Spdk/lib/trace/trace_flags.c
Jim Harris 488570ebd4 Replace most BSD 3-clause license text with SPDX identifier.
Many open source projects have moved to using SPDX identifiers
to specify license information, reducing the amount of
boilerplate code in every source file.  This patch replaces
the bulk of SPDK .c, .cpp and Makefiles with the BSD-3-Clause
identifier.

Almost all of these files share the exact same license text,
and this patch only modifies the files that contain the
most common license text.  There can be slight variations
because the third clause contains company names - most say
"Intel Corporation", but there are instances for Nvidia,
Samsung, Eideticom and even "the copyright holder".

Used a bash script to automate replacement of the license text
with SPDX identifier which is checked into scripts/spdx.sh.

Signed-off-by: Jim Harris <james.r.harris@intel.com>
Change-Id: Iaa88ab5e92ea471691dc298cfe41ebfb5d169780
Reviewed-on: https://review.spdk.io/gerrit/c/spdk/spdk/+/12904
Community-CI: Broadcom CI <spdk-ci.pdl@broadcom.com>
Community-CI: Mellanox Build Bot
Tested-by: SPDK CI Jenkins <sys_sgci@intel.com>
Reviewed-by: Aleksey Marchuk <alexeymar@nvidia.com>
Reviewed-by: Changpeng Liu <changpeng.liu@intel.com>
Reviewed-by: Dong Yi <dongx.yi@intel.com>
Reviewed-by: Konrad Sztyber <konrad.sztyber@intel.com>
Reviewed-by: Paul Luse <paul.e.luse@intel.com>
Reviewed-by: <qun.wan@intel.com>
2022-06-09 07:35:12 +00:00

445 lines
10 KiB
C

/* SPDX-License-Identifier: BSD-3-Clause
* Copyright (c) Intel Corporation.
* All rights reserved.
*/
#include "spdk/stdinc.h"
#include "spdk/env.h"
#include "spdk/trace.h"
#include "spdk/log.h"
#include "spdk/util.h"
struct spdk_trace_flags *g_trace_flags = NULL;
static struct spdk_trace_register_fn *g_reg_fn_head = NULL;
SPDK_LOG_REGISTER_COMPONENT(trace)
uint64_t
spdk_trace_get_tpoint_mask(uint32_t group_id)
{
if (group_id >= SPDK_TRACE_MAX_GROUP_ID) {
SPDK_ERRLOG("invalid group ID %d\n", group_id);
return 0ULL;
}
if (g_trace_flags == NULL) {
return 0ULL;
}
return g_trace_flags->tpoint_mask[group_id];
}
void
spdk_trace_set_tpoints(uint32_t group_id, uint64_t tpoint_mask)
{
if (g_trace_flags == NULL) {
SPDK_ERRLOG("trace is not initialized\n");
return;
}
if (group_id >= SPDK_TRACE_MAX_GROUP_ID) {
SPDK_ERRLOG("invalid group ID %d\n", group_id);
return;
}
g_trace_flags->tpoint_mask[group_id] |= tpoint_mask;
}
void
spdk_trace_clear_tpoints(uint32_t group_id, uint64_t tpoint_mask)
{
if (g_trace_flags == NULL) {
SPDK_ERRLOG("trace is not initialized\n");
return;
}
if (group_id >= SPDK_TRACE_MAX_GROUP_ID) {
SPDK_ERRLOG("invalid group ID %d\n", group_id);
return;
}
g_trace_flags->tpoint_mask[group_id] &= ~tpoint_mask;
}
uint64_t
spdk_trace_get_tpoint_group_mask(void)
{
uint64_t mask = 0x0;
int i;
for (i = 0; i < SPDK_TRACE_MAX_GROUP_ID; i++) {
if (spdk_trace_get_tpoint_mask(i) != 0) {
mask |= (1ULL << i);
}
}
return mask;
}
void
spdk_trace_set_tpoint_group_mask(uint64_t tpoint_group_mask)
{
int i;
if (g_trace_flags == NULL) {
SPDK_ERRLOG("trace is not initialized\n");
return;
}
for (i = 0; i < SPDK_TRACE_MAX_GROUP_ID; i++) {
if (tpoint_group_mask & (1ULL << i)) {
spdk_trace_set_tpoints(i, -1ULL);
}
}
}
void
spdk_trace_clear_tpoint_group_mask(uint64_t tpoint_group_mask)
{
int i;
if (g_trace_flags == NULL) {
SPDK_ERRLOG("trace is not initialized\n");
return;
}
for (i = 0; i < SPDK_TRACE_MAX_GROUP_ID; i++) {
if (tpoint_group_mask & (1ULL << i)) {
spdk_trace_clear_tpoints(i, -1ULL);
}
}
}
struct spdk_trace_register_fn *
spdk_trace_get_first_register_fn(void)
{
return g_reg_fn_head;
}
struct spdk_trace_register_fn *
spdk_trace_get_next_register_fn(struct spdk_trace_register_fn *register_fn)
{
return register_fn->next;
}
uint64_t
spdk_trace_create_tpoint_group_mask(const char *group_name)
{
uint64_t tpoint_group_mask = 0;
struct spdk_trace_register_fn *register_fn;
register_fn = spdk_trace_get_first_register_fn();
if (strcmp(group_name, "all") == 0) {
while (register_fn) {
tpoint_group_mask |= (1UL << register_fn->tgroup_id);
register_fn = spdk_trace_get_next_register_fn(register_fn);
}
} else {
while (register_fn) {
if (strcmp(group_name, register_fn->name) == 0) {
break;
}
register_fn = spdk_trace_get_next_register_fn(register_fn);
}
if (register_fn != NULL) {
tpoint_group_mask |= (1UL << register_fn->tgroup_id);
}
}
return tpoint_group_mask;
}
int
spdk_trace_enable_tpoint_group(const char *group_name)
{
uint64_t tpoint_group_mask = 0;
if (g_trace_flags == NULL) {
return -1;
}
tpoint_group_mask = spdk_trace_create_tpoint_group_mask(group_name);
if (tpoint_group_mask == 0) {
return -1;
}
spdk_trace_set_tpoint_group_mask(tpoint_group_mask);
return 0;
}
int
spdk_trace_disable_tpoint_group(const char *group_name)
{
uint64_t tpoint_group_mask = 0;
if (g_trace_flags == NULL) {
return -1;
}
tpoint_group_mask = spdk_trace_create_tpoint_group_mask(group_name);
if (tpoint_group_mask == 0) {
return -1;
}
spdk_trace_clear_tpoint_group_mask(tpoint_group_mask);
return 0;
}
void
spdk_trace_mask_usage(FILE *f, const char *tmask_arg)
{
struct spdk_trace_register_fn *register_fn;
fprintf(f, " %s, --tpoint-group-mask <group-mask>[:<tpoint_mask>]\n", tmask_arg);
fprintf(f, " group_mask - tracepoint group mask ");
fprintf(f, "for spdk trace buffers (default 0x0");
register_fn = g_reg_fn_head;
while (register_fn) {
fprintf(f, ", %s 0x%x", register_fn->name, 1 << register_fn->tgroup_id);
register_fn = register_fn->next;
}
fprintf(f, ", all 0xffff)\n");
fprintf(f, " tpoint_mask - tracepoint mask for enabling individual");
fprintf(f, " tpoints inside a tracepoint group.");
fprintf(f, " First tpoint inside a group can be");
fprintf(f, " enabled by setting tpoint_mask to 1 (e.g. 0x8:1).\n");
fprintf(f, " Masks can be combined (e.g. 0x400,0x8:1).\n");
fprintf(f, " All available tpoints can be found in");
fprintf(f, " /include/spdk_internal/trace_defs.h\n");
}
void
spdk_trace_register_owner(uint8_t type, char id_prefix)
{
struct spdk_trace_owner *owner;
assert(type != OWNER_NONE);
if (g_trace_flags == NULL) {
SPDK_ERRLOG("trace is not initialized\n");
return;
}
/* 'owner' has 256 entries and since 'type' is a uint8_t, it
* can't overrun the array.
*/
owner = &g_trace_flags->owner[type];
assert(owner->type == 0);
owner->type = type;
owner->id_prefix = id_prefix;
}
void
spdk_trace_register_object(uint8_t type, char id_prefix)
{
struct spdk_trace_object *object;
assert(type != OBJECT_NONE);
if (g_trace_flags == NULL) {
SPDK_ERRLOG("trace is not initialized\n");
return;
}
/* 'object' has 256 entries and since 'type' is a uint8_t, it
* can't overrun the array.
*/
object = &g_trace_flags->object[type];
assert(object->type == 0);
object->type = type;
object->id_prefix = id_prefix;
}
static void
trace_register_description(const struct spdk_trace_tpoint_opts *opts)
{
struct spdk_trace_tpoint *tpoint;
size_t i, max_name_length;
assert(opts->tpoint_id != 0);
assert(opts->tpoint_id < SPDK_TRACE_MAX_TPOINT_ID);
if (strnlen(opts->name, sizeof(tpoint->name)) == sizeof(tpoint->name)) {
SPDK_ERRLOG("name (%s) too long\n", opts->name);
}
tpoint = &g_trace_flags->tpoint[opts->tpoint_id];
assert(tpoint->tpoint_id == 0);
snprintf(tpoint->name, sizeof(tpoint->name), "%s", opts->name);
tpoint->tpoint_id = opts->tpoint_id;
tpoint->object_type = opts->object_type;
tpoint->owner_type = opts->owner_type;
tpoint->new_object = opts->new_object;
max_name_length = sizeof(tpoint->args[0].name);
for (i = 0; i < SPDK_TRACE_MAX_ARGS_COUNT; ++i) {
if (!opts->args[i].name || opts->args[i].name[0] == '\0') {
break;
}
switch (opts->args[i].type) {
case SPDK_TRACE_ARG_TYPE_INT:
case SPDK_TRACE_ARG_TYPE_PTR:
/* The integers and pointers have to be exactly 64b long */
assert(opts->args[i].size == sizeof(uint64_t));
break;
case SPDK_TRACE_ARG_TYPE_STR:
/* Strings need to have at least one byte for the NULL terminator */
assert(opts->args[i].size > 0);
break;
default:
assert(0 && "invalid trace argument type");
break;
}
if (strnlen(opts->args[i].name, max_name_length) == max_name_length) {
SPDK_ERRLOG("argument name (%s) is too long\n", opts->args[i].name);
}
snprintf(tpoint->args[i].name, sizeof(tpoint->args[i].name),
"%s", opts->args[i].name);
tpoint->args[i].type = opts->args[i].type;
tpoint->args[i].size = opts->args[i].size;
}
tpoint->num_args = i;
}
void
spdk_trace_register_description_ext(const struct spdk_trace_tpoint_opts *opts, size_t num_opts)
{
size_t i;
if (g_trace_flags == NULL) {
SPDK_ERRLOG("trace is not initialized\n");
return;
}
for (i = 0; i < num_opts; ++i) {
trace_register_description(&opts[i]);
}
}
void
spdk_trace_register_description(const char *name, uint16_t tpoint_id, uint8_t owner_type,
uint8_t object_type, uint8_t new_object,
uint8_t arg1_type, const char *arg1_name)
{
struct spdk_trace_tpoint_opts opts = {
.name = name,
.tpoint_id = tpoint_id,
.owner_type = owner_type,
.object_type = object_type,
.new_object = new_object,
.args = {{
.name = arg1_name,
.type = arg1_type,
.size = sizeof(uint64_t)
}
}
};
spdk_trace_register_description_ext(&opts, 1);
}
void
spdk_trace_tpoint_register_relation(uint16_t tpoint_id, uint8_t object_type, uint8_t arg_index)
{
struct spdk_trace_tpoint *tpoint;
uint16_t i;
assert(object_type != OBJECT_NONE);
assert(tpoint_id != OBJECT_NONE);
if (g_trace_flags == NULL) {
SPDK_ERRLOG("trace is not initialized\n");
return;
}
/* We do not check whether a tpoint_id exists here, because
* there is no order in which trace definitions are registered.
* This way we can create relations between tpoint and objects
* that will be declared later. */
tpoint = &g_trace_flags->tpoint[tpoint_id];
for (i = 0; i < SPDK_COUNTOF(tpoint->related_objects); ++i) {
if (tpoint->related_objects[i].object_type == OBJECT_NONE) {
tpoint->related_objects[i].object_type = object_type;
tpoint->related_objects[i].arg_index = arg_index;
return;
}
}
SPDK_ERRLOG("Unable to register new relation for tpoint %" PRIu16 ", object %" PRIu8 "\n",
tpoint_id, object_type);
}
void
spdk_trace_add_register_fn(struct spdk_trace_register_fn *reg_fn)
{
struct spdk_trace_register_fn *_reg_fn;
if (reg_fn->name == NULL) {
SPDK_ERRLOG("missing name for registering spdk trace tpoint group\n");
assert(false);
return;
}
if (strcmp(reg_fn->name, "all") == 0) {
SPDK_ERRLOG("illegal name (%s) for tpoint group\n", reg_fn->name);
assert(false);
return;
}
/* Ensure that no trace point group IDs and names are ever duplicated */
for (_reg_fn = g_reg_fn_head; _reg_fn; _reg_fn = _reg_fn->next) {
if (reg_fn->tgroup_id == _reg_fn->tgroup_id) {
SPDK_ERRLOG("group %d, %s has duplicate tgroup_id with %s\n",
reg_fn->tgroup_id, reg_fn->name, _reg_fn->name);
assert(false);
return;
}
if (strcmp(reg_fn->name, _reg_fn->name) == 0) {
SPDK_ERRLOG("name %s is duplicated between groups with ids %d and %d\n",
reg_fn->name, reg_fn->tgroup_id, _reg_fn->tgroup_id);
assert(false);
return;
}
}
/* Arrange trace registration in order on tgroup_id */
if (g_reg_fn_head == NULL || reg_fn->tgroup_id < g_reg_fn_head->tgroup_id) {
reg_fn->next = g_reg_fn_head;
g_reg_fn_head = reg_fn;
return;
}
for (_reg_fn = g_reg_fn_head; _reg_fn; _reg_fn = _reg_fn->next) {
if (_reg_fn->next == NULL || reg_fn->tgroup_id < _reg_fn->next->tgroup_id) {
reg_fn->next = _reg_fn->next;
_reg_fn->next = reg_fn;
return;
}
}
}
void
spdk_trace_flags_init(void)
{
struct spdk_trace_register_fn *reg_fn;
reg_fn = g_reg_fn_head;
while (reg_fn) {
reg_fn->reg_fn();
reg_fn = reg_fn->next;
}
}