source: proiecte/pmake3d/make3d_original/Make3dSingleImageStanford_version0.1/image3dstiching/useful/ImgOverLay.m @ 37

Last change on this file since 37 was 37, checked in by (none), 14 years ago

Added original make3d

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1% *  This code was used in the following articles:
2% *  [1] Learning 3-D Scene Structure from a Single Still Image,
3% *      Ashutosh Saxena, Min Sun, Andrew Y. Ng,
4% *      In ICCV workshop on 3D Representation for Recognition (3dRR-07), 2007.
5% *      (best paper)
6% *  [2] 3-D Reconstruction from Sparse Views using Monocular Vision,
7% *      Ashutosh Saxena, Min Sun, Andrew Y. Ng,
8% *      In ICCV workshop on Virtual Representations and Modeling
9% *      of Large-scale environments (VRML), 2007.
10% *  [3] 3-D Depth Reconstruction from a Single Still Image,
11% *      Ashutosh Saxena, Sung H. Chung, Andrew Y. Ng.
12% *      International Journal of Computer Vision (IJCV), Aug 2007.
13% *  [6] Learning Depth from Single Monocular Images,
14% *      Ashutosh Saxena, Sung H. Chung, Andrew Y. Ng.
15% *      In Neural Information Processing Systems (NIPS) 18, 2005.
16% *
17% *  These articles are available at:
18% *  http://make3d.stanford.edu/publications
19% *
20% *  We request that you cite the papers [1], [3] and [6] in any of
21% *  your reports that uses this code.
22% *  Further, if you use the code in image3dstiching/ (multiple image version),
23% *  then please cite [2].
24% * 
25% *  If you use the code in third_party/, then PLEASE CITE and follow the
26% *  LICENSE OF THE CORRESPONDING THIRD PARTY CODE.
27% *
28% *  Finally, this code is for non-commercial use only.  For further
29% *  information and to obtain a copy of the license, see
30% *
31% *  http://make3d.stanford.edu/publications/code
32% *
33% *  Also, the software distributed under the License is distributed on an
34% * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either
35% *  express or implied.   See the License for the specific language governing
36% *  permissions and limitations under the License.
37% *
38% */
39function [Box]=ImgOverLay(Target, Field, FieldStitchPosition, TargetStitchPosition)
40
41% []=ImgOverLay(Target, Field, FieldStitchPosition, TargetStitchPosition)
42% This functino overlay the field and target image given at input
43FieldStitchPosition = round( FieldStitchPosition);
44TargetStitchPosition = round( TargetStitchPosition);
45
46NumberOfChannel = size(Target,3);
47TargetSize = size( Target);
48FieldSize = size( Field);
49
50BoxBottomRight = max( [ size(Field); FieldStitchPosition + ( TargetSize - TargetStitchPosition)], [], 1);
51BoxTopLeft = min( [ ones(1,2); FieldStitchPosition - TargetStitchPosition + 1], [], 1);
52BoxSize = BoxBottomRight - BoxTopLeft + 1;
53
54FieldTopLeftPosition = ones(1,2) - BoxTopLeft + 1;
55TargetTopLeftPosition = ( FieldStitchPosition - TargetStitchPosition + 1) -BoxTopLeft + 1;
56
57% initialize the Box holding Target and Field
58BoxTarget = repmat( zeros( BoxSize), [1 1 NumberOfChannel]);
59BoxField = repmat( zeros( BoxSize), [1 1 NumberOfChannel]);
60Box = zeros(size(BoxField));
61
62% change the order of dimension
63BoxTarget = permute(BoxTarget, [3 1 2]);
64BoxField = permute(BoxField, [3 1 2]);
65Box = permute(Box, [3 1 2]);
66Target = permute(Target, [3 1 2]);
67Field = permute(Field, [3 1 2]);
68
69% enter info of Taget and Field in specific position in BoxTarget and BoxField
70BoxField(:,FieldTopLeftPosition(1):( FieldTopLeftPosition(1)+FieldSize(1)-1), FieldTopLeftPosition(2):(FieldTopLeftPosition(2)+FieldSize(2)-1)) = Field;
71BoxTarget(:,TargetTopLeftPosition(1):( TargetTopLeftPosition(1)+TargetSize(1)-1), TargetTopLeftPosition(2):(TargetTopLeftPosition(2)+TargetSize(2)-1)) = Target;
72
73% Merging this two images
74MaskTarget = BoxTarget(1,:,:) ~= 0 & BoxField(1,:,:) ==0;
75MaskField = BoxTarget(1,:,:) == 0 & BoxField(1,:,:) ~=0;
76for i = 1:NumberOfChannel
77    Box(i,MaskTarget) = BoxTarget(i,MaskTarget);
78    Box(i,MaskField) = BoxField(i,MaskField);
79    Box(i,~MaskTarget & ~MaskField) = (BoxField(i,~MaskTarget & ~MaskField) + BoxTarget(i,~MaskTarget & ~MaskField))/2;
80end   
81
82Box = permute(Box, [2 3 1]);
83return;
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