-#include <arch/x86/boot/multiboot.h>
+#include <lunaix/block.h>
#include <lunaix/common.h>
+#include <lunaix/fctrl.h>
+#include <lunaix/fs.h>
+#include <lunaix/fs/twifs.h>
#include <lunaix/lunistd.h>
#include <lunaix/lxconsole.h>
+#include <lunaix/mm/cake.h>
#include <lunaix/mm/pmm.h>
+#include <lunaix/mm/valloc.h>
#include <lunaix/mm/vmm.h>
#include <lunaix/peripheral/ps2kbd.h>
#include <lunaix/proc.h>
#include <lunaix/spike.h>
#include <lunaix/syscall.h>
#include <lunaix/syslog.h>
-#include <stddef.h>
+#include <lunaix/types.h>
#include <hal/acpi/acpi.h>
-#include <hal/ahci.h>
+#include <hal/ahci/ahci.h>
#include <hal/apic.h>
#include <hal/ioapic.h>
#include <hal/pci.h>
+#include <hal/rtc.h>
+
+#include <arch/x86/boot/multiboot.h>
+
+#include <klibc/string.h>
LOG_MODULE("PROC0")
void
__do_reserved_memory(int unlock);
-//#define USE_DEMO
-#define DEMO_SIGNAL
+#define USE_DEMO
+// #define DEMO_SIGNAL
+// #define DEMO_READDIR
+#define DEMO_IOTEST
extern void
_pconsole_main();
extern void
_lxinit_main();
+extern void
+_readdir_main();
+
+extern void
+_iotest_main();
+
void __USER__
__proc0_usr()
{
+ // 打开tty设备(控制台),作为标准输入输出。
+ // tty设备属于序列设备(Sequential Device),该类型设备的上层读写
+ // 无须经过Lunaix的缓存层,而是直接下发到底层驱动。(不受FO_DIRECT的影响)
+ int stdout = open("/dev/tty", 0);
+ int stdin = dup2(stdout, 1);
+
pid_t p;
if (!fork()) {
_pconsole_main();
_exit(0);
#elif defined DEMO_SIGNAL
_signal_demo_main();
+#elif defined DEMO_READDIR
+ _readdir_main();
+#elif defined DEMO_IOTEST
+ _iotest_main();
#else
_lxinit_main();
#endif
void
init_platform()
{
- assert_msg(kalloc_init(), "Fail to initialize heap");
-
// 锁定所有系统预留页(内存映射IO,ACPI之类的),并且进行1:1映射
lock_reserved_memory();
+ // we are using no kalloc!
+ // assert_msg(kalloc_init(), "Fail to initialize heap");
+
+ rtc_init();
acpi_init(_k_init_mb_info);
apic_init();
ioapic_init();
clock_init();
ps2_kbd_init();
pci_init();
+ block_init();
ahci_init();
- pci_print_device();
+ // ahci_list_device();
+ // cake_stats();
syscall_install();
break;
}
vmm_set_mapping(PD_REFERENCED, _pa, _pa, PG_PREM_R, VMAP_NULL);
+ pmm_mark_page_occupied(
+ KERNEL_PID, _pa >> PG_SIZE_BITS, PP_FGLOCKED);
}
// Save the progress for later unmapping.
mmaps[i].len_low = j * PG_SIZE;
for (; j < pg_num; j++) {
uintptr_t _pa = pa + (j << PG_SIZE_BITS);
vmm_del_mapping(PD_REFERENCED, _pa);
+ if (mmap.type == MULTIBOOT_MEMORY_ACPI_RECLAIMABLE) {
+ pmm_mark_page_free(_pa >> PG_SIZE_BITS);
+ }
}
}
}