- 主条目:SRS
除了 I 块,SRS 踢墙均为对称。这意味着对于镜像场地和镜像方块(JL 块、SZ 块、左右朝向),踢墙值互补(y 值相同,x 值互为相反数)。因此,除了 I 方块,方块的踢墙系统可只用顺时针旋转描述。
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踢墙测试
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实例
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0⇒R
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( 0, 0)
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(-1, 0)
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(-1,+1)
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( 0,-2)
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(-1,-2)
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(-1, 0)
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(-1,-2)
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R⇒2
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( 0, 0)
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(+1, 0)
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(+1,-1)
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( 0,+2)
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(+1,+2)
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(+1,-1)
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(+1, 0)
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2⇒L
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( 0, 0)
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(+1, 0)
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(+1,+1)
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( 0,-2)
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(+1,-2)
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(+1,-2)
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L⇒0
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( 0, 0)
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(-1, 0)
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(-1,-1)
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( 0,+2)
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(-1,+2)
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(-1,-1)
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踢墙测试
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实例
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0⇒R
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( 0, 0)
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(-1, 0)
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(-1,+1)
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(0,-2)
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(-1,-2)
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(-1, 0)
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( 0,-2)
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R⇒2
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( 0, 0)
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(+1, 0)
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(+1,-1)
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( 0,+2)
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(+1,+2)
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(+1,-1)
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(+1, 0)
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2⇒L
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( 0, 0)
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(+1, 0)
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(+1,+1)
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( 0,-2)
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(+1,-2)
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(+1,-2)
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L⇒0
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( 0, 0)
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(-1, 0)
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(-1,-1)
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( 0,+2)
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(-1,+2)
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(-1,-1)
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(-1, 0)
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踢墙测试
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实例
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0⇒R
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( 0, 0)
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(-1, 0)
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(-1,+1)
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无法实现
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(-1,-2)
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(-1,-2)
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(-1, 0)
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R⇒2
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( 0, 0)
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(+1, 0)
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(+1,-1)
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( 0,+2)
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(+1,+2)
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( 0, 0)
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(+1,-1)
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2⇒L
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( 0, 0)
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(+1, 0)
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无法实现
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( 0,-2)
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(+1,-2)
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(+1,-2)
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( 0,-2)
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L⇒0
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( 0, 0)
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(-1, 0)
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(-1,-1)
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( 0,+2)
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(-1,+2)
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(-1,-1)
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(-1, 0)
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踢墙测试
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实例
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0⇒R
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( 0, 0)
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(-1, 0)
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(-1,+1)
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(0,-2)
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(-1,-2)
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(-1,-2)
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(0,-2)
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R⇒2
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( 0, 0)
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(+1, 0)
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(+1,-1)
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( 0,+2)
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(+1,+2)
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(+1,-1)
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(+1, 0)
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2⇒L
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( 0, 0)
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(+1, 0)
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(+1,+1)
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( 0,-2)
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(+1,-2)
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( 0,-2)
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L⇒0
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( 0, 0)
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(-1, 0)
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(-1,-1)
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( 0,+2)
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(-1,+2)
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(-1, 0)
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踢墙测试
|
实例
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0⇒R
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( 0, 0)
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(-1, 0)
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(-1,+1)
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( 0,-2)
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(-1,-2)
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( 0,-2)
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( 0, 0)
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R⇒2
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( 0, 0)
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(+1, 0)
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(+1,-1)
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( 0,+2)
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(+1,+2)
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(+1,-1)
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(+1, 0)
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2⇒L
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( 0, 0)
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(+1, 0)
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(+1,+1)
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( 0,-2)
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(+1,-2)
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(+1,-2)
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L⇒0
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( 0, 0)
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(-1, 0)
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(-1,-1)
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( 0,+2)
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(-1,+2)
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( 0, 0)
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踢墙测试
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实例
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0⇒R
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( 0, 0)
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(-2, 0)
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(+1, 0)
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(-2,-1)
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(+1,+2)
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(-2,-1)
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R⇒2
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( 0, 0)
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(-1, 0)
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(+2, 0)
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(-1,+2)
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(+2,-1)
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(+2,-1)
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2⇒L
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( 0, 0)
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(+2, 0)
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(-1, 0)
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(+2,+1)
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(-1,-2)
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L⇒0
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( 0, 0)
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(+1, 0)
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(-2, 0)
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(+1,-2)
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(-2,+1)
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(+1,-2)
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踢墙测试
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实例
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0⇒L
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( 0, 0)
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(-1, 0)
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(+2, 0)
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(-1,+2)
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(+2,-1)
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L⇒2
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( 0, 0)
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(-2, 0)
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(+1, 0)
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(-2,-1)
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(+1,+2)
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(-2,-1)
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2⇒R
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( 0, 0)
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(+1, 0)
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(-2, 0)
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(+1,-2)
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(-2,+1)
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(+1,-2)
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R⇒0
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( 0, 0)
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(+2, 0)
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(-1, 0)
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(+2,+1)
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(-1,-2)
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(-1,-2)
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