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1 jermar 1
/*
34 jermar 2
 * Copyright (C) 2001-2005 Jakub Jermar
1 jermar 3
 * All rights reserved.
4
 *
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
7
 * are met:
8
 *
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
13
 *   documentation and/or other materials provided with the distribution.
14
 * - The name of the author may not be used to endorse or promote products
15
 *   derived from this software without specific prior written permission.
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
28
 
29
#ifdef __SMP__
30
 
31
#include <config.h>
32
#include <print.h>
128 jermar 33
#include <debug.h>
34 jermar 34
#include <arch/smp/mps.h>
11 jermar 35
#include <arch/smp/apic.h>
128 jermar 36
#include <arch/smp/smp.h>
1 jermar 37
#include <func.h>
38
#include <arch/types.h>
39
#include <typedefs.h>
40
#include <cpu.h>
41
#include <arch/asm.h>
30 jermar 42
#include <arch/bios/bios.h>
195 vana 43
#include <mm/frame.h>
1 jermar 44
 
45
/*
34 jermar 46
 * MultiProcessor Specification detection code.
1 jermar 47
 */
48
 
49
#define FS_SIGNATURE    0x5f504d5f
50
#define CT_SIGNATURE    0x504d4350
51
 
34 jermar 52
int mps_fs_check(__u8 *base);
53
int mps_ct_check(void);
1 jermar 54
 
55
int configure_via_ct(void);
56
int configure_via_default(__u8 n);
57
 
58
int ct_processor_entry(struct __processor_entry *pr);
59
void ct_bus_entry(struct __bus_entry *bus);
60
void ct_io_apic_entry(struct __io_apic_entry *ioa);
61
void ct_io_intr_entry(struct __io_intr_entry *iointr);
62
void ct_l_intr_entry(struct __l_intr_entry *lintr);
63
 
64
void ct_extended_entries(void);
65
 
34 jermar 66
static struct mps_fs *fs;
67
static struct mps_ct *ct;
1 jermar 68
 
69
struct __processor_entry *processor_entries = NULL;
70
struct __bus_entry *bus_entries = NULL;
71
struct __io_apic_entry *io_apic_entries = NULL;
72
struct __io_intr_entry *io_intr_entries = NULL;
73
struct __l_intr_entry *l_intr_entries = NULL;
74
 
75
int processor_entry_cnt = 0;
76
int bus_entry_cnt = 0;
77
int io_apic_entry_cnt = 0;
78
int io_intr_entry_cnt = 0;
79
int l_intr_entry_cnt = 0;
80
 
81
waitq_t ap_completion_wq;
82
waitq_t kmp_completion_wq;
83
 
128 jermar 84
 
1 jermar 85
/*
128 jermar 86
 * Implementation of IA-32 SMP configuration interface.
87
 */
88
static count_t get_cpu_count(void);
89
static bool is_cpu_enabled(index_t i);
90
static bool is_bsp(index_t i);
91
static __u8 get_cpu_apic_id(index_t i);
92
 
93
struct smp_config_operations mps_config_operations = {
94
    .cpu_count = get_cpu_count,
95
    .cpu_enabled = is_cpu_enabled,
96
    .cpu_bootstrap = is_bsp,
97
    .cpu_apic_id = get_cpu_apic_id
98
};
99
 
100
count_t get_cpu_count(void)
101
{
102
    return processor_entry_cnt;
103
}
104
 
105
bool is_cpu_enabled(index_t i)
106
{
107
    ASSERT(i < processor_entry_cnt);
108
    return processor_entries[i].cpu_flags & 0x1;
109
}
110
 
111
bool is_bsp(index_t i)
112
{
113
    ASSERT(i < processor_entry_cnt);
114
    return processor_entries[i].cpu_flags & 0x2;
115
}
116
 
117
__u8 get_cpu_apic_id(index_t i)
118
{
119
    ASSERT(i < processor_entry_cnt);
120
    return processor_entries[i].l_apic_id;
121
}
122
 
123
 
124
/*
1 jermar 125
 * Used to check the integrity of the MP Floating Structure.
126
 */
34 jermar 127
int mps_fs_check(__u8 *base)
1 jermar 128
{
129
    int i;
130
    __u8 sum;
131
 
132
    for (i = 0, sum = 0; i < 16; i++)
133
        sum += base[i];
134
 
135
    return !sum;
136
}
137
 
138
/*
139
 * Used to check the integrity of the MP Configuration Table.
140
 */
34 jermar 141
int mps_ct_check(void)
1 jermar 142
{
143
    __u8 *base = (__u8 *) ct;
144
    __u8 *ext = base + ct->base_table_length;
145
    __u8 sum;
146
    int i; 
147
 
148
    /* count the checksum for the base table */
149
    for (i=0,sum=0; i < ct->base_table_length; i++)
150
        sum += base[i];
151
 
152
    if (sum)
153
        return 0;
154
 
155
    /* count the checksum for the extended table */
156
    for (i=0,sum=0; i < ct->ext_table_length; i++)
157
        sum += ext[i];
158
 
12 jermar 159
    return sum == ct->ext_table_checksum;
1 jermar 160
}
161
 
34 jermar 162
void mps_init(void)
1 jermar 163
{
32 jermar 164
    __u8 *addr[2] = { NULL, (__u8 *) 0xf0000 };
165
    int i, j, length[2] = { 1024, 64*1024 };
1 jermar 166
 
167
 
168
    /*
32 jermar 169
     * Find MP Floating Pointer Structure
170
     * 1a. search first 1K of EBDA
171
     * 1b. if EBDA is undefined, search last 1K of base memory
172
     *  2. search 64K starting at 0xf0000
1 jermar 173
     */
32 jermar 174
 
175
    addr[0] = (__u8 *) (ebda ? ebda : 639 * 1024);
176
    for (i = 0; i < 2; i++) {
177
        for (j = 0; j < length[i]; j += 16) {
34 jermar 178
            if (*((__u32 *) &addr[i][j]) == FS_SIGNATURE && mps_fs_check(&addr[i][j])) {
179
                fs = (struct mps_fs *) &addr[i][j];
1 jermar 180
                goto fs_found;
32 jermar 181
            }
1 jermar 182
        }
183
    }
184
 
185
    return;
186
 
187
fs_found:
34 jermar 188
    printf("%L: MPS Floating Pointer Structure\n", fs);
1 jermar 189
 
190
    frame_not_free((__address) fs);
32 jermar 191
 
1 jermar 192
    if (fs->config_type == 0 && fs->configuration_table) {
193
        if (fs->mpfib2 >> 7) {
110 jermar 194
            printf("%s: PIC mode not supported\n", __FUNCTION__);
1 jermar 195
            return;
196
        }
197
 
198
        ct = fs->configuration_table;
199
        frame_not_free((__address) ct);
200
        config.cpu_count = configure_via_ct();
201
    }
202
    else
203
        config.cpu_count = configure_via_default(fs->config_type);
204
 
205
    return;
206
}
207
 
208
int configure_via_ct(void)
209
{
210
    __u8 *cur;
211
    int i, cnt;
212
 
213
    if (ct->signature != CT_SIGNATURE) {
110 jermar 214
        printf("%s: bad ct->signature\n", __FUNCTION__);
1 jermar 215
        return 1;
216
    }
34 jermar 217
    if (!mps_ct_check()) {
110 jermar 218
        printf("%s: bad ct checksum\n", __FUNCTION__);
1 jermar 219
        return 1;
220
    }
221
    if (ct->oem_table) {
110 jermar 222
        printf("%s: ct->oem_table not supported\n", __FUNCTION__);
1 jermar 223
        return 1;
224
    }
225
 
226
    l_apic = ct->l_apic;
227
 
228
    cnt = 0;
229
    cur = &ct->base_table[0];
230
    for (i=0; i < ct->entry_count; i++) {
231
        switch (*cur) {
232
            /* Processor entry */
233
            case 0:
234
                processor_entries = processor_entries ? processor_entries : (struct __processor_entry *) cur;
235
                processor_entry_cnt++;
236
                cnt += ct_processor_entry((struct __processor_entry *) cur);
237
                cur += 20;
238
                break;
239
 
240
            /* Bus entry */
241
            case 1:
242
                bus_entries = bus_entries ? bus_entries : (struct __bus_entry *) cur;
243
                bus_entry_cnt++;
244
                ct_bus_entry((struct __bus_entry *) cur);
245
                cur += 8;
246
                break;
247
 
248
            /* I/O Apic */
249
            case 2:
250
                io_apic_entries = io_apic_entries ? io_apic_entries : (struct __io_apic_entry *) cur;
251
                io_apic_entry_cnt++;
252
                ct_io_apic_entry((struct __io_apic_entry *) cur);
253
                cur += 8;
254
                break;
255
 
256
            /* I/O Interrupt Assignment */
257
            case 3:
258
                io_intr_entries = io_intr_entries ? io_intr_entries : (struct __io_intr_entry *) cur;
259
                io_intr_entry_cnt++;
260
                ct_io_intr_entry((struct __io_intr_entry *) cur);
261
                cur += 8;
262
                break;
263
 
264
            /* Local Interrupt Assignment */
265
            case 4:
266
                l_intr_entries = l_intr_entries ? l_intr_entries : (struct __l_intr_entry *) cur;
267
                l_intr_entry_cnt++;
268
                ct_l_intr_entry((struct __l_intr_entry *) cur);
125 jermar 269
                cur += 8;
1 jermar 270
                break;
125 jermar 271
 
1 jermar 272
            default:
273
                /*
274
                 * Something is wrong. Fallback to UP mode.
275
                 */
276
 
110 jermar 277
                printf("%s: ct badness\n", __FUNCTION__);
1 jermar 278
                return 1;
279
        }
280
    }
281
 
282
    /*
283
     * Process extended entries.
284
     */
285
    ct_extended_entries();
286
    return cnt;
287
}
288
 
289
int configure_via_default(__u8 n)
290
{
291
    /*
292
     * Not yet implemented.
293
     */
110 jermar 294
    printf("%s: not supported\n", __FUNCTION__);
1 jermar 295
    return 1;
296
}
297
 
298
 
299
int ct_processor_entry(struct __processor_entry *pr)
300
{
301
    /*
302
     * Ignore processors which are not marked enabled.
303
     */
304
    if ((pr->cpu_flags & (1<<0)) == 0)
305
        return 0;
306
 
307
    apic_id_mask |= (1<<pr->l_apic_id);
308
    return 1;
309
}
310
 
311
void ct_bus_entry(struct __bus_entry *bus)
312
{
34 jermar 313
#ifdef MPSCT_VERBOSE
1 jermar 314
    char buf[7];
205 jermar 315
    memcpy((void *) buf, (void *) bus->bus_type, 6);
1 jermar 316
    buf[6] = 0;
317
    printf("bus%d: %s\n", bus->bus_id, buf);
318
#endif
319
}
320
 
321
void ct_io_apic_entry(struct __io_apic_entry *ioa)
322
{
323
    static int io_apic_count = 0;
324
 
325
    /* this ioapic is marked unusable */
326
    if (ioa->io_apic_flags & 1 == 0)
327
        return;
328
 
329
    if (io_apic_count++ > 0) {
330
        /*
331
         * Multiple IO APIC's are currently not supported.
332
         */
333
        return;
334
    }
335
 
336
    io_apic = ioa->io_apic;
337
}
338
 
34 jermar 339
//#define MPSCT_VERBOSE
1 jermar 340
void ct_io_intr_entry(struct __io_intr_entry *iointr)
341
{
34 jermar 342
#ifdef MPSCT_VERBOSE
1 jermar 343
    switch (iointr->intr_type) {
344
        case 0: printf("INT"); break;
345
        case 1: printf("NMI"); break;
346
        case 2: printf("SMI"); break;
347
        case 3: printf("ExtINT"); break;
348
    }
349
    putchar(',');
350
    switch (iointr->poel&3) {
351
        case 0: printf("bus-like"); break;
352
        case 1: printf("active high"); break;
353
        case 2: printf("reserved"); break;
354
        case 3: printf("active low"); break;
355
    }
356
    putchar(',');
357
    switch ((iointr->poel>>2)&3) {
358
        case 0: printf("bus-like"); break;
359
        case 1: printf("edge-triggered"); break;
360
        case 2: printf("reserved"); break;
361
        case 3: printf("level-triggered"); break;
362
    }
363
    putchar(',');
364
    printf("bus%d,irq%d", iointr->src_bus_id, iointr->src_bus_irq);
365
    putchar(',');
366
    printf("io_apic%d,pin%d", iointr->dst_io_apic_id, iointr->dst_io_apic_pin);
367
    putchar('\n'); 
368
#endif
369
}
370
 
371
void ct_l_intr_entry(struct __l_intr_entry *lintr)
372
{
34 jermar 373
#ifdef MPSCT_VERBOSE
1 jermar 374
    switch (lintr->intr_type) {
375
        case 0: printf("INT"); break;
376
        case 1: printf("NMI"); break;
377
        case 2: printf("SMI"); break;
378
        case 3: printf("ExtINT"); break;
379
    }
380
    putchar(',');
381
    switch (lintr->poel&3) {
382
        case 0: printf("bus-like"); break;
383
        case 1: printf("active high"); break;
384
        case 2: printf("reserved"); break;
385
        case 3: printf("active low"); break;
386
    }
387
    putchar(',');
388
    switch ((lintr->poel>>2)&3) {
389
        case 0: printf("bus-like"); break;
390
        case 1: printf("edge-triggered"); break;
391
        case 2: printf("reserved"); break;
392
        case 3: printf("level-triggered"); break;
393
    }
394
    putchar(',');
395
    printf("bus%d,irq%d", lintr->src_bus_id, lintr->src_bus_irq);
396
    putchar(',');
397
    printf("l_apic%d,pin%d", lintr->dst_l_apic_id, lintr->dst_l_apic_pin);
398
    putchar('\n');
399
#endif
400
}
401
 
402
void ct_extended_entries(void)
403
{
13 jermar 404
    __u8 *ext = (__u8 *) ct + ct->base_table_length;
405
    __u8 *cur;
406
 
407
    for (cur = ext; cur < ext + ct->ext_table_length; cur += cur[CT_EXT_ENTRY_LEN]) {
408
        switch (cur[CT_EXT_ENTRY_TYPE]) {
409
            default:
33 jermar 410
                printf("%L: skipping MP Configuration Table extended entry type %d\n", cur, cur[CT_EXT_ENTRY_TYPE]);
13 jermar 411
                break;
412
        }
413
    }
1 jermar 414
}
415
 
34 jermar 416
int mps_irq_to_pin(int irq)
1 jermar 417
{
418
    int i;
419
 
420
    for(i=0;i<io_intr_entry_cnt;i++) {
421
        if (io_intr_entries[i].src_bus_irq == irq && io_intr_entries[i].intr_type == 0)
422
            return io_intr_entries[i].dst_io_apic_pin;
423
    }
424
 
425
    return -1;
426
}
427
 
428
#endif /* __SMP__ */