/// The number of JTAG queue flushes (for profiling and debugging purposes).
static int jtag_flush_queue_count;
-static void jtag_add_scan_check(void (*jtag_add_scan)(int in_num_fields, const scan_field_t *in_fields, tap_state_t state),
- int in_num_fields, scan_field_t *in_fields, tap_state_t state);
+static void jtag_add_scan_check(void (*jtag_add_scan)(int in_num_fields, const struct scan_field *in_fields, tap_state_t state),
+ int in_num_fields, struct scan_field *in_fields, tap_state_t state);
/**
* The jtag_error variable is set when an error occurs while executing
/**
* List all TAPs that have been created.
*/
-static jtag_tap_t *__jtag_all_taps = NULL;
+static struct jtag_tap *__jtag_all_taps = NULL;
/**
* The number of TAPs in the __jtag_all_taps list, used to track the
* assigned chain position to new TAPs
static int jtag_nsrst_assert_width = 0; /* width of assertion */
static int jtag_ntrst_assert_width = 0; /* width of assertion */
-typedef struct jtag_event_callback_s
-{
- jtag_event_handler_t callback;
- void* priv;
- struct jtag_event_callback_s* next;
-} jtag_event_callback_t;
+/**
+ * Contains a single callback along with a pointer that will be passed
+ * when an event occurs.
+ */
+struct jtag_event_callback {
+ /// a event callback
+ jtag_event_handler_t callback;
+ /// the private data to pass to the callback
+ void* priv;
+ /// the next callback
+ struct jtag_event_callback* next;
+};
/* callbacks to inform high-level handlers about JTAG state changes */
-static jtag_event_callback_t *jtag_event_callbacks;
+static struct jtag_event_callback *jtag_event_callbacks;
/* speed in kHz*/
static int speed_khz = 0;
static enum {CLOCK_MODE_SPEED, CLOCK_MODE_KHZ, CLOCK_MODE_RCLK} clock_mode;
static int jtag_speed = 0;
-static struct jtag_interface_s *jtag = NULL;
+static struct jtag_interface *jtag = NULL;
/* configuration */
-jtag_interface_t *jtag_interface = NULL;
+struct jtag_interface *jtag_interface = NULL;
void jtag_set_error(int error)
{
/************/
-jtag_tap_t *jtag_all_taps(void)
+struct jtag_tap *jtag_all_taps(void)
{
return __jtag_all_taps;
};
unsigned jtag_tap_count_enabled(void)
{
- jtag_tap_t *t = jtag_all_taps();
+ struct jtag_tap *t = jtag_all_taps();
unsigned n = 0;
while (t)
{
}
/// Append a new TAP to the chain of all taps.
-void jtag_tap_add(struct jtag_tap_s *t)
+void jtag_tap_add(struct jtag_tap *t)
{
t->abs_chain_position = jtag_num_taps++;
- jtag_tap_t **tap = &__jtag_all_taps;
+ struct jtag_tap **tap = &__jtag_all_taps;
while (*tap != NULL)
tap = &(*tap)->next_tap;
*tap = t;
}
/* returns a pointer to the n-th device in the scan chain */
-static inline jtag_tap_t *jtag_tap_by_position(unsigned n)
+static inline struct jtag_tap *jtag_tap_by_position(unsigned n)
{
- jtag_tap_t *t = jtag_all_taps();
+ struct jtag_tap *t = jtag_all_taps();
while (t && n-- > 0)
t = t->next_tap;
return t;
}
-jtag_tap_t *jtag_tap_by_string(const char *s)
+struct jtag_tap *jtag_tap_by_string(const char *s)
{
/* try by name first */
- jtag_tap_t *t = jtag_all_taps();
+ struct jtag_tap *t = jtag_all_taps();
while (t)
{
return t;
}
-jtag_tap_t *jtag_tap_by_jim_obj(Jim_Interp *interp, Jim_Obj *o)
-{
- const char *cp = Jim_GetString(o, NULL);
- jtag_tap_t *t = cp ? jtag_tap_by_string(cp) : NULL;
- if (NULL == cp)
- cp = "(unknown)";
- if (NULL == t)
- Jim_SetResult_sprintf(interp, "Tap '%s' could not be found", cp);
- return t;
-}
-
-jtag_tap_t* jtag_tap_next_enabled(jtag_tap_t* p)
+struct jtag_tap* jtag_tap_next_enabled(struct jtag_tap* p)
{
p = p ? p->next_tap : jtag_all_taps();
while (p)
return NULL;
}
-const char *jtag_tap_name(const jtag_tap_t *tap)
+const char *jtag_tap_name(const struct jtag_tap *tap)
{
return (tap == NULL) ? "(unknown)" : tap->dotted_name;
}
int jtag_register_event_callback(jtag_event_handler_t callback, void *priv)
{
- jtag_event_callback_t **callbacks_p = &jtag_event_callbacks;
+ struct jtag_event_callback **callbacks_p = &jtag_event_callbacks;
if (callback == NULL)
{
callbacks_p = &((*callbacks_p)->next);
}
- (*callbacks_p) = malloc(sizeof(jtag_event_callback_t));
+ (*callbacks_p) = malloc(sizeof(struct jtag_event_callback));
(*callbacks_p)->callback = callback;
(*callbacks_p)->priv = priv;
(*callbacks_p)->next = NULL;
int jtag_unregister_event_callback(jtag_event_handler_t callback, void *priv)
{
- jtag_event_callback_t **callbacks_p;
- jtag_event_callback_t **next;
+ struct jtag_event_callback **callbacks_p;
+ struct jtag_event_callback **next;
if (callback == NULL)
{
int jtag_call_event_callbacks(enum jtag_event event)
{
- jtag_event_callback_t *callback = jtag_event_callbacks;
+ struct jtag_event_callback *callback = jtag_event_callbacks;
LOG_DEBUG("jtag event: %s", jtag_event_strings[event]);
while (callback)
{
- jtag_event_callback_t *next;
+ struct jtag_event_callback *next;
/* callback may remove itself */
next = callback->next;
cmd_queue_cur_state = state;
}
-void jtag_alloc_in_value32(scan_field_t *field)
+void jtag_alloc_in_value32(struct scan_field *field)
{
interface_jtag_alloc_in_value32(field);
}
-void jtag_add_ir_scan_noverify(int in_count, const scan_field_t *in_fields,
+void jtag_add_ir_scan_noverify(int in_count, const struct scan_field *in_fields,
tap_state_t state)
{
jtag_prelude(state);
}
-void jtag_add_ir_scan(int in_num_fields, scan_field_t *in_fields, tap_state_t state)
+void jtag_add_ir_scan(int in_num_fields, struct scan_field *in_fields, tap_state_t state)
{
assert(state != TAP_RESET);
}
}
-void jtag_add_plain_ir_scan(int in_num_fields, const scan_field_t *in_fields,
+void jtag_add_plain_ir_scan(int in_num_fields, const struct scan_field *in_fields,
tap_state_t state)
{
assert(state != TAP_RESET);
return jtag_check_value_inner((uint8_t *)data0, (uint8_t *)data1, (uint8_t *)data2, (int)data3);
}
-static void jtag_add_scan_check(void (*jtag_add_scan)(int in_num_fields, const scan_field_t *in_fields, tap_state_t state),
- int in_num_fields, scan_field_t *in_fields, tap_state_t state)
+static void jtag_add_scan_check(void (*jtag_add_scan)(int in_num_fields, const struct scan_field *in_fields, tap_state_t state),
+ int in_num_fields, struct scan_field *in_fields, tap_state_t state)
{
for (int i = 0; i < in_num_fields; i++)
{
- struct scan_field_s *field = &in_fields[i];
+ struct scan_field *field = &in_fields[i];
field->allocated = 0;
field->modified = 0;
if (field->check_value || field->in_value)
}
}
-void jtag_add_dr_scan_check(int in_num_fields, scan_field_t *in_fields, tap_state_t state)
+void jtag_add_dr_scan_check(int in_num_fields, struct scan_field *in_fields, tap_state_t state)
{
if (jtag_verify)
{
}
-void jtag_add_dr_scan(int in_num_fields, const scan_field_t *in_fields,
+void jtag_add_dr_scan(int in_num_fields, const struct scan_field *in_fields,
tap_state_t state)
{
assert(state != TAP_RESET);
jtag_set_error(retval);
}
-void jtag_add_plain_dr_scan(int in_num_fields, const scan_field_t *in_fields,
+void jtag_add_plain_dr_scan(int in_num_fields, const struct scan_field *in_fields,
tap_state_t state)
{
assert(state != TAP_RESET);
jtag_set_error(retval);
}
-void jtag_add_dr_out(jtag_tap_t* tap,
+void jtag_add_dr_out(struct jtag_tap* tap,
int num_fields, const int* num_bits, const uint32_t* value,
tap_state_t end_state)
{
unsigned tms_bits = tap_get_tms_path(cur_state, goal_state);
unsigned tms_count = tap_get_tms_path_len(cur_state, goal_state);
tap_state_t moves[8];
- assert(tms_count < DIM(moves));
+ assert(tms_count < ARRAY_SIZE(moves));
for (unsigned i = 0; i < tms_count; i++, tms_bits >>= 1)
{
return retval;
}
-void jtag_check_value_mask(scan_field_t *field, uint8_t *value, uint8_t *mask)
+void jtag_check_value_mask(struct scan_field *field, uint8_t *value, uint8_t *mask)
{
assert(field->in_value != NULL);
static int jtag_reset_callback(enum jtag_event event, void *priv)
{
- jtag_tap_t *tap = priv;
+ struct jtag_tap *tap = priv;
if (event == JTAG_TRST_ASSERTED)
{
*/
#define END_OF_CHAIN_FLAG 0x000000ff
+/* a larger IR length than we ever expect to autoprobe */
+#define JTAG_IRLEN_MAX 60
+
static int jtag_examine_chain_execute(uint8_t *idcode_buffer, unsigned num_idcode)
{
- scan_field_t field = {
+ struct scan_field field = {
.tap = NULL,
.num_bits = num_idcode * 32,
.out_value = idcode_buffer,
return triggered;
}
-static bool jtag_examine_chain_match_tap(const struct jtag_tap_s *tap)
+static bool jtag_examine_chain_match_tap(const struct jtag_tap *tap)
{
/* ignore expected BYPASS codes; warn otherwise */
if (0 == tap->expected_ids_cnt && !tap->idcode)
uint8_t idcode_buffer[JTAG_MAX_CHAIN_SIZE * 4];
unsigned bit_count;
int retval;
+ int tapcount = 0;
+ bool autoprobe = false;
/* DR scan to collect BYPASS or IDCODE register contents.
* Then make sure the scan data has both ones and zeroes.
return ERROR_JTAG_INIT_FAILED;
/* point at the 1st tap */
- jtag_tap_t *tap = jtag_tap_next_enabled(NULL);
- if (tap == NULL)
- {
- LOG_ERROR("JTAG: No taps enabled?");
- return ERROR_JTAG_INIT_FAILED;
- }
+ struct jtag_tap *tap = jtag_tap_next_enabled(NULL);
+
+ if (!tap)
+ autoprobe = true;
for (bit_count = 0;
tap && bit_count < (JTAG_MAX_CHAIN_SIZE * 32) - 31;
if ((idcode & 1) == 0)
{
/* Zero for LSB indicates a device in bypass */
- LOG_WARNING("TAP %s does not have IDCODE",
+ LOG_INFO("TAP %s does not have IDCODE",
tap->dotted_name);
idcode = 0;
tap->hasidcode = false;
return ERROR_JTAG_INIT_FAILED;
}
+ /* if autoprobing, the tap list is still empty ... populate it! */
+ while (autoprobe && bit_count < (JTAG_MAX_CHAIN_SIZE * 32) - 31) {
+ uint32_t idcode;
+ char buf[12];
+
+ /* Is there another TAP? */
+ idcode = buf_get_u32(idcode_buffer, bit_count, 32);
+ if (jtag_idcode_is_final(idcode))
+ break;
+
+ /* Default everything in this TAP except IR length.
+ *
+ * REVISIT create a jtag_alloc(chip, tap) routine, and
+ * share it with jim_newtap_cmd().
+ */
+ tap = calloc(1, sizeof *tap);
+ if (!tap)
+ return ERROR_FAIL;
+
+ sprintf(buf, "auto%d", tapcount++);
+ tap->chip = strdup(buf);
+ tap->tapname = strdup("tap");
+
+ sprintf(buf, "%s.%s", tap->chip, tap->tapname);
+ tap->dotted_name = strdup(buf);
+
+ /* tap->ir_length == 0 ... signifying irlen autoprobe */
+ tap->ir_capture_mask = 0x03;
+ tap->ir_capture_value = 0x01;
+
+ tap->enabled = true;
+
+ if ((idcode & 1) == 0) {
+ bit_count += 1;
+ tap->hasidcode = false;
+ } else {
+ bit_count += 32;
+ tap->hasidcode = true;
+ tap->idcode = idcode;
+
+ tap->expected_ids_cnt = 1;
+ tap->expected_ids = malloc(sizeof(uint32_t));
+ tap->expected_ids[0] = idcode;
+ }
+
+ LOG_WARNING("AUTO %s - use \"jtag newtap "
+ "%s %s -expected-id 0x%8.8" PRIx32 " ...\"",
+ tap->dotted_name, tap->chip, tap->tapname,
+ tap->idcode);
+
+ jtag_tap_init(tap);
+ }
+
/* After those IDCODE or BYPASS register values should be
* only the data we fed into the scan chain.
*/
*/
static int jtag_validate_ircapture(void)
{
- jtag_tap_t *tap;
+ struct jtag_tap *tap;
int total_ir_length = 0;
uint8_t *ir_test = NULL;
- scan_field_t field;
+ struct scan_field field;
int val;
int chain_pos = 0;
int retval;
+ /* when autoprobing, accomodate huge IR lengths */
for (tap = NULL, total_ir_length = 0;
(tap = jtag_tap_next_enabled(tap)) != NULL;
- total_ir_length += tap->ir_length)
- continue;
+ total_ir_length += tap->ir_length) {
+ if (tap->ir_length == 0)
+ total_ir_length += JTAG_IRLEN_MAX;
+ }
/* increase length to add 2 bit sentinel after scan */
total_ir_length += 2;
- ir_test = malloc(CEIL(total_ir_length, 8));
+ ir_test = malloc(DIV_ROUND_UP(total_ir_length, 8));
if (ir_test == NULL)
return ERROR_FAIL;
break;
}
+ /* If we're autoprobing, guess IR lengths. They must be at
+ * least two bits. Guessing will fail if (a) any TAP does
+ * not conform to the JTAG spec; or (b) when the upper bits
+ * captured from some conforming TAP are nonzero. Or if
+ * (c) an IR length is longer than 32 bits -- which is only
+ * an implementation limit, which could someday be raised.
+ *
+ * REVISIT optimization: if there's a *single* TAP we can
+ * lift restrictions (a) and (b) by scanning a recognizable
+ * pattern before the all-ones BYPASS. Check for where the
+ * pattern starts in the result, instead of an 0...01 value.
+ *
+ * REVISIT alternative approach: escape to some tcl code
+ * which could provide more knowledge, based on IDCODE; and
+ * only guess when that has no success.
+ */
+ if (tap->ir_length == 0) {
+ tap->ir_length = 2;
+ while ((val = buf_get_u32(ir_test, chain_pos,
+ tap->ir_length + 1)) == 1
+ && tap->ir_length <= 32) {
+ tap->ir_length++;
+ }
+ LOG_WARNING("AUTO %s - use \"... -irlen %d\"",
+ jtag_tap_name(tap), tap->ir_length);
+ }
+
/* Validate the two LSBs, which must be 01 per JTAG spec.
*
* Or ... more bits could be provided by TAP declaration.
}
-void jtag_tap_init(jtag_tap_t *tap)
+void jtag_tap_init(struct jtag_tap *tap)
{
unsigned ir_len_bits;
unsigned ir_len_bytes;
- assert(0 != tap->ir_length);
-
- ir_len_bits = tap->ir_length;
- ir_len_bytes = CEIL(ir_len_bits, 8);
+ /* if we're autoprobing, cope with potentially huge ir_length */
+ ir_len_bits = tap->ir_length ? : JTAG_IRLEN_MAX;
+ ir_len_bytes = DIV_ROUND_UP(ir_len_bits, 8);
tap->expected = calloc(1, ir_len_bytes);
tap->expected_mask = calloc(1, ir_len_bytes);
jtag_tap_add(tap);
}
-void jtag_tap_free(jtag_tap_t *tap)
+void jtag_tap_free(struct jtag_tap *tap)
{
jtag_unregister_event_callback(&jtag_reset_callback, tap);
free(tap);
}
-int jtag_interface_init(struct command_context_s *cmd_ctx)
+int jtag_interface_init(struct command_context *cmd_ctx)
{
if (jtag)
return ERROR_OK;
return ERROR_OK;
}
-int jtag_init_inner(struct command_context_s *cmd_ctx)
+int jtag_init_inner(struct command_context *cmd_ctx)
{
- jtag_tap_t *tap;
+ struct jtag_tap *tap;
int retval;
bool issue_setup = true;
tap = jtag_tap_next_enabled(NULL);
if (tap == NULL) {
- LOG_ERROR("There are no enabled taps?");
- return ERROR_JTAG_INIT_FAILED;
+ /* Once JTAG itself is properly set up, and the scan chain
+ * isn't absurdly large, IDCODE autoprobe should work fine.
+ *
+ * But ... IRLEN autoprobe can fail even on systems which
+ * are fully conformant to JTAG. Also, JTAG setup can be
+ * quite finicky on some systems.
+ *
+ * REVISIT: if TAP autoprobe works OK, then in many cases
+ * we could escape to tcl code and set up targets based on
+ * the TAP's IDCODE values.
+ */
+ LOG_WARNING("There are no enabled taps. "
+ "AUTO PROBING MIGHT NOT WORK!!");
+
+ /* REVISIT default clock will often be too fast ... */
}
jtag_add_tlr();
}
-int jtag_init_reset(struct command_context_s *cmd_ctx)
+int jtag_init_reset(struct command_context *cmd_ctx)
{
int retval;
return jtag_init_inner(cmd_ctx);
}
-int jtag_init(struct command_context_s *cmd_ctx)
+int jtag_init(struct command_context *cmd_ctx)
{
int retval;
if ((retval = jtag_execute_queue()) != ERROR_OK)
return retval;
- if (Jim_Eval_Named(interp, "jtag_init", __FILE__, __LINE__) != JIM_OK)
+ if (Jim_Eval_Named(cmd_ctx->interp, "jtag_init", __FILE__, __LINE__) != JIM_OK)
return ERROR_FAIL;
return ERROR_OK;
return jtag ? jtag->speed(speed) : ERROR_OK;
}
-int jtag_config_speed(int speed)
-{
- LOG_DEBUG("handle jtag speed");
- clock_mode = CLOCK_MODE_SPEED;
- return jtag_set_speed(speed);
-}
-
int jtag_config_khz(unsigned khz)
{
LOG_DEBUG("handle jtag khz");