US20060280074A1 - Image storing apparatus, control method for image storing apparatus, and control program for image storing apparatus - Google Patents

Image storing apparatus, control method for image storing apparatus, and control program for image storing apparatus Download PDF

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Publication number
US20060280074A1
US20060280074A1 US11/447,158 US44715806A US2006280074A1 US 20060280074 A1 US20060280074 A1 US 20060280074A1 US 44715806 A US44715806 A US 44715806A US 2006280074 A1 US2006280074 A1 US 2006280074A1
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United States
Prior art keywords
recording medium
unique
file
external apparatus
stored
Prior art date
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Abandoned
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US11/447,158
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English (en)
Inventor
Akihiro Yoshitani
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Canon Inc
Original Assignee
Canon Inc
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Publication date
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Assigned to CANON KABUSHIKI KAISHA reassignment CANON KABUSHIKI KAISHA ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: YOSHITANI, AKIHIRO
Publication of US20060280074A1 publication Critical patent/US20060280074A1/en
Priority to US13/051,039 priority Critical patent/US8855463B2/en
Abandoned legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N1/00Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
    • H04N1/21Intermediate information storage
    • H04N1/2166Intermediate information storage for mass storage, e.g. in document filing systems
    • H04N1/217Interfaces allowing access to a single user
    • H04N1/2175Interfaces allowing access to a single user with local image input
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N1/00Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
    • H04N1/00127Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture
    • H04N1/00132Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture in a digital photofinishing system, i.e. a system where digital photographic images undergo typical photofinishing processing, e.g. printing ordering
    • H04N1/00148Storage
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N2201/00Indexing scheme relating to scanning, transmission or reproduction of documents or the like, and to details thereof
    • H04N2201/0077Types of the still picture apparatus
    • H04N2201/0084Digital still camera
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N2201/00Indexing scheme relating to scanning, transmission or reproduction of documents or the like, and to details thereof
    • H04N2201/0077Types of the still picture apparatus
    • H04N2201/0087Image storage device

Definitions

  • the invention relates to an image storing apparatus for reading out image data from a recording medium or an external apparatus and storing it into a high capacity storage unit, a control method for such an apparatus, and a control program for such an apparatus.
  • photo image data formed by photographing an object by a digital camera is temporarily stored into a recording medium such as a compact flash (registered trademark (hereinbelow, omitted)) mounted in the digital camera. Since a capacity of the recording medium is not so large, generally, the photo image data in the recording medium is copied into a hard disk or the like of a PC (personal computer) or is read out of the hard disk and copied into a CD-R or a DVD-R, thereby accumulating/storing the data. That is, in most cases, the recording medium is used only as a temporary recording location of the photo image data.
  • a compact flash registered trademark (hereinbelow, omitted)
  • Such a type of photostorage has a function of automatically copying files in the recording medium into the hard disk device when the recording medium in which the photo image data has been stored is mounted into the slot, and can accumulate/store a large amount of photo image data without using the PC.
  • Such a function of the photostorage can be embodied by constructing it as a stand-alone product, by constructing it by PC hardware having the high capacity storage unit and software, or by constructing it by a printer which can perform direct printing, a multifunction (or hybrid) image processing apparatus in which a printing function, a communicating function, and the like are integrated, or the like so long as the high capacity storage unit is provided for such an apparatus.
  • the operation to copy (or move) the files without overlapping is not so easy but it takes a time and is troublesome for the user.
  • the medium in which the image files have been stored is connected to the slot of the photostorage (or the digital camera or the like is connected to a USB port of the photostorage), and the files can be certainly copied (or moved) without overlapping only by the operation (for example, one specific button is pressed) which can be easily executed even by the user interface of the stand-alone type apparatus, the printer, the multifunction image processing apparatus, or the like without needing any other operation.
  • FIG. 1 is a block diagram showing a fundamental construction of an image storing apparatus to which the invention is applied;
  • FIG. 2 is an explanatory diagram showing a construction of a management table (ID table) of the apparatus of FIG. 1 ;
  • FIG. 3 is a flowchart showing image data storing control in the apparatus of FIG. 1 ;
  • FIG. 4 is an explanatory diagram showing a construction of a file system formed on a recording medium in accordance with the DCF standard.
  • FIG. 1 shows a construction of the image storing apparatus (photostorage) to which the invention is applied.
  • the construction of FIG. 1 is common not only to the stand-alone type photostorage but also to the case of constructing the photostorage by the PC hardware and software or the case of mounting the photostorage in the printer which can perform the direct printing, the multifunction image processing apparatus in which the printing function, the communicating function, and the like are integrated, or the like.
  • reference numeral 1 denotes a high capacity storage unit to store image data.
  • the high capacity storage unit 1 is constructed by a hard disk device or the like.
  • Reference numeral 2 denotes a CPU for integratedly controlling a whole system.
  • the CPU 2 controls the photostorage operation in accordance with software which has been stored in a ROM 7 (or the high capacity storage unit 1 ) and which will be explained hereinafter.
  • a RAM 8 is used as a work area. Management data or the like necessary for controlling the apparatus is stored in an EEPROM 9 even in the OFF state of a power source of the apparatus.
  • a management table ( FIG. 2 ) to control the photostorage operation as will be explained hereinafter is used in the embodiment.
  • This management table is stored in the high capacity storage unit 1 (or EEPROM 9 ) or the like.
  • Reference numeral 3 denotes a recording medium such as compact flash (CF) card, SD card, or the like which can record the image data.
  • This recording medium is a general medium and can be used in common with digital cameras (for example, products made by other companies) unrelated to the present apparatus.
  • the recording medium 3 can be also replaced by an external apparatus (digital camera, PC, or the like) in which the image data has been stored as will be explained hereinafter.
  • Reference numeral 4 denotes a slot adapted to mount the recording medium 3 .
  • the CPU 2 can write and read digital data into/from the recording medium 3 .
  • a denomination “slot” is used hereinbelow with respect to the member shown by reference numeral 4 for convenience of explanation, the member shown by reference numeral 4 can be also replaced by arbitrary interface means such as a USB port or the like to which the recording medium or external apparatus in which the image data has been stored can be connected.
  • Reference numerals 5 and 6 denote means constructing a user interface. That is, reference numeral 5 denotes a display unit which can display bit map image data and reference numeral 6 denotes an operation unit which is used for the user to operate the present apparatus by using a cursor key or the like.
  • the blocks shown by reference numerals 1 , 2 , 4 , 5 , and 6 are mutually connected by a system bus of the apparatus.
  • FIG. 4 shows an example of a structure in the medium in which image files have been recorded by a recording apparatus (writer) such as a digital camera or the like on the basis of the DCF standard.
  • Reference numerals 41 and 42 denote directories (folders). That is, reference numeral 41 denotes the still image recording directory specified by the DCF.
  • the directories 42 as other layers can be stored under the directory 41 . In this instance, the two directories of directory names “100PHOTO” and “200PHOTO” are formed and image files 43 of an Exif(JPEG) format are stored under each directory 42 .
  • each image file is managed by the directory name including numerals (directory number) of three digits and a file name including numerals (file number) of four digits.
  • the directory number is embedded in the head of the directory name like “100PHOTO” or “200PHOTO” in FIG. 4 and the file number is embedded in the position of four digits just before a JPG extension like “ABCD0001.JPG”, “MXPD4432.JPG”, or the like (all of them are shown by the decimal notation).
  • the image file can be managed by the numerals of the total of seven digits.
  • the decimal number of seven digits constructed by combining the directory number as upper digits and the file number as lower digits is assumed to be a “file ID” and used as data which specifies the file, thereby making it possible to prevent the overlap copy (or movement) in the management table with the simple construction.
  • the 7-digit number has to be formed by a monotone increase without the overlap.
  • the file in which the numerical value of the file ID is the largest among the files in the mounted recording medium is assumed to be
  • the file ID of this file is equal to 2011092, when this digital camera writes a new image file into this recording medium, the file ID has to be equal to or larger than 2011093.
  • the directory number of the directory in which the file is written has to be equal to or larger than 201 and the file number of this file has to be equal to or larger than 1093 (however, the number of the ID may be skipped).
  • the unique ID is used to prevent the copy of the data with a copyright by encrypting the data by using the unique ID as a key (for example, refer to Japanese Patent Application Laid-open 2001-155425 or the like). In the embodiment, however, it is used merely to identify the recording medium.
  • the management table as shown in FIG. 2 in which the maximum value of the file IDs (hereinafter, referred to as MaxFileID) of the copied photo image data and the unique ID of the recording medium (hereinafter, referred to as MediaID) are combined is referred to.
  • a storing destination of the management table is assumed to be the high capacity storage unit 1 , the EEPROM 9 , or a memory (not shown) in the apparatus as mentioned above.
  • the management table is called an ID table hereinbelow.
  • the CPU 2 checks the unique ID of the inserted medium and searches the ID table by using the unique ID, so that the latest file ID of the photo image data which has previously been copied can be recognized. Therefore, in the present copying process, such a situation that the same file as the image data which has already been copied to the image storing apparatus is copied so as to overlap is prevented.
  • FIG. 3 shows a control procedure which is executed by the CPU 2 when the photo image data recorded in the recording medium mounted into the slot 4 of the image storing apparatus is copied to the high capacity storage unit 1 .
  • the procedure of FIG. 3 is stored as a program of the CPU 2 into the ROM 7 or the high capacity storage unit 1 .
  • the CPU 2 detects the mounting of the recording medium by an interface signal of the slot 4 (or by a media sensor or the like if the sensor or the like of the recording medium has been provided for the slot) (step S 301 ).
  • variable readID is held in a predetermined area or the like in the RAM 8 (this is true of other variables).
  • step S 304 If such entries do not exist, step S 306 follows (step S 303 ).
  • the recording medium which was read in the past in other words, the recording medium in which the entry having readID identical to the value of MediaID exists in the ID table has been inserted, the value of MaxFileID corresponding to the unique ID is read out of the ID table (step S 304 ).
  • read-out MaxFileID is set into a variable lastID (step S 305 ) and the processing routine advances to step S 307 .
  • step S 306 If the recording medium which was not read in the past and in which readID does not exist as a value of MediaID in the ID table has been inserted, 0 is set into the variable lastID (step S 306 ) and the processing routine advances to step S 307 .
  • the mounted recording medium is searched and all of the image files whose file IDs are larger than lastID among the image files recorded in the recording medium are copied (or moved) to the high capacity storage unit 1 in the image storing apparatus (step S 307 ).
  • step S 307 the file ID of the file having the largest file ID among the image files copied to the high capacity storage unit 1 in step S 307 is set into the variable lastID (step S 308 ).
  • step S 303 A discrimination result of step S 303 is checked again. If the recording medium in which readID exists as a value of MediaID of an arbitrary entry in the ID table, in other words, the recording medium which was read in the past has been inserted, the processing routine advances to step S 310 . If the recording medium which was not read in the past has been inserted, the processing routine advances to step S 311 (step S 309 ).
  • step S 311 If the recording medium which was not read in the past has been inserted, a new entry having the variable readID in the column of MediaID is formed in the ID table and the value of lastID is written into the column of MaxFileID (step S 311 ) and the processing routine is finished.
  • the embodiment merely by mounting the recording medium into the image storing apparatus, when the image file is copied from the recording medium to the image storing apparatus, information of the maximum value of the file IDs in which the directory number of the DCF as upper digits and the file number as lower digits are combined is stored in association with the unique ID of the recording medium, thereby making it possible to prevent the same file from being copied to the image storing apparatus a plurality of number of times so as to overlap.
  • the user can certainly copy (move) the files without overlapping by the extremely simple operation without needing the operation to rearrange the overlapped image files and select the files to be copied (moved) after the copy (or movement).
  • the high capacity storage unit in the image storing apparatus can be efficiently used is obtained. Since the user interface to execute the complicated operation is unnecessary, the invention can be easily embodied even in the apparatus such as stand-alone type apparatus, printer, multifunction image processing apparatus, or the like which does not have the sufficient user interface means.
  • each file ID can be formed by combining the directory number and the file number in the DCF standard which are managed so as to monotonously increase without overlapping.
  • the overlap copy (movement) of the files can be prevented by the small calculation costs without needing another overlap avoiding process.
  • the recording media are different, even if they have the same file ID, there is a possibility that the contents of the photo image data differ.
  • the unique ID of the recording medium and the file ID of the file in the recording medium are associated with each other, even when the file IDs are identical, if the unique IDs of the recording media are different, such a file can be recognized as a different file and copied to the high capacity storage unit 1 .
  • a storing structure at the time when the image file is copied to the high capacity storage unit 1 is arbitrary. For example, if a directory (folder) having a name including the unique ID of the recording medium is formed in the high capacity storage unit 1 (for example, when a recording medium is newly mounted) and the file read out of the recording medium having such a unique ID is recorded into such a directory (folder), the image file can be stored without being overwritten.
  • the unique ID of the recording medium exists in the SD card or the like, it does not exist in a part of the recording media such as a compact flash and the like, so that such a unique ID cannot be used.
  • the CPU 2 forms a unique value by using proper random numbers in the image storing apparatus, forms a file of a specific name including such a value (for example, dcim misc mediaid.txt), subsequently, reads such a file, obtains the unique value, and regards such a value as a unique ID of the recording medium, so that the process of substantially the same contents as those mentioned above can be executed.
  • the recording medium is the recording medium itself such as SD card or CF card.
  • the above construction can be similarly embodied even in such a construction that the recording medium is connected to an external apparatus such as digital camera or PC (mobile PC, PDA, notebook-sized PC, etc.), those apparatuses are connected to the image storing apparatus through an interface such as a USB or the like, and the recording medium operates so that it can be handled as an external storing device from the image storing apparatus side.
  • the external apparatus such as digital camera, PC, or the like has a detachable recording medium.
  • the above construction can be similarly embodied even in such a construction that the external apparatus itself (or a storing device such as a hard disk or the like) can be regarded as a recording medium which can be connected through a proper interface such as a USB or the like.
  • the recording medium has been mounted in the external apparatus or the like, it is sufficient to similarly read out and use the unique ID of the recording medium. If a serial number, an MAC address (unique address of the apparatus/device), or the like of the external apparatus can be read out, those information may be substituted for the unique ID of the recording medium.
  • the invention can be used not only for the stand-alone type photostorage but also for for various image storing apparatuses such as various constructions each having the high capacity storage unit and the function of fetching the image data.
  • the invention can be used in the photostorage constructed by the PC hardware and the software is mounted, or where the photostorage is mounted in the printer which can perform the direct printing, the multifunction image processing apparatus or the like in which the printing function, the communicating function, and the like are integrated, and the like.
  • the software of the invention is stored into the ROM or hard disk in those apparatuses and read out and supplied therefrom, the software can be also installed or updated via a network.
  • the control is made so that the image files having the file IDs lager than the maximum value of the file IDs corresponding to the unique ID of the recording medium or external apparatus in the management table are read out and stored into the high capacity storage unit. Therefore, the user can certainly copy (move) the files without the overlap by the extremely simple operation without needing the operation to rearrange the overlapped image files and select the files to be copied (moved) after the copy (or movement). Thus, such an excellent effect that the high capacity storage unit in the image storing apparatus can be efficiently used is obtained.
  • the invention can be easily embodied even in the apparatus such as stand-alone type apparatus, printer, multifunction image processing apparatus, or the like which does not have the sufficient user interface means. Since it is sufficient to store only the maximum value of the file IDs in association with the unique ID of the recording medium or external apparatus, it is sufficient that the capacity of the management table is small and the process for maintaining the management table is also extremely easy.
  • Each of the file IDs can be formed by combining the directory number and the file number in the DCF standard which are managed so as to monotonously increase without overlapping.
  • the overlap copy (movement) of the files can be prevented by the small calculation costs without needing another overlap avoiding process.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Information Retrieval, Db Structures And Fs Structures Therefor (AREA)
  • Television Signal Processing For Recording (AREA)
  • Signal Processing For Digital Recording And Reproducing (AREA)
  • Management Or Editing Of Information On Record Carriers (AREA)
US11/447,158 2005-06-09 2006-06-06 Image storing apparatus, control method for image storing apparatus, and control program for image storing apparatus Abandoned US20060280074A1 (en)

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JP2005168954A JP4574458B2 (ja) 2005-06-09 2005-06-09 記憶制御装置、記憶制御方法、およびプログラム

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WO2013018345A1 (ja) 2011-08-02 2013-02-07 パナソニック株式会社 映像情報取込装置
JP7146428B2 (ja) * 2018-03-30 2022-10-04 キヤノン株式会社 画像記録装置及びその制御方法

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US20110167099A1 (en) 2011-07-07
JP2006345218A (ja) 2006-12-21
US8855463B2 (en) 2014-10-07
JP4574458B2 (ja) 2010-11-04

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