summaryrefslogtreecommitdiff
path: root/tests/dristat.c
blob: 89853164c7265c8a88a4ae9d3e39d9850a3dd20e (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
/* dristat.c -- 
 * Created: Mon Jan 15 05:05:07 2001 by faith@acm.org
 *
 * Copyright 2000 VA Linux Systems, Inc., Fremont, California.
 * All Rights Reserved.
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the "Software"),
 * to deal in the Software without restriction, including without limitation
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
 * and/or sell copies of the Software, and to permit persons to whom the
 * Software is furnished to do so, subject to the following conditions:
 * 
 * The above copyright notice and this permission notice (including the next
 * paragraph) shall be included in all copies or substantial portions of the
 * Software.
 * 
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
 * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
 * DEALINGS IN THE SOFTWARE.
 * 
 * Authors: Rickard E. (Rik) Faith <faith@valinux.com>
 * 
 */

#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
#include "xf86drm.h"
#include "xf86drmRandom.c"
#include "xf86drmHash.c"
#include "xf86drm.c"

#define DRM_VERSION 0x00000001
#define DRM_MEMORY  0x00000002
#define DRM_CLIENTS 0x00000004
#define DRM_STATS   0x00000008
#define DRM_BUSID   0x00000010

static void getversion(int fd)
{
    drmVersionPtr version;
    
    version = drmGetVersion(fd);
    if (version) {
	printf("  Version information:\n");
	printf("    Name: %s\n", version->name ? version->name : "?");
	printf("    Version: %d.%d.%d\n",
	       version->version_major,
	       version->version_minor,
	       version->version_patchlevel);
	printf("    Date: %s\n", version->date ? version->date : "?");
	printf("    Desc: %s\n", version->desc ? version->desc : "?");
	drmFreeVersion(version);
    } else {
	printf("  No version information available\n");
    }
}

static void getbusid(int fd)
{
    const char *busid = drmGetBusid(fd);
    
    printf("  Busid: %s\n", *busid ? busid : "(not set)");
    drmFreeBusid(busid);
}


static void getvm(int fd)
{
    int             i;
    const char      *typename;
    char            flagname[33];
    drm_handle_t    offset;
    drmSize         size;
    drmMapType      type;
    drmMapFlags     flags;
    drm_handle_t    handle;
    int             mtrr;

    printf("  VM map information:\n");
    printf("  flags: (R)estricted (r)ead/(w)rite (l)ocked (k)ernel (W)rite-combine (L)ock:\n");
    printf("    slot     offset       size type flags    address mtrr\n");

    for (i = 0;
	 !drmGetMap(fd, i, &offset, &size, &type, &flags, &handle, &mtrr);
	 i++) {
	
	switch (type) {
	case DRM_FRAME_BUFFER:   typename = "FB";  break;
	case DRM_REGISTERS:      typename = "REG"; break;
	case DRM_SHM:            typename = "SHM"; break;
	case DRM_AGP:            typename = "AGP"; break;
	case DRM_SCATTER_GATHER: typename = "SG";  break;
	default:                 typename = "???"; break;
	}

	flagname[0] = (flags & DRM_RESTRICTED)      ? 'R' : ' ';
	flagname[1] = (flags & DRM_READ_ONLY)       ? 'r' : 'w';
	flagname[2] = (flags & DRM_LOCKED)          ? 'l' : ' ';
	flagname[3] = (flags & DRM_KERNEL)          ? 'k' : ' ';
	flagname[4] = (flags & DRM_WRITE_COMBINING) ? 'W' : ' ';
	flagname[5] = (flags & DRM_CONTAINS_LOCK)   ? 'L' : ' ';
	flagname[6] = '\0';
	
	printf("    %4d 0x%08lx 0x%08lx %3.3s %6.6s 0x%08lx ",
	       i, offset, (unsigned long)size, typename, flagname, handle);
	if (mtrr < 0) printf("none\n");
	else          printf("%4d\n", mtrr);
    }
}

static void getclients(int fd)
{
    int           i;
    int           auth;
    int           pid;
    int           uid;
    unsigned long magic;
    unsigned long iocs;
    char          buf[64];
    char          cmd[40];
    int           procfd;
    
    printf("  DRI client information:\n");
    printf("    a   pid   uid      magic     ioctls   prog\n");

    for (i = 0; !drmGetClient(fd, i, &auth, &pid, &uid, &magic, &iocs); i++) {
	sprintf(buf, "/proc/%d/cmdline", pid);
	memset(cmd, 0, sizeof(cmd));
	if ((procfd = open(buf, O_RDONLY, 0)) >= 0) {
	    read(procfd, cmd, sizeof(cmd)-1);
	    close(procfd);
	}
	if (*cmd) {
	    char *pt;

	    for (pt = cmd; *pt; pt++) if (!isprint(*pt)) *pt = ' ';
	    printf("    %c %5d %5d %10lu %10lu   %s\n",
		   auth ? 'y' : 'n', pid, uid, magic, iocs, cmd);
	} else {
	    printf("    %c %5d %5d %10lu %10lu\n",
		   auth ? 'y' : 'n', pid, uid, magic, iocs);
	}
    }
}

static void printhuman(unsigned long value, const char *name, int mult)
{
    const char *p;
    double     f;
				/* Print width 5 number in width 6 space */
    if (value < 100000) {
	printf(" %5lu", value);
	return;
    }

    p = name;
    f = (double)value / (double)mult;
    if (f < 10.0) {
	printf(" %4.2f%c", f, *p);
	return;
    }

    p++;
    f = (double)value / (double)mult;
    if (f < 10.0) {
	printf(" %4.2f%c", f, *p);
	return;
    }
    
    p++;
    f = (double)value / (double)mult;
    if (f < 10.0) {
	printf(" %4.2f%c", f, *p);
	return;
    }
}

static void getstats(int fd, int i)
{
    drmStatsT prev, curr;
    int       j;
    double    rate;
    
    printf("  System statistics:\n");

    if (drmGetStats(fd, &prev)) return;
    if (!i) {
	for (j = 0; j < prev.count; j++) {
	    printf("    ");
	    printf(prev.data[j].long_format, prev.data[j].long_name);
	    if (prev.data[j].isvalue) printf(" 0x%08lx\n", prev.data[j].value);
	    else                      printf(" %10lu\n", prev.data[j].value);
	}
	return;
    }

    printf("    ");
    for (j = 0; j < prev.count; j++)
	if (!prev.data[j].verbose) {
	    printf(" ");
	    printf(prev.data[j].rate_format, prev.data[j].rate_name);
	}
    printf("\n");
    
    for (;;) {
	sleep(i);
	if (drmGetStats(fd, &curr)) return;
	printf("    ");
	for (j = 0; j < curr.count; j++) {
	    if (curr.data[j].verbose) continue;
	    if (curr.data[j].isvalue) {
		printf(" %08lx", curr.data[j].value);
	    } else {
		rate = (curr.data[j].value - prev.data[j].value) / (double)i;
		printhuman(rate, curr.data[j].mult_names, curr.data[j].mult);
	    }
	}
	printf("\n");
	memcpy(&prev, &curr, sizeof(prev));
    }
    
}

int main(int argc, char **argv)
{
    int  c;
    int  mask     = 0;
    int  minor    = 0;
    int  interval = 0;
    int  fd;
    char buf[64];
    int  i;

    while ((c = getopt(argc, argv, "avmcsbM:i:")) != EOF)
	switch (c) {
	case 'a': mask = ~0;                          break;
	case 'v': mask |= DRM_VERSION;                break;
	case 'm': mask |= DRM_MEMORY;                 break;
	case 'c': mask |= DRM_CLIENTS;                break;
	case 's': mask |= DRM_STATS;                  break;
	case 'b': mask |= DRM_BUSID;                  break;
	case 'i': interval = strtol(optarg, NULL, 0); break;
	case 'M': minor = strtol(optarg, NULL, 0);    break;
	default:
	    fprintf( stderr, "Usage: dristat [options]\n\n" );
	    fprintf( stderr, "Displays DRM information. Use with no arguments to display available cards.\n\n" );
	    fprintf( stderr, "  -a            Show all available information\n" );
	    fprintf( stderr, "  -b            Show DRM bus ID's\n" );
	    fprintf( stderr, "  -c            Display information about DRM clients\n" );
	    fprintf( stderr, "  -i [interval] Continuously display statistics every [interval] seconds\n" );
	    fprintf( stderr, "  -v            Display DRM module and card version information\n" );
	    fprintf( stderr, "  -m            Display memory use information\n" );
	    fprintf( stderr, "  -s            Display DRM statistics\n" );
	    fprintf( stderr, "  -M [minor]    Select card by minor number\n" );
	    return 1;
	}

    for (i = 0; i < 16; i++) if (!minor || i == minor) {
	sprintf(buf, DRM_DEV_NAME, DRM_DIR_NAME, i);
	fd = drmOpenMinor(i, 1);
	if (fd >= 0) {
	    printf("%s\n", buf);
	    if (mask & DRM_BUSID)   getbusid(fd);
	    if (mask & DRM_VERSION) getversion(fd);
	    if (mask & DRM_MEMORY)  getvm(fd);
	    if (mask & DRM_CLIENTS) getclients(fd);
	    if (mask & DRM_STATS)   getstats(fd, interval);
	    close(fd);
	}
    }

    return 0; 
}
pan class="hl kwd">DMAOUTREG(MACH64_GUI_TRAJ_CNTL, regs->gui_traj_cntl); sarea_priv->dirty &= ~MACH64_UPLOAD_MISC; } if (dirty & MACH64_UPLOAD_DST_OFF_PITCH) { DMAOUTREG(MACH64_DST_OFF_PITCH, regs->dst_off_pitch); sarea_priv->dirty &= ~MACH64_UPLOAD_DST_OFF_PITCH; } if (dirty & MACH64_UPLOAD_Z_OFF_PITCH) { DMAOUTREG(MACH64_Z_OFF_PITCH, regs->z_off_pitch); sarea_priv->dirty &= ~MACH64_UPLOAD_Z_OFF_PITCH; } if (dirty & MACH64_UPLOAD_Z_ALPHA_CNTL) { DMAOUTREG(MACH64_Z_CNTL, regs->z_cntl); DMAOUTREG(MACH64_ALPHA_TST_CNTL, regs->alpha_tst_cntl); sarea_priv->dirty &= ~MACH64_UPLOAD_Z_ALPHA_CNTL; } if (dirty & MACH64_UPLOAD_SCALE_3D_CNTL) { DMAOUTREG(MACH64_SCALE_3D_CNTL, regs->scale_3d_cntl); sarea_priv->dirty &= ~MACH64_UPLOAD_SCALE_3D_CNTL; } if (dirty & MACH64_UPLOAD_DP_FOG_CLR) { DMAOUTREG(MACH64_DP_FOG_CLR, regs->dp_fog_clr); sarea_priv->dirty &= ~MACH64_UPLOAD_DP_FOG_CLR; } if (dirty & MACH64_UPLOAD_DP_WRITE_MASK) { DMAOUTREG(MACH64_DP_WRITE_MASK, regs->dp_write_mask); sarea_priv->dirty &= ~MACH64_UPLOAD_DP_WRITE_MASK; } if (dirty & MACH64_UPLOAD_DP_PIX_WIDTH) { DMAOUTREG(MACH64_DP_PIX_WIDTH, regs->dp_pix_width); sarea_priv->dirty &= ~MACH64_UPLOAD_DP_PIX_WIDTH; } if (dirty & MACH64_UPLOAD_SETUP_CNTL) { DMAOUTREG(MACH64_SETUP_CNTL, regs->setup_cntl); sarea_priv->dirty &= ~MACH64_UPLOAD_SETUP_CNTL; } if (dirty & MACH64_UPLOAD_TEXTURE) { DMAOUTREG(MACH64_TEX_SIZE_PITCH, regs->tex_size_pitch); DMAOUTREG(MACH64_TEX_CNTL, regs->tex_cntl); DMAOUTREG(MACH64_SECONDARY_TEX_OFF, regs->secondary_tex_off); DMAOUTREG(MACH64_TEX_0_OFF + offset, regs->tex_offset); sarea_priv->dirty &= ~MACH64_UPLOAD_TEXTURE; } DMAADVANCE(dev_priv, 1); sarea_priv->dirty &= MACH64_UPLOAD_CLIPRECTS; return 0; } /* ================================================================ * DMA command dispatch functions */ static int mach64_dma_dispatch_clear(struct drm_device * dev, struct drm_file *file_priv, unsigned int flags, int cx, int cy, int cw, int ch, unsigned int clear_color, unsigned int clear_depth) { drm_mach64_private_t *dev_priv = dev->dev_private; drm_mach64_sarea_t *sarea_priv = dev_priv->sarea_priv; drm_mach64_context_regs_t *ctx = &sarea_priv->context_state; int nbox = sarea_priv->nbox; struct drm_clip_rect *pbox = sarea_priv->boxes; u32 fb_bpp, depth_bpp; int i; DMALOCALS; DRM_DEBUG("%s\n", __FUNCTION__); switch (dev_priv->fb_bpp) { case 16: fb_bpp = MACH64_DATATYPE_RGB565; break; case 32: fb_bpp = MACH64_DATATYPE_ARGB8888; break; default: return -EINVAL; } switch (dev_priv->depth_bpp) { case 16: depth_bpp = MACH64_DATATYPE_RGB565; break; case 24: case 32: depth_bpp = MACH64_DATATYPE_ARGB8888; break; default: return -EINVAL; } if (!nbox) return 0; DMAGETPTR(file_priv, dev_priv, nbox * 31); /* returns on failure to get buffer */ for (i = 0; i < nbox; i++) { int x = pbox[i].x1; int y = pbox[i].y1; int w = pbox[i].x2 - x; int h = pbox[i].y2 - y; DRM_DEBUG("dispatch clear %d,%d-%d,%d flags 0x%x\n", pbox[i].x1, pbox[i].y1, pbox[i].x2, pbox[i].y2, flags); if (flags & (MACH64_FRONT | MACH64_BACK)) { /* Setup for color buffer clears */ DMAOUTREG(MACH64_Z_CNTL, 0); DMAOUTREG(MACH64_SCALE_3D_CNTL, 0); DMAOUTREG(MACH64_SC_LEFT_RIGHT, ctx->sc_left_right); DMAOUTREG(MACH64_SC_TOP_BOTTOM, ctx->sc_top_bottom); DMAOUTREG(MACH64_CLR_CMP_CNTL, 0); DMAOUTREG(MACH64_GUI_TRAJ_CNTL, (MACH64_DST_X_LEFT_TO_RIGHT | MACH64_DST_Y_TOP_TO_BOTTOM)); DMAOUTREG(MACH64_DP_PIX_WIDTH, ((fb_bpp << 0) | (fb_bpp << 4) | (fb_bpp << 8) | (fb_bpp << 16) | (fb_bpp << 28))); DMAOUTREG(MACH64_DP_FRGD_CLR, clear_color); DMAOUTREG(MACH64_DP_WRITE_MASK, ctx->dp_write_mask); DMAOUTREG(MACH64_DP_MIX, (MACH64_BKGD_MIX_D | MACH64_FRGD_MIX_S)); DMAOUTREG(MACH64_DP_SRC, (MACH64_BKGD_SRC_FRGD_CLR | MACH64_FRGD_SRC_FRGD_CLR | MACH64_MONO_SRC_ONE)); } if (flags & MACH64_FRONT) { DMAOUTREG(MACH64_DST_OFF_PITCH, dev_priv->front_offset_pitch); DMAOUTREG(MACH64_DST_X_Y, (y << 16) | x); DMAOUTREG(MACH64_DST_WIDTH_HEIGHT, (h << 16) | w); } if (flags & MACH64_BACK) { DMAOUTREG(MACH64_DST_OFF_PITCH, dev_priv->back_offset_pitch); DMAOUTREG(MACH64_DST_X_Y, (y << 16) | x); DMAOUTREG(MACH64_DST_WIDTH_HEIGHT, (h << 16) | w); } if (flags & MACH64_DEPTH) { /* Setup for depth buffer clear */ DMAOUTREG(MACH64_Z_CNTL, 0); DMAOUTREG(MACH64_SCALE_3D_CNTL, 0); DMAOUTREG(MACH64_SC_LEFT_RIGHT, ctx->sc_left_right); DMAOUTREG(MACH64_SC_TOP_BOTTOM, ctx->sc_top_bottom); DMAOUTREG(MACH64_CLR_CMP_CNTL, 0); DMAOUTREG(MACH64_GUI_TRAJ_CNTL, (MACH64_DST_X_LEFT_TO_RIGHT | MACH64_DST_Y_TOP_TO_BOTTOM)); DMAOUTREG(MACH64_DP_PIX_WIDTH, ((depth_bpp << 0) | (depth_bpp << 4) | (depth_bpp << 8) | (depth_bpp << 16) | (depth_bpp << 28))); DMAOUTREG(MACH64_DP_FRGD_CLR, clear_depth); DMAOUTREG(MACH64_DP_WRITE_MASK, 0xffffffff); DMAOUTREG(MACH64_DP_MIX, (MACH64_BKGD_MIX_D | MACH64_FRGD_MIX_S)); DMAOUTREG(MACH64_DP_SRC, (MACH64_BKGD_SRC_FRGD_CLR | MACH64_FRGD_SRC_FRGD_CLR | MACH64_MONO_SRC_ONE)); DMAOUTREG(MACH64_DST_OFF_PITCH, dev_priv->depth_offset_pitch); DMAOUTREG(MACH64_DST_X_Y, (y << 16) | x); DMAOUTREG(MACH64_DST_WIDTH_HEIGHT, (h << 16) | w); } } DMAADVANCE(dev_priv, 1); return 0; } static int mach64_dma_dispatch_swap(struct drm_device * dev, struct drm_file *file_priv) { drm_mach64_private_t *dev_priv = dev->dev_private; drm_mach64_sarea_t *sarea_priv = dev_priv->sarea_priv; int nbox = sarea_priv->nbox; struct drm_clip_rect *pbox = sarea_priv->boxes; u32 fb_bpp; int i; DMALOCALS; DRM_DEBUG("%s\n", __FUNCTION__); switch (dev_priv->fb_bpp) { case 16: fb_bpp = MACH64_DATATYPE_RGB565; break; case 32: default: fb_bpp = MACH64_DATATYPE_ARGB8888; break; } if (!nbox) return 0; DMAGETPTR(file_priv, dev_priv, 13 + nbox * 4); /* returns on failure to get buffer */ DMAOUTREG(MACH64_Z_CNTL, 0); DMAOUTREG(MACH64_SCALE_3D_CNTL, 0); DMAOUTREG(MACH64_SC_LEFT_RIGHT, 0 | (8191 << 16)); /* no scissor */ DMAOUTREG(MACH64_SC_TOP_BOTTOM, 0 | (16383 << 16)); DMAOUTREG(MACH64_CLR_CMP_CNTL, 0); DMAOUTREG(MACH64_GUI_TRAJ_CNTL, (MACH64_DST_X_LEFT_TO_RIGHT | MACH64_DST_Y_TOP_TO_BOTTOM)); DMAOUTREG(MACH64_DP_PIX_WIDTH, ((fb_bpp << 0) | (fb_bpp << 4) | (fb_bpp << 8) | (fb_bpp << 16) | (fb_bpp << 28))); DMAOUTREG(MACH64_DP_WRITE_MASK, 0xffffffff); DMAOUTREG(MACH64_DP_MIX, (MACH64_BKGD_MIX_D | MACH64_FRGD_MIX_S)); DMAOUTREG(MACH64_DP_SRC, (MACH64_BKGD_SRC_BKGD_CLR | MACH64_FRGD_SRC_BLIT | MACH64_MONO_SRC_ONE)); DMAOUTREG(MACH64_SRC_OFF_PITCH, dev_priv->back_offset_pitch); DMAOUTREG(MACH64_DST_OFF_PITCH, dev_priv->front_offset_pitch); for (i = 0; i < nbox; i++) { int x = pbox[i].x1; int y = pbox[i].y1; int w = pbox[i].x2 - x; int h = pbox[i].y2 - y; DRM_DEBUG("dispatch swap %d,%d-%d,%d\n", pbox[i].x1, pbox[i].y1, pbox[i].x2, pbox[i].y2); DMAOUTREG(MACH64_SRC_WIDTH1, w); DMAOUTREG(MACH64_SRC_Y_X, (x << 16) | y); DMAOUTREG(MACH64_DST_Y_X, (x << 16) | y); DMAOUTREG(MACH64_DST_WIDTH_HEIGHT, (h << 16) | w); } DMAADVANCE(dev_priv, 1); if (dev_priv->driver_mode == MACH64_MODE_DMA_ASYNC) { for (i = 0; i < MACH64_MAX_QUEUED_FRAMES - 1; i++) { dev_priv->frame_ofs[i] = dev_priv->frame_ofs[i + 1]; } dev_priv->frame_ofs[i] = GETRINGOFFSET(); dev_priv->sarea_priv->frames_queued++; } return 0; } static int mach64_do_get_frames_queued(drm_mach64_private_t * dev_priv) { drm_mach64_descriptor_ring_t *ring = &dev_priv->ring; drm_mach64_sarea_t *sarea_priv = dev_priv->sarea_priv; int i, start; u32 head, tail, ofs; DRM_DEBUG("%s\n", __FUNCTION__); if (sarea_priv->frames_queued == 0) return 0; tail = ring->tail; mach64_ring_tick(dev_priv, ring); head = ring->head; start = (MACH64_MAX_QUEUED_FRAMES - DRM_MIN(MACH64_MAX_QUEUED_FRAMES, sarea_priv->frames_queued)); if (head == tail) { sarea_priv->frames_queued = 0; for (i = start; i < MACH64_MAX_QUEUED_FRAMES; i++) { dev_priv->frame_ofs[i] = ~0; } return 0; } for (i = start; i < MACH64_MAX_QUEUED_FRAMES; i++) { ofs = dev_priv->frame_ofs[i]; DRM_DEBUG("frame_ofs[%d] ofs: %d\n", i, ofs); if (ofs == ~0 || (head < tail && (ofs < head || ofs >= tail)) || (head > tail && (ofs < head && ofs >= tail))) { sarea_priv->frames_queued = (MACH64_MAX_QUEUED_FRAMES - 1) - i; dev_priv->frame_ofs[i] = ~0; } } return sarea_priv->frames_queued; } /* Copy and verify a client submited buffer. * FIXME: Make an assembly optimized version */ static __inline__ int copy_from_user_vertex(u32 *to, const u32 __user *ufrom, unsigned long bytes) { unsigned long n = bytes; /* dwords remaining in buffer */ u32 *from, *orig_from; from = drm_alloc(bytes, DRM_MEM_DRIVER); if (from == NULL) return -ENOMEM; if (DRM_COPY_FROM_USER(from, ufrom, bytes)) { drm_free(from, bytes, DRM_MEM_DRIVER); return -EFAULT; } orig_from = from; /* we'll be modifying the "from" ptr, so save it */ n >>= 2; while (n > 1) { u32 data, reg, count; data = *from++; n--; reg = le32_to_cpu(data); count = (reg >> 16) + 1; if (count <= n) { n -= count; reg &= 0xffff; /* This is an exact match of Mach64's Setup Engine registers, * excluding SETUP_CNTL (1_C1). */ if ((reg >= 0x0190 && reg < 0x01c1) || (reg >= 0x01ca && reg <= 0x01cf)) { *to++ = data; memcpy(to, from, count << 2); from += count; to += count; } else { DRM_ERROR("%s: Got bad command: 0x%04x\n", __FUNCTION__, reg); drm_free(orig_from, bytes, DRM_MEM_DRIVER); return -EACCES; } } else { DRM_ERROR ("%s: Got bad command count(=%u) dwords remaining=%lu\n", __FUNCTION__, count, n); drm_free(orig_from, bytes, DRM_MEM_DRIVER); return -EINVAL; } } drm_free(orig_from, bytes, DRM_MEM_DRIVER); if (n == 0) return 0; else { DRM_ERROR("%s: Bad buf->used(=%lu)\n", __FUNCTION__, bytes); return -EINVAL; } } static int mach64_dma_dispatch_vertex(struct drm_device * dev, struct drm_file *file_priv, drm_mach64_vertex_t * vertex) { drm_mach64_private_t *dev_priv = dev->dev_private; drm_mach64_sarea_t *sarea_priv = dev_priv->sarea_priv; struct drm_buf *copy_buf; void *buf = vertex->buf; unsigned long used = vertex->used; int ret = 0; int i = 0; int done = 0; int verify_ret = 0; DMALOCALS; DRM_DEBUG("%s: buf=%p used=%lu nbox=%d\n", __FUNCTION__, buf, used, sarea_priv->nbox); if (!used) goto _vertex_done; copy_buf = mach64_freelist_get(dev_priv); if (copy_buf == NULL) { DRM_ERROR("%s: couldn't get buffer\n", __FUNCTION__); return -EAGAIN; } verify_ret = copy_from_user_vertex(GETBUFPTR(copy_buf), buf, used); if (verify_ret != 0) { mach64_freelist_put(dev_priv, copy_buf); goto _vertex_done; } copy_buf->used = used; DMASETPTR(copy_buf); if (sarea_priv->dirty & ~MACH64_UPLOAD_CLIPRECTS) { ret = mach64_emit_state(file_priv, dev_priv); if (ret < 0) return ret; } do { /* Emit the next cliprect */ if (i < sarea_priv->nbox) { ret = mach64_emit_cliprect(file_priv, dev_priv, &sarea_priv->boxes[i]); if (ret < 0) { /* failed to get buffer */ return ret; } else if (ret != 0) { /* null intersection with scissor */ continue; } } if ((i >= sarea_priv->nbox - 1)) done = 1; /* Add the buffer to the DMA queue */ DMAADVANCE(dev_priv, done); } while (++i < sarea_priv->nbox); if (!done) { if (copy_buf->pending) { DMADISCARDBUF(); } else { /* This buffer wasn't used (no cliprects), so place it * back on the free list */ mach64_freelist_put(dev_priv, copy_buf); } } _vertex_done: sarea_priv->dirty &= ~MACH64_UPLOAD_CLIPRECTS; sarea_priv->nbox = 0; return verify_ret; } static __inline__ int copy_from_user_blit(u32 *to, const u32 __user *ufrom, unsigned long bytes) { to = (u32 *)((char *)to + MACH64_HOSTDATA_BLIT_OFFSET); if (DRM_COPY_FROM_USER(to, ufrom, bytes)) { return -EFAULT; } return 0; } static int mach64_dma_dispatch_blit(struct drm_device * dev, struct drm_file *file_priv, drm_mach64_blit_t * blit) { drm_mach64_private_t *dev_priv = dev->dev_private; int dword_shift, dwords; unsigned long used; struct drm_buf *copy_buf; int verify_ret = 0; DMALOCALS; /* The compiler won't optimize away a division by a variable, * even if the only legal values are powers of two. Thus, we'll * use a shift instead. */ switch (blit->format) { case MACH64_DATATYPE_ARGB8888: dword_shift = 0; break; case MACH64_DATATYPE_ARGB1555: case MACH64_DATATYPE_RGB565: case MACH64_DATATYPE_VYUY422: case MACH64_DATATYPE_YVYU422: case MACH64_DATATYPE_ARGB4444: dword_shift = 1; break; case MACH64_DATATYPE_CI8: case MACH64_DATATYPE_RGB8: dword_shift = 2; break; default: DRM_ERROR("invalid blit format %d\n", blit->format); return -EINVAL; } /* Set buf->used to the bytes of blit data based on the blit dimensions * and verify the size. When the setup is emitted to the buffer with * the DMA* macros below, buf->used is incremented to include the bytes * used for setup as well as the blit data. */ dwords = (blit->width * blit->height) >> dword_shift; used = dwords << 2; if (used <= 0 || used > MACH64_BUFFER_SIZE - MACH64_HOSTDATA_BLIT_OFFSET) { DRM_ERROR("Invalid blit size: %lu bytes\n", used); return -EINVAL; } copy_buf = mach64_freelist_get(dev_priv); if (copy_buf == NULL) { DRM_ERROR("%s: couldn't get buffer\n", __FUNCTION__); return -EAGAIN; } verify_ret = copy_from_user_blit(GETBUFPTR(copy_buf), blit->buf, used); if (verify_ret != 0) { mach64_freelist_put(dev_priv, copy_buf); goto _blit_done; } copy_buf->used = used; /* FIXME: Use a last buffer flag and reduce the state emitted for subsequent, * continuation buffers? */ /* Blit via BM_HOSTDATA (gui-master) - like HOST_DATA[0-15], but doesn't require * a register command every 16 dwords. State setup is added at the start of the * buffer -- the client leaves space for this based on MACH64_HOSTDATA_BLIT_OFFSET */ DMASETPTR(copy_buf); DMAOUTREG(MACH64_Z_CNTL, 0); DMAOUTREG(MACH64_SCALE_3D_CNTL, 0); DMAOUTREG(MACH64_SC_LEFT_RIGHT, 0 | (8191 << 16)); /* no scissor */ DMAOUTREG(MACH64_SC_TOP_BOTTOM, 0 | (16383 << 16)); DMAOUTREG(MACH64_CLR_CMP_CNTL, 0); /* disable */ DMAOUTREG(MACH64_GUI_TRAJ_CNTL, MACH64_DST_X_LEFT_TO_RIGHT | MACH64_DST_Y_TOP_TO_BOTTOM); DMAOUTREG(MACH64_DP_PIX_WIDTH, (blit->format << 0) /* dst pix width */ |(blit->format << 4) /* composite pix width */ |(blit->format << 8) /* src pix width */ |(blit->format << 16) /* host data pix width */ |(blit->format << 28) /* scaler/3D pix width */ ); DMAOUTREG(MACH64_DP_WRITE_MASK, 0xffffffff); /* enable all planes */ DMAOUTREG(MACH64_DP_MIX, MACH64_BKGD_MIX_D | MACH64_FRGD_MIX_S); DMAOUTREG(MACH64_DP_SRC, MACH64_BKGD_SRC_BKGD_CLR | MACH64_FRGD_SRC_HOST | MACH64_MONO_SRC_ONE); DMAOUTREG(MACH64_DST_OFF_PITCH, (blit->pitch << 22) | (blit->offset >> 3)); DMAOUTREG(MACH64_DST_X_Y, (blit->y << 16) | blit->x); DMAOUTREG(MACH64_DST_WIDTH_HEIGHT, (blit->height << 16) | blit->width); DRM_DEBUG("%s: %lu bytes\n", __FUNCTION__, used); /* Add the buffer to the queue */ DMAADVANCEHOSTDATA(dev_priv); _blit_done: return verify_ret; } /* ================================================================ * IOCTL functions */ int mach64_dma_clear(struct drm_device *dev, void *data, struct drm_file *file_priv) { drm_mach64_private_t *dev_priv = dev->dev_private; drm_mach64_sarea_t *sarea_priv = dev_priv->sarea_priv; drm_mach64_clear_t *clear = data; int ret; DRM_DEBUG("%s: pid=%d\n", __FUNCTION__, DRM_CURRENTPID); LOCK_TEST_WITH_RETURN(dev, file_priv); if (sarea_priv->nbox > MACH64_NR_SAREA_CLIPRECTS) sarea_priv->nbox = MACH64_NR_SAREA_CLIPRECTS; ret = mach64_dma_dispatch_clear(dev, file_priv, clear->flags, clear->x, clear->y, clear->w, clear->h, clear->clear_color, clear->clear_depth); /* Make sure we restore the 3D state next time. */ sarea_priv->dirty |= (MACH64_UPLOAD_CONTEXT | MACH64_UPLOAD_MISC); return ret; } int mach64_dma_swap(struct drm_device *dev, void *data, struct drm_file *file_priv) { drm_mach64_private_t *dev_priv = dev->dev_private; drm_mach64_sarea_t *sarea_priv = dev_priv->sarea_priv; int ret; DRM_DEBUG("%s: pid=%d\n", __FUNCTION__, DRM_CURRENTPID); LOCK_TEST_WITH_RETURN(dev, file_priv); if (sarea_priv->nbox > MACH64_NR_SAREA_CLIPRECTS) sarea_priv->nbox = MACH64_NR_SAREA_CLIPRECTS; ret = mach64_dma_dispatch_swap(dev, file_priv); /* Make sure we restore the 3D state next time. */ sarea_priv->dirty |= (MACH64_UPLOAD_CONTEXT | MACH64_UPLOAD_MISC); return ret; } int mach64_dma_vertex(struct drm_device *dev, void *data, struct drm_file *file_priv) { drm_mach64_private_t *dev_priv = dev->dev_private; drm_mach64_sarea_t *sarea_priv = dev_priv->sarea_priv; drm_mach64_vertex_t *vertex = data; LOCK_TEST_WITH_RETURN(dev, file_priv); if (!dev_priv) { DRM_ERROR("%s called with no initialization\n", __FUNCTION__); return -EINVAL; } DRM_DEBUG("%s: pid=%d buf=%p used=%lu discard=%d\n", __FUNCTION__, DRM_CURRENTPID, vertex->buf, vertex->used, vertex->discard); if (vertex->prim < 0 || vertex->prim > MACH64_PRIM_POLYGON) { DRM_ERROR("buffer prim %d\n", vertex->prim); return -EINVAL; } if (vertex->used > MACH64_BUFFER_SIZE || (vertex->used & 3) != 0) { DRM_ERROR("Invalid vertex buffer size: %lu bytes\n", vertex->used); return -EINVAL; } if (sarea_priv->nbox > MACH64_NR_SAREA_CLIPRECTS) sarea_priv->nbox = MACH64_NR_SAREA_CLIPRECTS; return mach64_dma_dispatch_vertex(dev, file_priv, vertex); } int mach64_dma_blit(struct drm_device *dev, void *data, struct drm_file *file_priv) { drm_mach64_private_t *dev_priv = dev->dev_private; drm_mach64_sarea_t *sarea_priv = dev_priv->sarea_priv; drm_mach64_blit_t *blit = data; int ret; LOCK_TEST_WITH_RETURN(dev, file_priv); ret = mach64_dma_dispatch_blit(dev, file_priv, blit); /* Make sure we restore the 3D state next time. */ sarea_priv->dirty |= (MACH64_UPLOAD_CONTEXT | MACH64_UPLOAD_MISC | MACH64_UPLOAD_CLIPRECTS); return ret; } int mach64_get_param(struct drm_device *dev, void *data, struct drm_file *file_priv) { drm_mach64_private_t *dev_priv = dev->dev_private; drm_mach64_getparam_t *param = data; int value; DRM_DEBUG("%s\n", __FUNCTION__); if (!dev_priv) { DRM_ERROR("%s called with no initialization\n", __FUNCTION__); return -EINVAL; } switch (param->param) { case MACH64_PARAM_FRAMES_QUEUED: /* Needs lock since it calls mach64_ring_tick() */ LOCK_TEST_WITH_RETURN(dev, file_priv); value = mach64_do_get_frames_queued(dev_priv); break; case MACH64_PARAM_IRQ_NR: value = dev->irq; break; default: return -EINVAL; } if (DRM_COPY_TO_USER(param->value, &value, sizeof(int))) { DRM_ERROR("copy_to_user\n"); return -EFAULT; } return 0; }