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1
/*
2
 * QEMU Firmware configuration device emulation
3
 *
4
 * Copyright (c) 2008 Gleb Natapov
5
 *
6
 * Permission is hereby granted, free of charge, to any person obtaining a copy
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 * of this software and associated documentation files (the "Software"), to deal
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 * in the Software without restriction, including without limitation the rights
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 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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 * copies of the Software, and to permit persons to whom the Software is
11
 * furnished to do so, subject to the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included in
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 * all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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 * THE SOFTWARE.
23
 */
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#include "hw.h"
25
#include "sysemu.h"
26
#include "isa.h"
27
#include "fw_cfg.h"
28
#include "sysbus.h"
29
#include "qemu-error.h"
30

    
31
/* debug firmware config */
32
//#define DEBUG_FW_CFG
33

    
34
#ifdef DEBUG_FW_CFG
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#define FW_CFG_DPRINTF(fmt, ...)                        \
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    do { printf("FW_CFG: " fmt , ## __VA_ARGS__); } while (0)
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#else
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#define FW_CFG_DPRINTF(fmt, ...)
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#endif
40

    
41
#define FW_CFG_SIZE 2
42

    
43
typedef struct FWCfgEntry {
44
    uint32_t len;
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    uint8_t *data;
46
    void *callback_opaque;
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    FWCfgCallback callback;
48
} FWCfgEntry;
49

    
50
struct FWCfgState {
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    SysBusDevice busdev;
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    uint32_t ctl_iobase, data_iobase;
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    FWCfgEntry entries[2][FW_CFG_MAX_ENTRY];
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    FWCfgFiles *files;
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    uint16_t cur_entry;
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    uint32_t cur_offset;
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    Notifier machine_ready;
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};
59

    
60
#define JPG_FILE 0
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#define BMP_FILE 1
62

    
63
static char *read_splashfile(char *filename, int *file_sizep, int *file_typep)
64
{
65
    GError *err = NULL;
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    gboolean res;
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    gchar *content;
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    int file_type = -1;
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    unsigned int filehead = 0;
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    int bmp_bpp;
71

    
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    res = g_file_get_contents(filename, &content, (gsize *)file_sizep, &err);
73
    if (res == FALSE) {
74
        error_report("failed to read splash file '%s'", filename);
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        g_error_free(err);
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        return NULL;
77
    }
78

    
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    /* check file size */
80
    if (*file_sizep < 30) {
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        goto error;
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    }
83

    
84
    /* check magic ID */
85
    filehead = ((content[0] & 0xff) + (content[1] << 8)) & 0xffff;
86
    if (filehead == 0xd8ff) {
87
        file_type = JPG_FILE;
88
    } else if (filehead == 0x4d42) {
89
        file_type = BMP_FILE;
90
    } else {
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        goto error;
92
    }
93

    
94
    /* check BMP bpp */
95
    if (file_type == BMP_FILE) {
96
        bmp_bpp = (content[28] + (content[29] << 8)) & 0xffff;
97
        if (bmp_bpp != 24) {
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            goto error;
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        }
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    }
101

    
102
    /* return values */
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    *file_typep = file_type;
104

    
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    return content;
106

    
107
error:
108
    error_report("splash file '%s' format not recognized; must be JPEG "
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                 "or 24 bit BMP", filename);
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    g_free(content);
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    return NULL;
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}
113

    
114
static void fw_cfg_bootsplash(FWCfgState *s)
115
{
116
    int boot_splash_time = -1;
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    const char *boot_splash_filename = NULL;
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    char *p;
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    char *filename, *file_data;
120
    int file_size;
121
    int file_type = -1;
122
    const char *temp;
123

    
124
    /* get user configuration */
125
    QemuOptsList *plist = qemu_find_opts("boot-opts");
126
    QemuOpts *opts = QTAILQ_FIRST(&plist->head);
127
    if (opts != NULL) {
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        temp = qemu_opt_get(opts, "splash");
129
        if (temp != NULL) {
130
            boot_splash_filename = temp;
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        }
132
        temp = qemu_opt_get(opts, "splash-time");
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        if (temp != NULL) {
134
            p = (char *)temp;
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            boot_splash_time = strtol(p, (char **)&p, 10);
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        }
137
    }
138

    
139
    /* insert splash time if user configurated */
140
    if (boot_splash_time >= 0) {
141
        /* validate the input */
142
        if (boot_splash_time > 0xffff) {
143
            error_report("splash time is big than 65535, force it to 65535.");
144
            boot_splash_time = 0xffff;
145
        }
146
        /* use little endian format */
147
        qemu_extra_params_fw[0] = (uint8_t)(boot_splash_time & 0xff);
148
        qemu_extra_params_fw[1] = (uint8_t)((boot_splash_time >> 8) & 0xff);
149
        fw_cfg_add_file(s, "etc/boot-menu-wait", qemu_extra_params_fw, 2);
150
    }
151

    
152
    /* insert splash file if user configurated */
153
    if (boot_splash_filename != NULL) {
154
        filename = qemu_find_file(QEMU_FILE_TYPE_BIOS, boot_splash_filename);
155
        if (filename == NULL) {
156
            error_report("failed to find file '%s'.", boot_splash_filename);
157
            return;
158
        }
159

    
160
        /* loading file data */
161
        file_data = read_splashfile(filename, &file_size, &file_type);
162
        if (file_data == NULL) {
163
            g_free(filename);
164
            return;
165
        }
166
        if (boot_splash_filedata != NULL) {
167
            g_free(boot_splash_filedata);
168
        }
169
        boot_splash_filedata = (uint8_t *)file_data;
170
        boot_splash_filedata_size = file_size;
171

    
172
        /* insert data */
173
        if (file_type == JPG_FILE) {
174
            fw_cfg_add_file(s, "bootsplash.jpg",
175
                    boot_splash_filedata, boot_splash_filedata_size);
176
        } else {
177
            fw_cfg_add_file(s, "bootsplash.bmp",
178
                    boot_splash_filedata, boot_splash_filedata_size);
179
        }
180
        g_free(filename);
181
    }
182
}
183

    
184
static void fw_cfg_write(FWCfgState *s, uint8_t value)
185
{
186
    int arch = !!(s->cur_entry & FW_CFG_ARCH_LOCAL);
187
    FWCfgEntry *e = &s->entries[arch][s->cur_entry & FW_CFG_ENTRY_MASK];
188

    
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    FW_CFG_DPRINTF("write %d\n", value);
190

    
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    if (s->cur_entry & FW_CFG_WRITE_CHANNEL && e->callback &&
192
        s->cur_offset < e->len) {
193
        e->data[s->cur_offset++] = value;
194
        if (s->cur_offset == e->len) {
195
            e->callback(e->callback_opaque, e->data);
196
            s->cur_offset = 0;
197
        }
198
    }
199
}
200

    
201
static int fw_cfg_select(FWCfgState *s, uint16_t key)
202
{
203
    int ret;
204

    
205
    s->cur_offset = 0;
206
    if ((key & FW_CFG_ENTRY_MASK) >= FW_CFG_MAX_ENTRY) {
207
        s->cur_entry = FW_CFG_INVALID;
208
        ret = 0;
209
    } else {
210
        s->cur_entry = key;
211
        ret = 1;
212
    }
213

    
214
    FW_CFG_DPRINTF("select key %d (%sfound)\n", key, ret ? "" : "not ");
215

    
216
    return ret;
217
}
218

    
219
static uint8_t fw_cfg_read(FWCfgState *s)
220
{
221
    int arch = !!(s->cur_entry & FW_CFG_ARCH_LOCAL);
222
    FWCfgEntry *e = &s->entries[arch][s->cur_entry & FW_CFG_ENTRY_MASK];
223
    uint8_t ret;
224

    
225
    if (s->cur_entry == FW_CFG_INVALID || !e->data || s->cur_offset >= e->len)
226
        ret = 0;
227
    else
228
        ret = e->data[s->cur_offset++];
229

    
230
    FW_CFG_DPRINTF("read %d\n", ret);
231

    
232
    return ret;
233
}
234

    
235
static uint32_t fw_cfg_io_readb(void *opaque, uint32_t addr)
236
{
237
    return fw_cfg_read(opaque);
238
}
239

    
240
static void fw_cfg_io_writeb(void *opaque, uint32_t addr, uint32_t value)
241
{
242
    fw_cfg_write(opaque, (uint8_t)value);
243
}
244

    
245
static void fw_cfg_io_writew(void *opaque, uint32_t addr, uint32_t value)
246
{
247
    fw_cfg_select(opaque, (uint16_t)value);
248
}
249

    
250
static uint32_t fw_cfg_mem_readb(void *opaque, target_phys_addr_t addr)
251
{
252
    return fw_cfg_read(opaque);
253
}
254

    
255
static void fw_cfg_mem_writeb(void *opaque, target_phys_addr_t addr,
256
                              uint32_t value)
257
{
258
    fw_cfg_write(opaque, (uint8_t)value);
259
}
260

    
261
static void fw_cfg_mem_writew(void *opaque, target_phys_addr_t addr,
262
                              uint32_t value)
263
{
264
    fw_cfg_select(opaque, (uint16_t)value);
265
}
266

    
267
static CPUReadMemoryFunc * const fw_cfg_ctl_mem_read[3] = {
268
    NULL,
269
    NULL,
270
    NULL,
271
};
272

    
273
static CPUWriteMemoryFunc * const fw_cfg_ctl_mem_write[3] = {
274
    NULL,
275
    fw_cfg_mem_writew,
276
    NULL,
277
};
278

    
279
static CPUReadMemoryFunc * const fw_cfg_data_mem_read[3] = {
280
    fw_cfg_mem_readb,
281
    NULL,
282
    NULL,
283
};
284

    
285
static CPUWriteMemoryFunc * const fw_cfg_data_mem_write[3] = {
286
    fw_cfg_mem_writeb,
287
    NULL,
288
    NULL,
289
};
290

    
291
static void fw_cfg_reset(DeviceState *d)
292
{
293
    FWCfgState *s = DO_UPCAST(FWCfgState, busdev.qdev, d);
294

    
295
    fw_cfg_select(s, 0);
296
}
297

    
298
/* Save restore 32 bit int as uint16_t
299
   This is a Big hack, but it is how the old state did it.
300
   Or we broke compatibility in the state, or we can't use struct tm
301
 */
302

    
303
static int get_uint32_as_uint16(QEMUFile *f, void *pv, size_t size)
304
{
305
    uint32_t *v = pv;
306
    *v = qemu_get_be16(f);
307
    return 0;
308
}
309

    
310
static void put_unused(QEMUFile *f, void *pv, size_t size)
311
{
312
    fprintf(stderr, "uint32_as_uint16 is only used for backward compatibility.\n");
313
    fprintf(stderr, "This functions shouldn't be called.\n");
314
}
315

    
316
static const VMStateInfo vmstate_hack_uint32_as_uint16 = {
317
    .name = "int32_as_uint16",
318
    .get  = get_uint32_as_uint16,
319
    .put  = put_unused,
320
};
321

    
322
#define VMSTATE_UINT16_HACK(_f, _s, _t)                                    \
323
    VMSTATE_SINGLE_TEST(_f, _s, _t, 0, vmstate_hack_uint32_as_uint16, uint32_t)
324

    
325

    
326
static bool is_version_1(void *opaque, int version_id)
327
{
328
    return version_id == 1;
329
}
330

    
331
static const VMStateDescription vmstate_fw_cfg = {
332
    .name = "fw_cfg",
333
    .version_id = 2,
334
    .minimum_version_id = 1,
335
    .minimum_version_id_old = 1,
336
    .fields      = (VMStateField []) {
337
        VMSTATE_UINT16(cur_entry, FWCfgState),
338
        VMSTATE_UINT16_HACK(cur_offset, FWCfgState, is_version_1),
339
        VMSTATE_UINT32_V(cur_offset, FWCfgState, 2),
340
        VMSTATE_END_OF_LIST()
341
    }
342
};
343

    
344
int fw_cfg_add_bytes(FWCfgState *s, uint16_t key, uint8_t *data, uint32_t len)
345
{
346
    int arch = !!(key & FW_CFG_ARCH_LOCAL);
347

    
348
    key &= FW_CFG_ENTRY_MASK;
349

    
350
    if (key >= FW_CFG_MAX_ENTRY)
351
        return 0;
352

    
353
    s->entries[arch][key].data = data;
354
    s->entries[arch][key].len = len;
355

    
356
    return 1;
357
}
358

    
359
int fw_cfg_add_i16(FWCfgState *s, uint16_t key, uint16_t value)
360
{
361
    uint16_t *copy;
362

    
363
    copy = g_malloc(sizeof(value));
364
    *copy = cpu_to_le16(value);
365
    return fw_cfg_add_bytes(s, key, (uint8_t *)copy, sizeof(value));
366
}
367

    
368
int fw_cfg_add_i32(FWCfgState *s, uint16_t key, uint32_t value)
369
{
370
    uint32_t *copy;
371

    
372
    copy = g_malloc(sizeof(value));
373
    *copy = cpu_to_le32(value);
374
    return fw_cfg_add_bytes(s, key, (uint8_t *)copy, sizeof(value));
375
}
376

    
377
int fw_cfg_add_i64(FWCfgState *s, uint16_t key, uint64_t value)
378
{
379
    uint64_t *copy;
380

    
381
    copy = g_malloc(sizeof(value));
382
    *copy = cpu_to_le64(value);
383
    return fw_cfg_add_bytes(s, key, (uint8_t *)copy, sizeof(value));
384
}
385

    
386
int fw_cfg_add_callback(FWCfgState *s, uint16_t key, FWCfgCallback callback,
387
                        void *callback_opaque, uint8_t *data, size_t len)
388
{
389
    int arch = !!(key & FW_CFG_ARCH_LOCAL);
390

    
391
    if (!(key & FW_CFG_WRITE_CHANNEL))
392
        return 0;
393

    
394
    key &= FW_CFG_ENTRY_MASK;
395

    
396
    if (key >= FW_CFG_MAX_ENTRY || len > 65535)
397
        return 0;
398

    
399
    s->entries[arch][key].data = data;
400
    s->entries[arch][key].len = len;
401
    s->entries[arch][key].callback_opaque = callback_opaque;
402
    s->entries[arch][key].callback = callback;
403

    
404
    return 1;
405
}
406

    
407
int fw_cfg_add_file(FWCfgState *s,  const char *filename, uint8_t *data,
408
                    uint32_t len)
409
{
410
    int i, index;
411

    
412
    if (!s->files) {
413
        int dsize = sizeof(uint32_t) + sizeof(FWCfgFile) * FW_CFG_FILE_SLOTS;
414
        s->files = g_malloc0(dsize);
415
        fw_cfg_add_bytes(s, FW_CFG_FILE_DIR, (uint8_t*)s->files, dsize);
416
    }
417

    
418
    index = be32_to_cpu(s->files->count);
419
    if (index == FW_CFG_FILE_SLOTS) {
420
        fprintf(stderr, "fw_cfg: out of file slots\n");
421
        return 0;
422
    }
423

    
424
    fw_cfg_add_bytes(s, FW_CFG_FILE_FIRST + index, data, len);
425

    
426
    pstrcpy(s->files->f[index].name, sizeof(s->files->f[index].name),
427
            filename);
428
    for (i = 0; i < index; i++) {
429
        if (strcmp(s->files->f[index].name, s->files->f[i].name) == 0) {
430
            FW_CFG_DPRINTF("%s: skip duplicate: %s\n", __FUNCTION__,
431
                           s->files->f[index].name);
432
            return 1;
433
        }
434
    }
435

    
436
    s->files->f[index].size   = cpu_to_be32(len);
437
    s->files->f[index].select = cpu_to_be16(FW_CFG_FILE_FIRST + index);
438
    FW_CFG_DPRINTF("%s: #%d: %s (%d bytes)\n", __FUNCTION__,
439
                   index, s->files->f[index].name, len);
440

    
441
    s->files->count = cpu_to_be32(index+1);
442
    return 1;
443
}
444

    
445
static void fw_cfg_machine_ready(struct Notifier *n, void *data)
446
{
447
    uint32_t len;
448
    FWCfgState *s = container_of(n, FWCfgState, machine_ready);
449
    char *bootindex = get_boot_devices_list(&len);
450

    
451
    fw_cfg_add_file(s, "bootorder", (uint8_t*)bootindex, len);
452
}
453

    
454
FWCfgState *fw_cfg_init(uint32_t ctl_port, uint32_t data_port,
455
                        target_phys_addr_t ctl_addr, target_phys_addr_t data_addr)
456
{
457
    DeviceState *dev;
458
    SysBusDevice *d;
459
    FWCfgState *s;
460

    
461
    dev = qdev_create(NULL, "fw_cfg");
462
    qdev_prop_set_uint32(dev, "ctl_iobase", ctl_port);
463
    qdev_prop_set_uint32(dev, "data_iobase", data_port);
464
    qdev_init_nofail(dev);
465
    d = sysbus_from_qdev(dev);
466

    
467
    s = DO_UPCAST(FWCfgState, busdev.qdev, dev);
468

    
469
    if (ctl_addr) {
470
        sysbus_mmio_map(d, 0, ctl_addr);
471
    }
472
    if (data_addr) {
473
        sysbus_mmio_map(d, 1, data_addr);
474
    }
475
    fw_cfg_add_bytes(s, FW_CFG_SIGNATURE, (uint8_t *)"QEMU", 4);
476
    fw_cfg_add_bytes(s, FW_CFG_UUID, qemu_uuid, 16);
477
    fw_cfg_add_i16(s, FW_CFG_NOGRAPHIC, (uint16_t)(display_type == DT_NOGRAPHIC));
478
    fw_cfg_add_i16(s, FW_CFG_NB_CPUS, (uint16_t)smp_cpus);
479
    fw_cfg_add_i16(s, FW_CFG_MAX_CPUS, (uint16_t)max_cpus);
480
    fw_cfg_add_i16(s, FW_CFG_BOOT_MENU, (uint16_t)boot_menu);
481
    fw_cfg_bootsplash(s);
482

    
483
    s->machine_ready.notify = fw_cfg_machine_ready;
484
    qemu_add_machine_init_done_notifier(&s->machine_ready);
485

    
486
    return s;
487
}
488

    
489
static int fw_cfg_init1(SysBusDevice *dev)
490
{
491
    FWCfgState *s = FROM_SYSBUS(FWCfgState, dev);
492
    int io_ctl_memory, io_data_memory;
493

    
494
    io_ctl_memory = cpu_register_io_memory(fw_cfg_ctl_mem_read,
495
                                           fw_cfg_ctl_mem_write, s,
496
                                           DEVICE_NATIVE_ENDIAN);
497
    sysbus_init_mmio(dev, FW_CFG_SIZE, io_ctl_memory);
498

    
499
    io_data_memory = cpu_register_io_memory(fw_cfg_data_mem_read,
500
                                            fw_cfg_data_mem_write, s,
501
                                            DEVICE_NATIVE_ENDIAN);
502
    sysbus_init_mmio(dev, FW_CFG_SIZE, io_data_memory);
503

    
504
    if (s->ctl_iobase) {
505
        register_ioport_write(s->ctl_iobase, 2, 2, fw_cfg_io_writew, s);
506
    }
507
    if (s->data_iobase) {
508
        register_ioport_read(s->data_iobase, 1, 1, fw_cfg_io_readb, s);
509
        register_ioport_write(s->data_iobase, 1, 1, fw_cfg_io_writeb, s);
510
    }
511
    return 0;
512
}
513

    
514
static SysBusDeviceInfo fw_cfg_info = {
515
    .init = fw_cfg_init1,
516
    .qdev.name = "fw_cfg",
517
    .qdev.size = sizeof(FWCfgState),
518
    .qdev.vmsd = &vmstate_fw_cfg,
519
    .qdev.reset = fw_cfg_reset,
520
    .qdev.no_user = 1,
521
    .qdev.props = (Property[]) {
522
        DEFINE_PROP_HEX32("ctl_iobase", FWCfgState, ctl_iobase, -1),
523
        DEFINE_PROP_HEX32("data_iobase", FWCfgState, data_iobase, -1),
524
        DEFINE_PROP_END_OF_LIST(),
525
    },
526
};
527

    
528
static void fw_cfg_register_devices(void)
529
{
530
    sysbus_register_withprop(&fw_cfg_info);
531
}
532

    
533
device_init(fw_cfg_register_devices)