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https://github.com/AsahiLinux/u-boot
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* Back out Patch by Christian Hohnstaedt, 23 Apr 2004:
(JFFS2 speed enhancements) because of using non-public data (PHYS_FLASH_SECT_SIZE) * Patch by Travis Sawyer, 23 Apr 2004: Fix VSC/CIS 8201 phy descrambler interoperability timing due to errata from Vitesse Semiconductor.
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4 changed files with 40 additions and 67 deletions
11
CHANGELOG
11
CHANGELOG
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@ -2,14 +2,9 @@
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Changes for U-Boot 1.1.1:
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======================================================================
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* Patch by Christian Hohnstaedt, 23 Apr 2004:
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JFFS2 speed enhancements:
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- repair header CRC calculation in jffs2_1pass.c
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- add eraseblock size to the partition information to skip empty
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eraseblocks if we find more then 4k of free space.
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- The JFFS2 scanner is now fast enough to remove the spinning wheel
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so #ifdef-ed out.
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- add watchdog calls in long running loops
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* Patch by Travis Sawyer, 23 Apr 2004:
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Fix VSC/CIS 8201 phy descrambler interoperability timing due to
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errata from Vitesse Semiconductor.
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* Patch by Philippe Robin, 22 Apr 2004:
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Fix ethernet configuration for "versatile" board
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@ -80,14 +80,8 @@ jffs2_part_info(int part_num)
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flash_info[CFG_JFFS2_FIRST_BANK].start[0];
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#endif
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/* FIXME: Fast hack to get erase size set */
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/* We assume that our JFFS2 partition has
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* all erase blocks with the same size
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* If we have a clue about the erasesize
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* we can skip empty blocks
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*/
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part.erasesize = PHYS_FLASH_SECT_SIZE;
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/* unused in current jffs2 loader */
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part.erasesize = 0;
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/* Mark the struct as ready */
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part.usr_priv=(void*)1;
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@ -437,6 +437,22 @@ static int ppc_440x_eth_init (struct eth_device *dev, bd_t * bis)
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*/
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if ( ((devnum == 2) || (devnum ==3)) && (4 == ethgroup) ) {
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miiphy_write (reg, 23, 0x1200);
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/*
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* Vitesse VSC8201/Cicada CIS8201 errata:
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* Interoperability problem with Intel 82547EI phys
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* This work around (provided by Vitesse) changes
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* the default timer convergence from 8ms to 12ms
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*/
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miiphy_write (reg, 0x1f, 0x2a30);
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miiphy_write (reg, 0x08, 0x0200);
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miiphy_write (reg, 0x1f, 0x52b5);
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miiphy_write (reg, 0x02, 0x0004);
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miiphy_write (reg, 0x01, 0x0671);
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miiphy_write (reg, 0x00, 0x8fae);
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miiphy_write (reg, 0x1f, 0x2a30);
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miiphy_write (reg, 0x08, 0x0000);
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miiphy_write (reg, 0x1f, 0x0000);
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/* end Vitesse/Cicada errata */
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}
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#endif
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#endif
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@ -917,7 +933,7 @@ int enetInt (struct eth_device *dev)
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mtdcr (uic0sr, UIC_MTE);
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}
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/* handle MAL RX EOB interupt from a receive */
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/* check for EOB on valid channels */
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/* check for EOB on valid channels */
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if (my_uic0msr & UIC_MRE) {
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mal_rx_eob = mfdcr (malrxeobisr);
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if ((mal_rx_eob & (0x80000000 >> hw_p->devnum)) != 0) { /* call emac routine for channel x */
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@ -1033,9 +1049,9 @@ static void enet_rcv (struct eth_device *dev, unsigned long malisr)
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MAX_ERR_LOG)
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hw_p->rx_err_index =
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0;
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} /* emac_erros */
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} /* emac_erros */
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} /* data_len < max mtu */
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} /* if data_len */
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} /* if data_len */
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if (!data_len) { /* no data */
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hw_p->rx[i].ctrl |= MAL_RX_CTRL_EMPTY; /* Free Recv Buffer */
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@ -114,7 +114,6 @@
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#include <common.h>
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#include <config.h>
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#include <malloc.h>
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#include <watchdog.h>
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#include <linux/stat.h>
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#include <linux/time.h>
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@ -127,7 +126,7 @@
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#define NODE_CHUNK 1024 /* size of memory allocation chunk in b_nodes */
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#define SPIN_BLKSIZE 20 /* spin after having scanned 1<<BLKSIZE bytes */
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#define SPIN_BLKSIZE 18 /* spin after having scanned 1<<BLKSIZE bytes */
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/* Debugging switches */
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#undef DEBUG_DIRENTS /* print directory entry list after scan */
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@ -277,10 +276,8 @@ static char *compr_names[] = {
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"ZLIB"
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};
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#if 0 /* Use spinning wheel */
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/* Spinning wheel */
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static char spinner[] = { '|', '/', '-', '\\' };
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#endif
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/* Memory management */
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struct mem_block {
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@ -457,24 +454,15 @@ jffs2_scan_empty(u32 start_offset, struct part_info *part)
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{
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char *max = part->offset + part->size - sizeof(struct jffs2_raw_inode);
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char *offset = part->offset + start_offset;
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int cntr = 0;
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u32 off;
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while (offset < max &&
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*(u32*)get_fl_mem((u32)offset, sizeof(u32), &off) == 0xFFFFFFFF) {
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offset += sizeof(u32);
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cntr++;
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#if 0 /* Use spinning wheel */
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/* return if spinning is due */
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if (((u32)offset & ((1 << SPIN_BLKSIZE)-1)) == 0) break;
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#endif
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if (cntr > 1024 && part->erasesize > 0) { /* 4k */
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/* round up to next erase block border */
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(u32)offset |= part->erasesize-1;
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offset++;
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cntr = 0;
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}
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}
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return offset - part->offset;
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}
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@ -933,9 +921,6 @@ jffs2_1pass_search_list_inodes(struct b_lists * pL, const char *fname, u32 pino)
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for (i = 0; i < strlen(c) - 1; i++)
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tmp[i] = c[i + 1];
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tmp[i] = '\0';
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WATCHDOG_RESET();
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/* only a failure if we arent looking at top level */
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if (!(pino = jffs2_1pass_find_inode(pL, working_tmp, pino)) &&
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(working_tmp[0])) {
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@ -1076,15 +1061,12 @@ jffs2_1pass_build_lists(struct part_info * part)
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{
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struct b_lists *pL;
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struct jffs2_unknown_node *node;
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struct jffs2_unknown_node crcnode;
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u32 offset, oldoffset = 0;
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u32 max = part->size - sizeof(struct jffs2_raw_inode);
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u32 counter = 0;
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u32 counter4 = 0;
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u32 counterF = 0;
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u32 counterN = 0;
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u32 counterCRC = 0;
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u32 counterUNK = 0;
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#if defined(CONFIG_JFFS2_NAND) && (CONFIG_COMMANDS & CFG_CMD_NAND)
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nanddev = (int)part->usr_priv - 1;
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@ -1105,26 +1087,14 @@ jffs2_1pass_build_lists(struct part_info * part)
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/* start at the beginning of the partition */
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while (offset < max) {
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if ((oldoffset >> SPIN_BLKSIZE) != (offset >> SPIN_BLKSIZE)) {
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WATCHDOG_RESET();
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#if 0 /* Use spinning wheel */
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printf("\b\b%c ", spinner[counter++ % sizeof(spinner)]);
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#endif
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oldoffset = offset;
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}
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node = (struct jffs2_unknown_node *) get_node_mem((u32)part->offset + offset);
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if (node->magic == JFFS2_MAGIC_BITMASK) {
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/* if its a fragment add it */
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/* check crc by readding a JFFS2_NODE_ACCURATE */
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crcnode.magic = node->magic;
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crcnode.nodetype = node->nodetype | JFFS2_NODE_ACCURATE;
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crcnode.totlen = node->totlen;
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crcnode.hdr_crc = node->hdr_crc;
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if (!hdr_crc(&crcnode)) {
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offset += 4;
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counterCRC++;
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continue;
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} else if (node->nodetype == JFFS2_NODETYPE_INODE &&
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node = (struct jffs2_unknown_node *) get_node_mem((u32)part->offset + offset);
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if (node->magic == JFFS2_MAGIC_BITMASK && hdr_crc(node)) {
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/* if its a fragment add it */
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if (node->nodetype == JFFS2_NODETYPE_INODE &&
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inode_crc((struct jffs2_raw_inode *) node)) {
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if (insert_node(&pL->frag, (u32) part->offset +
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offset) == NULL) {
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} else if (node->nodetype == JFFS2_NODETYPE_DIRENT &&
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dirent_crc((struct jffs2_raw_dirent *) node) &&
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dirent_name_crc((struct jffs2_raw_dirent *) node)) {
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if (! (counterN%128))
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#if 0 /* Use spinning wheel */
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if (! (counterN%100))
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puts ("\b\b. ");
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#else
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puts (".");
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#endif
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if (insert_node(&pL->dir, (u32) part->offset +
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offset) == NULL) {
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put_fl_mem(node);
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"%d < %d\n", node->totlen,
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sizeof(struct jffs2_unknown_node));
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} else {
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counterUNK++;
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printf("Unknown node type: %x len %d "
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"offset 0x%x\n", node->nodetype,
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node->totlen, offset);
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}
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offset += ((node->totlen + 3) & ~3);
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counterF++;
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} else if (node->magic == JFFS2_EMPTY_BITMASK &&
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node->nodetype == JFFS2_EMPTY_BITMASK) {
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offset = jffs2_scan_empty(offset, part);
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} else { /* if we know nothing, we just step and look. */
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} else { /* if we know nothing, we just step and look. */
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offset += 4;
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counter4++;
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}
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putLabeledWord("frag entries = ", pL->frag.listCount);
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putLabeledWord("+4 increments = ", counter4);
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putLabeledWord("+file_offset increments = ", counterF);
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putLabeledWord("Unknown node types = ", counterUNK);
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putLabeledWord("Bad hdr_crc = ", counterCRC);
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#endif
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return NULL;
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}
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}
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WATCHDOG_RESET();
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return (struct b_lists *)part->jffs2_priv;
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}
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jffs2_1pass_ls(struct part_info * part, const char *fname)
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{
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struct b_lists *pl;
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long ret = 0;
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u32 inode;
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if (! (pl = jffs2_get_list(part, "ls")))
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return 0;
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if (! (inode = jffs2_1pass_search_list_inodes(pl, fname, 1))) {
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putstr("ls: Failed to scan jffs2 file structure\r\n");
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return 0;
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}
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#if 0
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putLabeledWord("found file at inode = ", inode);
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putLabeledWord("read_inode returns = ", ret);
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#endif
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return inode;
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return ret;
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}
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