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This commit is based on the s390-tools-1.39.0 version. Changes on top of s390-tools-1.39.0: - Add MIT license to all source files - Add LICENSE file - Transform REAMDE to README.md (markdown) - Add AUTHORS.md file - Add CONTRIBUTING.md file - Move changelog from README to CHANGELOG.md file Reviewed-by: Stefan Haberland <sth@linux.vnet.ibm.com> Signed-off-by: Michael Holzheu <holzheu@linux.vnet.ibm.com>
575 lines
14 KiB
C++
575 lines
14 KiB
C++
/*
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* FCP report generators
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*
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* Utility classes to get indices for collapsing data by
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* variable criteria
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*
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* Copyright IBM Corp. 2008, 2017
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*
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* s390-tools is free software; you can redistribute it and/or modify
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* it under the terms of the MIT license. See LICENSE for details.
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*/
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#include <string.h>
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#include <assert.h>
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#include "ziorep_collapser.hpp"
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extern "C" {
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#include "lib/zt_common.h"
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#include "ziomon_tools.h"
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}
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extern const char *toolname;
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extern int verbose;
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Collapser::Collapser(Aggregator criterion)
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: m_criterion(criterion) {
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}
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Collapser::~Collapser()
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{
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}
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Aggregator Collapser::get_criterion() const
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{
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return m_criterion;
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}
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void Collapser::add_to_index(struct ident_mapping *new_mapping) const
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{
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list<struct ident_mapping>::iterator i;
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for (i = m_idents.begin(); i != m_idents.end()
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&& compare_hctl_idents(&new_mapping->ident, &(*i).ident) >= 0;
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++i) ;
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if (i == m_idents.end() || compare_hctl_idents(&new_mapping->ident, &(*i).ident) != 0)
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m_idents.insert(i, *new_mapping);
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}
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void Collapser::add_to_index(struct device_mapping *new_mapping) const
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{
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list<struct device_mapping>::iterator i;
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for (i = m_devices.begin(); i != m_devices.end()
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&& new_mapping->device >= (*i).device;
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++i) ;
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if (i == m_devices.end() || (*i).device != new_mapping->device)
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m_devices.insert(i, *new_mapping);
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}
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void Collapser::add_to_index(struct host_id_mapping *new_mapping) const
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{
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list<struct host_id_mapping>::iterator i;
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for (i = m_host_ids.begin(); i != m_host_ids.end()
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&& new_mapping->h >= (*i).h;
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++i) ;
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if (i == m_host_ids.end() || (*i).h != new_mapping->h)
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m_host_ids.insert(i, *new_mapping);
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}
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int Collapser::lookup_index(struct hctl_ident *identifier) const
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{
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int rc;
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for (list<struct ident_mapping>::const_iterator i = m_idents.begin();
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i != m_idents.end() && (rc = compare_hctl_idents(identifier, &(*i).ident)) >= 0; ++i ) {
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if (rc == 0)
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return (*i).idx;
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}
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return -1;
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}
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int Collapser::lookup_index(__u32 device) const
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{
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for (list<struct device_mapping>::const_iterator i = m_devices.begin();
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i != m_devices.end() && device >= (*i).device; ++i ) {
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if ((*i).device == device)
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return (*i).idx;
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}
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return -1;
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}
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int Collapser::lookup_index_by_host_id(__u32 h) const
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{
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for (list<struct host_id_mapping>::const_iterator i = m_host_ids.begin();
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i != m_host_ids.end() && h >= (*i).h; ++i ) {
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if ((*i).h == h)
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return (*i).idx;
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}
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return -1;
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}
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NoopCollapser::NoopCollapser()
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: Collapser(none) {
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m_criterion = none;
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}
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unsigned int NoopCollapser::get_index(struct hctl_ident *identifier) const
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{
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int rc;
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rc = lookup_index(identifier);
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if (rc < 0) {
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struct ident_mapping new_mapping;
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new_mapping.ident = *identifier;
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new_mapping.idx = m_idents.size();
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add_to_index(&new_mapping);
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rc = new_mapping.idx;
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}
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return rc;
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}
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unsigned int NoopCollapser::get_index(__u32 device) const
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{
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int rc;
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rc = lookup_index(device);
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if (rc < 0) {
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struct device_mapping new_mapping;
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new_mapping.device = device;
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new_mapping.idx = m_devices.size();
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add_to_index(&new_mapping);
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rc = new_mapping.idx;
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}
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return rc;
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}
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unsigned int NoopCollapser::get_index_by_host_id(__u32 h) const
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{
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int rc;
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rc = lookup_index_by_host_id(h);
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if (rc < 0) {
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struct host_id_mapping new_mapping;
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new_mapping.h = h;
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new_mapping.idx = m_host_ids.size();
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add_to_index(&new_mapping);
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rc = new_mapping.idx;
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}
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return rc;
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}
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TotalCollapser::TotalCollapser()
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: Collapser(all)
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{
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}
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unsigned int TotalCollapser::get_index(struct hctl_ident* UNUSED(identifier)) const
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{
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return 0;
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}
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unsigned int TotalCollapser::get_index(__u32 UNUSED(device)) const
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{
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return 0;
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}
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unsigned int TotalCollapser::get_index_by_host_id(__u32 UNUSED(h)) const
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{
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return 0;
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}
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AggregationCollapser::AggregationCollapser(ConfigReader &cfg,
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Aggregator &criterion, DeviceFilter &dev_filt, int *rc)
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: Collapser(criterion)
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{
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*rc = 0;
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/*
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* setup everything so we won't ever have a miss when looking up
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*/
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verbose_msg("AggregationCollapser initializing\n");
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switch(m_criterion) {
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case chpid:
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setup_by_chpid(cfg, dev_filt);
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break;
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case devno:
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setup_by_devno(cfg, dev_filt);
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break;
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case wwpn:
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setup_by_wwpn(cfg, dev_filt);
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break;
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case multipath_device:
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*rc = setup_by_multipath(cfg, dev_filt);
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break;
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default:
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assert(false);
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}
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verbose_msg("AggregationCollapser type %d constructed, mapping by:\n", m_criterion);
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verbose_msg(" %zu host ids\n", m_host_ids.size());
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verbose_msg(" %zu hctl devices\n", m_idents.size());
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verbose_msg(" %zu devices\n", m_devices.size());
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}
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int AggregationCollapser::get_index_u32(list<__u32> &lst, __u32 chpid)
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{
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int idx = 0;
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for (list<__u32>::const_iterator i = lst.begin();
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i != lst.end(); ++i, ++idx) {
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if (chpid == *i)
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return idx;
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}
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return -1;
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}
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int AggregationCollapser::get_index_u64(list<__u64> &lst, __u64 chpid)
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{
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int idx = 0;
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for (list<__u64>::const_iterator i = lst.begin();
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i != lst.end(); ++i, ++idx) {
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if (chpid == *i)
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return idx;
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}
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return -1;
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}
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void AggregationCollapser::setup_by_chpid(ConfigReader &cfg,
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DeviceFilter &dev_filt)
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{
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list<__u32> mms;
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list<struct hctl_ident> idents;
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list<__u32> host_ids;
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struct host_id_mapping host_id_mapping;
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struct device_mapping dev_mapping;
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struct ident_mapping ide_mapping;
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__u32 chpid;
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int rc = 0;
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// this is our master list for collapsing
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dev_filt.get_eligible_chpids(cfg, m_reference_values_u32);
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cfg.get_unique_mms(mms);
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for (list<__u32>::const_iterator i = mms.begin();
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i != mms.end(); ++i) {
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if (!dev_filt.is_eligible_mm(*i))
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continue;
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dev_mapping.device = *i;
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dev_mapping.idx = -1;
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chpid = cfg.get_chpid_by_mm_internal(*i, &rc);
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assert(rc == 0);
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dev_mapping.idx = get_index_u32(m_reference_values_u32, chpid);
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assert(dev_mapping.idx >= 0);
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add_to_index(&dev_mapping);
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vverbose_msg(" map mm %d to chpid %x (index %d)\n", *i,
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chpid, dev_mapping.idx);
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}
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cfg.get_unique_host_ids(host_ids);
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for (list<__u32>::const_iterator i = host_ids.begin();
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i != host_ids.end(); ++i) {
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if (!dev_filt.is_eligible_host_id(*i))
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continue;
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host_id_mapping.h = *i;
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host_id_mapping.idx = -1;
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chpid = cfg.get_chpid_by_host_id(*i, &rc);
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assert(rc == 0);
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host_id_mapping.idx = get_index_u32(m_reference_values_u32,
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chpid);
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assert(host_id_mapping.idx >= 0);
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add_to_index(&host_id_mapping);
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vverbose_msg(" map host id %d to chpid %x (index %d)\n", *i,
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chpid, host_id_mapping.idx);
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}
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cfg.get_unique_devices(idents);
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for (list<struct hctl_ident>::iterator i = idents.begin();
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i != idents.end(); ++i) {
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if (!dev_filt.is_eligible_ident(&(*i)))
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continue;
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ide_mapping.ident = *i;
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ide_mapping.idx = -1;
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chpid = cfg.get_chpid_by_ident(&(*i), &rc);
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assert(rc == 0);
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ide_mapping.idx = get_index_u32(m_reference_values_u32, chpid);
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assert(ide_mapping.idx >= 0);
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add_to_index(&ide_mapping);
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vverbose_msg(" map device [%d:%d:%d:%d] to chpid %x (index %d)\n",
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(*i).host, (*i).channel, (*i).target, (*i).lun,
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chpid, ide_mapping.idx);
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}
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}
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void AggregationCollapser::setup_by_devno(ConfigReader &cfg,
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DeviceFilter &dev_filt)
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{
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list<__u32> mms;
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list<struct hctl_ident> idents;
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list<__u32> host_ids;
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struct host_id_mapping host_id_mapping;
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struct device_mapping dev_mapping;
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struct ident_mapping ide_mapping;
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__u32 devno;
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int rc = 0;
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/* this is our master list for collapsing
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*/
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dev_filt.get_eligible_devnos(cfg, m_reference_values_u32);
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cfg.get_unique_mms(mms);
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for (list<__u32>::const_iterator i = mms.begin();
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i != mms.end(); ++i) {
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if (!dev_filt.is_eligible_mm(*i))
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continue;
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dev_mapping.device = *i;
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dev_mapping.idx = -1;
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devno = cfg.get_devno_by_mm_internal(*i, &rc);
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assert(rc == 0);
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dev_mapping.idx = get_index_u32(m_reference_values_u32, devno);
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assert(dev_mapping.idx >= 0);
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add_to_index(&dev_mapping);
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vverbose_msg(" map mm %d to bus id %x.%x.%04x (index %d)\n", *i,
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ZIOREP_BUSID_UNPACKED(devno), dev_mapping.idx);
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}
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cfg.get_unique_host_ids(host_ids);
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for (list<__u32>::const_iterator i = host_ids.begin();
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i != host_ids.end(); ++i) {
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if (!dev_filt.is_eligible_host_id(*i))
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continue;
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host_id_mapping.h = *i;
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host_id_mapping.idx = -1;
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devno = cfg.get_devno_by_host_id(*i, &rc);
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assert(rc == 0);
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host_id_mapping.idx = get_index_u32(m_reference_values_u32,
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devno);
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assert(host_id_mapping.idx >= 0);
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add_to_index(&host_id_mapping);
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vverbose_msg(" map host id %d to bus id %x.%x.%04x"
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" (index %d)\n", *i, ZIOREP_BUSID_UNPACKED(devno),
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host_id_mapping.idx);
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}
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cfg.get_unique_devices(idents);
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for (list<struct hctl_ident>::iterator i = idents.begin();
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i != idents.end(); ++i) {
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if (!dev_filt.is_eligible_ident(&(*i)))
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continue;
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ide_mapping.ident = *i;
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ide_mapping.idx = -1;
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devno = cfg.get_devno_by_ident(&(*i), &rc);
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assert(rc == 0);
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ide_mapping.idx = get_index_u32(m_reference_values_u32, devno);
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assert(ide_mapping.idx >= 0);
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add_to_index(&ide_mapping);
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vverbose_msg(" map device [%d:%d:%d:%d] to bus id %x.%x.%04x"
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" (index %d)\n",
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(*i).host, (*i).channel, (*i).target, (*i).lun,
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ZIOREP_BUSID_UNPACKED(devno), ide_mapping.idx);
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}
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}
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void AggregationCollapser::setup_by_wwpn(ConfigReader &cfg,
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DeviceFilter &dev_filt)
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{
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list<__u32> mms;
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list<struct hctl_ident> idents;
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struct device_mapping dev_mapping;
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struct ident_mapping ide_mapping;
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__u64 wwpn;
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int rc = 0;
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// this is our master list for collapsing
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dev_filt.get_eligible_wwpns(cfg, m_reference_values_u64);
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cfg.get_unique_mms(mms);
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for (list<__u32>::const_iterator i = mms.begin();
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i != mms.end(); ++i) {
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if (!dev_filt.is_eligible_mm(*i))
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continue;
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dev_mapping.device = *i;
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dev_mapping.idx = -1;
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wwpn = cfg.get_wwpn_by_mm_internal(*i, &rc);
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assert(rc == 0);
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dev_mapping.idx = get_index_u64(m_reference_values_u64, wwpn);
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assert(dev_mapping.idx >= 0);
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add_to_index(&dev_mapping);
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vverbose_msg(" map mm %d to wwpn %016Lx (index %d)\n", *i,
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(long long unsigned int)wwpn, dev_mapping.idx);
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}
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cfg.get_unique_devices(idents);
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for (list<struct hctl_ident>::iterator i = idents.begin();
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i != idents.end(); ++i) {
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if (!dev_filt.is_eligible_ident(&(*i)))
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continue;
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ide_mapping.ident = *i;
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ide_mapping.idx = -1;
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wwpn = cfg.get_wwpn_by_ident(&(*i), &rc);
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assert(rc == 0);
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ide_mapping.idx = get_index_u64(m_reference_values_u64, wwpn);
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assert(ide_mapping.idx >= 0);
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add_to_index(&ide_mapping);
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vverbose_msg(" map device [%d:%d:%d:%d] to wwpn %016Lx"
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" (index %d)\n",
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(*i).host, (*i).channel, (*i).target, (*i).lun,
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(long long unsigned int)wwpn, ide_mapping.idx);
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}
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}
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int AggregationCollapser::setup_by_multipath(ConfigReader &cfg,
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DeviceFilter &dev_filt)
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{
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list<__u32> mms;
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list<struct hctl_ident> idents;
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struct device_mapping dev_mapping;
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struct ident_mapping ide_mapping;
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__u32 mp_mm;
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int rc = 0, grc = 0;
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// this is our master list for collapsing
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dev_filt.get_eligible_mp_mms(cfg, m_reference_values_u32);
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if (m_reference_values_u32.size() == 0) {
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fprintf(stderr, "%s: No multipath devices in configuration"
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" found. Aggregation by multipath devices not"
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" possible with this data.\n", toolname);
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return -1;
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}
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cfg.get_unique_mms(mms);
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for (list<__u32>::const_iterator i = mms.begin();
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i != mms.end(); ++i) {
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if (!dev_filt.is_eligible_mm(*i))
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continue;
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dev_mapping.device = *i;
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dev_mapping.idx = -1;
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mp_mm = cfg.get_mp_mm_by_mm_internal(*i, &rc);
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if (mp_mm == 0) {
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fprintf(stderr, "%s: Device %s is not in a multipath "
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"group. Please remove via command line options "
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"and try again.\n", toolname, cfg.get_dev_by_mm_internal(*i, &rc));
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grc = -1;
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continue;
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}
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dev_mapping.idx = get_index_u32(m_reference_values_u32, mp_mm);
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assert(dev_mapping.idx >= 0);
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add_to_index(&dev_mapping);
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vverbose_msg(" map mm %d to mp_mm %x (index %d)\n", *i,
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mp_mm, dev_mapping.idx);
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}
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if (grc)
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return grc;
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cfg.get_unique_devices(idents);
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for (list<struct hctl_ident>::iterator i = idents.begin();
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i != idents.end(); ++i) {
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if (!dev_filt.is_eligible_ident(&(*i)))
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continue;
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ide_mapping.ident = *i;
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ide_mapping.idx = -1;
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mp_mm = cfg.get_mp_mm_by_ident(&(*i), &rc);
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assert(rc == 0);
|
|
ide_mapping.idx = get_index_u32(m_reference_values_u32, mp_mm);
|
|
assert(ide_mapping.idx >= 0);
|
|
add_to_index(&ide_mapping);
|
|
vverbose_msg(" map device [%d:%d:%d:%d] to mp_mm %x"
|
|
" (index %d)\n",
|
|
(*i).host, (*i).channel, (*i).target, (*i).lun,
|
|
mp_mm, ide_mapping.idx);
|
|
}
|
|
|
|
return grc;
|
|
}
|
|
|
|
|
|
unsigned int AggregationCollapser::get_index(struct hctl_ident *identifier) const
|
|
{
|
|
int rc = lookup_index(identifier);
|
|
|
|
assert(rc >= 0);
|
|
|
|
return rc;
|
|
}
|
|
|
|
|
|
unsigned int AggregationCollapser::get_index(__u32 device) const
|
|
{
|
|
int rc = lookup_index(device);
|
|
|
|
assert(rc >= 0);
|
|
|
|
return rc;
|
|
}
|
|
|
|
|
|
unsigned int AggregationCollapser::get_index_by_host_id(__u32 h) const
|
|
{
|
|
int rc;
|
|
|
|
// since a host_id can host multiple wwpns and multipath devices,
|
|
// no mapping is possible in these cases.
|
|
assert(m_criterion != wwpn);
|
|
assert(m_criterion != multipath_device);
|
|
|
|
rc = lookup_index_by_host_id(h);
|
|
|
|
assert(rc >= 0);
|
|
|
|
return rc;
|
|
}
|
|
|
|
|
|
const list<__u32>& AggregationCollapser::get_reference_chpids() const
|
|
{
|
|
return m_reference_values_u32;
|
|
}
|
|
|
|
|
|
const list<__u64>& AggregationCollapser::get_reference_wwpns() const
|
|
{
|
|
return m_reference_values_u64;
|
|
}
|
|
|
|
|
|
const list<__u32>& AggregationCollapser::get_reference_devnos() const
|
|
{
|
|
return m_reference_values_u32;
|
|
}
|
|
|
|
|
|
const list<__u32>& AggregationCollapser::get_reference_mp_mms() const
|
|
{
|
|
return m_reference_values_u32;
|
|
}
|
|
|
|
|
|
|