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			349 lines
		
	
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			349 lines
		
	
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* Simple Plugin API
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 * Copyright (C) 2016 Wim Taymans <wim.taymans@gmail.com>
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 *
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 * This library is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU Library General Public
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 * License as published by the Free Software Foundation; either
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 * version 2 of the License, or (at your option) any later version.
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 *
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 * This library is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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 * Library General Public License for more details.
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 *
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 * You should have received a copy of the GNU Library General Public
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 * License along with this library; if not, write to the
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 * Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
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 * Boston, MA 02110-1301, USA.
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 */
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#include <stdint.h>
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#include <stddef.h>
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#include <stdio.h>
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#include <string.h>
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#include <spa/props.h>
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static int compare_value(enum spa_pod_type type, const void *r1, const void *r2)
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{
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	switch (type) {
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	case SPA_POD_TYPE_INVALID:
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		return 0;
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	case SPA_POD_TYPE_BOOL:
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	case SPA_POD_TYPE_ID:
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		return *(int32_t *) r1 == *(uint32_t *) r2 ? 0 : 1;
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	case SPA_POD_TYPE_INT:
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		return *(int32_t *) r1 - *(int32_t *) r2;
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	case SPA_POD_TYPE_LONG:
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		return *(int64_t *) r1 - *(int64_t *) r2;
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	case SPA_POD_TYPE_FLOAT:
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		return *(float *) r1 - *(float *) r2;
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	case SPA_POD_TYPE_DOUBLE:
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		return *(double *) r1 - *(double *) r2;
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	case SPA_POD_TYPE_STRING:
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		return strcmp(r1, r2);
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	case SPA_POD_TYPE_RECTANGLE:
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	{
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		const struct spa_rectangle *rec1 = (struct spa_rectangle *) r1,
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		    *rec2 = (struct spa_rectangle *) r2;
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		if (rec1->width == rec2->width && rec1->height == rec2->height)
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			return 0;
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		else if (rec1->width < rec2->width || rec1->height < rec2->height)
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			return -1;
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		else
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			return 1;
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	}
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	case SPA_POD_TYPE_FRACTION:
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	{
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		const struct spa_fraction *f1 = (struct spa_fraction *) r1,
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		    *f2 = (struct spa_fraction *) r2;
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		int64_t n1, n2;
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		n1 = ((int64_t) f1->num) * f2->denom;
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		n2 = ((int64_t) f2->num) * f1->denom;
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		if (n1 < n2)
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			return -1;
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		else if (n1 > n2)
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			return 1;
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		else
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			return 0;
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	}
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	default:
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		break;
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	}
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	return 0;
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}
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static void fix_default(struct spa_pod_prop *prop)
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{
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	void *val = SPA_MEMBER(prop, sizeof(struct spa_pod_prop), void),
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	    *alt = SPA_MEMBER(val, prop->body.value.size, void);
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	int i, nalt = SPA_POD_PROP_N_VALUES(prop) - 1;
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	switch (prop->body.flags & SPA_POD_PROP_RANGE_MASK) {
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	case SPA_POD_PROP_RANGE_NONE:
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		break;
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	case SPA_POD_PROP_RANGE_MIN_MAX:
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	case SPA_POD_PROP_RANGE_STEP:
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		if (compare_value(prop->body.value.type, val, alt) < 0)
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			memcpy(val, alt, prop->body.value.size);
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		alt = SPA_MEMBER(alt, prop->body.value.size, void);
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		if (compare_value(prop->body.value.type, val, alt) > 0)
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			memcpy(val, alt, prop->body.value.size);
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		break;
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	case SPA_POD_PROP_RANGE_ENUM:
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	{
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		void *best = NULL;
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		for (i = 0; i < nalt; i++) {
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			if (compare_value(prop->body.value.type, val, alt) == 0) {
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				best = alt;
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				break;
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			}
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			if (best == NULL)
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				best = alt;
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			alt = SPA_MEMBER(alt, prop->body.value.size, void);
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		}
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		if (best)
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			memcpy(val, best, prop->body.value.size);
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		if (nalt == 1) {
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			prop->body.flags &= ~SPA_POD_PROP_FLAG_UNSET;
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			prop->body.flags &= ~SPA_POD_PROP_RANGE_MASK;
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			prop->body.flags |= SPA_POD_PROP_RANGE_NONE;
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		}
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		break;
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	}
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	case SPA_POD_PROP_RANGE_FLAGS:
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		break;
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	}
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}
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static inline struct spa_pod_prop *find_prop(const struct spa_pod *pod, uint32_t size, uint32_t key)
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{
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	const struct spa_pod *res;
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	SPA_POD_FOREACH(pod, size, res) {
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		if (res->type == SPA_POD_TYPE_PROP
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		    && ((struct spa_pod_prop *) res)->body.key == key)
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			return (struct spa_pod_prop *) res;
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	}
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	return NULL;
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}
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int
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spa_props_filter(struct spa_pod_builder *b,
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		 const struct spa_pod *props,
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		 uint32_t props_size,
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		 const struct spa_pod *filter,
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		 uint32_t filter_size)
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{
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	int j, k;
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	const struct spa_pod *pr;
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	SPA_POD_FOREACH(props, props_size, pr) {
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		struct spa_pod_frame f;
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		struct spa_pod_prop *p1, *p2, *np;
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		int nalt1, nalt2;
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		void *alt1, *alt2, *a1, *a2;
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		uint32_t rt1, rt2;
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		if (pr->type != SPA_POD_TYPE_PROP)
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			continue;
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		p1 = (struct spa_pod_prop *) pr;
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		if (filter == NULL || (p2 = find_prop(filter, filter_size, p1->body.key)) == NULL) {
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			/* no filter, copy the complete property */
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			spa_pod_builder_raw_padded(b, p1, SPA_POD_SIZE(p1));
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			continue;
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		}
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		/* incompatible property types */
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		if (p1->body.value.type != p2->body.value.type)
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			return SPA_RESULT_INCOMPATIBLE_PROPS;
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		rt1 = p1->body.flags & SPA_POD_PROP_RANGE_MASK;
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		rt2 = p2->body.flags & SPA_POD_PROP_RANGE_MASK;
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		/* else we filter. start with copying the property */
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		spa_pod_builder_push_prop(b, &f, p1->body.key, 0),
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		    np = SPA_POD_BUILDER_DEREF(b, f.ref, struct spa_pod_prop);
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		/* default value */
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		spa_pod_builder_raw(b, &p1->body.value,
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				    sizeof(p1->body.value) + p1->body.value.size);
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		alt1 = SPA_MEMBER(p1, sizeof(struct spa_pod_prop), void);
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		nalt1 = SPA_POD_PROP_N_VALUES(p1);
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		alt2 = SPA_MEMBER(p2, sizeof(struct spa_pod_prop), void);
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		nalt2 = SPA_POD_PROP_N_VALUES(p2);
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		if (p1->body.flags & SPA_POD_PROP_FLAG_UNSET) {
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			alt1 = SPA_MEMBER(alt1, p1->body.value.size, void);
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			nalt1--;
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		} else {
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			nalt1 = 1;
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			rt1 = SPA_POD_PROP_RANGE_NONE;
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		}
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		if (p2->body.flags & SPA_POD_PROP_FLAG_UNSET) {
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			alt2 = SPA_MEMBER(alt2, p2->body.value.size, void);
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			nalt2--;
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		} else {
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			nalt2 = 1;
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			rt2 = SPA_POD_PROP_RANGE_NONE;
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		}
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		if ((rt1 == SPA_POD_PROP_RANGE_NONE && rt2 == SPA_POD_PROP_RANGE_NONE) ||
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		    (rt1 == SPA_POD_PROP_RANGE_NONE && rt2 == SPA_POD_PROP_RANGE_ENUM) ||
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		    (rt1 == SPA_POD_PROP_RANGE_ENUM && rt2 == SPA_POD_PROP_RANGE_NONE) ||
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		    (rt1 == SPA_POD_PROP_RANGE_ENUM && rt2 == SPA_POD_PROP_RANGE_ENUM)) {
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			int n_copied = 0;
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			/* copy all equal values */
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			for (j = 0, a1 = alt1; j < nalt1; j++, a1 += p1->body.value.size) {
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				for (k = 0, a2 = alt2; k < nalt2; k++, a2 += p2->body.value.size) {
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					if (compare_value(p1->body.value.type, a1, a2) == 0) {
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						spa_pod_builder_raw(b, a1, p1->body.value.size);
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						n_copied++;
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					}
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				}
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			}
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			if (n_copied == 0)
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				return SPA_RESULT_INCOMPATIBLE_PROPS;
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			np->body.flags |= SPA_POD_PROP_RANGE_ENUM | SPA_POD_PROP_FLAG_UNSET;
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		}
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		if ((rt1 == SPA_POD_PROP_RANGE_NONE && rt2 == SPA_POD_PROP_RANGE_MIN_MAX) ||
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		    (rt1 == SPA_POD_PROP_RANGE_ENUM && rt2 == SPA_POD_PROP_RANGE_MIN_MAX)) {
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			int n_copied = 0;
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			/* copy all values inside the range */
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			for (j = 0, a1 = alt1, a2 = alt2; j < nalt1; j++, a1 += p1->body.value.size) {
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				if (compare_value(p1->body.value.type, a1, a2) < 0)
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					continue;
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				if (compare_value(p1->body.value.type, a1, a2 + p2->body.value.size)
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				    > 0)
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					continue;
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				spa_pod_builder_raw(b, a1, p1->body.value.size);
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				n_copied++;
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			}
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			if (n_copied == 0)
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				return SPA_RESULT_INCOMPATIBLE_PROPS;
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			np->body.flags |= SPA_POD_PROP_RANGE_ENUM | SPA_POD_PROP_FLAG_UNSET;
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		}
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		if ((rt1 == SPA_POD_PROP_RANGE_NONE && rt2 == SPA_POD_PROP_RANGE_STEP) ||
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		    (rt1 == SPA_POD_PROP_RANGE_ENUM && rt2 == SPA_POD_PROP_RANGE_STEP)) {
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		}
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		if ((rt1 == SPA_POD_PROP_RANGE_MIN_MAX && rt2 == SPA_POD_PROP_RANGE_NONE) ||
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		    (rt1 == SPA_POD_PROP_RANGE_MIN_MAX && rt2 == SPA_POD_PROP_RANGE_ENUM)) {
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			int n_copied = 0;
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			/* copy all values inside the range */
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			for (k = 0, a1 = alt1, a2 = alt2; k < nalt2; k++, a2 += p2->body.value.size) {
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				if (compare_value(p1->body.value.type, a2, a1) < 0)
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					continue;
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				if (compare_value(p1->body.value.type, a2, a1 + p1->body.value.size)
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				    > 0)
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					continue;
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				spa_pod_builder_raw(b, a2, p2->body.value.size);
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				n_copied++;
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			}
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			if (n_copied == 0)
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				return SPA_RESULT_INCOMPATIBLE_PROPS;
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			np->body.flags |= SPA_POD_PROP_RANGE_ENUM | SPA_POD_PROP_FLAG_UNSET;
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		}
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		if (rt1 == SPA_POD_PROP_RANGE_MIN_MAX && rt2 == SPA_POD_PROP_RANGE_MIN_MAX) {
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			if (compare_value(p1->body.value.type, alt1, alt2) < 0)
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				spa_pod_builder_raw(b, alt2, p2->body.value.size);
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			else
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				spa_pod_builder_raw(b, alt1, p1->body.value.size);
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			alt1 += p1->body.value.size;
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			alt2 += p2->body.value.size;
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			if (compare_value(p1->body.value.type, alt1, alt2) < 0)
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				spa_pod_builder_raw(b, alt1, p1->body.value.size);
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			else
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				spa_pod_builder_raw(b, alt2, p2->body.value.size);
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			np->body.flags |= SPA_POD_PROP_RANGE_MIN_MAX | SPA_POD_PROP_FLAG_UNSET;
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		}
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		if (rt1 == SPA_POD_PROP_RANGE_NONE && rt2 == SPA_POD_PROP_RANGE_FLAGS)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_MIN_MAX && rt2 == SPA_POD_PROP_RANGE_STEP)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_MIN_MAX && rt2 == SPA_POD_PROP_RANGE_FLAGS)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_ENUM && rt2 == SPA_POD_PROP_RANGE_FLAGS)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_STEP && rt2 == SPA_POD_PROP_RANGE_NONE)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_STEP && rt2 == SPA_POD_PROP_RANGE_MIN_MAX)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_STEP && rt2 == SPA_POD_PROP_RANGE_STEP)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_STEP && rt2 == SPA_POD_PROP_RANGE_ENUM)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_STEP && rt2 == SPA_POD_PROP_RANGE_FLAGS)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_FLAGS && rt2 == SPA_POD_PROP_RANGE_NONE)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_FLAGS && rt2 == SPA_POD_PROP_RANGE_MIN_MAX)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_FLAGS && rt2 == SPA_POD_PROP_RANGE_STEP)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_FLAGS && rt2 == SPA_POD_PROP_RANGE_ENUM)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		if (rt1 == SPA_POD_PROP_RANGE_FLAGS && rt2 == SPA_POD_PROP_RANGE_FLAGS)
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			return SPA_RESULT_NOT_IMPLEMENTED;
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		spa_pod_builder_pop(b, &f);
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		fix_default(np);
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	}
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	return SPA_RESULT_OK;
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}
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int spa_props_compare(const struct spa_pod *props1,
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                      uint32_t props1_size,
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                      const struct spa_pod *props2,
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                      uint32_t props2_size)
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{
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	const struct spa_pod *pr;
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	SPA_POD_FOREACH(props1, props1_size, pr) {
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		struct spa_pod_prop *p1, *p2;
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		void *a1, *a2;
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		if (pr->type != SPA_POD_TYPE_PROP)
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			continue;
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		p1 = (struct spa_pod_prop *) pr;
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		if ((p2 = find_prop(props2, props2_size, p1->body.key)) == NULL)
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			return SPA_RESULT_INCOMPATIBLE_PROPS;
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		/* incompatible property types */
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		if (p1->body.value.type != p2->body.value.type)
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			return SPA_RESULT_INCOMPATIBLE_PROPS;
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		if (p1->body.flags & SPA_POD_PROP_FLAG_UNSET ||
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		    p2->body.flags & SPA_POD_PROP_FLAG_UNSET)
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			return SPA_RESULT_INCOMPATIBLE_PROPS;
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		a1 = SPA_MEMBER(p1, sizeof(struct spa_pod_prop), void);
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		a2 = SPA_MEMBER(p2, sizeof(struct spa_pod_prop), void);
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		if (compare_value(p1->body.value.type, a1, a2) != 0)
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			return SPA_RESULT_INCOMPATIBLE_PROPS;
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	}
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	return SPA_RESULT_OK;
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}
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