xref: /dflybsd-src/sys/dev/raid/mpr/mpr_user.c (revision 030b0c8c4cf27c560ccec70410c8e21934ae677d)
1*fd501800SSascha Wildner /*-
2*fd501800SSascha Wildner  * Copyright (c) 2008 Yahoo!, Inc.
3*fd501800SSascha Wildner  * All rights reserved.
4*fd501800SSascha Wildner  * Written by: John Baldwin <jhb@FreeBSD.org>
5*fd501800SSascha Wildner  *
6*fd501800SSascha Wildner  * Redistribution and use in source and binary forms, with or without
7*fd501800SSascha Wildner  * modification, are permitted provided that the following conditions
8*fd501800SSascha Wildner  * are met:
9*fd501800SSascha Wildner  * 1. Redistributions of source code must retain the above copyright
10*fd501800SSascha Wildner  *    notice, this list of conditions and the following disclaimer.
11*fd501800SSascha Wildner  * 2. Redistributions in binary form must reproduce the above copyright
12*fd501800SSascha Wildner  *    notice, this list of conditions and the following disclaimer in the
13*fd501800SSascha Wildner  *    documentation and/or other materials provided with the distribution.
14*fd501800SSascha Wildner  * 3. Neither the name of the author nor the names of any co-contributors
15*fd501800SSascha Wildner  *    may be used to endorse or promote products derived from this software
16*fd501800SSascha Wildner  *    without specific prior written permission.
17*fd501800SSascha Wildner  *
18*fd501800SSascha Wildner  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
19*fd501800SSascha Wildner  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20*fd501800SSascha Wildner  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21*fd501800SSascha Wildner  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
22*fd501800SSascha Wildner  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23*fd501800SSascha Wildner  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24*fd501800SSascha Wildner  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25*fd501800SSascha Wildner  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26*fd501800SSascha Wildner  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27*fd501800SSascha Wildner  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28*fd501800SSascha Wildner  * SUCH DAMAGE.
29*fd501800SSascha Wildner  *
30*fd501800SSascha Wildner  * Avago Technologies (LSI) MPT-Fusion Host Adapter FreeBSD userland interface
31*fd501800SSascha Wildner  */
32*fd501800SSascha Wildner /*-
33*fd501800SSascha Wildner  * Copyright (c) 2011-2015 LSI Corp.
34*fd501800SSascha Wildner  * Copyright (c) 2013-2016 Avago Technologies
35*fd501800SSascha Wildner  * All rights reserved.
36*fd501800SSascha Wildner  *
37*fd501800SSascha Wildner  * Redistribution and use in source and binary forms, with or without
38*fd501800SSascha Wildner  * modification, are permitted provided that the following conditions
39*fd501800SSascha Wildner  * are met:
40*fd501800SSascha Wildner  * 1. Redistributions of source code must retain the above copyright
41*fd501800SSascha Wildner  *    notice, this list of conditions and the following disclaimer.
42*fd501800SSascha Wildner  * 2. Redistributions in binary form must reproduce the above copyright
43*fd501800SSascha Wildner  *    notice, this list of conditions and the following disclaimer in the
44*fd501800SSascha Wildner  *    documentation and/or other materials provided with the distribution.
45*fd501800SSascha Wildner  *
46*fd501800SSascha Wildner  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
47*fd501800SSascha Wildner  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
48*fd501800SSascha Wildner  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
49*fd501800SSascha Wildner  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
50*fd501800SSascha Wildner  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
51*fd501800SSascha Wildner  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
52*fd501800SSascha Wildner  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
53*fd501800SSascha Wildner  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
54*fd501800SSascha Wildner  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
55*fd501800SSascha Wildner  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
56*fd501800SSascha Wildner  * SUCH DAMAGE.
57*fd501800SSascha Wildner  *
58*fd501800SSascha Wildner  * Avago Technologies (LSI) MPT-Fusion Host Adapter FreeBSD
59*fd501800SSascha Wildner  *
60*fd501800SSascha Wildner  * $FreeBSD: head/sys/dev/mpr/mpr_user.c 332122 2018-04-06 17:35:35Z brooks $
61*fd501800SSascha Wildner  */
62*fd501800SSascha Wildner 
63*fd501800SSascha Wildner /* TODO Move headers to mprvar */
64*fd501800SSascha Wildner #include <sys/types.h>
65*fd501800SSascha Wildner #include <sys/param.h>
66*fd501800SSascha Wildner #include <sys/systm.h>
67*fd501800SSascha Wildner #include <sys/kernel.h>
68*fd501800SSascha Wildner #include <sys/module.h>
69*fd501800SSascha Wildner #include <sys/bus.h>
70*fd501800SSascha Wildner #include <sys/conf.h>
71*fd501800SSascha Wildner #include <sys/bio.h>
72*fd501800SSascha Wildner #include <sys/malloc.h>
73*fd501800SSascha Wildner #include <sys/uio.h>
74*fd501800SSascha Wildner #include <sys/sysctl.h>
75*fd501800SSascha Wildner #include <sys/ioccom.h>
76*fd501800SSascha Wildner #include <sys/endian.h>
77*fd501800SSascha Wildner #include <sys/queue.h>
78*fd501800SSascha Wildner #include <sys/kthread.h>
79*fd501800SSascha Wildner #include <sys/taskqueue.h>
80*fd501800SSascha Wildner #include <sys/proc.h>
81*fd501800SSascha Wildner #include <sys/sysent.h>
82*fd501800SSascha Wildner #include <sys/device.h>
83*fd501800SSascha Wildner #include <sys/eventhandler.h>
84*fd501800SSascha Wildner 
85*fd501800SSascha Wildner #include <sys/rman.h>
86*fd501800SSascha Wildner 
87*fd501800SSascha Wildner #include <bus/cam/cam.h>
88*fd501800SSascha Wildner #include <bus/cam/cam_ccb.h>
89*fd501800SSascha Wildner 
90*fd501800SSascha Wildner #include <dev/raid/mpr/mpi/mpi2_type.h>
91*fd501800SSascha Wildner #include <dev/raid/mpr/mpi/mpi2.h>
92*fd501800SSascha Wildner #include <dev/raid/mpr/mpi/mpi2_ioc.h>
93*fd501800SSascha Wildner #include <dev/raid/mpr/mpi/mpi2_cnfg.h>
94*fd501800SSascha Wildner #include <dev/raid/mpr/mpi/mpi2_init.h>
95*fd501800SSascha Wildner #include <dev/raid/mpr/mpi/mpi2_tool.h>
96*fd501800SSascha Wildner #include <dev/raid/mpr/mpi/mpi2_pci.h>
97*fd501800SSascha Wildner #include <dev/raid/mpr/mpr_ioctl.h>
98*fd501800SSascha Wildner #include <dev/raid/mpr/mprvar.h>
99*fd501800SSascha Wildner #include <dev/raid/mpr/mpr_table.h>
100*fd501800SSascha Wildner #include <dev/raid/mpr/mpr_sas.h>
101*fd501800SSascha Wildner #include <bus/pci/pcivar.h>
102*fd501800SSascha Wildner #include <bus/pci/pcireg.h>
103*fd501800SSascha Wildner 
104*fd501800SSascha Wildner static d_open_t		mpr_open;
105*fd501800SSascha Wildner static d_close_t	mpr_close;
106*fd501800SSascha Wildner static d_ioctl_t	mpr_ioctl_devsw;
107*fd501800SSascha Wildner 
108*fd501800SSascha Wildner static struct dev_ops mpr_ops = {
109*fd501800SSascha Wildner 	{ "mpr", 0, D_MPSAFE },
110*fd501800SSascha Wildner 	.d_open =	mpr_open,
111*fd501800SSascha Wildner 	.d_close =	mpr_close,
112*fd501800SSascha Wildner 	.d_ioctl =	mpr_ioctl_devsw,
113*fd501800SSascha Wildner };
114*fd501800SSascha Wildner 
115*fd501800SSascha Wildner typedef int (mpr_user_f)(struct mpr_command *, struct mpr_usr_command *);
116*fd501800SSascha Wildner static mpr_user_f	mpi_pre_ioc_facts;
117*fd501800SSascha Wildner static mpr_user_f	mpi_pre_port_facts;
118*fd501800SSascha Wildner static mpr_user_f	mpi_pre_fw_download;
119*fd501800SSascha Wildner static mpr_user_f	mpi_pre_fw_upload;
120*fd501800SSascha Wildner static mpr_user_f	mpi_pre_sata_passthrough;
121*fd501800SSascha Wildner static mpr_user_f	mpi_pre_smp_passthrough;
122*fd501800SSascha Wildner static mpr_user_f	mpi_pre_config;
123*fd501800SSascha Wildner static mpr_user_f	mpi_pre_sas_io_unit_control;
124*fd501800SSascha Wildner 
125*fd501800SSascha Wildner static int mpr_user_read_cfg_header(struct mpr_softc *,
126*fd501800SSascha Wildner     struct mpr_cfg_page_req *);
127*fd501800SSascha Wildner static int mpr_user_read_cfg_page(struct mpr_softc *,
128*fd501800SSascha Wildner     struct mpr_cfg_page_req *, void *);
129*fd501800SSascha Wildner static int mpr_user_read_extcfg_header(struct mpr_softc *,
130*fd501800SSascha Wildner     struct mpr_ext_cfg_page_req *);
131*fd501800SSascha Wildner static int mpr_user_read_extcfg_page(struct mpr_softc *,
132*fd501800SSascha Wildner     struct mpr_ext_cfg_page_req *, void *);
133*fd501800SSascha Wildner static int mpr_user_write_cfg_page(struct mpr_softc *,
134*fd501800SSascha Wildner     struct mpr_cfg_page_req *, void *);
135*fd501800SSascha Wildner static int mpr_user_setup_request(struct mpr_command *,
136*fd501800SSascha Wildner     struct mpr_usr_command *);
137*fd501800SSascha Wildner static int mpr_user_command(struct mpr_softc *, struct mpr_usr_command *);
138*fd501800SSascha Wildner 
139*fd501800SSascha Wildner static int mpr_user_pass_thru(struct mpr_softc *sc, mpr_pass_thru_t *data);
140*fd501800SSascha Wildner static void mpr_user_get_adapter_data(struct mpr_softc *sc,
141*fd501800SSascha Wildner     mpr_adapter_data_t *data);
142*fd501800SSascha Wildner static void mpr_user_read_pci_info(struct mpr_softc *sc, mpr_pci_info_t *data);
143*fd501800SSascha Wildner static uint8_t mpr_get_fw_diag_buffer_number(struct mpr_softc *sc,
144*fd501800SSascha Wildner     uint32_t unique_id);
145*fd501800SSascha Wildner static int mpr_post_fw_diag_buffer(struct mpr_softc *sc,
146*fd501800SSascha Wildner     mpr_fw_diagnostic_buffer_t *pBuffer, uint32_t *return_code);
147*fd501800SSascha Wildner static int mpr_release_fw_diag_buffer(struct mpr_softc *sc,
148*fd501800SSascha Wildner     mpr_fw_diagnostic_buffer_t *pBuffer, uint32_t *return_code,
149*fd501800SSascha Wildner     uint32_t diag_type);
150*fd501800SSascha Wildner static int mpr_diag_register(struct mpr_softc *sc,
151*fd501800SSascha Wildner     mpr_fw_diag_register_t *diag_register, uint32_t *return_code);
152*fd501800SSascha Wildner static int mpr_diag_unregister(struct mpr_softc *sc,
153*fd501800SSascha Wildner     mpr_fw_diag_unregister_t *diag_unregister, uint32_t *return_code);
154*fd501800SSascha Wildner static int mpr_diag_query(struct mpr_softc *sc, mpr_fw_diag_query_t *diag_query,
155*fd501800SSascha Wildner     uint32_t *return_code);
156*fd501800SSascha Wildner static int mpr_diag_read_buffer(struct mpr_softc *sc,
157*fd501800SSascha Wildner     mpr_diag_read_buffer_t *diag_read_buffer, uint8_t *ioctl_buf,
158*fd501800SSascha Wildner     uint32_t *return_code);
159*fd501800SSascha Wildner static int mpr_diag_release(struct mpr_softc *sc,
160*fd501800SSascha Wildner     mpr_fw_diag_release_t *diag_release, uint32_t *return_code);
161*fd501800SSascha Wildner static int mpr_do_diag_action(struct mpr_softc *sc, uint32_t action,
162*fd501800SSascha Wildner     uint8_t *diag_action, uint32_t length, uint32_t *return_code);
163*fd501800SSascha Wildner static int mpr_user_diag_action(struct mpr_softc *sc, mpr_diag_action_t *data);
164*fd501800SSascha Wildner static void mpr_user_event_query(struct mpr_softc *sc, mpr_event_query_t *data);
165*fd501800SSascha Wildner static void mpr_user_event_enable(struct mpr_softc *sc,
166*fd501800SSascha Wildner     mpr_event_enable_t *data);
167*fd501800SSascha Wildner static int mpr_user_event_report(struct mpr_softc *sc,
168*fd501800SSascha Wildner     mpr_event_report_t *data);
169*fd501800SSascha Wildner static int mpr_user_reg_access(struct mpr_softc *sc, mpr_reg_access_t *data);
170*fd501800SSascha Wildner static int mpr_user_btdh(struct mpr_softc *sc, mpr_btdh_mapping_t *data);
171*fd501800SSascha Wildner 
172*fd501800SSascha Wildner static MALLOC_DEFINE(M_MPRUSER, "mpr_user", "Buffers for mpr(4) ioctls");
173*fd501800SSascha Wildner 
174*fd501800SSascha Wildner /* Macros from compat/freebsd32/freebsd32.h */
175*fd501800SSascha Wildner #define	PTRIN(v)	(void *)(uintptr_t)(v)
176*fd501800SSascha Wildner #define	PTROUT(v)	(uint32_t)(uintptr_t)(v)
177*fd501800SSascha Wildner 
178*fd501800SSascha Wildner #define	CP(src,dst,fld) do { (dst).fld = (src).fld; } while (0)
179*fd501800SSascha Wildner #define	PTRIN_CP(src,dst,fld)				\
180*fd501800SSascha Wildner 	do { (dst).fld = PTRIN((src).fld); } while (0)
181*fd501800SSascha Wildner #define	PTROUT_CP(src,dst,fld) \
182*fd501800SSascha Wildner 	do { (dst).fld = PTROUT((src).fld); } while (0)
183*fd501800SSascha Wildner 
184*fd501800SSascha Wildner /*
185*fd501800SSascha Wildner  * MPI functions that support IEEE SGLs for SAS3.
186*fd501800SSascha Wildner  */
187*fd501800SSascha Wildner static uint8_t ieee_sgl_func_list[] = {
188*fd501800SSascha Wildner 	MPI2_FUNCTION_SCSI_IO_REQUEST,
189*fd501800SSascha Wildner 	MPI2_FUNCTION_RAID_SCSI_IO_PASSTHROUGH,
190*fd501800SSascha Wildner 	MPI2_FUNCTION_SMP_PASSTHROUGH,
191*fd501800SSascha Wildner 	MPI2_FUNCTION_SATA_PASSTHROUGH,
192*fd501800SSascha Wildner 	MPI2_FUNCTION_FW_UPLOAD,
193*fd501800SSascha Wildner 	MPI2_FUNCTION_FW_DOWNLOAD,
194*fd501800SSascha Wildner 	MPI2_FUNCTION_TARGET_ASSIST,
195*fd501800SSascha Wildner 	MPI2_FUNCTION_TARGET_STATUS_SEND,
196*fd501800SSascha Wildner 	MPI2_FUNCTION_TOOLBOX
197*fd501800SSascha Wildner };
198*fd501800SSascha Wildner 
199*fd501800SSascha Wildner int
mpr_attach_user(struct mpr_softc * sc)200*fd501800SSascha Wildner mpr_attach_user(struct mpr_softc *sc)
201*fd501800SSascha Wildner {
202*fd501800SSascha Wildner 	int unit;
203*fd501800SSascha Wildner 
204*fd501800SSascha Wildner 	unit = device_get_unit(sc->mpr_dev);
205*fd501800SSascha Wildner 	sc->mpr_cdev = make_dev(&mpr_ops, unit, UID_ROOT, GID_OPERATOR, 0640,
206*fd501800SSascha Wildner 	    "mpr%d", unit);
207*fd501800SSascha Wildner 
208*fd501800SSascha Wildner 	if (sc->mpr_cdev == NULL)
209*fd501800SSascha Wildner 		return (ENOMEM);
210*fd501800SSascha Wildner 
211*fd501800SSascha Wildner 	sc->mpr_cdev->si_drv1 = sc;
212*fd501800SSascha Wildner 	return (0);
213*fd501800SSascha Wildner }
214*fd501800SSascha Wildner 
215*fd501800SSascha Wildner void
mpr_detach_user(struct mpr_softc * sc)216*fd501800SSascha Wildner mpr_detach_user(struct mpr_softc *sc)
217*fd501800SSascha Wildner {
218*fd501800SSascha Wildner 
219*fd501800SSascha Wildner 	/* XXX: do a purge of pending requests? */
220*fd501800SSascha Wildner 	if (sc->mpr_cdev != NULL)
221*fd501800SSascha Wildner 		destroy_dev(sc->mpr_cdev);
222*fd501800SSascha Wildner }
223*fd501800SSascha Wildner 
224*fd501800SSascha Wildner static int
mpr_open(struct dev_open_args * ap)225*fd501800SSascha Wildner mpr_open(struct dev_open_args *ap)
226*fd501800SSascha Wildner {
227*fd501800SSascha Wildner 
228*fd501800SSascha Wildner 	return (0);
229*fd501800SSascha Wildner }
230*fd501800SSascha Wildner 
231*fd501800SSascha Wildner static int
mpr_close(struct dev_close_args * ap)232*fd501800SSascha Wildner mpr_close(struct dev_close_args *ap)
233*fd501800SSascha Wildner {
234*fd501800SSascha Wildner 
235*fd501800SSascha Wildner 	return (0);
236*fd501800SSascha Wildner }
237*fd501800SSascha Wildner 
238*fd501800SSascha Wildner static int
mpr_user_read_cfg_header(struct mpr_softc * sc,struct mpr_cfg_page_req * page_req)239*fd501800SSascha Wildner mpr_user_read_cfg_header(struct mpr_softc *sc,
240*fd501800SSascha Wildner     struct mpr_cfg_page_req *page_req)
241*fd501800SSascha Wildner {
242*fd501800SSascha Wildner 	MPI2_CONFIG_PAGE_HEADER *hdr;
243*fd501800SSascha Wildner 	struct mpr_config_params params;
244*fd501800SSascha Wildner 	int	    error;
245*fd501800SSascha Wildner 
246*fd501800SSascha Wildner 	hdr = &params.hdr.Struct;
247*fd501800SSascha Wildner 	params.action = MPI2_CONFIG_ACTION_PAGE_HEADER;
248*fd501800SSascha Wildner 	params.page_address = le32toh(page_req->page_address);
249*fd501800SSascha Wildner 	hdr->PageVersion = 0;
250*fd501800SSascha Wildner 	hdr->PageLength = 0;
251*fd501800SSascha Wildner 	hdr->PageNumber = page_req->header.PageNumber;
252*fd501800SSascha Wildner 	hdr->PageType = page_req->header.PageType;
253*fd501800SSascha Wildner 	params.buffer = NULL;
254*fd501800SSascha Wildner 	params.length = 0;
255*fd501800SSascha Wildner 	params.callback = NULL;
256*fd501800SSascha Wildner 
257*fd501800SSascha Wildner 	if ((error = mpr_read_config_page(sc, &params)) != 0) {
258*fd501800SSascha Wildner 		/*
259*fd501800SSascha Wildner 		 * Leave the request. Without resetting the chip, it's
260*fd501800SSascha Wildner 		 * still owned by it and we'll just get into trouble
261*fd501800SSascha Wildner 		 * freeing it now. Mark it as abandoned so that if it
262*fd501800SSascha Wildner 		 * shows up later it can be freed.
263*fd501800SSascha Wildner 		 */
264*fd501800SSascha Wildner 		mpr_printf(sc, "read_cfg_header timed out\n");
265*fd501800SSascha Wildner 		return (ETIMEDOUT);
266*fd501800SSascha Wildner 	}
267*fd501800SSascha Wildner 
268*fd501800SSascha Wildner 	page_req->ioc_status = htole16(params.status);
269*fd501800SSascha Wildner 	if ((page_req->ioc_status & MPI2_IOCSTATUS_MASK) ==
270*fd501800SSascha Wildner 	    MPI2_IOCSTATUS_SUCCESS) {
271*fd501800SSascha Wildner 		bcopy(hdr, &page_req->header, sizeof(page_req->header));
272*fd501800SSascha Wildner 	}
273*fd501800SSascha Wildner 
274*fd501800SSascha Wildner 	return (0);
275*fd501800SSascha Wildner }
276*fd501800SSascha Wildner 
277*fd501800SSascha Wildner static int
mpr_user_read_cfg_page(struct mpr_softc * sc,struct mpr_cfg_page_req * page_req,void * buf)278*fd501800SSascha Wildner mpr_user_read_cfg_page(struct mpr_softc *sc, struct mpr_cfg_page_req *page_req,
279*fd501800SSascha Wildner     void *buf)
280*fd501800SSascha Wildner {
281*fd501800SSascha Wildner 	MPI2_CONFIG_PAGE_HEADER *reqhdr, *hdr;
282*fd501800SSascha Wildner 	struct mpr_config_params params;
283*fd501800SSascha Wildner 	int	      error;
284*fd501800SSascha Wildner 
285*fd501800SSascha Wildner 	reqhdr = buf;
286*fd501800SSascha Wildner 	hdr = &params.hdr.Struct;
287*fd501800SSascha Wildner 	hdr->PageVersion = reqhdr->PageVersion;
288*fd501800SSascha Wildner 	hdr->PageLength = reqhdr->PageLength;
289*fd501800SSascha Wildner 	hdr->PageNumber = reqhdr->PageNumber;
290*fd501800SSascha Wildner 	hdr->PageType = reqhdr->PageType & MPI2_CONFIG_PAGETYPE_MASK;
291*fd501800SSascha Wildner 	params.action = MPI2_CONFIG_ACTION_PAGE_READ_CURRENT;
292*fd501800SSascha Wildner 	params.page_address = le32toh(page_req->page_address);
293*fd501800SSascha Wildner 	params.buffer = buf;
294*fd501800SSascha Wildner 	params.length = le32toh(page_req->len);
295*fd501800SSascha Wildner 	params.callback = NULL;
296*fd501800SSascha Wildner 
297*fd501800SSascha Wildner 	if ((error = mpr_read_config_page(sc, &params)) != 0) {
298*fd501800SSascha Wildner 		mpr_printf(sc, "mpr_user_read_cfg_page timed out\n");
299*fd501800SSascha Wildner 		return (ETIMEDOUT);
300*fd501800SSascha Wildner 	}
301*fd501800SSascha Wildner 
302*fd501800SSascha Wildner 	page_req->ioc_status = htole16(params.status);
303*fd501800SSascha Wildner 	return (0);
304*fd501800SSascha Wildner }
305*fd501800SSascha Wildner 
306*fd501800SSascha Wildner static int
mpr_user_read_extcfg_header(struct mpr_softc * sc,struct mpr_ext_cfg_page_req * ext_page_req)307*fd501800SSascha Wildner mpr_user_read_extcfg_header(struct mpr_softc *sc,
308*fd501800SSascha Wildner     struct mpr_ext_cfg_page_req *ext_page_req)
309*fd501800SSascha Wildner {
310*fd501800SSascha Wildner 	MPI2_CONFIG_EXTENDED_PAGE_HEADER *hdr;
311*fd501800SSascha Wildner 	struct mpr_config_params params;
312*fd501800SSascha Wildner 	int	    error;
313*fd501800SSascha Wildner 
314*fd501800SSascha Wildner 	hdr = &params.hdr.Ext;
315*fd501800SSascha Wildner 	params.action = MPI2_CONFIG_ACTION_PAGE_HEADER;
316*fd501800SSascha Wildner 	hdr->PageVersion = ext_page_req->header.PageVersion;
317*fd501800SSascha Wildner 	hdr->PageType = MPI2_CONFIG_PAGETYPE_EXTENDED;
318*fd501800SSascha Wildner 	hdr->ExtPageLength = 0;
319*fd501800SSascha Wildner 	hdr->PageNumber = ext_page_req->header.PageNumber;
320*fd501800SSascha Wildner 	hdr->ExtPageType = ext_page_req->header.ExtPageType;
321*fd501800SSascha Wildner 	params.page_address = le32toh(ext_page_req->page_address);
322*fd501800SSascha Wildner 	params.buffer = NULL;
323*fd501800SSascha Wildner 	params.length = 0;
324*fd501800SSascha Wildner 	params.callback = NULL;
325*fd501800SSascha Wildner 
326*fd501800SSascha Wildner 	if ((error = mpr_read_config_page(sc, &params)) != 0) {
327*fd501800SSascha Wildner 		/*
328*fd501800SSascha Wildner 		 * Leave the request. Without resetting the chip, it's
329*fd501800SSascha Wildner 		 * still owned by it and we'll just get into trouble
330*fd501800SSascha Wildner 		 * freeing it now. Mark it as abandoned so that if it
331*fd501800SSascha Wildner 		 * shows up later it can be freed.
332*fd501800SSascha Wildner 		 */
333*fd501800SSascha Wildner 		mpr_printf(sc, "mpr_user_read_extcfg_header timed out\n");
334*fd501800SSascha Wildner 		return (ETIMEDOUT);
335*fd501800SSascha Wildner 	}
336*fd501800SSascha Wildner 
337*fd501800SSascha Wildner 	ext_page_req->ioc_status = htole16(params.status);
338*fd501800SSascha Wildner 	if ((ext_page_req->ioc_status & MPI2_IOCSTATUS_MASK) ==
339*fd501800SSascha Wildner 	    MPI2_IOCSTATUS_SUCCESS) {
340*fd501800SSascha Wildner 		ext_page_req->header.PageVersion = hdr->PageVersion;
341*fd501800SSascha Wildner 		ext_page_req->header.PageNumber = hdr->PageNumber;
342*fd501800SSascha Wildner 		ext_page_req->header.PageType = hdr->PageType;
343*fd501800SSascha Wildner 		ext_page_req->header.ExtPageLength = hdr->ExtPageLength;
344*fd501800SSascha Wildner 		ext_page_req->header.ExtPageType = hdr->ExtPageType;
345*fd501800SSascha Wildner 	}
346*fd501800SSascha Wildner 
347*fd501800SSascha Wildner 	return (0);
348*fd501800SSascha Wildner }
349*fd501800SSascha Wildner 
350*fd501800SSascha Wildner static int
mpr_user_read_extcfg_page(struct mpr_softc * sc,struct mpr_ext_cfg_page_req * ext_page_req,void * buf)351*fd501800SSascha Wildner mpr_user_read_extcfg_page(struct mpr_softc *sc,
352*fd501800SSascha Wildner     struct mpr_ext_cfg_page_req *ext_page_req, void *buf)
353*fd501800SSascha Wildner {
354*fd501800SSascha Wildner 	MPI2_CONFIG_EXTENDED_PAGE_HEADER *reqhdr, *hdr;
355*fd501800SSascha Wildner 	struct mpr_config_params params;
356*fd501800SSascha Wildner 	int error;
357*fd501800SSascha Wildner 
358*fd501800SSascha Wildner 	reqhdr = buf;
359*fd501800SSascha Wildner 	hdr = &params.hdr.Ext;
360*fd501800SSascha Wildner 	params.action = MPI2_CONFIG_ACTION_PAGE_READ_CURRENT;
361*fd501800SSascha Wildner 	params.page_address = le32toh(ext_page_req->page_address);
362*fd501800SSascha Wildner 	hdr->PageVersion = reqhdr->PageVersion;
363*fd501800SSascha Wildner 	hdr->PageType = MPI2_CONFIG_PAGETYPE_EXTENDED;
364*fd501800SSascha Wildner 	hdr->PageNumber = reqhdr->PageNumber;
365*fd501800SSascha Wildner 	hdr->ExtPageType = reqhdr->ExtPageType;
366*fd501800SSascha Wildner 	hdr->ExtPageLength = reqhdr->ExtPageLength;
367*fd501800SSascha Wildner 	params.buffer = buf;
368*fd501800SSascha Wildner 	params.length = le32toh(ext_page_req->len);
369*fd501800SSascha Wildner 	params.callback = NULL;
370*fd501800SSascha Wildner 
371*fd501800SSascha Wildner 	if ((error = mpr_read_config_page(sc, &params)) != 0) {
372*fd501800SSascha Wildner 		mpr_printf(sc, "mpr_user_read_extcfg_page timed out\n");
373*fd501800SSascha Wildner 		return (ETIMEDOUT);
374*fd501800SSascha Wildner 	}
375*fd501800SSascha Wildner 
376*fd501800SSascha Wildner 	ext_page_req->ioc_status = htole16(params.status);
377*fd501800SSascha Wildner 	return (0);
378*fd501800SSascha Wildner }
379*fd501800SSascha Wildner 
380*fd501800SSascha Wildner static int
mpr_user_write_cfg_page(struct mpr_softc * sc,struct mpr_cfg_page_req * page_req,void * buf)381*fd501800SSascha Wildner mpr_user_write_cfg_page(struct mpr_softc *sc,
382*fd501800SSascha Wildner     struct mpr_cfg_page_req *page_req, void *buf)
383*fd501800SSascha Wildner {
384*fd501800SSascha Wildner 	MPI2_CONFIG_PAGE_HEADER *reqhdr, *hdr;
385*fd501800SSascha Wildner 	struct mpr_config_params params;
386*fd501800SSascha Wildner 	u_int	      hdr_attr;
387*fd501800SSascha Wildner 	int	      error;
388*fd501800SSascha Wildner 
389*fd501800SSascha Wildner 	reqhdr = buf;
390*fd501800SSascha Wildner 	hdr = &params.hdr.Struct;
391*fd501800SSascha Wildner 	hdr_attr = reqhdr->PageType & MPI2_CONFIG_PAGEATTR_MASK;
392*fd501800SSascha Wildner 	if (hdr_attr != MPI2_CONFIG_PAGEATTR_CHANGEABLE &&
393*fd501800SSascha Wildner 	    hdr_attr != MPI2_CONFIG_PAGEATTR_PERSISTENT) {
394*fd501800SSascha Wildner 		mpr_printf(sc, "page type 0x%x not changeable\n",
395*fd501800SSascha Wildner 			reqhdr->PageType & MPI2_CONFIG_PAGETYPE_MASK);
396*fd501800SSascha Wildner 		return (EINVAL);
397*fd501800SSascha Wildner 	}
398*fd501800SSascha Wildner 
399*fd501800SSascha Wildner 	/*
400*fd501800SSascha Wildner 	 * There isn't any point in restoring stripped out attributes
401*fd501800SSascha Wildner 	 * if you then mask them going down to issue the request.
402*fd501800SSascha Wildner 	 */
403*fd501800SSascha Wildner 
404*fd501800SSascha Wildner 	hdr->PageVersion = reqhdr->PageVersion;
405*fd501800SSascha Wildner 	hdr->PageLength = reqhdr->PageLength;
406*fd501800SSascha Wildner 	hdr->PageNumber = reqhdr->PageNumber;
407*fd501800SSascha Wildner 	hdr->PageType = reqhdr->PageType;
408*fd501800SSascha Wildner 	params.action = MPI2_CONFIG_ACTION_PAGE_WRITE_CURRENT;
409*fd501800SSascha Wildner 	params.page_address = le32toh(page_req->page_address);
410*fd501800SSascha Wildner 	params.buffer = buf;
411*fd501800SSascha Wildner 	params.length = le32toh(page_req->len);
412*fd501800SSascha Wildner 	params.callback = NULL;
413*fd501800SSascha Wildner 
414*fd501800SSascha Wildner 	if ((error = mpr_write_config_page(sc, &params)) != 0) {
415*fd501800SSascha Wildner 		mpr_printf(sc, "mpr_write_cfg_page timed out\n");
416*fd501800SSascha Wildner 		return (ETIMEDOUT);
417*fd501800SSascha Wildner 	}
418*fd501800SSascha Wildner 
419*fd501800SSascha Wildner 	page_req->ioc_status = htole16(params.status);
420*fd501800SSascha Wildner 	return (0);
421*fd501800SSascha Wildner }
422*fd501800SSascha Wildner 
423*fd501800SSascha Wildner void
mpr_init_sge(struct mpr_command * cm,void * req,void * sge)424*fd501800SSascha Wildner mpr_init_sge(struct mpr_command *cm, void *req, void *sge)
425*fd501800SSascha Wildner {
426*fd501800SSascha Wildner 	int off, space;
427*fd501800SSascha Wildner 
428*fd501800SSascha Wildner 	space = (int)cm->cm_sc->reqframesz;
429*fd501800SSascha Wildner 	off = (uintptr_t)sge - (uintptr_t)req;
430*fd501800SSascha Wildner 
431*fd501800SSascha Wildner 	KASSERT(off < space, ("bad pointers %p %p, off %d, space %d",
432*fd501800SSascha Wildner             req, sge, off, space));
433*fd501800SSascha Wildner 
434*fd501800SSascha Wildner 	cm->cm_sge = sge;
435*fd501800SSascha Wildner 	cm->cm_sglsize = space - off;
436*fd501800SSascha Wildner }
437*fd501800SSascha Wildner 
438*fd501800SSascha Wildner /*
439*fd501800SSascha Wildner  * Prepare the mpr_command for an IOC_FACTS request.
440*fd501800SSascha Wildner  */
441*fd501800SSascha Wildner static int
mpi_pre_ioc_facts(struct mpr_command * cm,struct mpr_usr_command * cmd)442*fd501800SSascha Wildner mpi_pre_ioc_facts(struct mpr_command *cm, struct mpr_usr_command *cmd)
443*fd501800SSascha Wildner {
444*fd501800SSascha Wildner 	MPI2_IOC_FACTS_REQUEST *req = (void *)cm->cm_req;
445*fd501800SSascha Wildner 	MPI2_IOC_FACTS_REPLY *rpl;
446*fd501800SSascha Wildner 
447*fd501800SSascha Wildner 	if (cmd->req_len != sizeof *req)
448*fd501800SSascha Wildner 		return (EINVAL);
449*fd501800SSascha Wildner 	if (cmd->rpl_len != sizeof *rpl)
450*fd501800SSascha Wildner 		return (EINVAL);
451*fd501800SSascha Wildner 
452*fd501800SSascha Wildner 	cm->cm_sge = NULL;
453*fd501800SSascha Wildner 	cm->cm_sglsize = 0;
454*fd501800SSascha Wildner 	return (0);
455*fd501800SSascha Wildner }
456*fd501800SSascha Wildner 
457*fd501800SSascha Wildner /*
458*fd501800SSascha Wildner  * Prepare the mpr_command for a PORT_FACTS request.
459*fd501800SSascha Wildner  */
460*fd501800SSascha Wildner static int
mpi_pre_port_facts(struct mpr_command * cm,struct mpr_usr_command * cmd)461*fd501800SSascha Wildner mpi_pre_port_facts(struct mpr_command *cm, struct mpr_usr_command *cmd)
462*fd501800SSascha Wildner {
463*fd501800SSascha Wildner 	MPI2_PORT_FACTS_REQUEST *req = (void *)cm->cm_req;
464*fd501800SSascha Wildner 	MPI2_PORT_FACTS_REPLY *rpl;
465*fd501800SSascha Wildner 
466*fd501800SSascha Wildner 	if (cmd->req_len != sizeof *req)
467*fd501800SSascha Wildner 		return (EINVAL);
468*fd501800SSascha Wildner 	if (cmd->rpl_len != sizeof *rpl)
469*fd501800SSascha Wildner 		return (EINVAL);
470*fd501800SSascha Wildner 
471*fd501800SSascha Wildner 	cm->cm_sge = NULL;
472*fd501800SSascha Wildner 	cm->cm_sglsize = 0;
473*fd501800SSascha Wildner 	return (0);
474*fd501800SSascha Wildner }
475*fd501800SSascha Wildner 
476*fd501800SSascha Wildner /*
477*fd501800SSascha Wildner  * Prepare the mpr_command for a FW_DOWNLOAD request.
478*fd501800SSascha Wildner  */
479*fd501800SSascha Wildner static int
mpi_pre_fw_download(struct mpr_command * cm,struct mpr_usr_command * cmd)480*fd501800SSascha Wildner mpi_pre_fw_download(struct mpr_command *cm, struct mpr_usr_command *cmd)
481*fd501800SSascha Wildner {
482*fd501800SSascha Wildner 	MPI25_FW_DOWNLOAD_REQUEST *req = (void *)cm->cm_req;
483*fd501800SSascha Wildner 	MPI2_FW_DOWNLOAD_REPLY *rpl;
484*fd501800SSascha Wildner 	int error;
485*fd501800SSascha Wildner 
486*fd501800SSascha Wildner 	if (cmd->req_len != sizeof *req)
487*fd501800SSascha Wildner 		return (EINVAL);
488*fd501800SSascha Wildner 	if (cmd->rpl_len != sizeof *rpl)
489*fd501800SSascha Wildner 		return (EINVAL);
490*fd501800SSascha Wildner 
491*fd501800SSascha Wildner 	if (cmd->len == 0)
492*fd501800SSascha Wildner 		return (EINVAL);
493*fd501800SSascha Wildner 
494*fd501800SSascha Wildner 	error = copyin(cmd->buf, cm->cm_data, cmd->len);
495*fd501800SSascha Wildner 	if (error != 0)
496*fd501800SSascha Wildner 		return (error);
497*fd501800SSascha Wildner 
498*fd501800SSascha Wildner 	mpr_init_sge(cm, req, &req->SGL);
499*fd501800SSascha Wildner 
500*fd501800SSascha Wildner 	/*
501*fd501800SSascha Wildner 	 * For now, the F/W image must be provided in a single request.
502*fd501800SSascha Wildner 	 */
503*fd501800SSascha Wildner 	if ((req->MsgFlags & MPI2_FW_DOWNLOAD_MSGFLGS_LAST_SEGMENT) == 0)
504*fd501800SSascha Wildner 		return (EINVAL);
505*fd501800SSascha Wildner 	if (req->TotalImageSize != cmd->len)
506*fd501800SSascha Wildner 		return (EINVAL);
507*fd501800SSascha Wildner 
508*fd501800SSascha Wildner 	req->ImageOffset = 0;
509*fd501800SSascha Wildner 	req->ImageSize = cmd->len;
510*fd501800SSascha Wildner 
511*fd501800SSascha Wildner 	cm->cm_flags |= MPR_CM_FLAGS_DATAOUT;
512*fd501800SSascha Wildner 
513*fd501800SSascha Wildner 	return (mpr_push_ieee_sge(cm, &req->SGL, 0));
514*fd501800SSascha Wildner }
515*fd501800SSascha Wildner 
516*fd501800SSascha Wildner /*
517*fd501800SSascha Wildner  * Prepare the mpr_command for a FW_UPLOAD request.
518*fd501800SSascha Wildner  */
519*fd501800SSascha Wildner static int
mpi_pre_fw_upload(struct mpr_command * cm,struct mpr_usr_command * cmd)520*fd501800SSascha Wildner mpi_pre_fw_upload(struct mpr_command *cm, struct mpr_usr_command *cmd)
521*fd501800SSascha Wildner {
522*fd501800SSascha Wildner 	MPI25_FW_UPLOAD_REQUEST *req = (void *)cm->cm_req;
523*fd501800SSascha Wildner 	MPI2_FW_UPLOAD_REPLY *rpl;
524*fd501800SSascha Wildner 
525*fd501800SSascha Wildner 	if (cmd->req_len != sizeof *req)
526*fd501800SSascha Wildner 		return (EINVAL);
527*fd501800SSascha Wildner 	if (cmd->rpl_len != sizeof *rpl)
528*fd501800SSascha Wildner 		return (EINVAL);
529*fd501800SSascha Wildner 
530*fd501800SSascha Wildner 	mpr_init_sge(cm, req, &req->SGL);
531*fd501800SSascha Wildner 	if (cmd->len == 0) {
532*fd501800SSascha Wildner 		/* Perhaps just asking what the size of the fw is? */
533*fd501800SSascha Wildner 		return (0);
534*fd501800SSascha Wildner 	}
535*fd501800SSascha Wildner 
536*fd501800SSascha Wildner 	req->ImageOffset = 0;
537*fd501800SSascha Wildner 	req->ImageSize = cmd->len;
538*fd501800SSascha Wildner 
539*fd501800SSascha Wildner 	cm->cm_flags |= MPR_CM_FLAGS_DATAIN;
540*fd501800SSascha Wildner 
541*fd501800SSascha Wildner 	return (mpr_push_ieee_sge(cm, &req->SGL, 0));
542*fd501800SSascha Wildner }
543*fd501800SSascha Wildner 
544*fd501800SSascha Wildner /*
545*fd501800SSascha Wildner  * Prepare the mpr_command for a SATA_PASSTHROUGH request.
546*fd501800SSascha Wildner  */
547*fd501800SSascha Wildner static int
mpi_pre_sata_passthrough(struct mpr_command * cm,struct mpr_usr_command * cmd)548*fd501800SSascha Wildner mpi_pre_sata_passthrough(struct mpr_command *cm, struct mpr_usr_command *cmd)
549*fd501800SSascha Wildner {
550*fd501800SSascha Wildner 	MPI2_SATA_PASSTHROUGH_REQUEST *req = (void *)cm->cm_req;
551*fd501800SSascha Wildner 	MPI2_SATA_PASSTHROUGH_REPLY *rpl;
552*fd501800SSascha Wildner 
553*fd501800SSascha Wildner 	if (cmd->req_len != sizeof *req)
554*fd501800SSascha Wildner 		return (EINVAL);
555*fd501800SSascha Wildner 	if (cmd->rpl_len != sizeof *rpl)
556*fd501800SSascha Wildner 		return (EINVAL);
557*fd501800SSascha Wildner 
558*fd501800SSascha Wildner 	mpr_init_sge(cm, req, &req->SGL);
559*fd501800SSascha Wildner 	return (0);
560*fd501800SSascha Wildner }
561*fd501800SSascha Wildner 
562*fd501800SSascha Wildner /*
563*fd501800SSascha Wildner  * Prepare the mpr_command for a SMP_PASSTHROUGH request.
564*fd501800SSascha Wildner  */
565*fd501800SSascha Wildner static int
mpi_pre_smp_passthrough(struct mpr_command * cm,struct mpr_usr_command * cmd)566*fd501800SSascha Wildner mpi_pre_smp_passthrough(struct mpr_command *cm, struct mpr_usr_command *cmd)
567*fd501800SSascha Wildner {
568*fd501800SSascha Wildner 	MPI2_SMP_PASSTHROUGH_REQUEST *req = (void *)cm->cm_req;
569*fd501800SSascha Wildner 	MPI2_SMP_PASSTHROUGH_REPLY *rpl;
570*fd501800SSascha Wildner 
571*fd501800SSascha Wildner 	if (cmd->req_len != sizeof *req)
572*fd501800SSascha Wildner 		return (EINVAL);
573*fd501800SSascha Wildner 	if (cmd->rpl_len != sizeof *rpl)
574*fd501800SSascha Wildner 		return (EINVAL);
575*fd501800SSascha Wildner 
576*fd501800SSascha Wildner 	mpr_init_sge(cm, req, &req->SGL);
577*fd501800SSascha Wildner 	return (0);
578*fd501800SSascha Wildner }
579*fd501800SSascha Wildner 
580*fd501800SSascha Wildner /*
581*fd501800SSascha Wildner  * Prepare the mpr_command for a CONFIG request.
582*fd501800SSascha Wildner  */
583*fd501800SSascha Wildner static int
mpi_pre_config(struct mpr_command * cm,struct mpr_usr_command * cmd)584*fd501800SSascha Wildner mpi_pre_config(struct mpr_command *cm, struct mpr_usr_command *cmd)
585*fd501800SSascha Wildner {
586*fd501800SSascha Wildner 	MPI2_CONFIG_REQUEST *req = (void *)cm->cm_req;
587*fd501800SSascha Wildner 	MPI2_CONFIG_REPLY *rpl;
588*fd501800SSascha Wildner 
589*fd501800SSascha Wildner 	if (cmd->req_len != sizeof *req)
590*fd501800SSascha Wildner 		return (EINVAL);
591*fd501800SSascha Wildner 	if (cmd->rpl_len != sizeof *rpl)
592*fd501800SSascha Wildner 		return (EINVAL);
593*fd501800SSascha Wildner 
594*fd501800SSascha Wildner 	mpr_init_sge(cm, req, &req->PageBufferSGE);
595*fd501800SSascha Wildner 	return (0);
596*fd501800SSascha Wildner }
597*fd501800SSascha Wildner 
598*fd501800SSascha Wildner /*
599*fd501800SSascha Wildner  * Prepare the mpr_command for a SAS_IO_UNIT_CONTROL request.
600*fd501800SSascha Wildner  */
601*fd501800SSascha Wildner static int
mpi_pre_sas_io_unit_control(struct mpr_command * cm,struct mpr_usr_command * cmd)602*fd501800SSascha Wildner mpi_pre_sas_io_unit_control(struct mpr_command *cm,
603*fd501800SSascha Wildner 			     struct mpr_usr_command *cmd)
604*fd501800SSascha Wildner {
605*fd501800SSascha Wildner 
606*fd501800SSascha Wildner 	cm->cm_sge = NULL;
607*fd501800SSascha Wildner 	cm->cm_sglsize = 0;
608*fd501800SSascha Wildner 	return (0);
609*fd501800SSascha Wildner }
610*fd501800SSascha Wildner 
611*fd501800SSascha Wildner /*
612*fd501800SSascha Wildner  * A set of functions to prepare an mpr_command for the various
613*fd501800SSascha Wildner  * supported requests.
614*fd501800SSascha Wildner  */
615*fd501800SSascha Wildner struct mpr_user_func {
616*fd501800SSascha Wildner 	U8		Function;
617*fd501800SSascha Wildner 	mpr_user_f	*f_pre;
618*fd501800SSascha Wildner } mpr_user_func_list[] = {
619*fd501800SSascha Wildner 	{ MPI2_FUNCTION_IOC_FACTS,		mpi_pre_ioc_facts },
620*fd501800SSascha Wildner 	{ MPI2_FUNCTION_PORT_FACTS,		mpi_pre_port_facts },
621*fd501800SSascha Wildner 	{ MPI2_FUNCTION_FW_DOWNLOAD, 		mpi_pre_fw_download },
622*fd501800SSascha Wildner 	{ MPI2_FUNCTION_FW_UPLOAD,		mpi_pre_fw_upload },
623*fd501800SSascha Wildner 	{ MPI2_FUNCTION_SATA_PASSTHROUGH,	mpi_pre_sata_passthrough },
624*fd501800SSascha Wildner 	{ MPI2_FUNCTION_SMP_PASSTHROUGH,	mpi_pre_smp_passthrough},
625*fd501800SSascha Wildner 	{ MPI2_FUNCTION_CONFIG,			mpi_pre_config},
626*fd501800SSascha Wildner 	{ MPI2_FUNCTION_SAS_IO_UNIT_CONTROL,	mpi_pre_sas_io_unit_control },
627*fd501800SSascha Wildner 	{ 0xFF,					NULL } /* list end */
628*fd501800SSascha Wildner };
629*fd501800SSascha Wildner 
630*fd501800SSascha Wildner static int
mpr_user_setup_request(struct mpr_command * cm,struct mpr_usr_command * cmd)631*fd501800SSascha Wildner mpr_user_setup_request(struct mpr_command *cm, struct mpr_usr_command *cmd)
632*fd501800SSascha Wildner {
633*fd501800SSascha Wildner 	MPI2_REQUEST_HEADER *hdr = (MPI2_REQUEST_HEADER *)cm->cm_req;
634*fd501800SSascha Wildner 	struct mpr_user_func *f;
635*fd501800SSascha Wildner 
636*fd501800SSascha Wildner 	for (f = mpr_user_func_list; f->f_pre != NULL; f++) {
637*fd501800SSascha Wildner 		if (hdr->Function == f->Function)
638*fd501800SSascha Wildner 			return (f->f_pre(cm, cmd));
639*fd501800SSascha Wildner 	}
640*fd501800SSascha Wildner 	return (EINVAL);
641*fd501800SSascha Wildner }
642*fd501800SSascha Wildner 
643*fd501800SSascha Wildner static int
mpr_user_command(struct mpr_softc * sc,struct mpr_usr_command * cmd)644*fd501800SSascha Wildner mpr_user_command(struct mpr_softc *sc, struct mpr_usr_command *cmd)
645*fd501800SSascha Wildner {
646*fd501800SSascha Wildner 	MPI2_REQUEST_HEADER *hdr;
647*fd501800SSascha Wildner 	MPI2_DEFAULT_REPLY *rpl = NULL;
648*fd501800SSascha Wildner 	void *buf = NULL;
649*fd501800SSascha Wildner 	struct mpr_command *cm = NULL;
650*fd501800SSascha Wildner 	int err = 0;
651*fd501800SSascha Wildner 	int sz;
652*fd501800SSascha Wildner 
653*fd501800SSascha Wildner 	mpr_lock(sc);
654*fd501800SSascha Wildner 	cm = mpr_alloc_command(sc);
655*fd501800SSascha Wildner 
656*fd501800SSascha Wildner 	if (cm == NULL) {
657*fd501800SSascha Wildner 		mpr_printf(sc, "%s: no mpr requests\n", __func__);
658*fd501800SSascha Wildner 		err = ENOMEM;
659*fd501800SSascha Wildner 		goto RetFree;
660*fd501800SSascha Wildner 	}
661*fd501800SSascha Wildner 	mpr_unlock(sc);
662*fd501800SSascha Wildner 
663*fd501800SSascha Wildner 	hdr = (MPI2_REQUEST_HEADER *)cm->cm_req;
664*fd501800SSascha Wildner 
665*fd501800SSascha Wildner 	mpr_dprint(sc, MPR_USER, "%s: req %p %d  rpl %p %d\n", __func__,
666*fd501800SSascha Wildner 	    cmd->req, cmd->req_len, cmd->rpl, cmd->rpl_len);
667*fd501800SSascha Wildner 
668*fd501800SSascha Wildner 	if (cmd->req_len > (int)sc->reqframesz) {
669*fd501800SSascha Wildner 		err = EINVAL;
670*fd501800SSascha Wildner 		goto RetFreeUnlocked;
671*fd501800SSascha Wildner 	}
672*fd501800SSascha Wildner 	err = copyin(cmd->req, hdr, cmd->req_len);
673*fd501800SSascha Wildner 	if (err != 0)
674*fd501800SSascha Wildner 		goto RetFreeUnlocked;
675*fd501800SSascha Wildner 
676*fd501800SSascha Wildner 	mpr_dprint(sc, MPR_USER, "%s: Function %02X MsgFlags %02X\n", __func__,
677*fd501800SSascha Wildner 	    hdr->Function, hdr->MsgFlags);
678*fd501800SSascha Wildner 
679*fd501800SSascha Wildner 	if (cmd->len > 0) {
680*fd501800SSascha Wildner 		buf = kmalloc(cmd->len, M_MPRUSER, M_WAITOK|M_ZERO);
681*fd501800SSascha Wildner 		cm->cm_data = buf;
682*fd501800SSascha Wildner 		cm->cm_length = cmd->len;
683*fd501800SSascha Wildner 	} else {
684*fd501800SSascha Wildner 		cm->cm_data = NULL;
685*fd501800SSascha Wildner 		cm->cm_length = 0;
686*fd501800SSascha Wildner 	}
687*fd501800SSascha Wildner 
688*fd501800SSascha Wildner 	cm->cm_flags = MPR_CM_FLAGS_SGE_SIMPLE;
689*fd501800SSascha Wildner 	cm->cm_desc.Default.RequestFlags = MPI2_REQ_DESCRIPT_FLAGS_DEFAULT_TYPE;
690*fd501800SSascha Wildner 
691*fd501800SSascha Wildner 	err = mpr_user_setup_request(cm, cmd);
692*fd501800SSascha Wildner 	if (err == EINVAL) {
693*fd501800SSascha Wildner 		mpr_printf(sc, "%s: unsupported parameter or unsupported "
694*fd501800SSascha Wildner 		    "function in request (function = 0x%X)\n", __func__,
695*fd501800SSascha Wildner 		    hdr->Function);
696*fd501800SSascha Wildner 	}
697*fd501800SSascha Wildner 	if (err != 0)
698*fd501800SSascha Wildner 		goto RetFreeUnlocked;
699*fd501800SSascha Wildner 
700*fd501800SSascha Wildner 	mpr_lock(sc);
701*fd501800SSascha Wildner 	err = mpr_wait_command(sc, &cm, 30, CAN_SLEEP);
702*fd501800SSascha Wildner 
703*fd501800SSascha Wildner 	if (err || (cm == NULL)) {
704*fd501800SSascha Wildner 		mpr_printf(sc, "%s: invalid request: error %d\n",
705*fd501800SSascha Wildner 		    __func__, err);
706*fd501800SSascha Wildner 		goto RetFree;
707*fd501800SSascha Wildner 	}
708*fd501800SSascha Wildner 
709*fd501800SSascha Wildner 	if (cm != NULL)
710*fd501800SSascha Wildner 		rpl = (MPI2_DEFAULT_REPLY *)cm->cm_reply;
711*fd501800SSascha Wildner 	if (rpl != NULL)
712*fd501800SSascha Wildner 		sz = rpl->MsgLength * 4;
713*fd501800SSascha Wildner 	else
714*fd501800SSascha Wildner 		sz = 0;
715*fd501800SSascha Wildner 
716*fd501800SSascha Wildner 	if (sz > cmd->rpl_len) {
717*fd501800SSascha Wildner 		mpr_printf(sc, "%s: user reply buffer (%d) smaller than "
718*fd501800SSascha Wildner 		    "returned buffer (%d)\n", __func__, cmd->rpl_len, sz);
719*fd501800SSascha Wildner 		sz = cmd->rpl_len;
720*fd501800SSascha Wildner 	}
721*fd501800SSascha Wildner 
722*fd501800SSascha Wildner 	mpr_unlock(sc);
723*fd501800SSascha Wildner 	copyout(rpl, cmd->rpl, sz);
724*fd501800SSascha Wildner 	if (buf != NULL)
725*fd501800SSascha Wildner 		copyout(buf, cmd->buf, cmd->len);
726*fd501800SSascha Wildner 	mpr_dprint(sc, MPR_USER, "%s: reply size %d\n", __func__, sz);
727*fd501800SSascha Wildner 
728*fd501800SSascha Wildner RetFreeUnlocked:
729*fd501800SSascha Wildner 	mpr_lock(sc);
730*fd501800SSascha Wildner RetFree:
731*fd501800SSascha Wildner 	if (cm != NULL)
732*fd501800SSascha Wildner 		mpr_free_command(sc, cm);
733*fd501800SSascha Wildner 	mpr_unlock(sc);
734*fd501800SSascha Wildner 	if (buf != NULL)
735*fd501800SSascha Wildner 		kfree(buf, M_MPRUSER);
736*fd501800SSascha Wildner 	return (err);
737*fd501800SSascha Wildner }
738*fd501800SSascha Wildner 
739*fd501800SSascha Wildner static int
mpr_user_pass_thru(struct mpr_softc * sc,mpr_pass_thru_t * data)740*fd501800SSascha Wildner mpr_user_pass_thru(struct mpr_softc *sc, mpr_pass_thru_t *data)
741*fd501800SSascha Wildner {
742*fd501800SSascha Wildner 	MPI2_REQUEST_HEADER	*hdr, tmphdr;
743*fd501800SSascha Wildner 	MPI2_DEFAULT_REPLY	*rpl;
744*fd501800SSascha Wildner 	Mpi26NVMeEncapsulatedErrorReply_t *nvme_error_reply = NULL;
745*fd501800SSascha Wildner 	Mpi26NVMeEncapsulatedRequest_t *nvme_encap_request = NULL;
746*fd501800SSascha Wildner 	struct mpr_command	*cm = NULL;
747*fd501800SSascha Wildner 	int			i, err = 0, dir = 0, sz;
748*fd501800SSascha Wildner 	uint8_t			tool, function = 0;
749*fd501800SSascha Wildner 	u_int			sense_len;
750*fd501800SSascha Wildner 	struct mprsas_target	*targ = NULL;
751*fd501800SSascha Wildner 
752*fd501800SSascha Wildner 	/*
753*fd501800SSascha Wildner 	 * Only allow one passthru command at a time.  Use the MPR_FLAGS_BUSY
754*fd501800SSascha Wildner 	 * bit to denote that a passthru is being processed.
755*fd501800SSascha Wildner 	 */
756*fd501800SSascha Wildner 	mpr_lock(sc);
757*fd501800SSascha Wildner 	if (sc->mpr_flags & MPR_FLAGS_BUSY) {
758*fd501800SSascha Wildner 		mpr_dprint(sc, MPR_USER, "%s: Only one passthru command "
759*fd501800SSascha Wildner 		    "allowed at a single time.", __func__);
760*fd501800SSascha Wildner 		mpr_unlock(sc);
761*fd501800SSascha Wildner 		return (EBUSY);
762*fd501800SSascha Wildner 	}
763*fd501800SSascha Wildner 	sc->mpr_flags |= MPR_FLAGS_BUSY;
764*fd501800SSascha Wildner 	mpr_unlock(sc);
765*fd501800SSascha Wildner 
766*fd501800SSascha Wildner 	/*
767*fd501800SSascha Wildner 	 * Do some validation on data direction.  Valid cases are:
768*fd501800SSascha Wildner 	 *    1) DataSize is 0 and direction is NONE
769*fd501800SSascha Wildner 	 *    2) DataSize is non-zero and one of:
770*fd501800SSascha Wildner 	 *        a) direction is READ or
771*fd501800SSascha Wildner 	 *        b) direction is WRITE or
772*fd501800SSascha Wildner 	 *        c) direction is BOTH and DataOutSize is non-zero
773*fd501800SSascha Wildner 	 * If valid and the direction is BOTH, change the direction to READ.
774*fd501800SSascha Wildner 	 * if valid and the direction is not BOTH, make sure DataOutSize is 0.
775*fd501800SSascha Wildner 	 */
776*fd501800SSascha Wildner 	if (((data->DataSize == 0) &&
777*fd501800SSascha Wildner 	    (data->DataDirection == MPR_PASS_THRU_DIRECTION_NONE)) ||
778*fd501800SSascha Wildner 	    ((data->DataSize != 0) &&
779*fd501800SSascha Wildner 	    ((data->DataDirection == MPR_PASS_THRU_DIRECTION_READ) ||
780*fd501800SSascha Wildner 	    (data->DataDirection == MPR_PASS_THRU_DIRECTION_WRITE) ||
781*fd501800SSascha Wildner 	    ((data->DataDirection == MPR_PASS_THRU_DIRECTION_BOTH) &&
782*fd501800SSascha Wildner 	    (data->DataOutSize != 0))))) {
783*fd501800SSascha Wildner 		if (data->DataDirection == MPR_PASS_THRU_DIRECTION_BOTH)
784*fd501800SSascha Wildner 			data->DataDirection = MPR_PASS_THRU_DIRECTION_READ;
785*fd501800SSascha Wildner 		else
786*fd501800SSascha Wildner 			data->DataOutSize = 0;
787*fd501800SSascha Wildner 	} else
788*fd501800SSascha Wildner 		return (EINVAL);
789*fd501800SSascha Wildner 
790*fd501800SSascha Wildner 	mpr_dprint(sc, MPR_USER, "%s: req 0x%jx %d  rpl 0x%jx %d "
791*fd501800SSascha Wildner 	    "data in 0x%jx %d data out 0x%jx %d data dir %d\n", __func__,
792*fd501800SSascha Wildner 	    data->PtrRequest, data->RequestSize, data->PtrReply,
793*fd501800SSascha Wildner 	    data->ReplySize, data->PtrData, data->DataSize,
794*fd501800SSascha Wildner 	    data->PtrDataOut, data->DataOutSize, data->DataDirection);
795*fd501800SSascha Wildner 
796*fd501800SSascha Wildner 	/*
797*fd501800SSascha Wildner 	 * copy in the header so we know what we're dealing with before we
798*fd501800SSascha Wildner 	 * commit to allocating a command for it.
799*fd501800SSascha Wildner 	 */
800*fd501800SSascha Wildner 	err = copyin(PTRIN(data->PtrRequest), &tmphdr, data->RequestSize);
801*fd501800SSascha Wildner 	if (err != 0)
802*fd501800SSascha Wildner 		goto RetFreeUnlocked;
803*fd501800SSascha Wildner 
804*fd501800SSascha Wildner 	if (data->RequestSize > (int)sc->reqframesz) {
805*fd501800SSascha Wildner 		err = EINVAL;
806*fd501800SSascha Wildner 		goto RetFreeUnlocked;
807*fd501800SSascha Wildner 	}
808*fd501800SSascha Wildner 
809*fd501800SSascha Wildner 	function = tmphdr.Function;
810*fd501800SSascha Wildner 	mpr_dprint(sc, MPR_USER, "%s: Function %02X MsgFlags %02X\n", __func__,
811*fd501800SSascha Wildner 	    function, tmphdr.MsgFlags);
812*fd501800SSascha Wildner 
813*fd501800SSascha Wildner 	/*
814*fd501800SSascha Wildner 	 * Handle a passthru TM request.
815*fd501800SSascha Wildner 	 */
816*fd501800SSascha Wildner 	if (function == MPI2_FUNCTION_SCSI_TASK_MGMT) {
817*fd501800SSascha Wildner 		MPI2_SCSI_TASK_MANAGE_REQUEST	*task;
818*fd501800SSascha Wildner 
819*fd501800SSascha Wildner 		mpr_lock(sc);
820*fd501800SSascha Wildner 		cm = mprsas_alloc_tm(sc);
821*fd501800SSascha Wildner 		if (cm == NULL) {
822*fd501800SSascha Wildner 			err = EINVAL;
823*fd501800SSascha Wildner 			goto Ret;
824*fd501800SSascha Wildner 		}
825*fd501800SSascha Wildner 
826*fd501800SSascha Wildner 		/* Copy the header in.  Only a small fixup is needed. */
827*fd501800SSascha Wildner 		task = (MPI2_SCSI_TASK_MANAGE_REQUEST *)cm->cm_req;
828*fd501800SSascha Wildner 		bcopy(&tmphdr, task, data->RequestSize);
829*fd501800SSascha Wildner 		task->TaskMID = cm->cm_desc.Default.SMID;
830*fd501800SSascha Wildner 
831*fd501800SSascha Wildner 		cm->cm_data = NULL;
832*fd501800SSascha Wildner 		cm->cm_desc.HighPriority.RequestFlags =
833*fd501800SSascha Wildner 		    MPI2_REQ_DESCRIPT_FLAGS_HIGH_PRIORITY;
834*fd501800SSascha Wildner 		cm->cm_complete = NULL;
835*fd501800SSascha Wildner 		cm->cm_complete_data = NULL;
836*fd501800SSascha Wildner 
837*fd501800SSascha Wildner 		targ = mprsas_find_target_by_handle(sc->sassc, 0,
838*fd501800SSascha Wildner 		    task->DevHandle);
839*fd501800SSascha Wildner 		if (targ == NULL) {
840*fd501800SSascha Wildner 			mpr_dprint(sc, MPR_INFO,
841*fd501800SSascha Wildner 			   "%s %d : invalid handle for requested TM 0x%x \n",
842*fd501800SSascha Wildner 			   __func__, __LINE__, task->DevHandle);
843*fd501800SSascha Wildner 			err = 1;
844*fd501800SSascha Wildner 		} else {
845*fd501800SSascha Wildner 			mprsas_prepare_for_tm(sc, cm, targ, CAM_LUN_WILDCARD);
846*fd501800SSascha Wildner 			err = mpr_wait_command(sc, &cm, 30, CAN_SLEEP);
847*fd501800SSascha Wildner 		}
848*fd501800SSascha Wildner 
849*fd501800SSascha Wildner 		if (err != 0) {
850*fd501800SSascha Wildner 			err = EIO;
851*fd501800SSascha Wildner 			mpr_dprint(sc, MPR_FAULT, "%s: task management failed",
852*fd501800SSascha Wildner 			    __func__);
853*fd501800SSascha Wildner 		}
854*fd501800SSascha Wildner 		/*
855*fd501800SSascha Wildner 		 * Copy the reply data and sense data to user space.
856*fd501800SSascha Wildner 		 */
857*fd501800SSascha Wildner 		if ((cm != NULL) && (cm->cm_reply != NULL)) {
858*fd501800SSascha Wildner 			rpl = (MPI2_DEFAULT_REPLY *)cm->cm_reply;
859*fd501800SSascha Wildner 			sz = rpl->MsgLength * 4;
860*fd501800SSascha Wildner 
861*fd501800SSascha Wildner 			if (sz > data->ReplySize) {
862*fd501800SSascha Wildner 				mpr_printf(sc, "%s: user reply buffer (%d) "
863*fd501800SSascha Wildner 				    "smaller than returned buffer (%d)\n",
864*fd501800SSascha Wildner 				    __func__, data->ReplySize, sz);
865*fd501800SSascha Wildner 			}
866*fd501800SSascha Wildner 			mpr_unlock(sc);
867*fd501800SSascha Wildner 			copyout(cm->cm_reply, PTRIN(data->PtrReply),
868*fd501800SSascha Wildner 			    data->ReplySize);
869*fd501800SSascha Wildner 			mpr_lock(sc);
870*fd501800SSascha Wildner 		}
871*fd501800SSascha Wildner 		mprsas_free_tm(sc, cm);
872*fd501800SSascha Wildner 		goto Ret;
873*fd501800SSascha Wildner 	}
874*fd501800SSascha Wildner 
875*fd501800SSascha Wildner 	mpr_lock(sc);
876*fd501800SSascha Wildner 	cm = mpr_alloc_command(sc);
877*fd501800SSascha Wildner 
878*fd501800SSascha Wildner 	if (cm == NULL) {
879*fd501800SSascha Wildner 		mpr_printf(sc, "%s: no mpr requests\n", __func__);
880*fd501800SSascha Wildner 		err = ENOMEM;
881*fd501800SSascha Wildner 		goto Ret;
882*fd501800SSascha Wildner 	}
883*fd501800SSascha Wildner 	mpr_unlock(sc);
884*fd501800SSascha Wildner 
885*fd501800SSascha Wildner 	hdr = (MPI2_REQUEST_HEADER *)cm->cm_req;
886*fd501800SSascha Wildner 	bcopy(&tmphdr, hdr, data->RequestSize);
887*fd501800SSascha Wildner 
888*fd501800SSascha Wildner 	/*
889*fd501800SSascha Wildner 	 * Do some checking to make sure the IOCTL request contains a valid
890*fd501800SSascha Wildner 	 * request.  Then set the SGL info.
891*fd501800SSascha Wildner 	 */
892*fd501800SSascha Wildner 	mpr_init_sge(cm, hdr, (void *)((uint8_t *)hdr + data->RequestSize));
893*fd501800SSascha Wildner 
894*fd501800SSascha Wildner 	/*
895*fd501800SSascha Wildner 	 * Set up for read, write or both.  From check above, DataOutSize will
896*fd501800SSascha Wildner 	 * be 0 if direction is READ or WRITE, but it will have some non-zero
897*fd501800SSascha Wildner 	 * value if the direction is BOTH.  So, just use the biggest size to get
898*fd501800SSascha Wildner 	 * the cm_data buffer size.  If direction is BOTH, 2 SGLs need to be set
899*fd501800SSascha Wildner 	 * up; the first is for the request and the second will contain the
900*fd501800SSascha Wildner 	 * response data. cm_out_len needs to be set here and this will be used
901*fd501800SSascha Wildner 	 * when the SGLs are set up.
902*fd501800SSascha Wildner 	 */
903*fd501800SSascha Wildner 	cm->cm_data = NULL;
904*fd501800SSascha Wildner 	cm->cm_length = MAX(data->DataSize, data->DataOutSize);
905*fd501800SSascha Wildner 	cm->cm_out_len = data->DataOutSize;
906*fd501800SSascha Wildner 	cm->cm_flags = 0;
907*fd501800SSascha Wildner 	if (cm->cm_length != 0) {
908*fd501800SSascha Wildner 		cm->cm_data = kmalloc(cm->cm_length, M_MPRUSER, M_WAITOK |
909*fd501800SSascha Wildner 		    M_ZERO);
910*fd501800SSascha Wildner 		cm->cm_flags = MPR_CM_FLAGS_DATAIN;
911*fd501800SSascha Wildner 		if (data->DataOutSize) {
912*fd501800SSascha Wildner 			cm->cm_flags |= MPR_CM_FLAGS_DATAOUT;
913*fd501800SSascha Wildner 			err = copyin(PTRIN(data->PtrDataOut),
914*fd501800SSascha Wildner 			    cm->cm_data, data->DataOutSize);
915*fd501800SSascha Wildner 		} else if (data->DataDirection ==
916*fd501800SSascha Wildner 		    MPR_PASS_THRU_DIRECTION_WRITE) {
917*fd501800SSascha Wildner 			cm->cm_flags = MPR_CM_FLAGS_DATAOUT;
918*fd501800SSascha Wildner 			err = copyin(PTRIN(data->PtrData),
919*fd501800SSascha Wildner 			    cm->cm_data, data->DataSize);
920*fd501800SSascha Wildner 		}
921*fd501800SSascha Wildner 		if (err != 0)
922*fd501800SSascha Wildner 			mpr_dprint(sc, MPR_FAULT, "%s: failed to copy IOCTL "
923*fd501800SSascha Wildner 			    "data from user space\n", __func__);
924*fd501800SSascha Wildner 	}
925*fd501800SSascha Wildner 	/*
926*fd501800SSascha Wildner 	 * Set this flag only if processing a command that does not need an
927*fd501800SSascha Wildner 	 * IEEE SGL.  The CLI Tool within the Toolbox uses IEEE SGLs, so clear
928*fd501800SSascha Wildner 	 * the flag only for that tool if processing a Toolbox function.
929*fd501800SSascha Wildner 	 */
930*fd501800SSascha Wildner 	cm->cm_flags |= MPR_CM_FLAGS_SGE_SIMPLE;
931*fd501800SSascha Wildner 	for (i = 0; i < sizeof (ieee_sgl_func_list); i++) {
932*fd501800SSascha Wildner 		if (function == ieee_sgl_func_list[i]) {
933*fd501800SSascha Wildner 			if (function == MPI2_FUNCTION_TOOLBOX)
934*fd501800SSascha Wildner 			{
935*fd501800SSascha Wildner 				tool = (uint8_t)hdr->FunctionDependent1;
936*fd501800SSascha Wildner 				if (tool != MPI2_TOOLBOX_DIAGNOSTIC_CLI_TOOL)
937*fd501800SSascha Wildner 					break;
938*fd501800SSascha Wildner 			}
939*fd501800SSascha Wildner 			cm->cm_flags &= ~MPR_CM_FLAGS_SGE_SIMPLE;
940*fd501800SSascha Wildner 			break;
941*fd501800SSascha Wildner 		}
942*fd501800SSascha Wildner 	}
943*fd501800SSascha Wildner 	cm->cm_desc.Default.RequestFlags = MPI2_REQ_DESCRIPT_FLAGS_DEFAULT_TYPE;
944*fd501800SSascha Wildner 
945*fd501800SSascha Wildner 	if (function == MPI2_FUNCTION_NVME_ENCAPSULATED) {
946*fd501800SSascha Wildner 		nvme_encap_request =
947*fd501800SSascha Wildner 		    (Mpi26NVMeEncapsulatedRequest_t *)cm->cm_req;
948*fd501800SSascha Wildner 		cm->cm_desc.Default.RequestFlags =
949*fd501800SSascha Wildner 		    MPI26_REQ_DESCRIPT_FLAGS_PCIE_ENCAPSULATED;
950*fd501800SSascha Wildner 
951*fd501800SSascha Wildner 		/*
952*fd501800SSascha Wildner 		 * Get the Physical Address of the sense buffer.
953*fd501800SSascha Wildner 		 * Save the user's Error Response buffer address and use that
954*fd501800SSascha Wildner 		 *   field to hold the sense buffer address.
955*fd501800SSascha Wildner 		 * Clear the internal sense buffer, which will potentially hold
956*fd501800SSascha Wildner 		 *   the Completion Queue Entry on return, or 0 if no Entry.
957*fd501800SSascha Wildner 		 * Build the PRPs and set direction bits.
958*fd501800SSascha Wildner 		 * Send the request.
959*fd501800SSascha Wildner 		 */
960*fd501800SSascha Wildner 		cm->nvme_error_response =
961*fd501800SSascha Wildner 		    (uint64_t *)(uintptr_t)(((uint64_t)nvme_encap_request->
962*fd501800SSascha Wildner 		    ErrorResponseBaseAddress.High << 32) |
963*fd501800SSascha Wildner 		    (uint64_t)nvme_encap_request->
964*fd501800SSascha Wildner 		    ErrorResponseBaseAddress.Low);
965*fd501800SSascha Wildner 		nvme_encap_request->ErrorResponseBaseAddress.High =
966*fd501800SSascha Wildner 		    htole32((uint32_t)((uint64_t)cm->cm_sense_busaddr >> 32));
967*fd501800SSascha Wildner 		nvme_encap_request->ErrorResponseBaseAddress.Low =
968*fd501800SSascha Wildner 		    htole32(cm->cm_sense_busaddr);
969*fd501800SSascha Wildner 		memset(cm->cm_sense, 0, NVME_ERROR_RESPONSE_SIZE);
970*fd501800SSascha Wildner 		mpr_build_nvme_prp(sc, cm, nvme_encap_request, cm->cm_data,
971*fd501800SSascha Wildner 		    data->DataSize, data->DataOutSize);
972*fd501800SSascha Wildner 	}
973*fd501800SSascha Wildner 
974*fd501800SSascha Wildner 	/*
975*fd501800SSascha Wildner 	 * Set up Sense buffer and SGL offset for IO passthru.  SCSI IO request
976*fd501800SSascha Wildner 	 * uses SCSI IO or Fast Path SCSI IO descriptor.
977*fd501800SSascha Wildner 	 */
978*fd501800SSascha Wildner 	if ((function == MPI2_FUNCTION_SCSI_IO_REQUEST) ||
979*fd501800SSascha Wildner 	    (function == MPI2_FUNCTION_RAID_SCSI_IO_PASSTHROUGH)) {
980*fd501800SSascha Wildner 		MPI2_SCSI_IO_REQUEST	*scsi_io_req;
981*fd501800SSascha Wildner 
982*fd501800SSascha Wildner 		scsi_io_req = (MPI2_SCSI_IO_REQUEST *)hdr;
983*fd501800SSascha Wildner 		/*
984*fd501800SSascha Wildner 		 * Put SGE for data and data_out buffer at the end of
985*fd501800SSascha Wildner 		 * scsi_io_request message header (64 bytes in total).
986*fd501800SSascha Wildner 		 * Following above SGEs, the residual space will be used by
987*fd501800SSascha Wildner 		 * sense data.
988*fd501800SSascha Wildner 		 */
989*fd501800SSascha Wildner 		scsi_io_req->SenseBufferLength = (uint8_t)(data->RequestSize -
990*fd501800SSascha Wildner 		    64);
991*fd501800SSascha Wildner 		scsi_io_req->SenseBufferLowAddress =
992*fd501800SSascha Wildner 		    htole32(cm->cm_sense_busaddr);
993*fd501800SSascha Wildner 
994*fd501800SSascha Wildner 		/*
995*fd501800SSascha Wildner 		 * Set SGLOffset0 value.  This is the number of dwords that SGL
996*fd501800SSascha Wildner 		 * is offset from the beginning of MPI2_SCSI_IO_REQUEST struct.
997*fd501800SSascha Wildner 		 */
998*fd501800SSascha Wildner 		scsi_io_req->SGLOffset0 = 24;
999*fd501800SSascha Wildner 
1000*fd501800SSascha Wildner 		/*
1001*fd501800SSascha Wildner 		 * Setup descriptor info.  RAID passthrough must use the
1002*fd501800SSascha Wildner 		 * default request descriptor which is already set, so if this
1003*fd501800SSascha Wildner 		 * is a SCSI IO request, change the descriptor to SCSI IO or
1004*fd501800SSascha Wildner 		 * Fast Path SCSI IO.  Also, if this is a SCSI IO request,
1005*fd501800SSascha Wildner 		 * handle the reply in the mprsas_scsio_complete function.
1006*fd501800SSascha Wildner 		 */
1007*fd501800SSascha Wildner 		if (function == MPI2_FUNCTION_SCSI_IO_REQUEST) {
1008*fd501800SSascha Wildner 			targ = mprsas_find_target_by_handle(sc->sassc, 0,
1009*fd501800SSascha Wildner 			    scsi_io_req->DevHandle);
1010*fd501800SSascha Wildner 
1011*fd501800SSascha Wildner 			if (!targ) {
1012*fd501800SSascha Wildner 				kprintf("No Target found for handle %d\n",
1013*fd501800SSascha Wildner 				    scsi_io_req->DevHandle);
1014*fd501800SSascha Wildner 				err = EINVAL;
1015*fd501800SSascha Wildner 				goto RetFreeUnlocked;
1016*fd501800SSascha Wildner 			}
1017*fd501800SSascha Wildner 
1018*fd501800SSascha Wildner 			if (targ->scsi_req_desc_type ==
1019*fd501800SSascha Wildner 			    MPI25_REQ_DESCRIPT_FLAGS_FAST_PATH_SCSI_IO) {
1020*fd501800SSascha Wildner 				cm->cm_desc.FastPathSCSIIO.RequestFlags =
1021*fd501800SSascha Wildner 				    MPI25_REQ_DESCRIPT_FLAGS_FAST_PATH_SCSI_IO;
1022*fd501800SSascha Wildner 				if (!sc->atomic_desc_capable) {
1023*fd501800SSascha Wildner 					cm->cm_desc.FastPathSCSIIO.DevHandle =
1024*fd501800SSascha Wildner 					    scsi_io_req->DevHandle;
1025*fd501800SSascha Wildner 				}
1026*fd501800SSascha Wildner 				scsi_io_req->IoFlags |=
1027*fd501800SSascha Wildner 				    MPI25_SCSIIO_IOFLAGS_FAST_PATH;
1028*fd501800SSascha Wildner 			} else {
1029*fd501800SSascha Wildner 				cm->cm_desc.SCSIIO.RequestFlags =
1030*fd501800SSascha Wildner 				    MPI2_REQ_DESCRIPT_FLAGS_SCSI_IO;
1031*fd501800SSascha Wildner 				if (!sc->atomic_desc_capable) {
1032*fd501800SSascha Wildner 					cm->cm_desc.SCSIIO.DevHandle =
1033*fd501800SSascha Wildner 					    scsi_io_req->DevHandle;
1034*fd501800SSascha Wildner 				}
1035*fd501800SSascha Wildner 			}
1036*fd501800SSascha Wildner 
1037*fd501800SSascha Wildner 			/*
1038*fd501800SSascha Wildner 			 * Make sure the DevHandle is not 0 because this is a
1039*fd501800SSascha Wildner 			 * likely error.
1040*fd501800SSascha Wildner 			 */
1041*fd501800SSascha Wildner 			if (scsi_io_req->DevHandle == 0) {
1042*fd501800SSascha Wildner 				err = EINVAL;
1043*fd501800SSascha Wildner 				goto RetFreeUnlocked;
1044*fd501800SSascha Wildner 			}
1045*fd501800SSascha Wildner 		}
1046*fd501800SSascha Wildner 	}
1047*fd501800SSascha Wildner 
1048*fd501800SSascha Wildner 	mpr_lock(sc);
1049*fd501800SSascha Wildner 
1050*fd501800SSascha Wildner 	err = mpr_wait_command(sc, &cm, 30, CAN_SLEEP);
1051*fd501800SSascha Wildner 
1052*fd501800SSascha Wildner 	if (err || (cm == NULL)) {
1053*fd501800SSascha Wildner 		mpr_printf(sc, "%s: invalid request: error %d\n", __func__,
1054*fd501800SSascha Wildner 		    err);
1055*fd501800SSascha Wildner 		goto RetFree;
1056*fd501800SSascha Wildner 	}
1057*fd501800SSascha Wildner 
1058*fd501800SSascha Wildner 	/*
1059*fd501800SSascha Wildner 	 * Sync the DMA data, if any.  Then copy the data to user space.
1060*fd501800SSascha Wildner 	 */
1061*fd501800SSascha Wildner 	if (cm->cm_data != NULL) {
1062*fd501800SSascha Wildner 		if (cm->cm_flags & MPR_CM_FLAGS_DATAIN)
1063*fd501800SSascha Wildner 			dir = BUS_DMASYNC_POSTREAD;
1064*fd501800SSascha Wildner 		else if (cm->cm_flags & MPR_CM_FLAGS_DATAOUT)
1065*fd501800SSascha Wildner 			dir = BUS_DMASYNC_POSTWRITE;
1066*fd501800SSascha Wildner 		bus_dmamap_sync(sc->buffer_dmat, cm->cm_dmamap, dir);
1067*fd501800SSascha Wildner 		bus_dmamap_unload(sc->buffer_dmat, cm->cm_dmamap);
1068*fd501800SSascha Wildner 
1069*fd501800SSascha Wildner 		if (cm->cm_flags & MPR_CM_FLAGS_DATAIN) {
1070*fd501800SSascha Wildner 			mpr_unlock(sc);
1071*fd501800SSascha Wildner 			err = copyout(cm->cm_data,
1072*fd501800SSascha Wildner 			    PTRIN(data->PtrData), data->DataSize);
1073*fd501800SSascha Wildner 			mpr_lock(sc);
1074*fd501800SSascha Wildner 			if (err != 0)
1075*fd501800SSascha Wildner 				mpr_dprint(sc, MPR_FAULT, "%s: failed to copy "
1076*fd501800SSascha Wildner 				    "IOCTL data to user space\n", __func__);
1077*fd501800SSascha Wildner 		}
1078*fd501800SSascha Wildner 	}
1079*fd501800SSascha Wildner 
1080*fd501800SSascha Wildner 	/*
1081*fd501800SSascha Wildner 	 * Copy the reply data and sense data to user space.
1082*fd501800SSascha Wildner 	 */
1083*fd501800SSascha Wildner 	if (cm->cm_reply != NULL) {
1084*fd501800SSascha Wildner 		rpl = (MPI2_DEFAULT_REPLY *)cm->cm_reply;
1085*fd501800SSascha Wildner 		sz = rpl->MsgLength * 4;
1086*fd501800SSascha Wildner 
1087*fd501800SSascha Wildner 		if (sz > data->ReplySize) {
1088*fd501800SSascha Wildner 			mpr_printf(sc, "%s: user reply buffer (%d) smaller "
1089*fd501800SSascha Wildner 			    "than returned buffer (%d)\n", __func__,
1090*fd501800SSascha Wildner 			    data->ReplySize, sz);
1091*fd501800SSascha Wildner 		}
1092*fd501800SSascha Wildner 		mpr_unlock(sc);
1093*fd501800SSascha Wildner 		copyout(cm->cm_reply, PTRIN(data->PtrReply), data->ReplySize);
1094*fd501800SSascha Wildner 		mpr_lock(sc);
1095*fd501800SSascha Wildner 
1096*fd501800SSascha Wildner 		if ((function == MPI2_FUNCTION_SCSI_IO_REQUEST) ||
1097*fd501800SSascha Wildner 		    (function == MPI2_FUNCTION_RAID_SCSI_IO_PASSTHROUGH)) {
1098*fd501800SSascha Wildner 			if (((MPI2_SCSI_IO_REPLY *)rpl)->SCSIState &
1099*fd501800SSascha Wildner 			    MPI2_SCSI_STATE_AUTOSENSE_VALID) {
1100*fd501800SSascha Wildner 				sense_len =
1101*fd501800SSascha Wildner 				    MIN((le32toh(((MPI2_SCSI_IO_REPLY *)rpl)->
1102*fd501800SSascha Wildner 				    SenseCount)), sizeof(struct
1103*fd501800SSascha Wildner 				    scsi_sense_data));
1104*fd501800SSascha Wildner 				mpr_unlock(sc);
1105*fd501800SSascha Wildner 				copyout(cm->cm_sense, cm->cm_req + 64,
1106*fd501800SSascha Wildner 				    sense_len);
1107*fd501800SSascha Wildner 				mpr_lock(sc);
1108*fd501800SSascha Wildner 			}
1109*fd501800SSascha Wildner 		}
1110*fd501800SSascha Wildner 
1111*fd501800SSascha Wildner 		/*
1112*fd501800SSascha Wildner 		 * Copy out the NVMe Error Reponse to user. The Error Response
1113*fd501800SSascha Wildner 		 * buffer is given by the user, but a sense buffer is used to
1114*fd501800SSascha Wildner 		 * get that data from the IOC. The user's
1115*fd501800SSascha Wildner 		 * ErrorResponseBaseAddress is saved in the
1116*fd501800SSascha Wildner 		 * 'nvme_error_response' field before the command because that
1117*fd501800SSascha Wildner 		 * field is set to a sense buffer. When the command is
1118*fd501800SSascha Wildner 		 * complete, the Error Response data from the IOC is copied to
1119*fd501800SSascha Wildner 		 * that user address after it is checked for validity.
1120*fd501800SSascha Wildner 		 * Also note that 'sense' buffers are not defined for
1121*fd501800SSascha Wildner 		 * NVMe commands. Sense terminalogy is only used here so that
1122*fd501800SSascha Wildner 		 * the same IOCTL structure and sense buffers can be used for
1123*fd501800SSascha Wildner 		 * NVMe.
1124*fd501800SSascha Wildner 		 */
1125*fd501800SSascha Wildner 		if (function == MPI2_FUNCTION_NVME_ENCAPSULATED) {
1126*fd501800SSascha Wildner 			if (cm->nvme_error_response == NULL) {
1127*fd501800SSascha Wildner 				mpr_dprint(sc, MPR_INFO, "NVMe Error Response "
1128*fd501800SSascha Wildner 				    "buffer is NULL. Response data will not be "
1129*fd501800SSascha Wildner 				    "returned.\n");
1130*fd501800SSascha Wildner 				mpr_unlock(sc);
1131*fd501800SSascha Wildner 				goto RetFreeUnlocked;
1132*fd501800SSascha Wildner 			}
1133*fd501800SSascha Wildner 
1134*fd501800SSascha Wildner 			nvme_error_reply =
1135*fd501800SSascha Wildner 			    (Mpi26NVMeEncapsulatedErrorReply_t *)cm->cm_reply;
1136*fd501800SSascha Wildner 			sz = MIN(le32toh(nvme_error_reply->ErrorResponseCount),
1137*fd501800SSascha Wildner 			    NVME_ERROR_RESPONSE_SIZE);
1138*fd501800SSascha Wildner 			mpr_unlock(sc);
1139*fd501800SSascha Wildner 			copyout(cm->cm_sense, cm->nvme_error_response, sz);
1140*fd501800SSascha Wildner 			mpr_lock(sc);
1141*fd501800SSascha Wildner 		}
1142*fd501800SSascha Wildner 	}
1143*fd501800SSascha Wildner 	mpr_unlock(sc);
1144*fd501800SSascha Wildner 
1145*fd501800SSascha Wildner RetFreeUnlocked:
1146*fd501800SSascha Wildner 	mpr_lock(sc);
1147*fd501800SSascha Wildner 
1148*fd501800SSascha Wildner RetFree:
1149*fd501800SSascha Wildner 	if (cm != NULL) {
1150*fd501800SSascha Wildner 		if (cm->cm_data)
1151*fd501800SSascha Wildner 			kfree(cm->cm_data, M_MPRUSER);
1152*fd501800SSascha Wildner 		mpr_free_command(sc, cm);
1153*fd501800SSascha Wildner 	}
1154*fd501800SSascha Wildner Ret:
1155*fd501800SSascha Wildner 	sc->mpr_flags &= ~MPR_FLAGS_BUSY;
1156*fd501800SSascha Wildner 	mpr_unlock(sc);
1157*fd501800SSascha Wildner 
1158*fd501800SSascha Wildner 	return (err);
1159*fd501800SSascha Wildner }
1160*fd501800SSascha Wildner 
1161*fd501800SSascha Wildner static void
mpr_user_get_adapter_data(struct mpr_softc * sc,mpr_adapter_data_t * data)1162*fd501800SSascha Wildner mpr_user_get_adapter_data(struct mpr_softc *sc, mpr_adapter_data_t *data)
1163*fd501800SSascha Wildner {
1164*fd501800SSascha Wildner 	Mpi2ConfigReply_t	mpi_reply;
1165*fd501800SSascha Wildner 	Mpi2BiosPage3_t		config_page;
1166*fd501800SSascha Wildner 
1167*fd501800SSascha Wildner 	/*
1168*fd501800SSascha Wildner 	 * Use the PCI interface functions to get the Bus, Device, and Function
1169*fd501800SSascha Wildner 	 * information.
1170*fd501800SSascha Wildner 	 */
1171*fd501800SSascha Wildner 	data->PciInformation.u.bits.BusNumber = pci_get_bus(sc->mpr_dev);
1172*fd501800SSascha Wildner 	data->PciInformation.u.bits.DeviceNumber = pci_get_slot(sc->mpr_dev);
1173*fd501800SSascha Wildner 	data->PciInformation.u.bits.FunctionNumber =
1174*fd501800SSascha Wildner 	    pci_get_function(sc->mpr_dev);
1175*fd501800SSascha Wildner 
1176*fd501800SSascha Wildner 	/*
1177*fd501800SSascha Wildner 	 * Get the FW version that should already be saved in IOC Facts.
1178*fd501800SSascha Wildner 	 */
1179*fd501800SSascha Wildner 	data->MpiFirmwareVersion = sc->facts->FWVersion.Word;
1180*fd501800SSascha Wildner 
1181*fd501800SSascha Wildner 	/*
1182*fd501800SSascha Wildner 	 * General device info.
1183*fd501800SSascha Wildner 	 */
1184*fd501800SSascha Wildner 	if (sc->mpr_flags & MPR_FLAGS_GEN35_IOC)
1185*fd501800SSascha Wildner 		data->AdapterType = MPRIOCTL_ADAPTER_TYPE_SAS35;
1186*fd501800SSascha Wildner 	else
1187*fd501800SSascha Wildner 		data->AdapterType = MPRIOCTL_ADAPTER_TYPE_SAS3;
1188*fd501800SSascha Wildner 	data->PCIDeviceHwId = pci_get_device(sc->mpr_dev);
1189*fd501800SSascha Wildner 	data->PCIDeviceHwRev = pci_read_config(sc->mpr_dev, PCIR_REVID, 1);
1190*fd501800SSascha Wildner 	data->SubSystemId = pci_get_subdevice(sc->mpr_dev);
1191*fd501800SSascha Wildner 	data->SubsystemVendorId = pci_get_subvendor(sc->mpr_dev);
1192*fd501800SSascha Wildner 
1193*fd501800SSascha Wildner 	/*
1194*fd501800SSascha Wildner 	 * Get the driver version.
1195*fd501800SSascha Wildner 	 */
1196*fd501800SSascha Wildner 	strcpy((char *)&data->DriverVersion[0], MPR_DRIVER_VERSION);
1197*fd501800SSascha Wildner 
1198*fd501800SSascha Wildner 	/*
1199*fd501800SSascha Wildner 	 * Need to get BIOS Config Page 3 for the BIOS Version.
1200*fd501800SSascha Wildner 	 */
1201*fd501800SSascha Wildner 	data->BiosVersion = 0;
1202*fd501800SSascha Wildner 	mpr_lock(sc);
1203*fd501800SSascha Wildner 	if (mpr_config_get_bios_pg3(sc, &mpi_reply, &config_page))
1204*fd501800SSascha Wildner 		kprintf("%s: Error while retrieving BIOS Version\n", __func__);
1205*fd501800SSascha Wildner 	else
1206*fd501800SSascha Wildner 		data->BiosVersion = config_page.BiosVersion;
1207*fd501800SSascha Wildner 	mpr_unlock(sc);
1208*fd501800SSascha Wildner }
1209*fd501800SSascha Wildner 
1210*fd501800SSascha Wildner static void
mpr_user_read_pci_info(struct mpr_softc * sc,mpr_pci_info_t * data)1211*fd501800SSascha Wildner mpr_user_read_pci_info(struct mpr_softc *sc, mpr_pci_info_t *data)
1212*fd501800SSascha Wildner {
1213*fd501800SSascha Wildner 	int	i;
1214*fd501800SSascha Wildner 
1215*fd501800SSascha Wildner 	/*
1216*fd501800SSascha Wildner 	 * Use the PCI interface functions to get the Bus, Device, and Function
1217*fd501800SSascha Wildner 	 * information.
1218*fd501800SSascha Wildner 	 */
1219*fd501800SSascha Wildner 	data->BusNumber = pci_get_bus(sc->mpr_dev);
1220*fd501800SSascha Wildner 	data->DeviceNumber = pci_get_slot(sc->mpr_dev);
1221*fd501800SSascha Wildner 	data->FunctionNumber = pci_get_function(sc->mpr_dev);
1222*fd501800SSascha Wildner 
1223*fd501800SSascha Wildner 	/*
1224*fd501800SSascha Wildner 	 * Now get the interrupt vector and the pci header.  The vector can
1225*fd501800SSascha Wildner 	 * only be 0 right now.  The header is the first 256 bytes of config
1226*fd501800SSascha Wildner 	 * space.
1227*fd501800SSascha Wildner 	 */
1228*fd501800SSascha Wildner 	data->InterruptVector = 0;
1229*fd501800SSascha Wildner 	for (i = 0; i < sizeof (data->PciHeader); i++) {
1230*fd501800SSascha Wildner 		data->PciHeader[i] = pci_read_config(sc->mpr_dev, i, 1);
1231*fd501800SSascha Wildner 	}
1232*fd501800SSascha Wildner }
1233*fd501800SSascha Wildner 
1234*fd501800SSascha Wildner static uint8_t
mpr_get_fw_diag_buffer_number(struct mpr_softc * sc,uint32_t unique_id)1235*fd501800SSascha Wildner mpr_get_fw_diag_buffer_number(struct mpr_softc *sc, uint32_t unique_id)
1236*fd501800SSascha Wildner {
1237*fd501800SSascha Wildner 	uint8_t	index;
1238*fd501800SSascha Wildner 
1239*fd501800SSascha Wildner 	for (index = 0; index < MPI2_DIAG_BUF_TYPE_COUNT; index++) {
1240*fd501800SSascha Wildner 		if (sc->fw_diag_buffer_list[index].unique_id == unique_id) {
1241*fd501800SSascha Wildner 			return (index);
1242*fd501800SSascha Wildner 		}
1243*fd501800SSascha Wildner 	}
1244*fd501800SSascha Wildner 
1245*fd501800SSascha Wildner 	return (MPR_FW_DIAGNOSTIC_UID_NOT_FOUND);
1246*fd501800SSascha Wildner }
1247*fd501800SSascha Wildner 
1248*fd501800SSascha Wildner static int
mpr_post_fw_diag_buffer(struct mpr_softc * sc,mpr_fw_diagnostic_buffer_t * pBuffer,uint32_t * return_code)1249*fd501800SSascha Wildner mpr_post_fw_diag_buffer(struct mpr_softc *sc,
1250*fd501800SSascha Wildner     mpr_fw_diagnostic_buffer_t *pBuffer, uint32_t *return_code)
1251*fd501800SSascha Wildner {
1252*fd501800SSascha Wildner 	MPI2_DIAG_BUFFER_POST_REQUEST	*req;
1253*fd501800SSascha Wildner 	MPI2_DIAG_BUFFER_POST_REPLY	*reply;
1254*fd501800SSascha Wildner 	struct mpr_command		*cm = NULL;
1255*fd501800SSascha Wildner 	int				i, status;
1256*fd501800SSascha Wildner 
1257*fd501800SSascha Wildner 	/*
1258*fd501800SSascha Wildner 	 * If buffer is not enabled, just leave.
1259*fd501800SSascha Wildner 	 */
1260*fd501800SSascha Wildner 	*return_code = MPR_FW_DIAG_ERROR_POST_FAILED;
1261*fd501800SSascha Wildner 	if (!pBuffer->enabled) {
1262*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1263*fd501800SSascha Wildner 	}
1264*fd501800SSascha Wildner 
1265*fd501800SSascha Wildner 	/*
1266*fd501800SSascha Wildner 	 * Clear some flags initially.
1267*fd501800SSascha Wildner 	 */
1268*fd501800SSascha Wildner 	pBuffer->force_release = FALSE;
1269*fd501800SSascha Wildner 	pBuffer->valid_data = FALSE;
1270*fd501800SSascha Wildner 	pBuffer->owned_by_firmware = FALSE;
1271*fd501800SSascha Wildner 
1272*fd501800SSascha Wildner 	/*
1273*fd501800SSascha Wildner 	 * Get a command.
1274*fd501800SSascha Wildner 	 */
1275*fd501800SSascha Wildner 	cm = mpr_alloc_command(sc);
1276*fd501800SSascha Wildner 	if (cm == NULL) {
1277*fd501800SSascha Wildner 		mpr_printf(sc, "%s: no mpr requests\n", __func__);
1278*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1279*fd501800SSascha Wildner 	}
1280*fd501800SSascha Wildner 
1281*fd501800SSascha Wildner 	/*
1282*fd501800SSascha Wildner 	 * Build the request for releasing the FW Diag Buffer and send it.
1283*fd501800SSascha Wildner 	 */
1284*fd501800SSascha Wildner 	req = (MPI2_DIAG_BUFFER_POST_REQUEST *)cm->cm_req;
1285*fd501800SSascha Wildner 	req->Function = MPI2_FUNCTION_DIAG_BUFFER_POST;
1286*fd501800SSascha Wildner 	req->BufferType = pBuffer->buffer_type;
1287*fd501800SSascha Wildner 	req->ExtendedType = pBuffer->extended_type;
1288*fd501800SSascha Wildner 	req->BufferLength = pBuffer->size;
1289*fd501800SSascha Wildner 	for (i = 0; i < (sizeof(req->ProductSpecific) / 4); i++)
1290*fd501800SSascha Wildner 		req->ProductSpecific[i] = pBuffer->product_specific[i];
1291*fd501800SSascha Wildner 	mpr_from_u64(sc->fw_diag_busaddr, &req->BufferAddress);
1292*fd501800SSascha Wildner 	cm->cm_data = NULL;
1293*fd501800SSascha Wildner 	cm->cm_length = 0;
1294*fd501800SSascha Wildner 	cm->cm_desc.Default.RequestFlags = MPI2_REQ_DESCRIPT_FLAGS_DEFAULT_TYPE;
1295*fd501800SSascha Wildner 	cm->cm_complete_data = NULL;
1296*fd501800SSascha Wildner 
1297*fd501800SSascha Wildner 	/*
1298*fd501800SSascha Wildner 	 * Send command synchronously.
1299*fd501800SSascha Wildner 	 */
1300*fd501800SSascha Wildner 	status = mpr_wait_command(sc, &cm, 30, CAN_SLEEP);
1301*fd501800SSascha Wildner 	if (status || (cm == NULL)) {
1302*fd501800SSascha Wildner 		mpr_printf(sc, "%s: invalid request: error %d\n", __func__,
1303*fd501800SSascha Wildner 		    status);
1304*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1305*fd501800SSascha Wildner 		goto done;
1306*fd501800SSascha Wildner 	}
1307*fd501800SSascha Wildner 
1308*fd501800SSascha Wildner 	/*
1309*fd501800SSascha Wildner 	 * Process POST reply.
1310*fd501800SSascha Wildner 	 */
1311*fd501800SSascha Wildner 	reply = (MPI2_DIAG_BUFFER_POST_REPLY *)cm->cm_reply;
1312*fd501800SSascha Wildner 	if (reply == NULL) {
1313*fd501800SSascha Wildner 		mpr_printf(sc, "%s: reply is NULL, probably due to "
1314*fd501800SSascha Wildner 		    "reinitialization", __func__);
1315*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1316*fd501800SSascha Wildner 		goto done;
1317*fd501800SSascha Wildner 	}
1318*fd501800SSascha Wildner 
1319*fd501800SSascha Wildner 	if ((le16toh(reply->IOCStatus) & MPI2_IOCSTATUS_MASK) !=
1320*fd501800SSascha Wildner 	    MPI2_IOCSTATUS_SUCCESS) {
1321*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1322*fd501800SSascha Wildner 		mpr_dprint(sc, MPR_FAULT, "%s: post of FW  Diag Buffer failed "
1323*fd501800SSascha Wildner 		    "with IOCStatus = 0x%x, IOCLogInfo = 0x%x and "
1324*fd501800SSascha Wildner 		    "TransferLength = 0x%x\n", __func__,
1325*fd501800SSascha Wildner 		    le16toh(reply->IOCStatus), le32toh(reply->IOCLogInfo),
1326*fd501800SSascha Wildner 		    le32toh(reply->TransferLength));
1327*fd501800SSascha Wildner 		goto done;
1328*fd501800SSascha Wildner 	}
1329*fd501800SSascha Wildner 
1330*fd501800SSascha Wildner 	/*
1331*fd501800SSascha Wildner 	 * Post was successful.
1332*fd501800SSascha Wildner 	 */
1333*fd501800SSascha Wildner 	pBuffer->valid_data = TRUE;
1334*fd501800SSascha Wildner 	pBuffer->owned_by_firmware = TRUE;
1335*fd501800SSascha Wildner 	*return_code = MPR_FW_DIAG_ERROR_SUCCESS;
1336*fd501800SSascha Wildner 	status = MPR_DIAG_SUCCESS;
1337*fd501800SSascha Wildner 
1338*fd501800SSascha Wildner done:
1339*fd501800SSascha Wildner 	if (cm != NULL)
1340*fd501800SSascha Wildner 		mpr_free_command(sc, cm);
1341*fd501800SSascha Wildner 	return (status);
1342*fd501800SSascha Wildner }
1343*fd501800SSascha Wildner 
1344*fd501800SSascha Wildner static int
mpr_release_fw_diag_buffer(struct mpr_softc * sc,mpr_fw_diagnostic_buffer_t * pBuffer,uint32_t * return_code,uint32_t diag_type)1345*fd501800SSascha Wildner mpr_release_fw_diag_buffer(struct mpr_softc *sc,
1346*fd501800SSascha Wildner     mpr_fw_diagnostic_buffer_t *pBuffer, uint32_t *return_code,
1347*fd501800SSascha Wildner     uint32_t diag_type)
1348*fd501800SSascha Wildner {
1349*fd501800SSascha Wildner 	MPI2_DIAG_RELEASE_REQUEST	*req;
1350*fd501800SSascha Wildner 	MPI2_DIAG_RELEASE_REPLY		*reply;
1351*fd501800SSascha Wildner 	struct mpr_command		*cm = NULL;
1352*fd501800SSascha Wildner 	int				status;
1353*fd501800SSascha Wildner 
1354*fd501800SSascha Wildner 	/*
1355*fd501800SSascha Wildner 	 * If buffer is not enabled, just leave.
1356*fd501800SSascha Wildner 	 */
1357*fd501800SSascha Wildner 	*return_code = MPR_FW_DIAG_ERROR_RELEASE_FAILED;
1358*fd501800SSascha Wildner 	if (!pBuffer->enabled) {
1359*fd501800SSascha Wildner 		mpr_dprint(sc, MPR_USER, "%s: This buffer type is not "
1360*fd501800SSascha Wildner 		    "supported by the IOC", __func__);
1361*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1362*fd501800SSascha Wildner 	}
1363*fd501800SSascha Wildner 
1364*fd501800SSascha Wildner 	/*
1365*fd501800SSascha Wildner 	 * Clear some flags initially.
1366*fd501800SSascha Wildner 	 */
1367*fd501800SSascha Wildner 	pBuffer->force_release = FALSE;
1368*fd501800SSascha Wildner 	pBuffer->valid_data = FALSE;
1369*fd501800SSascha Wildner 	pBuffer->owned_by_firmware = FALSE;
1370*fd501800SSascha Wildner 
1371*fd501800SSascha Wildner 	/*
1372*fd501800SSascha Wildner 	 * Get a command.
1373*fd501800SSascha Wildner 	 */
1374*fd501800SSascha Wildner 	cm = mpr_alloc_command(sc);
1375*fd501800SSascha Wildner 	if (cm == NULL) {
1376*fd501800SSascha Wildner 		mpr_printf(sc, "%s: no mpr requests\n", __func__);
1377*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1378*fd501800SSascha Wildner 	}
1379*fd501800SSascha Wildner 
1380*fd501800SSascha Wildner 	/*
1381*fd501800SSascha Wildner 	 * Build the request for releasing the FW Diag Buffer and send it.
1382*fd501800SSascha Wildner 	 */
1383*fd501800SSascha Wildner 	req = (MPI2_DIAG_RELEASE_REQUEST *)cm->cm_req;
1384*fd501800SSascha Wildner 	req->Function = MPI2_FUNCTION_DIAG_RELEASE;
1385*fd501800SSascha Wildner 	req->BufferType = pBuffer->buffer_type;
1386*fd501800SSascha Wildner 	cm->cm_data = NULL;
1387*fd501800SSascha Wildner 	cm->cm_length = 0;
1388*fd501800SSascha Wildner 	cm->cm_desc.Default.RequestFlags = MPI2_REQ_DESCRIPT_FLAGS_DEFAULT_TYPE;
1389*fd501800SSascha Wildner 	cm->cm_complete_data = NULL;
1390*fd501800SSascha Wildner 
1391*fd501800SSascha Wildner 	/*
1392*fd501800SSascha Wildner 	 * Send command synchronously.
1393*fd501800SSascha Wildner 	 */
1394*fd501800SSascha Wildner 	status = mpr_wait_command(sc, &cm, 30, CAN_SLEEP);
1395*fd501800SSascha Wildner 	if (status || (cm == NULL)) {
1396*fd501800SSascha Wildner 		mpr_printf(sc, "%s: invalid request: error %d\n", __func__,
1397*fd501800SSascha Wildner 		    status);
1398*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1399*fd501800SSascha Wildner 		goto done;
1400*fd501800SSascha Wildner 	}
1401*fd501800SSascha Wildner 
1402*fd501800SSascha Wildner 	/*
1403*fd501800SSascha Wildner 	 * Process RELEASE reply.
1404*fd501800SSascha Wildner 	 */
1405*fd501800SSascha Wildner 	reply = (MPI2_DIAG_RELEASE_REPLY *)cm->cm_reply;
1406*fd501800SSascha Wildner 	if (reply == NULL) {
1407*fd501800SSascha Wildner 		mpr_printf(sc, "%s: reply is NULL, probably due to "
1408*fd501800SSascha Wildner 		    "reinitialization", __func__);
1409*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1410*fd501800SSascha Wildner 		goto done;
1411*fd501800SSascha Wildner 	}
1412*fd501800SSascha Wildner 	if (((le16toh(reply->IOCStatus) & MPI2_IOCSTATUS_MASK) !=
1413*fd501800SSascha Wildner 	    MPI2_IOCSTATUS_SUCCESS) || pBuffer->owned_by_firmware) {
1414*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1415*fd501800SSascha Wildner 		mpr_dprint(sc, MPR_FAULT, "%s: release of FW Diag Buffer "
1416*fd501800SSascha Wildner 		    "failed with IOCStatus = 0x%x and IOCLogInfo = 0x%x\n",
1417*fd501800SSascha Wildner 		    __func__, le16toh(reply->IOCStatus),
1418*fd501800SSascha Wildner 		    le32toh(reply->IOCLogInfo));
1419*fd501800SSascha Wildner 		goto done;
1420*fd501800SSascha Wildner 	}
1421*fd501800SSascha Wildner 
1422*fd501800SSascha Wildner 	/*
1423*fd501800SSascha Wildner 	 * Release was successful.
1424*fd501800SSascha Wildner 	 */
1425*fd501800SSascha Wildner 	*return_code = MPR_FW_DIAG_ERROR_SUCCESS;
1426*fd501800SSascha Wildner 	status = MPR_DIAG_SUCCESS;
1427*fd501800SSascha Wildner 
1428*fd501800SSascha Wildner 	/*
1429*fd501800SSascha Wildner 	 * If this was for an UNREGISTER diag type command, clear the unique ID.
1430*fd501800SSascha Wildner 	 */
1431*fd501800SSascha Wildner 	if (diag_type == MPR_FW_DIAG_TYPE_UNREGISTER) {
1432*fd501800SSascha Wildner 		pBuffer->unique_id = MPR_FW_DIAG_INVALID_UID;
1433*fd501800SSascha Wildner 	}
1434*fd501800SSascha Wildner 
1435*fd501800SSascha Wildner done:
1436*fd501800SSascha Wildner 	if (cm != NULL)
1437*fd501800SSascha Wildner 		mpr_free_command(sc, cm);
1438*fd501800SSascha Wildner 
1439*fd501800SSascha Wildner 	return (status);
1440*fd501800SSascha Wildner }
1441*fd501800SSascha Wildner 
1442*fd501800SSascha Wildner static int
mpr_diag_register(struct mpr_softc * sc,mpr_fw_diag_register_t * diag_register,uint32_t * return_code)1443*fd501800SSascha Wildner mpr_diag_register(struct mpr_softc *sc, mpr_fw_diag_register_t *diag_register,
1444*fd501800SSascha Wildner     uint32_t *return_code)
1445*fd501800SSascha Wildner {
1446*fd501800SSascha Wildner 	mpr_fw_diagnostic_buffer_t	*pBuffer;
1447*fd501800SSascha Wildner 	struct mpr_busdma_context	*ctx;
1448*fd501800SSascha Wildner 	uint8_t				extended_type, buffer_type, i;
1449*fd501800SSascha Wildner 	uint32_t			buffer_size;
1450*fd501800SSascha Wildner 	uint32_t			unique_id;
1451*fd501800SSascha Wildner 	int				status;
1452*fd501800SSascha Wildner 	int				error;
1453*fd501800SSascha Wildner 
1454*fd501800SSascha Wildner 	extended_type = diag_register->ExtendedType;
1455*fd501800SSascha Wildner 	buffer_type = diag_register->BufferType;
1456*fd501800SSascha Wildner 	buffer_size = diag_register->RequestedBufferSize;
1457*fd501800SSascha Wildner 	unique_id = diag_register->UniqueId;
1458*fd501800SSascha Wildner 	ctx = NULL;
1459*fd501800SSascha Wildner 	error = 0;
1460*fd501800SSascha Wildner 
1461*fd501800SSascha Wildner 	/*
1462*fd501800SSascha Wildner 	 * Check for valid buffer type
1463*fd501800SSascha Wildner 	 */
1464*fd501800SSascha Wildner 	if (buffer_type >= MPI2_DIAG_BUF_TYPE_COUNT) {
1465*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_INVALID_PARAMETER;
1466*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1467*fd501800SSascha Wildner 	}
1468*fd501800SSascha Wildner 
1469*fd501800SSascha Wildner 	/*
1470*fd501800SSascha Wildner 	 * Get the current buffer and look up the unique ID.  The unique ID
1471*fd501800SSascha Wildner 	 * should not be found.  If it is, the ID is already in use.
1472*fd501800SSascha Wildner 	 */
1473*fd501800SSascha Wildner 	i = mpr_get_fw_diag_buffer_number(sc, unique_id);
1474*fd501800SSascha Wildner 	pBuffer = &sc->fw_diag_buffer_list[buffer_type];
1475*fd501800SSascha Wildner 	if (i != MPR_FW_DIAGNOSTIC_UID_NOT_FOUND) {
1476*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_INVALID_UID;
1477*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1478*fd501800SSascha Wildner 	}
1479*fd501800SSascha Wildner 
1480*fd501800SSascha Wildner 	/*
1481*fd501800SSascha Wildner 	 * The buffer's unique ID should not be registered yet, and the given
1482*fd501800SSascha Wildner 	 * unique ID cannot be 0.
1483*fd501800SSascha Wildner 	 */
1484*fd501800SSascha Wildner 	if ((pBuffer->unique_id != MPR_FW_DIAG_INVALID_UID) ||
1485*fd501800SSascha Wildner 	    (unique_id == MPR_FW_DIAG_INVALID_UID)) {
1486*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_INVALID_UID;
1487*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1488*fd501800SSascha Wildner 	}
1489*fd501800SSascha Wildner 
1490*fd501800SSascha Wildner 	/*
1491*fd501800SSascha Wildner 	 * If this buffer is already posted as immediate, just change owner.
1492*fd501800SSascha Wildner 	 */
1493*fd501800SSascha Wildner 	if (pBuffer->immediate && pBuffer->owned_by_firmware &&
1494*fd501800SSascha Wildner 	    (pBuffer->unique_id == MPR_FW_DIAG_INVALID_UID)) {
1495*fd501800SSascha Wildner 		pBuffer->immediate = FALSE;
1496*fd501800SSascha Wildner 		pBuffer->unique_id = unique_id;
1497*fd501800SSascha Wildner 		return (MPR_DIAG_SUCCESS);
1498*fd501800SSascha Wildner 	}
1499*fd501800SSascha Wildner 
1500*fd501800SSascha Wildner 	/*
1501*fd501800SSascha Wildner 	 * Post a new buffer after checking if it's enabled.  The DMA buffer
1502*fd501800SSascha Wildner 	 * that is allocated will be contiguous (nsegments = 1).
1503*fd501800SSascha Wildner 	 */
1504*fd501800SSascha Wildner 	if (!pBuffer->enabled) {
1505*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_NO_BUFFER;
1506*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1507*fd501800SSascha Wildner 	}
1508*fd501800SSascha Wildner 	if (bus_dma_tag_create( sc->mpr_parent_dmat,    /* parent */
1509*fd501800SSascha Wildner 				1, 0,			/* algnmnt, boundary */
1510*fd501800SSascha Wildner 				BUS_SPACE_MAXADDR_32BIT,/* lowaddr */
1511*fd501800SSascha Wildner 				BUS_SPACE_MAXADDR,	/* highaddr */
1512*fd501800SSascha Wildner                                 buffer_size,		/* maxsize */
1513*fd501800SSascha Wildner                                 1,			/* nsegments */
1514*fd501800SSascha Wildner                                 buffer_size,		/* maxsegsize */
1515*fd501800SSascha Wildner                                 0,			/* flags */
1516*fd501800SSascha Wildner                                 &sc->fw_diag_dmat)) {
1517*fd501800SSascha Wildner 		mpr_dprint(sc, MPR_ERROR,
1518*fd501800SSascha Wildner 		    "Cannot allocate FW diag buffer DMA tag\n");
1519*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_NO_BUFFER;
1520*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1521*fd501800SSascha Wildner 		goto bailout;
1522*fd501800SSascha Wildner 	}
1523*fd501800SSascha Wildner         if (bus_dmamem_alloc(sc->fw_diag_dmat, (void **)&sc->fw_diag_buffer,
1524*fd501800SSascha Wildner 	    BUS_DMA_NOWAIT, &sc->fw_diag_map)) {
1525*fd501800SSascha Wildner 		mpr_dprint(sc, MPR_ERROR,
1526*fd501800SSascha Wildner 		    "Cannot allocate FW diag buffer memory\n");
1527*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_NO_BUFFER;
1528*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1529*fd501800SSascha Wildner 		goto bailout;
1530*fd501800SSascha Wildner 	}
1531*fd501800SSascha Wildner 	bzero(sc->fw_diag_buffer, buffer_size);
1532*fd501800SSascha Wildner 
1533*fd501800SSascha Wildner 	ctx = kmalloc(sizeof(*ctx), M_MPR, M_WAITOK | M_ZERO);
1534*fd501800SSascha Wildner 	if (ctx == NULL) {
1535*fd501800SSascha Wildner 		device_printf(sc->mpr_dev, "%s: context kmalloc failed\n",
1536*fd501800SSascha Wildner 		    __func__);
1537*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_NO_BUFFER;
1538*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1539*fd501800SSascha Wildner 		goto bailout;
1540*fd501800SSascha Wildner 	}
1541*fd501800SSascha Wildner 	ctx->addr = &sc->fw_diag_busaddr;
1542*fd501800SSascha Wildner 	ctx->buffer_dmat = sc->fw_diag_dmat;
1543*fd501800SSascha Wildner 	ctx->buffer_dmamap = sc->fw_diag_map;
1544*fd501800SSascha Wildner 	ctx->softc = sc;
1545*fd501800SSascha Wildner 	error = bus_dmamap_load(sc->fw_diag_dmat, sc->fw_diag_map,
1546*fd501800SSascha Wildner 	    sc->fw_diag_buffer, buffer_size, mpr_memaddr_wait_cb,
1547*fd501800SSascha Wildner 	    ctx, 0);
1548*fd501800SSascha Wildner 	if (error == EINPROGRESS) {
1549*fd501800SSascha Wildner 
1550*fd501800SSascha Wildner 		/* XXX KDM */
1551*fd501800SSascha Wildner 		device_printf(sc->mpr_dev, "%s: Deferred bus_dmamap_load\n",
1552*fd501800SSascha Wildner 		    __func__);
1553*fd501800SSascha Wildner 		/*
1554*fd501800SSascha Wildner 		 * Wait for the load to complete.  If we're interrupted,
1555*fd501800SSascha Wildner 		 * bail out.
1556*fd501800SSascha Wildner 		 */
1557*fd501800SSascha Wildner 		mpr_lock(sc);
1558*fd501800SSascha Wildner 		if (ctx->completed == 0) {
1559*fd501800SSascha Wildner 			error = lksleep(ctx, &sc->mpr_lock, PCATCH, "mprwait", 0);
1560*fd501800SSascha Wildner 			if (error != 0) {
1561*fd501800SSascha Wildner 				/*
1562*fd501800SSascha Wildner 				 * We got an error from msleep(9).  This is
1563*fd501800SSascha Wildner 				 * most likely due to a signal.  Tell
1564*fd501800SSascha Wildner 				 * mpr_memaddr_wait_cb() that we've abandoned
1565*fd501800SSascha Wildner 				 * the context, so it needs to clean up when
1566*fd501800SSascha Wildner 				 * it is called.
1567*fd501800SSascha Wildner 				 */
1568*fd501800SSascha Wildner 				ctx->abandoned = 1;
1569*fd501800SSascha Wildner 
1570*fd501800SSascha Wildner 				/* The callback will free this memory */
1571*fd501800SSascha Wildner 				ctx = NULL;
1572*fd501800SSascha Wildner 				mpr_unlock(sc);
1573*fd501800SSascha Wildner 
1574*fd501800SSascha Wildner 				device_printf(sc->mpr_dev, "Cannot "
1575*fd501800SSascha Wildner 				    "bus_dmamap_load FW diag buffer, error = "
1576*fd501800SSascha Wildner 				    "%d returned from lksleep\n", error);
1577*fd501800SSascha Wildner 				*return_code = MPR_FW_DIAG_ERROR_NO_BUFFER;
1578*fd501800SSascha Wildner 				status = MPR_DIAG_FAILURE;
1579*fd501800SSascha Wildner 				goto bailout;
1580*fd501800SSascha Wildner 			}
1581*fd501800SSascha Wildner 		}
1582*fd501800SSascha Wildner 		mpr_unlock(sc);
1583*fd501800SSascha Wildner 	}
1584*fd501800SSascha Wildner 
1585*fd501800SSascha Wildner 	if ((error != 0) || (ctx->error != 0)) {
1586*fd501800SSascha Wildner 		device_printf(sc->mpr_dev, "Cannot bus_dmamap_load FW diag "
1587*fd501800SSascha Wildner 		    "buffer, %serror = %d\n", error ? "" : "callback ",
1588*fd501800SSascha Wildner 		    error ? error : ctx->error);
1589*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_NO_BUFFER;
1590*fd501800SSascha Wildner 		status = MPR_DIAG_FAILURE;
1591*fd501800SSascha Wildner 		goto bailout;
1592*fd501800SSascha Wildner 	}
1593*fd501800SSascha Wildner 
1594*fd501800SSascha Wildner 	bus_dmamap_sync(sc->fw_diag_dmat, sc->fw_diag_map, BUS_DMASYNC_PREREAD);
1595*fd501800SSascha Wildner 
1596*fd501800SSascha Wildner 	pBuffer->size = buffer_size;
1597*fd501800SSascha Wildner 
1598*fd501800SSascha Wildner 	/*
1599*fd501800SSascha Wildner 	 * Copy the given info to the diag buffer and post the buffer.
1600*fd501800SSascha Wildner 	 */
1601*fd501800SSascha Wildner 	pBuffer->buffer_type = buffer_type;
1602*fd501800SSascha Wildner 	pBuffer->immediate = FALSE;
1603*fd501800SSascha Wildner 	if (buffer_type == MPI2_DIAG_BUF_TYPE_TRACE) {
1604*fd501800SSascha Wildner 		for (i = 0; i < (sizeof (pBuffer->product_specific) / 4);
1605*fd501800SSascha Wildner 		    i++) {
1606*fd501800SSascha Wildner 			pBuffer->product_specific[i] =
1607*fd501800SSascha Wildner 			    diag_register->ProductSpecific[i];
1608*fd501800SSascha Wildner 		}
1609*fd501800SSascha Wildner 	}
1610*fd501800SSascha Wildner 	pBuffer->extended_type = extended_type;
1611*fd501800SSascha Wildner 	pBuffer->unique_id = unique_id;
1612*fd501800SSascha Wildner 	status = mpr_post_fw_diag_buffer(sc, pBuffer, return_code);
1613*fd501800SSascha Wildner 
1614*fd501800SSascha Wildner bailout:
1615*fd501800SSascha Wildner 
1616*fd501800SSascha Wildner 	/*
1617*fd501800SSascha Wildner 	 * In case there was a failure, free the DMA buffer.
1618*fd501800SSascha Wildner 	 */
1619*fd501800SSascha Wildner 	if (status == MPR_DIAG_FAILURE) {
1620*fd501800SSascha Wildner 		if (sc->fw_diag_busaddr != 0) {
1621*fd501800SSascha Wildner 			bus_dmamap_unload(sc->fw_diag_dmat, sc->fw_diag_map);
1622*fd501800SSascha Wildner 			sc->fw_diag_busaddr = 0;
1623*fd501800SSascha Wildner 		}
1624*fd501800SSascha Wildner 		if (sc->fw_diag_buffer != NULL) {
1625*fd501800SSascha Wildner 			bus_dmamem_free(sc->fw_diag_dmat, sc->fw_diag_buffer,
1626*fd501800SSascha Wildner 			    sc->fw_diag_map);
1627*fd501800SSascha Wildner 			sc->fw_diag_buffer = NULL;
1628*fd501800SSascha Wildner 		}
1629*fd501800SSascha Wildner 		if (sc->fw_diag_dmat != NULL) {
1630*fd501800SSascha Wildner 			bus_dma_tag_destroy(sc->fw_diag_dmat);
1631*fd501800SSascha Wildner 			sc->fw_diag_dmat = NULL;
1632*fd501800SSascha Wildner 		}
1633*fd501800SSascha Wildner 	}
1634*fd501800SSascha Wildner 
1635*fd501800SSascha Wildner 	if (ctx != NULL)
1636*fd501800SSascha Wildner 		kfree(ctx, M_MPR);
1637*fd501800SSascha Wildner 
1638*fd501800SSascha Wildner 	return (status);
1639*fd501800SSascha Wildner }
1640*fd501800SSascha Wildner 
1641*fd501800SSascha Wildner static int
mpr_diag_unregister(struct mpr_softc * sc,mpr_fw_diag_unregister_t * diag_unregister,uint32_t * return_code)1642*fd501800SSascha Wildner mpr_diag_unregister(struct mpr_softc *sc,
1643*fd501800SSascha Wildner     mpr_fw_diag_unregister_t *diag_unregister, uint32_t *return_code)
1644*fd501800SSascha Wildner {
1645*fd501800SSascha Wildner 	mpr_fw_diagnostic_buffer_t	*pBuffer;
1646*fd501800SSascha Wildner 	uint8_t				i;
1647*fd501800SSascha Wildner 	uint32_t			unique_id;
1648*fd501800SSascha Wildner 	int				status;
1649*fd501800SSascha Wildner 
1650*fd501800SSascha Wildner 	unique_id = diag_unregister->UniqueId;
1651*fd501800SSascha Wildner 
1652*fd501800SSascha Wildner 	/*
1653*fd501800SSascha Wildner 	 * Get the current buffer and look up the unique ID.  The unique ID
1654*fd501800SSascha Wildner 	 * should be there.
1655*fd501800SSascha Wildner 	 */
1656*fd501800SSascha Wildner 	i = mpr_get_fw_diag_buffer_number(sc, unique_id);
1657*fd501800SSascha Wildner 	if (i == MPR_FW_DIAGNOSTIC_UID_NOT_FOUND) {
1658*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_INVALID_UID;
1659*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1660*fd501800SSascha Wildner 	}
1661*fd501800SSascha Wildner 
1662*fd501800SSascha Wildner 	pBuffer = &sc->fw_diag_buffer_list[i];
1663*fd501800SSascha Wildner 
1664*fd501800SSascha Wildner 	/*
1665*fd501800SSascha Wildner 	 * Try to release the buffer from FW before freeing it.  If release
1666*fd501800SSascha Wildner 	 * fails, don't free the DMA buffer in case FW tries to access it
1667*fd501800SSascha Wildner 	 * later.  If buffer is not owned by firmware, can't release it.
1668*fd501800SSascha Wildner 	 */
1669*fd501800SSascha Wildner 	if (!pBuffer->owned_by_firmware) {
1670*fd501800SSascha Wildner 		status = MPR_DIAG_SUCCESS;
1671*fd501800SSascha Wildner 	} else {
1672*fd501800SSascha Wildner 		status = mpr_release_fw_diag_buffer(sc, pBuffer, return_code,
1673*fd501800SSascha Wildner 		    MPR_FW_DIAG_TYPE_UNREGISTER);
1674*fd501800SSascha Wildner 	}
1675*fd501800SSascha Wildner 
1676*fd501800SSascha Wildner 	/*
1677*fd501800SSascha Wildner 	 * At this point, return the current status no matter what happens with
1678*fd501800SSascha Wildner 	 * the DMA buffer.
1679*fd501800SSascha Wildner 	 */
1680*fd501800SSascha Wildner 	pBuffer->unique_id = MPR_FW_DIAG_INVALID_UID;
1681*fd501800SSascha Wildner 	if (status == MPR_DIAG_SUCCESS) {
1682*fd501800SSascha Wildner 		if (sc->fw_diag_busaddr != 0) {
1683*fd501800SSascha Wildner 			bus_dmamap_unload(sc->fw_diag_dmat, sc->fw_diag_map);
1684*fd501800SSascha Wildner 			sc->fw_diag_busaddr = 0;
1685*fd501800SSascha Wildner 		}
1686*fd501800SSascha Wildner 		if (sc->fw_diag_buffer != NULL) {
1687*fd501800SSascha Wildner 			bus_dmamem_free(sc->fw_diag_dmat, sc->fw_diag_buffer,
1688*fd501800SSascha Wildner 			    sc->fw_diag_map);
1689*fd501800SSascha Wildner 			sc->fw_diag_buffer = NULL;
1690*fd501800SSascha Wildner 		}
1691*fd501800SSascha Wildner 		if (sc->fw_diag_dmat != NULL) {
1692*fd501800SSascha Wildner 			bus_dma_tag_destroy(sc->fw_diag_dmat);
1693*fd501800SSascha Wildner 			sc->fw_diag_dmat = NULL;
1694*fd501800SSascha Wildner 		}
1695*fd501800SSascha Wildner 	}
1696*fd501800SSascha Wildner 
1697*fd501800SSascha Wildner 	return (status);
1698*fd501800SSascha Wildner }
1699*fd501800SSascha Wildner 
1700*fd501800SSascha Wildner static int
mpr_diag_query(struct mpr_softc * sc,mpr_fw_diag_query_t * diag_query,uint32_t * return_code)1701*fd501800SSascha Wildner mpr_diag_query(struct mpr_softc *sc, mpr_fw_diag_query_t *diag_query,
1702*fd501800SSascha Wildner     uint32_t *return_code)
1703*fd501800SSascha Wildner {
1704*fd501800SSascha Wildner 	mpr_fw_diagnostic_buffer_t	*pBuffer;
1705*fd501800SSascha Wildner 	uint8_t				i;
1706*fd501800SSascha Wildner 	uint32_t			unique_id;
1707*fd501800SSascha Wildner 
1708*fd501800SSascha Wildner 	unique_id = diag_query->UniqueId;
1709*fd501800SSascha Wildner 
1710*fd501800SSascha Wildner 	/*
1711*fd501800SSascha Wildner 	 * If ID is valid, query on ID.
1712*fd501800SSascha Wildner 	 * If ID is invalid, query on buffer type.
1713*fd501800SSascha Wildner 	 */
1714*fd501800SSascha Wildner 	if (unique_id == MPR_FW_DIAG_INVALID_UID) {
1715*fd501800SSascha Wildner 		i = diag_query->BufferType;
1716*fd501800SSascha Wildner 		if (i >= MPI2_DIAG_BUF_TYPE_COUNT) {
1717*fd501800SSascha Wildner 			*return_code = MPR_FW_DIAG_ERROR_INVALID_UID;
1718*fd501800SSascha Wildner 			return (MPR_DIAG_FAILURE);
1719*fd501800SSascha Wildner 		}
1720*fd501800SSascha Wildner 	} else {
1721*fd501800SSascha Wildner 		i = mpr_get_fw_diag_buffer_number(sc, unique_id);
1722*fd501800SSascha Wildner 		if (i == MPR_FW_DIAGNOSTIC_UID_NOT_FOUND) {
1723*fd501800SSascha Wildner 			*return_code = MPR_FW_DIAG_ERROR_INVALID_UID;
1724*fd501800SSascha Wildner 			return (MPR_DIAG_FAILURE);
1725*fd501800SSascha Wildner 		}
1726*fd501800SSascha Wildner 	}
1727*fd501800SSascha Wildner 
1728*fd501800SSascha Wildner 	/*
1729*fd501800SSascha Wildner 	 * Fill query structure with the diag buffer info.
1730*fd501800SSascha Wildner 	 */
1731*fd501800SSascha Wildner 	pBuffer = &sc->fw_diag_buffer_list[i];
1732*fd501800SSascha Wildner 	diag_query->BufferType = pBuffer->buffer_type;
1733*fd501800SSascha Wildner 	diag_query->ExtendedType = pBuffer->extended_type;
1734*fd501800SSascha Wildner 	if (diag_query->BufferType == MPI2_DIAG_BUF_TYPE_TRACE) {
1735*fd501800SSascha Wildner 		for (i = 0; i < (sizeof(diag_query->ProductSpecific) / 4);
1736*fd501800SSascha Wildner 		    i++) {
1737*fd501800SSascha Wildner 			diag_query->ProductSpecific[i] =
1738*fd501800SSascha Wildner 			    pBuffer->product_specific[i];
1739*fd501800SSascha Wildner 		}
1740*fd501800SSascha Wildner 	}
1741*fd501800SSascha Wildner 	diag_query->TotalBufferSize = pBuffer->size;
1742*fd501800SSascha Wildner 	diag_query->DriverAddedBufferSize = 0;
1743*fd501800SSascha Wildner 	diag_query->UniqueId = pBuffer->unique_id;
1744*fd501800SSascha Wildner 	diag_query->ApplicationFlags = 0;
1745*fd501800SSascha Wildner 	diag_query->DiagnosticFlags = 0;
1746*fd501800SSascha Wildner 
1747*fd501800SSascha Wildner 	/*
1748*fd501800SSascha Wildner 	 * Set/Clear application flags
1749*fd501800SSascha Wildner 	 */
1750*fd501800SSascha Wildner 	if (pBuffer->immediate) {
1751*fd501800SSascha Wildner 		diag_query->ApplicationFlags &= ~MPR_FW_DIAG_FLAG_APP_OWNED;
1752*fd501800SSascha Wildner 	} else {
1753*fd501800SSascha Wildner 		diag_query->ApplicationFlags |= MPR_FW_DIAG_FLAG_APP_OWNED;
1754*fd501800SSascha Wildner 	}
1755*fd501800SSascha Wildner 	if (pBuffer->valid_data || pBuffer->owned_by_firmware) {
1756*fd501800SSascha Wildner 		diag_query->ApplicationFlags |= MPR_FW_DIAG_FLAG_BUFFER_VALID;
1757*fd501800SSascha Wildner 	} else {
1758*fd501800SSascha Wildner 		diag_query->ApplicationFlags &= ~MPR_FW_DIAG_FLAG_BUFFER_VALID;
1759*fd501800SSascha Wildner 	}
1760*fd501800SSascha Wildner 	if (pBuffer->owned_by_firmware) {
1761*fd501800SSascha Wildner 		diag_query->ApplicationFlags |=
1762*fd501800SSascha Wildner 		    MPR_FW_DIAG_FLAG_FW_BUFFER_ACCESS;
1763*fd501800SSascha Wildner 	} else {
1764*fd501800SSascha Wildner 		diag_query->ApplicationFlags &=
1765*fd501800SSascha Wildner 		    ~MPR_FW_DIAG_FLAG_FW_BUFFER_ACCESS;
1766*fd501800SSascha Wildner 	}
1767*fd501800SSascha Wildner 
1768*fd501800SSascha Wildner 	return (MPR_DIAG_SUCCESS);
1769*fd501800SSascha Wildner }
1770*fd501800SSascha Wildner 
1771*fd501800SSascha Wildner static int
mpr_diag_read_buffer(struct mpr_softc * sc,mpr_diag_read_buffer_t * diag_read_buffer,uint8_t * ioctl_buf,uint32_t * return_code)1772*fd501800SSascha Wildner mpr_diag_read_buffer(struct mpr_softc *sc,
1773*fd501800SSascha Wildner     mpr_diag_read_buffer_t *diag_read_buffer, uint8_t *ioctl_buf,
1774*fd501800SSascha Wildner     uint32_t *return_code)
1775*fd501800SSascha Wildner {
1776*fd501800SSascha Wildner 	mpr_fw_diagnostic_buffer_t	*pBuffer;
1777*fd501800SSascha Wildner 	uint8_t				i, *pData;
1778*fd501800SSascha Wildner 	uint32_t			unique_id;
1779*fd501800SSascha Wildner 	int				status;
1780*fd501800SSascha Wildner 
1781*fd501800SSascha Wildner 	unique_id = diag_read_buffer->UniqueId;
1782*fd501800SSascha Wildner 
1783*fd501800SSascha Wildner 	/*
1784*fd501800SSascha Wildner 	 * Get the current buffer and look up the unique ID.  The unique ID
1785*fd501800SSascha Wildner 	 * should be there.
1786*fd501800SSascha Wildner 	 */
1787*fd501800SSascha Wildner 	i = mpr_get_fw_diag_buffer_number(sc, unique_id);
1788*fd501800SSascha Wildner 	if (i == MPR_FW_DIAGNOSTIC_UID_NOT_FOUND) {
1789*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_INVALID_UID;
1790*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1791*fd501800SSascha Wildner 	}
1792*fd501800SSascha Wildner 
1793*fd501800SSascha Wildner 	pBuffer = &sc->fw_diag_buffer_list[i];
1794*fd501800SSascha Wildner 
1795*fd501800SSascha Wildner 	/*
1796*fd501800SSascha Wildner 	 * Make sure requested read is within limits
1797*fd501800SSascha Wildner 	 */
1798*fd501800SSascha Wildner 	if (diag_read_buffer->StartingOffset + diag_read_buffer->BytesToRead >
1799*fd501800SSascha Wildner 	    pBuffer->size) {
1800*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_INVALID_PARAMETER;
1801*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1802*fd501800SSascha Wildner 	}
1803*fd501800SSascha Wildner 
1804*fd501800SSascha Wildner 	/* Sync the DMA map before we copy to userland. */
1805*fd501800SSascha Wildner 	bus_dmamap_sync(sc->fw_diag_dmat, sc->fw_diag_map,
1806*fd501800SSascha Wildner 	    BUS_DMASYNC_POSTREAD);
1807*fd501800SSascha Wildner 
1808*fd501800SSascha Wildner 	/*
1809*fd501800SSascha Wildner 	 * Copy the requested data from DMA to the diag_read_buffer.  The DMA
1810*fd501800SSascha Wildner 	 * buffer that was allocated is one contiguous buffer.
1811*fd501800SSascha Wildner 	 */
1812*fd501800SSascha Wildner 	pData = (uint8_t *)(sc->fw_diag_buffer +
1813*fd501800SSascha Wildner 	    diag_read_buffer->StartingOffset);
1814*fd501800SSascha Wildner 	if (copyout(pData, ioctl_buf, diag_read_buffer->BytesToRead) != 0)
1815*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1816*fd501800SSascha Wildner 	diag_read_buffer->Status = 0;
1817*fd501800SSascha Wildner 
1818*fd501800SSascha Wildner 	/*
1819*fd501800SSascha Wildner 	 * Set or clear the Force Release flag.
1820*fd501800SSascha Wildner 	 */
1821*fd501800SSascha Wildner 	if (pBuffer->force_release) {
1822*fd501800SSascha Wildner 		diag_read_buffer->Flags |= MPR_FW_DIAG_FLAG_FORCE_RELEASE;
1823*fd501800SSascha Wildner 	} else {
1824*fd501800SSascha Wildner 		diag_read_buffer->Flags &= ~MPR_FW_DIAG_FLAG_FORCE_RELEASE;
1825*fd501800SSascha Wildner 	}
1826*fd501800SSascha Wildner 
1827*fd501800SSascha Wildner 	/*
1828*fd501800SSascha Wildner 	 * If buffer is to be reregistered, make sure it's not already owned by
1829*fd501800SSascha Wildner 	 * firmware first.
1830*fd501800SSascha Wildner 	 */
1831*fd501800SSascha Wildner 	status = MPR_DIAG_SUCCESS;
1832*fd501800SSascha Wildner 	if (!pBuffer->owned_by_firmware) {
1833*fd501800SSascha Wildner 		if (diag_read_buffer->Flags & MPR_FW_DIAG_FLAG_REREGISTER) {
1834*fd501800SSascha Wildner 			status = mpr_post_fw_diag_buffer(sc, pBuffer,
1835*fd501800SSascha Wildner 			    return_code);
1836*fd501800SSascha Wildner 		}
1837*fd501800SSascha Wildner 	}
1838*fd501800SSascha Wildner 
1839*fd501800SSascha Wildner 	return (status);
1840*fd501800SSascha Wildner }
1841*fd501800SSascha Wildner 
1842*fd501800SSascha Wildner static int
mpr_diag_release(struct mpr_softc * sc,mpr_fw_diag_release_t * diag_release,uint32_t * return_code)1843*fd501800SSascha Wildner mpr_diag_release(struct mpr_softc *sc, mpr_fw_diag_release_t *diag_release,
1844*fd501800SSascha Wildner     uint32_t *return_code)
1845*fd501800SSascha Wildner {
1846*fd501800SSascha Wildner 	mpr_fw_diagnostic_buffer_t	*pBuffer;
1847*fd501800SSascha Wildner 	uint8_t				i;
1848*fd501800SSascha Wildner 	uint32_t			unique_id;
1849*fd501800SSascha Wildner 	int				status;
1850*fd501800SSascha Wildner 
1851*fd501800SSascha Wildner 	unique_id = diag_release->UniqueId;
1852*fd501800SSascha Wildner 
1853*fd501800SSascha Wildner 	/*
1854*fd501800SSascha Wildner 	 * Get the current buffer and look up the unique ID.  The unique ID
1855*fd501800SSascha Wildner 	 * should be there.
1856*fd501800SSascha Wildner 	 */
1857*fd501800SSascha Wildner 	i = mpr_get_fw_diag_buffer_number(sc, unique_id);
1858*fd501800SSascha Wildner 	if (i == MPR_FW_DIAGNOSTIC_UID_NOT_FOUND) {
1859*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_INVALID_UID;
1860*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1861*fd501800SSascha Wildner 	}
1862*fd501800SSascha Wildner 
1863*fd501800SSascha Wildner 	pBuffer = &sc->fw_diag_buffer_list[i];
1864*fd501800SSascha Wildner 
1865*fd501800SSascha Wildner 	/*
1866*fd501800SSascha Wildner 	 * If buffer is not owned by firmware, it's already been released.
1867*fd501800SSascha Wildner 	 */
1868*fd501800SSascha Wildner 	if (!pBuffer->owned_by_firmware) {
1869*fd501800SSascha Wildner 		*return_code = MPR_FW_DIAG_ERROR_ALREADY_RELEASED;
1870*fd501800SSascha Wildner 		return (MPR_DIAG_FAILURE);
1871*fd501800SSascha Wildner 	}
1872*fd501800SSascha Wildner 
1873*fd501800SSascha Wildner 	/*
1874*fd501800SSascha Wildner 	 * Release the buffer.
1875*fd501800SSascha Wildner 	 */
1876*fd501800SSascha Wildner 	status = mpr_release_fw_diag_buffer(sc, pBuffer, return_code,
1877*fd501800SSascha Wildner 	    MPR_FW_DIAG_TYPE_RELEASE);
1878*fd501800SSascha Wildner 	return (status);
1879*fd501800SSascha Wildner }
1880*fd501800SSascha Wildner 
1881*fd501800SSascha Wildner static int
mpr_do_diag_action(struct mpr_softc * sc,uint32_t action,uint8_t * diag_action,uint32_t length,uint32_t * return_code)1882*fd501800SSascha Wildner mpr_do_diag_action(struct mpr_softc *sc, uint32_t action, uint8_t *diag_action,
1883*fd501800SSascha Wildner     uint32_t length, uint32_t *return_code)
1884*fd501800SSascha Wildner {
1885*fd501800SSascha Wildner 	mpr_fw_diag_register_t		diag_register;
1886*fd501800SSascha Wildner 	mpr_fw_diag_unregister_t	diag_unregister;
1887*fd501800SSascha Wildner 	mpr_fw_diag_query_t		diag_query;
1888*fd501800SSascha Wildner 	mpr_diag_read_buffer_t		diag_read_buffer;
1889*fd501800SSascha Wildner 	mpr_fw_diag_release_t		diag_release;
1890*fd501800SSascha Wildner 	int				status = MPR_DIAG_SUCCESS;
1891*fd501800SSascha Wildner 	uint32_t			original_return_code;
1892*fd501800SSascha Wildner 
1893*fd501800SSascha Wildner 	original_return_code = *return_code;
1894*fd501800SSascha Wildner 	*return_code = MPR_FW_DIAG_ERROR_SUCCESS;
1895*fd501800SSascha Wildner 
1896*fd501800SSascha Wildner 	switch (action) {
1897*fd501800SSascha Wildner 		case MPR_FW_DIAG_TYPE_REGISTER:
1898*fd501800SSascha Wildner 			if (!length) {
1899*fd501800SSascha Wildner 				*return_code =
1900*fd501800SSascha Wildner 				    MPR_FW_DIAG_ERROR_INVALID_PARAMETER;
1901*fd501800SSascha Wildner 				status = MPR_DIAG_FAILURE;
1902*fd501800SSascha Wildner 				break;
1903*fd501800SSascha Wildner 			}
1904*fd501800SSascha Wildner 			if (copyin(diag_action, &diag_register,
1905*fd501800SSascha Wildner 			    sizeof(diag_register)) != 0)
1906*fd501800SSascha Wildner 				return (MPR_DIAG_FAILURE);
1907*fd501800SSascha Wildner 			status = mpr_diag_register(sc, &diag_register,
1908*fd501800SSascha Wildner 			    return_code);
1909*fd501800SSascha Wildner 			break;
1910*fd501800SSascha Wildner 
1911*fd501800SSascha Wildner 		case MPR_FW_DIAG_TYPE_UNREGISTER:
1912*fd501800SSascha Wildner 			if (length < sizeof(diag_unregister)) {
1913*fd501800SSascha Wildner 				*return_code =
1914*fd501800SSascha Wildner 				    MPR_FW_DIAG_ERROR_INVALID_PARAMETER;
1915*fd501800SSascha Wildner 				status = MPR_DIAG_FAILURE;
1916*fd501800SSascha Wildner 				break;
1917*fd501800SSascha Wildner 			}
1918*fd501800SSascha Wildner 			if (copyin(diag_action, &diag_unregister,
1919*fd501800SSascha Wildner 			    sizeof(diag_unregister)) != 0)
1920*fd501800SSascha Wildner 				return (MPR_DIAG_FAILURE);
1921*fd501800SSascha Wildner 			status = mpr_diag_unregister(sc, &diag_unregister,
1922*fd501800SSascha Wildner 			    return_code);
1923*fd501800SSascha Wildner 			break;
1924*fd501800SSascha Wildner 
1925*fd501800SSascha Wildner 		case MPR_FW_DIAG_TYPE_QUERY:
1926*fd501800SSascha Wildner 			if (length < sizeof (diag_query)) {
1927*fd501800SSascha Wildner 				*return_code =
1928*fd501800SSascha Wildner 				    MPR_FW_DIAG_ERROR_INVALID_PARAMETER;
1929*fd501800SSascha Wildner 				status = MPR_DIAG_FAILURE;
1930*fd501800SSascha Wildner 				break;
1931*fd501800SSascha Wildner 			}
1932*fd501800SSascha Wildner 			if (copyin(diag_action, &diag_query, sizeof(diag_query))
1933*fd501800SSascha Wildner 			    != 0)
1934*fd501800SSascha Wildner 				return (MPR_DIAG_FAILURE);
1935*fd501800SSascha Wildner 			status = mpr_diag_query(sc, &diag_query, return_code);
1936*fd501800SSascha Wildner 			if (status == MPR_DIAG_SUCCESS)
1937*fd501800SSascha Wildner 				if (copyout(&diag_query, diag_action,
1938*fd501800SSascha Wildner 				    sizeof (diag_query)) != 0)
1939*fd501800SSascha Wildner 					return (MPR_DIAG_FAILURE);
1940*fd501800SSascha Wildner 			break;
1941*fd501800SSascha Wildner 
1942*fd501800SSascha Wildner 		case MPR_FW_DIAG_TYPE_READ_BUFFER:
1943*fd501800SSascha Wildner 			if (copyin(diag_action, &diag_read_buffer,
1944*fd501800SSascha Wildner 			    sizeof(diag_read_buffer)) != 0)
1945*fd501800SSascha Wildner 				return (MPR_DIAG_FAILURE);
1946*fd501800SSascha Wildner 			if (length < diag_read_buffer.BytesToRead) {
1947*fd501800SSascha Wildner 				*return_code =
1948*fd501800SSascha Wildner 				    MPR_FW_DIAG_ERROR_INVALID_PARAMETER;
1949*fd501800SSascha Wildner 				status = MPR_DIAG_FAILURE;
1950*fd501800SSascha Wildner 				break;
1951*fd501800SSascha Wildner 			}
1952*fd501800SSascha Wildner 			status = mpr_diag_read_buffer(sc, &diag_read_buffer,
1953*fd501800SSascha Wildner 			    PTRIN(diag_read_buffer.PtrDataBuffer),
1954*fd501800SSascha Wildner 			    return_code);
1955*fd501800SSascha Wildner 			if (status == MPR_DIAG_SUCCESS) {
1956*fd501800SSascha Wildner 				if (copyout(&diag_read_buffer, diag_action,
1957*fd501800SSascha Wildner 				    sizeof(diag_read_buffer) -
1958*fd501800SSascha Wildner 				    sizeof(diag_read_buffer.PtrDataBuffer)) !=
1959*fd501800SSascha Wildner 				    0)
1960*fd501800SSascha Wildner 					return (MPR_DIAG_FAILURE);
1961*fd501800SSascha Wildner 			}
1962*fd501800SSascha Wildner 			break;
1963*fd501800SSascha Wildner 
1964*fd501800SSascha Wildner 		case MPR_FW_DIAG_TYPE_RELEASE:
1965*fd501800SSascha Wildner 			if (length < sizeof(diag_release)) {
1966*fd501800SSascha Wildner 				*return_code =
1967*fd501800SSascha Wildner 				    MPR_FW_DIAG_ERROR_INVALID_PARAMETER;
1968*fd501800SSascha Wildner 				status = MPR_DIAG_FAILURE;
1969*fd501800SSascha Wildner 				break;
1970*fd501800SSascha Wildner 			}
1971*fd501800SSascha Wildner 			if (copyin(diag_action, &diag_release,
1972*fd501800SSascha Wildner 			    sizeof(diag_release)) != 0)
1973*fd501800SSascha Wildner 				return (MPR_DIAG_FAILURE);
1974*fd501800SSascha Wildner 			status = mpr_diag_release(sc, &diag_release,
1975*fd501800SSascha Wildner 			    return_code);
1976*fd501800SSascha Wildner 			break;
1977*fd501800SSascha Wildner 
1978*fd501800SSascha Wildner 		default:
1979*fd501800SSascha Wildner 			*return_code = MPR_FW_DIAG_ERROR_INVALID_PARAMETER;
1980*fd501800SSascha Wildner 			status = MPR_DIAG_FAILURE;
1981*fd501800SSascha Wildner 			break;
1982*fd501800SSascha Wildner 	}
1983*fd501800SSascha Wildner 
1984*fd501800SSascha Wildner 	if ((status == MPR_DIAG_FAILURE) &&
1985*fd501800SSascha Wildner 	    (original_return_code == MPR_FW_DIAG_NEW) &&
1986*fd501800SSascha Wildner 	    (*return_code != MPR_FW_DIAG_ERROR_SUCCESS))
1987*fd501800SSascha Wildner 		status = MPR_DIAG_SUCCESS;
1988*fd501800SSascha Wildner 
1989*fd501800SSascha Wildner 	return (status);
1990*fd501800SSascha Wildner }
1991*fd501800SSascha Wildner 
1992*fd501800SSascha Wildner static int
mpr_user_diag_action(struct mpr_softc * sc,mpr_diag_action_t * data)1993*fd501800SSascha Wildner mpr_user_diag_action(struct mpr_softc *sc, mpr_diag_action_t *data)
1994*fd501800SSascha Wildner {
1995*fd501800SSascha Wildner 	int			status;
1996*fd501800SSascha Wildner 
1997*fd501800SSascha Wildner 	/*
1998*fd501800SSascha Wildner 	 * Only allow one diag action at one time.
1999*fd501800SSascha Wildner 	 */
2000*fd501800SSascha Wildner 	if (sc->mpr_flags & MPR_FLAGS_BUSY) {
2001*fd501800SSascha Wildner 		mpr_dprint(sc, MPR_USER, "%s: Only one FW diag command "
2002*fd501800SSascha Wildner 		    "allowed at a single time.", __func__);
2003*fd501800SSascha Wildner 		return (EBUSY);
2004*fd501800SSascha Wildner 	}
2005*fd501800SSascha Wildner 	sc->mpr_flags |= MPR_FLAGS_BUSY;
2006*fd501800SSascha Wildner 
2007*fd501800SSascha Wildner 	/*
2008*fd501800SSascha Wildner 	 * Send diag action request
2009*fd501800SSascha Wildner 	 */
2010*fd501800SSascha Wildner 	if (data->Action == MPR_FW_DIAG_TYPE_REGISTER ||
2011*fd501800SSascha Wildner 	    data->Action == MPR_FW_DIAG_TYPE_UNREGISTER ||
2012*fd501800SSascha Wildner 	    data->Action == MPR_FW_DIAG_TYPE_QUERY ||
2013*fd501800SSascha Wildner 	    data->Action == MPR_FW_DIAG_TYPE_READ_BUFFER ||
2014*fd501800SSascha Wildner 	    data->Action == MPR_FW_DIAG_TYPE_RELEASE) {
2015*fd501800SSascha Wildner 		status = mpr_do_diag_action(sc, data->Action,
2016*fd501800SSascha Wildner 		    PTRIN(data->PtrDiagAction), data->Length,
2017*fd501800SSascha Wildner 		    &data->ReturnCode);
2018*fd501800SSascha Wildner 	} else
2019*fd501800SSascha Wildner 		status = EINVAL;
2020*fd501800SSascha Wildner 
2021*fd501800SSascha Wildner 	sc->mpr_flags &= ~MPR_FLAGS_BUSY;
2022*fd501800SSascha Wildner 	return (status);
2023*fd501800SSascha Wildner }
2024*fd501800SSascha Wildner 
2025*fd501800SSascha Wildner /*
2026*fd501800SSascha Wildner  * Copy the event recording mask and the event queue size out.  For
2027*fd501800SSascha Wildner  * clarification, the event recording mask (events_to_record) is not the same
2028*fd501800SSascha Wildner  * thing as the event mask (event_mask).  events_to_record has a bit set for
2029*fd501800SSascha Wildner  * every event type that is to be recorded by the driver, and event_mask has a
2030*fd501800SSascha Wildner  * bit cleared for every event that is allowed into the driver from the IOC.
2031*fd501800SSascha Wildner  * They really have nothing to do with each other.
2032*fd501800SSascha Wildner  */
2033*fd501800SSascha Wildner static void
mpr_user_event_query(struct mpr_softc * sc,mpr_event_query_t * data)2034*fd501800SSascha Wildner mpr_user_event_query(struct mpr_softc *sc, mpr_event_query_t *data)
2035*fd501800SSascha Wildner {
2036*fd501800SSascha Wildner 	uint8_t	i;
2037*fd501800SSascha Wildner 
2038*fd501800SSascha Wildner 	mpr_lock(sc);
2039*fd501800SSascha Wildner 	data->Entries = MPR_EVENT_QUEUE_SIZE;
2040*fd501800SSascha Wildner 
2041*fd501800SSascha Wildner 	for (i = 0; i < 4; i++) {
2042*fd501800SSascha Wildner 		data->Types[i] = sc->events_to_record[i];
2043*fd501800SSascha Wildner 	}
2044*fd501800SSascha Wildner 	mpr_unlock(sc);
2045*fd501800SSascha Wildner }
2046*fd501800SSascha Wildner 
2047*fd501800SSascha Wildner /*
2048*fd501800SSascha Wildner  * Set the driver's event mask according to what's been given.  See
2049*fd501800SSascha Wildner  * mpr_user_event_query for explanation of the event recording mask and the IOC
2050*fd501800SSascha Wildner  * event mask.  It's the app's responsibility to enable event logging by setting
2051*fd501800SSascha Wildner  * the bits in events_to_record.  Initially, no events will be logged.
2052*fd501800SSascha Wildner  */
2053*fd501800SSascha Wildner static void
mpr_user_event_enable(struct mpr_softc * sc,mpr_event_enable_t * data)2054*fd501800SSascha Wildner mpr_user_event_enable(struct mpr_softc *sc, mpr_event_enable_t *data)
2055*fd501800SSascha Wildner {
2056*fd501800SSascha Wildner 	uint8_t	i;
2057*fd501800SSascha Wildner 
2058*fd501800SSascha Wildner 	mpr_lock(sc);
2059*fd501800SSascha Wildner 	for (i = 0; i < 4; i++) {
2060*fd501800SSascha Wildner 		sc->events_to_record[i] = data->Types[i];
2061*fd501800SSascha Wildner 	}
2062*fd501800SSascha Wildner 	mpr_unlock(sc);
2063*fd501800SSascha Wildner }
2064*fd501800SSascha Wildner 
2065*fd501800SSascha Wildner /*
2066*fd501800SSascha Wildner  * Copy out the events that have been recorded, up to the max events allowed.
2067*fd501800SSascha Wildner  */
2068*fd501800SSascha Wildner static int
mpr_user_event_report(struct mpr_softc * sc,mpr_event_report_t * data)2069*fd501800SSascha Wildner mpr_user_event_report(struct mpr_softc *sc, mpr_event_report_t *data)
2070*fd501800SSascha Wildner {
2071*fd501800SSascha Wildner 	int		status = 0;
2072*fd501800SSascha Wildner 	uint32_t	size;
2073*fd501800SSascha Wildner 
2074*fd501800SSascha Wildner 	mpr_lock(sc);
2075*fd501800SSascha Wildner 	size = data->Size;
2076*fd501800SSascha Wildner 	if ((size >= sizeof(sc->recorded_events)) && (status == 0)) {
2077*fd501800SSascha Wildner 		mpr_unlock(sc);
2078*fd501800SSascha Wildner 		if (copyout((void *)sc->recorded_events,
2079*fd501800SSascha Wildner 		    PTRIN(data->PtrEvents), size) != 0)
2080*fd501800SSascha Wildner 			status = EFAULT;
2081*fd501800SSascha Wildner 		mpr_lock(sc);
2082*fd501800SSascha Wildner 	} else {
2083*fd501800SSascha Wildner 		/*
2084*fd501800SSascha Wildner 		 * data->Size value is not large enough to copy event data.
2085*fd501800SSascha Wildner 		 */
2086*fd501800SSascha Wildner 		status = EFAULT;
2087*fd501800SSascha Wildner 	}
2088*fd501800SSascha Wildner 
2089*fd501800SSascha Wildner 	/*
2090*fd501800SSascha Wildner 	 * Change size value to match the number of bytes that were copied.
2091*fd501800SSascha Wildner 	 */
2092*fd501800SSascha Wildner 	if (status == 0)
2093*fd501800SSascha Wildner 		data->Size = sizeof(sc->recorded_events);
2094*fd501800SSascha Wildner 	mpr_unlock(sc);
2095*fd501800SSascha Wildner 
2096*fd501800SSascha Wildner 	return (status);
2097*fd501800SSascha Wildner }
2098*fd501800SSascha Wildner 
2099*fd501800SSascha Wildner /*
2100*fd501800SSascha Wildner  * Record events into the driver from the IOC if they are not masked.
2101*fd501800SSascha Wildner  */
2102*fd501800SSascha Wildner void
mprsas_record_event(struct mpr_softc * sc,MPI2_EVENT_NOTIFICATION_REPLY * event_reply)2103*fd501800SSascha Wildner mprsas_record_event(struct mpr_softc *sc,
2104*fd501800SSascha Wildner     MPI2_EVENT_NOTIFICATION_REPLY *event_reply)
2105*fd501800SSascha Wildner {
2106*fd501800SSascha Wildner 	uint32_t	event;
2107*fd501800SSascha Wildner 	int		i, j;
2108*fd501800SSascha Wildner 	uint16_t	event_data_len;
2109*fd501800SSascha Wildner 	boolean_t	sendAEN = FALSE;
2110*fd501800SSascha Wildner 
2111*fd501800SSascha Wildner 	event = event_reply->Event;
2112*fd501800SSascha Wildner 
2113*fd501800SSascha Wildner 	/*
2114*fd501800SSascha Wildner 	 * Generate a system event to let anyone who cares know that a
2115*fd501800SSascha Wildner 	 * LOG_ENTRY_ADDED event has occurred.  This is sent no matter what the
2116*fd501800SSascha Wildner 	 * event mask is set to.
2117*fd501800SSascha Wildner 	 */
2118*fd501800SSascha Wildner 	if (event == MPI2_EVENT_LOG_ENTRY_ADDED) {
2119*fd501800SSascha Wildner 		sendAEN = TRUE;
2120*fd501800SSascha Wildner 	}
2121*fd501800SSascha Wildner 
2122*fd501800SSascha Wildner 	/*
2123*fd501800SSascha Wildner 	 * Record the event only if its corresponding bit is set in
2124*fd501800SSascha Wildner 	 * events_to_record.  event_index is the index into recorded_events and
2125*fd501800SSascha Wildner 	 * event_number is the overall number of an event being recorded since
2126*fd501800SSascha Wildner 	 * start-of-day.  event_index will roll over; event_number will never
2127*fd501800SSascha Wildner 	 * roll over.
2128*fd501800SSascha Wildner 	 */
2129*fd501800SSascha Wildner 	i = (uint8_t)(event / 32);
2130*fd501800SSascha Wildner 	j = (uint8_t)(event % 32);
2131*fd501800SSascha Wildner 	if ((i < 4) && ((1 << j) & sc->events_to_record[i])) {
2132*fd501800SSascha Wildner 		i = sc->event_index;
2133*fd501800SSascha Wildner 		sc->recorded_events[i].Type = event;
2134*fd501800SSascha Wildner 		sc->recorded_events[i].Number = ++sc->event_number;
2135*fd501800SSascha Wildner 		bzero(sc->recorded_events[i].Data, MPR_MAX_EVENT_DATA_LENGTH *
2136*fd501800SSascha Wildner 		    4);
2137*fd501800SSascha Wildner 		event_data_len = event_reply->EventDataLength;
2138*fd501800SSascha Wildner 
2139*fd501800SSascha Wildner 		if (event_data_len > 0) {
2140*fd501800SSascha Wildner 			/*
2141*fd501800SSascha Wildner 			 * Limit data to size in m_event entry
2142*fd501800SSascha Wildner 			 */
2143*fd501800SSascha Wildner 			if (event_data_len > MPR_MAX_EVENT_DATA_LENGTH) {
2144*fd501800SSascha Wildner 				event_data_len = MPR_MAX_EVENT_DATA_LENGTH;
2145*fd501800SSascha Wildner 			}
2146*fd501800SSascha Wildner 			for (j = 0; j < event_data_len; j++) {
2147*fd501800SSascha Wildner 				sc->recorded_events[i].Data[j] =
2148*fd501800SSascha Wildner 				    event_reply->EventData[j];
2149*fd501800SSascha Wildner 			}
2150*fd501800SSascha Wildner 
2151*fd501800SSascha Wildner 			/*
2152*fd501800SSascha Wildner 			 * check for index wrap-around
2153*fd501800SSascha Wildner 			 */
2154*fd501800SSascha Wildner 			if (++i == MPR_EVENT_QUEUE_SIZE) {
2155*fd501800SSascha Wildner 				i = 0;
2156*fd501800SSascha Wildner 			}
2157*fd501800SSascha Wildner 			sc->event_index = (uint8_t)i;
2158*fd501800SSascha Wildner 
2159*fd501800SSascha Wildner 			/*
2160*fd501800SSascha Wildner 			 * Set flag to send the event.
2161*fd501800SSascha Wildner 			 */
2162*fd501800SSascha Wildner 			sendAEN = TRUE;
2163*fd501800SSascha Wildner 		}
2164*fd501800SSascha Wildner 	}
2165*fd501800SSascha Wildner 
2166*fd501800SSascha Wildner 	/*
2167*fd501800SSascha Wildner 	 * Generate a system event if flag is set to let anyone who cares know
2168*fd501800SSascha Wildner 	 * that an event has occurred.
2169*fd501800SSascha Wildner 	 */
2170*fd501800SSascha Wildner 	if (sendAEN) {
2171*fd501800SSascha Wildner //SLM-how to send a system event (see kqueue, kevent)
2172*fd501800SSascha Wildner //		(void) ddi_log_sysevent(mpt->m_dip, DDI_VENDOR_LSI, "MPT_SAS",
2173*fd501800SSascha Wildner //		    "SAS", NULL, NULL, DDI_NOSLEEP);
2174*fd501800SSascha Wildner 	}
2175*fd501800SSascha Wildner }
2176*fd501800SSascha Wildner 
2177*fd501800SSascha Wildner static int
mpr_user_reg_access(struct mpr_softc * sc,mpr_reg_access_t * data)2178*fd501800SSascha Wildner mpr_user_reg_access(struct mpr_softc *sc, mpr_reg_access_t *data)
2179*fd501800SSascha Wildner {
2180*fd501800SSascha Wildner 	int	status = 0;
2181*fd501800SSascha Wildner 
2182*fd501800SSascha Wildner 	switch (data->Command) {
2183*fd501800SSascha Wildner 		/*
2184*fd501800SSascha Wildner 		 * IO access is not supported.
2185*fd501800SSascha Wildner 		 */
2186*fd501800SSascha Wildner 		case REG_IO_READ:
2187*fd501800SSascha Wildner 		case REG_IO_WRITE:
2188*fd501800SSascha Wildner 			mpr_dprint(sc, MPR_USER, "IO access is not supported. "
2189*fd501800SSascha Wildner 			    "Use memory access.");
2190*fd501800SSascha Wildner 			status = EINVAL;
2191*fd501800SSascha Wildner 			break;
2192*fd501800SSascha Wildner 
2193*fd501800SSascha Wildner 		case REG_MEM_READ:
2194*fd501800SSascha Wildner 			data->RegData = mpr_regread(sc, data->RegOffset);
2195*fd501800SSascha Wildner 			break;
2196*fd501800SSascha Wildner 
2197*fd501800SSascha Wildner 		case REG_MEM_WRITE:
2198*fd501800SSascha Wildner 			mpr_regwrite(sc, data->RegOffset, data->RegData);
2199*fd501800SSascha Wildner 			break;
2200*fd501800SSascha Wildner 
2201*fd501800SSascha Wildner 		default:
2202*fd501800SSascha Wildner 			status = EINVAL;
2203*fd501800SSascha Wildner 			break;
2204*fd501800SSascha Wildner 	}
2205*fd501800SSascha Wildner 
2206*fd501800SSascha Wildner 	return (status);
2207*fd501800SSascha Wildner }
2208*fd501800SSascha Wildner 
2209*fd501800SSascha Wildner static int
mpr_user_btdh(struct mpr_softc * sc,mpr_btdh_mapping_t * data)2210*fd501800SSascha Wildner mpr_user_btdh(struct mpr_softc *sc, mpr_btdh_mapping_t *data)
2211*fd501800SSascha Wildner {
2212*fd501800SSascha Wildner 	uint8_t		bt2dh = FALSE;
2213*fd501800SSascha Wildner 	uint8_t		dh2bt = FALSE;
2214*fd501800SSascha Wildner 	uint16_t	dev_handle, bus, target;
2215*fd501800SSascha Wildner 
2216*fd501800SSascha Wildner 	bus = data->Bus;
2217*fd501800SSascha Wildner 	target = data->TargetID;
2218*fd501800SSascha Wildner 	dev_handle = data->DevHandle;
2219*fd501800SSascha Wildner 
2220*fd501800SSascha Wildner 	/*
2221*fd501800SSascha Wildner 	 * When DevHandle is 0xFFFF and Bus/Target are not 0xFFFF, use Bus/
2222*fd501800SSascha Wildner 	 * Target to get DevHandle.  When Bus/Target are 0xFFFF and DevHandle is
2223*fd501800SSascha Wildner 	 * not 0xFFFF, use DevHandle to get Bus/Target.  Anything else is
2224*fd501800SSascha Wildner 	 * invalid.
2225*fd501800SSascha Wildner 	 */
2226*fd501800SSascha Wildner 	if ((bus == 0xFFFF) && (target == 0xFFFF) && (dev_handle != 0xFFFF))
2227*fd501800SSascha Wildner 		dh2bt = TRUE;
2228*fd501800SSascha Wildner 	if ((dev_handle == 0xFFFF) && (bus != 0xFFFF) && (target != 0xFFFF))
2229*fd501800SSascha Wildner 		bt2dh = TRUE;
2230*fd501800SSascha Wildner 	if (!dh2bt && !bt2dh)
2231*fd501800SSascha Wildner 		return (EINVAL);
2232*fd501800SSascha Wildner 
2233*fd501800SSascha Wildner 	/*
2234*fd501800SSascha Wildner 	 * Only handle bus of 0.  Make sure target is within range.
2235*fd501800SSascha Wildner 	 */
2236*fd501800SSascha Wildner 	if (bt2dh) {
2237*fd501800SSascha Wildner 		if (bus != 0)
2238*fd501800SSascha Wildner 			return (EINVAL);
2239*fd501800SSascha Wildner 
2240*fd501800SSascha Wildner 		if (target > sc->max_devices) {
2241*fd501800SSascha Wildner 			mpr_dprint(sc, MPR_XINFO, "Target ID is out of range "
2242*fd501800SSascha Wildner 			   "for Bus/Target to DevHandle mapping.");
2243*fd501800SSascha Wildner 			return (EINVAL);
2244*fd501800SSascha Wildner 		}
2245*fd501800SSascha Wildner 		dev_handle = sc->mapping_table[target].dev_handle;
2246*fd501800SSascha Wildner 		if (dev_handle)
2247*fd501800SSascha Wildner 			data->DevHandle = dev_handle;
2248*fd501800SSascha Wildner 	} else {
2249*fd501800SSascha Wildner 		bus = 0;
2250*fd501800SSascha Wildner 		target = mpr_mapping_get_tid_from_handle(sc, dev_handle);
2251*fd501800SSascha Wildner 		data->Bus = bus;
2252*fd501800SSascha Wildner 		data->TargetID = target;
2253*fd501800SSascha Wildner 	}
2254*fd501800SSascha Wildner 
2255*fd501800SSascha Wildner 	return (0);
2256*fd501800SSascha Wildner }
2257*fd501800SSascha Wildner 
2258*fd501800SSascha Wildner static int
mpr_ioctl(struct cdev * dev,u_long cmd,void * arg,int flag)2259*fd501800SSascha Wildner mpr_ioctl(struct cdev *dev, u_long cmd, void *arg, int flag)
2260*fd501800SSascha Wildner {
2261*fd501800SSascha Wildner 	struct mpr_softc *sc;
2262*fd501800SSascha Wildner 	struct mpr_cfg_page_req *page_req;
2263*fd501800SSascha Wildner 	struct mpr_ext_cfg_page_req *ext_page_req;
2264*fd501800SSascha Wildner 	void *mpr_page;
2265*fd501800SSascha Wildner 	int error, msleep_ret;
2266*fd501800SSascha Wildner 
2267*fd501800SSascha Wildner 	mpr_page = NULL;
2268*fd501800SSascha Wildner 	sc = dev->si_drv1;
2269*fd501800SSascha Wildner 	page_req = (void *)arg;
2270*fd501800SSascha Wildner 	ext_page_req = (void *)arg;
2271*fd501800SSascha Wildner 
2272*fd501800SSascha Wildner 	switch (cmd) {
2273*fd501800SSascha Wildner 	case MPRIO_READ_CFG_HEADER:
2274*fd501800SSascha Wildner 		mpr_lock(sc);
2275*fd501800SSascha Wildner 		error = mpr_user_read_cfg_header(sc, page_req);
2276*fd501800SSascha Wildner 		mpr_unlock(sc);
2277*fd501800SSascha Wildner 		break;
2278*fd501800SSascha Wildner 	case MPRIO_READ_CFG_PAGE:
2279*fd501800SSascha Wildner 		mpr_page = kmalloc(page_req->len, M_MPRUSER, M_WAITOK | M_ZERO);
2280*fd501800SSascha Wildner 		error = copyin(page_req->buf, mpr_page,
2281*fd501800SSascha Wildner 		    sizeof(MPI2_CONFIG_PAGE_HEADER));
2282*fd501800SSascha Wildner 		if (error)
2283*fd501800SSascha Wildner 			break;
2284*fd501800SSascha Wildner 		mpr_lock(sc);
2285*fd501800SSascha Wildner 		error = mpr_user_read_cfg_page(sc, page_req, mpr_page);
2286*fd501800SSascha Wildner 		mpr_unlock(sc);
2287*fd501800SSascha Wildner 		if (error)
2288*fd501800SSascha Wildner 			break;
2289*fd501800SSascha Wildner 		error = copyout(mpr_page, page_req->buf, page_req->len);
2290*fd501800SSascha Wildner 		break;
2291*fd501800SSascha Wildner 	case MPRIO_READ_EXT_CFG_HEADER:
2292*fd501800SSascha Wildner 		mpr_lock(sc);
2293*fd501800SSascha Wildner 		error = mpr_user_read_extcfg_header(sc, ext_page_req);
2294*fd501800SSascha Wildner 		mpr_unlock(sc);
2295*fd501800SSascha Wildner 		break;
2296*fd501800SSascha Wildner 	case MPRIO_READ_EXT_CFG_PAGE:
2297*fd501800SSascha Wildner 		mpr_page = kmalloc(ext_page_req->len, M_MPRUSER,
2298*fd501800SSascha Wildner 		    M_WAITOK | M_ZERO);
2299*fd501800SSascha Wildner 		error = copyin(ext_page_req->buf, mpr_page,
2300*fd501800SSascha Wildner 		    sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
2301*fd501800SSascha Wildner 		if (error)
2302*fd501800SSascha Wildner 			break;
2303*fd501800SSascha Wildner 		mpr_lock(sc);
2304*fd501800SSascha Wildner 		error = mpr_user_read_extcfg_page(sc, ext_page_req, mpr_page);
2305*fd501800SSascha Wildner 		mpr_unlock(sc);
2306*fd501800SSascha Wildner 		if (error)
2307*fd501800SSascha Wildner 			break;
2308*fd501800SSascha Wildner 		error = copyout(mpr_page, ext_page_req->buf, ext_page_req->len);
2309*fd501800SSascha Wildner 		break;
2310*fd501800SSascha Wildner 	case MPRIO_WRITE_CFG_PAGE:
2311*fd501800SSascha Wildner 		mpr_page = kmalloc(page_req->len, M_MPRUSER, M_WAITOK|M_ZERO);
2312*fd501800SSascha Wildner 		error = copyin(page_req->buf, mpr_page, page_req->len);
2313*fd501800SSascha Wildner 		if (error)
2314*fd501800SSascha Wildner 			break;
2315*fd501800SSascha Wildner 		mpr_lock(sc);
2316*fd501800SSascha Wildner 		error = mpr_user_write_cfg_page(sc, page_req, mpr_page);
2317*fd501800SSascha Wildner 		mpr_unlock(sc);
2318*fd501800SSascha Wildner 		break;
2319*fd501800SSascha Wildner 	case MPRIO_MPR_COMMAND:
2320*fd501800SSascha Wildner 		error = mpr_user_command(sc, (struct mpr_usr_command *)arg);
2321*fd501800SSascha Wildner 		break;
2322*fd501800SSascha Wildner 	case MPTIOCTL_PASS_THRU:
2323*fd501800SSascha Wildner 		/*
2324*fd501800SSascha Wildner 		 * The user has requested to pass through a command to be
2325*fd501800SSascha Wildner 		 * executed by the MPT firmware.  Call our routine which does
2326*fd501800SSascha Wildner 		 * this.  Only allow one passthru IOCTL at one time.
2327*fd501800SSascha Wildner 		 */
2328*fd501800SSascha Wildner 		error = mpr_user_pass_thru(sc, (mpr_pass_thru_t *)arg);
2329*fd501800SSascha Wildner 		break;
2330*fd501800SSascha Wildner 	case MPTIOCTL_GET_ADAPTER_DATA:
2331*fd501800SSascha Wildner 		/*
2332*fd501800SSascha Wildner 		 * The user has requested to read adapter data.  Call our
2333*fd501800SSascha Wildner 		 * routine which does this.
2334*fd501800SSascha Wildner 		 */
2335*fd501800SSascha Wildner 		error = 0;
2336*fd501800SSascha Wildner 		mpr_user_get_adapter_data(sc, (mpr_adapter_data_t *)arg);
2337*fd501800SSascha Wildner 		break;
2338*fd501800SSascha Wildner 	case MPTIOCTL_GET_PCI_INFO:
2339*fd501800SSascha Wildner 		/*
2340*fd501800SSascha Wildner 		 * The user has requested to read pci info.  Call
2341*fd501800SSascha Wildner 		 * our routine which does this.
2342*fd501800SSascha Wildner 		 */
2343*fd501800SSascha Wildner 		mpr_lock(sc);
2344*fd501800SSascha Wildner 		error = 0;
2345*fd501800SSascha Wildner 		mpr_user_read_pci_info(sc, (mpr_pci_info_t *)arg);
2346*fd501800SSascha Wildner 		mpr_unlock(sc);
2347*fd501800SSascha Wildner 		break;
2348*fd501800SSascha Wildner 	case MPTIOCTL_RESET_ADAPTER:
2349*fd501800SSascha Wildner 		mpr_lock(sc);
2350*fd501800SSascha Wildner 		sc->port_enable_complete = 0;
2351*fd501800SSascha Wildner 		uint32_t reinit_start = time_uptime;
2352*fd501800SSascha Wildner 		error = mpr_reinit(sc);
2353*fd501800SSascha Wildner 		/* Sleep for 300 second. */
2354*fd501800SSascha Wildner 		msleep_ret = lksleep(&sc->port_enable_complete, &sc->mpr_lock,
2355*fd501800SSascha Wildner 		    0, "mpr_porten", 300 * hz);
2356*fd501800SSascha Wildner 		mpr_unlock(sc);
2357*fd501800SSascha Wildner 		if (msleep_ret)
2358*fd501800SSascha Wildner 			kprintf("Port Enable did not complete after Diag "
2359*fd501800SSascha Wildner 			    "Reset lksleep error %d.\n", msleep_ret);
2360*fd501800SSascha Wildner 		else
2361*fd501800SSascha Wildner 			mpr_dprint(sc, MPR_USER, "Hard Reset with Port Enable "
2362*fd501800SSascha Wildner 			    "completed in %d seconds.\n",
2363*fd501800SSascha Wildner 			    (uint32_t)(time_uptime - reinit_start));
2364*fd501800SSascha Wildner 		break;
2365*fd501800SSascha Wildner 	case MPTIOCTL_DIAG_ACTION:
2366*fd501800SSascha Wildner 		/*
2367*fd501800SSascha Wildner 		 * The user has done a diag buffer action.  Call our routine
2368*fd501800SSascha Wildner 		 * which does this.  Only allow one diag action at one time.
2369*fd501800SSascha Wildner 		 */
2370*fd501800SSascha Wildner 		mpr_lock(sc);
2371*fd501800SSascha Wildner 		error = mpr_user_diag_action(sc, (mpr_diag_action_t *)arg);
2372*fd501800SSascha Wildner 		mpr_unlock(sc);
2373*fd501800SSascha Wildner 		break;
2374*fd501800SSascha Wildner 	case MPTIOCTL_EVENT_QUERY:
2375*fd501800SSascha Wildner 		/*
2376*fd501800SSascha Wildner 		 * The user has done an event query. Call our routine which does
2377*fd501800SSascha Wildner 		 * this.
2378*fd501800SSascha Wildner 		 */
2379*fd501800SSascha Wildner 		error = 0;
2380*fd501800SSascha Wildner 		mpr_user_event_query(sc, (mpr_event_query_t *)arg);
2381*fd501800SSascha Wildner 		break;
2382*fd501800SSascha Wildner 	case MPTIOCTL_EVENT_ENABLE:
2383*fd501800SSascha Wildner 		/*
2384*fd501800SSascha Wildner 		 * The user has done an event enable. Call our routine which
2385*fd501800SSascha Wildner 		 * does this.
2386*fd501800SSascha Wildner 		 */
2387*fd501800SSascha Wildner 		error = 0;
2388*fd501800SSascha Wildner 		mpr_user_event_enable(sc, (mpr_event_enable_t *)arg);
2389*fd501800SSascha Wildner 		break;
2390*fd501800SSascha Wildner 	case MPTIOCTL_EVENT_REPORT:
2391*fd501800SSascha Wildner 		/*
2392*fd501800SSascha Wildner 		 * The user has done an event report. Call our routine which
2393*fd501800SSascha Wildner 		 * does this.
2394*fd501800SSascha Wildner 		 */
2395*fd501800SSascha Wildner 		error = mpr_user_event_report(sc, (mpr_event_report_t *)arg);
2396*fd501800SSascha Wildner 		break;
2397*fd501800SSascha Wildner 	case MPTIOCTL_REG_ACCESS:
2398*fd501800SSascha Wildner 		/*
2399*fd501800SSascha Wildner 		 * The user has requested register access.  Call our routine
2400*fd501800SSascha Wildner 		 * which does this.
2401*fd501800SSascha Wildner 		 */
2402*fd501800SSascha Wildner 		mpr_lock(sc);
2403*fd501800SSascha Wildner 		error = mpr_user_reg_access(sc, (mpr_reg_access_t *)arg);
2404*fd501800SSascha Wildner 		mpr_unlock(sc);
2405*fd501800SSascha Wildner 		break;
2406*fd501800SSascha Wildner 	case MPTIOCTL_BTDH_MAPPING:
2407*fd501800SSascha Wildner 		/*
2408*fd501800SSascha Wildner 		 * The user has requested to translate a bus/target to a
2409*fd501800SSascha Wildner 		 * DevHandle or a DevHandle to a bus/target.  Call our routine
2410*fd501800SSascha Wildner 		 * which does this.
2411*fd501800SSascha Wildner 		 */
2412*fd501800SSascha Wildner 		error = mpr_user_btdh(sc, (mpr_btdh_mapping_t *)arg);
2413*fd501800SSascha Wildner 		break;
2414*fd501800SSascha Wildner 	default:
2415*fd501800SSascha Wildner 		error = ENOIOCTL;
2416*fd501800SSascha Wildner 		break;
2417*fd501800SSascha Wildner 	}
2418*fd501800SSascha Wildner 
2419*fd501800SSascha Wildner 	if (mpr_page != NULL)
2420*fd501800SSascha Wildner 		kfree(mpr_page, M_MPRUSER);
2421*fd501800SSascha Wildner 
2422*fd501800SSascha Wildner 	return (error);
2423*fd501800SSascha Wildner }
2424*fd501800SSascha Wildner 
2425*fd501800SSascha Wildner #ifdef COMPAT_FREEBSD32
2426*fd501800SSascha Wildner 
2427*fd501800SSascha Wildner struct mpr_cfg_page_req32 {
2428*fd501800SSascha Wildner 	MPI2_CONFIG_PAGE_HEADER header;
2429*fd501800SSascha Wildner 	uint32_t page_address;
2430*fd501800SSascha Wildner 	uint32_t buf;
2431*fd501800SSascha Wildner 	int	len;
2432*fd501800SSascha Wildner 	uint16_t ioc_status;
2433*fd501800SSascha Wildner };
2434*fd501800SSascha Wildner 
2435*fd501800SSascha Wildner struct mpr_ext_cfg_page_req32 {
2436*fd501800SSascha Wildner 	MPI2_CONFIG_EXTENDED_PAGE_HEADER header;
2437*fd501800SSascha Wildner 	uint32_t page_address;
2438*fd501800SSascha Wildner 	uint32_t buf;
2439*fd501800SSascha Wildner 	int	len;
2440*fd501800SSascha Wildner 	uint16_t ioc_status;
2441*fd501800SSascha Wildner };
2442*fd501800SSascha Wildner 
2443*fd501800SSascha Wildner struct mpr_raid_action32 {
2444*fd501800SSascha Wildner 	uint8_t action;
2445*fd501800SSascha Wildner 	uint8_t volume_bus;
2446*fd501800SSascha Wildner 	uint8_t volume_id;
2447*fd501800SSascha Wildner 	uint8_t phys_disk_num;
2448*fd501800SSascha Wildner 	uint32_t action_data_word;
2449*fd501800SSascha Wildner 	uint32_t buf;
2450*fd501800SSascha Wildner 	int len;
2451*fd501800SSascha Wildner 	uint32_t volume_status;
2452*fd501800SSascha Wildner 	uint32_t action_data[4];
2453*fd501800SSascha Wildner 	uint16_t action_status;
2454*fd501800SSascha Wildner 	uint16_t ioc_status;
2455*fd501800SSascha Wildner 	uint8_t write;
2456*fd501800SSascha Wildner };
2457*fd501800SSascha Wildner 
2458*fd501800SSascha Wildner struct mpr_usr_command32 {
2459*fd501800SSascha Wildner 	uint32_t req;
2460*fd501800SSascha Wildner 	uint32_t req_len;
2461*fd501800SSascha Wildner 	uint32_t rpl;
2462*fd501800SSascha Wildner 	uint32_t rpl_len;
2463*fd501800SSascha Wildner 	uint32_t buf;
2464*fd501800SSascha Wildner 	int len;
2465*fd501800SSascha Wildner 	uint32_t flags;
2466*fd501800SSascha Wildner };
2467*fd501800SSascha Wildner 
2468*fd501800SSascha Wildner #define	MPRIO_READ_CFG_HEADER32	_IOWR('M', 200, struct mpr_cfg_page_req32)
2469*fd501800SSascha Wildner #define	MPRIO_READ_CFG_PAGE32	_IOWR('M', 201, struct mpr_cfg_page_req32)
2470*fd501800SSascha Wildner #define	MPRIO_READ_EXT_CFG_HEADER32 _IOWR('M', 202, struct mpr_ext_cfg_page_req32)
2471*fd501800SSascha Wildner #define	MPRIO_READ_EXT_CFG_PAGE32 _IOWR('M', 203, struct mpr_ext_cfg_page_req32)
2472*fd501800SSascha Wildner #define	MPRIO_WRITE_CFG_PAGE32	_IOWR('M', 204, struct mpr_cfg_page_req32)
2473*fd501800SSascha Wildner #define	MPRIO_RAID_ACTION32	_IOWR('M', 205, struct mpr_raid_action32)
2474*fd501800SSascha Wildner #define	MPRIO_MPR_COMMAND32	_IOWR('M', 210, struct mpr_usr_command32)
2475*fd501800SSascha Wildner 
2476*fd501800SSascha Wildner static int
mpr_ioctl32(struct cdev * dev,u_long cmd32,void * _arg,int flag,struct thread * td)2477*fd501800SSascha Wildner mpr_ioctl32(struct cdev *dev, u_long cmd32, void *_arg, int flag,
2478*fd501800SSascha Wildner     struct thread *td)
2479*fd501800SSascha Wildner {
2480*fd501800SSascha Wildner 	struct mpr_cfg_page_req32 *page32 = _arg;
2481*fd501800SSascha Wildner 	struct mpr_ext_cfg_page_req32 *ext32 = _arg;
2482*fd501800SSascha Wildner 	struct mpr_raid_action32 *raid32 = _arg;
2483*fd501800SSascha Wildner 	struct mpr_usr_command32 *user32 = _arg;
2484*fd501800SSascha Wildner 	union {
2485*fd501800SSascha Wildner 		struct mpr_cfg_page_req page;
2486*fd501800SSascha Wildner 		struct mpr_ext_cfg_page_req ext;
2487*fd501800SSascha Wildner 		struct mpr_raid_action raid;
2488*fd501800SSascha Wildner 		struct mpr_usr_command user;
2489*fd501800SSascha Wildner 	} arg;
2490*fd501800SSascha Wildner 	u_long cmd;
2491*fd501800SSascha Wildner 	int error;
2492*fd501800SSascha Wildner 
2493*fd501800SSascha Wildner 	switch (cmd32) {
2494*fd501800SSascha Wildner 	case MPRIO_READ_CFG_HEADER32:
2495*fd501800SSascha Wildner 	case MPRIO_READ_CFG_PAGE32:
2496*fd501800SSascha Wildner 	case MPRIO_WRITE_CFG_PAGE32:
2497*fd501800SSascha Wildner 		if (cmd32 == MPRIO_READ_CFG_HEADER32)
2498*fd501800SSascha Wildner 			cmd = MPRIO_READ_CFG_HEADER;
2499*fd501800SSascha Wildner 		else if (cmd32 == MPRIO_READ_CFG_PAGE32)
2500*fd501800SSascha Wildner 			cmd = MPRIO_READ_CFG_PAGE;
2501*fd501800SSascha Wildner 		else
2502*fd501800SSascha Wildner 			cmd = MPRIO_WRITE_CFG_PAGE;
2503*fd501800SSascha Wildner 		CP(*page32, arg.page, header);
2504*fd501800SSascha Wildner 		CP(*page32, arg.page, page_address);
2505*fd501800SSascha Wildner 		PTRIN_CP(*page32, arg.page, buf);
2506*fd501800SSascha Wildner 		CP(*page32, arg.page, len);
2507*fd501800SSascha Wildner 		CP(*page32, arg.page, ioc_status);
2508*fd501800SSascha Wildner 		break;
2509*fd501800SSascha Wildner 
2510*fd501800SSascha Wildner 	case MPRIO_READ_EXT_CFG_HEADER32:
2511*fd501800SSascha Wildner 	case MPRIO_READ_EXT_CFG_PAGE32:
2512*fd501800SSascha Wildner 		if (cmd32 == MPRIO_READ_EXT_CFG_HEADER32)
2513*fd501800SSascha Wildner 			cmd = MPRIO_READ_EXT_CFG_HEADER;
2514*fd501800SSascha Wildner 		else
2515*fd501800SSascha Wildner 			cmd = MPRIO_READ_EXT_CFG_PAGE;
2516*fd501800SSascha Wildner 		CP(*ext32, arg.ext, header);
2517*fd501800SSascha Wildner 		CP(*ext32, arg.ext, page_address);
2518*fd501800SSascha Wildner 		PTRIN_CP(*ext32, arg.ext, buf);
2519*fd501800SSascha Wildner 		CP(*ext32, arg.ext, len);
2520*fd501800SSascha Wildner 		CP(*ext32, arg.ext, ioc_status);
2521*fd501800SSascha Wildner 		break;
2522*fd501800SSascha Wildner 
2523*fd501800SSascha Wildner 	case MPRIO_RAID_ACTION32:
2524*fd501800SSascha Wildner 		cmd = MPRIO_RAID_ACTION;
2525*fd501800SSascha Wildner 		CP(*raid32, arg.raid, action);
2526*fd501800SSascha Wildner 		CP(*raid32, arg.raid, volume_bus);
2527*fd501800SSascha Wildner 		CP(*raid32, arg.raid, volume_id);
2528*fd501800SSascha Wildner 		CP(*raid32, arg.raid, phys_disk_num);
2529*fd501800SSascha Wildner 		CP(*raid32, arg.raid, action_data_word);
2530*fd501800SSascha Wildner 		PTRIN_CP(*raid32, arg.raid, buf);
2531*fd501800SSascha Wildner 		CP(*raid32, arg.raid, len);
2532*fd501800SSascha Wildner 		CP(*raid32, arg.raid, volume_status);
2533*fd501800SSascha Wildner 		bcopy(raid32->action_data, arg.raid.action_data,
2534*fd501800SSascha Wildner 		    sizeof arg.raid.action_data);
2535*fd501800SSascha Wildner 		CP(*raid32, arg.raid, ioc_status);
2536*fd501800SSascha Wildner 		CP(*raid32, arg.raid, write);
2537*fd501800SSascha Wildner 		break;
2538*fd501800SSascha Wildner 
2539*fd501800SSascha Wildner 	case MPRIO_MPR_COMMAND32:
2540*fd501800SSascha Wildner 		cmd = MPRIO_MPR_COMMAND;
2541*fd501800SSascha Wildner 		PTRIN_CP(*user32, arg.user, req);
2542*fd501800SSascha Wildner 		CP(*user32, arg.user, req_len);
2543*fd501800SSascha Wildner 		PTRIN_CP(*user32, arg.user, rpl);
2544*fd501800SSascha Wildner 		CP(*user32, arg.user, rpl_len);
2545*fd501800SSascha Wildner 		PTRIN_CP(*user32, arg.user, buf);
2546*fd501800SSascha Wildner 		CP(*user32, arg.user, len);
2547*fd501800SSascha Wildner 		CP(*user32, arg.user, flags);
2548*fd501800SSascha Wildner 		break;
2549*fd501800SSascha Wildner 	default:
2550*fd501800SSascha Wildner 		return (ENOIOCTL);
2551*fd501800SSascha Wildner 	}
2552*fd501800SSascha Wildner 
2553*fd501800SSascha Wildner 	error = mpr_ioctl(dev, cmd, &arg, flag, td);
2554*fd501800SSascha Wildner 	if (error == 0 && (cmd32 & IOC_OUT) != 0) {
2555*fd501800SSascha Wildner 		switch (cmd32) {
2556*fd501800SSascha Wildner 		case MPRIO_READ_CFG_HEADER32:
2557*fd501800SSascha Wildner 		case MPRIO_READ_CFG_PAGE32:
2558*fd501800SSascha Wildner 		case MPRIO_WRITE_CFG_PAGE32:
2559*fd501800SSascha Wildner 			CP(arg.page, *page32, header);
2560*fd501800SSascha Wildner 			CP(arg.page, *page32, page_address);
2561*fd501800SSascha Wildner 			PTROUT_CP(arg.page, *page32, buf);
2562*fd501800SSascha Wildner 			CP(arg.page, *page32, len);
2563*fd501800SSascha Wildner 			CP(arg.page, *page32, ioc_status);
2564*fd501800SSascha Wildner 			break;
2565*fd501800SSascha Wildner 
2566*fd501800SSascha Wildner 		case MPRIO_READ_EXT_CFG_HEADER32:
2567*fd501800SSascha Wildner 		case MPRIO_READ_EXT_CFG_PAGE32:
2568*fd501800SSascha Wildner 			CP(arg.ext, *ext32, header);
2569*fd501800SSascha Wildner 			CP(arg.ext, *ext32, page_address);
2570*fd501800SSascha Wildner 			PTROUT_CP(arg.ext, *ext32, buf);
2571*fd501800SSascha Wildner 			CP(arg.ext, *ext32, len);
2572*fd501800SSascha Wildner 			CP(arg.ext, *ext32, ioc_status);
2573*fd501800SSascha Wildner 			break;
2574*fd501800SSascha Wildner 
2575*fd501800SSascha Wildner 		case MPRIO_RAID_ACTION32:
2576*fd501800SSascha Wildner 			CP(arg.raid, *raid32, action);
2577*fd501800SSascha Wildner 			CP(arg.raid, *raid32, volume_bus);
2578*fd501800SSascha Wildner 			CP(arg.raid, *raid32, volume_id);
2579*fd501800SSascha Wildner 			CP(arg.raid, *raid32, phys_disk_num);
2580*fd501800SSascha Wildner 			CP(arg.raid, *raid32, action_data_word);
2581*fd501800SSascha Wildner 			PTROUT_CP(arg.raid, *raid32, buf);
2582*fd501800SSascha Wildner 			CP(arg.raid, *raid32, len);
2583*fd501800SSascha Wildner 			CP(arg.raid, *raid32, volume_status);
2584*fd501800SSascha Wildner 			bcopy(arg.raid.action_data, raid32->action_data,
2585*fd501800SSascha Wildner 			    sizeof arg.raid.action_data);
2586*fd501800SSascha Wildner 			CP(arg.raid, *raid32, ioc_status);
2587*fd501800SSascha Wildner 			CP(arg.raid, *raid32, write);
2588*fd501800SSascha Wildner 			break;
2589*fd501800SSascha Wildner 
2590*fd501800SSascha Wildner 		case MPRIO_MPR_COMMAND32:
2591*fd501800SSascha Wildner 			PTROUT_CP(arg.user, *user32, req);
2592*fd501800SSascha Wildner 			CP(arg.user, *user32, req_len);
2593*fd501800SSascha Wildner 			PTROUT_CP(arg.user, *user32, rpl);
2594*fd501800SSascha Wildner 			CP(arg.user, *user32, rpl_len);
2595*fd501800SSascha Wildner 			PTROUT_CP(arg.user, *user32, buf);
2596*fd501800SSascha Wildner 			CP(arg.user, *user32, len);
2597*fd501800SSascha Wildner 			CP(arg.user, *user32, flags);
2598*fd501800SSascha Wildner 			break;
2599*fd501800SSascha Wildner 		}
2600*fd501800SSascha Wildner 	}
2601*fd501800SSascha Wildner 
2602*fd501800SSascha Wildner 	return (error);
2603*fd501800SSascha Wildner }
2604*fd501800SSascha Wildner #endif /* COMPAT_FREEBSD32 */
2605*fd501800SSascha Wildner 
2606*fd501800SSascha Wildner static int
mpr_ioctl_devsw(struct dev_ioctl_args * ap)2607*fd501800SSascha Wildner mpr_ioctl_devsw(struct dev_ioctl_args *ap)
2608*fd501800SSascha Wildner {
2609*fd501800SSascha Wildner 	cdev_t dev = ap->a_head.a_dev;
2610*fd501800SSascha Wildner 	u_long cmd = ap->a_cmd;
2611*fd501800SSascha Wildner 	int flag = ap->a_fflag;
2612*fd501800SSascha Wildner 	caddr_t arg = ap->a_data;
2613*fd501800SSascha Wildner 
2614*fd501800SSascha Wildner #ifdef COMPAT_FREEBSD32
2615*fd501800SSascha Wildner 	if (SV_CURPROC_FLAG(SV_ILP32))
2616*fd501800SSascha Wildner 		return (mpr_ioctl32(dev, com, arg, flag, td));
2617*fd501800SSascha Wildner #endif
2618*fd501800SSascha Wildner 	return (mpr_ioctl(dev, cmd, arg, flag));
2619*fd501800SSascha Wildner }
2620