mirror of
https://github.com/denoland/deno.git
synced 2024-12-20 14:24:48 -05:00
cf49599359
This commit improves permission prompts by adding an option to print a full trace of where the permissions is being requested. Due to big performance hint of stack trace collection, this is only enabled when `DENO_TRACE_PERMISSIONS` env var is present. Closes https://github.com/denoland/deno/issues/20756 --------- Co-authored-by: Bartek Iwańczuk <biwanczuk@gmail.com>
507 lines
12 KiB
Rust
507 lines
12 KiB
Rust
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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use crate::FfiPermissions;
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use deno_core::op2;
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use deno_core::v8;
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use deno_core::OpState;
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use std::ffi::c_char;
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use std::ffi::c_void;
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use std::ffi::CStr;
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use std::ptr;
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#[derive(Debug, thiserror::Error)]
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pub enum ReprError {
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#[error("Invalid pointer to offset, pointer is null")]
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InvalidOffset,
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#[error("Invalid ArrayBuffer pointer, pointer is null")]
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InvalidArrayBuffer,
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#[error("Destination length is smaller than source length")]
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DestinationLengthTooShort,
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#[error("Invalid CString pointer, pointer is null")]
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InvalidCString,
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#[error("Invalid CString pointer, string exceeds max length")]
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CStringTooLong,
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#[error("Invalid bool pointer, pointer is null")]
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InvalidBool,
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#[error("Invalid u8 pointer, pointer is null")]
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InvalidU8,
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#[error("Invalid i8 pointer, pointer is null")]
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InvalidI8,
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#[error("Invalid u16 pointer, pointer is null")]
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InvalidU16,
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#[error("Invalid i16 pointer, pointer is null")]
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InvalidI16,
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#[error("Invalid u32 pointer, pointer is null")]
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InvalidU32,
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#[error("Invalid i32 pointer, pointer is null")]
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InvalidI32,
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#[error("Invalid u64 pointer, pointer is null")]
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InvalidU64,
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#[error("Invalid i64 pointer, pointer is null")]
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InvalidI64,
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#[error("Invalid f32 pointer, pointer is null")]
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InvalidF32,
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#[error("Invalid f64 pointer, pointer is null")]
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InvalidF64,
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#[error("Invalid pointer pointer, pointer is null")]
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InvalidPointer,
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#[error(transparent)]
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Permission(#[from] deno_permissions::PermissionCheckError),
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_ptr_create<FP>(
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state: &mut OpState,
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#[bigint] ptr_number: usize,
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) -> Result<*mut c_void, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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Ok(ptr_number as *mut c_void)
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_ptr_equals<FP>(
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state: &mut OpState,
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a: *const c_void,
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b: *const c_void,
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) -> Result<bool, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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Ok(a == b)
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}
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#[op2(stack_trace)]
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pub fn op_ffi_ptr_of<FP>(
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state: &mut OpState,
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#[anybuffer] buf: *const u8,
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) -> Result<*mut c_void, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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Ok(buf as *mut c_void)
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_ptr_of_exact<FP>(
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state: &mut OpState,
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buf: v8::Local<v8::ArrayBufferView>,
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) -> Result<*mut c_void, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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let Some(buf) = buf.get_backing_store() else {
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return Ok(0 as _);
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};
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let Some(buf) = buf.data() else {
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return Ok(0 as _);
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};
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Ok(buf.as_ptr() as _)
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_ptr_offset<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<*mut c_void, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidOffset);
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}
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// TODO(mmastrac): Create a RawPointer that can safely do pointer math.
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// SAFETY: Using `ptr.offset` is *actually unsafe* and has generated UB, but our FFI code relies on this working so we're going to
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// try and ask the compiler to be less undefined here by using `ptr.wrapping_offset`.
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Ok(ptr.wrapping_offset(offset))
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}
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unsafe extern "C" fn noop_deleter_callback(
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_data: *mut c_void,
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_byte_length: usize,
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_deleter_data: *mut c_void,
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) {
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}
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#[op2(fast, stack_trace)]
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#[bigint]
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pub fn op_ffi_ptr_value<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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) -> Result<usize, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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Ok(ptr as usize)
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}
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#[op2(stack_trace)]
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pub fn op_ffi_get_buf<FP, 'scope>(
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scope: &mut v8::HandleScope<'scope>,
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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#[number] len: usize,
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) -> Result<v8::Local<'scope, v8::ArrayBuffer>, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidArrayBuffer);
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}
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// SAFETY: Trust the user to have provided a real pointer, offset, and a valid matching size to it. Since this is a foreign pointer, we should not do any deletion.
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let backing_store = unsafe {
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v8::ArrayBuffer::new_backing_store_from_ptr(
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ptr.offset(offset),
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len,
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noop_deleter_callback,
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ptr::null_mut(),
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)
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}
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.make_shared();
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let array_buffer = v8::ArrayBuffer::with_backing_store(scope, &backing_store);
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Ok(array_buffer)
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}
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#[op2(stack_trace)]
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pub fn op_ffi_buf_copy_into<FP>(
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state: &mut OpState,
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src: *mut c_void,
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#[number] offset: isize,
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#[anybuffer] dst: &mut [u8],
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#[number] len: usize,
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) -> Result<(), ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if src.is_null() {
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Err(ReprError::InvalidArrayBuffer)
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} else if dst.len() < len {
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Err(ReprError::DestinationLengthTooShort)
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} else {
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let src = src as *const c_void;
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// SAFETY: src and offset are user defined.
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// dest is properly aligned and is valid for writes of len * size_of::<T>() bytes.
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unsafe {
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ptr::copy::<u8>(src.offset(offset) as *const u8, dst.as_mut_ptr(), len)
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};
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Ok(())
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}
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}
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#[op2(stack_trace)]
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pub fn op_ffi_cstr_read<FP, 'scope>(
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scope: &mut v8::HandleScope<'scope>,
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<v8::Local<'scope, v8::String>, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidCString);
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}
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let cstr =
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// SAFETY: Pointer and offset are user provided.
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unsafe { CStr::from_ptr(ptr.offset(offset) as *const c_char) }.to_bytes();
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let value = v8::String::new_from_utf8(scope, cstr, v8::NewStringType::Normal)
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.ok_or_else(|| ReprError::CStringTooLong)?;
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Ok(value)
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_bool<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<bool, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidBool);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe { ptr::read_unaligned::<bool>(ptr.offset(offset) as *const bool) })
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_u8<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<u32, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidU8);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe {
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ptr::read_unaligned::<u8>(ptr.offset(offset) as *const u8) as u32
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})
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_i8<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<i32, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidI8);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe {
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ptr::read_unaligned::<i8>(ptr.offset(offset) as *const i8) as i32
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})
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_u16<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<u32, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidU16);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe {
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ptr::read_unaligned::<u16>(ptr.offset(offset) as *const u16) as u32
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})
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_i16<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<i32, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidI16);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe {
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ptr::read_unaligned::<i16>(ptr.offset(offset) as *const i16) as i32
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})
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_u32<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<u32, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidU32);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe { ptr::read_unaligned::<u32>(ptr.offset(offset) as *const u32) })
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_i32<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<i32, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidI32);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe { ptr::read_unaligned::<i32>(ptr.offset(offset) as *const i32) })
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}
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#[op2(fast, stack_trace)]
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#[bigint]
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pub fn op_ffi_read_u64<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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// Note: The representation of 64-bit integers is function-wide. We cannot
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// choose to take this parameter as a number while returning a bigint.
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#[bigint] offset: isize,
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) -> Result<u64, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidU64);
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}
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let value =
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// SAFETY: ptr and offset are user provided.
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unsafe { ptr::read_unaligned::<u64>(ptr.offset(offset) as *const u64) };
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Ok(value)
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}
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#[op2(fast, stack_trace)]
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#[bigint]
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pub fn op_ffi_read_i64<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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// Note: The representation of 64-bit integers is function-wide. We cannot
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// choose to take this parameter as a number while returning a bigint.
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#[bigint] offset: isize,
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) -> Result<i64, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidI64);
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}
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let value =
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// SAFETY: ptr and offset are user provided.
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unsafe { ptr::read_unaligned::<i64>(ptr.offset(offset) as *const i64) };
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// SAFETY: Length and alignment of out slice were asserted to be correct.
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Ok(value)
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_f32<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<f32, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidF32);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe { ptr::read_unaligned::<f32>(ptr.offset(offset) as *const f32) })
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_f64<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<f64, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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if ptr.is_null() {
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return Err(ReprError::InvalidF64);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe { ptr::read_unaligned::<f64>(ptr.offset(offset) as *const f64) })
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}
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#[op2(fast, stack_trace)]
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pub fn op_ffi_read_ptr<FP>(
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state: &mut OpState,
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ptr: *mut c_void,
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#[number] offset: isize,
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) -> Result<*mut c_void, ReprError>
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where
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FP: FfiPermissions + 'static,
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{
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let permissions = state.borrow_mut::<FP>();
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permissions.check_partial_no_path()?;
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|
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if ptr.is_null() {
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return Err(ReprError::InvalidPointer);
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}
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// SAFETY: ptr and offset are user provided.
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Ok(unsafe {
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ptr::read_unaligned::<*mut c_void>(ptr.offset(offset) as *const *mut c_void)
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})
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}
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