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1018 decky 1
/*
2071 jermar 2
 * Copyright (c) 2005 Martin Decky
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 * Copyright (c) 2006 Jakub Jermar
1018 decky 4
 * All rights reserved.
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 *
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 * Redistribution and use in source and binary forms, with or without
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 * modification, are permitted provided that the following conditions
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 * are met:
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 *
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 * - Redistributions of source code must retain the above copyright
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 *   notice, this list of conditions and the following disclaimer.
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 * - Redistributions in binary form must reproduce the above copyright
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 *   notice, this list of conditions and the following disclaimer in the
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 *   documentation and/or other materials provided with the distribution.
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 * - The name of the author may not be used to endorse or promote products
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 *   derived from this software without specific prior written permission.
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 *
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 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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 */
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#include "main.h" 
1764 jermar 31
#include <printf.h>
1018 decky 32
#include "asm.h"
1685 decky 33
#include "_components.h"
1894 jermar 34
#include <balloc.h>
1782 jermar 35
#include <ofw.h>
1894 jermar 36
#include <ofw_tree.h>
1837 jermar 37
#include "ofwarch.h"
1789 jermar 38
#include <align.h>
3492 rimsky 39
#include <string.h>
1018 decky 40
 
1782 jermar 41
bootinfo_t bootinfo;
3582 rimsky 42
 
43
/** UltraSPARC subarchitecture - 1 for US, 3 for US3 */
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uint8_t subarchitecture;
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1972 jermar 46
component_t components[COMPONENTS];
1782 jermar 47
 
1997 decky 48
char *release = RELEASE;
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50
#ifdef REVISION
51
    char *revision = ", revision " REVISION;
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#else
53
    char *revision = "";
54
#endif
55
 
56
#ifdef TIMESTAMP
57
    char *timestamp = "\nBuilt on " TIMESTAMP;
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#else
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    char *timestamp = "";
60
#endif
61
 
62
/** Print version information. */
63
static void version_print(void)
64
{
3397 rimsky 65
    printf("HelenOS SPARC64 Bootloader\nRelease %s%s%s\n"
66
        "Copyright (c) 2006 HelenOS project\n",
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        release, revision, timestamp);
1997 decky 68
}
69
 
3582 rimsky 70
#define FIRST_US3_CPU 0x14
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#define LAST_US3_CPU 0x19
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static void detect_subarchitecture(void)
73
{
74
    uint64_t v;
75
    asm volatile ("rdpr %%ver, %0\n" : "=r" (v));
76
 
77
    v = (v << 16) >> 48;
78
    if ((v >= FIRST_US3_CPU) && (v <= LAST_US3_CPU)) {
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        subarchitecture = SUBARCH_US3;
80
    } else if (v < FIRST_US3_CPU) {
81
        subarchitecture = SUBARCH_US;
82
    }
83
}
84
 
1018 decky 85
void bootstrap(void)
86
{
3492 rimsky 87
    void *base = (void *) KERNEL_VIRTUAL_ADDRESS;
88
    void *balloc_base;
89
    unsigned int top = 0;
90
    int i, j;
91
 
1997 decky 92
    version_print();
1972 jermar 93
 
3582 rimsky 94
    detect_subarchitecture();
1685 decky 95
    init_components(components);
1782 jermar 96
 
1978 jermar 97
    if (!ofw_get_physmem_start(&bootinfo.physmem_start)) {
98
        printf("Error: unable to get start of physical memory.\n");
99
        halt();
100
    }
101
 
1789 jermar 102
    if (!ofw_memmap(&bootinfo.memmap)) {
103
        printf("Error: unable to get memory map, halting.\n");
104
        halt();
105
    }
3502 rimsky 106
 
1789 jermar 107
    if (bootinfo.memmap.total == 0) {
108
        printf("Error: no memory detected, halting.\n");
109
        halt();
110
    }
3397 rimsky 111
 
112
    /*
113
     * SILO for some reason adds 0x400000 and subtracts
114
     * bootinfo.physmem_start to/from silo_ramdisk_image.
115
     * We just need plain physical address so we fix it up.
116
     */
117
    if (silo_ramdisk_image) {
118
        silo_ramdisk_image += bootinfo.physmem_start;
119
        silo_ramdisk_image -= 0x400000;
3492 rimsky 120
        /* Install 1:1 mapping for the ramdisk. */
121
        if (ofw_map((void *)((uintptr_t)silo_ramdisk_image),
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            (void *)((uintptr_t)silo_ramdisk_image),
123
            silo_ramdisk_size, -1) != 0) {
124
            printf("Failed to map ramdisk.\n");
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            halt();
126
        }
3397 rimsky 127
    }
1789 jermar 128
 
1899 jermar 129
    printf("\nSystem info\n");
1978 jermar 130
    printf(" memory: %dM starting at %P\n",
3397 rimsky 131
        bootinfo.memmap.total >> 20, bootinfo.physmem_start);
1789 jermar 132
 
1685 decky 133
    printf("\nMemory statistics\n");
1789 jermar 134
    printf(" kernel entry point at %P\n", KERNEL_VIRTUAL_ADDRESS);
135
    printf(" %P: boot info structure\n", &bootinfo);
1685 decky 136
 
3492 rimsky 137
    /*
138
     * Figure out destination address for each component.
139
     * In this phase, we don't copy the components yet because we want to
140
     * to be careful not to overwrite anything, especially the components
141
     * which haven't been copied yet.
142
     */
143
    bootinfo.taskmap.count = 0;
144
    for (i = 0; i < COMPONENTS; i++) {
1978 jermar 145
        printf(" %P: %s image (size %d bytes)\n", components[i].start,
2250 jermar 146
            components[i].name, components[i].size);
3492 rimsky 147
        top = ALIGN_UP(top, PAGE_SIZE);
148
        if (i > 0) {
149
            if (bootinfo.taskmap.count == TASKMAP_MAX_RECORDS) {
150
                printf("Skipping superfluous components.\n");
151
                break;
152
            }
153
            bootinfo.taskmap.tasks[bootinfo.taskmap.count].addr =
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                base + top;
155
            bootinfo.taskmap.tasks[bootinfo.taskmap.count].size =
156
                components[i].size;
157
            bootinfo.taskmap.count++;
158
        }
159
        top += components[i].size;
160
    }
1782 jermar 161
 
3492 rimsky 162
    j = bootinfo.taskmap.count - 1; /* do not consider ramdisk */
1894 jermar 163
 
3492 rimsky 164
    if (silo_ramdisk_image) {
165
        /* Treat the ramdisk as the last bootinfo task. */
166
        if (bootinfo.taskmap.count == TASKMAP_MAX_RECORDS) {
167
            printf("Skipping ramdisk.\n");
168
            goto skip_ramdisk;
169
        }
1685 decky 170
        top = ALIGN_UP(top, PAGE_SIZE);
3492 rimsky 171
        bootinfo.taskmap.tasks[bootinfo.taskmap.count].addr =
172
            base + top;
173
        bootinfo.taskmap.tasks[bootinfo.taskmap.count].size =
174
            silo_ramdisk_size;
175
        bootinfo.taskmap.count++;
176
        printf("\nCopying ramdisk...");
177
        /*
178
         * Claim and map the whole ramdisk as it may exceed the area
179
         * given to us by SILO.
180
         */
181
        (void) ofw_claim_phys(base + top, silo_ramdisk_size);
182
        (void) ofw_map(base + top, base + top, silo_ramdisk_size, -1);
183
        memmove(base + top, (void *)((uintptr_t)silo_ramdisk_image),
184
            silo_ramdisk_size);
185
        printf("done.\n");
186
        top += silo_ramdisk_size;
187
    }
188
skip_ramdisk:
2250 jermar 189
 
3492 rimsky 190
    /*
191
     * Now we can proceed to copy the components. We do it in reverse order
192
     * so that we don't overwrite anything even if the components overlap
193
     * with base.
194
     */
195
    printf("\nCopying bootinfo tasks\n");
196
    for (i = COMPONENTS - 1; i > 0; i--, j--) {
197
        printf(" %s...", components[i].name);
198
 
2250 jermar 199
        /*
200
         * At this point, we claim the physical memory that we are
201
         * going to use. We should be safe in case of the virtual
202
         * address space because the OpenFirmware, according to its
203
         * SPARC binding, should restrict its use of virtual memory
204
         * to addresses from [0xffd00000; 0xffefffff] and
205
         * [0xfe000000; 0xfeffffff].
3492 rimsky 206
         *
207
         * XXX We don't map this piece of memory. We simply rely on
208
         *     SILO to have it done for us already in this case.
2250 jermar 209
         */
3492 rimsky 210
        (void) ofw_claim_phys(bootinfo.physmem_start +
211
            bootinfo.taskmap.tasks[j].addr,
2250 jermar 212
            ALIGN_UP(components[i].size, PAGE_SIZE));
213
 
3492 rimsky 214
        memcpy((void *)bootinfo.taskmap.tasks[j].addr,
215
            components[i].start, components[i].size);
1685 decky 216
        printf("done.\n");
1018 decky 217
    }
1782 jermar 218
 
3492 rimsky 219
    printf("\nCopying kernel...");
220
    (void) ofw_claim_phys(bootinfo.physmem_start + base,
221
        ALIGN_UP(components[0].size, PAGE_SIZE));
222
    memcpy(base, components[0].start, components[0].size);
223
    printf("done.\n");
224
 
2250 jermar 225
    /*
3492 rimsky 226
     * Claim and map the physical memory for the boot allocator.
2250 jermar 227
     * Initialize the boot allocator.
228
     */
3492 rimsky 229
    balloc_base = base + ALIGN_UP(top, PAGE_SIZE);
230
    (void) ofw_claim_phys(bootinfo.physmem_start + balloc_base,
231
        BALLOC_MAX_SIZE);
232
    (void) ofw_map(balloc_base, balloc_base, BALLOC_MAX_SIZE, -1);
233
    balloc_init(&bootinfo.ballocs, (uintptr_t)balloc_base);
1894 jermar 234
 
235
    printf("\nCanonizing OpenFirmware device tree...");
236
    bootinfo.ofw_root = ofw_tree_build();
237
    printf("done.\n");
238
 
1979 jermar 239
#ifdef CONFIG_SMP
1899 jermar 240
    printf("\nChecking for secondary processors...");
241
    if (!ofw_cpu())
1978 jermar 242
        printf("Error: unable to get CPU properties\n");
1899 jermar 243
    printf("done.\n");
1979 jermar 244
#endif
1899 jermar 245
 
1018 decky 246
    printf("\nBooting the kernel...\n");
1978 jermar 247
    jump_to_kernel((void *) KERNEL_VIRTUAL_ADDRESS,
2250 jermar 248
        bootinfo.physmem_start | BSP_PROCESSOR, &bootinfo,
249
        sizeof(bootinfo));
1018 decky 250
}
2250 jermar 251