e3d8f1e6a6
While creating TX, Rx, CQ rings use cached DB address instead of getting it from the PCI memory resource. Signed-off-by: Ajit Khaparde <ajit.khaparde@broadcom.com>
200 lines
5.4 KiB
C
200 lines
5.4 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(c) 2014-2018 Broadcom
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* All rights reserved.
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*/
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#include <rte_malloc.h>
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#include "bnxt.h"
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#include "bnxt_cpr.h"
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#include "bnxt_hwrm.h"
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#include "bnxt_ring.h"
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#include "hsi_struct_def_dpdk.h"
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/*
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* Async event handling
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*/
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void bnxt_handle_async_event(struct bnxt *bp,
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struct cmpl_base *cmp)
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{
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struct hwrm_async_event_cmpl *async_cmp =
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(struct hwrm_async_event_cmpl *)cmp;
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uint16_t event_id = rte_le_to_cpu_16(async_cmp->event_id);
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/* TODO: HWRM async events are not defined yet */
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/* Needs to handle: link events, error events, etc. */
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switch (event_id) {
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case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_LINK_STATUS_CHANGE:
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case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_LINK_SPEED_CHANGE:
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case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_LINK_SPEED_CFG_CHANGE:
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bnxt_link_update_op(bp->eth_dev, 1);
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break;
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case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_PF_DRVR_UNLOAD:
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PMD_DRV_LOG(INFO, "Async event: PF driver unloaded\n");
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break;
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case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_VF_CFG_CHANGE:
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PMD_DRV_LOG(INFO, "Async event: VF config changed\n");
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break;
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case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_PORT_CONN_NOT_ALLOWED:
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PMD_DRV_LOG(INFO, "Port conn async event\n");
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break;
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default:
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PMD_DRV_LOG(INFO, "handle_async_event id = 0x%x\n", event_id);
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break;
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}
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}
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void bnxt_handle_fwd_req(struct bnxt *bp, struct cmpl_base *cmpl)
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{
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struct hwrm_exec_fwd_resp_input *fwreq;
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struct hwrm_fwd_req_cmpl *fwd_cmpl = (struct hwrm_fwd_req_cmpl *)cmpl;
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struct input *fwd_cmd;
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uint16_t fw_vf_id;
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uint16_t vf_id;
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uint16_t req_len;
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int rc;
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if (bp->pf.active_vfs <= 0) {
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PMD_DRV_LOG(ERR, "Forwarded VF with no active VFs\n");
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return;
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}
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/* Qualify the fwd request */
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fw_vf_id = rte_le_to_cpu_16(fwd_cmpl->source_id);
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vf_id = fw_vf_id - bp->pf.first_vf_id;
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req_len = (rte_le_to_cpu_16(fwd_cmpl->req_len_type) &
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HWRM_FWD_REQ_CMPL_REQ_LEN_MASK) >>
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HWRM_FWD_REQ_CMPL_REQ_LEN_SFT;
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if (req_len > sizeof(fwreq->encap_request))
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req_len = sizeof(fwreq->encap_request);
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/* Locate VF's forwarded command */
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fwd_cmd = (struct input *)bp->pf.vf_info[vf_id].req_buf;
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if (fw_vf_id < bp->pf.first_vf_id ||
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fw_vf_id >= (bp->pf.first_vf_id) + bp->pf.active_vfs) {
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PMD_DRV_LOG(ERR,
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"FWD req's source_id 0x%x out of range 0x%x - 0x%x (%d %d)\n",
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fw_vf_id, bp->pf.first_vf_id,
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(bp->pf.first_vf_id) + bp->pf.active_vfs - 1,
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bp->pf.first_vf_id, bp->pf.active_vfs);
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goto reject;
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}
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if (bnxt_rcv_msg_from_vf(bp, vf_id, fwd_cmd) == true) {
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/*
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* In older firmware versions, the MAC had to be all zeros for
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* the VF to set it's MAC via hwrm_func_vf_cfg. Set to all
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* zeros if it's being configured and has been ok'd by caller.
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*/
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if (fwd_cmd->req_type == HWRM_FUNC_VF_CFG) {
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struct hwrm_func_vf_cfg_input *vfc = (void *)fwd_cmd;
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if (vfc->enables &
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HWRM_FUNC_VF_CFG_INPUT_ENABLES_DFLT_MAC_ADDR) {
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bnxt_hwrm_func_vf_mac(bp, vf_id,
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(const uint8_t *)"\x00\x00\x00\x00\x00");
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}
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}
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if (fwd_cmd->req_type == HWRM_CFA_L2_SET_RX_MASK) {
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struct hwrm_cfa_l2_set_rx_mask_input *srm =
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(void *)fwd_cmd;
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srm->vlan_tag_tbl_addr = rte_cpu_to_le_64(0);
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srm->num_vlan_tags = rte_cpu_to_le_32(0);
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srm->mask &= ~rte_cpu_to_le_32(
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HWRM_CFA_L2_SET_RX_MASK_INPUT_MASK_VLANONLY |
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HWRM_CFA_L2_SET_RX_MASK_INPUT_MASK_VLAN_NONVLAN |
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HWRM_CFA_L2_SET_RX_MASK_INPUT_MASK_ANYVLAN_NONVLAN);
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}
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/* Forward */
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rc = bnxt_hwrm_exec_fwd_resp(bp, fw_vf_id, fwd_cmd, req_len);
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if (rc) {
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PMD_DRV_LOG(ERR,
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"Failed to send FWD req VF 0x%x, type 0x%x.\n",
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fw_vf_id - bp->pf.first_vf_id,
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rte_le_to_cpu_16(fwd_cmd->req_type));
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}
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return;
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}
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reject:
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rc = bnxt_hwrm_reject_fwd_resp(bp, fw_vf_id, fwd_cmd, req_len);
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if (rc) {
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PMD_DRV_LOG(ERR,
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"Failed to send REJECT req VF 0x%x, type 0x%x.\n",
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fw_vf_id - bp->pf.first_vf_id,
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rte_le_to_cpu_16(fwd_cmd->req_type));
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}
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return;
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}
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/* For the default completion ring only */
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int bnxt_alloc_def_cp_ring(struct bnxt *bp)
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{
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struct bnxt_cp_ring_info *cpr = bp->def_cp_ring;
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struct bnxt_ring *cp_ring = cpr->cp_ring_struct;
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int rc;
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rc = bnxt_hwrm_ring_alloc(bp, cp_ring,
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HWRM_RING_ALLOC_INPUT_RING_TYPE_L2_CMPL,
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0, HWRM_NA_SIGNATURE,
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HWRM_NA_SIGNATURE);
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if (rc)
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goto err_out;
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cpr->cp_doorbell = (char *)bp->doorbell_base;
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B_CP_DIS_DB(cpr, cpr->cp_raw_cons);
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if (BNXT_PF(bp))
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rc = bnxt_hwrm_func_cfg_def_cp(bp);
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else
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rc = bnxt_hwrm_vf_func_cfg_def_cp(bp);
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err_out:
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return rc;
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}
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void bnxt_free_def_cp_ring(struct bnxt *bp)
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{
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struct bnxt_cp_ring_info *cpr = bp->def_cp_ring;
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if (cpr == NULL)
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return;
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bnxt_free_ring(cpr->cp_ring_struct);
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cpr->cp_ring_struct = NULL;
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rte_free(cpr->cp_ring_struct);
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rte_free(cpr);
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bp->def_cp_ring = NULL;
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}
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/* For the default completion ring only */
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int bnxt_init_def_ring_struct(struct bnxt *bp, unsigned int socket_id)
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{
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struct bnxt_cp_ring_info *cpr;
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struct bnxt_ring *ring;
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cpr = rte_zmalloc_socket("cpr",
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sizeof(struct bnxt_cp_ring_info),
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RTE_CACHE_LINE_SIZE, socket_id);
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if (cpr == NULL)
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return -ENOMEM;
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bp->def_cp_ring = cpr;
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ring = rte_zmalloc_socket("bnxt_cp_ring_struct",
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sizeof(struct bnxt_ring),
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RTE_CACHE_LINE_SIZE, socket_id);
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if (ring == NULL)
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return -ENOMEM;
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cpr->cp_ring_struct = ring;
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ring->bd = (void *)cpr->cp_desc_ring;
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ring->bd_dma = cpr->cp_desc_mapping;
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ring->ring_size = rte_align32pow2(DEFAULT_CP_RING_SIZE);
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ring->ring_mask = ring->ring_size - 1;
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ring->vmem_size = 0;
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ring->vmem = NULL;
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return 0;
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}
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