gem5/ext/mcpat/cacti/crossbar.h
Yasuko Eckert 0deef376d9 ext: McPAT interface changes and fixes
This patch includes software engineering changes and some generic bug fixes
Joel Hestness and Yasuko Eckert made to McPAT 0.8. There are still known
issues/concernts we did not have a chance to address in this patch.

High-level changes in this patch include:
 1) Making XML parsing modular and hierarchical:
   - Shift parsing responsibility into the components
   - Read XML in a (mostly) context-free recursive manner so that McPAT input
     files can contain arbitrary component hierarchies
 2) Making power, energy, and area calculations a hierarchical and recursive
    process
   - Components track their subcomponents and recursively call compute
     functions in stages
   - Make C++ object hierarchy reflect inheritance of classes of components
     with similar structures
   - Simplify computeArea() and computeEnergy() functions to eliminate
     successive calls to calculate separate TDP vs. runtime energy
   - Remove Processor component (now unnecessary) and introduce a more abstract
     System component
 3) Standardizing McPAT output across all components
   - Use a single, common data structure for storing and printing McPAT output
   - Recursively call print functions through component hierarchy
 4) For caches, allow splitting data array and tag array reads and writes for
    better accuracy
 5) Improving the usability of CACTI by printing more helpful warning and error
    messages
 6) Minor: Impose more rigorous code style for clarity (more work still to be
    done)
Overall, these changes greatly reduce the amount of replicated code, and they
improve McPAT runtime and decrease memory footprint.
2014-06-03 13:32:59 -07:00

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3.2 KiB
C++

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#ifndef __CROSSBAR__
#define __CROSSBAR__
#include <assert.h>
#include <iostream>
#include "basic_circuit.h"
#include "cacti_interface.h"
#include "component.h"
#include "mat.h"
#include "parameter.h"
#include "wire.h"
class Crossbar : public Component {
public:
Crossbar(
double in,
double out,
double flit_sz,
TechnologyParameter::DeviceType *dt = &(g_tp.peri_global));
~Crossbar();
void print_crossbar();
double output_buffer();
void compute_power();
double n_inp, n_out;
double flit_size;
double tri_inp_cap, tri_out_cap, tri_ctr_cap, tri_int_cap;
private:
double CB_ADJ;
/*
* Adjust factor of the height of the cross-point (tri-state buffer) cell (layout) in crossbar
* buffer is adjusted to get an aspect ratio of whole cross bar close to one;
* when adjust the ratio, the number of wires route over the tri-state buffers does not change,
* however, the effective wiring pitch changes. Specifically, since CB_ADJ will increase
* during the adjust, the tri-state buffer will become taller and thiner, and the effective wiring pitch
* will increase. As a result, the height of the crossbar (area.h) will increase.
*/
TechnologyParameter::DeviceType *deviceType;
double TriS1, TriS2;
double min_w_pmos, Vdd;
};
#endif