zfcp_dbf.c 41.9 KB
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/*
C
Christof Schmitt 已提交
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 * zfcp device driver
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 *
C
Christof Schmitt 已提交
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 * Debug traces for zfcp.
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 *
C
Christof Schmitt 已提交
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 * Copyright IBM Corporation 2002, 2008
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 */

#include <linux/ctype.h>
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#include <asm/debug.h>
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#include "zfcp_ext.h"

static u32 dbfsize = 4;

module_param(dbfsize, uint, 0400);
MODULE_PARM_DESC(dbfsize,
		 "number of pages for each debug feature area (default 4)");

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static void zfcp_dbf_hexdump(debug_info_t *dbf, void *to, int to_len,
			     int level, char *from, int from_len)
{
	int offset;
	struct zfcp_dbf_dump *dump = to;
	int room = to_len - sizeof(*dump);

	for (offset = 0; offset < from_len; offset += dump->size) {
		memset(to, 0, to_len);
		strncpy(dump->tag, "dump", ZFCP_DBF_TAG_SIZE);
		dump->total_size = from_len;
		dump->offset = offset;
		dump->size = min(from_len - offset, room);
		memcpy(dump->data, from + offset, dump->size);
		debug_event(dbf, level, dump, dump->size);
	}
}

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/* FIXME: this duplicate this code in s390 debug feature */
static void zfcp_dbf_timestamp(unsigned long long stck, struct timespec *time)
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{
	unsigned long long sec;

	stck -= 0x8126d60e46000000LL - (0x3c26700LL * 1000000 * 4096);
	sec = stck >> 12;
	do_div(sec, 1000000);
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	time->tv_sec = sec;
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	stck -= (sec * 1000000) << 12;
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	time->tv_nsec = ((stck * 1000) >> 12);
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}

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static void zfcp_dbf_tag(char **p, const char *label, const char *tag)
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{
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	int i;
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	*p += sprintf(*p, "%-24s", label);
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	for (i = 0; i < ZFCP_DBF_TAG_SIZE; i++)
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		*p += sprintf(*p, "%c", tag[i]);
	*p += sprintf(*p, "\n");
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}

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static void zfcp_dbf_outs(char **buf, const char *s1, const char *s2)
{
	*buf += sprintf(*buf, "%-24s%s\n", s1, s2);
}

static void zfcp_dbf_out(char **buf, const char *s, const char *format, ...)
{
	va_list arg;

	*buf += sprintf(*buf, "%-24s", s);
	va_start(arg, format);
	*buf += vsprintf(*buf, format, arg);
	va_end(arg);
	*buf += sprintf(*buf, "\n");
}

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static void zfcp_dbf_outd(char **p, const char *label, char *buffer,
			  int buflen, int offset, int total_size)
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{
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	if (!offset)
		*p += sprintf(*p, "%-24s  ", label);
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	while (buflen--) {
		if (offset > 0) {
			if ((offset % 32) == 0)
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				*p += sprintf(*p, "\n%-24c  ", ' ');
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			else if ((offset % 4) == 0)
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				*p += sprintf(*p, " ");
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		}
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		*p += sprintf(*p, "%02x", *buffer++);
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		if (++offset == total_size) {
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			*p += sprintf(*p, "\n");
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			break;
		}
	}
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	if (!total_size)
		*p += sprintf(*p, "\n");
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}

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static int zfcp_dbf_view_header(debug_info_t *id, struct debug_view *view,
				int area, debug_entry_t *entry, char *out_buf)
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{
	struct zfcp_dbf_dump *dump = (struct zfcp_dbf_dump *)DEBUG_DATA(entry);
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	struct timespec t;
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	char *p = out_buf;
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	if (strncmp(dump->tag, "dump", ZFCP_DBF_TAG_SIZE) != 0) {
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		zfcp_dbf_timestamp(entry->id.stck, &t);
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		zfcp_dbf_out(&p, "timestamp", "%011lu:%06lu",
			     t.tv_sec, t.tv_nsec);
		zfcp_dbf_out(&p, "cpu", "%02i", entry->id.fields.cpuid);
	} else	{
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		zfcp_dbf_outd(&p, NULL, dump->data, dump->size, dump->offset,
			      dump->total_size);
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		if ((dump->offset + dump->size) == dump->total_size)
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			p += sprintf(p, "\n");
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	}
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	return p - out_buf;
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}

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/**
 * zfcp_hba_dbf_event_fsf_response - trace event for request completion
 * @fsf_req: request that has been completed
 */
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void zfcp_hba_dbf_event_fsf_response(struct zfcp_fsf_req *fsf_req)
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{
	struct zfcp_adapter *adapter = fsf_req->adapter;
	struct fsf_qtcb *qtcb = fsf_req->qtcb;
	union fsf_prot_status_qual *prot_status_qual =
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					&qtcb->prefix.prot_status_qual;
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	union fsf_status_qual *fsf_status_qual = &qtcb->header.fsf_status_qual;
	struct scsi_cmnd *scsi_cmnd;
	struct zfcp_port *port;
	struct zfcp_unit *unit;
	struct zfcp_send_els *send_els;
	struct zfcp_hba_dbf_record *rec = &adapter->hba_dbf_buf;
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	struct zfcp_hba_dbf_record_response *response = &rec->u.response;
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	int level;
	unsigned long flags;

	spin_lock_irqsave(&adapter->hba_dbf_lock, flags);
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	memset(rec, 0, sizeof(*rec));
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	strncpy(rec->tag, "resp", ZFCP_DBF_TAG_SIZE);

	if ((qtcb->prefix.prot_status != FSF_PROT_GOOD) &&
	    (qtcb->prefix.prot_status != FSF_PROT_FSF_STATUS_PRESENTED)) {
		strncpy(rec->tag2, "perr", ZFCP_DBF_TAG_SIZE);
		level = 1;
	} else if (qtcb->header.fsf_status != FSF_GOOD) {
		strncpy(rec->tag2, "ferr", ZFCP_DBF_TAG_SIZE);
		level = 1;
	} else if ((fsf_req->fsf_command == FSF_QTCB_OPEN_PORT_WITH_DID) ||
		   (fsf_req->fsf_command == FSF_QTCB_OPEN_LUN)) {
		strncpy(rec->tag2, "open", ZFCP_DBF_TAG_SIZE);
		level = 4;
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	} else if (qtcb->header.log_length) {
		strncpy(rec->tag2, "qtcb", ZFCP_DBF_TAG_SIZE);
		level = 5;
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	} else {
		strncpy(rec->tag2, "norm", ZFCP_DBF_TAG_SIZE);
		level = 6;
	}

	response->fsf_command = fsf_req->fsf_command;
	response->fsf_reqid = (unsigned long)fsf_req;
	response->fsf_seqno = fsf_req->seq_no;
	response->fsf_issued = fsf_req->issued;
	response->fsf_prot_status = qtcb->prefix.prot_status;
	response->fsf_status = qtcb->header.fsf_status;
	memcpy(response->fsf_prot_status_qual,
	       prot_status_qual, FSF_PROT_STATUS_QUAL_SIZE);
	memcpy(response->fsf_status_qual,
	       fsf_status_qual, FSF_STATUS_QUALIFIER_SIZE);
	response->fsf_req_status = fsf_req->status;
	response->sbal_first = fsf_req->sbal_first;
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	response->sbal_last = fsf_req->sbal_last;
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	response->sbal_response = fsf_req->sbal_response;
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	response->pool = fsf_req->pool != NULL;
	response->erp_action = (unsigned long)fsf_req->erp_action;

	switch (fsf_req->fsf_command) {
	case FSF_QTCB_FCP_CMND:
		if (fsf_req->status & ZFCP_STATUS_FSFREQ_TASK_MANAGEMENT)
			break;
		scsi_cmnd = (struct scsi_cmnd *)fsf_req->data;
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		if (scsi_cmnd) {
			response->u.fcp.cmnd = (unsigned long)scsi_cmnd;
			response->u.fcp.serial = scsi_cmnd->serial_number;
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		}
		break;

	case FSF_QTCB_OPEN_PORT_WITH_DID:
	case FSF_QTCB_CLOSE_PORT:
	case FSF_QTCB_CLOSE_PHYSICAL_PORT:
		port = (struct zfcp_port *)fsf_req->data;
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		response->u.port.wwpn = port->wwpn;
		response->u.port.d_id = port->d_id;
		response->u.port.port_handle = qtcb->header.port_handle;
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		break;

	case FSF_QTCB_OPEN_LUN:
	case FSF_QTCB_CLOSE_LUN:
		unit = (struct zfcp_unit *)fsf_req->data;
		port = unit->port;
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		response->u.unit.wwpn = port->wwpn;
		response->u.unit.fcp_lun = unit->fcp_lun;
		response->u.unit.port_handle = qtcb->header.port_handle;
		response->u.unit.lun_handle = qtcb->header.lun_handle;
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		break;

	case FSF_QTCB_SEND_ELS:
		send_els = (struct zfcp_send_els *)fsf_req->data;
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		response->u.els.d_id = qtcb->bottom.support.d_id;
		response->u.els.ls_code = send_els->ls_code >> 24;
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		break;

	case FSF_QTCB_ABORT_FCP_CMND:
	case FSF_QTCB_SEND_GENERIC:
	case FSF_QTCB_EXCHANGE_CONFIG_DATA:
	case FSF_QTCB_EXCHANGE_PORT_DATA:
	case FSF_QTCB_DOWNLOAD_CONTROL_FILE:
	case FSF_QTCB_UPLOAD_CONTROL_FILE:
		break;
	}

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	debug_event(adapter->hba_dbf, level, rec, sizeof(*rec));
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	/* have fcp channel microcode fixed to use as little as possible */
	if (fsf_req->fsf_command != FSF_QTCB_FCP_CMND) {
		/* adjust length skipping trailing zeros */
		char *buf = (char *)qtcb + qtcb->header.log_start;
		int len = qtcb->header.log_length;
		for (; len && !buf[len - 1]; len--);
		zfcp_dbf_hexdump(adapter->hba_dbf, rec, sizeof(*rec), level,
				 buf, len);
	}

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	spin_unlock_irqrestore(&adapter->hba_dbf_lock, flags);
}

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/**
 * zfcp_hba_dbf_event_fsf_unsol - trace event for an unsolicited status buffer
 * @tag: tag indicating which kind of unsolicited status has been received
 * @adapter: adapter that has issued the unsolicited status buffer
 * @status_buffer: buffer containing payload of unsolicited status
 */
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void zfcp_hba_dbf_event_fsf_unsol(const char *tag, struct zfcp_adapter *adapter,
				  struct fsf_status_read_buffer *status_buffer)
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{
	struct zfcp_hba_dbf_record *rec = &adapter->hba_dbf_buf;
	unsigned long flags;

	spin_lock_irqsave(&adapter->hba_dbf_lock, flags);
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	memset(rec, 0, sizeof(*rec));
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	strncpy(rec->tag, "stat", ZFCP_DBF_TAG_SIZE);
	strncpy(rec->tag2, tag, ZFCP_DBF_TAG_SIZE);

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	rec->u.status.failed = atomic_read(&adapter->stat_miss);
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	if (status_buffer != NULL) {
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		rec->u.status.status_type = status_buffer->status_type;
		rec->u.status.status_subtype = status_buffer->status_subtype;
		memcpy(&rec->u.status.queue_designator,
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		       &status_buffer->queue_designator,
		       sizeof(struct fsf_queue_designator));

		switch (status_buffer->status_type) {
		case FSF_STATUS_READ_SENSE_DATA_AVAIL:
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			rec->u.status.payload_size =
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			    ZFCP_DBF_UNSOL_PAYLOAD_SENSE_DATA_AVAIL;
			break;

		case FSF_STATUS_READ_BIT_ERROR_THRESHOLD:
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			rec->u.status.payload_size =
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			    ZFCP_DBF_UNSOL_PAYLOAD_BIT_ERROR_THRESHOLD;
			break;

		case FSF_STATUS_READ_LINK_DOWN:
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			switch (status_buffer->status_subtype) {
			case FSF_STATUS_READ_SUB_NO_PHYSICAL_LINK:
			case FSF_STATUS_READ_SUB_FDISC_FAILED:
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				rec->u.status.payload_size =
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					sizeof(struct fsf_link_down_info);
			}
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			break;

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		case FSF_STATUS_READ_FEATURE_UPDATE_ALERT:
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			rec->u.status.payload_size =
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			    ZFCP_DBF_UNSOL_PAYLOAD_FEATURE_UPDATE_ALERT;
			break;
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		}
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		memcpy(&rec->u.status.payload,
		       &status_buffer->payload, rec->u.status.payload_size);
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	}

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	debug_event(adapter->hba_dbf, 2, rec, sizeof(*rec));
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	spin_unlock_irqrestore(&adapter->hba_dbf_lock, flags);
}

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/**
 * zfcp_hba_dbf_event_qdio - trace event for QDIO related failure
 * @adapter: adapter affected by this QDIO related event
 * @qdio_error: as passed by qdio module
 * @sbal_index: first buffer with error condition, as passed by qdio module
 * @sbal_count: number of buffers affected, as passed by qdio module
 */
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Jan Glauber 已提交
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void zfcp_hba_dbf_event_qdio(struct zfcp_adapter *adapter,
			     unsigned int qdio_error, int sbal_index,
			     int sbal_count)
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{
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	struct zfcp_hba_dbf_record *r = &adapter->hba_dbf_buf;
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	unsigned long flags;

	spin_lock_irqsave(&adapter->hba_dbf_lock, flags);
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	memset(r, 0, sizeof(*r));
	strncpy(r->tag, "qdio", ZFCP_DBF_TAG_SIZE);
	r->u.qdio.qdio_error = qdio_error;
	r->u.qdio.sbal_index = sbal_index;
	r->u.qdio.sbal_count = sbal_count;
	debug_event(adapter->hba_dbf, 0, r, sizeof(*r));
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	spin_unlock_irqrestore(&adapter->hba_dbf_lock, flags);
}

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static void zfcp_hba_dbf_view_response(char **p,
				       struct zfcp_hba_dbf_record_response *r)
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{
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	struct timespec t;
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	zfcp_dbf_out(p, "fsf_command", "0x%08x", r->fsf_command);
	zfcp_dbf_out(p, "fsf_reqid", "0x%0Lx", r->fsf_reqid);
	zfcp_dbf_out(p, "fsf_seqno", "0x%08x", r->fsf_seqno);
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	zfcp_dbf_timestamp(r->fsf_issued, &t);
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	zfcp_dbf_out(p, "fsf_issued", "%011lu:%06lu", t.tv_sec, t.tv_nsec);
	zfcp_dbf_out(p, "fsf_prot_status", "0x%08x", r->fsf_prot_status);
	zfcp_dbf_out(p, "fsf_status", "0x%08x", r->fsf_status);
	zfcp_dbf_outd(p, "fsf_prot_status_qual", r->fsf_prot_status_qual,
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		      FSF_PROT_STATUS_QUAL_SIZE, 0, FSF_PROT_STATUS_QUAL_SIZE);
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	zfcp_dbf_outd(p, "fsf_status_qual", r->fsf_status_qual,
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		      FSF_STATUS_QUALIFIER_SIZE, 0, FSF_STATUS_QUALIFIER_SIZE);
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	zfcp_dbf_out(p, "fsf_req_status", "0x%08x", r->fsf_req_status);
	zfcp_dbf_out(p, "sbal_first", "0x%02x", r->sbal_first);
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	zfcp_dbf_out(p, "sbal_last", "0x%02x", r->sbal_last);
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	zfcp_dbf_out(p, "sbal_response", "0x%02x", r->sbal_response);
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	zfcp_dbf_out(p, "pool", "0x%02x", r->pool);
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	switch (r->fsf_command) {
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	case FSF_QTCB_FCP_CMND:
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		if (r->fsf_req_status & ZFCP_STATUS_FSFREQ_TASK_MANAGEMENT)
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			break;
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		zfcp_dbf_out(p, "scsi_cmnd", "0x%0Lx", r->u.fcp.cmnd);
		zfcp_dbf_out(p, "scsi_serial", "0x%016Lx", r->u.fcp.serial);
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		break;

	case FSF_QTCB_OPEN_PORT_WITH_DID:
	case FSF_QTCB_CLOSE_PORT:
	case FSF_QTCB_CLOSE_PHYSICAL_PORT:
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		zfcp_dbf_out(p, "wwpn", "0x%016Lx", r->u.port.wwpn);
		zfcp_dbf_out(p, "d_id", "0x%06x", r->u.port.d_id);
		zfcp_dbf_out(p, "port_handle", "0x%08x", r->u.port.port_handle);
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		break;

	case FSF_QTCB_OPEN_LUN:
	case FSF_QTCB_CLOSE_LUN:
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		zfcp_dbf_out(p, "wwpn", "0x%016Lx", r->u.unit.wwpn);
		zfcp_dbf_out(p, "fcp_lun", "0x%016Lx", r->u.unit.fcp_lun);
		zfcp_dbf_out(p, "port_handle", "0x%08x", r->u.unit.port_handle);
		zfcp_dbf_out(p, "lun_handle", "0x%08x", r->u.unit.lun_handle);
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		break;

	case FSF_QTCB_SEND_ELS:
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		zfcp_dbf_out(p, "d_id", "0x%06x", r->u.els.d_id);
		zfcp_dbf_out(p, "ls_code", "0x%02x", r->u.els.ls_code);
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		break;

	case FSF_QTCB_ABORT_FCP_CMND:
	case FSF_QTCB_SEND_GENERIC:
	case FSF_QTCB_EXCHANGE_CONFIG_DATA:
	case FSF_QTCB_EXCHANGE_PORT_DATA:
	case FSF_QTCB_DOWNLOAD_CONTROL_FILE:
	case FSF_QTCB_UPLOAD_CONTROL_FILE:
		break;
	}
}

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static void zfcp_hba_dbf_view_status(char **p,
				     struct zfcp_hba_dbf_record_status *r)
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{
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	zfcp_dbf_out(p, "failed", "0x%02x", r->failed);
	zfcp_dbf_out(p, "status_type", "0x%08x", r->status_type);
	zfcp_dbf_out(p, "status_subtype", "0x%08x", r->status_subtype);
	zfcp_dbf_outd(p, "queue_designator", (char *)&r->queue_designator,
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		      sizeof(struct fsf_queue_designator), 0,
		      sizeof(struct fsf_queue_designator));
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	zfcp_dbf_outd(p, "payload", (char *)&r->payload, r->payload_size, 0,
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		      r->payload_size);
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}

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static void zfcp_hba_dbf_view_qdio(char **p, struct zfcp_hba_dbf_record_qdio *r)
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{
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	zfcp_dbf_out(p, "qdio_error", "0x%08x", r->qdio_error);
	zfcp_dbf_out(p, "sbal_index", "0x%02x", r->sbal_index);
	zfcp_dbf_out(p, "sbal_count", "0x%02x", r->sbal_count);
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}

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static int zfcp_hba_dbf_view_format(debug_info_t *id, struct debug_view *view,
				    char *out_buf, const char *in_buf)
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{
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	struct zfcp_hba_dbf_record *r = (struct zfcp_hba_dbf_record *)in_buf;
	char *p = out_buf;
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	if (strncmp(r->tag, "dump", ZFCP_DBF_TAG_SIZE) == 0)
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		return 0;

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	zfcp_dbf_tag(&p, "tag", r->tag);
	if (isalpha(r->tag2[0]))
		zfcp_dbf_tag(&p, "tag2", r->tag2);

	if (strncmp(r->tag, "resp", ZFCP_DBF_TAG_SIZE) == 0)
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		zfcp_hba_dbf_view_response(&p, &r->u.response);
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	else if (strncmp(r->tag, "stat", ZFCP_DBF_TAG_SIZE) == 0)
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		zfcp_hba_dbf_view_status(&p, &r->u.status);
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	else if (strncmp(r->tag, "qdio", ZFCP_DBF_TAG_SIZE) == 0)
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		zfcp_hba_dbf_view_qdio(&p, &r->u.qdio);
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	p += sprintf(p, "\n");
	return p - out_buf;
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}

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static struct debug_view zfcp_hba_dbf_view = {
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	"structured",
	NULL,
	&zfcp_dbf_view_header,
	&zfcp_hba_dbf_view_format,
	NULL,
	NULL
};

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static const char *zfcp_rec_dbf_tags[] = {
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	[ZFCP_REC_DBF_ID_THREAD] = "thread",
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	[ZFCP_REC_DBF_ID_TARGET] = "target",
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	[ZFCP_REC_DBF_ID_TRIGGER] = "trigger",
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	[ZFCP_REC_DBF_ID_ACTION] = "action",
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};

static const char *zfcp_rec_dbf_ids[] = {
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	[1]	= "new",
	[2]	= "ready",
	[3]	= "kill",
	[4]	= "down sleep",
	[5]	= "down wakeup",
	[6]	= "down sleep ecd",
	[7]	= "down wakeup ecd",
	[8]	= "down sleep epd",
	[9]	= "down wakeup epd",
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	[10]	= "online",
	[11]	= "operational",
	[12]	= "scsi slave destroy",
	[13]	= "propagate failed adapter",
	[14]	= "propagate failed port",
	[15]	= "block adapter",
	[16]	= "unblock adapter",
	[17]	= "block port",
	[18]	= "unblock port",
	[19]	= "block unit",
	[20]	= "unblock unit",
	[21]	= "unit recovery failed",
	[22]	= "port recovery failed",
	[23]	= "adapter recovery failed",
	[24]	= "qdio queues down",
	[25]	= "p2p failed",
	[26]	= "nameserver lookup failed",
	[27]	= "nameserver port failed",
	[28]	= "link up",
	[29]	= "link down",
	[30]	= "link up status read",
	[31]	= "open port failed",
	[32]	= "open port failed",
	[33]	= "close port",
	[34]	= "open unit failed",
	[35]	= "exclusive open unit failed",
	[36]	= "shared open unit failed",
	[37]	= "link down",
	[38]	= "link down status read no link",
	[39]	= "link down status read fdisc login",
	[40]	= "link down status read firmware update",
	[41]	= "link down status read unknown reason",
	[42]	= "link down ecd incomplete",
	[43]	= "link down epd incomplete",
	[44]	= "sysfs adapter recovery",
	[45]	= "sysfs port recovery",
	[46]	= "sysfs unit recovery",
	[47]	= "port boxed abort",
	[48]	= "unit boxed abort",
	[49]	= "port boxed ct",
	[50]	= "port boxed close physical",
	[51]	= "port boxed open unit",
	[52]	= "port boxed close unit",
	[53]	= "port boxed fcp",
	[54]	= "unit boxed fcp",
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Christof Schmitt 已提交
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	[55]	= "port access denied",
	[56]	= "",
	[57]	= "",
	[58]	= "",
	[59]	= "unit access denied",
502
	[60]	= "shared unit access denied open unit",
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Christof Schmitt 已提交
503
	[61]	= "",
504 505 506 507 508 509 510 511 512 513 514 515 516 517 518 519 520 521
	[62]	= "request timeout",
	[63]	= "adisc link test reject or timeout",
	[64]	= "adisc link test d_id changed",
	[65]	= "adisc link test failed",
	[66]	= "recovery out of memory",
	[67]	= "adapter recovery repeated after state change",
	[68]	= "port recovery repeated after state change",
	[69]	= "unit recovery repeated after state change",
	[70]	= "port recovery follow-up after successful adapter recovery",
	[71]	= "adapter recovery escalation after failed adapter recovery",
	[72]	= "port recovery follow-up after successful physical port "
		  "recovery",
	[73]	= "adapter recovery escalation after failed physical port "
		  "recovery",
	[74]	= "unit recovery follow-up after successful port recovery",
	[75]	= "physical port recovery escalation after failed port "
		  "recovery",
	[76]	= "port recovery escalation after failed unit recovery",
522
	[77]	= "",
523 524 525 526 527
	[78]	= "duplicate request id",
	[79]	= "link down",
	[80]	= "exclusive read-only unit access unsupported",
	[81]	= "shared read-write unit access unsupported",
	[82]	= "incoming rscn",
528 529
	[83]	= "incoming wwpn",
	[84]	= "",
530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567
	[85]	= "online",
	[86]	= "offline",
	[87]	= "ccw device gone",
	[88]	= "ccw device no path",
	[89]	= "ccw device operational",
	[90]	= "ccw device shutdown",
	[91]	= "sysfs port addition",
	[92]	= "sysfs port removal",
	[93]	= "sysfs adapter recovery",
	[94]	= "sysfs unit addition",
	[95]	= "sysfs unit removal",
	[96]	= "sysfs port recovery",
	[97]	= "sysfs unit recovery",
	[98]	= "sequence number mismatch",
	[99]	= "link up",
	[100]	= "error state",
	[101]	= "status read physical port closed",
	[102]	= "link up status read",
	[103]	= "too many failed status read buffers",
	[104]	= "port handle not valid abort",
	[105]	= "lun handle not valid abort",
	[106]	= "port handle not valid ct",
	[107]	= "port handle not valid close port",
	[108]	= "port handle not valid close physical port",
	[109]	= "port handle not valid open unit",
	[110]	= "port handle not valid close unit",
	[111]	= "lun handle not valid close unit",
	[112]	= "port handle not valid fcp",
	[113]	= "lun handle not valid fcp",
	[114]	= "handle mismatch fcp",
	[115]	= "lun not valid fcp",
	[116]	= "qdio send failed",
	[117]	= "version mismatch",
	[118]	= "incompatible qtcb type",
	[119]	= "unknown protocol status",
	[120]	= "unknown fsf command",
	[121]	= "no recommendation for status qualifier",
	[122]	= "status read physical port closed in error",
C
Christof Schmitt 已提交
568 569
	[123]	= "fc service class not supported",
	[124]	= "",
570 571 572
	[125]	= "need newer zfcp",
	[126]	= "need newer microcode",
	[127]	= "arbitrated loop not supported",
573
	[128]	= "",
574 575 576
	[129]	= "qtcb size mismatch",
	[130]	= "unknown fsf status ecd",
	[131]	= "fcp request too big",
C
Christof Schmitt 已提交
577
	[132]	= "",
578 579 580 581 582 583 584
	[133]	= "data direction not valid fcp",
	[134]	= "command length not valid fcp",
	[135]	= "status read act update",
	[136]	= "status read cfdc update",
	[137]	= "hbaapi port open",
	[138]	= "hbaapi unit open",
	[139]	= "hbaapi unit shutdown",
S
Swen Schillig 已提交
585
	[140]	= "qdio error outbound",
586
	[141]	= "scsi host reset",
587 588 589 590 591
	[142]	= "dismissing fsf request for recovery action",
	[143]	= "recovery action timed out",
	[144]	= "recovery action gone",
	[145]	= "recovery action being processed",
	[146]	= "recovery action ready for next step",
S
Swen Schillig 已提交
592
	[147]	= "qdio error inbound",
593 594 595 596
	[148]   = "nameserver needed for port scan",
	[149]   = "port scan",
	[150]	= "ptp attach",
	[151]   = "port validation failed",
597 598 599 600 601 602 603 604 605 606 607 608
};

static int zfcp_rec_dbf_view_format(debug_info_t *id, struct debug_view *view,
				    char *buf, const char *_rec)
{
	struct zfcp_rec_dbf_record *r = (struct zfcp_rec_dbf_record *)_rec;
	char *p = buf;

	zfcp_dbf_outs(&p, "tag", zfcp_rec_dbf_tags[r->id]);
	zfcp_dbf_outs(&p, "hint", zfcp_rec_dbf_ids[r->id2]);
	zfcp_dbf_out(&p, "id", "%d", r->id2);
	switch (r->id) {
609 610 611 612 613
	case ZFCP_REC_DBF_ID_THREAD:
		zfcp_dbf_out(&p, "total", "%d", r->u.thread.total);
		zfcp_dbf_out(&p, "ready", "%d", r->u.thread.ready);
		zfcp_dbf_out(&p, "running", "%d", r->u.thread.running);
		break;
614 615 616 617 618 619 620 621
	case ZFCP_REC_DBF_ID_TARGET:
		zfcp_dbf_out(&p, "reference", "0x%016Lx", r->u.target.ref);
		zfcp_dbf_out(&p, "status", "0x%08x", r->u.target.status);
		zfcp_dbf_out(&p, "erp_count", "%d", r->u.target.erp_count);
		zfcp_dbf_out(&p, "d_id", "0x%06x", r->u.target.d_id);
		zfcp_dbf_out(&p, "wwpn", "0x%016Lx", r->u.target.wwpn);
		zfcp_dbf_out(&p, "fcp_lun", "0x%016Lx", r->u.target.fcp_lun);
		break;
622 623 624 625 626 627 628 629 630 631 632
	case ZFCP_REC_DBF_ID_TRIGGER:
		zfcp_dbf_out(&p, "reference", "0x%016Lx", r->u.trigger.ref);
		zfcp_dbf_out(&p, "erp_action", "0x%016Lx", r->u.trigger.action);
		zfcp_dbf_out(&p, "requested", "%d", r->u.trigger.want);
		zfcp_dbf_out(&p, "executed", "%d", r->u.trigger.need);
		zfcp_dbf_out(&p, "wwpn", "0x%016Lx", r->u.trigger.wwpn);
		zfcp_dbf_out(&p, "fcp_lun", "0x%016Lx", r->u.trigger.fcp_lun);
		zfcp_dbf_out(&p, "adapter_status", "0x%08x", r->u.trigger.as);
		zfcp_dbf_out(&p, "port_status", "0x%08x", r->u.trigger.ps);
		zfcp_dbf_out(&p, "unit_status", "0x%08x", r->u.trigger.us);
		break;
633 634 635 636 637 638
	case ZFCP_REC_DBF_ID_ACTION:
		zfcp_dbf_out(&p, "erp_action", "0x%016Lx", r->u.action.action);
		zfcp_dbf_out(&p, "fsf_req", "0x%016Lx", r->u.action.fsf_req);
		zfcp_dbf_out(&p, "status", "0x%08Lx", r->u.action.status);
		zfcp_dbf_out(&p, "step", "0x%08Lx", r->u.action.step);
		break;
639
	}
640 641
	p += sprintf(p, "\n");
	return p - buf;
642 643 644 645 646 647 648 649 650 651 652
}

static struct debug_view zfcp_rec_dbf_view = {
	"structured",
	NULL,
	&zfcp_dbf_view_header,
	&zfcp_rec_dbf_view_format,
	NULL,
	NULL
};

653 654 655 656
/**
 * zfcp_rec_dbf_event_thread - trace event related to recovery thread operation
 * @id2: identifier for event
 * @adapter: adapter
657
 * This function assumes that the caller is holding erp_lock.
658
 */
659
void zfcp_rec_dbf_event_thread(u8 id2, struct zfcp_adapter *adapter)
660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678
{
	struct zfcp_rec_dbf_record *r = &adapter->rec_dbf_buf;
	unsigned long flags = 0;
	struct list_head *entry;
	unsigned ready = 0, running = 0, total;

	list_for_each(entry, &adapter->erp_ready_head)
		ready++;
	list_for_each(entry, &adapter->erp_running_head)
		running++;
	total = adapter->erp_total_count;

	spin_lock_irqsave(&adapter->rec_dbf_lock, flags);
	memset(r, 0, sizeof(*r));
	r->id = ZFCP_REC_DBF_ID_THREAD;
	r->id2 = id2;
	r->u.thread.total = total;
	r->u.thread.ready = ready;
	r->u.thread.running = running;
679
	debug_event(adapter->rec_dbf, 6, r, sizeof(*r));
680 681 682
	spin_unlock_irqrestore(&adapter->rec_dbf_lock, flags);
}

683 684 685 686 687 688 689 690 691 692 693 694 695 696 697
/**
 * zfcp_rec_dbf_event_thread - trace event related to recovery thread operation
 * @id2: identifier for event
 * @adapter: adapter
 * This function assumes that the caller does not hold erp_lock.
 */
void zfcp_rec_dbf_event_thread_lock(u8 id2, struct zfcp_adapter *adapter)
{
	unsigned long flags;

	read_lock_irqsave(&adapter->erp_lock, flags);
	zfcp_rec_dbf_event_thread(id2, adapter);
	read_unlock_irqrestore(&adapter->erp_lock, flags);
}

698
static void zfcp_rec_dbf_event_target(u8 id2, void *ref,
699 700 701 702 703 704 705 706 707 708 709
				      struct zfcp_adapter *adapter,
				      atomic_t *status, atomic_t *erp_count,
				      u64 wwpn, u32 d_id, u64 fcp_lun)
{
	struct zfcp_rec_dbf_record *r = &adapter->rec_dbf_buf;
	unsigned long flags;

	spin_lock_irqsave(&adapter->rec_dbf_lock, flags);
	memset(r, 0, sizeof(*r));
	r->id = ZFCP_REC_DBF_ID_TARGET;
	r->id2 = id2;
710
	r->u.target.ref = (unsigned long)ref;
711 712 713 714 715 716 717 718 719 720 721 722 723 724 725
	r->u.target.status = atomic_read(status);
	r->u.target.wwpn = wwpn;
	r->u.target.d_id = d_id;
	r->u.target.fcp_lun = fcp_lun;
	r->u.target.erp_count = atomic_read(erp_count);
	debug_event(adapter->rec_dbf, 3, r, sizeof(*r));
	spin_unlock_irqrestore(&adapter->rec_dbf_lock, flags);
}

/**
 * zfcp_rec_dbf_event_adapter - trace event for adapter state change
 * @id: identifier for trigger of state change
 * @ref: additional reference (e.g. request)
 * @adapter: adapter
 */
726
void zfcp_rec_dbf_event_adapter(u8 id, void *ref, struct zfcp_adapter *adapter)
727 728 729 730 731 732 733 734 735 736 737
{
	zfcp_rec_dbf_event_target(id, ref, adapter, &adapter->status,
				  &adapter->erp_counter, 0, 0, 0);
}

/**
 * zfcp_rec_dbf_event_port - trace event for port state change
 * @id: identifier for trigger of state change
 * @ref: additional reference (e.g. request)
 * @port: port
 */
738
void zfcp_rec_dbf_event_port(u8 id, void *ref, struct zfcp_port *port)
739 740 741 742 743 744 745 746 747 748 749 750 751 752
{
	struct zfcp_adapter *adapter = port->adapter;

	zfcp_rec_dbf_event_target(id, ref, adapter, &port->status,
				  &port->erp_counter, port->wwpn, port->d_id,
				  0);
}

/**
 * zfcp_rec_dbf_event_unit - trace event for unit state change
 * @id: identifier for trigger of state change
 * @ref: additional reference (e.g. request)
 * @unit: unit
 */
753
void zfcp_rec_dbf_event_unit(u8 id, void *ref, struct zfcp_unit *unit)
754 755 756 757 758 759 760 761 762
{
	struct zfcp_port *port = unit->port;
	struct zfcp_adapter *adapter = port->adapter;

	zfcp_rec_dbf_event_target(id, ref, adapter, &unit->status,
				  &unit->erp_counter, port->wwpn, port->d_id,
				  unit->fcp_lun);
}

763 764 765 766 767 768 769 770 771 772 773
/**
 * zfcp_rec_dbf_event_trigger - trace event for triggered error recovery
 * @id2: identifier for error recovery trigger
 * @ref: additional reference (e.g. request)
 * @want: originally requested error recovery action
 * @need: error recovery action actually initiated
 * @action: address of error recovery action struct
 * @adapter: adapter
 * @port: port
 * @unit: unit
 */
774 775
void zfcp_rec_dbf_event_trigger(u8 id2, void *ref, u8 want, u8 need,
				void *action, struct zfcp_adapter *adapter,
776 777 778 779 780 781 782 783 784
				struct zfcp_port *port, struct zfcp_unit *unit)
{
	struct zfcp_rec_dbf_record *r = &adapter->rec_dbf_buf;
	unsigned long flags;

	spin_lock_irqsave(&adapter->rec_dbf_lock, flags);
	memset(r, 0, sizeof(*r));
	r->id = ZFCP_REC_DBF_ID_TRIGGER;
	r->id2 = id2;
785
	r->u.trigger.ref = (unsigned long)ref;
786 787
	r->u.trigger.want = want;
	r->u.trigger.need = need;
788
	r->u.trigger.action = (unsigned long)action;
789 790 791 792 793 794 795 796 797 798 799 800 801
	r->u.trigger.as = atomic_read(&adapter->status);
	if (port) {
		r->u.trigger.ps = atomic_read(&port->status);
		r->u.trigger.wwpn = port->wwpn;
	}
	if (unit) {
		r->u.trigger.us = atomic_read(&unit->status);
		r->u.trigger.fcp_lun = unit->fcp_lun;
	}
	debug_event(adapter->rec_dbf, action ? 1 : 4, r, sizeof(*r));
	spin_unlock_irqrestore(&adapter->rec_dbf_lock, flags);
}

802 803 804 805 806 807 808 809 810 811 812 813 814 815 816
/**
 * zfcp_rec_dbf_event_action - trace event showing progress of recovery action
 * @id2: identifier
 * @erp_action: error recovery action struct pointer
 */
void zfcp_rec_dbf_event_action(u8 id2, struct zfcp_erp_action *erp_action)
{
	struct zfcp_adapter *adapter = erp_action->adapter;
	struct zfcp_rec_dbf_record *r = &adapter->rec_dbf_buf;
	unsigned long flags;

	spin_lock_irqsave(&adapter->rec_dbf_lock, flags);
	memset(r, 0, sizeof(*r));
	r->id = ZFCP_REC_DBF_ID_ACTION;
	r->id2 = id2;
817
	r->u.action.action = (unsigned long)erp_action;
818 819
	r->u.action.status = erp_action->status;
	r->u.action.step = erp_action->step;
820
	r->u.action.fsf_req = (unsigned long)erp_action->fsf_req;
821
	debug_event(adapter->rec_dbf, 5, r, sizeof(*r));
822 823 824
	spin_unlock_irqrestore(&adapter->rec_dbf_lock, flags);
}

825 826 827 828
/**
 * zfcp_san_dbf_event_ct_request - trace event for issued CT request
 * @fsf_req: request containing issued CT data
 */
829
void zfcp_san_dbf_event_ct_request(struct zfcp_fsf_req *fsf_req)
830 831
{
	struct zfcp_send_ct *ct = (struct zfcp_send_ct *)fsf_req->data;
832 833
	struct zfcp_wka_port *wka_port = ct->wka_port;
	struct zfcp_adapter *adapter = wka_port->adapter;
834
	struct ct_hdr *hdr = sg_virt(ct->req);
835 836 837
	struct zfcp_san_dbf_record *r = &adapter->san_dbf_buf;
	struct zfcp_san_dbf_record_ct_request *oct = &r->u.ct_req;
	unsigned long flags;
838

839 840 841 842 843 844
	spin_lock_irqsave(&adapter->san_dbf_lock, flags);
	memset(r, 0, sizeof(*r));
	strncpy(r->tag, "octc", ZFCP_DBF_TAG_SIZE);
	r->fsf_reqid = (unsigned long)fsf_req;
	r->fsf_seqno = fsf_req->seq_no;
	r->s_id = fc_host_port_id(adapter->scsi_host);
845
	r->d_id = wka_port->d_id;
846 847 848 849 850 851 852 853 854 855 856
	oct->cmd_req_code = hdr->cmd_rsp_code;
	oct->revision = hdr->revision;
	oct->gs_type = hdr->gs_type;
	oct->gs_subtype = hdr->gs_subtype;
	oct->options = hdr->options;
	oct->max_res_size = hdr->max_res_size;
	oct->len = min((int)ct->req->length - (int)sizeof(struct ct_hdr),
		       ZFCP_DBF_CT_PAYLOAD);
	memcpy(oct->payload, (void *)hdr + sizeof(struct ct_hdr), oct->len);
	debug_event(adapter->san_dbf, 3, r, sizeof(*r));
	spin_unlock_irqrestore(&adapter->san_dbf_lock, flags);
857 858
}

859 860 861 862
/**
 * zfcp_san_dbf_event_ct_response - trace event for completion of CT request
 * @fsf_req: request containing CT response
 */
863
void zfcp_san_dbf_event_ct_response(struct zfcp_fsf_req *fsf_req)
864 865
{
	struct zfcp_send_ct *ct = (struct zfcp_send_ct *)fsf_req->data;
866 867
	struct zfcp_wka_port *wka_port = ct->wka_port;
	struct zfcp_adapter *adapter = wka_port->adapter;
868
	struct ct_hdr *hdr = sg_virt(ct->resp);
869 870 871
	struct zfcp_san_dbf_record *r = &adapter->san_dbf_buf;
	struct zfcp_san_dbf_record_ct_response *rct = &r->u.ct_resp;
	unsigned long flags;
872

873 874 875 876 877
	spin_lock_irqsave(&adapter->san_dbf_lock, flags);
	memset(r, 0, sizeof(*r));
	strncpy(r->tag, "rctc", ZFCP_DBF_TAG_SIZE);
	r->fsf_reqid = (unsigned long)fsf_req;
	r->fsf_seqno = fsf_req->seq_no;
878
	r->s_id = wka_port->d_id;
879 880 881 882 883 884 885 886 887 888 889
	r->d_id = fc_host_port_id(adapter->scsi_host);
	rct->cmd_rsp_code = hdr->cmd_rsp_code;
	rct->revision = hdr->revision;
	rct->reason_code = hdr->reason_code;
	rct->expl = hdr->reason_code_expl;
	rct->vendor_unique = hdr->vendor_unique;
	rct->len = min((int)ct->resp->length - (int)sizeof(struct ct_hdr),
		       ZFCP_DBF_CT_PAYLOAD);
	memcpy(rct->payload, (void *)hdr + sizeof(struct ct_hdr), rct->len);
	debug_event(adapter->san_dbf, 3, r, sizeof(*r));
	spin_unlock_irqrestore(&adapter->san_dbf_lock, flags);
890 891
}

892 893 894 895
static void zfcp_san_dbf_event_els(const char *tag, int level,
				   struct zfcp_fsf_req *fsf_req, u32 s_id,
				   u32 d_id, u8 ls_code, void *buffer,
				   int buflen)
896 897 898 899 900 901
{
	struct zfcp_adapter *adapter = fsf_req->adapter;
	struct zfcp_san_dbf_record *rec = &adapter->san_dbf_buf;
	unsigned long flags;

	spin_lock_irqsave(&adapter->san_dbf_lock, flags);
902
	memset(rec, 0, sizeof(*rec));
903 904 905 906 907
	strncpy(rec->tag, tag, ZFCP_DBF_TAG_SIZE);
	rec->fsf_reqid = (unsigned long)fsf_req;
	rec->fsf_seqno = fsf_req->seq_no;
	rec->s_id = s_id;
	rec->d_id = d_id;
908
	rec->u.els.ls_code = ls_code;
909 910 911
	debug_event(adapter->san_dbf, level, rec, sizeof(*rec));
	zfcp_dbf_hexdump(adapter->san_dbf, rec, sizeof(*rec), level,
			 buffer, min(buflen, ZFCP_DBF_ELS_MAX_PAYLOAD));
912 913 914
	spin_unlock_irqrestore(&adapter->san_dbf_lock, flags);
}

915 916 917 918
/**
 * zfcp_san_dbf_event_els_request - trace event for issued ELS
 * @fsf_req: request containing issued ELS
 */
919
void zfcp_san_dbf_event_els_request(struct zfcp_fsf_req *fsf_req)
920 921 922
{
	struct zfcp_send_els *els = (struct zfcp_send_els *)fsf_req->data;

923 924
	zfcp_san_dbf_event_els("oels", 2, fsf_req,
			       fc_host_port_id(els->adapter->scsi_host),
925 926
			       els->d_id, *(u8 *) sg_virt(els->req),
			       sg_virt(els->req), els->req->length);
927 928
}

929 930 931 932
/**
 * zfcp_san_dbf_event_els_response - trace event for completed ELS
 * @fsf_req: request containing ELS response
 */
933
void zfcp_san_dbf_event_els_response(struct zfcp_fsf_req *fsf_req)
934 935 936
{
	struct zfcp_send_els *els = (struct zfcp_send_els *)fsf_req->data;

937 938
	zfcp_san_dbf_event_els("rels", 2, fsf_req, els->d_id,
			       fc_host_port_id(els->adapter->scsi_host),
939
			       *(u8 *)sg_virt(els->req), sg_virt(els->resp),
940
			       els->resp->length);
941 942
}

943 944 945 946
/**
 * zfcp_san_dbf_event_incoming_els - trace event for incomig ELS
 * @fsf_req: request containing unsolicited status buffer with incoming ELS
 */
947
void zfcp_san_dbf_event_incoming_els(struct zfcp_fsf_req *fsf_req)
948 949
{
	struct zfcp_adapter *adapter = fsf_req->adapter;
950 951 952 953 954 955 956
	struct fsf_status_read_buffer *buf =
			(struct fsf_status_read_buffer *)fsf_req->data;
	int length = (int)buf->length -
		     (int)((void *)&buf->payload - (void *)buf);

	zfcp_san_dbf_event_els("iels", 1, fsf_req, buf->d_id,
			       fc_host_port_id(adapter->scsi_host),
S
Swen Schillig 已提交
957
			       buf->payload.data[0], (void *)buf->payload.data,
958
			       length);
959 960
}

961 962
static int zfcp_san_dbf_view_format(debug_info_t *id, struct debug_view *view,
				    char *out_buf, const char *in_buf)
963
{
964
	struct zfcp_san_dbf_record *r = (struct zfcp_san_dbf_record *)in_buf;
965 966
	char *buffer = NULL;
	int buflen = 0, total = 0;
967
	char *p = out_buf;
968

969
	if (strncmp(r->tag, "dump", ZFCP_DBF_TAG_SIZE) == 0)
970 971
		return 0;

972
	zfcp_dbf_tag(&p, "tag", r->tag);
973 974 975 976 977 978
	zfcp_dbf_out(&p, "fsf_reqid", "0x%0Lx", r->fsf_reqid);
	zfcp_dbf_out(&p, "fsf_seqno", "0x%08x", r->fsf_seqno);
	zfcp_dbf_out(&p, "s_id", "0x%06x", r->s_id);
	zfcp_dbf_out(&p, "d_id", "0x%06x", r->d_id);

	if (strncmp(r->tag, "octc", ZFCP_DBF_TAG_SIZE) == 0) {
979 980 981 982 983 984 985 986 987
		struct zfcp_san_dbf_record_ct_request *ct = &r->u.ct_req;
		zfcp_dbf_out(&p, "cmd_req_code", "0x%04x", ct->cmd_req_code);
		zfcp_dbf_out(&p, "revision", "0x%02x", ct->revision);
		zfcp_dbf_out(&p, "gs_type", "0x%02x", ct->gs_type);
		zfcp_dbf_out(&p, "gs_subtype", "0x%02x", ct->gs_subtype);
		zfcp_dbf_out(&p, "options", "0x%02x", ct->options);
		zfcp_dbf_out(&p, "max_res_size", "0x%04x", ct->max_res_size);
		total = ct->len;
		buffer = ct->payload;
988
		buflen = min(total, ZFCP_DBF_CT_PAYLOAD);
989
	} else if (strncmp(r->tag, "rctc", ZFCP_DBF_TAG_SIZE) == 0) {
990 991 992 993 994 995 996 997
		struct zfcp_san_dbf_record_ct_response *ct = &r->u.ct_resp;
		zfcp_dbf_out(&p, "cmd_rsp_code", "0x%04x", ct->cmd_rsp_code);
		zfcp_dbf_out(&p, "revision", "0x%02x", ct->revision);
		zfcp_dbf_out(&p, "reason_code", "0x%02x", ct->reason_code);
		zfcp_dbf_out(&p, "reason_code_expl", "0x%02x", ct->expl);
		zfcp_dbf_out(&p, "vendor_unique", "0x%02x", ct->vendor_unique);
		total = ct->len;
		buffer = ct->payload;
998
		buflen = min(total, ZFCP_DBF_CT_PAYLOAD);
999 1000 1001
	} else if (strncmp(r->tag, "oels", ZFCP_DBF_TAG_SIZE) == 0 ||
		   strncmp(r->tag, "rels", ZFCP_DBF_TAG_SIZE) == 0 ||
		   strncmp(r->tag, "iels", ZFCP_DBF_TAG_SIZE) == 0) {
1002 1003 1004 1005
		struct zfcp_san_dbf_record_els *els = &r->u.els;
		zfcp_dbf_out(&p, "ls_code", "0x%02x", els->ls_code);
		total = els->len;
		buffer = els->payload;
1006 1007 1008
		buflen = min(total, ZFCP_DBF_ELS_PAYLOAD);
	}

1009
	zfcp_dbf_outd(&p, "payload", buffer, buflen, 0, total);
1010
	if (buflen == total)
1011
		p += sprintf(p, "\n");
1012

1013
	return p - out_buf;
1014 1015
}

1016
static struct debug_view zfcp_san_dbf_view = {
1017 1018 1019 1020 1021 1022 1023 1024
	"structured",
	NULL,
	&zfcp_dbf_view_header,
	&zfcp_san_dbf_view_format,
	NULL,
	NULL
};

1025 1026 1027 1028 1029
static void zfcp_scsi_dbf_event(const char *tag, const char *tag2, int level,
				struct zfcp_adapter *adapter,
				struct scsi_cmnd *scsi_cmnd,
				struct zfcp_fsf_req *fsf_req,
				unsigned long old_req_id)
1030 1031 1032 1033 1034 1035 1036 1037 1038 1039
{
	struct zfcp_scsi_dbf_record *rec = &adapter->scsi_dbf_buf;
	struct zfcp_dbf_dump *dump = (struct zfcp_dbf_dump *)rec;
	unsigned long flags;
	struct fcp_rsp_iu *fcp_rsp;
	char *fcp_rsp_info = NULL, *fcp_sns_info = NULL;
	int offset = 0, buflen = 0;

	spin_lock_irqsave(&adapter->scsi_dbf_lock, flags);
	do {
1040
		memset(rec, 0, sizeof(*rec));
1041 1042 1043
		if (offset == 0) {
			strncpy(rec->tag, tag, ZFCP_DBF_TAG_SIZE);
			strncpy(rec->tag2, tag2, ZFCP_DBF_TAG_SIZE);
1044 1045 1046 1047 1048 1049 1050 1051
			if (scsi_cmnd != NULL) {
				if (scsi_cmnd->device) {
					rec->scsi_id = scsi_cmnd->device->id;
					rec->scsi_lun = scsi_cmnd->device->lun;
				}
				rec->scsi_result = scsi_cmnd->result;
				rec->scsi_cmnd = (unsigned long)scsi_cmnd;
				rec->scsi_serial = scsi_cmnd->serial_number;
1052
				memcpy(rec->scsi_opcode, scsi_cmnd->cmnd,
1053 1054 1055 1056
					min((int)scsi_cmnd->cmd_len,
						ZFCP_DBF_SCSI_OPCODE));
				rec->scsi_retries = scsi_cmnd->retries;
				rec->scsi_allowed = scsi_cmnd->allowed;
1057 1058 1059 1060
			}
			if (fsf_req != NULL) {
				fcp_rsp = (struct fcp_rsp_iu *)
				    &(fsf_req->qtcb->bottom.io.fcp_rsp);
1061
				fcp_rsp_info = (unsigned char *) &fcp_rsp[1];
1062 1063 1064
				fcp_sns_info =
				    zfcp_get_fcp_sns_info_ptr(fcp_rsp);

1065 1066 1067
				rec->rsp_validity = fcp_rsp->validity.value;
				rec->rsp_scsi_status = fcp_rsp->scsi_status;
				rec->rsp_resid = fcp_rsp->fcp_resid;
1068
				if (fcp_rsp->validity.bits.fcp_rsp_len_valid)
1069
					rec->rsp_code = *(fcp_rsp_info + 3);
1070 1071 1072
				if (fcp_rsp->validity.bits.fcp_sns_len_valid) {
					buflen = min((int)fcp_rsp->fcp_sns_len,
						     ZFCP_DBF_SCSI_MAX_FCP_SNS_INFO);
1073 1074
					rec->sns_info_len = buflen;
					memcpy(rec->sns_info, fcp_sns_info,
1075 1076 1077 1078 1079 1080 1081 1082 1083 1084
					       min(buflen,
						   ZFCP_DBF_SCSI_FCP_SNS_INFO));
					offset += min(buflen,
						      ZFCP_DBF_SCSI_FCP_SNS_INFO);
				}

				rec->fsf_reqid = (unsigned long)fsf_req;
				rec->fsf_seqno = fsf_req->seq_no;
				rec->fsf_issued = fsf_req->issued;
			}
1085
			rec->old_fsf_reqid = old_req_id;
1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096
		} else {
			strncpy(dump->tag, "dump", ZFCP_DBF_TAG_SIZE);
			dump->total_size = buflen;
			dump->offset = offset;
			dump->size = min(buflen - offset,
					 (int)sizeof(struct
						     zfcp_scsi_dbf_record) -
					 (int)sizeof(struct zfcp_dbf_dump));
			memcpy(dump->data, fcp_sns_info + offset, dump->size);
			offset += dump->size;
		}
1097
		debug_event(adapter->scsi_dbf, level, rec, sizeof(*rec));
1098 1099 1100 1101
	} while (offset < buflen);
	spin_unlock_irqrestore(&adapter->scsi_dbf_lock, flags);
}

1102 1103 1104 1105 1106 1107 1108 1109
/**
 * zfcp_scsi_dbf_event_result - trace event for SCSI command completion
 * @tag: tag indicating success or failure of SCSI command
 * @level: trace level applicable for this event
 * @adapter: adapter that has been used to issue the SCSI command
 * @scsi_cmnd: SCSI command pointer
 * @fsf_req: request used to issue SCSI command (might be NULL)
 */
1110 1111 1112 1113
void zfcp_scsi_dbf_event_result(const char *tag, int level,
				struct zfcp_adapter *adapter,
				struct scsi_cmnd *scsi_cmnd,
				struct zfcp_fsf_req *fsf_req)
1114
{
1115
	zfcp_scsi_dbf_event("rslt", tag, level, adapter, scsi_cmnd, fsf_req, 0);
1116 1117
}

1118 1119 1120 1121 1122 1123 1124 1125
/**
 * zfcp_scsi_dbf_event_abort - trace event for SCSI command abort
 * @tag: tag indicating success or failure of abort operation
 * @adapter: adapter thas has been used to issue SCSI command to be aborted
 * @scsi_cmnd: SCSI command to be aborted
 * @new_fsf_req: request containing abort (might be NULL)
 * @old_req_id: identifier of request containg SCSI command to be aborted
 */
1126 1127 1128 1129
void zfcp_scsi_dbf_event_abort(const char *tag, struct zfcp_adapter *adapter,
			       struct scsi_cmnd *scsi_cmnd,
			       struct zfcp_fsf_req *new_fsf_req,
			       unsigned long old_req_id)
1130
{
1131 1132
	zfcp_scsi_dbf_event("abrt", tag, 1, adapter, scsi_cmnd, new_fsf_req,
			    old_req_id);
1133 1134
}

1135 1136 1137 1138 1139 1140 1141
/**
 * zfcp_scsi_dbf_event_devreset - trace event for Logical Unit or Target Reset
 * @tag: tag indicating success or failure of reset operation
 * @flag: indicates type of reset (Target Reset, Logical Unit Reset)
 * @unit: unit that needs reset
 * @scsi_cmnd: SCSI command which caused this error recovery
 */
1142 1143 1144
void zfcp_scsi_dbf_event_devreset(const char *tag, u8 flag,
				  struct zfcp_unit *unit,
				  struct scsi_cmnd *scsi_cmnd)
1145
{
1146 1147
	zfcp_scsi_dbf_event(flag == FCP_TARGET_RESET ? "trst" : "lrst", tag, 1,
			    unit->port->adapter, scsi_cmnd, NULL, 0);
1148 1149
}

1150 1151
static int zfcp_scsi_dbf_view_format(debug_info_t *id, struct debug_view *view,
				     char *out_buf, const char *in_buf)
1152
{
1153
	struct zfcp_scsi_dbf_record *r = (struct zfcp_scsi_dbf_record *)in_buf;
1154
	struct timespec t;
1155
	char *p = out_buf;
1156

1157
	if (strncmp(r->tag, "dump", ZFCP_DBF_TAG_SIZE) == 0)
1158 1159
		return 0;

1160 1161
	zfcp_dbf_tag(&p, "tag", r->tag);
	zfcp_dbf_tag(&p, "tag2", r->tag2);
1162 1163 1164 1165 1166
	zfcp_dbf_out(&p, "scsi_id", "0x%08x", r->scsi_id);
	zfcp_dbf_out(&p, "scsi_lun", "0x%08x", r->scsi_lun);
	zfcp_dbf_out(&p, "scsi_result", "0x%08x", r->scsi_result);
	zfcp_dbf_out(&p, "scsi_cmnd", "0x%0Lx", r->scsi_cmnd);
	zfcp_dbf_out(&p, "scsi_serial", "0x%016Lx", r->scsi_serial);
1167 1168
	zfcp_dbf_outd(&p, "scsi_opcode", r->scsi_opcode, ZFCP_DBF_SCSI_OPCODE,
		      0, ZFCP_DBF_SCSI_OPCODE);
1169 1170 1171
	zfcp_dbf_out(&p, "scsi_retries", "0x%02x", r->scsi_retries);
	zfcp_dbf_out(&p, "scsi_allowed", "0x%02x", r->scsi_allowed);
	if (strncmp(r->tag, "abrt", ZFCP_DBF_TAG_SIZE) == 0)
1172
		zfcp_dbf_out(&p, "old_fsf_reqid", "0x%0Lx", r->old_fsf_reqid);
1173 1174 1175 1176 1177 1178
	zfcp_dbf_out(&p, "fsf_reqid", "0x%0Lx", r->fsf_reqid);
	zfcp_dbf_out(&p, "fsf_seqno", "0x%08x", r->fsf_seqno);
	zfcp_dbf_timestamp(r->fsf_issued, &t);
	zfcp_dbf_out(&p, "fsf_issued", "%011lu:%06lu", t.tv_sec, t.tv_nsec);

	if (strncmp(r->tag, "rslt", ZFCP_DBF_TAG_SIZE) == 0) {
1179 1180 1181 1182 1183 1184 1185 1186
		zfcp_dbf_out(&p, "fcp_rsp_validity", "0x%02x", r->rsp_validity);
		zfcp_dbf_out(&p, "fcp_rsp_scsi_status", "0x%02x",
			     r->rsp_scsi_status);
		zfcp_dbf_out(&p, "fcp_rsp_resid", "0x%08x", r->rsp_resid);
		zfcp_dbf_out(&p, "fcp_rsp_code", "0x%08x", r->rsp_code);
		zfcp_dbf_out(&p, "fcp_sns_info_len", "0x%08x", r->sns_info_len);
		zfcp_dbf_outd(&p, "fcp_sns_info", r->sns_info,
			      min((int)r->sns_info_len,
1187
			      ZFCP_DBF_SCSI_FCP_SNS_INFO), 0,
1188
			      r->sns_info_len);
1189
	}
1190 1191
	p += sprintf(p, "\n");
	return p - out_buf;
1192 1193
}

1194
static struct debug_view zfcp_scsi_dbf_view = {
1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211
	"structured",
	NULL,
	&zfcp_dbf_view_header,
	&zfcp_scsi_dbf_view_format,
	NULL,
	NULL
};

/**
 * zfcp_adapter_debug_register - registers debug feature for an adapter
 * @adapter: pointer to adapter for which debug features should be registered
 * return: -ENOMEM on error, 0 otherwise
 */
int zfcp_adapter_debug_register(struct zfcp_adapter *adapter)
{
	char dbf_name[DEBUG_MAX_NAME_LEN];

1212 1213 1214 1215 1216 1217 1218 1219 1220 1221
	/* debug feature area which records recovery activity */
	sprintf(dbf_name, "zfcp_%s_rec", zfcp_get_busid_by_adapter(adapter));
	adapter->rec_dbf = debug_register(dbf_name, dbfsize, 1,
					  sizeof(struct zfcp_rec_dbf_record));
	if (!adapter->rec_dbf)
		goto failed;
	debug_register_view(adapter->rec_dbf, &debug_hex_ascii_view);
	debug_register_view(adapter->rec_dbf, &zfcp_rec_dbf_view);
	debug_set_level(adapter->rec_dbf, 3);

1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268
	/* debug feature area which records HBA (FSF and QDIO) conditions */
	sprintf(dbf_name, "zfcp_%s_hba", zfcp_get_busid_by_adapter(adapter));
	adapter->hba_dbf = debug_register(dbf_name, dbfsize, 1,
					  sizeof(struct zfcp_hba_dbf_record));
	if (!adapter->hba_dbf)
		goto failed;
	debug_register_view(adapter->hba_dbf, &debug_hex_ascii_view);
	debug_register_view(adapter->hba_dbf, &zfcp_hba_dbf_view);
	debug_set_level(adapter->hba_dbf, 3);

	/* debug feature area which records SAN command failures and recovery */
	sprintf(dbf_name, "zfcp_%s_san", zfcp_get_busid_by_adapter(adapter));
	adapter->san_dbf = debug_register(dbf_name, dbfsize, 1,
					  sizeof(struct zfcp_san_dbf_record));
	if (!adapter->san_dbf)
		goto failed;
	debug_register_view(adapter->san_dbf, &debug_hex_ascii_view);
	debug_register_view(adapter->san_dbf, &zfcp_san_dbf_view);
	debug_set_level(adapter->san_dbf, 6);

	/* debug feature area which records SCSI command failures and recovery */
	sprintf(dbf_name, "zfcp_%s_scsi", zfcp_get_busid_by_adapter(adapter));
	adapter->scsi_dbf = debug_register(dbf_name, dbfsize, 1,
					   sizeof(struct zfcp_scsi_dbf_record));
	if (!adapter->scsi_dbf)
		goto failed;
	debug_register_view(adapter->scsi_dbf, &debug_hex_ascii_view);
	debug_register_view(adapter->scsi_dbf, &zfcp_scsi_dbf_view);
	debug_set_level(adapter->scsi_dbf, 3);

	return 0;

 failed:
	zfcp_adapter_debug_unregister(adapter);

	return -ENOMEM;
}

/**
 * zfcp_adapter_debug_unregister - unregisters debug feature for an adapter
 * @adapter: pointer to adapter for which debug features should be unregistered
 */
void zfcp_adapter_debug_unregister(struct zfcp_adapter *adapter)
{
	debug_unregister(adapter->scsi_dbf);
	debug_unregister(adapter->san_dbf);
	debug_unregister(adapter->hba_dbf);
1269
	debug_unregister(adapter->rec_dbf);
1270 1271 1272
	adapter->scsi_dbf = NULL;
	adapter->san_dbf = NULL;
	adapter->hba_dbf = NULL;
1273
	adapter->rec_dbf = NULL;
1274
}