aparams
if (evp_cipher_asn1_to_param_ex(ctx, calg->parameter, &aparams) <= 0) {
piv = aparams.iv;
memcpy(aparams.iv, piv, ivlen);
aparams.iv_len = ivlen;
aparams.tag_len = EVP_CIPHER_CTX_get_tag_length(ctx);
if (aparams.tag_len <= 0)
if (evp_cipher_param_to_asn1_ex(ctx, calg->parameter, &aparams) <= 0) {
evp_cipher_aead_asn1_params aparams;
http_auth_params_t aparams;
init_http_auth_params(&aparams);
aparams.user = strdup(purl->user);
aparams.password = strdup(purl->pwd);
if (http_authfromenv(p, &aparams) < 0) {
aparams.user = strdup(purl->user);
aparams.password = strdup(purl->pwd);
&proxy_challenges, &aparams, purl);
clean_http_auth_params(&aparams);
http_auth_params_t aparams;
init_http_auth_params(&aparams);
aparams.user = strdup(purl->user);
aparams.password = strdup(purl->pwd);
if (http_authfromenv(p, &aparams) < 0) {
aparams.user = strdup(purl->user);
aparams.password = strdup(purl->pwd);
&proxy_challenges, &aparams, url);
clean_http_auth_params(&aparams);
http_auth_params_t aparams;
init_http_auth_params(&aparams);
aparams.user = strdup(url->user);
aparams.password = strdup(url->pwd);
if (http_authfromenv(p, &aparams) < 0) {
aparams.user = strdup(url->user);
aparams.password = strdup(url->pwd);
aparams.user = strdup(url->user);
aparams.password = strdup(url->pwd);
&server_challenges, &aparams, url);
clean_http_auth_params(&aparams);
const struct nvmf_association_params *aparams = &na->na_params;
if (aparams->tcp.pda > NVME_TCP_CPDA_MAX) {
struct nvmf_association_params aparams;
memset(&aparams, 0, sizeof(aparams));
aparams.sq_flow_control = opt.flow_control;
tcp_association_params(&aparams);
error = connect_nvm_queues(&aparams, trtype, adrfam, address, port,
struct nvmf_association_params aparams;
memset(&aparams, 0, sizeof(aparams));
aparams.sq_flow_control = false;
tcp_discovery_association_params(&aparams);
na = nvmf_allocate_association(trtype, false, &aparams);
connect_nvm_queues(const struct nvmf_association_params *aparams,
na = nvmf_allocate_association(trtype, false, aparams);
int connect_nvm_queues(const struct nvmf_association_params *aparams,
struct nvmf_association_params aparams;
memset(&aparams, 0, sizeof(aparams));
aparams.sq_flow_control = opt.flow_control;
tcp_association_params(&aparams, opt.header_digests,
error = reconnect_nvm_controller(fd, &aparams, trtype, AF_UNSPEC,
struct nvmf_association_params aparams;
memset(&aparams, 0, sizeof(aparams));
aparams.sq_flow_control = nvlist_get_bool(rparams, "sq_flow_control");
tcp_association_params(&aparams,
error = reconnect_nvm_controller(fd, &aparams, dle->trtype, adrfam,
reconnect_nvm_controller(int fd, const struct nvmf_association_params *aparams,
error = connect_nvm_queues(aparams, trtype, adrfam, address, port,
struct nvmf_association_params aparams;
memset(&aparams, 0, sizeof(aparams));
aparams.sq_flow_control = false;
aparams.dynamic_controller_model = true;
aparams.max_admin_qsize = NVME_MAX_ADMIN_ENTRIES;
aparams.tcp.pda = 0;
aparams.tcp.header_digests = header_digests;
aparams.tcp.data_digests = data_digests;
aparams.tcp.maxh2cdata = maxh2cdata;
&aparams);
struct nvmf_association_params aparams;
memset(&aparams, 0, sizeof(aparams));
aparams.sq_flow_control = !flow_control_disable;
aparams.dynamic_controller_model = true;
aparams.max_admin_qsize = NVME_MAX_ADMIN_ENTRIES;
aparams.max_io_qsize = NVMF_MAX_IO_ENTRIES;
aparams.tcp.pda = 0;
aparams.tcp.header_digests = header_digests;
aparams.tcp.data_digests = data_digests;
aparams.tcp.maxh2cdata = maxh2cdata;
&aparams);
init_ctl_port(subnqn, &aparams);
struct nvmf_association_params aparams;
memset(&aparams, 0, sizeof(aparams));
aparams.sq_flow_control = !flow_control_disable;
tcp_association_params(&aparams);
na = nvmf_allocate_association(trtype, false, &aparams);
const struct nvmf_association_params *aparams =
static_cast<const nvmf_portal *>(portal)->aparams();
if (!aparams->sq_flow_control)
entry->aqsz = aparams->max_admin_qsize;