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1 6a0f9e82 bellard
/*
2 cc2040f8 Stefan Weil
 * Block driver for Connectix / Microsoft Virtual PC images
3 5fafdf24 ths
 *
4 6a0f9e82 bellard
 * Copyright (c) 2005 Alex Beregszaszi
5 15d35bc5 aliguori
 * Copyright (c) 2009 Kevin Wolf <kwolf@suse.de>
6 5fafdf24 ths
 *
7 6a0f9e82 bellard
 * Permission is hereby granted, free of charge, to any person obtaining a copy
8 6a0f9e82 bellard
 * of this software and associated documentation files (the "Software"), to deal
9 6a0f9e82 bellard
 * in the Software without restriction, including without limitation the rights
10 6a0f9e82 bellard
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
11 6a0f9e82 bellard
 * copies of the Software, and to permit persons to whom the Software is
12 6a0f9e82 bellard
 * furnished to do so, subject to the following conditions:
13 6a0f9e82 bellard
 *
14 6a0f9e82 bellard
 * The above copyright notice and this permission notice shall be included in
15 6a0f9e82 bellard
 * all copies or substantial portions of the Software.
16 6a0f9e82 bellard
 *
17 6a0f9e82 bellard
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
18 6a0f9e82 bellard
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19 6a0f9e82 bellard
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20 6a0f9e82 bellard
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
21 6a0f9e82 bellard
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
22 6a0f9e82 bellard
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
23 6a0f9e82 bellard
 * THE SOFTWARE.
24 6a0f9e82 bellard
 */
25 faf07963 pbrook
#include "qemu-common.h"
26 6a0f9e82 bellard
#include "block_int.h"
27 5efa9d5a Anthony Liguori
#include "module.h"
28 6a0f9e82 bellard
29 6a0f9e82 bellard
/**************************************************************/
30 6a0f9e82 bellard
31 6a0f9e82 bellard
#define HEADER_SIZE 512
32 6a0f9e82 bellard
33 6a0f9e82 bellard
//#define CACHE
34 6a0f9e82 bellard
35 2cfacb62 aliguori
enum vhd_type {
36 2cfacb62 aliguori
    VHD_FIXED           = 2,
37 2cfacb62 aliguori
    VHD_DYNAMIC         = 3,
38 2cfacb62 aliguori
    VHD_DIFFERENCING    = 4,
39 2cfacb62 aliguori
};
40 2cfacb62 aliguori
41 57c7d9e5 aliguori
// Seconds since Jan 1, 2000 0:00:00 (UTC)
42 57c7d9e5 aliguori
#define VHD_TIMESTAMP_BASE 946684800
43 57c7d9e5 aliguori
44 6a0f9e82 bellard
// always big-endian
45 b9fa33a6 aliguori
struct vhd_footer {
46 2cfacb62 aliguori
    char        creator[8]; // "conectix"
47 2cfacb62 aliguori
    uint32_t    features;
48 2cfacb62 aliguori
    uint32_t    version;
49 2cfacb62 aliguori
50 2cfacb62 aliguori
    // Offset of next header structure, 0xFFFFFFFF if none
51 2cfacb62 aliguori
    uint64_t    data_offset;
52 2cfacb62 aliguori
53 2cfacb62 aliguori
    // Seconds since Jan 1, 2000 0:00:00 (UTC)
54 2cfacb62 aliguori
    uint32_t    timestamp;
55 2cfacb62 aliguori
56 2cfacb62 aliguori
    char        creator_app[4]; // "vpc "
57 2cfacb62 aliguori
    uint16_t    major;
58 2cfacb62 aliguori
    uint16_t    minor;
59 2cfacb62 aliguori
    char        creator_os[4]; // "Wi2k"
60 2cfacb62 aliguori
61 2cfacb62 aliguori
    uint64_t    orig_size;
62 2cfacb62 aliguori
    uint64_t    size;
63 2cfacb62 aliguori
64 2cfacb62 aliguori
    uint16_t    cyls;
65 2cfacb62 aliguori
    uint8_t     heads;
66 2cfacb62 aliguori
    uint8_t     secs_per_cyl;
67 2cfacb62 aliguori
68 2cfacb62 aliguori
    uint32_t    type;
69 2cfacb62 aliguori
70 2cfacb62 aliguori
    // Checksum of the Hard Disk Footer ("one's complement of the sum of all
71 2cfacb62 aliguori
    // the bytes in the footer without the checksum field")
72 2cfacb62 aliguori
    uint32_t    checksum;
73 2cfacb62 aliguori
74 2cfacb62 aliguori
    // UUID used to identify a parent hard disk (backing file)
75 2cfacb62 aliguori
    uint8_t     uuid[16];
76 2cfacb62 aliguori
77 2cfacb62 aliguori
    uint8_t     in_saved_state;
78 b9fa33a6 aliguori
};
79 b9fa33a6 aliguori
80 b9fa33a6 aliguori
struct vhd_dyndisk_header {
81 2cfacb62 aliguori
    char        magic[8]; // "cxsparse"
82 2cfacb62 aliguori
83 2cfacb62 aliguori
    // Offset of next header structure, 0xFFFFFFFF if none
84 2cfacb62 aliguori
    uint64_t    data_offset;
85 2cfacb62 aliguori
86 2cfacb62 aliguori
    // Offset of the Block Allocation Table (BAT)
87 2cfacb62 aliguori
    uint64_t    table_offset;
88 2cfacb62 aliguori
89 2cfacb62 aliguori
    uint32_t    version;
90 2cfacb62 aliguori
    uint32_t    max_table_entries; // 32bit/entry
91 2cfacb62 aliguori
92 2cfacb62 aliguori
    // 2 MB by default, must be a power of two
93 2cfacb62 aliguori
    uint32_t    block_size;
94 2cfacb62 aliguori
95 2cfacb62 aliguori
    uint32_t    checksum;
96 2cfacb62 aliguori
    uint8_t     parent_uuid[16];
97 2cfacb62 aliguori
    uint32_t    parent_timestamp;
98 2cfacb62 aliguori
    uint32_t    reserved;
99 2cfacb62 aliguori
100 2cfacb62 aliguori
    // Backing file name (in UTF-16)
101 2cfacb62 aliguori
    uint8_t     parent_name[512];
102 2cfacb62 aliguori
103 2cfacb62 aliguori
    struct {
104 2cfacb62 aliguori
        uint32_t    platform;
105 2cfacb62 aliguori
        uint32_t    data_space;
106 2cfacb62 aliguori
        uint32_t    data_length;
107 2cfacb62 aliguori
        uint32_t    reserved;
108 2cfacb62 aliguori
        uint64_t    data_offset;
109 2cfacb62 aliguori
    } parent_locator[8];
110 6a0f9e82 bellard
};
111 6a0f9e82 bellard
112 6a0f9e82 bellard
typedef struct BDRVVPCState {
113 b71d1c2e aliguori
    BlockDriverState *hd;
114 3b46e624 ths
115 15d35bc5 aliguori
    uint8_t footer_buf[HEADER_SIZE];
116 15d35bc5 aliguori
    uint64_t free_data_block_offset;
117 2cfacb62 aliguori
    int max_table_entries;
118 6a0f9e82 bellard
    uint32_t *pagetable;
119 15d35bc5 aliguori
    uint64_t bat_offset;
120 15d35bc5 aliguori
    uint64_t last_bitmap_offset;
121 6a0f9e82 bellard
122 2cfacb62 aliguori
    uint32_t block_size;
123 15d35bc5 aliguori
    uint32_t bitmap_size;
124 15d35bc5 aliguori
125 6a0f9e82 bellard
#ifdef CACHE
126 6a0f9e82 bellard
    uint8_t *pageentry_u8;
127 6a0f9e82 bellard
    uint32_t *pageentry_u32;
128 6a0f9e82 bellard
    uint16_t *pageentry_u16;
129 3b46e624 ths
130 6a0f9e82 bellard
    uint64_t last_bitmap;
131 6a0f9e82 bellard
#endif
132 6a0f9e82 bellard
} BDRVVPCState;
133 6a0f9e82 bellard
134 57c7d9e5 aliguori
static uint32_t vpc_checksum(uint8_t* buf, size_t size)
135 57c7d9e5 aliguori
{
136 57c7d9e5 aliguori
    uint32_t res = 0;
137 57c7d9e5 aliguori
    int i;
138 57c7d9e5 aliguori
139 57c7d9e5 aliguori
    for (i = 0; i < size; i++)
140 57c7d9e5 aliguori
        res += buf[i];
141 57c7d9e5 aliguori
142 57c7d9e5 aliguori
    return ~res;
143 57c7d9e5 aliguori
}
144 57c7d9e5 aliguori
145 57c7d9e5 aliguori
146 6a0f9e82 bellard
static int vpc_probe(const uint8_t *buf, int buf_size, const char *filename)
147 6a0f9e82 bellard
{
148 ffe8ab83 ths
    if (buf_size >= 8 && !strncmp((char *)buf, "conectix", 8))
149 6a0f9e82 bellard
        return 100;
150 6a0f9e82 bellard
    return 0;
151 6a0f9e82 bellard
}
152 6a0f9e82 bellard
153 66f82cee Kevin Wolf
static int vpc_open(BlockDriverState *bs, int flags)
154 6a0f9e82 bellard
{
155 6a0f9e82 bellard
    BDRVVPCState *s = bs->opaque;
156 66f82cee Kevin Wolf
    int i;
157 b9fa33a6 aliguori
    struct vhd_footer* footer;
158 b9fa33a6 aliguori
    struct vhd_dyndisk_header* dyndisk_header;
159 b9fa33a6 aliguori
    uint8_t buf[HEADER_SIZE];
160 57c7d9e5 aliguori
    uint32_t checksum;
161 6a0f9e82 bellard
162 66f82cee Kevin Wolf
    if (bdrv_pread(bs->file, 0, s->footer_buf, HEADER_SIZE) != HEADER_SIZE)
163 6a0f9e82 bellard
        goto fail;
164 6a0f9e82 bellard
165 15d35bc5 aliguori
    footer = (struct vhd_footer*) s->footer_buf;
166 b9fa33a6 aliguori
    if (strncmp(footer->creator, "conectix", 8))
167 6a0f9e82 bellard
        goto fail;
168 6a0f9e82 bellard
169 57c7d9e5 aliguori
    checksum = be32_to_cpu(footer->checksum);
170 57c7d9e5 aliguori
    footer->checksum = 0;
171 57c7d9e5 aliguori
    if (vpc_checksum(s->footer_buf, HEADER_SIZE) != checksum)
172 57c7d9e5 aliguori
        fprintf(stderr, "block-vpc: The header checksum of '%s' is "
173 66f82cee Kevin Wolf
            "incorrect.\n", bs->filename);
174 57c7d9e5 aliguori
175 1fa79228 aliguori
    // The visible size of a image in Virtual PC depends on the geometry
176 1fa79228 aliguori
    // rather than on the size stored in the footer (the size in the footer
177 1fa79228 aliguori
    // is too large usually)
178 1fa79228 aliguori
    bs->total_sectors = (int64_t)
179 1fa79228 aliguori
        be16_to_cpu(footer->cyls) * footer->heads * footer->secs_per_cyl;
180 1fa79228 aliguori
181 66f82cee Kevin Wolf
    if (bdrv_pread(bs->file, be64_to_cpu(footer->data_offset), buf, HEADER_SIZE)
182 b71d1c2e aliguori
            != HEADER_SIZE)
183 6a0f9e82 bellard
        goto fail;
184 6a0f9e82 bellard
185 b9fa33a6 aliguori
    dyndisk_header = (struct vhd_dyndisk_header*) buf;
186 b9fa33a6 aliguori
187 b9fa33a6 aliguori
    if (strncmp(dyndisk_header->magic, "cxsparse", 8))
188 b9fa33a6 aliguori
        goto fail;
189 6a0f9e82 bellard
190 6a0f9e82 bellard
191 15d35bc5 aliguori
    s->block_size = be32_to_cpu(dyndisk_header->block_size);
192 15d35bc5 aliguori
    s->bitmap_size = ((s->block_size / (8 * 512)) + 511) & ~511;
193 15d35bc5 aliguori
194 2cfacb62 aliguori
    s->max_table_entries = be32_to_cpu(dyndisk_header->max_table_entries);
195 2cfacb62 aliguori
    s->pagetable = qemu_malloc(s->max_table_entries * 4);
196 b71d1c2e aliguori
197 15d35bc5 aliguori
    s->bat_offset = be64_to_cpu(dyndisk_header->table_offset);
198 66f82cee Kevin Wolf
    if (bdrv_pread(bs->file, s->bat_offset, s->pagetable,
199 15d35bc5 aliguori
            s->max_table_entries * 4) != s->max_table_entries * 4)
200 b71d1c2e aliguori
            goto fail;
201 b71d1c2e aliguori
202 15d35bc5 aliguori
    s->free_data_block_offset =
203 15d35bc5 aliguori
        (s->bat_offset + (s->max_table_entries * 4) + 511) & ~511;
204 15d35bc5 aliguori
205 15d35bc5 aliguori
    for (i = 0; i < s->max_table_entries; i++) {
206 15d35bc5 aliguori
        be32_to_cpus(&s->pagetable[i]);
207 15d35bc5 aliguori
        if (s->pagetable[i] != 0xFFFFFFFF) {
208 15d35bc5 aliguori
            int64_t next = (512 * (int64_t) s->pagetable[i]) +
209 15d35bc5 aliguori
                s->bitmap_size + s->block_size;
210 15d35bc5 aliguori
211 15d35bc5 aliguori
            if (next> s->free_data_block_offset)
212 15d35bc5 aliguori
                s->free_data_block_offset = next;
213 15d35bc5 aliguori
        }
214 15d35bc5 aliguori
    }
215 15d35bc5 aliguori
216 15d35bc5 aliguori
    s->last_bitmap_offset = (int64_t) -1;
217 6a0f9e82 bellard
218 6a0f9e82 bellard
#ifdef CACHE
219 6a0f9e82 bellard
    s->pageentry_u8 = qemu_malloc(512);
220 6a0f9e82 bellard
    s->pageentry_u32 = s->pageentry_u8;
221 6a0f9e82 bellard
    s->pageentry_u16 = s->pageentry_u8;
222 6a0f9e82 bellard
    s->last_pagetable = -1;
223 6a0f9e82 bellard
#endif
224 6a0f9e82 bellard
225 6a0f9e82 bellard
    return 0;
226 6a0f9e82 bellard
 fail:
227 6a0f9e82 bellard
    return -1;
228 6a0f9e82 bellard
}
229 6a0f9e82 bellard
230 b71d1c2e aliguori
/*
231 b71d1c2e aliguori
 * Returns the absolute byte offset of the given sector in the image file.
232 b71d1c2e aliguori
 * If the sector is not allocated, -1 is returned instead.
233 15d35bc5 aliguori
 *
234 15d35bc5 aliguori
 * The parameter write must be 1 if the offset will be used for a write
235 15d35bc5 aliguori
 * operation (the block bitmaps is updated then), 0 otherwise.
236 b71d1c2e aliguori
 */
237 15d35bc5 aliguori
static inline int64_t get_sector_offset(BlockDriverState *bs,
238 15d35bc5 aliguori
    int64_t sector_num, int write)
239 6a0f9e82 bellard
{
240 6a0f9e82 bellard
    BDRVVPCState *s = bs->opaque;
241 6a0f9e82 bellard
    uint64_t offset = sector_num * 512;
242 6a0f9e82 bellard
    uint64_t bitmap_offset, block_offset;
243 6a0f9e82 bellard
    uint32_t pagetable_index, pageentry_index;
244 6a0f9e82 bellard
245 2cfacb62 aliguori
    pagetable_index = offset / s->block_size;
246 2cfacb62 aliguori
    pageentry_index = (offset % s->block_size) / 512;
247 3b46e624 ths
248 15d35bc5 aliguori
    if (pagetable_index >= s->max_table_entries || s->pagetable[pagetable_index] == 0xffffffff)
249 15d35bc5 aliguori
        return -1; // not allocated
250 6a0f9e82 bellard
251 378e2aea aliguori
    bitmap_offset = 512 * (uint64_t) s->pagetable[pagetable_index];
252 15d35bc5 aliguori
    block_offset = bitmap_offset + s->bitmap_size + (512 * pageentry_index);
253 15d35bc5 aliguori
254 15d35bc5 aliguori
    // We must ensure that we don't write to any sectors which are marked as
255 15d35bc5 aliguori
    // unused in the bitmap. We get away with setting all bits in the block
256 15d35bc5 aliguori
    // bitmap each time we write to a new block. This might cause Virtual PC to
257 15d35bc5 aliguori
    // miss sparse read optimization, but it's not a problem in terms of
258 15d35bc5 aliguori
    // correctness.
259 15d35bc5 aliguori
    if (write && (s->last_bitmap_offset != bitmap_offset)) {
260 15d35bc5 aliguori
        uint8_t bitmap[s->bitmap_size];
261 15d35bc5 aliguori
262 15d35bc5 aliguori
        s->last_bitmap_offset = bitmap_offset;
263 15d35bc5 aliguori
        memset(bitmap, 0xff, s->bitmap_size);
264 078a458e Kevin Wolf
        bdrv_pwrite_sync(bs->file, bitmap_offset, bitmap, s->bitmap_size);
265 15d35bc5 aliguori
    }
266 3b46e624 ths
267 26a76461 bellard
//    printf("sector: %" PRIx64 ", index: %x, offset: %x, bioff: %" PRIx64 ", bloff: %" PRIx64 "\n",
268 6a0f9e82 bellard
//        sector_num, pagetable_index, pageentry_index,
269 6a0f9e82 bellard
//        bitmap_offset, block_offset);
270 6a0f9e82 bellard
271 6a0f9e82 bellard
// disabled by reason
272 6a0f9e82 bellard
#if 0
273 6a0f9e82 bellard
#ifdef CACHE
274 6a0f9e82 bellard
    if (bitmap_offset != s->last_bitmap)
275 6a0f9e82 bellard
    {
276 6a0f9e82 bellard
        lseek(s->fd, bitmap_offset, SEEK_SET);
277 6a0f9e82 bellard

278 6a0f9e82 bellard
        s->last_bitmap = bitmap_offset;
279 5fafdf24 ths

280 6a0f9e82 bellard
        // Scary! Bitmap is stored as big endian 32bit entries,
281 6a0f9e82 bellard
        // while we used to look it up byte by byte
282 6a0f9e82 bellard
        read(s->fd, s->pageentry_u8, 512);
283 6a0f9e82 bellard
        for (i = 0; i < 128; i++)
284 6a0f9e82 bellard
            be32_to_cpus(&s->pageentry_u32[i]);
285 6a0f9e82 bellard
    }
286 6a0f9e82 bellard

287 6a0f9e82 bellard
    if ((s->pageentry_u8[pageentry_index / 8] >> (pageentry_index % 8)) & 1)
288 6a0f9e82 bellard
        return -1;
289 6a0f9e82 bellard
#else
290 6a0f9e82 bellard
    lseek(s->fd, bitmap_offset + (pageentry_index / 8), SEEK_SET);
291 5fafdf24 ths
292 6a0f9e82 bellard
    read(s->fd, &bitmap_entry, 1);
293 6a0f9e82 bellard
294 6a0f9e82 bellard
    if ((bitmap_entry >> (pageentry_index % 8)) & 1)
295 6a0f9e82 bellard
        return -1; // not allocated
296 6a0f9e82 bellard
#endif
297 6a0f9e82 bellard
#endif
298 6a0f9e82 bellard
299 b71d1c2e aliguori
    return block_offset;
300 6a0f9e82 bellard
}
301 6a0f9e82 bellard
302 15d35bc5 aliguori
/*
303 15d35bc5 aliguori
 * Writes the footer to the end of the image file. This is needed when the
304 15d35bc5 aliguori
 * file grows as it overwrites the old footer
305 15d35bc5 aliguori
 *
306 15d35bc5 aliguori
 * Returns 0 on success and < 0 on error
307 15d35bc5 aliguori
 */
308 15d35bc5 aliguori
static int rewrite_footer(BlockDriverState* bs)
309 15d35bc5 aliguori
{
310 15d35bc5 aliguori
    int ret;
311 15d35bc5 aliguori
    BDRVVPCState *s = bs->opaque;
312 15d35bc5 aliguori
    int64_t offset = s->free_data_block_offset;
313 15d35bc5 aliguori
314 078a458e Kevin Wolf
    ret = bdrv_pwrite_sync(bs->file, offset, s->footer_buf, HEADER_SIZE);
315 15d35bc5 aliguori
    if (ret < 0)
316 15d35bc5 aliguori
        return ret;
317 15d35bc5 aliguori
318 15d35bc5 aliguori
    return 0;
319 15d35bc5 aliguori
}
320 15d35bc5 aliguori
321 15d35bc5 aliguori
/*
322 15d35bc5 aliguori
 * Allocates a new block. This involves writing a new footer and updating
323 15d35bc5 aliguori
 * the Block Allocation Table to use the space at the old end of the image
324 15d35bc5 aliguori
 * file (overwriting the old footer)
325 15d35bc5 aliguori
 *
326 15d35bc5 aliguori
 * Returns the sectors' offset in the image file on success and < 0 on error
327 15d35bc5 aliguori
 */
328 15d35bc5 aliguori
static int64_t alloc_block(BlockDriverState* bs, int64_t sector_num)
329 15d35bc5 aliguori
{
330 15d35bc5 aliguori
    BDRVVPCState *s = bs->opaque;
331 15d35bc5 aliguori
    int64_t bat_offset;
332 15d35bc5 aliguori
    uint32_t index, bat_value;
333 15d35bc5 aliguori
    int ret;
334 15d35bc5 aliguori
    uint8_t bitmap[s->bitmap_size];
335 15d35bc5 aliguori
336 15d35bc5 aliguori
    // Check if sector_num is valid
337 15d35bc5 aliguori
    if ((sector_num < 0) || (sector_num > bs->total_sectors))
338 15d35bc5 aliguori
        return -1;
339 15d35bc5 aliguori
340 15d35bc5 aliguori
    // Write entry into in-memory BAT
341 15d35bc5 aliguori
    index = (sector_num * 512) / s->block_size;
342 15d35bc5 aliguori
    if (s->pagetable[index] != 0xFFFFFFFF)
343 15d35bc5 aliguori
        return -1;
344 15d35bc5 aliguori
345 15d35bc5 aliguori
    s->pagetable[index] = s->free_data_block_offset / 512;
346 15d35bc5 aliguori
347 15d35bc5 aliguori
    // Initialize the block's bitmap
348 15d35bc5 aliguori
    memset(bitmap, 0xff, s->bitmap_size);
349 078a458e Kevin Wolf
    bdrv_pwrite_sync(bs->file, s->free_data_block_offset, bitmap,
350 078a458e Kevin Wolf
        s->bitmap_size);
351 15d35bc5 aliguori
352 15d35bc5 aliguori
    // Write new footer (the old one will be overwritten)
353 15d35bc5 aliguori
    s->free_data_block_offset += s->block_size + s->bitmap_size;
354 15d35bc5 aliguori
    ret = rewrite_footer(bs);
355 15d35bc5 aliguori
    if (ret < 0)
356 15d35bc5 aliguori
        goto fail;
357 15d35bc5 aliguori
358 15d35bc5 aliguori
    // Write BAT entry to disk
359 15d35bc5 aliguori
    bat_offset = s->bat_offset + (4 * index);
360 15d35bc5 aliguori
    bat_value = be32_to_cpu(s->pagetable[index]);
361 078a458e Kevin Wolf
    ret = bdrv_pwrite_sync(bs->file, bat_offset, &bat_value, 4);
362 15d35bc5 aliguori
    if (ret < 0)
363 15d35bc5 aliguori
        goto fail;
364 15d35bc5 aliguori
365 15d35bc5 aliguori
    return get_sector_offset(bs, sector_num, 0);
366 15d35bc5 aliguori
367 15d35bc5 aliguori
fail:
368 15d35bc5 aliguori
    s->free_data_block_offset -= (s->block_size + s->bitmap_size);
369 15d35bc5 aliguori
    return -1;
370 15d35bc5 aliguori
}
371 15d35bc5 aliguori
372 5fafdf24 ths
static int vpc_read(BlockDriverState *bs, int64_t sector_num,
373 6a0f9e82 bellard
                    uint8_t *buf, int nb_sectors)
374 6a0f9e82 bellard
{
375 6c6ea921 Kevin Wolf
    BDRVVPCState *s = bs->opaque;
376 6a0f9e82 bellard
    int ret;
377 b71d1c2e aliguori
    int64_t offset;
378 6c6ea921 Kevin Wolf
    int64_t sectors, sectors_per_block;
379 6a0f9e82 bellard
380 6a0f9e82 bellard
    while (nb_sectors > 0) {
381 15d35bc5 aliguori
        offset = get_sector_offset(bs, sector_num, 0);
382 b71d1c2e aliguori
383 6c6ea921 Kevin Wolf
        sectors_per_block = s->block_size >> BDRV_SECTOR_BITS;
384 6c6ea921 Kevin Wolf
        sectors = sectors_per_block - (sector_num % sectors_per_block);
385 6c6ea921 Kevin Wolf
        if (sectors > nb_sectors) {
386 6c6ea921 Kevin Wolf
            sectors = nb_sectors;
387 6c6ea921 Kevin Wolf
        }
388 6c6ea921 Kevin Wolf
389 b71d1c2e aliguori
        if (offset == -1) {
390 6c6ea921 Kevin Wolf
            memset(buf, 0, sectors * BDRV_SECTOR_SIZE);
391 b71d1c2e aliguori
        } else {
392 6c6ea921 Kevin Wolf
            ret = bdrv_pread(bs->file, offset, buf,
393 6c6ea921 Kevin Wolf
                sectors * BDRV_SECTOR_SIZE);
394 6c6ea921 Kevin Wolf
            if (ret != sectors * BDRV_SECTOR_SIZE) {
395 b71d1c2e aliguori
                return -1;
396 6c6ea921 Kevin Wolf
            }
397 b71d1c2e aliguori
        }
398 b71d1c2e aliguori
399 6c6ea921 Kevin Wolf
        nb_sectors -= sectors;
400 6c6ea921 Kevin Wolf
        sector_num += sectors;
401 6c6ea921 Kevin Wolf
        buf += sectors * BDRV_SECTOR_SIZE;
402 6a0f9e82 bellard
    }
403 6a0f9e82 bellard
    return 0;
404 6a0f9e82 bellard
}
405 6a0f9e82 bellard
406 15d35bc5 aliguori
static int vpc_write(BlockDriverState *bs, int64_t sector_num,
407 15d35bc5 aliguori
    const uint8_t *buf, int nb_sectors)
408 15d35bc5 aliguori
{
409 6c6ea921 Kevin Wolf
    BDRVVPCState *s = bs->opaque;
410 15d35bc5 aliguori
    int64_t offset;
411 6c6ea921 Kevin Wolf
    int64_t sectors, sectors_per_block;
412 15d35bc5 aliguori
    int ret;
413 15d35bc5 aliguori
414 15d35bc5 aliguori
    while (nb_sectors > 0) {
415 15d35bc5 aliguori
        offset = get_sector_offset(bs, sector_num, 1);
416 15d35bc5 aliguori
417 6c6ea921 Kevin Wolf
        sectors_per_block = s->block_size >> BDRV_SECTOR_BITS;
418 6c6ea921 Kevin Wolf
        sectors = sectors_per_block - (sector_num % sectors_per_block);
419 6c6ea921 Kevin Wolf
        if (sectors > nb_sectors) {
420 6c6ea921 Kevin Wolf
            sectors = nb_sectors;
421 6c6ea921 Kevin Wolf
        }
422 6c6ea921 Kevin Wolf
423 15d35bc5 aliguori
        if (offset == -1) {
424 15d35bc5 aliguori
            offset = alloc_block(bs, sector_num);
425 15d35bc5 aliguori
            if (offset < 0)
426 15d35bc5 aliguori
                return -1;
427 15d35bc5 aliguori
        }
428 15d35bc5 aliguori
429 6c6ea921 Kevin Wolf
        ret = bdrv_pwrite(bs->file, offset, buf, sectors * BDRV_SECTOR_SIZE);
430 6c6ea921 Kevin Wolf
        if (ret != sectors * BDRV_SECTOR_SIZE) {
431 15d35bc5 aliguori
            return -1;
432 6c6ea921 Kevin Wolf
        }
433 15d35bc5 aliguori
434 6c6ea921 Kevin Wolf
        nb_sectors -= sectors;
435 6c6ea921 Kevin Wolf
        sector_num += sectors;
436 6c6ea921 Kevin Wolf
        buf += sectors * BDRV_SECTOR_SIZE;
437 15d35bc5 aliguori
    }
438 15d35bc5 aliguori
439 15d35bc5 aliguori
    return 0;
440 15d35bc5 aliguori
}
441 15d35bc5 aliguori
442 4a411185 Kevin Wolf
static int vpc_flush(BlockDriverState *bs)
443 4a411185 Kevin Wolf
{
444 4a411185 Kevin Wolf
    return bdrv_flush(bs->file);
445 4a411185 Kevin Wolf
}
446 57c7d9e5 aliguori
447 57c7d9e5 aliguori
/*
448 57c7d9e5 aliguori
 * Calculates the number of cylinders, heads and sectors per cylinder
449 57c7d9e5 aliguori
 * based on a given number of sectors. This is the algorithm described
450 57c7d9e5 aliguori
 * in the VHD specification.
451 57c7d9e5 aliguori
 *
452 57c7d9e5 aliguori
 * Note that the geometry doesn't always exactly match total_sectors but
453 57c7d9e5 aliguori
 * may round it down.
454 6e9ea0c0 aurel32
 *
455 6e9ea0c0 aurel32
 * Returns 0 on success, -EFBIG if the size is larger than 127 GB
456 57c7d9e5 aliguori
 */
457 6e9ea0c0 aurel32
static int calculate_geometry(int64_t total_sectors, uint16_t* cyls,
458 57c7d9e5 aliguori
    uint8_t* heads, uint8_t* secs_per_cyl)
459 57c7d9e5 aliguori
{
460 57c7d9e5 aliguori
    uint32_t cyls_times_heads;
461 57c7d9e5 aliguori
462 57c7d9e5 aliguori
    if (total_sectors > 65535 * 16 * 255)
463 6e9ea0c0 aurel32
        return -EFBIG;
464 57c7d9e5 aliguori
465 57c7d9e5 aliguori
    if (total_sectors > 65535 * 16 * 63) {
466 57c7d9e5 aliguori
        *secs_per_cyl = 255;
467 57c7d9e5 aliguori
        *heads = 16;
468 57c7d9e5 aliguori
        cyls_times_heads = total_sectors / *secs_per_cyl;
469 57c7d9e5 aliguori
    } else {
470 57c7d9e5 aliguori
        *secs_per_cyl = 17;
471 57c7d9e5 aliguori
        cyls_times_heads = total_sectors / *secs_per_cyl;
472 57c7d9e5 aliguori
        *heads = (cyls_times_heads + 1023) / 1024;
473 57c7d9e5 aliguori
474 57c7d9e5 aliguori
        if (*heads < 4)
475 57c7d9e5 aliguori
            *heads = 4;
476 57c7d9e5 aliguori
477 57c7d9e5 aliguori
        if (cyls_times_heads >= (*heads * 1024) || *heads > 16) {
478 57c7d9e5 aliguori
            *secs_per_cyl = 31;
479 57c7d9e5 aliguori
            *heads = 16;
480 57c7d9e5 aliguori
            cyls_times_heads = total_sectors / *secs_per_cyl;
481 57c7d9e5 aliguori
        }
482 57c7d9e5 aliguori
483 57c7d9e5 aliguori
        if (cyls_times_heads >= (*heads * 1024)) {
484 57c7d9e5 aliguori
            *secs_per_cyl = 63;
485 57c7d9e5 aliguori
            *heads = 16;
486 57c7d9e5 aliguori
            cyls_times_heads = total_sectors / *secs_per_cyl;
487 57c7d9e5 aliguori
        }
488 57c7d9e5 aliguori
    }
489 57c7d9e5 aliguori
490 dede4188 Stefan Weil
    *cyls = cyls_times_heads / *heads;
491 6e9ea0c0 aurel32
492 6e9ea0c0 aurel32
    return 0;
493 57c7d9e5 aliguori
}
494 57c7d9e5 aliguori
495 0e7e1989 Kevin Wolf
static int vpc_create(const char *filename, QEMUOptionParameter *options)
496 57c7d9e5 aliguori
{
497 57c7d9e5 aliguori
    uint8_t buf[1024];
498 57c7d9e5 aliguori
    struct vhd_footer* footer = (struct vhd_footer*) buf;
499 57c7d9e5 aliguori
    struct vhd_dyndisk_header* dyndisk_header =
500 57c7d9e5 aliguori
        (struct vhd_dyndisk_header*) buf;
501 57c7d9e5 aliguori
    int fd, i;
502 dede4188 Stefan Weil
    uint16_t cyls = 0;
503 dede4188 Stefan Weil
    uint8_t heads = 0;
504 dede4188 Stefan Weil
    uint8_t secs_per_cyl = 0;
505 57c7d9e5 aliguori
    size_t block_size, num_bat_entries;
506 0e7e1989 Kevin Wolf
    int64_t total_sectors = 0;
507 57c7d9e5 aliguori
508 0e7e1989 Kevin Wolf
    // Read out options
509 0e7e1989 Kevin Wolf
    while (options && options->name) {
510 0e7e1989 Kevin Wolf
        if (!strcmp(options->name, "size")) {
511 0e7e1989 Kevin Wolf
            total_sectors = options->value.n / 512;
512 0e7e1989 Kevin Wolf
        }
513 0e7e1989 Kevin Wolf
        options++;
514 0e7e1989 Kevin Wolf
    }
515 57c7d9e5 aliguori
516 0e7e1989 Kevin Wolf
    // Create the file
517 57c7d9e5 aliguori
    fd = open(filename, O_WRONLY | O_CREAT | O_TRUNC | O_BINARY, 0644);
518 57c7d9e5 aliguori
    if (fd < 0)
519 57c7d9e5 aliguori
        return -EIO;
520 57c7d9e5 aliguori
521 dede4188 Stefan Weil
    /* Calculate matching total_size and geometry. Increase the number of
522 dede4188 Stefan Weil
       sectors requested until we get enough (or fail). */
523 dede4188 Stefan Weil
    for (i = 0; total_sectors > (int64_t)cyls * heads * secs_per_cyl; i++) {
524 dede4188 Stefan Weil
        if (calculate_geometry(total_sectors + i,
525 dede4188 Stefan Weil
                               &cyls, &heads, &secs_per_cyl)) {
526 dede4188 Stefan Weil
            return -EFBIG;
527 dede4188 Stefan Weil
        }
528 dede4188 Stefan Weil
    }
529 57c7d9e5 aliguori
    total_sectors = (int64_t) cyls * heads * secs_per_cyl;
530 57c7d9e5 aliguori
531 57c7d9e5 aliguori
    // Prepare the Hard Disk Footer
532 57c7d9e5 aliguori
    memset(buf, 0, 1024);
533 57c7d9e5 aliguori
534 5ec4d682 Nathan Froyd
    memcpy(footer->creator, "conectix", 8);
535 57c7d9e5 aliguori
    // TODO Check if "qemu" creator_app is ok for VPC
536 5ec4d682 Nathan Froyd
    memcpy(footer->creator_app, "qemu", 4);
537 5ec4d682 Nathan Froyd
    memcpy(footer->creator_os, "Wi2k", 4);
538 57c7d9e5 aliguori
539 57c7d9e5 aliguori
    footer->features = be32_to_cpu(0x02);
540 57c7d9e5 aliguori
    footer->version = be32_to_cpu(0x00010000);
541 57c7d9e5 aliguori
    footer->data_offset = be64_to_cpu(HEADER_SIZE);
542 57c7d9e5 aliguori
    footer->timestamp = be32_to_cpu(time(NULL) - VHD_TIMESTAMP_BASE);
543 57c7d9e5 aliguori
544 57c7d9e5 aliguori
    // Version of Virtual PC 2007
545 57c7d9e5 aliguori
    footer->major = be16_to_cpu(0x0005);
546 57c7d9e5 aliguori
    footer->minor =be16_to_cpu(0x0003);
547 57c7d9e5 aliguori
548 57c7d9e5 aliguori
    footer->orig_size = be64_to_cpu(total_sectors * 512);
549 57c7d9e5 aliguori
    footer->size = be64_to_cpu(total_sectors * 512);
550 57c7d9e5 aliguori
551 57c7d9e5 aliguori
    footer->cyls = be16_to_cpu(cyls);
552 57c7d9e5 aliguori
    footer->heads = heads;
553 57c7d9e5 aliguori
    footer->secs_per_cyl = secs_per_cyl;
554 57c7d9e5 aliguori
555 57c7d9e5 aliguori
    footer->type = be32_to_cpu(VHD_DYNAMIC);
556 57c7d9e5 aliguori
557 57c7d9e5 aliguori
    // TODO uuid is missing
558 57c7d9e5 aliguori
559 57c7d9e5 aliguori
    footer->checksum = be32_to_cpu(vpc_checksum(buf, HEADER_SIZE));
560 57c7d9e5 aliguori
561 57c7d9e5 aliguori
    // Write the footer (twice: at the beginning and at the end)
562 57c7d9e5 aliguori
    block_size = 0x200000;
563 57c7d9e5 aliguori
    num_bat_entries = (total_sectors + block_size / 512) / (block_size / 512);
564 57c7d9e5 aliguori
565 57c7d9e5 aliguori
    if (write(fd, buf, HEADER_SIZE) != HEADER_SIZE)
566 57c7d9e5 aliguori
        return -EIO;
567 57c7d9e5 aliguori
568 57c7d9e5 aliguori
    if (lseek(fd, 1536 + ((num_bat_entries * 4 + 511) & ~511), SEEK_SET) < 0)
569 57c7d9e5 aliguori
        return -EIO;
570 57c7d9e5 aliguori
    if (write(fd, buf, HEADER_SIZE) != HEADER_SIZE)
571 57c7d9e5 aliguori
        return -EIO;
572 57c7d9e5 aliguori
573 57c7d9e5 aliguori
    // Write the initial BAT
574 57c7d9e5 aliguori
    if (lseek(fd, 3 * 512, SEEK_SET) < 0)
575 57c7d9e5 aliguori
        return -EIO;
576 57c7d9e5 aliguori
577 57c7d9e5 aliguori
    memset(buf, 0xFF, 512);
578 57c7d9e5 aliguori
    for (i = 0; i < (num_bat_entries * 4 + 511) / 512; i++)
579 57c7d9e5 aliguori
        if (write(fd, buf, 512) != 512)
580 57c7d9e5 aliguori
            return -EIO;
581 57c7d9e5 aliguori
582 57c7d9e5 aliguori
583 57c7d9e5 aliguori
    // Prepare the Dynamic Disk Header
584 57c7d9e5 aliguori
    memset(buf, 0, 1024);
585 57c7d9e5 aliguori
586 5ec4d682 Nathan Froyd
    memcpy(dyndisk_header->magic, "cxsparse", 8);
587 57c7d9e5 aliguori
588 57c7d9e5 aliguori
    dyndisk_header->data_offset = be64_to_cpu(0xFFFFFFFF);
589 57c7d9e5 aliguori
    dyndisk_header->table_offset = be64_to_cpu(3 * 512);
590 57c7d9e5 aliguori
    dyndisk_header->version = be32_to_cpu(0x00010000);
591 57c7d9e5 aliguori
    dyndisk_header->block_size = be32_to_cpu(block_size);
592 57c7d9e5 aliguori
    dyndisk_header->max_table_entries = be32_to_cpu(num_bat_entries);
593 57c7d9e5 aliguori
594 57c7d9e5 aliguori
    dyndisk_header->checksum = be32_to_cpu(vpc_checksum(buf, 1024));
595 57c7d9e5 aliguori
596 57c7d9e5 aliguori
    // Write the header
597 57c7d9e5 aliguori
    if (lseek(fd, 512, SEEK_SET) < 0)
598 57c7d9e5 aliguori
        return -EIO;
599 57c7d9e5 aliguori
    if (write(fd, buf, 1024) != 1024)
600 57c7d9e5 aliguori
        return -EIO;
601 57c7d9e5 aliguori
602 57c7d9e5 aliguori
    close(fd);
603 57c7d9e5 aliguori
    return 0;
604 57c7d9e5 aliguori
}
605 57c7d9e5 aliguori
606 6a0f9e82 bellard
static void vpc_close(BlockDriverState *bs)
607 6a0f9e82 bellard
{
608 6a0f9e82 bellard
    BDRVVPCState *s = bs->opaque;
609 6a0f9e82 bellard
    qemu_free(s->pagetable);
610 6a0f9e82 bellard
#ifdef CACHE
611 6a0f9e82 bellard
    qemu_free(s->pageentry_u8);
612 6a0f9e82 bellard
#endif
613 6a0f9e82 bellard
}
614 6a0f9e82 bellard
615 0e7e1989 Kevin Wolf
static QEMUOptionParameter vpc_create_options[] = {
616 db08adf5 Kevin Wolf
    {
617 db08adf5 Kevin Wolf
        .name = BLOCK_OPT_SIZE,
618 db08adf5 Kevin Wolf
        .type = OPT_SIZE,
619 db08adf5 Kevin Wolf
        .help = "Virtual disk size"
620 db08adf5 Kevin Wolf
    },
621 0e7e1989 Kevin Wolf
    { NULL }
622 0e7e1989 Kevin Wolf
};
623 0e7e1989 Kevin Wolf
624 5efa9d5a Anthony Liguori
static BlockDriver bdrv_vpc = {
625 4a411185 Kevin Wolf
    .format_name    = "vpc",
626 4a411185 Kevin Wolf
    .instance_size  = sizeof(BDRVVPCState),
627 4a411185 Kevin Wolf
    .bdrv_probe     = vpc_probe,
628 4a411185 Kevin Wolf
    .bdrv_open      = vpc_open,
629 4a411185 Kevin Wolf
    .bdrv_read      = vpc_read,
630 4a411185 Kevin Wolf
    .bdrv_write     = vpc_write,
631 4a411185 Kevin Wolf
    .bdrv_flush     = vpc_flush,
632 4a411185 Kevin Wolf
    .bdrv_close     = vpc_close,
633 4a411185 Kevin Wolf
    .bdrv_create    = vpc_create,
634 0e7e1989 Kevin Wolf
635 0e7e1989 Kevin Wolf
    .create_options = vpc_create_options,
636 6a0f9e82 bellard
};
637 5efa9d5a Anthony Liguori
638 5efa9d5a Anthony Liguori
static void bdrv_vpc_init(void)
639 5efa9d5a Anthony Liguori
{
640 5efa9d5a Anthony Liguori
    bdrv_register(&bdrv_vpc);
641 5efa9d5a Anthony Liguori
}
642 5efa9d5a Anthony Liguori
643 5efa9d5a Anthony Liguori
block_init(bdrv_vpc_init);