1#[inline(always)]
5pub fn log(message: &str) {
6 #[cfg(target_os = "solana")]
7 unsafe {
10 crate::syscalls::sol_log_(message.as_ptr(), message.len() as u64);
11 }
12 #[cfg(not(target_os = "solana"))]
13 {
14 let _ = message;
16 }
17}
18
19#[inline(always)]
21pub fn log_64(a: u64, b: u64, c: u64, d: u64, e: u64) {
22 #[cfg(target_os = "solana")]
23 unsafe {
25 crate::syscalls::sol_log_64_(a, b, c, d, e);
26 }
27 #[cfg(not(target_os = "solana"))]
28 {
29 let _ = (a, b, c, d, e);
30 }
31}
32
33#[inline(always)]
35pub fn log_compute_units() {
36 #[cfg(target_os = "solana")]
37 unsafe {
39 crate::syscalls::sol_log_compute_units_();
40 }
41}
42
43#[inline(always)]
45pub fn log_data(segments: &[&[u8]]) {
46 #[cfg(target_os = "solana")]
47 unsafe {
51 crate::syscalls::sol_log_data(segments.as_ptr() as *const u8, segments.len() as u64);
52 }
53 #[cfg(not(target_os = "solana"))]
54 {
55 let _ = segments;
56 }
57}
58
59#[macro_export]
68macro_rules! msg {
69 ( $literal:expr ) => {
70 $crate::log::log($literal)
71 };
72 ( $fmt:expr, $($arg:tt)* ) => {{
73 #[cfg(target_os = "solana")]
76 {
77 use core::fmt::Write;
78 let mut buf = [0u8; 256];
79 let mut wrapper = $crate::log::StackWriter::new(&mut buf);
80 let _ = write!(wrapper, $fmt, $($arg)*);
81 $crate::log::log(wrapper.as_str());
82 }
83 #[cfg(not(target_os = "solana"))]
84 {
85 let _ = ($fmt, $($arg)*);
86 }
87 }};
88}
89
90pub struct StackWriter<'a> {
92 buf: &'a mut [u8],
93 pos: usize,
94 truncated: bool,
95}
96
97impl<'a> StackWriter<'a> {
98 #[inline(always)]
100 pub fn new(buf: &'a mut [u8]) -> Self {
101 Self {
102 buf,
103 pos: 0,
104 truncated: false,
105 }
106 }
107
108 #[inline(always)]
110 pub fn pos(&self) -> usize {
111 self.pos
112 }
113
114 #[inline(always)]
116 pub fn truncated(&self) -> bool {
117 self.truncated
118 }
119
120 #[inline(always)]
123 pub fn as_str(&self) -> &str {
124 unsafe { core::str::from_utf8_unchecked(&self.buf[..self.pos]) }
129 }
130}
131
132impl core::fmt::Write for StackWriter<'_> {
133 fn write_str(&mut self, s: &str) -> core::fmt::Result {
134 if self.truncated {
137 return Ok(());
138 }
139 let remaining = self.buf.len().saturating_sub(self.pos);
140 let mut to_write = s.len();
141 if to_write > remaining {
142 to_write = remaining;
145 while !s.is_char_boundary(to_write) {
146 to_write -= 1;
147 }
148 self.truncated = true;
149 }
150 self.buf[self.pos..self.pos + to_write].copy_from_slice(&s.as_bytes()[..to_write]);
151 self.pos += to_write;
152 Ok(())
153 }
154}
155
156#[cfg(test)]
157mod stack_writer_tests {
158 use super::StackWriter;
159 use core::fmt::Write;
160
161 #[test]
162 fn a_message_that_fits_is_written_whole() {
163 let mut buf = [0u8; 16];
164 let mut writer = StackWriter::new(&mut buf);
165 write!(writer, "slot {}", 42).unwrap();
166 assert_eq!(writer.as_str(), "slot 42");
167 assert!(!writer.truncated());
168 }
169
170 #[test]
171 fn a_cut_never_splits_a_character() {
172 let text = "a\u{e9}\u{20ac}\u{1f980}z\u{e9}\u{1f980}";
176 for len in 0..=text.len() + 2 {
177 let mut buf = [0xffu8; 32];
178 let mut writer = StackWriter::new(&mut buf[..len]);
179 write!(writer, "{text}").unwrap();
180 let written = writer.as_str();
181 assert!(text.starts_with(written), "len {len}");
182 assert!(core::str::from_utf8(written.as_bytes()).is_ok());
183 let next = text[written.len()..].chars().next();
184 match next {
185 Some(c) => {
186 assert!(writer.truncated());
187 assert!(
188 written.len() + c.len_utf8() > len,
189 "len {len}: room was left"
190 );
191 }
192 None => assert!(!writer.truncated()),
193 }
194 }
195 }
196
197 #[test]
198 fn nothing_is_appended_after_a_cut() {
199 let mut buf = [0u8; 4];
200 let mut writer = StackWriter::new(&mut buf);
201 let (head, tail) = ("ab\u{20ac}", "c");
203 write!(writer, "{head}{tail}").unwrap();
204 assert_eq!(writer.as_str(), "ab");
205 assert!(writer.truncated());
206 }
207}