project:cfg:BoardConfig_IPC: Added fastboot BoardConfig file and firmware post-scripts, distinguishing between the BoardConfigs for Luckfox Pico Pro and Luckfox Pico Max. project:app: Added fastboot_client and rk_smart_door for quick boot applications; updated rkipc app to adapt to the latest media library. media:samples: Added more usage examples. media:rockit: Fixed bugs; removed support for retrieving data frames from VPSS. media:isp: Updated rkaiq library and related tools to support connection to RKISP_Tuner. sysdrv:Makefile: Added support for compiling drv_ko on Luckfox Pico Ultra W using Ubuntu; added support for custom root filesystem. sysdrv:tools:board: Updated Buildroot optional mirror sources, updated some software versions, and stored device tree files and configuration files that undergo multiple modifications for U-Boot and kernel separately. sysdrv:source:mcu: Used RISC-V MCU SDK with RT-Thread system, mainly for initializing camera AE during quick boot. sysdrv:source:uboot: Added support for fastboot; added high baud rate DDR bin for serial firmware upgrades. sysdrv:source:kernel: Upgraded to version 5.10.160; increased NPU frequency for RV1106G3; added support for fastboot. Signed-off-by: luckfox-eng29 <eng29@luckfox.com>
141 lines
3.8 KiB
Java
141 lines
3.8 KiB
Java
// Fhourstones 3.1 Board Logic
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// (http://www.cwi.nl/~tromp/c4/fhour.html)
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//
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// implementation of the well-known game
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// usually played on a vertical board of 7 columns by 6 rows,
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// where 2 players take turns in dropping counters in a column.
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// the first player to get four of his counters
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// in a horizontal, vertical or diagonal row, wins the game.
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// if neither player has won after 42 moves, then the game is drawn.
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//
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// This software is copyright (c) 1996-2005 by
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// John Tromp
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// Insulindeweg 908
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// 1095 DX Amsterdam
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// Netherlands
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// E-mail: tromp@cwi.nl
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//
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// This notice must not be removed.
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// This software must not be sold for profit.
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// You may redistribute if your distributees have the
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// same rights and restrictions.
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class Game {
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static long color[]; // black and white bitboard
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static final int WIDTH = 7;
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static final int HEIGHT = 6;
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// bitmask corresponds to board as follows in 7x6 case:
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// . . . . . . . TOP
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// 5 12 19 26 33 40 47
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// 4 11 18 25 32 39 46
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// 3 10 17 24 31 38 45
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// 2 9 16 23 30 37 44
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// 1 8 15 22 29 36 43
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// 0 7 14 21 28 35 42 BOTTOM
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static final int H1 = HEIGHT+1;
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static final int H2 = HEIGHT+2;
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static final int SIZE = HEIGHT*WIDTH;
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static final int SIZE1 = H1*WIDTH;
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static final long ALL1 = (1L<<SIZE1)-1L; // assumes SIZE1 < 63
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static final int COL1 = (1<<H1)-1;
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static final long BOTTOM = ALL1 / COL1; // has bits i*H1 set
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static final long TOP = BOTTOM << HEIGHT;
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int moves[],nplies;
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byte height[]; // holds bit index of lowest free square
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public Game()
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{
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color = new long[2];
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height = new byte[WIDTH];
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moves = new int[SIZE];
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reset();
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}
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void reset()
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{
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nplies = 0;
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color[0] = color[1] = 0L;
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for (int i=0; i<WIDTH; i++)
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height[i] = (byte)(H1*i);
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}
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public long positioncode()
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{
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return color[nplies&1] + color[0] + color[1] + BOTTOM;
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// color[0] + color[1] + BOTTOM forms bitmap of heights
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// so that positioncode() is a complete board encoding
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}
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public String toString()
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{
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StringBuffer buf = new StringBuffer();
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for (int i=0; i<nplies; i++)
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buf.append(1+moves[i]);
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if (true) return buf.toString(); // remove to get board + info printed
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buf.append("\n");
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for (int w=0; w<WIDTH; w++)
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buf.append(" "+(w+1));
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buf.append("\n");
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for (int h=HEIGHT-1; h>=0; h--) {
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for (int w=h; w<SIZE1; w+=H1) {
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long mask = 1L<<w;
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buf.append((color[0]&mask)!= 0 ? " @" :
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(color[1]&mask)!= 0 ? " 0" : " .");
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}
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buf.append("\n");
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}
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if (haswon(color[0]))
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buf.append("@ won\n");
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if (haswon(color[1]))
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buf.append("O won\n");
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return buf.toString();
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}
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// return whether columns col has room
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final boolean isplayable(int col)
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{
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return islegal(color[nplies&1] | (1L << height[col]));
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}
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// return whether newboard lacks overflowing column
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final boolean islegal(long newboard)
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{
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return (newboard & TOP) == 0;
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}
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// return whether newboard is legal and includes a win
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final boolean islegalhaswon(long newboard)
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{
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return islegal(newboard) && haswon(newboard);
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}
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// return whether newboard includes a win
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final boolean haswon(long newboard)
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{
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long diag1 = newboard & (newboard>>HEIGHT); // check diagonal \
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long hori = newboard & (newboard>>H1); // check horizontal -
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long diag2 = newboard & (newboard>>H2); // check diagonal /
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long vert = newboard & (newboard>>1); // check vertical |
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return ((diag1 & (diag1 >> 2*HEIGHT)) |
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(hori & (hori >> 2*H1)) |
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(diag2 & (diag2 >> 2*H2)) |
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(vert & (vert >> 2))) != 0;
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}
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void backmove()
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{
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int n;
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n = moves[--nplies];
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color[nplies&1] ^= 1L<<--height[n];
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}
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void makemove(int n)
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{
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color[nplies&1] ^= 1L<<height[n]++;
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moves[nplies++] = n;
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}
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}
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