[SCSI] ipr: Add support for logging SAS fabric errors
Adds support for logging SAS fabric errors logged by the ipr firmware. Signed-off-by: Brian King <brking@us.ibm.com> Signed-off-by: James Bottomley <James.Bottomley@SteelEye.com>
This commit is contained in:
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9d66bdf81f
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49dc6a1818
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@ -1321,6 +1321,219 @@ static void ipr_log_dual_ioa_error(struct ipr_ioa_cfg *ioa_cfg,
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offsetof(struct ipr_hostrcb_type_07_error, data)));
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}
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static const struct {
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u8 active;
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char *desc;
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} path_active_desc[] = {
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{ IPR_PATH_NO_INFO, "Path" },
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{ IPR_PATH_ACTIVE, "Active path" },
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{ IPR_PATH_NOT_ACTIVE, "Inactive path" }
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};
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static const struct {
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u8 state;
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char *desc;
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} path_state_desc[] = {
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{ IPR_PATH_STATE_NO_INFO, "has no path state information available" },
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{ IPR_PATH_HEALTHY, "is healthy" },
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{ IPR_PATH_DEGRADED, "is degraded" },
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{ IPR_PATH_FAILED, "is failed" }
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};
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/**
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* ipr_log_fabric_path - Log a fabric path error
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* @hostrcb: hostrcb struct
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* @fabric: fabric descriptor
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*
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* Return value:
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* none
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**/
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static void ipr_log_fabric_path(struct ipr_hostrcb *hostrcb,
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struct ipr_hostrcb_fabric_desc *fabric)
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{
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int i, j;
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u8 path_state = fabric->path_state;
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u8 active = path_state & IPR_PATH_ACTIVE_MASK;
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u8 state = path_state & IPR_PATH_STATE_MASK;
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for (i = 0; i < ARRAY_SIZE(path_active_desc); i++) {
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if (path_active_desc[i].active != active)
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continue;
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for (j = 0; j < ARRAY_SIZE(path_state_desc); j++) {
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if (path_state_desc[j].state != state)
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continue;
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if (fabric->cascaded_expander == 0xff && fabric->phy == 0xff) {
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ipr_hcam_err(hostrcb, "%s %s: IOA Port=%d\n",
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path_active_desc[i].desc, path_state_desc[j].desc,
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fabric->ioa_port);
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} else if (fabric->cascaded_expander == 0xff) {
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ipr_hcam_err(hostrcb, "%s %s: IOA Port=%d, Phy=%d\n",
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path_active_desc[i].desc, path_state_desc[j].desc,
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fabric->ioa_port, fabric->phy);
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} else if (fabric->phy == 0xff) {
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ipr_hcam_err(hostrcb, "%s %s: IOA Port=%d, Cascade=%d\n",
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path_active_desc[i].desc, path_state_desc[j].desc,
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fabric->ioa_port, fabric->cascaded_expander);
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} else {
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ipr_hcam_err(hostrcb, "%s %s: IOA Port=%d, Cascade=%d, Phy=%d\n",
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path_active_desc[i].desc, path_state_desc[j].desc,
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fabric->ioa_port, fabric->cascaded_expander, fabric->phy);
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}
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return;
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}
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}
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ipr_err("Path state=%02X IOA Port=%d Cascade=%d Phy=%d\n", path_state,
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fabric->ioa_port, fabric->cascaded_expander, fabric->phy);
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}
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static const struct {
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u8 type;
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char *desc;
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} path_type_desc[] = {
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{ IPR_PATH_CFG_IOA_PORT, "IOA port" },
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{ IPR_PATH_CFG_EXP_PORT, "Expander port" },
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{ IPR_PATH_CFG_DEVICE_PORT, "Device port" },
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{ IPR_PATH_CFG_DEVICE_LUN, "Device LUN" }
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};
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static const struct {
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u8 status;
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char *desc;
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} path_status_desc[] = {
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{ IPR_PATH_CFG_NO_PROB, "Functional" },
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{ IPR_PATH_CFG_DEGRADED, "Degraded" },
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{ IPR_PATH_CFG_FAILED, "Failed" },
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{ IPR_PATH_CFG_SUSPECT, "Suspect" },
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{ IPR_PATH_NOT_DETECTED, "Missing" },
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{ IPR_PATH_INCORRECT_CONN, "Incorrectly connected" }
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};
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static const char *link_rate[] = {
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"unknown",
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"disabled",
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"phy reset problem",
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"spinup hold",
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"port selector",
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"unknown",
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"unknown",
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"unknown",
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"1.5Gbps",
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"3.0Gbps",
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"unknown",
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"unknown",
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"unknown",
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"unknown",
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"unknown",
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"unknown"
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};
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/**
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* ipr_log_path_elem - Log a fabric path element.
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* @hostrcb: hostrcb struct
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* @cfg: fabric path element struct
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*
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* Return value:
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* none
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**/
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static void ipr_log_path_elem(struct ipr_hostrcb *hostrcb,
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struct ipr_hostrcb_config_element *cfg)
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{
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int i, j;
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u8 type = cfg->type_status & IPR_PATH_CFG_TYPE_MASK;
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u8 status = cfg->type_status & IPR_PATH_CFG_STATUS_MASK;
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if (type == IPR_PATH_CFG_NOT_EXIST)
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return;
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for (i = 0; i < ARRAY_SIZE(path_type_desc); i++) {
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if (path_type_desc[i].type != type)
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continue;
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for (j = 0; j < ARRAY_SIZE(path_status_desc); j++) {
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if (path_status_desc[j].status != status)
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continue;
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if (type == IPR_PATH_CFG_IOA_PORT) {
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ipr_hcam_err(hostrcb, "%s %s: Phy=%d, Link rate=%s, WWN=%08X%08X\n",
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path_status_desc[j].desc, path_type_desc[i].desc,
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cfg->phy, link_rate[cfg->link_rate & IPR_PHY_LINK_RATE_MASK],
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be32_to_cpu(cfg->wwid[0]), be32_to_cpu(cfg->wwid[1]));
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} else {
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if (cfg->cascaded_expander == 0xff && cfg->phy == 0xff) {
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ipr_hcam_err(hostrcb, "%s %s: Link rate=%s, WWN=%08X%08X\n",
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path_status_desc[j].desc, path_type_desc[i].desc,
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link_rate[cfg->link_rate & IPR_PHY_LINK_RATE_MASK],
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be32_to_cpu(cfg->wwid[0]), be32_to_cpu(cfg->wwid[1]));
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} else if (cfg->cascaded_expander == 0xff) {
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ipr_hcam_err(hostrcb, "%s %s: Phy=%d, Link rate=%s, "
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"WWN=%08X%08X\n", path_status_desc[j].desc,
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path_type_desc[i].desc, cfg->phy,
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link_rate[cfg->link_rate & IPR_PHY_LINK_RATE_MASK],
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be32_to_cpu(cfg->wwid[0]), be32_to_cpu(cfg->wwid[1]));
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} else if (cfg->phy == 0xff) {
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ipr_hcam_err(hostrcb, "%s %s: Cascade=%d, Link rate=%s, "
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"WWN=%08X%08X\n", path_status_desc[j].desc,
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path_type_desc[i].desc, cfg->cascaded_expander,
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link_rate[cfg->link_rate & IPR_PHY_LINK_RATE_MASK],
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be32_to_cpu(cfg->wwid[0]), be32_to_cpu(cfg->wwid[1]));
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} else {
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ipr_hcam_err(hostrcb, "%s %s: Cascade=%d, Phy=%d, Link rate=%s "
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"WWN=%08X%08X\n", path_status_desc[j].desc,
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path_type_desc[i].desc, cfg->cascaded_expander, cfg->phy,
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link_rate[cfg->link_rate & IPR_PHY_LINK_RATE_MASK],
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be32_to_cpu(cfg->wwid[0]), be32_to_cpu(cfg->wwid[1]));
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}
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}
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return;
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}
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}
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ipr_hcam_err(hostrcb, "Path element=%02X: Cascade=%d Phy=%d Link rate=%s "
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"WWN=%08X%08X\n", cfg->type_status, cfg->cascaded_expander, cfg->phy,
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link_rate[cfg->link_rate & IPR_PHY_LINK_RATE_MASK],
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be32_to_cpu(cfg->wwid[0]), be32_to_cpu(cfg->wwid[1]));
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}
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/**
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* ipr_log_fabric_error - Log a fabric error.
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* @ioa_cfg: ioa config struct
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* @hostrcb: hostrcb struct
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*
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* Return value:
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* none
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**/
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static void ipr_log_fabric_error(struct ipr_ioa_cfg *ioa_cfg,
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struct ipr_hostrcb *hostrcb)
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{
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struct ipr_hostrcb_type_20_error *error;
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struct ipr_hostrcb_fabric_desc *fabric;
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struct ipr_hostrcb_config_element *cfg;
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int i, add_len;
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error = &hostrcb->hcam.u.error.u.type_20_error;
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error->failure_reason[sizeof(error->failure_reason) - 1] = '\0';
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ipr_hcam_err(hostrcb, "%s\n", error->failure_reason);
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add_len = be32_to_cpu(hostrcb->hcam.length) -
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(offsetof(struct ipr_hostrcb_error, u) +
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offsetof(struct ipr_hostrcb_type_20_error, desc));
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for (i = 0, fabric = error->desc; i < error->num_entries; i++) {
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ipr_log_fabric_path(hostrcb, fabric);
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for_each_fabric_cfg(fabric, cfg)
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ipr_log_path_elem(hostrcb, cfg);
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add_len -= be16_to_cpu(fabric->length);
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fabric = (struct ipr_hostrcb_fabric_desc *)
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((unsigned long)fabric + be16_to_cpu(fabric->length));
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}
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ipr_log_hex_data((u32 *)fabric, add_len);
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}
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/**
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* ipr_log_generic_error - Log an adapter error.
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* @ioa_cfg: ioa config struct
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@ -1394,13 +1607,7 @@ static void ipr_handle_log_data(struct ipr_ioa_cfg *ioa_cfg,
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if (!ipr_error_table[error_index].log_hcam)
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return;
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if (ipr_is_device(&hostrcb->hcam.u.error.failing_dev_res_addr)) {
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ipr_ra_err(ioa_cfg, hostrcb->hcam.u.error.failing_dev_res_addr,
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"%s\n", ipr_error_table[error_index].error);
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} else {
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dev_err(&ioa_cfg->pdev->dev, "%s\n",
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ipr_error_table[error_index].error);
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}
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ipr_hcam_err(hostrcb, "%s\n", ipr_error_table[error_index].error);
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/* Set indication we have logged an error */
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ioa_cfg->errors_logged++;
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@ -1437,6 +1644,9 @@ static void ipr_handle_log_data(struct ipr_ioa_cfg *ioa_cfg,
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case IPR_HOST_RCB_OVERLAY_ID_17:
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ipr_log_enhanced_dual_ioa_error(ioa_cfg, hostrcb);
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break;
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case IPR_HOST_RCB_OVERLAY_ID_20:
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ipr_log_fabric_error(ioa_cfg, hostrcb);
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break;
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case IPR_HOST_RCB_OVERLAY_ID_1:
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case IPR_HOST_RCB_OVERLAY_ID_DEFAULT:
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default:
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@ -6812,6 +7022,7 @@ static int __devinit ipr_alloc_mem(struct ipr_ioa_cfg *ioa_cfg)
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ioa_cfg->hostrcb[i]->hostrcb_dma =
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ioa_cfg->hostrcb_dma[i] + offsetof(struct ipr_hostrcb, hcam);
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ioa_cfg->hostrcb[i]->ioa_cfg = ioa_cfg;
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list_add_tail(&ioa_cfg->hostrcb[i]->queue, &ioa_cfg->hostrcb_free_q);
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}
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@ -737,6 +737,64 @@ struct ipr_hostrcb_type_17_error {
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u32 data[476];
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}__attribute__((packed, aligned (4)));
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struct ipr_hostrcb_config_element {
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u8 type_status;
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#define IPR_PATH_CFG_TYPE_MASK 0xF0
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#define IPR_PATH_CFG_NOT_EXIST 0x00
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#define IPR_PATH_CFG_IOA_PORT 0x10
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#define IPR_PATH_CFG_EXP_PORT 0x20
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#define IPR_PATH_CFG_DEVICE_PORT 0x30
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#define IPR_PATH_CFG_DEVICE_LUN 0x40
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#define IPR_PATH_CFG_STATUS_MASK 0x0F
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#define IPR_PATH_CFG_NO_PROB 0x00
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#define IPR_PATH_CFG_DEGRADED 0x01
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#define IPR_PATH_CFG_FAILED 0x02
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#define IPR_PATH_CFG_SUSPECT 0x03
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#define IPR_PATH_NOT_DETECTED 0x04
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#define IPR_PATH_INCORRECT_CONN 0x05
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u8 cascaded_expander;
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u8 phy;
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u8 link_rate;
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#define IPR_PHY_LINK_RATE_MASK 0x0F
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__be32 wwid[2];
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}__attribute__((packed, aligned (4)));
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struct ipr_hostrcb_fabric_desc {
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__be16 length;
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u8 ioa_port;
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u8 cascaded_expander;
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u8 phy;
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u8 path_state;
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#define IPR_PATH_ACTIVE_MASK 0xC0
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#define IPR_PATH_NO_INFO 0x00
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#define IPR_PATH_ACTIVE 0x40
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#define IPR_PATH_NOT_ACTIVE 0x80
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#define IPR_PATH_STATE_MASK 0x0F
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#define IPR_PATH_STATE_NO_INFO 0x00
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#define IPR_PATH_HEALTHY 0x01
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#define IPR_PATH_DEGRADED 0x02
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#define IPR_PATH_FAILED 0x03
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__be16 num_entries;
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struct ipr_hostrcb_config_element elem[1];
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}__attribute__((packed, aligned (4)));
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#define for_each_fabric_cfg(fabric, cfg) \
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for (cfg = (fabric)->elem; \
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cfg < ((fabric)->elem + be16_to_cpu((fabric)->num_entries)); \
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cfg++)
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struct ipr_hostrcb_type_20_error {
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u8 failure_reason[64];
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u8 reserved[3];
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u8 num_entries;
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struct ipr_hostrcb_fabric_desc desc[1];
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}__attribute__((packed, aligned (4)));
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struct ipr_hostrcb_error {
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__be32 failing_dev_ioasc;
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struct ipr_res_addr failing_dev_res_addr;
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@ -753,6 +811,7 @@ struct ipr_hostrcb_error {
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struct ipr_hostrcb_type_13_error type_13_error;
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struct ipr_hostrcb_type_14_error type_14_error;
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struct ipr_hostrcb_type_17_error type_17_error;
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struct ipr_hostrcb_type_20_error type_20_error;
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} u;
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}__attribute__((packed, aligned (4)));
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@ -792,6 +851,7 @@ struct ipr_hcam {
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#define IPR_HOST_RCB_OVERLAY_ID_14 0x14
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#define IPR_HOST_RCB_OVERLAY_ID_16 0x16
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#define IPR_HOST_RCB_OVERLAY_ID_17 0x17
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#define IPR_HOST_RCB_OVERLAY_ID_20 0x20
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#define IPR_HOST_RCB_OVERLAY_ID_DEFAULT 0xFF
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u8 reserved1[3];
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@ -811,6 +871,7 @@ struct ipr_hostrcb {
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struct ipr_hcam hcam;
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dma_addr_t hostrcb_dma;
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struct list_head queue;
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struct ipr_ioa_cfg *ioa_cfg;
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};
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/* IPR smart dump table structures */
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@ -1289,6 +1350,17 @@ struct ipr_ucode_image_header {
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} \
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}
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#define ipr_hcam_err(hostrcb, fmt, ...) \
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{ \
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if (ipr_is_device(&(hostrcb)->hcam.u.error.failing_dev_res_addr)) { \
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ipr_ra_err((hostrcb)->ioa_cfg, \
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(hostrcb)->hcam.u.error.failing_dev_res_addr, \
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fmt, ##__VA_ARGS__); \
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} else { \
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dev_err(&(hostrcb)->ioa_cfg->pdev->dev, fmt, ##__VA_ARGS__); \
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} \
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}
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#define ipr_trace ipr_dbg("%s: %s: Line: %d\n",\
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__FILE__, __FUNCTION__, __LINE__)
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