2 * QEMU PowerPC pSeries Logical Partition (aka sPAPR) hardware System Emulator
4 * Hypercall based emulated RTAS
6 * Copyright (c) 2010-2011 David Gibson, IBM Corporation.
8 * Permission is hereby granted, free of charge, to any person obtaining a copy
9 * of this software and associated documentation files (the "Software"), to deal
10 * in the Software without restriction, including without limitation the rights
11 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
12 * copies of the Software, and to permit persons to whom the Software is
13 * furnished to do so, subject to the following conditions:
15 * The above copyright notice and this permission notice shall be included in
16 * all copies or substantial portions of the Software.
18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
19 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
20 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
21 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
22 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
23 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
27 #include "qemu/osdep.h"
30 #include "qemu/error-report.h"
31 #include "sysemu/sysemu.h"
33 #include "sysemu/device_tree.h"
34 #include "sysemu/cpus.h"
35 #include "sysemu/kvm.h"
37 #include "hw/ppc/spapr.h"
38 #include "hw/ppc/spapr_vio.h"
39 #include "hw/ppc/spapr_rtas.h"
40 #include "hw/ppc/ppc.h"
41 #include "qapi-event.h"
42 #include "hw/boards.h"
45 #include "hw/ppc/spapr_drc.h"
46 #include "qemu/cutils.h"
48 #include "hw/ppc/fdt.h"
50 static void rtas_display_character(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
51 uint32_t token
, uint32_t nargs
,
53 uint32_t nret
, target_ulong rets
)
55 uint8_t c
= rtas_ld(args
, 0);
56 VIOsPAPRDevice
*sdev
= vty_lookup(spapr
, 0);
59 rtas_st(rets
, 0, RTAS_OUT_HW_ERROR
);
61 vty_putchars(sdev
, &c
, sizeof(c
));
62 rtas_st(rets
, 0, RTAS_OUT_SUCCESS
);
66 static void rtas_power_off(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
67 uint32_t token
, uint32_t nargs
, target_ulong args
,
68 uint32_t nret
, target_ulong rets
)
70 if (nargs
!= 2 || nret
!= 1) {
71 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
74 qemu_system_shutdown_request(SHUTDOWN_CAUSE_GUEST_SHUTDOWN
);
76 rtas_st(rets
, 0, RTAS_OUT_SUCCESS
);
79 static void rtas_system_reboot(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
80 uint32_t token
, uint32_t nargs
,
82 uint32_t nret
, target_ulong rets
)
84 if (nargs
!= 0 || nret
!= 1) {
85 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
88 qemu_system_reset_request(SHUTDOWN_CAUSE_GUEST_RESET
);
89 rtas_st(rets
, 0, RTAS_OUT_SUCCESS
);
92 static void rtas_query_cpu_stopped_state(PowerPCCPU
*cpu_
,
93 sPAPRMachineState
*spapr
,
94 uint32_t token
, uint32_t nargs
,
96 uint32_t nret
, target_ulong rets
)
101 if (nargs
!= 1 || nret
!= 2) {
102 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
106 id
= rtas_ld(args
, 0);
107 cpu
= spapr_find_cpu(id
);
109 if (CPU(cpu
)->halted
) {
115 rtas_st(rets
, 0, RTAS_OUT_SUCCESS
);
119 /* Didn't find a matching cpu */
120 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
124 * Set the timebase offset of the CPU to that of first CPU.
125 * This helps hotplugged CPU to have the correct timebase offset.
127 static void spapr_cpu_update_tb_offset(PowerPCCPU
*cpu
)
129 PowerPCCPU
*fcpu
= POWERPC_CPU(first_cpu
);
131 cpu
->env
.tb_env
->tb_offset
= fcpu
->env
.tb_env
->tb_offset
;
134 static void spapr_cpu_set_endianness(PowerPCCPU
*cpu
)
136 PowerPCCPU
*fcpu
= POWERPC_CPU(first_cpu
);
137 PowerPCCPUClass
*pcc
= POWERPC_CPU_GET_CLASS(fcpu
);
139 if (!pcc
->interrupts_big_endian(fcpu
)) {
140 cpu
->env
.spr
[SPR_LPCR
] |= LPCR_ILE
;
144 static void rtas_start_cpu(PowerPCCPU
*cpu_
, sPAPRMachineState
*spapr
,
145 uint32_t token
, uint32_t nargs
,
147 uint32_t nret
, target_ulong rets
)
149 target_ulong id
, start
, r3
;
152 if (nargs
!= 3 || nret
!= 1) {
153 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
157 id
= rtas_ld(args
, 0);
158 start
= rtas_ld(args
, 1);
159 r3
= rtas_ld(args
, 2);
161 cpu
= spapr_find_cpu(id
);
163 CPUState
*cs
= CPU(cpu
);
164 CPUPPCState
*env
= &cpu
->env
;
165 PowerPCCPUClass
*pcc
= POWERPC_CPU_GET_CLASS(cpu
);
168 rtas_st(rets
, 0, RTAS_OUT_HW_ERROR
);
172 /* This will make sure qemu state is up to date with kvm, and
173 * mark it dirty so our changes get flushed back before the
175 kvm_cpu_synchronize_state(cs
);
177 env
->msr
= (1ULL << MSR_SF
) | (1ULL << MSR_ME
);
179 /* Enable Power-saving mode Exit Cause exceptions for the new CPU */
180 env
->spr
[SPR_LPCR
] |= pcc
->lpcr_pm
;
185 spapr_cpu_set_endianness(cpu
);
186 spapr_cpu_update_tb_offset(cpu
);
190 rtas_st(rets
, 0, RTAS_OUT_SUCCESS
);
194 /* Didn't find a matching cpu */
195 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
198 static void rtas_stop_self(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
199 uint32_t token
, uint32_t nargs
,
201 uint32_t nret
, target_ulong rets
)
203 CPUState
*cs
= CPU(cpu
);
204 CPUPPCState
*env
= &cpu
->env
;
205 PowerPCCPUClass
*pcc
= POWERPC_CPU_GET_CLASS(cpu
);
210 /* Disable Power-saving mode Exit Cause exceptions for the CPU.
211 * This could deliver an interrupt on a dying CPU and crash the
213 env
->spr
[SPR_LPCR
] &= ~pcc
->lpcr_pm
;
216 static inline int sysparm_st(target_ulong addr
, target_ulong len
,
217 const void *val
, uint16_t vallen
)
219 hwaddr phys
= ppc64_phys_to_real(addr
);
222 return RTAS_OUT_SYSPARM_PARAM_ERROR
;
224 stw_be_phys(&address_space_memory
, phys
, vallen
);
225 cpu_physical_memory_write(phys
+ 2, val
, MIN(len
- 2, vallen
));
226 return RTAS_OUT_SUCCESS
;
229 static void rtas_ibm_get_system_parameter(PowerPCCPU
*cpu
,
230 sPAPRMachineState
*spapr
,
231 uint32_t token
, uint32_t nargs
,
233 uint32_t nret
, target_ulong rets
)
235 target_ulong parameter
= rtas_ld(args
, 0);
236 target_ulong buffer
= rtas_ld(args
, 1);
237 target_ulong length
= rtas_ld(args
, 2);
241 case RTAS_SYSPARM_SPLPAR_CHARACTERISTICS
: {
242 char *param_val
= g_strdup_printf("MaxEntCap=%d,"
247 current_machine
->ram_size
/ M_BYTE
,
250 ret
= sysparm_st(buffer
, length
, param_val
, strlen(param_val
) + 1);
254 case RTAS_SYSPARM_DIAGNOSTICS_RUN_MODE
: {
255 uint8_t param_val
= DIAGNOSTICS_RUN_MODE_DISABLED
;
257 ret
= sysparm_st(buffer
, length
, ¶m_val
, sizeof(param_val
));
260 case RTAS_SYSPARM_UUID
:
261 ret
= sysparm_st(buffer
, length
, (unsigned char *)&qemu_uuid
,
262 (qemu_uuid_set
? 16 : 0));
265 ret
= RTAS_OUT_NOT_SUPPORTED
;
268 rtas_st(rets
, 0, ret
);
271 static void rtas_ibm_set_system_parameter(PowerPCCPU
*cpu
,
272 sPAPRMachineState
*spapr
,
273 uint32_t token
, uint32_t nargs
,
275 uint32_t nret
, target_ulong rets
)
277 target_ulong parameter
= rtas_ld(args
, 0);
278 target_ulong ret
= RTAS_OUT_NOT_SUPPORTED
;
281 case RTAS_SYSPARM_SPLPAR_CHARACTERISTICS
:
282 case RTAS_SYSPARM_DIAGNOSTICS_RUN_MODE
:
283 case RTAS_SYSPARM_UUID
:
284 ret
= RTAS_OUT_NOT_AUTHORIZED
;
288 rtas_st(rets
, 0, ret
);
291 static void rtas_ibm_os_term(PowerPCCPU
*cpu
,
292 sPAPRMachineState
*spapr
,
293 uint32_t token
, uint32_t nargs
,
295 uint32_t nret
, target_ulong rets
)
297 qemu_system_guest_panicked(NULL
);
299 rtas_st(rets
, 0, RTAS_OUT_SUCCESS
);
302 static void rtas_set_power_level(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
303 uint32_t token
, uint32_t nargs
,
304 target_ulong args
, uint32_t nret
,
307 int32_t power_domain
;
309 if (nargs
!= 2 || nret
!= 2) {
310 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
314 /* we currently only use a single, "live insert" powerdomain for
315 * hotplugged/dlpar'd resources, so the power is always live/full (100)
317 power_domain
= rtas_ld(args
, 0);
318 if (power_domain
!= -1) {
319 rtas_st(rets
, 0, RTAS_OUT_NOT_SUPPORTED
);
323 rtas_st(rets
, 0, RTAS_OUT_SUCCESS
);
324 rtas_st(rets
, 1, 100);
327 static void rtas_get_power_level(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
328 uint32_t token
, uint32_t nargs
,
329 target_ulong args
, uint32_t nret
,
332 int32_t power_domain
;
334 if (nargs
!= 1 || nret
!= 2) {
335 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
339 /* we currently only use a single, "live insert" powerdomain for
340 * hotplugged/dlpar'd resources, so the power is always live/full (100)
342 power_domain
= rtas_ld(args
, 0);
343 if (power_domain
!= -1) {
344 rtas_st(rets
, 0, RTAS_OUT_NOT_SUPPORTED
);
348 rtas_st(rets
, 0, RTAS_OUT_SUCCESS
);
349 rtas_st(rets
, 1, 100);
352 static struct rtas_call
{
355 } rtas_table
[RTAS_TOKEN_MAX
- RTAS_TOKEN_BASE
];
357 target_ulong
spapr_rtas_call(PowerPCCPU
*cpu
, sPAPRMachineState
*spapr
,
358 uint32_t token
, uint32_t nargs
, target_ulong args
,
359 uint32_t nret
, target_ulong rets
)
361 if ((token
>= RTAS_TOKEN_BASE
) && (token
< RTAS_TOKEN_MAX
)) {
362 struct rtas_call
*call
= rtas_table
+ (token
- RTAS_TOKEN_BASE
);
365 call
->fn(cpu
, spapr
, token
, nargs
, args
, nret
, rets
);
370 /* HACK: Some Linux early debug code uses RTAS display-character,
371 * but assumes the token value is 0xa (which it is on some real
372 * machines) without looking it up in the device tree. This
373 * special case makes this work */
375 rtas_display_character(cpu
, spapr
, 0xa, nargs
, args
, nret
, rets
);
379 hcall_dprintf("Unknown RTAS token 0x%x\n", token
);
380 rtas_st(rets
, 0, RTAS_OUT_PARAM_ERROR
);
384 uint64_t qtest_rtas_call(char *cmd
, uint32_t nargs
, uint64_t args
,
385 uint32_t nret
, uint64_t rets
)
389 for (token
= 0; token
< RTAS_TOKEN_MAX
- RTAS_TOKEN_BASE
; token
++) {
390 if (strcmp(cmd
, rtas_table
[token
].name
) == 0) {
391 sPAPRMachineState
*spapr
= SPAPR_MACHINE(qdev_get_machine());
392 PowerPCCPU
*cpu
= POWERPC_CPU(first_cpu
);
394 rtas_table
[token
].fn(cpu
, spapr
, token
+ RTAS_TOKEN_BASE
,
395 nargs
, args
, nret
, rets
);
402 void spapr_rtas_register(int token
, const char *name
, spapr_rtas_fn fn
)
404 assert((token
>= RTAS_TOKEN_BASE
) && (token
< RTAS_TOKEN_MAX
));
406 token
-= RTAS_TOKEN_BASE
;
408 assert(!rtas_table
[token
].name
);
410 rtas_table
[token
].name
= name
;
411 rtas_table
[token
].fn
= fn
;
414 void spapr_dt_rtas_tokens(void *fdt
, int rtas
)
418 for (i
= 0; i
< RTAS_TOKEN_MAX
- RTAS_TOKEN_BASE
; i
++) {
419 struct rtas_call
*call
= &rtas_table
[i
];
425 _FDT(fdt_setprop_cell(fdt
, rtas
, call
->name
, i
+ RTAS_TOKEN_BASE
));
429 void spapr_load_rtas(sPAPRMachineState
*spapr
, void *fdt
, hwaddr addr
)
434 /* Copy RTAS blob into guest RAM */
435 cpu_physical_memory_write(addr
, spapr
->rtas_blob
, spapr
->rtas_size
);
437 ret
= fdt_add_mem_rsv(fdt
, addr
, spapr
->rtas_size
);
439 error_report("Couldn't add RTAS reserve entry: %s",
444 /* Update the device tree with the blob's location */
445 rtas_node
= fdt_path_offset(fdt
, "/rtas");
446 assert(rtas_node
>= 0);
448 ret
= fdt_setprop_cell(fdt
, rtas_node
, "linux,rtas-base", addr
);
450 error_report("Couldn't add linux,rtas-base property: %s",
455 ret
= fdt_setprop_cell(fdt
, rtas_node
, "linux,rtas-entry", addr
);
457 error_report("Couldn't add linux,rtas-entry property: %s",
462 ret
= fdt_setprop_cell(fdt
, rtas_node
, "rtas-size", spapr
->rtas_size
);
464 error_report("Couldn't add rtas-size property: %s",
470 static void core_rtas_register_types(void)
472 spapr_rtas_register(RTAS_DISPLAY_CHARACTER
, "display-character",
473 rtas_display_character
);
474 spapr_rtas_register(RTAS_POWER_OFF
, "power-off", rtas_power_off
);
475 spapr_rtas_register(RTAS_SYSTEM_REBOOT
, "system-reboot",
477 spapr_rtas_register(RTAS_QUERY_CPU_STOPPED_STATE
, "query-cpu-stopped-state",
478 rtas_query_cpu_stopped_state
);
479 spapr_rtas_register(RTAS_START_CPU
, "start-cpu", rtas_start_cpu
);
480 spapr_rtas_register(RTAS_STOP_SELF
, "stop-self", rtas_stop_self
);
481 spapr_rtas_register(RTAS_IBM_GET_SYSTEM_PARAMETER
,
482 "ibm,get-system-parameter",
483 rtas_ibm_get_system_parameter
);
484 spapr_rtas_register(RTAS_IBM_SET_SYSTEM_PARAMETER
,
485 "ibm,set-system-parameter",
486 rtas_ibm_set_system_parameter
);
487 spapr_rtas_register(RTAS_IBM_OS_TERM
, "ibm,os-term",
489 spapr_rtas_register(RTAS_SET_POWER_LEVEL
, "set-power-level",
490 rtas_set_power_level
);
491 spapr_rtas_register(RTAS_GET_POWER_LEVEL
, "get-power-level",
492 rtas_get_power_level
);
495 type_init(core_rtas_register_types
)