2 * QEMU ISA IPMI KCS emulation
4 * Copyright (c) 2015 Corey Minyard, MontaVista Software, LLC
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
24 #include "qemu/osdep.h"
25 #include "qapi/error.h"
27 #include "hw/ipmi/ipmi.h"
28 #include "hw/isa/isa.h"
30 #define IPMI_KCS_OBF_BIT 0
31 #define IPMI_KCS_IBF_BIT 1
32 #define IPMI_KCS_SMS_ATN_BIT 2
33 #define IPMI_KCS_CD_BIT 3
35 #define IPMI_KCS_OBF_MASK (1 << IPMI_KCS_OBF_BIT)
36 #define IPMI_KCS_GET_OBF(d) (((d) >> IPMI_KCS_OBF_BIT) & 0x1)
37 #define IPMI_KCS_SET_OBF(d, v) (d) = (((d) & ~IPMI_KCS_OBF_MASK) | \
38 (((v) & 1) << IPMI_KCS_OBF_BIT))
39 #define IPMI_KCS_IBF_MASK (1 << IPMI_KCS_IBF_BIT)
40 #define IPMI_KCS_GET_IBF(d) (((d) >> IPMI_KCS_IBF_BIT) & 0x1)
41 #define IPMI_KCS_SET_IBF(d, v) (d) = (((d) & ~IPMI_KCS_IBF_MASK) | \
42 (((v) & 1) << IPMI_KCS_IBF_BIT))
43 #define IPMI_KCS_SMS_ATN_MASK (1 << IPMI_KCS_SMS_ATN_BIT)
44 #define IPMI_KCS_GET_SMS_ATN(d) (((d) >> IPMI_KCS_SMS_ATN_BIT) & 0x1)
45 #define IPMI_KCS_SET_SMS_ATN(d, v) (d) = (((d) & ~IPMI_KCS_SMS_ATN_MASK) | \
46 (((v) & 1) << IPMI_KCS_SMS_ATN_BIT))
47 #define IPMI_KCS_CD_MASK (1 << IPMI_KCS_CD_BIT)
48 #define IPMI_KCS_GET_CD(d) (((d) >> IPMI_KCS_CD_BIT) & 0x1)
49 #define IPMI_KCS_SET_CD(d, v) (d) = (((d) & ~IPMI_KCS_CD_MASK) | \
50 (((v) & 1) << IPMI_KCS_CD_BIT))
52 #define IPMI_KCS_IDLE_STATE 0
53 #define IPMI_KCS_READ_STATE 1
54 #define IPMI_KCS_WRITE_STATE 2
55 #define IPMI_KCS_ERROR_STATE 3
57 #define IPMI_KCS_GET_STATE(d) (((d) >> 6) & 0x3)
58 #define IPMI_KCS_SET_STATE(d, v) ((d) = ((d) & ~0xc0) | (((v) & 0x3) << 6))
60 #define IPMI_KCS_ABORT_STATUS_CMD 0x60
61 #define IPMI_KCS_WRITE_START_CMD 0x61
62 #define IPMI_KCS_WRITE_END_CMD 0x62
63 #define IPMI_KCS_READ_CMD 0x68
65 #define IPMI_KCS_STATUS_NO_ERR 0x00
66 #define IPMI_KCS_STATUS_ABORTED_ERR 0x01
67 #define IPMI_KCS_STATUS_BAD_CC_ERR 0x02
68 #define IPMI_KCS_STATUS_LENGTH_ERR 0x06
70 typedef struct IPMIKCS
{
78 unsigned long io_length
;
86 uint8_t outmsg
[MAX_IPMI_MSG_SIZE
];
90 uint8_t inmsg
[MAX_IPMI_MSG_SIZE
];
97 int16_t data_in_reg
; /* -1 means not written */
101 * This is a response number that we send with the command to make
102 * sure that the response matches the command.
109 IPMI_KCS_SET_OBF(ik->status_reg, 1); \
110 if (ik->use_irq && ik->irqs_enabled && !ik->obf_irq_set) { \
111 ik->obf_irq_set = 1; \
112 if (!ik->atn_irq_set) { \
113 qemu_irq_raise(ik->irq); \
118 static void ipmi_kcs_signal(IPMIKCS
*ik
, IPMIInterface
*ii
)
120 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
123 while (ik
->do_wake
) {
125 iic
->handle_if_event(ii
);
129 static void ipmi_kcs_handle_event(IPMIInterface
*ii
)
131 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
132 IPMIKCS
*ik
= iic
->get_backend_data(ii
);
134 if (ik
->cmd_reg
== IPMI_KCS_ABORT_STATUS_CMD
) {
135 if (IPMI_KCS_GET_STATE(ik
->status_reg
) != IPMI_KCS_ERROR_STATE
) {
136 ik
->waiting_rsp
++; /* Invalidate the message */
137 ik
->outmsg
[0] = IPMI_KCS_STATUS_ABORTED_ERR
;
140 IPMI_KCS_SET_STATE(ik
->status_reg
, IPMI_KCS_ERROR_STATE
);
146 switch (IPMI_KCS_GET_STATE(ik
->status_reg
)) {
147 case IPMI_KCS_IDLE_STATE
:
148 if (ik
->cmd_reg
== IPMI_KCS_WRITE_START_CMD
) {
149 IPMI_KCS_SET_STATE(ik
->status_reg
, IPMI_KCS_WRITE_STATE
);
157 case IPMI_KCS_READ_STATE
:
159 if (ik
->outpos
>= ik
->outlen
) {
160 IPMI_KCS_SET_STATE(ik
->status_reg
, IPMI_KCS_IDLE_STATE
);
162 } else if (ik
->data_in_reg
== IPMI_KCS_READ_CMD
) {
163 ik
->data_out_reg
= ik
->outmsg
[ik
->outpos
];
167 ik
->outmsg
[0] = IPMI_KCS_STATUS_BAD_CC_ERR
;
170 IPMI_KCS_SET_STATE(ik
->status_reg
, IPMI_KCS_ERROR_STATE
);
176 case IPMI_KCS_WRITE_STATE
:
177 if (ik
->data_in_reg
!= -1) {
179 * Don't worry about input overrun here, that will be
180 * handled in the BMC.
182 if (ik
->inlen
< sizeof(ik
->inmsg
)) {
183 ik
->inmsg
[ik
->inlen
] = ik
->data_in_reg
;
188 IPMIBmcClass
*bk
= IPMI_BMC_GET_CLASS(ik
->bmc
);
192 bk
->handle_command(ik
->bmc
, ik
->inmsg
, ik
->inlen
, sizeof(ik
->inmsg
),
195 } else if (ik
->cmd_reg
== IPMI_KCS_WRITE_END_CMD
) {
202 case IPMI_KCS_ERROR_STATE
:
203 if (ik
->data_in_reg
!= -1) {
204 IPMI_KCS_SET_STATE(ik
->status_reg
, IPMI_KCS_READ_STATE
);
205 ik
->data_in_reg
= IPMI_KCS_READ_CMD
;
211 if (ik
->cmd_reg
!= -1) {
212 /* Got an invalid command */
213 ik
->outmsg
[0] = IPMI_KCS_STATUS_BAD_CC_ERR
;
216 IPMI_KCS_SET_STATE(ik
->status_reg
, IPMI_KCS_ERROR_STATE
);
221 ik
->data_in_reg
= -1;
222 IPMI_KCS_SET_IBF(ik
->status_reg
, 0);
227 static void ipmi_kcs_handle_rsp(IPMIInterface
*ii
, uint8_t msg_id
,
228 unsigned char *rsp
, unsigned int rsp_len
)
230 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
231 IPMIKCS
*ik
= iic
->get_backend_data(ii
);
233 if (ik
->waiting_rsp
== msg_id
) {
235 if (rsp_len
> sizeof(ik
->outmsg
)) {
236 ik
->outmsg
[0] = rsp
[0];
237 ik
->outmsg
[1] = rsp
[1];
238 ik
->outmsg
[2] = IPMI_CC_CANNOT_RETURN_REQ_NUM_BYTES
;
241 memcpy(ik
->outmsg
, rsp
, rsp_len
);
242 ik
->outlen
= rsp_len
;
244 IPMI_KCS_SET_STATE(ik
->status_reg
, IPMI_KCS_READ_STATE
);
245 ik
->data_in_reg
= IPMI_KCS_READ_CMD
;
246 ipmi_kcs_signal(ik
, ii
);
251 static uint64_t ipmi_kcs_ioport_read(void *opaque
, hwaddr addr
, unsigned size
)
253 IPMIInterface
*ii
= opaque
;
254 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
255 IPMIKCS
*ik
= iic
->get_backend_data(ii
);
260 ret
= ik
->data_out_reg
;
261 IPMI_KCS_SET_OBF(ik
->status_reg
, 0);
262 if (ik
->obf_irq_set
) {
264 if (!ik
->atn_irq_set
) {
265 qemu_irq_lower(ik
->irq
);
270 ret
= ik
->status_reg
;
271 if (ik
->atn_irq_set
) {
273 if (!ik
->obf_irq_set
) {
274 qemu_irq_lower(ik
->irq
);
282 static void ipmi_kcs_ioport_write(void *opaque
, hwaddr addr
, uint64_t val
,
285 IPMIInterface
*ii
= opaque
;
286 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
287 IPMIKCS
*ik
= iic
->get_backend_data(ii
);
289 if (IPMI_KCS_GET_IBF(ik
->status_reg
)) {
295 ik
->data_in_reg
= val
;
302 IPMI_KCS_SET_IBF(ik
->status_reg
, 1);
303 ipmi_kcs_signal(ik
, ii
);
306 const MemoryRegionOps ipmi_kcs_io_ops
= {
307 .read
= ipmi_kcs_ioport_read
,
308 .write
= ipmi_kcs_ioport_write
,
310 .min_access_size
= 1,
311 .max_access_size
= 1,
313 .endianness
= DEVICE_LITTLE_ENDIAN
,
316 static void ipmi_kcs_set_atn(IPMIInterface
*ii
, int val
, int irq
)
318 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
319 IPMIKCS
*ik
= iic
->get_backend_data(ii
);
321 IPMI_KCS_SET_SMS_ATN(ik
->status_reg
, val
);
323 if (irq
&& !ik
->atn_irq_set
&& ik
->use_irq
&& ik
->irqs_enabled
) {
325 if (!ik
->obf_irq_set
) {
326 qemu_irq_raise(ik
->irq
);
330 if (ik
->atn_irq_set
) {
332 if (!ik
->obf_irq_set
) {
333 qemu_irq_lower(ik
->irq
);
339 static void ipmi_kcs_set_irq_enable(IPMIInterface
*ii
, int val
)
341 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
342 IPMIKCS
*ik
= iic
->get_backend_data(ii
);
344 ik
->irqs_enabled
= val
;
347 static void ipmi_kcs_init(IPMIInterface
*ii
, Error
**errp
)
349 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
350 IPMIKCS
*ik
= iic
->get_backend_data(ii
);
353 memory_region_init_io(&ik
->io
, NULL
, &ipmi_kcs_io_ops
, ii
, "ipmi-kcs", 2);
356 #define TYPE_ISA_IPMI_KCS "isa-ipmi-kcs"
357 #define ISA_IPMI_KCS(obj) OBJECT_CHECK(ISAIPMIKCSDevice, (obj), \
360 typedef struct ISAIPMIKCSDevice
{
367 static void ipmi_kcs_get_fwinfo(IPMIInterface
*ii
, IPMIFwInfo
*info
)
369 ISAIPMIKCSDevice
*iik
= ISA_IPMI_KCS(ii
);
371 info
->interface_name
= "kcs";
372 info
->interface_type
= IPMI_SMBIOS_KCS
;
373 info
->ipmi_spec_major_revision
= 2;
374 info
->ipmi_spec_minor_revision
= 0;
375 info
->base_address
= iik
->kcs
.io_base
;
376 info
->i2c_slave_address
= iik
->kcs
.bmc
->slave_addr
;
377 info
->register_length
= iik
->kcs
.io_length
;
378 info
->register_spacing
= 1;
379 info
->memspace
= IPMI_MEMSPACE_IO
;
380 info
->irq_type
= IPMI_LEVEL_IRQ
;
381 info
->interrupt_number
= iik
->isairq
;
382 info
->uuid
= iik
->uuid
;
385 static void ipmi_kcs_class_init(IPMIInterfaceClass
*iic
)
387 iic
->init
= ipmi_kcs_init
;
388 iic
->set_atn
= ipmi_kcs_set_atn
;
389 iic
->handle_rsp
= ipmi_kcs_handle_rsp
;
390 iic
->handle_if_event
= ipmi_kcs_handle_event
;
391 iic
->set_irq_enable
= ipmi_kcs_set_irq_enable
;
392 iic
->get_fwinfo
= ipmi_kcs_get_fwinfo
;
395 static void ipmi_isa_realize(DeviceState
*dev
, Error
**errp
)
397 ISADevice
*isadev
= ISA_DEVICE(dev
);
398 ISAIPMIKCSDevice
*iik
= ISA_IPMI_KCS(dev
);
399 IPMIInterface
*ii
= IPMI_INTERFACE(dev
);
400 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_GET_CLASS(ii
);
403 error_setg(errp
, "IPMI device requires a bmc attribute to be set");
407 iik
->uuid
= ipmi_next_uuid();
409 iik
->kcs
.bmc
->intf
= ii
;
415 if (iik
->isairq
> 0) {
416 isa_init_irq(isadev
, &iik
->kcs
.irq
, iik
->isairq
);
417 iik
->kcs
.use_irq
= 1;
420 qdev_set_legacy_instance_id(dev
, iik
->kcs
.io_base
, iik
->kcs
.io_length
);
422 isa_register_ioport(isadev
, &iik
->kcs
.io
, iik
->kcs
.io_base
);
425 const VMStateDescription vmstate_ISAIPMIKCSDevice
= {
426 .name
= TYPE_IPMI_INTERFACE
,
428 .minimum_version_id
= 1,
429 .fields
= (VMStateField
[]) {
430 VMSTATE_BOOL(kcs
.obf_irq_set
, ISAIPMIKCSDevice
),
431 VMSTATE_BOOL(kcs
.atn_irq_set
, ISAIPMIKCSDevice
),
432 VMSTATE_BOOL(kcs
.use_irq
, ISAIPMIKCSDevice
),
433 VMSTATE_BOOL(kcs
.irqs_enabled
, ISAIPMIKCSDevice
),
434 VMSTATE_UINT32(kcs
.outpos
, ISAIPMIKCSDevice
),
435 VMSTATE_UINT8_ARRAY(kcs
.outmsg
, ISAIPMIKCSDevice
, MAX_IPMI_MSG_SIZE
),
436 VMSTATE_UINT8_ARRAY(kcs
.inmsg
, ISAIPMIKCSDevice
, MAX_IPMI_MSG_SIZE
),
437 VMSTATE_BOOL(kcs
.write_end
, ISAIPMIKCSDevice
),
438 VMSTATE_UINT8(kcs
.status_reg
, ISAIPMIKCSDevice
),
439 VMSTATE_UINT8(kcs
.data_out_reg
, ISAIPMIKCSDevice
),
440 VMSTATE_INT16(kcs
.data_in_reg
, ISAIPMIKCSDevice
),
441 VMSTATE_INT16(kcs
.cmd_reg
, ISAIPMIKCSDevice
),
442 VMSTATE_UINT8(kcs
.waiting_rsp
, ISAIPMIKCSDevice
),
443 VMSTATE_END_OF_LIST()
447 static void isa_ipmi_kcs_init(Object
*obj
)
449 ISAIPMIKCSDevice
*iik
= ISA_IPMI_KCS(obj
);
451 ipmi_bmc_find_and_link(obj
, (Object
**) &iik
->kcs
.bmc
);
453 vmstate_register(NULL
, 0, &vmstate_ISAIPMIKCSDevice
, iik
);
456 static void *isa_ipmi_kcs_get_backend_data(IPMIInterface
*ii
)
458 ISAIPMIKCSDevice
*iik
= ISA_IPMI_KCS(ii
);
463 static Property ipmi_isa_properties
[] = {
464 DEFINE_PROP_UINT32("ioport", ISAIPMIKCSDevice
, kcs
.io_base
, 0xca2),
465 DEFINE_PROP_INT32("irq", ISAIPMIKCSDevice
, isairq
, 5),
466 DEFINE_PROP_END_OF_LIST(),
469 static void isa_ipmi_kcs_class_init(ObjectClass
*oc
, void *data
)
471 DeviceClass
*dc
= DEVICE_CLASS(oc
);
472 IPMIInterfaceClass
*iic
= IPMI_INTERFACE_CLASS(oc
);
474 dc
->realize
= ipmi_isa_realize
;
475 dc
->props
= ipmi_isa_properties
;
477 iic
->get_backend_data
= isa_ipmi_kcs_get_backend_data
;
478 ipmi_kcs_class_init(iic
);
481 static const TypeInfo isa_ipmi_kcs_info
= {
482 .name
= TYPE_ISA_IPMI_KCS
,
483 .parent
= TYPE_ISA_DEVICE
,
484 .instance_size
= sizeof(ISAIPMIKCSDevice
),
485 .instance_init
= isa_ipmi_kcs_init
,
486 .class_init
= isa_ipmi_kcs_class_init
,
487 .interfaces
= (InterfaceInfo
[]) {
488 { TYPE_IPMI_INTERFACE
},
493 static void ipmi_register_types(void)
495 type_register_static(&isa_ipmi_kcs_info
);
498 type_init(ipmi_register_types
)