test finishes you can open the generated JPEG locally with any image viewer to inspect the encoded output.
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## Replacing The Embedded RGB Asset
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If you want to regenerate a compatible raw frame from another input image, one simple workflow is:
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```bash
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I (1114) jpeg.example: Initializing SD card
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I (1114) gpio: GPIO[43]| InputEn: 0| OutputEn: 0| OpenDrain: 0| Pullup: 1| Pulldown: 0| Intr:0
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I (1124) gpio: GPIO[44]| InputEn: 0| OutputEn: 0| OpenDrain: 0| Pullup: 1| Pulldown: 0| Intr:0
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I (1134) gpio: GPIO[39]| InputEn: 0| OutputEn: 0| OpenDrain: 0| Pullup: 1| Pulldown: 0| Intr:0
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I (1144) gpio: GPIO[40]| InputEn: 0| OutputEn: 0| OpenDrain: 0| Pullup: 1| Pulldown: 0| Intr:0
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I (1154) gpio: GPIO[41]| InputEn: 0| OutputEn: 0| OpenDrain: 0| Pullup: 1| Pulldown: 0| Intr:0
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I (1164) gpio: GPIO[42]| InputEn: 0| OutputEn: 1| OpenDrain: 0| Pullup: 0| Pulldown: 0| Intr:0
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I (1414) gpio: GPIO[42]| InputEn: 0| OutputEn: 0| OpenDrain: 0| Pullup: 1| Pulldown: 0| Intr:0
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Name: SD64G
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Type: SDHC/SDXC
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Speed: 40.00 MHz (limit: 40.00 MHz)
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Size: 60906MB
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CSD: ver=2, sector_size=512, capacity=124735488 read_bl_len=9
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SSR: bus_width=4
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I (1434) jpeg.example: infile_1080p:/sdcard/esp1080.rgb
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I (5174) jpeg.example: outfile:/sdcard/outjpg.jpg
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I (5284) jpeg.example: Card unmounted
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I (5284) main_task: Returned from app_main()
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```
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## Troubleshooting
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(For any technical queries, please open an [issue](https://github.com/espressif/esp-idf/issues) on GitHub. We will get back to you as soon as possible.)
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