mirror of
https://github.com/AsahiLinux/m1n1
synced 2024-11-22 22:53:04 +00:00
11fb2a403b
Signed-off-by: Hector Martin <marcan@marcan.st>
262 lines
7.7 KiB
Python
262 lines
7.7 KiB
Python
# SPDX-License-Identifier: MIT
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import itertools
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from construct import *
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ADTPropertyStruct = Struct(
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"name" / PaddedString(32, "ascii"),
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"size" / Int32ul,
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"value" / Bytes(this.size & 0x7fffffff)
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)
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ADTNodeStruct = Struct(
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"property_count" / Int32ul,
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"child_count" / Int32ul,
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"properties" / Array(this.property_count, Aligned(4, ADTPropertyStruct)),
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"children" / Array(this.child_count, LazyBound(lambda: ADTNodeStruct))
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)
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ADTStringList = GreedyRange(CString("ascii"))
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ADT2Tuple = Array(2, Hex(Int64ul))
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ADT3Tuple = Array(3, Hex(Int64ul))
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STD_PROPERTIES = {
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"cpu-impl-reg": ADT2Tuple,
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"name": CString("ascii"),
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"compatible": ADTStringList,
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"model": CString("ascii"),
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"#size-cells": Int32ul,
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"#address-cells": Int32ul,
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}
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def parse_prop(node, path, name, v):
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t = None
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if v == b'' or v is None:
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return None, None
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if name == "reg" and path != "/device-tree/memory":
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n = node._parent
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while n is not None and n._parent is not None:
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if "ranges" not in n._properties:
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break
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n = n._parent
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else:
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ac, sc = node._parent.address_cells, node._parent.size_cells
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at = Hex(Int64ul) if ac == 2 else Array(ac, Hex(Int32ul))
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st = Hex(Int64ul) if sc == 2 else Array(sc, Hex(Int32ul))
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t = GreedyRange(Struct("addr" / at, "size" / st))
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elif name == "ranges":
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try:
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ac, sc = node.address_cells, node.size_cells
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except KeyError:
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return None, v
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pac, _ = node._parent.address_cells, node._parent.size_cells
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at = Hex(Int64ul) if ac == 2 else Array(ac, Hex(Int32ul))
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pat = Hex(Int64ul) if pac == 2 else Array(pac, Hex(Int32ul))
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st = Hex(Int64ul) if sc == 2 else Array(sc, Hex(Int32ul))
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t = GreedyRange(Struct("bus_addr" / pat, "parent_addr" / at, "size" / st))
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if t is not None:
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v = Sequence(t, Terminated).parse(v)[0]
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return t, v
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if name in STD_PROPERTIES:
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t = STD_PROPERTIES[name]
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elif v and v[-1] == 0 and all(0x20 <= i <= 0x7e for i in v[:-1]):
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t = CString("ascii")
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elif len(v) == 4:
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t = Int32ul
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elif len(v) == 8:
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t = Int64ul
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elif len(v) == 16 and all(v[i] == 0 for i in (6, 7, 14, 15)):
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t = ADT2Tuple
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if t is not None:
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v = Sequence(t, Terminated).parse(v)[0]
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return t, v
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def build_prop(path, name, v, t=None):
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if v is None:
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return b''
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if t is not None:
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return t.build(v)
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if isinstance(v, bytes):
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return v
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if name in STD_PROPERTIES:
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t = STD_PROPERTIES[name]
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elif isinstance(v, str):
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t = CString("ascii")
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elif isinstance(v, int):
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t = Int32ul
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elif isinstance(v, tuple) and all(isinstance(i, int) for i in v):
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t = Array(len(v), Int32ul)
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return t.build(v)
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class ADTNode:
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def __init__(self, val=None, path="/", parent=None):
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self._children = []
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self._properties = {}
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self._types = {}
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self._parent_path = path
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self._parent = parent
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if val is not None:
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for p in val.properties:
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if p.name == "name":
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_name = p.value.decode("ascii").rstrip("\0")
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break
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else:
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raise ValueError(f"Node in {path} has no name!")
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path = self._parent_path + _name
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for p in val.properties:
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try:
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self._types[p.name], self._properties[p.name] = parse_prop(self, path, p.name, p.value)
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except Exception as e:
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print(f"Exception parsing {path}.{p.name} value {p.value.hex()}:")
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raise
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# Second pass
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for k, v in self._types.items():
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if v is None:
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self._types[k], self._properties[k] = parse_prop(self, path, k, self._properties[k])
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for c in val.children:
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node = ADTNode(c, f"{self._path}/", parent=self)
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self._children.append(node)
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@property
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def _path(self):
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return self._parent_path + self.name
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def __getitem__(self, item):
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if isinstance(item, str):
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for i in self._children:
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if i.name == item:
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return i
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raise KeyError(f"Child node '{item}' not found")
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return self._children[item]
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def __setitem__(self, item, value):
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if isinstance(item, str):
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for i, c in enumerate(self._children):
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if c.name == item:
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self._children[i] = value
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break
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else:
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self._children.append(value)
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else:
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self._children[item] = value
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def __delitem__(self, item):
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if isinstance(item, str):
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for i, c in enumerate(self._children):
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if c.name == item:
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del self._children[i]
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return
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raise KeyError(f"Child node '{item}' not found")
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del self._children[item]
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def __getattr__(self, attr):
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attr = attr.replace("_", "-")
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return self._properties[attr]
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def __setattr__(self, attr, value):
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if attr[0] == "_":
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self.__dict__[attr] = value
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return
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attr = attr.replace("_", "-")
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self._properties[attr] = value
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def __delattr__(self, attr):
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if attr[0] == "_":
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del self.__dict__[attr]
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return
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del self._properties[attr]
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@property
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def address_cells(self):
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return self._properties["#address-cells"]
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@property
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def size_cells(self):
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return self._properties["#size-cells"]
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def _fmt_prop(self, v):
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if isinstance(v, ListContainer):
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return f"[{', '.join(self._fmt_prop(i) for i in v)}]"
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else:
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return str(v)
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def __str__(self, t=""):
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return "\n".join([
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t + f"{self.name} {{",
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*(t + f" {k} = {self._fmt_prop(v)}" for k, v in self._properties.items() if k != "name"),
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"",
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*(i.__str__(t + " ") for i in self._children),
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t + "}"
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])
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def __iter__(self):
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return iter(self._children)
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def get_reg(self, idx):
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reg = self.reg[idx]
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addr = reg.addr
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size = reg.size
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node = self._parent
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while node is not None:
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if "ranges" not in node._properties:
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break
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for r in node.ranges:
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if r.bus_addr <= addr < (r.bus_addr + r.size):
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addr = addr - r.bus_addr + r.parent_addr
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break
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node = node._parent
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return addr, size
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def tostruct(self):
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properties = []
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for k,v in itertools.chain(self._properties.items()):
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value = build_prop(self._path, k, v, t=self._types.get(k, None))
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properties.append({
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"name": k,
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"size": len(value),
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"value": value
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})
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data = {
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"property_count": len(self._properties),
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"child_count": len(self._children),
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"properties": properties,
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"children": [c.tostruct() for c in self._children]
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}
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return data
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def build(self):
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return ADTNodeStruct.build(self.tostruct())
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def load_adt(data):
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return ADTNode(ADTNodeStruct.parse(data))
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if __name__ == "__main__":
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import sys
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adt_data = open(sys.argv[1], "rb").read()
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adt = load_adt(adt_data)
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print(adt)
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new_data = adt.build()
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if len(sys.argv) > 2:
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with open(sys.argv[2], "wb") as fd:
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fd.write(new_data)
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assert new_data == adt_data[:len(new_data)]
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assert adt_data[len(new_data):] == bytes(len(adt_data) - len(new_data))
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