compose7compose7Compose7Compose7compose7 (算子名称)
名称
compose7compose7Compose7Compose7compose7 — Convert 7 images into a seven-channel image.
参数签名
Herror compose7(const Hobject Image1, const Hobject Image2, const Hobject Image3, const Hobject Image4, const Hobject Image5, const Hobject Image6, const Hobject Image7, Hobject* MultiChannelImage)
Herror T_compose7(const Hobject Image1, const Hobject Image2, const Hobject Image3, const Hobject Image4, const Hobject Image5, const Hobject Image6, const Hobject Image7, Hobject* MultiChannelImage)
void Compose7(const HObject& Image1, const HObject& Image2, const HObject& Image3, const HObject& Image4, const HObject& Image5, const HObject& Image6, const HObject& Image7, HObject* MultiChannelImage)
HImage HImage::Compose7(const HImage& Image2, const HImage& Image3, const HImage& Image4, const HImage& Image5, const HImage& Image6, const HImage& Image7) const
static void HOperatorSet.Compose7(HObject image1, HObject image2, HObject image3, HObject image4, HObject image5, HObject image6, HObject image7, out HObject multiChannelImage)
HImage HImage.Compose7(HImage image2, HImage image3, HImage image4, HImage image5, HImage image6, HImage image7)
描述
该算子 compose7compose7Compose7Compose7Compose7compose7 converts 7 one-channel images into
a 7-channel image. The definition domain is calculated as the
intersection of the definition domains of the input images.
No new storage is allocated for the multi-channel image.
Instead, the created multi-channel image contains references to the existing
input images.
运行信息
- Supports objects on compute devices.
- 多线程类型:可重入(与非独占操作符并行运行)。
- 多线程作用域:全局(可以从任何线程调用)。
- 在元组级别自动并行化。
参数表
Image1Image1Image1Image1image1image_1 (input_object) singlechannelimage(-array) → objectHImageHObjectHImageHobject (byte / direction / cyclic / int1 / int2 / uint2 / int4 / int8 / real / complex / vector_field)
Input image 1.
Image2Image2Image2Image2image2image_2 (input_object) singlechannelimage(-array) → objectHImageHObjectHImageHobject (byte / direction / cyclic / int1 / int2 / uint2 / int4 / int8 / real / complex / vector_field)
Input image 2.
Image3Image3Image3Image3image3image_3 (input_object) singlechannelimage(-array) → objectHImageHObjectHImageHobject (byte / direction / cyclic / int1 / int2 / uint2 / int4 / int8 / real / complex / vector_field)
Input image 3.
Image4Image4Image4Image4image4image_4 (input_object) singlechannelimage(-array) → objectHImageHObjectHImageHobject (byte / direction / cyclic / int1 / int2 / uint2 / int4 / int8 / real / complex / vector_field)
Input image 4.
Image5Image5Image5Image5image5image_5 (input_object) singlechannelimage(-array) → objectHImageHObjectHImageHobject (byte / direction / cyclic / int1 / int2 / uint2 / int4 / int8 / real / complex / vector_field)
Input image 5.
Image6Image6Image6Image6image6image_6 (input_object) singlechannelimage(-array) → objectHImageHObjectHImageHobject (byte / direction / cyclic / int1 / int2 / uint2 / int4 / int8 / real / complex / vector_field)
Input image 6.
Image7Image7Image7Image7image7image_7 (input_object) singlechannelimage(-array) → objectHImageHObjectHImageHobject (byte / direction / cyclic / int1 / int2 / uint2 / int4 / int8 / real / complex / vector_field)
Input image 7.
MultiChannelImageMultiChannelImageMultiChannelImageMultiChannelImagemultiChannelImagemulti_channel_image (output_object) multichannel-image(-array) → objectHImageHObjectHImageHobject * (byte / direction / cyclic / int1 / int2 / uint2 / int4 / int8 / real / complex / vector_field)
Multi-channel image.
可能的后置算子
disp_imagedisp_imageDispImageDispImageDispImagedisp_image
可替代算子
append_channelappend_channelAppendChannelAppendChannelAppendChannelappend_channel
参考其它
decompose7decompose7Decompose7Decompose7Decompose7decompose7
模块
Foundation