602 lines
14 KiB
C
602 lines
14 KiB
C
#include <string.h>
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#include <stdio.h>
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#include <drivers/ide.h>
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#include <fs/fat32.h>
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struct __attribute__((packed)) fat32_bpb {
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uint8_t jmp[3];
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uint8_t oem[8];
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uint16_t bytes_per_sector;
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uint8_t sectors_per_cluster;
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uint16_t reserved_sector_count;
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uint8_t num_fats;
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uint16_t root_entry_count;
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uint16_t total_sectors_16;
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uint8_t media;
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uint16_t fat_size_16;
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uint16_t sectors_per_track;
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uint16_t num_heads;
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uint32_t hidden_sectors;
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uint32_t total_sectors_32;
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uint32_t fat_size_32;
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uint16_t ext_flags;
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uint16_t fs_version;
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uint32_t root_cluster;
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};
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static int32_t fat32_drive = 0;
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static struct fat32_bpb bpb;
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static uint32_t fat_start_lba;
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static uint32_t cluster_heap_lba;
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static uint32_t current_directory_cluster;
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static uint8_t sector[512];
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int32_t fat32_init(int32_t drive)
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{
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fat32_drive = drive;
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int err = ide_read48(drive, 0, 1, sector);
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if (err != 0)
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{
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printf("ide_read48 failed on sector 0 (err = %d)\n", err);
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return -1;
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}
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memcpy(&bpb, sector, sizeof(bpb));
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fat_start_lba = bpb.reserved_sector_count;
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cluster_heap_lba = fat_start_lba + bpb.num_fats * bpb.fat_size_32;
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current_directory_cluster = bpb.root_cluster;
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printf("========= Start FAT info =========\n");
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printf("Bytes per sector: %u\n", bpb.bytes_per_sector);
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printf("Sectors per cluster: %u\n", bpb.sectors_per_cluster);
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printf("Reserved sectors: %u\n", bpb.reserved_sector_count);
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printf("Number of FATs: %u\n", bpb.num_fats);
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printf("FAT size (32): %u\n", bpb.fat_size_32);
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printf("Root cluster: %u\n", bpb.root_cluster);
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printf("========= End FAT info =========\n");
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return 0;
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}
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void print_83(const char *s) {
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for (int i = 0; i < 11; i++) {
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char c = s[i];
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if (c >= 32 && c <= 126) {
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printf("%c", c); // or your kernel's character output function
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} else {
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printf("\\x%02X", (unsigned char)c); // hex-escape non-printables
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}
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}
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printf("\n");
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}
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static uint32_t cluster_to_lba(uint32_t cluster)
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{
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printf("cluster_heap_lba: %u\n", cluster_heap_lba);
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return cluster_heap_lba + (cluster - 2) * bpb.sectors_per_cluster;
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}
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void format_83_name(const char* input, char* output)
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{
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printf("Input name: %s, Input length: %i\n", input, strlen(input));
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memset(output, ' ', 11);
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int32_t i = 0, j = 0;
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while (input[i] && j < 11)
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{
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if (input[i] == '.')
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{
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j = 8;
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i++;
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continue;
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}
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if (j < 11)
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{
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output[j++] = toupper((unsigned char)input[i++]);
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}
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}
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}
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static uint32_t find_free_cluster(void)
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{
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/* Read FAT sectors one by one */
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for (uint32_t cluster = 2; cluster < bpb.total_sectors_32; cluster++)
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{
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uint32_t fat_sector = fat_start_lba + (cluster * 4) / 512;
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uint32_t fat_offset = (cluster * 4) % 512;
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if (ide_read48(fat32_drive, fat_sector, 1, sector) != 0)
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{
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return 0;
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}
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uint32_t entry = *(uint32_t *)(sector + fat_offset) & 0x0FFFFFFF;
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if (entry == 0x00000000)
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{
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return cluster;
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}
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}
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return 0; // No free cluster found
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}
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int32_t fat32_list_root(void)
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{
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uint32_t lba = cluster_to_lba(current_directory_cluster);
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if (ide_read48(fat32_drive, lba, 1, sector) != 0)
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{
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return -1;
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}
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for (int i = 0; i < 512; i += 32)
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{
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char *entry = (char *)§or[i];
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if ((uint8_t)entry[0] == 0x00)
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{
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break;
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}
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if ((uint8_t)entry[0] == 0xE5)
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{
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continue;
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}
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char name[12];
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memcpy(name, entry, 11);
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name[11] = 0;
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for (int j = 0; j < 11; j++)
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{
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if (name[j] == ' ')
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{
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name[j] = 0;
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}
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}
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uint8_t attr = entry[11];
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if (attr & FAT32_ATTR_DIRECTORY)
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{
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printf("<DIR> %s\n", name);
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}
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else
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{
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printf(" %s\n", name);
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}
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}
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return 0;
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}
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int32_t fat32_read_file(const char *name, uint8_t *buffer, uint32_t max_len)
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{
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char formatted[11];
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memset(formatted, 0xAB, sizeof(formatted));
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format_83_name(name, formatted);
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uint32_t dir_cluster = current_directory_cluster;
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while (dir_cluster < 0x0FFFFFF8)
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{
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uint32_t lba = cluster_to_lba(dir_cluster);
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for (uint8_t sector_idx = 0; sector_idx < bpb.sectors_per_cluster; sector_idx++)
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{
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if (ide_read48(fat32_drive, lba + sector_idx, 1, sector) != 0)
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{
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return -1;
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}
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for (int32_t i = 0; i < 512; i += 32)
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{
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char *entry = (char *)§or[i];
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if ((uint8_t)entry[0] == 0x00)
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{
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break;
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}
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if ((uint8_t)entry[0] == 0xE5 || (uint8_t)entry[11] == 0x0F)
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{
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continue;
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}
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printf("here\n");
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char entry_name[12] = { '\0' };
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memcpy((void*)entry_name, (void*)entry, 11);
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int32_t err = memcmp(entry_name, formatted, (size_t)11);
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if (err != 0)
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{
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printf("memcmp: %i\n", err);
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continue;
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}
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/* File found */
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uint32_t cluster = (*(uint16_t *)(entry + 26)) | ((*(uint16_t *)(entry + 20)) << 16);
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uint32_t size = *(uint32_t *)(entry + 28);
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uint32_t bytes_read = 0;
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while (cluster < 0x0FFFFFF8 && bytes_read < max_len && bytes_read < size)
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{
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uint32_t file_lba = cluster_to_lba(cluster);
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if (ide_read48(fat32_drive, file_lba, bpb.sectors_per_cluster, buffer + bytes_read) != 0)
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{
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return -1;
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}
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bytes_read += bpb.sectors_per_cluster * 512;
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uint32_t fat_sector = cluster * 4 / 512;
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uint32_t fat_offset = cluster * 4 % 512;
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if (ide_read48(fat32_drive, fat_start_lba + fat_sector, 1, sector) != 0)
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{
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return -1;
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}
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cluster = *(uint32_t *)(sector + fat_offset) & 0x0FFFFFFF;
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}
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return bytes_read;
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}
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}
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/* Next directory cluster */
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uint32_t fat_sector = dir_cluster * 4 / 512;
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uint32_t fat_offset = dir_cluster * 4 % 512;
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if (ide_read48(fat32_drive, fat_start_lba + fat_sector, 1, sector) != 0)
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{
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return -1;
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}
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dir_cluster = *(uint32_t *)(sector + fat_offset) & 0x0FFFFFFF;
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}
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return -2; /* File not found */
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}
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int32_t fat32_write_file(const char *name, const uint8_t *buffer, uint32_t len)
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{
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uint8_t fat_sector_buf[512];
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char formatted[11];
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memset(formatted, 0xAB, sizeof(formatted));
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format_83_name(name, formatted);
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uint32_t dir_cluster = current_directory_cluster;
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while (dir_cluster < 0x0FFFFFF8)
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{
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uint32_t lba = cluster_to_lba(dir_cluster);
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for (uint8_t sector_idx = 0; sector_idx < bpb.sectors_per_cluster; sector_idx++)
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{
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// Read directory sector
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if (ide_read48(fat32_drive, lba + sector_idx, 1, sector) != 0)
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{
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return -1;
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}
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// Find matching entry offset inside this sector
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int32_t entry_offset = -1;
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for (int32_t i = 0; i < 512; i += 32)
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{
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char *entry = (char *)§or[i];
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if ((uint8_t)entry[0] == 0x00)
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{
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break;
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}
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if ((uint8_t)entry[0] == 0xE5 || (uint8_t)entry[11] == 0x0F)
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{
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continue;
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}
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char entry_name[12] = {0};
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memcpy(entry_name, entry, 11);
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if (memcmp(entry_name, formatted, 11) == 0)
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{
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entry_offset = i;
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break;
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}
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}
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if (entry_offset == -1)
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{
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// Not found in this sector, continue to next
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continue;
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}
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// Entry found, write file data clusters
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uint8_t *entry = §or[entry_offset];
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uint32_t cluster = (*(uint16_t *)(entry + 26)) | ((*(uint16_t *)(entry + 20)) << 16);
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uint32_t bytes_written = 0;
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while (cluster < 0x0FFFFFF8 && bytes_written < len)
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{
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uint32_t file_lba = cluster_to_lba(cluster);
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if (ide_write48(fat32_drive, file_lba, bpb.sectors_per_cluster, buffer + bytes_written) != 0)
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{
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return -1;
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}
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bytes_written += bpb.sectors_per_cluster * 512;
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if (bytes_written < len)
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{
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// Read FAT sector for current cluster
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uint32_t fat_sector = cluster * 4 / 512;
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uint32_t fat_offset = cluster * 4 % 512;
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if (ide_read48(fat32_drive, fat_start_lba + fat_sector, 1, fat_sector_buf) != 0)
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{
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return -1;
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}
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uint32_t next_cluster = find_free_cluster();
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if (next_cluster == 0)
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{
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return -3; // No free cluster
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}
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*(uint32_t *)(fat_sector_buf + fat_offset) = next_cluster & 0x0FFFFFFF;
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if (ide_write48(fat32_drive, fat_start_lba + fat_sector, 1, fat_sector_buf) != 0)
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{
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return -1;
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}
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cluster = next_cluster;
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}
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else
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{
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// Mark end of cluster chain
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uint32_t fat_sector = cluster * 4 / 512;
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uint32_t fat_offset = cluster * 4 % 512;
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if (ide_read48(fat32_drive, fat_start_lba + fat_sector, 1, fat_sector_buf) != 0)
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{
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return -1;
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}
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*(uint32_t *)(fat_sector_buf + fat_offset) = 0x0FFFFFFF;
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if (ide_write48(fat32_drive, fat_start_lba + fat_sector, 1, fat_sector_buf) != 0)
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{
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return -1;
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}
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break;
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}
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}
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// **Re-read the directory sector before updating file size**
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if (ide_read48(fat32_drive, lba + sector_idx, 1, sector) != 0)
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{
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return -1;
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}
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// Update file size in directory entry again after re-read
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entry = §or[entry_offset];
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*(uint32_t *)(entry + 28) = len;
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// Write back updated directory sector
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if (ide_write48(fat32_drive, lba + sector_idx, 1, sector) != 0)
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{
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return -1;
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}
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// Debug print updated directory entry
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printf("Directory entry after write (offset %d):\n", entry_offset);
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for (int j = 0; j < 32; j++) {
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uint8_t b = (uint8_t)entry[j];
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printf("%02X ", b);
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if ((j + 1) % 16 == 0) printf(" ");
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}
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printf("\n");
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for (int j = 0; j < 32; j++) {
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char c = entry[j];
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printf("%c", (c >= 32 && c <= 126) ? c : '.');
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}
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printf("\n");
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return bytes_written;
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}
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// Move to next cluster of the directory
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uint32_t fat_sector = dir_cluster * 4 / 512;
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uint32_t fat_offset = dir_cluster * 4 % 512;
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if (ide_read48(fat32_drive, fat_start_lba + fat_sector, 1, sector) != 0)
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{
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return -1;
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}
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dir_cluster = *(uint32_t *)(sector + fat_offset) & 0x0FFFFFFF;
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}
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return -2; // File not found
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}
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int32_t fat32_create_file(const char *name)
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{
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uint8_t dir_sector[512];
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uint8_t fat_sector_buf[512];
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uint32_t root_lba = cluster_to_lba(current_directory_cluster);
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if (ide_read48(fat32_drive, root_lba, 1, dir_sector) != 0)
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{
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return -1;
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}
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char formatted_name[11];
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format_83_name(name, formatted_name);
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for (int32_t i = 0; i < 512; i += 32)
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{
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uint8_t *entry = &dir_sector[i];
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if (entry[0] == 0x00 || entry[0] == 0xE5)
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{
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printf("Writing entry at offset %d\n", i);
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memset(entry, 0, 32);
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memcpy(entry, formatted_name, 11);
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entry[11] = 0x20;
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uint32_t free_cluster = find_free_cluster();
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if (free_cluster == 0)
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{
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return -2;
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}
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uint32_t fat_sector = fat_start_lba + (free_cluster * 4) / 512;
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uint32_t fat_offset = (free_cluster * 4) % 512;
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if (ide_read48(fat32_drive, fat_sector, 1, fat_sector_buf) != 0)
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{
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return -1;
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}
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*(uint32_t *)(fat_sector_buf + fat_offset) = 0x0FFFFFFF;
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if (ide_write48(fat32_drive, fat_sector, 1, fat_sector_buf) != 0)
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{
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return -1;
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}
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/* Set first cluster */
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entry[20] = (free_cluster >> 16) & 0xFF;
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entry[21] = (free_cluster >> 24) & 0xFF;
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entry[26] = free_cluster & 0xFF;
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entry[27] = (free_cluster >> 8) & 0xFF;
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/* File size = 0 */
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memset(entry + 28, 0, 4);
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if (ide_write48(fat32_drive, root_lba, 1, dir_sector) != 0)
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{
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return -1;
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}
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uint8_t temp[512];
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ide_read48(fat32_drive, cluster_to_lba(bpb.root_cluster), 1, temp);
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printf("Root directory cluster 2 dump (first 64 bytes):\n");
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for (int i = 0; i < 64; i++) {
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printf("%02X ", temp[i]);
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if ((i + 1) % 16 == 0) printf("\n");
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}
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return 0;
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}
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}
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return -8;
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}
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int32_t fat32_create_directory(const char *name)
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{
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uint32_t lba = cluster_to_lba(current_directory_cluster);
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if (ide_read48(fat32_drive, lba, 1, sector) != 0)
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{
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return -1;
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}
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for (int32_t i = 0; i < 512; i += 32)
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{
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char *entry = (char *)§or[i];
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if ((uint8_t)entry[0] == 0x00 || (uint8_t)entry[0] == 0xE5)
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{
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memset(entry, 0, 32);
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memcpy(entry, name, strlen(name) > 11 ? 11 : strlen(name));
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entry[11] = FAT32_ATTR_DIRECTORY;
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uint32_t cluster = 6;
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*(uint16_t *)(entry + 26) = cluster & 0xFFFF;
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*(uint16_t *)(entry + 20) = (cluster >> 16) & 0xFFFF;
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*(uint32_t *)(entry + 28) = 0;
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if (ide_write48(fat32_drive, lba, 1, sector) != 0)
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{
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return -1;
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}
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return 0;
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}
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}
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return -2;
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}
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int32_t fat32_change_directory(const char *name)
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{
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uint32_t dir_cluster = current_directory_cluster;
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while (dir_cluster < 0x0FFFFFF8)
|
|
{
|
|
uint32_t lba = cluster_to_lba(dir_cluster);
|
|
|
|
for (uint8_t sector_idx = 0; sector_idx < bpb.sectors_per_cluster; sector_idx++)
|
|
{
|
|
if (ide_read48(fat32_drive, lba + sector_idx, 1, sector) != 0)
|
|
{
|
|
return -1;
|
|
}
|
|
|
|
for (int32_t i = 0; i < 512; i += 32)
|
|
{
|
|
char *entry = (char *)§or[i];
|
|
if ((uint8_t)entry[0] == 0x00)
|
|
{
|
|
break;
|
|
}
|
|
|
|
if ((uint8_t)entry[0] == 0xE5)
|
|
{
|
|
continue;
|
|
}
|
|
|
|
char entry_name[12];
|
|
memcpy(entry_name, entry, 11);
|
|
entry_name[11] = 0;
|
|
for (int j = 0; j < 11; j++)
|
|
{
|
|
if (entry_name[j] == ' ')
|
|
{
|
|
entry_name[j] = 0;
|
|
}
|
|
}
|
|
|
|
if (strncmp(entry_name, name, 11) != 0)
|
|
{
|
|
continue;
|
|
}
|
|
|
|
if (!(entry[11] & FAT32_ATTR_DIRECTORY))
|
|
{
|
|
return -2;
|
|
}
|
|
|
|
current_directory_cluster = (*(uint16_t *)(entry + 26)) | ((*(uint16_t *)(entry + 20)) << 16);
|
|
return 0;
|
|
}
|
|
}
|
|
|
|
uint32_t fat_sector = dir_cluster * 4 / 512;
|
|
uint32_t fat_offset = dir_cluster * 4 % 512;
|
|
if (ide_read48(fat32_drive, fat_start_lba + fat_sector, 1, sector) != 0)
|
|
return -1;
|
|
|
|
dir_cluster = *(uint32_t *)(sector + fat_offset) & 0x0FFFFFFF;
|
|
}
|
|
|
|
return -3;
|
|
}
|
|
|