2 * Generic VM initialization for x86-64 NUMA setups.
3 * Copyright 2002,2003 Andi Kleen, SuSE Labs.
5 #include <linux/kernel.h>
7 #include <linux/string.h>
8 #include <linux/init.h>
9 #include <linux/bootmem.h>
10 #include <linux/mmzone.h>
11 #include <linux/ctype.h>
12 #include <linux/module.h>
13 #include <linux/nodemask.h>
14 #include <linux/sched.h>
17 #include <asm/proto.h>
27 struct pglist_data
*node_data
[MAX_NUMNODES
] __read_mostly
;
28 EXPORT_SYMBOL(node_data
);
30 bootmem_data_t plat_node_bdata
[MAX_NUMNODES
];
32 struct memnode memnode
;
34 int x86_cpu_to_node_map_init
[NR_CPUS
] = {
35 [0 ... NR_CPUS
-1] = NUMA_NO_NODE
37 void *x86_cpu_to_node_map_early_ptr
;
38 DEFINE_PER_CPU(int, x86_cpu_to_node_map
) = NUMA_NO_NODE
;
39 EXPORT_PER_CPU_SYMBOL(x86_cpu_to_node_map
);
40 EXPORT_SYMBOL(x86_cpu_to_node_map_early_ptr
);
42 s16 apicid_to_node
[MAX_LOCAL_APIC
] __cpuinitdata
= {
43 [0 ... MAX_LOCAL_APIC
-1] = NUMA_NO_NODE
46 cpumask_t node_to_cpumask_map
[MAX_NUMNODES
] __read_mostly
;
47 EXPORT_SYMBOL(node_to_cpumask_map
);
49 int numa_off __initdata
;
50 unsigned long __initdata nodemap_addr
;
51 unsigned long __initdata nodemap_size
;
54 * Given a shift value, try to populate memnodemap[]
57 * 0 if memnodmap[] too small (of shift too small)
58 * -1 if node overlap or lost ram (shift too big)
60 static int __init
populate_memnodemap(const struct bootnode
*nodes
,
61 int numnodes
, int shift
)
63 unsigned long addr
, end
;
66 memset(memnodemap
, 0xff, sizeof(s16
)*memnodemapsize
);
67 for (i
= 0; i
< numnodes
; i
++) {
68 addr
= nodes
[i
].start
;
72 if ((end
>> shift
) >= memnodemapsize
)
75 if (memnodemap
[addr
>> shift
] != NUMA_NO_NODE
)
77 memnodemap
[addr
>> shift
] = i
;
78 addr
+= (1UL << shift
);
85 static int __init
allocate_cachealigned_memnodemap(void)
87 unsigned long pad
, pad_addr
;
89 memnodemap
= memnode
.embedded_map
;
90 if (memnodemapsize
<= ARRAY_SIZE(memnode
.embedded_map
))
93 pad
= L1_CACHE_BYTES
- 1;
95 nodemap_size
= pad
+ memnodemapsize
;
96 nodemap_addr
= find_e820_area(pad_addr
, end_pfn
<<PAGE_SHIFT
,
98 if (nodemap_addr
== -1UL) {
100 "NUMA: Unable to allocate Memory to Node hash map\n");
101 nodemap_addr
= nodemap_size
= 0;
104 pad_addr
= (nodemap_addr
+ pad
) & ~pad
;
105 memnodemap
= phys_to_virt(pad_addr
);
106 reserve_early(nodemap_addr
, nodemap_addr
+ nodemap_size
);
108 printk(KERN_DEBUG
"NUMA: Allocated memnodemap from %lx - %lx\n",
109 nodemap_addr
, nodemap_addr
+ nodemap_size
);
114 * The LSB of all start and end addresses in the node map is the value of the
115 * maximum possible shift.
117 static int __init
extract_lsb_from_nodes(const struct bootnode
*nodes
,
120 int i
, nodes_used
= 0;
121 unsigned long start
, end
;
122 unsigned long bitfield
= 0, memtop
= 0;
124 for (i
= 0; i
< numnodes
; i
++) {
125 start
= nodes
[i
].start
;
137 i
= find_first_bit(&bitfield
, sizeof(unsigned long)*8);
138 memnodemapsize
= (memtop
>> i
)+1;
142 int __init
compute_hash_shift(struct bootnode
*nodes
, int numnodes
)
146 shift
= extract_lsb_from_nodes(nodes
, numnodes
);
147 if (allocate_cachealigned_memnodemap())
149 printk(KERN_DEBUG
"NUMA: Using %d for the hash shift.\n",
152 if (populate_memnodemap(nodes
, numnodes
, shift
) != 1) {
153 printk(KERN_INFO
"Your memory is not aligned you need to "
154 "rebuild your kernel with a bigger NODEMAPSIZE "
155 "shift=%d\n", shift
);
161 int early_pfn_to_nid(unsigned long pfn
)
163 return phys_to_nid(pfn
<< PAGE_SHIFT
);
166 static void * __init
early_node_mem(int nodeid
, unsigned long start
,
167 unsigned long end
, unsigned long size
)
169 unsigned long mem
= find_e820_area(start
, end
, size
);
174 ptr
= __alloc_bootmem_nopanic(size
,
175 SMP_CACHE_BYTES
, __pa(MAX_DMA_ADDRESS
));
177 printk(KERN_ERR
"Cannot find %lu bytes in node %d\n",
184 /* Initialize bootmem allocator for a node */
185 void __init
setup_node_bootmem(int nodeid
, unsigned long start
,
188 unsigned long start_pfn
, end_pfn
, bootmap_pages
, bootmap_size
;
189 unsigned long bootmap_start
, nodedata_phys
;
191 const int pgdat_size
= round_up(sizeof(pg_data_t
), PAGE_SIZE
);
193 start
= round_up(start
, ZONE_ALIGN
);
195 printk(KERN_INFO
"Bootmem setup node %d %016lx-%016lx\n", nodeid
,
198 start_pfn
= start
>> PAGE_SHIFT
;
199 end_pfn
= end
>> PAGE_SHIFT
;
201 node_data
[nodeid
] = early_node_mem(nodeid
, start
, end
, pgdat_size
);
202 if (node_data
[nodeid
] == NULL
)
204 nodedata_phys
= __pa(node_data
[nodeid
]);
206 memset(NODE_DATA(nodeid
), 0, sizeof(pg_data_t
));
207 NODE_DATA(nodeid
)->bdata
= &plat_node_bdata
[nodeid
];
208 NODE_DATA(nodeid
)->node_start_pfn
= start_pfn
;
209 NODE_DATA(nodeid
)->node_spanned_pages
= end_pfn
- start_pfn
;
211 /* Find a place for the bootmem map */
212 bootmap_pages
= bootmem_bootmap_pages(end_pfn
- start_pfn
);
213 bootmap_start
= round_up(nodedata_phys
+ pgdat_size
, PAGE_SIZE
);
214 bootmap
= early_node_mem(nodeid
, bootmap_start
, end
,
215 bootmap_pages
<<PAGE_SHIFT
);
216 if (bootmap
== NULL
) {
217 if (nodedata_phys
< start
|| nodedata_phys
>= end
)
218 free_bootmem((unsigned long)node_data
[nodeid
],
220 node_data
[nodeid
] = NULL
;
223 bootmap_start
= __pa(bootmap
);
224 Dprintk("bootmap start %lu pages %lu\n", bootmap_start
, bootmap_pages
);
226 bootmap_size
= init_bootmem_node(NODE_DATA(nodeid
),
227 bootmap_start
>> PAGE_SHIFT
,
230 free_bootmem_with_active_regions(nodeid
, end
);
232 reserve_bootmem_node(NODE_DATA(nodeid
), nodedata_phys
, pgdat_size
);
233 reserve_bootmem_node(NODE_DATA(nodeid
), bootmap_start
,
234 bootmap_pages
<<PAGE_SHIFT
);
235 #ifdef CONFIG_ACPI_NUMA
236 srat_reserve_add_area(nodeid
);
238 node_set_online(nodeid
);
242 * There are unfortunately some poorly designed mainboards around that
243 * only connect memory to a single CPU. This breaks the 1:1 cpu->node
244 * mapping. To avoid this fill in the mapping for all possible CPUs,
245 * as the number of CPUs is not known yet. We round robin the existing
248 void __init
numa_init_array(void)
252 rr
= first_node(node_online_map
);
253 for (i
= 0; i
< NR_CPUS
; i
++) {
254 if (early_cpu_to_node(i
) != NUMA_NO_NODE
)
256 numa_set_node(i
, rr
);
257 rr
= next_node(rr
, node_online_map
);
258 if (rr
== MAX_NUMNODES
)
259 rr
= first_node(node_online_map
);
263 #ifdef CONFIG_NUMA_EMU
265 char *cmdline __initdata
;
268 * Setups up nid to range from addr to addr + size. If the end
269 * boundary is greater than max_addr, then max_addr is used instead.
270 * The return value is 0 if there is additional memory left for
271 * allocation past addr and -1 otherwise. addr is adjusted to be at
272 * the end of the node.
274 static int __init
setup_node_range(int nid
, struct bootnode
*nodes
, u64
*addr
,
275 u64 size
, u64 max_addr
)
279 nodes
[nid
].start
= *addr
;
281 if (*addr
>= max_addr
) {
285 nodes
[nid
].end
= *addr
;
286 node_set(nid
, node_possible_map
);
287 printk(KERN_INFO
"Faking node %d at %016Lx-%016Lx (%LuMB)\n", nid
,
288 nodes
[nid
].start
, nodes
[nid
].end
,
289 (nodes
[nid
].end
- nodes
[nid
].start
) >> 20);
294 * Splits num_nodes nodes up equally starting at node_start. The return value
295 * is the number of nodes split up and addr is adjusted to be at the end of the
296 * last node allocated.
298 static int __init
split_nodes_equally(struct bootnode
*nodes
, u64
*addr
,
299 u64 max_addr
, int node_start
,
308 if (num_nodes
> MAX_NUMNODES
)
309 num_nodes
= MAX_NUMNODES
;
310 size
= (max_addr
- *addr
- e820_hole_size(*addr
, max_addr
)) /
313 * Calculate the number of big nodes that can be allocated as a result
314 * of consolidating the leftovers.
316 big
= ((size
& ~FAKE_NODE_MIN_HASH_MASK
) * num_nodes
) /
319 /* Round down to nearest FAKE_NODE_MIN_SIZE. */
320 size
&= FAKE_NODE_MIN_HASH_MASK
;
322 printk(KERN_ERR
"Not enough memory for each node. "
323 "NUMA emulation disabled.\n");
327 for (i
= node_start
; i
< num_nodes
+ node_start
; i
++) {
328 u64 end
= *addr
+ size
;
331 end
+= FAKE_NODE_MIN_SIZE
;
333 * The final node can have the remaining system RAM. Other
334 * nodes receive roughly the same amount of available pages.
336 if (i
== num_nodes
+ node_start
- 1)
339 while (end
- *addr
- e820_hole_size(*addr
, end
) <
341 end
+= FAKE_NODE_MIN_SIZE
;
342 if (end
> max_addr
) {
347 if (setup_node_range(i
, nodes
, addr
, end
- *addr
, max_addr
) < 0)
350 return i
- node_start
+ 1;
354 * Splits the remaining system RAM into chunks of size. The remaining memory is
355 * always assigned to a final node and can be asymmetric. Returns the number of
358 static int __init
split_nodes_by_size(struct bootnode
*nodes
, u64
*addr
,
359 u64 max_addr
, int node_start
, u64 size
)
362 size
= (size
<< 20) & FAKE_NODE_MIN_HASH_MASK
;
363 while (!setup_node_range(i
++, nodes
, addr
, size
, max_addr
))
365 return i
- node_start
;
369 * Sets up the system RAM area from start_pfn to end_pfn according to the
370 * numa=fake command-line option.
372 static int __init
numa_emulation(unsigned long start_pfn
, unsigned long end_pfn
)
374 struct bootnode nodes
[MAX_NUMNODES
];
375 u64 size
, addr
= start_pfn
<< PAGE_SHIFT
;
376 u64 max_addr
= end_pfn
<< PAGE_SHIFT
;
377 int num_nodes
= 0, num
= 0, coeff_flag
, coeff
= -1, i
;
379 memset(&nodes
, 0, sizeof(nodes
));
381 * If the numa=fake command-line is just a single number N, split the
382 * system RAM into N fake nodes.
384 if (!strchr(cmdline
, '*') && !strchr(cmdline
, ',')) {
385 long n
= simple_strtol(cmdline
, NULL
, 0);
387 num_nodes
= split_nodes_equally(nodes
, &addr
, max_addr
, 0, n
);
393 /* Parse the command line. */
394 for (coeff_flag
= 0; ; cmdline
++) {
395 if (*cmdline
&& isdigit(*cmdline
)) {
396 num
= num
* 10 + *cmdline
- '0';
399 if (*cmdline
== '*') {
404 if (!*cmdline
|| *cmdline
== ',') {
408 * Round down to the nearest FAKE_NODE_MIN_SIZE.
409 * Command-line coefficients are in megabytes.
411 size
= ((u64
)num
<< 20) & FAKE_NODE_MIN_HASH_MASK
;
413 for (i
= 0; i
< coeff
; i
++, num_nodes
++)
414 if (setup_node_range(num_nodes
, nodes
,
415 &addr
, size
, max_addr
) < 0)
427 /* Fill remainder of system RAM, if appropriate. */
428 if (addr
< max_addr
) {
429 if (coeff_flag
&& coeff
< 0) {
430 /* Split remaining nodes into num-sized chunks */
431 num_nodes
+= split_nodes_by_size(nodes
, &addr
, max_addr
,
435 switch (*(cmdline
- 1)) {
437 /* Split remaining nodes into coeff chunks */
440 num_nodes
+= split_nodes_equally(nodes
, &addr
, max_addr
,
444 /* Do not allocate remaining system RAM */
447 /* Give one final node */
448 setup_node_range(num_nodes
, nodes
, &addr
,
449 max_addr
- addr
, max_addr
);
454 memnode_shift
= compute_hash_shift(nodes
, num_nodes
);
455 if (memnode_shift
< 0) {
457 printk(KERN_ERR
"No NUMA hash function found. NUMA emulation "
463 * We need to vacate all active ranges that may have been registered by
464 * SRAT and set acpi_numa to -1 so that srat_disabled() always returns
465 * true. NUMA emulation has succeeded so we will not scan ACPI nodes.
467 remove_all_active_ranges();
468 #ifdef CONFIG_ACPI_NUMA
471 for_each_node_mask(i
, node_possible_map
) {
472 e820_register_active_regions(i
, nodes
[i
].start
>> PAGE_SHIFT
,
473 nodes
[i
].end
>> PAGE_SHIFT
);
474 setup_node_bootmem(i
, nodes
[i
].start
, nodes
[i
].end
);
476 acpi_fake_nodes(nodes
, num_nodes
);
480 #endif /* CONFIG_NUMA_EMU */
482 void __init
numa_initmem_init(unsigned long start_pfn
, unsigned long end_pfn
)
486 nodes_clear(node_possible_map
);
488 #ifdef CONFIG_NUMA_EMU
489 if (cmdline
&& !numa_emulation(start_pfn
, end_pfn
))
491 nodes_clear(node_possible_map
);
494 #ifdef CONFIG_ACPI_NUMA
495 if (!numa_off
&& !acpi_scan_nodes(start_pfn
<< PAGE_SHIFT
,
496 end_pfn
<< PAGE_SHIFT
))
498 nodes_clear(node_possible_map
);
501 #ifdef CONFIG_K8_NUMA
502 if (!numa_off
&& !k8_scan_nodes(start_pfn
<<PAGE_SHIFT
,
503 end_pfn
<<PAGE_SHIFT
))
505 nodes_clear(node_possible_map
);
507 printk(KERN_INFO
"%s\n",
508 numa_off
? "NUMA turned off" : "No NUMA configuration found");
510 printk(KERN_INFO
"Faking a node at %016lx-%016lx\n",
511 start_pfn
<< PAGE_SHIFT
,
512 end_pfn
<< PAGE_SHIFT
);
513 /* setup dummy node covering all memory */
515 memnodemap
= memnode
.embedded_map
;
517 nodes_clear(node_online_map
);
519 node_set(0, node_possible_map
);
520 for (i
= 0; i
< NR_CPUS
; i
++)
522 /* cpumask_of_cpu() may not be available during early startup */
523 memset(&node_to_cpumask_map
[0], 0, sizeof(node_to_cpumask_map
[0]));
524 cpu_set(0, node_to_cpumask_map
[0]);
525 e820_register_active_regions(0, start_pfn
, end_pfn
);
526 setup_node_bootmem(0, start_pfn
<< PAGE_SHIFT
, end_pfn
<< PAGE_SHIFT
);
529 __cpuinit
void numa_add_cpu(int cpu
)
532 (unsigned long *)&node_to_cpumask_map
[early_cpu_to_node(cpu
)]);
535 void __cpuinit
numa_set_node(int cpu
, int node
)
537 int *cpu_to_node_map
= x86_cpu_to_node_map_early_ptr
;
539 cpu_pda(cpu
)->nodenumber
= node
;
542 cpu_to_node_map
[cpu
] = node
;
543 else if(per_cpu_offset(cpu
))
544 per_cpu(x86_cpu_to_node_map
, cpu
) = node
;
546 Dprintk(KERN_INFO
"Setting node for non-present cpu %d\n", cpu
);
549 unsigned long __init
numa_free_all_bootmem(void)
551 unsigned long pages
= 0;
554 for_each_online_node(i
)
555 pages
+= free_all_bootmem_node(NODE_DATA(i
));
560 void __init
paging_init(void)
562 unsigned long max_zone_pfns
[MAX_NR_ZONES
];
564 memset(max_zone_pfns
, 0, sizeof(max_zone_pfns
));
565 max_zone_pfns
[ZONE_DMA
] = MAX_DMA_PFN
;
566 max_zone_pfns
[ZONE_DMA32
] = MAX_DMA32_PFN
;
567 max_zone_pfns
[ZONE_NORMAL
] = end_pfn
;
569 sparse_memory_present_with_active_regions(MAX_NUMNODES
);
572 free_area_init_nodes(max_zone_pfns
);
575 static __init
int numa_setup(char *opt
)
579 if (!strncmp(opt
, "off", 3))
581 #ifdef CONFIG_NUMA_EMU
582 if (!strncmp(opt
, "fake=", 5))
585 #ifdef CONFIG_ACPI_NUMA
586 if (!strncmp(opt
, "noacpi", 6))
588 if (!strncmp(opt
, "hotadd=", 7))
589 hotadd_percent
= simple_strtoul(opt
+7, NULL
, 10);
593 early_param("numa", numa_setup
);
596 * Setup early cpu_to_node.
598 * Populate cpu_to_node[] only if x86_cpu_to_apicid[],
599 * and apicid_to_node[] tables have valid entries for a CPU.
600 * This means we skip cpu_to_node[] initialisation for NUMA
601 * emulation and faking node case (when running a kernel compiled
602 * for NUMA on a non NUMA box), which is OK as cpu_to_node[]
603 * is already initialized in a round robin manner at numa_init_array,
604 * prior to this call, and this initialization is good enough
605 * for the fake NUMA cases.
607 void __init
init_cpu_to_node(void)
611 for (i
= 0; i
< NR_CPUS
; i
++) {
612 u16 apicid
= x86_cpu_to_apicid_init
[i
];
614 if (apicid
== BAD_APICID
)
616 if (apicid_to_node
[apicid
] == NUMA_NO_NODE
)
618 numa_set_node(i
, apicid_to_node
[apicid
]);