int num_components = instr->num_components;
enum gl_access_qualifier access = nir_intrinsic_access(instr);
unsigned cache_policy = get_cache_policy(ctx, access, false, false);
- LLVMValueRef glc = (cache_policy & ac_glc) ? ctx->ac.i1true : ctx->ac.i1false;
LLVMValueRef offset = get_src(ctx, instr->src[1]);
LLVMValueRef rsrc = ctx->abi->load_ssbo(ctx->abi,
immoffset,
cache_policy & ac_glc);
} else {
- const char *load_name;
- LLVMTypeRef data_type;
- switch (load_bytes) {
- case 16:
- case 12:
- load_name = "llvm.amdgcn.buffer.load.v4f32";
- data_type = ctx->ac.v4f32;
- break;
- case 8:
- case 6:
- load_name = "llvm.amdgcn.buffer.load.v2f32";
- data_type = ctx->ac.v2f32;
- break;
- case 4:
- load_name = "llvm.amdgcn.buffer.load.f32";
- data_type = ctx->ac.f32;
- break;
- default:
- unreachable("Malformed load buffer.");
- }
- LLVMValueRef params[] = {
- rsrc,
- vindex,
- LLVMBuildAdd(ctx->ac.builder, offset, immoffset, ""),
- glc,
- ctx->ac.i1false,
- };
- ret = ac_build_intrinsic(&ctx->ac, load_name, data_type, params, 5, 0);
+ int num_channels = util_next_power_of_two(load_bytes) / 4;
+
+ ret = ac_build_buffer_load(&ctx->ac, rsrc, num_channels,
+ vindex, offset, immoffset, 0,
+ cache_policy & ac_glc, 0,
+ false, false);
}
LLVMTypeRef byte_vec = LLVMVectorType(ctx->ac.i8, ac_get_type_size(LLVMTypeOf(ret)));