mirror of
https://github.com/mruby/mruby
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7ab7608094
I prefer `i++` style unless absolutely necessary.
245 lines
6.3 KiB
C
245 lines
6.3 KiB
C
#include <string.h>
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#include <mruby.h>
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#include <mruby/irep.h>
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#include <mruby/debug.h>
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static mrb_irep_debug_info_file*
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get_file(mrb_irep_debug_info *info, uint32_t pc)
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{
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mrb_irep_debug_info_file **ret;
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int32_t count;
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if (pc >= info->pc_count) { return NULL; }
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/* get upper bound */
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ret = info->files;
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count = info->flen;
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while (count > 0) {
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int32_t step = count / 2;
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mrb_irep_debug_info_file **it = ret + step;
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if (!(pc < (*it)->start_pos)) {
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ret = it + 1;
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count -= step + 1;
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}
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else { count = step; }
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}
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--ret;
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/* check returning file exists inside debug info */
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mrb_assert(info->files <= ret && ret < (info->files + info->flen));
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/* check pc is within the range of returning file */
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mrb_assert((*ret)->start_pos <= pc &&
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pc < (((ret + 1 - info->files) < info->flen)
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? (*(ret+1))->start_pos : info->pc_count));
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return *ret;
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}
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size_t
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mrb_packed_int_len(uint32_t num)
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{
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size_t llen = 0;
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do {
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llen++;
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} while (num >>= 7);
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return llen;
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}
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size_t
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mrb_packed_int_encode(uint32_t num, uint8_t *p, uint8_t *pend)
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{
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size_t llen = 0;
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do {
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uint8_t byte = num & 0x7f;
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num >>= 7;
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if (num != 0) byte |= 0x80;
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if (p < pend) *p++ = byte;
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llen++;
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} while (num != 0);
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return llen;
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}
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uint32_t
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mrb_packed_int_decode(const uint8_t *p, const uint8_t **newpos)
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{
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size_t i = 0, shift = 0;
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uint32_t n = 0;
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do {
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n |= ((uint32_t)(p[i] & 0x7f)) << shift;
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i++;
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shift += 7;
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} while (shift < sizeof(uint32_t) * 8 && (p[i - 1] & 0x80));
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if (newpos) *newpos = p + i;
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return n;
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}
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MRB_API char const*
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mrb_debug_get_filename(mrb_state *mrb, const mrb_irep *irep, uint32_t pc)
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{
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if (irep && pc < irep->ilen) {
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mrb_irep_debug_info_file* f = NULL;
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if (!irep->debug_info) return NULL;
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else if ((f = get_file(irep->debug_info, pc))) {
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return mrb_sym_name_len(mrb, f->filename_sym, NULL);
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}
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}
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return NULL;
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}
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MRB_API int32_t
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mrb_debug_get_line(mrb_state *mrb, const mrb_irep *irep, uint32_t pc)
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{
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if (irep && pc < irep->ilen) {
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mrb_irep_debug_info_file* f = NULL;
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if (!irep->debug_info) {
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return -1;
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}
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else if ((f = get_file(irep->debug_info, pc))) {
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switch (f->line_type) {
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case mrb_debug_line_ary:
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mrb_assert(f->start_pos <= pc && pc < (f->start_pos + f->line_entry_count));
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return f->lines.ary[pc - f->start_pos];
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case mrb_debug_line_flat_map: {
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/* get upper bound */
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const mrb_irep_debug_info_line *ret = f->lines.flat_map;
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uint32_t count = f->line_entry_count;
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while (count > 0) {
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int32_t step = count / 2;
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const mrb_irep_debug_info_line *it = ret + step;
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if (!(pc < it->start_pos)) {
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ret = it + 1;
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count -= step + 1;
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}
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else { count = step; }
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}
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--ret;
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/* check line entry pointer range */
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mrb_assert(f->lines.flat_map <= ret && ret < (f->lines.flat_map + f->line_entry_count));
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/* check pc range */
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mrb_assert(ret->start_pos <= pc &&
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pc < (((uint32_t)(ret + 1 - f->lines.flat_map) < f->line_entry_count)
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? (ret+1)->start_pos : irep->debug_info->pc_count));
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return ret->line;
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}
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case mrb_debug_line_packed_map: {
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const uint8_t *p = f->lines.packed_map;
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const uint8_t *pend = p + f->line_entry_count;
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uint32_t pos = 0, line = 0, line_diff;
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while (p < pend) {
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pos += mrb_packed_int_decode(p, &p);
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line_diff = mrb_packed_int_decode(p, &p);
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if (pc < pos) break;
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line += line_diff;
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}
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return line;
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}
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}
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}
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}
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return -1;
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}
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MRB_API mrb_irep_debug_info*
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mrb_debug_info_alloc(mrb_state *mrb, mrb_irep *irep)
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{
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static const mrb_irep_debug_info initial = { 0, 0, NULL };
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mrb_irep_debug_info *ret;
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mrb_assert(!irep->debug_info);
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ret = (mrb_irep_debug_info *)mrb_malloc(mrb, sizeof(*ret));
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*ret = initial;
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irep->debug_info = ret;
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return ret;
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}
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MRB_API mrb_irep_debug_info_file*
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mrb_debug_info_append_file(mrb_state *mrb, mrb_irep_debug_info *d,
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const char *filename, uint16_t *lines,
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uint32_t start_pos, uint32_t end_pos)
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{
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mrb_irep_debug_info_file *f;
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uint32_t file_pc_count;
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size_t fn_len;
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uint32_t i;
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if (!d) return NULL;
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if (start_pos == end_pos) return NULL;
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mrb_assert(filename);
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mrb_assert(lines);
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if (d->flen > 0) {
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const char *fn = mrb_sym_name_len(mrb, d->files[d->flen - 1]->filename_sym, NULL);
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if (strcmp(filename, fn) == 0)
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return NULL;
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}
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f = (mrb_irep_debug_info_file*)mrb_malloc(mrb, sizeof(*f));
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d->files = (mrb_irep_debug_info_file**)mrb_realloc(mrb, d->files, sizeof(mrb_irep_debug_info_file*) * (d->flen + 1));
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d->files[d->flen++] = f;
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file_pc_count = end_pos - start_pos;
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f->start_pos = start_pos;
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d->pc_count = end_pos;
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fn_len = strlen(filename);
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f->filename_sym = mrb_intern(mrb, filename, fn_len);
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f->line_type = mrb_debug_line_packed_map;
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f->lines.ptr = NULL;
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uint16_t prev_line = 0;
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uint32_t prev_pc = 0;
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size_t packed_size = 0;
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uint8_t *p, *pend;
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for (i = 0; i < file_pc_count; i++) {
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if (lines[start_pos + i] == prev_line) continue;
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packed_size += mrb_packed_int_len(start_pos+i-prev_pc);
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prev_pc = start_pos+i;
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packed_size += mrb_packed_int_len(lines[start_pos+i]-prev_line);
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prev_line = lines[start_pos + i];
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}
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f->lines.packed_map = p = (uint8_t*)mrb_malloc(mrb, packed_size);
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pend = p + packed_size;
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prev_line = 0; prev_pc = 0;
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for (i = 0; i < file_pc_count; i++) {
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if (lines[start_pos + i] == prev_line) continue;
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p += mrb_packed_int_encode(start_pos+i-prev_pc, p, pend);
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prev_pc = start_pos + i;
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p += mrb_packed_int_encode(lines[start_pos + i]-prev_line, p, pend);
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prev_line = lines[start_pos + i];
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}
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f->line_entry_count = (uint32_t)packed_size;
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return f;
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}
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MRB_API void
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mrb_debug_info_free(mrb_state *mrb, mrb_irep_debug_info *d)
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{
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uint32_t i;
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if (!d) { return; }
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if (d->files) {
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for (i = 0; i < d->flen; i++) {
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if (d->files[i]) {
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mrb_free(mrb, d->files[i]->lines.ptr);
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mrb_free(mrb, d->files[i]);
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}
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}
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mrb_free(mrb, d->files);
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}
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mrb_free(mrb, d);
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}
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