add Qt Creator dumper for PIP types and PINetworkAddress GDB printer
This commit is contained in:
@@ -8,3 +8,4 @@ CMakeLists.txt.user*
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/build*
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/AGENTS.md
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/plans
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__pycache__
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@@ -17,6 +17,7 @@ PIP ships a GDB pretty-printer script, `tools/gdb/pip_pp.py`, that makes the bas
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| \a PISet<T> | `{3, 5}` |
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| \a PIPair<K,V> | `{"k", 7}` |
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| \a PIVariant | `PIVariant(pivInt, 4 bytes)` |
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| \a PINetworkAddress | `192.168.1.10:8080` |
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Nested containers are printed recursively, e.g. `PIVector<PIString>` prints as `{"a", "bb"}`.
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Pointers to the covered types show the address and the content:
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@@ -62,6 +63,27 @@ add-auto-load-safe-path <root_dir>
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The stub is installed only for shared builds; for static builds
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use the manual `source` command.
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\section qtcreator Qt Creator
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Qt Creator's Variables/Expressions views do not use GDB
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pretty-printers; they run their own Python dumper. PIP provides the
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dumper module `tools/qtcreator/pip_types.py`, which covers the same
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types as `pip_pp.py`. To enable it:
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1. Open the debugger settings (Qt Creator -> Settings -> Debugger).
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2. Switch to the "Variables and expressions" tab.
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3. In the "Extra dumper file" field (tooltip: "Path to a Python file
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containing additional data dumpers"), enter the path to the file:
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\code
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/path/to/pip/tools/qtcreator/pip_types.py
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\endcode
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After that PIString, PIVector<T>, PIMap<K,V> and the other types from
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the table above show their content in the Variables/Expressions views.
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No changes to the GDB setup (`.gdbinit`, auto-load stub) are needed for
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Qt Creator; those keep working for the command-line GDB.
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\section verifying Verifying the installation
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A check script builds a demo with all covered types and asserts the expected
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@@ -88,6 +110,7 @@ tools/gdb/test/test_pp.sh build_linux
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| \a PISet<T> | `{3, 5}` |
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| \a PIPair<K,V> | `{"k", 7}` |
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| \a PIVariant | `PIVariant(pivInt, 4 bytes)` |
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| \a PINetworkAddress | `192.168.1.10:8080` |
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Вложенные контейнеры выводятся рекурсивно, например `PIVector<PIString>`
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выводится как `{"a", "bb"}`. Указатели на поддерживаемые типы показывают
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+21
-1
@@ -3,7 +3,8 @@ GDB pretty-printers for the PIP (Platform-Independent Primitives) library.
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Covered types:
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PIString, PIByteArray, PIChar, PIVector<T>, PIDeque<T>,
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PIStringList, PIMap<K,V>, PISet<T>, PIPair<K,V>, PIVariant
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PIStringList, PIMap<K,V>, PISet<T>, PIPair<K,V>, PIVariant,
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PINetworkAddress
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Usage
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-----
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@@ -248,6 +249,24 @@ class _PIPairPrinter(_Printer):
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return None
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class _PINetworkAddressPrinter(_Printer):
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"""PINetworkAddress: union {uint ip_; uchar ip_b[4]}; ushort port_.
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The IP bytes are stored in ip_b[0..3] in octet order, so they are
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printed as-is (no byte-swap, works for any endianness).
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Printed as "i.i.i.i:p".
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"""
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def to_string(self):
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try:
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# Mask against a signed char type: octets must be 0..255.
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b = [int(self._val["ip_b"][i]) & 0xFF for i in range(4)]
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port = int(self._val["port_"])
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return self._prefix + "%d.%d.%d.%d:%d" % (b[0], b[1], b[2], b[3], port)
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except Exception:
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return None
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class _PIVariantPrinter(_Printer):
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"""PIVariant: PIByteArray _content (serialized), Type _type (enum).
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@@ -282,6 +301,7 @@ _PATTERNS = [
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(re.compile(r"^PISet<.*>$"), lambda v, p: _PISetPrinter(v, p)),
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(re.compile(r"^PIPair<.*>$"), lambda v, p: _PIPairPrinter(v, p)),
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(re.compile(r"^PIVariant$"), lambda v, p: _PIVariantPrinter(v, p)),
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(re.compile(r"^PINetworkAddress$"), lambda v, p: _PINetworkAddressPrinter(v, p)),
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]
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@@ -3,6 +3,7 @@
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#include "pibytearray.h"
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#include "pichar.h"
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#include "pimap.h"
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#include "pinetworkaddress.h"
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#include "pipair.h"
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#include "piset.h"
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#include "pistring.h"
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@@ -28,6 +29,8 @@ static PIString * ptr_str = 0;
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static PIString * ptr_null = 0;
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static PIChar chr_a;
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static PIChar chr_cyr;
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static PINetworkAddress addr;
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static PINetworkAddress addr_null;
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namespace {
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struct PPInit {
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@@ -58,6 +61,8 @@ struct PPInit {
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chr_a = PIChar('a');
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chr_cyr = PIChar((char16_t)0x043C);
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addr = PINetworkAddress(PIString("192.168.1.10"), 8080);
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str_esc = "a\"b\\c\nd\te";
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}
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};
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@@ -68,6 +68,8 @@ OUT="$(gdb -batch -nx \
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-ex "print pair_str_int" \
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-ex "print var_int" \
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-ex "print var_invalid" \
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-ex "print addr" \
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-ex "print addr_null" \
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-ex "print ptr_str" \
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-ex "print *ptr_str" \
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"${WORK}/demo_pp" 2>&1)"
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@@ -102,6 +104,8 @@ check '^\$[0-9]+ = \{"one", "two"\}$' "PIStringList"
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check '^\$[0-9]+ = \{"k", 7\}$' "PIPair"
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check '^\$[0-9]+ = PIVariant\(pivInt, 4 bytes\)$' "PIVariant typed"
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check '^\$[0-9]+ = PIVariant\(pivInvalid, 0 bytes\)$' "PIVariant invalid"
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check '^\$[0-9]+ = 192\.168\.1\.10:8080$' "PINetworkAddress"
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check '^\$[0-9]+ = 0\.0\.0\.0:0$' "PINetworkAddress null"
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check '^\$[0-9]+ = \(PIString \*\) 0x[0-9a-f]+ "hello"$' "pointer to PIString"
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check '^\$[0-9]+ = "hello"$' "dereferenced pointer"
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@@ -0,0 +1,286 @@
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# Data dumpers for the PIP (Platform-Independent Primitives) library.
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#
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# Makes the Qt Creator Variables/Expressions views show the content of the
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# basic PIP types instead of their raw internals (the Qt Creator dumper
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# does not use GDB pretty-printers, it needs its own dumpers; this module
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# mirrors tools/gdb/pip_pp.py):
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#
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# PIString -> hello
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# PIByteArray -> {0x48, 0x65, 0x6c, 0x6c, 0x6f}
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# PIChar -> 'a' or U+043m
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# PIVector<T> -> [1, 2, 3]
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# PIDeque<T> -> [1, 2, 3]
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# PIStringList -> ["one", "two"]
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# PIMap<K, V> -> {k: v}
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# PISet<T> -> [3, 5]
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# PIPair<K, V> -> (k, v)
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# PIVariant -> PIVariant(pivInt, 4 bytes)
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# PINetworkAddress -> 192.168.1.10:8080
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#
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# Enable: Qt Creator -> Settings -> Debugger -> "Variables and expressions"
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# tab -> "Extra dumper file" -> point to this file.
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#
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# Requirements: the executable and the PIP library are built with debug
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# information (-g). All dumpers are read-only and defensive: on any error
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# they fall back to the default (raw) member expansion.
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from dumper import Children, SubItem
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# Maximum number of elements printed per container (matches pip_pp.py).
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_MAX_ELEMENTS = 32
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# Absolute safety cap: never try to read more elements than this
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# (protects against corrupted size fields).
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_MAX_READ = 10000000
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# Maximum string/bytearray elements read for the display value.
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_MAX_DISPLAY_UNITS = 4096
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def _utf16Text(units):
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"""Build a plain text string from a list of UTF-16 code units."""
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out = []
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i = 0
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n = len(units)
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while i < n:
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u = units[i]
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# Combine surrogate pairs.
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if 0xD800 <= u <= 0xDBFF and i + 1 < n and 0xDC00 <= units[i + 1] <= 0xDFFF:
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u = 0x10000 + ((u - 0xD800) << 10) + (units[i + 1] - 0xDC00)
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i += 2
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else:
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i += 1
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if 0 <= u <= 0x10FFFF:
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out.append(chr(u))
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else:
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out.append("\ufffd")
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return "".join(out)
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def _dequeUnits(dvalue):
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"""Read UTF-16 units from a PIDeque<PIChar> value, or None on error."""
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size = int(dvalue['pid_size'])
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if size < 0 or size > _MAX_READ:
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return None
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if size == 0:
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return []
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data = dvalue['pid_data']
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start = int(dvalue['pid_start'])
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if start < 0:
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return None
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return [int(data[start + i]['ch']) for i in range(min(size, _MAX_DISPLAY_UNITS))]
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def qdump__PIString(d, value):
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"""PIString: PIDeque<PIChar> d + cache members. Printed as plain text."""
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try:
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size = int(value['d']['pid_size'])
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units = _dequeUnits(value['d'])
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if units is not None:
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text = _utf16Text(units)
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if size > _MAX_DISPLAY_UNITS:
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text += "..."
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# Hex-encode with the utf8 tag so the raw text (quotes,
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# backslashes, control chars) never appears unescaped in the
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# dumper protocol stream.
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d.putValue(d.hexencode(text), "utf8", length=len(text))
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except Exception:
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pass
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d.putPlainChildren(value)
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def qdump__PIByteArray(d, value):
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"""PIByteArray: PIDeque<uchar> d. Printed as a hex byte list."""
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try:
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size = int(value['d']['pid_size'])
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if 0 <= size <= _MAX_READ:
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if size == 0:
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d.putValue('{}')
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else:
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dvalue = value['d']
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data = dvalue['pid_data']
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start = int(dvalue['pid_start'])
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lim = min(size, _MAX_ELEMENTS)
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items = ['0x%02x' % int(data[start + i]) for i in range(lim)]
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tail = '' if size <= _MAX_ELEMENTS else ', ... (%d total)' % size
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d.putValue('{%s%s}' % (', '.join(items), tail))
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except Exception:
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pass
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d.putPlainChildren(value)
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def qdump__PIChar(d, value):
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"""PIChar: single UTF-16 code unit (ushort ch)."""
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try:
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ch = int(value['ch'])
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if 0x20 <= ch <= 0x7E and ch not in (0x22, 0x5C):
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d.putValue("'%s'" % chr(ch))
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else:
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d.putValue('U+%04x' % ch)
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except Exception:
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pass
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d.putPlainChildren(value)
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def qdump__PINetworkAddress(d, value):
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"""PINetworkAddress: union {uint ip_; uchar ip_b[4]}; ushort port_.
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The IP bytes are stored in ip_b[0..3] in octet order, so they are
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printed as-is (no byte-swap, works for any endianness).
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Printed as "i.i.i.i:p".
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"""
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try:
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try:
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# Mask against a signed char type: octets must be 0..255.
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b = [int(value['ip_b'][i]) & 0xFF for i in range(4)]
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except Exception:
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ip = int(value['ip_'])
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if d.byteorder == 'big':
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b = [(ip >> 24) & 0xFF, (ip >> 16) & 0xFF,
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(ip >> 8) & 0xFF, ip & 0xFF]
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else:
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b = [ip & 0xFF, (ip >> 8) & 0xFF,
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(ip >> 16) & 0xFF, (ip >> 24) & 0xFF]
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port = int(value['port_'])
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d.putValue('%d.%d.%d.%d:%d' % (b[0], b[1], b[2], b[3], port))
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except Exception:
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pass
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d.putPlainChildren(value)
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def qdump__PIVector(d, value):
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"""PIVector<T>: T* piv_data, size_t piv_size, size_t piv_rsize."""
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try:
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inner = value.type[0]
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size = int(value['piv_size'])
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if 0 <= size <= _MAX_READ:
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d.putItemCount(size)
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d.putPlotData(int(value['piv_data']), size, inner)
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return
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except Exception:
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pass
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d.putPlainChildren(value)
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def _dequeDump(d, value, inner):
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"""Dump a PIDeque<T>-layout value with the given element type."""
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size = int(value['pid_size'])
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start = int(value['pid_start'])
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if 0 <= size <= _MAX_READ and 0 <= start:
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d.putItemCount(size)
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d.putPlotData(int(value['pid_data']) + start * inner.size(), size, inner)
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return True
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return False
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def qdump__PIDeque(d, value):
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"""PIDeque<T>: T* pid_data, size_t pid_size, size_t pid_rsize, size_t pid_start."""
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try:
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if _dequeDump(d, value, value.type[0]):
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return
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except Exception:
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pass
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d.putPlainChildren(value)
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def qdump__PIStringList(d, value):
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"""PIStringList: derived from PIDeque<PIString>."""
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try:
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if _dequeDump(d, value, d.createType('PIString')):
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return
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except Exception:
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pass
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d.putPlainChildren(value)
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def qdump__PIMap(d, value):
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"""PIMap<K, V>: PIVector<V> pim_content + PIDeque<MapIndex> pim_index."""
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try:
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index = value['pim_index']
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size = int(index['pid_size'])
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if not (0 <= size <= _MAX_READ):
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raise ValueError('bad size')
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d.putItemCount(size)
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if d.isExpanded():
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start = int(index['pid_start'])
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entryType = index.type[0]
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entrySize = entryType.size()
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indexBase = int(index['pid_data'])
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content = value['pim_content']
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valueType = content.type[0]
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valueBase = int(content['piv_data'])
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with Children(d, size, maxNumChild=1000):
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for i in d.childRange():
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entry = d.createValueFromAddress(
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indexBase + (start + i) * entrySize, entryType)
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key = entry['key']
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val = d.createValueFromAddress(
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valueBase + int(entry['index']) * valueType.size(),
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valueType)
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d.putPairItem(i, (key, val), 'key', 'value')
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return
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except Exception:
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pass
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d.putPlainChildren(value)
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def qdump__PISet(d, value):
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"""PISet<T>: derived from PIMap<T, uchar>. Printed as the key list."""
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try:
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index = value['pim_index']
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size = int(index['pid_size'])
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if not (0 <= size <= _MAX_READ):
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raise ValueError('bad size')
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d.putItemCount(size)
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if d.isExpanded():
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start = int(index['pid_start'])
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entryType = index.type[0]
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entrySize = entryType.size()
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indexBase = int(index['pid_data'])
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with Children(d, size, maxNumChild=1000):
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for i in d.childRange():
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entry = d.createValueFromAddress(
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indexBase + (start + i) * entrySize, entryType)
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d.putSubItem(i, entry['key'])
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return
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except Exception:
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pass
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d.putPlainChildren(value)
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def qdump__PIPair(d, value):
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"""PIPair<K, V>: public first, second members."""
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try:
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with Children(d):
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first = d.putSubItem('first', value['first'])
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second = d.putSubItem('second', value['second'])
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d.putValue('(%s, %s)' % (
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first.value if first.encoding is None else '...',
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second.value if second.encoding is None else '...'))
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except Exception:
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d.putPlainChildren(value)
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def _enumName(d, value):
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"""Name of an enum value (e.g. 'pivInt'), or its number on failure."""
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try:
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import gdb
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ival = int(value)
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etype = gdb.lookup_type(d.type_name(value.typeid))
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if etype.code != gdb.TYPE_CODE_ENUM:
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return str(ival)
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name = str(gdb.Value(ival).cast(etype))
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return name.split('::')[-1] if '::' in name else name
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except Exception:
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try:
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return str(int(value))
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except Exception:
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return '?'
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def qdump__PIVariant(d, value):
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"""PIVariant: PIByteArray _content (serialized) + Type _type (enum)."""
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try:
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nbytes = int(value['_content']['d']['pid_size'])
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d.putValue('PIVariant(%s, %d bytes)' % (_enumName(d, value['_type']), nbytes))
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except Exception:
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pass
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d.putPlainChildren(value)
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