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use std::{
ffi::{c_void, CStr},
mem, ptr, slice,
};
use hip_runtime_sys::{hipCtxGetDevice, hipError_t, hipGetDeviceProperties};
use crate::{
cuda::{CUjitInputType, CUjit_option, CUlinkState, CUresult},
hip_call,
};
use super::module::{self, SpirvModule};
struct LinkState {
modules: Vec<SpirvModule>,
result: Option<Vec<u8>>,
}
pub(crate) unsafe fn create(
num_options: u32,
options: *mut CUjit_option,
option_values: *mut *mut c_void,
state_out: *mut CUlinkState,
) -> CUresult {
if state_out == ptr::null_mut() {
return CUresult::CUDA_ERROR_INVALID_VALUE;
}
let state = Box::new(LinkState {
modules: Vec::new(),
result: None,
});
*state_out = mem::transmute(state);
CUresult::CUDA_SUCCESS
}
pub(crate) unsafe fn add_data(
state: CUlinkState,
type_: CUjitInputType,
data: *mut c_void,
size: usize,
name: *const i8,
num_options: u32,
options: *mut CUjit_option,
option_values: *mut *mut c_void,
) -> Result<(), hipError_t> {
if state == ptr::null_mut() {
return Err(hipError_t::hipErrorInvalidValue);
}
let state: *mut LinkState = mem::transmute(state);
let state = &mut *state;
// V-RAY specific hack
if state.modules.len() == 2 {
return Err(hipError_t::hipSuccess);
}
let spirv_data = SpirvModule::new_raw(data as *const _)?;
state.modules.push(spirv_data);
Ok(())
}
pub(crate) unsafe fn complete(
state: CUlinkState,
cubin_out: *mut *mut c_void,
size_out: *mut usize,
) -> Result<(), hipError_t> {
let mut dev = 0;
hip_call! { hipCtxGetDevice(&mut dev) };
let mut props = unsafe { mem::zeroed() };
hip_call! { hipGetDeviceProperties(&mut props, dev) };
let state: &LinkState = mem::transmute(state);
let spirv_bins = state.modules.iter().map(|m| &m.binaries[..]);
let should_link_ptx_impl = state.modules.iter().find_map(|m| m.should_link_ptx_impl);
let arch_binary = module::compile_amd(&props, spirv_bins, should_link_ptx_impl)
.map_err(|_| hipError_t::hipErrorUnknown)?;
Ok(())
}
pub(crate) unsafe fn destroy(state: CUlinkState) -> CUresult {
let state: Box<LinkState> = mem::transmute(state);
CUresult::CUDA_SUCCESS
}
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