Files
bed/src/internal/syntax/parser.cc
T
syedm bea8ff18c0 Add marks and regex addressing systems
- Hook up parser to buffer edits.
- Other minor fixes.
2026-08-22 15:01:48 +01:00

392 lines
10 KiB
C++

#include "internal/syntax/parser.h"
namespace bed::internal::syntax {
void dump_events(ParseState *root) {
if (!root)
return;
uint64_t offset = 0;
TreeCursor c(root, 0, &offset);
uint64_t line_offset = 0;
int depth = 0;
while (c.leaf) {
auto *leaf = c.leaf;
for (uint32_t i = 0; i < leaf->n; ++i) {
uint32_t block = leaf->blocks[i];
uint32_t pos = block & ParseStateLeaf::LINE_MASK;
bool closing = block & ParseStateLeaf::IS_CLOSING;
if (closing) {
if (depth > 0)
--depth;
else
std::cout << "!! UNMATCHED CLOSE !! ";
}
std::cout << std::string(static_cast<size_t>(depth) * 2, ' ')
<< (closing ? "}" : "{")
<< " line " << (line_offset + pos)
<< '\n';
if (!closing)
++depth;
}
line_offset += leaf->lines();
c.next();
}
if (depth != 0) {
std::cout << "!! UNBALANCED: depth = "
<< depth
<< " !!\n";
}
}
static void destroy_tree(ParseState *node, Language &lang) {
if (!node)
return;
if (node->is_branch()) {
auto *branch = (ParseStateBranch *)node;
destroy_tree(branch->left, lang);
destroy_tree(branch->right, lang);
free(branch);
} else {
auto *leaf = (ParseStateLeaf *)node;
if (leaf->state)
lang.destroy(leaf->state);
if (leaf->blocks)
free(leaf->blocks);
free(leaf);
}
}
static ParseState *make_branch(ParseState *left, ParseState *right) {
if (!left)
return right;
if (!right)
return left;
auto *branch = (ParseStateBranch *)malloc(sizeof(ParseStateBranch));
branch->header = ParseState::BRANCH_BIT + left->lines() + right->lines();
branch->left = left;
branch->right = right;
return branch;
}
static ParseState *build_tree(std::vector<ParseStateLeaf *> &leaves, size_t begin, size_t end) {
const size_t count = end - begin;
if (count == 0)
return nullptr;
if (count == 1)
return leaves[begin];
const size_t mid = begin + count / 2;
ParseState *left = build_tree(leaves, begin, mid);
ParseState *right = build_tree(leaves, mid, end);
return make_branch(left, right);
}
Parser::Parser(vase::Vase &vase, uint64_t lines, Language lang)
: root(nullptr), lang(lang) {
reset(vase, lines, lang);
}
Parser::~Parser() {
destroy_tree(root, lang);
}
void Parser::reset(vase::Vase &vase, uint64_t lines, Language lang_) {
destroy_tree(root, lang);
root = nullptr;
if (lines == 0)
return;
lang = std::move(lang_);
std::vector<ParseStateLeaf *> leaves;
leaves.reserve((lines + MAX_CHUNK - 1) / MAX_CHUNK);
uint64_t consumed = 0;
while (consumed < lines) {
auto *leaf = (ParseStateLeaf *)malloc(sizeof(ParseStateLeaf));
leaf->state = nullptr;
leaf->blocks = nullptr;
leaf->n = 0;
leaf->cap = 0;
uint64_t chunk = std::min(MAX_CHUNK, lines - consumed);
leaf->header = chunk;
consumed += chunk;
leaves.push_back(leaf);
}
root = build_tree(leaves, 0, leaves.size());
modify(vase, 0, lines);
}
std::pair<ParseState *, ParseState *> Parser::split_tree(ParseState *node, uint64_t line) {
if (!node)
return {nullptr, nullptr};
if (line == 0)
return {nullptr, node};
if (line >= node->lines())
return {node, nullptr};
if (node->is_branch()) {
auto *branch = (ParseStateBranch *)node;
uint64_t left_lines = branch->left->lines();
if (line < left_lines) {
auto [a, b] = split_tree(branch->left, line);
ParseState *right = join_tree(b, branch->right);
free(branch);
return {a, right};
}
if (line == left_lines) {
ParseState *left = branch->left;
ParseState *right = branch->right;
free(branch);
return {left, right};
}
auto [a, b] = split_tree(branch->right, line - left_lines);
ParseState *left = join_tree(branch->left, a);
free(branch);
return {left, b};
} else {
auto *leaf = (ParseStateLeaf *)node;
uint64_t lines = leaf->lines();
auto *right = (ParseStateLeaf *)malloc(sizeof(ParseStateLeaf));
right->header = lines - line;
right->state = nullptr;
right->blocks = nullptr;
right->n = 0;
right->cap = 0;
leaf->header = line;
leaf->n = 0;
return {leaf, right};
}
}
ParseState *Parser::join_tree(ParseState *a, ParseState *b) {
// TODO: balance
return make_branch(a, b);
}
void Parser::erase(vase::Vase &vase, uint64_t start, uint64_t count) {
if (count == 0 || !root)
return;
auto [a, remaining] = split_tree(root, start);
auto [waste, b] = split_tree(remaining, count);
destroy_tree(waste, lang);
root = join_tree(a, b);
modify(vase, start, 1);
}
void Parser::insert(vase::Vase &vase, uint64_t start, uint64_t count) {
if (count == 0)
return;
std::vector<ParseStateLeaf *> leaves;
leaves.reserve((count + MAX_CHUNK - 1) / MAX_CHUNK);
uint64_t consumed = 0;
while (consumed < count) {
auto *leaf = (ParseStateLeaf *)malloc(sizeof(ParseStateLeaf));
leaf->state = nullptr;
leaf->blocks = nullptr;
leaf->n = 0;
leaf->cap = 0;
uint64_t chunk = std::min(MAX_CHUNK, count - consumed);
leaf->header = chunk;
consumed += chunk;
leaves.push_back(leaf);
}
ParseState *subtree = build_tree(leaves, 0, leaves.size());
auto [left, right] = split_tree(root, start);
root = join_tree(join_tree(left, subtree), right);
modify(vase, start, count);
}
void Parser::modify(vase::Vase &vase, uint64_t target, uint64_t count) {
if (count == 0 || !root)
return;
std::vector<Token> tokens;
std::vector<ParseEvent> events;
uint64_t offset;
TreeCursor c = TreeCursor(root, target, &offset);
uint64_t at = target - offset;
void *state = nullptr;
if (c.leaf->state) {
state = lang.copy(c.leaf->state);
} else {
while (!c.leaf->state) {
c.prev();
if (!c.leaf) {
at = 0;
break;
}
at -= c.leaf->lines();
}
if (c.leaf) {
state = lang.copy(c.leaf->state);
} else {
state = lang.none_state();
c = TreeCursor(root, 0, &offset);
}
}
vase::Iterator it = vase.iterate(at, Direction::Forward);
uint64_t chunk_start = at;
uint64_t next_boundary = at + c.leaf->lines();
c.leaf->n = 0;
while (true) {
it.next();
if (at == next_boundary) {
c.next();
if (!c.leaf)
break;
c.leaf->n = 0;
chunk_start = at;
next_boundary += c.leaf->lines();
if (at >= target + count
&& c.leaf->state != nullptr
&& lang.equal(state, c.leaf->state))
break;
if (c.leaf->state)
lang.destroy(c.leaf->state);
c.leaf->state = lang.copy(state);
}
tokens.clear();
events.clear();
lang.parse(&state, it.line, at == 0, &tokens, &events);
for (const auto &ev : events) {
if (c.leaf->n == c.leaf->cap) {
uint32_t cap = c.leaf->cap ? c.leaf->cap * 2 : 8;
c.leaf->blocks = (uint16_t *)realloc(c.leaf->blocks, cap * sizeof(uint16_t));
c.leaf->cap = cap;
}
c.leaf->blocks[c.leaf->n++] = ev.closing << 15 | (at - chunk_start);
}
at++;
}
lang.destroy(state);
}
uint64_t Parser::next_closing(uint64_t line) {
if (!root)
return UINT64_MAX;
uint64_t relative = 0;
TreeCursor c(root, line, &relative);
uint64_t line_offset = line - relative;
int level = 0;
bool first_leaf = true;
while (c.leaf) {
auto *leaf = c.leaf;
for (uint32_t i = 0; i < leaf->n; ++i) {
uint16_t block = leaf->blocks[i];
uint32_t pos = block & ParseStateLeaf::LINE_MASK;
if (first_leaf && pos <= relative)
continue;
bool closing = block & ParseStateLeaf::IS_CLOSING;
if (closing) {
if (level == 0)
return line_offset + pos;
--level;
} else {
++level;
}
}
line_offset += leaf->lines();
c.next();
first_leaf = false;
}
return UINT64_MAX;
}
uint64_t Parser::prev_opening(uint64_t line) {
if (!root)
return 0;
uint64_t relative = 0;
TreeCursor c(root, line, &relative);
uint64_t line_offset = line - relative;
int level = 0;
bool first_leaf = true;
while (c.leaf) {
auto *leaf = c.leaf;
for (int32_t i = (int32_t)leaf->n - 1; i >= 0; --i) {
uint16_t block = leaf->blocks[i];
uint32_t pos = block & ParseStateLeaf::LINE_MASK;
if (first_leaf && pos >= relative)
continue;
bool closing = block & ParseStateLeaf::IS_CLOSING;
if (!closing) {
if (level == 0)
return line_offset + pos;
--level;
} else {
++level;
}
}
c.prev();
first_leaf = false;
if (c.leaf)
line_offset -= c.leaf->lines();
}
return 0;
}
std::optional<Parser::Iterator> Parser::get_hl(vase::Vase &vase, uint64_t target) {
if (!root)
return std::nullopt;
return Parser::Iterator(target, this, vase);
}
Parser::Iterator::Iterator(uint64_t target, Parser *p, vase::Vase &vase) : p(p) {
uint64_t offset;
TreeCursor c = TreeCursor(p->root, target, &offset);
at = target - offset;
if (c.leaf->state) {
state = p->lang.copy(c.leaf->state);
} else {
while (!c.leaf->state) {
c.prev();
if (!c.leaf) {
at = 0;
break;
}
at -= c.leaf->lines();
}
if (c.leaf) {
state = p->lang.copy(c.leaf->state);
} else {
state = p->lang.none_state();
c = TreeCursor(p->root, 0, &offset);
}
}
it = vase.iterate(at, Direction::Forward);
while (at < target) {
it->next();
tokens.clear();
events.clear();
p->lang.parse(&state, it->line, at == 0, &tokens, &events);
at++;
}
}
Parser::Iterator::~Iterator() {
if (state)
p->lang.destroy(state);
}
Parser::Iterator::Iterator(Iterator &&other)
: p(other.p),
it(std::move(other.it)),
state(other.state),
tokens(std::move(other.tokens)) {
other.state = nullptr;
}
Parser::Iterator &Parser::Iterator::operator=(Iterator &&other) {
if (this == &other)
return *this;
if (state)
p->lang.destroy(state);
p = other.p;
it = std::move(other.it);
state = other.state;
tokens = std::move(other.tokens);
other.state = nullptr;
return *this;
}
void Parser::Iterator::next() {
it->next();
tokens.clear();
events.clear();
p->lang.parse(&state, it->line, at++ == 0, &tokens, &events);
}
} // namespace bed::internal::syntax