endian.rs 4.2 KB

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  1. macro_rules! define_slice_to_be {
  2. ($name: ident, $type: ty) => {
  3. #[inline]
  4. pub fn $name(slice: &[u8]) -> $type {
  5. assert_eq!(slice.len(), ::std::mem::size_of::<$type>());
  6. let mut res = 0;
  7. for i in 0..::std::mem::size_of::<$type>() {
  8. res |= (slice[i] as $type) << (::std::mem::size_of::<$type>() - i - 1) * 8;
  9. }
  10. res
  11. }
  12. };
  13. }
  14. macro_rules! define_slice_to_le {
  15. ($name: ident, $type: ty) => {
  16. #[inline]
  17. pub fn $name(slice: &[u8]) -> $type {
  18. assert_eq!(slice.len(), ::std::mem::size_of::<$type>());
  19. let mut res = 0;
  20. for i in 0..::std::mem::size_of::<$type>() {
  21. res |= (slice[i] as $type) << i * 8;
  22. }
  23. res
  24. }
  25. };
  26. }
  27. macro_rules! define_be_to_array {
  28. ($name: ident, $type: ty, $byte_len: expr) => {
  29. #[inline]
  30. pub fn $name(val: $type) -> [u8; $byte_len] {
  31. assert_eq!(::std::mem::size_of::<$type>(), $byte_len); // size_of isn't a constfn in 1.22
  32. let mut res = [0; $byte_len];
  33. for i in 0..$byte_len {
  34. res[i] = ((val >> ($byte_len - i - 1) * 8) & 0xff) as u8;
  35. }
  36. res
  37. }
  38. };
  39. }
  40. macro_rules! define_le_to_array {
  41. ($name: ident, $type: ty, $byte_len: expr) => {
  42. #[inline]
  43. pub fn $name(val: $type) -> [u8; $byte_len] {
  44. assert_eq!(::std::mem::size_of::<$type>(), $byte_len); // size_of isn't a constfn in 1.22
  45. let mut res = [0; $byte_len];
  46. for i in 0..$byte_len {
  47. res[i] = ((val >> i * 8) & 0xff) as u8;
  48. }
  49. res
  50. }
  51. };
  52. }
  53. define_slice_to_be!(slice_to_u32_be, u32);
  54. define_be_to_array!(u32_to_array_be, u32, 4);
  55. define_slice_to_le!(slice_to_u16_le, u16);
  56. define_slice_to_le!(slice_to_u32_le, u32);
  57. define_slice_to_le!(slice_to_u64_le, u64);
  58. define_le_to_array!(u16_to_array_le, u16, 2);
  59. define_le_to_array!(u32_to_array_le, u32, 4);
  60. define_le_to_array!(u64_to_array_le, u64, 8);
  61. #[inline]
  62. pub fn i16_to_array_le(val: i16) -> [u8; 2] {
  63. u16_to_array_le(val as u16)
  64. }
  65. #[inline]
  66. pub fn slice_to_i16_le(slice: &[u8]) -> i16 {
  67. slice_to_u16_le(slice) as i16
  68. }
  69. #[inline]
  70. pub fn slice_to_i32_le(slice: &[u8]) -> i32 {
  71. slice_to_u32_le(slice) as i32
  72. }
  73. #[inline]
  74. pub fn i32_to_array_le(val: i32) -> [u8; 4] {
  75. u32_to_array_le(val as u32)
  76. }
  77. #[inline]
  78. pub fn slice_to_i64_le(slice: &[u8]) -> i64 {
  79. slice_to_u64_le(slice) as i64
  80. }
  81. #[inline]
  82. pub fn i64_to_array_le(val: i64) -> [u8; 8] {
  83. u64_to_array_le(val as u64)
  84. }
  85. macro_rules! define_chunk_slice_to_int {
  86. ($name: ident, $type: ty, $converter: ident) => {
  87. #[inline]
  88. pub fn $name(inp: &[u8], outp: &mut [$type]) {
  89. assert_eq!(inp.len(), outp.len() * ::std::mem::size_of::<$type>());
  90. for (outp_val, data_bytes) in
  91. outp.iter_mut().zip(inp.chunks(::std::mem::size_of::<$type>()))
  92. {
  93. *outp_val = $converter(data_bytes);
  94. }
  95. }
  96. };
  97. }
  98. define_chunk_slice_to_int!(bytes_to_u64_slice_le, u64, slice_to_u64_le);
  99. #[cfg(test)]
  100. mod tests {
  101. use super::*;
  102. #[test]
  103. fn endianness_test() {
  104. assert_eq!(slice_to_u32_be(&[0xde, 0xad, 0xbe, 0xef]), 0xdeadbeef);
  105. assert_eq!(u32_to_array_be(0xdeadbeef), [0xde, 0xad, 0xbe, 0xef]);
  106. assert_eq!(slice_to_u16_le(&[0xad, 0xde]), 0xdead);
  107. assert_eq!(slice_to_u32_le(&[0xef, 0xbe, 0xad, 0xde]), 0xdeadbeef);
  108. assert_eq!(
  109. slice_to_u64_le(&[0xef, 0xbe, 0xad, 0xde, 0xfe, 0xca, 0xad, 0x1b]),
  110. 0x1badcafedeadbeef
  111. );
  112. assert_eq!(u16_to_array_le(0xdead), [0xad, 0xde]);
  113. assert_eq!(u32_to_array_le(0xdeadbeef), [0xef, 0xbe, 0xad, 0xde]);
  114. assert_eq!(
  115. u64_to_array_le(0x1badcafedeadbeef),
  116. [0xef, 0xbe, 0xad, 0xde, 0xfe, 0xca, 0xad, 0x1b]
  117. );
  118. }
  119. #[test]
  120. fn endian_chunk_test() {
  121. let inp = [
  122. 0xef, 0xbe, 0xad, 0xde, 0xfe, 0xca, 0xad, 0x1b, 0xfe, 0xca, 0xad, 0x1b, 0xce, 0xfa,
  123. 0x01, 0x02,
  124. ];
  125. let mut out = [0; 2];
  126. bytes_to_u64_slice_le(&inp, &mut out);
  127. assert_eq!(out, [0x1badcafedeadbeef, 0x0201face1badcafe]);
  128. }
  129. }