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SPDX License Identifiers are a more compact / standardized way of representing file license information. See: https://spdx.dev/resources/use/#identifiers This was done with the `ambr` search and replace tool. ambr --no-parent-ignore --key-from-file --rep-from-file key.txt rep.txt *
154 lines
4 KiB
C++
154 lines
4 KiB
C++
/*
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* Copyright (c) 2018-2021, Andreas Kling <kling@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <arpa/inet.h>
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#include <errno.h>
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#include <serenity.h>
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#include <string.h>
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#include <syscall.h>
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extern "C" {
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int disown(pid_t pid)
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{
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int rc = syscall(SC_disown, pid);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int module_load(const char* path, size_t path_length)
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{
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int rc = syscall(SC_module_load, path, path_length);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int module_unload(const char* name, size_t name_length)
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{
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int rc = syscall(SC_module_unload, name, name_length);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int profiling_enable(pid_t pid)
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{
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int rc = syscall(SC_profiling_enable, pid);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int profiling_disable(pid_t pid)
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{
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int rc = syscall(SC_profiling_disable, pid);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int profiling_free_buffer(pid_t pid)
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{
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int rc = syscall(SC_profiling_free_buffer, pid);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int futex(uint32_t* userspace_address, int futex_op, uint32_t value, const struct timespec* timeout, uint32_t* userspace_address2, uint32_t value3)
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{
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int rc;
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switch (futex_op & FUTEX_CMD_MASK) {
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//case FUTEX_CMP_REQUEUE:
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// FUTEX_CMP_REQUEUE_PI:
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case FUTEX_WAKE_OP: {
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// These interpret timeout as a u32 value for val2
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Syscall::SC_futex_params params {
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.userspace_address = userspace_address,
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.futex_op = futex_op,
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.val = value,
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.val2 = (FlatPtr)timeout,
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.userspace_address2 = userspace_address2,
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.val3 = value3
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};
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rc = syscall(SC_futex, ¶ms);
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break;
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}
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default: {
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Syscall::SC_futex_params params {
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.userspace_address = userspace_address,
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.futex_op = futex_op,
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.val = value,
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.timeout = timeout,
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.userspace_address2 = userspace_address2,
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.val3 = value3
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};
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rc = syscall(SC_futex, ¶ms);
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break;
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}
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}
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int purge(int mode)
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{
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int rc = syscall(SC_purge, mode);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int perf_event(int type, uintptr_t arg1, FlatPtr arg2)
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{
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int rc = syscall(SC_perf_event, type, arg1, arg2);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int get_stack_bounds(uintptr_t* user_stack_base, size_t* user_stack_size)
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{
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int rc = syscall(SC_get_stack_bounds, user_stack_base, user_stack_size);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int anon_create(size_t size, int options)
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{
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int rc = syscall(SC_anon_create, size, options);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int serenity_readlink(const char* path, size_t path_length, char* buffer, size_t buffer_size)
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{
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Syscall::SC_readlink_params small_params {
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{ path, path_length },
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{ buffer, buffer_size }
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};
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int rc = syscall(SC_readlink, &small_params);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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int setkeymap(const char* name, const u32* map, u32* const shift_map, const u32* alt_map, const u32* altgr_map, const u32* shift_altgr_map)
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{
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Syscall::SC_setkeymap_params params { map, shift_map, alt_map, altgr_map, shift_altgr_map, { name, strlen(name) } };
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return syscall(SC_setkeymap, ¶ms);
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}
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int getkeymap(char* name_buffer, size_t name_buffer_size, u32* map, u32* shift_map, u32* alt_map, u32* altgr_map, u32* shift_altgr_map)
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{
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Syscall::SC_getkeymap_params params {
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map,
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shift_map,
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alt_map,
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altgr_map,
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shift_altgr_map,
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{ name_buffer, name_buffer_size }
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};
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int rc = syscall(SC_getkeymap, ¶ms);
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__RETURN_WITH_ERRNO(rc, rc, -1);
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}
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u16 internet_checksum(const void* ptr, size_t count)
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{
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u32 checksum = 0;
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auto* w = (const u16*)ptr;
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while (count > 1) {
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checksum += ntohs(*w++);
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if (checksum & 0x80000000)
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checksum = (checksum & 0xffff) | (checksum >> 16);
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count -= 2;
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}
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while (checksum >> 16)
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checksum = (checksum & 0xffff) + (checksum >> 16);
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return htons(~checksum);
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}
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}
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