diff options
Diffstat (limited to 'drivers/scsi/isci/stp_request.c')
-rw-r--r-- | drivers/scsi/isci/stp_request.c | 1590 |
1 files changed, 1590 insertions, 0 deletions
diff --git a/drivers/scsi/isci/stp_request.c b/drivers/scsi/isci/stp_request.c new file mode 100644 index 000000000000..298086afa5aa --- /dev/null +++ b/drivers/scsi/isci/stp_request.c | |||
@@ -0,0 +1,1590 @@ | |||
1 | /* | ||
2 | * This file is provided under a dual BSD/GPLv2 license. When using or | ||
3 | * redistributing this file, you may do so under either license. | ||
4 | * | ||
5 | * GPL LICENSE SUMMARY | ||
6 | * | ||
7 | * Copyright(c) 2008 - 2011 Intel Corporation. All rights reserved. | ||
8 | * | ||
9 | * This program is free software; you can redistribute it and/or modify | ||
10 | * it under the terms of version 2 of the GNU General Public License as | ||
11 | * published by the Free Software Foundation. | ||
12 | * | ||
13 | * This program is distributed in the hope that it will be useful, but | ||
14 | * WITHOUT ANY WARRANTY; without even the implied warranty of | ||
15 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | ||
16 | * General Public License for more details. | ||
17 | * | ||
18 | * You should have received a copy of the GNU General Public License | ||
19 | * along with this program; if not, write to the Free Software | ||
20 | * Foundation, Inc., 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA. | ||
21 | * The full GNU General Public License is included in this distribution | ||
22 | * in the file called LICENSE.GPL. | ||
23 | * | ||
24 | * BSD LICENSE | ||
25 | * | ||
26 | * Copyright(c) 2008 - 2011 Intel Corporation. All rights reserved. | ||
27 | * All rights reserved. | ||
28 | * | ||
29 | * Redistribution and use in source and binary forms, with or without | ||
30 | * modification, are permitted provided that the following conditions | ||
31 | * are met: | ||
32 | * | ||
33 | * * Redistributions of source code must retain the above copyright | ||
34 | * notice, this list of conditions and the following disclaimer. | ||
35 | * * Redistributions in binary form must reproduce the above copyright | ||
36 | * notice, this list of conditions and the following disclaimer in | ||
37 | * the documentation and/or other materials provided with the | ||
38 | * distribution. | ||
39 | * * Neither the name of Intel Corporation nor the names of its | ||
40 | * contributors may be used to endorse or promote products derived | ||
41 | * from this software without specific prior written permission. | ||
42 | * | ||
43 | * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS | ||
44 | * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT | ||
45 | * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR | ||
46 | * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT | ||
47 | * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, | ||
48 | * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT | ||
49 | * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, | ||
50 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY | ||
51 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT | ||
52 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE | ||
53 | * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. | ||
54 | */ | ||
55 | |||
56 | #include <scsi/sas.h> | ||
57 | #include "sas.h" | ||
58 | #include "state_machine.h" | ||
59 | #include "remote_device.h" | ||
60 | #include "stp_request.h" | ||
61 | #include "unsolicited_frame_control.h" | ||
62 | #include "scu_completion_codes.h" | ||
63 | #include "scu_event_codes.h" | ||
64 | #include "scu_task_context.h" | ||
65 | #include "request.h" | ||
66 | |||
67 | void scic_sds_stp_request_assign_buffers(struct scic_sds_request *sci_req) | ||
68 | { | ||
69 | if (sci_req->was_tag_assigned_by_user == false) | ||
70 | sci_req->task_context_buffer = &sci_req->tc; | ||
71 | } | ||
72 | |||
73 | /** | ||
74 | * This method is will fill in the SCU Task Context for any type of SATA | ||
75 | * request. This is called from the various SATA constructors. | ||
76 | * @sci_req: The general IO request object which is to be used in | ||
77 | * constructing the SCU task context. | ||
78 | * @task_context: The buffer pointer for the SCU task context which is being | ||
79 | * constructed. | ||
80 | * | ||
81 | * The general io request construction is complete. The buffer assignment for | ||
82 | * the command buffer is complete. none Revisit task context construction to | ||
83 | * determine what is common for SSP/SMP/STP task context structures. | ||
84 | */ | ||
85 | static void scu_sata_reqeust_construct_task_context( | ||
86 | struct scic_sds_request *sci_req, | ||
87 | struct scu_task_context *task_context) | ||
88 | { | ||
89 | dma_addr_t dma_addr; | ||
90 | struct scic_sds_controller *controller; | ||
91 | struct scic_sds_remote_device *target_device; | ||
92 | struct scic_sds_port *target_port; | ||
93 | |||
94 | controller = scic_sds_request_get_controller(sci_req); | ||
95 | target_device = scic_sds_request_get_device(sci_req); | ||
96 | target_port = scic_sds_request_get_port(sci_req); | ||
97 | |||
98 | /* Fill in the TC with the its required data */ | ||
99 | task_context->abort = 0; | ||
100 | task_context->priority = SCU_TASK_PRIORITY_NORMAL; | ||
101 | task_context->initiator_request = 1; | ||
102 | task_context->connection_rate = target_device->connection_rate; | ||
103 | task_context->protocol_engine_index = | ||
104 | scic_sds_controller_get_protocol_engine_group(controller); | ||
105 | task_context->logical_port_index = | ||
106 | scic_sds_port_get_index(target_port); | ||
107 | task_context->protocol_type = SCU_TASK_CONTEXT_PROTOCOL_STP; | ||
108 | task_context->valid = SCU_TASK_CONTEXT_VALID; | ||
109 | task_context->context_type = SCU_TASK_CONTEXT_TYPE; | ||
110 | |||
111 | task_context->remote_node_index = | ||
112 | scic_sds_remote_device_get_index(sci_req->target_device); | ||
113 | task_context->command_code = 0; | ||
114 | |||
115 | task_context->link_layer_control = 0; | ||
116 | task_context->do_not_dma_ssp_good_response = 1; | ||
117 | task_context->strict_ordering = 0; | ||
118 | task_context->control_frame = 0; | ||
119 | task_context->timeout_enable = 0; | ||
120 | task_context->block_guard_enable = 0; | ||
121 | |||
122 | task_context->address_modifier = 0; | ||
123 | task_context->task_phase = 0x01; | ||
124 | |||
125 | task_context->ssp_command_iu_length = | ||
126 | (sizeof(struct host_to_dev_fis) - sizeof(u32)) / sizeof(u32); | ||
127 | |||
128 | /* Set the first word of the H2D REG FIS */ | ||
129 | task_context->type.words[0] = *(u32 *)&sci_req->stp.cmd; | ||
130 | |||
131 | if (sci_req->was_tag_assigned_by_user) { | ||
132 | /* | ||
133 | * Build the task context now since we have already read | ||
134 | * the data | ||
135 | */ | ||
136 | sci_req->post_context = | ||
137 | (SCU_CONTEXT_COMMAND_REQUEST_TYPE_POST_TC | | ||
138 | (scic_sds_controller_get_protocol_engine_group( | ||
139 | controller) << | ||
140 | SCU_CONTEXT_COMMAND_PROTOCOL_ENGINE_GROUP_SHIFT) | | ||
141 | (scic_sds_port_get_index(target_port) << | ||
142 | SCU_CONTEXT_COMMAND_LOGICAL_PORT_SHIFT) | | ||
143 | scic_sds_io_tag_get_index(sci_req->io_tag)); | ||
144 | } else { | ||
145 | /* | ||
146 | * Build the task context now since we have already read | ||
147 | * the data. | ||
148 | * I/O tag index is not assigned because we have to wait | ||
149 | * until we get a TCi. | ||
150 | */ | ||
151 | sci_req->post_context = | ||
152 | (SCU_CONTEXT_COMMAND_REQUEST_TYPE_POST_TC | | ||
153 | (scic_sds_controller_get_protocol_engine_group( | ||
154 | controller) << | ||
155 | SCU_CONTEXT_COMMAND_PROTOCOL_ENGINE_GROUP_SHIFT) | | ||
156 | (scic_sds_port_get_index(target_port) << | ||
157 | SCU_CONTEXT_COMMAND_LOGICAL_PORT_SHIFT)); | ||
158 | } | ||
159 | |||
160 | /* | ||
161 | * Copy the physical address for the command buffer to the SCU Task | ||
162 | * Context. We must offset the command buffer by 4 bytes because the | ||
163 | * first 4 bytes are transfered in the body of the TC. | ||
164 | */ | ||
165 | dma_addr = scic_io_request_get_dma_addr(sci_req, | ||
166 | ((char *) &sci_req->stp.cmd) + | ||
167 | sizeof(u32)); | ||
168 | |||
169 | task_context->command_iu_upper = upper_32_bits(dma_addr); | ||
170 | task_context->command_iu_lower = lower_32_bits(dma_addr); | ||
171 | |||
172 | /* SATA Requests do not have a response buffer */ | ||
173 | task_context->response_iu_upper = 0; | ||
174 | task_context->response_iu_lower = 0; | ||
175 | } | ||
176 | |||
177 | /** | ||
178 | * | ||
179 | * @sci_req: | ||
180 | * | ||
181 | * This method will perform any general sata request construction. What part of | ||
182 | * SATA IO request construction is general? none | ||
183 | */ | ||
184 | static void scic_sds_stp_non_ncq_request_construct( | ||
185 | struct scic_sds_request *sci_req) | ||
186 | { | ||
187 | sci_req->has_started_substate_machine = true; | ||
188 | } | ||
189 | |||
190 | /** | ||
191 | * | ||
192 | * @sci_req: This parameter specifies the request to be constructed as an | ||
193 | * optimized request. | ||
194 | * @optimized_task_type: This parameter specifies whether the request is to be | ||
195 | * an UDMA request or a NCQ request. - A value of 0 indicates UDMA. - A | ||
196 | * value of 1 indicates NCQ. | ||
197 | * | ||
198 | * This method will perform request construction common to all types of STP | ||
199 | * requests that are optimized by the silicon (i.e. UDMA, NCQ). This method | ||
200 | * returns an indication as to whether the construction was successful. | ||
201 | */ | ||
202 | static void scic_sds_stp_optimized_request_construct(struct scic_sds_request *sci_req, | ||
203 | u8 optimized_task_type, | ||
204 | u32 len, | ||
205 | enum dma_data_direction dir) | ||
206 | { | ||
207 | struct scu_task_context *task_context = sci_req->task_context_buffer; | ||
208 | |||
209 | /* Build the STP task context structure */ | ||
210 | scu_sata_reqeust_construct_task_context(sci_req, task_context); | ||
211 | |||
212 | /* Copy over the SGL elements */ | ||
213 | scic_sds_request_build_sgl(sci_req); | ||
214 | |||
215 | /* Copy over the number of bytes to be transfered */ | ||
216 | task_context->transfer_length_bytes = len; | ||
217 | |||
218 | if (dir == DMA_TO_DEVICE) { | ||
219 | /* | ||
220 | * The difference between the DMA IN and DMA OUT request task type | ||
221 | * values are consistent with the difference between FPDMA READ | ||
222 | * and FPDMA WRITE values. Add the supplied task type parameter | ||
223 | * to this difference to set the task type properly for this | ||
224 | * DATA OUT (WRITE) case. */ | ||
225 | task_context->task_type = optimized_task_type + (SCU_TASK_TYPE_DMA_OUT | ||
226 | - SCU_TASK_TYPE_DMA_IN); | ||
227 | } else { | ||
228 | /* | ||
229 | * For the DATA IN (READ) case, simply save the supplied | ||
230 | * optimized task type. */ | ||
231 | task_context->task_type = optimized_task_type; | ||
232 | } | ||
233 | } | ||
234 | |||
235 | /** | ||
236 | * | ||
237 | * @sci_req: This parameter specifies the request to be constructed. | ||
238 | * | ||
239 | * This method will construct the STP UDMA request and its associated TC data. | ||
240 | * This method returns an indication as to whether the construction was | ||
241 | * successful. SCI_SUCCESS Currently this method always returns this value. | ||
242 | */ | ||
243 | enum sci_status scic_sds_stp_ncq_request_construct(struct scic_sds_request *sci_req, | ||
244 | u32 len, | ||
245 | enum dma_data_direction dir) | ||
246 | { | ||
247 | scic_sds_stp_optimized_request_construct(sci_req, | ||
248 | SCU_TASK_TYPE_FPDMAQ_READ, | ||
249 | len, dir); | ||
250 | return SCI_SUCCESS; | ||
251 | } | ||
252 | |||
253 | /** | ||
254 | * scu_stp_raw_request_construct_task_context - | ||
255 | * @sci_req: This parameter specifies the STP request object for which to | ||
256 | * construct a RAW command frame task context. | ||
257 | * @task_context: This parameter specifies the SCU specific task context buffer | ||
258 | * to construct. | ||
259 | * | ||
260 | * This method performs the operations common to all SATA/STP requests | ||
261 | * utilizing the raw frame method. none | ||
262 | */ | ||
263 | static void scu_stp_raw_request_construct_task_context( | ||
264 | struct scic_sds_stp_request *stp_req, | ||
265 | struct scu_task_context *task_context) | ||
266 | { | ||
267 | struct scic_sds_request *sci_req = to_sci_req(stp_req); | ||
268 | |||
269 | scu_sata_reqeust_construct_task_context(sci_req, task_context); | ||
270 | |||
271 | task_context->control_frame = 0; | ||
272 | task_context->priority = SCU_TASK_PRIORITY_NORMAL; | ||
273 | task_context->task_type = SCU_TASK_TYPE_SATA_RAW_FRAME; | ||
274 | task_context->type.stp.fis_type = FIS_REGH2D; | ||
275 | task_context->transfer_length_bytes = sizeof(struct host_to_dev_fis) - sizeof(u32); | ||
276 | } | ||
277 | |||
278 | void scic_stp_io_request_set_ncq_tag( | ||
279 | struct scic_sds_request *req, | ||
280 | u16 ncq_tag) | ||
281 | { | ||
282 | /** | ||
283 | * @note This could be made to return an error to the user if the user | ||
284 | * attempts to set the NCQ tag in the wrong state. | ||
285 | */ | ||
286 | req->task_context_buffer->type.stp.ncq_tag = ncq_tag; | ||
287 | } | ||
288 | |||
289 | /** | ||
290 | * | ||
291 | * @sci_req: | ||
292 | * | ||
293 | * Get the next SGL element from the request. - Check on which SGL element pair | ||
294 | * we are working - if working on SLG pair element A - advance to element B - | ||
295 | * else - check to see if there are more SGL element pairs for this IO request | ||
296 | * - if there are more SGL element pairs - advance to the next pair and return | ||
297 | * element A struct scu_sgl_element* | ||
298 | */ | ||
299 | static struct scu_sgl_element *scic_sds_stp_request_pio_get_next_sgl(struct scic_sds_stp_request *stp_req) | ||
300 | { | ||
301 | struct scu_sgl_element *current_sgl; | ||
302 | struct scic_sds_request *sci_req = to_sci_req(stp_req); | ||
303 | struct scic_sds_request_pio_sgl *pio_sgl = &stp_req->type.pio.request_current; | ||
304 | |||
305 | if (pio_sgl->sgl_set == SCU_SGL_ELEMENT_PAIR_A) { | ||
306 | if (pio_sgl->sgl_pair->B.address_lower == 0 && | ||
307 | pio_sgl->sgl_pair->B.address_upper == 0) { | ||
308 | current_sgl = NULL; | ||
309 | } else { | ||
310 | pio_sgl->sgl_set = SCU_SGL_ELEMENT_PAIR_B; | ||
311 | current_sgl = &pio_sgl->sgl_pair->B; | ||
312 | } | ||
313 | } else { | ||
314 | if (pio_sgl->sgl_pair->next_pair_lower == 0 && | ||
315 | pio_sgl->sgl_pair->next_pair_upper == 0) { | ||
316 | current_sgl = NULL; | ||
317 | } else { | ||
318 | u64 phys_addr; | ||
319 | |||
320 | phys_addr = pio_sgl->sgl_pair->next_pair_upper; | ||
321 | phys_addr <<= 32; | ||
322 | phys_addr |= pio_sgl->sgl_pair->next_pair_lower; | ||
323 | |||
324 | pio_sgl->sgl_pair = scic_request_get_virt_addr(sci_req, phys_addr); | ||
325 | pio_sgl->sgl_set = SCU_SGL_ELEMENT_PAIR_A; | ||
326 | current_sgl = &pio_sgl->sgl_pair->A; | ||
327 | } | ||
328 | } | ||
329 | |||
330 | return current_sgl; | ||
331 | } | ||
332 | |||
333 | /** | ||
334 | * | ||
335 | * @sci_req: | ||
336 | * @completion_code: | ||
337 | * | ||
338 | * This method processes a TC completion. The expected TC completion is for | ||
339 | * the transmission of the H2D register FIS containing the SATA/STP non-data | ||
340 | * request. This method always successfully processes the TC completion. | ||
341 | * SCI_SUCCESS This value is always returned. | ||
342 | */ | ||
343 | static enum sci_status scic_sds_stp_request_non_data_await_h2d_tc_completion_handler( | ||
344 | struct scic_sds_request *sci_req, | ||
345 | u32 completion_code) | ||
346 | { | ||
347 | switch (SCU_GET_COMPLETION_TL_STATUS(completion_code)) { | ||
348 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_GOOD): | ||
349 | scic_sds_request_set_status( | ||
350 | sci_req, SCU_TASK_DONE_GOOD, SCI_SUCCESS | ||
351 | ); | ||
352 | |||
353 | sci_base_state_machine_change_state( | ||
354 | &sci_req->started_substate_machine, | ||
355 | SCIC_SDS_STP_REQUEST_STARTED_NON_DATA_AWAIT_D2H_SUBSTATE | ||
356 | ); | ||
357 | break; | ||
358 | |||
359 | default: | ||
360 | /* | ||
361 | * All other completion status cause the IO to be complete. If a NAK | ||
362 | * was received, then it is up to the user to retry the request. */ | ||
363 | scic_sds_request_set_status( | ||
364 | sci_req, | ||
365 | SCU_NORMALIZE_COMPLETION_STATUS(completion_code), | ||
366 | SCI_FAILURE_CONTROLLER_SPECIFIC_IO_ERR | ||
367 | ); | ||
368 | |||
369 | sci_base_state_machine_change_state( | ||
370 | &sci_req->state_machine, SCI_BASE_REQUEST_STATE_COMPLETED); | ||
371 | break; | ||
372 | } | ||
373 | |||
374 | return SCI_SUCCESS; | ||
375 | } | ||
376 | |||
377 | /** | ||
378 | * | ||
379 | * @request: This parameter specifies the request for which a frame has been | ||
380 | * received. | ||
381 | * @frame_index: This parameter specifies the index of the frame that has been | ||
382 | * received. | ||
383 | * | ||
384 | * This method processes frames received from the target while waiting for a | ||
385 | * device to host register FIS. If a non-register FIS is received during this | ||
386 | * time, it is treated as a protocol violation from an IO perspective. Indicate | ||
387 | * if the received frame was processed successfully. | ||
388 | */ | ||
389 | static enum sci_status scic_sds_stp_request_non_data_await_d2h_frame_handler( | ||
390 | struct scic_sds_request *sci_req, | ||
391 | u32 frame_index) | ||
392 | { | ||
393 | enum sci_status status; | ||
394 | struct dev_to_host_fis *frame_header; | ||
395 | u32 *frame_buffer; | ||
396 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
397 | struct scic_sds_controller *scic = sci_req->owning_controller; | ||
398 | |||
399 | status = scic_sds_unsolicited_frame_control_get_header(&scic->uf_control, | ||
400 | frame_index, | ||
401 | (void **)&frame_header); | ||
402 | |||
403 | if (status != SCI_SUCCESS) { | ||
404 | dev_err(scic_to_dev(sci_req->owning_controller), | ||
405 | "%s: SCIC IO Request 0x%p could not get frame header " | ||
406 | "for frame index %d, status %x\n", | ||
407 | __func__, stp_req, frame_index, status); | ||
408 | |||
409 | return status; | ||
410 | } | ||
411 | |||
412 | switch (frame_header->fis_type) { | ||
413 | case FIS_REGD2H: | ||
414 | scic_sds_unsolicited_frame_control_get_buffer(&scic->uf_control, | ||
415 | frame_index, | ||
416 | (void **)&frame_buffer); | ||
417 | |||
418 | scic_sds_controller_copy_sata_response(&sci_req->stp.rsp, | ||
419 | frame_header, | ||
420 | frame_buffer); | ||
421 | |||
422 | /* The command has completed with error */ | ||
423 | scic_sds_request_set_status(sci_req, SCU_TASK_DONE_CHECK_RESPONSE, | ||
424 | SCI_FAILURE_IO_RESPONSE_VALID); | ||
425 | break; | ||
426 | |||
427 | default: | ||
428 | dev_warn(scic_to_dev(scic), | ||
429 | "%s: IO Request:0x%p Frame Id:%d protocol " | ||
430 | "violation occurred\n", __func__, stp_req, | ||
431 | frame_index); | ||
432 | |||
433 | scic_sds_request_set_status(sci_req, SCU_TASK_DONE_UNEXP_FIS, | ||
434 | SCI_FAILURE_PROTOCOL_VIOLATION); | ||
435 | break; | ||
436 | } | ||
437 | |||
438 | sci_base_state_machine_change_state(&sci_req->state_machine, | ||
439 | SCI_BASE_REQUEST_STATE_COMPLETED); | ||
440 | |||
441 | /* Frame has been decoded return it to the controller */ | ||
442 | scic_sds_controller_release_frame(scic, frame_index); | ||
443 | |||
444 | return status; | ||
445 | } | ||
446 | |||
447 | /* --------------------------------------------------------------------------- */ | ||
448 | |||
449 | static const struct scic_sds_io_request_state_handler scic_sds_stp_request_started_non_data_substate_handler_table[] = { | ||
450 | [SCIC_SDS_STP_REQUEST_STARTED_NON_DATA_AWAIT_H2D_COMPLETION_SUBSTATE] = { | ||
451 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
452 | .tc_completion_handler = scic_sds_stp_request_non_data_await_h2d_tc_completion_handler, | ||
453 | }, | ||
454 | [SCIC_SDS_STP_REQUEST_STARTED_NON_DATA_AWAIT_D2H_SUBSTATE] = { | ||
455 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
456 | .frame_handler = scic_sds_stp_request_non_data_await_d2h_frame_handler, | ||
457 | } | ||
458 | }; | ||
459 | |||
460 | static void scic_sds_stp_request_started_non_data_await_h2d_completion_enter( | ||
461 | void *object) | ||
462 | { | ||
463 | struct scic_sds_request *sci_req = object; | ||
464 | |||
465 | SET_STATE_HANDLER( | ||
466 | sci_req, | ||
467 | scic_sds_stp_request_started_non_data_substate_handler_table, | ||
468 | SCIC_SDS_STP_REQUEST_STARTED_NON_DATA_AWAIT_H2D_COMPLETION_SUBSTATE | ||
469 | ); | ||
470 | |||
471 | scic_sds_remote_device_set_working_request( | ||
472 | sci_req->target_device, sci_req | ||
473 | ); | ||
474 | } | ||
475 | |||
476 | static void scic_sds_stp_request_started_non_data_await_d2h_enter(void *object) | ||
477 | { | ||
478 | struct scic_sds_request *sci_req = object; | ||
479 | |||
480 | SET_STATE_HANDLER( | ||
481 | sci_req, | ||
482 | scic_sds_stp_request_started_non_data_substate_handler_table, | ||
483 | SCIC_SDS_STP_REQUEST_STARTED_NON_DATA_AWAIT_D2H_SUBSTATE | ||
484 | ); | ||
485 | } | ||
486 | |||
487 | /* --------------------------------------------------------------------------- */ | ||
488 | |||
489 | static const struct sci_base_state scic_sds_stp_request_started_non_data_substate_table[] = { | ||
490 | [SCIC_SDS_STP_REQUEST_STARTED_NON_DATA_AWAIT_H2D_COMPLETION_SUBSTATE] = { | ||
491 | .enter_state = scic_sds_stp_request_started_non_data_await_h2d_completion_enter, | ||
492 | }, | ||
493 | [SCIC_SDS_STP_REQUEST_STARTED_NON_DATA_AWAIT_D2H_SUBSTATE] = { | ||
494 | .enter_state = scic_sds_stp_request_started_non_data_await_d2h_enter, | ||
495 | }, | ||
496 | }; | ||
497 | |||
498 | enum sci_status scic_sds_stp_non_data_request_construct(struct scic_sds_request *sci_req) | ||
499 | { | ||
500 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
501 | |||
502 | scic_sds_stp_non_ncq_request_construct(sci_req); | ||
503 | |||
504 | /* Build the STP task context structure */ | ||
505 | scu_stp_raw_request_construct_task_context(stp_req, sci_req->task_context_buffer); | ||
506 | |||
507 | sci_base_state_machine_construct(&sci_req->started_substate_machine, | ||
508 | sci_req, | ||
509 | scic_sds_stp_request_started_non_data_substate_table, | ||
510 | SCIC_SDS_STP_REQUEST_STARTED_NON_DATA_AWAIT_H2D_COMPLETION_SUBSTATE); | ||
511 | |||
512 | return SCI_SUCCESS; | ||
513 | } | ||
514 | |||
515 | #define SCU_MAX_FRAME_BUFFER_SIZE 0x400 /* 1K is the maximum SCU frame data payload */ | ||
516 | |||
517 | /* transmit DATA_FIS from (current sgl + offset) for input | ||
518 | * parameter length. current sgl and offset is alreay stored in the IO request | ||
519 | */ | ||
520 | static enum sci_status scic_sds_stp_request_pio_data_out_trasmit_data_frame( | ||
521 | struct scic_sds_request *sci_req, | ||
522 | u32 length) | ||
523 | { | ||
524 | struct scic_sds_controller *scic = sci_req->owning_controller; | ||
525 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
526 | struct scu_task_context *task_context; | ||
527 | struct scu_sgl_element *current_sgl; | ||
528 | |||
529 | /* Recycle the TC and reconstruct it for sending out DATA FIS containing | ||
530 | * for the data from current_sgl+offset for the input length | ||
531 | */ | ||
532 | task_context = scic_sds_controller_get_task_context_buffer(scic, | ||
533 | sci_req->io_tag); | ||
534 | |||
535 | if (stp_req->type.pio.request_current.sgl_set == SCU_SGL_ELEMENT_PAIR_A) | ||
536 | current_sgl = &stp_req->type.pio.request_current.sgl_pair->A; | ||
537 | else | ||
538 | current_sgl = &stp_req->type.pio.request_current.sgl_pair->B; | ||
539 | |||
540 | /* update the TC */ | ||
541 | task_context->command_iu_upper = current_sgl->address_upper; | ||
542 | task_context->command_iu_lower = current_sgl->address_lower; | ||
543 | task_context->transfer_length_bytes = length; | ||
544 | task_context->type.stp.fis_type = FIS_DATA; | ||
545 | |||
546 | /* send the new TC out. */ | ||
547 | return scic_controller_continue_io(sci_req); | ||
548 | } | ||
549 | |||
550 | static enum sci_status scic_sds_stp_request_pio_data_out_transmit_data(struct scic_sds_request *sci_req) | ||
551 | { | ||
552 | |||
553 | struct scu_sgl_element *current_sgl; | ||
554 | u32 sgl_offset; | ||
555 | u32 remaining_bytes_in_current_sgl = 0; | ||
556 | enum sci_status status = SCI_SUCCESS; | ||
557 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
558 | |||
559 | sgl_offset = stp_req->type.pio.request_current.sgl_offset; | ||
560 | |||
561 | if (stp_req->type.pio.request_current.sgl_set == SCU_SGL_ELEMENT_PAIR_A) { | ||
562 | current_sgl = &(stp_req->type.pio.request_current.sgl_pair->A); | ||
563 | remaining_bytes_in_current_sgl = stp_req->type.pio.request_current.sgl_pair->A.length - sgl_offset; | ||
564 | } else { | ||
565 | current_sgl = &(stp_req->type.pio.request_current.sgl_pair->B); | ||
566 | remaining_bytes_in_current_sgl = stp_req->type.pio.request_current.sgl_pair->B.length - sgl_offset; | ||
567 | } | ||
568 | |||
569 | |||
570 | if (stp_req->type.pio.pio_transfer_bytes > 0) { | ||
571 | if (stp_req->type.pio.pio_transfer_bytes >= remaining_bytes_in_current_sgl) { | ||
572 | /* recycle the TC and send the H2D Data FIS from (current sgl + sgl_offset) and length = remaining_bytes_in_current_sgl */ | ||
573 | status = scic_sds_stp_request_pio_data_out_trasmit_data_frame(sci_req, remaining_bytes_in_current_sgl); | ||
574 | if (status == SCI_SUCCESS) { | ||
575 | stp_req->type.pio.pio_transfer_bytes -= remaining_bytes_in_current_sgl; | ||
576 | |||
577 | /* update the current sgl, sgl_offset and save for future */ | ||
578 | current_sgl = scic_sds_stp_request_pio_get_next_sgl(stp_req); | ||
579 | sgl_offset = 0; | ||
580 | } | ||
581 | } else if (stp_req->type.pio.pio_transfer_bytes < remaining_bytes_in_current_sgl) { | ||
582 | /* recycle the TC and send the H2D Data FIS from (current sgl + sgl_offset) and length = type.pio.pio_transfer_bytes */ | ||
583 | scic_sds_stp_request_pio_data_out_trasmit_data_frame(sci_req, stp_req->type.pio.pio_transfer_bytes); | ||
584 | |||
585 | if (status == SCI_SUCCESS) { | ||
586 | /* Sgl offset will be adjusted and saved for future */ | ||
587 | sgl_offset += stp_req->type.pio.pio_transfer_bytes; | ||
588 | current_sgl->address_lower += stp_req->type.pio.pio_transfer_bytes; | ||
589 | stp_req->type.pio.pio_transfer_bytes = 0; | ||
590 | } | ||
591 | } | ||
592 | } | ||
593 | |||
594 | if (status == SCI_SUCCESS) { | ||
595 | stp_req->type.pio.request_current.sgl_offset = sgl_offset; | ||
596 | } | ||
597 | |||
598 | return status; | ||
599 | } | ||
600 | |||
601 | /** | ||
602 | * | ||
603 | * @stp_request: The request that is used for the SGL processing. | ||
604 | * @data_buffer: The buffer of data to be copied. | ||
605 | * @length: The length of the data transfer. | ||
606 | * | ||
607 | * Copy the data from the buffer for the length specified to the IO reqeust SGL | ||
608 | * specified data region. enum sci_status | ||
609 | */ | ||
610 | static enum sci_status | ||
611 | scic_sds_stp_request_pio_data_in_copy_data_buffer(struct scic_sds_stp_request *stp_req, | ||
612 | u8 *data_buf, u32 len) | ||
613 | { | ||
614 | struct scic_sds_request *sci_req; | ||
615 | struct isci_request *ireq; | ||
616 | u8 *src_addr; | ||
617 | int copy_len; | ||
618 | struct sas_task *task; | ||
619 | struct scatterlist *sg; | ||
620 | void *kaddr; | ||
621 | int total_len = len; | ||
622 | |||
623 | sci_req = to_sci_req(stp_req); | ||
624 | ireq = sci_req_to_ireq(sci_req); | ||
625 | task = isci_request_access_task(ireq); | ||
626 | src_addr = data_buf; | ||
627 | |||
628 | if (task->num_scatter > 0) { | ||
629 | sg = task->scatter; | ||
630 | |||
631 | while (total_len > 0) { | ||
632 | struct page *page = sg_page(sg); | ||
633 | |||
634 | copy_len = min_t(int, total_len, sg_dma_len(sg)); | ||
635 | kaddr = kmap_atomic(page, KM_IRQ0); | ||
636 | memcpy(kaddr + sg->offset, src_addr, copy_len); | ||
637 | kunmap_atomic(kaddr, KM_IRQ0); | ||
638 | total_len -= copy_len; | ||
639 | src_addr += copy_len; | ||
640 | sg = sg_next(sg); | ||
641 | } | ||
642 | } else { | ||
643 | BUG_ON(task->total_xfer_len < total_len); | ||
644 | memcpy(task->scatter, src_addr, total_len); | ||
645 | } | ||
646 | |||
647 | return SCI_SUCCESS; | ||
648 | } | ||
649 | |||
650 | /** | ||
651 | * | ||
652 | * @sci_req: The PIO DATA IN request that is to receive the data. | ||
653 | * @data_buffer: The buffer to copy from. | ||
654 | * | ||
655 | * Copy the data buffer to the io request data region. enum sci_status | ||
656 | */ | ||
657 | static enum sci_status scic_sds_stp_request_pio_data_in_copy_data( | ||
658 | struct scic_sds_stp_request *sci_req, | ||
659 | u8 *data_buffer) | ||
660 | { | ||
661 | enum sci_status status; | ||
662 | |||
663 | /* | ||
664 | * If there is less than 1K remaining in the transfer request | ||
665 | * copy just the data for the transfer */ | ||
666 | if (sci_req->type.pio.pio_transfer_bytes < SCU_MAX_FRAME_BUFFER_SIZE) { | ||
667 | status = scic_sds_stp_request_pio_data_in_copy_data_buffer( | ||
668 | sci_req, data_buffer, sci_req->type.pio.pio_transfer_bytes); | ||
669 | |||
670 | if (status == SCI_SUCCESS) | ||
671 | sci_req->type.pio.pio_transfer_bytes = 0; | ||
672 | } else { | ||
673 | /* We are transfering the whole frame so copy */ | ||
674 | status = scic_sds_stp_request_pio_data_in_copy_data_buffer( | ||
675 | sci_req, data_buffer, SCU_MAX_FRAME_BUFFER_SIZE); | ||
676 | |||
677 | if (status == SCI_SUCCESS) | ||
678 | sci_req->type.pio.pio_transfer_bytes -= SCU_MAX_FRAME_BUFFER_SIZE; | ||
679 | } | ||
680 | |||
681 | return status; | ||
682 | } | ||
683 | |||
684 | /** | ||
685 | * | ||
686 | * @sci_req: | ||
687 | * @completion_code: | ||
688 | * | ||
689 | * enum sci_status | ||
690 | */ | ||
691 | static enum sci_status scic_sds_stp_request_pio_await_h2d_completion_tc_completion_handler( | ||
692 | struct scic_sds_request *sci_req, | ||
693 | u32 completion_code) | ||
694 | { | ||
695 | enum sci_status status = SCI_SUCCESS; | ||
696 | |||
697 | switch (SCU_GET_COMPLETION_TL_STATUS(completion_code)) { | ||
698 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_GOOD): | ||
699 | scic_sds_request_set_status( | ||
700 | sci_req, SCU_TASK_DONE_GOOD, SCI_SUCCESS | ||
701 | ); | ||
702 | |||
703 | sci_base_state_machine_change_state( | ||
704 | &sci_req->started_substate_machine, | ||
705 | SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_FRAME_SUBSTATE | ||
706 | ); | ||
707 | break; | ||
708 | |||
709 | default: | ||
710 | /* | ||
711 | * All other completion status cause the IO to be complete. If a NAK | ||
712 | * was received, then it is up to the user to retry the request. */ | ||
713 | scic_sds_request_set_status( | ||
714 | sci_req, | ||
715 | SCU_NORMALIZE_COMPLETION_STATUS(completion_code), | ||
716 | SCI_FAILURE_CONTROLLER_SPECIFIC_IO_ERR | ||
717 | ); | ||
718 | |||
719 | sci_base_state_machine_change_state( | ||
720 | &sci_req->state_machine, | ||
721 | SCI_BASE_REQUEST_STATE_COMPLETED | ||
722 | ); | ||
723 | break; | ||
724 | } | ||
725 | |||
726 | return status; | ||
727 | } | ||
728 | |||
729 | static enum sci_status scic_sds_stp_request_pio_await_frame_frame_handler(struct scic_sds_request *sci_req, | ||
730 | u32 frame_index) | ||
731 | { | ||
732 | struct scic_sds_controller *scic = sci_req->owning_controller; | ||
733 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
734 | struct isci_request *ireq = sci_req_to_ireq(sci_req); | ||
735 | struct sas_task *task = isci_request_access_task(ireq); | ||
736 | struct dev_to_host_fis *frame_header; | ||
737 | enum sci_status status; | ||
738 | u32 *frame_buffer; | ||
739 | |||
740 | status = scic_sds_unsolicited_frame_control_get_header(&scic->uf_control, | ||
741 | frame_index, | ||
742 | (void **)&frame_header); | ||
743 | |||
744 | if (status != SCI_SUCCESS) { | ||
745 | dev_err(scic_to_dev(scic), | ||
746 | "%s: SCIC IO Request 0x%p could not get frame header " | ||
747 | "for frame index %d, status %x\n", | ||
748 | __func__, stp_req, frame_index, status); | ||
749 | return status; | ||
750 | } | ||
751 | |||
752 | switch (frame_header->fis_type) { | ||
753 | case FIS_PIO_SETUP: | ||
754 | /* Get from the frame buffer the PIO Setup Data */ | ||
755 | scic_sds_unsolicited_frame_control_get_buffer(&scic->uf_control, | ||
756 | frame_index, | ||
757 | (void **)&frame_buffer); | ||
758 | |||
759 | /* Get the data from the PIO Setup The SCU Hardware returns | ||
760 | * first word in the frame_header and the rest of the data is in | ||
761 | * the frame buffer so we need to back up one dword | ||
762 | */ | ||
763 | |||
764 | /* transfer_count: first 16bits in the 4th dword */ | ||
765 | stp_req->type.pio.pio_transfer_bytes = frame_buffer[3] & 0xffff; | ||
766 | |||
767 | /* ending_status: 4th byte in the 3rd dword */ | ||
768 | stp_req->type.pio.ending_status = (frame_buffer[2] >> 24) & 0xff; | ||
769 | |||
770 | scic_sds_controller_copy_sata_response(&sci_req->stp.rsp, | ||
771 | frame_header, | ||
772 | frame_buffer); | ||
773 | |||
774 | sci_req->stp.rsp.status = stp_req->type.pio.ending_status; | ||
775 | |||
776 | /* The next state is dependent on whether the | ||
777 | * request was PIO Data-in or Data out | ||
778 | */ | ||
779 | if (task->data_dir == DMA_FROM_DEVICE) { | ||
780 | sci_base_state_machine_change_state(&sci_req->started_substate_machine, | ||
781 | SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_IN_AWAIT_DATA_SUBSTATE); | ||
782 | } else if (task->data_dir == DMA_TO_DEVICE) { | ||
783 | /* Transmit data */ | ||
784 | status = scic_sds_stp_request_pio_data_out_transmit_data(sci_req); | ||
785 | if (status != SCI_SUCCESS) | ||
786 | break; | ||
787 | sci_base_state_machine_change_state(&sci_req->started_substate_machine, | ||
788 | SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_OUT_TRANSMIT_DATA_SUBSTATE); | ||
789 | } | ||
790 | break; | ||
791 | case FIS_SETDEVBITS: | ||
792 | sci_base_state_machine_change_state(&sci_req->started_substate_machine, | ||
793 | SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_FRAME_SUBSTATE); | ||
794 | break; | ||
795 | case FIS_REGD2H: | ||
796 | if (frame_header->status & ATA_BUSY) { | ||
797 | /* Now why is the drive sending a D2H Register FIS when | ||
798 | * it is still busy? Do nothing since we are still in | ||
799 | * the right state. | ||
800 | */ | ||
801 | dev_dbg(scic_to_dev(scic), | ||
802 | "%s: SCIC PIO Request 0x%p received " | ||
803 | "D2H Register FIS with BSY status " | ||
804 | "0x%x\n", __func__, stp_req, | ||
805 | frame_header->status); | ||
806 | break; | ||
807 | } | ||
808 | |||
809 | scic_sds_unsolicited_frame_control_get_buffer(&scic->uf_control, | ||
810 | frame_index, | ||
811 | (void **)&frame_buffer); | ||
812 | |||
813 | scic_sds_controller_copy_sata_response(&sci_req->stp.req, | ||
814 | frame_header, | ||
815 | frame_buffer); | ||
816 | |||
817 | scic_sds_request_set_status(sci_req, | ||
818 | SCU_TASK_DONE_CHECK_RESPONSE, | ||
819 | SCI_FAILURE_IO_RESPONSE_VALID); | ||
820 | |||
821 | sci_base_state_machine_change_state(&sci_req->state_machine, | ||
822 | SCI_BASE_REQUEST_STATE_COMPLETED); | ||
823 | break; | ||
824 | default: | ||
825 | /* FIXME: what do we do here? */ | ||
826 | break; | ||
827 | } | ||
828 | |||
829 | /* Frame is decoded return it to the controller */ | ||
830 | scic_sds_controller_release_frame(scic, frame_index); | ||
831 | |||
832 | return status; | ||
833 | } | ||
834 | |||
835 | static enum sci_status scic_sds_stp_request_pio_data_in_await_data_frame_handler(struct scic_sds_request *sci_req, | ||
836 | u32 frame_index) | ||
837 | { | ||
838 | enum sci_status status; | ||
839 | struct dev_to_host_fis *frame_header; | ||
840 | struct sata_fis_data *frame_buffer; | ||
841 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
842 | struct scic_sds_controller *scic = sci_req->owning_controller; | ||
843 | |||
844 | status = scic_sds_unsolicited_frame_control_get_header(&scic->uf_control, | ||
845 | frame_index, | ||
846 | (void **)&frame_header); | ||
847 | |||
848 | if (status != SCI_SUCCESS) { | ||
849 | dev_err(scic_to_dev(scic), | ||
850 | "%s: SCIC IO Request 0x%p could not get frame header " | ||
851 | "for frame index %d, status %x\n", | ||
852 | __func__, stp_req, frame_index, status); | ||
853 | return status; | ||
854 | } | ||
855 | |||
856 | if (frame_header->fis_type == FIS_DATA) { | ||
857 | if (stp_req->type.pio.request_current.sgl_pair == NULL) { | ||
858 | sci_req->saved_rx_frame_index = frame_index; | ||
859 | stp_req->type.pio.pio_transfer_bytes = 0; | ||
860 | } else { | ||
861 | scic_sds_unsolicited_frame_control_get_buffer(&scic->uf_control, | ||
862 | frame_index, | ||
863 | (void **)&frame_buffer); | ||
864 | |||
865 | status = scic_sds_stp_request_pio_data_in_copy_data(stp_req, | ||
866 | (u8 *)frame_buffer); | ||
867 | |||
868 | /* Frame is decoded return it to the controller */ | ||
869 | scic_sds_controller_release_frame(scic, frame_index); | ||
870 | } | ||
871 | |||
872 | /* Check for the end of the transfer, are there more | ||
873 | * bytes remaining for this data transfer | ||
874 | */ | ||
875 | if (status != SCI_SUCCESS || | ||
876 | stp_req->type.pio.pio_transfer_bytes != 0) | ||
877 | return status; | ||
878 | |||
879 | if ((stp_req->type.pio.ending_status & ATA_BUSY) == 0) { | ||
880 | scic_sds_request_set_status(sci_req, | ||
881 | SCU_TASK_DONE_CHECK_RESPONSE, | ||
882 | SCI_FAILURE_IO_RESPONSE_VALID); | ||
883 | |||
884 | sci_base_state_machine_change_state(&sci_req->state_machine, | ||
885 | SCI_BASE_REQUEST_STATE_COMPLETED); | ||
886 | } else { | ||
887 | sci_base_state_machine_change_state(&sci_req->started_substate_machine, | ||
888 | SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_FRAME_SUBSTATE); | ||
889 | } | ||
890 | } else { | ||
891 | dev_err(scic_to_dev(scic), | ||
892 | "%s: SCIC PIO Request 0x%p received frame %d " | ||
893 | "with fis type 0x%02x when expecting a data " | ||
894 | "fis.\n", __func__, stp_req, frame_index, | ||
895 | frame_header->fis_type); | ||
896 | |||
897 | scic_sds_request_set_status(sci_req, | ||
898 | SCU_TASK_DONE_GOOD, | ||
899 | SCI_FAILURE_IO_REQUIRES_SCSI_ABORT); | ||
900 | |||
901 | sci_base_state_machine_change_state(&sci_req->state_machine, | ||
902 | SCI_BASE_REQUEST_STATE_COMPLETED); | ||
903 | |||
904 | /* Frame is decoded return it to the controller */ | ||
905 | scic_sds_controller_release_frame(scic, frame_index); | ||
906 | } | ||
907 | |||
908 | return status; | ||
909 | } | ||
910 | |||
911 | |||
912 | /** | ||
913 | * | ||
914 | * @sci_req: | ||
915 | * @completion_code: | ||
916 | * | ||
917 | * enum sci_status | ||
918 | */ | ||
919 | static enum sci_status scic_sds_stp_request_pio_data_out_await_data_transmit_completion_tc_completion_handler( | ||
920 | |||
921 | struct scic_sds_request *sci_req, | ||
922 | u32 completion_code) | ||
923 | { | ||
924 | enum sci_status status = SCI_SUCCESS; | ||
925 | bool all_frames_transferred = false; | ||
926 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
927 | |||
928 | switch (SCU_GET_COMPLETION_TL_STATUS(completion_code)) { | ||
929 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_GOOD): | ||
930 | /* Transmit data */ | ||
931 | if (stp_req->type.pio.pio_transfer_bytes != 0) { | ||
932 | status = scic_sds_stp_request_pio_data_out_transmit_data(sci_req); | ||
933 | if (status == SCI_SUCCESS) { | ||
934 | if (stp_req->type.pio.pio_transfer_bytes == 0) | ||
935 | all_frames_transferred = true; | ||
936 | } | ||
937 | } else if (stp_req->type.pio.pio_transfer_bytes == 0) { | ||
938 | /* | ||
939 | * this will happen if the all data is written at the | ||
940 | * first time after the pio setup fis is received | ||
941 | */ | ||
942 | all_frames_transferred = true; | ||
943 | } | ||
944 | |||
945 | /* all data transferred. */ | ||
946 | if (all_frames_transferred) { | ||
947 | /* | ||
948 | * Change the state to SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_IN_AWAIT_FRAME_SUBSTATE | ||
949 | * and wait for PIO_SETUP fis / or D2H REg fis. */ | ||
950 | sci_base_state_machine_change_state( | ||
951 | &sci_req->started_substate_machine, | ||
952 | SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_FRAME_SUBSTATE | ||
953 | ); | ||
954 | } | ||
955 | break; | ||
956 | |||
957 | default: | ||
958 | /* | ||
959 | * All other completion status cause the IO to be complete. If a NAK | ||
960 | * was received, then it is up to the user to retry the request. */ | ||
961 | scic_sds_request_set_status( | ||
962 | sci_req, | ||
963 | SCU_NORMALIZE_COMPLETION_STATUS(completion_code), | ||
964 | SCI_FAILURE_CONTROLLER_SPECIFIC_IO_ERR | ||
965 | ); | ||
966 | |||
967 | sci_base_state_machine_change_state( | ||
968 | &sci_req->state_machine, | ||
969 | SCI_BASE_REQUEST_STATE_COMPLETED | ||
970 | ); | ||
971 | break; | ||
972 | } | ||
973 | |||
974 | return status; | ||
975 | } | ||
976 | |||
977 | /** | ||
978 | * | ||
979 | * @request: This is the request which is receiving the event. | ||
980 | * @event_code: This is the event code that the request on which the request is | ||
981 | * expected to take action. | ||
982 | * | ||
983 | * This method will handle any link layer events while waiting for the data | ||
984 | * frame. enum sci_status SCI_SUCCESS SCI_FAILURE | ||
985 | */ | ||
986 | static enum sci_status scic_sds_stp_request_pio_data_in_await_data_event_handler( | ||
987 | struct scic_sds_request *request, | ||
988 | u32 event_code) | ||
989 | { | ||
990 | enum sci_status status; | ||
991 | |||
992 | switch (scu_get_event_specifier(event_code)) { | ||
993 | case SCU_TASK_DONE_CRC_ERR << SCU_EVENT_SPECIFIC_CODE_SHIFT: | ||
994 | /* | ||
995 | * We are waiting for data and the SCU has R_ERR the data frame. | ||
996 | * Go back to waiting for the D2H Register FIS */ | ||
997 | sci_base_state_machine_change_state( | ||
998 | &request->started_substate_machine, | ||
999 | SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_FRAME_SUBSTATE | ||
1000 | ); | ||
1001 | |||
1002 | status = SCI_SUCCESS; | ||
1003 | break; | ||
1004 | |||
1005 | default: | ||
1006 | dev_err(scic_to_dev(request->owning_controller), | ||
1007 | "%s: SCIC PIO Request 0x%p received unexpected " | ||
1008 | "event 0x%08x\n", | ||
1009 | __func__, request, event_code); | ||
1010 | |||
1011 | /* / @todo Should we fail the PIO request when we get an unexpected event? */ | ||
1012 | status = SCI_FAILURE; | ||
1013 | break; | ||
1014 | } | ||
1015 | |||
1016 | return status; | ||
1017 | } | ||
1018 | |||
1019 | /* --------------------------------------------------------------------------- */ | ||
1020 | |||
1021 | static const struct scic_sds_io_request_state_handler scic_sds_stp_request_started_pio_substate_handler_table[] = { | ||
1022 | [SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_H2D_COMPLETION_SUBSTATE] = { | ||
1023 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1024 | .tc_completion_handler = scic_sds_stp_request_pio_await_h2d_completion_tc_completion_handler, | ||
1025 | }, | ||
1026 | [SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_FRAME_SUBSTATE] = { | ||
1027 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1028 | .frame_handler = scic_sds_stp_request_pio_await_frame_frame_handler | ||
1029 | }, | ||
1030 | [SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_IN_AWAIT_DATA_SUBSTATE] = { | ||
1031 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1032 | .event_handler = scic_sds_stp_request_pio_data_in_await_data_event_handler, | ||
1033 | .frame_handler = scic_sds_stp_request_pio_data_in_await_data_frame_handler | ||
1034 | }, | ||
1035 | [SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_OUT_TRANSMIT_DATA_SUBSTATE] = { | ||
1036 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1037 | .tc_completion_handler = scic_sds_stp_request_pio_data_out_await_data_transmit_completion_tc_completion_handler, | ||
1038 | } | ||
1039 | }; | ||
1040 | |||
1041 | static void scic_sds_stp_request_started_pio_await_h2d_completion_enter( | ||
1042 | void *object) | ||
1043 | { | ||
1044 | struct scic_sds_request *sci_req = object; | ||
1045 | |||
1046 | SET_STATE_HANDLER( | ||
1047 | sci_req, | ||
1048 | scic_sds_stp_request_started_pio_substate_handler_table, | ||
1049 | SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_H2D_COMPLETION_SUBSTATE | ||
1050 | ); | ||
1051 | |||
1052 | scic_sds_remote_device_set_working_request( | ||
1053 | sci_req->target_device, sci_req); | ||
1054 | } | ||
1055 | |||
1056 | static void scic_sds_stp_request_started_pio_await_frame_enter(void *object) | ||
1057 | { | ||
1058 | struct scic_sds_request *sci_req = object; | ||
1059 | |||
1060 | SET_STATE_HANDLER( | ||
1061 | sci_req, | ||
1062 | scic_sds_stp_request_started_pio_substate_handler_table, | ||
1063 | SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_FRAME_SUBSTATE | ||
1064 | ); | ||
1065 | } | ||
1066 | |||
1067 | static void scic_sds_stp_request_started_pio_data_in_await_data_enter( | ||
1068 | void *object) | ||
1069 | { | ||
1070 | struct scic_sds_request *sci_req = object; | ||
1071 | |||
1072 | SET_STATE_HANDLER( | ||
1073 | sci_req, | ||
1074 | scic_sds_stp_request_started_pio_substate_handler_table, | ||
1075 | SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_IN_AWAIT_DATA_SUBSTATE | ||
1076 | ); | ||
1077 | } | ||
1078 | |||
1079 | static void scic_sds_stp_request_started_pio_data_out_transmit_data_enter( | ||
1080 | void *object) | ||
1081 | { | ||
1082 | struct scic_sds_request *sci_req = object; | ||
1083 | |||
1084 | SET_STATE_HANDLER( | ||
1085 | sci_req, | ||
1086 | scic_sds_stp_request_started_pio_substate_handler_table, | ||
1087 | SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_OUT_TRANSMIT_DATA_SUBSTATE | ||
1088 | ); | ||
1089 | } | ||
1090 | |||
1091 | /* --------------------------------------------------------------------------- */ | ||
1092 | |||
1093 | static const struct sci_base_state scic_sds_stp_request_started_pio_substate_table[] = { | ||
1094 | [SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_H2D_COMPLETION_SUBSTATE] = { | ||
1095 | .enter_state = scic_sds_stp_request_started_pio_await_h2d_completion_enter, | ||
1096 | }, | ||
1097 | [SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_FRAME_SUBSTATE] = { | ||
1098 | .enter_state = scic_sds_stp_request_started_pio_await_frame_enter, | ||
1099 | }, | ||
1100 | [SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_IN_AWAIT_DATA_SUBSTATE] = { | ||
1101 | .enter_state = scic_sds_stp_request_started_pio_data_in_await_data_enter, | ||
1102 | }, | ||
1103 | [SCIC_SDS_STP_REQUEST_STARTED_PIO_DATA_OUT_TRANSMIT_DATA_SUBSTATE] = { | ||
1104 | .enter_state = scic_sds_stp_request_started_pio_data_out_transmit_data_enter, | ||
1105 | } | ||
1106 | }; | ||
1107 | |||
1108 | enum sci_status | ||
1109 | scic_sds_stp_pio_request_construct(struct scic_sds_request *sci_req, | ||
1110 | bool copy_rx_frame) | ||
1111 | { | ||
1112 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
1113 | struct scic_sds_stp_pio_request *pio = &stp_req->type.pio; | ||
1114 | |||
1115 | scic_sds_stp_non_ncq_request_construct(sci_req); | ||
1116 | |||
1117 | scu_stp_raw_request_construct_task_context(stp_req, | ||
1118 | sci_req->task_context_buffer); | ||
1119 | |||
1120 | pio->current_transfer_bytes = 0; | ||
1121 | pio->ending_error = 0; | ||
1122 | pio->ending_status = 0; | ||
1123 | |||
1124 | pio->request_current.sgl_offset = 0; | ||
1125 | pio->request_current.sgl_set = SCU_SGL_ELEMENT_PAIR_A; | ||
1126 | |||
1127 | if (copy_rx_frame) { | ||
1128 | scic_sds_request_build_sgl(sci_req); | ||
1129 | /* Since the IO request copy of the TC contains the same data as | ||
1130 | * the actual TC this pointer is vaild for either. | ||
1131 | */ | ||
1132 | pio->request_current.sgl_pair = &sci_req->task_context_buffer->sgl_pair_ab; | ||
1133 | } else { | ||
1134 | /* The user does not want the data copied to the SGL buffer location */ | ||
1135 | pio->request_current.sgl_pair = NULL; | ||
1136 | } | ||
1137 | |||
1138 | sci_base_state_machine_construct(&sci_req->started_substate_machine, | ||
1139 | sci_req, | ||
1140 | scic_sds_stp_request_started_pio_substate_table, | ||
1141 | SCIC_SDS_STP_REQUEST_STARTED_PIO_AWAIT_H2D_COMPLETION_SUBSTATE); | ||
1142 | |||
1143 | return SCI_SUCCESS; | ||
1144 | } | ||
1145 | |||
1146 | static void scic_sds_stp_request_udma_complete_request( | ||
1147 | struct scic_sds_request *request, | ||
1148 | u32 scu_status, | ||
1149 | enum sci_status sci_status) | ||
1150 | { | ||
1151 | scic_sds_request_set_status(request, scu_status, sci_status); | ||
1152 | sci_base_state_machine_change_state(&request->state_machine, | ||
1153 | SCI_BASE_REQUEST_STATE_COMPLETED); | ||
1154 | } | ||
1155 | |||
1156 | static enum sci_status scic_sds_stp_request_udma_general_frame_handler(struct scic_sds_request *sci_req, | ||
1157 | u32 frame_index) | ||
1158 | { | ||
1159 | struct scic_sds_controller *scic = sci_req->owning_controller; | ||
1160 | struct dev_to_host_fis *frame_header; | ||
1161 | enum sci_status status; | ||
1162 | u32 *frame_buffer; | ||
1163 | |||
1164 | status = scic_sds_unsolicited_frame_control_get_header(&scic->uf_control, | ||
1165 | frame_index, | ||
1166 | (void **)&frame_header); | ||
1167 | |||
1168 | if ((status == SCI_SUCCESS) && | ||
1169 | (frame_header->fis_type == FIS_REGD2H)) { | ||
1170 | scic_sds_unsolicited_frame_control_get_buffer(&scic->uf_control, | ||
1171 | frame_index, | ||
1172 | (void **)&frame_buffer); | ||
1173 | |||
1174 | scic_sds_controller_copy_sata_response(&sci_req->stp.rsp, | ||
1175 | frame_header, | ||
1176 | frame_buffer); | ||
1177 | } | ||
1178 | |||
1179 | scic_sds_controller_release_frame(scic, frame_index); | ||
1180 | |||
1181 | return status; | ||
1182 | } | ||
1183 | |||
1184 | static enum sci_status scic_sds_stp_request_udma_await_tc_completion_tc_completion_handler( | ||
1185 | struct scic_sds_request *sci_req, | ||
1186 | u32 completion_code) | ||
1187 | { | ||
1188 | enum sci_status status = SCI_SUCCESS; | ||
1189 | |||
1190 | switch (SCU_GET_COMPLETION_TL_STATUS(completion_code)) { | ||
1191 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_GOOD): | ||
1192 | scic_sds_stp_request_udma_complete_request(sci_req, | ||
1193 | SCU_TASK_DONE_GOOD, | ||
1194 | SCI_SUCCESS); | ||
1195 | break; | ||
1196 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_UNEXP_FIS): | ||
1197 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_REG_ERR): | ||
1198 | /* | ||
1199 | * We must check ther response buffer to see if the D2H Register FIS was | ||
1200 | * received before we got the TC completion. */ | ||
1201 | if (sci_req->stp.rsp.fis_type == FIS_REGD2H) { | ||
1202 | scic_sds_remote_device_suspend(sci_req->target_device, | ||
1203 | SCU_EVENT_SPECIFIC(SCU_NORMALIZE_COMPLETION_STATUS(completion_code))); | ||
1204 | |||
1205 | scic_sds_stp_request_udma_complete_request(sci_req, | ||
1206 | SCU_TASK_DONE_CHECK_RESPONSE, | ||
1207 | SCI_FAILURE_IO_RESPONSE_VALID); | ||
1208 | } else { | ||
1209 | /* | ||
1210 | * If we have an error completion status for the TC then we can expect a | ||
1211 | * D2H register FIS from the device so we must change state to wait for it */ | ||
1212 | sci_base_state_machine_change_state(&sci_req->started_substate_machine, | ||
1213 | SCIC_SDS_STP_REQUEST_STARTED_UDMA_AWAIT_D2H_REG_FIS_SUBSTATE); | ||
1214 | } | ||
1215 | break; | ||
1216 | |||
1217 | /* | ||
1218 | * / @todo Check to see if any of these completion status need to wait for | ||
1219 | * / the device to host register fis. */ | ||
1220 | /* / @todo We can retry the command for SCU_TASK_DONE_CMD_LL_R_ERR - this comes only for B0 */ | ||
1221 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_INV_FIS_LEN): | ||
1222 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_MAX_PLD_ERR): | ||
1223 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_LL_R_ERR): | ||
1224 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_CMD_LL_R_ERR): | ||
1225 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_CRC_ERR): | ||
1226 | scic_sds_remote_device_suspend(sci_req->target_device, | ||
1227 | SCU_EVENT_SPECIFIC(SCU_NORMALIZE_COMPLETION_STATUS(completion_code))); | ||
1228 | /* Fall through to the default case */ | ||
1229 | default: | ||
1230 | /* All other completion status cause the IO to be complete. */ | ||
1231 | scic_sds_stp_request_udma_complete_request(sci_req, | ||
1232 | SCU_NORMALIZE_COMPLETION_STATUS(completion_code), | ||
1233 | SCI_FAILURE_CONTROLLER_SPECIFIC_IO_ERR); | ||
1234 | break; | ||
1235 | } | ||
1236 | |||
1237 | return status; | ||
1238 | } | ||
1239 | |||
1240 | static enum sci_status scic_sds_stp_request_udma_await_d2h_reg_fis_frame_handler( | ||
1241 | struct scic_sds_request *sci_req, | ||
1242 | u32 frame_index) | ||
1243 | { | ||
1244 | enum sci_status status; | ||
1245 | |||
1246 | /* Use the general frame handler to copy the resposne data */ | ||
1247 | status = scic_sds_stp_request_udma_general_frame_handler(sci_req, frame_index); | ||
1248 | |||
1249 | if (status != SCI_SUCCESS) | ||
1250 | return status; | ||
1251 | |||
1252 | scic_sds_stp_request_udma_complete_request(sci_req, | ||
1253 | SCU_TASK_DONE_CHECK_RESPONSE, | ||
1254 | SCI_FAILURE_IO_RESPONSE_VALID); | ||
1255 | |||
1256 | return status; | ||
1257 | } | ||
1258 | |||
1259 | /* --------------------------------------------------------------------------- */ | ||
1260 | |||
1261 | static const struct scic_sds_io_request_state_handler scic_sds_stp_request_started_udma_substate_handler_table[] = { | ||
1262 | [SCIC_SDS_STP_REQUEST_STARTED_UDMA_AWAIT_TC_COMPLETION_SUBSTATE] = { | ||
1263 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1264 | .tc_completion_handler = scic_sds_stp_request_udma_await_tc_completion_tc_completion_handler, | ||
1265 | .frame_handler = scic_sds_stp_request_udma_general_frame_handler, | ||
1266 | }, | ||
1267 | [SCIC_SDS_STP_REQUEST_STARTED_UDMA_AWAIT_D2H_REG_FIS_SUBSTATE] = { | ||
1268 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1269 | .frame_handler = scic_sds_stp_request_udma_await_d2h_reg_fis_frame_handler, | ||
1270 | }, | ||
1271 | }; | ||
1272 | |||
1273 | static void scic_sds_stp_request_started_udma_await_tc_completion_enter( | ||
1274 | void *object) | ||
1275 | { | ||
1276 | struct scic_sds_request *sci_req = object; | ||
1277 | |||
1278 | SET_STATE_HANDLER( | ||
1279 | sci_req, | ||
1280 | scic_sds_stp_request_started_udma_substate_handler_table, | ||
1281 | SCIC_SDS_STP_REQUEST_STARTED_UDMA_AWAIT_TC_COMPLETION_SUBSTATE | ||
1282 | ); | ||
1283 | } | ||
1284 | |||
1285 | /** | ||
1286 | * | ||
1287 | * | ||
1288 | * This state is entered when there is an TC completion failure. The hardware | ||
1289 | * received an unexpected condition while processing the IO request and now | ||
1290 | * will UF the D2H register FIS to complete the IO. | ||
1291 | */ | ||
1292 | static void scic_sds_stp_request_started_udma_await_d2h_reg_fis_enter( | ||
1293 | void *object) | ||
1294 | { | ||
1295 | struct scic_sds_request *sci_req = object; | ||
1296 | |||
1297 | SET_STATE_HANDLER( | ||
1298 | sci_req, | ||
1299 | scic_sds_stp_request_started_udma_substate_handler_table, | ||
1300 | SCIC_SDS_STP_REQUEST_STARTED_UDMA_AWAIT_D2H_REG_FIS_SUBSTATE | ||
1301 | ); | ||
1302 | } | ||
1303 | |||
1304 | /* --------------------------------------------------------------------------- */ | ||
1305 | |||
1306 | static const struct sci_base_state scic_sds_stp_request_started_udma_substate_table[] = { | ||
1307 | [SCIC_SDS_STP_REQUEST_STARTED_UDMA_AWAIT_TC_COMPLETION_SUBSTATE] = { | ||
1308 | .enter_state = scic_sds_stp_request_started_udma_await_tc_completion_enter, | ||
1309 | }, | ||
1310 | [SCIC_SDS_STP_REQUEST_STARTED_UDMA_AWAIT_D2H_REG_FIS_SUBSTATE] = { | ||
1311 | .enter_state = scic_sds_stp_request_started_udma_await_d2h_reg_fis_enter, | ||
1312 | }, | ||
1313 | }; | ||
1314 | |||
1315 | enum sci_status scic_sds_stp_udma_request_construct(struct scic_sds_request *sci_req, | ||
1316 | u32 len, | ||
1317 | enum dma_data_direction dir) | ||
1318 | { | ||
1319 | scic_sds_stp_non_ncq_request_construct(sci_req); | ||
1320 | |||
1321 | scic_sds_stp_optimized_request_construct(sci_req, SCU_TASK_TYPE_DMA_IN, | ||
1322 | len, dir); | ||
1323 | |||
1324 | sci_base_state_machine_construct( | ||
1325 | &sci_req->started_substate_machine, | ||
1326 | sci_req, | ||
1327 | scic_sds_stp_request_started_udma_substate_table, | ||
1328 | SCIC_SDS_STP_REQUEST_STARTED_UDMA_AWAIT_TC_COMPLETION_SUBSTATE | ||
1329 | ); | ||
1330 | |||
1331 | return SCI_SUCCESS; | ||
1332 | } | ||
1333 | |||
1334 | /** | ||
1335 | * | ||
1336 | * @sci_req: | ||
1337 | * @completion_code: | ||
1338 | * | ||
1339 | * This method processes a TC completion. The expected TC completion is for | ||
1340 | * the transmission of the H2D register FIS containing the SATA/STP non-data | ||
1341 | * request. This method always successfully processes the TC completion. | ||
1342 | * SCI_SUCCESS This value is always returned. | ||
1343 | */ | ||
1344 | static enum sci_status scic_sds_stp_request_soft_reset_await_h2d_asserted_tc_completion_handler( | ||
1345 | struct scic_sds_request *sci_req, | ||
1346 | u32 completion_code) | ||
1347 | { | ||
1348 | switch (SCU_GET_COMPLETION_TL_STATUS(completion_code)) { | ||
1349 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_GOOD): | ||
1350 | scic_sds_request_set_status( | ||
1351 | sci_req, SCU_TASK_DONE_GOOD, SCI_SUCCESS | ||
1352 | ); | ||
1353 | |||
1354 | sci_base_state_machine_change_state( | ||
1355 | &sci_req->started_substate_machine, | ||
1356 | SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_H2D_DIAGNOSTIC_COMPLETION_SUBSTATE | ||
1357 | ); | ||
1358 | break; | ||
1359 | |||
1360 | default: | ||
1361 | /* | ||
1362 | * All other completion status cause the IO to be complete. If a NAK | ||
1363 | * was received, then it is up to the user to retry the request. */ | ||
1364 | scic_sds_request_set_status( | ||
1365 | sci_req, | ||
1366 | SCU_NORMALIZE_COMPLETION_STATUS(completion_code), | ||
1367 | SCI_FAILURE_CONTROLLER_SPECIFIC_IO_ERR | ||
1368 | ); | ||
1369 | |||
1370 | sci_base_state_machine_change_state( | ||
1371 | &sci_req->state_machine, SCI_BASE_REQUEST_STATE_COMPLETED); | ||
1372 | break; | ||
1373 | } | ||
1374 | |||
1375 | return SCI_SUCCESS; | ||
1376 | } | ||
1377 | |||
1378 | /** | ||
1379 | * | ||
1380 | * @sci_req: | ||
1381 | * @completion_code: | ||
1382 | * | ||
1383 | * This method processes a TC completion. The expected TC completion is for | ||
1384 | * the transmission of the H2D register FIS containing the SATA/STP non-data | ||
1385 | * request. This method always successfully processes the TC completion. | ||
1386 | * SCI_SUCCESS This value is always returned. | ||
1387 | */ | ||
1388 | static enum sci_status scic_sds_stp_request_soft_reset_await_h2d_diagnostic_tc_completion_handler( | ||
1389 | struct scic_sds_request *sci_req, | ||
1390 | u32 completion_code) | ||
1391 | { | ||
1392 | switch (SCU_GET_COMPLETION_TL_STATUS(completion_code)) { | ||
1393 | case SCU_MAKE_COMPLETION_STATUS(SCU_TASK_DONE_GOOD): | ||
1394 | scic_sds_request_set_status( | ||
1395 | sci_req, SCU_TASK_DONE_GOOD, SCI_SUCCESS | ||
1396 | ); | ||
1397 | |||
1398 | sci_base_state_machine_change_state( | ||
1399 | &sci_req->started_substate_machine, | ||
1400 | SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_D2H_RESPONSE_FRAME_SUBSTATE | ||
1401 | ); | ||
1402 | break; | ||
1403 | |||
1404 | default: | ||
1405 | /* | ||
1406 | * All other completion status cause the IO to be complete. If a NAK | ||
1407 | * was received, then it is up to the user to retry the request. */ | ||
1408 | scic_sds_request_set_status( | ||
1409 | sci_req, | ||
1410 | SCU_NORMALIZE_COMPLETION_STATUS(completion_code), | ||
1411 | SCI_FAILURE_CONTROLLER_SPECIFIC_IO_ERR | ||
1412 | ); | ||
1413 | |||
1414 | sci_base_state_machine_change_state(&sci_req->state_machine, | ||
1415 | SCI_BASE_REQUEST_STATE_COMPLETED); | ||
1416 | break; | ||
1417 | } | ||
1418 | |||
1419 | return SCI_SUCCESS; | ||
1420 | } | ||
1421 | |||
1422 | /** | ||
1423 | * | ||
1424 | * @request: This parameter specifies the request for which a frame has been | ||
1425 | * received. | ||
1426 | * @frame_index: This parameter specifies the index of the frame that has been | ||
1427 | * received. | ||
1428 | * | ||
1429 | * This method processes frames received from the target while waiting for a | ||
1430 | * device to host register FIS. If a non-register FIS is received during this | ||
1431 | * time, it is treated as a protocol violation from an IO perspective. Indicate | ||
1432 | * if the received frame was processed successfully. | ||
1433 | */ | ||
1434 | static enum sci_status scic_sds_stp_request_soft_reset_await_d2h_frame_handler( | ||
1435 | struct scic_sds_request *sci_req, | ||
1436 | u32 frame_index) | ||
1437 | { | ||
1438 | enum sci_status status; | ||
1439 | struct dev_to_host_fis *frame_header; | ||
1440 | u32 *frame_buffer; | ||
1441 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
1442 | struct scic_sds_controller *scic = sci_req->owning_controller; | ||
1443 | |||
1444 | status = scic_sds_unsolicited_frame_control_get_header(&scic->uf_control, | ||
1445 | frame_index, | ||
1446 | (void **)&frame_header); | ||
1447 | if (status != SCI_SUCCESS) { | ||
1448 | dev_err(scic_to_dev(scic), | ||
1449 | "%s: SCIC IO Request 0x%p could not get frame header " | ||
1450 | "for frame index %d, status %x\n", | ||
1451 | __func__, stp_req, frame_index, status); | ||
1452 | return status; | ||
1453 | } | ||
1454 | |||
1455 | switch (frame_header->fis_type) { | ||
1456 | case FIS_REGD2H: | ||
1457 | scic_sds_unsolicited_frame_control_get_buffer(&scic->uf_control, | ||
1458 | frame_index, | ||
1459 | (void **)&frame_buffer); | ||
1460 | |||
1461 | scic_sds_controller_copy_sata_response(&sci_req->stp.rsp, | ||
1462 | frame_header, | ||
1463 | frame_buffer); | ||
1464 | |||
1465 | /* The command has completed with error */ | ||
1466 | scic_sds_request_set_status(sci_req, | ||
1467 | SCU_TASK_DONE_CHECK_RESPONSE, | ||
1468 | SCI_FAILURE_IO_RESPONSE_VALID); | ||
1469 | break; | ||
1470 | |||
1471 | default: | ||
1472 | dev_warn(scic_to_dev(scic), | ||
1473 | "%s: IO Request:0x%p Frame Id:%d protocol " | ||
1474 | "violation occurred\n", __func__, stp_req, | ||
1475 | frame_index); | ||
1476 | |||
1477 | scic_sds_request_set_status(sci_req, SCU_TASK_DONE_UNEXP_FIS, | ||
1478 | SCI_FAILURE_PROTOCOL_VIOLATION); | ||
1479 | break; | ||
1480 | } | ||
1481 | |||
1482 | sci_base_state_machine_change_state(&sci_req->state_machine, | ||
1483 | SCI_BASE_REQUEST_STATE_COMPLETED); | ||
1484 | |||
1485 | /* Frame has been decoded return it to the controller */ | ||
1486 | scic_sds_controller_release_frame(scic, frame_index); | ||
1487 | |||
1488 | return status; | ||
1489 | } | ||
1490 | |||
1491 | /* --------------------------------------------------------------------------- */ | ||
1492 | |||
1493 | static const struct scic_sds_io_request_state_handler scic_sds_stp_request_started_soft_reset_substate_handler_table[] = { | ||
1494 | [SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_H2D_ASSERTED_COMPLETION_SUBSTATE] = { | ||
1495 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1496 | .tc_completion_handler = scic_sds_stp_request_soft_reset_await_h2d_asserted_tc_completion_handler, | ||
1497 | }, | ||
1498 | [SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_H2D_DIAGNOSTIC_COMPLETION_SUBSTATE] = { | ||
1499 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1500 | .tc_completion_handler = scic_sds_stp_request_soft_reset_await_h2d_diagnostic_tc_completion_handler, | ||
1501 | }, | ||
1502 | [SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_D2H_RESPONSE_FRAME_SUBSTATE] = { | ||
1503 | .abort_handler = scic_sds_request_started_state_abort_handler, | ||
1504 | .frame_handler = scic_sds_stp_request_soft_reset_await_d2h_frame_handler, | ||
1505 | }, | ||
1506 | }; | ||
1507 | |||
1508 | static void scic_sds_stp_request_started_soft_reset_await_h2d_asserted_completion_enter( | ||
1509 | void *object) | ||
1510 | { | ||
1511 | struct scic_sds_request *sci_req = object; | ||
1512 | |||
1513 | SET_STATE_HANDLER( | ||
1514 | sci_req, | ||
1515 | scic_sds_stp_request_started_soft_reset_substate_handler_table, | ||
1516 | SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_H2D_ASSERTED_COMPLETION_SUBSTATE | ||
1517 | ); | ||
1518 | |||
1519 | scic_sds_remote_device_set_working_request( | ||
1520 | sci_req->target_device, sci_req | ||
1521 | ); | ||
1522 | } | ||
1523 | |||
1524 | static void scic_sds_stp_request_started_soft_reset_await_h2d_diagnostic_completion_enter( | ||
1525 | void *object) | ||
1526 | { | ||
1527 | struct scic_sds_request *sci_req = object; | ||
1528 | struct scu_task_context *task_context; | ||
1529 | struct host_to_dev_fis *h2d_fis; | ||
1530 | enum sci_status status; | ||
1531 | |||
1532 | /* Clear the SRST bit */ | ||
1533 | h2d_fis = &sci_req->stp.cmd; | ||
1534 | h2d_fis->control = 0; | ||
1535 | |||
1536 | /* Clear the TC control bit */ | ||
1537 | task_context = scic_sds_controller_get_task_context_buffer( | ||
1538 | sci_req->owning_controller, sci_req->io_tag); | ||
1539 | task_context->control_frame = 0; | ||
1540 | |||
1541 | status = scic_controller_continue_io(sci_req); | ||
1542 | if (status == SCI_SUCCESS) { | ||
1543 | SET_STATE_HANDLER( | ||
1544 | sci_req, | ||
1545 | scic_sds_stp_request_started_soft_reset_substate_handler_table, | ||
1546 | SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_H2D_DIAGNOSTIC_COMPLETION_SUBSTATE | ||
1547 | ); | ||
1548 | } | ||
1549 | } | ||
1550 | |||
1551 | static void scic_sds_stp_request_started_soft_reset_await_d2h_response_enter( | ||
1552 | void *object) | ||
1553 | { | ||
1554 | struct scic_sds_request *sci_req = object; | ||
1555 | |||
1556 | SET_STATE_HANDLER( | ||
1557 | sci_req, | ||
1558 | scic_sds_stp_request_started_soft_reset_substate_handler_table, | ||
1559 | SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_D2H_RESPONSE_FRAME_SUBSTATE | ||
1560 | ); | ||
1561 | } | ||
1562 | |||
1563 | static const struct sci_base_state scic_sds_stp_request_started_soft_reset_substate_table[] = { | ||
1564 | [SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_H2D_ASSERTED_COMPLETION_SUBSTATE] = { | ||
1565 | .enter_state = scic_sds_stp_request_started_soft_reset_await_h2d_asserted_completion_enter, | ||
1566 | }, | ||
1567 | [SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_H2D_DIAGNOSTIC_COMPLETION_SUBSTATE] = { | ||
1568 | .enter_state = scic_sds_stp_request_started_soft_reset_await_h2d_diagnostic_completion_enter, | ||
1569 | }, | ||
1570 | [SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_D2H_RESPONSE_FRAME_SUBSTATE] = { | ||
1571 | .enter_state = scic_sds_stp_request_started_soft_reset_await_d2h_response_enter, | ||
1572 | }, | ||
1573 | }; | ||
1574 | |||
1575 | enum sci_status scic_sds_stp_soft_reset_request_construct(struct scic_sds_request *sci_req) | ||
1576 | { | ||
1577 | struct scic_sds_stp_request *stp_req = &sci_req->stp.req; | ||
1578 | |||
1579 | scic_sds_stp_non_ncq_request_construct(sci_req); | ||
1580 | |||
1581 | /* Build the STP task context structure */ | ||
1582 | scu_stp_raw_request_construct_task_context(stp_req, sci_req->task_context_buffer); | ||
1583 | |||
1584 | sci_base_state_machine_construct(&sci_req->started_substate_machine, | ||
1585 | sci_req, | ||
1586 | scic_sds_stp_request_started_soft_reset_substate_table, | ||
1587 | SCIC_SDS_STP_REQUEST_STARTED_SOFT_RESET_AWAIT_H2D_ASSERTED_COMPLETION_SUBSTATE); | ||
1588 | |||
1589 | return SCI_SUCCESS; | ||
1590 | } | ||