The process::add_handle() method takes an id and an object. This change adds an overridden version that accecpts an actual handle object to copy.
176 lines
3.6 KiB
C++
176 lines
3.6 KiB
C++
#include <util/no_construct.h>
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#include "assert.h"
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#include "cpu.h"
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#include "objects/process.h"
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#include "objects/thread.h"
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#include "objects/vm_area.h"
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#include "scheduler.h"
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// This object is initialized _before_ global constructors are called,
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// so we don't want it to have a global constructor at all, lest it
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// overwrite the previous initialization.
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static util::no_construct<obj::process> __g_kernel_process_storage;
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obj::process &g_kernel_process = __g_kernel_process_storage.value;
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namespace obj {
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process::process() :
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kobject {kobject::type::process},
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m_next_handle {1},
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m_state {state::running}
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{
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m_self_handle = add_handle(this, process::self_caps);
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}
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// The "kernel process"-only constructor
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process::process(page_table *kpml4) :
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kobject {kobject::type::process},
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m_space {kpml4},
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m_next_handle {self_handle()+1},
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m_state {state::running}
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{
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}
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process::~process()
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{
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}
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process & process::current() { return *current_cpu().process; }
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process & process::kernel_process() { return g_kernel_process; }
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process *
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process::create_kernel_process(page_table *pml4)
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{
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return new (&g_kernel_process) process {pml4};
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}
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void
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process::exit(int32_t code)
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{
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// TODO: make this thread-safe
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m_state = state::exited;
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m_return_code = code;
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close();
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for (auto *thread : m_threads) {
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thread->exit(code);
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}
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if (this == current_cpu().process)
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scheduler::get().schedule();
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}
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void
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process::update()
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{
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kassert(m_threads.count() > 0, "process::update with zero threads!");
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size_t i = 0;
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uint32_t status = 0;
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while (i < m_threads.count()) {
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thread *th = m_threads[i];
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if (th->has_state(thread::state::exited)) {
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status = th->m_return_code;
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m_threads.remove_swap_at(i);
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continue;
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}
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i++;
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}
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if (m_threads.count() == 0) {
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// TODO: What really is the return code in this case?
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exit(status);
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}
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}
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thread *
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process::create_thread(uintptr_t rsp3, uint8_t priority)
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{
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if (priority == default_priority)
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priority = scheduler::default_priority;
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thread *th = new thread(*this, priority);
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kassert(th, "Failed to create thread!");
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if (rsp3)
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th->tcb()->rsp3 = rsp3;
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m_threads.append(th);
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scheduler::get().add_thread(th->tcb());
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return th;
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}
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bool
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process::thread_exited(thread *th)
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{
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kassert(&th->m_parent == this, "Process got thread_exited for non-child!");
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uint32_t status = th->m_return_code;
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m_threads.remove_swap(th);
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remove_handle(th->self_handle());
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delete th;
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// TODO: delete the thread's stack VMA
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if (m_threads.count() == 0) {
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exit(status);
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return true;
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}
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return false;
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}
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j6_handle_t
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process::add_handle(kobject *obj, j6_cap_t caps)
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{
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if (!obj)
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return j6_handle_invalid;
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handle h {m_next_handle++, obj, caps};
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j6_handle_t id = h.id;
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m_handles.insert(id, h);
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return id;
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}
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j6_handle_t
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process::add_handle(const handle &hnd)
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{
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if (!hnd.object || hnd.id == j6_handle_invalid)
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return j6_handle_invalid;
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handle h {m_next_handle++, hnd.object, hnd.caps()};
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j6_handle_t id = h.id;
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m_handles.insert(id, h);
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return id;
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}
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bool
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process::remove_handle(j6_handle_t id)
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{
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return m_handles.erase(id);
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}
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handle *
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process::lookup_handle(j6_handle_t id)
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{
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return m_handles.find(id);
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}
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size_t
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process::list_handles(j6_handle_t *handles, size_t len)
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{
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for (const auto &i : m_handles) {
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if (len-- == 0)
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break;
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*handles++ = i.key;
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}
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return m_handles.count();
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}
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} // namespace obj
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