* Doc Migration from Gitlab (#1289) * doc migration * fix * Update FakeQuantize_1.md * Update performance_benchmarks.md * Updates graphs for FPGA * Update performance_benchmarks.md * Change DL Workbench structure (#1) * Changed DL Workbench structure * Fixed tags * fixes * Update ie_docs.xml * Update performance_benchmarks_faq.md * Fixes in DL Workbench layout * Fixes for CVS-31290 * [DL Workbench] Minor correction * Fix for CVS-30955 * Added nGraph deprecation notice as requested by Zoe * fix broken links in api doxy layouts * CVS-31131 fixes * Additional fixes * Fixed POT TOC * Update PAC_Configure.md PAC DCP 1.2.1 install guide. * Update inference_engine_intro.md * fix broken link * Update opset.md * fix * added opset4 to layout * added new opsets to layout, set labels for them * Update VisionAcceleratorFPGA_Configure.md Updated from 2020.3 to 2020.4 Co-authored-by: domi2000 <domi2000@users.noreply.github.com>
179 lines
6.1 KiB
Markdown
179 lines
6.1 KiB
Markdown
## PriorBox<a name="PriorBox"></a> {#openvino_docs_ops_detection_PriorBox_1}
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**Versioned name**: *PriorBox-1*
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**Category**: Object detection
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**Short description**: *PriorBox* operation generates prior boxes of specified sizes and aspect ratios across all dimensions.
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**Attributes**:
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* *min_size (max_size)*
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* **Description**: *min_size (max_size)* is the minimum (maximum) box size (in pixels). For example, *min_size (max_size)* equal 15 means that the minimum (maximum) box size is 15.
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* **Range of values**: positive floating point numbers
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* **Type**: float[]
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* **Default value**: []
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* **Required**: *no*
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* *aspect_ratio*
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* **Description**: *aspect_ratio* is a variance of aspect ratios. Duplicate values are ignored. For example, *aspect_ratio* equal "2.0,3.0" means that for the first box aspect_ratio is equal to 2.0 and for the second box is 3.0.
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* **Range of values**: set of positive integer numbers
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* **Type**: float[]
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* **Default value**: []
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* **Required**: *no*
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* *flip*
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* **Description**: *flip* is a flag that denotes that each *aspect_ratio* is duplicated and flipped. For example, *flip* equals 1 and *aspect_ratio* equals to "4.0,2.0" mean that aspect_ratio is equal to "4.0,2.0,0.25,0.5".
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* **Range of values**:
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* False - each *aspect_ratio* is flipped
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* True - each *aspect_ratio* is not flipped
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* **Type**: boolean
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* **Default value**: False
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* **Required**: *no*
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* *clip*
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* **Description**: *clip* is a flag that denotes if each value in the output tensor should be clipped to [0,1] interval.
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* **Range of values**:
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* False - clipping is not performed
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* True - each value in the output tensor is clipped to [0,1] interval.
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* **Type**: boolean
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* **Default value**: False
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* **Required**: *no*
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* *step*
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* **Description**: *step* is a distance between box centers. For example, *step* equal 85 means that the distance between neighborhood prior boxes centers is 85.
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* **Range of values**: floating point non-negative number
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* **Type**: float
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* **Default value**: 0
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* **Required**: *no*
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* *offset*
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* **Description**: *offset* is a shift of box respectively to top left corner. For example, *offset* equal 85 means that the shift of neighborhood prior boxes centers is 85.
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* **Range of values**: floating point non-negative number
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* **Type**: float
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* **Default value**: None
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* **Required**: *yes*
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* *variance*
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* **Description**: *variance* denotes a variance of adjusting bounding boxes. The attribute could contain 0, 1 or 4 elements.
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* **Range of values**: floating point positive numbers
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* **Type**: float[]
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* **Default value**: []
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* **Required**: *no*
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* *scale_all_sizes*
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* **Description**: *scale_all_sizes* is a flag that denotes type of inference. For example, *scale_all_sizes* equals 0 means that the PriorBox layer is inferred in MXNet-like manner. In particular, *max_size* attribute is ignored.
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* **Range of values**:
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* False - *max_size* is ignored
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* True - *max_size* is used
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* **Type**: boolean
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* **Default value**: True
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* **Required**: *no*
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* *fixed_ratio*
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* **Description**: *fixed_ratio* is an aspect ratio of a box. For example, *fixed_ratio* equal to 2.000000 means that the aspect ratio for the first box aspect ratio is 2.
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* **Range of values**: a list of positive floating-point numbers
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* **Type**: `float[]`
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* **Default value**: None
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* **Required**: *no*
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* *fixed_size*
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* **Description**: *fixed_size* is an initial box size (in pixels). For example, *fixed_size* equal to 15 means that the initial box size is 15.
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* **Range of values**: a list of positive floating-point numbers
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* **Type**: `float[]`
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* **Default value**: None
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* **Required**: *no*
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* *density*
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* **Description**: *density* is the square root of the number of boxes of each type. For example, *density* equal to 2 means that the first box generates four boxes of the same size and with the same shifted centers.
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* **Range of values**: a list of positive floating-point numbers
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* **Type**: `float[]`
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* **Default value**: None
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* **Required**: *no*
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**Inputs**:
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* **1**: `output_size` - 1D tensor with two integer elements `[height, width]`. Specifies the spatial size of generated grid with boxes. Required.
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* **2**: `image_size` - 1D tensor with two integer elements `[image_height, image_width]` that specifies shape of the image for which boxes are generated. Required.
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**Outputs**:
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* **1**: 2D tensor of shape `[2, 4 * height * width * priors_per_point]` with box coordinates. The `priors_per_point` is the number of boxes generated per each grid element. The number depends on layer attribute values.
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**Detailed description**:
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*PriorBox* computes coordinates of prior boxes by following:
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1. First calculates *center_x* and *center_y* of prior box:
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\f[
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W \equiv Width \quad Of \quad Image
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\f]
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\f[
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H \equiv Height \quad Of \quad Image
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\f]
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* If step equals 0:
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\f[
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center_x=(w+0.5)
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\f]
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\f[
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center_y=(h+0.5)
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\f]
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* else:
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\f[
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center_x=(w+offset)*step
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\f]
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\f[
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center_y=(h+offset)*step
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\f]
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\f[
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w \subset \left( 0, W \right )
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\f]
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\f[
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h \subset \left( 0, H \right )
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\f]
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2. Then, for each \f$ s \subset \left( 0, min_sizes \right ) \f$ calculates coordinates of prior boxes:
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\f[
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xmin = \frac{\frac{center_x - s}{2}}{W}
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\f]
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\f[
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ymin = \frac{\frac{center_y - s}{2}}{H}
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\f]
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\f[
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xmax = \frac{\frac{center_x + s}{2}}{W}
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\f]
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\f[
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ymin = \frac{\frac{center_y + s}{2}}{H}
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\f]
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**Example**
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```xml
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<layer type="PriorBox" ...>
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<data aspect_ratio="2.0" clip="0" density="" fixed_ratio="" fixed_size="" flip="1" max_size="38.46" min_size="16.0" offset="0.5" step="16.0" variance="0.1,0.1,0.2,0.2"/>
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<input>
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<port id="0">
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<dim>2</dim> <!-- values: [24, 42] -->
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</port>
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<port id="1">
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<dim>2</dim> <!-- values: [384, 672] -->
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</port>
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</input>
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<output>
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<port id="2">
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<dim>2</dim>
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<dim>16128</dim>
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</port>
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</output>
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</layer>
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``` |