We can now open and read files on the harddisk through a messy virtual filesystem
The uri has to contain 8.3 filenames for now as I have not yet figured out how to convert from that to regular filenaming for the name comparison. reading files is still limited to 1 sector
This commit is contained in:
@ -4,10 +4,14 @@
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#include "FAT.h"
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#include "../../ata pio/ATAPIO.h"
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#include "../../../memory/KernelHeap.h"
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#include "../../../../CoreLib/Memory.h"
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#include "../../partitiontables/mbr/MasterBootRecord.h"
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#include "../../../../CoreLib/ctype.h"
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#include "../../../../CoreLib/Memory.h"
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#include <CoreLib/Memory.h>
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superblock* FAT::Mount(filesystem *fs, const char* name ,vfsmount *mnt)
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#include <CoreLib/ctype.h>
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// exposed driver API
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FS_SUPER* FAT::Mount(filesystem *fs, const char* name , vfsmount *mnt)
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{
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if( strncmp (fs->name, "fat", 3 ) != 0 )
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@ -15,58 +19,138 @@ superblock* FAT::Mount(filesystem *fs, const char* name ,vfsmount *mnt)
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printf("Can't mount filesystem with none fat type!\n");
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return nullptr;
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}
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auto* bpb = GetBiosParameterBlock();
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auto fat_type = DetermineFATType(bpb);
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superblock* sb = (superblock*) malloc(sizeof(superblock));
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directoryEntry* root = (directoryEntry*) malloc(sizeof (directoryEntry));
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if(fat_type != FAT_TYPE::FAT16)
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return nullptr;
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FS_SUPER* sb = (FS_SUPER*) malloc(sizeof(FS_SUPER));
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DirectoryNode* root = (DirectoryNode*) malloc(sizeof (DirectoryNode));
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inode* node = (inode*) malloc(sizeof(inode));
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root->children = nullptr;
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node->internal = (void*)FAT::GetSectorOfRootDirectory(bpb); //sector number;
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node->lookup = FAT::Lookup;
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root->name = (char*) name;
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root->node = nullptr;
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root->node = node;
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root->parent = nullptr;
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dentry_operations* op = (dentry_operations*) malloc(sizeof(dentry_operations));
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op->compare = FAT::compare;
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root->op = op;
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root->compare = FAT::Compare;
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mnt->mnt_count =1;
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mnt->mnt_devname = "QEMU HDD";
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mnt->mnt_flags = 0;
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mnt->mnt_parent = nullptr;
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mnt->root = root;
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mnt->sb = sb;
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sb->type = fs;
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sb->root = root;
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//sb->fs_info = getBPB();
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sb->fs_info = bpb;
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return sb;
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}
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int FAT::Read(file* file, void* buffer , int length)
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{
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return 0;
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}
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int FAT::Write(file* file, const void* buffer, int length)
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{
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return 0;
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}
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int FAT::compare (directoryEntry*, char* filename, char* filename2)
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{
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// use the size of the smallest string
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int a = strlen(filename);
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int b = strlen(filename2);
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FILE FAT::Open(char* filename){
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if( a == b ){
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return strncmp(filename, filename2, a);
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return (FILE){nullptr, 0, nullptr, nullptr, 1} ;
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}
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int FAT::Read(FILE* file, void* buffer , unsigned int length)
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{
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if(file == nullptr)
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{
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printf("NO FILE!!\n");
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return -1;
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}
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return a-b;
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inode* node = file->root;
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if(node== nullptr)
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{
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printf("No INODE!\n");
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return -1;
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}
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int cluster = (int)node->internal;
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auto* bpb = FAT::GetBiosParameterBlock();
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unsigned int FAT_entry = FAT::GetFATEntry(bpb, cluster);
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unsigned int root_dir_sector = FAT::RootDirSize(bpb);
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unsigned int fat_size = bpb->FATSz16;
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unsigned int first_data_sector = bpb->RsvdSecCnt + (bpb->NumFATs * fat_size) + root_dir_sector;
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unsigned int file_data_sector = ((cluster - 2) * bpb->SecPerClus) + first_data_sector;
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ATAPIO::Read(ATAPIO_PORT::Primary, DEVICE_DRIVE::MASTER, file_data_sector, (uint16_t*)buffer);
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return 0;
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}
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int FAT::create(inode* dir_node, inode** target, const char* component_name){}
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int FAT::lookup (inode*, inode**, const char*){}
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int FAT::Write(FILE* file, const void* buffer, unsigned int length)
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{
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return 0;
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}
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int FAT::Compare (DirectoryNode*, char* filename, char* filename2)
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{
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//TODO Implement proper compare method for 8.3 filenames
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// printf("COMPARE: %s with %s\n", filename, filename2);
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return memcmp(filename, filename2, 11);
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}
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int FAT::Create(inode* dir_node, inode** target, const char* component_name){}
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DirectoryNode* FAT::Lookup (inode* currentDir , DirectoryNode* dir)
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{
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uint16_t data[256];
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ATAPIO::Read(ATAPIO_PORT::Primary, DEVICE_DRIVE::MASTER, (int)currentDir->internal , data);
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List* lastAdded = nullptr;
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auto* directory = (DIR*)data;
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for(int i = 0; i < sizeof(data) / sizeof (DIR); i++)
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{
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DIR* entry = (DIR*)((uint32_t)directory + (i * sizeof(DIR)));
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if(
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entry->Name[0] == FAT::FREE_DIR ||
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entry->Name[0] == FAT::FREE_DIR_2 ||
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entry->Name[0] == 0xE5 ||
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entry->ATTR & FAT::ATTRIBUTES::ATTR_VOLUME_ID ||
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entry->ATTR & FAT::ATTRIBUTES::ATTR_SYSTEM ||
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entry->ATTR & FAT::ATTRIBUTES::ATTR_HIDDEN
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){
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continue;
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}
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auto* dirNode = (DirectoryNode*) malloc(sizeof (DirectoryNode));
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char* name = (char*)malloc(sizeof(char[11]));
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memcpy(name, entry->Name, 11 );
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dirNode->name = name;
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dirNode->compare = dir->compare;
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dirNode->parent = dir;
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dirNode->node= (inode*) malloc(sizeof (inode));
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dirNode->node->internal = (void*)entry->FstClusLo;
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dirNode->node->read = currentDir->read;
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dirNode->node->lookup = currentDir->lookup;
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dirNode->node->sb = currentDir->sb;
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dirNode->node->size = entry->FileSize;
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List* dirlist = (List*) malloc(sizeof (List));
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dirlist->data = dirNode;
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dirlist->next = nullptr;
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lastAdded = dirlist;
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auto* temp = dir->children;
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dir->children = lastAdded;
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lastAdded->next = temp;
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FAT_TYPE FAT::determineFATType(BiosParameterBlock* bpb){
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}
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return (DirectoryNode*)dir;
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}
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// internal functions
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FAT_TYPE FAT::DetermineFATType(BiosParameterBlock* bpb){
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int RootDirSector = ((bpb->RootEntCnt * 32) + (bpb->BytsPerSec -1)) / bpb->BytsPerSec;
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int FATSz = 0;
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if(bpb->FATSz16 != 0){
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@ -93,7 +177,7 @@ FAT_TYPE FAT::determineFATType(BiosParameterBlock* bpb){
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return FAT_TYPE::FAT32;
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}
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};
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BiosParameterBlock* FAT::getBPB( bool DEBUG ){
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BiosParameterBlock* FAT::GetBiosParameterBlock(bool DEBUG ){
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BiosParameterBlock* bpb = (BiosParameterBlock*) malloc(sizeof(BiosParameterBlock));
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uint16_t StartAddress = 0x00 ;
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ATAPIO::Read(ATAPIO_PORT::Primary, DEVICE_DRIVE::MASTER, StartAddress, (uint16_t*) bpb);
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@ -114,24 +198,20 @@ BiosParameterBlock* FAT::getBPB( bool DEBUG ){
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}
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uint16_t FAT::GetFATEntry (BiosParameterBlock* bpb, unsigned int cluster){
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int FATSz = bpb->FATSz16;
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int FATOffset = 0;
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FAT_TYPE type = FAT::determineFATType(bpb);
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FAT_TYPE type = FAT::DetermineFATType(bpb);
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if( type == FAT_TYPE::FAT16){
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FATOffset = cluster *2;
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} else if( type == FAT_TYPE::FAT32){
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FATOffset = cluster * 4;
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}
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int thisFATSecNum = bpb->RsvdSecCnt + (FATOffset / bpb->BytsPerSec); // Sector number containing the entry for the cluster
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// For any other FAT other than the default
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// SectorNumber = (FATNumber * FATSz) + ThisFATSecNum
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uint16_t buff[bpb->BytsPerSec];
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ATAPIO::Read(ATAPIO_PORT::Primary, DEVICE_DRIVE::MASTER, thisFATSecNum, buff );
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int thisFATEntOffset = FATOffset % bpb->BytsPerSec; // offset for the entry in the sector containing the entry for the cluster
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uint16_t ClusterEntryValue = 0;
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// Get the FATEntry
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@ -145,7 +225,6 @@ uint16_t FAT::GetFATEntry (BiosParameterBlock* bpb, unsigned int cluster){
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}
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}
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uint16_t FAT::DetermineFreeSpace()
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{
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// Loop through all FAT entries in all FAT's
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@ -166,35 +245,15 @@ the FAT entry for the last cluster) must be set to 0x0 during volume initializat
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}
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int FAT::GetSectorOfRootDirectory (BiosParameterBlock* bpb)
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{
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return (bpb->RsvdSecCnt + (bpb->NumFATs * bpb->FATSz16));
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}
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unsigned int FAT::RootDirSize(BiosParameterBlock* bpb)
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{
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return ((bpb->RootEntCnt * 32) + (bpb->BytsPerSec -1)) /bpb->BytsPerSec;
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}
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uint16_t* ReadFAT (BiosParameterBlock& bpb , bool DEBUG = false ) {
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uint32_t FATAddress = /*StartAddress*/ 0x00 + bpb.RsvdSecCnt ;
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uint16_t* FAT = (uint16_t*)malloc(sizeof (uint16_t) * 256);
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ATAPIO::Read(ATAPIO_PORT::Primary, DEVICE_DRIVE::MASTER, FATAddress, FAT );
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// Show data in terminal
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if(DEBUG){
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for( unsigned int i =0 ; i < 256 ; i++) {
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printf("0x%x ", (unsigned short)FAT[i]);
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}
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kterm_put('\n');
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}
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return FAT;
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}
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void FAT::OpenSubdir(DIR* directory, BiosParameterBlock* bpb ){
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unsigned int cluster = directory->FstClusLo;
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@ -252,9 +311,9 @@ void FAT::OpenSubdir(DIR* directory, BiosParameterBlock* bpb ){
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}
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}
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void FAT::readFile(DIR* fileEntry , BiosParameterBlock* bpb){
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void FAT::ReadFileContents(DIR* fileEntry , BiosParameterBlock* bpb){
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unsigned int cluster = fileEntry->FstClusLo;
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printf("cluster NR: %x\n", cluster);
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unsigned int FATEntry = FAT::GetFATEntry(bpb, cluster);
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unsigned int root_dir_sectors = FAT::RootDirSize(bpb);
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unsigned int fat_size = bpb->FATSz16;
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@ -269,140 +328,63 @@ void FAT::readFile(DIR* fileEntry , BiosParameterBlock* bpb){
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kterm_put(n & 0x00ff);
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kterm_put(n >> 8);
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}
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kterm_put('\n');
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}
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void FAT::ListRootDirectoryContents(BiosParameterBlock* bpb){
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int total_sectors = bpb->TotSec32;
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int fat_size = bpb->FATSz16;
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int root_dir_sectors = FAT::RootDirSize(bpb);
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int first_data_sector = bpb->RsvdSecCnt + (bpb->NumFATs * fat_size) + root_dir_sectors ;
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int data_sectors = bpb->TotSec32 - (bpb->RsvdSecCnt + (bpb->NumFATs * fat_size) + root_dir_sectors);
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int total_clusters = data_sectors / bpb->SecPerClus;
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/*
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file fsysFatDirectory (const char* DirectoryName){
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file file;
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unsigned char* buf;
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PDIRECTORY directory;
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char DosFileName[11];
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//ToDosFileName(DirectoryName, DosFileName, 11);
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DosFileName[11] =0;
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int first_root_dir_sector = first_data_sector - root_dir_sectors;
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//int first_sector_of_cluster = ((cluster - 2) * bpb->SecPerClus) + first_data_sector;
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uint16_t data[256];
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ATAPIO::Read(ATAPIO_PORT::Primary, DEVICE_DRIVE::MASTER, first_root_dir_sector, data);
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for (int sector=0; sector <14 ; sector++){
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ATAPIO::Read(BUS_PORT::Primary, DEVICE_DRIVE::MASTER, mountInfo.rootOffset + sector, (uint16_t*)buf);
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directory = (PDIRECTORY) buf;
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auto* RootDirectory = (DIR*)data;
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for(int i = 0; i < sizeof(data) / sizeof (DIR); i++)
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{
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DIR* entry = (DIR*)((uint32_t)RootDirectory + (i * sizeof(DIR)));
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for (int i =0; i < 16; i++){
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char name[11];
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memcpy(name, directory->Filename, 11);
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name[11]=0;
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if(strncmp(DosFileName, name, 11) == 0){
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strcpy(file.name, DirectoryName);
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file.id = 0;
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file.currentCluster = directory->FirstCluster;
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file.eof = 0;
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file.filelength = directory->FileSize;
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if(directory->Attrib == 0x10){
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file.flags = 2;
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} else {
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file.flags = 1;
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}
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return file;
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}
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directory++;
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if(entry->Name[0] == FAT::FREE_DIR || entry->Name[0] == FAT::FREE_DIR_2 || entry->Name[0] == 0xE5){
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continue;
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}
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}
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// Can't find file
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file.flags = -1;
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return file;
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}
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void fsysFATRead(PFILE file, unsigned char* buffer, unsigned int length){
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if(file){
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unsigned int physSector = 32 + (file->currentCluster - 1);
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const unsigned int SECTOR_SIZE = 512;
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// read sector
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ATA_DEVICE::Read(BUS_PORT::Primary, DEVICE_DRIVE::MASTER, physSector, (uint16_t*) buffer );
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if(entry->ATTR & FAT::ATTRIBUTES::ATTR_HIDDEN){
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continue;
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}
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unsigned int FAT_Offset = file->currentCluster + (file->currentCluster /2);
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unsigned int FAT_Sector = 1 + (FAT_Offset / SECTOR_SIZE);
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unsigned int entryOffset =FAT_Offset % SECTOR_SIZE;
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if(entry->ATTR & FAT::ATTRIBUTES::ATTR_SYSTEM)
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continue;
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uint8_t FAT[SECTOR_SIZE*2];
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ATA_DEVICE::Read(BUS_PORT::Primary, DEVICE_DRIVE::MASTER, FAT_Sector,(uint16_t*) FAT); // Read 1st FAT sector
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ATA_DEVICE::Read(BUS_PORT::Primary, DEVICE_DRIVE::MASTER, FAT_Sector +1, (uint16_t*)FAT+SECTOR_SIZE);
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// read entry for next cluster
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uint16_t nextCluster = *(uint16_t*) &FAT[entryOffset];
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// test if entry is odd or even
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if(file->currentCluster & 0x0001){
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nextCluster>>= 4; // grab the high 12 bits
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if(entry->ATTR & FAT::ATTRIBUTES::ATTR_VOLUME_ID){
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continue;
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}
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if (!(entry->ATTR & FAT::ATTRIBUTES::ATTR_LONG_NAME)){
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for(char n : entry->Name){
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if(n == 0x20)
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continue;
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kterm_put(n);
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}
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}else{
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nextCluster &= 0x0FFF; // grab the low 12 bits
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printf("Long file name detected!");
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}
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// test for end of file
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if(nextCluster >= 0xff8){
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file->eof -1;
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return;
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printf(" [Size: %d bytes, Attributes: %d]\n", entry->ATTR, entry->FileSize);
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if(entry->ATTR & FAT::ATTRIBUTES::ATTR_DIRECTORY ){
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FAT::OpenSubdir(entry, bpb);
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} else {
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FAT::ReadFileContents(entry, bpb);
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}
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// test for file corruption
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if(nextCluster == 0){
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file->eof =1;
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return;
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}
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// set next cluster
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file->currentCluster = nextCluster;
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}
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}
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FILE fsysFatOpenSubDir(FILE kFile, const char* filename){
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FILE file;
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char DosFileName[11];
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ToDosFileName(filename, DosFileName, 11);
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DosFileName[11] = 0;
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while(!kFile.eof){
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//read directory
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unsigned char buf[512];
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fsysFATRead(&file, buf, 512);
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PDIRECTORY pkDir = (PDIRECTORY) buf;
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for (unsigned int i = 0; i < 16; i++){
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// get current filename
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char name[11];
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memcpy(name, pkDir->Filename, 11);
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name[11] = 0;
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if(strncmp(name, DosFileName, 11) == 0){
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strcpy(file.name, filename);
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file.id = 0;
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file.currentCluster = pkDir->FirstCluster;
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file.filelength = pkDir->FileSize;
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file.eof = 0;
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// set file type;
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if(pkDir->Attrib == 0x10){
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file.flags = 2;
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} else{
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file.flags = 1;
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}
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return file;
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}
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// go to next entry
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pkDir++;
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}
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}
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// unable to find file
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file.flags = -1;
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return file;
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}
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*/
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|
@ -63,32 +63,18 @@ enum struct FAT_TYPE{
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class FAT {
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public:
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|
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// Wanted API for vfs
|
||||
static file Open(char* filename);
|
||||
static int close(file* file);
|
||||
static int Read(file* file, void* buffer , int length);
|
||||
static int Write(file* file, const void* buffer, int length);
|
||||
static int create(inode* dir_node, inode** target, const char* component_name);
|
||||
static int lookup(inode* , inode**, const char*);
|
||||
static int compare(directoryEntry* , char* , char*);
|
||||
static superblock* Mount(filesystem* fs, const char* name ,vfsmount* mount);
|
||||
static FILE Open(char* filename);
|
||||
static int close(FILE* file);
|
||||
static int Read(FILE* file, void* buffer , unsigned int length);
|
||||
static int Write(FILE* file, const void* buffer, unsigned int length);
|
||||
static int Create(inode* dir_node, inode** target, const char* component_name);
|
||||
static DirectoryNode* Lookup(inode* , DirectoryNode*);
|
||||
static int Compare(DirectoryNode* , char *filename, char *filename2);
|
||||
static FS_SUPER* Mount(filesystem* fs, const char* name , vfsmount* mount);
|
||||
|
||||
// TEMP
|
||||
static void listFilesInRoot(MBR* mbr, BiosParameterBlock* bpb );
|
||||
static BiosParameterBlock* getBPB( bool DEBUG =false );
|
||||
static FAT_TYPE determineFATType(BiosParameterBlock* bpb);
|
||||
static uint16_t GetFATEntry(BiosParameterBlock*, unsigned int);
|
||||
static uint16_t DetermineFreeSpace();
|
||||
static int GetSectorOfRootDirectory(BiosParameterBlock*);
|
||||
static unsigned int RootDirSize(BiosParameterBlock*);
|
||||
static void OpenSubdir (DIR*, BiosParameterBlock*);
|
||||
static void readFile(DIR*, BiosParameterBlock*);
|
||||
|
||||
|
||||
|
||||
static const int FREE = 0x0000;
|
||||
static const int ALLOCATED = 0x0002;
|
||||
static const int FREE = 0x0000;
|
||||
static const int ALLOCATED = 0x0002;
|
||||
static const int BAD = 0xFFF7;
|
||||
static const int EOF = 0xFFFF;
|
||||
|
||||
@ -98,6 +84,9 @@ public:
|
||||
static const char DOS_TRAILING_SPACE = 0x20;
|
||||
static const char FREE_DIR = 0xE5; // If KANJI charset 0x05
|
||||
static const char FREE_DIR_2 = 0x00; // All directories after this are free including this one
|
||||
static void ListRootDirectoryContents(BiosParameterBlock* bpb );
|
||||
static BiosParameterBlock* GetBiosParameterBlock(bool DEBUG =false );
|
||||
|
||||
|
||||
enum ATTRIBUTES {
|
||||
ATTR_READ_ONLY = 0x01,
|
||||
@ -111,6 +100,13 @@ public:
|
||||
|
||||
private:
|
||||
|
||||
static FAT_TYPE DetermineFATType(BiosParameterBlock* bpb);
|
||||
static uint16_t GetFATEntry(BiosParameterBlock*, unsigned int);
|
||||
static uint16_t DetermineFreeSpace();
|
||||
static int GetSectorOfRootDirectory(BiosParameterBlock*);
|
||||
static unsigned int RootDirSize(BiosParameterBlock*);
|
||||
static void OpenSubdir (DIR*, BiosParameterBlock*);
|
||||
static void ReadFileContents(DIR *fileEntry, BiosParameterBlock *bpb);
|
||||
|
||||
enum ENTRY_SIZE {
|
||||
FAT12 = 12,
|
||||
|
@ -5,6 +5,8 @@
|
||||
#pragma once
|
||||
|
||||
#include "../../../terminal/kterm.h"
|
||||
#include "../../../memory/KernelHeap.h"
|
||||
#include "../../../../CoreLib/Memory.h"
|
||||
|
||||
// Date Format
|
||||
// [0..4] Day
|
||||
|
Reference in New Issue
Block a user