add window buffer to look across chunk boundaries
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73e92f04df
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1 changed files with 87 additions and 3 deletions
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@ -266,6 +266,13 @@ typedef struct {
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HArena *tarena; // tmp, deleted after parse
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HSlist *stack;
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HCountedArray *seq; // accumulates current parse result
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uint8_t *buf; // for lookahead across chunk boundaries
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// allocated to size 2*kmax
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// new chunk starts at index kmax
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// ( 0 ... kmax ... 2*kmax-1 )
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// \_old_/\______new_______/
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HInputStream win; // win.length is set to 0 when not in use
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} HLLkState;
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// in order to construct the parse tree, we delimit the symbol stack into
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@ -290,6 +297,10 @@ static HLLkState *llk_parse_start_(HAllocator* mm__, const HParser* parser)
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s->tarena = h_new_arena(mm__, 0);
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s->stack = h_slist_new(s->tarena);
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s->seq = h_carray_new(s->arena);
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s->buf = h_arena_malloc(s->tarena, 2 * table->kmax);
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s->win.input = s->buf;
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s->win.length = 0; // unused
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// initialize with the start symbol on the stack.
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h_slist_push(s->stack, table->start);
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@ -297,6 +308,73 @@ static HLLkState *llk_parse_start_(HAllocator* mm__, const HParser* parser)
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return s;
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}
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// helper: add new input to the lookahead window
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static void append_win(size_t kmax, HLLkState *s, HInputStream *stream)
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{
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assert(stream->bit_offset == 0);
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assert(s->win.input == s->buf);
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assert(s->win.length == kmax);
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assert(s->win.index < kmax);
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size_t n = stream->length - stream->index; // bytes to copy
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if(n > kmax)
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n = kmax;
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memcpy(s->buf + kmax, stream->input + stream->index, n);
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s->win.length += n;
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}
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// helper: save old input to the lookahead window
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static void save_win(size_t kmax, HLLkState *s, HInputStream *stream)
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{
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assert(stream->bit_offset == 0);
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size_t len = stream->length - stream->index;
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assert(len < kmax);
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if(len == 0) {
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// stream empty? nothing to do.
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return;
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} else if(s->win.length > 0) {
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// window active? should contain all of stream.
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assert(s->win.length == kmax + len);
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assert(s->win.index <= kmax);
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// shift contents down:
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//
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// (0 kmax )
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// ... \_old_/\_new_/ ...
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//
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// (0 kmax )
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// ... \_old_/\_new_/ ...
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//
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len = s->win.length - s->win.index;
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memmove(s->buf + kmax - len, s->buf + s->win.index, len);
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} else {
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// window not active? save stream to window.
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memcpy(s->buf + kmax - len, stream->input + stream->index, len);
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}
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// metadata
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s->win = *stream;
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s->win.input = s->buf;
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s->win.index = kmax - len;
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s->win.length = kmax;
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}
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// helper: read from window until old chunk gone, then switch to stream
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static uint8_t consume_input(size_t kmax, HLLkState *s, HInputStream *stream)
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{
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if(s->win.length > 0) {
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uint8_t b = h_read_bits(&s->win, 8, false);
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if(s->win.index >= kmax) // old chunk consumed!
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s->win.length = 0; // disable the window
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return b;
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} else {
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return h_read_bits(stream, 8, false);
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}
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}
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// returns partial result or NULL (no parse)
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static HCountedArray *llk_parse_chunk_(HLLkState *s, const HParser* parser,
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HInputStream* stream)
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@ -315,6 +393,9 @@ static HCountedArray *llk_parse_chunk_(HLLkState *s, const HParser* parser,
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if(!seq)
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return NULL; // parse already failed
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if(s->win.length > 0)
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append_win(table->kmax, s, stream);
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// when we empty the stack, the parse is complete.
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while(!h_slist_empty(stack)) {
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tok = NULL;
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@ -327,11 +408,14 @@ static HCountedArray *llk_parse_chunk_(HLLkState *s, const HParser* parser,
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// x is a nonterminal; apply the appropriate production and continue
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// look up applicable production in parse table
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const HCFSequence *p = h_llk_lookup(table, x, stream);
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HInputStream *lookup_stream = s->win.length > 0 ? &s->win : stream;
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const HCFSequence *p = h_llk_lookup(table, x, lookup_stream);
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if(p == NULL)
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goto no_parse;
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if(p == NEED_INPUT)
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if(p == NEED_INPUT) {
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save_win(table->kmax, s, stream);
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goto need_input;
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}
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// an infinite loop case that shouldn't happen
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assert(!p->items[0] || p->items[0] != x);
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@ -372,7 +456,7 @@ static HCountedArray *llk_parse_chunk_(HLLkState *s, const HParser* parser,
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// x is a terminal or simple charset; match against input
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// consume the input token
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uint8_t input = h_read_bits(stream, 8, false);
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uint8_t input = consume_input(table->kmax, s, stream);
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switch(x->type) {
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case HCF_END:
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