WO2006040925A1 - 情報表示装置、情報表示方法、コンピュータを情報表示装置として機能させるためのプログラム製品、および記録媒体 - Google Patents
情報表示装置、情報表示方法、コンピュータを情報表示装置として機能させるためのプログラム製品、および記録媒体 Download PDFInfo
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- WO2006040925A1 WO2006040925A1 PCT/JP2005/017799 JP2005017799W WO2006040925A1 WO 2006040925 A1 WO2006040925 A1 WO 2006040925A1 JP 2005017799 W JP2005017799 W JP 2005017799W WO 2006040925 A1 WO2006040925 A1 WO 2006040925A1
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G5/00—Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators
- G09G5/36—Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators characterised by the display of a graphic pattern, e.g. using an all-points-addressable [APA] memory
- G09G5/39—Control of the bit-mapped memory
- G09G5/393—Arrangements for updating the contents of the bit-mapped memory
Definitions
- the present invention relates to control of drawing. More specifically, the present invention relates to an information display device for interrupting and resuming drawing processing, an information display method, a program product for causing a computer to function as an information display device, and a recording medium.
- Patent Document 1 discloses a graphic drawing apparatus capable of correctly resuming drawing after interruption of drawing.
- This graphic drawing device is activated by a CPU (Central Processing Unit) that sets drawing parameters in the parameter register in which parameters necessary for graphic drawing are set, and the register, and is activated by the CPU, and characters are set based on the above parameters.
- a drawing circuit that executes arithmetic processing for drawing a graphic, a temporary register that temporarily stores a halfway arithmetic value for drawing, and a temporary register for saving data during drawing to the CPU when processing is interrupted.
- a reopening unit which resets the drawing data saved at the time of restart into the parameter register and restarts drawing from the state immediately after the interruption.
- the result during drawing calculation is temporarily stored in the temporary register.
- the CPU can resume drawing by reading the result. Even if the drawing process is interrupted, the drawing data can be resumed because the data drawn halfway is not destroyed.
- Patent Document 1 Japanese Patent Application Laid-Open No. 3-171271 Disclosure of the invention
- the display mode in the display area is frequently switched because it is interrupted each time a drawing process interruption request is made. Therefore, the convenience for the user was not always desirable.
- An object of the present invention is to provide an information display device capable of easily realizing interruption of drawing processing.
- Another object of the present invention is to provide an information display device capable of accurately realizing drawing after resumption of interrupted drawing processing without increasing the storage capacity of data more than necessary. is there.
- Another object of the present invention is to provide an information display device capable of shortening the time required for drawing performed after resumption of interrupted drawing processing.
- Another object of the present invention is to provide an information display device capable of improving the convenience for the user.
- Another object of the present invention is to provide an information display method capable of easily realizing interruption of drawing processing. It is to provide the law.
- an information display apparatus includes a display data storage unit for storing display data for displaying an image, and a display area based on the display data.
- the drawing unit is configured to check the interruption state detection unit with the confirmation unit inquiring the force / not force generating the state where the writing is interrupted for each writing of each display data, and the result of the inquiry by the confirmation unit. And a determination unit that determines whether to interrupt the writing of data to the display data storage unit.
- the information display apparatus further includes an interruption processing unit that executes predetermined interruption processing based on the order data when it is determined that the writing is interrupted.
- the image data is data having a hierarchical structure of image information.
- the information display apparatus further includes an interpretation unit that interprets image data based on a hierarchical structure by executing a predetermined interpretation process.
- the information display device further includes a resumption request detection unit that detects a resumption request for resuming writing.
- the drawing unit is a writing unit for writing display data corresponding to an image to be displayed following the image based on the display data written in the display data storage unit to the display data storage unit based on the order data. including.
- the interruption processing unit stores next rank data associated with the image data to be written next to the image data corresponding to the display data for which the writing is completed.
- the writing unit stores display data based on image data associated with the next order data in the display data storage unit.
- the information display device further includes a display data generation unit that generates display data based on the image data.
- the writing unit stores the generated display data in the display data storage unit.
- the display data generation unit generates display data by converting image data into a bitmap data format.
- the information processing device calculates, in response to the detection of the interruption of the writing, area data for specifying a rectangular area in which the image displayed in the display area is included; And an area data storage unit for storing order data associated with the image data for which writing has been interrupted.
- the writing unit responds to the detection of the resumption request, and stores the image data in the rectangular area based on the order data of the image data whose writing has been interrupted.
- the information display device further includes a change detection unit that detects a change in the position of the rectangular area in the display area in response to the detection of the restart request.
- the writing unit stores the image data based on the order data in the rectangular area whose position changes.
- the information display device further includes a communication unit that communicates information.
- the interruption state detection unit detects the occurrence of a state in which writing is interrupted based on communication of information by the communication unit.
- the information display device further includes an input unit that receives an input of an operation.
- the interruption state detection unit detects the occurrence of the state in which the writing is interrupted based on the input of the operation.
- the information display device further includes a detection unit that detects establishment of a predetermined condition.
- the interruption state detection unit detects the occurrence of the state in which the writing is interrupted based on the detection of the satisfaction of the condition.
- the interruption state detection unit further includes a generation unit that generates state data indicating presence or absence of a state in which the writing is interrupted.
- the determination unit determines whether to interrupt the writing of data to the display data storage unit based on the state data.
- the interruption state detection unit includes an instruction output unit that outputs an instruction to interrupt the writing in response to the detection of the state in which the writing is interrupted.
- the information display device further includes a state detection unit that detects a state of writing of data to the display data storage unit based on the output of the instruction. If the state of writing satisfies a predetermined condition, the determination portion determines not to interrupt the writing of data to the display data storage portion, and the state of writing is predetermined. If the above conditions are not satisfied, it is determined that the writing of data to the display data storage unit is interrupted.
- the state detection unit detects a progress state of the writing of the display data to the display data storage unit.
- the determination unit determines that the writing of the data is not interrupted when the writing of the display data is ahead of a predetermined reference, and the writing of the display data is sent more than the reference. In the case, it is determined that the writing of data is interrupted.
- the image data includes vector image data.
- the information display device further includes a display control unit that causes the display unit to display the contents of the display data storage unit at a timing when the determination unit determines that the writing is interrupted.
- the information display device further includes a notification unit that notifies interruption of writing at a timing when the determination unit determines that writing is interrupted.
- the information display device further includes a display control unit for simply displaying unprocessed data at the timing when the determination unit determines that writing is interrupted.
- an information display method comprising the steps of: storing display data for displaying an image in a storage device storing the data; and displaying the image in the display area based on the display data.
- a state for interrupting writing occurs to the interruption state detecting step, and it is asked whether or not the force is generated.
- the information display method further includes an interruption processing step of executing predetermined interruption processing based on the order data, when it is determined that the writing is interrupted.
- a program product for causing a computer to function as an information display device.
- the program product stores the display data for displaying the image on the storage device storing the data on the computer, displaying the image on the display area based on the display data, and a set of drawing information. Storing the plurality of image data respectively represented as each and the respective rank data for specifying the rank for displaying the image based on each of the plurality of image data in association with each other; And a drawing step of writing display data corresponding to each of the plurality of image data in the display data storage step, and a step of detecting occurrence of a state of interrupting the writing.
- the drawing step inquires the interruption state detecting step whether or not the state in which the writing is interrupted occurs for each writing of each display data, and the display data based on the result of the inquiry in the confirmation step. Determining whether or not to interrupt the writing of data to the storing step.
- the program causes the interruption processing step of executing predetermined interruption processing based on the order data.
- a recording medium stores the program product described above.
- the interruption of the drawing process can be executed for each drawing information, so that the image can be accurately displayed even if the drawing is resumed. This makes it possible to easily interrupt the drawing process.
- the information display device of the present invention since the memory area is released when drawing is interrupted, it is not necessary to increase the data storage capacity. In addition, it is possible to shorten the time required for drawing performed after resuming the interrupted drawing processing. In addition, since drawing is not interrupted carelessly, convenience for the user can be improved.
- interruption of drawing processing can be performed for each piece of drawing information.
- the image can be displayed accurately even if drawing is resumed. This makes it possible to easily interrupt the drawing process.
- the computer can function as an information display device capable of easily realizing interruption of drawing processing.
- the recording medium according to the present invention is loaded into a computer and the program product stored in the recording medium is executed, the computer functions as an information display device capable of easily realizing interruption of the drawing process. be able to.
- FIG. 1 is a block diagram showing a hardware configuration of a mobile phone according to a first embodiment of the present invention.
- FIG. 2 is a block diagram showing a functional configuration of a CPU provided in the mobile phone according to the first embodiment of the present invention.
- FIG. 3 A diagram conceptually showing an aspect of data storage in the ROM provided in the mobile phone according to the first embodiment of the present invention.
- FIG. 4 is a diagram conceptually showing an aspect of data storage in flash memory provided in the mobile phone according to the first embodiment of the present invention.
- FIG. 5 is a view representing an aspect of an image displayed by the display unit included in the mobile phone according to the first embodiment of the present invention.
- FIG. 6 is a diagram conceptually showing the structure of a file in the mobile phone according to the first embodiment of the present invention.
- FIG. 7 is a diagram (part 1) conceptually showing an aspect of data storage in the RAM provided in the mobile phone according to the first embodiment of the present invention.
- FIG. 8 is a diagram (part 2) schematically showing an aspect of data storage in the RAM provided in the mobile phone according to the first embodiment of the present invention.
- FIG. 9 A diagram (3) conceptually showing an aspect of data storage in the RAM provided in the mobile phone according to the first embodiment of the present invention.
- FIG. 10 is a diagram (# 4) conceptually showing one aspect of data storage in the RAM provided in the mobile phone according to the first embodiment of the present invention.
- FIG. 11 A diagram (# 5) conceptually showing an aspect of data storage in the RAM provided in the mobile phone according to the first embodiment of the present invention.
- FIG. 12 is a sequence diagram showing the procedure of processing of the mobile phone according to the first embodiment of the present invention.
- FIG. 13 is a flow chart showing a procedure of processing executed by the CPU of the mobile phone according to the first embodiment of the present invention.
- FIG. 14 is a view for explaining a data structure in the mobile phone according to the second embodiment of the present invention.
- FIG. 15 is a flowchart showing a procedure of processing executed by the CPU of the mobile phone according to the second embodiment of the present invention.
- FIG. 16 is a diagram showing a change in an image displayed by the display unit of the mobile phone according to the second embodiment of the present invention.
- FIG. 17 is a flow chart showing a procedure of processing executed by the CPU of the mobile phone according to the third embodiment of the present invention.
- FIG. 18 is a block diagram showing a hardware configuration of a computer system functioning as an information display device according to the present invention.
- FIG. 1 is a block diagram showing a hardware configuration of mobile phone 100.
- the mode of the information display device according to the present invention is not limited to a mobile phone, and any information processing device having a function of displaying an image may be used.
- it may be a facsimile machine, a printing machine, a copying machine, an electronic dictionary or the like.
- mobile phone 100 includes a CPU 200, a ROM (Read Only Memory) 120 connected to the CPU 200 via a signal line, and a RAM (Random Access Memory) 130, A call processing unit 140, an antenna 142, an input unit 150, a display unit 160, a flash memory 170, a speaker 180 and a microphone 190 are included.
- ROM Read Only Memory
- RAM Random Access Memory
- the CPU 200 executes calculations, control, and other processing based on data and programs stored in advance in the ROM 120, the flash memory 170, and the like. Details of this process will be described later.
- the ROM 120 stores data prepared in advance for causing the mobile phone 100 to execute predetermined processing.
- the data includes a program executed by the CPU 200, data used to realize the function of the mobile phone 100, and the like.
- the RAM 130 temporarily stores data and the like generated by arithmetic processing of the CPU 200.
- the RAM 130 also temporarily stores data acquired when an incoming call is received. Furthermore, the RAM 130 temporarily stores data for causing the display unit 160 to display image data.
- the call processing unit 140 is realized by, for example, an audio signal processing circuit.
- the call processing unit 140 executes known incoming call processing or electronic mail reception processing based on the signal received via the antenna 142.
- the call processing unit 140 further implements known call origination processing based on a call instruction input via the input unit 150. For example, when the mobile phone 100 receives an incoming call, a signal representing the incoming call is input from the call processing unit 140 to the CPU 200. On the other hand, when the user of the mobile phone 100 executes a calling operation, a calling command output from the CPU 200 is input to the call processing unit 140.
- Input unit 150 includes an operation button (not shown) for receiving input of an instruction from the outside, a numeric button, and the like. Input unit 150 receives an input of an external force instruction, and outputs a signal corresponding to the instruction to CPU 200.
- Display portion 160 is, for example, a liquid crystal display (hereinafter, LCD (Liquid Crystal Display)). Is realized by The display unit 160 displays an image in the display area based on the display data stored in the display area of the RAM 130.
- LCD Liquid Crystal Display
- the flash memory 170 writes the data generated by the CPU 200, and erases the instructed data in response to the deletion instruction.
- the flash memory 170 stores readable and writable data such as the telephone number of the destination and the mail address.
- the speaker 180 converts the signal from the call processing unit 140 into voice and outputs it. Mike 19
- the 0 converts the voice uttered by the user into an electrical signal and outputs it.
- the signal is transmitted by the call processing unit 140 via the antenna 142.
- FIG. 2 is a block diagram showing a functional configuration of CPU 200 according to the present embodiment.
- the CPU 200 includes an interruption occurrence detection unit 210, a control unit 220, a drawing unit 230, and an LCD transfer unit.
- the interruption occurrence detection unit 210 detects the occurrence of a state in which the writing of display data to the RAM 130 is interrupted based on a signal input to the CPU 200.
- the interruption occurrence detection unit 210 detects the occurrence of a state in which the writing of the display data is interrupted based on the communication of information by the call processing unit 140.
- the interruption occurrence detection unit 210 detects the occurrence of a state in which the writing of display data is interrupted based on the input through the input unit 150.
- the interruption occurrence detection unit 210 detects the occurrence of the state when a predetermined condition is satisfied.
- the predetermined condition means, for example, that the processing time measured in control unit 220 reaches a predetermined time, and other conditions determined for the operation inside mobile phone 100.
- Control unit 220 outputs a drawing request for causing display unit 160 to execute a predetermined drawing process based on the signal output from input unit 150 or call processing unit 140.
- the drawing request is, for example, an instruction to display an image at a position designated on the display unit 160 based on data stored in the ROM 120, the RAM 130, or the flash memory 170.
- the control unit 220 further outputs a request for resuming the drawing process when a predetermined resumption condition is satisfied when the drawing process is interrupted.
- the control unit 220 outputs, to the LCD transfer unit 240, an instruction to transfer the data stored in the area secured in the RAM 130 to a display area different from the area. When data is written to this area, display unit 160 displays an image based on the data.
- the drawing unit 230 outputs, to the interruption occurrence detection unit 210, a request for an interruption state notification representing the force / not force where the state of interrupting the writing is generated every time the display data is written to the RAM 130.
- “every writing” means, for example, data of an image to be subjected to drawing processing when the image data to be drawn is SVG (Scalable Vector Graphics) data or other vector image data. The timing at which the processing of the image information is complete, but it may be at other timings.
- the interruption occurrence detection unit 210 sends back an interruption state notification indicating whether or not the interruption is occurring.
- the interruption status notification includes, for example, control data predetermined to interrupt the drawing process.
- the drawing unit 230 determines whether to interrupt the writing of data to the RAM 130 or not. That is, when the interruption occurrence detection unit 210 detects that the state of interrupting the writing of data is occurring, the interruption state notification includes control data corresponding to the state. When the drawing unit 230 detects the control data, the drawing unit 230 determines that the writing of the data is interrupted.
- the drawing unit 230 determines that the writing of data is interrupted, the drawing unit 230 executes predetermined interruption processing.
- the interrupt process includes, for example, a process of writing data for identifying data to be written following data already written in the RAM 130 into the flash memory 170 or other storage device.
- the drawing unit 230 outputs, to the control unit 220, a notification indicating that the drawing process instructed in advance is completed.
- the drawing unit 230 also outputs, to the control unit 220, a notification indicating that the interruption process has been completed.
- Control unit 220 controls the transfer request for transferring the data written in RAM 130 to the area to which display unit 160 can refer based on the drawing completion notification output from drawing unit 230, as shown in FIG. Output to the transfer unit 240.
- the LCD transfer unit 240 is instructed by the request.
- the control unit 220 outputs a notification indicating that the process is completed.
- FIG. 3 is a diagram conceptually showing an aspect of storage of data in ROM 120 included in mobile phone 100.
- ROM 120 a control module program is stored in area 310.
- the interruption occurrence detection module program is stored in the area 320.
- the LCD transfer module program is stored in area 330.
- the drawing module program is stored in area 340.
- Other data or programs prepared in advance are stored in area 350.
- the control module program is a program for causing the CPU 200 to function as the control unit 220.
- the interruption occurrence detection module program is a program for causing the CPU 200 to function as the interruption occurrence detection unit 210.
- the LCD transfer module program is a program for causing the CPU 200 to function as the LCD transfer unit 240.
- the drawing module program is a program for causing the CPU 200 to function as the drawing unit 230.
- each module When executing the program for controlling the basic operation of the mobile phone 100, the above-described modules are also read and executed by the CPU 200 when the execution conditions of the modules are satisfied.
- the storage mode of each module is not limited to that shown in FIG. For example, it may be stored in readable and writable non-volatile memory such as flash memory 170. In this case, even when a version upgrade or other change of each module occurs, the module can be easily updated.
- FIG. 4 conceptually shows an aspect of data storage in flash memory 170 of mobile phone 100.
- the file described in the SVG format is expanded by CPU 200 into a predetermined format and stored in flash memory 170.
- the CPU 200 executes a predetermined conversion process on data stored in the flash memory 170.
- the data is converted to bitmap data and stored in the RAM 130 in an area reserved for drawing processing. This area is an area where data for displaying an image on the display unit 160 is stored.
- the above conversion process is performed for each element in the file described in the SVG format.
- the file is a file for displaying rectangles, lines, circles, and texts
- the conversion process is performed for each rectangle, each line, each circle, or each text.
- the display unit 160 displays an image in the display area based on the data.
- the format of image data used by mobile phone 100 according to the present embodiment to display an image is not limited to the form shown in FIG. 4, and at least image information as a unit of drawing processing is If it is to be constructed,.
- FIG. 5 is a diagram showing an aspect of an image displayed by display unit 160 of mobile phone 100. Referring to FIG. 5
- an image corresponding to bitmap data generated based on the data shown in FIG. 4 is displayed. This display is realized when the bit map data is stored in the reserved area of the RAM 130.
- FIG. 6 conceptually shows the structure of the file shown in FIG.
- the file described in the SVG format includes elements 601 to 607.
- an element is a concept that constitutes a unit of grouping as a target of drawing processing in the file.
- the file has a hierarchical structure. That is, element 601 includes element 602 and element 606.
- Element 602 includes elements 603 to 605.
- An element 601 is a file in which the file is described in SVG format. For example, as shown in line 400 of FIG. 4, element 601 indicates that the file is data for drawing an image in an area of width 240 and height 320. Element 602 indicates that the other element (ie, elements 603 to 605) is included inside. In FIG. 4, element 602 is identified by each data shown in, for example, row 402 and row 416.
- Element 603 contains data for displaying a rectangle.
- element 603 is identified by the data shown in line 404 and line 406.
- the data includes data representing the coordinates of any corner of the rectangle, for example, as shown in line 404, the width and height of the rectangle, and data representing the color inside the rectangle.
- Element 604 contains data for displaying a line.
- element 604 is identified by the data shown in rows 408 and 410.
- the data includes, for example, as shown in line 408, coordinates indicating the start position of the line and coordinates indicating the end position, color of the line, and data specifying the thickness of the line and the like.
- Element 605 contains data for displaying a circle.
- element 605 is identified by the data shown in lines 412 and 414.
- the data includes, for example, data representing the center coordinates of the circle, data representing the radius of the circle, the color inside the circle, etc., as shown in line 412.
- Element 606 represents that the other element (ie, element 607) is included therein.
- element 606 is identified by the data shown in rows 418 and 424.
- Element 607 contains data for displaying text.
- element 607 is identified by the data shown in lines 420-422.
- the data includes, for example, coordinate data specifying the position where the text is displayed, as shown in line 420, the font size of the text, or the color of the font, and as shown in line 422, It includes texts to be displayed.
- FIG. 7 conceptually shows an aspect of data storage in RAM 130 of mobile phone 100. Referring to FIG.
- data used by the control module is stored in area 710.
- the data used by the interruption occurrence detection module is Area 720 is secured.
- a VRAM (Video RAM) area is secured in an area 730.
- the VRAM area is an area in which data used for displaying an image by the display unit 160 is stored.
- Data used by the LCD transfer module is secured in area 740.
- Area 750 is an empty area. When the CPU 200 starts the drawing process, the free space is reserved for the drawing process.
- the storage mode of data shown as the state A appears before execution of the drawing process by the CPU 200 or after completion of the drawing process. That is, before the mobile phone 100 executes the drawing process, necessary programs are temporarily loaded into the respective areas, and an area for the drawing process is secured in the free area 750. Thereafter, the drawing process is performed as described later, and when the display process on the display unit 160 is completed, the data storage mode in the RAM 130 returns to the mode shown in the state A again.
- the area 751 is secured as a drawing buffer.
- the drawing buffer is an area in which image data to be written to the area 730 as display data is stored.
- Image data is written in bit map format.
- Document Object Model (DOM) data is stored in area 752.
- the DOM data is, for example, data represented in a format as shown in FIG. 4 and data having a hierarchical structure as shown in FIG.
- Data used by the drawing module is secured in area 753.
- an area 753 for the drawing process is released in the RAM 130.
- the area 753 is initialized once to become an empty area, and thereafter secured as an area necessary for a predetermined interruption process.
- the interruption information necessary for the interruption process is stored in area 754.
- the interruption information includes, for example, data for specifying an element to be drawn when the interrupted drawing process is resumed. Alternatively, data may be included to specify an element corresponding to the data already drawn.
- Request to resume drawing When is detected, the CPU 200 resumes the drawing process based on the interruption information stored in the area 754 and the DOM data stored in the area 752. That is, bit map data for displaying an image on the display unit 160 is generated and written to the drawing buffer 751.
- the mobile phone 100 can effectively utilize the storage area of the RAM 130.
- FIG. 11 is a diagram conceptually showing an aspect of storage of data in the RAM 130, respectively.
- each element included in the DOM data and a number given according to a predetermined standard for drawing are associated with each other, and temporarily reserved in RAM 130. Are stored in the selected area. For example, if the file for drawing includes a character string represented as "re ct", the character string is replaced with a data format executable by the CPU 200, that is, "3". Thus, the CPU 200 can display a rectangle.
- attribute data for example, attribute name
- data for identifying each attribute are associated with each other, and stored in an area different from the above area.
- the file for drawing includes a character string represented as “width”
- the character string is replaced with “1” and converted to a data format that the CPU 200 can execute.
- CPU 200 can display a rectangle having the indicated width based on data defined in another area and representing the width.
- each element included in the DOM tree data and the attribute data (eg, attribute number, attribute value, etc.) for each element are each in a predetermined format. It is stored based on. That is, for the element located at the top of the hierarchical structure, the parent element number is a number identifying itself (eg, element 601 in FIG. 6). The total number of child elements is “2” (for example, Elements 602, 606). Each child element [Kotsu! / False, number of users, total number of users, number for identifying each attribute, attribute value Z number of characters and character string are stored respectively.
- each data item of the DOM tree data is stored at each address. This storage is performed based on predetermined criteria when the DOM tree data is loaded. This data is stored in area 752 (state B in FIG. 7).
- the state B represents the data in a manner that can be recognized by the CPU 200. That is, based on the data shown in FIGS. 8 and 9, the data shown in the state A is converted into a format in which the CPU 200 can execute the drawing process as shown in the state B.
- FIG. 12 is a sequence diagram showing a procedure of processing executed by CPU 200 of mobile phone 100. The following processing is started, for example, when a predetermined condition is satisfied and a drawing request is generated.
- control unit 220 In step S 1202, control unit 220 generates a drawing request based on the establishment of a predetermined condition.
- the control unit 220 outputs the request to the drawing unit 230.
- the drawing unit 230 starts drawing processing based on the request.
- step S 1204 the drawing unit 230 executes the processing of the svg element based on the data shown as state B in FIG.
- the process includes a process of determining whether or not to perform a process for display based on the data item stored in the RAM 130.
- the drawing unit 230 generates an interruption state notification request in response to the completion of the processing of the svg element.
- step S 1206 the drawing unit 230 outputs the request to the interruption occurrence detection unit 210.
- the interruption occurrence detection unit 210 executes a predetermined interruption state notification process in response to the reception of the request. That is, the interruption occurrence detection unit 210 detects whether or not the state where the drawing should be interrupted in the mobile phone 100 is generated, and generates a signal representing the detection result.
- the state includes, for example, incoming call processing of the telephone, a calling operation by the user of the mobile telephone 100, and the like.
- step S1208 the interruption occurrence detection unit 210 outputs the generated result to the drawing unit 230.
- step S 1210 the drawing unit 230 executes the drawing process of the g element based on the interruption status notification from the interruption occurrence detection unit 210.
- step S1212 the drawing unit 230 outputs the request to the interruption occurrence detection unit 210.
- the interruption occurrence detection unit 210 executes a predetermined interruption state detection process, and generates a signal representing the result.
- the interruption occurrence detection unit 210 outputs the generated signal to the drawing unit 230.
- step S1216 the drawing unit 230 executes the process of the rect element. This process is performed based on data shown as state B in FIG. 7 or state B in FIG. When this process is executed, data for displaying a rectangular image on the display unit 160 is generated in a bitmap format and stored in the buffer area (the area 751 in the state B of FIG. 7) of the RAM 130.
- the drawing unit 230 executes a predetermined process to generate an interruption state notification request.
- the detection of the end of the drawing process is performed based on, for example, whether or not the data representing the process division in the SVG format is detected.
- step S 1218 the drawing unit 230 outputs the interruption occurrence detection unit 210.
- the interruption occurrence detection unit 210 detects, in response to the request, whether or not it is necessary for the mobile phone 100 to interrupt the drawing process. In step S 1220, the interruption occurrence detection unit 210 outputs the detection result to the drawing unit 230.
- step S1222 the drawing unit 230 executes processing of the line element based on the notification.
- data for displaying a "line" on the display unit 160 is generated in a bitmap format.
- the data is stored in the drawing buffer (the area 751 in the state B of FIG. 7) of the RAM 130.
- the drawing unit 230 When the processing of the line element is completed, the drawing unit 230 generates an interruption state notification request.
- step S1224 the drawing unit 230 outputs the request to the interruption occurrence detection unit 210.
- the interruption occurrence detection unit 210 detects whether or not the portable telephone 100 is in a state of interrupting the drawing.
- the interruption occurrence detection unit 210 outputs the detection result to the drawing unit 230.
- the drawing unit 230 executes the drawing process of the circle element in step S1228.
- data for displaying a "circle" on the display unit 160 is generated in a bitmap format, and is stored in an area secured in the drawing buffer of the RAM 130 (for example, the area 751 in the state B of FIG. 7). Stored.
- the drawing unit 230 generates an interruption state notification request in step S1230.
- the drawing unit 230 outputs the request to the interruption occurrence detection unit 210.
- step S1229 if there is an incoming call on the mobile phone 100, that is, if a situation where interruption of drawing is required has occurred (step S1229), the interruption occurrence detection unit 210 proceeds to step S1230.
- the occurrence is detected in response to the request output by the.
- the interruption occurrence detection unit 210 generates data for notifying the detection.
- step S1232 the interruption occurrence detection unit 210 outputs a signal including the data to the drawing unit 230 as the interruption state notification.
- drawing unit 230 executes predetermined interruption processing based on the data output from interruption occurrence detection unit 210. That is, the drawing unit 230 stores the data representing the start of the drawing process of the g element after completing the process of drawing the circle element in the area secured in the RAM 130 or the flash memory 170. Data representing that the process has been completed includes, for example, data for identifying the next element of the element which has been completely drawn.
- the drawing unit 230 When the predetermined interruption process is completed, the drawing unit 230 generates a notification indicating the completion. The completion of the interruption process is detected, for example, in accordance with the generation of data indicating that the area has been released, which is reserved for the drawing process.
- the drawing unit 230 outputs the notification to the control unit 220.
- control unit 220 executes a predetermined call process in response to the reception of the notification. For example, a signal line connection between the speaker (not shown) of the mobile phone 100 and the call processing unit 140 is established. Thus, the user of the mobile phone 100 can make a call.
- the control unit 220 When the user ends the call, the control unit 220 generates a command for requesting resumption of drawing in response to the end.
- the drawing unit 230 is displayed. Output the relevant command.
- step S 1242 the drawing unit 230 resumes the drawing process in response to the input of the command. That is, the drawing unit 230 executes the drawing process of the g element based on the DOM tree data stored in the area 752. When this process is completed, the drawing unit 230 generates an interruption state notification request. In step S1244, the drawing unit 230 outputs the request to the interruption occurrence detection unit 210.
- the interruption occurrence detection unit 210 In response to the reception of the notification request, the interruption occurrence detection unit 210 detects whether or not the mobile phone 100 is in a state in which the drawing is interrupted, and generates data representing the detection result. . In step S1246, the interruption occurrence detection unit 210 outputs the interruption state notification including the data to the drawing unit 230.
- step S 1248 in response to the reception of the notification, the drawing unit 230 displays a character string (for example, “Hello”) based on the DOM tree data stored in the area 752 of the RAM 130. Execute the process When this process is executed, bitmap data for displaying the character string on the display unit 160 is generated and stored in the drawing buffer 751. When all drawing processes are completed based on the data to be drawn by the drawing unit 230, the drawing unit 230 generates a drawing completion notice and outputs the notice to the control unit 220 in step S1250.
- a character string for example, “Hello”
- control unit 220 In response to the reception of the notification, control unit 220 generates a transfer request including a predetermined data item. At step S1252, control unit 220 outputs the request to LCD transfer unit 240.
- This request is, for example, a command for transferring data stored in the drawing buffer (area 751) to the VRAM area (area 730).
- LCD transfer unit 240 performs data transfer processing in response to the reception of the request. That is, the LCD transfer unit 240 reads the data stored in the area 751 and writes the data in the area 730. When the data transfer is completed, the LCD transfer unit 240 outputs a transfer completion notification to the control unit 220 in step S1256. Since the area 730 is an area where the display unit 160 can read data, the display unit 160 displays an image corresponding to the data written in the area 730 in the display area 162. After that, the control unit 220 continuously executes processing other than the drawing processing.
- FIG. 13 is a flowchart showing the procedure of processing executed by CPU 200 of mobile phone 100. This process is realized by executing a program stored in mobile phone 100.
- CPU 200 receives a drawing request.
- the CPU 200 sets the root element (ie, svg element) as a drawing target.
- the CPU 200 determines whether the element is a drawing target. This determination is made, for example, based on attribute data associated with each element. If it is determined that the element is to be drawn (YES in step S1306), the process proceeds to step S1308. If not (NO at step S1306), the process proceeds to step S1318.
- CPU 200 branches the process according to the type of element. That is, if the element is a text, the CPU 200 executes a predetermined text drawing process in step S1310. When this process is executed, display data for displaying text in the display area 1 62 is generated and stored in the buffer area. If the element is a rectangle, in step S1312, the CPU 200 executes a predetermined rectangle drawing process (for example, a rect drawing). When this process is executed, display data for displaying a rectangle in the display area 162 is generated and stored in the buffer area. If the element is a "line”, in step S1314, the CPU 200 executes a predetermined line drawing process.
- a predetermined text drawing process for example, a rect drawing
- step S1316 the CPU 200 executes a predetermined circle drawing process.
- display data for displaying a circle in the display area 162 is generated and stored in the knocker area.
- step S 1318 CPU 200 determines whether or not all elements on the DOM tree have been processed. This determination is made, for example, by updating a predetermined flag each time the drawing process of each element is completed, and detecting whether all the flags indicate the completion of the process. If all elements have been processed (YES at step S1318), the process proceeds to step S1320. Otherwise If not (NO at step S 1318), the process proceeds to step S 1330.
- CPU 200 sends a drawing completion notification based on a predetermined data format.
- CPU 200 sets the next element as a drawing target. When this setting is executed, data for specifying the next element is written to the area reserved for drawing. This data is referenced by the CPU 200 to execute the drawing process of the next element.
- CPU 200 transmits an interruption state notification request based on a predetermined data format.
- CPU 200 receives an interruption status notification generated based on a predetermined data format.
- CPU 200 determines whether or not power supply to mobile phone 100 is interrupted. This judgment is made based on the interruption status notification. If a suspend request has occurred (YES at step S1342), the process proceeds to step S1344. If not (NO at step S1342), the process returns to step SI 306.
- CPU 200 stores data for specifying the position of the element on the DOM tree data.
- This data is, for example, rank data obtained by expanding the corresponding DOM tree data.
- the data for specifying the said position is not restricted to said data.
- CPU 200 sends an interruption completion notification generated based on a predetermined data format.
- the mobile phone 100 executes processing (for example, call processing or call processing) for interrupting the drawing processing.
- step S 1352 CPU 200 receives a drawing restart request.
- step S1354 the CPU 200 restores data representing the position of the element on the DOM tree data. That is, the CPU 200 reads, for example, order data stored in the area reserved in advance for processing in the RAM 130 or the flash memory 170.
- step S1356 The CPU 200 sets the restored element as a drawing target. Thereafter, the process returns to step S1306, and the above-described drawing processes are performed again.
- the CPU 200 resumes the drawing process based on the temporarily stored data.
- data for display of the image is reliably generated and written to the drawing buffer secured in the area 751 of the RAM 130. Therefore, even if the drawing process is interrupted, the display unit 160 can reliably display an image according to the original image data.
- the mobile phone 100 according to the present embodiment is different from the first embodiment in that it has a function of executing drawing processing for each rectangular area including each element.
- the mobile phone 100 according to the present embodiment has the same hardware configuration as that of the above-described embodiment. Their functions are also the same. Therefore, I will not repeat the explanation of them here!
- FIG. 14 conceptually shows an aspect of storage of data for specifying a rectangular area in area 751 of RAM 130.
- an area including the image whose drawing position has been changed is identified.
- regions 1410, 1420 and 1430 are identified.
- an image drawing process is performed on the area 1410 based on drawing information (for example, a DOM tree) having a hierarchical structure.
- drawing processing is performed on the area 1420.
- the drawing process corresponding to the area 1430 is executed.
- the display unit 160 realizes the display of an image based on the display data.
- FIG. 15 is a flowchart showing the procedure of processing executed by CPU 200 of mobile phone 100.
- step S1510 CPU 200 sequentially searches the DOM tree, compares the circumscribed rectangle of the figure drawn last time with the circumscribed rectangle of the figure drawn this time, and detects the element whose position has moved. Do.
- the comparison process is performed, for example, by comparing the coordinates of specific corners of the circumscribed rectangles.
- CPU 200 detects an area in which the position of the element is moving, and stores the detection result as interruption information in area 754 of RAM 130.
- the detection result includes data for specifying an area, for example, coordinate values of corners. In the case of FIG. 16 described later, the area A and the area B shown on the screen B are detected, and the coordinate values of each area are stored.
- step S 1530 CPU 200 executes drawing processing (FIG. 13) for all elements in the drawing buffer of region 751 based on the detection result in step S 1520. That is, the CPU 200 executes the drawing process of the elements included in the area A.
- the CPU 200 stores the area 754 of the RAM 130, the above detection result, and information representing the area (ie, the area A) to be subjected to the drawing process.
- step S 1530 CPU 200 executes drawing processing (FIG. 13) for all elements in the drawing buffer of region 751 based on the detection result in step S 1520. That is, the CPU 200 executes the drawing process of the elements included in the area B.
- the CPU 200 stores the area 754 of the RAM 130, the detection result, and information representing the area (ie, the area B) to be subjected to the drawing process.
- FIG. 16 shows the change in the image displayed by the display unit 160 of the mobile phone 100. It is a figure.
- mobile phone 100 relates to the display of an animation image and other moving images, and the drawing processing of an image in which the position displayed after interruption and resumption of drawing has changed. Run. In this way, the drawing process for an image whose position to be displayed does not change is not repeated, so the time required for the drawing process can be shortened.
- the mobile phone 100 according to the present embodiment is different from the above-described embodiments in that it has a function of determining whether or not to interrupt the drawing. That is, even if a break request is detected, the drawing is not always interrupted.
- the mobile phone 100 according to the present embodiment has the same hardware configuration as that of the above-described embodiment. Their functions are also the same. Therefore, the description about them will not be repeated here.
- FIG. 17 is a flowchart showing the procedure of the process executed by the CPU 200.
- the same processes as the processes in the above-described embodiments are denoted by the same step numbers, and the description thereof will not be repeated.
- CPU 200 determines whether or not an interruption request has been generated.
- step S1342 If it is determined that an interruption request has occurred (YES in step S1342), the process proceeds to step S1710. If not (NO at step S1342), the process returns to step S1306.
- step S1710 CPU 200 determines whether or not to interrupt drawing. This decision Is performed based on, for example, the progress of drawing processing in the mobile phone 100. The state of progress is, for example, the proportion of the area where drawing has been completed, or the time taken for the drawing process. If it is determined that the drawing is to be interrupted (YES in step S1710), the process proceeds to step S1334. If not (NO in step S1710), the process returns to step S1306.
- mobile phone 100 determines whether or not to interrupt the drawing in response to the detection of the drawing interruption request. Therefore, if it is determined that it is not necessary to interrupt the drawing, the drawing is continued as it is. In this way, it is possible to prevent interruption of the process due to an interruption request occurring immediately before the drawing process is completed. Therefore, since the drawing processing is not interrupted carelessly, it is possible to prevent an inappropriate display from being performed for the user.
- the content of the RAM 130 may be displayed when the interruption of the writing of the display data occurs.
- the mobile phone 100 may notify that writing has been interrupted.
- mobile phone 100 may ring.
- a screen pop-up dialog
- the simple display is display of a character string for notifying interruption, display with complicated drawing functions (gradation, transparency, anti-aliasing, etc.) disabled, or temporary alternative display. It refers to the display of an icon indicating that there is something.
- Such simple display is realized based on data stored in advance in the ROM 120, the flash memory 170, and other memories.
- the acquisition rate of data at the time of interruption ie, the download relative to the total amount of data to be downloaded
- the ratio of the amount of completed data may be displayed.
- the user of mobile phone 100 can easily understand that writing of display data has been interrupted. Can interrupt the process that requires it, or instruct other processes to execute the process again;
- the information display device is not limited to the embodiment of the force realized by, for example, mobile phone 100. That is, the information display apparatus can be realized by causing the information processing apparatus capable of executing the program product to execute the program product according to the present invention as described above.
- FIG. 18 is a block diagram showing a hardware configuration of computer system 1800.
- Computer system 1800 includes a CPU 1810 mutually connected by a data bus, a mouse 1820 and a keyboard 1830 for receiving input of instructions, input data or data generated by processing executed according to a program. It includes a RAM 1840 for temporary storage, a hard disk 1850 capable of storing data in a nonvolatile manner, a CD (Compact Disk)-ROM drive 1860, a monitor 1880, and a communication IF (Interface) 1890.
- the CD-ROM drive 1860 is mounted with a CD-ROM 1862.
- the processing in computer system 1800 functioning as an information display device according to the present invention is realized by the hardware and software executed by CPU 1810.
- Such software is stored in advance in the RAM 1840 or the hard disk 1850.
- software may be stored in a CD-ROM 1872 or other recording medium and distributed as a program product.
- software may be provided as a downloadable program product by an information provider connected to the so-called Internet.
- Such software is stored in the hard disk 1850 after it has been read by the CD-ROM drive 1870 or another reader or its download via the communication IF 1890.
- the software is read from the hard disk 1850 to the RAM 1840 as an executable format and executed by the CPU 1810.
- Each piece of hardware constituting computer system 1800 shown in FIG. 18 is a general one. Therefore, the most essential part of the present invention is: RAM 1840, hard disk 1850, CD-ROM 1872, and other storage media or software that can be downloaded via a network. Since the operation of each hardware of computer system 1 800 is well known, detailed description will not be given.
- the present invention is applicable to, for example, an information display apparatus provided with a mobile phone, a television, a facsimile apparatus, and other image display functions.
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Abstract
Description
Claims
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2006540870A JP4435173B2 (ja) | 2004-10-12 | 2005-09-28 | 情報表示装置、情報表示方法、コンピュータを情報表示装置として機能させるためのプログラム、および記録媒体 |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2004297822 | 2004-10-12 | ||
| JP2004-297822 | 2004-10-12 |
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| WO2006040925A1 true WO2006040925A1 (ja) | 2006-04-20 |
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| PCT/JP2005/017799 Ceased WO2006040925A1 (ja) | 2004-10-12 | 2005-09-28 | 情報表示装置、情報表示方法、コンピュータを情報表示装置として機能させるためのプログラム製品、および記録媒体 |
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| JP (1) | JP4435173B2 (ja) |
| WO (1) | WO2006040925A1 (ja) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2010532513A (ja) * | 2007-06-28 | 2010-10-07 | テレフオンアクチーボラゲット エル エム エリクソン(パブル) | データシステム及び方法 |
| JP2015045730A (ja) * | 2013-08-28 | 2015-03-12 | 株式会社リコー | 画像表示装置、画像表示システム、画像表示制御方法及び画像表示制御プログラム |
Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH07271344A (ja) * | 1994-03-29 | 1995-10-20 | Hitachi Ltd | グラフィック表示装置 |
| JPH09134446A (ja) * | 1995-11-08 | 1997-05-20 | Fujitsu Ltd | 三次元画像表示方法及びそれに使用する三次元画像表示装置 |
| JPH1153565A (ja) * | 1997-07-31 | 1999-02-26 | Sony Corp | 3次元画像処理装置及びそのバス切り替え手段の切り替え制御方法 |
| JP2000338940A (ja) * | 1999-05-31 | 2000-12-08 | Matsushita Electric Ind Co Ltd | 画像処理装置 |
| JP2001134776A (ja) * | 1999-08-25 | 2001-05-18 | Alpine Electronics Inc | 地図データ配信方法 |
| JP2003141557A (ja) * | 2001-10-31 | 2003-05-16 | Sharp Corp | 編集装置、編集方法、編集プログラム、編集プログラムを記録したコンピュータ読取可能な記録媒体 |
| JP2003143257A (ja) * | 2001-10-31 | 2003-05-16 | Sharp Corp | 携帯電話装置、携帯端末装置、携帯電話装置の制御プログラム、および携帯端末装置の制御プログラム |
| JP2004234496A (ja) * | 2003-01-31 | 2004-08-19 | Canon Inc | 図形表示装置 |
-
2005
- 2005-09-28 WO PCT/JP2005/017799 patent/WO2006040925A1/ja not_active Ceased
- 2005-09-28 JP JP2006540870A patent/JP4435173B2/ja not_active Expired - Lifetime
Patent Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH07271344A (ja) * | 1994-03-29 | 1995-10-20 | Hitachi Ltd | グラフィック表示装置 |
| JPH09134446A (ja) * | 1995-11-08 | 1997-05-20 | Fujitsu Ltd | 三次元画像表示方法及びそれに使用する三次元画像表示装置 |
| JPH1153565A (ja) * | 1997-07-31 | 1999-02-26 | Sony Corp | 3次元画像処理装置及びそのバス切り替え手段の切り替え制御方法 |
| JP2000338940A (ja) * | 1999-05-31 | 2000-12-08 | Matsushita Electric Ind Co Ltd | 画像処理装置 |
| JP2001134776A (ja) * | 1999-08-25 | 2001-05-18 | Alpine Electronics Inc | 地図データ配信方法 |
| JP2003141557A (ja) * | 2001-10-31 | 2003-05-16 | Sharp Corp | 編集装置、編集方法、編集プログラム、編集プログラムを記録したコンピュータ読取可能な記録媒体 |
| JP2003143257A (ja) * | 2001-10-31 | 2003-05-16 | Sharp Corp | 携帯電話装置、携帯端末装置、携帯電話装置の制御プログラム、および携帯端末装置の制御プログラム |
| JP2004234496A (ja) * | 2003-01-31 | 2004-08-19 | Canon Inc | 図形表示装置 |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2010532513A (ja) * | 2007-06-28 | 2010-10-07 | テレフオンアクチーボラゲット エル エム エリクソン(パブル) | データシステム及び方法 |
| US8923651B2 (en) | 2007-06-28 | 2014-12-30 | Telefonaktiebolaget L M Ericsson (Publ) | Data system and method |
| JP2015045730A (ja) * | 2013-08-28 | 2015-03-12 | 株式会社リコー | 画像表示装置、画像表示システム、画像表示制御方法及び画像表示制御プログラム |
Also Published As
| Publication number | Publication date |
|---|---|
| JP4435173B2 (ja) | 2010-03-17 |
| JPWO2006040925A1 (ja) | 2008-08-07 |
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