#ifndef GrResourceKey_DEFINED
#define GrResourceKey_DEFINED
#include "../private/SkOnce.h"
#include "../private/SkTemplates.h"
#include "../private/SkTo.h"
#include "GrTypes.h"
#include "SkData.h"
#include "SkString.h"
#include <new>
uint32_t GrResourceKeyHash(const uint32_t* data, size_t size);
class GrResourceKey {
public:
uint32_t hash() const {
this->validate();
return fKey[kHash_MetaDataIdx];
}
size_t size() const {
this->validate();
SkASSERT(this->isValid());
return this->internalSize();
}
protected:
static const uint32_t kInvalidDomain = 0;
GrResourceKey() { this->reset(); }
void reset() {
GR_STATIC_ASSERT((uint16_t)kInvalidDomain == kInvalidDomain);
fKey.reset(kMetaDataCnt);
fKey[kHash_MetaDataIdx] = 0;
fKey[kDomainAndSize_MetaDataIdx] = kInvalidDomain;
}
bool operator==(const GrResourceKey& that) const {
return this->hash() == that.hash() &&
0 == memcmp(&fKey[kHash_MetaDataIdx + 1],
&that.fKey[kHash_MetaDataIdx + 1],
this->internalSize() - sizeof(uint32_t));
}
GrResourceKey& operator=(const GrResourceKey& that) {
SkASSERT(that.isValid());
if (this != &that) {
size_t bytes = that.size();
SkASSERT(SkIsAlign4(bytes));
fKey.reset(SkToInt(bytes / sizeof(uint32_t)));
memcpy(fKey.get(), that.fKey.get(), bytes);
this->validate();
}
return *this;
}
bool isValid() const { return kInvalidDomain != this->domain(); }
uint32_t domain() const { return fKey[kDomainAndSize_MetaDataIdx] & 0xffff; }
size_t dataSize() const { return this->size() - 4 * kMetaDataCnt; }
const uint32_t* data() const {
this->validate();
return &fKey[kMetaDataCnt];
}
#ifdef SK_DEBUG
void dump() const {
if (!this->isValid()) {
SkDebugf("Invalid Key\n");
} else {
SkDebugf("hash: %d ", this->hash());
SkDebugf("domain: %d ", this->domain());
SkDebugf("size: %dB ", this->internalSize());
for (size_t i = 0; i < this->internalSize(); ++i) {
SkDebugf("%d ", fKey[i]);
}
SkDebugf("\n");
}
}
#endif
class Builder {
public:
Builder(GrResourceKey* key, uint32_t domain, int data32Count) : fKey(key) {
SkASSERT(data32Count >= 0);
SkASSERT(domain != kInvalidDomain);
key->fKey.reset(kMetaDataCnt + data32Count);
int size = (data32Count + kMetaDataCnt) * sizeof(uint32_t);
SkASSERT(SkToU16(size) == size);
SkASSERT(SkToU16(domain) == domain);
key->fKey[kDomainAndSize_MetaDataIdx] = domain | (size << 16);
}
~Builder() { this->finish(); }
void finish() {
if (nullptr == fKey) {
return;
}
GR_STATIC_ASSERT(0 == kHash_MetaDataIdx);
uint32_t* hash = &fKey->fKey[kHash_MetaDataIdx];
*hash = GrResourceKeyHash(hash + 1, fKey->internalSize() - sizeof(uint32_t));
fKey->validate();
fKey = nullptr;
}
uint32_t& operator[](int dataIdx) {
SkASSERT(fKey);
SkDEBUGCODE(size_t dataCount = fKey->internalSize() / sizeof(uint32_t) - kMetaDataCnt;)
SkASSERT(SkToU32(dataIdx) < dataCount);
return fKey->fKey[kMetaDataCnt + dataIdx];
}
private:
GrResourceKey* fKey;
};
private:
enum MetaDataIdx {
kHash_MetaDataIdx,
kDomainAndSize_MetaDataIdx,
kLastMetaDataIdx = kDomainAndSize_MetaDataIdx
};
static const uint32_t kMetaDataCnt = kLastMetaDataIdx + 1;
size_t internalSize() const {
return fKey[kDomainAndSize_MetaDataIdx] >> 16;
}
void validate() const {
SkASSERT(fKey[kHash_MetaDataIdx] ==
GrResourceKeyHash(&fKey[kHash_MetaDataIdx] + 1,
this->internalSize() - sizeof(uint32_t)));
SkASSERT(SkIsAlign4(this->internalSize()));
}
friend class TestResource;
SkAutoSTMalloc<kMetaDataCnt + 5, uint32_t> fKey;
};
class GrScratchKey : public GrResourceKey {
private:
typedef GrResourceKey INHERITED;
public:
typedef uint32_t ResourceType;
static ResourceType GenerateResourceType();
GrScratchKey() {}
GrScratchKey(const GrScratchKey& that) { *this = that; }
using INHERITED::reset;
using INHERITED::isValid;
ResourceType resourceType() const { return this->domain(); }
GrScratchKey& operator=(const GrScratchKey& that) {
this->INHERITED::operator=(that);
return *this;
}
bool operator==(const GrScratchKey& that) const {
return this->INHERITED::operator==(that);
}
bool operator!=(const GrScratchKey& that) const { return !(*this == that); }
class Builder : public INHERITED::Builder {
public:
Builder(GrScratchKey* key, ResourceType type, int data32Count)
: INHERITED::Builder(key, type, data32Count) {}
};
};
class GrUniqueKey : public GrResourceKey {
private:
typedef GrResourceKey INHERITED;
public:
typedef uint32_t Domain;
static Domain GenerateDomain();
GrUniqueKey() : fTag(nullptr) {}
GrUniqueKey(const GrUniqueKey& that) { *this = that; }
using INHERITED::reset;
using INHERITED::isValid;
GrUniqueKey& operator=(const GrUniqueKey& that) {
this->INHERITED::operator=(that);
this->setCustomData(sk_ref_sp(that.getCustomData()));
fTag = that.fTag;
return *this;
}
bool operator==(const GrUniqueKey& that) const {
return this->INHERITED::operator==(that);
}
bool operator!=(const GrUniqueKey& that) const { return !(*this == that); }
void setCustomData(sk_sp<SkData> data) {
fData = std::move(data);
}
SkData* getCustomData() const {
return fData.get();
}
const char* tag() const { return fTag; }
#ifdef SK_DEBUG
void dump(const char* label) const {
SkDebugf("%s tag: %s\n", label, fTag ? fTag : "None");
this->INHERITED::dump();
}
#endif
class Builder : public INHERITED::Builder {
public:
Builder(GrUniqueKey* key, Domain type, int data32Count, const char* tag = nullptr)
: INHERITED::Builder(key, type, data32Count) {
key->fTag = tag;
}
Builder(GrUniqueKey* key, const GrUniqueKey& innerKey, Domain domain, int extraData32Cnt,
const char* tag = nullptr)
: INHERITED::Builder(key, domain, Data32CntForInnerKey(innerKey) + extraData32Cnt) {
SkASSERT(&innerKey != key);
uint32_t* innerKeyData = &this->operator[](extraData32Cnt);
const uint32_t* srcData = innerKey.data();
(*innerKeyData++) = innerKey.domain();
memcpy(innerKeyData, srcData, innerKey.dataSize());
key->fTag = tag;
}
private:
static int Data32CntForInnerKey(const GrUniqueKey& innerKey) {
return SkToInt((innerKey.dataSize() >> 2) + 1);
}
};
private:
sk_sp<SkData> fData;
const char* fTag;
};
#define GR_DECLARE_STATIC_UNIQUE_KEY(name) static SkOnce name##_once
#define GR_DEFINE_STATIC_UNIQUE_KEY(name) \
static SkAlignedSTStorage<1, GrUniqueKey> name##_storage; \
name##_once(gr_init_static_unique_key_once, &name##_storage); \
static const GrUniqueKey& name = *reinterpret_cast<GrUniqueKey*>(name##_storage.get());
static inline void gr_init_static_unique_key_once(SkAlignedSTStorage<1,GrUniqueKey>* keyStorage) {
GrUniqueKey* key = new (keyStorage->get()) GrUniqueKey;
GrUniqueKey::Builder builder(key, GrUniqueKey::GenerateDomain(), 0);
}
class GrUniqueKeyInvalidatedMessage {
public:
GrUniqueKeyInvalidatedMessage(const GrUniqueKey& key, uint32_t contextUniqueID)
: fKey(key), fContextID(contextUniqueID) {
SkASSERT(SK_InvalidUniqueID != contextUniqueID);
}
GrUniqueKeyInvalidatedMessage(const GrUniqueKeyInvalidatedMessage&) = default;
GrUniqueKeyInvalidatedMessage& operator=(const GrUniqueKeyInvalidatedMessage&) = default;
const GrUniqueKey& key() const { return fKey; }
uint32_t contextID() const { return fContextID; }
private:
GrUniqueKey fKey;
uint32_t fContextID;
};
static inline bool SkShouldPostMessageToBus(
const GrUniqueKeyInvalidatedMessage& msg, uint32_t msgBusUniqueID) {
return msg.contextID() == msgBusUniqueID;
}
#endif