xref: /freebsd/sys/x86/acpica/srat.c (revision 6e2ab0aef54a7d477f525cfe3c742130b068276e)
1dd540b46SJohn Baldwin /*-
2179fa75eSJohn Baldwin  * Copyright (c) 2010 Hudson River Trading LLC
3dd540b46SJohn Baldwin  * Written by: John H. Baldwin <jhb@FreeBSD.org>
4dd540b46SJohn Baldwin  * All rights reserved.
5dd540b46SJohn Baldwin  *
6dd540b46SJohn Baldwin  * Redistribution and use in source and binary forms, with or without
7dd540b46SJohn Baldwin  * modification, are permitted provided that the following conditions
8dd540b46SJohn Baldwin  * are met:
9dd540b46SJohn Baldwin  * 1. Redistributions of source code must retain the above copyright
10dd540b46SJohn Baldwin  *    notice, this list of conditions and the following disclaimer.
11dd540b46SJohn Baldwin  * 2. Redistributions in binary form must reproduce the above copyright
12dd540b46SJohn Baldwin  *    notice, this list of conditions and the following disclaimer in the
13dd540b46SJohn Baldwin  *    documentation and/or other materials provided with the distribution.
14dd540b46SJohn Baldwin  *
15dd540b46SJohn Baldwin  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16dd540b46SJohn Baldwin  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17dd540b46SJohn Baldwin  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18dd540b46SJohn Baldwin  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19dd540b46SJohn Baldwin  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20dd540b46SJohn Baldwin  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21dd540b46SJohn Baldwin  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22dd540b46SJohn Baldwin  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23dd540b46SJohn Baldwin  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24dd540b46SJohn Baldwin  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25dd540b46SJohn Baldwin  * SUCH DAMAGE.
26dd540b46SJohn Baldwin  */
27dd540b46SJohn Baldwin 
28dd540b46SJohn Baldwin #include <sys/cdefs.h>
29dd540b46SJohn Baldwin __FBSDID("$FreeBSD$");
30dd540b46SJohn Baldwin 
3162d70a81SJohn Baldwin #include "opt_vm.h"
3262d70a81SJohn Baldwin 
33dd540b46SJohn Baldwin #include <sys/param.h>
34dd540b46SJohn Baldwin #include <sys/bus.h>
35dd540b46SJohn Baldwin #include <sys/kernel.h>
36449c2e92SKonstantin Belousov #include <sys/lock.h>
37449c2e92SKonstantin Belousov #include <sys/mutex.h>
38dd540b46SJohn Baldwin #include <sys/smp.h>
39449c2e92SKonstantin Belousov #include <sys/vmmeter.h>
40dd540b46SJohn Baldwin #include <vm/vm.h>
41dd540b46SJohn Baldwin #include <vm/pmap.h>
42dd540b46SJohn Baldwin #include <vm/vm_param.h>
43449c2e92SKonstantin Belousov #include <vm/vm_page.h>
44dd540b46SJohn Baldwin #include <vm/vm_phys.h>
45dd540b46SJohn Baldwin 
46dd540b46SJohn Baldwin #include <contrib/dev/acpica/include/acpi.h>
47493deb39SJung-uk Kim #include <contrib/dev/acpica/include/aclocal.h>
48dd540b46SJohn Baldwin #include <contrib/dev/acpica/include/actables.h>
49dd540b46SJohn Baldwin 
50dd540b46SJohn Baldwin #include <machine/intr_machdep.h>
51e07ef9b0SJohn Baldwin #include <x86/apicvar.h>
52dd540b46SJohn Baldwin 
53dd540b46SJohn Baldwin #include <dev/acpica/acpivar.h>
54dd540b46SJohn Baldwin 
55941646f5SAttilio Rao #if MAXMEMDOM > 1
56dd540b46SJohn Baldwin struct cpu_info {
57dd540b46SJohn Baldwin 	int enabled:1;
58dd540b46SJohn Baldwin 	int has_memory:1;
59dd540b46SJohn Baldwin 	int domain;
60dd540b46SJohn Baldwin } cpus[MAX_APIC_ID + 1];
61dd540b46SJohn Baldwin 
62dd540b46SJohn Baldwin struct mem_affinity mem_info[VM_PHYSSEG_MAX + 1];
63dd540b46SJohn Baldwin int num_mem;
64dd540b46SJohn Baldwin 
65dd540b46SJohn Baldwin static ACPI_TABLE_SRAT *srat;
66dd540b46SJohn Baldwin static vm_paddr_t srat_physaddr;
67dd540b46SJohn Baldwin 
6862d70a81SJohn Baldwin static int domain_pxm[MAXMEMDOM];
6962d70a81SJohn Baldwin static int ndomain;
70fc4f524aSAdrian Chadd 
71415d7ccaSAdrian Chadd static ACPI_TABLE_SLIT *slit;
72415d7ccaSAdrian Chadd static vm_paddr_t slit_physaddr;
73415d7ccaSAdrian Chadd static int vm_locality_table[MAXMEMDOM * MAXMEMDOM];
74415d7ccaSAdrian Chadd 
75dd540b46SJohn Baldwin static void	srat_walk_table(acpi_subtable_handler *handler, void *arg);
76dd540b46SJohn Baldwin 
774d99cfb3SJohn Baldwin /*
78415d7ccaSAdrian Chadd  * SLIT parsing.
79415d7ccaSAdrian Chadd  */
80415d7ccaSAdrian Chadd 
81415d7ccaSAdrian Chadd static void
82415d7ccaSAdrian Chadd slit_parse_table(ACPI_TABLE_SLIT *s)
83415d7ccaSAdrian Chadd {
84415d7ccaSAdrian Chadd 	int i, j;
85415d7ccaSAdrian Chadd 	int i_domain, j_domain;
86415d7ccaSAdrian Chadd 	int offset = 0;
87415d7ccaSAdrian Chadd 	uint8_t e;
88415d7ccaSAdrian Chadd 
89415d7ccaSAdrian Chadd 	/*
90415d7ccaSAdrian Chadd 	 * This maps the SLIT data into the VM-domain centric view.
91415d7ccaSAdrian Chadd 	 * There may be sparse entries in the PXM namespace, so
92415d7ccaSAdrian Chadd 	 * remap them to a VM-domain ID and if it doesn't exist,
93415d7ccaSAdrian Chadd 	 * skip it.
94415d7ccaSAdrian Chadd 	 *
95415d7ccaSAdrian Chadd 	 * It should result in a packed 2d array of VM-domain
96415d7ccaSAdrian Chadd 	 * locality information entries.
97415d7ccaSAdrian Chadd 	 */
98415d7ccaSAdrian Chadd 
99415d7ccaSAdrian Chadd 	if (bootverbose)
100415d7ccaSAdrian Chadd 		printf("SLIT.Localities: %d\n", (int) s->LocalityCount);
101415d7ccaSAdrian Chadd 	for (i = 0; i < s->LocalityCount; i++) {
102415d7ccaSAdrian Chadd 		i_domain = acpi_map_pxm_to_vm_domainid(i);
103415d7ccaSAdrian Chadd 		if (i_domain < 0)
104415d7ccaSAdrian Chadd 			continue;
105415d7ccaSAdrian Chadd 
106415d7ccaSAdrian Chadd 		if (bootverbose)
107415d7ccaSAdrian Chadd 			printf("%d: ", i);
108415d7ccaSAdrian Chadd 		for (j = 0; j < s->LocalityCount; j++) {
109415d7ccaSAdrian Chadd 			j_domain = acpi_map_pxm_to_vm_domainid(j);
110415d7ccaSAdrian Chadd 			if (j_domain < 0)
111415d7ccaSAdrian Chadd 				continue;
112415d7ccaSAdrian Chadd 			e = s->Entry[i * s->LocalityCount + j];
113415d7ccaSAdrian Chadd 			if (bootverbose)
114415d7ccaSAdrian Chadd 				printf("%d ", (int) e);
115415d7ccaSAdrian Chadd 			/* 255 == "no locality information" */
116415d7ccaSAdrian Chadd 			if (e == 255)
117415d7ccaSAdrian Chadd 				vm_locality_table[offset] = -1;
118415d7ccaSAdrian Chadd 			else
119415d7ccaSAdrian Chadd 				vm_locality_table[offset] = e;
120415d7ccaSAdrian Chadd 			offset++;
121415d7ccaSAdrian Chadd 		}
122415d7ccaSAdrian Chadd 		if (bootverbose)
123415d7ccaSAdrian Chadd 			printf("\n");
124415d7ccaSAdrian Chadd 	}
125415d7ccaSAdrian Chadd }
126415d7ccaSAdrian Chadd 
127415d7ccaSAdrian Chadd /*
128415d7ccaSAdrian Chadd  * Look for an ACPI System Locality Distance Information Table ("SLIT")
129415d7ccaSAdrian Chadd  */
130415d7ccaSAdrian Chadd static int
131415d7ccaSAdrian Chadd parse_slit(void)
132415d7ccaSAdrian Chadd {
133415d7ccaSAdrian Chadd 
134415d7ccaSAdrian Chadd 	if (resource_disabled("slit", 0)) {
135415d7ccaSAdrian Chadd 		return (-1);
136415d7ccaSAdrian Chadd 	}
137415d7ccaSAdrian Chadd 
138415d7ccaSAdrian Chadd 	slit_physaddr = acpi_find_table(ACPI_SIG_SLIT);
139415d7ccaSAdrian Chadd 	if (slit_physaddr == 0) {
140415d7ccaSAdrian Chadd 		return (-1);
141415d7ccaSAdrian Chadd 	}
142415d7ccaSAdrian Chadd 
143415d7ccaSAdrian Chadd 	/*
144415d7ccaSAdrian Chadd 	 * Make a pass over the table to populate the cpus[] and
145415d7ccaSAdrian Chadd 	 * mem_info[] tables.
146415d7ccaSAdrian Chadd 	 */
147415d7ccaSAdrian Chadd 	slit = acpi_map_table(slit_physaddr, ACPI_SIG_SLIT);
148415d7ccaSAdrian Chadd 	slit_parse_table(slit);
149415d7ccaSAdrian Chadd 	acpi_unmap_table(slit);
150415d7ccaSAdrian Chadd 	slit = NULL;
151415d7ccaSAdrian Chadd 
15262d70a81SJohn Baldwin #ifdef VM_NUMA_ALLOC
153415d7ccaSAdrian Chadd 	/* Tell the VM about it! */
154415d7ccaSAdrian Chadd 	mem_locality = vm_locality_table;
15562d70a81SJohn Baldwin #endif
156415d7ccaSAdrian Chadd 	return (0);
157415d7ccaSAdrian Chadd }
158415d7ccaSAdrian Chadd 
159415d7ccaSAdrian Chadd /*
160415d7ccaSAdrian Chadd  * SRAT parsing.
161415d7ccaSAdrian Chadd  */
162415d7ccaSAdrian Chadd 
163415d7ccaSAdrian Chadd /*
1644d99cfb3SJohn Baldwin  * Returns true if a memory range overlaps with at least one range in
1654d99cfb3SJohn Baldwin  * phys_avail[].
1664d99cfb3SJohn Baldwin  */
1674d99cfb3SJohn Baldwin static int
1684d99cfb3SJohn Baldwin overlaps_phys_avail(vm_paddr_t start, vm_paddr_t end)
1694d99cfb3SJohn Baldwin {
1704d99cfb3SJohn Baldwin 	int i;
1714d99cfb3SJohn Baldwin 
1724d99cfb3SJohn Baldwin 	for (i = 0; phys_avail[i] != 0 && phys_avail[i + 1] != 0; i += 2) {
1734d99cfb3SJohn Baldwin 		if (phys_avail[i + 1] < start)
1744d99cfb3SJohn Baldwin 			continue;
1754d99cfb3SJohn Baldwin 		if (phys_avail[i] < end)
1764d99cfb3SJohn Baldwin 			return (1);
1774d99cfb3SJohn Baldwin 		break;
1784d99cfb3SJohn Baldwin 	}
1794d99cfb3SJohn Baldwin 	return (0);
1804d99cfb3SJohn Baldwin 
1814d99cfb3SJohn Baldwin }
1824d99cfb3SJohn Baldwin 
183dd540b46SJohn Baldwin static void
184dd540b46SJohn Baldwin srat_parse_entry(ACPI_SUBTABLE_HEADER *entry, void *arg)
185dd540b46SJohn Baldwin {
186dd540b46SJohn Baldwin 	ACPI_SRAT_CPU_AFFINITY *cpu;
187dd540b46SJohn Baldwin 	ACPI_SRAT_X2APIC_CPU_AFFINITY *x2apic;
188dd540b46SJohn Baldwin 	ACPI_SRAT_MEM_AFFINITY *mem;
189dd540b46SJohn Baldwin 	int domain, i, slot;
190dd540b46SJohn Baldwin 
191dd540b46SJohn Baldwin 	switch (entry->Type) {
192dd540b46SJohn Baldwin 	case ACPI_SRAT_TYPE_CPU_AFFINITY:
193dd540b46SJohn Baldwin 		cpu = (ACPI_SRAT_CPU_AFFINITY *)entry;
194dd540b46SJohn Baldwin 		domain = cpu->ProximityDomainLo |
195dd540b46SJohn Baldwin 		    cpu->ProximityDomainHi[0] << 8 |
196dd540b46SJohn Baldwin 		    cpu->ProximityDomainHi[1] << 16 |
197dd540b46SJohn Baldwin 		    cpu->ProximityDomainHi[2] << 24;
198dd540b46SJohn Baldwin 		if (bootverbose)
199dd540b46SJohn Baldwin 			printf("SRAT: Found CPU APIC ID %u domain %d: %s\n",
200dd540b46SJohn Baldwin 			    cpu->ApicId, domain,
201dd540b46SJohn Baldwin 			    (cpu->Flags & ACPI_SRAT_CPU_ENABLED) ?
202dd540b46SJohn Baldwin 			    "enabled" : "disabled");
203dd540b46SJohn Baldwin 		if (!(cpu->Flags & ACPI_SRAT_CPU_ENABLED))
204dd540b46SJohn Baldwin 			break;
205*6e2ab0aeSRoger Pau Monné 		if (cpu->ApicId > MAX_APIC_ID) {
206*6e2ab0aeSRoger Pau Monné 			printf("SRAT: Ignoring local APIC ID %u (too high)\n",
207*6e2ab0aeSRoger Pau Monné 			    cpu->ApicId);
208*6e2ab0aeSRoger Pau Monné 			break;
209*6e2ab0aeSRoger Pau Monné 		}
210*6e2ab0aeSRoger Pau Monné 
2112db0699dSEric van Gyzen 		if (cpus[cpu->ApicId].enabled) {
2122db0699dSEric van Gyzen 			printf("SRAT: Duplicate local APIC ID %u\n",
2132db0699dSEric van Gyzen 			    cpu->ApicId);
2142db0699dSEric van Gyzen 			*(int *)arg = ENXIO;
2152db0699dSEric van Gyzen 			break;
2162db0699dSEric van Gyzen 		}
217dd540b46SJohn Baldwin 		cpus[cpu->ApicId].domain = domain;
218dd540b46SJohn Baldwin 		cpus[cpu->ApicId].enabled = 1;
219dd540b46SJohn Baldwin 		break;
220dd540b46SJohn Baldwin 	case ACPI_SRAT_TYPE_X2APIC_CPU_AFFINITY:
221dd540b46SJohn Baldwin 		x2apic = (ACPI_SRAT_X2APIC_CPU_AFFINITY *)entry;
222dd540b46SJohn Baldwin 		if (bootverbose)
223dd540b46SJohn Baldwin 			printf("SRAT: Found CPU APIC ID %u domain %d: %s\n",
224dd540b46SJohn Baldwin 			    x2apic->ApicId, x2apic->ProximityDomain,
225dd540b46SJohn Baldwin 			    (x2apic->Flags & ACPI_SRAT_CPU_ENABLED) ?
226dd540b46SJohn Baldwin 			    "enabled" : "disabled");
227dd540b46SJohn Baldwin 		if (!(x2apic->Flags & ACPI_SRAT_CPU_ENABLED))
228dd540b46SJohn Baldwin 			break;
229*6e2ab0aeSRoger Pau Monné 		if (x2apic->ApicId > MAX_APIC_ID) {
230*6e2ab0aeSRoger Pau Monné 			printf("SRAT: Ignoring local APIC ID %u (too high)\n",
231*6e2ab0aeSRoger Pau Monné 			    x2apic->ApicId);
232*6e2ab0aeSRoger Pau Monné 			break;
233*6e2ab0aeSRoger Pau Monné 		}
234*6e2ab0aeSRoger Pau Monné 
235dd540b46SJohn Baldwin 		KASSERT(!cpus[x2apic->ApicId].enabled,
236dd540b46SJohn Baldwin 		    ("Duplicate local APIC ID %u", x2apic->ApicId));
237dd540b46SJohn Baldwin 		cpus[x2apic->ApicId].domain = x2apic->ProximityDomain;
238dd540b46SJohn Baldwin 		cpus[x2apic->ApicId].enabled = 1;
239dd540b46SJohn Baldwin 		break;
240dd540b46SJohn Baldwin 	case ACPI_SRAT_TYPE_MEMORY_AFFINITY:
241dd540b46SJohn Baldwin 		mem = (ACPI_SRAT_MEM_AFFINITY *)entry;
242dd540b46SJohn Baldwin 		if (bootverbose)
243dd540b46SJohn Baldwin 			printf(
2445ab0f0c3SKonstantin Belousov 		    "SRAT: Found memory domain %d addr 0x%jx len 0x%jx: %s\n",
245dd540b46SJohn Baldwin 			    mem->ProximityDomain, (uintmax_t)mem->BaseAddress,
246dd540b46SJohn Baldwin 			    (uintmax_t)mem->Length,
247dd540b46SJohn Baldwin 			    (mem->Flags & ACPI_SRAT_MEM_ENABLED) ?
248dd540b46SJohn Baldwin 			    "enabled" : "disabled");
249dd540b46SJohn Baldwin 		if (!(mem->Flags & ACPI_SRAT_MEM_ENABLED))
250dd540b46SJohn Baldwin 			break;
2514d99cfb3SJohn Baldwin 		if (!overlaps_phys_avail(mem->BaseAddress,
2524d99cfb3SJohn Baldwin 		    mem->BaseAddress + mem->Length)) {
2535ab0f0c3SKonstantin Belousov 			printf("SRAT: Ignoring memory at addr 0x%jx\n",
2544d99cfb3SJohn Baldwin 			    (uintmax_t)mem->BaseAddress);
2554d99cfb3SJohn Baldwin 			break;
2564d99cfb3SJohn Baldwin 		}
257dd540b46SJohn Baldwin 		if (num_mem == VM_PHYSSEG_MAX) {
258dd540b46SJohn Baldwin 			printf("SRAT: Too many memory regions\n");
259dd540b46SJohn Baldwin 			*(int *)arg = ENXIO;
260dd540b46SJohn Baldwin 			break;
261dd540b46SJohn Baldwin 		}
262dd540b46SJohn Baldwin 		slot = num_mem;
263dd540b46SJohn Baldwin 		for (i = 0; i < num_mem; i++) {
264dd540b46SJohn Baldwin 			if (mem_info[i].end <= mem->BaseAddress)
265dd540b46SJohn Baldwin 				continue;
266dd540b46SJohn Baldwin 			if (mem_info[i].start <
267dd540b46SJohn Baldwin 			    (mem->BaseAddress + mem->Length)) {
268dd540b46SJohn Baldwin 				printf("SRAT: Overlapping memory entries\n");
269dd540b46SJohn Baldwin 				*(int *)arg = ENXIO;
270dd540b46SJohn Baldwin 				return;
271dd540b46SJohn Baldwin 			}
272dd540b46SJohn Baldwin 			slot = i;
273dd540b46SJohn Baldwin 		}
274dd540b46SJohn Baldwin 		for (i = num_mem; i > slot; i--)
275dd540b46SJohn Baldwin 			mem_info[i] = mem_info[i - 1];
276dd540b46SJohn Baldwin 		mem_info[slot].start = mem->BaseAddress;
277dd540b46SJohn Baldwin 		mem_info[slot].end = mem->BaseAddress + mem->Length;
278dd540b46SJohn Baldwin 		mem_info[slot].domain = mem->ProximityDomain;
279dd540b46SJohn Baldwin 		num_mem++;
280dd540b46SJohn Baldwin 		break;
281dd540b46SJohn Baldwin 	}
282dd540b46SJohn Baldwin }
283dd540b46SJohn Baldwin 
284dd540b46SJohn Baldwin /*
285dd540b46SJohn Baldwin  * Ensure each memory domain has at least one CPU and that each CPU
286dd540b46SJohn Baldwin  * has at least one memory domain.
287dd540b46SJohn Baldwin  */
288dd540b46SJohn Baldwin static int
289dd540b46SJohn Baldwin check_domains(void)
290dd540b46SJohn Baldwin {
291dd540b46SJohn Baldwin 	int found, i, j;
292dd540b46SJohn Baldwin 
293dd540b46SJohn Baldwin 	for (i = 0; i < num_mem; i++) {
294dd540b46SJohn Baldwin 		found = 0;
295dd540b46SJohn Baldwin 		for (j = 0; j <= MAX_APIC_ID; j++)
2966676877bSJohn Baldwin 			if (cpus[j].enabled &&
2976676877bSJohn Baldwin 			    cpus[j].domain == mem_info[i].domain) {
298dd540b46SJohn Baldwin 				cpus[j].has_memory = 1;
299dd540b46SJohn Baldwin 				found++;
300dd540b46SJohn Baldwin 			}
301dd540b46SJohn Baldwin 		if (!found) {
302dd540b46SJohn Baldwin 			printf("SRAT: No CPU found for memory domain %d\n",
303dd540b46SJohn Baldwin 			    mem_info[i].domain);
304dd540b46SJohn Baldwin 			return (ENXIO);
305dd540b46SJohn Baldwin 		}
306dd540b46SJohn Baldwin 	}
307dd540b46SJohn Baldwin 	for (i = 0; i <= MAX_APIC_ID; i++)
308dd540b46SJohn Baldwin 		if (cpus[i].enabled && !cpus[i].has_memory) {
309dd540b46SJohn Baldwin 			printf("SRAT: No memory found for CPU %d\n", i);
310dd540b46SJohn Baldwin 			return (ENXIO);
311dd540b46SJohn Baldwin 		}
312dd540b46SJohn Baldwin 	return (0);
313dd540b46SJohn Baldwin }
314dd540b46SJohn Baldwin 
315dd540b46SJohn Baldwin /*
316dd540b46SJohn Baldwin  * Check that the SRAT memory regions cover all of the regions in
317dd540b46SJohn Baldwin  * phys_avail[].
318dd540b46SJohn Baldwin  */
319dd540b46SJohn Baldwin static int
320dd540b46SJohn Baldwin check_phys_avail(void)
321dd540b46SJohn Baldwin {
322dd540b46SJohn Baldwin 	vm_paddr_t address;
323dd540b46SJohn Baldwin 	int i, j;
324dd540b46SJohn Baldwin 
325dd540b46SJohn Baldwin 	/* j is the current offset into phys_avail[]. */
326dd540b46SJohn Baldwin 	address = phys_avail[0];
327dd540b46SJohn Baldwin 	j = 0;
328dd540b46SJohn Baldwin 	for (i = 0; i < num_mem; i++) {
329dd540b46SJohn Baldwin 		/*
330dd540b46SJohn Baldwin 		 * Consume as many phys_avail[] entries as fit in this
331dd540b46SJohn Baldwin 		 * region.
332dd540b46SJohn Baldwin 		 */
333dd540b46SJohn Baldwin 		while (address >= mem_info[i].start &&
334dd540b46SJohn Baldwin 		    address <= mem_info[i].end) {
335dd540b46SJohn Baldwin 			/*
336dd540b46SJohn Baldwin 			 * If we cover the rest of this phys_avail[] entry,
337dd540b46SJohn Baldwin 			 * advance to the next entry.
338dd540b46SJohn Baldwin 			 */
339dd540b46SJohn Baldwin 			if (phys_avail[j + 1] <= mem_info[i].end) {
340dd540b46SJohn Baldwin 				j += 2;
341dd540b46SJohn Baldwin 				if (phys_avail[j] == 0 &&
342dd540b46SJohn Baldwin 				    phys_avail[j + 1] == 0) {
343dd540b46SJohn Baldwin 					return (0);
344dd540b46SJohn Baldwin 				}
345dd540b46SJohn Baldwin 				address = phys_avail[j];
346dd540b46SJohn Baldwin 			} else
347dd540b46SJohn Baldwin 				address = mem_info[i].end + 1;
348dd540b46SJohn Baldwin 		}
349dd540b46SJohn Baldwin 	}
3505ab0f0c3SKonstantin Belousov 	printf("SRAT: No memory region found for 0x%jx - 0x%jx\n",
351dd540b46SJohn Baldwin 	    (uintmax_t)phys_avail[j], (uintmax_t)phys_avail[j + 1]);
352dd540b46SJohn Baldwin 	return (ENXIO);
353dd540b46SJohn Baldwin }
354dd540b46SJohn Baldwin 
355dd540b46SJohn Baldwin /*
356dd540b46SJohn Baldwin  * Renumber the memory domains to be compact and zero-based if not
35728990874SJohn Baldwin  * already.  Returns an error if there are too many domains.
358dd540b46SJohn Baldwin  */
35928990874SJohn Baldwin static int
360dd540b46SJohn Baldwin renumber_domains(void)
361dd540b46SJohn Baldwin {
3627e226537SAttilio Rao 	int i, j, slot;
363dd540b46SJohn Baldwin 
364dd540b46SJohn Baldwin 	/* Enumerate all the domains. */
36562d70a81SJohn Baldwin 	ndomain = 0;
366dd540b46SJohn Baldwin 	for (i = 0; i < num_mem; i++) {
367dd540b46SJohn Baldwin 		/* See if this domain is already known. */
36862d70a81SJohn Baldwin 		for (j = 0; j < ndomain; j++) {
36962d70a81SJohn Baldwin 			if (domain_pxm[j] >= mem_info[i].domain)
370dd540b46SJohn Baldwin 				break;
371dd540b46SJohn Baldwin 		}
37262d70a81SJohn Baldwin 		if (j < ndomain && domain_pxm[j] == mem_info[i].domain)
373dd540b46SJohn Baldwin 			continue;
374dd540b46SJohn Baldwin 
3753765b809SConrad Meyer 		if (ndomain >= MAXMEMDOM) {
3763765b809SConrad Meyer 			ndomain = 1;
3773765b809SConrad Meyer 			printf("SRAT: Too many memory domains\n");
3783765b809SConrad Meyer 			return (EFBIG);
3793765b809SConrad Meyer 		}
3803765b809SConrad Meyer 
381dd540b46SJohn Baldwin 		/* Insert the new domain at slot 'j'. */
382dd540b46SJohn Baldwin 		slot = j;
38362d70a81SJohn Baldwin 		for (j = ndomain; j > slot; j--)
38462d70a81SJohn Baldwin 			domain_pxm[j] = domain_pxm[j - 1];
38562d70a81SJohn Baldwin 		domain_pxm[slot] = mem_info[i].domain;
38662d70a81SJohn Baldwin 		ndomain++;
387dd540b46SJohn Baldwin 	}
388dd540b46SJohn Baldwin 
38962d70a81SJohn Baldwin 	/* Renumber each domain to its index in the sorted 'domain_pxm' list. */
39062d70a81SJohn Baldwin 	for (i = 0; i < ndomain; i++) {
391dd540b46SJohn Baldwin 		/*
392dd540b46SJohn Baldwin 		 * If the domain is already the right value, no need
393dd540b46SJohn Baldwin 		 * to renumber.
394dd540b46SJohn Baldwin 		 */
39562d70a81SJohn Baldwin 		if (domain_pxm[i] == i)
396dd540b46SJohn Baldwin 			continue;
397dd540b46SJohn Baldwin 
398dd540b46SJohn Baldwin 		/* Walk the cpu[] and mem_info[] arrays to renumber. */
399dd540b46SJohn Baldwin 		for (j = 0; j < num_mem; j++)
40062d70a81SJohn Baldwin 			if (mem_info[j].domain == domain_pxm[i])
401dd540b46SJohn Baldwin 				mem_info[j].domain = i;
402dd540b46SJohn Baldwin 		for (j = 0; j <= MAX_APIC_ID; j++)
40362d70a81SJohn Baldwin 			if (cpus[j].enabled && cpus[j].domain == domain_pxm[i])
404dd540b46SJohn Baldwin 				cpus[j].domain = i;
405dd540b46SJohn Baldwin 	}
4067e226537SAttilio Rao 
40728990874SJohn Baldwin 	return (0);
408dd540b46SJohn Baldwin }
409dd540b46SJohn Baldwin 
410dd540b46SJohn Baldwin /*
411dd540b46SJohn Baldwin  * Look for an ACPI System Resource Affinity Table ("SRAT")
412dd540b46SJohn Baldwin  */
413415d7ccaSAdrian Chadd static int
414415d7ccaSAdrian Chadd parse_srat(void)
415dd540b46SJohn Baldwin {
416dd540b46SJohn Baldwin 	int error;
417dd540b46SJohn Baldwin 
418dd540b46SJohn Baldwin 	if (resource_disabled("srat", 0))
419415d7ccaSAdrian Chadd 		return (-1);
420dd540b46SJohn Baldwin 
421dd540b46SJohn Baldwin 	srat_physaddr = acpi_find_table(ACPI_SIG_SRAT);
422dd540b46SJohn Baldwin 	if (srat_physaddr == 0)
423415d7ccaSAdrian Chadd 		return (-1);
424dd540b46SJohn Baldwin 
425dd540b46SJohn Baldwin 	/*
426dd540b46SJohn Baldwin 	 * Make a pass over the table to populate the cpus[] and
427dd540b46SJohn Baldwin 	 * mem_info[] tables.
428dd540b46SJohn Baldwin 	 */
429dd540b46SJohn Baldwin 	srat = acpi_map_table(srat_physaddr, ACPI_SIG_SRAT);
430dd540b46SJohn Baldwin 	error = 0;
431dd540b46SJohn Baldwin 	srat_walk_table(srat_parse_entry, &error);
432dd540b46SJohn Baldwin 	acpi_unmap_table(srat);
433dd540b46SJohn Baldwin 	srat = NULL;
43428990874SJohn Baldwin 	if (error || check_domains() != 0 || check_phys_avail() != 0 ||
43528990874SJohn Baldwin 	    renumber_domains() != 0) {
436dd540b46SJohn Baldwin 		srat_physaddr = 0;
437415d7ccaSAdrian Chadd 		return (-1);
438dd540b46SJohn Baldwin 	}
439dd540b46SJohn Baldwin 
44062d70a81SJohn Baldwin #ifdef VM_NUMA_ALLOC
441dd540b46SJohn Baldwin 	/* Point vm_phys at our memory affinity table. */
44262d70a81SJohn Baldwin 	vm_ndomains = ndomain;
443dd540b46SJohn Baldwin 	mem_affinity = mem_info;
44462d70a81SJohn Baldwin #endif
445415d7ccaSAdrian Chadd 
446415d7ccaSAdrian Chadd 	return (0);
447dd540b46SJohn Baldwin }
448415d7ccaSAdrian Chadd 
449415d7ccaSAdrian Chadd static void
450415d7ccaSAdrian Chadd init_mem_locality(void)
451415d7ccaSAdrian Chadd {
452415d7ccaSAdrian Chadd 	int i;
453415d7ccaSAdrian Chadd 
454415d7ccaSAdrian Chadd 	/*
4554f5e270aSAdrian Chadd 	 * For now, assume -1 == "no locality information for
456415d7ccaSAdrian Chadd 	 * this pairing.
457415d7ccaSAdrian Chadd 	 */
458415d7ccaSAdrian Chadd 	for (i = 0; i < MAXMEMDOM * MAXMEMDOM; i++)
459415d7ccaSAdrian Chadd 		vm_locality_table[i] = -1;
460415d7ccaSAdrian Chadd }
461415d7ccaSAdrian Chadd 
462415d7ccaSAdrian Chadd static void
463415d7ccaSAdrian Chadd parse_acpi_tables(void *dummy)
464415d7ccaSAdrian Chadd {
465415d7ccaSAdrian Chadd 
466415d7ccaSAdrian Chadd 	if (parse_srat() < 0)
467415d7ccaSAdrian Chadd 		return;
468415d7ccaSAdrian Chadd 	init_mem_locality();
469415d7ccaSAdrian Chadd 	(void) parse_slit();
470415d7ccaSAdrian Chadd }
471415d7ccaSAdrian Chadd SYSINIT(parse_acpi_tables, SI_SUB_VM - 1, SI_ORDER_FIRST, parse_acpi_tables,
472415d7ccaSAdrian Chadd     NULL);
473dd540b46SJohn Baldwin 
474dd540b46SJohn Baldwin static void
475dd540b46SJohn Baldwin srat_walk_table(acpi_subtable_handler *handler, void *arg)
476dd540b46SJohn Baldwin {
477dd540b46SJohn Baldwin 
478dd540b46SJohn Baldwin 	acpi_walk_subtables(srat + 1, (char *)srat + srat->Header.Length,
479dd540b46SJohn Baldwin 	    handler, arg);
480dd540b46SJohn Baldwin }
481dd540b46SJohn Baldwin 
482dd540b46SJohn Baldwin /*
483c0ae6688SJohn Baldwin  * Setup per-CPU domain IDs.
484dd540b46SJohn Baldwin  */
485dd540b46SJohn Baldwin static void
486dd540b46SJohn Baldwin srat_set_cpus(void *dummy)
487dd540b46SJohn Baldwin {
488dd540b46SJohn Baldwin 	struct cpu_info *cpu;
489dd540b46SJohn Baldwin 	struct pcpu *pc;
490dd540b46SJohn Baldwin 	u_int i;
491dd540b46SJohn Baldwin 
492dd540b46SJohn Baldwin 	if (srat_physaddr == 0)
493dd540b46SJohn Baldwin 		return;
494dd540b46SJohn Baldwin 	for (i = 0; i < MAXCPU; i++) {
495dd540b46SJohn Baldwin 		if (CPU_ABSENT(i))
496dd540b46SJohn Baldwin 			continue;
497dd540b46SJohn Baldwin 		pc = pcpu_find(i);
498dd540b46SJohn Baldwin 		KASSERT(pc != NULL, ("no pcpu data for CPU %u", i));
499dd540b46SJohn Baldwin 		cpu = &cpus[pc->pc_apic_id];
500dd540b46SJohn Baldwin 		if (!cpu->enabled)
501dd540b46SJohn Baldwin 			panic("SRAT: CPU with APIC ID %u is not known",
502dd540b46SJohn Baldwin 			    pc->pc_apic_id);
503dd540b46SJohn Baldwin 		pc->pc_domain = cpu->domain;
504c0ae6688SJohn Baldwin 		CPU_SET(i, &cpuset_domain[cpu->domain]);
505dd540b46SJohn Baldwin 		if (bootverbose)
506dd540b46SJohn Baldwin 			printf("SRAT: CPU %u has memory domain %d\n", i,
507dd540b46SJohn Baldwin 			    cpu->domain);
508dd540b46SJohn Baldwin 	}
509dd540b46SJohn Baldwin }
510dd540b46SJohn Baldwin SYSINIT(srat_set_cpus, SI_SUB_CPU, SI_ORDER_ANY, srat_set_cpus, NULL);
511fc4f524aSAdrian Chadd 
512fc4f524aSAdrian Chadd /*
513fc4f524aSAdrian Chadd  * Map a _PXM value to a VM domain ID.
514fc4f524aSAdrian Chadd  *
515fc4f524aSAdrian Chadd  * Returns the domain ID, or -1 if no domain ID was found.
516fc4f524aSAdrian Chadd  */
517fc4f524aSAdrian Chadd int
518fc4f524aSAdrian Chadd acpi_map_pxm_to_vm_domainid(int pxm)
519fc4f524aSAdrian Chadd {
520fc4f524aSAdrian Chadd 	int i;
521fc4f524aSAdrian Chadd 
52262d70a81SJohn Baldwin 	for (i = 0; i < ndomain; i++) {
52362d70a81SJohn Baldwin 		if (domain_pxm[i] == pxm)
524fc4f524aSAdrian Chadd 			return (i);
525fc4f524aSAdrian Chadd 	}
526fc4f524aSAdrian Chadd 
527fc4f524aSAdrian Chadd 	return (-1);
528fc4f524aSAdrian Chadd }
529fc4f524aSAdrian Chadd 
53062d70a81SJohn Baldwin #else /* MAXMEMDOM == 1 */
53162d70a81SJohn Baldwin 
53262d70a81SJohn Baldwin int
53362d70a81SJohn Baldwin acpi_map_pxm_to_vm_domainid(int pxm)
53462d70a81SJohn Baldwin {
53562d70a81SJohn Baldwin 
53662d70a81SJohn Baldwin 	return (-1);
53762d70a81SJohn Baldwin }
53862d70a81SJohn Baldwin 
539941646f5SAttilio Rao #endif /* MAXMEMDOM > 1 */
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