xref: /rk3399_rockchip-uboot/fs/fat/fat_write.c (revision ed76f912777066c788ae7e9cfb1d5e19e8c35274)
1c30a15e5SDonggeun Kim /*
2c30a15e5SDonggeun Kim  * fat_write.c
3c30a15e5SDonggeun Kim  *
4c30a15e5SDonggeun Kim  * R/W (V)FAT 12/16/32 filesystem implementation by Donggeun Kim
5c30a15e5SDonggeun Kim  *
61a459660SWolfgang Denk  * SPDX-License-Identifier:	GPL-2.0+
7c30a15e5SDonggeun Kim  */
8c30a15e5SDonggeun Kim 
9c30a15e5SDonggeun Kim #include <common.h>
10c30a15e5SDonggeun Kim #include <command.h>
11c30a15e5SDonggeun Kim #include <config.h>
12c30a15e5SDonggeun Kim #include <fat.h>
13c30a15e5SDonggeun Kim #include <asm/byteorder.h>
14c30a15e5SDonggeun Kim #include <part.h>
15fb7e16ccSRichard Genoud #include <linux/ctype.h>
169e374e7bSTom Rini #include <div64.h>
179e374e7bSTom Rini #include <linux/math64.h>
18c30a15e5SDonggeun Kim #include "fat.c"
19c30a15e5SDonggeun Kim 
20c30a15e5SDonggeun Kim static void uppercase(char *str, int len)
21c30a15e5SDonggeun Kim {
22c30a15e5SDonggeun Kim 	int i;
23c30a15e5SDonggeun Kim 
24c30a15e5SDonggeun Kim 	for (i = 0; i < len; i++) {
25fb7e16ccSRichard Genoud 		*str = toupper(*str);
26c30a15e5SDonggeun Kim 		str++;
27c30a15e5SDonggeun Kim 	}
28c30a15e5SDonggeun Kim }
29c30a15e5SDonggeun Kim 
30c30a15e5SDonggeun Kim static int total_sector;
31079df722SDonggeun Kim static int disk_write(__u32 block, __u32 nr_blocks, void *buf)
32c30a15e5SDonggeun Kim {
330a04ed86SŁukasz Majewski 	ulong ret;
340a04ed86SŁukasz Majewski 
352a981dc2SSimon Glass 	if (!cur_dev)
36c30a15e5SDonggeun Kim 		return -1;
37c30a15e5SDonggeun Kim 
38079df722SDonggeun Kim 	if (cur_part_info.start + block + nr_blocks >
39079df722SDonggeun Kim 		cur_part_info.start + total_sector) {
40c30a15e5SDonggeun Kim 		printf("error: overflow occurs\n");
41c30a15e5SDonggeun Kim 		return -1;
42c30a15e5SDonggeun Kim 	}
43c30a15e5SDonggeun Kim 
442a981dc2SSimon Glass 	ret = blk_dwrite(cur_dev, cur_part_info.start + block, nr_blocks, buf);
450a04ed86SŁukasz Majewski 	if (nr_blocks && ret == 0)
460a04ed86SŁukasz Majewski 		return -1;
470a04ed86SŁukasz Majewski 
480a04ed86SŁukasz Majewski 	return ret;
49c30a15e5SDonggeun Kim }
50c30a15e5SDonggeun Kim 
51c30a15e5SDonggeun Kim /*
52c30a15e5SDonggeun Kim  * Set short name in directory entry
53c30a15e5SDonggeun Kim  */
54c30a15e5SDonggeun Kim static void set_name(dir_entry *dirent, const char *filename)
55c30a15e5SDonggeun Kim {
56c30a15e5SDonggeun Kim 	char s_name[VFAT_MAXLEN_BYTES];
57c30a15e5SDonggeun Kim 	char *period;
58c30a15e5SDonggeun Kim 	int period_location, len, i, ext_num;
59c30a15e5SDonggeun Kim 
60c30a15e5SDonggeun Kim 	if (filename == NULL)
61c30a15e5SDonggeun Kim 		return;
62c30a15e5SDonggeun Kim 
63c30a15e5SDonggeun Kim 	len = strlen(filename);
64c30a15e5SDonggeun Kim 	if (len == 0)
65c30a15e5SDonggeun Kim 		return;
66c30a15e5SDonggeun Kim 
6773dc8328SPiotr Wilczek 	strcpy(s_name, filename);
68c30a15e5SDonggeun Kim 	uppercase(s_name, len);
69c30a15e5SDonggeun Kim 
70c30a15e5SDonggeun Kim 	period = strchr(s_name, '.');
71c30a15e5SDonggeun Kim 	if (period == NULL) {
72c30a15e5SDonggeun Kim 		period_location = len;
73c30a15e5SDonggeun Kim 		ext_num = 0;
74c30a15e5SDonggeun Kim 	} else {
75c30a15e5SDonggeun Kim 		period_location = period - s_name;
76c30a15e5SDonggeun Kim 		ext_num = len - period_location - 1;
77c30a15e5SDonggeun Kim 	}
78c30a15e5SDonggeun Kim 
79c30a15e5SDonggeun Kim 	/* Pad spaces when the length of file name is shorter than eight */
80c30a15e5SDonggeun Kim 	if (period_location < 8) {
81c30a15e5SDonggeun Kim 		memcpy(dirent->name, s_name, period_location);
82c30a15e5SDonggeun Kim 		for (i = period_location; i < 8; i++)
83c30a15e5SDonggeun Kim 			dirent->name[i] = ' ';
84c30a15e5SDonggeun Kim 	} else if (period_location == 8) {
85c30a15e5SDonggeun Kim 		memcpy(dirent->name, s_name, period_location);
86c30a15e5SDonggeun Kim 	} else {
87c30a15e5SDonggeun Kim 		memcpy(dirent->name, s_name, 6);
88c30a15e5SDonggeun Kim 		dirent->name[6] = '~';
89c30a15e5SDonggeun Kim 		dirent->name[7] = '1';
90c30a15e5SDonggeun Kim 	}
91c30a15e5SDonggeun Kim 
92c30a15e5SDonggeun Kim 	if (ext_num < 3) {
93c30a15e5SDonggeun Kim 		memcpy(dirent->ext, s_name + period_location + 1, ext_num);
94c30a15e5SDonggeun Kim 		for (i = ext_num; i < 3; i++)
95c30a15e5SDonggeun Kim 			dirent->ext[i] = ' ';
96c30a15e5SDonggeun Kim 	} else
97c30a15e5SDonggeun Kim 		memcpy(dirent->ext, s_name + period_location + 1, 3);
98c30a15e5SDonggeun Kim 
99c30a15e5SDonggeun Kim 	debug("name : %s\n", dirent->name);
100c30a15e5SDonggeun Kim 	debug("ext : %s\n", dirent->ext);
101c30a15e5SDonggeun Kim }
102c30a15e5SDonggeun Kim 
103627182eaSDonggeun Kim static __u8 num_of_fats;
104c30a15e5SDonggeun Kim /*
105c30a15e5SDonggeun Kim  * Write fat buffer into block device
106c30a15e5SDonggeun Kim  */
107c30a15e5SDonggeun Kim static int flush_fat_buffer(fsdata *mydata)
108c30a15e5SDonggeun Kim {
109c30a15e5SDonggeun Kim 	int getsize = FATBUFBLOCKS;
110c30a15e5SDonggeun Kim 	__u32 fatlength = mydata->fatlength;
111c30a15e5SDonggeun Kim 	__u8 *bufptr = mydata->fatbuf;
112c30a15e5SDonggeun Kim 	__u32 startblock = mydata->fatbufnum * FATBUFBLOCKS;
113c30a15e5SDonggeun Kim 
114c30a15e5SDonggeun Kim 	startblock += mydata->fat_sect;
115c30a15e5SDonggeun Kim 
116c30a15e5SDonggeun Kim 	if (getsize > fatlength)
117c30a15e5SDonggeun Kim 		getsize = fatlength;
118c30a15e5SDonggeun Kim 
119c30a15e5SDonggeun Kim 	/* Write FAT buf */
120c30a15e5SDonggeun Kim 	if (disk_write(startblock, getsize, bufptr) < 0) {
121c30a15e5SDonggeun Kim 		debug("error: writing FAT blocks\n");
122c30a15e5SDonggeun Kim 		return -1;
123c30a15e5SDonggeun Kim 	}
124c30a15e5SDonggeun Kim 
125627182eaSDonggeun Kim 	if (num_of_fats == 2) {
126627182eaSDonggeun Kim 		/* Update corresponding second FAT blocks */
127627182eaSDonggeun Kim 		startblock += mydata->fatlength;
128627182eaSDonggeun Kim 		if (disk_write(startblock, getsize, bufptr) < 0) {
129627182eaSDonggeun Kim 			debug("error: writing second FAT blocks\n");
130627182eaSDonggeun Kim 			return -1;
131627182eaSDonggeun Kim 		}
132627182eaSDonggeun Kim 	}
133627182eaSDonggeun Kim 
134c30a15e5SDonggeun Kim 	return 0;
135c30a15e5SDonggeun Kim }
136c30a15e5SDonggeun Kim 
137c30a15e5SDonggeun Kim /*
138c30a15e5SDonggeun Kim  * Get the entry at index 'entry' in a FAT (12/16/32) table.
139c30a15e5SDonggeun Kim  * On failure 0x00 is returned.
140c30a15e5SDonggeun Kim  * When bufnum is changed, write back the previous fatbuf to the disk.
141c30a15e5SDonggeun Kim  */
142c30a15e5SDonggeun Kim static __u32 get_fatent_value(fsdata *mydata, __u32 entry)
143c30a15e5SDonggeun Kim {
144c30a15e5SDonggeun Kim 	__u32 bufnum;
145c30a15e5SDonggeun Kim 	__u32 off16, offset;
146c30a15e5SDonggeun Kim 	__u32 ret = 0x00;
147c30a15e5SDonggeun Kim 	__u16 val1, val2;
148c30a15e5SDonggeun Kim 
149dd6d7967SWu, Josh 	if (CHECK_CLUST(entry, mydata->fatsize)) {
150dd6d7967SWu, Josh 		printf("Error: Invalid FAT entry: 0x%08x\n", entry);
151dd6d7967SWu, Josh 		return ret;
152dd6d7967SWu, Josh 	}
153dd6d7967SWu, Josh 
154c30a15e5SDonggeun Kim 	switch (mydata->fatsize) {
155c30a15e5SDonggeun Kim 	case 32:
156c30a15e5SDonggeun Kim 		bufnum = entry / FAT32BUFSIZE;
157c30a15e5SDonggeun Kim 		offset = entry - bufnum * FAT32BUFSIZE;
158c30a15e5SDonggeun Kim 		break;
159c30a15e5SDonggeun Kim 	case 16:
160c30a15e5SDonggeun Kim 		bufnum = entry / FAT16BUFSIZE;
161c30a15e5SDonggeun Kim 		offset = entry - bufnum * FAT16BUFSIZE;
162c30a15e5SDonggeun Kim 		break;
163c30a15e5SDonggeun Kim 	case 12:
164c30a15e5SDonggeun Kim 		bufnum = entry / FAT12BUFSIZE;
165c30a15e5SDonggeun Kim 		offset = entry - bufnum * FAT12BUFSIZE;
166c30a15e5SDonggeun Kim 		break;
167c30a15e5SDonggeun Kim 
168c30a15e5SDonggeun Kim 	default:
169c30a15e5SDonggeun Kim 		/* Unsupported FAT size */
170c30a15e5SDonggeun Kim 		return ret;
171c30a15e5SDonggeun Kim 	}
172c30a15e5SDonggeun Kim 
173c30a15e5SDonggeun Kim 	debug("FAT%d: entry: 0x%04x = %d, offset: 0x%04x = %d\n",
174c30a15e5SDonggeun Kim 	       mydata->fatsize, entry, entry, offset, offset);
175c30a15e5SDonggeun Kim 
176c30a15e5SDonggeun Kim 	/* Read a new block of FAT entries into the cache. */
177c30a15e5SDonggeun Kim 	if (bufnum != mydata->fatbufnum) {
178c30a15e5SDonggeun Kim 		int getsize = FATBUFBLOCKS;
179c30a15e5SDonggeun Kim 		__u8 *bufptr = mydata->fatbuf;
180c30a15e5SDonggeun Kim 		__u32 fatlength = mydata->fatlength;
181c30a15e5SDonggeun Kim 		__u32 startblock = bufnum * FATBUFBLOCKS;
182c30a15e5SDonggeun Kim 
183c30a15e5SDonggeun Kim 		if (getsize > fatlength)
184c30a15e5SDonggeun Kim 			getsize = fatlength;
185c30a15e5SDonggeun Kim 
186c30a15e5SDonggeun Kim 		startblock += mydata->fat_sect;	/* Offset from start of disk */
187c30a15e5SDonggeun Kim 
188c30a15e5SDonggeun Kim 		/* Write back the fatbuf to the disk */
189c30a15e5SDonggeun Kim 		if (mydata->fatbufnum != -1) {
190c30a15e5SDonggeun Kim 			if (flush_fat_buffer(mydata) < 0)
191c30a15e5SDonggeun Kim 				return -1;
192c30a15e5SDonggeun Kim 		}
193c30a15e5SDonggeun Kim 
194c30a15e5SDonggeun Kim 		if (disk_read(startblock, getsize, bufptr) < 0) {
195c30a15e5SDonggeun Kim 			debug("Error reading FAT blocks\n");
196c30a15e5SDonggeun Kim 			return ret;
197c30a15e5SDonggeun Kim 		}
198c30a15e5SDonggeun Kim 		mydata->fatbufnum = bufnum;
199c30a15e5SDonggeun Kim 	}
200c30a15e5SDonggeun Kim 
201c30a15e5SDonggeun Kim 	/* Get the actual entry from the table */
202c30a15e5SDonggeun Kim 	switch (mydata->fatsize) {
203c30a15e5SDonggeun Kim 	case 32:
204c30a15e5SDonggeun Kim 		ret = FAT2CPU32(((__u32 *) mydata->fatbuf)[offset]);
205c30a15e5SDonggeun Kim 		break;
206c30a15e5SDonggeun Kim 	case 16:
207c30a15e5SDonggeun Kim 		ret = FAT2CPU16(((__u16 *) mydata->fatbuf)[offset]);
208c30a15e5SDonggeun Kim 		break;
209c30a15e5SDonggeun Kim 	case 12:
210c30a15e5SDonggeun Kim 		off16 = (offset * 3) / 4;
211c30a15e5SDonggeun Kim 
212c30a15e5SDonggeun Kim 		switch (offset & 0x3) {
213c30a15e5SDonggeun Kim 		case 0:
214c30a15e5SDonggeun Kim 			ret = FAT2CPU16(((__u16 *) mydata->fatbuf)[off16]);
215c30a15e5SDonggeun Kim 			ret &= 0xfff;
216c30a15e5SDonggeun Kim 			break;
217c30a15e5SDonggeun Kim 		case 1:
218c30a15e5SDonggeun Kim 			val1 = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16]);
219c30a15e5SDonggeun Kim 			val1 &= 0xf000;
220c30a15e5SDonggeun Kim 			val2 = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16 + 1]);
221c30a15e5SDonggeun Kim 			val2 &= 0x00ff;
222c30a15e5SDonggeun Kim 			ret = (val2 << 4) | (val1 >> 12);
223c30a15e5SDonggeun Kim 			break;
224c30a15e5SDonggeun Kim 		case 2:
225c30a15e5SDonggeun Kim 			val1 = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16]);
226c30a15e5SDonggeun Kim 			val1 &= 0xff00;
227c30a15e5SDonggeun Kim 			val2 = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16 + 1]);
228c30a15e5SDonggeun Kim 			val2 &= 0x000f;
229c30a15e5SDonggeun Kim 			ret = (val2 << 8) | (val1 >> 8);
230c30a15e5SDonggeun Kim 			break;
231c30a15e5SDonggeun Kim 		case 3:
232c30a15e5SDonggeun Kim 			ret = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16]);
233c30a15e5SDonggeun Kim 			ret = (ret & 0xfff0) >> 4;
234c30a15e5SDonggeun Kim 			break;
235c30a15e5SDonggeun Kim 		default:
236c30a15e5SDonggeun Kim 			break;
237c30a15e5SDonggeun Kim 		}
238c30a15e5SDonggeun Kim 		break;
239c30a15e5SDonggeun Kim 	}
240c30a15e5SDonggeun Kim 	debug("FAT%d: ret: %08x, entry: %08x, offset: %04x\n",
241c30a15e5SDonggeun Kim 	       mydata->fatsize, ret, entry, offset);
242c30a15e5SDonggeun Kim 
243c30a15e5SDonggeun Kim 	return ret;
244c30a15e5SDonggeun Kim }
245c30a15e5SDonggeun Kim 
246c30a15e5SDonggeun Kim /*
247c30a15e5SDonggeun Kim  * Set the file name information from 'name' into 'slotptr',
248c30a15e5SDonggeun Kim  */
249c30a15e5SDonggeun Kim static int str2slot(dir_slot *slotptr, const char *name, int *idx)
250c30a15e5SDonggeun Kim {
251c30a15e5SDonggeun Kim 	int j, end_idx = 0;
252c30a15e5SDonggeun Kim 
253c30a15e5SDonggeun Kim 	for (j = 0; j <= 8; j += 2) {
254c30a15e5SDonggeun Kim 		if (name[*idx] == 0x00) {
255c30a15e5SDonggeun Kim 			slotptr->name0_4[j] = 0;
256c30a15e5SDonggeun Kim 			slotptr->name0_4[j + 1] = 0;
257c30a15e5SDonggeun Kim 			end_idx++;
258c30a15e5SDonggeun Kim 			goto name0_4;
259c30a15e5SDonggeun Kim 		}
260c30a15e5SDonggeun Kim 		slotptr->name0_4[j] = name[*idx];
261c30a15e5SDonggeun Kim 		(*idx)++;
262c30a15e5SDonggeun Kim 		end_idx++;
263c30a15e5SDonggeun Kim 	}
264c30a15e5SDonggeun Kim 	for (j = 0; j <= 10; j += 2) {
265c30a15e5SDonggeun Kim 		if (name[*idx] == 0x00) {
266c30a15e5SDonggeun Kim 			slotptr->name5_10[j] = 0;
267c30a15e5SDonggeun Kim 			slotptr->name5_10[j + 1] = 0;
268c30a15e5SDonggeun Kim 			end_idx++;
269c30a15e5SDonggeun Kim 			goto name5_10;
270c30a15e5SDonggeun Kim 		}
271c30a15e5SDonggeun Kim 		slotptr->name5_10[j] = name[*idx];
272c30a15e5SDonggeun Kim 		(*idx)++;
273c30a15e5SDonggeun Kim 		end_idx++;
274c30a15e5SDonggeun Kim 	}
275c30a15e5SDonggeun Kim 	for (j = 0; j <= 2; j += 2) {
276c30a15e5SDonggeun Kim 		if (name[*idx] == 0x00) {
277c30a15e5SDonggeun Kim 			slotptr->name11_12[j] = 0;
278c30a15e5SDonggeun Kim 			slotptr->name11_12[j + 1] = 0;
279c30a15e5SDonggeun Kim 			end_idx++;
280c30a15e5SDonggeun Kim 			goto name11_12;
281c30a15e5SDonggeun Kim 		}
282c30a15e5SDonggeun Kim 		slotptr->name11_12[j] = name[*idx];
283c30a15e5SDonggeun Kim 		(*idx)++;
284c30a15e5SDonggeun Kim 		end_idx++;
285c30a15e5SDonggeun Kim 	}
286c30a15e5SDonggeun Kim 
287c30a15e5SDonggeun Kim 	if (name[*idx] == 0x00)
288c30a15e5SDonggeun Kim 		return 1;
289c30a15e5SDonggeun Kim 
290c30a15e5SDonggeun Kim 	return 0;
291c30a15e5SDonggeun Kim /* Not used characters are filled with 0xff 0xff */
292c30a15e5SDonggeun Kim name0_4:
293c30a15e5SDonggeun Kim 	for (; end_idx < 5; end_idx++) {
294c30a15e5SDonggeun Kim 		slotptr->name0_4[end_idx * 2] = 0xff;
295c30a15e5SDonggeun Kim 		slotptr->name0_4[end_idx * 2 + 1] = 0xff;
296c30a15e5SDonggeun Kim 	}
297c30a15e5SDonggeun Kim 	end_idx = 5;
298c30a15e5SDonggeun Kim name5_10:
299c30a15e5SDonggeun Kim 	end_idx -= 5;
300c30a15e5SDonggeun Kim 	for (; end_idx < 6; end_idx++) {
301c30a15e5SDonggeun Kim 		slotptr->name5_10[end_idx * 2] = 0xff;
302c30a15e5SDonggeun Kim 		slotptr->name5_10[end_idx * 2 + 1] = 0xff;
303c30a15e5SDonggeun Kim 	}
304c30a15e5SDonggeun Kim 	end_idx = 11;
305c30a15e5SDonggeun Kim name11_12:
306c30a15e5SDonggeun Kim 	end_idx -= 11;
307c30a15e5SDonggeun Kim 	for (; end_idx < 2; end_idx++) {
308c30a15e5SDonggeun Kim 		slotptr->name11_12[end_idx * 2] = 0xff;
309c30a15e5SDonggeun Kim 		slotptr->name11_12[end_idx * 2 + 1] = 0xff;
310c30a15e5SDonggeun Kim 	}
311c30a15e5SDonggeun Kim 
312c30a15e5SDonggeun Kim 	return 1;
313c30a15e5SDonggeun Kim }
314c30a15e5SDonggeun Kim 
315c30a15e5SDonggeun Kim static int is_next_clust(fsdata *mydata, dir_entry *dentptr);
316c30a15e5SDonggeun Kim static void flush_dir_table(fsdata *mydata, dir_entry **dentptr);
317c30a15e5SDonggeun Kim 
318c30a15e5SDonggeun Kim /*
319c30a15e5SDonggeun Kim  * Fill dir_slot entries with appropriate name, id, and attr
320c30a15e5SDonggeun Kim  * The real directory entry is returned by 'dentptr'
321c30a15e5SDonggeun Kim  */
322c30a15e5SDonggeun Kim static void
323c30a15e5SDonggeun Kim fill_dir_slot(fsdata *mydata, dir_entry **dentptr, const char *l_name)
324c30a15e5SDonggeun Kim {
3251170e634SBenoît Thébaudeau 	dir_slot *slotptr = (dir_slot *)get_contents_vfatname_block;
3268506eb8dSAnatolij Gustschin 	__u8 counter = 0, checksum;
327c30a15e5SDonggeun Kim 	int idx = 0, ret;
328c30a15e5SDonggeun Kim 
329*ed76f912SStefan Brüns 	/* Get short file name checksum value */
330ff04f6d1SMarek Vasut 	checksum = mkcksum((*dentptr)->name, (*dentptr)->ext);
331c30a15e5SDonggeun Kim 
332c30a15e5SDonggeun Kim 	do {
333c30a15e5SDonggeun Kim 		memset(slotptr, 0x00, sizeof(dir_slot));
334c30a15e5SDonggeun Kim 		ret = str2slot(slotptr, l_name, &idx);
335c30a15e5SDonggeun Kim 		slotptr->id = ++counter;
336c30a15e5SDonggeun Kim 		slotptr->attr = ATTR_VFAT;
337c30a15e5SDonggeun Kim 		slotptr->alias_checksum = checksum;
338c30a15e5SDonggeun Kim 		slotptr++;
339c30a15e5SDonggeun Kim 	} while (ret == 0);
340c30a15e5SDonggeun Kim 
341c30a15e5SDonggeun Kim 	slotptr--;
342c30a15e5SDonggeun Kim 	slotptr->id |= LAST_LONG_ENTRY_MASK;
343c30a15e5SDonggeun Kim 
344c30a15e5SDonggeun Kim 	while (counter >= 1) {
345c30a15e5SDonggeun Kim 		if (is_next_clust(mydata, *dentptr)) {
346c30a15e5SDonggeun Kim 			/* A new cluster is allocated for directory table */
347c30a15e5SDonggeun Kim 			flush_dir_table(mydata, dentptr);
348c30a15e5SDonggeun Kim 		}
349c30a15e5SDonggeun Kim 		memcpy(*dentptr, slotptr, sizeof(dir_slot));
350c30a15e5SDonggeun Kim 		(*dentptr)++;
351c30a15e5SDonggeun Kim 		slotptr--;
352c30a15e5SDonggeun Kim 		counter--;
353c30a15e5SDonggeun Kim 	}
354c30a15e5SDonggeun Kim 
355c30a15e5SDonggeun Kim 	if (is_next_clust(mydata, *dentptr)) {
356c30a15e5SDonggeun Kim 		/* A new cluster is allocated for directory table */
357c30a15e5SDonggeun Kim 		flush_dir_table(mydata, dentptr);
358c30a15e5SDonggeun Kim 	}
359c30a15e5SDonggeun Kim }
360c30a15e5SDonggeun Kim 
361c30a15e5SDonggeun Kim static __u32 dir_curclust;
362c30a15e5SDonggeun Kim 
363c30a15e5SDonggeun Kim /*
364c30a15e5SDonggeun Kim  * Extract the full long filename starting at 'retdent' (which is really
365c30a15e5SDonggeun Kim  * a slot) into 'l_name'. If successful also copy the real directory entry
366c30a15e5SDonggeun Kim  * into 'retdent'
367c30a15e5SDonggeun Kim  * If additional adjacent cluster for directory entries is read into memory,
3681170e634SBenoît Thébaudeau  * then 'get_contents_vfatname_block' is copied into 'get_dentfromdir_block' and
369c30a15e5SDonggeun Kim  * the location of the real directory entry is returned by 'retdent'
370c30a15e5SDonggeun Kim  * Return 0 on success, -1 otherwise.
371c30a15e5SDonggeun Kim  */
372c30a15e5SDonggeun Kim static int
373c30a15e5SDonggeun Kim get_long_file_name(fsdata *mydata, int curclust, __u8 *cluster,
374c30a15e5SDonggeun Kim 	      dir_entry **retdent, char *l_name)
375c30a15e5SDonggeun Kim {
376c30a15e5SDonggeun Kim 	dir_entry *realdent;
377c30a15e5SDonggeun Kim 	dir_slot *slotptr = (dir_slot *)(*retdent);
378c30a15e5SDonggeun Kim 	dir_slot *slotptr2 = NULL;
379c30a15e5SDonggeun Kim 	__u8 *buflimit = cluster + mydata->sect_size * ((curclust == 0) ?
380c30a15e5SDonggeun Kim 							PREFETCH_BLOCKS :
381c30a15e5SDonggeun Kim 							mydata->clust_size);
382c30a15e5SDonggeun Kim 	__u8 counter = (slotptr->id & ~LAST_LONG_ENTRY_MASK) & 0xff;
383c30a15e5SDonggeun Kim 	int idx = 0, cur_position = 0;
384c30a15e5SDonggeun Kim 
385c30a15e5SDonggeun Kim 	if (counter > VFAT_MAXSEQ) {
386c30a15e5SDonggeun Kim 		debug("Error: VFAT name is too long\n");
387c30a15e5SDonggeun Kim 		return -1;
388c30a15e5SDonggeun Kim 	}
389c30a15e5SDonggeun Kim 
390c30a15e5SDonggeun Kim 	while ((__u8 *)slotptr < buflimit) {
391c30a15e5SDonggeun Kim 		if (counter == 0)
392c30a15e5SDonggeun Kim 			break;
393c30a15e5SDonggeun Kim 		if (((slotptr->id & ~LAST_LONG_ENTRY_MASK) & 0xff) != counter)
394c30a15e5SDonggeun Kim 			return -1;
395c30a15e5SDonggeun Kim 		slotptr++;
396c30a15e5SDonggeun Kim 		counter--;
397c30a15e5SDonggeun Kim 	}
398c30a15e5SDonggeun Kim 
399c30a15e5SDonggeun Kim 	if ((__u8 *)slotptr >= buflimit) {
400c30a15e5SDonggeun Kim 		if (curclust == 0)
401c30a15e5SDonggeun Kim 			return -1;
402c30a15e5SDonggeun Kim 		curclust = get_fatent_value(mydata, dir_curclust);
403c30a15e5SDonggeun Kim 		if (CHECK_CLUST(curclust, mydata->fatsize)) {
404c30a15e5SDonggeun Kim 			debug("curclust: 0x%x\n", curclust);
405c30a15e5SDonggeun Kim 			printf("Invalid FAT entry\n");
406c30a15e5SDonggeun Kim 			return -1;
407c30a15e5SDonggeun Kim 		}
408c30a15e5SDonggeun Kim 
409c30a15e5SDonggeun Kim 		dir_curclust = curclust;
410c30a15e5SDonggeun Kim 
4111170e634SBenoît Thébaudeau 		if (get_cluster(mydata, curclust, get_contents_vfatname_block,
412c30a15e5SDonggeun Kim 				mydata->clust_size * mydata->sect_size) != 0) {
413c30a15e5SDonggeun Kim 			debug("Error: reading directory block\n");
414c30a15e5SDonggeun Kim 			return -1;
415c30a15e5SDonggeun Kim 		}
416c30a15e5SDonggeun Kim 
4171170e634SBenoît Thébaudeau 		slotptr2 = (dir_slot *)get_contents_vfatname_block;
418c30a15e5SDonggeun Kim 		while (counter > 0) {
419c30a15e5SDonggeun Kim 			if (((slotptr2->id & ~LAST_LONG_ENTRY_MASK)
420c30a15e5SDonggeun Kim 			    & 0xff) != counter)
421c30a15e5SDonggeun Kim 				return -1;
422c30a15e5SDonggeun Kim 			slotptr2++;
423c30a15e5SDonggeun Kim 			counter--;
424c30a15e5SDonggeun Kim 		}
425c30a15e5SDonggeun Kim 
426c30a15e5SDonggeun Kim 		/* Save the real directory entry */
427c30a15e5SDonggeun Kim 		realdent = (dir_entry *)slotptr2;
4281170e634SBenoît Thébaudeau 		while ((__u8 *)slotptr2 > get_contents_vfatname_block) {
429c30a15e5SDonggeun Kim 			slotptr2--;
430c30a15e5SDonggeun Kim 			slot2str(slotptr2, l_name, &idx);
431c30a15e5SDonggeun Kim 		}
432c30a15e5SDonggeun Kim 	} else {
433c30a15e5SDonggeun Kim 		/* Save the real directory entry */
434c30a15e5SDonggeun Kim 		realdent = (dir_entry *)slotptr;
435c30a15e5SDonggeun Kim 	}
436c30a15e5SDonggeun Kim 
437c30a15e5SDonggeun Kim 	do {
438c30a15e5SDonggeun Kim 		slotptr--;
439c30a15e5SDonggeun Kim 		if (slot2str(slotptr, l_name, &idx))
440c30a15e5SDonggeun Kim 			break;
441c30a15e5SDonggeun Kim 	} while (!(slotptr->id & LAST_LONG_ENTRY_MASK));
442c30a15e5SDonggeun Kim 
443c30a15e5SDonggeun Kim 	l_name[idx] = '\0';
444c30a15e5SDonggeun Kim 	if (*l_name == DELETED_FLAG)
445c30a15e5SDonggeun Kim 		*l_name = '\0';
446c30a15e5SDonggeun Kim 	else if (*l_name == aRING)
447c30a15e5SDonggeun Kim 		*l_name = DELETED_FLAG;
448c30a15e5SDonggeun Kim 	downcase(l_name);
449c30a15e5SDonggeun Kim 
450c30a15e5SDonggeun Kim 	/* Return the real directory entry */
451c30a15e5SDonggeun Kim 	*retdent = realdent;
452c30a15e5SDonggeun Kim 
453c30a15e5SDonggeun Kim 	if (slotptr2) {
4541170e634SBenoît Thébaudeau 		memcpy(get_dentfromdir_block, get_contents_vfatname_block,
455c30a15e5SDonggeun Kim 			mydata->clust_size * mydata->sect_size);
4561170e634SBenoît Thébaudeau 		cur_position = (__u8 *)realdent - get_contents_vfatname_block;
457c30a15e5SDonggeun Kim 		*retdent = (dir_entry *) &get_dentfromdir_block[cur_position];
458c30a15e5SDonggeun Kim 	}
459c30a15e5SDonggeun Kim 
460c30a15e5SDonggeun Kim 	return 0;
461c30a15e5SDonggeun Kim }
462c30a15e5SDonggeun Kim 
463c30a15e5SDonggeun Kim /*
464c30a15e5SDonggeun Kim  * Set the entry at index 'entry' in a FAT (16/32) table.
465c30a15e5SDonggeun Kim  */
466c30a15e5SDonggeun Kim static int set_fatent_value(fsdata *mydata, __u32 entry, __u32 entry_value)
467c30a15e5SDonggeun Kim {
468c30a15e5SDonggeun Kim 	__u32 bufnum, offset;
469c30a15e5SDonggeun Kim 
470c30a15e5SDonggeun Kim 	switch (mydata->fatsize) {
471c30a15e5SDonggeun Kim 	case 32:
472c30a15e5SDonggeun Kim 		bufnum = entry / FAT32BUFSIZE;
473c30a15e5SDonggeun Kim 		offset = entry - bufnum * FAT32BUFSIZE;
474c30a15e5SDonggeun Kim 		break;
475c30a15e5SDonggeun Kim 	case 16:
476c30a15e5SDonggeun Kim 		bufnum = entry / FAT16BUFSIZE;
477c30a15e5SDonggeun Kim 		offset = entry - bufnum * FAT16BUFSIZE;
478c30a15e5SDonggeun Kim 		break;
479c30a15e5SDonggeun Kim 	default:
480c30a15e5SDonggeun Kim 		/* Unsupported FAT size */
481c30a15e5SDonggeun Kim 		return -1;
482c30a15e5SDonggeun Kim 	}
483c30a15e5SDonggeun Kim 
484c30a15e5SDonggeun Kim 	/* Read a new block of FAT entries into the cache. */
485c30a15e5SDonggeun Kim 	if (bufnum != mydata->fatbufnum) {
486c30a15e5SDonggeun Kim 		int getsize = FATBUFBLOCKS;
487c30a15e5SDonggeun Kim 		__u8 *bufptr = mydata->fatbuf;
488c30a15e5SDonggeun Kim 		__u32 fatlength = mydata->fatlength;
489c30a15e5SDonggeun Kim 		__u32 startblock = bufnum * FATBUFBLOCKS;
490c30a15e5SDonggeun Kim 
491c30a15e5SDonggeun Kim 		fatlength *= mydata->sect_size;
492c30a15e5SDonggeun Kim 		startblock += mydata->fat_sect;
493c30a15e5SDonggeun Kim 
494c30a15e5SDonggeun Kim 		if (getsize > fatlength)
495c30a15e5SDonggeun Kim 			getsize = fatlength;
496c30a15e5SDonggeun Kim 
497c30a15e5SDonggeun Kim 		if (mydata->fatbufnum != -1) {
498c30a15e5SDonggeun Kim 			if (flush_fat_buffer(mydata) < 0)
499c30a15e5SDonggeun Kim 				return -1;
500c30a15e5SDonggeun Kim 		}
501c30a15e5SDonggeun Kim 
502c30a15e5SDonggeun Kim 		if (disk_read(startblock, getsize, bufptr) < 0) {
503c30a15e5SDonggeun Kim 			debug("Error reading FAT blocks\n");
504c30a15e5SDonggeun Kim 			return -1;
505c30a15e5SDonggeun Kim 		}
506c30a15e5SDonggeun Kim 		mydata->fatbufnum = bufnum;
507c30a15e5SDonggeun Kim 	}
508c30a15e5SDonggeun Kim 
509c30a15e5SDonggeun Kim 	/* Set the actual entry */
510c30a15e5SDonggeun Kim 	switch (mydata->fatsize) {
511c30a15e5SDonggeun Kim 	case 32:
512c30a15e5SDonggeun Kim 		((__u32 *) mydata->fatbuf)[offset] = cpu_to_le32(entry_value);
513c30a15e5SDonggeun Kim 		break;
514c30a15e5SDonggeun Kim 	case 16:
515c30a15e5SDonggeun Kim 		((__u16 *) mydata->fatbuf)[offset] = cpu_to_le16(entry_value);
516c30a15e5SDonggeun Kim 		break;
517c30a15e5SDonggeun Kim 	default:
518c30a15e5SDonggeun Kim 		return -1;
519c30a15e5SDonggeun Kim 	}
520c30a15e5SDonggeun Kim 
521c30a15e5SDonggeun Kim 	return 0;
522c30a15e5SDonggeun Kim }
523c30a15e5SDonggeun Kim 
524c30a15e5SDonggeun Kim /*
525c30a15e5SDonggeun Kim  * Determine the entry value at index 'entry' in a FAT (16/32) table
526c30a15e5SDonggeun Kim  */
527c30a15e5SDonggeun Kim static __u32 determine_fatent(fsdata *mydata, __u32 entry)
528c30a15e5SDonggeun Kim {
529c30a15e5SDonggeun Kim 	__u32 next_fat, next_entry = entry + 1;
530c30a15e5SDonggeun Kim 
531c30a15e5SDonggeun Kim 	while (1) {
532c30a15e5SDonggeun Kim 		next_fat = get_fatent_value(mydata, next_entry);
533c30a15e5SDonggeun Kim 		if (next_fat == 0) {
534c30a15e5SDonggeun Kim 			set_fatent_value(mydata, entry, next_entry);
535c30a15e5SDonggeun Kim 			break;
536c30a15e5SDonggeun Kim 		}
537c30a15e5SDonggeun Kim 		next_entry++;
538c30a15e5SDonggeun Kim 	}
539c30a15e5SDonggeun Kim 	debug("FAT%d: entry: %08x, entry_value: %04x\n",
540c30a15e5SDonggeun Kim 	       mydata->fatsize, entry, next_entry);
541c30a15e5SDonggeun Kim 
542c30a15e5SDonggeun Kim 	return next_entry;
543c30a15e5SDonggeun Kim }
544c30a15e5SDonggeun Kim 
545c30a15e5SDonggeun Kim /*
546c30a15e5SDonggeun Kim  * Write at most 'size' bytes from 'buffer' into the specified cluster.
547c30a15e5SDonggeun Kim  * Return 0 on success, -1 otherwise.
548c30a15e5SDonggeun Kim  */
549c30a15e5SDonggeun Kim static int
550c30a15e5SDonggeun Kim set_cluster(fsdata *mydata, __u32 clustnum, __u8 *buffer,
551c30a15e5SDonggeun Kim 	     unsigned long size)
552c30a15e5SDonggeun Kim {
5538133f43dSBenoît Thébaudeau 	__u32 idx = 0;
554c30a15e5SDonggeun Kim 	__u32 startsect;
5558133f43dSBenoît Thébaudeau 	int ret;
556c30a15e5SDonggeun Kim 
557c30a15e5SDonggeun Kim 	if (clustnum > 0)
558c30a15e5SDonggeun Kim 		startsect = mydata->data_begin +
559c30a15e5SDonggeun Kim 				clustnum * mydata->clust_size;
560c30a15e5SDonggeun Kim 	else
561c30a15e5SDonggeun Kim 		startsect = mydata->rootdir_sect;
562c30a15e5SDonggeun Kim 
563c30a15e5SDonggeun Kim 	debug("clustnum: %d, startsect: %d\n", clustnum, startsect);
564c30a15e5SDonggeun Kim 
5658133f43dSBenoît Thébaudeau 	if ((unsigned long)buffer & (ARCH_DMA_MINALIGN - 1)) {
5668133f43dSBenoît Thébaudeau 		ALLOC_CACHE_ALIGN_BUFFER(__u8, tmpbuf, mydata->sect_size);
5678133f43dSBenoît Thébaudeau 
5688133f43dSBenoît Thébaudeau 		printf("FAT: Misaligned buffer address (%p)\n", buffer);
5698133f43dSBenoît Thébaudeau 
5708133f43dSBenoît Thébaudeau 		while (size >= mydata->sect_size) {
5718133f43dSBenoît Thébaudeau 			memcpy(tmpbuf, buffer, mydata->sect_size);
5728133f43dSBenoît Thébaudeau 			ret = disk_write(startsect++, 1, tmpbuf);
5738133f43dSBenoît Thébaudeau 			if (ret != 1) {
5748133f43dSBenoît Thébaudeau 				debug("Error writing data (got %d)\n", ret);
575c30a15e5SDonggeun Kim 				return -1;
576c30a15e5SDonggeun Kim 			}
5778133f43dSBenoît Thébaudeau 
5788133f43dSBenoît Thébaudeau 			buffer += mydata->sect_size;
5798133f43dSBenoît Thébaudeau 			size -= mydata->sect_size;
5806b8f185fSWu, Josh 		}
5818133f43dSBenoît Thébaudeau 	} else if (size >= mydata->sect_size) {
582c30a15e5SDonggeun Kim 		idx = size / mydata->sect_size;
5838133f43dSBenoît Thébaudeau 		ret = disk_write(startsect, idx, buffer);
5848133f43dSBenoît Thébaudeau 		if (ret != idx) {
5858133f43dSBenoît Thébaudeau 			debug("Error writing data (got %d)\n", ret);
586c30a15e5SDonggeun Kim 			return -1;
587c30a15e5SDonggeun Kim 		}
588c30a15e5SDonggeun Kim 
5898133f43dSBenoît Thébaudeau 		startsect += idx;
5908133f43dSBenoît Thébaudeau 		idx *= mydata->sect_size;
5918133f43dSBenoît Thébaudeau 		buffer += idx;
5928133f43dSBenoît Thébaudeau 		size -= idx;
5938133f43dSBenoît Thébaudeau 	}
5948133f43dSBenoît Thébaudeau 
5958133f43dSBenoît Thébaudeau 	if (size) {
5968133f43dSBenoît Thébaudeau 		ALLOC_CACHE_ALIGN_BUFFER(__u8, tmpbuf, mydata->sect_size);
5978133f43dSBenoît Thébaudeau 
5988133f43dSBenoît Thébaudeau 		memcpy(tmpbuf, buffer, size);
5998133f43dSBenoît Thébaudeau 		ret = disk_write(startsect, 1, tmpbuf);
6008133f43dSBenoît Thébaudeau 		if (ret != 1) {
6018133f43dSBenoît Thébaudeau 			debug("Error writing data (got %d)\n", ret);
6028133f43dSBenoît Thébaudeau 			return -1;
6038133f43dSBenoît Thébaudeau 		}
604c30a15e5SDonggeun Kim 	}
605c30a15e5SDonggeun Kim 
606c30a15e5SDonggeun Kim 	return 0;
607c30a15e5SDonggeun Kim }
608c30a15e5SDonggeun Kim 
609c30a15e5SDonggeun Kim /*
610c30a15e5SDonggeun Kim  * Find the first empty cluster
611c30a15e5SDonggeun Kim  */
612c30a15e5SDonggeun Kim static int find_empty_cluster(fsdata *mydata)
613c30a15e5SDonggeun Kim {
614c30a15e5SDonggeun Kim 	__u32 fat_val, entry = 3;
615c30a15e5SDonggeun Kim 
616c30a15e5SDonggeun Kim 	while (1) {
617c30a15e5SDonggeun Kim 		fat_val = get_fatent_value(mydata, entry);
618c30a15e5SDonggeun Kim 		if (fat_val == 0)
619c30a15e5SDonggeun Kim 			break;
620c30a15e5SDonggeun Kim 		entry++;
621c30a15e5SDonggeun Kim 	}
622c30a15e5SDonggeun Kim 
623c30a15e5SDonggeun Kim 	return entry;
624c30a15e5SDonggeun Kim }
625c30a15e5SDonggeun Kim 
626c30a15e5SDonggeun Kim /*
627c30a15e5SDonggeun Kim  * Write directory entries in 'get_dentfromdir_block' to block device
628c30a15e5SDonggeun Kim  */
629c30a15e5SDonggeun Kim static void flush_dir_table(fsdata *mydata, dir_entry **dentptr)
630c30a15e5SDonggeun Kim {
631c30a15e5SDonggeun Kim 	int dir_newclust = 0;
632c30a15e5SDonggeun Kim 
633c30a15e5SDonggeun Kim 	if (set_cluster(mydata, dir_curclust,
634c30a15e5SDonggeun Kim 		    get_dentfromdir_block,
635c30a15e5SDonggeun Kim 		    mydata->clust_size * mydata->sect_size) != 0) {
636c30a15e5SDonggeun Kim 		printf("error: wrinting directory entry\n");
637c30a15e5SDonggeun Kim 		return;
638c30a15e5SDonggeun Kim 	}
639c30a15e5SDonggeun Kim 	dir_newclust = find_empty_cluster(mydata);
640c30a15e5SDonggeun Kim 	set_fatent_value(mydata, dir_curclust, dir_newclust);
641c30a15e5SDonggeun Kim 	if (mydata->fatsize == 32)
642c30a15e5SDonggeun Kim 		set_fatent_value(mydata, dir_newclust, 0xffffff8);
643c30a15e5SDonggeun Kim 	else if (mydata->fatsize == 16)
644c30a15e5SDonggeun Kim 		set_fatent_value(mydata, dir_newclust, 0xfff8);
645c30a15e5SDonggeun Kim 
646c30a15e5SDonggeun Kim 	dir_curclust = dir_newclust;
647c30a15e5SDonggeun Kim 
648c30a15e5SDonggeun Kim 	if (flush_fat_buffer(mydata) < 0)
649c30a15e5SDonggeun Kim 		return;
650c30a15e5SDonggeun Kim 
651c30a15e5SDonggeun Kim 	memset(get_dentfromdir_block, 0x00,
652c30a15e5SDonggeun Kim 		mydata->clust_size * mydata->sect_size);
653c30a15e5SDonggeun Kim 
654c30a15e5SDonggeun Kim 	*dentptr = (dir_entry *) get_dentfromdir_block;
655c30a15e5SDonggeun Kim }
656c30a15e5SDonggeun Kim 
657c30a15e5SDonggeun Kim /*
658c30a15e5SDonggeun Kim  * Set empty cluster from 'entry' to the end of a file
659c30a15e5SDonggeun Kim  */
660c30a15e5SDonggeun Kim static int clear_fatent(fsdata *mydata, __u32 entry)
661c30a15e5SDonggeun Kim {
662c30a15e5SDonggeun Kim 	__u32 fat_val;
663c30a15e5SDonggeun Kim 
664c30a15e5SDonggeun Kim 	while (1) {
665c30a15e5SDonggeun Kim 		fat_val = get_fatent_value(mydata, entry);
666c30a15e5SDonggeun Kim 		if (fat_val != 0)
667c30a15e5SDonggeun Kim 			set_fatent_value(mydata, entry, 0);
668c30a15e5SDonggeun Kim 		else
669c30a15e5SDonggeun Kim 			break;
670c30a15e5SDonggeun Kim 
671c30a15e5SDonggeun Kim 		if (fat_val == 0xfffffff || fat_val == 0xffff)
672c30a15e5SDonggeun Kim 			break;
673c30a15e5SDonggeun Kim 
674c30a15e5SDonggeun Kim 		entry = fat_val;
675c30a15e5SDonggeun Kim 	}
676c30a15e5SDonggeun Kim 
677c30a15e5SDonggeun Kim 	/* Flush fat buffer */
678c30a15e5SDonggeun Kim 	if (flush_fat_buffer(mydata) < 0)
679c30a15e5SDonggeun Kim 		return -1;
680c30a15e5SDonggeun Kim 
681c30a15e5SDonggeun Kim 	return 0;
682c30a15e5SDonggeun Kim }
683c30a15e5SDonggeun Kim 
684c30a15e5SDonggeun Kim /*
685c30a15e5SDonggeun Kim  * Write at most 'maxsize' bytes from 'buffer' into
686c30a15e5SDonggeun Kim  * the file associated with 'dentptr'
6871ad0b98aSSuriyan Ramasami  * Update the number of bytes written in *gotsize and return 0
6881ad0b98aSSuriyan Ramasami  * or return -1 on fatal errors.
689c30a15e5SDonggeun Kim  */
690c30a15e5SDonggeun Kim static int
691c30a15e5SDonggeun Kim set_contents(fsdata *mydata, dir_entry *dentptr, __u8 *buffer,
6921ad0b98aSSuriyan Ramasami 	      loff_t maxsize, loff_t *gotsize)
693c30a15e5SDonggeun Kim {
6941ad0b98aSSuriyan Ramasami 	loff_t filesize = FAT2CPU32(dentptr->size);
695c30a15e5SDonggeun Kim 	unsigned int bytesperclust = mydata->clust_size * mydata->sect_size;
696c30a15e5SDonggeun Kim 	__u32 curclust = START(dentptr);
697c30a15e5SDonggeun Kim 	__u32 endclust = 0, newclust = 0;
6981ad0b98aSSuriyan Ramasami 	loff_t actsize;
699c30a15e5SDonggeun Kim 
7001ad0b98aSSuriyan Ramasami 	*gotsize = 0;
7011ad0b98aSSuriyan Ramasami 	debug("Filesize: %llu bytes\n", filesize);
702c30a15e5SDonggeun Kim 
703c30a15e5SDonggeun Kim 	if (maxsize > 0 && filesize > maxsize)
704c30a15e5SDonggeun Kim 		filesize = maxsize;
705c30a15e5SDonggeun Kim 
7061ad0b98aSSuriyan Ramasami 	debug("%llu bytes\n", filesize);
707c30a15e5SDonggeun Kim 
7081254b44aSBenoît Thébaudeau 	if (!curclust) {
7091254b44aSBenoît Thébaudeau 		if (filesize) {
7101254b44aSBenoît Thébaudeau 			debug("error: nonempty clusterless file!\n");
7111254b44aSBenoît Thébaudeau 			return -1;
7121254b44aSBenoît Thébaudeau 		}
7131254b44aSBenoît Thébaudeau 		return 0;
7141254b44aSBenoît Thébaudeau 	}
7151254b44aSBenoît Thébaudeau 
716c30a15e5SDonggeun Kim 	actsize = bytesperclust;
717c30a15e5SDonggeun Kim 	endclust = curclust;
718c30a15e5SDonggeun Kim 	do {
719c30a15e5SDonggeun Kim 		/* search for consecutive clusters */
720c30a15e5SDonggeun Kim 		while (actsize < filesize) {
721c30a15e5SDonggeun Kim 			newclust = determine_fatent(mydata, endclust);
722c30a15e5SDonggeun Kim 
723c30a15e5SDonggeun Kim 			if ((newclust - 1) != endclust)
724c30a15e5SDonggeun Kim 				goto getit;
725c30a15e5SDonggeun Kim 
726c30a15e5SDonggeun Kim 			if (CHECK_CLUST(newclust, mydata->fatsize)) {
7275e1a860eSBenoît Thébaudeau 				debug("newclust: 0x%x\n", newclust);
728c30a15e5SDonggeun Kim 				debug("Invalid FAT entry\n");
7291ad0b98aSSuriyan Ramasami 				return 0;
730c30a15e5SDonggeun Kim 			}
731c30a15e5SDonggeun Kim 			endclust = newclust;
732c30a15e5SDonggeun Kim 			actsize += bytesperclust;
733c30a15e5SDonggeun Kim 		}
734c30a15e5SDonggeun Kim 
735c30a15e5SDonggeun Kim 		/* set remaining bytes */
736c30a15e5SDonggeun Kim 		actsize = filesize;
7371d7f2eceSBenoît Thébaudeau 		if (set_cluster(mydata, curclust, buffer, (int)actsize) != 0) {
738c30a15e5SDonggeun Kim 			debug("error: writing cluster\n");
739c30a15e5SDonggeun Kim 			return -1;
740c30a15e5SDonggeun Kim 		}
7411ad0b98aSSuriyan Ramasami 		*gotsize += actsize;
742c30a15e5SDonggeun Kim 
743c30a15e5SDonggeun Kim 		/* Mark end of file in FAT */
744c30a15e5SDonggeun Kim 		if (mydata->fatsize == 16)
745c30a15e5SDonggeun Kim 			newclust = 0xffff;
746c30a15e5SDonggeun Kim 		else if (mydata->fatsize == 32)
747c30a15e5SDonggeun Kim 			newclust = 0xfffffff;
748c30a15e5SDonggeun Kim 		set_fatent_value(mydata, endclust, newclust);
749c30a15e5SDonggeun Kim 
7501ad0b98aSSuriyan Ramasami 		return 0;
751c30a15e5SDonggeun Kim getit:
752c30a15e5SDonggeun Kim 		if (set_cluster(mydata, curclust, buffer, (int)actsize) != 0) {
753c30a15e5SDonggeun Kim 			debug("error: writing cluster\n");
754c30a15e5SDonggeun Kim 			return -1;
755c30a15e5SDonggeun Kim 		}
7561ad0b98aSSuriyan Ramasami 		*gotsize += actsize;
757c30a15e5SDonggeun Kim 		filesize -= actsize;
758c30a15e5SDonggeun Kim 		buffer += actsize;
759c30a15e5SDonggeun Kim 
7605e1a860eSBenoît Thébaudeau 		if (CHECK_CLUST(newclust, mydata->fatsize)) {
7615e1a860eSBenoît Thébaudeau 			debug("newclust: 0x%x\n", newclust);
762c30a15e5SDonggeun Kim 			debug("Invalid FAT entry\n");
7631ad0b98aSSuriyan Ramasami 			return 0;
764c30a15e5SDonggeun Kim 		}
765c30a15e5SDonggeun Kim 		actsize = bytesperclust;
766c30a15e5SDonggeun Kim 		curclust = endclust = newclust;
767c30a15e5SDonggeun Kim 	} while (1);
768c30a15e5SDonggeun Kim }
769c30a15e5SDonggeun Kim 
770c30a15e5SDonggeun Kim /*
7711254b44aSBenoît Thébaudeau  * Set start cluster in directory entry
772c30a15e5SDonggeun Kim  */
7731254b44aSBenoît Thébaudeau static void set_start_cluster(const fsdata *mydata, dir_entry *dentptr,
7741254b44aSBenoît Thébaudeau 				__u32 start_cluster)
775c30a15e5SDonggeun Kim {
776c30a15e5SDonggeun Kim 	if (mydata->fatsize == 32)
777c30a15e5SDonggeun Kim 		dentptr->starthi =
778c30a15e5SDonggeun Kim 			cpu_to_le16((start_cluster & 0xffff0000) >> 16);
779c30a15e5SDonggeun Kim 	dentptr->start = cpu_to_le16(start_cluster & 0xffff);
7801254b44aSBenoît Thébaudeau }
7811254b44aSBenoît Thébaudeau 
7821254b44aSBenoît Thébaudeau /*
7831254b44aSBenoît Thébaudeau  * Fill dir_entry
7841254b44aSBenoît Thébaudeau  */
7851254b44aSBenoît Thébaudeau static void fill_dentry(fsdata *mydata, dir_entry *dentptr,
7861254b44aSBenoît Thébaudeau 	const char *filename, __u32 start_cluster, __u32 size, __u8 attr)
7871254b44aSBenoît Thébaudeau {
7881254b44aSBenoît Thébaudeau 	set_start_cluster(mydata, dentptr, start_cluster);
789c30a15e5SDonggeun Kim 	dentptr->size = cpu_to_le32(size);
790c30a15e5SDonggeun Kim 
791c30a15e5SDonggeun Kim 	dentptr->attr = attr;
792c30a15e5SDonggeun Kim 
793c30a15e5SDonggeun Kim 	set_name(dentptr, filename);
794c30a15e5SDonggeun Kim }
795c30a15e5SDonggeun Kim 
796c30a15e5SDonggeun Kim /*
797c30a15e5SDonggeun Kim  * Check whether adding a file makes the file system to
798c30a15e5SDonggeun Kim  * exceed the size of the block device
799c30a15e5SDonggeun Kim  * Return -1 when overflow occurs, otherwise return 0
800c30a15e5SDonggeun Kim  */
8011ad0b98aSSuriyan Ramasami static int check_overflow(fsdata *mydata, __u32 clustnum, loff_t size)
802c30a15e5SDonggeun Kim {
8039e374e7bSTom Rini 	__u32 startsect, sect_num, offset;
804c30a15e5SDonggeun Kim 
805c30a15e5SDonggeun Kim 	if (clustnum > 0) {
806c30a15e5SDonggeun Kim 		startsect = mydata->data_begin +
807c30a15e5SDonggeun Kim 				clustnum * mydata->clust_size;
808c30a15e5SDonggeun Kim 	} else {
809c30a15e5SDonggeun Kim 		startsect = mydata->rootdir_sect;
810c30a15e5SDonggeun Kim 	}
811c30a15e5SDonggeun Kim 
8129e374e7bSTom Rini 	sect_num = div_u64_rem(size, mydata->sect_size, &offset);
8139e374e7bSTom Rini 
8149e374e7bSTom Rini 	if (offset != 0)
815c30a15e5SDonggeun Kim 		sect_num++;
816c30a15e5SDonggeun Kim 
817079df722SDonggeun Kim 	if (startsect + sect_num > cur_part_info.start + total_sector)
818c30a15e5SDonggeun Kim 		return -1;
819c30a15e5SDonggeun Kim 	return 0;
820c30a15e5SDonggeun Kim }
821c30a15e5SDonggeun Kim 
822c30a15e5SDonggeun Kim /*
823c30a15e5SDonggeun Kim  * Check if adding several entries exceed one cluster boundary
824c30a15e5SDonggeun Kim  */
825c30a15e5SDonggeun Kim static int is_next_clust(fsdata *mydata, dir_entry *dentptr)
826c30a15e5SDonggeun Kim {
827c30a15e5SDonggeun Kim 	int cur_position;
828c30a15e5SDonggeun Kim 
829c30a15e5SDonggeun Kim 	cur_position = (__u8 *)dentptr - get_dentfromdir_block;
830c30a15e5SDonggeun Kim 
831c30a15e5SDonggeun Kim 	if (cur_position >= mydata->clust_size * mydata->sect_size)
832c30a15e5SDonggeun Kim 		return 1;
833c30a15e5SDonggeun Kim 	else
834c30a15e5SDonggeun Kim 		return 0;
835c30a15e5SDonggeun Kim }
836c30a15e5SDonggeun Kim 
837c30a15e5SDonggeun Kim static dir_entry *empty_dentptr;
838c30a15e5SDonggeun Kim /*
839c30a15e5SDonggeun Kim  * Find a directory entry based on filename or start cluster number
840c30a15e5SDonggeun Kim  * If the directory entry is not found,
841c30a15e5SDonggeun Kim  * the new position for writing a directory entry will be returned
842c30a15e5SDonggeun Kim  */
843c30a15e5SDonggeun Kim static dir_entry *find_directory_entry(fsdata *mydata, int startsect,
844c30a15e5SDonggeun Kim 	char *filename, dir_entry *retdent, __u32 start)
845c30a15e5SDonggeun Kim {
846c30a15e5SDonggeun Kim 	__u32 curclust = (startsect - mydata->data_begin) / mydata->clust_size;
847c30a15e5SDonggeun Kim 
848c30a15e5SDonggeun Kim 	debug("get_dentfromdir: %s\n", filename);
849c30a15e5SDonggeun Kim 
850c30a15e5SDonggeun Kim 	while (1) {
851c30a15e5SDonggeun Kim 		dir_entry *dentptr;
852c30a15e5SDonggeun Kim 
853c30a15e5SDonggeun Kim 		int i;
854c30a15e5SDonggeun Kim 
855c30a15e5SDonggeun Kim 		if (get_cluster(mydata, curclust, get_dentfromdir_block,
856c30a15e5SDonggeun Kim 			    mydata->clust_size * mydata->sect_size) != 0) {
857c30a15e5SDonggeun Kim 			printf("Error: reading directory block\n");
858c30a15e5SDonggeun Kim 			return NULL;
859c30a15e5SDonggeun Kim 		}
860c30a15e5SDonggeun Kim 
861c30a15e5SDonggeun Kim 		dentptr = (dir_entry *)get_dentfromdir_block;
862c30a15e5SDonggeun Kim 
863c30a15e5SDonggeun Kim 		dir_curclust = curclust;
864c30a15e5SDonggeun Kim 
865c30a15e5SDonggeun Kim 		for (i = 0; i < DIRENTSPERCLUST; i++) {
866c30a15e5SDonggeun Kim 			char s_name[14], l_name[VFAT_MAXLEN_BYTES];
867c30a15e5SDonggeun Kim 
868c30a15e5SDonggeun Kim 			l_name[0] = '\0';
869c30a15e5SDonggeun Kim 			if (dentptr->name[0] == DELETED_FLAG) {
870c30a15e5SDonggeun Kim 				dentptr++;
871c30a15e5SDonggeun Kim 				if (is_next_clust(mydata, dentptr))
872c30a15e5SDonggeun Kim 					break;
873c30a15e5SDonggeun Kim 				continue;
874c30a15e5SDonggeun Kim 			}
875c30a15e5SDonggeun Kim 			if ((dentptr->attr & ATTR_VOLUME)) {
876cb940c7eSRichard Genoud 				if (vfat_enabled &&
877cb940c7eSRichard Genoud 				    (dentptr->attr & ATTR_VFAT) &&
878c30a15e5SDonggeun Kim 				    (dentptr->name[0] & LAST_LONG_ENTRY_MASK)) {
879c30a15e5SDonggeun Kim 					get_long_file_name(mydata, curclust,
880c30a15e5SDonggeun Kim 						     get_dentfromdir_block,
881c30a15e5SDonggeun Kim 						     &dentptr, l_name);
882c30a15e5SDonggeun Kim 					debug("vfatname: |%s|\n", l_name);
883cb940c7eSRichard Genoud 				} else {
884c30a15e5SDonggeun Kim 					/* Volume label or VFAT entry */
885c30a15e5SDonggeun Kim 					dentptr++;
886c30a15e5SDonggeun Kim 					if (is_next_clust(mydata, dentptr))
887c30a15e5SDonggeun Kim 						break;
888c30a15e5SDonggeun Kim 					continue;
889c30a15e5SDonggeun Kim 				}
890c30a15e5SDonggeun Kim 			}
891c30a15e5SDonggeun Kim 			if (dentptr->name[0] == 0) {
892c30a15e5SDonggeun Kim 				debug("Dentname == NULL - %d\n", i);
893c30a15e5SDonggeun Kim 				empty_dentptr = dentptr;
894c30a15e5SDonggeun Kim 				return NULL;
895c30a15e5SDonggeun Kim 			}
896c30a15e5SDonggeun Kim 
897c30a15e5SDonggeun Kim 			get_name(dentptr, s_name);
898c30a15e5SDonggeun Kim 
899c30a15e5SDonggeun Kim 			if (strcmp(filename, s_name)
900c30a15e5SDonggeun Kim 			    && strcmp(filename, l_name)) {
901c30a15e5SDonggeun Kim 				debug("Mismatch: |%s|%s|\n",
902c30a15e5SDonggeun Kim 					s_name, l_name);
903c30a15e5SDonggeun Kim 				dentptr++;
904c30a15e5SDonggeun Kim 				if (is_next_clust(mydata, dentptr))
905c30a15e5SDonggeun Kim 					break;
906c30a15e5SDonggeun Kim 				continue;
907c30a15e5SDonggeun Kim 			}
908c30a15e5SDonggeun Kim 
909c30a15e5SDonggeun Kim 			memcpy(retdent, dentptr, sizeof(dir_entry));
910c30a15e5SDonggeun Kim 
911c30a15e5SDonggeun Kim 			debug("DentName: %s", s_name);
912c30a15e5SDonggeun Kim 			debug(", start: 0x%x", START(dentptr));
913c30a15e5SDonggeun Kim 			debug(", size:  0x%x %s\n",
914c30a15e5SDonggeun Kim 			      FAT2CPU32(dentptr->size),
915c30a15e5SDonggeun Kim 			      (dentptr->attr & ATTR_DIR) ?
916c30a15e5SDonggeun Kim 			      "(DIR)" : "");
917c30a15e5SDonggeun Kim 
918c30a15e5SDonggeun Kim 			return dentptr;
919c30a15e5SDonggeun Kim 		}
920c30a15e5SDonggeun Kim 
921dd6d7967SWu, Josh 		/*
922dd6d7967SWu, Josh 		 * In FAT16/12, the root dir is locate before data area, shows
923dd6d7967SWu, Josh 		 * in following:
924dd6d7967SWu, Josh 		 * -------------------------------------------------------------
925dd6d7967SWu, Josh 		 * | Boot | FAT1 & 2 | Root dir | Data (start from cluster #2) |
926dd6d7967SWu, Josh 		 * -------------------------------------------------------------
927dd6d7967SWu, Josh 		 *
928dd6d7967SWu, Josh 		 * As a result if curclust is in Root dir, it is a negative
929dd6d7967SWu, Josh 		 * number or 0, 1.
930dd6d7967SWu, Josh 		 *
931dd6d7967SWu, Josh 		 */
932dd6d7967SWu, Josh 		if (mydata->fatsize != 32 && (int)curclust <= 1) {
933dd6d7967SWu, Josh 			/* Current clust is in root dir, set to next clust */
934dd6d7967SWu, Josh 			curclust++;
935dd6d7967SWu, Josh 			if ((int)curclust <= 1)
936dd6d7967SWu, Josh 				continue;	/* continue to find */
937dd6d7967SWu, Josh 
938dd6d7967SWu, Josh 			/* Reach the end of root dir */
939dd6d7967SWu, Josh 			empty_dentptr = dentptr;
940dd6d7967SWu, Josh 			return NULL;
941dd6d7967SWu, Josh 		}
942dd6d7967SWu, Josh 
943c30a15e5SDonggeun Kim 		curclust = get_fatent_value(mydata, dir_curclust);
9442e98f708SWu, Josh 		if (IS_LAST_CLUST(curclust, mydata->fatsize)) {
945c30a15e5SDonggeun Kim 			empty_dentptr = dentptr;
946c30a15e5SDonggeun Kim 			return NULL;
947c30a15e5SDonggeun Kim 		}
948c30a15e5SDonggeun Kim 		if (CHECK_CLUST(curclust, mydata->fatsize)) {
949c30a15e5SDonggeun Kim 			debug("curclust: 0x%x\n", curclust);
950c30a15e5SDonggeun Kim 			debug("Invalid FAT entry\n");
951c30a15e5SDonggeun Kim 			return NULL;
952c30a15e5SDonggeun Kim 		}
953c30a15e5SDonggeun Kim 	}
954c30a15e5SDonggeun Kim 
955c30a15e5SDonggeun Kim 	return NULL;
956c30a15e5SDonggeun Kim }
957c30a15e5SDonggeun Kim 
9581ad0b98aSSuriyan Ramasami static int do_fat_write(const char *filename, void *buffer, loff_t size,
9591ad0b98aSSuriyan Ramasami 			loff_t *actwrite)
960c30a15e5SDonggeun Kim {
961c30a15e5SDonggeun Kim 	dir_entry *dentptr, *retdent;
962c30a15e5SDonggeun Kim 	__u32 startsect;
963c30a15e5SDonggeun Kim 	__u32 start_cluster;
964c30a15e5SDonggeun Kim 	boot_sector bs;
965c30a15e5SDonggeun Kim 	volume_info volinfo;
966c30a15e5SDonggeun Kim 	fsdata datablock;
967c30a15e5SDonggeun Kim 	fsdata *mydata = &datablock;
968c30a15e5SDonggeun Kim 	int cursect;
969bf6b6af7SAnatolij Gustschin 	int ret = -1, name_len;
970c30a15e5SDonggeun Kim 	char l_filename[VFAT_MAXLEN_BYTES];
971c30a15e5SDonggeun Kim 
9721ad0b98aSSuriyan Ramasami 	*actwrite = size;
973c30a15e5SDonggeun Kim 	dir_curclust = 0;
974c30a15e5SDonggeun Kim 
975c30a15e5SDonggeun Kim 	if (read_bootsectandvi(&bs, &volinfo, &mydata->fatsize)) {
976c30a15e5SDonggeun Kim 		debug("error: reading boot sector\n");
977c30a15e5SDonggeun Kim 		return -1;
978c30a15e5SDonggeun Kim 	}
979c30a15e5SDonggeun Kim 
980c30a15e5SDonggeun Kim 	total_sector = bs.total_sect;
981c30a15e5SDonggeun Kim 	if (total_sector == 0)
982e04350d2SSteve Rae 		total_sector = (int)cur_part_info.size; /* cast of lbaint_t */
983c30a15e5SDonggeun Kim 
984c30a15e5SDonggeun Kim 	if (mydata->fatsize == 32)
985c30a15e5SDonggeun Kim 		mydata->fatlength = bs.fat32_length;
986c30a15e5SDonggeun Kim 	else
987c30a15e5SDonggeun Kim 		mydata->fatlength = bs.fat_length;
988c30a15e5SDonggeun Kim 
989c30a15e5SDonggeun Kim 	mydata->fat_sect = bs.reserved;
990c30a15e5SDonggeun Kim 
991c30a15e5SDonggeun Kim 	cursect = mydata->rootdir_sect
992c30a15e5SDonggeun Kim 		= mydata->fat_sect + mydata->fatlength * bs.fats;
993627182eaSDonggeun Kim 	num_of_fats = bs.fats;
994c30a15e5SDonggeun Kim 
995c30a15e5SDonggeun Kim 	mydata->sect_size = (bs.sector_size[1] << 8) + bs.sector_size[0];
996c30a15e5SDonggeun Kim 	mydata->clust_size = bs.cluster_size;
997c30a15e5SDonggeun Kim 
998c30a15e5SDonggeun Kim 	if (mydata->fatsize == 32) {
999c30a15e5SDonggeun Kim 		mydata->data_begin = mydata->rootdir_sect -
1000c30a15e5SDonggeun Kim 					(mydata->clust_size * 2);
1001c30a15e5SDonggeun Kim 	} else {
1002c30a15e5SDonggeun Kim 		int rootdir_size;
1003c30a15e5SDonggeun Kim 
1004c30a15e5SDonggeun Kim 		rootdir_size = ((bs.dir_entries[1]  * (int)256 +
1005c30a15e5SDonggeun Kim 				 bs.dir_entries[0]) *
1006c30a15e5SDonggeun Kim 				 sizeof(dir_entry)) /
1007c30a15e5SDonggeun Kim 				 mydata->sect_size;
1008c30a15e5SDonggeun Kim 		mydata->data_begin = mydata->rootdir_sect +
1009c30a15e5SDonggeun Kim 					rootdir_size -
1010c30a15e5SDonggeun Kim 					(mydata->clust_size * 2);
1011c30a15e5SDonggeun Kim 	}
1012c30a15e5SDonggeun Kim 
1013c30a15e5SDonggeun Kim 	mydata->fatbufnum = -1;
10148abd053cSNobuhiro Iwamatsu 	mydata->fatbuf = memalign(ARCH_DMA_MINALIGN, FATBUFSIZE);
1015c30a15e5SDonggeun Kim 	if (mydata->fatbuf == NULL) {
1016c30a15e5SDonggeun Kim 		debug("Error: allocating memory\n");
1017c30a15e5SDonggeun Kim 		return -1;
1018c30a15e5SDonggeun Kim 	}
1019c30a15e5SDonggeun Kim 
1020c30a15e5SDonggeun Kim 	if (disk_read(cursect,
1021c30a15e5SDonggeun Kim 		(mydata->fatsize == 32) ?
1022c30a15e5SDonggeun Kim 		(mydata->clust_size) :
10231170e634SBenoît Thébaudeau 		PREFETCH_BLOCKS, do_fat_read_at_block) < 0) {
1024c30a15e5SDonggeun Kim 		debug("Error: reading rootdir block\n");
1025c30a15e5SDonggeun Kim 		goto exit;
1026c30a15e5SDonggeun Kim 	}
10271170e634SBenoît Thébaudeau 	dentptr = (dir_entry *) do_fat_read_at_block;
1028c30a15e5SDonggeun Kim 
1029c30a15e5SDonggeun Kim 	name_len = strlen(filename);
10308506eb8dSAnatolij Gustschin 	if (name_len >= VFAT_MAXLEN_BYTES)
10318506eb8dSAnatolij Gustschin 		name_len = VFAT_MAXLEN_BYTES - 1;
10328506eb8dSAnatolij Gustschin 
1033c30a15e5SDonggeun Kim 	memcpy(l_filename, filename, name_len);
10348506eb8dSAnatolij Gustschin 	l_filename[name_len] = 0; /* terminate the string */
1035c30a15e5SDonggeun Kim 	downcase(l_filename);
1036c30a15e5SDonggeun Kim 
1037c30a15e5SDonggeun Kim 	startsect = mydata->rootdir_sect;
1038c30a15e5SDonggeun Kim 	retdent = find_directory_entry(mydata, startsect,
1039c30a15e5SDonggeun Kim 				l_filename, dentptr, 0);
1040c30a15e5SDonggeun Kim 	if (retdent) {
1041c30a15e5SDonggeun Kim 		/* Update file size and start_cluster in a directory entry */
1042c30a15e5SDonggeun Kim 		retdent->size = cpu_to_le32(size);
1043e876be4bSBenoît Thébaudeau 		start_cluster = START(retdent);
1044c30a15e5SDonggeun Kim 
10451254b44aSBenoît Thébaudeau 		if (start_cluster) {
10461254b44aSBenoît Thébaudeau 			if (size) {
10471254b44aSBenoît Thébaudeau 				ret = check_overflow(mydata, start_cluster,
10481254b44aSBenoît Thébaudeau 							size);
1049c30a15e5SDonggeun Kim 				if (ret) {
10501ad0b98aSSuriyan Ramasami 					printf("Error: %llu overflow\n", size);
1051c30a15e5SDonggeun Kim 					goto exit;
1052c30a15e5SDonggeun Kim 				}
10531254b44aSBenoît Thébaudeau 			}
1054c30a15e5SDonggeun Kim 
1055c30a15e5SDonggeun Kim 			ret = clear_fatent(mydata, start_cluster);
1056c30a15e5SDonggeun Kim 			if (ret) {
1057c30a15e5SDonggeun Kim 				printf("Error: clearing FAT entries\n");
1058c30a15e5SDonggeun Kim 				goto exit;
1059c30a15e5SDonggeun Kim 			}
1060c30a15e5SDonggeun Kim 
10611254b44aSBenoît Thébaudeau 			if (!size)
10621254b44aSBenoît Thébaudeau 				set_start_cluster(mydata, retdent, 0);
10631254b44aSBenoît Thébaudeau 		} else if (size) {
1064c30a15e5SDonggeun Kim 			ret = start_cluster = find_empty_cluster(mydata);
1065c30a15e5SDonggeun Kim 			if (ret < 0) {
1066c30a15e5SDonggeun Kim 				printf("Error: finding empty cluster\n");
1067c30a15e5SDonggeun Kim 				goto exit;
1068c30a15e5SDonggeun Kim 			}
1069c30a15e5SDonggeun Kim 
1070c30a15e5SDonggeun Kim 			ret = check_overflow(mydata, start_cluster, size);
1071c30a15e5SDonggeun Kim 			if (ret) {
10721ad0b98aSSuriyan Ramasami 				printf("Error: %llu overflow\n", size);
1073c30a15e5SDonggeun Kim 				goto exit;
1074c30a15e5SDonggeun Kim 			}
1075c30a15e5SDonggeun Kim 
10761254b44aSBenoît Thébaudeau 			set_start_cluster(mydata, retdent, start_cluster);
10771254b44aSBenoît Thébaudeau 		}
10781254b44aSBenoît Thébaudeau 	} else {
10791254b44aSBenoît Thébaudeau 		/* Set short name to set alias checksum field in dir_slot */
10801254b44aSBenoît Thébaudeau 		set_name(empty_dentptr, filename);
10811254b44aSBenoît Thébaudeau 		fill_dir_slot(mydata, &empty_dentptr, filename);
10821254b44aSBenoît Thébaudeau 
10831254b44aSBenoît Thébaudeau 		if (size) {
10841254b44aSBenoît Thébaudeau 			ret = start_cluster = find_empty_cluster(mydata);
10851254b44aSBenoît Thébaudeau 			if (ret < 0) {
10861254b44aSBenoît Thébaudeau 				printf("Error: finding empty cluster\n");
10871254b44aSBenoît Thébaudeau 				goto exit;
10881254b44aSBenoît Thébaudeau 			}
10891254b44aSBenoît Thébaudeau 
10901254b44aSBenoît Thébaudeau 			ret = check_overflow(mydata, start_cluster, size);
10911254b44aSBenoît Thébaudeau 			if (ret) {
10921254b44aSBenoît Thébaudeau 				printf("Error: %llu overflow\n", size);
10931254b44aSBenoît Thébaudeau 				goto exit;
10941254b44aSBenoît Thébaudeau 			}
10951254b44aSBenoît Thébaudeau 		} else {
10961254b44aSBenoît Thébaudeau 			start_cluster = 0;
10971254b44aSBenoît Thébaudeau 		}
10981254b44aSBenoît Thébaudeau 
1099c30a15e5SDonggeun Kim 		/* Set attribute as archieve for regular file */
1100c30a15e5SDonggeun Kim 		fill_dentry(mydata, empty_dentptr, filename,
1101c30a15e5SDonggeun Kim 			start_cluster, size, 0x20);
1102c30a15e5SDonggeun Kim 
1103e876be4bSBenoît Thébaudeau 		retdent = empty_dentptr;
1104e876be4bSBenoît Thébaudeau 	}
1105e876be4bSBenoît Thébaudeau 
1106e876be4bSBenoît Thébaudeau 	ret = set_contents(mydata, retdent, buffer, size, actwrite);
11078506eb8dSAnatolij Gustschin 	if (ret < 0) {
1108c30a15e5SDonggeun Kim 		printf("Error: writing contents\n");
1109c30a15e5SDonggeun Kim 		goto exit;
1110c30a15e5SDonggeun Kim 	}
11111ad0b98aSSuriyan Ramasami 	debug("attempt to write 0x%llx bytes\n", *actwrite);
1112c30a15e5SDonggeun Kim 
1113c30a15e5SDonggeun Kim 	/* Flush fat buffer */
1114c30a15e5SDonggeun Kim 	ret = flush_fat_buffer(mydata);
1115c30a15e5SDonggeun Kim 	if (ret) {
1116c30a15e5SDonggeun Kim 		printf("Error: flush fat buffer\n");
1117c30a15e5SDonggeun Kim 		goto exit;
1118c30a15e5SDonggeun Kim 	}
1119c30a15e5SDonggeun Kim 
1120c30a15e5SDonggeun Kim 	/* Write directory table to device */
1121e876be4bSBenoît Thébaudeau 	ret = set_cluster(mydata, dir_curclust, get_dentfromdir_block,
1122c30a15e5SDonggeun Kim 			mydata->clust_size * mydata->sect_size);
1123e876be4bSBenoît Thébaudeau 	if (ret)
1124c30a15e5SDonggeun Kim 		printf("Error: writing directory entry\n");
1125c30a15e5SDonggeun Kim 
1126c30a15e5SDonggeun Kim exit:
1127c30a15e5SDonggeun Kim 	free(mydata->fatbuf);
11281ad0b98aSSuriyan Ramasami 	return ret;
1129c30a15e5SDonggeun Kim }
1130c30a15e5SDonggeun Kim 
11311ad0b98aSSuriyan Ramasami int file_fat_write(const char *filename, void *buffer, loff_t offset,
11321ad0b98aSSuriyan Ramasami 		   loff_t maxsize, loff_t *actwrite)
1133c30a15e5SDonggeun Kim {
11341ad0b98aSSuriyan Ramasami 	if (offset != 0) {
11350af49b95SVagrant Cascadian 		printf("Error: non zero offset is currently not supported.\n");
11361ad0b98aSSuriyan Ramasami 		return -1;
11371ad0b98aSSuriyan Ramasami 	}
11381ad0b98aSSuriyan Ramasami 
1139c30a15e5SDonggeun Kim 	printf("writing %s\n", filename);
11401ad0b98aSSuriyan Ramasami 	return do_fat_write(filename, buffer, maxsize, actwrite);
1141c30a15e5SDonggeun Kim }
1142