PMM should work now
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parent
fe979e8774
commit
9a3a11d78c
12 changed files with 163 additions and 48 deletions
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@ -7,15 +7,25 @@ namespace MTGosHAL {
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public:
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Multitasking();
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auto schedule(struct cpu_state* cpu) -> struct cpu_state*;
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auto initTask(void(*entry)()) -> struct cpu_state*;
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uint32_t tss[32];
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protected:
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private:
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auto initTask(uint8_t* stck, void(*entry)()) -> struct cpu_state*;
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static auto task_a() -> void;
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static auto task_b() -> void;
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uint8_t stack_a[4096];
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uint8_t stack_b[4096];
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struct cpu_state* task_states[2];
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int current_task, num_tasks;
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Task* first_task;
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Task* curr_task;
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};
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class Task
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{
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private:
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struct cpu_state* cpu_state;
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Task* next;
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public:
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Task(struct cpu_state*);
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auto unpause() -> struct cpu_state*;
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auto pause(struct cpu_state*) -> Task *;
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auto addTask(Task*) -> void;
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};
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} // namespace MTGosHAL
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@ -9,6 +9,8 @@ namespace MTGosHAL {
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class Keyboard;
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class Multitasking;
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class BlockDevice;
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class Task;
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class PMM;
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enum class BG_color: uint16_t;
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enum class FG_color: uint16_t;
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extern Serial debug;
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@ -17,5 +19,6 @@ namespace MTGosHAL {
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extern Keyboard in;
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extern Multitasking tasks;
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extern BlockDevice disk;
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extern PMM mm;
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}
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#endif
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17
kernel/hal/dummy/include/pmm.hpp
Normal file
17
kernel/hal/dummy/include/pmm.hpp
Normal file
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@ -0,0 +1,17 @@
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#ifndef _PMM_HPP
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#define _PMM_HPP
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#include <stdint.h>
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namespace MTGosHAL {
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class PMM {
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private:
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uint32_t bitmap[0x8000]; //Enough for 4 GB
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auto markUsed(void * addr) -> void;
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public:
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PMM();
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auto operator >> (void * &addr) -> PMM &; //alloc
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auto operator << (const void * addr) -> PMM &; //free
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auto operator()(int pages) -> void*; //alloc_multipage
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};
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}
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#endif
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@ -14,10 +14,8 @@ _start:
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push %ebx
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push %eax
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call init
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_stop:
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cli
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hlt
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jmp _stop
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_exit:
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int $0x1F
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.section .bss
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.space 8192
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kernel_stack:
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@ -7,3 +7,4 @@ typedef unsigned short uint16_t;
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typedef unsigned int uint32_t;
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typedef unsigned long long int uint64_t;
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typedef unsigned int uintptr_t;
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typedef unsigned long int size_t;
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@ -1,5 +1,7 @@
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#ifndef MULTITASKING_H
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#define MULTITASKING_H
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#define PID_KERNEL 0
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#define PID_INIT 1
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#include <idt.hpp>
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namespace MTGosHAL {
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@ -8,18 +10,25 @@ namespace MTGosHAL {
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public:
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Multitasking();
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auto schedule(struct cpu_state* cpu) -> struct cpu_state*;
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auto initTask(void(*entry)()) -> struct cpu_state*;
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uint32_t tss[32];
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protected:
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private:
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auto initTask(uint8_t* stck, uint8_t* user_stck, void(*entry)()) -> struct cpu_state*;
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static auto task_a() -> void;
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static auto task_b() -> void;
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uint8_t stack_a[4096];
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uint8_t stack_b[4096];
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uint8_t user_stack_a[4096];
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uint8_t user_stack_b[4096];
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struct cpu_state* task_states[2];
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int current_task, num_tasks;
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Task* first_task;
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Task* curr_task;
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};
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class Task
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{
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private:
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struct cpu_state* cpu_state;
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Task* next;
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public:
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Task(struct cpu_state*);
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auto unpause() -> struct cpu_state*;
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auto pause(struct cpu_state*) -> Task *;
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auto addTask(Task*) -> void;
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};
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} // namespace MTGosHAL
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@ -11,6 +11,8 @@ namespace MTGosHAL {
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class IDT;
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class Multitasking;
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class BlockDevice;
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class Task;
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class PMM;
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enum class BG_color: uint16_t;
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enum class FG_color: uint16_t;
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extern Serial debug;
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@ -21,5 +23,6 @@ namespace MTGosHAL {
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extern IDT idt;
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extern Multitasking tasks;
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extern BlockDevice disk;
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extern PMM mm;
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}
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#endif
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@ -6,10 +6,10 @@ namespace MTGosHAL {
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class PMM {
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private:
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uint32_t bitmap[0x8000]; //Enough for 4 GB
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PMM() {}
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auto markUsed(void * addr) -> void;
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public:
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PMM(struct multiboot_info*);
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PMM();
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auto init(struct multiboot_info*) -> void;
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auto operator >> (void * &addr) -> PMM &; //alloc
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auto operator << (const void * addr) -> PMM &; //free
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auto operator()(int pages) -> void*; //alloc_multipage
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@ -3,12 +3,13 @@
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#include <Multitasking.hpp>
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#include <serial.hpp>
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#include <blockdev.hpp>
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#include <pmm.hpp>
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auto schedule(struct cpu_state* cpu) -> struct cpu_state* {
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return MTGosHAL::tasks.schedule(cpu);
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}
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namespace MTGosHAL {
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Multitasking::Multitasking(): current_task(-1), num_tasks(2)
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Multitasking::Multitasking(): curr_task(nullptr), first_task(nullptr)
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{
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for(int i=0;i<32;i++) {
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if(i==2)
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@ -16,16 +17,19 @@ Multitasking::Multitasking(): current_task(-1), num_tasks(2)
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tss[i]=0;
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}
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tss[2]=0x10;
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task_states[0] = initTask(stack_a, user_stack_a, task_a);
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task_states[1] = initTask(stack_b, user_stack_b, task_b);
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//task_states[0] = initTask(stack_a, user_stack_a, task_a);
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//task_states[1] = initTask(stack_b, user_stack_b, task_b);
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if(!idt.request(0x20,::schedule)) {
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err << "Could not start multitasking\nFatal error; Kernel halted!\n";
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while(true);
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asm volatile("cli; hlt");
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}
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}
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auto Multitasking::initTask(uint8_t* stck, uint8_t* user_stck, void(* entry)()) -> struct cpu_state*
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auto Multitasking::initTask(void(* entry)()) -> struct cpu_state*
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{
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void *tmp1, *tmp2;
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mm >> tmp1 >> tmp2;
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uint8_t *stack=(uint8_t*)tmp1, *user_stack=(uint8_t*)tmp2;
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struct cpu_state new_state = {
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0, //EAX
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0, //EBX
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@ -39,11 +43,19 @@ auto Multitasking::initTask(uint8_t* stck, uint8_t* user_stck, void(* entry)())
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(uint32_t) entry, //EIP
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0x18 | 0x03, //CS
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0x202, // EFLAGS
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(uint32_t) user_stck+4096, //ESP
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(uint32_t) user_stack+4096, //ESP
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0x20 | 0x03 //SS
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};
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struct cpu_state* state = (struct cpu_state*)(stck+4096-sizeof(new_state));
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struct cpu_state* state = (struct cpu_state*)(stack+4096-sizeof(new_state));
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*state = new_state;
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//Create new task class
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Task* task = new Task(state);
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if(first_task)
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first_task->addTask(task);
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else {
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first_task=task;
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}
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curr_task=first_task;
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return state;
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}
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@ -68,14 +80,25 @@ auto Multitasking::task_b() -> void
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}
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auto Multitasking::schedule(struct cpu_state* cpu) -> struct cpu_state*
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{
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if(current_task >= 0) {
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task_states[current_task] = cpu;
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Task* next=curr_task->pause(cpu);
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if(next==nullptr)
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next=first_task;
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curr_task=next;
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return next->unpause();
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}
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current_task++;
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current_task%= num_tasks;
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cpu=task_states[current_task];
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tss[1]=(uint32_t)(cpu+1);
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return cpu;
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Task::Task(struct cpu_state* cpu): cpu_state(cpu), next(nullptr) {};
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//This is run every time this task is chosen by the scheduler
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auto Task::unpause() -> struct cpu_state* {
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return cpu_state;
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}
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//This is run every time the timer ticks and a task is running
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auto Task::pause(struct cpu_state* cpu) -> Task * {
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cpu_state=cpu;
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return next;
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}
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auto Task::addTask(Task* task) -> void {
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if(next)
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return next->addTask(task);
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next=task;
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}
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} // namespace MTGosHAL
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@ -8,6 +8,7 @@
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#include <Multitasking.hpp>
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#include <multiboot.h>
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#include <blockdev.hpp>
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#include <pmm.hpp>
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extern "C" void intr_stub_0(void);
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void main();
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namespace MTGosHAL {
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@ -19,6 +20,7 @@ namespace MTGosHAL {
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GDT gdt;
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Multitasking tasks;
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BlockDevice disk;
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PMM mm;
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void main(int eax, struct multiboot_info* ebx) {
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out << BG_color::BLACK << FG_color::WHITE << "Loading MTGos...\n";
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err << BG_color::BLACK << FG_color::RED;
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idt.setEntry(48, (void *)((uint32_t)&intr_stub_0+768), SEG_KERNEL, IDT_TRAP_GATE | IDT_SEG_32_BIT | IDT_RING_0 | IDT_USED);
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idt.setEntry(8, (void *)((uint32_t)&intr_stub_0+128), SEG_DBL_FAULT, IDT_TASK_GATE | IDT_SEG_32_BIT | IDT_RING_0 | IDT_USED);
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idt.apply();
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mm.init(ebx);
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::main();
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sti();
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for(;;);
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@ -1,9 +1,40 @@
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#include <stdint.h>
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#include <base.hpp>
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#include <pmm.hpp>
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#include <multiboot.h>
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extern "C" const int kernel_start;
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extern "C" const int kernel_end; //those are voids actually
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void *operator new(size_t size) {
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if(size>4096) {
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asm("int $0x1F");
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}
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void *ptr;
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MTGosHAL::mm >> ptr;
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return ptr;
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}
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void *operator new[](size_t size) {
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if(size>4096) {
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asm("int $0x1F");
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}
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void *ptr;
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MTGosHAL::mm >> ptr;
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return ptr;
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}
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void operator delete(void* p) {
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MTGosHAL::mm << p;
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}
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void operator delete[](void* p) {
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MTGosHAL::mm << p;
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}
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void operator delete(void* p, size_t size) {
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MTGosHAL::mm << p;
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}
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void operator delete[](void* p, size_t size) {
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MTGosHAL::mm << p;
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}
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namespace MTGosHAL {
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PMM::PMM(struct multiboot_info * mb_info) {
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PMM::PMM() {}
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auto PMM::init(struct multiboot_info * mb_info) -> void {
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for(int i=0;i<0x8000;i++)
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bitmap[i]=0;
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struct multiboot_mmap_entry* mmap = (struct multiboot_mmap_entry*) mb_info->mmap_addr;
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@ -18,13 +49,14 @@ PMM::PMM(struct multiboot_info * mb_info) {
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addr += 0x1000;
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}
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}
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}
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mmap++;
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}
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unsigned int addr = (unsigned int) &kernel_start;
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while(addr < (unsigned int) &kernel_end) {
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markUsed((void*)addr);
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addr+=0x1000;
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}
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markUsed(nullptr);
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}
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auto PMM::markUsed(void * addr) -> void {
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unsigned int address=(unsigned int)addr;
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@ -40,7 +72,7 @@ auto PMM::operator >> (void * &addr) -> PMM & {
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for(int j=0;j<32;j++) {
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if(bitmap[i]&(1<<j)) {
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//We found a free page!
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bitmap[i]&=(1<<j);
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bitmap[i]&=~(1<<j);
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addr=(void*)(((i<<5)+j)<<12);
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return *this;
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}
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@ -6,6 +6,22 @@
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#include <Multitasking.h>
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#include <blockdev.hpp>
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using namespace MTGosHAL;
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void task_a() {
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MTGosHAL::out << "a";
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}
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void task_b() {
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MTGosHAL::out << "b";
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}
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void task_c() {
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MTGosHAL::out << "c";
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}
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void task_d() {
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MTGosHAL::out << "d";
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}
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void main() {
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MTGosHAL::out << "Initializing Kernel!\n";
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MTGosHAL::tasks.initTask(&task_a);
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MTGosHAL::tasks.initTask(&task_b);
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MTGosHAL::tasks.initTask(&task_c);
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MTGosHAL::tasks.initTask(&task_d);
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}
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