#include <string.h> /* memset, memmove */
+#if LOG_LEVEL >= LOG_LVL_INFO
+static void dumpPageArray(struct BattFsSuper *disk)
+{
+ kprintf("Page array dump, free_page_start %d:", disk->free_page_start);
+ for (pgcnt_t i = 0; i < disk->page_count; i++)
+ {
+ if (!(i % 16))
+ kputchar('\n');
+ kprintf("%04d ", disk->page_array[i]);
+ }
+ kputchar('\n');
+}
+#endif
/**
* Convert from memory representation to disk structure.
*/
INLINE void battfs_to_disk(struct BattFsPageHeader *hdr, uint8_t *buf)
{
- STATIC_ASSERT(BATTFS_HEADER_LEN == 10);
+ STATIC_ASSERT(BATTFS_HEADER_LEN == 12);
buf[0] = hdr->inode;
buf[1] = hdr->fill;
buf[4] = hdr->pgoff >> 8;
/*
- * Sequence number is at least 1 bit longer than page address.
- * Needed to take care of wraparonds.
+ * Sequence number is 40 bits long.
+ * No need to take care of wraparonds: the memory will die first!
*/
buf[5] = hdr->seq;
buf[6] = hdr->seq >> 8;
-
- /*
- * First bit used by seq.
- * Unused bits are set to 1.
- */
- buf[7] = (hdr->seq >> 16) ? 0xFF : 0xFE;
+ buf[7] = hdr->seq >> 16;
+ buf[8] = hdr->seq >> 24;
+ buf[9] = hdr->seq >> 32;
/*
* This field must be the last one!
* This is needed because if the page is only partially
* written, we can use this to detect it.
*/
- buf[8] = hdr->fcs;
- buf[9] = hdr->fcs >> 8;
+ buf[10] = hdr->fcs;
+ buf[11] = hdr->fcs >> 8;
}
/**
*/
INLINE void disk_to_battfs(uint8_t *buf, struct BattFsPageHeader *hdr)
{
- STATIC_ASSERT(BATTFS_HEADER_LEN == 10);
+ STATIC_ASSERT(BATTFS_HEADER_LEN == 12);
hdr->inode = buf[0];
hdr->fill = buf[2] << 8 | buf[1];
hdr->pgoff = buf[4] << 8 | buf[3];
- hdr->seq = (seq_t)(buf[7] & 0x01) << 16 | buf[6] << 8 | buf[5];
- hdr->fcs = buf[9] << 8 | buf[8];
+ hdr->seq = (seq_t)buf[9] << 32 | (seq_t)buf[8] << 24 | (seq_t)buf[7] << 16 | buf[6] << 8 | buf[5];
+ hdr->fcs = buf[11] << 8 | buf[10];
}
/**
return cks;
}
+/**
+ * Read from disk.
+ * If available, the cache will be used.
+ * \return the number of bytes read.
+ */
+static size_t diskRead(struct BattFsSuper *disk, pgcnt_t page, pgaddr_t addr, void *buf, size_t size)
+{
+ /* Try to read from cache */
+ if (page == disk->curr_page)
+ return disk->bufferRead(disk, addr, buf, size);
+ /* Read from disk */
+ else
+ return disk->read(disk, page, addr, buf, size);
+}
+
/**
- * Read header of page \a page.
+ * Read header of \a page in \a hdr.
* \return true on success, false otherwise.
*/
-static bool battfs_readHeader(struct BattFsSuper *disk, pgcnt_t page, struct BattFsPageHeader *hdr)
+static bool readHdr(struct BattFsSuper *disk, pgcnt_t page, struct BattFsPageHeader *hdr)
{
uint8_t buf[BATTFS_HEADER_LEN];
/*
* Header is actually a footer, and so
* resides at page end.
*/
- if (disk->read(disk, page, disk->page_size - BATTFS_HEADER_LEN, buf, BATTFS_HEADER_LEN)
+ if (diskRead(disk, page, disk->data_size, buf, BATTFS_HEADER_LEN)
!= BATTFS_HEADER_LEN)
{
- LOG_ERR("Error: page[%d]\n", page);
+ LOG_ERR("page[%d]\n", page);
return false;
}
}
/**
- * Write header of page \a page.
+ * Set header on current \a disk page buffer.
* \return true on success, false otherwise.
*/
-static bool battfs_writeHeader(struct BattFsSuper *disk, pgcnt_t page, struct BattFsPageHeader *hdr)
+static bool setBufferHdr(struct BattFsSuper *disk, struct BattFsPageHeader *hdr)
{
uint8_t buf[BATTFS_HEADER_LEN];
+ #warning FIXME:refactor computeFcs to save time and stack
+ hdr->fcs = computeFcs(hdr);
/* Fill buffer */
battfs_to_disk(hdr, buf);
/*
- * write header to disk.
+ * write header to buffer.
* Header is actually a footer, and so
* resides at page end.
*/
- if (disk->write(disk, page, disk->page_size - BATTFS_HEADER_LEN, buf, BATTFS_HEADER_LEN)
+ if (disk->bufferWrite(disk, disk->data_size, buf, BATTFS_HEADER_LEN)
+ != BATTFS_HEADER_LEN)
+ {
+ LOG_ERR("writing to buffer\n");
+ return false;
+ }
+ return true;
+}
+
+static bool getBufferHdr(struct BattFsSuper *disk, struct BattFsPageHeader *hdr)
+{
+ uint8_t buf[BATTFS_HEADER_LEN];
+
+ if (disk->bufferRead(disk, disk->data_size, buf, BATTFS_HEADER_LEN)
!= BATTFS_HEADER_LEN)
{
- LOG_ERR("Error: page[%d]\n", page);
+ LOG_ERR("reading from buffer\n");
return false;
}
+
+ disk_to_battfs(buf, hdr);
+
return true;
}
static void movePages(struct BattFsSuper *disk, pgcnt_t src, int offset)
{
pgcnt_t dst = src + offset;
+ LOG_INFO("src %d, offset %d, size %ld\n", src, offset, (disk->page_count - MAX(dst, src)) * sizeof(pgcnt_t));
memmove(&disk->page_array[dst], &disk->page_array[src], (disk->page_count - MAX(dst, src)) * sizeof(pgcnt_t));
if (offset < 0)
/* Count the number of disk page per file */
for (pgcnt_t page = 0; page < disk->page_count; page++)
{
- if (!battfs_readHeader(disk, page, &hdr))
+ if (!readHdr(disk, page, &hdr))
return false;
/* Increase free space */
- disk->free_bytes += disk->page_size - BATTFS_HEADER_LEN;
+ disk->free_bytes += disk->data_size;
/* Check header FCS */
if (hdr.fcs == computeFcs(&hdr))
{
- ASSERT(hdr.fill <= disk->page_size - BATTFS_HEADER_LEN);
+ ASSERT(hdr.fill <= disk->data_size);
/* Page is valid and is owned by a file */
filelen_table[hdr.inode]++;
* inside file.
* e.g. : at page array[0] you will find page address of the first page
* of the first file (if present).
- * Free blocks are allocated after the last file, starting from invalid ones
- * and continuing with the marked free ones.
+ * Free blocks are allocated after the last file.
*
* \return true if ok, false on disk read errors.
- * \note The whole disk is scanned once.
+ * \note The whole disk is scanned at max twice.
*/
static bool fillPageArray(struct BattFsSuper *disk, pgoff_t *filelen_table)
{
/* Fill page allocation array */
for (pgcnt_t page = 0; page < disk->page_count; page++)
{
- if (!battfs_readHeader(disk, page, &hdr))
+ if (!readHdr(disk, page, &hdr))
return false;
/* Check header FCS */
if (hdr.fcs == computeFcs(&hdr))
{
/* Compute array position */
- pgcnt_t array_pos_start = countPages(filelen_table, hdr.inode);
- pgcnt_t array_pos = array_pos_start + hdr.pgoff;
+ pgcnt_t array_pos = countPages(filelen_table, hdr.inode);
+ array_pos += hdr.pgoff;
+
- /* Find the first free position */
- while (disk->page_array[array_pos] != PAGE_UNSET_SENTINEL)
+ /* Check if position is already used by another page of the same file */
+ if (disk->page_array[array_pos] == PAGE_UNSET_SENTINEL)
+ disk->page_array[array_pos] = page;
+ else
{
- ASSERT(array_pos < array_pos_start + filelen_table[hdr.inode] + filelen_table[hdr.inode + 1]);
- array_pos++;
- }
+ BattFsPageHeader hdr_prv;
+
+ if (!readHdr(disk, disk->page_array[array_pos], &hdr_prv))
+ return false;
+
+ /* Check header FCS */
+ ASSERT(hdr_prv.fcs == computeFcs(&hdr_prv));
+
+ /* Only the very same page with a different seq number can be here */
+ ASSERT(hdr.inode == hdr_prv.inode);
+ ASSERT(hdr.pgoff == hdr_prv.pgoff);
+ ASSERT(hdr.seq != hdr_prv.seq);
+
+ pgcnt_t new_page, old_page;
+ fill_t old_fill;
+
+ /*
+ * Sequence number comparison: since
+ * seq is 40 bits wide, it wraps once
+ * every 1.1E12 times.
+ * The memory will not live enough to
+ * see a wraparound, so we can use a simple
+ * compare here.
+ */
+ if (hdr.seq > hdr_prv.seq)
+ {
+ /* Current header is newer than the previuos one */
+ old_page = disk->page_array[array_pos];
+ new_page = page;
+ old_fill = hdr_prv.fill;
+ }
+ else
+ {
+ /* Previous header is newer than the current one */
+ old_page = page;
+ new_page = disk->page_array[array_pos];
+ old_fill = hdr.fill;
+ }
+
+ /* Set new page */
+ disk->page_array[array_pos] = new_page;
+ /* Add free space */
+ disk->free_bytes += old_fill;
+ /* Shift all array one position to the left, overwriting duplicate page */
+ array_pos -= hdr.pgoff;
+ array_pos += filelen_table[hdr.inode];
+ movePages(disk, array_pos, -1);
+ /* Move back all indexes */
+ filelen_table[hdr.inode]--;
+ disk->free_page_start--;
+ curr_free_page--;
+ /* Set old page as free */
+ ASSERT(disk->page_array[curr_free_page] == PAGE_UNSET_SENTINEL);
+ disk->page_array[curr_free_page++] = old_page;
- disk->page_array[array_pos] = page;
+ }
}
else
{
return true;
}
+
/**
- * Find the latest version of a page, starting from the
- * page supplied by \a page_array.
- * The pages are read from the disk until a different
- * inode or page offset is found.
- * The lastest version of the page is moved in the first
- * position of \a page_array.
- * \return the number of old versions of the page or PAGE_ERROR
- * on disk read errors.
+ * Flush the current \a disk buffer.
+ * \return true if ok, false on errors.
*/
-static pgcnt_t findLastVersion(struct BattFsSuper *disk, pgcnt_t *page_array)
+static bool flushBuffer(struct BattFsSuper *disk)
{
- pgcnt_t *array_start = page_array;
- BattFsPageHeader hdr;
- if (!battfs_readHeader(disk, *page_array++, &hdr))
- return PAGE_ERROR;
-
- /* Free space: early bailout */
- if (hdr.fcs != computeFcs(&hdr))
- return 0;
-
- /*
- * If the first page is valid,
- * inode and pg_off in the array are taken
- * as the current page markers.
- */
- inode_t curr_inode = hdr.inode;
- pgoff_t curr_pgoff = hdr.pgoff;
-
- /* Temps used to find the sequence number range */
- seq_t minl = HALF_SEQ - 1;
- seq_t maxl = 0;
- seq_t minh = MAX_SEQ;
- seq_t maxh = MAX_SEQ;
- pgcnt_t lpos = 0, hpos = 0, dup_cnt = 0;
-
- /*
- * Find min and max values for the two
- * half of seq_num range.
- * With this we can find seqnum wraparounds.
- * seq_t is a type that has at least 1 bit more than
- * pgaddr_t. So all version of a page blocks can be numbered using
- * at most half numbers of a seq_t type.
- * The sequence number algorithm increments by 1 the previous seq_num
- * every time a page is rewritten. So the sequence is
- * guaranteed to be countiguous.
- * Only wrap arounds may happen, but due to half size sequence limitation,
- * there are only 4 possible situations:
- *
- * \verbatim
- * |------lower half------|-------upper half-------|
- *
- * 1) |------minl*****maxl---|------------------------|
- * 2) |------minl********maxl|minh******maxh----------|
- * 3) |----------------------|----minh*******maxh-----|
- * 4) |minl******maxl--------|------------minh****maxh|
- * \endverbatim
- *
- * Situations 1 and 3 are easy to detect, while 2 and 4 require more care.
- */
- do
- {
- if (hdr.seq < HALF_SEQ)
- {
- minl = MIN(minl, hdr.seq);
- if (hdr.seq > maxl)
- {
- maxl = hdr.seq;
- lpos = dup_cnt;
- }
- }
- else
- {
- minh = MIN(minh, hdr.seq);
- if (hdr.seq > maxh)
- {
- maxh = hdr.seq;
- hpos = dup_cnt;
- }
- }
-
- if (!battfs_readHeader(disk, *page_array++, &hdr))
- return PAGE_ERROR;
- dup_cnt++;
- }
- while (curr_inode == hdr.inode && curr_pgoff == hdr.pgoff && hdr.fcs == computeFcs(&hdr));
-
-
- /* Return early if there is only one version of the current page */
- if (dup_cnt == 1)
- return 0;
-
- /* Find the position in the array of the last version of the page */
- pgcnt_t last_ver = hpos;
- if (maxl >= minl)
+ if (disk->cache_dirty)
{
- /* Valid interval found in lower half */
- if (maxh >= minh)
- {
- /* Valid interval also found in upper half */
- if (maxl != minh - 1)
- {
- /* Interval starts in upper half and ends in lower */
- ASSERT(minl == 0);
- ASSERT(maxh == MAX_SEQ);
-
- last_ver = lpos;
- }
- }
- else
- /*
- * Upper interval is invalid.
- * Use lower values.
- */
- last_ver = lpos;
- }
-
- /* Put last page version at array start position */
- SWAP(array_start[0], array_start[last_ver]);
+ LOG_INFO("Flushing to disk page %d\n", disk->curr_page);
- return dup_cnt - 1;
-}
-
-/**
- * Collect old pages, removing empty spaces from \a pg_array, for a maximum len of \a pg_len.
- * Once the collect task is completed, copy \a old_cnt pages from \a old_pages at the
- * end of free space in pg_array.
- */
-void collectOldPages(pgcnt_t *pg_array, pgcnt_t pg_len, pgcnt_t *old_pages, pgcnt_t old_cnt)
-{
- bool copy = false;
- pgcnt_t gap = 0;
+ if (!(disk->erase(disk, disk->curr_page)
+ && disk->save(disk, disk->curr_page)))
+ return false;
- for (pgcnt_t curr_page = 0; curr_page < pg_len; curr_page++)
- {
- if (!copy)
- {
- if (pg_array[curr_page] == PAGE_UNSET_SENTINEL)
- gap++;
- else
- {
- pg_array[curr_page - gap] = pg_array[curr_page];
- copy = true;
- }
- }
- else
- {
- if (pg_array[curr_page] != PAGE_UNSET_SENTINEL)
- pg_array[curr_page - gap] = pg_array[curr_page];
- else
- {
- gap++;
- copy = false;
- }
- }
+ disk->cache_dirty = false;
}
- ASSERT(gap == old_cnt);
- pg_array += pg_len - old_cnt;
-
- memcpy(pg_array, old_pages, old_cnt * sizeof(pgcnt_t));
+ return true;
}
/**
- * This function scan the page array of \a disk looking for
- * old versions of the same page.
- *
- * Only the last version is kept as valid, the old ones are inserted
- * in the free blocks heap.
- * \return true if ok, false on disk read errors.
- * \note The whole disk is scanned once.
+ * Load \a new_page from \a disk in disk page buffer.
+ * If a previuos page is still dirty in the buffer, will be
+ * flushed first. The new page header loaded will be put in \a new_hdr.
+ * \return true if ok, false on errors.
*/
-static bool dropOldPages(struct BattFsSuper *disk)
+static bool loadPage(struct BattFsSuper *disk, pgcnt_t new_page, BattFsPageHeader *new_hdr)
{
- #define OLD_PAGE_BUFLEN 64
- pgcnt_t old_pages[OLD_PAGE_BUFLEN];
- pgcnt_t old_cnt = 0;
-
- pgcnt_t *curr_page = disk->page_array;
- pgcnt_t *collect_start = disk->page_array;
- pgcnt_t collect_len = disk->page_count;
- pgcnt_t dup_pages;
+ if (disk->curr_page == new_page)
+ return getBufferHdr(disk, new_hdr);
- do
- {
- dup_pages = findLastVersion(disk, curr_page);
- if (dup_pages == PAGE_ERROR)
- return false;
- /* The first page is the last version */
- curr_page++;
- while (dup_pages--)
- {
- if (old_cnt >= OLD_PAGE_BUFLEN)
- {
- collectOldPages(collect_start, collect_len, old_pages, old_cnt);
- collect_len -= old_cnt;
- disk->free_bytes += old_cnt * (disk->page_size - BATTFS_HEADER_LEN);
- disk->free_page_start -= old_cnt;
- curr_page -= old_cnt;
- collect_start = curr_page;
- old_cnt = 0;
- }
+ LOG_INFO("Loading page %d\n", new_page);
- old_pages[old_cnt++] = *curr_page;
- *curr_page++ = PAGE_UNSET_SENTINEL;
- }
- }
- while (curr_page < disk->page_array + disk->free_page_start);
+ if (!(flushBuffer(disk)
+ && disk->load(disk, new_page)
+ && getBufferHdr(disk, new_hdr)))
+ return false;
- collectOldPages(collect_start, collect_len, old_pages, old_cnt);
- disk->free_bytes += old_cnt * (disk->page_size - BATTFS_HEADER_LEN);
- disk->free_page_start -= old_cnt;
+ disk->curr_page = new_page;
return true;
}
/* Disk open must set all of these */
ASSERT(disk->read);
- ASSERT(disk->write);
+ ASSERT(disk->load);
+ ASSERT(disk->bufferWrite);
+ ASSERT(disk->bufferRead);
+ ASSERT(disk->save);
ASSERT(disk->erase);
ASSERT(disk->close);
- ASSERT(disk->page_size);
+ ASSERT(disk->page_size > BATTFS_HEADER_LEN);
+ /* Fill page_size with the usable space */
+ disk->data_size = disk->page_size - BATTFS_HEADER_LEN;
ASSERT(disk->page_count);
ASSERT(disk->page_count < PAGE_UNSET_SENTINEL - 1);
ASSERT(disk->page_array);
memset(filelen_table, 0, BATTFS_MAX_FILES * sizeof(pgoff_t));
disk->free_bytes = 0;
- disk->disk_size = (disk_size_t)(disk->page_size - BATTFS_HEADER_LEN) * disk->page_count;
+ disk->disk_size = (disk_size_t)disk->data_size * disk->page_count;
+
+ /* Initialize page buffer cache */
+ disk->cache_dirty = false;
+ disk->curr_page = 0;
+ disk->load(disk, disk->curr_page);
/* Count pages per file */
if (!countDiskFilePages(disk, filelen_table))
{
- LOG_ERR("error counting file pages\n");
+ LOG_ERR("counting file pages\n");
return false;
}
/* Fill page allocation array using filelen_table */
if (!fillPageArray(disk, filelen_table))
{
- LOG_ERR("error filling page array\n");
+ LOG_ERR("filling page array\n");
return false;
}
+ #if LOG_LEVEL >= LOG_LVL_INFO
+ dumpPageArray(disk);
+ #endif
+ #warning TODO: shuffle free blocks
+ //#if LOG_LEVEL > LOG_LVL_INFO
+ // dumpPageArray(disk);
+ //#endif
+ /* Init list for opened files. */
+ LIST_INIT(&disk->file_opened_list);
+ return true;
+}
+
+/**
+ * Check the filesystem.
+ * \return true if ok, false on errors.
+ */
+bool battfs_fsck(struct BattFsSuper *disk)
+{
+ #define FSCHECK(cond) do { if(!(cond)) { LOG_ERR("\"" #cond "\"\n"); return false; } } while (0)
+
+ FSCHECK(disk->free_page_start <= disk->page_count);
+ FSCHECK(disk->data_size < disk->page_size);
+ FSCHECK(disk->free_bytes <= disk->disk_size);
+
+ disk_size_t free_bytes = 0;
+ BattFsPageHeader hdr, prev_hdr;
+ inode_t files = 0;
+ pgcnt_t page_used = 0;
+
+ bool start = true;
- if (!dropOldPages(disk))
+ for (pgcnt_t page = 0; page < disk->page_count; page++)
{
- LOG_ERR("error dropping old pages\n");
- return false;
+ FSCHECK(readHdr(disk, disk->page_array[page], &hdr));
+ free_bytes += disk->data_size;
+
+ if (page < disk->free_page_start)
+ {
+ FSCHECK(computeFcs(&hdr) == hdr.fcs);
+ page_used++;
+ free_bytes -= hdr.fill;
+ if (hdr.inode != prev_hdr.inode || start)
+ {
+ if (LIKELY(!start))
+ FSCHECK(hdr.inode > prev_hdr.inode);
+ else
+ start = false;
+
+ FSCHECK(hdr.pgoff == 0);
+ files++;
+ }
+ else
+ {
+ FSCHECK(hdr.fill != 0);
+ FSCHECK(prev_hdr.fill == disk->data_size);
+ FSCHECK(hdr.pgoff == prev_hdr.pgoff + 1);
+ }
+ prev_hdr = hdr;
+ }
}
- /* Init list for opened files. */
- LIST_INIT(&disk->file_opened_list);
+ FSCHECK(page_used == disk->free_page_start);
+ FSCHECK(free_bytes == disk->free_bytes);
+
return true;
}
*/
static int battfs_flush(struct KFile *fd)
{
- (void)fd;
- #warning TODO
- return 0;
+ BattFs *fdb = BATTFS_CAST(fd);
+
+ if (flushBuffer(fdb->disk))
+ return 0;
+ else
+ return EOF;
}
/**
return 0;
}
+
+static bool getNewPage(struct BattFsSuper *disk, pgcnt_t new_pos, inode_t inode, pgoff_t pgoff, BattFsPageHeader *new_hdr)
+{
+ if (disk->free_page_start >= disk->page_count)
+ {
+ #warning TODO space over!
+ LOG_INFO("No disk space available\n");
+ return false;
+ }
+ flushBuffer(disk);
+ LOG_INFO("Getting new page %d, pos %d\n", disk->page_array[disk->free_page_start], new_pos);
+ disk->curr_page = disk->page_array[disk->free_page_start++];
+ memmove(&disk->page_array[new_pos + 1], &disk->page_array[new_pos], (disk->free_page_start - new_pos - 1) * sizeof(pgcnt_t));
+
+ Node *n;
+ /* Move following file start point one position ahead. */
+ FOREACH_NODE(n, &disk->file_opened_list)
+ {
+ BattFs *file = containerof(n, BattFs, link);
+ if (file->inode > inode)
+ {
+ LOG_INFO("Move file %d start pos\n", file->inode);
+ file->start++;
+ }
+ }
+
+ disk->page_array[new_pos] = disk->curr_page;
+ disk->cache_dirty = true;
+
+ new_hdr->inode = inode;
+ new_hdr->pgoff = pgoff;
+ new_hdr->fill = 0;
+ new_hdr->seq = 0;
+ return setBufferHdr(disk, new_hdr);
+}
+
+/**
+ * Write to file \a fd \a size bytes from \a buf.
+ * \return The number of bytes written.
+ */
+static size_t battfs_write(struct KFile *fd, const void *_buf, size_t size)
+{
+ BattFs *fdb = BATTFS_CAST(fd);
+ const uint8_t *buf = (const uint8_t *)_buf;
+
+ size_t total_write = 0;
+ pgoff_t pg_offset;
+ pgaddr_t addr_offset;
+ pgaddr_t wr_len;
+ BattFsPageHeader curr_hdr;
+
+ if (fd->seek_pos < 0)
+ return total_write;
+
+ if (fd->seek_pos > fd->size)
+ {
+ /* Handle writing when seek pos if far over EOF */
+ if (!loadPage(fdb->disk, fdb->start[fdb->max_off], &curr_hdr))
+ {
+ #warning TODO set error?
+ return total_write;
+ }
+
+ /* Fill unused space of first page with 0s */
+ uint8_t dummy = 0;
+ pgaddr_t zero_bytes = MIN(fd->seek_pos - fd->size, fdb->disk->data_size - curr_hdr.fill);
+ while (zero_bytes--)
+ {
+ if (fdb->disk->bufferWrite(fdb->disk, curr_hdr.fill, &dummy, 1) != 1)
+ {
+ #warning TODO set error?
+ }
+ curr_hdr.fill++;
+ fd->size++;
+ fdb->disk->free_bytes--;
+ fdb->disk->cache_dirty = true;
+ }
+ setBufferHdr(fdb->disk, &curr_hdr);
+
+ /* Allocate the missing pages first. */
+ pgoff_t missing_pages = fd->seek_pos / fdb->disk->data_size - fdb->max_off;
+
+ if (missing_pages)
+ {
+ LOG_INFO("missing pages: %d\n", missing_pages);
+ flushBuffer(fdb->disk);
+
+ /* Fill page buffer with 0 to avoid filling unused pages with garbage */
+ for (pgaddr_t off = 0; off < fdb->disk->data_size; off++)
+ {
+ if (fdb->disk->bufferWrite(fdb->disk, off, &dummy, 1) != 1)
+ {
+ #warning TODO set error?
+ }
+ }
+
+ while (missing_pages--)
+ {
+ zero_bytes = MIN((kfile_off_t)fdb->disk->data_size, fd->seek_pos - fd->size);
+ /* Get the new page needed */
+ if (!getNewPage(fdb->disk, (fdb->start - fdb->disk->page_array) + fdb->max_off + 1, fdb->inode, fdb->max_off + 1, &curr_hdr))
+ return total_write;
+
+ /* Update size and free space left */
+ fd->size += zero_bytes;
+ fdb->disk->free_bytes -= zero_bytes;
+
+ curr_hdr.fill = zero_bytes;
+ setBufferHdr(fdb->disk, &curr_hdr);
+
+ fdb->max_off++;
+ }
+ }
+ }
+ else if (!getBufferHdr(fdb->disk, &curr_hdr))
+ return total_write;
+
+ while (size)
+ {
+ pg_offset = fd->seek_pos / fdb->disk->data_size;
+ addr_offset = fd->seek_pos % fdb->disk->data_size;
+ wr_len = MIN(size, (size_t)(fdb->disk->data_size - addr_offset));
+
+ /* Handle write outside EOF */
+ if (pg_offset > fdb->max_off)
+ {
+ LOG_INFO("New page needed, pg_offset %d, pos %d\n", pg_offset, (fdb->start - fdb->disk->page_array) + pg_offset);
+ if (!getNewPage(fdb->disk, (fdb->start - fdb->disk->page_array) + pg_offset, fdb->inode, pg_offset, &curr_hdr))
+ return total_write;
+ fdb->max_off = pg_offset;
+ }
+ /* Handle cache load of a new page*/
+ else if (fdb->start[pg_offset] != fdb->disk->curr_page)
+ {
+ LOG_INFO("Re-writing page %d to %d\n", fdb->start[pg_offset], fdb->disk->page_array[fdb->disk->free_page_start]);
+ if (!loadPage(fdb->disk, fdb->start[pg_offset], &curr_hdr))
+ {
+ #warning TODO set error?
+ return total_write;
+ }
+
+ /* Get a free page */
+ fdb->disk->curr_page = fdb->disk->page_array[fdb->disk->free_page_start];
+ movePages(fdb->disk, fdb->disk->free_page_start + 1, -1);
+
+ /* Insert previous page in free blocks list */
+ LOG_INFO("Setting page %d as free\n", fdb->start[pg_offset]);
+ fdb->disk->page_array[fdb->disk->page_count - 1] = fdb->start[pg_offset];
+ /* Assign new page */
+ fdb->start[pg_offset] = fdb->disk->curr_page;
+ curr_hdr.seq++;
+ }
+
+
+ //LOG_INFO("writing to buffer for page %d, offset %d, size %d\n", fdb->disk->curr_page, addr_offset, wr_len);
+ if (fdb->disk->bufferWrite(fdb->disk, addr_offset, buf, wr_len) != wr_len)
+ {
+ #warning TODO set error?
+ }
+ fdb->disk->cache_dirty = true;
+
+ size -= wr_len;
+ fd->seek_pos += wr_len;
+ total_write += wr_len;
+ buf += wr_len;
+ fill_t fill_delta = MAX((int32_t)(addr_offset + wr_len) - curr_hdr.fill, (int32_t)0);
+ fdb->disk->free_bytes -= fill_delta;
+ fd->size += fill_delta;
+ curr_hdr.fill += fill_delta;
+
+ if (!setBufferHdr(fdb->disk, &curr_hdr))
+ return total_write;
+
+ //LOG_INFO("free_bytes %d, seek_pos %d, size %d, curr_hdr.fill %d\n", fdb->disk->free_bytes, fd->seek_pos, fd->size, curr_hdr.fill);
+ }
+ return total_write;
+}
+
+
/**
* Read from file \a fd \a size bytes in \a buf.
* \return The number of bytes read.
pgaddr_t addr_offset;
pgaddr_t read_len;
- size = MIN((kfile_off_t)size, fd->size - fd->seek_pos);
+ if (fd->seek_pos < 0)
+ return total_read;
+
+ size = MIN((kfile_off_t)size, MAX(fd->size - fd->seek_pos, 0));
while (size)
{
- pg_offset = fd->seek_pos / (fdb->disk->page_size - BATTFS_HEADER_LEN);
- addr_offset = fd->seek_pos % (fdb->disk->page_size - BATTFS_HEADER_LEN);
- read_len = MIN(size, (size_t)(fdb->disk->page_size - BATTFS_HEADER_LEN - addr_offset));
+ pg_offset = fd->seek_pos / fdb->disk->data_size;
+ addr_offset = fd->seek_pos % fdb->disk->data_size;
+ read_len = MIN(size, (size_t)(fdb->disk->data_size - addr_offset));
+ //LOG_INFO("reading from page %d, offset %d, size %d\n", fdb->start[pg_offset], addr_offset, read_len);
/* Read from disk */
- if (fdb->disk->read(fdb->disk, fdb->start[pg_offset], addr_offset, buf, read_len) != read_len)
+ if (diskRead(fdb->disk, fdb->start[pg_offset], addr_offset, buf, read_len) != read_len)
{
#warning TODO set error?
}
+ #if _DEBUG
+ BattFsPageHeader hdr;
+ readHdr(fdb->disk, fdb->start[pg_offset], &hdr);
+ ASSERT(hdr.inode == fdb->inode);
+ #endif
+
size -= read_len;
fd->seek_pos += read_len;
total_read += read_len;
/**
* Search file \a inode in \a disk using a binary search.
- * \return pointer to file start in disk->page_array
- * if file exists, NULL otherwise.
+ * \a last is filled with array offset of file start
+ * in disk->page_array if file is found, otherwise
+ * \a last is filled with the correct insert position
+ * for creating a file with the given \a inode.
+ * \return true if file is found, false otherwisr.
*/
-static pgcnt_t *findFile(BattFsSuper *disk, inode_t inode)
+static bool findFile(BattFsSuper *disk, inode_t inode, pgcnt_t *last)
{
BattFsPageHeader hdr;
- pgcnt_t first = 0, page, last = disk->page_count -1;
+ pgcnt_t first = 0, page;
+ *last = disk->free_page_start;
fcs_t fcs;
- while (first <= last)
+ while (first < *last)
{
- page = (first + last) / 2;
-
- if (!battfs_readHeader(disk, disk->page_array[page], &hdr))
- return NULL;
-
+ page = (first + *last) / 2;
+ LOG_INFO("first %d, last %d, page %d\n", first, *last, page);
+ if (!readHdr(disk, disk->page_array[page], &hdr))
+ return false;
+ LOG_INFO("inode read: %d\n", hdr.inode);
fcs = computeFcs(&hdr);
if (hdr.fcs == fcs && hdr.inode == inode)
- return (&disk->page_array[page]) - hdr.pgoff;
+ {
+ *last = page - hdr.pgoff;
+ LOG_INFO("Found: %d\n", *last);
+ return true;
+ }
else if (hdr.fcs == fcs && hdr.inode < inode)
first = page + 1;
else
- last = page - 1;
+ *last = page - 1;
}
-
- return NULL;
+ LOG_INFO("Not found: last %d\n", *last);
+ return false;
}
/**
*/
bool battfs_fileExists(BattFsSuper *disk, inode_t inode)
{
- return findFile(disk, inode) != NULL;
+ pgcnt_t dummy;
+ return findFile(disk, inode, &dummy);
}
/**
* in disk->page_array. Size is written in \a size.
* \return true if all s ok, false on disk read errors.
*/
-static bool countFileSize(BattFsSuper *disk, pgcnt_t *start, inode_t inode, file_size_t *size)
+static file_size_t countFileSize(BattFsSuper *disk, pgcnt_t *start, inode_t inode)
{
- *size = 0;
+ file_size_t size = 0;
BattFsPageHeader hdr;
- for (;;)
+ while (start < &disk->page_array[disk->free_page_start])
{
- if (!battfs_readHeader(disk, *start++, &hdr))
- return false;
+ if (!readHdr(disk, *start++, &hdr))
+ return EOF;
if (hdr.fcs == computeFcs(&hdr) && hdr.inode == inode)
- *size += hdr.fill;
+ size += hdr.fill;
else
- return true;
+ break;
}
+ return size;
}
/**
memset(fd, 0, sizeof(*fd));
/* Search file start point in disk page array */
- fd->start = findFile(disk, inode);
- if (fd->start == NULL)
+ pgcnt_t start_pos;
+ if (!findFile(disk, inode, &start_pos))
{
+ LOG_INFO("file %d not found\n", inode);
if (!(mode & BATTFS_CREATE))
return false;
-
- /* File does not exist, create it */
+ /* Create the file */
BattFsPageHeader hdr;
- hdr.inode = inode;
- hdr.seq = 0;
- hdr.fill = 0;
- hdr.pgoff = 0;
- hdr.fcs = computeFcs(&hdr);
- #warning TODO: get a free block and write on disk!
+ if (!(getNewPage(disk, start_pos, inode, 0, &hdr)))
+ return false;
}
+ fd->start = &disk->page_array[start_pos];
+ LOG_INFO("Start pos %d\n", start_pos);
/* Fill file size */
- if (!countFileSize(disk, fd->start, inode, &fd->fd.size))
+ if ((fd->fd.size = countFileSize(disk, fd->start, inode)) == EOF)
return false;
+ fd->max_off = fd->fd.size / disk->data_size;
/* Reset seek position */
fd->fd.seek_pos = 0;
fd->fd.read = battfs_read;
fd->fd.reopen = kfile_genericReopen;
fd->fd.seek = kfile_genericSeek;
+ fd->fd.write = battfs_write;
-#warning TODO battfs_write, battfs_error, battfs_clearerr
+#warning TODO battfs_error, battfs_clearerr
#if 0
- fd->fd.write = battfs_write;
fd->fd.error = battfs_error;
fd->fd.clearerr = battfs_clearerr;
#endif
return disk->close(disk) && (res == 0);
}
+#if UNIT_TEST
+
bool battfs_writeTestBlock(struct BattFsSuper *disk, pgcnt_t page, inode_t inode, seq_t seq, fill_t fill, pgoff_t pgoff)
{
BattFsPageHeader hdr;
+ /* Reset page to all 0xff */
+ uint8_t buf[disk->page_size];
+ memset(buf, 0xFF, disk->page_size);
+ disk->bufferWrite(disk, 0, buf, disk->page_size);
+
hdr.inode = inode;
hdr.fill = fill;
hdr.pgoff = pgoff;
hdr.seq = seq;
hdr.fcs = computeFcs(&hdr);
- if (!battfs_writeHeader(disk, page, &hdr))
+ if (!(setBufferHdr(disk, &hdr) && disk->save(disk, page)))
{
LOG_ERR("error writing hdr\n");
return false;
return true;
}
+#endif