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177 lines
5.5 KiB
177 lines
5.5 KiB
# MicroPython uasyncio module
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# MIT license; Copyright (c) 2019-2020 Damien P. George
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# This file contains the core TaskQueue based on a pairing heap, and the core Task class.
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# They can optionally be replaced by C implementations.
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from . import core
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# pairing-heap meld of 2 heaps; O(1)
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def ph_meld(h1, h2):
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if h1 is None:
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return h2
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if h2 is None:
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return h1
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lt = core.ticks_diff(h1.ph_key, h2.ph_key) < 0
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if lt:
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if h1.ph_child is None:
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h1.ph_child = h2
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else:
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h1.ph_child_last.ph_next = h2
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h1.ph_child_last = h2
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h2.ph_next = None
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h2.ph_rightmost_parent = h1
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return h1
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else:
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h1.ph_next = h2.ph_child
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h2.ph_child = h1
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if h1.ph_next is None:
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h2.ph_child_last = h1
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h1.ph_rightmost_parent = h2
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return h2
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# pairing-heap pairing operation; amortised O(log N)
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def ph_pairing(child):
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heap = None
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while child is not None:
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n1 = child
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child = child.ph_next
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n1.ph_next = None
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if child is not None:
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n2 = child
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child = child.ph_next
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n2.ph_next = None
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n1 = ph_meld(n1, n2)
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heap = ph_meld(heap, n1)
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return heap
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# pairing-heap delete of a node; stable, amortised O(log N)
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def ph_delete(heap, node):
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if node is heap:
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child = heap.ph_child
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node.ph_child = None
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return ph_pairing(child)
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# Find parent of node
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parent = node
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while parent.ph_next is not None:
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parent = parent.ph_next
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parent = parent.ph_rightmost_parent
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# Replace node with pairing of its children
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if node is parent.ph_child and node.ph_child is None:
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parent.ph_child = node.ph_next
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node.ph_next = None
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return heap
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elif node is parent.ph_child:
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child = node.ph_child
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next = node.ph_next
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node.ph_child = None
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node.ph_next = None
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node = ph_pairing(child)
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parent.ph_child = node
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else:
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n = parent.ph_child
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while node is not n.ph_next:
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n = n.ph_next
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child = node.ph_child
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next = node.ph_next
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node.ph_child = None
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node.ph_next = None
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node = ph_pairing(child)
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if node is None:
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node = n
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else:
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n.ph_next = node
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node.ph_next = next
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if next is None:
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node.ph_rightmost_parent = parent
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parent.ph_child_last = node
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return heap
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# TaskQueue class based on the above pairing-heap functions.
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class TaskQueue:
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def __init__(self):
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self.heap = None
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def peek(self):
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return self.heap
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def push(self, v, key=None):
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assert v.ph_child is None
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assert v.ph_next is None
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v.data = None
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v.ph_key = key if key is not None else core.ticks()
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self.heap = ph_meld(v, self.heap)
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def pop(self):
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v = self.heap
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assert v.ph_next is None
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self.heap = ph_pairing(v.ph_child)
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v.ph_child = None
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return v
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def remove(self, v):
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self.heap = ph_delete(self.heap, v)
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# Task class representing a coroutine, can be waited on and cancelled.
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class Task:
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def __init__(self, coro, globals=None):
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self.coro = coro # Coroutine of this Task
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self.data = None # General data for queue it is waiting on
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self.state = True # None, False, True, a callable, or a TaskQueue instance
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self.ph_key = 0 # Pairing heap
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self.ph_child = None # Paring heap
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self.ph_child_last = None # Paring heap
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self.ph_next = None # Paring heap
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self.ph_rightmost_parent = None # Paring heap
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def __iter__(self):
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if not self.state:
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# Task finished, signal that is has been await'ed on.
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self.state = False
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elif self.state is True:
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# Allocated head of linked list of Tasks waiting on completion of this task.
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self.state = TaskQueue()
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elif type(self.state) is not TaskQueue:
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# Task has state used for another purpose, so can't also wait on it.
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raise RuntimeError("can't wait")
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return self
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def __next__(self):
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if not self.state:
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# Task finished, raise return value to caller so it can continue.
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raise self.data
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else:
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# Put calling task on waiting queue.
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self.state.push(core.cur_task)
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# Set calling task's data to this task that it waits on, to double-link it.
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core.cur_task.data = self
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def done(self):
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return not self.state
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def cancel(self):
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# Check if task is already finished.
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if not self.state:
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return False
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# Can't cancel self (not supported yet).
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if self is core.cur_task:
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raise RuntimeError("can't cancel self")
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# If Task waits on another task then forward the cancel to the one it's waiting on.
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while isinstance(self.data, Task):
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self = self.data
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# Reschedule Task as a cancelled task.
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if hasattr(self.data, "remove"):
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# Not on the main running queue, remove the task from the queue it's on.
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self.data.remove(self)
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core._task_queue.push(self)
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elif core.ticks_diff(self.ph_key, core.ticks()) > 0:
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# On the main running queue but scheduled in the future, so bring it forward to now.
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core._task_queue.remove(self)
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core._task_queue.push(self)
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self.data = core.CancelledError
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return True
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