binutils-gdb/gdb/python/py-record.c
Tom Tromey 230d2906b9 Rename gdb exception types
This renames the gdb exception types.  The old types were only needed
due to the macros in common-exception.h that are now gone.

The intermediate layer of gdb_exception_RETURN_MASK_ALL did not seem
needed, so this patch removes it entirely.

gdb/ChangeLog
2019-04-08  Tom Tromey  <tom@tromey.com>

	* common/common-exceptions.h (gdb_exception_RETURN_MASK_ALL):
	Remove.
	(gdb_exception_error): Rename from
	gdb_exception_RETURN_MASK_ERROR.
	(gdb_exception_quit): Rename from gdb_exception_RETURN_MASK_QUIT.
	(gdb_quit_bad_alloc): Update.
	* aarch64-tdep.c: Update.
	* ada-lang.c: Update.
	* ada-typeprint.c: Update.
	* ada-valprint.c: Update.
	* amd64-tdep.c: Update.
	* arch-utils.c: Update.
	* break-catch-throw.c: Update.
	* breakpoint.c: Update.
	* btrace.c: Update.
	* c-varobj.c: Update.
	* cli/cli-cmds.c: Update.
	* cli/cli-interp.c: Update.
	* cli/cli-script.c: Update.
	* common/common-exceptions.c: Update.
	* common/new-op.c: Update.
	* common/selftest.c: Update.
	* compile/compile-c-symbols.c: Update.
	* compile/compile-cplus-symbols.c: Update.
	* compile/compile-object-load.c: Update.
	* compile/compile-object-run.c: Update.
	* completer.c: Update.
	* corelow.c: Update.
	* cp-abi.c: Update.
	* cp-support.c: Update.
	* cp-valprint.c: Update.
	* darwin-nat.c: Update.
	* disasm-selftests.c: Update.
	* dtrace-probe.c: Update.
	* dwarf-index-cache.c: Update.
	* dwarf-index-write.c: Update.
	* dwarf2-frame-tailcall.c: Update.
	* dwarf2-frame.c: Update.
	* dwarf2loc.c: Update.
	* dwarf2read.c: Update.
	* eval.c: Update.
	* event-loop.c: Update.
	* event-top.c: Update.
	* exec.c: Update.
	* f-valprint.c: Update.
	* fbsd-tdep.c: Update.
	* frame-unwind.c: Update.
	* frame.c: Update.
	* gdbtypes.c: Update.
	* gnu-v3-abi.c: Update.
	* guile/guile-internal.h: Update.
	* guile/scm-block.c: Update.
	* guile/scm-breakpoint.c: Update.
	* guile/scm-cmd.c: Update.
	* guile/scm-disasm.c: Update.
	* guile/scm-frame.c: Update.
	* guile/scm-lazy-string.c: Update.
	* guile/scm-math.c: Update.
	* guile/scm-param.c: Update.
	* guile/scm-ports.c: Update.
	* guile/scm-pretty-print.c: Update.
	* guile/scm-symbol.c: Update.
	* guile/scm-symtab.c: Update.
	* guile/scm-type.c: Update.
	* guile/scm-value.c: Update.
	* i386-linux-tdep.c: Update.
	* i386-tdep.c: Update.
	* inf-loop.c: Update.
	* infcall.c: Update.
	* infcmd.c: Update.
	* infrun.c: Update.
	* jit.c: Update.
	* language.c: Update.
	* linespec.c: Update.
	* linux-fork.c: Update.
	* linux-nat.c: Update.
	* linux-tdep.c: Update.
	* linux-thread-db.c: Update.
	* main.c: Update.
	* mi/mi-cmd-break.c: Update.
	* mi/mi-cmd-stack.c: Update.
	* mi/mi-interp.c: Update.
	* mi/mi-main.c: Update.
	* objc-lang.c: Update.
	* p-valprint.c: Update.
	* parse.c: Update.
	* ppc-linux-tdep.c: Update.
	* printcmd.c: Update.
	* python/py-arch.c: Update.
	* python/py-breakpoint.c: Update.
	* python/py-cmd.c: Update.
	* python/py-finishbreakpoint.c: Update.
	* python/py-frame.c: Update.
	* python/py-framefilter.c: Update.
	* python/py-gdb-readline.c: Update.
	* python/py-inferior.c: Update.
	* python/py-infthread.c: Update.
	* python/py-lazy-string.c: Update.
	* python/py-linetable.c: Update.
	* python/py-objfile.c: Update.
	* python/py-param.c: Update.
	* python/py-prettyprint.c: Update.
	* python/py-progspace.c: Update.
	* python/py-record-btrace.c: Update.
	* python/py-record.c: Update.
	* python/py-symbol.c: Update.
	* python/py-type.c: Update.
	* python/py-unwind.c: Update.
	* python/py-utils.c: Update.
	* python/py-value.c: Update.
	* python/python.c: Update.
	* record-btrace.c: Update.
	* record-full.c: Update.
	* remote-fileio.c: Update.
	* remote.c: Update.
	* riscv-tdep.c: Update.
	* rs6000-aix-tdep.c: Update.
	* rs6000-tdep.c: Update.
	* rust-exp.y: Update.
	* rust-lang.c: Update.
	* s390-tdep.c: Update.
	* selftest-arch.c: Update.
	* solib-dsbt.c: Update.
	* solib-frv.c: Update.
	* solib-spu.c: Update.
	* solib-svr4.c: Update.
	* solib.c: Update.
	* sparc64-linux-tdep.c: Update.
	* stack.c: Update.
	* symfile-mem.c: Update.
	* symmisc.c: Update.
	* target.c: Update.
	* thread.c: Update.
	* top.c: Update.
	* tracefile-tfile.c: Update.
	* tui/tui.c: Update.
	* typeprint.c: Update.
	* unittests/cli-utils-selftests.c: Update.
	* unittests/parse-connection-spec-selftests.c: Update.
	* valops.c: Update.
	* valprint.c: Update.
	* value.c: Update.
	* varobj.c: Update.
	* windows-nat.c: Update.
	* x86-linux-nat.c: Update.
	* xml-support.c: Update.

gdb/gdbserver/ChangeLog
2019-04-08  Tom Tromey  <tom@tromey.com>

	* gdbreplay.c: Update.
	* linux-low.c: Update.
	* server.c: Update.
2019-04-08 09:05:40 -06:00

651 lines
18 KiB
C

/* Python interface to record targets.
Copyright 2016-2019 Free Software Foundation, Inc.
This file is part of GDB.
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>. */
#include "defs.h"
#include "py-instruction.h"
#include "py-record.h"
#include "py-record-btrace.h"
#include "py-record-full.h"
#include "target.h"
#include "gdbthread.h"
/* Python Record type. */
static PyTypeObject recpy_record_type = {
PyVarObject_HEAD_INIT (NULL, 0)
};
/* Python RecordInstruction type. */
PyTypeObject recpy_insn_type = {
PyVarObject_HEAD_INIT (NULL, 0)
};
/* Python RecordFunctionSegment type. */
PyTypeObject recpy_func_type = {
PyVarObject_HEAD_INIT (NULL, 0)
};
/* Python RecordGap type. */
PyTypeObject recpy_gap_type = {
PyVarObject_HEAD_INIT (NULL, 0)
};
/* Python RecordGap object. */
typedef struct
{
PyObject_HEAD
/* Reason code. */
int reason_code;
/* Reason message. */
const char *reason_string;
/* Element number. */
Py_ssize_t number;
} recpy_gap_object;
/* Implementation of record.method. */
static PyObject *
recpy_method (PyObject *self, void* closure)
{
const recpy_record_object * const obj = (recpy_record_object *) self;
if (obj->method == RECORD_METHOD_FULL)
return recpy_full_method (self, closure);
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_method (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of record.format. */
static PyObject *
recpy_format (PyObject *self, void* closure)
{
const recpy_record_object * const obj = (recpy_record_object *) self;
if (obj->method == RECORD_METHOD_FULL)
return recpy_full_format (self, closure);
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_format (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of record.goto (instruction) -> None. */
static PyObject *
recpy_goto (PyObject *self, PyObject *value)
{
const recpy_record_object * const obj = (recpy_record_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_goto (self, value);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of record.replay_position [instruction] */
static PyObject *
recpy_replay_position (PyObject *self, void *closure)
{
const recpy_record_object * const obj = (recpy_record_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_replay_position (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of record.instruction_history [list]. */
static PyObject *
recpy_instruction_history (PyObject *self, void* closure)
{
const recpy_record_object * const obj = (recpy_record_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_instruction_history (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of record.function_call_history [list]. */
static PyObject *
recpy_function_call_history (PyObject *self, void* closure)
{
const recpy_record_object * const obj = (recpy_record_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_function_call_history (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of record.begin [instruction]. */
static PyObject *
recpy_begin (PyObject *self, void* closure)
{
const recpy_record_object * const obj = (recpy_record_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_begin (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of record.end [instruction]. */
static PyObject *
recpy_end (PyObject *self, void* closure)
{
const recpy_record_object * const obj = (recpy_record_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_end (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Create a new gdb.RecordInstruction object. */
PyObject *
recpy_insn_new (thread_info *thread, enum record_method method, Py_ssize_t number)
{
recpy_element_object * const obj = PyObject_New (recpy_element_object,
&recpy_insn_type);
if (obj == NULL)
return NULL;
obj->thread = thread;
obj->method = method;
obj->number = number;
return (PyObject *) obj;
}
/* Implementation of RecordInstruction.sal [gdb.Symtab_and_line]. */
static PyObject *
recpy_insn_sal (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_insn_sal (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordInstruction.pc [int]. */
static PyObject *
recpy_insn_pc (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_insn_pc (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordInstruction.data [buffer]. */
static PyObject *
recpy_insn_data (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_insn_data (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordInstruction.decoded [str]. */
static PyObject *
recpy_insn_decoded (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_insn_decoded (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordInstruction.size [int]. */
static PyObject *
recpy_insn_size (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_insn_size (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordInstruction.is_speculative [bool]. */
static PyObject *
recpy_insn_is_speculative (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_insn_is_speculative (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Create a new gdb.RecordFunctionSegment object. */
PyObject *
recpy_func_new (thread_info *thread, enum record_method method, Py_ssize_t number)
{
recpy_element_object * const obj = PyObject_New (recpy_element_object,
&recpy_func_type);
if (obj == NULL)
return NULL;
obj->thread = thread;
obj->method = method;
obj->number = number;
return (PyObject *) obj;
}
/* Implementation of RecordFunctionSegment.level [int]. */
static PyObject *
recpy_func_level (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_func_level (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordFunctionSegment.symbol [gdb.Symbol]. */
static PyObject *
recpy_func_symbol (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_func_symbol (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordFunctionSegment.instructions [list]. */
static PyObject *
recpy_func_instructions (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_func_instructions (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordFunctionSegment.up [RecordFunctionSegment]. */
static PyObject *
recpy_func_up (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_func_up (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordFunctionSegment.prev [RecordFunctionSegment]. */
static PyObject *
recpy_func_prev (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_func_prev (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordFunctionSegment.next [RecordFunctionSegment]. */
static PyObject *
recpy_func_next (PyObject *self, void *closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
if (obj->method == RECORD_METHOD_BTRACE)
return recpy_bt_func_next (self, closure);
return PyErr_Format (PyExc_NotImplementedError, _("Not implemented."));
}
/* Implementation of RecordInstruction.number [int] and
RecordFunctionSegment.number [int]. */
static PyObject *
recpy_element_number (PyObject *self, void* closure)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
return PyInt_FromSsize_t (obj->number);
}
/* Implementation of RecordInstruction.__hash__ [int] and
RecordFunctionSegment.__hash__ [int]. */
static Py_hash_t
recpy_element_hash (PyObject *self)
{
const recpy_element_object * const obj = (recpy_element_object *) self;
return obj->number;
}
/* Implementation of operator == and != of RecordInstruction and
RecordFunctionSegment. */
static PyObject *
recpy_element_richcompare (PyObject *self, PyObject *other, int op)
{
const recpy_element_object * const obj1 = (recpy_element_object *) self;
const recpy_element_object * const obj2 = (recpy_element_object *) other;
if (Py_TYPE (self) != Py_TYPE (other))
{
Py_INCREF (Py_NotImplemented);
return Py_NotImplemented;
}
switch (op)
{
case Py_EQ:
if (obj1->thread == obj2->thread
&& obj1->method == obj2->method
&& obj1->number == obj2->number)
Py_RETURN_TRUE;
else
Py_RETURN_FALSE;
case Py_NE:
if (obj1->thread != obj2->thread
|| obj1->method != obj2->method
|| obj1->number != obj2->number)
Py_RETURN_TRUE;
else
Py_RETURN_FALSE;
default:
break;
}
Py_INCREF (Py_NotImplemented);
return Py_NotImplemented;
}
/* Create a new gdb.RecordGap object. */
PyObject *
recpy_gap_new (int reason_code, const char *reason_string, Py_ssize_t number)
{
recpy_gap_object * const obj = PyObject_New (recpy_gap_object,
&recpy_gap_type);
if (obj == NULL)
return NULL;
obj->reason_code = reason_code;
obj->reason_string = reason_string;
obj->number = number;
return (PyObject *) obj;
}
/* Implementation of RecordGap.number [int]. */
static PyObject *
recpy_gap_number (PyObject *self, void *closure)
{
const recpy_gap_object * const obj = (const recpy_gap_object *) self;
return PyInt_FromSsize_t (obj->number);
}
/* Implementation of RecordGap.error_code [int]. */
static PyObject *
recpy_gap_reason_code (PyObject *self, void *closure)
{
const recpy_gap_object * const obj = (const recpy_gap_object *) self;
return PyInt_FromLong (obj->reason_code);
}
/* Implementation of RecordGap.error_string [str]. */
static PyObject *
recpy_gap_reason_string (PyObject *self, void *closure)
{
const recpy_gap_object * const obj = (const recpy_gap_object *) self;
return PyString_FromString (obj->reason_string);
}
/* Record method list. */
static PyMethodDef recpy_record_methods[] = {
{ "goto", recpy_goto, METH_VARARGS,
"goto (instruction|function_call) -> None.\n\
Rewind to given location."},
{ NULL }
};
/* Record member list. */
static gdb_PyGetSetDef recpy_record_getset[] = {
{ "method", recpy_method, NULL, "Current recording method.", NULL },
{ "format", recpy_format, NULL, "Current recording format.", NULL },
{ "replay_position", recpy_replay_position, NULL, "Current replay position.",
NULL },
{ "instruction_history", recpy_instruction_history, NULL,
"List of instructions in current recording.", NULL },
{ "function_call_history", recpy_function_call_history, NULL,
"List of function calls in current recording.", NULL },
{ "begin", recpy_begin, NULL,
"First instruction in current recording.", NULL },
{ "end", recpy_end, NULL,
"One past the last instruction in current recording. This is typically \
the current instruction and is used for e.g. record.goto (record.end).", NULL },
{ NULL }
};
/* RecordInstruction member list. */
static gdb_PyGetSetDef recpy_insn_getset[] = {
{ "number", recpy_element_number, NULL, "instruction number", NULL},
{ "sal", recpy_insn_sal, NULL, "associated symbol and line", NULL},
{ "pc", recpy_insn_pc, NULL, "instruction address", NULL},
{ "data", recpy_insn_data, NULL, "raw instruction data", NULL},
{ "decoded", recpy_insn_decoded, NULL, "decoded instruction", NULL},
{ "size", recpy_insn_size, NULL, "instruction size in byte", NULL},
{ "is_speculative", recpy_insn_is_speculative, NULL, "if the instruction was \
executed speculatively", NULL},
{ NULL }
};
/* RecordFunctionSegment member list. */
static gdb_PyGetSetDef recpy_func_getset[] = {
{ "number", recpy_element_number, NULL, "function segment number", NULL},
{ "level", recpy_func_level, NULL, "call stack level", NULL},
{ "symbol", recpy_func_symbol, NULL, "associated line and symbol", NULL},
{ "instructions", recpy_func_instructions, NULL, "list of instructions in \
this function segment", NULL},
{ "up", recpy_func_up, NULL, "caller or returned-to function segment", NULL},
{ "prev", recpy_func_prev, NULL, "previous segment of this function", NULL},
{ "next", recpy_func_next, NULL, "next segment of this function", NULL},
{ NULL }
};
/* RecordGap member list. */
static gdb_PyGetSetDef recpy_gap_getset[] = {
{ "number", recpy_gap_number, NULL, "element number", NULL},
{ "reason_code", recpy_gap_reason_code, NULL, "reason code", NULL},
{ "reason_string", recpy_gap_reason_string, NULL, "reason string", NULL},
{ NULL }
};
/* Sets up the record API in the gdb module. */
int
gdbpy_initialize_record (void)
{
recpy_record_type.tp_new = PyType_GenericNew;
recpy_record_type.tp_flags = Py_TPFLAGS_DEFAULT;
recpy_record_type.tp_basicsize = sizeof (recpy_record_object);
recpy_record_type.tp_name = "gdb.Record";
recpy_record_type.tp_doc = "GDB record object";
recpy_record_type.tp_methods = recpy_record_methods;
recpy_record_type.tp_getset = recpy_record_getset;
recpy_insn_type.tp_new = PyType_GenericNew;
recpy_insn_type.tp_flags = Py_TPFLAGS_DEFAULT;
recpy_insn_type.tp_basicsize = sizeof (recpy_element_object);
recpy_insn_type.tp_name = "gdb.RecordInstruction";
recpy_insn_type.tp_doc = "GDB recorded instruction object";
recpy_insn_type.tp_getset = recpy_insn_getset;
recpy_insn_type.tp_richcompare = recpy_element_richcompare;
recpy_insn_type.tp_hash = recpy_element_hash;
recpy_insn_type.tp_base = &py_insn_type;
recpy_func_type.tp_new = PyType_GenericNew;
recpy_func_type.tp_flags = Py_TPFLAGS_DEFAULT;
recpy_func_type.tp_basicsize = sizeof (recpy_element_object);
recpy_func_type.tp_name = "gdb.RecordFunctionSegment";
recpy_func_type.tp_doc = "GDB record function segment object";
recpy_func_type.tp_getset = recpy_func_getset;
recpy_func_type.tp_richcompare = recpy_element_richcompare;
recpy_func_type.tp_hash = recpy_element_hash;
recpy_gap_type.tp_new = PyType_GenericNew;
recpy_gap_type.tp_flags = Py_TPFLAGS_DEFAULT;
recpy_gap_type.tp_basicsize = sizeof (recpy_gap_object);
recpy_gap_type.tp_name = "gdb.RecordGap";
recpy_gap_type.tp_doc = "GDB recorded gap object";
recpy_gap_type.tp_getset = recpy_gap_getset;
if (PyType_Ready (&recpy_record_type) < 0
|| PyType_Ready (&recpy_insn_type) < 0
|| PyType_Ready (&recpy_func_type) < 0
|| PyType_Ready (&recpy_gap_type) < 0)
return -1;
else
return 0;
}
/* Implementation of gdb.start_recording (method) -> gdb.Record. */
PyObject *
gdbpy_start_recording (PyObject *self, PyObject *args)
{
const char *method = NULL;
const char *format = NULL;
PyObject *ret = NULL;
if (!PyArg_ParseTuple (args, "|ss", &method, &format))
return NULL;
try
{
record_start (method, format, 0);
ret = gdbpy_current_recording (self, args);
}
catch (const gdb_exception &except)
{
gdbpy_convert_exception (except);
}
return ret;
}
/* Implementation of gdb.current_recording (self) -> gdb.Record. */
PyObject *
gdbpy_current_recording (PyObject *self, PyObject *args)
{
recpy_record_object *ret = NULL;
if (find_record_target () == NULL)
Py_RETURN_NONE;
ret = PyObject_New (recpy_record_object, &recpy_record_type);
ret->thread = inferior_thread ();
ret->method = target_record_method (ret->thread->ptid);
return (PyObject *) ret;
}
/* Implementation of gdb.stop_recording (self) -> None. */
PyObject *
gdbpy_stop_recording (PyObject *self, PyObject *args)
{
try
{
record_stop (0);
}
catch (const gdb_exception &except)
{
GDB_PY_HANDLE_EXCEPTION (except);
}
Py_RETURN_NONE;
}