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Core Connection Process. Nodes that are selected to become cores by the core selection process cannot form a connected backbone by themselves, since they may not be reachable by one another within a single hop. The core connection process is responsible for connecting these cores together by designating some nodes to take the role of intermediate nodes. Consequently, the cores and intermediate nodes jointly comprise a virtual backbone, as illustrated in Figure 6.3. To do so, each core relies on nodes that are located along the border of its coverage, or border nodes, to collect information about surrounding nearby cores. A node is said to be a border node if and only if it is able to hear Hello packets from nodes that are associated with different cores. Each border node then builds a list of cores reachable by itself, including the next hop and the number of hops to each core, and reports this information to its own core so that a core connection request can be performed. To reduce overhead, a border node only needs to collect and report information regarding nearby cores with IDs lower than that of its own core. Hence, a core connection request between a pair of cores is always initiated by the core with the higher ID.

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const int array_size = 3; int ia[ array_size ] = { 0, 1, 2 };

An explicitly initialized array need not specify a dimension value The compiler will determine the array size by the number of elements listed:

entity rounding is port ( s: in digit_vector(0 downto -(p+3)); e: in natural; new_s: out digit_vector(0 downto -p); new_e: out natural ); end rounding; architecture behavior of rounding is begin process(s) variable carry: digit_vector(1 downto -p); variable sum: digit_vector(0 downto -p);

file:///F|/WinDDK/resources/CPPPrimer/c++primerhtm (115 / 1065) [2001-3-29 11:32:03]

int ia[] = { 0, 1, 2 };

If the dimension size is specified, the number of elements provided must not exceed that size Otherwise, a compile-time error results If the dimension size is greater than the number of listed elements, the array elements not explicitly initialized are set to 0

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Figure 6.3. Example illustrating the core connection process: Cores A, B, and C (shown in black) are connected by seven intermediate nodes (shown in gray) and form a virtual backbone (represented by thick lines). Solid lines denote parent child relationship, and dashed circles denote core coverage boundaries.

// ia ==> { 0, 1, 2, 0, 0 } const int array_size = 5; int ia[ array_size ] = { 0, 1, 2 };

A character array can be initialized with either a list of comma-separated character literals enclosed in braces or a string literal Note, however, that the two forms are not equivalent The string constant contains the additional terminating null character For example:

const char ca1[] = { 'C', '+', '+' }; const char ca2[] = "C++";

ca1 is of dimension 3; ca2 is of dimension 4 The following declaration will be flagged as an error:

ADAPTIVE DYNAMIC BACKBONE MULTICAST (ADBM)

// error: "Daniel" is 7 elements const char ch3[ 6 ] = "Daniel";

An array cannot be initialized with another array, nor can one array be assigned to another Additionally, it is not permitted to declare an array of references

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const int array_size = 3; int ix, jx, kx; // ok: array of pointers of type int* int *iap [] = { &ix, &jx, &kx }; // error: array of references not allowed int &iar[] = { ix, jx, kx }; // error: cannot initialize one array with another int ia2[] = ia; // error int main() { int ia3[ array_size ]; // ok // error: cannot assign one array to another ia3 = ia; return 0; }

begin if s(-(p+1))<B_div_2 then new_s<=s(0 downto -p); new_e<=e; elsif (s(-(p+1))>B_div_2) or (s(-(p+2))>0) or (s(-(p+3))>0) or (s(-p) mod 2=1) then --plus ulp carry(-p):=1; for i in -p to 0 loop if s(i)+carry(i)>B-1 then carry(i+1):=1; else carry(i+1):=0; end if; sum(i):=(carry(i)+s(i)) mod B; end loop; -----if carry(1)=1 then new_s(0)<=1; for i in -1 downto -p loop new_s(i)<=0; end loop; new_e<=e+1; else new_s<=sum; new_e<=e; end if; else new_s<=s(0 downto -p); new_e<=e; end if; end process; end behavior;

To copy one array into another, each element must be copied in turn For example:

ALGORITHM 1. Node i Processing HELLO Packets Input: h incoming Hello src the sender of h Begin: coreInfo CoreInfo piggybacked by h coreReq CoreRequest piggybacked by h if parenti = i then /* i is a core */ coreIdi i hopsi 0 else /* i is not a core */ coreIdi NITi (parenti ).coreId hopsi NITi (parenti ).hops + 1 end if remove all entries cid, nextHop, hops from CITi where nextHop = src remove all entries cid, requester from CRTi where requester = src if h.coreId < coreIdi then insert h.coreId, src, h.hops + 1 into CITi else if h.coreId = coreIdi & h.hops > hopsi then for each cid, hops in coreInfo, where cid < coreIdi do insert cid, src, hops + 1 into CITi end for end if for each cid, nextHop in coreReq where nextHop = i do insert cid, src into CRTi end for

file:///F|/WinDDK/resources/CPPPrimer/c++primerhtm (116 / 1065) [2001-3-29 11:32:03]

const int array_size = 7; int ia1[] = { 0, 1, 2, 3, 4, 5, 6 }; int main() { int ia2[ array_size ]; for ( int ix = 0; ix < array_size; ++ix ) ia2[ ix ] = ia1[ ix ]; return 0; }

Any expression that results in an integral value can be used to index into an array For example:

int someVal, get_index(); ia2[ get_index() ] = someVal;

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