2 * Intel Multiprocessor Specification 1.1 and 1.4
3 * compliant MP-table parsing routines.
5 * (c) 1995 Alan Cox, Building #3 <alan@redhat.com>
6 * (c) 1998, 1999, 2000 Ingo Molnar <mingo@redhat.com>
9 * Erich Boleyn : MP v1.4 and additional changes.
10 * Alan Cox : Added EBDA scanning
11 * Ingo Molnar : various cleanups and rewrites
12 * Maciej W. Rozycki: Bits for default MP configurations
13 * Paul Diefenbaugh: Added full ACPI support
17 #include <linux/init.h>
18 #include <linux/acpi.h>
19 #include <linux/delay.h>
20 #include <linux/bootmem.h>
21 #include <linux/smp_lock.h>
22 #include <linux/kernel_stat.h>
23 #include <linux/mc146818rtc.h>
24 #include <linux/bitops.h>
29 #include <asm/mpspec.h>
30 #include <asm/io_apic.h>
32 #include <mach_apic.h>
33 #include <mach_apicdef.h>
34 #include <mach_mpparse.h>
35 #include <bios_ebda.h>
37 /* Have we found an MP table */
39 unsigned int __initdata maxcpus
= NR_CPUS
;
42 * Various Linux-internal data structures created from the
45 int apic_version
[MAX_APICS
];
46 int mp_bus_id_to_type
[MAX_MP_BUSSES
];
47 int mp_bus_id_to_node
[MAX_MP_BUSSES
];
48 int mp_bus_id_to_local
[MAX_MP_BUSSES
];
49 int quad_local_to_mp_bus_id
[NR_CPUS
/4][4];
50 int mp_bus_id_to_pci_bus
[MAX_MP_BUSSES
] = { [0 ... MAX_MP_BUSSES
-1] = -1 };
51 static int mp_current_pci_id
;
53 /* I/O APIC entries */
54 struct mpc_config_ioapic mp_ioapics
[MAX_IO_APICS
];
56 /* # of MP IRQ source entries */
57 struct mpc_config_intsrc mp_irqs
[MAX_IRQ_SOURCES
];
59 /* MP IRQ source entries */
65 unsigned long mp_lapic_addr
;
67 unsigned int def_to_bigsmp
= 0;
69 /* Processor that is doing the boot up */
70 unsigned int boot_cpu_physical_apicid
= -1U;
71 /* Internal processor count */
72 unsigned int __cpuinitdata num_processors
;
74 /* Bitmask of physically existing CPUs */
75 physid_mask_t phys_cpu_present_map
;
77 u8 bios_cpu_apicid
[NR_CPUS
] = { [0 ... NR_CPUS
-1] = BAD_APICID
};
80 * Intel MP BIOS table parsing routines:
85 * Checksum an MP configuration block.
88 static int __init
mpf_checksum(unsigned char *mp
, int len
)
99 * Have to match translation table entries to main table entries by counter
100 * hence the mpc_record variable .... can't see a less disgusting way of
104 static int mpc_record
;
105 static struct mpc_config_translation
*translation_table
[MAX_MPC_ENTRY
] __initdata
;
107 static void __devinit
MP_processor_info (struct mpc_config_processor
*m
)
110 physid_mask_t phys_cpu
;
112 if (!(m
->mpc_cpuflag
& CPU_ENABLED
))
115 apicid
= mpc_apic_id(m
, translation_table
[mpc_record
]);
117 if (m
->mpc_featureflag
&(1<<0))
118 Dprintk(" Floating point unit present.\n");
119 if (m
->mpc_featureflag
&(1<<7))
120 Dprintk(" Machine Exception supported.\n");
121 if (m
->mpc_featureflag
&(1<<8))
122 Dprintk(" 64 bit compare & exchange supported.\n");
123 if (m
->mpc_featureflag
&(1<<9))
124 Dprintk(" Internal APIC present.\n");
125 if (m
->mpc_featureflag
&(1<<11))
126 Dprintk(" SEP present.\n");
127 if (m
->mpc_featureflag
&(1<<12))
128 Dprintk(" MTRR present.\n");
129 if (m
->mpc_featureflag
&(1<<13))
130 Dprintk(" PGE present.\n");
131 if (m
->mpc_featureflag
&(1<<14))
132 Dprintk(" MCA present.\n");
133 if (m
->mpc_featureflag
&(1<<15))
134 Dprintk(" CMOV present.\n");
135 if (m
->mpc_featureflag
&(1<<16))
136 Dprintk(" PAT present.\n");
137 if (m
->mpc_featureflag
&(1<<17))
138 Dprintk(" PSE present.\n");
139 if (m
->mpc_featureflag
&(1<<18))
140 Dprintk(" PSN present.\n");
141 if (m
->mpc_featureflag
&(1<<19))
142 Dprintk(" Cache Line Flush Instruction present.\n");
144 if (m
->mpc_featureflag
&(1<<21))
145 Dprintk(" Debug Trace and EMON Store present.\n");
146 if (m
->mpc_featureflag
&(1<<22))
147 Dprintk(" ACPI Thermal Throttle Registers present.\n");
148 if (m
->mpc_featureflag
&(1<<23))
149 Dprintk(" MMX present.\n");
150 if (m
->mpc_featureflag
&(1<<24))
151 Dprintk(" FXSR present.\n");
152 if (m
->mpc_featureflag
&(1<<25))
153 Dprintk(" XMM present.\n");
154 if (m
->mpc_featureflag
&(1<<26))
155 Dprintk(" Willamette New Instructions present.\n");
156 if (m
->mpc_featureflag
&(1<<27))
157 Dprintk(" Self Snoop present.\n");
158 if (m
->mpc_featureflag
&(1<<28))
159 Dprintk(" HT present.\n");
160 if (m
->mpc_featureflag
&(1<<29))
161 Dprintk(" Thermal Monitor present.\n");
162 /* 30, 31 Reserved */
165 if (m
->mpc_cpuflag
& CPU_BOOTPROCESSOR
) {
166 Dprintk(" Bootup CPU\n");
167 boot_cpu_physical_apicid
= m
->mpc_apicid
;
170 ver
= m
->mpc_apicver
;
176 printk(KERN_WARNING
"BIOS bug, APIC version is 0 for CPU#%d! "
177 "fixing up to 0x10. (tell your hw vendor)\n",
181 apic_version
[m
->mpc_apicid
] = ver
;
183 phys_cpu
= apicid_to_cpu_present(apicid
);
184 physids_or(phys_cpu_present_map
, phys_cpu_present_map
, phys_cpu
);
186 if (num_processors
>= NR_CPUS
) {
187 printk(KERN_WARNING
"WARNING: NR_CPUS limit of %i reached."
188 " Processor ignored.\n", NR_CPUS
);
192 if (num_processors
>= maxcpus
) {
193 printk(KERN_WARNING
"WARNING: maxcpus limit of %i reached."
194 " Processor ignored.\n", maxcpus
);
198 cpu_set(num_processors
, cpu_possible_map
);
202 * Would be preferable to switch to bigsmp when CONFIG_HOTPLUG_CPU=y
203 * but we need to work other dependencies like SMP_SUSPEND etc
204 * before this can be done without some confusion.
205 * if (CPU_HOTPLUG_ENABLED || num_processors > 8)
206 * - Ashok Raj <ashok.raj@intel.com>
208 if (num_processors
> 8) {
209 switch (boot_cpu_data
.x86_vendor
) {
210 case X86_VENDOR_INTEL
:
211 if (!APIC_XAPIC(ver
)) {
215 /* If P4 and above fall through */
220 bios_cpu_apicid
[num_processors
- 1] = m
->mpc_apicid
;
223 static void __init
MP_bus_info (struct mpc_config_bus
*m
)
227 memcpy(str
, m
->mpc_bustype
, 6);
230 mpc_oem_bus_info(m
, str
, translation_table
[mpc_record
]);
232 #if MAX_MP_BUSSES < 256
233 if (m
->mpc_busid
>= MAX_MP_BUSSES
) {
234 printk(KERN_WARNING
"MP table busid value (%d) for bustype %s "
235 " is too large, max. supported is %d\n",
236 m
->mpc_busid
, str
, MAX_MP_BUSSES
- 1);
241 if (strncmp(str
, BUSTYPE_ISA
, sizeof(BUSTYPE_ISA
)-1) == 0) {
242 mp_bus_id_to_type
[m
->mpc_busid
] = MP_BUS_ISA
;
243 } else if (strncmp(str
, BUSTYPE_EISA
, sizeof(BUSTYPE_EISA
)-1) == 0) {
244 mp_bus_id_to_type
[m
->mpc_busid
] = MP_BUS_EISA
;
245 } else if (strncmp(str
, BUSTYPE_PCI
, sizeof(BUSTYPE_PCI
)-1) == 0) {
246 mpc_oem_pci_bus(m
, translation_table
[mpc_record
]);
247 mp_bus_id_to_type
[m
->mpc_busid
] = MP_BUS_PCI
;
248 mp_bus_id_to_pci_bus
[m
->mpc_busid
] = mp_current_pci_id
;
250 } else if (strncmp(str
, BUSTYPE_MCA
, sizeof(BUSTYPE_MCA
)-1) == 0) {
251 mp_bus_id_to_type
[m
->mpc_busid
] = MP_BUS_MCA
;
252 } else if (strncmp(str
, BUSTYPE_NEC98
, sizeof(BUSTYPE_NEC98
)-1) == 0) {
253 mp_bus_id_to_type
[m
->mpc_busid
] = MP_BUS_NEC98
;
255 printk(KERN_WARNING
"Unknown bustype %s - ignoring\n", str
);
259 static void __init
MP_ioapic_info (struct mpc_config_ioapic
*m
)
261 if (!(m
->mpc_flags
& MPC_APIC_USABLE
))
264 printk(KERN_INFO
"I/O APIC #%d Version %d at 0x%lX.\n",
265 m
->mpc_apicid
, m
->mpc_apicver
, m
->mpc_apicaddr
);
266 if (nr_ioapics
>= MAX_IO_APICS
) {
267 printk(KERN_CRIT
"Max # of I/O APICs (%d) exceeded (found %d).\n",
268 MAX_IO_APICS
, nr_ioapics
);
269 panic("Recompile kernel with bigger MAX_IO_APICS!.\n");
271 if (!m
->mpc_apicaddr
) {
272 printk(KERN_ERR
"WARNING: bogus zero I/O APIC address"
273 " found in MP table, skipping!\n");
276 mp_ioapics
[nr_ioapics
] = *m
;
280 static void __init
MP_intsrc_info (struct mpc_config_intsrc
*m
)
282 mp_irqs
[mp_irq_entries
] = *m
;
283 Dprintk("Int: type %d, pol %d, trig %d, bus %d,"
284 " IRQ %02x, APIC ID %x, APIC INT %02x\n",
285 m
->mpc_irqtype
, m
->mpc_irqflag
& 3,
286 (m
->mpc_irqflag
>> 2) & 3, m
->mpc_srcbus
,
287 m
->mpc_srcbusirq
, m
->mpc_dstapic
, m
->mpc_dstirq
);
288 if (++mp_irq_entries
== MAX_IRQ_SOURCES
)
289 panic("Max # of irq sources exceeded!!\n");
292 static void __init
MP_lintsrc_info (struct mpc_config_lintsrc
*m
)
294 Dprintk("Lint: type %d, pol %d, trig %d, bus %d,"
295 " IRQ %02x, APIC ID %x, APIC LINT %02x\n",
296 m
->mpc_irqtype
, m
->mpc_irqflag
& 3,
297 (m
->mpc_irqflag
>> 2) &3, m
->mpc_srcbusid
,
298 m
->mpc_srcbusirq
, m
->mpc_destapic
, m
->mpc_destapiclint
);
301 #ifdef CONFIG_X86_NUMAQ
302 static void __init
MP_translation_info (struct mpc_config_translation
*m
)
304 printk(KERN_INFO
"Translation: record %d, type %d, quad %d, global %d, local %d\n", mpc_record
, m
->trans_type
, m
->trans_quad
, m
->trans_global
, m
->trans_local
);
306 if (mpc_record
>= MAX_MPC_ENTRY
)
307 printk(KERN_ERR
"MAX_MPC_ENTRY exceeded!\n");
309 translation_table
[mpc_record
] = m
; /* stash this for later */
310 if (m
->trans_quad
< MAX_NUMNODES
&& !node_online(m
->trans_quad
))
311 node_set_online(m
->trans_quad
);
315 * Read/parse the MPC oem tables
318 static void __init
smp_read_mpc_oem(struct mp_config_oemtable
*oemtable
, \
319 unsigned short oemsize
)
321 int count
= sizeof (*oemtable
); /* the header size */
322 unsigned char *oemptr
= ((unsigned char *)oemtable
)+count
;
325 printk(KERN_INFO
"Found an OEM MPC table at %8p - parsing it ... \n", oemtable
);
326 if (memcmp(oemtable
->oem_signature
,MPC_OEM_SIGNATURE
,4))
328 printk(KERN_WARNING
"SMP mpc oemtable: bad signature [%c%c%c%c]!\n",
329 oemtable
->oem_signature
[0],
330 oemtable
->oem_signature
[1],
331 oemtable
->oem_signature
[2],
332 oemtable
->oem_signature
[3]);
335 if (mpf_checksum((unsigned char *)oemtable
,oemtable
->oem_length
))
337 printk(KERN_WARNING
"SMP oem mptable: checksum error!\n");
340 while (count
< oemtable
->oem_length
) {
344 struct mpc_config_translation
*m
=
345 (struct mpc_config_translation
*)oemptr
;
346 MP_translation_info(m
);
347 oemptr
+= sizeof(*m
);
354 printk(KERN_WARNING
"Unrecognised OEM table entry type! - %d\n", (int) *oemptr
);
361 static inline void mps_oem_check(struct mp_config_table
*mpc
, char *oem
,
364 if (strncmp(oem
, "IBM NUMA", 8))
365 printk("Warning! May not be a NUMA-Q system!\n");
367 smp_read_mpc_oem((struct mp_config_oemtable
*) mpc
->mpc_oemptr
,
370 #endif /* CONFIG_X86_NUMAQ */
376 static int __init
smp_read_mpc(struct mp_config_table
*mpc
)
380 int count
=sizeof(*mpc
);
381 unsigned char *mpt
=((unsigned char *)mpc
)+count
;
383 if (memcmp(mpc
->mpc_signature
,MPC_SIGNATURE
,4)) {
384 printk(KERN_ERR
"SMP mptable: bad signature [0x%x]!\n",
385 *(u32
*)mpc
->mpc_signature
);
388 if (mpf_checksum((unsigned char *)mpc
,mpc
->mpc_length
)) {
389 printk(KERN_ERR
"SMP mptable: checksum error!\n");
392 if (mpc
->mpc_spec
!=0x01 && mpc
->mpc_spec
!=0x04) {
393 printk(KERN_ERR
"SMP mptable: bad table version (%d)!!\n",
397 if (!mpc
->mpc_lapic
) {
398 printk(KERN_ERR
"SMP mptable: null local APIC address!\n");
401 memcpy(oem
,mpc
->mpc_oem
,8);
403 printk(KERN_INFO
"OEM ID: %s ",oem
);
405 memcpy(str
,mpc
->mpc_productid
,12);
407 printk("Product ID: %s ",str
);
409 mps_oem_check(mpc
, oem
, str
);
411 printk("APIC at: 0x%lX\n",mpc
->mpc_lapic
);
414 * Save the local APIC address (it might be non-default) -- but only
415 * if we're not using ACPI.
418 mp_lapic_addr
= mpc
->mpc_lapic
;
421 * Now process the configuration blocks.
424 while (count
< mpc
->mpc_length
) {
428 struct mpc_config_processor
*m
=
429 (struct mpc_config_processor
*)mpt
;
430 /* ACPI may have already provided this data */
432 MP_processor_info(m
);
439 struct mpc_config_bus
*m
=
440 (struct mpc_config_bus
*)mpt
;
448 struct mpc_config_ioapic
*m
=
449 (struct mpc_config_ioapic
*)mpt
;
457 struct mpc_config_intsrc
*m
=
458 (struct mpc_config_intsrc
*)mpt
;
467 struct mpc_config_lintsrc
*m
=
468 (struct mpc_config_lintsrc
*)mpt
;
476 count
= mpc
->mpc_length
;
482 clustered_apic_check();
484 printk(KERN_ERR
"SMP mptable: no processors registered!\n");
485 return num_processors
;
488 static int __init
ELCR_trigger(unsigned int irq
)
492 port
= 0x4d0 + (irq
>> 3);
493 return (inb(port
) >> (irq
& 7)) & 1;
496 static void __init
construct_default_ioirq_mptable(int mpc_default_type
)
498 struct mpc_config_intsrc intsrc
;
500 int ELCR_fallback
= 0;
502 intsrc
.mpc_type
= MP_INTSRC
;
503 intsrc
.mpc_irqflag
= 0; /* conforming */
504 intsrc
.mpc_srcbus
= 0;
505 intsrc
.mpc_dstapic
= mp_ioapics
[0].mpc_apicid
;
507 intsrc
.mpc_irqtype
= mp_INT
;
510 * If true, we have an ISA/PCI system with no IRQ entries
511 * in the MP table. To prevent the PCI interrupts from being set up
512 * incorrectly, we try to use the ELCR. The sanity check to see if
513 * there is good ELCR data is very simple - IRQ0, 1, 2 and 13 can
514 * never be level sensitive, so we simply see if the ELCR agrees.
515 * If it does, we assume it's valid.
517 if (mpc_default_type
== 5) {
518 printk(KERN_INFO
"ISA/PCI bus type with no IRQ information... falling back to ELCR\n");
520 if (ELCR_trigger(0) || ELCR_trigger(1) || ELCR_trigger(2) || ELCR_trigger(13))
521 printk(KERN_WARNING
"ELCR contains invalid data... not using ELCR\n");
523 printk(KERN_INFO
"Using ELCR to identify PCI interrupts\n");
528 for (i
= 0; i
< 16; i
++) {
529 switch (mpc_default_type
) {
531 if (i
== 0 || i
== 13)
532 continue; /* IRQ0 & IRQ13 not connected */
536 continue; /* IRQ2 is never connected */
541 * If the ELCR indicates a level-sensitive interrupt, we
542 * copy that information over to the MP table in the
543 * irqflag field (level sensitive, active high polarity).
546 intsrc
.mpc_irqflag
= 13;
548 intsrc
.mpc_irqflag
= 0;
551 intsrc
.mpc_srcbusirq
= i
;
552 intsrc
.mpc_dstirq
= i
? i
: 2; /* IRQ0 to INTIN2 */
553 MP_intsrc_info(&intsrc
);
556 intsrc
.mpc_irqtype
= mp_ExtINT
;
557 intsrc
.mpc_srcbusirq
= 0;
558 intsrc
.mpc_dstirq
= 0; /* 8259A to INTIN0 */
559 MP_intsrc_info(&intsrc
);
562 static inline void __init
construct_default_ISA_mptable(int mpc_default_type
)
564 struct mpc_config_processor processor
;
565 struct mpc_config_bus bus
;
566 struct mpc_config_ioapic ioapic
;
567 struct mpc_config_lintsrc lintsrc
;
568 int linttypes
[2] = { mp_ExtINT
, mp_NMI
};
572 * local APIC has default address
574 mp_lapic_addr
= APIC_DEFAULT_PHYS_BASE
;
577 * 2 CPUs, numbered 0 & 1.
579 processor
.mpc_type
= MP_PROCESSOR
;
580 /* Either an integrated APIC or a discrete 82489DX. */
581 processor
.mpc_apicver
= mpc_default_type
> 4 ? 0x10 : 0x01;
582 processor
.mpc_cpuflag
= CPU_ENABLED
;
583 processor
.mpc_cpufeature
= (boot_cpu_data
.x86
<< 8) |
584 (boot_cpu_data
.x86_model
<< 4) |
585 boot_cpu_data
.x86_mask
;
586 processor
.mpc_featureflag
= boot_cpu_data
.x86_capability
[0];
587 processor
.mpc_reserved
[0] = 0;
588 processor
.mpc_reserved
[1] = 0;
589 for (i
= 0; i
< 2; i
++) {
590 processor
.mpc_apicid
= i
;
591 MP_processor_info(&processor
);
594 bus
.mpc_type
= MP_BUS
;
596 switch (mpc_default_type
) {
599 printk(KERN_ERR
"Unknown standard configuration %d\n",
604 memcpy(bus
.mpc_bustype
, "ISA ", 6);
609 memcpy(bus
.mpc_bustype
, "EISA ", 6);
613 memcpy(bus
.mpc_bustype
, "MCA ", 6);
616 if (mpc_default_type
> 4) {
618 memcpy(bus
.mpc_bustype
, "PCI ", 6);
622 ioapic
.mpc_type
= MP_IOAPIC
;
623 ioapic
.mpc_apicid
= 2;
624 ioapic
.mpc_apicver
= mpc_default_type
> 4 ? 0x10 : 0x01;
625 ioapic
.mpc_flags
= MPC_APIC_USABLE
;
626 ioapic
.mpc_apicaddr
= 0xFEC00000;
627 MP_ioapic_info(&ioapic
);
630 * We set up most of the low 16 IO-APIC pins according to MPS rules.
632 construct_default_ioirq_mptable(mpc_default_type
);
634 lintsrc
.mpc_type
= MP_LINTSRC
;
635 lintsrc
.mpc_irqflag
= 0; /* conforming */
636 lintsrc
.mpc_srcbusid
= 0;
637 lintsrc
.mpc_srcbusirq
= 0;
638 lintsrc
.mpc_destapic
= MP_APIC_ALL
;
639 for (i
= 0; i
< 2; i
++) {
640 lintsrc
.mpc_irqtype
= linttypes
[i
];
641 lintsrc
.mpc_destapiclint
= i
;
642 MP_lintsrc_info(&lintsrc
);
646 static struct intel_mp_floating
*mpf_found
;
649 * Scan the memory blocks for an SMP configuration block.
651 void __init
get_smp_config (void)
653 struct intel_mp_floating
*mpf
= mpf_found
;
656 * ACPI supports both logical (e.g. Hyper-Threading) and physical
657 * processors, where MPS only supports physical.
659 if (acpi_lapic
&& acpi_ioapic
) {
660 printk(KERN_INFO
"Using ACPI (MADT) for SMP configuration information\n");
664 printk(KERN_INFO
"Using ACPI for processor (LAPIC) configuration information\n");
666 printk(KERN_INFO
"Intel MultiProcessor Specification v1.%d\n", mpf
->mpf_specification
);
667 if (mpf
->mpf_feature2
& (1<<7)) {
668 printk(KERN_INFO
" IMCR and PIC compatibility mode.\n");
671 printk(KERN_INFO
" Virtual Wire compatibility mode.\n");
676 * Now see if we need to read further.
678 if (mpf
->mpf_feature1
!= 0) {
680 printk(KERN_INFO
"Default MP configuration #%d\n", mpf
->mpf_feature1
);
681 construct_default_ISA_mptable(mpf
->mpf_feature1
);
683 } else if (mpf
->mpf_physptr
) {
686 * Read the physical hardware table. Anything here will
687 * override the defaults.
689 if (!smp_read_mpc(phys_to_virt(mpf
->mpf_physptr
))) {
690 smp_found_config
= 0;
691 printk(KERN_ERR
"BIOS bug, MP table errors detected!...\n");
692 printk(KERN_ERR
"... disabling SMP support. (tell your hw vendor)\n");
696 * If there are no explicit MP IRQ entries, then we are
697 * broken. We set up most of the low 16 IO-APIC pins to
698 * ISA defaults and hope it will work.
700 if (!mp_irq_entries
) {
701 struct mpc_config_bus bus
;
703 printk(KERN_ERR
"BIOS bug, no explicit IRQ entries, using default mptable. (tell your hw vendor)\n");
705 bus
.mpc_type
= MP_BUS
;
707 memcpy(bus
.mpc_bustype
, "ISA ", 6);
710 construct_default_ioirq_mptable(0);
716 printk(KERN_INFO
"Processors: %d\n", num_processors
);
718 * Only use the first configuration found.
722 static int __init
smp_scan_config (unsigned long base
, unsigned long length
)
724 unsigned long *bp
= phys_to_virt(base
);
725 struct intel_mp_floating
*mpf
;
727 Dprintk("Scan SMP from %p for %ld bytes.\n", bp
,length
);
728 if (sizeof(*mpf
) != 16)
729 printk("Error: MPF size\n");
732 mpf
= (struct intel_mp_floating
*)bp
;
733 if ((*bp
== SMP_MAGIC_IDENT
) &&
734 (mpf
->mpf_length
== 1) &&
735 !mpf_checksum((unsigned char *)bp
, 16) &&
736 ((mpf
->mpf_specification
== 1)
737 || (mpf
->mpf_specification
== 4)) ) {
739 smp_found_config
= 1;
740 printk(KERN_INFO
"found SMP MP-table at %08lx\n",
742 reserve_bootmem(virt_to_phys(mpf
), PAGE_SIZE
);
743 if (mpf
->mpf_physptr
) {
745 * We cannot access to MPC table to compute
746 * table size yet, as only few megabytes from
747 * the bottom is mapped now.
748 * PC-9800's MPC table places on the very last
749 * of physical memory; so that simply reserving
750 * PAGE_SIZE from mpg->mpf_physptr yields BUG()
751 * in reserve_bootmem.
753 unsigned long size
= PAGE_SIZE
;
754 unsigned long end
= max_low_pfn
* PAGE_SIZE
;
755 if (mpf
->mpf_physptr
+ size
> end
)
756 size
= end
- mpf
->mpf_physptr
;
757 reserve_bootmem(mpf
->mpf_physptr
, size
);
769 void __init
find_smp_config (void)
771 unsigned int address
;
774 * FIXME: Linux assumes you have 640K of base ram..
775 * this continues the error...
777 * 1) Scan the bottom 1K for a signature
778 * 2) Scan the top 1K of base RAM
779 * 3) Scan the 64K of bios
781 if (smp_scan_config(0x0,0x400) ||
782 smp_scan_config(639*0x400,0x400) ||
783 smp_scan_config(0xF0000,0x10000))
786 * If it is an SMP machine we should know now, unless the
787 * configuration is in an EISA/MCA bus machine with an
788 * extended bios data area.
790 * there is a real-mode segmented pointer pointing to the
791 * 4K EBDA area at 0x40E, calculate and scan it here.
793 * NOTE! There are Linux loaders that will corrupt the EBDA
794 * area, and as such this kind of SMP config may be less
795 * trustworthy, simply because the SMP table may have been
796 * stomped on during early boot. These loaders are buggy and
799 * MP1.4 SPEC states to only scan first 1K of 4K EBDA.
802 address
= get_bios_ebda();
804 smp_scan_config(address
, 0x400);
809 /* --------------------------------------------------------------------------
810 ACPI-based MP Configuration
811 -------------------------------------------------------------------------- */
815 void __init
mp_register_lapic_address(u64 address
)
817 mp_lapic_addr
= (unsigned long) address
;
819 set_fixmap_nocache(FIX_APIC_BASE
, mp_lapic_addr
);
821 if (boot_cpu_physical_apicid
== -1U)
822 boot_cpu_physical_apicid
= GET_APIC_ID(apic_read(APIC_ID
));
824 Dprintk("Boot CPU = %d\n", boot_cpu_physical_apicid
);
827 void __devinit
mp_register_lapic (u8 id
, u8 enabled
)
829 struct mpc_config_processor processor
;
832 if (MAX_APICS
- id
<= 0) {
833 printk(KERN_WARNING
"Processor #%d invalid (max %d)\n",
838 if (id
== boot_cpu_physical_apicid
)
841 processor
.mpc_type
= MP_PROCESSOR
;
842 processor
.mpc_apicid
= id
;
843 processor
.mpc_apicver
= GET_APIC_VERSION(apic_read(APIC_LVR
));
844 processor
.mpc_cpuflag
= (enabled
? CPU_ENABLED
: 0);
845 processor
.mpc_cpuflag
|= (boot_cpu
? CPU_BOOTPROCESSOR
: 0);
846 processor
.mpc_cpufeature
= (boot_cpu_data
.x86
<< 8) |
847 (boot_cpu_data
.x86_model
<< 4) | boot_cpu_data
.x86_mask
;
848 processor
.mpc_featureflag
= boot_cpu_data
.x86_capability
[0];
849 processor
.mpc_reserved
[0] = 0;
850 processor
.mpc_reserved
[1] = 0;
852 MP_processor_info(&processor
);
855 #ifdef CONFIG_X86_IO_APIC
858 #define MP_MAX_IOAPIC_PIN 127
860 static struct mp_ioapic_routing
{
864 u32 pin_programmed
[4];
865 } mp_ioapic_routing
[MAX_IO_APICS
];
867 static int mp_find_ioapic (int gsi
)
871 /* Find the IOAPIC that manages this GSI. */
872 for (i
= 0; i
< nr_ioapics
; i
++) {
873 if ((gsi
>= mp_ioapic_routing
[i
].gsi_base
)
874 && (gsi
<= mp_ioapic_routing
[i
].gsi_end
))
878 printk(KERN_ERR
"ERROR: Unable to locate IOAPIC for GSI %d\n", gsi
);
883 void __init
mp_register_ioapic(u8 id
, u32 address
, u32 gsi_base
)
888 if (nr_ioapics
>= MAX_IO_APICS
) {
889 printk(KERN_ERR
"ERROR: Max # of I/O APICs (%d) exceeded "
890 "(found %d)\n", MAX_IO_APICS
, nr_ioapics
);
891 panic("Recompile kernel with bigger MAX_IO_APICS!\n");
894 printk(KERN_ERR
"WARNING: Bogus (zero) I/O APIC address"
895 " found in MADT table, skipping!\n");
901 mp_ioapics
[idx
].mpc_type
= MP_IOAPIC
;
902 mp_ioapics
[idx
].mpc_flags
= MPC_APIC_USABLE
;
903 mp_ioapics
[idx
].mpc_apicaddr
= address
;
905 set_fixmap_nocache(FIX_IO_APIC_BASE_0
+ idx
, address
);
906 if ((boot_cpu_data
.x86_vendor
== X86_VENDOR_INTEL
)
907 && !APIC_XAPIC(apic_version
[boot_cpu_physical_apicid
]))
908 tmpid
= io_apic_get_unique_id(idx
, id
);
915 mp_ioapics
[idx
].mpc_apicid
= tmpid
;
916 mp_ioapics
[idx
].mpc_apicver
= io_apic_get_version(idx
);
919 * Build basic GSI lookup table to facilitate gsi->io_apic lookups
920 * and to prevent reprogramming of IOAPIC pins (PCI GSIs).
922 mp_ioapic_routing
[idx
].apic_id
= mp_ioapics
[idx
].mpc_apicid
;
923 mp_ioapic_routing
[idx
].gsi_base
= gsi_base
;
924 mp_ioapic_routing
[idx
].gsi_end
= gsi_base
+
925 io_apic_get_redir_entries(idx
);
927 printk("IOAPIC[%d]: apic_id %d, version %d, address 0x%lx, "
928 "GSI %d-%d\n", idx
, mp_ioapics
[idx
].mpc_apicid
,
929 mp_ioapics
[idx
].mpc_apicver
, mp_ioapics
[idx
].mpc_apicaddr
,
930 mp_ioapic_routing
[idx
].gsi_base
,
931 mp_ioapic_routing
[idx
].gsi_end
);
935 mp_override_legacy_irq(u8 bus_irq
, u8 polarity
, u8 trigger
, u32 gsi
)
937 struct mpc_config_intsrc intsrc
;
942 * Convert 'gsi' to 'ioapic.pin'.
944 ioapic
= mp_find_ioapic(gsi
);
947 pin
= gsi
- mp_ioapic_routing
[ioapic
].gsi_base
;
950 * TBD: This check is for faulty timer entries, where the override
951 * erroneously sets the trigger to level, resulting in a HUGE
952 * increase of timer interrupts!
954 if ((bus_irq
== 0) && (trigger
== 3))
957 intsrc
.mpc_type
= MP_INTSRC
;
958 intsrc
.mpc_irqtype
= mp_INT
;
959 intsrc
.mpc_irqflag
= (trigger
<< 2) | polarity
;
960 intsrc
.mpc_srcbus
= MP_ISA_BUS
;
961 intsrc
.mpc_srcbusirq
= bus_irq
; /* IRQ */
962 intsrc
.mpc_dstapic
= mp_ioapics
[ioapic
].mpc_apicid
; /* APIC ID */
963 intsrc
.mpc_dstirq
= pin
; /* INTIN# */
965 Dprintk("Int: type %d, pol %d, trig %d, bus %d, irq %d, %d-%d\n",
966 intsrc
.mpc_irqtype
, intsrc
.mpc_irqflag
& 3,
967 (intsrc
.mpc_irqflag
>> 2) & 3, intsrc
.mpc_srcbus
,
968 intsrc
.mpc_srcbusirq
, intsrc
.mpc_dstapic
, intsrc
.mpc_dstirq
);
970 mp_irqs
[mp_irq_entries
] = intsrc
;
971 if (++mp_irq_entries
== MAX_IRQ_SOURCES
)
972 panic("Max # of irq sources exceeded!\n");
975 void __init
mp_config_acpi_legacy_irqs (void)
977 struct mpc_config_intsrc intsrc
;
982 * Fabricate the legacy ISA bus (bus #31).
984 mp_bus_id_to_type
[MP_ISA_BUS
] = MP_BUS_ISA
;
985 Dprintk("Bus #%d is ISA\n", MP_ISA_BUS
);
988 * Older generations of ES7000 have no legacy identity mappings
990 if (es7000_plat
== 1)
994 * Locate the IOAPIC that manages the ISA IRQs (0-15).
996 ioapic
= mp_find_ioapic(0);
1000 intsrc
.mpc_type
= MP_INTSRC
;
1001 intsrc
.mpc_irqflag
= 0; /* Conforming */
1002 intsrc
.mpc_srcbus
= MP_ISA_BUS
;
1003 intsrc
.mpc_dstapic
= mp_ioapics
[ioapic
].mpc_apicid
;
1006 * Use the default configuration for the IRQs 0-15. Unless
1007 * overriden by (MADT) interrupt source override entries.
1009 for (i
= 0; i
< 16; i
++) {
1012 for (idx
= 0; idx
< mp_irq_entries
; idx
++) {
1013 struct mpc_config_intsrc
*irq
= mp_irqs
+ idx
;
1015 /* Do we already have a mapping for this ISA IRQ? */
1016 if (irq
->mpc_srcbus
== MP_ISA_BUS
&& irq
->mpc_srcbusirq
== i
)
1019 /* Do we already have a mapping for this IOAPIC pin */
1020 if ((irq
->mpc_dstapic
== intsrc
.mpc_dstapic
) &&
1021 (irq
->mpc_dstirq
== i
))
1025 if (idx
!= mp_irq_entries
) {
1026 printk(KERN_DEBUG
"ACPI: IRQ%d used by override.\n", i
);
1027 continue; /* IRQ already used */
1030 intsrc
.mpc_irqtype
= mp_INT
;
1031 intsrc
.mpc_srcbusirq
= i
; /* Identity mapped */
1032 intsrc
.mpc_dstirq
= i
;
1034 Dprintk("Int: type %d, pol %d, trig %d, bus %d, irq %d, "
1035 "%d-%d\n", intsrc
.mpc_irqtype
, intsrc
.mpc_irqflag
& 3,
1036 (intsrc
.mpc_irqflag
>> 2) & 3, intsrc
.mpc_srcbus
,
1037 intsrc
.mpc_srcbusirq
, intsrc
.mpc_dstapic
,
1040 mp_irqs
[mp_irq_entries
] = intsrc
;
1041 if (++mp_irq_entries
== MAX_IRQ_SOURCES
)
1042 panic("Max # of irq sources exceeded!\n");
1046 #define MAX_GSI_NUM 4096
1048 int mp_register_gsi(u32 gsi
, int triggering
, int polarity
)
1053 static int pci_irq
= 16;
1055 * Mapping between Global System Interrups, which
1056 * represent all possible interrupts, and IRQs
1057 * assigned to actual devices.
1059 static int gsi_to_irq
[MAX_GSI_NUM
];
1061 /* Don't set up the ACPI SCI because it's already set up */
1062 if (acpi_fadt
.sci_int
== gsi
)
1065 ioapic
= mp_find_ioapic(gsi
);
1067 printk(KERN_WARNING
"No IOAPIC for GSI %u\n", gsi
);
1071 ioapic_pin
= gsi
- mp_ioapic_routing
[ioapic
].gsi_base
;
1073 if (ioapic_renumber_irq
)
1074 gsi
= ioapic_renumber_irq(ioapic
, gsi
);
1077 * Avoid pin reprogramming. PRTs typically include entries
1078 * with redundant pin->gsi mappings (but unique PCI devices);
1079 * we only program the IOAPIC on the first.
1081 bit
= ioapic_pin
% 32;
1082 idx
= (ioapic_pin
< 32) ? 0 : (ioapic_pin
/ 32);
1084 printk(KERN_ERR
"Invalid reference to IOAPIC pin "
1085 "%d-%d\n", mp_ioapic_routing
[ioapic
].apic_id
,
1089 if ((1<<bit
) & mp_ioapic_routing
[ioapic
].pin_programmed
[idx
]) {
1090 Dprintk(KERN_DEBUG
"Pin %d-%d already programmed\n",
1091 mp_ioapic_routing
[ioapic
].apic_id
, ioapic_pin
);
1092 return gsi_to_irq
[gsi
];
1095 mp_ioapic_routing
[ioapic
].pin_programmed
[idx
] |= (1<<bit
);
1097 if (triggering
== ACPI_LEVEL_SENSITIVE
) {
1099 * For PCI devices assign IRQs in order, avoiding gaps
1100 * due to unused I/O APIC pins.
1103 if (gsi
< MAX_GSI_NUM
) {
1105 * Retain the VIA chipset work-around (gsi > 15), but
1106 * avoid a problem where the 8254 timer (IRQ0) is setup
1107 * via an override (so it's not on pin 0 of the ioapic),
1108 * and at the same time, the pin 0 interrupt is a PCI
1109 * type. The gsi > 15 test could cause these two pins
1110 * to be shared as IRQ0, and they are not shareable.
1111 * So test for this condition, and if necessary, avoid
1112 * the pin collision.
1114 if (gsi
> 15 || (gsi
== 0 && !timer_uses_ioapic_pin_0
))
1117 * Don't assign IRQ used by ACPI SCI
1119 if (gsi
== acpi_fadt
.sci_int
)
1121 gsi_to_irq
[irq
] = gsi
;
1123 printk(KERN_ERR
"GSI %u is too high\n", gsi
);
1128 io_apic_set_pci_routing(ioapic
, ioapic_pin
, gsi
,
1129 triggering
== ACPI_EDGE_SENSITIVE
? 0 : 1,
1130 polarity
== ACPI_ACTIVE_HIGH
? 0 : 1);
1134 #endif /* CONFIG_X86_IO_APIC */
1135 #endif /* CONFIG_ACPI */