//! RDRAND and RDSEED instructions for returning random numbers from an Intel //! on-chip hardware random number generator which has been seeded by an //! on-chip entropy source. #![allow(clippy::module_name_repetitions)] #[allow(improper_ctypes)] extern "unadjusted" { #[link_name = "llvm.x86.rdrand.16"] fn x86_rdrand16_step() -> (u16, i32); #[link_name = "llvm.x86.rdrand.32"] fn x86_rdrand32_step() -> (u32, i32); #[link_name = "llvm.x86.rdseed.16"] fn x86_rdseed16_step() -> (u16, i32); #[link_name = "llvm.x86.rdseed.32"] fn x86_rdseed32_step() -> (u32, i32); } #[cfg(test)] use stdarch_test::assert_instr; /// Read a hardware generated 16-bit random value and store the result in val. /// Returns 1 if a random value was generated, and 0 otherwise. /// /// [Intel's documentation](https://software.intel.com/sites/landingpage/IntrinsicsGuide/#text=_rdrand16_step) #[inline] #[target_feature(enable = "rdrand")] #[cfg_attr(test, assert_instr(rdrand))] #[stable(feature = "simd_x86", since = "1.27.0")] pub unsafe fn _rdrand16_step(val: &mut u16) -> i32 { let (v, flag) = x86_rdrand16_step(); *val = v; flag } /// Read a hardware generated 32-bit random value and store the result in val. /// Returns 1 if a random value was generated, and 0 otherwise. /// /// [Intel's documentation](https://software.intel.com/sites/landingpage/IntrinsicsGuide/#text=_rdrand32_step) #[inline] #[target_feature(enable = "rdrand")] #[cfg_attr(test, assert_instr(rdrand))] #[stable(feature = "simd_x86", since = "1.27.0")] pub unsafe fn _rdrand32_step(val: &mut u32) -> i32 { let (v, flag) = x86_rdrand32_step(); *val = v; flag } /// Read a 16-bit NIST SP800-90B and SP800-90C compliant random value and store /// in val. Return 1 if a random value was generated, and 0 otherwise. /// /// [Intel's documentation](https://software.intel.com/sites/landingpage/IntrinsicsGuide/#text=_rdseed16_step) #[inline] #[target_feature(enable = "rdseed")] #[cfg_attr(test, assert_instr(rdseed))] #[stable(feature = "simd_x86", since = "1.27.0")] pub unsafe fn _rdseed16_step(val: &mut u16) -> i32 { let (v, flag) = x86_rdseed16_step(); *val = v; flag } /// Read a 32-bit NIST SP800-90B and SP800-90C compliant random value and store /// in val. Return 1 if a random value was generated, and 0 otherwise. /// /// [Intel's documentation](https://software.intel.com/sites/landingpage/IntrinsicsGuide/#text=_rdseed32_step) #[inline] #[target_feature(enable = "rdseed")] #[cfg_attr(test, assert_instr(rdseed))] #[stable(feature = "simd_x86", since = "1.27.0")] pub unsafe fn _rdseed32_step(val: &mut u32) -> i32 { let (v, flag) = x86_rdseed32_step(); *val = v; flag }