a5e034789a0c0ca189e83ec96b28ae0995c2fd5f
[dpdk.git] / lib / librte_eal / bsdapp / eal / eal_memory.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2010-2014 Intel Corporation
3  */
4 #include <sys/mman.h>
5 #include <unistd.h>
6 #include <sys/types.h>
7 #include <sys/sysctl.h>
8 #include <inttypes.h>
9 #include <errno.h>
10 #include <string.h>
11 #include <fcntl.h>
12
13 #include <rte_eal.h>
14 #include <rte_eal_memconfig.h>
15 #include <rte_log.h>
16 #include <rte_string_fns.h>
17 #include "eal_private.h"
18 #include "eal_internal_cfg.h"
19 #include "eal_filesystem.h"
20
21 #define EAL_PAGE_SIZE (sysconf(_SC_PAGESIZE))
22
23 /*
24  * Get physical address of any mapped virtual address in the current process.
25  */
26 phys_addr_t
27 rte_mem_virt2phy(const void *virtaddr)
28 {
29         /* XXX not implemented. This function is only used by
30          * rte_mempool_virt2iova() when hugepages are disabled. */
31         (void)virtaddr;
32         return RTE_BAD_IOVA;
33 }
34 rte_iova_t
35 rte_mem_virt2iova(const void *virtaddr)
36 {
37         return rte_mem_virt2phy(virtaddr);
38 }
39
40 int
41 rte_eal_hugepage_init(void)
42 {
43         struct rte_mem_config *mcfg;
44         uint64_t total_mem = 0;
45         void *addr;
46         unsigned int i, j, seg_idx = 0;
47
48         /* get pointer to global configuration */
49         mcfg = rte_eal_get_configuration()->mem_config;
50
51         /* for debug purposes, hugetlbfs can be disabled */
52         if (internal_config.no_hugetlbfs) {
53                 struct rte_memseg_list *msl;
54                 struct rte_fbarray *arr;
55                 struct rte_memseg *ms;
56                 uint64_t page_sz;
57                 int n_segs, cur_seg;
58
59                 /* create a memseg list */
60                 msl = &mcfg->memsegs[0];
61
62                 page_sz = RTE_PGSIZE_4K;
63                 n_segs = internal_config.memory / page_sz;
64
65                 if (rte_fbarray_init(&msl->memseg_arr, "nohugemem", n_segs,
66                                 sizeof(struct rte_memseg))) {
67                         RTE_LOG(ERR, EAL, "Cannot allocate memseg list\n");
68                         return -1;
69                 }
70
71                 addr = mmap(NULL, internal_config.memory,
72                                 PROT_READ | PROT_WRITE,
73                                 MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
74                 if (addr == MAP_FAILED) {
75                         RTE_LOG(ERR, EAL, "%s: mmap() failed: %s\n", __func__,
76                                         strerror(errno));
77                         return -1;
78                 }
79                 msl->base_va = addr;
80                 msl->page_sz = page_sz;
81                 msl->socket_id = 0;
82
83                 /* populate memsegs. each memseg is 1 page long */
84                 for (cur_seg = 0; cur_seg < n_segs; cur_seg++) {
85                         arr = &msl->memseg_arr;
86
87                         ms = rte_fbarray_get(arr, cur_seg);
88                         if (rte_eal_iova_mode() == RTE_IOVA_VA)
89                                 ms->iova = (uintptr_t)addr;
90                         else
91                                 ms->iova = RTE_BAD_IOVA;
92                         ms->addr = addr;
93                         ms->hugepage_sz = page_sz;
94                         ms->len = page_sz;
95                         ms->socket_id = 0;
96
97                         rte_fbarray_set_used(arr, cur_seg);
98
99                         addr = RTE_PTR_ADD(addr, page_sz);
100                 }
101                 return 0;
102         }
103
104         /* map all hugepages and sort them */
105         for (i = 0; i < internal_config.num_hugepage_sizes; i ++){
106                 struct hugepage_info *hpi;
107                 uint64_t page_sz, mem_needed;
108                 unsigned int n_pages, max_pages;
109
110                 hpi = &internal_config.hugepage_info[i];
111                 page_sz = hpi->hugepage_sz;
112                 max_pages = hpi->num_pages[0];
113                 mem_needed = RTE_ALIGN_CEIL(internal_config.memory - total_mem,
114                                 page_sz);
115
116                 n_pages = RTE_MIN(mem_needed / page_sz, max_pages);
117
118                 for (j = 0; j < n_pages; j++) {
119                         struct rte_memseg_list *msl;
120                         struct rte_fbarray *arr;
121                         struct rte_memseg *seg;
122                         int msl_idx, ms_idx;
123                         rte_iova_t physaddr;
124                         int error;
125                         size_t sysctl_size = sizeof(physaddr);
126                         char physaddr_str[64];
127
128                         for (msl_idx = 0; msl_idx < RTE_MAX_MEMSEG_LISTS;
129                                         msl_idx++) {
130                                 bool empty;
131                                 msl = &mcfg->memsegs[msl_idx];
132                                 arr = &msl->memseg_arr;
133
134                                 if (msl->page_sz != page_sz)
135                                         continue;
136
137                                 empty = arr->count == 0;
138
139                                 /* we need 1, plus hole if not empty */
140                                 ms_idx = rte_fbarray_find_next_n_free(arr,
141                                                 0, 1 + (empty ? 1 : 0));
142
143                                 /* memseg list is full? */
144                                 if (ms_idx < 0)
145                                         continue;
146
147                                 /* leave some space between memsegs, they are
148                                  * not IOVA contiguous, so they shouldn't be VA
149                                  * contiguous either.
150                                  */
151                                 if (!empty)
152                                         ms_idx++;
153
154                                 break;
155                         }
156                         if (msl_idx == RTE_MAX_MEMSEG_LISTS) {
157                                 RTE_LOG(ERR, EAL, "Could not find space for memseg. Please increase %s and/or %s in configuration.\n",
158                                         RTE_STR(CONFIG_RTE_MAX_MEMSEG_PER_TYPE),
159                                         RTE_STR(CONFIG_RTE_MAX_MEM_PER_TYPE));
160                                 return -1;
161                         }
162                         arr = &msl->memseg_arr;
163                         seg = rte_fbarray_get(arr, ms_idx);
164
165                         addr = RTE_PTR_ADD(msl->base_va,
166                                         (size_t)msl->page_sz * ms_idx);
167
168                         /* address is already mapped in memseg list, so using
169                          * MAP_FIXED here is safe.
170                          */
171                         addr = mmap(addr, page_sz, PROT_READ|PROT_WRITE,
172                                         MAP_SHARED | MAP_FIXED,
173                                         hpi->lock_descriptor,
174                                         j * EAL_PAGE_SIZE);
175                         if (addr == MAP_FAILED) {
176                                 RTE_LOG(ERR, EAL, "Failed to mmap buffer %u from %s\n",
177                                                 j, hpi->hugedir);
178                                 return -1;
179                         }
180
181                         snprintf(physaddr_str, sizeof(physaddr_str), "hw.contigmem"
182                                         ".physaddr.%d", j);
183                         error = sysctlbyname(physaddr_str, &physaddr, &sysctl_size,
184                                         NULL, 0);
185                         if (error < 0) {
186                                 RTE_LOG(ERR, EAL, "Failed to get physical addr for buffer %u "
187                                                 "from %s\n", j, hpi->hugedir);
188                                 return -1;
189                         }
190
191                         seg->addr = addr;
192                         seg->iova = physaddr;
193                         seg->hugepage_sz = page_sz;
194                         seg->len = page_sz;
195                         seg->nchannel = mcfg->nchannel;
196                         seg->nrank = mcfg->nrank;
197                         seg->socket_id = 0;
198
199                         rte_fbarray_set_used(arr, ms_idx);
200
201                         RTE_LOG(INFO, EAL, "Mapped memory segment %u @ %p: physaddr:0x%"
202                                         PRIx64", len %zu\n",
203                                         seg_idx, addr, physaddr, page_sz);
204
205                         total_mem += seg->len;
206                 }
207                 if (total_mem >= internal_config.memory)
208                         break;
209         }
210         if (total_mem < internal_config.memory) {
211                 RTE_LOG(ERR, EAL, "Couldn't reserve requested memory, "
212                                 "requested: %" PRIu64 "M "
213                                 "available: %" PRIu64 "M\n",
214                                 internal_config.memory >> 20, total_mem >> 20);
215                 return -1;
216         }
217         return 0;
218 }
219
220 struct attach_walk_args {
221         int fd_hugepage;
222         int seg_idx;
223 };
224 static int
225 attach_segment(const struct rte_memseg_list *msl __rte_unused,
226                 const struct rte_memseg *ms, void *arg)
227 {
228         struct attach_walk_args *wa = arg;
229         void *addr;
230
231         addr = mmap(ms->addr, ms->len, PROT_READ | PROT_WRITE,
232                         MAP_SHARED | MAP_FIXED, wa->fd_hugepage,
233                         wa->seg_idx * EAL_PAGE_SIZE);
234         if (addr == MAP_FAILED || addr != ms->addr)
235                 return -1;
236         wa->seg_idx++;
237
238         return 0;
239 }
240
241 int
242 rte_eal_hugepage_attach(void)
243 {
244         const struct hugepage_info *hpi;
245         int fd_hugepage = -1;
246         unsigned int i;
247
248         hpi = &internal_config.hugepage_info[0];
249
250         for (i = 0; i < internal_config.num_hugepage_sizes; i++) {
251                 const struct hugepage_info *cur_hpi = &hpi[i];
252                 struct attach_walk_args wa;
253
254                 memset(&wa, 0, sizeof(wa));
255
256                 /* Obtain a file descriptor for contiguous memory */
257                 fd_hugepage = open(cur_hpi->hugedir, O_RDWR);
258                 if (fd_hugepage < 0) {
259                         RTE_LOG(ERR, EAL, "Could not open %s\n",
260                                         cur_hpi->hugedir);
261                         goto error;
262                 }
263                 wa.fd_hugepage = fd_hugepage;
264                 wa.seg_idx = 0;
265
266                 /* Map the contiguous memory into each memory segment */
267                 if (rte_memseg_walk(attach_segment, &wa) < 0) {
268                         RTE_LOG(ERR, EAL, "Failed to mmap buffer %u from %s\n",
269                                 wa.seg_idx, cur_hpi->hugedir);
270                         goto error;
271                 }
272
273                 close(fd_hugepage);
274                 fd_hugepage = -1;
275         }
276
277         /* hugepage_info is no longer required */
278         return 0;
279
280 error:
281         if (fd_hugepage >= 0)
282                 close(fd_hugepage);
283         return -1;
284 }
285
286 int
287 rte_eal_using_phys_addrs(void)
288 {
289         return 0;
290 }