#![allow(unsafe_code)]
#![allow(clippy::ptr_as_ptr)]
extern crate alloc;
#[cfg(target_arch = "riscv64")]
#[doc(hidden)]
pub mod __private {
pub use polkavm_derive::{self, default_abi, polkavm_export};
}
use alloc::vec::Vec;
use std::{
cell::RefCell,
mem::{size_of, MaybeUninit},
rc::Rc,
slice::{from_raw_parts, from_raw_parts_mut},
};
use rialo_s_account_info::AccountInfo;
use rialo_s_pubkey::Pubkey;
pub use {
crate::allocator::BumpAllocator, rialo_s_account_info::MAX_PERMITTED_DATA_INCREASE,
rialo_s_msg::msg as __msg, rialo_s_program_error::ProgramResult,
};
pub mod allocator;
pub type ProcessInstruction =
fn(program_id: &Pubkey, accounts: &[AccountInfo<'_>], instruction_data: &[u8]) -> ProgramResult;
pub const SUCCESS: u64 = 0;
pub const HEAP_LENGTH: usize = 32 * 1024;
pub const NON_DUP_MARKER: u8 = u8::MAX;
#[cfg(not(target_arch = "riscv64"))]
#[macro_export]
macro_rules! entrypoint {
($process_instruction:ident) => {
#[no_mangle]
pub unsafe extern "C" fn entrypoint(input: *mut u8) -> u64 {
let (program_id, accounts, instruction_data) = unsafe { $crate::deserialize(input) };
match $process_instruction(program_id, &accounts, instruction_data) {
Ok(()) => $crate::SUCCESS,
Err(error) => error.into(),
}
}
$crate::custom_heap_default!();
$crate::custom_panic_default!();
};
}
#[cfg(target_arch = "riscv64")]
#[macro_export]
macro_rules! entrypoint {
($process_instruction:expr) => {
#[$crate::__private::polkavm_export(abi = $crate::__private::polkavm_derive::default_abi)]
extern "C" fn entrypoint(addr: u32, _len: u32) -> u64 {
let input = addr as usize as *mut u8;
let (program_id, accounts, instruction_data) =
unsafe { $crate::deserialize(addr as usize as *mut u8) };
match $process_instruction(program_id, &accounts, instruction_data) {
Ok(()) => $crate::SUCCESS,
Err(error) => error.into(),
}
}
$crate::custom_heap_default!();
$crate::custom_panic_default!();
};
}
#[cfg(not(target_arch = "riscv64"))]
#[macro_export]
macro_rules! entrypoint_no_alloc {
($process_instruction:ident) => {
#[no_mangle]
pub unsafe extern "C" fn entrypoint(input: *mut u8) -> u64 {
use std::mem::MaybeUninit;
#[allow(clippy::declare_interior_mutable_const)]
const UNINIT_ACCOUNT_INFO: MaybeUninit<AccountInfo> =
MaybeUninit::<AccountInfo>::uninit();
const MAX_ACCOUNT_INFOS: usize = 64;
let mut accounts = [UNINIT_ACCOUNT_INFO; MAX_ACCOUNT_INFOS];
let (program_id, num_accounts, instruction_data) =
unsafe { $crate::deserialize_into(input, &mut accounts) };
let accounts = &*(&accounts[..num_accounts] as *const [MaybeUninit<AccountInfo<'_>>]
as *const [AccountInfo<'_>]);
#[inline(never)]
fn call_program(program_id: &Pubkey, accounts: &[AccountInfo], data: &[u8]) -> u64 {
match $process_instruction(program_id, accounts, data) {
Ok(()) => $crate::SUCCESS,
Err(error) => error.into(),
}
}
call_program(&program_id, accounts, &instruction_data)
}
$crate::custom_heap_default!();
$crate::custom_panic_default!();
};
}
#[cfg(target_arch = "riscv64")]
#[macro_export]
macro_rules! entrypoint_no_alloc {
($process_instruction:expr) => {
#[$crate::__private::polkavm_export(abi = $crate::__private::polkavm_derive::default_abi)]
pub unsafe extern "C" fn entrypoint(addr: u32, len: u32) -> u64 {
use std::mem::MaybeUninit;
#[allow(clippy::declare_interior_mutable_const)]
const UNINIT_ACCOUNT_INFO: MaybeUninit<AccountInfo> =
MaybeUninit::<AccountInfo>::uninit();
const MAX_ACCOUNT_INFOS: usize = 64;
let mut accounts = [UNINIT_ACCOUNT_INFO; MAX_ACCOUNT_INFOS];
let input = addr as usize as *mut u8;
let (program_id, num_accounts, instruction_data) =
unsafe { $crate::deserialize_into(input, &mut accounts) };
let accounts = unsafe {
&*(&accounts[..num_accounts] as *const [MaybeUninit<AccountInfo<'_>>]
as *const [AccountInfo<'_>])
};
#[inline(never)]
fn call_program(program_id: &Pubkey, accounts: &[AccountInfo], data: &[u8]) -> u64 {
match $process_instruction(program_id, accounts, data) {
Ok(()) => $crate::SUCCESS,
Err(error) => error.into(),
}
}
call_program(&program_id, accounts, &instruction_data)
}
$crate::custom_heap_default!();
$crate::custom_panic_default!();
};
}
#[macro_export]
macro_rules! custom_heap_default {
() => {
#[cfg(all(not(feature = "custom-heap"), target_os = "solana"))]
#[global_allocator]
static A: $crate::allocator::BumpAllocator<()> =
unsafe { $crate::allocator::BumpAllocator::new() };
};
}
#[macro_export]
macro_rules! custom_panic_default {
() => {
#[cfg(all(not(feature = "custom-panic"), target_os = "solana"))]
#[no_mangle]
fn custom_panic(info: &core::panic::PanicInfo<'_>) {
$crate::__msg!("{}", info);
}
};
}
pub const BPF_ALIGN_OF_U128: usize = 8;
#[allow(clippy::arithmetic_side_effects)]
#[inline(always)] unsafe fn deserialize_instruction_data<'a>(input: *mut u8, mut offset: usize) -> (&'a [u8], usize) {
#[allow(clippy::cast_ptr_alignment)]
let instruction_data_len = *(input.add(offset) as *const u64) as usize;
offset += size_of::<u64>();
let instruction_data = { from_raw_parts(input.add(offset), instruction_data_len) };
offset += instruction_data_len;
(instruction_data, offset)
}
#[allow(clippy::arithmetic_side_effects)]
#[inline(always)] unsafe fn deserialize_account_info<'a>(
input: *mut u8,
mut offset: usize,
) -> (AccountInfo<'a>, usize) {
#[allow(clippy::cast_ptr_alignment)]
let is_signer = *(input.add(offset) as *const u8) != 0;
offset += size_of::<u8>();
#[allow(clippy::cast_ptr_alignment)]
let is_writable = *(input.add(offset) as *const u8) != 0;
offset += size_of::<u8>();
#[allow(clippy::cast_ptr_alignment)]
let executable = *(input.add(offset) as *const u8) != 0;
offset += size_of::<u8>();
let original_data_len_offset = offset;
offset += size_of::<u32>();
let key: &Pubkey = &*(input.add(offset) as *const Pubkey);
offset += size_of::<Pubkey>();
let owner: &Pubkey = &*(input.add(offset) as *const Pubkey);
offset += size_of::<Pubkey>();
#[allow(clippy::cast_ptr_alignment)]
let kelvins = Rc::new(RefCell::new(&mut *(input.add(offset) as *mut u64)));
offset += size_of::<u64>();
#[allow(clippy::cast_ptr_alignment)]
let data_len = *(input.add(offset) as *const u64) as usize;
offset += size_of::<u64>();
*(input.add(original_data_len_offset) as *mut u32) = data_len as u32;
let data = Rc::new(RefCell::new({
from_raw_parts_mut(input.add(offset), data_len)
}));
offset += data_len + MAX_PERMITTED_DATA_INCREASE;
offset += (offset as *const u8).align_offset(BPF_ALIGN_OF_U128);
#[allow(clippy::cast_ptr_alignment)]
let rent_epoch = *(input.add(offset) as *const u64);
offset += size_of::<u64>();
(
AccountInfo {
key,
is_signer,
is_writable,
kelvins,
data,
owner,
executable,
rent_epoch,
},
offset,
)
}
#[allow(clippy::arithmetic_side_effects)]
pub unsafe fn deserialize<'a>(input: *mut u8) -> (&'a Pubkey, Vec<AccountInfo<'a>>, &'a [u8]) {
let (instruction_data, mut offset) = deserialize_instruction_data(input, 0);
let program_id: &Pubkey = &*(input.add(offset) as *const Pubkey);
offset += 32;
let padding = (offset as *const u8).align_offset(BPF_ALIGN_OF_U128);
offset += padding;
#[allow(clippy::cast_ptr_alignment)]
let num_accounts = *(input.add(offset) as *const u64) as usize;
offset += size_of::<u64>();
let mut accounts = Vec::with_capacity(num_accounts);
for _ in 0..num_accounts {
let dup_info = *(input.add(offset) as *const u8);
offset += size_of::<u8>();
if dup_info == NON_DUP_MARKER {
let (account_info, new_offset) = deserialize_account_info(input, offset);
offset = new_offset;
accounts.push(account_info);
} else {
offset += 7;
accounts.push(accounts[dup_info as usize].clone());
}
}
(program_id, accounts, instruction_data)
}
#[allow(clippy::arithmetic_side_effects)]
pub unsafe fn deserialize_into<'a>(
input: *mut u8,
accounts: &mut [MaybeUninit<AccountInfo<'a>>],
) -> (&'a Pubkey, usize, &'a [u8]) {
let (instruction_data, mut offset) = deserialize_instruction_data(input, 0);
let program_id: &Pubkey = &*(input.add(offset) as *const Pubkey);
offset += 32;
let padding = (offset as *const u8).align_offset(BPF_ALIGN_OF_U128);
offset += padding;
#[allow(clippy::cast_ptr_alignment)]
let num_accounts = *(input.add(offset) as *const u64) as usize;
offset += size_of::<u64>();
if num_accounts > accounts.len() {
panic!(
"{} accounts provided, but only {} are supported",
num_accounts,
accounts.len()
);
}
for i in 0..num_accounts {
let dup_info = *(input.add(offset) as *const u8);
offset += size_of::<u8>();
if dup_info == NON_DUP_MARKER {
let (account_info, new_offset) = deserialize_account_info(input, offset);
offset = new_offset;
accounts[i].write(account_info);
} else {
offset += 7;
accounts[i].write(accounts[dup_info as usize].assume_init_ref().clone());
}
}
(program_id, num_accounts, instruction_data)
}