Abstract:
One information processing apparatus among a plurality of information processing apparatuses performs virus detection processing for detecting a computer virus. When a computer virus has been detected from the one information processing apparatus by the virus detection processing, the one information processing apparatus transmits an execution request to perform the virus detection processing to another information processing apparatus different from the one information processing apparatus among the plurality of information processing apparatuses.
Abstract:
A multifunction device integrally includes a first device and a second device. The first device has a first system, and the second system has a second system. The second device requests, in response to a predetermined command entered, a first snapshot of the first device from the first device. The first device generates the first snapshot in response to a request from the second device, and sends the first snapshot to the second device. The second device generates a second snapshot of the second device in response to the predetermined command entered, and saves, to a save destination, the first snapshot sent and the second snapshot. The first device starts the first system by using the first snapshot saved in the save destination. The second device starts the second system by using the second snapshot saved in the save destination.
Abstract:
An image processing apparatus includes: an image processing part; a storage part including a nonvolatile region that stores data in a nonvolatile manner; and a hardware processor that controls the image processing part, wherein the nonvolatile region includes a plurality of storage regions, the storage part stores setting information indicating whether each of the plurality of storage regions is a target of malicious code detection processing, and the hardware processor performs the malicious code detection processing only on a storage region that is the target of the malicious code detection processing based on the setting information among the plurality of storage regions.
Abstract:
An image reading device comprises: a feeder that feeds a document along with a predetermined path; a first reading part that reads a first side of the document at a first position in the path and creates a first image; a second reading part that reads a second side of the document at a second position which is located posterior to the first position in the path and creates a second image; a synthesizing part that lays the first image and the second image on top of one another and creates a composite image; and a detecting part that detects a characteristic pattern of a specific document from the composite image created by the synthesizing part.
Abstract:
An image processing system includes a first image processing device including a first processor. The first processor executes a process including: detecting a change in a load status at the first image processing device; sending a request for information relating to a load status at the second image processing device to the second image processing device when the change in the load status at the first image processing device is detected; analyzing the information relating to the load status at the second image processing device, and determining whether or not the first image processing device establishes wireless communication with a portable terminal; and adjusting to relatively lower a radio field strength from the first image processing device below the radio field strength from the second image processing device when the first image processing device determines not to establish wireless communication with the portable terminal.
Abstract:
An image processing system includes a first image processing device including a first processor. The first processor executes a process including: detecting a change in a load status at the first image processing device; sending a request for information relating to a load status at the second image processing device to the second image processing device when the change in the load status at the first image processing device is detected; analyzing the information relating to the load status at the second image processing device, and determining whether or not the first image processing device establishes wireless communication with a portable terminal; and adjusting to relatively lower a radio field strength from the first image processing device below the radio field strength from the second image processing device when the first image processing device determines not to establish wireless communication with the portable terminal.
Abstract:
An information processing apparatus includes a hardware processor. The hardware processor executes an firmware of a first version, acquires a set of firmware of a second version and verification state information that indicates progress of verification of each of a plurality of processes defined by the firmware of the second version from a server, and updates the firmware of the first version with the firmware of the second version. The verification state information includes a completed state where the verification of a non-occurrence of an error is completed and an unverified state where the verification of the non-occurrence of an error is not completed, and the hardware professor sets a settability state of an unverified process out of the plurality of processes to a disabled state where a user cannot make settings to allow execution of the unverified process.
Abstract:
A multifunction device integrally includes a first device and a second device. The first device has a first system, and the second system has a second system. The second device requests, in response to a predetermined command entered, a first snapshot of the first device from the first device. The first device generates the first snapshot in response to a request from the second device, and sends the first snapshot to the second device. The second device generates a second snapshot of the second device in response to the predetermined command entered, and saves, to a save destination, the first snapshot sent and the second snapshot. The first device starts the first system by using the first snapshot saved in the save destination. The second device starts the second system by using the second snapshot saved in the save destination.
Abstract:
An image processing apparatus includes a main processor configured to process packets received by a wired LAN module and a wireless LAN module in a normal state and a sub processor configured to process packets received by the wired LAN module and the wireless LAN module in place of the main processor in a first power saving state in which supply of electric power to the main processor is stopped. In the first power saving state, the sub processor is configured to process a packet received by the wired LAN module by using a first combination of a MAC address and an IP address and to process a packet received by the wireless LAN module by using a second combination of a MAC address and an IP address.
Abstract:
An image processing system for generating a processed image depending on an input image is provided. The system includes an image processing portion configured to add, to the processed image, an AR marker which is an image for identifying missing information missing from information of the input image; an AR content generating portion configured to generate an AR content corresponding to the missing information; an AR marker recognizing portion configured to recognize the AR marker contained in a photographed image obtained by photographing the processed image; and an AR display processing portion configured to display the AR content stored in association with the recognized AR marker in a manner to be superimposed on the processed image.