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We don’t write anything more to the buffer after this, but this makes this code consistent with all other code that pushes new data to the buffer. This makes it easier to search, and validate, the ensure_size()+push-data pattern.
196 lines
4.7 KiB
C
196 lines
4.7 KiB
C
#include "extract.h"
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#include <stdlib.h>
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#define LOG_MODULE "extract"
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#define LOG_ENABLE_DBG 1
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#include "log.h"
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struct extraction_context {
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wchar_t *buf;
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size_t size;
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size_t idx;
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size_t empty_count;
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size_t newline_count;
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bool failed;
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const struct row *last_row;
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const struct cell *last_cell;
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enum selection_kind selection_kind;
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};
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struct extraction_context *
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extract_begin(enum selection_kind kind)
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{
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struct extraction_context *ctx = malloc(sizeof(*ctx));
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if (unlikely(ctx == NULL)) {
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LOG_ERRNO("malloc() failed");
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return NULL;
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}
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*ctx = (struct extraction_context){
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.selection_kind = kind,
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};
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return ctx;
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}
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static bool
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ensure_size(struct extraction_context *ctx, size_t additional_chars)
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{
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while (ctx->size < ctx->idx + additional_chars) {
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size_t new_size = ctx->size == 0 ? 512 : ctx->size * 2;
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wchar_t *new_buf = realloc(ctx->buf, new_size * sizeof(wchar_t));
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if (new_buf == NULL)
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return false;
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ctx->buf = new_buf;
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ctx->size = new_size;
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}
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assert(ctx->size >= ctx->idx + additional_chars);
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return true;
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}
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bool
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extract_finish(struct extraction_context *ctx, char **text, size_t *len)
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{
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bool ret = false;
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if (text == NULL)
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return false;
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*text = NULL;
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if (len != NULL)
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*len = 0;
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if (ctx->failed)
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goto out;
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if (ctx->idx == 0) {
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/* Selection of empty cells only */
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if (!ensure_size(ctx, 1))
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goto out;
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ctx->buf[ctx->idx++] = L'\0';
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} else {
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assert(ctx->idx > 0);
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assert(ctx->idx <= ctx->size);
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if (ctx->buf[ctx->idx - 1] == L'\n')
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ctx->buf[ctx->idx - 1] = L'\0';
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else {
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if (!ensure_size(ctx, 1))
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goto out;
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ctx->buf[ctx->idx++] = L'\0';
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}
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}
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size_t _len = wcstombs(NULL, ctx->buf, 0);
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if (_len == (size_t)-1) {
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LOG_ERRNO("failed to convert selection to UTF-8");
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goto out;
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}
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*text = malloc(_len + 1);
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if (unlikely(text == NULL)) {
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LOG_ERRNO("malloc() failed");
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goto out;
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}
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wcstombs(*text, ctx->buf, _len + 1);
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if (len != NULL)
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*len = _len;
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ret = true;
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out:
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free(ctx->buf);
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free(ctx);
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return ret;
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}
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bool
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extract_one(const struct terminal *term, const struct row *row,
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const struct cell *cell, int col, void *context)
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{
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struct extraction_context *ctx = context;
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if (cell->wc == CELL_MULT_COL_SPACER)
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return true;
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if (ctx->last_row != NULL && row != ctx->last_row) {
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/* New row - determine if we should insert a newline or not */
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if (ctx->selection_kind == SELECTION_NONE ||
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ctx->selection_kind == SELECTION_NORMAL)
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{
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if (ctx->last_row->linebreak ||
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ctx->empty_count > 0 ||
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cell->wc == 0)
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{
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/* Row has a hard linebreak, or either last cell or
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* current cell is empty */
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/* Don't emit newline just yet - only if there are
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* non-empty cells following it */
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ctx->newline_count++;
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ctx->empty_count = 0;
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}
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}
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else if (ctx->selection_kind == SELECTION_BLOCK) {
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/* Always insert a linebreak */
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if (!ensure_size(ctx, 1))
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goto err;
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ctx->buf[ctx->idx++] = L'\n';
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ctx->empty_count = 0;
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}
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}
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if (cell->wc == 0) {
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ctx->empty_count++;
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ctx->last_row = row;
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ctx->last_cell = cell;
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return true;
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}
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/* Insert pending newlines, and replace empty cells with spaces */
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if (!ensure_size(ctx, ctx->newline_count + ctx->empty_count))
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goto err;
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for (size_t i = 0; i < ctx->newline_count; i++)
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ctx->buf[ctx->idx++] = L'\n';
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for (size_t i = 0; i < ctx->empty_count; i++)
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ctx->buf[ctx->idx++] = L' ';
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ctx->newline_count = 0;
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ctx->empty_count = 0;
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if (cell->wc >= CELL_COMB_CHARS_LO &&
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cell->wc < (CELL_COMB_CHARS_LO + term->composed_count))
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{
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const struct composed *composed
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= &term->composed[cell->wc - CELL_COMB_CHARS_LO];
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if (!ensure_size(ctx, 1 + composed->count))
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goto err;
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ctx->buf[ctx->idx++] = composed->base;
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for (size_t i = 0; i < composed->count; i++)
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ctx->buf[ctx->idx++] = composed->combining[i];
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}
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else {
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if (!ensure_size(ctx, 1))
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goto err;
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ctx->buf[ctx->idx++] = cell->wc;
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}
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ctx->last_row = row;
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ctx->last_cell = cell;
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return true;
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err:
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ctx->failed = true;
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return false;
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}
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