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Many kernel objects had to keep a hold of refrences to allocators in order to pass them on down the call chain. Remove those explicit refrences and use `operator new`, `operator delete`, and define new `kalloc` and `kfree`. Also remove `slab_allocator` and replace it with a new mixin for slab allocation, `slab_allocated`, that overrides `operator new` and `operator free` for its subclass. Remove some no longer used related headers, `buddy_allocator.h` and `address_manager.h` Tags: memory
228 lines
4.8 KiB
C++
228 lines
4.8 KiB
C++
#include "kutil/assert.h"
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#include "cpu.h"
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#include "debug.h"
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#include "log.h"
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#include "process.h"
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#include "scheduler.h"
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extern "C" void task_fork_return_thunk();
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void
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process::exit(uint32_t code)
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{
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return_code = code;
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flags -= process_flags::running;
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page_manager::get()->delete_process_map(pml4);
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}
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pid_t
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process::fork()
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{
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auto &sched = scheduler::get();
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auto *child = sched.create_process();
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kassert(child, "process::fork() got null child");
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child->ppid = pid;
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child->flags =
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process_flags::running |
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process_flags::ready;
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sched.m_runlists[child->priority].push_back(child);
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child->pml4 = page_manager::get()->copy_table(pml4);
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kassert(child->pml4, "process::fork() got null pml4");
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child->rsp3 = bsp_cpu_data.rsp3;
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child->setup_kernel_stack();
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log::debug(logs::task, "Copied process %d to %d",
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pid, child->pid);
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log::debug(logs::task, " PML4 %016lx", child->pml4);
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log::debug(logs::task, " RSP3 %016lx", child->rsp3);
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log::debug(logs::task, " RSP0 %016lx", child->rsp0);
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// Initialize a new empty stack with a fake saved state
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// for returning out of syscall_handler_prelude
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size_t ret_seg_size = sizeof(uintptr_t) * 8;
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child->rsp -= ret_seg_size;
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void *this_ret_seg =
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reinterpret_cast<void*>(rsp0 - ret_seg_size);
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void *child_ret_seg =
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reinterpret_cast<void*>(child->rsp);
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kutil::memcpy(child_ret_seg, this_ret_seg, ret_seg_size);
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child->add_fake_task_return(
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reinterpret_cast<uintptr_t>(task_fork_return_thunk));
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log::debug(logs::task, " RSP %016lx", child->rsp);
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return child->pid;
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}
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void *
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process::setup_kernel_stack()
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{
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constexpr unsigned null_frame_entries = 2;
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constexpr size_t null_frame_size = null_frame_entries * sizeof(uint64_t);
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void *stack_bottom = kutil::kalloc(initial_stack_size);
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kutil::memset(stack_bottom, 0, initial_stack_size);
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log::debug(logs::memory, "Created kernel stack at %016lx size 0x%lx",
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stack_bottom, initial_stack_size);
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void *stack_top =
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kutil::offset_pointer(stack_bottom,
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initial_stack_size - null_frame_size);
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uint64_t *null_frame = reinterpret_cast<uint64_t*>(stack_top);
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for (unsigned i = 0; i < null_frame_entries; ++i)
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null_frame[i] = 0;
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kernel_stack_size = initial_stack_size;
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kernel_stack = reinterpret_cast<uintptr_t>(stack_bottom);
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rsp0 = reinterpret_cast<uintptr_t>(stack_top);
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rsp = rsp0;
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return stack_top;
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}
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void
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process::add_fake_task_return(uintptr_t rip)
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{
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rsp -= sizeof(uintptr_t) * 7;
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uintptr_t *stack = reinterpret_cast<uintptr_t*>(rsp);
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stack[6] = rip; // return rip
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stack[5] = rsp0; // rbp
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stack[4] = 0xbbbbbbbb; // rbx
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stack[3] = 0x12121212; // r12
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stack[2] = 0x13131313; // r13
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stack[1] = 0x14141414; // r14
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stack[0] = 0x15151515; // r15
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}
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bool
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process::wait_on_signal(uint64_t sigmask)
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{
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waiting = process_wait::signal;
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waiting_info = sigmask;
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flags -= process_flags::ready;
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return true;
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}
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bool
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process::wait_on_child(uint32_t pid)
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{
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waiting = process_wait::child;
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waiting_info = pid;
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flags -= process_flags::ready;
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return true;
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}
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bool
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process::wait_on_time(uint64_t time)
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{
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waiting = process_wait::time;
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waiting_info = time;
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flags -= process_flags::ready;
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return true;
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}
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bool
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process::wait_on_send(uint32_t target_id)
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{
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scheduler &s = scheduler::get();
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process *target = s.get_process_by_id(target_id);
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if (!target) return false;
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if (!target->wake_on_receive(this)) {
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waiting = process_wait::send;
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waiting_info = target_id;
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flags -= process_flags::ready;
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}
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return true;
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}
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bool
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process::wait_on_receive(uint32_t source_id)
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{
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scheduler &s = scheduler::get();
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process *source = s.get_process_by_id(source_id);
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if (!source) return false;
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if (!source->wake_on_send(this)) {
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waiting = process_wait::receive;
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waiting_info = source_id;
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flags -= process_flags::ready;
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return true;
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}
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return false;
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}
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bool
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process::wake_on_signal(int signal)
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{
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if (waiting != process_wait::signal ||
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(waiting_info & (1 << signal)) == 0)
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return false;
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waiting = process_wait::none;
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flags += process_flags::ready;
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return true;
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}
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bool
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process::wake_on_child(process *child)
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{
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if (waiting != process_wait::child ||
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(waiting_info && waiting_info != child->pid))
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return false;
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waiting = process_wait::none;
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flags += process_flags::ready;
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return true;
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}
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bool
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process::wake_on_time(uint64_t now)
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{
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if (waiting != process_wait::time ||
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waiting_info > now)
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return false;
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waiting = process_wait::none;
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flags += process_flags::ready;
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return true;
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}
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bool
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process::wake_on_send(process *target)
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{
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if (waiting != process_wait::send ||
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waiting_info != target->pid)
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return false;
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waiting = process_wait::none;
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flags += process_flags::ready;
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return true;
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}
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bool
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process::wake_on_receive(process *source)
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{
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if (waiting != process_wait::receive ||
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waiting_info != source->pid)
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return false;
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waiting = process_wait::none;
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flags += process_flags::ready;
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return true;
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}
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