sched: implement user-configurable fs and gs segment base addresses
This commit is contained in:
@@ -28,4 +28,6 @@
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static void __used common(void)
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{
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OFFSET(THREAD_sp, struct thread, tr_sp);
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OFFSET(THREAD_fsbase, struct thread, tr_ml.tr_fsbase);
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OFFSET(THREAD_gsbase, struct thread, tr_ml.tr_gsbase);
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}
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@@ -3,6 +3,7 @@
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#include <stdint.h>
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#define MSR_FS_BASE 0xC0000100
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#define MSR_GS_BASE 0xC0000101
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#define MSR_KERNEL_GS_BASE 0xC0000102
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@@ -3,6 +3,10 @@
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#include <kernel/sched.h>
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struct ml_thread {
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virt_addr_t tr_gsbase, tr_fsbase;
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};
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struct ml_cpu_context;
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/* switch from one thread to another. the stack of the `to` thread must have
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@@ -28,4 +32,15 @@ extern kern_status_t ml_thread_prepare_user_context(
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const uintptr_t *args,
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size_t nr_args);
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extern kern_status_t ml_thread_config_get(
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struct thread *thread,
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kern_config_key_t key,
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void *out,
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size_t max);
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extern kern_status_t ml_thread_config_set(
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struct thread *thread,
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kern_config_key_t key,
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const void *ptr,
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size_t len);
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#endif
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@@ -1,5 +1,7 @@
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#include <arch/msr.h>
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#include <kernel/machine/cpu.h>
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#include <kernel/machine/thread.h>
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#include <kernel/thread.h>
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#define MAX_REG_ARGS 6
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#define REG_ARG_0 rdi
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@@ -77,3 +79,52 @@ extern kern_status_t ml_thread_prepare_user_context(
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return KERN_OK;
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}
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kern_status_t ml_thread_config_get(
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struct thread *thread,
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kern_config_key_t key,
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void *out,
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size_t max)
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{
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return KERN_OK;
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}
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kern_status_t ml_thread_config_set(
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struct thread *thread,
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kern_config_key_t key,
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const void *ptr,
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size_t len)
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{
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switch (key) {
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case THREAD_CFG_FSBASE:
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if (len != sizeof(thread->tr_ml.tr_fsbase)) {
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return KERN_INVALID_ARGUMENT;
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}
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thread->tr_ml.tr_fsbase = *(virt_addr_t *)ptr;
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if (thread == current_thread()) {
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wrmsr(MSR_FS_BASE, thread->tr_ml.tr_fsbase);
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}
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break;
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case THREAD_CFG_GSBASE:
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if (len != sizeof(thread->tr_ml.tr_gsbase)) {
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return KERN_INVALID_ARGUMENT;
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}
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thread->tr_ml.tr_gsbase = *(virt_addr_t *)ptr;
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if (thread == current_thread()) {
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/* we're in the kernel right now, so the user and kernel
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* gs-base registers are swapped. when we return to
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* usermode, this value will be swapped back into
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* the user gs-base register */
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wrmsr(MSR_KERNEL_GS_BASE, thread->tr_ml.tr_gsbase);
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}
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break;
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default:
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return KERN_INVALID_ARGUMENT;
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}
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return KERN_OK;
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}
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@@ -13,6 +13,22 @@ ml_thread_switch:
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push %rax
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push %rcx
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push %rdx
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// set fs-base
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mov $0xC0000100, %rcx
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movq THREAD_fsbase(%rsi), %rax
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movq THREAD_fsbase(%rsi), %rdx
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shr $32, %rdx
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wrmsr
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// set (kernel) gs-base (it will be swapped back into user-gs-base at
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// the end of this function)
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mov $0xC0000102, %rcx
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movq THREAD_gsbase(%rsi), %rax
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movq THREAD_gsbase(%rsi), %rdx
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shr $32, %rdx
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wrmsr
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push %rbx
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pushq $0
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push %rbp
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@@ -56,8 +56,28 @@ extern kern_status_t sys_task_create_thread(
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extern kern_status_t sys_task_get_address_space(
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kern_handle_t task,
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kern_handle_t *out);
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extern kern_status_t sys_task_config_get(
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kern_handle_t task,
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kern_config_key_t key,
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void *ptr,
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size_t len);
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extern kern_status_t sys_task_config_set(
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kern_handle_t task,
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kern_config_key_t key,
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const void *ptr,
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size_t len);
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extern kern_status_t sys_thread_start(kern_handle_t thread);
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extern kern_status_t sys_thread_config_get(
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kern_handle_t thread,
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kern_config_key_t key,
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void *ptr,
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size_t len);
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extern kern_status_t sys_thread_config_set(
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kern_handle_t thread,
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kern_config_key_t key,
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const void *ptr,
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size_t len);
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extern kern_status_t sys_vm_object_create(
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const char *name,
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@@ -1,6 +1,7 @@
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#ifndef KERNEL_THREAD_H_
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#define KERNEL_THREAD_H_
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#include <kernel/machine/thread.h>
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#include <kernel/msg.h>
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#include <kernel/object.h>
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#include <kernel/vm-controller.h>
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@@ -22,7 +23,7 @@ enum thread_flags {
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};
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struct thread {
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struct object thr_base;
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struct object tr_base;
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enum thread_state tr_state;
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enum thread_flags tr_flags;
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@@ -38,6 +39,7 @@ struct thread {
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virt_addr_t tr_ip, tr_sp, tr_bp;
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virt_addr_t tr_cpu_user_sp, tr_cpu_kernel_sp;
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struct ml_thread tr_ml;
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struct runqueue *tr_rq;
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struct queue_entry tr_parent_entry;
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@@ -61,4 +63,17 @@ extern void idle(void);
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extern struct thread *create_kernel_thread(void (*fn)(void));
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extern struct thread *create_idle_thread(void);
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extern kern_status_t thread_config_get(
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struct thread *thread,
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kern_config_key_t key,
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void *out,
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size_t max);
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extern kern_status_t thread_config_set(
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struct thread *thread,
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kern_config_key_t key,
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const void *ptr,
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size_t len);
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DEFINE_OBJECT_LOCK_FUNCTION(thread, tr_base)
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#endif
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@@ -60,8 +60,12 @@ SYSCALL_GATE task_self SYS_TASK_SELF 0
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SYSCALL_GATE task_create SYS_TASK_CREATE 5
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SYSCALL_GATE task_create_thread SYS_TASK_CREATE_THREAD 6
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SYSCALL_GATE task_get_address_space SYS_TASK_GET_ADDRESS_SPACE 1
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SYSCALL_GATE task_config_get SYS_TASK_CONFIG_GET 4
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SYSCALL_GATE task_config_set SYS_TASK_CONFIG_SET 4
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SYSCALL_GATE thread_start SYS_THREAD_START 1
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SYSCALL_GATE thread_config_get SYS_THREAD_CONFIG_GET 4
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SYSCALL_GATE thread_config_set SYS_THREAD_CONFIG_SET 4
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SYSCALL_GATE vm_object_create SYS_VM_OBJECT_CREATE 5
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SYSCALL_GATE vm_object_read SYS_VM_OBJECT_READ 5
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@@ -23,7 +23,27 @@ extern kern_status_t task_create_thread(
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extern kern_status_t task_get_address_space(
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kern_handle_t task,
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kern_handle_t *out);
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extern kern_status_t task_config_get(
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kern_handle_t task,
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kern_config_key_t key,
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void *ptr,
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size_t len);
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extern kern_status_t task_config_set(
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kern_handle_t task,
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kern_config_key_t key,
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const void *ptr,
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size_t len);
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extern kern_status_t thread_start(kern_handle_t thread);
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extern kern_status_t thread_config_get(
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kern_handle_t thread,
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kern_config_key_t key,
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void *ptr,
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size_t len);
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extern kern_status_t thread_config_set(
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kern_handle_t thread,
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kern_config_key_t key,
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const void *ptr,
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size_t len);
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#endif
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@@ -13,7 +13,11 @@
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#define SYS_TASK_CREATE 0x09u
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#define SYS_TASK_CREATE_THREAD 0x0Au
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#define SYS_TASK_GET_ADDRESS_SPACE 0x0Bu
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#define SYS_TASK_CONFIG_GET 0x2Au
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#define SYS_TASK_CONFIG_SET 0x2Bu
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#define SYS_THREAD_START 0x0Cu
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#define SYS_THREAD_CONFIG_GET 0x2Cu
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#define SYS_THREAD_CONFIG_SET 0x2Du
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#define SYS_VM_OBJECT_CREATE 0x0Du
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#define SYS_VM_OBJECT_READ 0x0Eu
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#define SYS_VM_OBJECT_WRITE 0x0Fu
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@@ -16,8 +16,17 @@
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#define MAP_ADDRESS_INVALID ((virt_addr_t)0)
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#define KERN_HANDLE_INVALID ((kern_handle_t)0xFFFFFFFF)
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#define KERN_CFG_INVALID 0x00u
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#define KERN_CFG_PAGE_SIZE 0x01u
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/* config keys for use with kern_config_get/kern_config_set */
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#define KERN_CFG_INVALID 0x00000u
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#define KERN_CFG_PAGE_SIZE 0x00001u
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/* config keys for use with task_config_get/task_config_set */
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#define TASK_CFG_INVALID 0x00000u
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/* config keys for use with thread_config_get/thread_config_set */
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#define THREAD_CFG_INVALID 0x00000u
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#define THREAD_CFG_FSBASE 0x20001u
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#define THREAD_CFG_GSBASE 0x20002u
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/* maximum number of handles that can be sent in a single message */
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#define KERN_MSG_MAX_HANDLES 64
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@@ -53,16 +62,20 @@
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#define IOVEC(p, len) \
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{ \
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.io_base = (virt_addr_t)(p), .io_len = (len), \
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.io_base = (virt_addr_t)(p), \
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.io_len = (len), \
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}
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#define MSG_HANDLE(mode, value) \
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{ \
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.hnd_mode = (mode), .hnd_value = (value), \
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.hnd_mode = (mode), \
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.hnd_value = (value), \
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}
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#define MSG(data, data_count, handles, handles_len) \
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{ \
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.msg_data = (data), .msg_data_count = (data_count), \
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.msg_handles = (handles), .msg_handles_count = (handles_len), \
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.msg_data = (data), \
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.msg_data_count = (data_count), \
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.msg_handles = (handles), \
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.msg_handles_count = (handles_len), \
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}
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typedef uintptr_t phys_addr_t;
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@@ -2,15 +2,17 @@
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#include <kernel/cpu.h>
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#include <kernel/machine/thread.h>
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#include <kernel/object.h>
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#include <kernel/printk.h>
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#include <kernel/task.h>
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#include <kernel/thread.h>
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#include <mango/signal.h>
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#define THREAD_CAST(p) OBJECT_C_CAST(struct thread, thr_base, &thread_type, p)
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#define THREAD_CAST(p) OBJECT_C_CAST(struct thread, tr_base, &thread_type, p)
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static struct object_type thread_type = {
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.ob_name = "thread",
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.ob_size = sizeof(struct thread),
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.ob_header_offset = offsetof(struct thread, thr_base),
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.ob_header_offset = offsetof(struct thread, tr_base),
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};
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kern_status_t thread_object_type_init(void)
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@@ -185,3 +187,31 @@ struct thread *create_idle_thread(void)
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return thr;
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}
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kern_status_t thread_config_get(
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struct thread *thread,
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kern_config_key_t key,
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void *out,
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size_t max)
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{
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switch (key) {
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default:
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break;
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}
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return ml_thread_config_get(thread, key, out, max);
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}
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kern_status_t thread_config_set(
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struct thread *thread,
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kern_config_key_t key,
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const void *ptr,
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size_t len)
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{
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switch (key) {
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default:
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break;
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}
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return ml_thread_config_set(thread, key, ptr, len);
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}
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@@ -11,6 +11,8 @@ static const virt_addr_t syscall_table[] = {
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SYSCALL_TABLE_ENTRY(TASK_CREATE_THREAD, task_create_thread),
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SYSCALL_TABLE_ENTRY(TASK_GET_ADDRESS_SPACE, task_get_address_space),
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SYSCALL_TABLE_ENTRY(THREAD_START, thread_start),
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SYSCALL_TABLE_ENTRY(THREAD_CONFIG_GET, thread_config_get),
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SYSCALL_TABLE_ENTRY(THREAD_CONFIG_SET, thread_config_set),
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SYSCALL_TABLE_ENTRY(VM_OBJECT_CREATE, vm_object_create),
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SYSCALL_TABLE_ENTRY(VM_OBJECT_READ, vm_object_read),
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SYSCALL_TABLE_ENTRY(VM_OBJECT_WRITE, vm_object_write),
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@@ -287,3 +287,75 @@ kern_status_t sys_thread_start(kern_handle_t thread_handle)
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return KERN_OK;
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}
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kern_status_t sys_thread_config_get(
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kern_handle_t thread_handle,
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kern_config_key_t key,
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void *ptr,
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size_t len)
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{
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unsigned long flags;
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struct task *self = current_task();
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if (!validate_access_w(self, ptr, len)) {
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return KERN_MEMORY_FAULT;
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}
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struct object *thread_obj;
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handle_flags_t thread_flags;
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task_lock_irqsave(self, &flags);
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kern_status_t status = task_resolve_handle(
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self,
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thread_handle,
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&thread_obj,
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&thread_flags);
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if (status != KERN_OK) {
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task_unlock_irqrestore(self, flags);
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return status;
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}
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struct thread *thread = thread_cast(thread_obj);
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task_unlock_irqrestore(self, flags);
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status = thread_config_get(thread, key, ptr, len);
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object_unref(thread_obj);
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return status;
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}
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kern_status_t sys_thread_config_set(
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kern_handle_t thread_handle,
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kern_config_key_t key,
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const void *ptr,
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size_t len)
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{
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unsigned long flags;
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struct task *self = current_task();
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if (!validate_access_w(self, ptr, len)) {
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return KERN_MEMORY_FAULT;
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}
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struct object *thread_obj;
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handle_flags_t thread_flags;
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task_lock_irqsave(self, &flags);
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kern_status_t status = task_resolve_handle(
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self,
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thread_handle,
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&thread_obj,
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&thread_flags);
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if (status != KERN_OK) {
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task_unlock_irqrestore(self, flags);
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return status;
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}
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struct thread *thread = thread_cast(thread_obj);
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task_unlock_irqrestore(self, flags);
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status = thread_config_set(thread, key, ptr, len);
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object_unref(thread_obj);
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return status;
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}
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