2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
7 * Copyright (C) 2000 by Silicon Graphics, Inc.
8 * Copyright (C) 2004 by Christoph Hellwig
10 * On SGI IP27 the ARC memory configuration data is completely bogus but
11 * alternate easier to use mechanisms are available.
13 #include <linux/init.h>
14 #include <linux/kernel.h>
15 #include <linux/memblock.h>
17 #include <linux/mmzone.h>
18 #include <linux/export.h>
19 #include <linux/nodemask.h>
20 #include <linux/swap.h>
21 #include <linux/pfn.h>
22 #include <linux/highmem.h>
24 #include <asm/pgalloc.h>
25 #include <asm/sections.h>
27 #include <asm/sn/arch.h>
28 #include <asm/sn/hub.h>
29 #include <asm/sn/klconfig.h>
30 #include <asm/sn/sn_private.h>
33 #define SLOT_PFNSHIFT (SLOT_SHIFT - PAGE_SHIFT)
34 #define PFN_NASIDSHFT (NASID_SHFT - PAGE_SHIFT)
36 struct node_data *__node_data[MAX_NUMNODES];
38 EXPORT_SYMBOL(__node_data);
42 static int is_fine_dirmode(void)
44 return ((LOCAL_HUB_L(NI_STATUS_REV_ID) & NSRI_REGIONSIZE_MASK) >> NSRI_REGIONSIZE_SHFT) & REGIONSIZE_FINE;
47 static u64 get_region(nasid_t nasid)
50 return nasid >> NASID_TO_FINEREG_SHFT;
52 return nasid >> NASID_TO_COARSEREG_SHFT;
55 static u64 region_mask;
57 static void gen_region_mask(u64 *region_mask)
62 for_each_online_node(nasid) {
63 (*region_mask) |= 1ULL << get_region(nasid);
67 #define rou_rflag rou_flags
69 static int router_distance;
71 static void router_recurse(klrou_t *router_a, klrou_t *router_b, int depth)
77 if (router_a->rou_rflag == 1)
80 if (depth >= router_distance)
83 router_a->rou_rflag = 1;
85 for (port = 1; port <= MAX_ROUTER_PORTS; port++) {
86 if (router_a->rou_port[port].port_nasid == INVALID_NASID)
89 brd = (lboard_t *)NODE_OFFSET_TO_K0(
90 router_a->rou_port[port].port_nasid,
91 router_a->rou_port[port].port_offset);
93 if (brd->brd_type == KLTYPE_ROUTER) {
94 router = (klrou_t *)NODE_OFFSET_TO_K0(NASID_GET(brd), brd->brd_compts[0]);
95 if (router == router_b) {
96 if (depth < router_distance)
97 router_distance = depth;
100 router_recurse(router, router_b, depth + 1);
104 router_a->rou_rflag = 0;
107 unsigned char __node_distances[MAX_NUMNODES][MAX_NUMNODES];
108 EXPORT_SYMBOL(__node_distances);
110 static int __init compute_node_distance(nasid_t nasid_a, nasid_t nasid_b)
112 klrou_t *router, *router_a = NULL, *router_b = NULL;
113 lboard_t *brd, *dest_brd;
117 /* Figure out which routers nodes in question are connected to */
118 for_each_online_node(nasid) {
119 brd = find_lboard_class((lboard_t *)KL_CONFIG_INFO(nasid),
126 if (brd->brd_flags & DUPLICATE_BOARD)
129 router = (klrou_t *)NODE_OFFSET_TO_K0(NASID_GET(brd), brd->brd_compts[0]);
130 router->rou_rflag = 0;
132 for (port = 1; port <= MAX_ROUTER_PORTS; port++) {
133 if (router->rou_port[port].port_nasid == INVALID_NASID)
136 dest_brd = (lboard_t *)NODE_OFFSET_TO_K0(
137 router->rou_port[port].port_nasid,
138 router->rou_port[port].port_offset);
140 if (dest_brd->brd_type == KLTYPE_IP27) {
141 if (dest_brd->brd_nasid == nasid_a)
143 if (dest_brd->brd_nasid == nasid_b)
148 } while ((brd = find_lboard_class(KLCF_NEXT(brd), KLTYPE_ROUTER)));
151 if (router_a == NULL) {
152 pr_info("node_distance: router_a NULL\n");
155 if (router_b == NULL) {
156 pr_info("node_distance: router_b NULL\n");
160 if (nasid_a == nasid_b)
163 if (router_a == router_b)
166 router_distance = 100;
167 router_recurse(router_a, router_b, 2);
169 return router_distance;
172 static void __init init_topology_matrix(void)
176 for (row = 0; row < MAX_NUMNODES; row++)
177 for (col = 0; col < MAX_NUMNODES; col++)
178 __node_distances[row][col] = -1;
180 for_each_online_node(row) {
181 for_each_online_node(col) {
182 __node_distances[row][col] =
183 compute_node_distance(row, col);
188 static void __init dump_topology(void)
191 lboard_t *brd, *dest_brd;
197 pr_info("************** Topology ********************\n");
200 for_each_online_node(col)
201 pr_cont("%02d ", col);
203 for_each_online_node(row) {
204 pr_info("%02d ", row);
205 for_each_online_node(col)
206 pr_cont("%2d ", node_distance(row, col));
210 for_each_online_node(nasid) {
211 brd = find_lboard_class((lboard_t *)KL_CONFIG_INFO(nasid),
218 if (brd->brd_flags & DUPLICATE_BOARD)
220 pr_cont("Router %d:", router_num);
223 router = (klrou_t *)NODE_OFFSET_TO_K0(NASID_GET(brd), brd->brd_compts[0]);
225 for (port = 1; port <= MAX_ROUTER_PORTS; port++) {
226 if (router->rou_port[port].port_nasid == INVALID_NASID)
229 dest_brd = (lboard_t *)NODE_OFFSET_TO_K0(
230 router->rou_port[port].port_nasid,
231 router->rou_port[port].port_offset);
233 if (dest_brd->brd_type == KLTYPE_IP27)
234 pr_cont(" %d", dest_brd->brd_nasid);
235 if (dest_brd->brd_type == KLTYPE_ROUTER)
240 } while ( (brd = find_lboard_class(KLCF_NEXT(brd), KLTYPE_ROUTER)) );
244 static unsigned long __init slot_getbasepfn(nasid_t nasid, int slot)
246 return ((unsigned long)nasid << PFN_NASIDSHFT) | (slot << SLOT_PFNSHIFT);
249 static unsigned long __init slot_psize_compute(nasid_t nasid, int slot)
255 /* Find the node board */
256 brd = find_lboard((lboard_t *)KL_CONFIG_INFO(nasid), KLTYPE_IP27);
260 /* Get the memory bank structure */
261 banks = (klmembnk_t *) find_first_component(brd, KLSTRUCT_MEMBNK);
265 /* Size in _Megabytes_ */
266 size = (unsigned long)banks->membnk_bnksz[slot/4];
268 /* hack for 128 dimm banks */
271 size <<= 20; /* size in bytes */
272 return size >> PAGE_SHIFT;
278 return size >> PAGE_SHIFT;
282 static void __init mlreset(void)
286 master_nasid = get_nasid();
287 fine_mode = is_fine_dirmode();
290 * Probe for all CPUs - this creates the cpumask and sets up the
291 * mapping tables. We need to do this as early as possible.
297 init_topology_matrix();
300 gen_region_mask(®ion_mask);
302 setup_replication_mask();
305 * Set all nodes' calias sizes to 8k
307 for_each_online_node(nasid) {
309 * Always have node 0 in the region mask, otherwise
310 * CALIAS accesses get exceptions since the hub
311 * thinks it is a node 0 address.
313 REMOTE_HUB_S(nasid, PI_REGION_PRESENT, (region_mask | 1));
314 REMOTE_HUB_S(nasid, PI_CALIAS_SIZE, PI_CALIAS_SIZE_0);
318 * Set up all hubs to have a big window pointing at
319 * widget 0. Memory mode, widget 0, offset 0
321 REMOTE_HUB_S(nasid, IIO_ITTE(SWIN0_BIGWIN),
322 ((HUB_PIO_MAP_TO_MEM << IIO_ITTE_IOSP_SHIFT) |
323 (0 << IIO_ITTE_WIDGET_SHIFT)));
328 static void __init szmem(void)
330 unsigned long slot_psize, slot0sz = 0, nodebytes; /* Hack to detect problem configs */
334 for_each_online_node(node) {
336 for (slot = 0; slot < MAX_MEM_SLOTS; slot++) {
337 slot_psize = slot_psize_compute(node, slot);
339 slot0sz = slot_psize;
341 * We need to refine the hack when we have replicated
344 nodebytes += (1LL << SLOT_SHIFT);
349 if ((nodebytes >> PAGE_SHIFT) * (sizeof(struct page)) >
350 (slot0sz << PAGE_SHIFT)) {
351 pr_info("Ignoring slot %d onwards on node %d\n",
353 slot = MAX_MEM_SLOTS;
356 memblock_add_node(PFN_PHYS(slot_getbasepfn(node, slot)),
357 PFN_PHYS(slot_psize), node);
362 static void __init node_mem_init(nasid_t node)
364 unsigned long slot_firstpfn = slot_getbasepfn(node, 0);
365 unsigned long slot_freepfn = node_getfirstfree(node);
366 unsigned long start_pfn, end_pfn;
368 get_pfn_range_for_nid(node, &start_pfn, &end_pfn);
371 * Allocate the node data structures on the node first.
373 __node_data[node] = __va(slot_freepfn << PAGE_SHIFT);
374 memset(__node_data[node], 0, PAGE_SIZE);
376 NODE_DATA(node)->node_start_pfn = start_pfn;
377 NODE_DATA(node)->node_spanned_pages = end_pfn - start_pfn;
379 cpumask_clear(&hub_data(node)->h_cpus);
381 slot_freepfn += PFN_UP(sizeof(struct pglist_data) +
382 sizeof(struct hub_data));
384 memblock_reserve(slot_firstpfn << PAGE_SHIFT,
385 ((slot_freepfn - slot_firstpfn) << PAGE_SHIFT));
389 * A node with nothing. We use it to avoid any special casing in
392 static struct node_data null_node = {
394 .h_cpus = CPU_MASK_NONE
399 * Currently, the intranode memory hole support assumes that each slot
400 * contains at least 32 MBytes of memory. We assume all bootmem data
401 * fits on the first slot.
403 void __init prom_meminit(void)
409 max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
411 for (node = 0; node < MAX_NUMNODES; node++) {
412 if (node_online(node)) {
416 __node_data[node] = &null_node;
422 void __init prom_free_prom_memory(void)
424 /* We got nothing to free here ... */
427 extern void setup_zero_pages(void);
429 void __init paging_init(void)
431 unsigned long zones_size[MAX_NR_ZONES] = {0, };
434 zones_size[ZONE_NORMAL] = max_low_pfn;
435 free_area_init_nodes(zones_size);
438 void __init mem_init(void)
440 high_memory = (void *) __va(get_num_physpages() << PAGE_SHIFT);
442 setup_zero_pages(); /* This comes from node 0 */
443 mem_init_print_info(NULL);