libnx/nx/source/services/ro.c
2019-05-11 20:25:06 +02:00

355 lines
7.8 KiB
C

// Copyright 2018 SciresM
#include <string.h>
#include "types.h"
#include "result.h"
#include "arm/atomics.h"
#include "kernel/ipc.h"
#include "runtime/hosversion.h"
#include "services/ro.h"
#include "services/sm.h"
static Service g_roSrv, g_ro1Srv, g_dmntSrv;
static u64 g_roRefCnt, g_ro1RefCnt, g_dmntRefCnt;
static Result _rosrvInitialize(Service* srv);
static Result _rosrvLoadNro(Service* srv, u64* out_address, u64 nro_address, u64 nro_size, u64 bss_address, u64 bss_size);
static Result _rosrvUnloadNro(Service* srv, u64 nro_address);
static Result _rosrvLoadNrr(Service* srv, u64 cmd_id, u64 nrr_address, u64 nrr_size);
static Result _rosrvUnloadNrr(Service* srv, u64 nrr_address);
Result ldrRoInitialize(void) {
atomicIncrement64(&g_roRefCnt);
if (serviceIsActive(&g_roSrv))
return 0;
Result rc = smGetService(&g_roSrv, "ldr:ro");
if (R_SUCCEEDED(rc)) {
rc = _rosrvInitialize(&g_roSrv);
}
return rc;
}
void ldrRoExit(void) {
if (atomicDecrement64(&g_roRefCnt) == 0)
serviceClose(&g_roSrv);
}
Result ro1Initialize(void) {
if (hosversionBefore(7,0,0)) return MAKERESULT(Module_Libnx, LibnxError_IncompatSysVer);
atomicIncrement64(&g_ro1RefCnt);
if (serviceIsActive(&g_ro1Srv))
return 0;
Result rc = smGetService(&g_ro1Srv, "ro:1");
if (R_SUCCEEDED(rc)) {
rc = _rosrvInitialize(&g_ro1Srv);
}
return rc;
}
void ro1Exit(void) {
if (atomicDecrement64(&g_ro1RefCnt) == 0)
serviceClose(&g_ro1Srv);
}
Result roDmntInitialize(void) {
if (hosversionBefore(3,0,0)) return MAKERESULT(Module_Libnx, LibnxError_IncompatSysVer);
atomicIncrement64(&g_dmntRefCnt);
if (serviceIsActive(&g_dmntSrv))
return 0;
return smGetService(&g_dmntSrv, "ro:dmnt");
}
void roDmntExit(void) {
if (atomicDecrement64(&g_dmntRefCnt) == 0)
serviceClose(&g_dmntSrv);
}
Result _rosrvInitialize(Service* srv) {
IpcCommand c;
ipcInitialize(&c);
ipcSendHandleCopy(&c, CUR_PROCESS_HANDLE);
ipcSendPid(&c);
struct {
u64 magic;
u64 cmd_id;
} *raw;
raw = serviceIpcPrepareHeader(srv, &c, sizeof(*raw));
raw->magic = SFCI_MAGIC;
raw->cmd_id = 4;
Result rc = serviceIpcDispatch(srv);
if (R_SUCCEEDED(rc)) {
IpcParsedCommand r;
struct {
u64 magic;
u64 result;
} *resp;
serviceIpcParse(srv, &r, sizeof(*resp));
resp = r.Raw;
rc = resp->result;
}
return rc;
}
Result _rosrvLoadNro(Service* srv, u64* out_address, u64 nro_address, u64 nro_size, u64 bss_address, u64 bss_size) {
IpcCommand c;
ipcInitialize(&c);
ipcSendPid(&c);
struct {
u64 magic;
u64 cmd_id;
u64 pid;
u64 nro_address;
u64 nro_size;
u64 bss_address;
u64 bss_size;
} *raw;
raw = serviceIpcPrepareHeader(srv, &c, sizeof(*raw));
raw->magic = SFCI_MAGIC;
raw->cmd_id = 0;
raw->pid = 0;
raw->nro_address = nro_address;
raw->nro_size = nro_size;
raw->bss_address = bss_address;
raw->bss_size = bss_size;
Result rc = serviceIpcDispatch(srv);
if (R_SUCCEEDED(rc)) {
IpcParsedCommand r;
struct {
u64 magic;
u64 result;
u64 out_address;
} *resp;
serviceIpcParse(srv, &r, sizeof(*resp));
resp = r.Raw;
rc = resp->result;
if (R_SUCCEEDED(rc)) {
if (out_address) *out_address = resp->out_address;
}
}
return rc;
}
Result _rosrvUnloadNro(Service* srv, u64 nro_address) {
IpcCommand c;
ipcInitialize(&c);
ipcSendPid(&c);
struct {
u64 magic;
u64 cmd_id;
u64 pid;
u64 nro_address;
} *raw;
raw = serviceIpcPrepareHeader(srv, &c, sizeof(*raw));
raw->magic = SFCI_MAGIC;
raw->cmd_id = 1;
raw->pid = 0;
raw->nro_address = nro_address;
Result rc = serviceIpcDispatch(srv);
if (R_SUCCEEDED(rc)) {
IpcParsedCommand r;
struct {
u64 magic;
u64 result;
} *resp;
serviceIpcParse(srv, &r, sizeof(*resp));
resp = r.Raw;
rc = resp->result;
}
return rc;
}
Result _rosrvLoadNrr(Service* srv, u64 cmd_id, u64 nrr_address, u64 nrr_size) {
IpcCommand c;
ipcInitialize(&c);
ipcSendPid(&c);
struct {
u64 magic;
u64 cmd_id;
u64 pid;
u64 nrr_address;
u64 nrr_size;
} *raw;
raw = serviceIpcPrepareHeader(srv, &c, sizeof(*raw));
raw->magic = SFCI_MAGIC;
raw->cmd_id = cmd_id;
raw->pid = 0;
raw->nrr_address = nrr_address;
raw->nrr_size = nrr_size;
Result rc = serviceIpcDispatch(srv);
if (R_SUCCEEDED(rc)) {
IpcParsedCommand r;
struct {
u64 magic;
u64 result;
} *resp;
serviceIpcParse(srv, &r, sizeof(*resp));
resp = r.Raw;
rc = resp->result;
}
return rc;
}
Result _rosrvUnloadNrr(Service* srv, u64 nrr_address) {
IpcCommand c;
ipcInitialize(&c);
ipcSendPid(&c);
struct {
u64 magic;
u64 cmd_id;
u64 pid;
u64 nrr_address;
} *raw;
raw = serviceIpcPrepareHeader(srv, &c, sizeof(*raw));
raw->magic = SFCI_MAGIC;
raw->cmd_id = 3;
raw->pid = 0;
raw->nrr_address = nrr_address;
Result rc = serviceIpcDispatch(srv);
if (R_SUCCEEDED(rc)) {
IpcParsedCommand r;
struct {
u64 magic;
u64 result;
} *resp;
serviceIpcParse(srv, &r, sizeof(*resp));
resp = r.Raw;
rc = resp->result;
}
return rc;
}
Result ldrRoLoadNro(u64* out_address, u64 nro_address, u64 nro_size, u64 bss_address, u64 bss_size) {
return _rosrvLoadNro(&g_roSrv, out_address, nro_address, nro_size, bss_address, bss_size);
}
Result ldrRoUnloadNro(u64 nro_address) {
return _rosrvUnloadNro(&g_roSrv, nro_address);
}
Result ldrRoLoadNrr(u64 nrr_address, u64 nrr_size) {
return _rosrvLoadNrr(&g_roSrv, 2, nrr_address, nrr_size);
}
Result ldrRoUnloadNrr(u64 nrr_address) {
return _rosrvUnloadNrr(&g_roSrv, nrr_address);
}
Result ldrRoLoadNrrEx(u64 nrr_address, u64 nrr_size) {
if (hosversionBefore(7,0,0)) {
return MAKERESULT(Module_Libnx, LibnxError_IncompatSysVer);
}
return _rosrvLoadNrr(&g_roSrv, 10, nrr_address, nrr_size);
}
Result ro1LoadNro(u64* out_address, u64 nro_address, u64 nro_size, u64 bss_address, u64 bss_size) {
return _rosrvLoadNro(&g_ro1Srv, out_address, nro_address, nro_size, bss_address, bss_size);
}
Result ro1UnloadNro(u64 nro_address) {
return _rosrvUnloadNro(&g_ro1Srv, nro_address);
}
Result ro1LoadNrr(u64 nrr_address, u64 nrr_size) {
return _rosrvLoadNrr(&g_ro1Srv, 2, nrr_address, nrr_size);
}
Result ro1UnloadNrr(u64 nrr_address) {
return _rosrvUnloadNrr(&g_ro1Srv, nrr_address);
}
Result ro1LoadNrrEx(u64 nrr_address, u64 nrr_size) {
return _rosrvLoadNrr(&g_ro1Srv, 10, nrr_address, nrr_size);
}
Result roDmntGetModuleInfos(u64 pid, LoaderModuleInfo *out_module_infos, size_t max_out_modules, u32 *num_out) {
IpcCommand c;
ipcInitialize(&c);
ipcAddRecvBuffer(&c, out_module_infos, max_out_modules * sizeof(*out_module_infos), BufferType_Normal);
struct {
u64 magic;
u64 cmd_id;
u64 pid;
} *raw;
raw = serviceIpcPrepareHeader(&g_dmntSrv, &c, sizeof(*raw));
raw->magic = SFCI_MAGIC;
raw->cmd_id = 0;
raw->pid = pid;
Result rc = serviceIpcDispatch(&g_dmntSrv);
if (R_SUCCEEDED(rc)) {
IpcParsedCommand r;
struct {
u64 magic;
u64 result;
u32 num_out;
} *resp;
serviceIpcParse(&g_dmntSrv, &r, sizeof(*resp));
resp = r.Raw;
rc = resp->result;
if (R_SUCCEEDED(rc) && num_out != NULL) {
*num_out = resp->num_out;
}
}
return rc;
}