Electronic apparatus and control method
An electronic apparatus includes: a plurality of imaging devices including a first imaging device acquiring a first image, and a second imaging device acquiring a second image; and at least one processor capable of causing the electronic apparatus to: acquire a shooting parameter of at least one of the plurality of imaging devices; and perform control, in a case where a shooting parameter of the first imaging device is changed to a first shooting parameter by a user, such as to switch determinations whether or not to change a shooting parameter of the second imaging device based on the first shooting parameter, depending on whether or not a first relationship satisfies a predetermined condition, the first relationship being either a positional relationship between the first imaging device and the second imaging device, or a relationship between the first image and the second image.
1 . An electronic apparatus comprising:
a plurality of imaging devices including a first imaging device configured to acquire a first image, and a second imaging device configured to acquire a second image; and
at least one processor capable of causing the electronic apparatus to:
acquire a shooting parameter of at least one of the plurality of imaging devices;
perform control to change a shooting parameter of the second imaging device to a second shooting parameter based on a first shooting parameter, perform control so that the first imaging device performs processing for shooting with the first shooting parameter, and perform control so that the second imaging device performs processing for shooting with the second shooting parameter in a case where a shooting parameter of the first imaging device is changed to the first shooting parameter by a user, and where a first relationship satisfies a predetermined condition, the first relationship being either a positional relationship between the first imaging device and the second imaging device, or a relationship between the first image and the second image; and
perform control not to change the shooting parameter of the second imaging device based on the first shooting parameter, perform control so that the first imaging device performs processing for shooting with the first shooting parameter, and perform control so that the second imaging device performs processing for shooting with the shooting parameter of the second imaging device, in a case where the shooting parameter of the first imaging device is changed to the first shooting parameter by a user, and where the first relationship does not satisfy the predetermined condition.
2 . The electronic apparatus according to claim 1 , wherein
the shooting parameter is a parameter set for an imaging device, or a parameter applied to an image acquired by the imaging device.
3 . The electronic apparatus according to claim 1 , wherein
the plurality of imaging devices includes a third imaging device acquiring a third image, and wherein
the at least one processor is capable of causing the electronic apparatus to perform control, in a case where the shooting parameter of the first imaging device is changed to the first shooting parameter by the user, and where the first relationship satisfies the predetermined condition, such as not to change a shooting parameter of the third imaging device based on the first shooting parameter, if either a positional relationship between the first imaging device and the third imaging device, or a relationship between the first image and the third image, does not satisfy the predetermined condition.
4 . The electronic apparatus according to claim 1 , wherein
the first relationship is the positional relationship between the first imaging device and the second imaging device, and wherein
a case where a positional relationship between two imaging devices satisfies the predetermined condition is a case where the two imaging devices are provided on one surface of the electronic apparatus.
5 . The electronic apparatus according to claim 1 , wherein
the first relationship is the relationship between the first image and the second image, and wherein
a case where a relationship between two images satisfies the predetermined condition is a case where the two images both capture a specific object.
6 . The electronic apparatus according to claim 1 , wherein
the first relationship is the relationship between the first image and the second image, and wherein
a case where a relationship between two images satisfies the predetermined condition is a case where a difference in brightness between the two images does not exceed a predetermined value.
7 . The electronic apparatus according to claim 1 , wherein
the first relationship is the relationship between the first image and the second image, and wherein
a case where a relationship between two images satisfies the predetermined condition is a case where the two images both capture the specific object and a difference in brightness between the two images does not exceed a predetermined value.
8 . The electronic apparatus according to claim 1 , wherein
the shooting parameter includes a parameter relating to lightness.
9 . The electronic apparatus according to claim 8 , wherein
the shooting parameter includes at least one of shutter speed, aperture, strobe light condition, ISO sensitivity, and brightness.
10 . The electronic apparatus according to claim 1 , wherein
the shooting parameter includes a parameter relating to color.
11 . The electronic apparatus according to claim 10 , wherein
the shooting parameter includes at least one of white balance and color temperature.
12 . A control method for an electronic apparatus comprising a plurality of imaging devices including a first imaging device acquiring a first image, and a second imaging device acquiring a second image, the control method comprising:
acquiring a shooting parameter of at least one of the plurality of imaging devices;
controlling to change a shooting parameter of the second imaging device to a second shooting parameter based on a first shooting parameter, controlling so that the first imaging device performs processing for shooting with the first shooting parameter, and controlling so that the second imaging device performs processing for shooting with the second shooting parameter in a case where a shooting parameter of the first imaging device is changed to the first shooting parameter by a user, and where a first relationship satisfies a predetermined condition, the first relationship being either a positional relationship between the first imaging device and the second imaging device, or a relationship between the first image and the second image;
controlling not to change the shooting parameter of the second imaging device based on the first shooting parameter, controlling so that the first imaging device performs processing for shooting with the first shooting parameter, and controlling so that the second imaging device performs processing for shooting with the shooting parameter of the second imaging device, in a case where the shooting parameter of the first imaging device is changed to the first shooting parameter by a user, and where the first relationship does not satisfy the predetermined condition.
13 . A non-transitory computer readable medium that stores a program, wherein the program causes a computer to execute a control method for an electronic apparatus comprising a plurality of imaging devices including a first imaging device acquiring a first image, and a second imaging device acquiring a second image, the control method comprising:
acquiring a shooting parameter of at least one of the plurality of imaging devices;
controlling to change a shooting parameter of the second imaging device to a second shooting parameter based on a first shooting parameter, controlling so that the first imaging device performs processing for shooting with the first shooting parameter, and controlling so that the second imaging device performs processing for shooting with the second shooting parameter in a case where a shooting parameter of the first imaging device is changed to the first shooting parameter by a user, and where a first relationship satisfies a predetermined condition, the first relationship being either a positional relationship between the first imaging device and the second imaging device, or a relationship between the first image and the second image;
controlling not to change the shooting parameter of the second imaging device based on the first shooting parameter, controlling so that the first imaging device performs processing for shooting with the first shooting parameter, and controlling so that the second imaging device performs processing for shooting with the shooting parameter of the second imaging device, in a case where the shooting parameter of the first imaging device is changed to the first shooting parameter by a user, and where the first relationship does not satisfy the predetermined condition.