[SCSI] isci: kill iphy->isci_port lookups
[linux-2.6.git] / drivers / scsi / isci / phy.h
bloba5e1a9e577b04d2e0de8aff89b7c86dc9f655a47
1 /*
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55 #ifndef _ISCI_PHY_H_
56 #define _ISCI_PHY_H_
58 #include <scsi/sas.h>
59 #include <scsi/libsas.h>
60 #include "isci.h"
61 #include "sas.h"
63 /* This is the timeout value for the SATA phy to wait for a SIGNATURE FIS
64 * before restarting the starting state machine. Technically, the old parallel
65 * ATA specification required up to 30 seconds for a device to issue its
66 * signature FIS as a result of a soft reset. Now we see that devices respond
67 * generally within 15 seconds, but we'll use 25 for now.
69 #define SCIC_SDS_SIGNATURE_FIS_TIMEOUT 25000
71 /* This is the timeout for the SATA OOB/SN because the hardware does not
72 * recognize a hot plug after OOB signal but before the SN signals. We need to
73 * make sure after a hotplug timeout if we have not received the speed event
74 * notification from the hardware that we restart the hardware OOB state
75 * machine.
77 #define SCIC_SDS_SATA_LINK_TRAINING_TIMEOUT 250
79 enum sci_phy_protocol {
80 SCIC_SDS_PHY_PROTOCOL_UNKNOWN,
81 SCIC_SDS_PHY_PROTOCOL_SAS,
82 SCIC_SDS_PHY_PROTOCOL_SATA,
83 SCIC_SDS_MAX_PHY_PROTOCOLS
86 /**
87 * isci_phy - hba local phy infrastructure
88 * @sm:
89 * @protocol: attached device protocol
90 * @phy_index: physical index relative to the controller (0-3)
91 * @bcn_received_while_port_unassigned: bcn to report after port association
92 * @sata_timer: timeout SATA signature FIS arrival
94 struct isci_phy {
95 struct sci_base_state_machine sm;
96 struct isci_port *owning_port;
97 enum sas_linkrate max_negotiated_speed;
98 enum sci_phy_protocol protocol;
99 u8 phy_index;
100 bool bcn_received_while_port_unassigned;
101 bool is_in_link_training;
102 struct sci_timer sata_timer;
103 struct scu_transport_layer_registers __iomem *transport_layer_registers;
104 struct scu_link_layer_registers __iomem *link_layer_registers;
105 struct asd_sas_phy sas_phy;
106 u8 sas_addr[SAS_ADDR_SIZE];
107 union {
108 struct sas_identify_frame iaf;
109 struct dev_to_host_fis fis;
110 } frame_rcvd;
113 static inline struct isci_phy *to_iphy(struct asd_sas_phy *sas_phy)
115 struct isci_phy *iphy = container_of(sas_phy, typeof(*iphy), sas_phy);
117 return iphy;
120 struct sci_phy_cap {
121 union {
122 struct {
124 * The SAS specification indicates the start bit shall
125 * always be set to
126 * 1. This implementation will have the start bit set
127 * to 0 if the PHY CAPABILITIES were either not
128 * received or speed negotiation failed.
130 u8 start:1;
131 u8 tx_ssc_type:1;
132 u8 res1:2;
133 u8 req_logical_linkrate:4;
135 u32 gen1_no_ssc:1;
136 u32 gen1_ssc:1;
137 u32 gen2_no_ssc:1;
138 u32 gen2_ssc:1;
139 u32 gen3_no_ssc:1;
140 u32 gen3_ssc:1;
141 u32 res2:17;
142 u32 parity:1;
144 u32 all;
146 } __packed;
148 /* this data structure reflects the link layer transmit identification reg */
149 struct sci_phy_proto {
150 union {
151 struct {
152 u16 _r_a:1;
153 u16 smp_iport:1;
154 u16 stp_iport:1;
155 u16 ssp_iport:1;
156 u16 _r_b:4;
157 u16 _r_c:1;
158 u16 smp_tport:1;
159 u16 stp_tport:1;
160 u16 ssp_tport:1;
161 u16 _r_d:4;
163 u16 all;
165 } __packed;
169 * struct sci_phy_properties - This structure defines the properties common to
170 * all phys that can be retrieved.
174 struct sci_phy_properties {
176 * This field specifies the port that currently contains the
177 * supplied phy. This field may be set to NULL
178 * if the phy is not currently contained in a port.
180 struct isci_port *iport;
183 * This field specifies the link rate at which the phy is
184 * currently operating.
186 enum sas_linkrate negotiated_link_rate;
189 * This field specifies the index of the phy in relation to other
190 * phys within the controller. This index is zero relative.
192 u8 index;
196 * struct sci_sas_phy_properties - This structure defines the properties,
197 * specific to a SAS phy, that can be retrieved.
201 struct sci_sas_phy_properties {
203 * This field delineates the Identify Address Frame received
204 * from the remote end point.
206 struct sas_identify_frame rcvd_iaf;
209 * This field delineates the Phy capabilities structure received
210 * from the remote end point.
212 struct sci_phy_cap rcvd_cap;
217 * struct sci_sata_phy_properties - This structure defines the properties,
218 * specific to a SATA phy, that can be retrieved.
222 struct sci_sata_phy_properties {
224 * This field delineates the signature FIS received from the
225 * attached target.
227 struct dev_to_host_fis signature_fis;
230 * This field specifies to the user if a port selector is connected
231 * on the specified phy.
233 bool is_port_selector_present;
238 * enum sci_phy_counter_id - This enumeration depicts the various pieces of
239 * optional information that can be retrieved for a specific phy.
243 enum sci_phy_counter_id {
245 * This PHY information field tracks the number of frames received.
247 SCIC_PHY_COUNTER_RECEIVED_FRAME,
250 * This PHY information field tracks the number of frames transmitted.
252 SCIC_PHY_COUNTER_TRANSMITTED_FRAME,
255 * This PHY information field tracks the number of DWORDs received.
257 SCIC_PHY_COUNTER_RECEIVED_FRAME_WORD,
260 * This PHY information field tracks the number of DWORDs transmitted.
262 SCIC_PHY_COUNTER_TRANSMITTED_FRAME_DWORD,
265 * This PHY information field tracks the number of times DWORD
266 * synchronization was lost.
268 SCIC_PHY_COUNTER_LOSS_OF_SYNC_ERROR,
271 * This PHY information field tracks the number of received DWORDs with
272 * running disparity errors.
274 SCIC_PHY_COUNTER_RECEIVED_DISPARITY_ERROR,
277 * This PHY information field tracks the number of received frames with a
278 * CRC error (not including short or truncated frames).
280 SCIC_PHY_COUNTER_RECEIVED_FRAME_CRC_ERROR,
283 * This PHY information field tracks the number of DONE (ACK/NAK TIMEOUT)
284 * primitives received.
286 SCIC_PHY_COUNTER_RECEIVED_DONE_ACK_NAK_TIMEOUT,
289 * This PHY information field tracks the number of DONE (ACK/NAK TIMEOUT)
290 * primitives transmitted.
292 SCIC_PHY_COUNTER_TRANSMITTED_DONE_ACK_NAK_TIMEOUT,
295 * This PHY information field tracks the number of times the inactivity
296 * timer for connections on the phy has been utilized.
298 SCIC_PHY_COUNTER_INACTIVITY_TIMER_EXPIRED,
301 * This PHY information field tracks the number of DONE (CREDIT TIMEOUT)
302 * primitives received.
304 SCIC_PHY_COUNTER_RECEIVED_DONE_CREDIT_TIMEOUT,
307 * This PHY information field tracks the number of DONE (CREDIT TIMEOUT)
308 * primitives transmitted.
310 SCIC_PHY_COUNTER_TRANSMITTED_DONE_CREDIT_TIMEOUT,
313 * This PHY information field tracks the number of CREDIT BLOCKED
314 * primitives received.
315 * @note Depending on remote device implementation, credit blocks
316 * may occur regularly.
318 SCIC_PHY_COUNTER_RECEIVED_CREDIT_BLOCKED,
321 * This PHY information field contains the number of short frames
322 * received. A short frame is simply a frame smaller then what is
323 * allowed by either the SAS or SATA specification.
325 SCIC_PHY_COUNTER_RECEIVED_SHORT_FRAME,
328 * This PHY information field contains the number of frames received after
329 * credit has been exhausted.
331 SCIC_PHY_COUNTER_RECEIVED_FRAME_WITHOUT_CREDIT,
334 * This PHY information field contains the number of frames received after
335 * a DONE has been received.
337 SCIC_PHY_COUNTER_RECEIVED_FRAME_AFTER_DONE,
340 * This PHY information field contains the number of times the phy
341 * failed to achieve DWORD synchronization during speed negotiation.
343 SCIC_PHY_COUNTER_SN_DWORD_SYNC_ERROR
346 enum sci_phy_states {
348 * Simply the initial state for the base domain state machine.
350 SCI_PHY_INITIAL,
353 * This state indicates that the phy has successfully been stopped.
354 * In this state no new IO operations are permitted on this phy.
355 * This state is entered from the INITIAL state.
356 * This state is entered from the STARTING state.
357 * This state is entered from the READY state.
358 * This state is entered from the RESETTING state.
360 SCI_PHY_STOPPED,
363 * This state indicates that the phy is in the process of becomming
364 * ready. In this state no new IO operations are permitted on this phy.
365 * This state is entered from the STOPPED state.
366 * This state is entered from the READY state.
367 * This state is entered from the RESETTING state.
369 SCI_PHY_STARTING,
372 * Initial state
374 SCI_PHY_SUB_INITIAL,
377 * Wait state for the hardware OSSP event type notification
379 SCI_PHY_SUB_AWAIT_OSSP_EN,
382 * Wait state for the PHY speed notification
384 SCI_PHY_SUB_AWAIT_SAS_SPEED_EN,
387 * Wait state for the IAF Unsolicited frame notification
389 SCI_PHY_SUB_AWAIT_IAF_UF,
392 * Wait state for the request to consume power
394 SCI_PHY_SUB_AWAIT_SAS_POWER,
397 * Wait state for request to consume power
399 SCI_PHY_SUB_AWAIT_SATA_POWER,
402 * Wait state for the SATA PHY notification
404 SCI_PHY_SUB_AWAIT_SATA_PHY_EN,
407 * Wait for the SATA PHY speed notification
409 SCI_PHY_SUB_AWAIT_SATA_SPEED_EN,
412 * Wait state for the SIGNATURE FIS unsolicited frame notification
414 SCI_PHY_SUB_AWAIT_SIG_FIS_UF,
417 * Exit state for this state machine
419 SCI_PHY_SUB_FINAL,
422 * This state indicates the the phy is now ready. Thus, the user
423 * is able to perform IO operations utilizing this phy as long as it
424 * is currently part of a valid port.
425 * This state is entered from the STARTING state.
427 SCI_PHY_READY,
430 * This state indicates that the phy is in the process of being reset.
431 * In this state no new IO operations are permitted on this phy.
432 * This state is entered from the READY state.
434 SCI_PHY_RESETTING,
437 * Simply the final state for the base phy state machine.
439 SCI_PHY_FINAL,
442 void sci_phy_construct(
443 struct isci_phy *iphy,
444 struct isci_port *iport,
445 u8 phy_index);
447 struct isci_port *phy_get_non_dummy_port(struct isci_phy *iphy);
449 void sci_phy_set_port(
450 struct isci_phy *iphy,
451 struct isci_port *iport);
453 enum sci_status sci_phy_initialize(
454 struct isci_phy *iphy,
455 struct scu_transport_layer_registers __iomem *transport_layer_registers,
456 struct scu_link_layer_registers __iomem *link_layer_registers);
458 enum sci_status sci_phy_start(
459 struct isci_phy *iphy);
461 enum sci_status sci_phy_stop(
462 struct isci_phy *iphy);
464 enum sci_status sci_phy_reset(
465 struct isci_phy *iphy);
467 void sci_phy_resume(
468 struct isci_phy *iphy);
470 void sci_phy_setup_transport(
471 struct isci_phy *iphy,
472 u32 device_id);
474 enum sci_status sci_phy_event_handler(
475 struct isci_phy *iphy,
476 u32 event_code);
478 enum sci_status sci_phy_frame_handler(
479 struct isci_phy *iphy,
480 u32 frame_index);
482 enum sci_status sci_phy_consume_power_handler(
483 struct isci_phy *iphy);
485 void sci_phy_get_sas_address(
486 struct isci_phy *iphy,
487 struct sci_sas_address *sas_address);
489 void sci_phy_get_attached_sas_address(
490 struct isci_phy *iphy,
491 struct sci_sas_address *sas_address);
493 struct sci_phy_proto;
494 void sci_phy_get_protocols(
495 struct isci_phy *iphy,
496 struct sci_phy_proto *protocols);
497 enum sas_linkrate sci_phy_linkrate(struct isci_phy *iphy);
499 struct isci_host;
500 void isci_phy_init(struct isci_phy *iphy, struct isci_host *ihost, int index);
501 int isci_phy_control(struct asd_sas_phy *phy, enum phy_func func, void *buf);
503 #endif /* !defined(_ISCI_PHY_H_) */