Files
mop3/kernel/device/partdrv.c
kamkow1 0533c2705d
All checks were successful
Build documentation / build-and-deploy (push) Successful in 3m35s
fat_io_lib finally works, implement virtual partition devices, manage devices via string keys
2026-03-01 00:00:27 +01:00

122 lines
3.2 KiB
C

#include <device/device.h>
#include <device/partdrv.h>
#include <devices.h>
#include <libk/std.h>
#include <mm/liballoc.h>
#include <proc/proc.h>
#include <proc/reschedule.h>
#include <status.h>
bool partdrv_init (struct device* device, void* arg) {
struct partdrv_init* init = arg;
struct partdrv* partdrv = malloc (sizeof (*partdrv));
if (partdrv == NULL)
return false;
partdrv->start_sector = init->start_sector;
partdrv->super = init->super;
partdrv->total_size = init->total_size;
device->udata = partdrv;
return true;
}
void partdrv_fini (struct device* device) {
struct partdrv* partdrv = device->udata;
free (partdrv);
}
int partdrv_read (struct device* device, struct proc* proc, struct reschedule_ctx* rctx, void* a1,
void* a2, void* a3, void* a4) {
(void)proc, (void)rctx, (void)a4;
if (a1 == NULL || a2 == NULL || a3 == NULL)
return -ST_BAD_ADDRESS_SPACE;
struct partdrv* partdrv = device->udata;
struct device* super = partdrv->super;
size_t sector = *(size_t*)a1 + partdrv->start_sector;
size_t sector_count = *(size_t*)a2;
uint8_t* buffer = a3;
spin_lock (&super->lock);
int ret = device_op (super, XDRV_READ, NULL, NULL, &sector, &sector_count, buffer);
spin_unlock (&super->lock);
return ret;
}
int partdrv_write (struct device* device, struct proc* proc, struct reschedule_ctx* rctx, void* a1,
void* a2, void* a3, void* a4) {
(void)proc, (void)rctx, (void)a4;
if (a1 == NULL || a2 == NULL || a3 == NULL)
return -ST_BAD_ADDRESS_SPACE;
struct partdrv* partdrv = device->udata;
struct device* super = partdrv->super;
size_t sector = *(size_t*)a1 + partdrv->start_sector;
size_t sector_count = *(size_t*)a2;
uint8_t* buffer = a3;
spin_lock (&super->lock);
int ret = device_op (super, XDRV_WRITE, NULL, NULL, &sector, &sector_count, buffer);
spin_unlock (&super->lock);
return ret;
}
int partdrv_get_device_type (struct device* device, struct proc* proc, struct reschedule_ctx* rctx,
void* a1, void* a2, void* a3, void* a4) {
(void)proc, (void)rctx, (void)device, (void)a2, (void)a3, (void)a4;
if (a1 == NULL)
return -ST_BAD_ADDRESS_SPACE;
int* device_type = (int*)a1;
*device_type = XDRV_TYPE_PARTDRV;
return ST_OK;
}
int partdrv_get_sector_size (struct device* device, struct proc* proc, struct reschedule_ctx* rctx,
void* a1, void* a2, void* a3, void* a4) {
(void)proc, (void)rctx, (void)a2, (void)a3, (void)a4;
if (a1 == NULL)
return -ST_BAD_ADDRESS_SPACE;
size_t* secsize = (size_t*)a1;
struct partdrv* partdrv = device->udata;
spin_lock (&partdrv->super->lock);
device_op (partdrv->super, XDRV_GET_SECTOR_SIZE, NULL, NULL, secsize);
spin_unlock (&partdrv->super->lock);
return ST_OK;
}
int partdrv_get_size (struct device* device, struct proc* proc, struct reschedule_ctx* rctx,
void* a1, void* a2, void* a3, void* a4) {
(void)proc, (void)rctx, (void)a2, (void)a3, (void)a4;
if (a1 == NULL)
return -ST_BAD_ADDRESS_SPACE;
size_t* size = (size_t*)a1;
struct partdrv* partdrv = device->udata;
*size = partdrv->total_size;
return ST_OK;
}