2016-08-28 17:33:52 +00:00
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#include "common/common.h"
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#include "node.h"
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// Init a node with the given format. If parent is not NULL, it is set as
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// parent allocation according to m_option_type_node rules (which means
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// the mpv_node_list allocs are used for chaining the TA allocations).
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// format == MPV_FORMAT_NONE will simply initialize it with all-0.
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void node_init(struct mpv_node *dst, int format, struct mpv_node *parent)
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{
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// Other formats need to be initialized manually.
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assert(format == MPV_FORMAT_NODE_MAP || format == MPV_FORMAT_NODE_ARRAY ||
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format == MPV_FORMAT_FLAG || format == MPV_FORMAT_INT64 ||
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2018-03-23 13:53:18 +00:00
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format == MPV_FORMAT_DOUBLE || format == MPV_FORMAT_BYTE_ARRAY ||
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format == MPV_FORMAT_NONE);
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2016-08-28 17:33:52 +00:00
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void *ta_parent = NULL;
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if (parent) {
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assert(parent->format == MPV_FORMAT_NODE_MAP ||
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parent->format == MPV_FORMAT_NODE_ARRAY);
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ta_parent = parent->u.list;
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}
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*dst = (struct mpv_node){ .format = format };
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if (format == MPV_FORMAT_NODE_MAP || format == MPV_FORMAT_NODE_ARRAY)
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dst->u.list = talloc_zero(ta_parent, struct mpv_node_list);
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2018-03-23 13:53:18 +00:00
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if (format == MPV_FORMAT_BYTE_ARRAY)
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dst->u.ba = talloc_zero(ta_parent, struct mpv_byte_array);
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2016-08-28 17:33:52 +00:00
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}
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// Add an entry to a MPV_FORMAT_NODE_ARRAY.
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// m_option_type_node memory management rules apply.
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struct mpv_node *node_array_add(struct mpv_node *dst, int format)
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{
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struct mpv_node_list *list = dst->u.list;
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assert(dst->format == MPV_FORMAT_NODE_ARRAY && dst->u.list);
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MP_TARRAY_GROW(list, list->values, list->num);
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node_init(&list->values[list->num], format, dst);
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return &list->values[list->num++];
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}
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// Add an entry to a MPV_FORMAT_NODE_MAP. Keep in mind that this does
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// not check for already existing entries under the same key.
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// m_option_type_node memory management rules apply.
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struct mpv_node *node_map_add(struct mpv_node *dst, const char *key, int format)
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{
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assert(key);
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2022-12-16 01:18:45 +00:00
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return node_map_badd(dst, bstr0(key), format);
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}
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struct mpv_node *node_map_badd(struct mpv_node *dst, struct bstr key, int format)
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{
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assert(key.start);
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2016-08-28 17:33:52 +00:00
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struct mpv_node_list *list = dst->u.list;
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assert(dst->format == MPV_FORMAT_NODE_MAP && dst->u.list);
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MP_TARRAY_GROW(list, list->values, list->num);
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MP_TARRAY_GROW(list, list->keys, list->num);
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2022-12-16 01:18:45 +00:00
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list->keys[list->num] = bstrdup0(list, key);
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2016-08-28 17:33:52 +00:00
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node_init(&list->values[list->num], format, dst);
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return &list->values[list->num++];
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}
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// Add a string entry to a MPV_FORMAT_NODE_MAP. Keep in mind that this does
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// not check for already existing entries under the same key.
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// m_option_type_node memory management rules apply.
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void node_map_add_string(struct mpv_node *dst, const char *key, const char *val)
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{
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assert(val);
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struct mpv_node *entry = node_map_add(dst, key, MPV_FORMAT_NONE);
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entry->format = MPV_FORMAT_STRING;
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entry->u.string = talloc_strdup(dst->u.list, val);
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}
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2017-10-26 20:26:43 +00:00
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2024-09-04 01:13:47 +00:00
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void node_map_add_bstr(struct mpv_node *dst, const char *key, bstr val)
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{
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assert(val.start);
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struct mpv_node *entry = node_map_add(dst, key, MPV_FORMAT_NONE);
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entry->format = MPV_FORMAT_STRING;
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entry->u.string = bstrto0(dst->u.list, val);
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}
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2017-10-26 20:26:43 +00:00
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void node_map_add_int64(struct mpv_node *dst, const char *key, int64_t v)
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{
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node_map_add(dst, key, MPV_FORMAT_INT64)->u.int64 = v;
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}
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void node_map_add_double(struct mpv_node *dst, const char *key, double v)
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{
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node_map_add(dst, key, MPV_FORMAT_DOUBLE)->u.double_ = v;
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}
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void node_map_add_flag(struct mpv_node *dst, const char *key, bool v)
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{
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node_map_add(dst, key, MPV_FORMAT_FLAG)->u.flag = v;
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}
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2018-05-12 12:48:24 +00:00
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mpv_node *node_map_get(mpv_node *src, const char *key)
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2022-12-16 01:18:45 +00:00
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{
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return node_map_bget(src, bstr0(key));
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}
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mpv_node *node_map_bget(mpv_node *src, struct bstr key)
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2018-05-12 12:48:24 +00:00
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{
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if (src->format != MPV_FORMAT_NODE_MAP)
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return NULL;
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for (int i = 0; i < src->u.list->num; i++) {
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2022-12-16 01:18:45 +00:00
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if (bstr_equals0(key, src->u.list->keys[i]))
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2018-05-12 12:48:24 +00:00
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return &src->u.list->values[i];
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}
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return NULL;
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}
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2018-05-17 13:29:03 +00:00
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// Note: for MPV_FORMAT_NODE_MAP, this (incorrectly) takes the order into
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// account, instead of treating it as set.
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bool equal_mpv_value(const void *a, const void *b, mpv_format format)
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{
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switch (format) {
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case MPV_FORMAT_NONE:
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return true;
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case MPV_FORMAT_STRING:
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case MPV_FORMAT_OSD_STRING:
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return strcmp(*(char **)a, *(char **)b) == 0;
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case MPV_FORMAT_FLAG:
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return *(int *)a == *(int *)b;
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case MPV_FORMAT_INT64:
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return *(int64_t *)a == *(int64_t *)b;
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case MPV_FORMAT_DOUBLE:
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return *(double *)a == *(double *)b;
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case MPV_FORMAT_NODE:
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return equal_mpv_node(a, b);
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case MPV_FORMAT_BYTE_ARRAY: {
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const struct mpv_byte_array *a_r = a, *b_r = b;
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if (a_r->size != b_r->size)
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return false;
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return memcmp(a_r->data, b_r->data, a_r->size) == 0;
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}
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case MPV_FORMAT_NODE_ARRAY:
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case MPV_FORMAT_NODE_MAP:
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{
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mpv_node_list *l_a = *(mpv_node_list **)a, *l_b = *(mpv_node_list **)b;
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if (l_a->num != l_b->num)
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return false;
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for (int n = 0; n < l_a->num; n++) {
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if (format == MPV_FORMAT_NODE_MAP) {
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if (strcmp(l_a->keys[n], l_b->keys[n]) != 0)
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return false;
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}
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if (!equal_mpv_node(&l_a->values[n], &l_b->values[n]))
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return false;
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}
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return true;
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}
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}
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2023-01-10 18:26:51 +00:00
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MP_ASSERT_UNREACHABLE(); // supposed to be able to handle all defined types
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2018-05-17 13:29:03 +00:00
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}
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// Remarks see equal_mpv_value().
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bool equal_mpv_node(const struct mpv_node *a, const struct mpv_node *b)
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{
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if (a->format != b->format)
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return false;
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return equal_mpv_value(&a->u, &b->u, a->format);
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}
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