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48df39c133
Tridge, in rpc_epmapper.c there's a whole bunch of "return NT_STATUS_NOT_IMPLEMENTED". You told me that's wrong, you should generate the correct fault pdu. Or is epmapper special in that respect? Volker
338 lines
9.2 KiB
C
338 lines
9.2 KiB
C
/*
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Unix SMB/CIFS implementation.
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endpoint server for the epmapper pipe
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Copyright (C) Andrew Tridgell 2003
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program 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
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "includes.h"
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/* handle types for this module */
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enum handle_types {HTYPE_LOOKUP};
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/* a endpoint combined with an interface description */
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struct dcesrv_ep_iface {
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const char *name;
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struct dcesrv_ep_description ep_description;
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const char *uuid;
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uint32_t if_version;
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};
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/*
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simple routine to compare a GUID string to a GUID structure
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*/
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static int guid_cmp(TALLOC_CTX *mem_ctx, const struct GUID *guid, const char *uuid_str)
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{
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const char *s = GUID_string(mem_ctx, guid);
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if (!s || strcasecmp(s, uuid_str)) {
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return -1;
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}
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return 0;
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}
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/*
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fill a protocol tower
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*/
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static BOOL fill_protocol_tower(TALLOC_CTX *mem_ctx, struct epm_towers *twr,
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struct dcesrv_ep_iface *e)
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{
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twr->num_floors = 5;
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twr->floors = talloc_array_p(mem_ctx, struct epm_floor, 5);
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if (!twr->floors) {
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return False;
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}
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twr->floors[0].lhs.protocol = EPM_PROTOCOL_UUID;
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GUID_from_string(e->uuid, &twr->floors[0].lhs.info.uuid.uuid);
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twr->floors[0].lhs.info.uuid.version = e->if_version;
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twr->floors[0].rhs.rhs_data = data_blob_talloc_zero(mem_ctx, 2);
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/* encoded with NDR ... */
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twr->floors[1].lhs.protocol = EPM_PROTOCOL_UUID;
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GUID_from_string(NDR_GUID, &twr->floors[1].lhs.info.uuid.uuid);
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twr->floors[1].lhs.info.uuid.version = NDR_GUID_VERSION;
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twr->floors[1].rhs.rhs_data = data_blob_talloc_zero(mem_ctx, 2);
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/* on an RPC connection ... */
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twr->floors[2].lhs.protocol = EPM_PROTOCOL_NCACN_RPC_C;
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twr->floors[2].lhs.info.lhs_data = data_blob(NULL, 0);
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twr->floors[2].rhs.rhs_data = data_blob_talloc_zero(mem_ctx, 2);
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switch (e->ep_description.type) {
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case ENDPOINT_SMB:
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/* on a SMB pipe ... */
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twr->floors[3].lhs.protocol = EPM_PROTOCOL_NCACN_SMB;
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twr->floors[3].lhs.info.lhs_data = data_blob(NULL, 0);
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twr->floors[3].rhs.rhs_data.data = talloc_asprintf(mem_ctx, "\\PIPE\\%s",
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e->ep_description.info.smb_pipe);
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twr->floors[3].rhs.rhs_data.length = strlen(twr->floors[3].rhs.rhs_data.data)+1;
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/* on an NetBIOS link ... */
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twr->floors[4].lhs.protocol = EPM_PROTOCOL_NCACN_NETBIOS;
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twr->floors[4].lhs.info.lhs_data = data_blob(NULL, 0);
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twr->floors[4].rhs.rhs_data.data = talloc_asprintf(mem_ctx, "\\\\%s",
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lp_netbios_name());
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twr->floors[4].rhs.rhs_data.length = strlen(twr->floors[4].rhs.rhs_data.data)+1;
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break;
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case ENDPOINT_TCP:
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/* on a TCP connection ... */
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twr->floors[3].lhs.protocol = EPM_PROTOCOL_NCACN_TCP;
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twr->floors[3].lhs.info.lhs_data = data_blob(NULL, 0);
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twr->floors[3].rhs.rhs_data = data_blob_talloc(mem_ctx, NULL, 2);
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RSSVAL(twr->floors[3].rhs.rhs_data.data, 0, e->ep_description.info.tcp_port);
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/* on an IP link ... */
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twr->floors[4].lhs.protocol = EPM_PROTOCOL_NCACN_IP;
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twr->floors[4].lhs.info.lhs_data = data_blob(NULL, 0);
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twr->floors[4].rhs.rhs_data = data_blob_talloc_zero(mem_ctx, 4);
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/* TODO: we should fill in our IP address here as a hint to the
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client */
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break;
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}
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return True;
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}
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/*
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build a list of all interfaces handled by all endpoint servers
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*/
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static uint32_t build_ep_list(TALLOC_CTX *mem_ctx,
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struct dcesrv_endpoint *endpoint_list,
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struct dcesrv_ep_iface **eps)
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{
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struct dcesrv_endpoint *d;
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uint32_t total = 0;
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(*eps) = NULL;
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for (d=endpoint_list; d; d=d->next) {
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struct dcesrv_if_list *iface;
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for (iface=d->interface_list;iface;iface=iface->next) {
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(*eps) = talloc_realloc_p(mem_ctx, *eps,
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struct dcesrv_ep_iface,
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total + 1);
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if (!*eps) {
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return 0;
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}
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(*eps)[total].name = iface->iface.ndr->name;
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(*eps)[total].uuid = iface->iface.ndr->uuid;
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(*eps)[total].if_version = iface->iface.ndr->if_version;
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(*eps)[total].ep_description = d->ep_description;
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total++;
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}
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}
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return total;
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}
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static NTSTATUS epm_Insert(struct dcesrv_call_state *dce_call, TALLOC_CTX *mem_ctx,
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struct epm_Insert *r)
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{
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return NT_STATUS_NOT_IMPLEMENTED;
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}
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static NTSTATUS epm_Delete(struct dcesrv_call_state *dce_call, TALLOC_CTX *mem_ctx,
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struct epm_Delete *r)
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{
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return NT_STATUS_NOT_IMPLEMENTED;
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}
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/*
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implement epm_Lookup. This call is used to enumerate the interfaces
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available on a rpc server
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*/
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static NTSTATUS epm_Lookup(struct dcesrv_call_state *dce_call, TALLOC_CTX *mem_ctx,
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struct epm_Lookup *r)
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{
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struct dcesrv_handle *h;
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struct rpc_eps {
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uint32_t count;
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struct dcesrv_ep_iface *e;
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} *eps;
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uint32_t num_ents;
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int i;
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h = dcesrv_handle_fetch(dce_call->conn, r->in.entry_handle, HTYPE_LOOKUP);
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if (!h) {
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return NT_STATUS_INVALID_HANDLE;
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}
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eps = h->data;
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if (!eps) {
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/* this is the first call - fill the list. Subsequent calls
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will feed from this list, stored in the handle */
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eps = talloc_p(h->mem_ctx, struct rpc_eps);
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if (!eps) {
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return NT_STATUS_NO_MEMORY;
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}
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h->data = eps;
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eps->count = build_ep_list(h->mem_ctx, dce_call->conn->dce_ctx->endpoint_list, &eps->e);
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}
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/* return the next N elements */
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num_ents = r->in.max_ents;
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if (num_ents > eps->count) {
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num_ents = eps->count;
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}
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*r->out.entry_handle = h->wire_handle;
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r->out.num_ents = num_ents;
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r->out.status = 0;
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if (num_ents == 0) {
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r->out.entries = NULL;
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r->out.status = EPMAPPER_STATUS_NO_MORE_ENTRIES;
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ZERO_STRUCTP(r->out.entry_handle);
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dcesrv_handle_destroy(dce_call->conn, h);
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return NT_STATUS_OK;
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}
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r->out.entries = talloc_array_p(mem_ctx, struct epm_entry_t, num_ents);
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if (!r->out.entries) {
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return NT_STATUS_NO_MEMORY;
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}
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for (i=0;i<num_ents;i++) {
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ZERO_STRUCT(r->out.entries[i].object);
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r->out.entries[i].annotation = eps->e[i].name;
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r->out.entries[i].tower = talloc_p(mem_ctx, struct epm_twr_t);
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if (!r->out.entries[i].tower) {
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return NT_STATUS_NO_MEMORY;
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}
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if (!fill_protocol_tower(mem_ctx, &r->out.entries[i].tower->towers, &eps->e[i])) {
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return NT_STATUS_NO_MEMORY;
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}
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}
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eps->count -= num_ents;
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eps->e += num_ents;
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return NT_STATUS_OK;
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}
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/*
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implement epm_Map. This is used to find the specific endpoint to talk to given
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a generic protocol tower
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*/
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static NTSTATUS epm_Map(struct dcesrv_call_state *dce_call, TALLOC_CTX *mem_ctx,
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struct epm_Map *r)
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{
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uint32_t count;
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int i;
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struct dcesrv_ep_iface *eps;
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struct epm_floor *floors;
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count = build_ep_list(mem_ctx, dce_call->conn->dce_ctx->endpoint_list, &eps);
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ZERO_STRUCT(*r->out.entry_handle);
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r->out.num_towers = 1;
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r->out.status = 0;
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r->out.towers = talloc_p(mem_ctx, struct epm_twr_p_t);
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if (!r->out.towers) {
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return NT_STATUS_NO_MEMORY;
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}
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r->out.towers->twr = talloc_p(mem_ctx, struct epm_twr_t);
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if (!r->out.towers->twr) {
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return NT_STATUS_NO_MEMORY;
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}
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if (!r->in.map_tower || r->in.max_towers == 0 ||
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r->in.map_tower->towers.num_floors != 5) {
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goto failed;
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}
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floors = r->in.map_tower->towers.floors;
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if (floors[0].lhs.protocol != EPM_PROTOCOL_UUID ||
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floors[1].lhs.protocol != EPM_PROTOCOL_UUID ||
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guid_cmp(mem_ctx, &floors[1].lhs.info.uuid.uuid, NDR_GUID) != 0 ||
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floors[1].lhs.info.uuid.version != NDR_GUID_VERSION ||
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floors[2].lhs.protocol != EPM_PROTOCOL_NCACN_RPC_C) {
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goto failed;
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}
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for (i=0;i<count;i++) {
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if (guid_cmp(mem_ctx, &floors[0].lhs.info.uuid.uuid, eps[i].uuid) != 0 ||
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floors[0].lhs.info.uuid.version != eps[i].if_version) {
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continue;
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}
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switch (eps[i].ep_description.type) {
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case ENDPOINT_SMB:
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if (floors[3].lhs.protocol != EPM_PROTOCOL_NCACN_SMB ||
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floors[4].lhs.protocol != EPM_PROTOCOL_NCACN_NETBIOS) {
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continue;
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}
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break;
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case ENDPOINT_TCP:
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if (floors[3].lhs.protocol != EPM_PROTOCOL_NCACN_TCP ||
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floors[4].lhs.protocol != EPM_PROTOCOL_NCACN_IP) {
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continue;
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}
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break;
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}
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fill_protocol_tower(mem_ctx, &r->out.towers->twr->towers, &eps[i]);
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r->out.towers->twr->tower_length = 0;
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return NT_STATUS_OK;
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}
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failed:
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r->out.num_towers = 0;
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r->out.status = EPMAPPER_STATUS_NO_MORE_ENTRIES;
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r->out.towers->twr = NULL;
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return NT_STATUS_OK;
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}
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static NTSTATUS epm_LookupHandleFree(struct dcesrv_call_state *dce_call, TALLOC_CTX *mem_ctx,
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struct epm_LookupHandleFree *r)
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{
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return NT_STATUS_NOT_IMPLEMENTED;
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}
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static NTSTATUS epm_InqObject(struct dcesrv_call_state *dce_call, TALLOC_CTX *mem_ctx,
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struct epm_InqObject *r)
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{
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return NT_STATUS_NOT_IMPLEMENTED;
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}
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static NTSTATUS epm_MgmtDelete(struct dcesrv_call_state *dce_call, TALLOC_CTX *mem_ctx,
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struct epm_MgmtDelete *r)
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{
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return NT_STATUS_NOT_IMPLEMENTED;
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}
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static NTSTATUS epm_MapAuth(struct dcesrv_call_state *dce_call, TALLOC_CTX *mem_ctx,
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struct epm_MapAuth *r)
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{
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return NT_STATUS_NOT_IMPLEMENTED;
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}
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/* include the generated boilerplate */
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#include "librpc/gen_ndr/ndr_epmapper_s.c"
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