zs->opaque = Z_NULL;
if (deflateInit(zs, migrate_multifd_zlib_level()) != Z_OK) {
g_free(z);
- error_setg(errp, "multifd %d: deflate init failed", p->id);
+ error_setg(errp, "multifd %u: deflate init failed", p->id);
return -1;
}
/* To be safe, we reserve twice the size of the packet */
if (!z->zbuff) {
deflateEnd(&z->zs);
g_free(z);
- error_setg(errp, "multifd %d: out of memory for zbuff", p->id);
+ error_setg(errp, "multifd %u: out of memory for zbuff", p->id);
return -1;
}
p->data = z;
ret = deflate(zs, flush);
} while (ret == Z_OK && zs->avail_in && zs->avail_out);
if (ret == Z_OK && zs->avail_in) {
- error_setg(errp, "multifd %d: deflate failed to compress all input",
+ error_setg(errp, "multifd %u: deflate failed to compress all input",
p->id);
return -1;
}
if (ret != Z_OK) {
- error_setg(errp, "multifd %d: deflate returned %d instead of Z_OK",
+ error_setg(errp, "multifd %u: deflate returned %d instead of Z_OK",
p->id, ret);
return -1;
}
zs->avail_in = 0;
zs->next_in = Z_NULL;
if (inflateInit(zs) != Z_OK) {
- error_setg(errp, "multifd %d: inflate init failed", p->id);
+ error_setg(errp, "multifd %u: inflate init failed", p->id);
return -1;
}
/* To be safe, we reserve twice the size of the packet */
z->zbuff = g_try_malloc(z->zbuff_len);
if (!z->zbuff) {
inflateEnd(zs);
- error_setg(errp, "multifd %d: out of memory for zbuff", p->id);
+ error_setg(errp, "multifd %u: out of memory for zbuff", p->id);
return -1;
}
return 0;
int i;
if (flags != MULTIFD_FLAG_ZLIB) {
- error_setg(errp, "multifd %d: flags received %x flags expected %x",
+ error_setg(errp, "multifd %u: flags received %x flags expected %x",
p->id, flags, MULTIFD_FLAG_ZLIB);
return -1;
}
} while (ret == Z_OK && zs->avail_in
&& (zs->total_out - start) < page_size);
if (ret == Z_OK && (zs->total_out - start) < page_size) {
- error_setg(errp, "multifd %d: inflate generated too few output",
+ error_setg(errp, "multifd %u: inflate generated too few output",
p->id);
return -1;
}
if (ret != Z_OK) {
- error_setg(errp, "multifd %d: inflate returned %d instead of Z_OK",
+ error_setg(errp, "multifd %u: inflate returned %d instead of Z_OK",
p->id, ret);
return -1;
}
}
out_size = zs->total_out - out_size;
if (out_size != expected_size) {
- error_setg(errp, "multifd %d: packet size received %d size expected %d",
+ error_setg(errp, "multifd %u: packet size received %u size expected %u",
p->id, out_size, expected_size);
return -1;
}
z->zcs = ZSTD_createCStream();
if (!z->zcs) {
g_free(z);
- error_setg(errp, "multifd %d: zstd createCStream failed", p->id);
+ error_setg(errp, "multifd %u: zstd createCStream failed", p->id);
return -1;
}
if (ZSTD_isError(res)) {
ZSTD_freeCStream(z->zcs);
g_free(z);
- error_setg(errp, "multifd %d: initCStream failed with error %s",
+ error_setg(errp, "multifd %u: initCStream failed with error %s",
p->id, ZSTD_getErrorName(res));
return -1;
}
if (!z->zbuff) {
ZSTD_freeCStream(z->zcs);
g_free(z);
- error_setg(errp, "multifd %d: out of memory for zbuff", p->id);
+ error_setg(errp, "multifd %u: out of memory for zbuff", p->id);
return -1;
}
return 0;
} while (ret > 0 && (z->in.size - z->in.pos > 0)
&& (z->out.size - z->out.pos > 0));
if (ret > 0 && (z->in.size - z->in.pos > 0)) {
- error_setg(errp, "multifd %d: compressStream buffer too small",
+ error_setg(errp, "multifd %u: compressStream buffer too small",
p->id);
return -1;
}
if (ZSTD_isError(ret)) {
- error_setg(errp, "multifd %d: compressStream error %s",
+ error_setg(errp, "multifd %u: compressStream error %s",
p->id, ZSTD_getErrorName(ret));
return -1;
}
z->zds = ZSTD_createDStream();
if (!z->zds) {
g_free(z);
- error_setg(errp, "multifd %d: zstd createDStream failed", p->id);
+ error_setg(errp, "multifd %u: zstd createDStream failed", p->id);
return -1;
}
if (ZSTD_isError(ret)) {
ZSTD_freeDStream(z->zds);
g_free(z);
- error_setg(errp, "multifd %d: initDStream failed with error %s",
+ error_setg(errp, "multifd %u: initDStream failed with error %s",
p->id, ZSTD_getErrorName(ret));
return -1;
}
if (!z->zbuff) {
ZSTD_freeDStream(z->zds);
g_free(z);
- error_setg(errp, "multifd %d: out of memory for zbuff", p->id);
+ error_setg(errp, "multifd %u: out of memory for zbuff", p->id);
return -1;
}
return 0;
int i;
if (flags != MULTIFD_FLAG_ZSTD) {
- error_setg(errp, "multifd %d: flags received %x flags expected %x",
+ error_setg(errp, "multifd %u: flags received %x flags expected %x",
p->id, flags, MULTIFD_FLAG_ZSTD);
return -1;
}
} while (ret > 0 && (z->in.size - z->in.pos > 0)
&& (z->out.pos < page_size));
if (ret > 0 && (z->out.pos < page_size)) {
- error_setg(errp, "multifd %d: decompressStream buffer too small",
+ error_setg(errp, "multifd %u: decompressStream buffer too small",
p->id);
return -1;
}
if (ZSTD_isError(ret)) {
- error_setg(errp, "multifd %d: decompressStream returned %s",
+ error_setg(errp, "multifd %u: decompressStream returned %s",
p->id, ZSTD_getErrorName(ret));
return ret;
}
out_size += z->out.pos;
}
if (out_size != expected_size) {
- error_setg(errp, "multifd %d: packet size received %d size expected %d",
+ error_setg(errp, "multifd %u: packet size received %u size expected %u",
p->id, out_size, expected_size);
return -1;
}
uint32_t flags = p->flags & MULTIFD_FLAG_COMPRESSION_MASK;
if (flags != MULTIFD_FLAG_NOCOMP) {
- error_setg(errp, "multifd %d: flags received %x flags expected %x",
+ error_setg(errp, "multifd %u: flags received %x flags expected %x",
p->id, flags, MULTIFD_FLAG_NOCOMP);
return -1;
}
}
if (msg.version != MULTIFD_VERSION) {
- error_setg(errp, "multifd: received packet version %d "
- "expected %d", msg.version, MULTIFD_VERSION);
+ error_setg(errp, "multifd: received packet version %u "
+ "expected %u", msg.version, MULTIFD_VERSION);
return -1;
}
}
if (msg.id > migrate_multifd_channels()) {
- error_setg(errp, "multifd: received channel version %d "
- "expected %d", msg.version, MULTIFD_VERSION);
+ error_setg(errp, "multifd: received channel version %u "
+ "expected %u", msg.version, MULTIFD_VERSION);
return -1;
}
packet->version = be32_to_cpu(packet->version);
if (packet->version != MULTIFD_VERSION) {
error_setg(errp, "multifd: received packet "
- "version %d and expected version %d",
+ "version %u and expected version %u",
packet->version, MULTIFD_VERSION);
return -1;
}
*/
if (packet->pages_alloc > pages_max * 100) {
error_setg(errp, "multifd: received packet "
- "with size %d and expected a maximum size of %d",
+ "with size %u and expected a maximum size of %u",
packet->pages_alloc, pages_max * 100) ;
return -1;
}
p->pages->num = be32_to_cpu(packet->pages_used);
if (p->pages->num > packet->pages_alloc) {
error_setg(errp, "multifd: received packet "
- "with %d pages and expected maximum pages are %d",
+ "with %u pages and expected maximum pages are %u",
p->pages->num, packet->pages_alloc) ;
return -1;
}
ram_write_tracking_ramblock_stop(const char *block_id, size_t page_size, void *addr, size_t length) "%s: page_size: %zu addr: %p length: %zu"
# multifd.c
-multifd_new_send_channel_async(uint8_t id) "channel %d"
-multifd_recv(uint8_t id, uint64_t packet_num, uint32_t used, uint32_t flags, uint32_t next_packet_size) "channel %d packet_num %" PRIu64 " pages %d flags 0x%x next packet size %d"
-multifd_recv_new_channel(uint8_t id) "channel %d"
+multifd_new_send_channel_async(uint8_t id) "channel %u"
+multifd_recv(uint8_t id, uint64_t packet_num, uint32_t used, uint32_t flags, uint32_t next_packet_size) "channel %u packet_num %" PRIu64 " pages %u flags 0x%x next packet size %u"
+multifd_recv_new_channel(uint8_t id) "channel %u"
multifd_recv_sync_main(long packet_num) "packet num %ld"
-multifd_recv_sync_main_signal(uint8_t id) "channel %d"
-multifd_recv_sync_main_wait(uint8_t id) "channel %d"
+multifd_recv_sync_main_signal(uint8_t id) "channel %u"
+multifd_recv_sync_main_wait(uint8_t id) "channel %u"
multifd_recv_terminate_threads(bool error) "error %d"
-multifd_recv_thread_end(uint8_t id, uint64_t packets, uint64_t pages) "channel %d packets %" PRIu64 " pages %" PRIu64
-multifd_recv_thread_start(uint8_t id) "%d"
-multifd_send(uint8_t id, uint64_t packet_num, uint32_t used, uint32_t flags, uint32_t next_packet_size) "channel %d packet_num %" PRIu64 " pages %d flags 0x%x next packet size %d"
-multifd_send_error(uint8_t id) "channel %d"
+multifd_recv_thread_end(uint8_t id, uint64_t packets, uint64_t pages) "channel %u packets %" PRIu64 " pages %" PRIu64
+multifd_recv_thread_start(uint8_t id) "%u"
+multifd_send(uint8_t id, uint64_t packet_num, uint32_t used, uint32_t flags, uint32_t next_packet_size) "channel %u packet_num %" PRIu64 " pages %u flags 0x%x next packet size %u"
+multifd_send_error(uint8_t id) "channel %u"
multifd_send_sync_main(long packet_num) "packet num %ld"
-multifd_send_sync_main_signal(uint8_t id) "channel %d"
-multifd_send_sync_main_wait(uint8_t id) "channel %d"
+multifd_send_sync_main_signal(uint8_t id) "channel %u"
+multifd_send_sync_main_wait(uint8_t id) "channel %u"
multifd_send_terminate_threads(bool error) "error %d"
-multifd_send_thread_end(uint8_t id, uint64_t packets, uint64_t pages) "channel %d packets %" PRIu64 " pages %" PRIu64
-multifd_send_thread_start(uint8_t id) "%d"
+multifd_send_thread_end(uint8_t id, uint64_t packets, uint64_t pages) "channel %u packets %" PRIu64 " pages %" PRIu64
+multifd_send_thread_start(uint8_t id) "%u"
multifd_tls_outgoing_handshake_start(void *ioc, void *tioc, const char *hostname) "ioc=%p tioc=%p hostname=%s"
multifd_tls_outgoing_handshake_error(void *ioc, const char *err) "ioc=%p err=%s"
multifd_tls_outgoing_handshake_complete(void *ioc) "ioc=%p"