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v/vlib/compiler/compile_errors.v

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module compiler
import (
os
term
)
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// ////////////////////////////////////////////////////////////////////////////////////////////////
// NB: The code in this file is organized in layers (between the ///// lines).
// This allows for easier keeping in sync of error/warn functions.
// The functions in each of the layers, call the functions from the layers *below*.
// The functions in each of the layers, also have more details about the warn/error situation,
// so they can display more informative message, so please call the lowest level variant you can.
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// ////////////////////////////////////////////////////////////////////////////////////////////////
// TLDR: If you have a token index, call:
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// p.error_with_token_index(msg, token_index)
// ... not just :
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// p.error(msg)
// ////////////////////////////////////////////////////////////////////////////////////////////////
fn (p mut Parser) error(s string) {
// no positioning info, so just assume that the last token was the culprit:
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p.error_with_token_index(s, p.token_idx - 1)
}
fn (p mut Parser) warn(s string) {
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p.warn_with_token_index(s, p.token_idx - 1)
}
fn (p mut Parser) production_error_with_token_index(e string, tokenindex int) {
if p.pref.is_prod {
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p.error_with_token_index(e, tokenindex)
}
else {
p.warn_with_token_index(e, tokenindex)
}
}
fn (p mut Parser) error_with_token_index(s string, tokenindex int) {
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p.error_with_position(s, p.scanner.get_scanner_pos_of_token(p.tokens[tokenindex]))
}
fn (p mut Parser) warn_with_token_index(s string, tokenindex int) {
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p.warn_with_position(s, p.scanner.get_scanner_pos_of_token(p.tokens[tokenindex]))
}
fn (p mut Parser) error_with_position(s string, sp ScannerPos) {
p.print_error_context()
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e := normalized_error(s)
p.scanner.goto_scanner_position(sp)
p.scanner.error_with_col(e, sp.pos - sp.last_nl_pos)
}
fn (p mut Parser) warn_with_position(s string, sp ScannerPos) {
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if p.scanner.is_fmt {
return
}
// on a warning, restore the scanner state after printing the warning:
cpos := p.scanner.get_scanner_pos()
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e := normalized_error(s)
p.scanner.goto_scanner_position(sp)
p.scanner.warn_with_col(e, sp.pos - sp.last_nl_pos)
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p.scanner.goto_scanner_position(cpos)
}
fn (s &Scanner) error(msg string) {
s.error_with_col(msg, 0)
}
fn (s &Scanner) warn(msg string) {
s.warn_with_col(msg, 0)
}
fn (s &Scanner) warn_with_col(msg string, col int) {
fullpath := s.get_error_filepath()
color_on := s.is_color_output_on()
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final_message := if color_on { term.bold(term.bright_blue(msg)) } else { msg }
eprintln('warning: ${fullpath}:${s.line_nr+1}:${col}: $final_message')
}
fn (s &Scanner) error_with_col(msg string, col int) {
fullpath := s.get_error_filepath()
color_on := s.is_color_output_on()
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final_message := if color_on { term.red(term.bold(msg)) } else { msg }
// The filepath:line:col: format is the default C compiler
// error output format. It allows editors and IDE's like
// emacs to quickly find the errors in the output
// and jump to their source with a keyboard shortcut.
// NB: using only the filename may lead to inability of IDE/editors
// to find the source file, when the IDE has a different working folder than v itself.
eprintln('${fullpath}:${s.line_nr + 1}:${col}: $final_message')
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if s.print_line_on_error && s.nlines > 0 {
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context_start_line := imax(0, (s.line_nr - error_context_before))
context_end_line := imin(s.nlines - 1, (s.line_nr + error_context_after + 1))
for cline := context_start_line; cline < context_end_line; cline++ {
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line := '${(cline+1):5d}| ' + s.line(cline)
coloredline := if cline == s.line_nr && color_on { term.red(line) } else { line }
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eprintln(coloredline)
if cline != s.line_nr {
continue
}
// The pointerline should have the same spaces/tabs as the offending
// line, so that it prints the ^ character exactly on the *same spot*
// where it is needed. That is the reason we can not just
// use strings.repeat(` `, col) to form it.
mut pointerline := []string
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for i, c in line {
if i < col {
x := if c.is_space() { c } else { ` ` }
pointerline << x.str()
continue
}
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pointerline << if color_on { term.bold(term.blue('^')) } else { '^' }
break
}
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eprintln(' ' + pointerline.join(''))
}
}
exit(1)
}
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// ////////////////////////////////////////////////////////////////////////////////////////////////
// / Misc error helper functions, can be called by any of the functions above
[inline]
fn (p &Parser) cur_tok_index() int {
return p.token_idx - 1
}
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[inline]
fn imax(a, b int) int {
return if a > b { a } else { b }
}
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[inline]
fn imin(a, b int) int {
return if a < b { a } else { b }
}
fn (s &Scanner) get_error_filepath() string {
verror_paths_override := os.getenv('VERROR_PATHS')
use_relative_paths := match verror_paths_override {
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'relative'{
true
}
'absolute'{
false
}
else {
s.print_rel_paths_on_error}}
if use_relative_paths {
workdir := os.getwd() + os.path_separator
if s.file_path.starts_with(workdir) {
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return s.file_path.replace(workdir, '')
}
return s.file_path
}
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return os.realpath(s.file_path)
}
fn (s &Scanner) is_color_output_on() bool {
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return s.print_colored_error && term.can_show_color_on_stderr()
}
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fn (p mut Parser) print_error_context() {
// Dump all vars and types for debugging
if p.pref.is_debug {
// os.write_to_file('/var/tmp/lang.types', '')//pes(p.table.types))
os.write_file('fns.txt', p.table.debug_fns())
}
if p.pref.is_verbose || p.pref.is_debug {
println('pass=$p.pass fn=`$p.cur_fn.name`\n')
}
p.cgen.save()
// V up hint
cur_path := os.getwd()
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if !p.pref.is_repl && !p.pref.is_test && (p.file_path.contains('v/compiler') || cur_path.contains('v/compiler')) {
println('\n=========================')
println('It looks like you are building V. It is being frequently updated every day.')
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println("If you didn\'t modify V\'s code, most likely there was a change that ")
println('lead to this error.')
println('\nRun `v up`, that will most likely fix it.')
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// println('\nIf this doesn\'t help, re-install V from source or download a precompiled' + ' binary from\nhttps://vlang.io.')
println("\nIf this doesn\'t help, please create a GitHub issue.")
println('=========================\n')
}
if p.pref.is_debug {
print_backtrace()
}
// p.scanner.debug_tokens()
}
fn normalized_error(s string) string {
// Print `[]int` instead of `array_int` in errors
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mut res := s.replace('array_', '[]').replace('__', '.').replace('Option_', '?').replace('main.', '')
if res.contains('_V_MulRet_') {
res = res.replace('_V_MulRet_', '(').replace('_V_', ', ')
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res = res[..res.len - 1] + ')"'
}
return res
}
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// ////////////////////////////////////////////////////////////////////////////////////////////////
// The goal of ScannerPos is to track the current scanning position,
// so that if there is an error found later, v could show a more accurate
// position about where the error initially was.
// NB: The fields of ScannerPos *should be kept synchronized* with the
// corresponding fields in Scanner.
struct ScannerPos {
mut:
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pos int
line_nr int
last_nl_pos int
}
pub fn (s ScannerPos) str() string {
return 'ScannerPos{ ${s.pos:5d} , ${s.line_nr:5d} , ${s.last_nl_pos:5d} }'
}
fn (s &Scanner) get_scanner_pos() ScannerPos {
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return ScannerPos{
pos: s.pos
line_nr: s.line_nr
last_nl_pos: s.last_nl_pos
}
}
fn (s mut Scanner) goto_scanner_position(scp ScannerPos) {
s.pos = scp.pos
s.line_nr = scp.line_nr
s.last_nl_pos = scp.last_nl_pos
}
fn (s &Scanner) get_last_nl_from_pos(_pos int) int {
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pos := if _pos >= s.text.len { s.text.len - 1 } else { _pos }
for i := pos; i >= 0; i-- {
if s.text[i] == `\n` {
return i
}
}
return 0
}
fn (s &Scanner) get_scanner_pos_of_token(tok &Token) ScannerPos {
return ScannerPos{
pos: tok.pos
line_nr: tok.line_nr
last_nl_pos: s.get_last_nl_from_pos(tok.pos)
}
}
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// /////////////////////////////
fn (p mut Parser) mutable_arg_error(i int, arg Var, f Fn) {
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mut dots_example := 'mut $p.lit'
if i > 0 {
dots_example = '.., ' + dots_example
}
if i < f.args.len - 1 {
dots_example = dots_example + ',..'
}
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p.error('`$arg.name` is a mutable argument, you need to provide `mut`: ' + '`$f.name ($dots_example)`')
}
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const (
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warn_match_arrow = '=> is no longer needed in match statements, use\n' + 'match foo {
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1 { bar }
2 { baz }
else { ... }
}'
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// make_receiver_mutable =
err_used_as_value = 'used as value'
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and_or_error = 'use `()` to make the boolean expression clear\n' + 'for example: `(a && b) || c` instead of `a && b || c`'
err_modify_bitfield = 'to modify a bitfield flag use the methods: set, clear, toggle. and to check for flag use: has'
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)
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