Gaming machine
The gaming machine addresses limitations in voice output by incorporating variable displays and specific notification effects, resulting in enhanced player engagement and interest through dynamic and interactive features.
Patent Information
- Application Number
- JP2022151059
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-09-22
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2042-09-22
AI Technical Summary
Existing gaming machines have limitations in voice output, which can enhance player engagement and interest.
The gaming machine performs variable display of performance identification information, includes specific notification effects, and outputs sound, with different sound patterns and character displays to enhance player engagement.
The enhanced voice output and variable display features improve player engagement and interest by providing a more dynamic and interactive gaming experience.
Smart Images

Figure 0007693618000001 
Figure 0007693618000002 
Figure 0007693618000003
Abstract
Description
Technical Field
[0001] The present invention relates to a gaming machine capable of performing variable display and controllable to an advantageous state advantageous to a player.
Background Art
[0002] Some conventional gaming machines are capable of performing variable display and controllable to a jackpot gaming state (advantageous state) advantageous to a player, and attempt to enhance the interest by outputting the voice of a character (see, for example, Patent Document 1).
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] However, Patent Document 1 has a problem that there is room for improvement regarding voice output.
[0005] The present invention has been made paying attention to such problems, and an object thereof is to provide a gaming machine improved regarding voice output.
Means for Solving the Problems
[0006] The gaming machine according to the present invention is Perform variable display of performance identification information, a gaming machine controllable to an advantageous state, capable of executing a specific notification effect for notifying whether or not it is controlled to the advantageous state, be able to display characters, be able to output sound, The specific notification effect includes an introduction part until it is notified whether or not it is controlled to the advantageous state, and an epilogue part for notifying whether or not it is controlled to the advantageous state. the Effect identification information variable display When it becomes the reach mode, the reach mode perform a first character display corresponding to, and a first pattern that performs a second character display different from the first character display during the period after it becomes the reach mode and until the specific notification effect is executed; the Effect identification information variable display When it becomes the reach mode, the reach mode perform the first character display corresponding to, and a second pattern that does not perform the first character display and the second character display during the period after it becomes the reach mode and until the specific notification effect is executed. There is, The first pattern has a higher expectation of being controlled to the advantageous state than the second pattern. and, As the sound pattern in which the sound is output, include a predetermined sound pattern in which the mouth of the character does not move and the sound is output in a situation where the character is displayed, and a specific sound pattern in which the mouth of the character moves and the sound is output in a situation where the character is displayed, In the specific notification performance, be able to output the sound so that the number of times of the specific sound pattern is larger than the number of times of the predetermined sound pattern, In the specific notification performance, be able to execute a chance-up performance when the sound is output in the predetermined sound pattern, It is characterized by this.
[0007] Note that the present invention may have only the invention specific matters described in the claims of the present invention, or may have a configuration other than the invention specific matters together with the invention specific matters described in the claims of the present invention.
Brief Description of the Drawings
[0008]
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Embodiments for Carrying Out the Invention
[0009] Embodiments for carrying out the gaming machine according to the present invention will be described below based on examples. In the following examples, "variable display" of special symbols or decorative symbols may sometimes be expressed as "fluctuating display" or simply "fluctuation".
[0010] [Embodiment 1] The gaming machine of Embodiment 1 is a gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, comprising game control means, performance execution means, and hold memory means, the hold memory means can store information related to variable display as hold memory with a predetermined number as an upper limit, when the variable display ends, the game control means can execute the next variable display if there is hold memory corresponding to the next variable display, the performance execution means when hold memory is stored, can display a hold display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode which is the mode one before the completion mode, during variable display, the hold display corresponding to the hold memory already stored can be moved from the position where it has been displayed for a specific period from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display, during the execution of the variable display with the number of hold memories N (N < the predetermined number) which is a variable display in a situation where N numbers of hold memories less than the predetermined number are stored, When the period until the start of the next variable display is longer than a predetermined period and a new hold memory is stored, if a hold display is stored at the hold display position corresponding to the (N + 1)-th number, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, and after gradually changing from the start mode to the plurality of intermediate modes, the change to the completion mode is executed over the predetermined period to display the hold display. When the period until the start of the next variable display is shorter than the predetermined period and a new hold memory is stored, if a hold display is stored at the hold display position corresponding to the (N + 1)-th number, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing to start the next variable display in a situation where it is an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing and the hold display is displayed. When the variable display at the N-th hold memory ends and a new hold memory is stored before the elapse of the specific period from the hold shift start timing, if a hold display is stored at the hold display position corresponding to the N-th number, the hold display is started in the start mode at the hold display position corresponding to the N-th number, and after gradually changing from the start mode to the plurality of intermediate modes, the change to the completion mode is executed over the predetermined period to display the hold display. It is characterized by the above. According to this feature, when the hold memory stored from the middle of the variable display until the start of the next variable display is still in the intermediate mode at the start of the variable display, it is changed to the completion mode, so that there is no hindrance to the movement of the hold display position performed thereafter, and misrecognition of the number of hold memories can be prevented. In addition, by distinguishing the presence or absence of the change to the completion mode depending on whether the period until the start of the next variable display is longer or shorter than the predetermined period, it is possible to suitably show the player the number of hold memories and the gradual change at the time of storing a new hold memory. Furthermore, by making the distinction immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new hold memory. Corresponding drawings: FIGS. 72 to 74 In addition, in this embodiment, 'Favorable state' corresponds to the 'big win game state' in this embodiment, 'Game control means' corresponds to the 'CPU 103' in this embodiment. The "performance execution means" corresponds to the "performance control CPU 120" in this embodiment, the "pending storage means" corresponds to the "first special symbol buffer 001SG151" and the "second special symbol buffer 001SG151B" in this embodiment, the "predetermined number" corresponds to "the number of first special figure pending storages and second special figure pending storages being 4" in this embodiment, the "start mode" corresponds to the "pending display shown as the image of the first frame of the appearance animation" in this embodiment, the "completion mode" corresponds to the "pending display shown as the image of the 20th frame of the appearance animation and the image of the first frame of the shift animation" in this embodiment, the "midway mode" corresponds to the "pending display shown as the images from the second frame to the 19th frame of the appearance animation" in this embodiment, the "pending shift" corresponds to the "shift animation" in this embodiment, the "specific period" corresponds to "330 ms which is the display execution period of the shift animation" in this embodiment, the "predetermined period" corresponds to "660 ms which is the display execution period of the appearance animation" in this embodiment, the "pending display position" corresponds to the "pending memory display area 5U" in this embodiment.
[0011] [Embodiment 2] The gaming machine of Embodiment 2 is a gaming machine that performs variable display and can be controlled to an advantageous state favorable to the player, comprising gaming control means, performance execution means, and pending storage means, wherein the pending storage means can store information related to variable display as pending storage with a predetermined number as the upper limit, the gaming control means can execute the next variable display when there is pending storage corresponding to the next variable display when the variable display ends, the performance execution means When a hold memory is stored, it is possible to display a hold display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a pre-completion mode that is the mode immediately before the completion mode, During variable display, the hold display corresponding to the hold memory already stored can be moved from the position where it has been displayed for a specific period from the hold shift start timing based on the timing when the next variable display is started to the position corresponding to the next variable display. During the execution of the variable display when the number of hold memories N is less than the predetermined number, that is, during the variable display when the number of hold memories N, When a new hold memory is stored when the period until the next variable display is started is longer than the predetermined period, a change is executed over the predetermined period in which the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the hold display is displayed. When a new hold memory is stored when the period until the next variable display is started is shorter than the predetermined period and is not the period immediately before the next variable display is started, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the pre-completion mode from the start mode, and when the next variable display is started in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing and the hold display is displayed. When a new hold memory is stored when the period until the next variable display is started is shorter than the predetermined period and is the period immediately before the next variable display is started, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, and when the next variable display is started in a situation where it is in the start mode, the hold display is changed to the completion mode based on the timing and the hold display is displayed. When the variable display for the reserved memory number N ends and a new reserved memory is stored immediately after the start of the next variable display, if the reserved display is stored at the reserved display position corresponding to the Nth number, the reserved display is started in the start mode and changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the change is executed over the predetermined period to display the reserved display. It is characterized by this. According to this feature, if the reserved memory stored from the middle of the variable display to the start of the next variable display is still in the intermediate mode at the start of the variable display, it is changed to the completion mode, so that there is no obstacle to the movement of the reserved display position that will be performed later, and misrecognition of the reserved memory number can be prevented. Also, by distinguishing the presence or absence of the change to the completion mode when the period until the start of the next variable display is longer or shorter than the predetermined period, it is possible to preferably show the player the reserved memory number and the stepwise change at the time of storing the new reserved memory. Furthermore, by the discrimination immediately before and after the start of the next variable display, it is possible to more preferably show the player the stepwise change at the time of storing the new reserved memory. Corresponding drawings: FIGS. 72, 73, 75, 76
[0012] [Form 3] The gaming machine of Form 3 is a gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, a game control means, a performance execution means, and a reserved memory means, The reserved memory means can store information related to variable display as reserved memory with a predetermined number as the upper limit, The game control means can execute the next variable display when there is a reserved memory corresponding to the next variable display when the variable display ends, The performance execution means can display a reserved display by changing stepwise an start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode which is the mode immediately before the completion mode when the reserved memory is stored, It is possible to move the hold display corresponding to the hold memory already stored during the variable display from the position where it has been displayed for a specific period starting from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display. During the execution of the variable display with the number of hold memories N (variable display when the number of hold memories is less than the predetermined number), When a new hold memory is stored when the period until the next variable display starts is longer than the predetermined period, a change is made in which the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed step by step from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and this change is executed over the predetermined period to display the hold display. When a new hold memory is stored when the period until the next variable display starts is shorter than the predetermined period, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing when the next variable display starts in the situation of being in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on this timing to display the hold display. During the execution of the variable display with the number of hold memories 0 (variable display when no hold memory is stored), When a new hold memory is stored when the period until the variable display with the number of hold memories 0 ends is longer than the predetermined period, a change is made in which the hold display is started in the start mode at the hold display position corresponding to the next variable display, changed step by step from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and this change is executed over the predetermined period to display the hold display. When a new hold memory is stored when the period until the variable display with the number of hold memories 0 ends is shorter than the predetermined period, the hold display is started in the start mode at the hold display position corresponding to the next variable display, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing when the next variable display starts in the situation of being in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on this timing to display the hold display. It is characterized by the following. According to this feature, when the held memory stored from the middle of the variable display until the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state. Therefore, it is possible to prevent an obstacle to the movement of the held display position that will be performed later and prevent misrecognition of the number of held memories. Also, by distinguishing the presence or absence of a change to the completed state when the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of held memories and the gradual change at the time of storing a new held memory. Furthermore, when the number of held memories is 0, when there is no delay of a predetermined period until the start of the next variable display at the timing when a new held memory is stored, by changing the gradual change at the time of storing the new held memory to the completed state, even when the number of held memories is 0, it is possible to prevent an obstacle to the movement of the held display position and prevent misrecognition of the number of held memories. Corresponding drawings: Figures 72, 73, 81, 82
[0013] [Mode 4] The gaming machine of Mode 4 is a gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, game control means, effect execution means, and held memory means. The held memory means can store information related to variable display as held memory with a predetermined number as the upper limit. The game control means can execute the next variable display when there is held memory corresponding to the next variable display when the variable display ends. The effect execution means can display a held display by gradually changing a start state, a completed state, and a plurality of intermediate states including a state before the completed state, which is a state before the completed state, when held memory is stored. The hold display corresponding to the hold memory already stored during the variable display can be moved from the position where it has been displayed for a specific period starting from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display, During the execution of the variable display with the number of hold memories N (a variable display where less than the predetermined number of N hold memories are stored), When a new hold memory is stored while the period until the next variable display starts is longer than the predetermined period, the change of starting the hold display in the starting mode at the hold display position corresponding to the (N + 1)-th number, changing step by step from the starting mode to the plurality of intermediate modes, and then changing to the completion mode is executed over the predetermined period to display the hold display, When a new hold memory is stored while the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, the hold display is started in the starting mode at the hold display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the pre-completion mode from the starting mode, and when it becomes the timing when the next variable display starts in the situation of being in an intermediate mode different from the pre-completion mode, it is changed to the completion mode based on this timing to display the hold display, When a new hold memory is stored while the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, the hold display is started in the starting mode at the hold display position corresponding to the (N + 1)-th number, and when it becomes the timing when the next variable display starts in the situation of being in the starting mode, it is changed to the completion mode based on this timing to display the hold display, When a new hold memory is stored immediately after the variable display with the number of hold memories N ends and the next variable display starts, the change of starting the hold display in the starting mode at the hold display position corresponding to the N-th number, changing step by step from the starting mode to the plurality of intermediate modes, and then changing to the completion mode is executed over the predetermined period to display the hold display, During the execution of the variable display with the number of hold memories 0 (a variable display where no hold memory is stored), When the period until the variable display ends with the hold memory count being 0 is longer than the predetermined period and a new hold memory is stored, the hold display is started in the start mode at the hold display position corresponding to the next variable display, and after gradually changing from the start mode to the plurality of intermediate modes, a change to the completion mode is executed over the predetermined period to display the hold display. When the period until the variable display ends with the hold memory count being 0 is shorter than the predetermined period and it is not immediately before the variable display ends with the hold memory count being 0, and a new hold memory is stored, the hold display is started in the start mode at the hold display position corresponding to the next variable display, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing to start the next variable display in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing and displayed. When the period until the variable display ends with the hold memory count being 0 is shorter than the predetermined period and it is immediately before the variable display ends with the hold memory count being 0, and a new hold memory is stored, the hold display is started in the start mode at the hold display position corresponding to the next variable display, and when it becomes the timing to start the next variable display in a situation where it is in the start mode, the hold display is changed to the completion mode based on the timing and displayed. When a new hold memory is stored immediately after the variable display ends with the hold memory count being 0, the hold display is displayed from the completion mode at the hold display position corresponding to the next variable display after the variable display with the hold memory count being 0. It is characterized by this. According to this feature, if the suspended memory stored from the middle of the variable display until the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to a completed state. Therefore, it does not hinder the subsequent movement of the suspended display position and can prevent misrecognition of the number of suspended memories. Also, by differentiating whether or not to change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual changes at the time of storing a new suspended memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual changes at the time of storing a new suspended memory. Moreover, when the number of suspended memories is 0, if the timing at which a new suspended memory is stored has no delay of a predetermined period until the start of the next variable display, by changing the gradual change at the time of storing the new suspended memory to the completed state, even when the number of suspended memories is 0, it does not hinder the movement of the suspended display position and can prevent misrecognition of the number of suspended memories. Corresponding drawings: FIGS. 72, 73, 75, 76, 81 to 84 In addition, in this embodiment, 'Immediately before the variable display ends when the number of suspended memories is 0' corresponds to 'a timing less than 33 ms until the variable display with 0 suspended memories ends', 'Immediately after the variable display ends when the number of suspended memories is 0' corresponds to 'a timing less than 33 ms after the variable display with 0 suspended memories ends'.
[0014] [Embodiment 5] The gaming machine of Embodiment 5 is a gaming machine capable of performing variable display and controlling to an advantageous state favorable to the player, a game control means, a performance execution means, and a suspended memory means, The suspended memory means can store information related to variable display as suspended memory with a predetermined number as the upper limit, The game control means can execute the next variable display when there is a suspended memory corresponding to the next variable display when the variable display ends, The performance execution means When a hold memory is stored, it is possible to display a hold display by gradually changing between a start mode, a completion mode, and a plurality of intermediate modes including a pre-completion mode which is the mode immediately before the completion mode, During variable display, it is possible to move the hold display corresponding to the hold memory already stored to a position corresponding to the next variable display from the position where it has been displayed for a specific period starting from the hold shift start timing based on the timing when the next variable display is started, During the execution of the variable display when the number of hold memories N is less than the predetermined number, that is, the hold memory number N variable display, When a new hold memory is stored while the period until the next variable display is started is longer than the predetermined period, a change is executed over the predetermined period, in which the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the hold display is displayed, When a new hold memory is stored while the period until the next variable display is started is shorter than the predetermined period, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the pre-completion mode from the start mode, and when the next variable display is started in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing and the hold display is displayed, When the variable display with the number of hold memories N ends and a new hold memory is stored before the specific period elapses from the hold shift start timing, a change is executed over the predetermined period, in which the hold display is started in the start mode at the hold display position corresponding to the N-th number, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the hold display is displayed, After the hold display is displayed in the completion mode, the display area used for the change in which the hold display is started in the start mode, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode is larger than the display area used for the display of the hold display during the period until the hold shift start timing, It is characterized by the following. According to this feature, if the suspended memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state so that the subsequent movement of the suspended display position is not hindered, and misrecognition of the number of suspended memories can be prevented. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than the predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual change at the time of storing a new suspended memory. Furthermore, by differentiating just before and just after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new suspended memory. Also, since the suspended memory newly stored during a specific period in which the suspended display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the gradual change to the completed state, and the gradual change can be shown to the player. Furthermore, even if the timing of the new display of the suspended display overlaps with the already displayed suspended display, since the display area used for the gradual change of the new suspended display is wider, the player can recognize the suspended memory. Corresponding drawings: FIGS. 56, 72 to 74
[0015] [Form 6] The gaming machine of Form 6 is a gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, game control means, performance execution means, and suspended memory means, the suspended memory means can store information related to variable display as suspended memory with a predetermined number as the upper limit, the game control means can execute the next variable display when there is suspended memory corresponding to the next variable display when the variable display ends, the performance execution means can display a suspended display by gradually changing between a start mode, a completed mode, and a plurality of intermediate modes including a mode before the completed mode, which is the mode immediately before the completed mode, when the suspended memory is stored, It is possible to move the hold display corresponding to the hold memory already stored during the variable display from the position where it has been displayed over a specific period from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display. During the execution of the variable display at the number of hold memories N (variable display when the number of hold memories is less than the predetermined number N) in a situation where N numbers of hold memories less than the predetermined number are stored, When a new hold memory is stored when the period until the next variable display starts is longer than the predetermined period, a change is executed over the predetermined period, in which the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the hold display is displayed. When a new hold memory is stored when the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing when the next variable display starts in a situation where it is in the intermediate mode different from the pre-completion mode, it is changed to the completion mode based on the timing and the hold display is displayed. When a new hold memory is stored when the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, and when it becomes the timing when the next variable display starts in a situation where it is in the start mode, it is changed to the completion mode based on the timing and the hold display is displayed. When a new hold memory is stored immediately after the variable display at the number of hold memories N ends and the next variable display starts, a change is executed over the predetermined period, in which the hold display is started in the start mode at the hold display position corresponding to the N-th number, changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the hold display is displayed. After displaying the hold indication in the completed state, the display area used for the display of the hold indication during the period until the hold shift start timing is smaller than the display area used for the change in which the hold indication is started in the start state, gradually changed from the start state to the plurality of intermediate states, and then changed to the completed state. It is characterized by this. According to this feature, when the hold memory stored from the start of the variable display until the start of the next variable display is still in the intermediate state at the start of the variable display, it is changed to the completed state, so there is no obstacle to the movement of the hold display position that will be performed later, and it is possible to prevent misrecognition of the number of hold memories. Also, by distinguishing the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of hold memories and the gradual change at the time of storing a new hold memory. Furthermore, by making the distinction immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new hold memory. Also, since the hold memory newly stored during a specific period in which the hold display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the gradual change to the completed state, and it is possible to show the player the gradual change. Furthermore, even if the timing of the new display of the hold display overlaps with the already displayed hold display, since the display area used is larger for the display of the new hold display, the player can recognize the hold memory. Corresponding drawings: Figures 56, 72, 73, 75, 76
[0016] [Aspect 7] The gaming machine of Aspect 7 is A gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, Game control means, Effect execution means, Hold memory means, and is provided with The hold memory means can store information related to variable display as hold memory with a predetermined number as the upper limit, When the variable display ends, if there is a pending memory corresponding to the next variable display, the next variable display can be executed. The effect execution means When a pending memory is stored, it is possible to display a pending display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode, which is the mode immediately before the completion mode. During the variable display, the pending display corresponding to the pending memory already stored can be moved from the position where it has been displayed for a specific period from the pending shift start timing based on the timing when the next variable display is started to the position corresponding to the next variable display. During the execution of the variable display when the number of pending memories N is less than the predetermined number, that is, the variable display when the number of pending memories is N When a new pending memory is stored when the period until the next variable display is started is longer than the predetermined period, a change is executed over the predetermined period, in which the pending display is started in the start mode at the pending display position corresponding to the (N + 1)-th number, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the pending display is displayed. When a new pending memory is stored when the period until the next variable display is started is shorter than the predetermined period, the pending display is started in the start mode at the pending display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the mode before completion, and when the next variable display is started in a situation where it is in an intermediate mode different from the mode before completion, it is changed to the completion mode based on the timing, and the pending display is displayed. When the variable display when the number of pending memories is N ends and a new pending memory is stored before the specific period elapses from the pending shift start timing, a change is executed over the predetermined period, in which the pending display is started in the start mode at the pending display position corresponding to the N-th number, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the pending display is displayed. During the execution of the variable display when the number of pending memories is 0, that is, the variable display in a situation where no pending memory is stored When the period until the variable display ends with the reserved memory count being 0 is longer than the predetermined period, and a new reserved memory is stored, if the reserved display is started in the start mode at the reserved display position corresponding to the next variable display, changed step by step from the start mode to the plurality of intermediate modes, and then changed to the completion mode, the change is executed over the predetermined period to display the reserved display. When the period until the variable display ends with the reserved memory count being 0 is shorter than the predetermined period, and a new reserved memory is stored, if the reserved display is started in the start mode at the reserved display position corresponding to the next variable display, changed to an intermediate mode different from the pre-completion mode from the start mode, and the next variable display is started in a situation where it is in an intermediate mode different from the pre-completion mode, the reserved display is changed to the completion mode based on the timing and displayed. After the reserved display is displayed in the completion mode, the display area used for the change in which the reserved display is started in the start mode, changed step by step from the start mode to the plurality of intermediate modes, and then changed to the completion mode is larger than the display area used for the display of the reserved display during the period until the reserved shift start timing. It is characterized by this. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state. Therefore, it does not interfere with the subsequent movement of the pending display position and can prevent misrecognition of the number of pending memories. Also, by differentiating whether or not to change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual changes during the storage of new pending memories. Furthermore, when the number of pending memories is 0, if there is no delay of a predetermined period until the start of the next variable display at the timing when a new pending memory is stored, by changing the gradual change at the time of storing the new pending memory to the completed state, even when the number of pending memories is 0, it does not interfere with the movement of the pending display position and can prevent misrecognition of the number of pending memories. Also, since the pending memory newly stored during a specific period in which the pending display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the gradual change to the completed state, and the player can be shown the gradual change. When the pending display already displayed at the pending display position corresponding to the Nth time moves, even if the pending display newly displayed at the pending display position corresponding to the Nth time overlaps, since the display area used is wider for the newly displayed pending display, the newly displayed pending display is easy to visually recognize and misrecognition can be prevented. Furthermore, even if the timing of the new display of the pending display overlaps with the already displayed pending display, since the display area used is wider for the display of the new pending display, the player can recognize the pending memory. Corresponding Drawings: Figures 56, 72, 73, 81, 82
[0017] [Embodiment 8] The gaming machine of Embodiment 8 is a gaming machine capable of performing variable display and controlling to an advantageous state favorable to the player, comprising game control means, performance execution means, and pending memory means, wherein the pending memory means can store information regarding variable display as pending memory with a predetermined number as the upper limit. When the variable display ends, if there is a pending memory corresponding to the next variable display, the next variable display can be executed. The effect execution means When the pending memory is stored, it is possible to display a pending display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a mode immediately before the completion mode, which is one mode before the completion mode. During the variable display, the pending display corresponding to the pending memory already stored can be moved from the position where it has been displayed for a specific period from the pending shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display. During the execution of the variable display when the number of pending memories N is less than the predetermined number, that is, during the variable display when the number of pending memories is N When a new pending memory is stored when the period until the next variable display starts is longer than the predetermined period, the change of starting the pending display in the start mode at the pending display position corresponding to the (N + 1)-th number, gradually changing from the start mode to the plurality of intermediate modes, and then changing to the completion mode is executed over the predetermined period to display the pending display. When the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and a new pending memory is stored, the pending display is started in the start mode at the pending display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the mode immediately before the completion mode, and when it becomes the timing when the next variable display starts in the situation of being in the intermediate mode different from the mode immediately before the completion mode, the pending display is changed to the completion mode based on the timing to display the pending display. When the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and a new pending memory is stored, the pending display is started in the start mode at the pending display position corresponding to the (N + 1)-th number, and when it becomes the timing when the next variable display starts in the situation of being in the start mode, the pending display is changed to the completion mode based on the timing to display the pending display. When a new suspended memory is stored immediately after the variable display for the stored suspended memory number N ends and the next variable display starts, a change is executed over the predetermined period to display the suspended display. The change is to start the suspended display in the start mode at the suspended display position corresponding to the Nth number, gradually change from the start mode to the plurality of intermediate modes, and then change to the completion mode. During the execution of the variable display when the number of stored suspended memories is 0, which is a variable display in a situation where no suspended memory is stored. When a new suspended memory is stored during the period until the variable display when the number of stored suspended memories is 0 ends and this period is longer than the predetermined period, a change is executed over the predetermined period to display the suspended display. The change is to start the suspended display in the start mode at the suspended display position corresponding to the next variable display, gradually change from the start mode to the plurality of intermediate modes, and then change to the completion mode. When the period until the variable display when the number of stored suspended memories is 0 ends is shorter than the predetermined period and it is not immediately before the end of the variable display when the number of stored suspended memories is 0, and a new suspended memory is stored, the suspended display is started in the start mode at the suspended display position corresponding to the next variable display, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing to start the next variable display in a situation where it is in an intermediate mode different from the pre-completion mode, the suspended display is changed to the completion mode based on this timing and the suspended display is displayed. When the period until the variable display when the number of stored suspended memories is 0 ends is shorter than the predetermined period and it is immediately before the end of the variable display when the number of stored suspended memories is 0, and a new suspended memory is stored, the suspended display is started in the start mode at the suspended display position corresponding to the next variable display, and when it becomes the timing to start the next variable display in a situation where it is in the start mode, the suspended display is changed to the completion mode based on this timing and the suspended display is displayed. When a new suspended memory is stored immediately after the variable display when the number of stored suspended memories is 0 ends, the suspended display is displayed from the completion mode at the suspended display position corresponding to the next variable display of the variable display when the number of stored suspended memories is 0. After displaying the hold indication in the completion mode, the display area used for the change in which the hold indication is started in the start mode, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode is larger than the display area used for the display of the hold indication during the period until the hold shift start timing. It is characterized by this. According to this feature, if the suspended memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state, so that the subsequent movement of the suspended display position is not hindered and misrecognition of the number of suspended memories can be prevented. Also, by differentiating whether or not to change to the completed state when the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual changes at the time of storing a new suspended memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, the gradual changes at the time of storing a new suspended memory can be shown to the player more suitably. Additionally, when the number of suspended memories is 0, if there is no delay of a predetermined period until the start of the next variable display at the timing when a new suspended memory is stored, by changing the gradual change at the time of storing the new suspended memory to the completed state, even when the number of suspended memories is 0, the movement of the suspended display position is not hindered and misrecognition of the number of suspended memories can be prevented. Also, when the number of suspended memories has reached the upper limit, even if a predetermined variable display ends, no suspended memory is stored until the next variable display starts, so the gradual change for the new suspended memory is not executed either, and the player can be concentrated on the variable display result of the ended variable display. Since the suspended memory newly stored during the specific period in which the suspended display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the gradual change to the completed state, and the gradual change can be shown to the player. Also, when the suspended display that has already been displayed at a predetermined number moves, even if the suspended display newly displayed at the predetermined number overlaps, since the display area used is wider for the suspended display newly displayed, the newly displayed suspended display is easy to visually recognize and misrecognition can be prevented. Furthermore, even if the timing of the new display of the suspended display overlaps with the already displayed suspended display, since the display area used is wider for the gradual change of the new suspended display, the player can recognize the suspended memory. Corresponding drawings: Figures 56, 72, 73, 75, 76, 81 to 84
[0018] [Form 9] The gaming machine of Form 9 is A gaming machine capable of performing variable display and controllable to an advantageous state favorable to a player, comprising game control means, effect execution means, and hold memory means, wherein the hold memory means can store information related to variable display as hold memory with a predetermined number as an upper limit, when the variable display ends, the game control means can execute the next variable display if there is hold memory corresponding to the next variable display, the effect execution means, when hold memory is stored, can display a hold display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a mode immediately before the completion mode, when hold memory is stored, can execute a winning effect, during variable display, it is possible to move the hold display corresponding to the hold memory already stored to a position corresponding to the next variable display from the position where it has been displayed over a specific period from the hold shift start timing based on the timing when the next variable display starts, during the execution of the variable display when the number of hold memories N less than the predetermined number is stored, i.e., the variable display when the number of hold memories is N, when a new hold memory is stored when the period until the next variable display starts is longer than a predetermined period, execute a change of starting the hold display in the start mode at the hold display position corresponding to the (N + 1)-th number, gradually changing from the start mode to the plurality of intermediate modes, and then changing to the completion mode over the predetermined period to display the hold display, when a new hold memory is stored when the period until the next variable display starts is shorter than the predetermined period, start the hold display in the start mode at the hold display position corresponding to the (N + 1)-th number, change it to an intermediate mode different from the mode immediately before the completion mode, and when it becomes the timing when the next variable display starts in a situation where it is in an intermediate mode different from the mode immediately before the completion mode, change it to the completion mode based on the timing to display the hold display, When the variable display for the reserved memory number N ends and a new reserved memory is stored before the specific period elapses from the reserved shift start timing, a change is executed over the predetermined period to start the reserved display in the start mode at the reserved display position corresponding to the Nth number, change stepwise from the start mode to the plurality of intermediate modes, and then change to the completion mode, to display the reserved display, During the execution of the variable display for the reserved memory number N, when a new reserved memory is stored when the period until the start of the next variable display is longer than the predetermined period, and during the execution of the variable display for the reserved memory number N, when a new reserved memory is stored when the period until the start of the next variable display is shorter than the predetermined period, and when the variable display for the reserved memory number N ends and a new reserved memory is stored before the specific period elapses from the reserved shift start timing, in any of these cases, the winning performance can be executed. It is characterized by this. According to this feature, when the reserved memory stored from during the variable display until the start of the next variable display is still in the intermediate mode at the start of the variable display, it is changed to the completion mode, so there is no hindrance to the movement of the reserved display position that will be performed later, and misrecognition of the reserved memory number can be prevented. Also, by distinguishing the presence or absence of the change to the completion mode when the period until the start of the next variable display is longer and shorter than the predetermined period, it is possible to suitably show the player the reserved memory number and the stepwise change at the time of storing a new reserved memory. Furthermore, by the discrimination immediately before and after the start of the next variable display, the stepwise change at the time of storing a new reserved memory can be shown to the player more suitably. Also, since the reserved memory newly stored during the specific period in which the reserved display position moves from the start of the variable display is displayed at the display position of the destination from the beginning of the reserved display, there is no need to change the stepwise change to the completion mode, and the stepwise change can be shown to the player. Furthermore, since the winning performance can be executed regardless of the presence or absence of the change to the completion mode of the stepwise change, the player can more easily recognize the reserved memory. Corresponding drawings: FIGS. 72 to 74, FIG. 92 In addition, in this embodiment, The "winning performance" corresponds to the "flash performance at the time of winning".
[0019] [Form 10] The gaming machine of Form 10 is a gaming machine capable of performing variable display and controllable to an advantageous state favorable to the player, comprising game control means, performance execution means, and hold memory means, wherein the hold memory means can store information regarding variable display as hold memory with a predetermined number as the upper limit, wherein the game control means can execute the next variable display when there is hold memory corresponding to the next variable display when the variable display ends, wherein the performance execution means when hold memory is stored, can display a hold display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a mode immediately before the completion mode, when hold memory is stored, can execute a winning performance, during variable display, the hold display corresponding to the hold memory already stored can be moved from the position where it has been displayed over a specific period from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display, during the execution of the variable display with the number of hold memories N (N less than the predetermined number) being the variable display in the situation where N numbers of hold memories are stored, when a new hold memory is stored when the period until the next variable display starts is longer than the predetermined period, a change of starting the hold display in the start mode at the hold display position corresponding to the (N + 1)-th number, gradually changing from the start mode to the plurality of intermediate modes, and then changing to the completion mode is executed over the predetermined period to display the hold display, If the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and a new suspended memory is stored, the suspended display is started in the start mode at the suspended display position corresponding to the (N + 1)-th number, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing for the next variable display to start in a situation where it is in an intermediate mode different from the pre-completion mode, the suspended display is changed to the completion mode based on this timing and the suspended display is displayed. If the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and a new suspended memory is stored, the suspended display is started in the start mode at the suspended display position corresponding to the (N + 1)-th number, and when it becomes the timing for the next variable display to start in a situation where it is in the start mode, the suspended display is changed to the completion mode based on this timing and the suspended display is displayed. If the variable display at the N-th suspended memory ends and a new suspended memory is stored immediately after the next variable display starts, the suspended display is started in the start mode at the suspended display position corresponding to the N-th number, and after being gradually changed from the start mode to the plurality of intermediate modes, it is changed to the completion mode, and this change is executed over the predetermined period to display the suspended display. During the execution of the variable display at the N-th suspended memory, if a new suspended memory is stored when the period until the next variable display starts is longer than the predetermined period, and during the execution of the variable display at the N-th suspended memory, if a new suspended memory is stored when the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and during the execution of the variable display at the N-th suspended memory, if a new suspended memory is stored when the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and if the variable display at the N-th suspended memory ends and a new suspended memory is stored immediately after the next variable display starts, in any of these cases, the winning performance can be executed. It is characterized by this. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state. This can prevent interference with the subsequent movement of the pending display position and prevent misrecognition of the number of pending memories. Also, by differentiating the presence or absence of the change to the completed state when the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual change at the time of storing a new pending memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new pending memory. Also, since the pending memory newly stored during a specific period in which the pending display position moves from the start of the variable display is displayed at the display position of the destination of the movement from the beginning, there is no need to change the gradual change to the completed state, and the gradual change can be shown to the player. Furthermore, since the winning performance can be executed regardless of the presence or absence of the change to the completed state of the gradual change, the player can more easily recognize the pending memory. Corresponding drawings: Figures 72, 73, 75, 76, 92
[0020] [Form 11] A gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, game control means, performance execution means, and pending memory means. The pending memory means can store information related to variable display as pending memory with a predetermined number as the upper limit. When the variable display ends, the game control means can execute the next variable display if there is pending memory corresponding to the next variable display. The performance execution means When pending memory is stored, it is possible to gradually change and display a pending display including a start state, a completed state, and a plurality of intermediate states including a state before the completed state, which is a state before the completed state. When pending memory is stored, it is possible to execute a winning performance. The hold display corresponding to the hold memory already stored during variable display can be moved from the position where it has been displayed for a specific period starting from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display, During the execution of the variable display with the number of hold memories N (a variable display where less than the predetermined number of N hold memories are stored), When a new hold memory is stored when the period until the next variable display starts is longer than the predetermined period, a change is executed over the predetermined period in which the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the hold display is displayed, When a new hold memory is stored when the period until the next variable display starts is shorter than the predetermined period, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing when the next variable display starts in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing and the hold display is displayed, During the execution of the variable display with the number of hold memories 0 (a variable display where no hold memory is stored), When a new hold memory is stored when the period until the end of the variable display with the number of hold memories 0 is longer than the predetermined period, a change is executed over the predetermined period in which the hold display is started in the start mode at the hold display position corresponding to the next variable display, changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and the hold display is displayed, When a new hold memory is stored when the period until the end of the variable display with the number of hold memories 0 is shorter than the predetermined period, the hold display is started in the start mode at the hold display position corresponding to the next variable display, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing when the next variable display starts in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing and the hold display is displayed, During the execution of the variable display for the reserved memory number N, when the period until the next variable display starts is longer than the predetermined period and a new reserved memory is stored, during the execution of the variable display for the reserved memory number N, when the period until the next variable display starts is shorter than the predetermined period and a new reserved memory is stored, during the execution of the variable display for the reserved memory number 0, when the period until the variable display for the reserved memory number 0 ends is longer than the predetermined period and a new reserved memory is stored, and during the execution of the variable display for the reserved memory number 0, when the period until the variable display for the reserved memory number 0 ends is shorter than the predetermined period and a new reserved memory is stored, in any of these cases, the winning performance can be executed. It is characterized by this. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state. Therefore, it does not hinder the subsequent movement of the pending display position and can prevent misrecognition of the number of pending memories. Also, by differentiating the presence or absence of the change to the completed state when the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual change at the time of storing a new pending memory. Furthermore, when the number of pending memories is 0, if there is no delay of a predetermined period until the start of the next variable display at the timing when a new pending memory is stored, by changing the gradual change at the time of storing the new pending memory to the completed state, even when the number of pending memories is 0, it does not hinder the movement of the pending display position and can prevent misrecognition of the number of pending memories. Also, since the pending memory newly stored during a specific period in which the pending display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the gradual change to the completed state, and the player can be shown the gradual change. Even when the pending display newly displayed at the Nth time overlaps when the pending display already displayed at the Nth time moves, since the display area used for the newly displayed pending display is wider, the newly displayed pending display is easy to visually recognize and misrecognition can be prevented. Furthermore, since the winning effect can be executed regardless of the presence or absence of the change to the completed state of the gradual change, the player can more easily recognize the pending memory. Corresponding drawings: Figures 72, 73, 81, 82, 92
[0021] [Form 12] The gaming machine of Form 12 is a gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, comprising gaming control means, effect execution means, and pending memory means, wherein the pending memory means can store information related to variable display as pending memory with a predetermined number as the upper limit, When the variable display ends, if there is a suspended memory corresponding to the next variable display, the next variable display can be executed. The effect execution means When the suspended memory is stored, it is possible to display a suspended display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode, which is the mode immediately before the completion mode. When the suspended memory is stored, a winning effect can be executed. During the variable display, the suspended display corresponding to the suspended memory already stored can be moved from the position where it has been displayed over a specific period from the suspended shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display. During the execution of the variable display when the number of suspended memories N is less than the predetermined number, that is, during the variable display when the number of suspended memories is N When a new suspended memory is stored when the period until the next variable display starts is longer than the predetermined period, a change is executed over the predetermined period, in which the suspended display is started in the start mode at the suspended display position corresponding to the (N + 1)-th number, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode to display the suspended display. When a new suspended memory is stored when the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, the suspended display is started in the start mode at the suspended display position corresponding to the (N + 1)-th number, changed from the start mode to an intermediate mode different from the mode before completion, and when it becomes the timing when the next variable display starts in the situation of being in the intermediate mode different from the mode before completion, it is changed to the completion mode based on the timing to display the suspended display. When the period until the start of the next variable display is shorter than the predetermined period and is the period immediately before the start of the next variable display, if a new hold memory is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, and when it becomes the timing to start the next variable display in the situation of being in the start mode, the hold display is changed to the completion mode based on this timing and the hold display is displayed. When the variable display at the N-th hold memory number ends and a new hold memory is stored immediately after the start of the next variable display, the hold display is started in the start mode at the hold display position corresponding to the N-th number, and after gradually changing from the start mode to the plurality of intermediate modes, the change to the completion mode is executed over the predetermined period to display the hold display. During the execution of the variable display at the 0-th hold memory number, which is a variable display in a situation where no hold memory is stored. When the period until the end of the variable display at the 0-th hold memory number is longer than the predetermined period and a new hold memory is stored, the hold display is started in the start mode at the hold display position corresponding to the next variable display, and after gradually changing from the start mode to the plurality of intermediate modes, the change to the completion mode is executed over the predetermined period to display the hold display. When the period until the end of the variable display at the 0-th hold memory number is shorter than the predetermined period and is not immediately before the end of the variable display at the 0-th hold memory number, if a new hold memory is stored, the hold display is started in the start mode at the hold display position corresponding to the next variable display, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing to start the next variable display in the situation of being in the intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on this timing and the hold display is displayed. When the period until the variable display at the time of the reserved memory number 0 ends is shorter than the predetermined period, and when a new reserved memory is stored immediately before the variable display at the time of the reserved memory number 0 ends, the reserved display is started in the start mode at the reserved display position corresponding to the next variable display, and by becoming the timing at which the next variable display is started in the situation of being in the start mode, the reserved display is changed to the completion mode based on the timing and the reserved display is displayed. When a new reserved memory is stored immediately after the variable display at the time of the reserved memory number 0 ends, the reserved display is displayed from the completion mode at the reserved display position corresponding to the next variable display after the variable display at the time of the reserved memory number 0. During the execution of the variable display at the reserved memory number N, when a new reserved memory is stored when the period until the next variable display is started is longer than the predetermined period, and during the execution of the variable display at the reserved memory number N, when the period until the next variable display is started is shorter than the predetermined period and is not the period immediately before the next variable display is started, when a new reserved memory is stored, and during the execution of the variable display at the reserved memory number N, when the period until the next variable display is started is shorter than the predetermined period and is the period immediately before the next variable display is started, when a new reserved memory is stored, and when the variable display at the reserved memory number N ends and a new reserved memory is stored immediately after the next variable display is started, and during the execution of the variable display at the reserved memory number 0, when a new reserved memory is stored when the period until the variable display at the reserved memory number 0 ends is longer than the predetermined period, and during the execution of the variable display at the reserved memory number 0, when the period until the variable display at the reserved memory number 0 ends is shorter than the predetermined period and is not the period immediately before the variable display at the reserved memory number 0 ends, when a new reserved memory is stored, and during the execution of the variable display at the reserved memory number 0, when the period until the variable display at the reserved memory number 0 ends is shorter than the predetermined period and is the period immediately before the variable display at the reserved memory number 0 ends, when a new reserved memory is stored, and when a new reserved memory is stored immediately after the variable display at the reserved memory number 0 ends, in any of these cases, the winning performance can be executed. It is characterized by the following. According to this feature, if the suspended memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state. Therefore, it does not hinder the movement of the suspended display position that will be performed later, and it is possible to prevent misrecognition of the number of suspended memories. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual change at the time of storing a new suspended memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new suspended memory. Furthermore, when the number of suspended memories is 0, when there is no delay of a predetermined period until the start of the next variable display at the timing when a new suspended memory is stored, by changing the gradual change at the time of storing the new suspended memory to the completed state, even when the number of suspended memories is 0, it does not hinder the movement of the suspended display position, and it is possible to prevent misrecognition of the number of suspended memories. Also, when the number of suspended memories has reached the upper limit, even if a predetermined variable display ends, no suspended memory is stored until the next variable display starts. Therefore, the gradual change for the new suspended memory is not executed either, and the player can be concentrated on the variable display result of the ended variable display. Since the suspended memory newly stored during the specific period in which the suspended display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the gradual change to the completed state, and the gradual change can be shown to the player. Also, when the suspended display that has already been displayed at a predetermined number moves, even if the suspended display newly displayed at the predetermined number overlaps, since the display area used is wider for the suspended display newly displayed, it is easy to visually recognize the newly displayed suspended display, and misrecognition can be prevented. Furthermore, since the winning performance can be executed regardless of the presence or absence of the change to the completed state of the gradual change, the player can more easily recognize the suspended memory. Corresponding drawings: FIGS. 72, 73, 75, 76, 81 - 84, 92
[0022] [Form 13] The gaming machine of Form 13 is A gaming machine capable of performing variable display and controllable to an advantageous state favorable to the player, comprising game control means, performance execution means, and hold memory means, wherein the hold memory means can store information related to variable display as hold memory with a predetermined number as an upper limit, when the variable display ends, the game control means can execute the next variable display if there is hold memory corresponding to the next variable display, the performance execution means, when hold memory is stored, can display one of a plurality of types of hold displays including a normal hold display and a special hold display with a higher expectation of being controlled to the advantageous state than the normal hold display, when hold memory is stored, can display the normal hold display by gradually changing a plurality of normal intermediate modes including a normal start mode, a normal completion mode, and a normal pre-completion mode which is one mode before the normal completion mode, when hold memory is stored, can display the special hold display by gradually changing a plurality of special intermediate modes including a special start mode, a special completion mode, and a special pre-completion mode which is one mode before the special completion mode, during variable display, the hold display corresponding to the hold memory already stored can be moved from the position where it has been displayed for a specific period from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display, during the execution of the variable display with the number of hold memories N (N less than the predetermined number) which is a variable display in a situation where N hold memories are stored, when a new hold memory is stored and the normal hold display is to be displayed when the period until the next variable display starts is longer than the predetermined period, a change of starting the normal hold display in the normal start mode at the hold display position corresponding to the (N + 1)th number, gradually changing from the normal start mode to the plurality of normal intermediate modes, and then changing to the normal completion mode is executed over the predetermined period to display the normal hold display, When the period until the next variable display starts is longer than a predetermined period and a new hold memory is stored and the special hold display is to be displayed, a change is executed over the predetermined period in which the special hold display is started in the special start mode at the hold display position corresponding to the (N + 1)-th number, and after gradually changing from the special start mode to the plurality of special intermediate modes, it is changed to the special completion mode to display the special hold display. When the period until the next variable display starts is shorter than the predetermined period and a new hold memory is stored and the normal hold display is to be displayed, the normal hold display is started in the normal start mode at the hold display position corresponding to the (N + 1)-th number, changed from the normal start mode to a normal intermediate mode different from the normal pre-completion mode, and when the next variable display starts in a situation where it is in a normal intermediate mode different from the normal pre-completion mode, based on the timing, it is changed to the normal completion mode to display the normal hold display. When the period until the next variable display starts is shorter than the predetermined period and a new hold memory is stored and the special hold display is to be displayed, the special hold display is started in the special start mode at the hold display position corresponding to the (N + 1)-th number, changed from the special start mode to a special intermediate mode different from the special pre-completion mode, and when the next variable display starts in a situation where it is in a special intermediate mode different from the special pre-completion mode, based on the timing, it is changed to the special completion mode to display the special hold display. When the variable display at the hold memory number N ends, and a new hold memory is stored and the normal hold display is to be displayed before the specific period elapses from the hold shift start timing, a change is executed over the predetermined period in which the normal hold display is started in the normal start mode at the hold display position corresponding to the N-th number, and after gradually changing from the normal start mode to the plurality of normal intermediate modes, it is changed to the normal completion mode to display the normal hold display. When the variable display for the reserved memory count N ends, and a new reserved memory is stored and the special reserved display is to be shown before the specific period elapses from the reserved shift start timing, the special reserved display is started in the special start mode at the reserved display position corresponding to the Nth number, and after gradually changing from the special start mode to the plurality of special intermediate modes, it is changed to the special completion mode, and this change is executed over the predetermined period to display the special reserved display. It is characterized by this. According to this feature, if the reserved memory stored from the middle of the variable display to the start of the next variable display is still in the intermediate mode at the start of the variable display, it is changed to the completion mode, so there is no hindrance to the movement of the reserved display position that will be performed later, and misrecognition of the reserved memory count can be prevented. Also, by differentiating the presence or absence of the change to the completion mode depending on whether the period until the next variable display starts is longer or shorter than the predetermined period, it is possible to suitably show the player the reserved memory count and the gradual change at the time of storing a new reserved memory. Furthermore, by differentiating just before and just after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new reserved memory. Also, since the reserved memory newly stored during the specific period in which the reserved display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the gradual change to the completion mode, and the gradual change can be shown to the player. Furthermore, even when the special reserved display is shown, the same laws regarding the change to the normal completion mode or the special completion mode of the gradual display and the execution of this change as when the normal reserved display is shown are applied, so the player can more easily recognize the reserved memory. Corresponding drawings: Figures 69, 72 to 74 In addition, in this embodiment, The 'normal reserved display' corresponds to the 'white reserved display due to the determination that the execution of the reserved change effect is not performed' in this embodiment. The'special reserved display' corresponds to the 'blue and red reserved displays due to the determination that the execution of the reserved change effect is performed' in this embodiment. The "Normal Start Mode" corresponds to the "White Hold Display that is Displayed as the First Frame Image of the Appearance Animation Due to the Determination of Non-Execution of the Hold Change Effect" in this embodiment, The "Normal Completion Mode" corresponds to the "Hold Display that is Displayed as the 20th Frame Image of the Appearance Animation and the First Frame Image of the Shift Animation Due to the Determination of Non-Execution of the Hold Change Effect" in this embodiment, The "Normal Intermediate Mode" corresponds to the "Hold Display that is Displayed as the Images from the 2nd Frame to the 19th Frame of the Appearance Animation Due to the Determination of Non-Execution of the Hold Change Effect" in this embodiment, The "Special Start Mode" corresponds to the "Blue or Red Hold Display that is Displayed as the First Frame Image of the Appearance Animation Due to the Determination of Execution of the Hold Change Effect" in this embodiment, The "Special Completion Mode" corresponds to the "Blue or Red Hold Display that is Displayed as the 20th Frame Image of the Appearance Animation and the First Frame Image of the Shift Animation Due to the Determination of Execution of the Hold Change Effect" in this embodiment, The "Special Intermediate Mode" corresponds to the "Blue or Red Hold Display that is Displayed as the Images from the 2nd Frame to the 19th Frame of the Appearance Animation Due to the Determination of Non-Execution of the Hold Change Effect" in this embodiment.
[0023] [Form 14] The gaming machine of Form 14 is a gaming machine that performs variable display and can be controlled to an advantageous state that is advantageous to the player, comprising game control means, effect execution means, and hold storage means, The hold storage means can store information related to variable display as hold storage with a predetermined number as the upper limit, When the variable display ends, the game control means can execute the next variable display if there is hold storage corresponding to the next variable display, The effect execution means When a hold memory is stored, it is possible to display one of a plurality of types of hold displays including a normal hold display and a special hold display with a higher expectation of being controlled to the advantageous state than the normal hold display. When a hold memory is stored, it is possible to display the normal hold display by gradually changing between a normal start mode, a normal completion mode, and a plurality of normal intermediate modes including a normal pre-completion mode which is the mode immediately before the normal completion mode. When a hold memory is stored, it is possible to display the special hold display by gradually changing between a special start mode, a special completion mode, and a plurality of special intermediate modes including a special pre-completion mode which is the mode immediately before the special completion mode. During variable display, the hold display corresponding to the hold memory already stored can be moved from the position where it was displayed over a specific period from the hold shift start timing based on the timing when the next variable display is started to the position corresponding to the next variable display. During the execution of the variable display when the number of hold memories N is less than the predetermined number, that is, the variable display when the number of hold memories is N. When a new hold memory is stored and the normal hold display is to be displayed when the period until the next variable display is started is longer than the predetermined period, a change is executed over the predetermined period in which the normal hold display is started in the normal start mode at the hold display position corresponding to the (N + 1)-th number, gradually changed from the normal start mode to the plurality of normal intermediate modes, and then changed to the normal completion mode, to display the normal hold display. When a new hold memory is stored and the special hold display is to be displayed when the period until the next variable display is started is longer than the predetermined period, a change is executed over the predetermined period in which the special hold display is started in the special start mode at the hold display position corresponding to the (N + 1)-th number, gradually changed from the special start mode to the plurality of special intermediate modes, and then changed to the special completion mode, to display the special hold display. When the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and a new hold memory is stored and the normal hold display is to be displayed, the normal hold display is started in the normal start mode at the hold display position corresponding to the (N + 1)-th number, changed from the normal start mode to a normal intermediate mode different from the normal pre-completion mode, and when the next variable display starts in a situation where it is in a normal intermediate mode different from the normal pre-completion mode, the normal hold display is displayed by changing to the normal completion mode based on the timing, When the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and a new hold memory is stored and the special hold display is to be displayed, the special hold display is started in the special start mode at the hold display position corresponding to the (N + 1)-th number, changed from the special start mode to a special intermediate mode different from the special pre-completion mode, and when the next variable display starts in a situation where it is in a special intermediate mode different from the special pre-completion mode, the special hold display is displayed by changing to the special completion mode based on the timing, When the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and a new hold memory is stored and the normal hold display is to be displayed, the normal hold display is started in the normal start mode at the hold display position corresponding to the (N + 1)-th number, and when the next variable display starts in a situation where it is in the normal start mode, the normal hold display is displayed by changing to the normal completion mode based on the timing, When the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and a new hold memory is stored and the special hold display is to be displayed, the special hold display is started in the special start mode at the hold display position corresponding to the (N + 1)-th number, and when the next variable display starts in a situation where it is in the special start mode, the special hold display is displayed by changing to the special completion mode based on the timing, When the variable display for the reserved memory count N ends and a new reserved memory is stored immediately after the start of the next variable display and the normal reserved display is to be shown, a change is executed over the predetermined period in which the normal reserved display is started in the normal start mode at the reserved display position corresponding to the Nth item, changed step by step from the normal start mode to the plurality of normal intermediate modes, and then changed to the normal completion mode, to display the normal reserved display. When the variable display for the reserved memory count N ends and a new reserved memory is stored immediately after the start of the next variable display and the special reserved display is to be shown, a change is executed over the predetermined period in which the special reserved display is started in the special start mode at the reserved display position corresponding to the Nth item, changed step by step from the special start mode to the plurality of special intermediate modes, and then changed to the special completion mode, to display the special reserved display. It is characterized by this. According to this feature, when the reserved memory stored from the middle of the variable display to the start of the next variable display is still in the intermediate mode at the start of the variable display, it is changed to the completion mode, so there is no hindrance to the movement of the reserved display position that will be performed later, and misrecognition of the reserved memory count can be prevented. Also, by differentiating the presence or absence of the change to the completion mode depending on whether the period until the start of the next variable display is longer or shorter than the predetermined period, it is possible to suitably show the player the reserved memory count and the stepwise change at the time of storing a new reserved memory. Furthermore, by differentiating just before and immediately after the start of the next variable display, the stepwise change at the time of storing a new reserved memory can be shown to the player more suitably. Also, the reserved memory stored at the same timing as the start of the variable display is shown at the display position of the destination from the beginning, so there is no need to change the stepwise change to the completion mode, and the stepwise change can be shown to the player. Furthermore, even when the special reserved display is shown, the same laws regarding the change to the normal completion mode or the special completion mode of the stepwise display and the execution of the change are applied as when the normal reserved display is shown, so the player can more easily recognize the reserved memory. Corresponding drawings: FIGS. 69, 72, 73, 75, 76
[0024] [Form 15] The gaming machine of Form 15 is A gaming machine capable of performing variable display and controllable to an advantageous state favorable to the player, comprising game control means, performance execution means, and hold memory means, wherein the hold memory means can store information regarding variable display as hold memory with a predetermined number as an upper limit, when the variable display ends, the game control means can execute the next variable display if there is hold memory corresponding to the next variable display, the performance execution means, when hold memory is stored, can display one of a plurality of types of hold displays including a normal hold display and a special hold display that is more likely to be controlled to the advantageous state than the normal hold display, when hold memory is stored, can display the normal hold display by gradually changing among a normal start mode, a normal completion mode, and a plurality of normal intermediate modes including a normal pre-completion mode that is one mode before the normal completion mode, when hold memory is stored, can display the special hold display by gradually changing among a special start mode, a special completion mode, and a plurality of special intermediate modes including a special pre-completion mode that is one mode before the special completion mode, during variable display, the hold display corresponding to the hold memory already stored can be moved from the position where it has been displayed over a specific period from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display, during the execution of the variable display when the number of hold memories N is less than the predetermined number, i.e., the variable display when the number of hold memories is N, when a new hold memory is stored and the normal hold display is to be displayed when the period until the next variable display starts is longer than the predetermined period, a change is executed over the predetermined period to display the normal hold display by starting the normal hold display in the normal start mode corresponding to the (N + 1)-th position, gradually changing from the normal start mode to the plurality of normal intermediate modes, and then changing to the normal completion mode, When the period until the next variable display starts is longer than a predetermined period and a new suspended memory is stored and the special suspended display is to be displayed, a change is executed over the predetermined period, in which the special suspended display is started in the special start mode at the suspended display position corresponding to the (N + 1)-th number, changed stepwise from the special start mode to the plurality of special intermediate modes, and then changed to the special completion mode, to display the special suspended display. When the period until the next variable display starts is shorter than the predetermined period and a new suspended memory is stored and the normal suspended display is to be displayed, the normal suspended display is started in the normal start mode at the suspended display position corresponding to the (N + 1)-th number, changed from the normal start mode to a normal intermediate mode different from the normal pre-completion mode, and changed to the normal completion mode based on the timing at which the next variable display starts in a situation where the mode is the normal intermediate mode different from the normal pre-completion mode, to display the normal suspended display. When the period until the next variable display starts is shorter than the predetermined period and a new suspended memory is stored and the special suspended display is to be displayed, the special suspended display is started in the special start mode at the suspended display position corresponding to the (N + 1)-th number, changed from the special start mode to a special intermediate mode different from the special pre-completion mode, and changed to the special completion mode based on the timing at which the next variable display starts in a situation where the mode is the special intermediate mode different from the special pre-completion mode, to display the special suspended display. During the execution of the variable display with a suspended memory count of 0, which is a variable display in a situation where no suspended memory is stored. When the period until the variable display with a suspended memory count of 0 ends is longer than the predetermined period and a new suspended memory is stored and the normal suspended display is to be displayed, a change is executed over the predetermined period, in which the normal suspended display is started in the normal start mode at the suspended display position corresponding to the next variable display, changed stepwise from the normal start mode to the plurality of normal intermediate modes, and then changed to the normal completion mode, to display the normal suspended display. When the period until the variable display ends when the number of stored memories is 0 is longer than the predetermined period, and a new stored memory is stored and the special stored display is to be displayed, the special stored display is started in the special start mode at the stored display position corresponding to the next variable display, and after gradually changing from the special start mode to the plurality of special intermediate modes, it is changed to the special completion mode, and this change is executed over the predetermined period to display the special stored display. When the period until the variable display ends when the number of stored memories is 0 is shorter than the predetermined period, and a new stored memory is stored and the normal stored display is to be displayed, the normal stored display is started in the normal start mode at the stored display position corresponding to the next variable display, changed from the normal start mode to a normal intermediate mode different from the normal pre-completion mode, and when the next variable display starts in a situation where it is in a normal intermediate mode different from the normal pre-completion mode, based on this timing, it is changed to the normal completion mode to display the normal stored display. When the period until the variable display ends when the number of stored memories is 0 is shorter than the predetermined period, and a new stored memory is stored and the special stored display is to be displayed, the special stored display is started in the special start mode at the stored display position corresponding to the next variable display, changed from the special start mode to a special intermediate mode different from the special pre-completion mode, and when the next variable display starts in a situation where it is in a special intermediate mode different from the special pre-completion mode, based on this timing, it is changed to the special completion mode to display the special stored display. It is characterized by this. According to this feature, if the suspended memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state, so that there is no obstacle to the subsequent movement of the suspended display position, and misrecognition of the number of suspended memories can be prevented. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual change at the time of storing a new suspended memory. Furthermore, when the number of suspended memories is 0, if there is no delay of a predetermined period until the start of the next variable display at the timing when a new suspended memory is stored, by changing the gradual change at the time of storing the new suspended memory to the completed state, even when the number of suspended memories is 0, there is no obstacle to the movement of the suspended display position, and misrecognition of the number of suspended memories can be prevented. Also, the suspended memories newly stored during a specific period in which the suspended display position moves from the start of the variable display are displayed at the display position of the destination from the beginning, so there is no need to change the gradual change to the completed state, and the player can be shown the gradual change. Also, when the suspended display that has already been displayed for the Nth time moves, even if the suspended display newly displayed for the Nth time overlaps, since the display area used is wider for the newly displayed suspended display, the newly displayed suspended display is easy to visually recognize, and misrecognition can be prevented. Furthermore, even when a special suspended display is displayed, the rules regarding the change to the normal completed state or the special completed state of the gradual display and the execution of the change are applied in the same way as when a normal suspended display is displayed, so that the player can more easily recognize the suspended memory. Corresponding Drawings: Figures 69, 72, 73, 81, 82
[0025] [Form 16] The gaming machine of Form 16 is a gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, game control means, performance execution means, and suspended memory means, The suspended memory means can store information regarding variable display as suspended memory with a predetermined number as the upper limit. When the variable display ends, if there is a pending memory corresponding to the next variable display, the next variable display can be executed. The effect execution means When a pending memory is stored, it is possible to display one of a plurality of types of pending displays including a normal pending display and a special pending display whose degree of expectation of being controlled to the advantageous state is higher than that of the normal pending display. When a pending memory is stored, it is possible to display the normal pending display by gradually changing a normal start mode, a normal completion mode, and a plurality of normal intermediate modes including a normal pre-completion mode which is one mode before the normal completion mode. When a pending memory is stored, it is possible to display the special pending display by gradually changing a special start mode, a special completion mode, and a plurality of special intermediate modes including a special pre-completion mode which is one mode before the special completion mode. During the variable display, the pending display corresponding to the pending memory already stored can be moved from the position where it has been displayed for a specific period from the pending shift start timing based on the timing when the next variable display is started to the position corresponding to the next variable display. During the execution of the variable display when the number of pending memories N is less than the predetermined number, that is, the variable display when the number of pending memories is N When a new pending memory is stored and the normal pending display is to be displayed when the period until the next variable display starts is longer than the predetermined period, the normal pending display is started in the normal start mode at the pending display position corresponding to the (N + 1)-th number, and after gradually changing from the normal start mode to the plurality of normal intermediate modes, a change to the normal completion mode is executed over the predetermined period to display the normal pending display. When a new pending memory is stored and the special pending display is to be displayed when the period until the next variable display starts is longer than the predetermined period, the special pending display is started in the special start mode at the pending display position corresponding to the (N + 1)-th number, and after gradually changing from the special start mode to the plurality of special intermediate modes, a change to the special completion mode is executed over the predetermined period to display the special pending display. When the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and a new hold memory is stored and the normal hold display is to be displayed, the normal hold display is started in the normal start mode at the hold display position corresponding to the (N + 1)-th number, changed from the normal start mode to a normal intermediate mode different from the normal pre-completion mode, and when the next variable display starts in a situation where it is in a normal intermediate mode different from the normal pre-completion mode, it is changed to the normal completion mode based on this timing and the normal hold display is displayed. When the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and a new hold memory is stored and the special hold display is to be displayed, the special hold display is started in the special start mode at the hold display position corresponding to the (N + 1)-th number, changed from the special start mode to a special intermediate mode different from the special pre-completion mode, and when the next variable display starts in a situation where it is in a special intermediate mode different from the special pre-completion mode, it is changed to the special completion mode based on this timing and the special hold display is displayed. When the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and a new hold memory is stored and the normal hold display is to be displayed, the normal hold display is started in the normal start mode at the hold display position corresponding to the (N + 1)-th number, and when it is the timing when the next variable display starts in a situation where it is in the normal start mode, it is changed to the normal completion mode based on this timing and the normal hold display is displayed. When the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and a new hold memory is stored and the special hold display is to be displayed, the special hold display is started in the special start mode at the hold display position corresponding to the (N + 1)-th number, and when it is the timing when the next variable display starts in a situation where it is in the special start mode, it is changed to the special completion mode based on this timing and the special hold display is displayed. When the variable display for the reserved memory number N ends and a new reserved memory is stored immediately after the start of the next variable display and the normal reserved display is to be displayed, a change is executed over the predetermined period in which the normal reserved display is started in the normal start mode at the reserved display position corresponding to the Nth number, changed step by step from the normal start mode to the plurality of normal intermediate modes, and then changed to the normal completion mode, to display the normal reserved display. When the variable display for the reserved memory number N ends and a new reserved memory is stored immediately after the start of the next variable display and the special reserved display is to be displayed, a change is executed over the predetermined period in which the special reserved display is started in the special start mode at the reserved display position corresponding to the Nth number, changed step by step from the special start mode to the plurality of special intermediate modes, and then changed to the special completion mode, to display the special reserved display. During the execution of the variable display for the reserved memory number 0, which is a variable display in a situation where no reserved memory is stored. When the period until the end of the variable display for the reserved memory number 0 is longer than the predetermined period and a new reserved memory is stored and the normal reserved display is to be displayed, a change is executed over the predetermined period in which the normal reserved display is started in the normal start mode at the reserved display position corresponding to the next variable display, changed step by step from the normal start mode to the plurality of normal intermediate modes, and then changed to the normal completion mode, to display the normal reserved display. When the period until the end of the variable display for the reserved memory number 0 is longer than the predetermined period and a new reserved memory is stored and the special reserved display is to be displayed, a change is executed over the predetermined period in which the special reserved display is started in the special start mode at the reserved display position corresponding to the next variable display, changed step by step from the special start mode to the plurality of special intermediate modes, and then changed to the special completion mode, to display the special reserved display. When the period until the variable display at the time of the reserved memory number 0 ends is shorter than the predetermined period and it is not immediately before the end of the variable display at the time of the reserved memory number 0, and when a new reserved memory is stored and the normal reserved display is to be displayed, the normal reserved display is started in the normal start mode at the reserved display position corresponding to the next variable display, changed from the normal start mode to a normal intermediate mode different from the normal pre-completion mode, and when the next variable display starts in a situation where it is in a normal intermediate mode different from the normal pre-completion mode, the normal reserved display is displayed by changing to the normal completion mode based on the timing, When the period until the variable display at the time of the reserved memory number 0 ends is shorter than the predetermined period and it is not immediately before the end of the variable display at the time of the reserved memory number 0, and when a new reserved memory is stored and the special reserved display is to be displayed, the special reserved display is started in the special start mode at the reserved display position corresponding to the next variable display, changed from the special start mode to a special intermediate mode different from the special pre-completion mode, and when the next variable display starts in a situation where it is in a special intermediate mode different from the special pre-completion mode, the special reserved display is displayed by changing to the special completion mode based on the timing, When the period until the variable display at the time of the reserved memory number 0 ends is shorter than the predetermined period and it is immediately before the end of the variable display at the time of the reserved memory number 0, and when a new reserved memory is stored and the normal reserved display is to be displayed, the normal reserved display is started in the normal start mode at the reserved display position corresponding to the next variable display, and when it is the timing when the next variable display starts in a situation where it is in the normal start mode, the normal reserved display is displayed by changing to the normal completion mode based on the timing, When the period until the variable display at the time of the reserved memory number 0 ends is shorter than the predetermined period and it is immediately before the end of the variable display at the time of the reserved memory number 0, and when a new reserved memory is stored and the special reserved display is to be displayed, the special reserved display is started in the special start mode at the reserved display position corresponding to the next variable display, and when it is the timing when the next variable display starts in a situation where it is in the special start mode, the special reserved display is displayed by changing to the special completion mode based on the timing, When a new pending memory is stored immediately after the variable display at the time of the pending memory count 0 ends and the normal pending display is to be displayed, the normal pending display is displayed from the normal completion mode at the pending display position corresponding to the next variable display after the variable display at the time of the pending memory count 0, When a new pending memory is stored immediately after the variable display at the time of the pending memory count 0 ends and the special pending display is to be displayed, the special pending display is displayed from the special completion mode at the pending display position corresponding to the next variable display after the variable display at the time of the pending memory count 0, which is characterized by the above. According to this feature, if the suspended memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state. Thus, it is possible to prevent an obstacle to the movement of the suspended display position that is to be performed thereafter and to prevent misrecognition of the number of suspended memories. Further, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual change at the time of storing a new suspended memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new suspended memory. Furthermore, when the number of suspended memories is 0, when there is no delay of a predetermined period until the start of the next variable display at the timing when a new suspended memory is stored, by changing the gradual change at the time of storing the new suspended memory to the completed state, even when the number of suspended memories is 0, it is possible to prevent an obstacle to the movement of the suspended display position and to prevent misrecognition of the number of suspended memories. Also, when the number of suspended memories has reached the upper limit, even if a predetermined variable display ends, no suspended memory is stored until the next variable display starts. Therefore, the gradual change for the new suspended memory is not executed either, and the player can be focused on the variable display result of the ended variable display. Since the suspended memory newly stored during a specific period in which the suspended display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, it is not necessary to change the gradual change to the completed state, and the gradual change can be shown to the player. Also, when the suspended display that has already been displayed at a predetermined number moves, even if the suspended display newly displayed at the predetermined number overlaps, since the display area used is wider for the suspended display newly displayed, the newly displayed suspended display is easy to visually recognize, and misrecognition can be prevented. Furthermore, even when a special suspended display is displayed, since the same rules regarding the change to the normal completed state or the special completed state of the gradual display and the execution of the change apply as when a normal suspended display is displayed, the player can more easily recognize the suspended memory. Corresponding Drawings: FIGS. 69, 72, 73, 75, 76, 81 to 84
[0026] [Form 17] The gaming machine of form 17 is a gaming machine capable of performing variable display and controllable to an advantageous state favorable to the player, comprising game control means, performance execution means, and held memory means, wherein the held memory means can store information regarding variable display as held memory with a predetermined number as an upper limit, wherein the game control means can execute the next variable display when there is held memory corresponding to the next variable display when the variable display ends, wherein the performance execution means can execute performances corresponding to a plurality of modes including a first mode and a second mode different from the first mode, and can display a plurality of types of held displays including a first mode held display corresponding to the first mode and a second mode held display corresponding to the second mode when held memory is stored, when held memory is stored during the first mode, can display the first mode held display by gradually changing a plurality of in - first - mode intermediate modes including a first - mode start mode, a first - mode completion mode, and a first - mode pre - completion mode which is one mode before the first - mode completion mode, when held memory is stored during the second mode, can display the second mode held display by gradually changing a plurality of in - second - mode intermediate modes including a second - mode start mode, a second - mode completion mode, and a second - mode pre - completion mode which is one mode before the second - mode completion mode, during variable display, can move the held display corresponding to the held memory already stored from the position where it has been displayed over a specific period from the held - shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display, during the execution of the variable display with the number of held memories N (when the number of held memories is less than the predetermined number) which is a variable display in a situation where N numbers of held memories are stored, When in the first mode and the period until the next variable display starts is longer than a predetermined period, if a new hold memory is stored and the first mode hold display is to be displayed, the first mode hold display is started in the first mode start mode at the hold display position corresponding to the (N + 1)-th number, and after gradually changing from the first mode start mode to the plurality of first mode intermediate modes, it is changed to the first mode completion mode, and this change is executed over the predetermined period to display the first mode hold display. When in the second mode and the period until the next variable display starts is longer than a predetermined period, if a new hold memory is stored and the second mode hold display is to be displayed, the second mode hold display is started in the second mode start mode at the hold display position corresponding to the (N + 1)-th number, and after gradually changing from the second mode start mode to the plurality of second mode intermediate modes, it is changed to the second mode completion mode, and this change is executed over the predetermined period to display the second mode hold display. When in the first mode and the period until the next variable display starts is shorter than the predetermined period, if a new hold memory is stored and the first mode hold display is to be displayed, the first mode hold display is started in the first mode start mode at the hold display position corresponding to the (N + 1)-th number, and is changed from the first mode start mode to an intermediate mode of the first mode different from the state before completion of the first mode. When the next variable display starts in the situation of being in an intermediate mode of the first mode different from the state before completion of the first mode, based on this timing, it is changed to the first mode completion mode to display the first mode hold display. When in the second mode and the period until the next variable display starts is shorter than the predetermined period, if a new hold memory is stored and the second mode hold display is to be displayed, the second mode hold display is started in the second mode start mode at the hold display position corresponding to the (N + 1)-th number, and is changed from the second mode start mode to an intermediate mode of the second mode different from the state before completion of the second mode. When the next variable display starts in the situation of being in an intermediate mode of the second mode different from the state before completion of the second mode, based on this timing, it is changed to the second mode completion mode to display the second mode hold display. When in the first mode, after the variable display for the number of pending memories N ends and a new pending memory is stored before the specific period elapses from the pending shift start timing and the first-mode pending display is to be shown, a change is made in which the first-mode pending display is started in the first-mode start mode at the pending display position corresponding to the Nth number, changes stepwise from the first-mode start mode to the plurality of first-mode intermediate modes, and then changes to the first-mode completion mode, and this change is executed over the predetermined period to display the first-mode pending display. When in the second mode, after the variable display for the number of pending memories N ends and a new pending memory is stored before the specific period elapses from the pending shift start timing and the second-mode pending display is to be shown, a change is made in which the second-mode pending display is started in the second-mode start mode at the pending display position corresponding to the Nth number, changes stepwise from the second-mode start mode to the plurality of second-mode intermediate modes, and then changes to the second-mode completion mode, and this change is executed over the predetermined period to display the second-mode pending display. It is characterized by this. According to this feature, when the pending memory stored from the middle of the variable display until the start of the next variable display is still in an intermediate mode at the start of the variable display, it is changed to the completion mode, so there is no hindrance to the subsequent movement of the pending display position, and misrecognition of the number of pending memories can be prevented. Also, by differentiating the presence or absence of the change to the completion mode depending on whether the period until the start of the next variable display is longer or shorter than the predetermined period, it is possible to suitably show the player the number of pending memories and the stepwise change at the time of storing a new pending memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the stepwise change at the time of storing a new pending memory. Also, since the pending memory newly stored during the specific period in which the pending display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the stepwise change to the completion mode, and the stepwise change can be shown to the player. Also, even if the presentation mode is different, since the rule regarding the change to the completion mode of the stepwise display is similarly applied, the player can more easily recognize the pending memory. Corresponding drawings: FIGS. 72 to 74, FIG. 92 Further, in this form, 'First Mode' corresponds to 'Presentation Mode A' in this embodiment, 'Second Mode' corresponds to 'Presentation Mode B' in this embodiment, 'First Mode Hold Display' corresponds to 'Cube Hold Display in Presentation Mode A' in this embodiment, 'Second Mode Hold Display' corresponds to 'Octahedron Hold Display in Presentation Mode B' in this embodiment, 'First Mode Start Aspect' corresponds to 'Hold Display Shown as the First Frame Image of the Appearance Animation in Presentation Mode A' in this embodiment, 'First Mode Completion Aspect' corresponds to 'Hold Display Shown as the 20th Frame Image of the Appearance Animation and the First Frame Image of the Shift Animation in Presentation Mode A' in this embodiment, 'Second Mode Intermediate Aspect' corresponds to 'Hold Display Shown as the Images from the 2nd Frame to the 19th Frame of the Appearance Animation in Presentation Mode B' in this embodiment, 'Second Mode Start Aspect' corresponds to 'Hold Display Shown as the First Frame Image of the Appearance Animation in Presentation Mode B' in this embodiment, 'Second Mode Completion Aspect' corresponds to 'Hold Display Shown as the 20th Frame Image of the Appearance Animation and the First Frame Image of the Shift Animation in Presentation Mode B' in this embodiment, 'Second Mode Intermediate Aspect' corresponds to 'Hold Display Shown as the Images from the 2nd Frame to the 19th Frame of the Appearance Animation in Presentation Mode B' in this embodiment.
[0027] [Form 18] The gaming machine of Form 18 is a gaming machine capable of performing variable display and controlling to an advantageous state favorable to the player, comprising game control means, presentation execution means, and hold storage means. The retention memory means can store information related to variable display as retention memory with a predetermined number as the upper limit. When the variable display ends, the game control means can execute the next variable display if there is retention memory corresponding to the next variable display. The effect execution means can execute effects corresponding to a plurality of modes including a first mode and a second mode different from the first mode. When retention memory is stored, it can display a plurality of types of retention displays including a first mode retention display corresponding to the first mode and a second mode retention display corresponding to the second mode. When retention memory is stored during the first mode, it can display the first mode retention display by gradually changing a plurality of intermediate modes of the first mode including a first mode start mode, a first mode completion mode, and a first mode pre-completion mode which is one mode before the first mode completion mode. When retention memory is stored during the second mode, it can display the second mode retention display by gradually changing a plurality of intermediate modes of the second mode including a second mode start mode, a second mode completion mode, and a second mode pre-completion mode which is one mode before the second mode completion mode. During the variable display, the retention display corresponding to the retention memory already stored can be moved from the position where it has been displayed for a specific period from the retention shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display. During the execution of the variable display with the number of retention memories N (when the number of retention memories is less than the predetermined number), When a new retention memory is stored and the first mode retention display is to be displayed while in the first mode and the period until the next variable display starts is longer than a predetermined period, a change is executed over the predetermined period, in which the first mode retention display starts in the first mode start mode at the retention display position corresponding to the (N + 1)-th number, gradually changes from the first mode start mode to the plurality of intermediate modes of the first mode, and then changes to the first mode completion mode, to display the first mode retention display. When in the second mode and the period until the next variable display starts is longer than a predetermined period, if a new hold memory is stored and the second-mode hold display is to be displayed, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the (N + 1)-th item, changed step by step from the second-mode start mode to the plurality of second-mode intermediate modes, and then changed to the second-mode completion mode, and this change is executed over the predetermined period to display the second-mode hold display. When in the first mode and the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, if a new hold memory is stored and the first-mode hold display is to be displayed, the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the (N + 1)-th item, changed to an intermediate mode of the first mode different from the pre-completion mode of the first mode, and when it becomes the timing at which the next variable display starts in a situation where it is in an intermediate mode of the first mode different from the pre-completion mode of the first mode, it is changed to the completion mode of the first mode based on this timing to display the first-mode hold display. When in the second mode and the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, if a new hold memory is stored and the second-mode hold display is to be displayed, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the (N + 1)-th item, changed to an intermediate mode of the second mode different from the pre-completion mode of the second mode, and when it becomes the timing at which the next variable display starts in a situation where it is in an intermediate mode of the second mode different from the pre-completion mode of the second mode, it is changed to the completion mode of the second mode based on this timing to display the second-mode hold display. When it is within the first mode and the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and a new hold memory is stored and the first-mode hold display is to be displayed, the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the (N + 1)-th number, and when it becomes the timing at which the next variable display starts in the situation of being in the first-mode start mode, the first-mode hold display is displayed by changing to the first-mode completion mode based on this timing. When it is within the second mode and the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, and a new hold memory is stored and the second-mode hold display is to be displayed, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the (N + 1)-th number, and when it becomes the timing at which the next variable display starts in the situation of being in the second-mode start mode, the second-mode hold display is displayed by changing to the second-mode completion mode based on this timing. When it is within the first mode, when the variable display at the N-th hold memory number ends and a new hold memory is stored immediately after the next variable display starts and the first-mode hold display is to be displayed, a change is made in which the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the N-th number, and after gradually changing from the first-mode start mode to the plurality of first-mode intermediate modes, it is changed to the first-mode completion mode, and this change is executed over the predetermined period to display the first-mode hold display. When it is within the second mode, when the variable display at the N-th hold memory number ends and a new hold memory is stored immediately after the next variable display starts and the second-mode hold display is to be displayed, a change is made in which the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the N-th number, and after gradually changing from the second-mode start mode to the plurality of second-mode intermediate modes, it is changed to the second-mode completion mode, and this change is executed over the predetermined period to display the second-mode hold display. It is characterized by the above. According to this feature, if the suspended memory stored from the middle of the variable display until the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to a completed state, so that the subsequent movement of the suspended display position is not hindered and misrecognition of the number of suspended memories can be prevented. Also, by differentiating whether or not to change to the completed state when the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual change at the time of storing a new suspended memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new suspended memory. Also, the suspended memory newly stored at the same timing as the start of the variable display is displayed at the display position of the destination from the beginning, so there is no need to change the gradual change to the completed state, and the gradual change can be shown to the player. Also, even if the mode of the effect is different, since the same law regarding the change to the completed state of the gradual display is applied, the suspended memory is easier for the player to recognize. Corresponding drawings: FIGS. 72, 73, 75, 76, 92
[0028] [Form 19] The gaming machine of Form 19 is a gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, a game control means, an effect execution means, and a suspended memory means, the suspended memory means can store information regarding variable display as suspended memory with a predetermined number as the upper limit, the game control means can execute the next variable display when there is a suspended memory corresponding to the next variable display when the variable display ends, the effect execution means can execute effects corresponding to a plurality of modes including a first mode and a second mode different from the first mode, and can display a plurality of types of suspended displays including a first mode suspended display corresponding to the first mode and a second mode suspended display corresponding to the second mode when a suspended memory is stored. When the hold memory is stored during the first mode, it is possible to display the first mode hold display by gradually changing a plurality of intermediate first mode states including a first mode start state, a first mode completion state, and a first mode pre-completion state which is the state immediately before the first mode completion state, When the hold memory is stored during the second mode, it is possible to display the second mode hold display by gradually changing a plurality of intermediate second mode states including a second mode start state, a second mode completion state, and a second mode pre-completion state which is the state immediately before the second mode completion state, The hold display corresponding to the hold memory already stored during variable display can be moved from the position where it has been displayed for a specific period from the hold shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display. During the execution of the variable display when the number of hold memories N is less than the predetermined number, that is, the variable display when the number of hold memories N is present, When a new hold memory is stored and the first mode hold display is to be displayed while in the first mode and the period until the next variable display starts is longer than the predetermined period, a change is executed over the predetermined period in which the first mode hold display starts in the first mode start state at the hold display position corresponding to the (N + 1)-th number, gradually changes from the first mode start state to the plurality of intermediate first mode states, and then changes to the first mode completion state, to display the first mode hold display, When a new hold memory is stored and the second mode hold display is to be displayed while in the second mode and the period until the next variable display starts is longer than the predetermined period, a change is executed over the predetermined period in which the second mode hold display starts in the second mode start state at the hold display position corresponding to the (N + 1)-th number, gradually changes from the second mode start state to the plurality of intermediate second mode states, and then changes to the second mode completion state, to display the second mode hold display, When it is in the first mode and the period until the next variable display starts is shorter than the predetermined period, and a new hold memory is stored and the first-mode hold display is to be displayed, the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the (N + 1)-th number, changed from the first-mode start mode to an intermediate first-mode state different from the state before the completion of the first mode, and when the timing for starting the next variable display is reached in a situation where it is in an intermediate first-mode state different from the state before the completion of the first mode, the first-mode hold display is changed to the first-mode completion state based on this timing and the first-mode hold display is displayed. When it is in the second mode and the period until the next variable display starts is shorter than the predetermined period, and a new hold memory is stored and the second-mode hold display is to be displayed, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the (N + 1)-th number, changed from the second-mode start mode to an intermediate second-mode state different from the state before the completion of the second mode, and when the timing for starting the next variable display is reached in a situation where it is in an intermediate second-mode state different from the state before the completion of the second mode, the second-mode hold display is changed to the second-mode completion state based on this timing and the second-mode hold display is displayed. During the execution of the variable display with a hold memory count of 0, which is a variable display in a situation where no hold memory is stored. When it is in the first mode and the period until the variable display with a hold memory count of 0 ends is longer than the predetermined period, and a new hold memory is stored and the first-mode hold display is to be displayed, the change of starting the first-mode hold display in the first-mode start mode at the hold display position corresponding to the next variable display, changing step by step from the first-mode start mode to the plurality of intermediate first-mode states, and then changing to the first-mode completion state, is executed over the predetermined period to display the first-mode hold display. When in the second mode and a new hold memory is stored and the second-mode hold display is to be displayed when the period until the variable display at hold memory number 0 ends is longer than the predetermined period, a change is executed over the predetermined period, in which the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the next variable display, and is gradually changed from the second-mode start mode to the plurality of second-mode intermediate modes and then to the second-mode completion mode, to display the second-mode hold display. When in the first mode and a new hold memory is stored and the first-mode hold display is to be displayed when the period until the variable display at hold memory number 0 ends is shorter than the predetermined period, the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the next variable display, and is changed from the first-mode start mode to an intermediate mode of the first mode different from the state before completion of the first mode, and when the next variable display starts in a situation where the state is an intermediate mode of the first mode different from the state before completion of the first mode, the first-mode hold display is displayed by changing to the first-mode completion mode based on the timing. When in the second mode and a new hold memory is stored and the second-mode hold display is to be displayed when the period until the variable display at hold memory number 0 ends is shorter than the predetermined period, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the next variable display, and is changed from the second-mode start mode to an intermediate mode of the second mode different from the state before completion of the second mode, and when the next variable display starts in a situation where the state is an intermediate mode of the second mode different from the state before completion of the second mode, the second-mode hold display is displayed by changing to the second-mode completion mode based on the timing. It is characterized by this. According to this feature, if the suspended memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state, so that the subsequent movement of the suspended display position is not hindered and misrecognition of the number of suspended memories can be prevented. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual change at the time of storing a new suspended memory. Further, when the number of suspended memories is 0, if there is no delay of a predetermined period until the start of the next variable display at the timing when a new suspended memory is stored, by changing the gradual change at the time of storing the new suspended memory to the completed state, even when the number of suspended memories is 0, the movement of the suspended display position is not hindered and misrecognition of the number of suspended memories can be prevented. Also, the suspended memories newly stored during a specific period in which the suspended display position moves from the start of the variable display are displayed at the display position of the destination from the beginning, so there is no need to change the gradual change to the completed state, and the player can be shown the gradual change. When the suspended display that has already been displayed for the Nth time moves, even if the suspended display newly displayed for the Nth time overlaps, since the display area used is wider for the newly displayed suspended display, the newly displayed suspended display is easy to visually recognize and misrecognition can be prevented. Also, even if the mode of the effect is different, since the law related to the change to the completed state of the gradual display is equally applied, the suspended memory is easier for the player to recognize. Corresponding drawings: Figures 72, 73, 81, 82, 92
[0029] [Form 20] The gaming machine of Form 20 is a gaming machine capable of performing variable display and controlling to an advantageous state advantageous to the player, a game control means, an effect execution means, and a suspended memory means, the suspended memory means can store information related to variable display as suspended memory with a predetermined number as the upper limit, When the variable display ends, if there is a pending memory corresponding to the next variable display, the next variable display can be executed. The effect execution means can execute effects corresponding to a plurality of modes including a first mode and a second mode different from the first mode. When a pending memory is stored, it is possible to display a plurality of types of pending displays including a first mode pending display corresponding to the first mode and a second mode pending display corresponding to the second mode. When a pending memory is stored during the first mode, it is possible to display the first mode pending display by gradually changing a plurality of intermediate first mode states including a first mode start state, a first mode completion state, and a first mode pre-completion state which is one state before the first mode completion state. When a pending memory is stored during the second mode, it is possible to display the second mode pending display by gradually changing a plurality of intermediate second mode states including a second mode start state, a second mode completion state, and a second mode pre-completion state which is one state before the second mode completion state. During the variable display, the pending display corresponding to the pending memory already stored can be moved from the position where it was displayed over a specific period from the pending shift start timing based on the timing when the next variable display starts to the position corresponding to the next variable display. During the execution of the variable display when the number of pending memories N is less than the predetermined number, and when it is during the first mode and a new pending memory is stored and the first mode pending display is to be displayed when the period until the next variable display starts is longer than a predetermined period, a change is executed over the predetermined period in which the first mode pending display is started in the first mode start state corresponding to the (N + 1)-th position, gradually changed from the first mode start state to the plurality of intermediate first mode states, and then changed to the first mode completion state to display the first mode pending display. During the first mode, when a new pending memory is stored and the first mode pending display is to be displayed when the period until the next variable display starts is longer than a predetermined period, the first mode pending display is started in the first mode start state corresponding to the (N + 1)-th position, gradually changed from the first mode start state to the plurality of intermediate first mode states, and then changed to the first mode completion state over the predetermined period to display the first mode pending display. When in the second mode and the period until the next variable display starts is longer than a predetermined period, and a new hold memory is stored and the second-mode hold display is to be displayed, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the (N + 1)-th number, and after gradually changing from the second-mode start mode to the plurality of second-mode intermediate modes, it is changed to the second-mode completion mode, and this change is executed over the predetermined period to display the second-mode hold display. When in the first mode and the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and a new hold memory is stored and the first-mode hold display is to be displayed, the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the (N + 1)-th number, changed from the first-mode start mode to a first-mode intermediate mode different from the first-mode pre-completion mode, and when the next variable display starts in a situation where it is in a first-mode intermediate mode different from the first-mode pre-completion mode, based on this timing, it is changed to the first-mode completion mode to display the first-mode hold display. When in the second mode and the period until the next variable display starts is shorter than the predetermined period and is not the period immediately before the next variable display starts, and a new hold memory is stored and the second-mode hold display is to be displayed, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the (N + 1)-th number, changed from the second-mode start mode to a second-mode intermediate mode different from the second-mode pre-completion mode, and when the next variable display starts in a situation where it is in a second-mode intermediate mode different from the second-mode pre-completion mode, based on this timing, it is changed to the second-mode completion mode to display the second-mode hold display. When it is during the first mode and the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, if a new hold memory is stored and the first-mode hold display is to be displayed, the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the (N + 1)-th number, and by becoming the timing at which the next variable display starts in the situation of being in the first-mode start mode, the first-mode hold display is changed to the first-mode completion mode based on this timing and the first-mode hold display is displayed. When it is during the second mode and the period until the next variable display starts is shorter than the predetermined period and is the period immediately before the next variable display starts, if a new hold memory is stored and the second-mode hold display is to be displayed, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the (N + 1)-th number, and by becoming the timing at which the next variable display starts in the situation of being in the second-mode start mode, the second-mode hold display is changed to the second-mode completion mode based on this timing and the second-mode hold display is displayed. When it is during the first mode, if the variable display at the hold memory number N ends, and a new hold memory is stored and the first-mode hold display is to be displayed immediately after the next variable display starts, a change is made in which the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the N-th number, and after gradually changing from the first-mode start mode to the plurality of first-mode intermediate modes, it is changed to the first-mode completion mode, and this change is executed over the predetermined period to display the first-mode hold display. When it is during the second mode, if the variable display at the hold memory number N ends, and a new hold memory is stored and the second-mode hold display is to be displayed immediately after the next variable display starts, a change is made in which the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the N-th number, and after gradually changing from the second-mode start mode to the plurality of second-mode intermediate modes, it is changed to the second-mode completion mode, and this change is executed over the predetermined period to display the second-mode hold display. During the execution of the variable display at hold memory number 0, which is a variable display in a situation where no hold memory is stored. When it is in the first mode and the period until the variable display at the time of the hold memory number 0 ends is longer than the predetermined period, and a new hold memory is stored and the first-mode hold display is to be displayed, the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the next variable display, and after gradually changing from the first-mode start mode to the plurality of first-mode intermediate modes, a change to the first-mode completion mode is executed over the predetermined period to display the first-mode hold display. When it is in the second mode and the period until the variable display at the time of the hold memory number 0 ends is longer than the predetermined period, and a new hold memory is stored and the second-mode hold display is to be displayed, the second-mode hold display is started in the second-mode start mode at the hold display position corresponding to the next variable display, and after gradually changing from the second-mode start mode to the plurality of second-mode intermediate modes, a change to the second-mode completion mode is executed over the predetermined period to display the second-mode hold display. When it is in the first mode and the period until the variable display at the time of the hold memory number 0 ends is shorter than the predetermined period and it is not immediately before the variable display at the time of the hold memory number 0 ends, and a new hold memory is stored and the first-mode hold display is to be displayed, the first-mode hold display is started in the first-mode start mode at the hold display position corresponding to the next variable display, changed to a first-mode intermediate mode different from the first-mode pre-completion mode from the first-mode start mode, and when the next variable display starts in a situation where it is in a first-mode intermediate mode different from the first-mode pre-completion mode, based on the timing, a change to the first-mode completion mode is made to display the first-mode hold display. When it is in the second mode and the period until the variable display at the time of the hold memory number 0 ends is shorter than the predetermined period and it is not immediately before the end of the variable display at the time of the hold memory number 0, and when a new hold memory is stored and the second mode hold display is to be displayed, the second mode hold display is started in the second mode start mode at the hold display position corresponding to the next variable display, changed from the second mode start mode to a second mode intermediate mode different from the second mode before completion mode, and when the next variable display is started in a situation where it is in a second mode intermediate mode different from the second mode before completion mode, the second mode hold display is displayed by changing to the second mode completion mode based on the timing, When it is in the first mode and the period until the variable display at the time of the hold memory number 0 ends is shorter than the predetermined period and it is immediately before the end of the variable display at the time of the hold memory number 0, and when a new hold memory is stored and the first mode hold display is to be displayed, the first mode hold display is started in the first mode start mode at the hold display position corresponding to the next variable display, and when it is the timing when the next variable display is started in a situation where it is in the first mode start mode, the first mode hold display is displayed by changing to the first mode completion mode based on the timing, When it is in the second mode and the period until the variable display at the time of the hold memory number 0 ends is shorter than the predetermined period and it is immediately before the end of the variable display at the time of the hold memory number 0, and when a new hold memory is stored and the second mode hold display is to be displayed, the second mode hold display is started in the second mode start mode at the hold display position corresponding to the next variable display, and when it is the timing when the next variable display is started in a situation where it is in the second mode start mode, the second mode hold display is displayed by changing to the second mode completion mode based on the timing, When it is in the first mode and a new hold memory is stored and the first mode hold display is to be displayed immediately after the variable display at the time of the hold memory number 0 ends, the first mode hold display is displayed from the first mode completion mode at the hold display position corresponding to the next variable display after the variable display at the time of the hold memory number 0, When in the second mode, if a new hold memory is stored immediately after the variable display at hold memory number 0 ends and the second-mode hold display is to be shown, the second-mode hold display is shown from the second-mode completion mode at the hold display position corresponding to the next variable display after the variable display at hold memory number 0. It is characterized by this. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state, so that there is no hindrance to the subsequent movement of the pending display position and misrecognition of the number of pending memories can be prevented. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual change at the time of storing a new pending memory. Furthermore, by differentiating just before and just after the start of the next variable display, the gradual change at the time of storing a new pending memory can be shown to the player more suitably. Additionally, when the number of pending memories is 0, if there is no delay of a predetermined period until the start of the next variable display at the timing when a new pending memory is stored, by changing the gradual change at the time of storing the new pending memory to the completed state, even when the number of pending memories is 0, there is no hindrance to the movement of the pending display position and misrecognition of the number of pending memories can be prevented. Also, when the number of pending memories has reached the upper limit, even if a predetermined variable display ends, no pending memory is stored until the next variable display starts, so the gradual change for the new pending memory is not executed either, and the player can be focused on the variable display result of the ended variable display. Since the pending memory newly stored during the specific period in which the pending display position moves from the start of the variable display is displayed at the display position of the destination from the beginning, there is no need to change the gradual change to the completed state, and the gradual change can be shown to the player. Also, when the pending display that has already been displayed at a predetermined number moves, even if the pending display newly displayed at the predetermined number overlaps, since the display area used is wider for the pending display newly displayed, the newly displayed pending display is easy to visually recognize and misrecognition can be prevented. Also, even if the mode of the effect is different, since the same law regarding the change to the completed state of the gradual display is applied, the player can more easily recognize the pending memory. Corresponding drawings: Figures 72, 73, 75, 76, 81 - 84, 92
[0030] [Form 21] The gaming machine of Form 21 is A gaming machine capable of variably displaying specific identification information and controllable to an advantageous state advantageous to a player, game control means, performance control means, storage means, a plurality of light emitting means, and the plurality of light emitting means includes a game control means side light emitting means controlled by the game control means and a performance control means side light emitting means controlled by the performance control means, the storage means, is capable of storing information related to the variable display of specific identification information, as an area for storing information related to the variable display of specific identification information, includes the variable display storage area and a first reserved storage area which is an area for storing information related to the variable display of specific identification information after the variable display storage area, and includes a plurality of reserved storage areas with a predetermined number as an upper limit, the game control means can change the mode of the game control means side light emitting means based on the fact that information related to the variable display of specific identification information is stored in the reserved storage area, the performance control means can change the mode of the performance control means side light emitting means based on the fact that information related to the variable display of specific identification information is stored in the reserved storage area, the game control means, when information related to the variable display of specific identification information is stored in the variable display storage area, it can execute the variable display of specific identification information, when the variable display of specific identification information ends, if there is storage of information related to the variable display of specific identification information in the first reserved storage area, it can execute the next variable display of specific identification information, when there is no storage of information related to the variable display of specific identification information in the storage means, when the game medium passes through the start area, it stores the information related to the variable display of specific identification information in the first reserved storage area, and then moves the information related to the variable display of specific identification information stored in the first reserved storage area to the variable display storage area, When there is storage of information regarding the variable display of specific identification information in the variable display storage area, and there is no storage of information regarding the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, information regarding the variable display of specific identification information is stored in the first reserved storage area. Then, when the variable display of specific identification information corresponding to the information regarding the variable display of specific identification information stored in the variable display storage area ends, the information regarding the variable display of specific identification information stored in the first reserved storage area is moved to the variable display storage area. When there is storage of information regarding the variable display of specific identification information in the variable display storage area, and there is no storage of information regarding the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, the mode of the light-emitting means on the game control means side is set to a mode corresponding to the storage of information regarding the variable display of specific identification information in the first reserved storage area. Then, when moving the storage of the information regarding the variable display of specific identification information stored in the first reserved storage area to the variable display storage area, the mode of the light-emitting means on the game control means side is set to a mode corresponding to the non-storage of information regarding the variable display of specific identification information in the reserved storage area. Even when the game medium passes through the start area and information regarding the variable display of specific identification information is stored in the first reserved storage area when there is no storage of information regarding the variable display of specific identification information in the storage means, the mode of the light-emitting means on the game control means side is not set to a mode corresponding to the storage of information regarding the variable display of specific identification information in the first reserved storage area, and is maintained in a mode corresponding to the non-storage of information regarding the variable display of specific identification information in the reserved storage area. The effect control means When information regarding the variable display of specific identification information is stored in the reserved storage area, it is possible to display a reserved display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode, which is a mode before the completion mode. When the variable display of specific identification information is being executed, the hold display corresponding to the information regarding the variable display of the specific identification information stored in the hold memory area is moved from the hold display position where it has been displayed over a specific period from the hold shift start timing based on the timing at which the next variable display of specific identification information starts to the hold display position corresponding to the start of the next variable display of specific identification information. When the hold memory number N variable display, which is a variable display of specific identification information in a situation where information regarding the variable display of less than the predetermined number N of specific identification information is stored in the hold memory area, is being executed. When the period until the start of the next variable display of specific identification information is longer than the predetermined period and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th item, changed step by step from the start mode to the plurality of intermediate modes, and then changed to the completion mode over the predetermined period to display the hold display. When the period until the start of the next variable display of specific identification information is shorter than the predetermined period and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th item, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing at which the next variable display of specific identification information starts in a situation where it is in an intermediate mode different from the pre-completion mode, it is changed to the completion mode based on the timing to display the hold display. When the hold memory number N variable display ends and information regarding the variable display of new specific identification information is stored before the elapse of the specific period from the hold shift start timing, the hold display is started in the start mode at the hold display position corresponding to the N-th item, changed step by step from the start mode to the plurality of intermediate modes, and then changed to the completion mode over the predetermined period to display the hold display. It is characterized by the above. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in the intermediate state at the start of the variable display, it is changed to the completed state. Therefore, it is possible to prevent an obstacle to the movement of the pending display position performed thereafter and prevent misrecognition of the number of pending memories. Also, by distinguishing the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual change at the time of storing a new pending memory. Furthermore, by making the distinction immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new pending memory. In particular, in a situation where no variable display is being executed and there is no pending memory, in terms of the processing of the game control means, after storing information regarding the variable display of the specific identification information in the storage area where information regarding the variable display of the specific identification information is stored in the first pending memory area, the information is moved to the variable display storage area by a shift process. At that time, by changing the mode of the light-emitting means on the game control means side from the mode indicating that the number of pending memories is 1 to the mode indicating that the number of pending memories is 0, the mode indicating that the number of pending memories is 1 will occur only for an instant. As a result, it is possible to prevent the display mode from becoming troublesome and giving the player a sense of discomfort, and as a result, it is possible to provide a stable gaming environment. Corresponding drawings: FIGS. 39, 72 to 74 In addition, in this embodiment, The 'effect control means' corresponds to the 'effect control CPU 120' in this embodiment, The'memory means' corresponds to the 'RAM 102, particularly the game control data holding area 001SG150' in this embodiment, The'specific identification information' corresponds to the '8 LEDs constituting the first special symbol display device 4A and the second special symbol display device 4B' in this embodiment, The 'light-emitting means on the game control means side' corresponds to the 'LEDs constituting the special figure unit 201, particularly the LEDs constituting the first pending display 25A and the second pending display 25B' in this embodiment, The 'light-emitting means on the effect control means side' corresponds to the 'LEDs constituting the first sub-pending display 151A and the second sub-pending display 151B' in this embodiment, The "variable display memory area" corresponds to the "entry (storage area) of reservation number '0'" in the "first special symbol buffer 001SG151A" and the "second special symbol buffer 001SG151B" in this embodiment, The "first reservation memory area" corresponds to the "entries (storage areas) of reservation numbers '1 to 4'" in the "first special symbol buffer 001SG151A" and the "second special symbol buffer 001SG151B" in this embodiment, The "start area" corresponds to the "first start winning opening (winning ball device 6A)" and the "second start winning opening (variable winning ball device 6B)" in this embodiment.
[0031] [Embodiment 22] The gaming machine of Embodiment 22 is a gaming machine capable of performing variable display of specific identification information and controlling to an advantageous state advantageous to the player, game control means, performance control means, memory means, a plurality of light emitting means, and is provided with The plurality of light emitting means includes light emitting means on the game control means side controlled by the game control means and light emitting means on the performance control means side controlled by the performance control means, The memory means is capable of storing information related to variable display of specific identification information, includes, as an area for storing information related to variable display of specific identification information, the variable display memory area and a first reservation memory area which is an area for storing information related to variable display of specific identification information after the variable display memory area, and includes a plurality of reservation memory areas with a predetermined number as an upper limit, and includes a plurality of memory areas, Based on the fact that information related to variable display of specific identification information is stored in the reservation memory area, the game control means can change the mode of the light emitting means on the game control means side, Based on the fact that information related to variable display of specific identification information is stored in the reservation memory area, the performance control means can change the mode of the light emitting means on the performance control means side, The game control means When information regarding the variable display of specific identification information is stored in the variable display storage area, the variable display of the specific identification information can be executed, When the variable display of the specific identification information ends, if there is storage of information regarding the variable display of the specific identification information in the first hold storage area, the variable display of the next specific identification information can be executed, When there is no storage of information regarding the variable display of the specific identification information in the storage means, when the game medium passes through the start area, the information regarding the variable display of the specific identification information is stored in the first hold storage area, and then, the information regarding the variable display of the specific identification information stored in the first hold storage area is moved to the variable display storage area, When there is storage of information regarding the variable display of the specific identification information in the variable display storage area and there is no storage of information regarding the variable display of the specific identification information in the first hold storage area, when the game medium passes through the start area, the information regarding the variable display of the specific identification information is stored in the first hold storage area, and then, when the variable display of the specific identification information corresponding to the information regarding the variable display of the specific identification information stored in the variable display storage area ends, the information regarding the variable display of the specific identification information stored in the first hold storage area is moved to the variable display storage area, When there is storage of information regarding the variable display of the specific identification information in the variable display storage area and there is no storage of information regarding the variable display of the specific identification information in the first hold storage area, when the game medium passes through the start area, the mode of the light emitting means on the game control means side is set to the mode corresponding to the storage of the information regarding the variable display of the specific identification information in the first hold storage area, and then, when moving the storage of the information regarding the variable display of the specific identification information stored in the first hold storage area to the variable display storage area, the mode of the light emitting means on the game control means side is set to the mode corresponding to the non - storage of the information regarding the variable display of the specific identification information in the hold storage area, When the storage means does not store information related to the variable display of specific identification information and the game medium passes through the start area and the information related to the variable display of specific identification information is stored in the first reserved storage area, the mode of the light emitting means on the game control means side is not set to a mode corresponding to the fact that the information related to the variable display of specific identification information is stored in the first reserved storage area, but remains in the mode corresponding to the fact that the information related to the variable display of specific identification information is not stored in the reserved storage area. The effect control means When information related to the variable display of specific identification information is stored in the reserved storage area, it is possible to display a reserved display by gradually changing a plurality of intermediate modes including a start mode, a completion mode, and a pre-completion mode which is the mode immediately before the completion mode. When the variable display of specific identification information is being executed, the reserved display corresponding to the information related to the variable display of specific identification information stored in the reserved storage area is moved from the reserved display position where it has been displayed for a specific period from the reserved shift start timing based on the timing when the next variable display of specific identification information starts to the reserved display position corresponding to the start of the next variable display of specific identification information. When the variable display with the reserved storage count N, which is the variable display of specific identification information in the situation where information related to the variable display of less than the predetermined number N of specific identification information is stored in the reserved storage area, is being executed. When the period until the start of the next variable display of specific identification information is longer than the predetermined period and new information related to the variable display of specific identification information is stored, a change is executed over the predetermined period to display the reserved display by starting the reserved display in the start mode at the reserved display position corresponding to the (N + 1)th item, gradually changing from the start mode to the plurality of intermediate modes, and then changing to the completion mode. When the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and is not the period immediately before the start of the variable display of the next specific identification information, if information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on this timing and the hold display is displayed. When the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and is the period immediately before the start of the variable display of the next specific identification information, if information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in the start mode, the hold display is changed to the completion mode based on this timing and the hold display is displayed. When the variable display at the N-th hold memory number ends and information regarding the variable display of new specific identification information is stored immediately after the start of the variable display of the next specific identification information, the change of starting the hold display in the start mode at the hold display position corresponding to the N-th number, gradually changing from the start mode to the plurality of intermediate modes, and then changing to the completion mode is executed over the predetermined period to display the hold display. It is characterized by the above. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in the intermediate state at the start of the variable display, it is changed to the completed state, so that the subsequent movement of the pending display position is not hindered, and misrecognition of the number of pending memories can be prevented. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than the predetermined period, it is possible to suitably show the player the number of pending memories and the gradual change at the time of storing a new pending memory. Furthermore, by differentiating just before and just after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new pending memory. In particular, in a situation where no variable display is being executed and there are no pending memories, in terms of the processing of the game control means, after storing information regarding the variable display of the specific identification information in the storage area where information regarding the variable display of the specific identification information is stored in the first pending memory area, and then shifting, the information is moved to the variable display storage area by the shift process. At that time, by changing the mode of the light emitting means on the game control means side from the mode indicating that the number of pending memories is 1 to the mode indicating that the number of pending memories is 0, the mode indicating that the number of pending memories is 1 will occur only for an instant, and it is possible to prevent the display mode from becoming troublesome and giving the player a sense of discomfort. As a result, a stable gaming environment can be provided. Corresponding Drawings: FIGS. 39, 72, 73, 75, 76
[0032] [Aspect 23] The gaming machine of Aspect 23 is a gaming machine that performs variable display of specific identification information and can be controlled to an advantageous state advantageous to the player, game control means, performance control means, storage means, and a plurality of light emitting means, The plurality of light emitting means include light emitting means on the game control means side controlled by the game control means and light emitting means on the performance control means side controlled by the performance control means. The storage means can store information regarding the variable display of specific identification information, A plurality of storage areas including a variable display storage area as an area for storing information related to variable display of specific identification information, and a first reserved storage area which is an area for storing information related to variable display of specific identification information after the variable display storage area, and a plurality of reserved storage areas with a predetermined number as an upper limit. Based on the fact that information related to variable display of specific identification information is stored in the reserved storage area, the game control means can change the mode of the light emitting means on the game control means side. Based on the fact that information related to variable display of specific identification information is stored in the reserved storage area, the effect control means can change the mode of the light emitting means on the effect control means side. The game control means, When information related to variable display of specific identification information is stored in the variable display storage area, it is possible to execute variable display of specific identification information. When the variable display of specific identification information ends, if there is storage of information related to variable display of specific identification information in the first reserved storage area, it is possible to execute variable display of the next specific identification information. When there is no storage of information related to variable display of specific identification information in the storage means, when a game medium passes through the start area, store information related to variable display of specific identification information in the first reserved storage area, and then move the information related to variable display of specific identification information stored in the first reserved storage area to the variable display storage area. When there is storage of information related to variable display of specific identification information in the variable display storage area and there is no storage of information related to variable display of specific identification information in the first reserved storage area, when a game medium passes through the start area, store information related to variable display of specific identification information in the first reserved storage area, and then, when the variable display of specific identification information corresponding to the information related to variable display of specific identification information stored in the variable display storage area ends, move the information related to variable display of specific identification information stored in the first reserved storage area to the variable display storage area. When there is storage of information regarding the variable display of specific identification information in the said variable display storage area and there is no storage of information regarding the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, the mode of the light-emitting means on the game control means side is set to a mode corresponding to the case where information regarding the variable display of specific identification information is stored in the first reserved storage area. Thereafter, when moving the storage of information regarding the variable display of specific identification information stored in the first reserved storage area to the said variable display storage area, the mode of the light-emitting means on the game control means side is set to a mode corresponding to the case where there is no storage of information regarding the variable display of specific identification information in the reserved storage area. When the game medium passes through the start area when there is no storage of information regarding the variable display of specific identification information in the storage means and the storage of information regarding the variable display of specific identification information is stored in the first reserved storage area, the mode of the light-emitting means on the game control means side is not set to a mode corresponding to the case where information regarding the variable display of specific identification information is stored in the first reserved storage area, and is maintained in the mode corresponding to the case where there is no storage of information regarding the variable display of specific identification information in the reserved storage area. The effect control means When information regarding the variable display of specific identification information is stored in the reserved storage area, it is possible to display a reserved display by gradually changing between a start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode, which is the mode immediately before the completion mode. When the variable display of specific identification information is being executed, the reserved display corresponding to the information regarding the variable display of specific identification information stored in the reserved storage area can be moved from the reserved display position where it has been displayed for a specific period from the reserved shift start timing based on the timing when the next variable display of specific identification information starts to the reserved display position corresponding to the start of the next variable display of specific identification information. When the variable display with the number of reserved memories N is being executed, which is the variable display of specific identification information in a situation where information regarding the variable display of N numbers of specific identification information less than the said predetermined number is stored in the reserved storage area. When the period until the start of the variable display of the next specific identification information is longer than a predetermined period and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, and after gradually changing from the start mode to the plurality of intermediate modes, a change to the completion mode is executed over the predetermined period to display the hold display. When the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing to display the hold display. When the variable display of the hold memory number 0, which is the variable display of specific identification information in a situation where information regarding specific identification information is not stored in the hold memory area, is being executed. When the period until the end of the variable display of the hold memory number 0 is longer than the predetermined period and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the variable display of the next specific identification information, and after gradually changing from the start mode to the plurality of intermediate modes, a change to the completion mode is executed over the predetermined period to display the hold display. When the period until the end of the variable display of the hold memory number 0 is shorter than the predetermined period and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the variable display of the next specific identification information, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing to display the hold display. It is characterized by the above. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to a completed state. Therefore, it is possible to prevent an obstacle to the movement of the pending display position that will be performed later and prevent misrecognition of the number of pending memories. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual change at the time of storing a new pending memory. Furthermore, when the number of pending memories is 0, if the timing at which a new pending memory is stored has no delay for a predetermined period until the start of the next variable display, by changing the gradual change at the time of storing the new pending memory to the completed state, even when the number of pending memories is 0, it is possible to prevent an obstacle to the movement of the pending display position and prevent misrecognition of the number of pending memories. In particular, in a situation where variable display is not being executed and there is no pending memory, in terms of the processing of the game control means, after storing information regarding the variable display of specific identification information in the storage area where information regarding the variable display of specific identification information is stored in the first pending memory area, the information is moved to the variable display storage area by a shift process. At that time, by changing the mode of the light emitting means on the game control means side from the mode indicating that the number of pending memories is 1 to the mode indicating that the number of pending memories is 0, the mode indicating that the number of pending memories is 1 will be in effect for only an instant, and it is possible to prevent the display mode from becoming troublesome and giving the player a sense of discomfort. As a result, a stable gaming environment can be provided. Corresponding Drawings: FIGS. 39, 72, 73, 81, 82
[0033] [Aspect 24] The gaming machine of Aspect 24 is a gaming machine that performs variable display of specific identification information and can be controlled to an advantageous state advantageous to the player, a game control means, a performance control means, a storage means, and a plurality of light emitting means. The plurality of light-emitting means includes a game control means-side light-emitting means controlled by the game control means and an effect control means-side light-emitting means controlled by the effect control means. The storage means is capable of storing information related to the variable display of specific identification information. The storage area includes a variable display storage area for storing information related to the variable display of specific identification information, a first reserved storage area for storing information related to the variable display of specific identification information after the variable display storage area, and a plurality of reserved storage areas with a predetermined number as the upper limit. Based on the fact that information related to the variable display of specific identification information is stored in the reserved storage area, the game control means can change the mode of the game control means-side light-emitting means. Based on the fact that information related to the variable display of specific identification information is stored in the reserved storage area, the effect control means can change the mode of the effect control means-side light-emitting means. The game control means When information related to the variable display of specific identification information is stored in the variable display storage area, the variable display of specific identification information can be executed. When the variable display of specific identification information ends, if there is information related to the variable display of specific identification information stored in the first reserved storage area, the next variable display of specific identification information can be executed. When there is no information related to the variable display of specific identification information stored in the storage means, when the game medium passes through the start area, information related to the variable display of specific identification information is stored in the first reserved storage area, and then the information related to the variable display of specific identification information stored in the first reserved storage area is moved to the variable display storage area. When there is storage of information regarding the variable display of specific identification information in the variable display storage area and there is no storage of information regarding the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, information regarding the variable display of specific identification information is stored in the first reserved storage area. Then, when the variable display of specific identification information corresponding to the information regarding the variable display of specific identification information stored in the variable display storage area ends, the information regarding the variable display of specific identification information stored in the first reserved storage area is moved to the variable display storage area. When there is storage of information regarding the variable display of specific identification information in the variable display storage area and there is no storage of information regarding the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, the mode of the light-emitting means on the game control means side is set to a mode corresponding to the storage of information regarding the variable display of specific identification information in the first reserved storage area. Then, when moving the storage of the information regarding the variable display of specific identification information stored in the first reserved storage area to the variable display storage area, the mode of the light-emitting means on the game control means side is set to a mode corresponding to the non-storage of information regarding the variable display of specific identification information in the reserved storage area. Even if the game medium passes through the start area when there is no storage of information regarding the variable display of specific identification information in the storage means and the storage of information regarding the variable display of specific identification information is stored in the first reserved storage area, the mode of the light-emitting means on the game control means side is not set to a mode corresponding to the storage of information regarding the variable display of specific identification information in the first reserved storage area, and is maintained in a mode corresponding to the non-storage of information regarding the variable display of specific identification information in the reserved storage area. The effect control means When information regarding the variable display of specific identification information is stored in the reserved storage area, it is possible to display a reserved display by gradually changing a plurality of intermediate modes including a start mode, a completion mode, and a pre-completion mode which is the mode immediately before the completion mode. When the variable display of specific identification information is being executed, the hold display corresponding to the information regarding the variable display of the specific identification information stored in the hold memory area is shifted from the hold display position where it has been displayed for a specific period from the hold shift start timing based on the timing at which the next variable display of specific identification information starts to the hold display position corresponding to the start of the next variable display of specific identification information. When the hold memory number N variable display, which is a variable display of specific identification information in a situation where information regarding the variable display of less than the predetermined number N of specific identification information is stored in the hold memory area, is being executed, when the period until the start of the next variable display of specific identification information is longer than the predetermined period and new information regarding the variable display of specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th item, changed step by step from the start mode to the plurality of intermediate modes, and then changed to the completion mode over the predetermined period to display the hold display. when the period until the start of the next variable display of specific identification information is shorter than the predetermined period and is not the period immediately before the start of the next variable display of specific identification information and new information regarding the variable display of specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th item, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing at which the next variable display of specific identification information starts in a situation where it is in the intermediate mode different from the pre-completion mode, it is changed to the completion mode based on the timing to display the hold display. when the period until the start of the next variable display of specific identification information is shorter than the predetermined period and is the period immediately before the start of the next variable display of specific identification information and new information regarding the variable display of specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th item, and when it becomes the timing at which the next variable display of specific identification information starts in a situation where it is in the start mode, it is changed to the completion mode based on the timing to display the hold display. When information regarding the variable display of new specific identification information is stored immediately after the variable display of the reserved memory number N ends and the variable display of the next specific identification information starts, a change is executed over the predetermined period, in which the reserved display is started in the start mode at the reserved display position corresponding to the Nth number, changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, to display the reserved display. When the variable display at the time of reserved memory number 0, which is the variable display of specific identification information in a situation where information regarding the variable display of specific identification information is not stored in the reserved memory area, is being executed. When the period until the variable display at the time of reserved memory number 0 ends is longer than the predetermined period and information regarding the variable display of new specific identification information is stored, a change is executed over the predetermined period, in which the reserved display is started in the start mode at the reserved display position corresponding to the variable display of the next specific identification information, changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, to display the reserved display. When the period until the variable display at the time of reserved memory number 0 ends is shorter than the predetermined period and it is not immediately before the variable display at the time of reserved memory number 0 ends, and information regarding the variable display of new specific identification information is stored, the reserved display is started in the start mode at the reserved display position corresponding to the variable display of the next specific identification information, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in the intermediate mode different from the pre-completion mode, the reserved display is changed to the completion mode based on the timing to display the reserved display. When the period until the variable display at the time of reserved memory number 0 ends is shorter than the predetermined period and it is immediately before the variable display at the time of reserved memory number 0 ends, and information regarding the variable display of new specific identification information is stored, the reserved display is started in the start mode at the reserved display position corresponding to the variable display of the next specific identification information, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in the start mode, the reserved display is changed to the completion mode based on the timing to display the reserved display. When information regarding the variable display of new specific identification information is stored immediately after the variable display with the reserved memory count of 0 ends, the reserved display is shown from the completed state at the reserved display position corresponding to the variable display of the next specific identification information after the variable display with the reserved memory count of 0. It is characterized by this. According to this feature, when the reserved memory stored from the middle of the variable display until the start of the next variable display is still in the middle state at the start of the variable display, it is changed to the completed state, so there is no hindrance to the movement of the reserved display position that will be performed later, and misrecognition of the reserved memory count can be prevented. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than the predetermined period, it is possible to suitably show the player the stepwise change at the time of the reserved memory count and the storage of new reserved memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, the stepwise change at the time of the storage of new reserved memory can be more suitably shown to the player. Furthermore, when the reserved memory count is 0, when the timing of storing new reserved memory has no delay for a predetermined period until the start of the next variable display, by changing the stepwise change at the time of storing new reserved memory to the completed state, even when the reserved memory count is 0, there is no hindrance to the movement of the reserved display position, and misrecognition of the reserved memory count can be prevented. Also, in particular, in a situation where variable display is not being executed and there is no reserved memory, in terms of the processing of the game control means, after storing information regarding the variable display of new specific identification information in the storage area where information regarding the variable display of specific identification information is stored in the first reserved memory area, the information is moved to the variable display storage area by a shift process. At that time, by changing the mode of the light emitting means on the game control means side from the mode indicating a reserved memory count of 1 to the mode indicating a reserved memory count of 0, the mode indicating a reserved memory count of 1 will occur for only an instant, and it is possible to prevent the display mode from becoming troublesome and giving the player a sense of discomfort. As a result, a stable gaming environment can be provided. Corresponding drawings: Figures 39, 72, 73, 75, 76, 81 - 84
[0034] [Form 25] The gaming machine of Form 25 is A gaming machine that can variably display specific identification information and can be controlled to an advantageous state advantageous to the player, game control means, performance control means, display means, storage means, a plurality of light emitting means, and is provided with, the plurality of light emitting means includes light emitting means on the game control means side controlled by the game control means, the storage means, can store information related to the variable display of specific identification information, as an area for storing information related to the variable display of specific identification information, includes the variable display storage area and a first reserved storage area that is an area for storing information related to the variable display of specific identification information after the variable display storage area, and includes a plurality of reserved storage areas with a predetermined number as an upper limit, and includes a plurality of storage areas, the game control means can change the mode of the light emitting means on the game control means side based on the fact that information related to the variable display of specific identification information is stored in the reserved storage area, the performance control means can cause the display means to display a reserved ball number display indicating the number of information related to the variable display of specific identification information stored in the storage means, the game control means, when information related to the variable display of specific identification information is stored in the variable display storage area, the variable display of specific identification information can be executed, when the variable display of specific identification information ends, if there is storage of information related to the variable display of specific identification information in the first reserved storage area, the next variable display of specific identification information can be executed, when there is storage of information related to the variable display of specific identification information in the variable display storage area and there is no storage of information related to the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, store information related to the variable display of specific identification information in the first reserved storage area, When there is storage of information regarding the variable display of specific identification information in the variable display storage area and there is no storage of information regarding the variable display of specific identification information in the first hold storage area, when the game medium passes through the start area, the mode of the light emitting means on the game control means side is set to a mode corresponding to the situation where information regarding the variable display of specific identification information is stored in the first hold storage area. The effect control means When there is storage of information regarding the variable display of specific identification information in the variable display storage area and there is no storage of information regarding the variable display of specific identification information in the first hold storage area, when the game medium passes through the start area, after the mode of the light emitting means on the game control means side becomes a mode corresponding to the situation where information regarding the variable display of specific identification information is stored in the first hold storage area, the mode of the hold ball number display is set to a mode corresponding to the situation where information regarding the variable display of specific identification information is stored in the first hold storage area. When information regarding the variable display of specific identification information is stored in the hold storage area, it is possible to display a hold display by gradually changing between a start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode, which is a pre-completion mode. When the variable display of specific identification information is being executed, the hold display corresponding to the information regarding the variable display of specific identification information stored in the hold storage area can be moved from the hold display position where it has been displayed for a specific period from the hold shift start timing based on the timing when the next variable display of specific identification information starts to the hold display position corresponding to the start of the next variable display of specific identification information. When the variable display of specific identification information with a storage memory count N (where N is less than the predetermined number) is being executed, which is a variable display of specific identification information in a situation where information regarding the variable display of N specific identification information less than the predetermined number is stored in the hold storage area. When the period until the start of the variable display of the next specific identification information is longer than a predetermined period and information regarding the variable display of new specific identification information is stored, a change is executed over the predetermined period, in which the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, to display the hold display. When the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed from the start mode to an intermediate mode different from the pre-completion mode, and changed to the completion mode based on the timing at which the variable display of the next specific identification information starts in a situation where the mode is an intermediate mode different from the pre-completion mode, to display the hold display. When the variable display at the N-th hold memory number ends and information regarding the variable display of new specific identification information is stored before the elapse of the specific period from the hold shift start timing, a change is executed over the predetermined period, in which the hold display is started in the start mode at the hold display position corresponding to the N-th number, changed stepwise from the start mode to the plurality of intermediate modes, and then changed to the completion mode, to display the hold display. It is characterized by the above. According to this feature, if the suspended memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to a completed state. This can prevent obstacles to the subsequent movement of the suspended display position and prevent misrecognition of the number of suspended memories. Also, by differentiating whether there is a change to the completed state when the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of suspended memories and the gradual changes at the time of storing a new suspended memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual changes at the time of storing a new suspended memory. Also, by making the light-emitting means on the game control means side visible first and then making the display of the number of suspended balls on the display means visible, it is possible to recognize the number of suspended memories using a plurality of means. In particular, by executing the control of the game control means that controls games such as the granting of game value first, a stable game environment can be provided. Corresponding drawings: Figures 72 to 74, Figures 88, 89 In addition, in this embodiment, The 'display means' corresponds to the 'image display device 5' in this embodiment, The 'display of the number of suspended balls' corresponds to the'suspended display shown in the suspended memory display area 5U' in this embodiment.
[0035] [Embodiment 26] The gaming machine of Embodiment 26 is A gaming machine that performs variable display of specific identification information and can be controlled to an advantageous state that is advantageous to the player, including a game control means, a performance control means, a display means, a storage means, and a plurality of light-emitting means, The plurality of light-emitting means includes light-emitting means on the game control means side controlled by the game control means, The storage means is capable of storing information related to the variable display of specific identification information, Including a variable display storage area as an area for storing information related to the variable display of specific identification information, and a first reserved storage area which is an area for storing information related to the variable display of specific identification information after the variable display storage area, and including a plurality of reserved storage areas with a predetermined number as an upper limit, and including a plurality of storage areas, Based on the fact that information related to the variable display of specific identification information is stored in the reserved storage area, the game control means can change the mode of the light emitting means on the game control means side, The effect control means can cause the display means to display a reserved ball number display indicating the number of pieces of information related to the variable display of specific identification information stored in the storage means, The game control means, When information related to the variable display of specific identification information is stored in the variable display storage area, the variable display of specific identification information can be executed, When the variable display of specific identification information ends, if there is storage of information related to the variable display of specific identification information in the first reserved storage area, the variable display of the next specific identification information can be executed, When there is storage of information related to the variable display of specific identification information in the variable display storage area and there is no storage of information related to the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, store the information related to the variable display of specific identification information in the first reserved storage area, When there is storage of information related to the variable display of specific identification information in the variable display storage area and there is no storage of information related to the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, set the mode of the light emitting means on the game control means side to a mode corresponding to the case where information related to the variable display of specific identification information is stored in the first reserved storage area, The effect control means, When there is information stored in the variable display storage area regarding the variable display of specific identification information and there is no information stored in the first hold storage area regarding the variable display of specific identification information, when the game medium passes through the start area, after the mode of the light-emitting means on the game control means side becomes a mode corresponding to the storage of information regarding the variable display of specific identification information in the first hold storage area, the mode of the hold ball number display is set to a mode corresponding to the storage of information regarding the variable display of specific identification information in the first hold storage area. When information regarding the variable display of specific identification information is stored in the hold storage area, it is possible to display a hold display by gradually changing between a start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode, which is one mode before the completion mode. When the variable display of specific identification information is being executed, the hold display corresponding to the information regarding the variable display of specific identification information stored in the hold storage area can be moved from the hold display position where it was displayed over a specific period starting from the hold shift start timing based on the timing when the next variable display of specific identification information starts to the hold display position corresponding to the start of the next variable display of specific identification information. When the variable display of specific identification information with a storage count of N (N < the predetermined number) is being executed, which is a variable display of specific identification information in a situation where information regarding the variable display of N specific identification information less than the predetermined number is stored in the hold storage area. When the period until the start of the next variable display of specific identification information is longer than the predetermined period and new information regarding the variable display of specific identification information is stored, the change of starting the hold display in the start mode at the hold display position corresponding to the (N + 1)th item, gradually changing from the start mode to the plurality of intermediate modes, and then changing to the completion mode over the predetermined period to display the hold display is executed. When the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and is not the period immediately before the start of the variable display of the next specific identification information, and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in an intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on this timing and the hold display is displayed. When the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and is the period immediately before the start of the variable display of the next specific identification information, and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in the start mode, the hold display is changed to the completion mode based on this timing and the hold display is displayed. When the variable display at the N-th hold memory number ends and information regarding the variable display of new specific identification information is stored immediately after the start of the variable display of the next specific identification information, a change of starting the hold display in the start mode at the hold display position corresponding to the N-th number, gradually changing from the start mode to the plurality of intermediate modes, and then changing to the completion mode is executed over the predetermined period to display the hold display. It is characterized by the above. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to a completed state. This can prevent interference with the subsequent movement of the pending display position and avoid misrecognition of the number of pending memories. Also, by differentiating whether or not to change to the completed state when the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual changes during the storage of new pending memories. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual changes during the storage of new pending memories. Also, by making the light-emitting means on the game control means side visible first and then making the display of the number of pending balls on the display means visible, it is possible to make the player recognize the number of pending memories using multiple means. In particular, by first executing the control of the game control means that controls games such as the granting of game value, a stable game environment can be provided. Corresponding Drawings: Figures 72, 73, 75, 76, 88, 89
[0036] [Form 27] The gaming machine of Form 27 is a gaming machine that performs variable display of specific identification information and can be controlled to an advantageous state favorable to the player, including game control means, performance control means, display means, memory means, and a plurality of light-emitting means. The plurality of light-emitting means includes light-emitting means on the game control means side controlled by the game control means. The memory means can store information related to the variable display of specific identification information. As areas for storing information related to the variable display of specific identification information, it includes the variable display memory area, the first pending memory area which is an area for storing information related to the variable display of specific identification information after the variable display memory area, and a plurality of memory areas including a plurality of pending memory areas with a predetermined number as the upper limit. Based on the information regarding the variable display of the specific identification information being stored in the said hold memory area, the game control means can change the mode of the light-emitting means on the game control means side. The effect control means can cause the display means to display a hold ball number display suggesting the number of pieces of information regarding the variable display of the specific identification information stored in the said memory means. The game control means can execute the variable display of the specific identification information when information regarding the variable display of the specific identification information is stored in the said variable display memory area. When the variable display of the specific identification information has ended, if there is a memory of information regarding the variable display of the specific identification information in the said first hold memory area, the game control means can execute the variable display of the next specific identification information. When there is a memory of information regarding the variable display of the specific identification information in the said variable display memory area and there is no memory of information regarding the variable display of the specific identification information in the said first hold memory area, when a game medium passes through the start area, the information regarding the variable display of the specific identification information is stored in the said first hold memory area. When there is a memory of information regarding the variable display of the specific identification information in the said variable display memory area and there is no memory of information regarding the variable display of the specific identification information in the said first hold memory area, when a game medium passes through the start area, the mode of the light-emitting means on the game control means side is set to a mode corresponding to the situation where information regarding the variable display of the specific identification information is stored in the said first hold memory area. The effect control means When there is a memory of information regarding the variable display of the specific identification information in the said variable display memory area and there is no memory of information regarding the variable display of the specific identification information in the said first hold memory area, when a game medium passes through the start area, after the mode of the light-emitting means on the game control means side has become a mode corresponding to the situation where information regarding the variable display of the specific identification information is stored in the said first hold memory area, the mode of the hold ball number display is set to a mode corresponding to the situation where information regarding the variable display of the specific identification information is stored in the said first hold memory area. When information regarding the variable display of specific identification information is stored in the retention memory area, it is possible to display a retention display by gradually changing between a start mode, a completion mode, and a plurality of intermediate modes including a pre-completion mode which is the mode immediately before the completion mode. When the variable display of specific identification information is being executed, the retention display corresponding to the information regarding the variable display of specific identification information stored in the retention memory area is moved from the retention display position where it has been displayed over a specific period from the retention shift start timing based on the timing when the next variable display of specific identification information is started to the retention display position corresponding to the start of the next variable display of specific identification information. In the case where a variable display with a retention memory count N, which is a variable display of specific identification information in a situation where information regarding the variable display of N numbers of specific identification information less than the predetermined number is stored in the retention memory area, is being executed. When the period until the start of the next variable display of specific identification information is longer than the predetermined period and information regarding the variable display of new specific identification information is stored, a change is executed over the predetermined period, in which the retention display is started in the start mode at the retention display position corresponding to the (N + 1)th item, gradually changed from the start mode to the plurality of intermediate modes, and then changed to the completion mode to display the retention display. When the period until the start of the next variable display of specific identification information is shorter than the predetermined period and information regarding the variable display of new specific identification information is stored, the retention display is started in the start mode at the retention display position corresponding to the (N + 1)th item, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing when the next variable display of specific identification information is started in a situation where it is in an intermediate mode different from the pre-completion mode, it is changed to the completion mode based on that timing to display the retention display. In the case where a variable display with a retention memory count 0, which is a variable display of specific identification information in a situation where no information regarding specific identification information is stored in the retention memory area, is being executed. When the period until the variable display for the reserved memory number 0 ends is longer than the predetermined period and information regarding the variable display of new specific identification information is stored, the reserved display is started in the start mode at the reserved display position corresponding to the variable display of the next specific identification information, changed step by step from the start mode to the plurality of intermediate modes, and then changed to the completion mode, and this change is executed over the predetermined period to display the reserved display. When the period until the variable display for the reserved memory number 0 ends is shorter than the predetermined period and information regarding the variable display of new specific identification information is stored, the reserved display is started in the start mode at the reserved display position corresponding to the variable display of the next specific identification information, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing to start the variable display of the next specific identification information in a situation where it is in an intermediate mode different from the pre-completion mode, the reserved display is changed to the completion mode based on this timing and displayed. It is characterized by this. According to this feature, when the reserved memory stored from during the variable display until the start of the next variable display is still in the intermediate mode at the start of the variable display, it is changed to the completion mode, so there is no hindrance to the movement of the reserved display position that will be performed thereafter, and misrecognition of the reserved memory number can be prevented. Also, by differentiating the presence or absence of the change to the completion mode depending on whether the period until the start of the next variable display is longer or shorter than the predetermined period, it is possible to suitably show the player the reserved memory number and the stepwise change at the time of storing a new reserved memory. Furthermore, when the reserved memory number is 0, when the timing of storing a new reserved memory has no delay of the predetermined period until the start of the next variable display, by changing the stepwise change at the time of storing the new reserved memory to the completion mode, even when the reserved memory number is 0, there is no hindrance to the movement of the reserved display position, and misrecognition of the reserved memory number can be prevented. Also, by making the light-emitting means on the game control means side visible first and then making the reserved ball number display of the display means visible, the reserved memory number can be recognized using a plurality of means. In particular, by executing the control of the game control means that controls games such as the granting of game values first, a stable game environment can be provided. Corresponding drawings: Figures 72, 73, 81, 82, 88, 89
[0037] [Form 28] The gaming machine of Form 28 is a gaming machine capable of variably displaying specific identification information and controllable to an advantageous state favorable to the player, comprising game control means, performance control means, display means, storage means, and a plurality of light emitting means, wherein the plurality of light emitting means includes light emitting means on the game control means side controlled by the game control means, the storage means is capable of storing information related to the variable display of specific identification information, and includes a variable display storage area as an area for storing information related to the variable display of specific identification information, a first reserved storage area which is an area for storing information related to the variable display of specific identification information after the variable display storage area, and a plurality of reserved storage areas with a predetermined number as an upper limit, the game control means is capable of changing the mode of the light emitting means on the game control means side based on the fact that information related to the variable display of specific identification information is stored in the reserved storage area, the performance control means is capable of causing the display means to display a reserved ball number display indicating the number of information related to the variable display of specific identification information stored in the storage means, the game control means is capable of executing the variable display of specific identification information when information related to the variable display of specific identification information is stored in the variable display storage area, and is capable of executing the next variable display of specific identification information when there is storage of information related to the variable display of specific identification information in the first reserved storage area when the variable display of specific identification information has ended, When there is storage of information regarding the variable display of specific identification information in the said variable display storage area and there is no storage of information regarding the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, store the information regarding the variable display of specific identification information in the first reserved storage area. When there is storage of information regarding the variable display of specific identification information in the said variable display storage area and there is no storage of information regarding the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, set the mode of the light-emitting means on the game control means side to a mode corresponding to the situation where information regarding the variable display of specific identification information is stored in the first reserved storage area. The effect control means When there is storage of information regarding the variable display of specific identification information in the said variable display storage area and there is no storage of information regarding the variable display of specific identification information in the first reserved storage area, when the game medium passes through the start area, after the mode of the light-emitting means on the game control means side becomes a mode corresponding to the situation where information regarding the variable display of specific identification information is stored in the first reserved storage area, set the mode of the reserved ball number display to a mode corresponding to the situation where information regarding the variable display of specific identification information is stored in the first reserved storage area. When information regarding the variable display of specific identification information is stored in the reserved storage area, it is possible to display a reserved display by gradually changing a start mode, a completion mode, and a plurality of intermediate modes including a mode before the completion mode, which is the previous mode of the completion mode. When the variable display of specific identification information is being executed, move the reserved display corresponding to the information regarding the variable display of specific identification information stored in the reserved storage area from the reserved display position where it has been displayed for a specific period from the reserved shift start timing based on the timing when the next variable display of specific identification information starts to the reserved display position corresponding to the start of the next variable display of specific identification information. When the variable display at the time of the reserved storage number N, which is the variable display of specific identification information in the situation where information regarding the variable display of N specific identification information less than the predetermined number is stored in the reserved storage area, is being executed. When the period until the start of the variable display of the next specific identification information is longer than a predetermined period and information regarding the variable display of new specific identification information is stored, a change is executed over the predetermined period, which starts the hold display in the start mode at the hold display position corresponding to the (N + 1)-th number, changes stepwise from the start mode to the plurality of intermediate modes, and then changes to the completion mode, to display the hold display. When the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and is not the period immediately before the start of the variable display of the next specific identification information, and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation of being in the intermediate mode different from the pre-completion mode, the hold display is changed to the completion mode based on the timing and displayed. When the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and is the period immediately before the start of the variable display of the next specific identification information, and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)-th number, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation of being in the start mode, the hold display is changed to the completion mode based on the timing and displayed. When the variable display at the N-th hold memory number ends and information regarding the variable display of new specific identification information is stored immediately after the start of the variable display of the next specific identification information, a change is executed over the predetermined period, which starts the hold display in the start mode at the hold display position corresponding to the N-th number, changes stepwise from the start mode to the plurality of intermediate modes, and then changes to the completion mode, to display the hold display. When the variable display at the 0-th hold memory number, which is the variable display of specific identification information in a situation where information regarding the variable display of specific identification information is not stored in the hold memory area, is being executed. When the period until the variable display for the reserved memory number 0 ends is longer than the predetermined period and information regarding the variable display of new specific identification information is stored, the reserved display is started in the start mode at the reserved display position corresponding to the variable display of the next specific identification information, and after gradually changing from the start mode to the plurality of intermediate modes, it is changed to the completion mode, and this change is executed over the predetermined period to display the reserved display. When the period until the variable display for the reserved memory number 0 ends is shorter than the predetermined period and it is not immediately before the variable display for the reserved memory number 0 ends, and information regarding the variable display of new specific identification information is stored, the reserved display is started in the start mode at the reserved display position corresponding to the variable display of the next specific identification information, changed from the start mode to an intermediate mode different from the pre-completion mode, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in an intermediate mode different from the pre-completion mode, it is changed to the completion mode based on this timing to display the reserved display. When the period until the variable display for the reserved memory number 0 ends is shorter than the predetermined period and it is immediately before the variable display for the reserved memory number 0 ends, and information regarding the variable display of new specific identification information is stored, the reserved display is started in the start mode at the reserved display position corresponding to the variable display of the next specific identification information, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in the start mode, it is changed to the completion mode based on this timing to display the reserved display. When information regarding the variable display of new specific identification information is stored immediately after the variable display for the reserved memory number 0 ends, the reserved display is displayed from the completion mode at the reserved display position corresponding to the variable display of the next specific identification information after the variable display for the reserved memory number 0. It is characterized by this. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to a completed state, so that the subsequent movement of the pending display position is not hindered, and misrecognition of the number of pending memories can be prevented. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual change at the time of storing a new pending memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new pending memory. Moreover, when the number of pending memories is 0, if there is no delay for a predetermined period until the start of the next variable display at the timing when a new pending memory is stored, by changing the gradual change at the time of storing the new pending memory to the completed state, even when the number of pending memories is 0, the movement of the pending display position is not hindered, and misrecognition of the number of pending memories can be prevented. Also, by making the light-emitting means on the game control means side visible first and then making the display of the number of pending balls on the display means visible, the number of pending memories can be recognized using a plurality of means. In particular, by executing the control of the game control means for controlling games such as granting game values first, a stable game environment can be provided. Corresponding drawings: FIGS. 72, 73, 75, 76, 81 - 84, 88, 89
[0038] [Form 29] The gaming machine of Form 29 is a gaming machine that performs variable display of specific identification information and can be controlled to an advantageous state advantageous to the player, including a game control means, a performance control means, a display means, a storage means, and a plurality of light-emitting means, The plurality of light-emitting means include a light-emitting means on the game control means side controlled by the game control means and a light-emitting means on the performance control means side controlled by the performance control means. The storage means It is possible to store information related to the variable display of specific identification information. As areas for storing information related to the variable display of specific identification information, it includes the variable display storage area, and a first reserved storage area which is an area for storing information related to the variable display of specific identification information after the said variable display storage area, and includes a plurality of reserved storage areas with a predetermined number as the upper limit, and includes a plurality of storage areas. When the game control means executes the variable display of specific identification information, the mode of the light emitting means on the game control means side can be switched from the initial mode to the final mode, and it is possible to execute the switching a plurality of times. The game control means When information related to the variable display of specific identification information is stored in the said variable display storage area, it is possible to execute the variable display of specific identification information. When the variable display of specific identification information ends, if there is storage of information related to the variable display in the first reserved storage area, it is possible to execute the variable display of the next specific identification information. The effect control means When the variable display of specific identification information is executed, it is possible to display a specific display corresponding to the variable display on the display means. In a situation where information related to the variable display of specific identification information is not stored in the storage means, when the game medium passes through the start area, between when the mode of the light emitting means on the game control means side becomes the initial mode and becomes the final mode, the display of the specific display is started. When the variable display of specific identification information is not executed, when information related to the variable display of specific identification information is stored in the reserved storage area, it is possible to display a reserved display by gradually changing a plurality of intermediate modes including a start mode, a completion mode, and a pre-completion mode which is one mode before the completion mode. When the variable display of specific identification information is being executed, the hold display corresponding to the information regarding the variable display of the specific identification information stored in the hold memory area is moved from the hold display position where it has been displayed over a specific period from the hold shift start timing based on the timing at which the variable display of the next specific identification information starts to the hold display position corresponding to the start of the variable display of the next specific identification information, and when the hold memory number N variable display, which is the variable display of specific identification information in a situation where information regarding the variable display of less than the predetermined number of N specific identification information is stored in the hold memory area, is being executed, when the period until the start of the variable display of the next specific identification information is longer than the predetermined period and information regarding the variable display of new specific identification information is stored, the change of starting the hold display in the start mode at the hold display position corresponding to the (N + 1)th item, changing step by step from the start mode to the plurality of intermediate modes, and then changing to the completion mode is executed over the predetermined period to display the hold display, when the period until the start of the variable display of the next specific identification information is shorter than the predetermined period and information regarding the variable display of new specific identification information is stored, the hold display is started in the start mode at the hold display position corresponding to the (N + 1)th item, changed to an intermediate mode different from the pre-completion mode from the start mode, and when it becomes the timing at which the variable display of the next specific identification information starts in a situation where it is in an intermediate mode different from the pre-completion mode, it is changed to the completion mode based on the timing to display the hold display, when the hold memory number N variable display is terminated and information regarding the variable display of new specific identification information is stored before the elapse of the specific period from the hold shift start timing, the change of starting the hold display in the start mode at the hold display position corresponding to the Nth item, changing step by step from the start mode to the plurality of intermediate modes, and then changing to the completion mode is executed over the predetermined period to display the hold display, is characterized by the above. According to this feature, if the pending memory stored from the middle of the variable display to the start of the next variable display is still in an intermediate state at the start of the variable display, it is changed to the completed state. Therefore, it does not hinder the subsequent movement of the pending display position and can prevent misrecognition of the number of pending memories. Also, by differentiating the presence or absence of the change to the completed state depending on whether the period until the start of the next variable display is longer or shorter than a predetermined period, it is possible to suitably show the player the number of pending memories and the gradual change at the time of storing a new pending memory. Furthermore, by differentiating immediately before and immediately after the start of the next variable display, it is possible to more suitably show the player the gradual change at the time of storing a new pending memory. Also, by executing the variable display of the specific identification information and then starting the specific display on the side of the effect control means, it is possible to make multiple means recognize that the variable display has started corresponding to the passage of the start area by the gaming medium. Among them, by starting the display of the specific display corresponding to the variable display from the initial state to the final state of the variable display of the specific identification information, it is possible to prevent the player from feeling that only the variable display of the specific identification information is being executed, and as a result, it is possible to provide a suitable gaming environment. Corresponding drawings: FIGS. 72 to 74, FIG. 85 In addition, in this embodiment, The "light-emitting means on the gaming control means side" is the "LEDs constituting the special drawing unit 201 in this embodiment, particularly the LEDs constituting the first special symbol display device 4A and the second special symbol display device 4B" The "initial state" corresponds to the "state in which the first LED among the LEDs constituting the first special symbol display device 4A and the second special symbol display device 4B is lit" in this embodiment, The "final state" corresponds to the "state in which the eighth LED among the LEDs constituting the first special symbol display device 4A and the second special symbol display device 4B is lit" in t...
Claims
Claim 1: A gaming machine capable of variably displaying performance identification information and controllable to an advantageous state, capable of executing a specific notification performance for notifying whether or not it is controlled to the advantageous state, capable of displaying a character, capable of outputting sound, The specific notification performance includes an introduction part until it is notified whether or not it is controlled to the advantageous state, and an epilogue part for notifying whether or not it is controlled to the advantageous state, When the variable display of the performance identification information becomes a reach mode, a first character display corresponding to the reach mode is performed, and a second character display different from the first character display is performed during the period after the reach mode and before the specific notification performance is executed. A first pattern, and when the variable display of the performance identification information becomes a reach mode, the first character display corresponding to the reach mode is performed, and during the period after the reach mode and before the specific notification performance is executed, a second pattern in which the first character display and the second character display are not performed, The first pattern has a higher expectation of being controlled to the advantageous state than the second pattern, As the sound pattern in which the sound is output, a predetermined sound pattern in which the mouth of the character does not move and the sound is output in a situation where the character is displayed, and a specific sound pattern in which the mouth of the character moves and the sound is output in a situation where the character is displayed, are included, In the specific notification performance, the sound can be output so that the number of times of the specific sound pattern is greater than the number of times of the predetermined sound pattern, A gaming machine capable of executing a chance-up performance when the sound is output in the predetermined sound pattern in the specific notification performance.
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