mirror of
https://github.com/topjohnwu/Magisk.git
synced 2024-11-24 18:45:28 +00:00
157 lines
3.3 KiB
C++
157 lines
3.3 KiB
C++
#include <utils.hpp>
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using kv_pairs = std::vector<std::pair<std::string, std::string>>;
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// For API 28 AVD, it uses legacy SAR setup that requires
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// special hacks in magiskinit to work properly. We do not
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// necessarily want this enabled in production builds.
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#define ENABLE_AVD_HACK 0
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struct BootConfig {
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bool skip_initramfs;
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bool force_normal_boot;
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bool rootwait;
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bool emulator;
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char slot[3];
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char dt_dir[64];
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char fstab_suffix[32];
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char hardware[32];
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char hardware_plat[32];
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void set(const kv_pairs &);
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void print();
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};
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#define DEFAULT_DT_DIR "/proc/device-tree/firmware/android"
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extern std::vector<std::string> mount_list;
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int magisk_proxy_main(int argc, char *argv[]);
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bool unxz(int fd, const uint8_t *buf, size_t size);
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void load_kernel_info(BootConfig *config);
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bool check_two_stage();
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void setup_klog();
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const char *backup_init();
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/***************
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* Base classes
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***************/
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class BaseInit {
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protected:
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BootConfig *config = nullptr;
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char **argv = nullptr;
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[[noreturn]] void exec_init();
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public:
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BaseInit(char *argv[], BootConfig *config = nullptr) : config(config), argv(argv) {}
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virtual ~BaseInit() = default;
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virtual void start() = 0;
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};
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class MagiskInit : public BaseInit {
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private:
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void mount_rules_dir();
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protected:
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mmap_data self;
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mmap_data magisk_cfg;
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std::string custom_rules_dir;
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#if ENABLE_AVD_HACK
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// When this boolean is set, this means we are currently
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// running magiskinit on legacy SAR AVD emulator
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bool avd_hack = false;
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#endif
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void patch_sepolicy(const char *file);
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void hijack_sepolicy();
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void setup_tmp(const char *path);
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void patch_rw_root();
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public:
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using BaseInit::BaseInit;
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};
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class SARBase : public MagiskInit {
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protected:
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std::vector<raw_file> overlays;
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void backup_files();
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void patch_ro_root();
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public:
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using MagiskInit::MagiskInit;
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};
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/***************
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* 2 Stage Init
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***************/
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class FirstStageInit : public BaseInit {
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private:
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void prepare();
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public:
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FirstStageInit(char *argv[], BootConfig *config) : BaseInit(argv, config) {
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LOGD("%s\n", __FUNCTION__);
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};
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void start() override {
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prepare();
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exec_init();
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}
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};
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class SecondStageInit : public SARBase {
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private:
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bool prepare();
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public:
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SecondStageInit(char *argv[]) : SARBase(argv) {
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setup_klog();
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LOGD("%s\n", __FUNCTION__);
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};
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void start() override {
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if (prepare())
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patch_rw_root();
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else
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patch_ro_root();
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exec_init();
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}
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};
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/*************
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* Legacy SAR
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*************/
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class LegacySARInit : public SARBase {
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private:
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bool mount_system_root();
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void first_stage_prep();
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public:
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LegacySARInit(char *argv[], BootConfig *config) : SARBase(argv, config) {
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LOGD("%s\n", __FUNCTION__);
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};
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void start() override {
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if (mount_system_root())
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first_stage_prep();
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else
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patch_ro_root();
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exec_init();
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}
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};
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/************
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* Initramfs
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************/
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class RootFSInit : public MagiskInit {
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private:
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void prepare();
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public:
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RootFSInit(char *argv[], BootConfig *config) : MagiskInit(argv, config) {
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LOGD("%s\n", __FUNCTION__);
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}
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void start() override {
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prepare();
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patch_rw_root();
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exec_init();
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}
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};
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