Merge tag 'for_linux-3.9' of git://git.kernel.org/pub/scm/linux/kernel/git/jwessel/kgdb
Pull KGDB/KDB fixes and cleanups from Jason Wessel: "For a change we removed more code than we added. If people aren't using it we shouldn't be carrying it. :-) Cleanups: - Remove kdb ssb command - there is no in kernel disassembler to support it - Remove kdb ll command - Always caused a kernel oops and there were no bug reports so no one was using this command - Use kernel ARRAY_SIZE macro instead of array computations Fixes: - Stop oops in kdb if user executes kdb_defcmd with args - kdb help command truncated text - ppc64 support for kgdbts - Add missing kconfig option from original kdb port for dealing with catastrophic kernel crashes such that you can reboot automatically on continue from kdb" * tag 'for_linux-3.9' of git://git.kernel.org/pub/scm/linux/kernel/git/jwessel/kgdb: kdb: Remove unhandled ssb command kdb: Prevent kernel oops with kdb_defcmd kdb: Remove the ll command kdb_main: fix help print kdb: Fix overlap in buffers with strcpy Fixed dead ifdef block by adding missing Kconfig option. kdb: Setup basic kdb state before invoking commands via kgdb kdb: use ARRAY_SIZE where possible kgdb/kgdbts: support ppc64 kdb: A fix for kdb command table expansion
This commit is contained in:
@@ -72,6 +72,8 @@ extern int dbg_kdb_mode;
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#ifdef CONFIG_KGDB_KDB
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extern int kdb_stub(struct kgdb_state *ks);
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extern int kdb_parse(const char *cmdstr);
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extern int kdb_common_init_state(struct kgdb_state *ks);
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extern int kdb_common_deinit_state(void);
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#else /* ! CONFIG_KGDB_KDB */
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static inline int kdb_stub(struct kgdb_state *ks)
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{
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@@ -783,7 +783,10 @@ static void gdb_cmd_query(struct kgdb_state *ks)
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len = len / 2;
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remcom_out_buffer[len++] = 0;
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kdb_common_init_state(ks);
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kdb_parse(remcom_out_buffer);
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kdb_common_deinit_state();
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strcpy(remcom_out_buffer, "OK");
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}
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break;
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@@ -486,11 +486,9 @@ static int kdb_bc(int argc, const char **argv)
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/*
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* kdb_ss
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*
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* Process the 'ss' (Single Step) and 'ssb' (Single Step to Branch)
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* commands.
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* Process the 'ss' (Single Step) command.
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*
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* ss
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* ssb
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*
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* Parameters:
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* argc Argument count
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@@ -498,35 +496,23 @@ static int kdb_bc(int argc, const char **argv)
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* Outputs:
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* None.
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* Returns:
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* KDB_CMD_SS[B] for success, a kdb error if failure.
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* KDB_CMD_SS for success, a kdb error if failure.
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* Locking:
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* None.
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* Remarks:
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*
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* Set the arch specific option to trigger a debug trap after the next
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* instruction.
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*
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* For 'ssb', set the trace flag in the debug trap handler
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* after printing the current insn and return directly without
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* invoking the kdb command processor, until a branch instruction
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* is encountered.
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*/
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static int kdb_ss(int argc, const char **argv)
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{
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int ssb = 0;
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ssb = (strcmp(argv[0], "ssb") == 0);
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if (argc != 0)
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return KDB_ARGCOUNT;
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/*
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* Set trace flag and go.
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*/
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KDB_STATE_SET(DOING_SS);
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if (ssb) {
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KDB_STATE_SET(DOING_SSB);
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return KDB_CMD_SSB;
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}
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return KDB_CMD_SS;
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}
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@@ -561,8 +547,6 @@ void __init kdb_initbptab(void)
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kdb_register_repeat("ss", kdb_ss, "",
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"Single Step", 1, KDB_REPEAT_NO_ARGS);
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kdb_register_repeat("ssb", kdb_ss, "",
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"Single step to branch/call", 0, KDB_REPEAT_NO_ARGS);
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/*
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* Architecture dependent initialization.
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*/
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@@ -34,6 +34,22 @@ EXPORT_SYMBOL_GPL(kdb_poll_idx);
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static struct kgdb_state *kdb_ks;
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int kdb_common_init_state(struct kgdb_state *ks)
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{
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kdb_initial_cpu = atomic_read(&kgdb_active);
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kdb_current_task = kgdb_info[ks->cpu].task;
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kdb_current_regs = kgdb_info[ks->cpu].debuggerinfo;
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return 0;
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}
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int kdb_common_deinit_state(void)
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{
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kdb_initial_cpu = -1;
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kdb_current_task = NULL;
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kdb_current_regs = NULL;
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return 0;
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}
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int kdb_stub(struct kgdb_state *ks)
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{
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int error = 0;
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@@ -94,13 +110,10 @@ int kdb_stub(struct kgdb_state *ks)
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}
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/* Set initial kdb state variables */
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KDB_STATE_CLEAR(KGDB_TRANS);
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kdb_initial_cpu = atomic_read(&kgdb_active);
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kdb_current_task = kgdb_info[ks->cpu].task;
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kdb_current_regs = kgdb_info[ks->cpu].debuggerinfo;
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kdb_common_init_state(ks);
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/* Remove any breakpoints as needed by kdb and clear single step */
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kdb_bp_remove();
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KDB_STATE_CLEAR(DOING_SS);
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KDB_STATE_CLEAR(DOING_SSB);
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KDB_STATE_SET(PAGER);
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/* zero out any offline cpu data */
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for_each_present_cpu(i) {
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@@ -125,9 +138,7 @@ int kdb_stub(struct kgdb_state *ks)
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* Upon exit from the kdb main loop setup break points and restart
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* the system based on the requested continue state
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*/
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kdb_initial_cpu = -1;
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kdb_current_task = NULL;
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kdb_current_regs = NULL;
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kdb_common_deinit_state();
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KDB_STATE_CLEAR(PAGER);
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kdbnearsym_cleanup();
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if (error == KDB_CMD_KGDB) {
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@@ -124,7 +124,7 @@ static kdbmsg_t kdbmsgs[] = {
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};
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#undef KDBMSG
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static const int __nkdb_err = sizeof(kdbmsgs) / sizeof(kdbmsg_t);
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static const int __nkdb_err = ARRAY_SIZE(kdbmsgs);
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/*
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@@ -175,7 +175,7 @@ static char *__env[] = {
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(char *)0,
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};
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static const int __nenv = (sizeof(__env) / sizeof(char *));
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static const int __nenv = ARRAY_SIZE(__env);
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struct task_struct *kdb_curr_task(int cpu)
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{
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@@ -681,34 +681,50 @@ static int kdb_defcmd(int argc, const char **argv)
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}
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if (argc != 3)
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return KDB_ARGCOUNT;
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defcmd_set = kmalloc((defcmd_set_count + 1) * sizeof(*defcmd_set),
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GFP_KDB);
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if (!defcmd_set) {
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kdb_printf("Could not allocate new defcmd_set entry for %s\n",
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argv[1]);
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defcmd_set = save_defcmd_set;
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if (in_dbg_master()) {
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kdb_printf("Command only available during kdb_init()\n");
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return KDB_NOTIMP;
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}
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defcmd_set = kmalloc((defcmd_set_count + 1) * sizeof(*defcmd_set),
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GFP_KDB);
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if (!defcmd_set)
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goto fail_defcmd;
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memcpy(defcmd_set, save_defcmd_set,
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defcmd_set_count * sizeof(*defcmd_set));
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kfree(save_defcmd_set);
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s = defcmd_set + defcmd_set_count;
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memset(s, 0, sizeof(*s));
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s->usable = 1;
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s->name = kdb_strdup(argv[1], GFP_KDB);
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if (!s->name)
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goto fail_name;
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s->usage = kdb_strdup(argv[2], GFP_KDB);
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if (!s->usage)
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goto fail_usage;
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s->help = kdb_strdup(argv[3], GFP_KDB);
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if (!s->help)
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goto fail_help;
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if (s->usage[0] == '"') {
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strcpy(s->usage, s->usage+1);
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strcpy(s->usage, argv[2]+1);
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s->usage[strlen(s->usage)-1] = '\0';
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}
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if (s->help[0] == '"') {
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strcpy(s->help, s->help+1);
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strcpy(s->help, argv[3]+1);
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s->help[strlen(s->help)-1] = '\0';
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}
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++defcmd_set_count;
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defcmd_in_progress = 1;
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kfree(save_defcmd_set);
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return 0;
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fail_help:
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kfree(s->usage);
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fail_usage:
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kfree(s->name);
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fail_name:
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kfree(defcmd_set);
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fail_defcmd:
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kdb_printf("Could not allocate new defcmd_set entry for %s\n", argv[1]);
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defcmd_set = save_defcmd_set;
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return KDB_NOTIMP;
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}
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/*
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@@ -1112,7 +1128,6 @@ void kdb_set_current_task(struct task_struct *p)
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* KDB_CMD_GO User typed 'go'.
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* KDB_CMD_CPU User switched to another cpu.
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* KDB_CMD_SS Single step.
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* KDB_CMD_SSB Single step until branch.
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*/
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static int kdb_local(kdb_reason_t reason, int error, struct pt_regs *regs,
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kdb_dbtrap_t db_result)
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@@ -1151,14 +1166,6 @@ static int kdb_local(kdb_reason_t reason, int error, struct pt_regs *regs,
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kdb_printf("due to Debug @ " kdb_machreg_fmt "\n",
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instruction_pointer(regs));
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break;
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case KDB_DB_SSB:
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/*
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* In the midst of ssb command. Just return.
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*/
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KDB_DEBUG_STATE("kdb_local 3", reason);
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return KDB_CMD_SSB; /* Continue with SSB command */
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break;
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case KDB_DB_SS:
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break;
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case KDB_DB_SSBPT:
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@@ -1281,7 +1288,6 @@ do_full_getstr:
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if (diag == KDB_CMD_GO
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|| diag == KDB_CMD_CPU
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|| diag == KDB_CMD_SS
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|| diag == KDB_CMD_SSB
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|| diag == KDB_CMD_KGDB)
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break;
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@@ -1368,12 +1374,6 @@ int kdb_main_loop(kdb_reason_t reason, kdb_reason_t reason2, int error,
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break;
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}
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if (result == KDB_CMD_SSB) {
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KDB_STATE_SET(DOING_SS);
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KDB_STATE_SET(DOING_SSB);
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break;
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}
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if (result == KDB_CMD_KGDB) {
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if (!KDB_STATE(DOING_KGDB))
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kdb_printf("Entering please attach debugger "
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@@ -2350,69 +2350,6 @@ static int kdb_pid(int argc, const char **argv)
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return 0;
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}
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/*
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* kdb_ll - This function implements the 'll' command which follows a
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* linked list and executes an arbitrary command for each
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* element.
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*/
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static int kdb_ll(int argc, const char **argv)
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{
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int diag = 0;
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unsigned long addr;
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long offset = 0;
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unsigned long va;
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unsigned long linkoffset;
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int nextarg;
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const char *command;
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if (argc != 3)
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return KDB_ARGCOUNT;
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nextarg = 1;
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diag = kdbgetaddrarg(argc, argv, &nextarg, &addr, &offset, NULL);
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if (diag)
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return diag;
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diag = kdbgetularg(argv[2], &linkoffset);
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if (diag)
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return diag;
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/*
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* Using the starting address as
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* the first element in the list, and assuming that
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* the list ends with a null pointer.
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*/
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va = addr;
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command = kdb_strdup(argv[3], GFP_KDB);
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if (!command) {
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kdb_printf("%s: cannot duplicate command\n", __func__);
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return 0;
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}
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/* Recursive use of kdb_parse, do not use argv after this point */
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argv = NULL;
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while (va) {
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char buf[80];
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if (KDB_FLAG(CMD_INTERRUPT))
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goto out;
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sprintf(buf, "%s " kdb_machreg_fmt "\n", command, va);
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diag = kdb_parse(buf);
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if (diag)
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goto out;
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addr = va + linkoffset;
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if (kdb_getword(&va, addr, sizeof(va)))
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goto out;
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}
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out:
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kfree(command);
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return diag;
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}
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static int kdb_kgdb(int argc, const char **argv)
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{
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return KDB_CMD_KGDB;
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@@ -2430,11 +2367,15 @@ static int kdb_help(int argc, const char **argv)
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kdb_printf("-----------------------------"
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"-----------------------------\n");
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for_each_kdbcmd(kt, i) {
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if (kt->cmd_name)
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kdb_printf("%-15.15s %-20.20s %s\n", kt->cmd_name,
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kt->cmd_usage, kt->cmd_help);
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char *space = "";
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if (KDB_FLAG(CMD_INTERRUPT))
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return 0;
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if (!kt->cmd_name)
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continue;
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if (strlen(kt->cmd_usage) > 20)
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space = "\n ";
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kdb_printf("%-15.15s %-20s%s%s\n", kt->cmd_name,
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kt->cmd_usage, space, kt->cmd_help);
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}
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return 0;
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}
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@@ -2739,7 +2680,7 @@ int kdb_register_repeat(char *cmd,
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(kdb_max_commands - KDB_BASE_CMD_MAX) * sizeof(*new));
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kfree(kdb_commands);
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}
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memset(new + kdb_max_commands, 0,
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memset(new + kdb_max_commands - KDB_BASE_CMD_MAX, 0,
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kdb_command_extend * sizeof(*new));
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kdb_commands = new;
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kp = kdb_commands + kdb_max_commands - KDB_BASE_CMD_MAX;
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@@ -2843,15 +2784,13 @@ static void __init kdb_inittab(void)
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"Stack traceback", 1, KDB_REPEAT_NONE);
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kdb_register_repeat("btp", kdb_bt, "<pid>",
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"Display stack for process <pid>", 0, KDB_REPEAT_NONE);
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kdb_register_repeat("bta", kdb_bt, "[DRSTCZEUIMA]",
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"Display stack all processes", 0, KDB_REPEAT_NONE);
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kdb_register_repeat("bta", kdb_bt, "[D|R|S|T|C|Z|E|U|I|M|A]",
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"Backtrace all processes matching state flag", 0, KDB_REPEAT_NONE);
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kdb_register_repeat("btc", kdb_bt, "",
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"Backtrace current process on each cpu", 0, KDB_REPEAT_NONE);
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kdb_register_repeat("btt", kdb_bt, "<vaddr>",
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"Backtrace process given its struct task address", 0,
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KDB_REPEAT_NONE);
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kdb_register_repeat("ll", kdb_ll, "<first-element> <linkoffset> <cmd>",
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"Execute cmd for each element in linked list", 0, KDB_REPEAT_NONE);
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kdb_register_repeat("env", kdb_env, "",
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"Show environment variables", 0, KDB_REPEAT_NONE);
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kdb_register_repeat("set", kdb_set, "",
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@@ -19,7 +19,6 @@
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#define KDB_CMD_GO (-1001)
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#define KDB_CMD_CPU (-1002)
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#define KDB_CMD_SS (-1003)
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#define KDB_CMD_SSB (-1004)
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#define KDB_CMD_KGDB (-1005)
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/* Internal debug flags */
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@@ -125,8 +124,6 @@ extern int kdb_state;
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* kdb control */
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#define KDB_STATE_HOLD_CPU 0x00000010 /* Hold this cpu inside kdb */
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#define KDB_STATE_DOING_SS 0x00000020 /* Doing ss command */
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#define KDB_STATE_DOING_SSB 0x00000040 /* Doing ssb command,
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* DOING_SS is also set */
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#define KDB_STATE_SSBPT 0x00000080 /* Install breakpoint
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* after one ss, independent of
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* DOING_SS */
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@@ -191,7 +188,6 @@ extern void kdb_bp_remove(void);
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typedef enum {
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KDB_DB_BPT, /* Breakpoint */
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KDB_DB_SS, /* Single-step trap */
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KDB_DB_SSB, /* Single step to branch */
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KDB_DB_SSBPT, /* Single step over breakpoint */
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KDB_DB_NOBPT /* Spurious breakpoint */
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} kdb_dbtrap_t;
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