Exemplo n.º 1
0
ucli_status_t
vt_ucli_module__ppedump__(ucli_context_t* uc)
{
    int count = 0;

    UCLI_COMMAND_INFO(uc,
                      "ppedump", 1,
                      "$summary#PPE dump all packets on the given VPI."
                      "$args#<vpi_spec>");

    UCLI_ARGPARSE_OR_RETURN(uc, "{vpi}", &vtc->vpi);

    while(1) {
        if(vpi_recv__(uc, vtc) > 0) {
            ppe_packet_t ppep;
            ppe_packet_init(&ppep, vtc->data, vtc->size);
            if(ppe_parse(&ppep) < 0) {
                ucli_printf(uc, "[%.3d] recv(%{vpi}):\n%{data}\n",
                            count, vtc->vpi, vtc->data, vtc->size);
            }
            else {
                ucli_printf(uc, "[%.3d] recv(%{vpi}):\n",
                            count, vtc->vpi);
                ppe_packet_dump(&ppep, &uc->pvs);
            }
            count++;
        }
        else {
            break;
        }
    }
    return UCLI_STATUS_OK;
}
Exemplo n.º 2
0
static ucli_status_t
ppe_ucli_utm__format__(ucli_context_t* uc)
{
    ppe_header_t header; 

    UCLI_COMMAND_INFO(uc, 
                      "format", 1, 
                      "Change the format of the current packet.");

    UCLI_ARGPARSE_OR_RETURN(uc, "{ppe_header}", &header); 
    if(header == PPE_HEADER_8021Q || header == PPE_HEADER_ETHERII) {
        int rv; 
        rv = ppe_packet_format_set(&ppec->ppep, header); 
        if(rv < 0) {
            return ucli_error(uc, "packet format conversion failed."); 
        }
        if(rv == 1) { 
            aim_free(ppec->ppep._data); 
        }
    }
    else {
        return ucli_error(uc, "%{ppe_header} is not a valid conversion.", 
                          header); 
    }
    return UCLI_STATUS_OK; 
}
Exemplo n.º 3
0
ucli_status_t
vt_ucli_module__echo__(ucli_context_t* uc)
{
    UCLI_COMMAND_INFO(uc,
                      "echo", 2,
                      "$summary#Send a VPI echo request."
                      "$args#<vpi_spec> <data>");


    UCLI_ARGPARSE_OR_RETURN(uc, "{vpi}{idata}",
                            &vtc->vpi, vtc->data, &vtc->size);
    ucli_printf(uc, "sending echo request.\n");
    if(vpi_ioctl(vtc->vpi, VPI_PROTOCOL_OPCODE_ECHO, vtc->data, vtc->size) < 0) {
        return ucli_error(uc, "vpi_ioctl() failed.");
    }

    ucli_printf(uc, "waiting for response.\n");
    memset(vtc->data, 0, sizeof(vtc->data));
    if(vpi_recv__(uc, vtc) > 0) {
        ucli_printf(uc, "recv(%{vpi}):\n%{data}",
                    vtc->vpi, vtc->data, vtc->size);
        return UCLI_STATUS_OK;
    }
    else {
        return UCLI_STATUS_E_ERROR;
    }
}
Exemplo n.º 4
0
static ucli_status_t
ppe_ucli_utm__data__(ucli_context_t* uc)
{
    uint8_t* data; 
    int size; 

    UCLI_COMMAND_INFO(uc, 
                      "data", 1, 
                      "Assign packet data."); 

    
    UCLI_ARGPARSE_OR_RETURN(uc, "{data}", &data, &size); 

    if(ppec->ppep.data) {
        aim_free(ppec->ppep.data); 
    }

    if(ppe_packet_init(&ppec->ppep, data, size) < 0) {
        return ucli_e_internal(uc, "ppe_packet_init()"); 
    }

    if(ppe_parse(&ppec->ppep) < 0) {
        return ucli_e_internal(uc, "ppe_parse()"); 
    }

    return UCLI_STATUS_OK; 
}
Exemplo n.º 5
0
ucli_status_t
vt_ucli_module__perf__(ucli_context_t* uc)
{
    uint64_t last;
    uint64_t now;
    double seconds;
    uint64_t deltat = 2000000;
    int count = 0;
    int direction;
    uint8_t data[128] = {0};
    int misscount = 0;
    int pid = 0;

    UCLI_COMMAND_INFO(uc,
                      "perf", 2,
                      "$summary#Receive performance test."
                      "$args#[send|recv] vpi");

    UCLI_ARGPARSE_OR_RETURN(uc, "{choice}{vpi}",
                            &direction, "direction", 2, "send", "recv",
                            &vtc->vpi);

    count = 0;
    last = os_time_monotonic();
    while(1) {

        if(direction == 0) { /* send */
            *(uint32_t*)(data) = pid++;
            vpi_send(vtc->vpi, data, sizeof(data));
            count++;
        }
        else { /* recv */
            if(vpi_recv__(uc, vtc) > 0) {
                uint32_t rpid = *(uint32_t*)(vtc->data);
                if(pid != rpid) {
                    misscount += (rpid - pid);
                    pid = rpid+1;
                }
                else {
                    pid++;
                }
                count++;
            }
        }

        now = os_time_monotonic();
        if((now - last) > deltat) {
            seconds = 1.0*(now-last)/1000000;
            ucli_printf(uc, "%d packets %s in %f seconds (%f pps) missed=%d\n",
                        count, direction ? "received" : "sent", seconds, count/seconds, misscount);
            count=0;
            last = now;
            misscount=0;
        }
    }
    return UCLI_STATUS_OK;
}
Exemplo n.º 6
0
static ucli_status_t
ppe_ucli_utm__checkw__(ucli_context_t* uc)
{
    ppe_field_info_t* fi; 
    uint8_t* cvalue; 
    uint8_t pvalue[128];
    unsigned int csize; 

    aim_datatype_map_t* operation; 
    aim_datatype_map_t operation_map[] = { 
        { "==", 'e' }, { "!=", 'n' }, { NULL } 
    }; 

    UCLI_COMMAND_INFO(uc, 
                      "checkw", 3, 
                      "Check wide packet field values and status.");
    
    UCLI_ARGPARSE_OR_RETURN(uc, "{ppe_field_info}{map}{data}", &fi, 
                            &operation, operation_map, "operation", 
                            &cvalue, &csize); 

    PPE_FIELD_EXISTS_OR_RETURN(uc, fi->field); 
    
    if(fi->size_bits/8 != csize) { 
        return ucli_error(uc, 
                          "field %{ppe_field} is %d bytes wide.", fi->field, 
                          fi->size_bits/8);
    }

    PPE_WIDE_FIELD_GET_OR_RETURN(uc, &ppec->ppep, fi->field, pvalue); 
    
    switch(operation->i) 
        {
        case 'e':
            {
                if(PPE_MEMCMP(pvalue, cvalue, csize)) { 
                    return ucli_error(uc, 
                                      "field %{ppe_field} is %{data} (should be %{data}", 
                                      fi->field, pvalue, csize, cvalue, csize); 
                }
                return UCLI_STATUS_OK; 
                break; 
            }
        case 'n':
            {
                if(!PPE_MEMCMP(pvalue, cvalue, csize)) { 
                    return ucli_error(uc, 
                                      "field %{ppe_field} is %{data}", 
                                      fi->field, pvalue, csize); 
                }
                return UCLI_STATUS_OK; 
                break; 
            }
        default:
            return ucli_e_internal(uc, "unknown operation."); 
        }
}
Exemplo n.º 7
0
static ucli_status_t
fme_ucli_utm__relativetimeout(ucli_context_t* uc)
{
    int to;
    UCLI_COMMAND_INFO(uc,
                      "relative-timeout", 1,
                      "Set the relative timeout on the current entry.");
    UCLI_ARGPARSE_OR_RETURN(uc, "i", &to);
    fmec->entries[fmec->eid]->relative_timeout=to;
    return UCLI_STATUS_OK;
}
Exemplo n.º 8
0
static ucli_status_t
fme_ucli_utm__timestamp(ucli_context_t* uc)
{
    int to;
    UCLI_COMMAND_INFO(uc,
                      "timestamp", 1,
                      "Set the timestamp on the current entry.");

    UCLI_ARGPARSE_OR_RETURN(uc, "i", &to);
    fmec->entries[fmec->eid]->timestamp=to;
    return UCLI_STATUS_OK;
}
Exemplo n.º 9
0
static ucli_status_t
fme_ucli_utm__expect__(ucli_context_t* uc)
{
    int eid;
    UCLI_COMMAND_INFO(uc,
                      "expect", 1,
                      "Expect a match on the entry.");

    UCLI_ARGPARSE_OR_RETURN(uc, "{rint}",
                            &eid, 0, FME_CONFIG_UTM_ENTRIES, "entry id");
    fmec->expects[eid] = 1;
    return UCLI_STATUS_OK;
}
Exemplo n.º 10
0
static ucli_status_t
utest_ucli_options__add3__(ucli_context_t* uc)
{
    int n[3] = {0,0,0};

    UCLI_COMMAND_INFO(uc, 
                      "add3", 3, 
                      "Add three numbers together.");
    
    UCLI_ARGPARSE_OR_RETURN(uc, "iii", n, n+1, n+2); 
    ucli_printf(uc, "sum=%d\n", n[0]+n[1]+n[2]); 
    return UCLI_STATUS_OK;
}
Exemplo n.º 11
0
ucli_status_t
vt_ucli_module__send__(ucli_context_t* uc)
{
    UCLI_COMMAND_INFO(uc,
                      "send", 2,
                      "$summary#Send a single packet on the given VPI."
                      "$args#<vpi_spec> <packet_data>");

    UCLI_ARGPARSE_OR_RETURN(uc, "{vpi}{idata}", &vtc->vpi, vtc->data, &vtc->size);
    if(vpi_send(vtc->vpi, vtc->data, vtc->size) < 0) {
        return ucli_error(uc, "vpi_send() failed.");
    }
    return UCLI_STATUS_OK;
}
Exemplo n.º 12
0
static ucli_status_t
ppe_ucli_utm__check__(ucli_context_t* uc)
{
    ppe_field_info_t* fi; 
    uint32_t cvalue; 
    uint32_t pvalue; 

    aim_datatype_map_t* operation; 
    aim_datatype_map_t operation_map[] = { 
        { "==", 'e' }, { "!=", 'n' }, { NULL } 
    }; 

    UCLI_COMMAND_INFO(uc, 
                      "check", 3, 
                      "Check packet field values and status.");
    
    UCLI_ARGPARSE_OR_RETURN(uc, "{ppe_field_info}{map}i", &fi, 
                            &operation, operation_map, "operation", 
                            &cvalue); 

    PPE_FIELD_EXISTS_OR_RETURN(uc, fi->field); 
    PPE_FIELD32_OR_RETURN(uc, fi->size_bits); 
    PPE_FIELD_GET_OR_RETURN(uc, &ppec->ppep, fi->field, &pvalue); 
    
    switch(operation->i) 
        {
        case 'e':
            {
                if(pvalue != cvalue) {
                    return ucli_error(uc, 
                                      "field %{ppe_field} is 0x%x (%d) (should be 0x%x (%d)", 
                                      fi->field, pvalue, pvalue, cvalue, cvalue); 
                }
                return UCLI_STATUS_OK; 
                break; 
            }
        case 'n':
            {
                if(pvalue == cvalue) {
                    return ucli_error(uc, 
                                      "field %{ppe_field} is 0x%x (%d)", 
                                      fi->field, pvalue, pvalue); 
                }
                return UCLI_STATUS_OK; 
                break; 
            }
        default:
            return ucli_e_internal(uc, "unknown operation."); 
        }
}
Exemplo n.º 13
0
static ucli_status_t
fme_ucli_utm__key__(ucli_context_t* uc)
{
    uint32_t keymask;
    uint8_t* value = NULL;
    int value_size = 0;
    uint8_t* mask = NULL;
    int mask_size = 0;
    int rv = UCLI_STATUS_OK;
    fme_key_t key;

    UCLI_COMMAND_INFO(uc,
                      "key",  3,
                      "Set the match key for the current entry.");


    UCLI_ARGPARSE_OR_RETURN(uc, "i{data}{data}", &keymask, &value, &value_size,
                            &mask, &mask_size);

    if(value_size != mask_size) {
        rv = ucli_error(uc, "value size (%d) and mask size (%d) must be equal.",
                        value_size, mask_size);
        goto __key__error;
    }
    if(value_size % 4 != 0) {
        rv = ucli_error(uc, "values and masks must be 32bit aligned (size=%d)",
                        value_size);
        goto __key__error;
    }


    FME_MEMSET(&key, 0, sizeof(key));
    key.keymask = keymask;
    key.size = value_size;
    FME_MEMCPY(key.values, value, value_size);
    FME_MEMCPY(key.masks, mask, mask_size);
    aim_free(value);
    aim_free(mask);
    fme_entry_key_set(fmec->entries[fmec->eid], &key);

    return rv;

 __key__error:

    aim_free(value);
    aim_free(mask);

    return rv;
}
Exemplo n.º 14
0
static ucli_status_t
ppe_ucli_utm__set__(ucli_context_t* uc)
{
    int data; 
    ppe_field_info_t* fi; 

    UCLI_COMMAND_INFO(uc, 
                      "set", 2, 
                      "Set a packet field."); 

    UCLI_ARGPARSE_OR_RETURN(uc, "{ppe_field_info}i", &fi, &data); 
    PPE_FIELD32_OR_RETURN(uc, fi->size_bits); 
    PPE_FIELD_EXISTS_OR_RETURN(uc, fi->field); 
    PPE_FIELD_SET_OR_RETURN(uc, &ppec->ppep, fi->field, data); 
    
    return UCLI_STATUS_OK; 
}
Exemplo n.º 15
0
static ucli_status_t
ppe_ucli_utm__checkf__(ucli_context_t* uc)
{
    ppe_header_t cheader; 
    ppe_header_t pheader; 

    UCLI_COMMAND_INFO(uc, 
                      "checkf", 1, 
                      "Check the packet format."); 

    UCLI_ARGPARSE_OR_RETURN(uc, "{ppe_header}", &cheader); 
    ppe_packet_format_get(&ppec->ppep, &pheader); 
    if(pheader != cheader) { 
        return ucli_error(uc, "packet format is currently %{ppe_header}.", 
                          pheader); 
    }
    return UCLI_STATUS_OK; 
}
Exemplo n.º 16
0
static ucli_status_t
debug_counter_ucli_ucli__show__(ucli_context_t* uc)
{
    UCLI_COMMAND_INFO(uc,
                      "show", -1,
                      "$summary#show all debug counters.");

    const char *prefix = NULL;
    if (uc->pargs->count > 0) {
	UCLI_ARGPARSE_OR_RETURN(uc, "s", &prefix);
    }

    list_head_t *counters = debug_counter_list();
    list_links_t *cur;
    LIST_FOREACH(counters, cur) {
	debug_counter_t *counter = container_of(cur, links, debug_counter_t);
	if (prefix_match(counter->name, prefix)) {
	    ucli_printf(uc, "%s: %"PRIu64"\n", counter->name, counter->value);
	}
    }
Exemplo n.º 17
0
static ucli_status_t
ppe_ucli_utm__setheader__(ucli_context_t* uc)
{
    uint8_t* data; 
    int size; 
    ppe_header_t header; 

    UCLI_COMMAND_INFO(uc, 
                      "setheader", 2, 
                      "Set header data."); 


    UCLI_ARGPARSE_OR_RETURN(uc, "{ppe_header}{data}", &header, &data, &size); 
    if(ppe_header_get(&ppec->ppep, header)) { 
        aim_free(ppe_header_get(&ppec->ppep, header)); 
    }
    if(ppe_header_set(&ppec->ppep, header, data) < 0) {
        return ucli_e_internal(uc, "ppe_set_header()"); 
    }
    return UCLI_STATUS_OK; 
}
Exemplo n.º 18
0
ucli_status_t
vt_ucli_module__sendrecv__(ucli_context_t* uc)
{
    UCLI_COMMAND_INFO(uc,
                      "sendrecv", 2,
                      "$summary#Send a single packet on the given VPI and wait for a response."
                      "$args#<vpi_spec> <packet_data>");

    vtc->size = sizeof(vtc->data);
    UCLI_ARGPARSE_OR_RETURN(uc, "{vpi}{idata}", &vtc->vpi, vtc->data, &vtc->size);
    if(vpi_send(vtc->vpi, vtc->data, vtc->size) < 0) {
        return ucli_error(uc, "vpi_send() failed.");
    }
    if(vpi_recv__(uc, vtc) > 0) {
        ucli_printf(uc, "recv(%{vpi}):\n%{data}", vtc->vpi, vtc->data, vtc->size);
        return UCLI_STATUS_OK;
    }
    else {
        return UCLI_STATUS_E_ERROR;
    }
}
Exemplo n.º 19
0
static ucli_status_t
fme_ucli_utm__entry__(ucli_context_t* uc)
{
    UCLI_COMMAND_INFO(uc,
                      "entry", 1,
                      "Select an entry.");

    fmec->eid = 0;
    UCLI_ARGPARSE_OR_RETURN(uc, "{rint}",
                            &fmec->eid, 0, FME_CONFIG_UTM_ENTRIES, "entry id");


    if(fmec->entries[fmec->eid] == NULL) {
        fme_entry_create(fmec->entries+fmec->eid);
        fmec->entries[fmec->eid]->prio = fmec->eid;
        fmec->entries[fmec->eid]->timestamp = 1;
        fme_add_entry(fmec->fme, fmec->entries[fmec->eid]);
    }

    return UCLI_STATUS_OK;
}
Exemplo n.º 20
0
ucli_status_t
vt_ucli_module__spam__(ucli_context_t* uc)
{
    aim_ratelimiter_t counter_rl;
    aim_ratelimiter_t send_rl;
    int count = 0;
    int last = 0;
    int pps = -1;

    UCLI_COMMAND_INFO(uc,
                      "spam", 3,
                      "$summary#Spam packet data on the given VPI."
                      "$args#<vpi_spec> <packet_data> <pps>");

    UCLI_ARGPARSE_OR_RETURN(uc, "{vpi}{idata}i",
                            &vtc->vpi, vtc->data, &vtc->size, &pps);

    aim_ratelimiter_init(&counter_rl, 1000000, 0, NULL);
    aim_ratelimiter_init(&send_rl, 1000000/pps, 0, NULL);

    for(;;) {
        uint64_t now = os_time_monotonic();
        if(aim_ratelimiter_limit(&counter_rl, now) == 0) {
            ucli_printf(uc, "Sent %d packets - %d pps\n", count,
                        (count - last));
            last = count;

        }
        if(aim_ratelimiter_limit(&send_rl, now) == 0) {
            if(vpi_send(vtc->vpi, vtc->data, vtc->size) < 0) {
                return ucli_error(uc, "vpi_send() failed.");
            }
            count++;
        }
        else {
            os_sleep_usecs(1);
        }
    }
    return UCLI_STATUS_OK;
}
Exemplo n.º 21
0
static ucli_status_t
ppe_ucli_utm__missing__(ucli_context_t* uc)
{
    ppe_field_t f; 
    int rv; 
    
    UCLI_COMMAND_INFO(uc, 
                      "missing", 1, 
                      "Check that a field is missing in the packet."); 

    UCLI_ARGPARSE_OR_RETURN(uc, "{ppe_field}", &f);    
    rv = ppe_field_exists(&ppec->ppep, f); 
    if(rv == 0) { 
        return UCLI_STATUS_OK; 
    }
    else if(rv == 1) {
        return ucli_error(uc, "field %{ppe_field} exists in the packet.", 
                          f); 
    }
    else {
        return ucli_e_internal(uc, "ppe_field_exists()"); 
    }
}
Exemplo n.º 22
0
ucli_status_t
vt_ucli_module__dump__(ucli_context_t* uc)
{
    int count = 0;

    UCLI_COMMAND_INFO(uc,
                      "dump", 1,
                      "$summary#Dump all packets on the given VPI."
                      "$args#<vpi_spec>");

    UCLI_ARGPARSE_OR_RETURN(uc, "{vpi}", &vtc->vpi);

    while(1) {
        if(vpi_recv__(uc, vtc) > 0) {
            ucli_printf(uc, "[%.3d] recv(%{vpi}):\n%{data}\n",
                        count++, vtc->vpi, vtc->data, vtc->size);
        }
        else {
            break;
        }
    }
    return UCLI_STATUS_OK;
}
Exemplo n.º 23
0
static ucli_status_t
ppe_ucli_utm__get__(ucli_context_t* uc)
{
    ppe_field_info_t* fi; 

    UCLI_COMMAND_INFO(uc, 
                      "get", 1,
                      "Get a packet field."); 


    UCLI_ARGPARSE_OR_RETURN(uc, "{ppe_field_info}", &fi); 
    
    PPE_FIELD_EXISTS_OR_RETURN(uc, fi->field); 
        
    if(fi->size_bits <= 32) {
        uint32_t value; 
        PPE_FIELD_GET_OR_RETURN(uc, &ppec->ppep, fi->field, &value); 
        ucli_printf(uc, "%{ppe_field} = 0x%x (%d)\n", 
                    fi->field, value, value);
        return UCLI_STATUS_OK; 
    }
    else {
        int rv; 
        int size = fi->size_bits/8; 
        uint8_t* data = aim_zmalloc(size); 
        rv = ppe_wide_field_get(&ppec->ppep, fi->field, data); 
        if(rv < 0) { 
            ucli_e_internal(uc, "ppe_wide_field_get(%{ppe_field})", fi->field); 
        }       
        else {
            ucli_printf(uc, "%{ppe_field} = %{data}\n", data, size); 
        }
        aim_free(data);
        return rv; 
    }
}
Exemplo n.º 24
0
ucli_status_t
vt_ucli_module__bridge__(ucli_context_t* uc)
{
    vpi_t v1, v2;
    vpi_bridge_t vbridge;

    UCLI_COMMAND_INFO(uc,
                      "bridge", 2,
                      "$summary#Forward all packets between two VPI interfaces."
                      "$args#<vpi_spec_1> <vpi_spec_2>");

    UCLI_ARGPARSE_OR_RETURN(uc, "{vpi}{vpi}", &v1, &v2);
    vbridge = vpi_bridge_create(v1, v2);
    if(vbridge == NULL) {
        return ucli_error(uc, "vpi_bridge_create(%{vpi},%{vpi}) failed.",
                          v1, v2);
    }
    if(vpi_bridge_start(vbridge) < 0) {
        return ucli_error(uc, "vpi_bridge_start() failed.");
    }
    vtc->bridges++;
    ucli_printf(uc, "bridging %s <-> %s\n", vpi_name_get(v1), vpi_name_get(v2));
    return UCLI_STATUS_OK;
}
static ucli_status_t
ofconnectionmanager_ucli_ucli__stats__(ucli_context_t *uc)
{
    char *str;
    int details = 0;

    UCLI_COMMAND_INFO(uc,
                      "stats", -1,
                      "$summary#Show connection stats.");
    if (uc->pargs->count == 1) {
        UCLI_ARGPARSE_OR_RETURN(uc, "s", &str);
        if (!strncmp(str, "detail", 6)) { /* Allow detail or details */
            details = 1;
        } else {
            return UCLI_STATUS_E_ARG;
        }
    } else if (uc->pargs->count > 1) {
        return UCLI_STATUS_E_ARG;
    }

    ind_cxn_stats_show(&uc->pvs, details);

    return UCLI_STATUS_OK;
}
Exemplo n.º 26
0
static ucli_status_t
ppe_ucli_utm__dfk__(ucli_context_t* uc)
{
    ppe_dfk_t dfk; 
    ppe_field_t fields[4]; 
    uint8_t* verify_data;
    unsigned int verify_data_size; 
    int rv = UCLI_STATUS_OK; 
    unsigned int i; 

    UCLI_COMMAND_INFO(uc, 
                      "dfk", AIM_ARRAYSIZE(fields)+1, 
                      "Generate and verify a dynamic field key."); 
    UCLI_ARGPARSE_OR_RETURN(uc, 
                            "{ppe_field}{ppe_field}{ppe_field}{ppe_field}{data}", 
                            fields+0, fields+1, fields+2, fields+3, 
                            &verify_data, &verify_data_size); 

    ppe_dfk_init(&dfk, fields, AIM_ARRAYSIZE(fields)); 
    i = ppe_packet_dfk(&ppec->ppep, &dfk); 

    if(i != verify_data_size) { 
        rv = ucli_error(uc, "dfk size is %d, verify data size is %d", 
                        i, verify_data_size); 
        goto dfk_error;
    }

    for(i = 0; i < AIM_ARRAYSIZE(fields); i++) {
        const ppe_field_info_t* fi = ppe_field_info_get(fields[i]); 
        int exists = ppe_field_exists(&ppec->ppep, fi->field); 
        if(exists && ( (dfk.mask & (1<<i)) == 0)) { 
            /* Should be in the field key but isn't.*/
            rv = ucli_error(uc, "%{ppe_field} exists in packet but not in field key.", 
                            fi->field);
            goto dfk_error; 
        }
        if(!(exists) && (dfk.mask & (1<<i))) { 
            /* Should not be in the field key but is. */
            rv = ucli_error(uc, "%{ppe_field} is in the key but not the packet.", 
                            fi->field); 
            goto dfk_error; 
        }
        
    }
    for(i = 0; i < verify_data_size; i++) { 
        if(verify_data[i] != dfk.data[i]) { 
            rv = ucli_error(uc, "key data mismatch at byte %d.\nkey=%{data}, verify=%{data}", 
                            i, dfk.data, verify_data_size, verify_data, verify_data_size);         
            goto dfk_error; 
        }
    }
    for(i = 0; i < AIM_ARRAYSIZE(fields); i++) {
        if(dfk.mask & (1<<i)) {         
            const ppe_field_info_t* fi = ppe_field_info_get(fields[i]); 
            if(fi->size_bits <= 32) { 
                uint32_t pdata;
                uint32_t kdata; 
                ppe_field_get(&ppec->ppep, fi->field, &pdata); 
                ppe_dfk_field_get(&dfk, fi->field, &kdata); 
                if(pdata != kdata) { 
                    rv = ucli_error(uc, "field_get mismatch: p=0x%x, k=0x%x"); 
                    goto dfk_error; 
                }
            }
            else { 
                unsigned int i; 
                uint8_t pdata[128]; 
                uint8_t kdata[128]; 
                
                ppe_wide_field_get(&ppec->ppep, fi->field, pdata); 
                ppe_dfk_wide_field_get(&dfk, fi->field, kdata); 
                for(i = 0; i < fi->size_bits/8; i++) { 
                    if(pdata[i] != kdata[i]) { 
                        rv = ucli_error(uc, "wide_field_get mismatch @ %d: p=0x%x k=0x%x", 
                                        i, pdata[i], kdata[i]); 
                        goto dfk_error; 
                    }
                }
            }
        }
    }

    aim_free(verify_data); 
    ppe_dfk_destroy(&dfk); 
    return UCLI_STATUS_OK; 

 dfk_error:
    ucli_printf(uc, "key: "); 
    ppe_dfk_show(&dfk, &uc->pvs); 
    ppe_dfk_destroy(&dfk); 
    aim_free(verify_data); 
    ucli_printf(uc, "\n"); 
    return rv; 
}
Exemplo n.º 27
0
static ucli_status_t
fme_ucli_utm__match__(ucli_context_t* uc)
{
    int rv;
    int i;

    uint32_t keymask;
    uint8_t* value;
    int value_size;
    int _now;
    fme_timeval_t now;
    unsigned int size;
    fme_entry_t* fe = NULL;
    fme_key_t key;

    UCLI_COMMAND_INFO(uc,
                      "match", 4,
                      "Run the key and data.");

    UCLI_ARGPARSE_OR_RETURN(uc, "i{data}ii", &keymask, &value, &value_size,
                            &size, &_now);
    now = _now;
    FME_MEMSET(&key, 0, sizeof(key));
    key.keymask = keymask;
    FME_MEMCPY(key.values, value, value_size);
    key.size = value_size;
    FME_MEMSET(key.masks, 0, sizeof(key.masks));
    aim_free(value);

    rv = fme_match(fmec->fme, &key, now, size, NULL, NULL, &fe);

    if(rv == 1) {
        if(fmec->expects[fe->prio] == 0) {
            /* Unexpected match */
            ucli_error(uc, "unexpected match: ");
            fme_entry_dump(fe, &uc->pvs);
            goto __match__error;
        }

        /* match is expected -- check counter values */
        if(fe->counters.matches != 1) {
            ucli_error(uc, "match counter was not incremented.");
            goto __match__error;
        }
        if(fe->counters.bytes != size) {
            ucli_error(uc, "byte counter is incorrect.");
            goto __match__error;
        }
        if(fe->timestamp != now) {
            ucli_error(uc, "timestamp was not updated.");
            goto __match__error;
        }

        /* all good */
    }
    else if(rv == 0) {
        /* Make sure we have to entries expected to match */
        for(i = 0; i < FME_CONFIG_UTM_ENTRIES; i++) {
            if(fmec->expects[i]) {
                ucli_error(uc, "expected match was not received: ");
                fme_entry_dump(fmec->entries[i], &uc->pvs);
                goto __match__error;
            }
        }
        /* all good */
    }
    else {
        ucli_e_internal(uc, "fme_match() returned %d", rv);
        goto __match__error;
    }

    /* all good - reset */
    fme_destroy_all(fmec->fme);
    FME_MEMSET(fmec, 0, sizeof(*fmec));
    fme_create(&fmec->fme, "fme_utm", FME_CONFIG_UTM_ENTRIES);
    return UCLI_STATUS_OK;

 __match__error:

    ucli_error(uc, "fme: ");
    fme_dump(fmec->fme, &uc->pvs);
    return UCLI_STATUS_E_ERROR;
}
Exemplo n.º 28
0
static ucli_status_t
fme_ucli_utm__perf__(ucli_context_t* uc)
{
    int set_keymask;
    int table_size;
    int iterations;
    int i;
    fme_key_t mkey;
    fme_entry_t* match;
    fme_t* fme;
    double seconds;
    int keysize;
    uint64_t start, end;

    UCLI_COMMAND_INFO(uc,
                      "perf", 3,
                      "$summary#Run performance matching tests."
                      "$args#<table_size> <iterations> <use_keymask>");


    if(aim_valgrind_status() == 1) {
        ucli_printf(uc, "Skipping performance test while running under valgrind.\n");
        return UCLI_STATUS_OK;
    }

    UCLI_ARGPARSE_OR_RETURN(uc, "iib", &table_size, &iterations, &set_keymask);

    fme_create(&fme, "fme_utm", table_size);

    keysize = sizeof(mkey.values);

    for(i = 0; i < table_size; i++) {
        fme_entry_t* entry;
        fme_key_t key;
        uint8_t byte = (i == 0 || i & 0xFF) ? i : 0x1;

        FME_MEMSET(&key, 0, sizeof(key));
        FME_MEMSET(&key.values, byte, sizeof(key.values));
        FME_MEMSET(&key.masks, byte, sizeof(key.masks));
        key.size = keysize;

        if(set_keymask) {
            key.keymask = i;
        }

        fme_entry_create(&entry);
        fme_entry_key_set(entry, &key);
        entry->prio=i;
        fme_add_entry(fme, entry);
    }

    FME_MEMSET(&mkey, 0, sizeof(mkey));
    mkey.size = keysize;


    start = os_time_thread();
    for(i = 0; i < iterations; i++) {
        int rv = fme_match(fme, &mkey, 0, 0, NULL, NULL, &match);
        /* The lowest priority entry will always match */
        if(rv != 1 || match->index != table_size-1){
            return ucli_printf(uc, "i=%d error: rv=%d, index=%d\n", i, rv,
                               (match) ? match->index : -1);
        }
    }
    end = os_time_thread();
    seconds = (end - start) / (1000.0*1000);
    ucli_printf(uc, "%d matches in %f seconds (%f matches/sec)\n", iterations, seconds,
                iterations/seconds);

    fme_destroy_all(fme);
    return UCLI_STATUS_OK;
}