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    • 1. 发明申请
    • DEBUGGER-SET IDENTIFYING BREAKPOINTS AFTER COROUTINE YIELD POINTS
    • 调整装置识别断裂点后的断点
    • US20120246624A1
    • 2012-09-27
    • US13053228
    • 2011-03-22
    • Ian W. J. HallidayGregory B. MiskellyStephen H. ToubDmitry LomovKayle K. Hinkle, III
    • Ian W. J. HallidayGregory B. MiskellyStephen H. ToubDmitry LomovKayle K. Hinkle, III
    • G06F9/44
    • G06F11/362G06F11/3664
    • A debugger can step through target code in a computer program. The debugger can identify a coroutine yield point in the target code, and can obtain identifying information to identify continued processing of a coroutine instance triggered by the operator. The debugger can set a breakpoint at a location for continued stepping after the coroutine yield point. The breakpoint can have a condition of matching the identifying information with runtime information. The debugger can perform the coroutine instance and resume execution of the target code after the coroutine yield point. The debugger can also encounter the breakpoint in the target code, and can determine whether the condition of the breakpoint is met. If so, the debugger can pause execution of the target code at the breakpoint. If not, the debugger can continue execution of the target code past the breakpoint without pausing at the breakpoint.
    • 调试器可以在计算机程序中逐步执行目标代码。 调试器可以识别目标代码中的协同工作点,并且可以获得识别信息以识别由操作者触发的协同实例的持续处理。 调试器可以在一个位置设置断点,以便在协同工作点屈服点之后继续步进。 断点可以具有将识别信息与运行时信息相匹配的条件。 调试器可以执行协同实例,并在协同工作点之后继续执行目标代码。 调试器也可以在目标代码中遇到断点,并且可以确定是否满足断点的条件。 如果是这样,调试器可以在断点处暂停执行目标代码。 如果没有,调试器可以继续执行目标代码超过断点,而不会在断点处暂停。
    • 2. 发明授权
    • Debugger-set identifying breakpoints after coroutine yield points
    • 调试器设定识别断点后的断点
    • US08756572B2
    • 2014-06-17
    • US13053228
    • 2011-03-22
    • Ian W. J. HallidayGregory B. MiskellyStephen H. ToubDmitry LomovKayle K. Hinkle, III
    • Ian W. J. HallidayGregory B. MiskellyStephen H. ToubDmitry LomovKayle K. Hinkle, III
    • G06F9/44
    • G06F11/362G06F11/3664
    • A debugger can step through target code in a computer program. The debugger can identify a coroutine yield point in the target code, and can obtain identifying information to identify continued processing of a coroutine instance triggered by the operator. The debugger can set a breakpoint at a location for continued stepping after the coroutine yield point. The breakpoint can have a condition of matching the identifying information with runtime information. The debugger can perform the coroutine instance and resume execution of the target code after the coroutine yield point. The debugger can also encounter the breakpoint in the target code, and can determine whether the condition of the breakpoint is met. If so, the debugger can pause execution of the target code at the breakpoint. If not, the debugger can continue execution of the target code past the breakpoint without pausing at the breakpoint.
    • 调试器可以在计算机程序中逐步执行目标代码。 调试器可以识别目标代码中的协同工作点,并且可以获得识别信息以识别由操作者触发的协同实例的持续处理。 调试器可以在一个位置设置断点,以便在协同工作点屈服点之后继续步进。 断点可以具有将识别信息与运行时信息相匹配的条件。 调试器可以执行协同实例,并在协同工作点之后继续执行目标代码。 调试器也可以在目标代码中遇到断点,并且可以确定是否满足断点的条件。 如果是这样,调试器可以在断点处暂停执行目标代码。 如果没有,调试器可以继续执行目标代码超过断点,而不会在断点处暂停。