Nigel
e6901f0526
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
184 lines
5.5 KiB
C++
184 lines
5.5 KiB
C++
#include "vfs.h"
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#include <stdint-gcc.h>
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#include "../../memory/KernelHeap.h"
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#include "../ata pio/ATAPIO.h"
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#include "../partitiontables/mbr/MasterBootRecord.h"
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#include "../filesystems/FAT/FAT.h"
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#include "vfs_types.h"
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#include "../../../CoreLib/Memory.h"
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#include <CoreLib/Memory.h>
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vfsmount* VirtualFileSystem::rootfs;
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int VirtualFileSystem::mount_number = 0;
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int VirtualFileSystem::superblock_number =0;
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int VirtualFileSystem::filesystem_number =0;
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filesystem* VirtualFileSystem::filesystems[4];
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FS_SUPER* VirtualFileSystem::superblocks[8];
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vfsmount* VirtualFileSystem::mounts[12];
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void VirtualFileSystem::Mount(filesystem* fs, const char* name)
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{
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vfsmount* mnt_point = (vfsmount*) malloc(sizeof(vfsmount));
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FS_SUPER* sb = fs->mount(fs, name, mnt_point);
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if( sb == nullptr){
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printf("mount failed!\n");
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return;
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}
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mounts[mount_number++] = mnt_point;
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superblocks[superblock_number++] = sb;
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mnt_point->mnt_count = 1;
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rootfs = mnt_point;
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}
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void VirtualFileSystem::initialize()
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{
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// TODO: setup memory pools etc to speed things up
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// a bit
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// TODO: Add a devfs, procfs etc...
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filesystem* fat_fs = (filesystem*) malloc(sizeof (filesystem));
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fat_fs->name = "fat";
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fat_fs->mount = FAT::Mount;
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//register_filesystem(fat_fs);
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// Mount the bootdrive
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// NOTE: for now will hardcode this
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Mount(fat_fs, "/");
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};
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int VirtualFileSystem::register_filesystem(struct filesystem* fs) {
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// register the filesystem to the kernel.
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filesystems[filesystem_number] = fs;
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filesystem_number++;
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}
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FILE* VirtualFileSystem::open(const char* pathname, int flags){
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// 1. Lookup pathname from the root node
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// 2. Create a new file descriptor for this inode if found.
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// 3. Create a new file if O_CREATE is specified in the flags.
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FILE* file = (FILE*) malloc(sizeof (FILE)) ;
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auto* rootentry = rootfs->root;
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char* tokstate = nullptr;
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auto nextdir = strtok ((char*)pathname, "/", &tokstate );
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// look up children if not filled
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if(rootentry->children == nullptr)
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{
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rootentry = rootentry->node->lookup(rootentry->node, rootentry);
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}
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if(rootentry->children == nullptr)
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{
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file->flags =1;
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return file;
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}
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// let's just loop through the folder first
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auto* child = rootentry->children;
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while(child->next != nullptr){
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auto* directory = (DirectoryNode*)child->data;
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if( directory->compare(directory, directory->name, nextdir) == 0){
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nextdir = strtok(nullptr, "/", &tokstate);
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if(nextdir == NULL){
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file->root = directory->node;
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file->flags =0;
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file->read = FAT::Read;
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return file;
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}
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}
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child = child->next;
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}
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file->flags = 1;
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return file;
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}
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int VirtualFileSystem::close (struct FILE* file){
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// 1. release the file descriptor
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}
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int VirtualFileSystem::write(struct FILE* file, const void* buf, unsigned int len){
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// 1. Write len bytes from buf to the opened file.
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// 2. return written size or error code if an error occurs
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}
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int VirtualFileSystem::read (struct FILE* file, void* buf, unsigned int len){
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// 1. read min(len, readable file data size) bytes ro buf from the opened file.
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// 2. return read size or error code if an error occurs
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}
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/*
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void fs_discovery(){
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// Mount the boot disk
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// NOTE: we assume for now that it is the only disk in the system
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// This information could possibly be had from the bootloader (GRUB)
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// We als assume it is the primary device on the Master port.
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ATAPIO::Soft_Reset(ATAPIO_PORT::Primary, DEVICE_DRIVE::MASTER);
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bool isAvailable = ATAPIO::Identify(ATAPIO_PORT::Primary, DEVICE_DRIVE::MASTER);
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if(!isAvailable){
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// PANIC!!!
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printf("Failed to mount root filesystem!\n");
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return;
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}
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auto masterbootrecord = GetPartitions(false);
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for (auto partition : masterbootrecord->TableEntries)
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{
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if(partition.PartitionType == 0x0) continue; // Consider marked as free
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PTR_PARTITION found_partition = (PARTITION*) malloc(sizeof(PARTITION));
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found_partition->Disk = ATAPIO_PORT::Primary | ( DEVICE_DRIVE::MASTER << 16);
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printf("Disk Identifier: 0x%x\n", found_partition->Disk);
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found_partition->Attributes = partition.driveAttribute;
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found_partition->StartAddress = partition.LBA_partition_start;
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found_partition->Sectors = partition.Number_sectors_inPartition;
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found_partition->Fs_hint = partition.PartitionType;
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}
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printf("Found %d partitions on disk!\n", num_partitions);
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for (int i = 0; i < num_partitions; i++)
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{
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auto* partition = _partitions[i];
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// Check the fs_hint for a proper driver
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if ( partition->Fs_hint != 0x06){
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printf("Assumed Unkown filesystem!\n");
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continue;
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}
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// Check if filesystem OK
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printf("Partition Start Address (LBA): 0x%x\n", partition->StartAddress);
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bool valid = FAT::Validate(partition);
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if(!valid)
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{
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printf("Not a valid FAT fs!\n");
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continue;
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}
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// setup FileSystem Description before mounting
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PFS FS_FAT = (PFS)malloc(sizeof(FILESYSTEM));
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FAT::Info(partition, FS_FAT);
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// Mount the partition/filesystem
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}
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}
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*/ |