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比特派錢包官網(wǎng)下載app正版|cgminer挖ltc

比特派錢包官網(wǎng)下載app正版|cgminer挖ltc

  • 作者: 比特派錢包官網(wǎng)下載app正版
  • 2024-03-15 07:05:02

cgminer挖LTC教程,適用顯卡挖礦的礦工 | 藍(lán)藍(lán)的天空|挖礦機(jī)

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cgminer挖LTC教程,適用顯卡挖礦的礦工 | 藍(lán)藍(lán)的天空|挖礦機(jī)

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cgminer挖LTC教程,適用顯卡挖礦的礦工

作者:BTC-Miner ? 發(fā)布:2013-09-05 08:10 ? 分類:挖礦機(jī)教程 ?踩踏:35,451次 ? 搶沙發(fā) ?

博主前面簡單的說了如何挖萊特幣,如何挖ltc幣。在那篇文章里面講解了兩種方法挖ltc幣,一種采用命令行的挖礦軟件,也就是cgminer,另外一種是guiminer的圖形化挖礦軟件。對于cgminer挖礦軟件的使用,只是簡單的說明了一下。這里我再把cgminer挖ltc的方法詳細(xì)說一下。其實(shí)主要就是幾個參數(shù)的調(diào)配。比cgminer挖btc復(fù)雜一點(diǎn)點(diǎn)。

首先,還是到cgminer官網(wǎng)去下載cgminer的ltc版本,也就是scrypt版本,在下載的時候請注意選擇。

其次下載后,解壓到一個磁盤。在命令行形式下進(jìn)入該文件夾,執(zhí)行以下命令:

X:cgminercgminer.exe --scrypt -o http://cnltcpool.com:8337 -u username -p password --gpu-engine gpucoreclock --gpu-memclock gpumemoryclock -I 15

X:就是你解壓cgminer的磁盤,如果是c盤就是c,如果是d盤就是d;

X:cgminer?? 是cgminer解壓后的文件路徑,根據(jù)自己實(shí)際情況輸入;

–scrypt,添加該參數(shù),表示是挖LTC,如果要挖ltc必須加入此參數(shù),否則是挖BTC;

-o(注意這是字母O,而不是數(shù)字0) 后面是礦池的地址,地址的冒號后面是端口號,如果你用的是其它礦池,請改為對應(yīng)的礦池地址和端口號;

-u 你在礦池中申請的礦工名稱,將username改為你的礦工名稱;

-p 礦工對應(yīng)的密碼,將password改為你礦工所對應(yīng)的密碼,盡量設(shè)置簡單點(diǎn),例如123、x等等,這個礦工密碼不影響你帳號安全;

–gpu-engine (此參數(shù)可選)設(shè)定你的顯卡核心頻率,將gpucoreclock設(shè)為你想要的值,但不能超出默認(rèn)的太多,核心頻率數(shù)值看顯卡說明書;

–gpu-memclock(此參數(shù)可選) 設(shè)定你的顯存頻率,將gpumemoryclock改為你需要的顯存頻率數(shù)值,一定要設(shè)成默認(rèn)出廠顯存頻率,或高于出廠頻率(超頻),不能降低顯存頻率,否則會影響cgminer的挖礦效率。該數(shù)值還是來自顯卡說明書;

-I 15:不同于BTC的I 9,LTC需要把Intensity的值設(shè)為-I 15才能發(fā)揮最高效率,如果你在這臺電腦上面還要做更多的事,可將I值設(shè)為-I 12,專用LTC礦機(jī)建議設(shè)為-I 15

本文固定鏈接: http://www.wakuangji.cn/jiaocheng/cgminer/ | 藍(lán)藍(lán)的天空|挖礦機(jī)

作者:BTC-Miner | 發(fā)布:2013年09月05日 | 分類:挖礦機(jī)教程 | 原創(chuàng)文章轉(zhuǎn)載請注明:cgminer挖LTC教程,適用顯卡挖礦的礦工 | 藍(lán)藍(lán)的天空|挖礦機(jī)

上一篇:如何挖萊特幣,如何挖ltc幣,萊特幣經(jīng)典挖礦教程

下一篇:萊特幣挖礦使用的scrypt算法挖礦教程,適用LTC、FTC、CNC等

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如何開采萊特幣:萊特幣挖礦指南

如何開采萊特幣:萊特幣挖礦指南 Перейтиксодержанию 尋找: 新聞 評測 礦業(yè) 貿(mào)易 訓(xùn)練 程序 完整清單 主頁 ? 礦業(yè) 如何開采萊特幣:萊特幣挖礦指南 瀏覽次數(shù) 1.6k。 評論 0 內(nèi)容 萊特幣挖礦如何運(yùn)作?挖礦難度指標(biāo)如何開采萊特幣?單人挖礦萊特幣礦池單獨(dú)挖礦 vs 萊特幣礦池云計(jì)算挖萊特幣需要什么萊特幣挖礦硬件萊特幣挖礦軟件萊特幣錢包開采一個萊特幣需要多長時間?開采萊特幣的最佳方式是什么?挖萊特幣有利可圖嗎?在挖礦加密貨幣和區(qū)塊鏈網(wǎng)絡(luò)中,萊特幣 (LTC) 可能是最常與比特幣 (BTC) 進(jìn)行比較的加密貨幣。 萊特幣是比特幣的直系后代,即比特幣的一個分支,與世界領(lǐng)先的加密貨幣共享許多屬性——挖礦過程、供應(yīng)上限和減半。 萊特幣是市場上最早的加密貨幣之一,于 2011 年推出,通常被稱為加密貨幣世界的“白銀”,而“黃金”則是為比特幣保留的。 萊特幣是最容易開采的加密貨幣之一。 由于與比特幣和比特幣的一些其他分支(例如比特幣 SV 和比特幣現(xiàn)金)相比,它的知名度和受歡迎程度較低,因此開采萊特幣的難度通常很低。 因此,LTC 可能會成為最賺錢的代幣之一。 在本文中,我們將詳細(xì)討論如何挖掘萊特幣。 萊特幣挖礦如何運(yùn)作? 挖掘萊特幣的過程類似于其母體比特幣或其他工作量證明 (PoW) 區(qū)塊鏈,例如狗狗幣 (DOGE)、比特幣現(xiàn)金 (BCH) 或以太坊經(jīng)典 (ETC)。 礦工們正試圖解決一個計(jì)算密集型數(shù)學(xué)難題,以便有資格將下一個交易塊添加到萊特幣網(wǎng)絡(luò)。 雖然我們將挖礦過程稱為“數(shù)學(xué)難題”的解決方案,但最好將其描述為不需要認(rèn)真數(shù)學(xué)努力的簡單數(shù)字交換練習(xí)。 本質(zhì)上,礦工們使用他們強(qiáng)大的礦機(jī)不斷生成新的數(shù)字組合,希望找到萊特幣網(wǎng)絡(luò)軟件所需的匹配項(xiàng)。 第一 礦工,它設(shè)法(實(shí)際上是隨機(jī)地)找到所需的數(shù)字組合,有權(quán)確認(rèn)當(dāng)前開采的區(qū)塊。 與比特幣一樣,在萊特幣中解決/挖掘一個區(qū)塊遠(yuǎn)非無私——礦工獲得標(biāo)準(zhǔn)的萊特幣挖礦獎勵。 目前,礦工對每個已解決區(qū)塊的獎勵為 12,5 LTC(約合 1 美元)。 就像比特幣一樣,萊特幣在挖礦過程中有一個內(nèi)置的獎勵均衡機(jī)制。 萊特幣的獎勵每四年減半,就像比特幣一樣。 在 200 年至 50 年期間,即代幣運(yùn)營的前四年,獎勵的初始值為 2011 LTC。 第一次減半發(fā)生在 2015 年 25 月,標(biāo)準(zhǔn)獎勵達(dá)到 2015 LTC。 隨后在 2019 年 12,5 月減半,將獎勵減少到目前的 2023 LTC。 今年我們將看到另一輪減半。 預(yù)計(jì)這將在 6,25 年 XNUMX 月發(fā)生,獎勵將降至 XNUMX LTC。 與比特幣獎勵的規(guī)模相比,這些數(shù)字看起來相當(dāng)不起眼。 但是,萊特幣每 2,5 分鐘就會生成一個新的交易塊。 這是比特幣 10 分鐘出塊周期的四倍,這意味著萊特幣礦工獲得獎勵的頻率明顯高于比特幣礦工。 此外,從他們的挖礦難度指標(biāo)來看,萊特幣比它的“父親”比特幣更容易開采。 挖礦難度指標(biāo) 挖礦難度分?jǐn)?shù)是一種標(biāo)準(zhǔn)指標(biāo),用于評估挖礦硬幣的計(jì)算要求。 它決定了機(jī)器需要產(chǎn)生的散列數(shù)來解決一個新的塊。 在適合挖礦的流行加密貨幣中,萊特幣在挖礦難度方面排名第二,僅次于其后代之一狗狗幣。 如何開采萊特幣? 萊特幣的挖礦方式主要有以下三種: 單人挖礦 通過礦池 通過云挖礦提供商 這些選項(xiàng)中的每一個都有其自身的優(yōu)點(diǎn)。 然而,今天,由于礦工之間的競爭加劇,沒有非常強(qiáng)大的礦機(jī)的單獨(dú)挖礦已經(jīng)變得難以獲利。 這不是萊特幣獨(dú)有的東西。 到 2023 年初,對于幾乎所有流行的區(qū)塊鏈網(wǎng)絡(luò)來說,沒有強(qiáng)大鉆機(jī)的單獨(dú)挖礦將是徒勞的。 單人挖礦 通過單獨(dú)挖礦,您作為一個單獨(dú)的挖礦節(jié)點(diǎn)加入萊特幣網(wǎng)絡(luò),并使用您的挖礦機(jī)來挖掘交易塊。 如果您設(shè)法向鏈中添加一個新區(qū)塊,您將獲得 12,5 LTC 的標(biāo)準(zhǔn)挖礦獎勵,而無需與其他網(wǎng)絡(luò)成員分享。 這是萊特幣單一挖礦的主要優(yōu)勢,也許是唯一優(yōu)勢。 萊特幣單獨(dú)挖礦的主要缺點(diǎn)是獎勵不頻繁且不一致。 單個礦工與礦池競爭,礦池是結(jié)合大量礦工的計(jì)算資源的大型合作社,以解決在網(wǎng)絡(luò)中創(chuàng)建新區(qū)塊的問題。 礦池?fù)碛械木C合哈希能力使得有利可圖的單獨(dú)挖礦變得極其困難。 除非你有一臺非常強(qiáng)大的機(jī)器,否則你可能永遠(yuǎn)無法獲得區(qū)塊獎勵。 即使擁有強(qiáng)大的采礦設(shè)備,您也可以期待在很長一段時間內(nèi)獲得下一個區(qū)塊的獎勵。 當(dāng)然,如果您設(shè)法解決了至少一個問題,這就是前提。 萊特幣礦池 萊特幣礦池是另一種也可能是最流行的萊特幣開采方式。 這些礦池匯集了多個礦工的資源,以增加解決交易區(qū)塊的機(jī)會。 當(dāng)一名礦池成員設(shè)法挖出一個區(qū)塊時,所有礦池成員將共享 12,5 LTC 的獎勵。 每個參與者都會收到與所花費(fèi)的散列功率成比例的獎勵份額。 因此,與單獨(dú)挖礦一樣,加入礦池時擁有盡可能強(qiáng)大的鉆機(jī)是有利的。 下圖顯示了截至 10 年 31 月 2023 日排名前 XNUMX 的萊特幣礦池。 來源:Miningpoolstats.stream 許多礦池保留一小部分獎勵,通常在 0,1% 到 3-4% 之間,用于提供他們的服務(wù)。 不過,好消息是,萊特幣挖礦行業(yè)至少有幾個大礦池是完全不收費(fèi)的。 例如,領(lǐng)先的萊特幣礦池之一, 萊特幣礦池.org, 一直是免費(fèi)的。 單獨(dú)挖礦 vs 萊特幣礦池 對于沒有強(qiáng)大礦機(jī)的礦工來說,礦池挖礦可能是獲得獎勵的唯一可行選擇。 自然地,沒有強(qiáng)大散列能力的礦機(jī)在任何礦池中都可能賺得很少。 但是,至少你會有源源不斷的資金流。 相比之下,沒有高端設(shè)備的單獨(dú)挖礦很可能根本不會產(chǎn)生任何回報。 即使您擁有非常強(qiáng)大的單機(jī)挖礦設(shè)備,礦池挖礦也可以為您提供更穩(wěn)定的賺取獎勵的方式。 雖然您強(qiáng)大的設(shè)置可能仍然可以讓您獲利,但加入礦池讓您有機(jī)會以更高的頻率獲得獎勵,盡管只是一小部分。 假設(shè)一個擁有高性能礦機(jī)的礦工平均每月設(shè)法獲得一次完整的區(qū)塊獎勵。 通過加入游泳池,他將能夠在一個月的同一時期內(nèi)每天賺取少量的穩(wěn)定收入。 換句話說,從長遠(yuǎn)來看,加入礦池可能不會增加你挖礦活動的整體盈利能力,但肯定會讓你獲得更穩(wěn)定的收入。 您加入的礦池越大,您獲得獎勵的頻率就越高。 云計(jì)算 除了萊特幣單獨(dú)和礦池挖礦之外,還有第三種不太傳統(tǒng)的參與挖礦過程的方式——使用云挖礦提供商。 在云挖礦模式下,您只需按月或按年向“租用”您的算力的服務(wù)提供商支付費(fèi)用。 云挖礦提供商為你挖加密貨幣以換取費(fèi)用,并根據(jù)你租用的哈希算力給你分享挖礦利潤。 云挖礦不需要您提供任何硬件,這比單獨(dú)挖礦或礦池挖礦有很大優(yōu)勢。 本質(zhì)上,您只是根據(jù)云提供商的正收益支付費(fèi)用。 當(dāng)然,您的收入可能會根據(jù)網(wǎng)絡(luò)活動和萊特幣網(wǎng)絡(luò)上的挖礦難度而波動。 雖然您支付給云挖礦提供商的費(fèi)用通常是固定的,但您的收入往往會波動。 然而,請考慮到可靠的云挖礦提供商的選擇相當(dāng)有限,尤其是對于萊特幣和其他比比特幣鮮為人知的挖礦加密貨幣。 一些具有萊特幣挖礦能力的主要云挖礦供應(yīng)商是 - NiceHash и 比特鹿. 挖萊特幣需要什么 萊特幣挖礦硬件 從理論上講,萊特幣可以使用 CPU、GPU 或 ASIC 鉆機(jī)進(jìn)行挖掘,這些機(jī)器是專為加密貨幣挖掘而設(shè)計(jì)的強(qiáng)大機(jī)器。 然而,實(shí)際上,使用 CPU 或 GPU 進(jìn)行萊特幣挖礦不再是有利可圖的選擇。 盡管與大多數(shù)其他領(lǐng)先的 PoW 加密貨幣相比,挖掘萊特幣的難度要低得多,但在過去幾年中,鏈上礦工之間的競爭有所增加。 隨著競爭的加劇,CPU 或 GPU 挖礦根本無利可圖。 使用 ASIC 機(jī)器是從萊特幣挖礦中獲利的唯一真正途徑。 多年來,ASIC 在比特幣挖礦中一直很受歡迎。 不幸的是,比特幣 ASIC 不能用作萊特幣采礦設(shè)備。 這是因?yàn)楸忍貛藕腿R特幣使用不同的哈希算法。 比特幣使用 SHA-256 算法,而萊特幣基于 Scrypt 哈希算法。 好消息是,用于挖掘萊特幣的 ASIC 機(jī)器可用于同時挖掘另一種非常受歡迎的硬幣 Dogecoin。 狗狗幣是萊特幣的進(jìn)化后代之一,使用相同的 Scrypt 哈希算法。 由于這兩種加密貨幣之間的高度兼容性,它們通常通過合并挖掘一起開采。 通過合并挖掘,您只需使用相同的機(jī)器和資源同時挖掘兩種加密貨幣,在本例中為萊特幣和狗狗幣。 萊特幣挖礦軟件 設(shè)置挖礦硬件后,您需要下載并使用專用的萊特幣挖礦軟件。 許多軟件包非常適合萊特幣挖礦。 其中一些,例如 MultiMiner и CGMiner完全免費(fèi)使用。 流行的付費(fèi)萊特幣挖礦軟件包包括 Kryptex и Cudo Miner. 萊特幣錢包 要存儲提取的資金,您需要一個萊特幣錢包。 并非所有領(lǐng)先的軟件錢包品牌都支持萊特幣。 提供使用萊特幣錢包功能的流行錢包提供商包括: 原子錢包, 信任錢包 и 瓜達(dá)錢包. 開采一個萊特幣需要多長時間? 萊特幣出塊時間為 2,5 分鐘,正好是開采一個萊特幣所需的時間。 在這方面,萊特幣的開采頻率是比特幣、比特幣現(xiàn)金和比特幣 SV 的四倍。 在流行的可開采加密貨幣中,有兩種比萊特幣的出塊時間更短——狗狗幣(1 分鐘)和以太坊經(jīng)典(15 秒)。 開采萊特幣的最佳方式是什么? 到 2023 年初,挖萊特幣的最佳方式將是使用足夠強(qiáng)大的 ASIC 機(jī)器并加入足夠大的礦池。 使用非常強(qiáng)大的 ASIC 鉆機(jī)仍然可以進(jìn)行單人挖礦,但即使您擁有最強(qiáng)大的鉆機(jī),也建議使用聯(lián)營。 通過加入礦池,您將確保更穩(wěn)定的挖礦收入。 此外,萊特幣是市場上有多個免費(fèi)礦池的代幣之一。 因此,基于礦池的挖礦是 LTC 的最佳選擇。 在組織挖礦時,請確保您也在以與萊特幣的組合格式挖狗狗幣。 同時,您不花費(fèi)任何額外資源,除了LTC之外,只賺取DOGE。 挖萊特幣有利可圖嗎? 正如我們文章前面所討論的,萊特幣是最容易開采的硬幣之一,只有狗狗幣的難度分?jǐn)?shù)較低。 然而,這并不意味著萊特幣挖礦就一定能盈利。 在幾乎所有流行的加密貨幣網(wǎng)絡(luò)中,2023 年礦工之間的競爭將非常激烈。 此外,與比特幣一樣,萊特幣的供應(yīng)量有限。 總共將創(chuàng)建 84 萬個萊特幣,截至 2023 年 72 月,已經(jīng)鑄造了約 2142 萬個。 結(jié)合獎勵減半機(jī)制,不斷減少的獎勵將在XNUMX年降為零。 因此,雖然萊特幣目前仍保持相對盈利,但請記住,它的盈利能力只會隨著時間的推移而下降。 為了正確評估萊特幣挖礦的盈利能力,我們建議您使用流行的在線盈利能力計(jì)算器。 WhatToMine.com無疑是此類計(jì)算器中最受歡迎的。 轉(zhuǎn)到網(wǎng)站的計(jì)算器部分,選擇萊特幣并輸入用于估算的關(guān)鍵參數(shù) - 您擁有或打算購買的采礦設(shè)備的哈希率和功耗,您的電費(fèi)以及您在通過礦池進(jìn)行采礦時將支付的費(fèi)用。 計(jì)算器將快速顯示您將賺取多少利潤(如果有的話)。 但是請記住,挖礦盈利能力估計(jì)可能會根據(jù)網(wǎng)絡(luò)上礦工之間的競爭等因素迅速變化,尤其是 LTC 的當(dāng)前市場價格。 萊特幣

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GitHub - bitmaintech/cgminer-ltc

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?masterBranchesTagsGo to fileCodeFolders and filesNameNameLast commit messageLast commit dateLatest commit?History10 Commitsbitstreamsbitstreams??ccanccan??compatcompat??liblib??m4m4??.gitignore.gitignore??01-cgminer.rules01-cgminer.rules??A1-board-selector-CCD.cA1-board-selector-CCD.c??A1-board-selector-CCR.cA1-board-selector-CCR.c??A1-board-selector.hA1-board-selector.h??A1-common.hA1-common.h??A1-desk-board-selector.cA1-desk-board-selector.c??A1-trimpot-mcp4x.cA1-trimpot-mcp4x.c??A1-trimpot-mcp4x.hA1-trimpot-mcp4x.h??API-READMEAPI-README??API.classAPI.class??API.javaAPI.java??ASIC-READMEASIC-README??AUTHORSAUTHORS??COPYINGCOPYING??ChangeLogChangeLog??FPGA-READMEFPGA-README??LICENSELICENSE??MCast.classMCast.class??MCast.javaMCast.java??Makefile.amMakefile.am??NEWSNEWS??READMEREADME??api-example.capi-example.c??api-example.phpapi-example.php??api-example.pyapi-example.py??api-example.rbapi-example.rb??api.capi.c??arg-nonnull.harg-nonnull.h??autogen.shautogen.sh??bench_block.hbench_block.h??bitforce-firmware-flash.cbitforce-firmware-flash.c??bitmain-readme.txtbitmain-readme.txt??c++defs.hc++defs.h??cgminer.ccgminer.c??cgminer.confcgminer.conf??compat.hcompat.h??configure.acconfigure.ac??configure.ac.bakconfigure.ac.bak??crc.hcrc.h??crc16.ccrc16.c??driver-SPI-bitmine-A1.cdriver-SPI-bitmine-A1.c??driver-avalon.cdriver-avalon.c??driver-avalon.hdriver-avalon.h??driver-avalon2.cdriver-avalon2.c??driver-avalon2.hdriver-avalon2.h??driver-avalon4.cdriver-avalon4.c??driver-avalon4.hdriver-avalon4.h??driver-bab.cdriver-bab.c??driver-bflsc.cdriver-bflsc.c??driver-bflsc.hdriver-bflsc.h??driver-bitforce.cdriver-bitforce.c??driver-bitfury.cdriver-bitfury.c??driver-bitfury.hdriver-bitfury.h??driver-bitmain.cdriver-bitmain.c??driver-bitmain.hdriver-bitmain.h??driver-blockerupter.cdriver-blockerupter.c??driver-blockerupter.hdriver-blockerupter.h??driver-bmsc.cdriver-bmsc.c??driver-btm-L3.cdriver-btm-L3.c??driver-btm-L3.hdriver-btm-L3.h??driver-cointerra.cdriver-cointerra.c??driver-cointerra.hdriver-cointerra.h??driver-drillbit.cdriver-drillbit.c??driver-drillbit.hdriver-drillbit.h??driver-hashfast.cdriver-hashfast.c??driver-hashfast.hdriver-hashfast.h??driver-hashratio.cdriver-hashratio.c??driver-hashratio.hdriver-hashratio.h??driver-icarus.cdriver-icarus.c??driver-klondike.cdriver-klondike.c??driver-knc.cdriver-knc.c??driver-minion.cdriver-minion.c??driver-modminer.cdriver-modminer.c??driver-spondoolies-sp10-p.cdriver-spondoolies-sp10-p.c??driver-spondoolies-sp10-p.hdriver-spondoolies-sp10-p.h??driver-spondoolies-sp10.cdriver-spondoolies-sp10.c??driver-spondoolies-sp10.hdriver-spondoolies-sp10.h??driver-spondoolies-sp30-p.cdriver-spondoolies-sp30-p.c??driver-spondoolies-sp30-p.hdriver-spondoolies-sp30-p.h??driver-spondoolies-sp30.cdriver-spondoolies-sp30.c??driver-spondoolies-sp30.hdriver-spondoolies-sp30.h??elist.helist.h??example.confexample.conf??fpgautils.cfpgautils.c??fpgautils.hfpgautils.h??gdbgdb??hexdump.chexdump.c??hf_protocol.hhf_protocol.h??hf_protocol_be.hhf_protocol_be.h??i2c-context.ci2c-context.c??i2c-context.hi2c-context.h??klist.cklist.c??klist.hklist.h??knc-asic.cknc-asic.c??View all filesRepository files navigationREADMELicenseGPL-3.0 licenseThis is a multi-threaded multi-pool FPGA and ASIC miner for bitcoin.

This code is provided entirely free of charge by the programmer in his spare

time so donations would be greatly appreciated. Please consider donating to the

address below.

Con Kolivas

15qSxP1SQcUX3o4nhkfdbgyoWEFMomJ4rZ

NOTE: This code is licensed under the GPLv3. This means that the source to any

modifications you make to this code MUST be provided by law if you distribute

modified binaries. See COPYING for details.

DOWNLOADS:

http://ck.kolivas.org/apps/cgminer

GIT TREE:

https://github.com/ckolivas/cgminer

Support thread:

http://bitcointalk.org/index.php?topic=28402.0

IRC Channel:

irc://irc.freenode.net/cgminer

SEE ALSO API-README, ASIC-README and FGPA-README FOR MORE INFORMATION ON EACH.

---

EXECUTIVE SUMMARY ON USAGE:

Single pool:

cgminer -o http://pool:port -u username -p password

Multiple pools:

cgminer -o http://pool1:port -u pool1username -p pool1password -o http://pool2:port -u pool2usernmae -p pool2password

Single pool with a standard http proxy:

cgminer -o "http:proxy:port|http://pool:port" -u username -p password

Single pool with a socks5 proxy:

cgminer -o "socks5:proxy:port|http://pool:port" -u username -p password

Single pool with stratum protocol support:

cgminer -o stratum+tcp://pool:port -u username -p password

Solo mining to local bitcoind:

cgminer -o http://localhost:8332 -u username -p password --btc-address 15qSxP1SQcUX3o4nhkfdbgyoWEFMomJ4rZ

The list of proxy types are:

http: standard http 1.1 proxy

http0: http 1.0 proxy

socks4: socks4 proxy

socks5: socks5 proxy

socks4a: socks4a proxy

socks5h: socks5 proxy using a hostname

If you compile cgminer with a version of CURL before 7.19.4 then some of the above will

not be available. All are available since CURL version 7.19.4

If you specify the --socks-proxy option to cgminer, it will only be applied to all pools

that don't specify their own proxy setting like above

After saving configuration from the menu, you do not need to give cgminer any

arguments and it will load your configuration.

Any configuration file may also contain a single

"include" : "filename"

to recursively include another configuration file.

Writing the configuration will save all settings from all files in the output.

---

BUILDING CGMINER FOR YOURSELF

DEPENDENCIES:

Mandatory:

pkg-config http://www.freedesktop.org/wiki/Software/pkg-config

libtool http://www.gnu.org/software/libtool/

Optional:

curl dev library http://curl.haxx.se/libcurl/

(libcurl4-openssl-dev - Must tell configure --disable-libcurl otherwise

it will attempt to compile it in)

curses dev library

(libncurses5-dev or libpdcurses on WIN32 for text user interface)

libudev dev library (libudev-dev)

(This is only required for USB device support and is linux only)

If building from git:

autoconf

automake

If building on Red Hat:

sudo yum install autoconf automake autoreconf libtool openssl-compat-bitcoin-devel.x86_64 \

curl libcurl libcurl-devel openssh

If building on Ubuntu:

sudo apt-get install build-essential autoconf automake libtool pkg-config \

libcurl3-dev libudev-dev

CGMiner specific configuration options:

--enable-bmsc Compile support for BitMain Single Chain(default disabled)

--enable-bitmain Compile support for BitMain Multi Chain(default disabled)

--enable-avalon Compile support for Avalon (default disabled)

--enable-avalon2 Compile support for Avalon2 (default disabled)

--enable-avalon4 Compile support for Avalon4 (default disabled)

--enable-bab Compile support for BlackArrow Bitfury (default

disabled)

--enable-bflsc Compile support for BFL ASICs (default disabled)

--enable-bitforce Compile support for BitForce FPGAs (default

disabled)

--enable-bitfury Compile support for BitFury ASICs (default disabled)

--enable-bitmine_A1 Compile support for Bitmine.ch A1 ASICs (default

disabled)

--enable-blockerupter Compile support for ASICMINER BlockErupter Tube/Prisma

(default disabled)

--enable-cointerra Compile support for Cointerra ASICs (default disabled)

--enable-drillbit Compile support for Drillbit BitFury ASICs (default

disabled)

--enable-hashfast Compile support for Hashfast (default disabled)

--enable-icarus Compile support for Icarus (default disabled)

--enable-klondike Compile support for Klondike (default disabled)

--enable-knc Compile support for KnC miners (default disabled)

--enable-minion Compile support for Minion BlackArrow ASIC (default

disabled)

--enable-modminer Compile support for ModMiner FPGAs(default disabled)

--enable-sp10 Compile support for Spondoolies SP10 (default

disabled)

--enable-sp30 Compile support for Spondoolies SP30 (default

disabled)

--disable-libcurl Disable building with libcurl for getwork and GBT

support

--without-curses Compile support for curses TUI (default enabled)

--with-system-libusb Compile against dynamic system libusb (default use

included static libusb)

Basic *nix build instructions:

To actually build:

./autogen.sh # only needed if building from git repo

CFLAGS="-O2 -Wall -march=native" ./configure

make

No installation is necessary. You may run cgminer from the build

directory directly, but you may do make install if you wish to install

cgminer to a system location or location you specified.

Building for windows:

It is actually easiest to build a windows binary using cross compilation tools

provided by "mxe" available at http://mxe.cc/ (use the 32 bit one!)

Once you have followed the instructions for building mxe:

export PATH=(path/to/mxe)/usr/bin/:$PATH

CFLAGS="-O2 -Wall -W -march=i686" ./configure --host=i686-pc-mingw32

make

Native WIN32 build instructions: see windows-build.txt but these instructions

are now hopelessly out of date.

---

Usage instructions: Run "cgminer --help" to see options:

Usage: cgminer [-DdElmpPQqUsTouOchnV]

Options for both config file and command line:

--anu-freq Set AntminerU1/2 frequency in MHz, range 125-500 (default: 250.0)

--api-allow Allow API access only to the given list of [G:]IP[/Prefix] addresses[/subnets]

--api-description Description placed in the API status header, default: cgminer version

--api-groups API one letter groups G:cmd:cmd[,P:cmd:*...] defining the cmds a groups can use

--api-listen Enable API, default: disabled

--api-mcast Enable API Multicast listener, default: disabled

--api-mcast-addr API Multicast listen address

--api-mcast-code Code expected in the API Multicast message, don't use '-'

--api-mcast-des Description appended to the API Multicast reply, default: ''

--api-mcast-port API Multicast listen port (default: 4028)

--api-network Allow API (if enabled) to listen on/for any address, default: only 127.0.0.1

--api-port Port number of miner API (default: 4028)

--au3-freq Set AntminerU3 frequency in MHz, range 100-250 (default: 225.0)

--au3-volt Set AntminerU3 voltage in mv, range 725-850, 0 to not set (default: 750)

--avalon-auto Adjust avalon overclock frequency dynamically for best hashrate

--avalon-cutoff Set avalon overheat cut off temperature (default: 60)

--avalon-fan Set fanspeed percentage for avalon, single value or range (default: 20-100)

--avalon-freq Set frequency range for avalon-auto, single value or range

--avalon-options Set avalon options baud:miners:asic:timeout:freq:tech

--avalon-temp Set avalon target temperature (default: 50)

--avalon2-freq Set frequency range for Avalon2, single value or range

--avalon2-voltage Set Avalon2 core voltage, in millivolts

--avalon2-fan Set Avalon2 target fan speed

--avalon2-cutoff Set Avalon2 overheat cut off temperature (default: 88)

--avalon2-fixed-speed Set Avalon2 fan to fixed speed

--avalon4-automatic-voltage Automatic adjust voltage base on module DH

--avalon4-voltage Set Avalon4 core voltage, in millivolts, step: 125

--avalon4-freq Set frequency for Avalon4, 1 to 3 values, example: 445:385:370

--avalon4-fan Set Avalon4 target fan speed range

--avalon4-temp Set Avalon4 target temperature (default: 42)

--avalon4-cutoff Set Avalon4 overheat cut off temperature (default: 65)

--avalon4-polling-delay Set Avalon4 polling delay value (ms) (default: 20)

--avalon4-ntime-offset Set Avalon4 MM ntime rolling max offset (default: 4)

--avalon4-aucspeed Set Avalon4 AUC IIC bus speed (default: 400000)

--avalon4-aucxdelay Set Avalon4 AUC IIC xfer read delay, 4800 ~= 1ms (default: 9600)

--bab-options Set BaB options max:def:min:up:down:hz:delay:trf

--balance Change multipool strategy from failover to even share balance

--benchfile Run cgminer in benchmark mode using a work file - produces no shares

--benchfile-display Display each benchfile nonce found

--benchmark Run cgminer in benchmark mode - produces no shares

--bet-clk Set clockspeed of ASICMINER Tube/Prisma to (arg+1)*10MHz (default: 23)

--bfl-range Use nonce range on bitforce devices if supported

--bflsc-overheat Set overheat temperature where BFLSC devices throttle, 0 to disable (default: 85)

--bitburner-fury-voltage Set BitBurner Fury core voltage, in millivolts

--bitburner-fury-options Override avalon-options for BitBurner Fury boards baud:miners:asic:timeout:freq

--bitburner-voltage Set BitBurner (Avalon) core voltage, in millivolts

--bitmain-auto Adjust bitmain overclock frequency dynamically for best hashrate

--bitmain-cutoff Set bitmain overheat cut off temperature

--bitmain-fan Set fanspeed percentage for bitmain, single value or range (default: 20-100)

--bitmain-freq Set frequency range for bitmain-auto, single value or range

--bitmain-hwerror Set bitmain device detect hardware error

--bitmain-options Set bitmain options baud:miners:asic:timeout:freq

--bitmain-temp Set bitmain target temperature

--bxf-bits Set max BXF/HXF bits for overclocking (default: 54)

--bxf-temp-target Set target temperature for BXF/HXF devices (default: 82)

--bxm-bits Set BXM bits for overclocking (default: 54)

--btc-address Set bitcoin target address when solo mining to bitcoind

--btc-sig Set signature to add to coinbase when solo mining (optional)

--compact Use compact display without per device statistics

--debug|-D Enable debug output

--disable-rejecting Automatically disable pools that continually reject shares

--drillbit-options Set drillbit options :clock[:clock_divider][:voltage]

--expiry|-E Upper bound on how many seconds after getting work we consider a share from it stale (default: 120)

--failover-only Don't leak work to backup pools when primary pool is lagging

--fix-protocol Do not redirect to a different getwork protocol (eg. stratum)

--hfa-hash-clock Set hashfast clock speed (default: 550)

--hfa-fail-drop Set how many MHz to drop clockspeed each failure on an overlocked hashfast device (default: 10)

--hfa-fan Set fanspeed percentage for hashfast, single value or range (default: 10-85)

--hfa-name Set a unique name for a single hashfast device specified with --usb or the first device found

--hfa-noshed Disable hashfast dynamic core disabling feature

--hfa-options Set hashfast options name:clock (comma separated)

--hfa-temp-overheat Set the hashfast overheat throttling temperature (default: 95)

--hfa-temp-target Set the hashfast target temperature (0 to disable) (default: 88)

--hro-freq Set the hashratio clock frequency (default: 280)

--hotplug Seconds between hotplug checks (0 means never check)

--klondike-options Set klondike options clock:temptarget

--load-balance Change multipool strategy from failover to quota based balance

--log|-l Interval in seconds between log output (default: 5)

--lowmem Minimise caching of shares for low memory applications

--minion-chipreport Seconds to report chip 5min hashrate, range 0-100 (default: 0=disabled)

--minion-freq Set minion chip frequencies in MHz, single value or comma list, range 100-1400 (default: 1200)

--minion-freqchange Millisecond total time to do frequency changes (default: 1000)

--minion-freqpercent Percentage to use when starting up a chip (default: 70%)

--minion-idlecount Report when IdleCount is >0 or changes

--minion-ledcount Turn off led when more than this many chips below the ledlimit (default: 0)

--minion-ledlimit Turn off led when chips GHs are below this (default: 90)

--minion-noautofreq Disable automatic frequency adjustment

--minion-overheat Enable directly halting any chip when the status exceeds 100C

--minion-spidelay Add a delay in microseconds after each SPI I/O

--minion-spireset SPI regular reset: iNNN for I/O count or sNNN for seconds - 0 means none

--minion-spisleep Sleep time in milliseconds when doing an SPI reset

--minion-temp Set minion chip temperature threshold, single value or comma list, range 120-160 (default: 135C)

--monitor|-m Use custom pipe cmd for output messages

--nfu-bits Set nanofury bits for overclocking, range 32-63 (default: 50)

--net-delay Impose small delays in networking to not overload slow routers

--no-submit-stale Don't submit shares if they are detected as stale

--osm-led-mode Set LED mode for OneStringMiner devices (default: 4)

--pass|-p Password for bitcoin JSON-RPC server

--per-device-stats Force verbose mode and output per-device statistics

--protocol-dump|-P Verbose dump of protocol-level activities

--queue|-Q Minimum number of work items to have queued (0+) (default: 1)

--quiet|-q Disable logging output, display status and errors

--quota|-U quota;URL combination for server with load-balance strategy quotas

--real-quiet Disable all output

--rock-freq Set RockMiner frequency in MHz, range 200-400 (default: 270)

--rotate Change multipool strategy from failover to regularly rotate at N minutes (default: 0)

--round-robin Change multipool strategy from failover to round robin on failure

--scan-time|-s Upper bound on time spent scanning current work, in seconds (default: -1)

--sched-start Set a time of day in HH:MM to start mining (a once off without a stop time)

--sched-stop Set a time of day in HH:MM to stop mining (will quit without a start time)

--sharelog Append share log to file

--shares Quit after mining N shares (default: unlimited)

--socks-proxy Set socks4 proxy (host:port)

--suggest-diff Suggest miner difficulty for pool to user (default: none)

--syslog Use system log for output messages (default: standard error)

--temp-cutoff Temperature where a device will be automatically disabled, one value or comma separated list (default: 95)

--text-only|-T Disable ncurses formatted screen output

--url|-o URL for bitcoin JSON-RPC server

--usb USB device selection

--user|-u Username for bitcoin JSON-RPC server

--userpass|-O Username:Password pair for bitcoin JSON-RPC server

--verbose Log verbose output to stderr as well as status output

--widescreen Use extra wide display without toggling

--worktime Display extra work time debug information

Options for command line only:

--config|-c Load a JSON-format configuration file

See example.conf for an example configuration.

--default-config Specify the filename of the default config file

Loaded at start and used when saving without a name.

--help|-h Print this message

--ndevs|-n Display all USB devices and exit

--version|-V Display version and exit

Silent USB device (ASIC and FPGA) options:

--icarus-options Set specific FPGA board configurations - one set of values for all or comma separated

--icarus-timing Set how the Icarus timing is calculated - one setting/value for all or comma separated

--usb-dump (See FPGA-README)

See FGPA-README or ASIC-README for more information regarding these.

ASIC only options:

--anu-freq Set AntminerU1/2 frequency in MHz, range 125-500 (default: 250.0)

--au3-freq Set AntminerU3 frequency in MHz, range 100-250 (default: 225.0)

--au3-volt Set AntminerU3 voltage in mv, range 725-850, 0 to not set (default: 750)

--avalon-auto Adjust avalon overclock frequency dynamically for best hashrate

--avalon-cutoff Set avalon overheat cut off temperature (default: 60)

--avalon-fan Set fanspeed percentage for avalon, single value or range (default: 20-100)

--avalon-freq Set frequency range for avalon-auto, single value or range

--avalon-options Set avalon options baud:miners:asic:timeout:freq:tech

--avalon-temp Set avalon target temperature (default: 50)

--avalon2-freq Set frequency range for Avalon2, single value or range

--avalon2-voltage Set Avalon2 core voltage, in millivolts

--avalon2-fan Set Avalon2 target fan speed

--avalon2-cutoff Set Avalon2 overheat cut off temperature (default: 88)

--avalon2-fixed-speed Set Avalon2 fan to fixed speed

--avalon4-automatic-voltage Automatic adjust voltage base on module DH

--avalon4-voltage Set Avalon4 core voltage, in millivolts, step: 125

--avalon4-freq Set frequency for Avalon4, 1 to 3 values, example: 445:385:370

--avalon4-fan Set Avalon4 target fan speed range

--avalon4-temp Set Avalon4 target temperature (default: 42)

--avalon4-cutoff Set Avalon4 overheat cut off temperature (default: 65)

--avalon4-polling-delay Set Avalon4 polling delay value (ms) (default: 20)

--avalon4-ntime-offset Set Avalon4 MM ntime rolling max offset (default: 4)

--avalon4-aucspeed Set Avalon4 AUC IIC bus speed (default: 400000)

--avalon4-aucxdelay Set Avalon4 AUC IIC xfer read delay, 4800 ~= 1ms (default: 9600)

--bab-options Set BaB options max:def:min:up:down:hz:delay:trf

--bflsc-overheat Set overheat temperature where BFLSC devices throttle, 0 to disable (default: 90)

--bitburner-fury-options Override avalon-options for BitBurner Fury boards baud:miners:asic:timeout:freq

--bitburner-fury-voltage Set BitBurner Fury core voltage, in millivolts

--bitburner-voltage Set BitBurner (Avalon) core voltage, in millivolts

--bitmine-a1-options :::

--bxf-temp-target Set target temperature for BXF devices (default: 82)

--bxm-bits Set BXM bits for overclocking (default: 50)

--hfa-hash-clock Set hashfast clock speed (default: 550)

--hfa-fail-drop Set how many MHz to drop clockspeed each failure on an overlocked hashfast device (default: 10)

--hfa-fan Set fanspeed percentage for hashfast, single value or range (default: 10-85)

--hfa-name Set a unique name for a single hashfast device specified with --usb or the first device found

--hfa-noshed Disable hashfast dynamic core disabling feature

--hfa-temp-overheat Set the hashfast overheat throttling temperature (default: 95)

--hfa-temp-target Set the hashfast target temperature (0 to disable) (default: 88)

--hro-freq Set the hashratio clock frequency (default: 280)

--klondike-options Set klondike options clock:temptarget

--rock-freq Set RockMiner frequency in MHz, range 125-500 (default: 270)

See ASIC-README for more information regarding these.

FPGA only options:

--bfl-range Use nonce range on bitforce devices if supported

See FGPA-README for more information regarding this.

Cgminer should automatically find all of your Avalon ASIC, BFL ASIC, BitForce

FPGAs, Icarus bitstream FPGAs, Klondike ASIC, ASICMINER usb block erupters,

KnC ASICs, BaB ASICs, Hashfast ASICs, ModMiner FPGAs, BPMC/BGMC BF1 USB ASICs,

Bi*fury USB ASICs, Onestring miner USB ASICs, Hexfury USB ASICs, Nanofury USB

ASICs, Antminer U1/U2/U2+ U3 USB ASICs, Cointerra devices, BFx2 USB ASICs,

Rockminer R-Box/RK-Box/T1 USB ASICs, Avalon2/3/4 USB ASICs and Hashratio USB

ASICs.

---

SETTING UP USB DEVICES

WINDOWS:

On windows, the direct USB support requires the installation of a WinUSB

driver (NOT the ftdi_sio driver), and attach it to the chosen USB device.

When configuring your device, plug it in and wait for windows to attempt to

install a driver on its own. It may think it has succeeded or failed but wait

for it to finish regardless. This is NOT the driver you want installed. At this

point you need to associate your device with the WinUSB driver. The easiest

way to do this is to use the zadig utility which you must right click on and

run as administrator. Then once you plug in your device you can choose the

"list all devices" from the "option" menu and you should be able to see the

device as something like: "BitFORCE SHA256 SC". Choose the install or replace

driver option and select WinUSB. You can either google for zadig or download

it from the cgminer directory in the DOWNLOADS link above.

When you first switch a device over to WinUSB with zadig and it shows that

correctly on the left of the zadig window, but it still gives permission

errors, you may need to unplug the USB miner and then plug it back in. Some

users may need to reboot at this point.

LINUX:

The short version:

sudo cp 01-cgminer.rules /etc/udev/rules.d/

The long version:

On linux, the direct USB support requires no drivers at all. However due to

permissions issues, you may not be able to mine directly on the devices as a

regular user without giving the user access to the device or by mining as

root (administrator). In order to give your regular user access, you can make

him a member of the plugdev group with the following commands:

sudo usermod -G plugdev -a `whoami`

If your distribution does not have the plugdev group you can create it with:

sudo groupadd plugdev

In order for the USB devices to instantly be owned by the plugdev group and

accessible by anyone from the plugdev group you can copy the file

"01-cgminer.rules" from the cgminer archive into the /etc/udev/rules.d

directory with the following command:

sudo cp 01-cgminer.rules /etc/udev/rules.d/

After this you can either manually restart udev and re-login, or more easily

just reboot.

OSX:

On OSX, like Linux, no drivers need to be installed. However some devices

like the bitfury USB sticks automatically load a driver thinking they're a

modem and the driver needs to be unloaded for cgminer to work:

sudo kextunload -b com.apple.driver.AppleUSBCDC

sudo kextunload -b com.apple.driver.AppleUSBCDCACMData

There may be a limit to the number of USB devices that you are allowed to start.

The following set of commands, followed by a reboot will increase that:

sudo su

touch /etc/sysctl.conf

echo kern.sysv.semume=100 >> /etc/sysctl.conf

chown root:wheel /etc/sysctl.conf

chmod 0644 /etc/sysctl.conf

Some devices need superuser access to mine on them so cgminer may need to

be started with sudo

i.e.:

sudo cgminer

---

Advanced USB options:

The --usb option can restrict how many USB devices are found:

--usb 1:2,1:3,1:4,1:*

or

--usb BAS:1,BFL:1,MMQ:0,ICA:0,KLN:0

or

--usb :10

You can only use one of the above 3

The first version

--usb 1:2,1:3,1:4,1:*

allows you to select which devices to mine on with a list of USB

bus_number:device_address

All other USB devices will be ignored

Hotplug will also only look at the devices matching the list specified and

find nothing new if they are all in use

You can specify just the USB bus_number to find all devices like 1:*

which means any devices on USB bus_number 1

This is useful if you unplug a device then plug it back in the same port,

it usually reappears with the same bus_number but a different device_address

You can see the list of all USB devices on linux with 'sudo lsusb'

Cgminer will list the recognised USB devices

with the '-n' option or the

'--usb-dump 0' option

The '--usb-dump N' option with a value of N greater than 0 will dump a lot

of details about each recognised USB device

If you wish to see all USB devices, include the --usb-list-all option

The second version

--usb BAS:1,BFL:1,MMQ:0,ICA:0,KLN:0

allows you to specify how many devices to choose based on each device

driver cgminer has - the current USB drivers are:

AVA, BAS, BFL, BF1, DRB, HFA, ICA, KLN and MMQ.

N.B. you can only specify which device driver to limit, not the type of

each device, e.g. with BAS:n you can limit how many BFL ASIC devices will

be checked, but you cannot limit the number of each type of BFL ASIC

Also note that the MMQ count is the number of MMQ backplanes you have

not the number of MMQ FPGAs

The third version

--usb :10

means only use a maximum of 10 devices of any supported USB devices

Once cgminer has 10 devices it will not configure any more and hotplug will

not scan for any more

If one of the 10 devices stops working, hotplug - if enabled, as is default

- will scan normally again until it has 10 devices

--usb :0 will disable all USB I/O other than to initialise libusb

---

WHILE RUNNING:

The following options are available while running with a single keypress:

[U]SB management [P]ool management [S]ettings [D]isplay options [Q]uit

U gives you:

[S]ummary of device information

[E]nable device

[D]isable device

[U]nplug to allow hotplug restart

[R]eset device USB

[L]ist all known devices

[B]lacklist current device from current instance of cgminer

[W]hitelist previously blacklisted device

[H]otplug interval (0 to disable)

P gives you:

Current pool management strategy: Failover

[F]ailover only disabled

[A]dd pool [R]emove pool [D]isable pool [E]nable pool

[C]hange management strategy [S]witch pool [I]nformation

S gives you:

[Q]ueue: 1

[S]cantime: 60

[E]xpiry: 120

[W]rite config file

[C]gminer restart

D gives you:

[N]ormal [C]lear [S]ilent mode (disable all output)

[D]ebug:off

[P]er-device:off

[Q]uiet:off

[V]erbose:off

[R]PC debug:off

[W]orkTime details:off

co[M]pact: off

[T]oggle status switching:enabled

[Z]ero statistics

[L]og interval:5

Q quits the application.

The running log shows output like this:

[2013-11-09 11:04:41] Accepted 01b3bde7 Diff 150/128 AVA 1 pool 0

[2013-11-09 11:04:49] Accepted 015df995 Diff 187/128 AVA 1 pool 0

[2013-11-09 11:04:50] Accepted 01163b68 Diff 236/128 AVA 1 pool 0

[2013-11-09 11:04:53] Accepted 9f745840 Diff 411/128 BAS 1 pool 0

The 8 byte hex value are the 1st nonzero bytes of the share being submitted to

the pool. The 2 diff values are the actual difficulty target that share reached

followed by the difficulty target the pool is currently asking for.

---

Also many issues and FAQs are covered in the forum thread

dedicated to this program,

http://forum.bitcoin.org/index.php?topic=28402.0

DISPLAY:

The display is roughly split into two portions, the top status window and the

bottom scrolling log window.

STATUS WINDOW

The status window is split into overall status and per device status.

Overall status:

The output line shows the following:

(5s):2.469T (1m):2.677T (5m):2.040T (15m):1.014T (avg):2.733Th/s

These are exponentially decaying average hashrates over 5s/1m/5m/15m and an

average since the start.

Followed by:

A:290391 R:5101 HW:145 WU:37610.4/m

Each column is as follows:

A: The total difficulty of Accepted shares

R: The total difficulty of Rejected shares

HW: The number of HardWare errors

WU: The Work Utility defined as the number of diff1 shares work / minute

(accepted or rejected).

alternating with:

ST: 22 SS: 0 NB: 2 LW: 356090 GF: 0 RF: 0

ST is STaged work items (ready to use).

SS is Stale Shares discarded (detected and not submitted so don't count as rejects)

NB is New Blocks detected on the network

LW is Locally generated Work items

GF is Getwork Fail Occasions (server slow to provide work)

RF is Remote Fail occasions (server slow to accept work)

Followed by:

Connected to pool.com diff 3.45K with stratum as user me

The diff shown is the current vardiff requested by the pool currently being

mined at.

Followed by:

Block: ca0d237f... Diff:5.01G Started: [00:14:27] Best share: 1.18M

This shows a short stretch about the current block, when the new block started,

and the all time best difficulty share you've found since starting cgminer

this time.

Per device status:

6: HFS Random : 645MHz 85C 13% 0.79V | 2.152T / 1.351Th/s

Each column is as follows:

Temperature (if supported)

Fanspeed (if supported)

Voltage (if supported)

A 5 second exponentially decaying average hash rate

An all time average hash rate

alternating with

6: HFS Random : 645MHz 86C 13% 0.80V | A:290348 R:1067 HW:88 WU:18901.8/m

The total difficulty of accepted shares

The total difficulty of rejected shares

The number of hardware erorrs

The work utility defined as the number of diff1 shares work / minute

LOG WINDOW

All running information is shown here, usually share submission results and

block update notifications, along with device messages and warnings.

[2014-03-29 00:24:09] Accepted 1397768d Diff 3.35K/2727 HFS 0 pool 0

[2014-03-29 00:24:13] Stratum from pool 0 detected new block

---

MULTIPOOL

FAILOVER STRATEGIES WITH MULTIPOOL:

A number of different strategies for dealing with multipool setups are

available. Each has their advantages and disadvantages so multiple strategies

are available by user choice, as per the following list:

FAILOVER:

The default strategy is failover. This means that if you input a number of

pools, it will try to use them as a priority list, moving away from the 1st

to the 2nd, 2nd to 3rd and so on. If any of the earlier pools recover, it will

move back to the higher priority ones.

ROUND ROBIN:

This strategy only moves from one pool to the next when the current one falls

idle and makes no attempt to move otherwise.

ROTATE:

This strategy moves at user-defined intervals from one active pool to the next,

skipping pools that are idle.

LOAD BALANCE:

This strategy sends work to all the pools on a quota basis. By default, all

pools are allocated equal quotas unless specified with --quota. This

apportioning of work is based on work handed out, not shares returned so is

independent of difficulty targets or rejected shares. While a pool is disabled

or dead, its quota is dropped until it is re-enabled. Quotas are forward

looking, so if the quota is changed on the fly, it only affects future work.

If all pools are set to zero quota or all pools with quota are dead, it will

fall back to a failover mode. See quota below for more information.

The failover-only flag has special meaning in combination with load-balance

mode and it will distribute quota back to priority pool 0 from any pools that

are unable to provide work for any reason so as to maintain quota ratios

between the rest of the pools.

BALANCE:

This strategy monitors the amount of difficulty 1 shares solved for each pool

and uses it to try to end up doing the same amount of work for all pools.

---

QUOTAS

The load-balance multipool strategy works off a quota based scheduler. The

quotas handed out by default are equal, but the user is allowed to specify any

arbitrary ratio of quotas. For example, if all the quota values add up to 100,

each quota value will be a percentage, but if 2 pools are specified and pool0

is given a quota of 1 and pool1 is given a quota of 9, pool0 will get 10% of

the work and pool1 will get 90%. Quotas can be changed on the fly by the API,

and do not act retrospectively. Setting a quota to zero will effectively

disable that pool unless all other pools are disabled or dead. In that

scenario, load-balance falls back to regular failover priority-based strategy.

While a pool is dead, it loses its quota and no attempt is made to catch up

when it comes back to life.

To specify quotas on the command line, pools should be specified with a

semicolon separated --quota(or -U) entry instead of --url. Pools specified with

--url are given a nominal quota value of 1 and entries can be mixed.

For example:

--url poola:porta -u usernamea -p passa --quota "2;poolb:portb" -u usernameb -p passb

Will give poola 1/3 of the work and poolb 2/3 of the work.

Writing configuration files with quotas is likewise supported. To use the above

quotas in a configuration file they would be specified thus:

"pools" : [

{

"url" : "poola:porta",

"user" : "usernamea",

"pass" : "passa"

},

{

"quota" : "2;poolb:portb",

"user" : "usernameb",

"pass" : "passb"

}

]

---

SOLO MINING

Solo mining can be done efficiently as a single pool entry or a backup to

any other pooled mining and it is recommended everyone have solo mining set up

as their final backup in case all their other pools are DDoSed/down for the

security of the network. To enable solo mining, one must be running a local

bitcoind/bitcoin-qt or have one they have rpc access to. To do this, edit your

bitcoind configuration file (bitcoin.conf) with the following extra lines,

using your choice of username and password:

rpcuser=username

rpcpassword=password

Restart bitcoind, then start cgminer, pointing to the bitcoind and choose a

btc address with the following options, altering to suit their setup:

cgminer -o http://localhost:8332 -u username -p password --btc-address 15qSxP1SQcUX3o4nhkfdbgyoWEFMomJ4rZ

Note the http:// is mandatory for solo mining.

---

LOGGING

cgminer will log to stderr if it detects stderr is being redirected to a file.

To enable logging simply add 2>logfile.txt to your command line and logfile.txt

will contain the logged output at the log level you specify (normal, verbose,

debug etc.)

In other words if you would normally use:

./cgminer -o xxx -u yyy -p zzz

if you use

./cgminer -o xxx -u yyy -p zzz 2>logfile.txt

it will log to a file called logfile.txt and otherwise work the same.

There is also the -m option on linux which will spawn a command of your choice

and pipe the output directly to that command.

The WorkTime details 'debug' option adds details on the end of each line

displayed for Accepted or Rejected work done. An example would be:

<-00000059.ed4834a3 M:X D:1.0 G:17:02:38:0.405 C:1.855 (2.995) W:3.440 (0.000) S:0.461 R:17:02:47

The first 2 hex codes are the previous block hash, the rest are reported in

seconds unless stated otherwise:

The previous hash is followed by the getwork mode used M:X where X is one of

P:Pool, T:Test Pool, L:LP or B:Benchmark,

then D:d.ddd is the difficulty required to get a share from the work,

then G:hh:mm:ss:n.nnn, which is when the getwork or LP was sent to the pool and

the n.nnn is how long it took to reply,

followed by 'O' on it's own if it is an original getwork, or 'C:n.nnn' if it was

a clone with n.nnn stating how long after the work was recieved that it was cloned,

(m.mmm) is how long from when the original work was received until work started,

W:n.nnn is how long the work took to process until it was ready to submit,

(m.mmm) is how long from ready to submit to actually doing the submit, this is

usually 0.000 unless there was a problem with submitting the work,

S:n.nnn is how long it took to submit the completed work and await the reply,

R:hh:mm:ss is the actual time the work submit reply was received

If you start cgminer with the --sharelog option, you can get detailed

information for each share found. The argument to the option may be "-" for

standard output (not advisable with the ncurses UI), any valid positive number

for that file descriptor, or a filename.

To log share data to a file named "share.log", you can use either:

./cgminer --sharelog 50 -o xxx -u yyy -p zzz 50>share.log

./cgminer --sharelog share.log -o xxx -u yyy -p zzz

For every share found, data will be logged in a CSV (Comma Separated Value)

format:

timestamp,disposition,target,pool,dev,thr,sharehash,sharedata

For example (this is wrapped, but it's all on one line for real):

1335313090,reject,

ffffffffffffffffffffffffffffffffffffffffffffffffffffffff00000000,

http://localhost:8337,ASC0,0,

6f983c918f3299b58febf95ec4d0c7094ed634bc13754553ec34fc3800000000,

00000001a0980aff4ce4a96d53f4b89a2d5f0e765c978640fe24372a000001c5

000000004a4366808f81d44f26df3d69d7dc4b3473385930462d9ab707b50498

f681634a4f1f63d01a0cd43fb338000000000080000000000000000000000000

0000000000000000000000000000000000000000000000000000000080020000

---

BENCHMARK

The --benchmark option hashes a single fixed work item over and over and does

not submit shares to any pools.

The --benchfile option hashes the work given in the file supplied.

The format of the work file is:

version,merkleroot,prevhash,diffbits,noncetime

Any empty line or any line starting with '#' or '/' is ignored.

When it reaches the end of the file it continues back at the top.

The format of the data items matches the byte ordering and format of the

the bitcoind getblock RPC output.

An example file containing bitcoin block #1 would be:

# Block 1

1,0e3e2357e806b6cdb1f70b54c3a3a17b6714ee1f0e68bebb44a74b1efd512098,00000000001

9d6689c085ae165831e934ff763ae46a2a6c172b3f1b60a8ce26f,1d00ffff,1231469665

However, the work data should be one line without the linebreak in the middle

If you use --benchfile , then --benchfile-display will output a log line,

for each nonce found, showing the nonce value in decimal and hex and the work

used to find it in hex.

---

RPC API

For RPC API details see the API-README file

---

FAQ

Q: Help, I've started cgminer and everything reads zero!?

A: Welcome to bitcoin mining. Your computer by itself cannot mine bitcoin no

matter how powerful it is. You have to purchase dedicated mining hardware

called ASICs to plug into your computer. See Q regarding ASICs below.

Q: I have multiple USB stick devices but I can't get them all to work at once?

A: Very few USB hubs deliver the promised power required to run as many devices

as they fit if all of them draw power from USB.

Q: I've plugged my devices into my USB hub but nothing shows up?

A: RPis and Windows have incomplete or non-standard USB3 support so they may

never work. It may be possible to get a USB3 hub to work by plugging it into

a USB2 hub. When choosing a hub, USB2 hubs are preferable whenever possible

due to better support all round.

Q: Can I mine on servers from different networks (eg xxxcoin and bitcoin) at

the same time?

A: No, cgminer keeps a database of the block it's working on to ensure it does

not work on stale blocks, and having different blocks from two networks would

make it invalidate the work from each other.

Q: Can I configure cgminer to mine with different login credentials or pools

for each separate device?

A: No.

Q: Can I put multiple pools in the config file?

A: Yes, check the example.conf file. Alternatively, set up everything either on

the command line or via the menu after startup and choose settings->write

config file and the file will be loaded one each startup.

Q: The build fails with gcc is unable to build a binary.

A: Remove the "-march=native" component of your CFLAGS as your version of gcc

does not support it. Also -O2 is capital o 2, not zero 2.

Q: Can you implement feature X?

A: I can, but time is limited, and people who donate are more likely to get

their feature requests implemented.

Q: Work keeps going to my backup pool even though my primary pool hasn't

failed?

A: Cgminer checks for conditions where the primary pool is lagging and will

pass some work to the backup servers under those conditions. The reason for

doing this is to try its absolute best to keep the devices working on something

useful and not risk idle periods. You can disable this behaviour with the

option --failover-only.

Q: Is this a virus?

A: Cgminer is being packaged with other trojan scripts and some antivirus

software is falsely accusing cgminer.exe as being the actual virus, rather

than whatever it is being packaged with. If you installed cgminer yourself,

then you do not have a virus on your computer. Complain to your antivirus

software company. They seem to be flagging even source code now from cgminer

as viruses, even though text source files can't do anything by themself.

Q: Can you modify the display to include more of one thing in the output and

less of another, or can you change the quiet mode or can you add yet another

output mode?

A: Everyone will always have their own view of what's important to monitor.

The defaults are very sane and I have very little interest in changing this

any further. There is far more detail in the API output than can be reasonably

displayed on the small console window, and using an external interface such

as miner.php is much more useful for setups with many devices.

Q: What are the best parameters to pass for X pool/hardware/device.

A: Virtually always, the DEFAULT parameters give the best results. Most user

defined settings lead to worse performance.

Q: What happened to CPU and GPU mining?

A: Their efficiency makes them irrelevant in the bitcoin mining world today

and the author has no interest in supporting alternative coins that are better

mined by these devices.

Q: GUI version?

A: No. The RPC interface makes it possible for someone else to write one

though.

Q: I'm having an issue. What debugging information should I provide?

A: Start cgminer with your regular commands and add -D -T --verbose and provide

the full startup output and a summary of your hardware and operating system.

Q: Why don't you provide win64 builds?

A: Win32 builds work everywhere and there is precisely zero advantage to a

64 bit build on windows.

Q: Is it faster to mine on windows or linux?

A: It makes no difference in terms of performance. It comes down to choice of

operating system for their various features and your comfort level. However

linux is the primary development platform and is virtually guaranteed to be

more stable.

Q: My network gets slower and slower and then dies for a minute?

A; Try the --net-delay option if you are on a getwork or GBT server. This does

nothing with stratum mining.

Q: How do I tune for p2pool?

A: It is also recommended to use --failover-only since the work is effectively

like a different block chain, and not enabling --no-submit-stale. If mining with

a BFL (fpga) minirig, it is worth adding the --bfl-range option.

Q: I run PHP on windows to access the API with the example miner.php. Why does

it fail when php is installed properly but I only get errors about Sockets not

working in the logs?

A: http://us.php.net/manual/en/sockets.installation.php

Q: What is a PGA?

A: Cgminer supports 3 FPGAs: BitForce, Icarus and ModMiner.

They are Field-Programmable Gate Arrays that have been programmed to do Bitcoin

mining. Since the acronym needs to be only 3 characters, the "Field-" part has

been skipped.

Q: What is an ASIC?

A: They are Application Specify Integrated Circuit devices and provide the

highest performance per unit power due to being dedicated to only one purpose.

They are the only meaningful way to mine bitcoin today.

Q: What is stratum and how do I use it?

A: Stratum is a protocol designed for pooled mining in such a way as to

minimise the amount of network communications, yet scale to hardware of any

speed. With versions of cgminer 2.8.0+, if a pool has stratum support, cgminer

will automatically detect it and switch to the support as advertised if it can.

If you input the stratum port directly into your configuration, or use the

special prefix "stratum+tcp://" instead of "http://", cgminer will ONLY try to

use stratum protocol mining. The advantages of stratum to the miner are no

delays in getting more work for the miner, less rejects across block changes,

and far less network communications for the same amount of mining hashrate. If

you do NOT wish cgminer to automatically switch to stratum protocol even if it

is detected, add the --fix-protocol option.

Q: Why don't the statistics add up: Accepted, Rejected, Stale, Hardware Errors,

Diff1 Work, etc. when mining greater than 1 difficulty shares?

A: As an example, if you look at 'Difficulty Accepted' in the RPC API, the number

of difficulty shares accepted does not usually exactly equal the amount of work

done to find them. If you are mining at 8 difficulty, then you would expect on

average to find one 8 difficulty share, per 8 single difficulty shares found.

However, the number is actually random and converges over time, it is an average,

not an exact value, thus you may find more or less than the expected average.

Q: My keyboard input momentarily pauses or repeats keys every so often on

windows while mining?

A: The USB implementation on windows can be very flaky on some hardware and

every time cgminer looks for new hardware to hotplug it it can cause these

sorts of problems. You can disable hotplug with:

--hotplug 0

Q: What should my Work Utility (WU) be?

A: Work utility is the product of hashrate * luck and only stabilises over a

very long period of time. Assuming all your work is valid work, bitcoin mining

should produce a work utility of approximately 1 per 71.6MH. This means at

5GH you should have a WU of 5000 / 71.6 or ~ 69. You cannot make your machine

do "better WU" than this - it is luck related. However you can make it much

worse if your machine produces a lot of hardware errors producing invalid work.

Q: What should I build in for a generic distribution binary?

A: There are a number of drivers that expect to be used on dedicated standalone

hardware. That said, the drivers that are designed to work generically with

USB on any hardware are the following:

--enable-avalon

--enable-avalon2

--enable-avalon4

--enable-bflsc

--enable-bitfury

--enable-blockerupter

--enable-cointerra

--enable-drillbit

--enable-hashfast

--enable-hashratio

--enable-icarus

--enable-klondike

---

This code is provided entirely free of charge by the programmer in his spare

time so donations would be greatly appreciated. Please consider donating to the

address below.

Con Kolivas

15qSxP1SQcUX3o4nhkfdbgyoWEFMomJ4rZ

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萊特幣(Litecoin)、狗狗幣(Dogecoin)挖礦教程 創(chuàng)建時間:2018-11-06???

更新時間:2023-12-15 幣種簡介萊特幣(Litecoin),簡稱LTC,是一種去中心化的數(shù)字貨幣,是早期數(shù)字貨幣之一。狗狗幣(Dogecoin),誕生于2013年12月8日,是國際上用戶數(shù)僅次于比特幣的第二大虛擬貨幣。萊特官網(wǎng):litecoin.org萊特幣區(qū)塊瀏覽器:https://ltc.ihashrate.com/狗幣官網(wǎng):dogecoin.com狗幣區(qū)塊瀏覽器 :Dogecoin (DOGE) Explorer — Dogechain?挖礦算法:Scrypt支持的礦機(jī)介紹LTC采用Scrypt算法,支持ASIC礦機(jī)挖礦,主要礦機(jī)型號有:金貝LT5PRO、金貝LT5、金貝MINI DOGE。不同型號礦機(jī)收益比對:LTC礦機(jī)收益排行挖礦前準(zhǔn)備賬戶注冊:大象礦池LTC采用子賬戶名而非錢包地址挖礦,如要挖掘LTC,需先注冊大象礦池賬戶。使用環(huán)境檢查:檢查機(jī)器情況是否完好,網(wǎng)絡(luò)、供電狀態(tài)是否正常。設(shè)置挖礦參數(shù),開始挖礦在瀏覽器地址欄輸入礦機(jī)IP地址,進(jìn)入礦機(jī)后臺,或使用礦機(jī)官方提供的批量管理軟件設(shè)置以下信息:Pool/URL:ltc.ss.dxpool.com:3333(備用端口433)

User/Worker:礦池子賬戶名.礦工名

(這里填寫的是大象礦池子賬戶名,不是錢包地址或手機(jī)號。大象礦池子賬戶名和礦工號使用英文句號 “.” 隔開;礦工號為自定義,可以是數(shù)字或字母組合,如 test.001)Password:任意設(shè)置,如123

檢查以上信息無誤后,保存設(shè)置,片刻后礦機(jī)開始運(yùn)行,即可坐享收益。拓展閱讀:金貝礦機(jī)使用手冊、金貝BOX機(jī)型使用手冊挖礦監(jiān)控及收益查看礦機(jī)大約運(yùn)行10-15分鐘且穩(wěn)定連接至礦池后,可以通過登陸DxPool官網(wǎng),在礦工管理和收益頁面,查看礦機(jī)狀態(tài)和收益情況;推薦下載DxPool App進(jìn)行查看。收益提現(xiàn)方法1:自動提現(xiàn)?????(每天10點(diǎn)統(tǒng)一支付,且0費(fèi)率,推薦使用?。┓椒?:普通提現(xiàn)?????(隨時提取,超過一定限額需人工審核。)方法3:內(nèi)部轉(zhuǎn)賬??????(實(shí)時到賬,且0費(fèi)率?。? 大象礦池 大象礦池,無憂挖礦 產(chǎn)品 礦池 錢包 LTC 瀏覽器 公司 關(guān)于我們 服務(wù) 在線客服

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如何挖萊特幣,如何挖ltc幣,萊特幣經(jīng)典挖礦教程 | 藍(lán)藍(lán)的天空|挖礦機(jī)

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如何挖萊特幣,如何挖ltc幣,萊特幣經(jīng)典挖礦教程 | 藍(lán)藍(lán)的天空|挖礦機(jī)

藍(lán)藍(lán)的天空|挖礦機(jī)

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如何挖萊特幣,如何挖ltc幣,萊特幣經(jīng)典挖礦教程

作者:BTC-Miner ? 發(fā)布:2013-09-04 08:30 ? 分類:挖礦機(jī)教程 ?踩踏:120,395次 ? 47條吐槽 ?

如何挖萊特幣?如何挖LTC幣?這兩個問題經(jīng)常被博主QQ上的朋友問及,每次都是重復(fù)解答,這里博主將如何挖萊特幣,如何挖ltc幣教程整理一下,放在挖礦機(jī)網(wǎng)上,請各位想學(xué)習(xí)如何挖萊特幣、如何挖ltc幣的朋友自行查看,如果本教程中有什么錯誤,歡迎大家指正。

如何挖萊特幣,如何挖ltc幣是很多才進(jìn)入萊特幣或者比特幣世界的新朋友們很困惑的事情,不知道如何入手,如何操作才能使用自己的顯卡挖到自己的第一個LTC幣,其實(shí)只要你有一張好的AMD顯卡,挖萊特幣是一件非常簡單的事情,只需要一次性設(shè)置好,其他的都是自動操作,無需人工干預(yù)。以下就是萊特幣挖礦經(jīng)典教程。

一、硬件環(huán)境

俗話說:工欲善其事,必先利其器。所以我們要挖ltc幣,必須要有好的工具,也就是電腦,其中最為重要的就是顯卡,萊特幣目前還沒有專業(yè)的挖礦機(jī)出現(xiàn),顯卡是挖礦的主力所在。由于萊特幣算法的原因,決定了顯卡的類型。目前只有AMD的顯卡挖礦效率最高,其中以高端顯卡為最,如果你要挖LTC幣,建議你最好使用AMD的HD6800系列、HD7800系列、HD5900系列、HD7900系列。其他的顯卡或者cpu挖礦效率太低,不劃算。至于電腦的其他部分,例如硬盤、內(nèi)存沒有特別硬性的要求,但是內(nèi)存最好大于顯卡顯存,不然挖礦效率會打折扣,電源一定要滿足顯卡的運(yùn)行,現(xiàn)在的顯卡功率都很高,太低了帶不動顯卡。

二、軟件環(huán)境

硬件都具備后,對于amd顯卡,還需要安裝sdk包,和驅(qū)動程序,最好安裝最新的驅(qū)動程序和sdk程序包(本站提供有下載,請參見http://www.wakuangji.cn/ziliao/amd-app-sdk/),需要下載挖礦軟件cgminer或者guiminer-scrypt,前者是基于命令行形式的挖礦軟件,后者是圖形界面的挖礦軟件,看個人喜好而定,前者是跨平臺的挖礦軟件,不管是linux還是windows都能運(yùn)行,后者只能運(yùn)行在windows平臺下。這兩個軟件本挖萊特幣經(jīng)典教程均提供下載

我們要挖ltc幣,還需要到礦池去注冊一個帳號,這樣的礦池非常多,請自行尋找,不清楚的請留言。

三、cgminer挖礦軟件的使用

1、將下載的cgminer軟件解壓,在cgminer文件夾里面建立一個1.bat文件,編輯如下內(nèi)容:

cgminer --scrypt --worksize 256 --lookup-gap 2 --thread-concurrency 7200 -g 2 -I 15 -o stratum+tcp://121.199.15.203:3333(礦池地址) -u 礦工號 -p 密碼 --gpu-engine 810-910 --gpu-vddc 1.05 --temp-target 85 --temp-overheat 95

pause

請參見cgminer壓縮包里面的1.bat文件編輯即可

cgminer-ltc

這個地方最為重要的部分就是礦池地址和用戶名、密碼,關(guān)于礦池部分請參見礦池說明,因?yàn)橛泻脦追N不同的協(xié)議,本教程中使用的是stratum協(xié)議。

2、到這里就完成了cgminer挖礦軟件的設(shè)置了,只需要雙擊鼠標(biāo)執(zhí)行1.bat就可以了,如果一切正常的話,我們可以看到顯卡的挖礦速度,在礦池里面可看到挖礦的進(jìn)度和挖礦所得的萊特幣。

四、cgminer參數(shù)的說明

下面5個核心參數(shù),有2個是必選的,其他3個可以微調(diào),已獲得更好的速度。一旦使用Scrypt模式,CG就不能自適應(yīng)的調(diào)整參數(shù),因此您

必須針對你的顯卡設(shè)置相關(guān)參數(shù)。

必選參數(shù):

–scrypt? 必選 開啟LTC挖礦模式

–intensity XX??? 優(yōu)先級,設(shè)置值從0至20.請選擇合適的優(yōu)先級,過低的優(yōu)先級可能導(dǎo)致速度過低,而過高的優(yōu)先級可能使scrypt 算法內(nèi)存泄漏。優(yōu)先級在13以上時,分配的內(nèi)存不變,但是更依賴于GPU,這就可能減少速度或者增加硬件錯誤(HW)。而最小的優(yōu)先級可以通過并發(fā)線程(thread concurrency)的值計(jì)算得出。例如并發(fā)線程是6144,2的X次冪=6144,其中X是優(yōu)先級,最近似的X是13,因此選定13為最小優(yōu)先級的值,在此基礎(chǔ)上調(diào)試。

可選參數(shù):

-g? 一旦你找到了最佳的優(yōu)先級,那么你可以通過增加g的值來增加速度,直到CG無法啟動。一般G的值很少能超過4,通常是2.

–thread-concurrency: 并發(fā)線程一般是您顯卡流處理器數(shù)的數(shù)倍。一般來說,5系顯卡的最佳線程數(shù)是流處理器數(shù)的5倍;而6系和7系顯卡的最佳線程數(shù)是流處理器數(shù)的4倍。

–lookup-gap? 指速度和顯存利用率的權(quán)重值。gap一般在2的時候能獲得最佳的速度,因此默認(rèn)是2.增加gap的值可以節(jié)約顯存,降低速度。一般建議不要修改,除非特殊場合,你們懂的。如果增大gap值,可以增大線程數(shù)。

顯卡超頻參數(shù):

–gpu-engine XX 顯卡核心頻率。超頻不一定能提升速度,速度也可能會下降,關(guān)鍵的是核心頻率要和顯存頻率匹配。

–gpu-memclock XX 顯存頻率 ,不要降低顯存頻率。如果超頻的話,適當(dāng)增加顯存頻率,并注意溫度。

–gpu-vddc? XX???? 顯卡電壓? 這個根據(jù)情況自行調(diào)整,如果填0就是默認(rèn)值,如果填 1.1就是1.1V

用戶

–worksize 256? 工作空間,一般是默認(rèn)

-o? 礦池網(wǎng)址? 具體礦池請參考礦池大全

-u 礦工號 -p 密碼

五、關(guān)于cgminer的一些說明

1、使用Scrypt算法挖礦和比特幣sha256算法挖礦完全不同。Scrypt算法原本是針對CPU設(shè)計(jì),并非GPU。因此為了使GPU更好的工作需要更復(fù)雜的設(shè)置和調(diào)試。請注意該算法需要您的PC有又快又多的系統(tǒng)內(nèi)存。如果您的內(nèi)存比顯卡顯存少,就不太可能達(dá)到正常速度。

2、如何保存cgminer挖礦調(diào)試配置

在調(diào)試的過程中,可能CG顯示速度很快,重點(diǎn)需要注意的是網(wǎng)站的不可用share的比例。不可用share的比例和網(wǎng)速也有關(guān)系。調(diào)試完成后,在CG工作的DOS界面鍵入“S”然后鍵入”W”,回車,將調(diào)試好的參數(shù)保存為CONF配置文件。以后直接雙擊CGminer.exe即可挖礦。

六、guiminer-scrypt的使用教程

guiminer-scrypt實(shí)際上是guiminer的LTC版本,專門是為挖LTC幣開發(fā)的圖形化挖礦軟件,方便了一些對cgminer不熟悉的朋友使用。但是只能在windows平臺下使用。該軟件是綠色軟件,下載后,解壓雙擊guiminer.exe即可。當(dāng)然前提是AMD顯卡安裝了驅(qū)動和SDK開發(fā)包。否則會提示找不到opengl.DLL組件信息。

guiminer挖礦軟件設(shè)置

打開guiminer.exe軟件后,選擇或者填入礦池地址,用戶名、密碼,選擇好顯卡,點(diǎn)擊開始(start)就開始挖礦了。這個挖礦軟件是最簡單的,無須做過多的設(shè)置就可以運(yùn)行。在下面可以看到挖礦的速度。

guiminer挖礦軟件運(yùn)行圖

接收了28個,挖礦速度是152Khash/s,使用的顯卡是AMD HD7750,參數(shù)還沒有仔細(xì)優(yōu)化,優(yōu)化后速度應(yīng)該更快一些。

七、結(jié)束語

選擇什么挖礦軟件根據(jù)自己的習(xí)慣而定在挖礦的時候因?yàn)轱@卡是全速運(yùn)轉(zhuǎn),所以顯卡的散熱聲音比平時使用更大,耗電更多,挖礦是一個投資,是一種娛樂,請不要把挖礦當(dāng)作生活的全部,適當(dāng)挖礦,謹(jǐn)慎投資!

GUIminer萊特幣挖礦

挖LTC的cgminer

本教程由博主獨(dú)立制作,歡迎轉(zhuǎn)載,但是必須留下來源網(wǎng)址,否則追責(zé),謝謝合作!

本文固定鏈接: http://www.wakuangji.cn/jiaocheng/ru-he-wa-ltc/ | 藍(lán)藍(lán)的天空|挖礦機(jī)

作者:BTC-Miner | 發(fā)布:2013年09月04日 | 分類:挖礦機(jī)教程 | 標(biāo)簽:挖礦教程原創(chuàng)文章轉(zhuǎn)載請注明:如何挖萊特幣,如何挖ltc幣,萊特幣經(jīng)典挖礦教程 | 藍(lán)藍(lán)的天空|挖礦機(jī)

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如何挖萊特幣,如何挖ltc幣,萊特幣經(jīng)典挖礦教程:目前有47 條留言

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0樓 萊特幣行情:

贊詳細(xì)的挖礦指南~其實(shí)萊特幣挖礦已經(jīng)很難回本了,根本還是要直接交易,推薦比特幣行情、萊特幣行情

2014-06-10 09:50 [回復(fù)]

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0樓 linhaitk:

R9 280X的參數(shù)怎么設(shè)置?

2014-03-29 15:28 [回復(fù)]

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BTC-Miner:

看表格里面有280x的配置。站內(nèi)搜索amd顯卡

2014-04-02 16:22 [回復(fù)]

0樓 孤寡老人:

版主,我裝了64位的顯卡驅(qū)動。還是挖不了。guiminer-scrypt能出來,點(diǎn)挖礦一點(diǎn)動靜都沒有

。

2013-12-02 08:57 [回復(fù)]

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0樓 數(shù)不盡落寞:

你好,我的顯卡是英偉達(dá)的,不知道要不要在安裝SDK數(shù)據(jù)包了?我下載了你下面的scrypt的軟件,可是連個exe的程序都沒有了?怎么回事?

2013-12-02 00:42 [回復(fù)]

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BTC-Miner:

N系列顯卡請使用cudaminer挖礦

2013-12-02 10:41 [回復(fù)]

0樓 數(shù)不盡落寞:

我的顯卡是英偉達(dá)geforce.gt430,1G的。大家都說是垃圾了,不知道能不能用來挖礦了。用來挖礦的話,拼命的干活能挖到零點(diǎn)幾個啊?謝謝。

2013-12-01 23:41 [回復(fù)]

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BTC-Miner:

速度19k。按照現(xiàn)在難度1000k每天可以挖0.58個ltc。你可以自己算一下,你能挖到多少?

2013-12-01 23:57 [回復(fù)]

0樓 頑皮的死神::

博主,你好

在問一個問題哦。

http://www.f2pool.com/這家的礦池是不是不支持cpu挖礦哦,

我看她家的礦池地址是:stratum+tcp://stratum.f2pool.com:8888

2013-12-01 23:02 [回復(fù)]

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BTC-Miner:

應(yīng)該是支持的。

2013-12-01 23:08 [回復(fù)]

頑皮的死神:

那請問博主那個采礦地址應(yīng)該寫成多少呢?

我看你教程上寫的采礦地址是http開頭的,

可是那家的礦池地址卻是:stratum+tcp://stratum.f2pool.com:8888

2013-12-02 10:33 [回復(fù)]

BTC-Miner:

不同礦池,不一樣。因?yàn)橥诘V協(xié)議不一樣,有的是getwork,有的是stratum。詳細(xì)看礦池說明

2013-12-02 10:43 [回復(fù)]

0樓 太陽:

你好,博主辛苦了!!

挖萊特幣的GUIMINER ,下載的這個軟件好像是WIN32位的,我的電腦是WIN7,64位的,下載后可以使用嗎???我自己試了試,好像可以用呀??另外GUIMINER和CGMINER 這兩個軟件除了使用方法不同呀,在占用電腦資源和挖礦速度上有哈區(qū)別????

2013-12-01 22:30 [回復(fù)]

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太陽:

另外能否留下你的QQ號,我們多交流呀,真實(shí)謝謝你了??!我的QQ號:1967804080

2013-12-01 22:34 [回復(fù)]

BTC-Miner:

加群吧

2013-12-01 23:04 [回復(fù)]

BTC-Miner:

應(yīng)該是可以用的,cg占用資源少些,畢竟是cli的。gui是圖形界面要占用資源些。不過現(xiàn)在內(nèi)存都是上G的,這點(diǎn)資源可以忽略

2013-12-01 23:04 [回復(fù)]

0樓 tuzi:

如何 獲取挖礦賬號?

2013-12-01 21:40 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

到礦池注冊

2013-12-01 23:03 [回復(fù)]

0樓 頑皮的死神:

博主,

問個問題哦,

我有好幾臺服務(wù)器,是不是只能用cpu來跑萊特幣了?

如果用cpu來跑的話建議用哪個挖礦軟件呢?

謝謝了哦。

2013-12-01 21:28 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

cpu挖礦效率極低,沒有必要,cpu挖礦用pooler cpuminer。網(wǎng)站有,自己搜索一下。

2013-12-01 21:37 [回復(fù)]

0樓 孤寡老人:

我是64位的電腦,怎么可能裝32位的驅(qū)動,都說裝不了。還有別的可能不能用guiminer-scryp嗎。

2013-12-01 20:55 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

AMD顯卡有64位驅(qū)動,到amd官網(wǎng)找找

2013-12-01 21:27 [回復(fù)]

0樓 littleno:

博主,為什么我挖礦在平臺上是可以顯示的,但是卻沒辦法轉(zhuǎn)到錢包上呢?

2013-12-01 19:50 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

設(shè)置體現(xiàn)錢包地址記即可提現(xiàn)

2013-12-01 20:29 [回復(fù)]

0樓 孤寡老人:

64位的電腦就不能用guiminer-scrypt嗎?我好痛苦,心如刀割。

2013-12-01 19:26 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

0樓 孤寡老人:

guiminer-scryp有64位的版本嗎?

2013-12-01 19:20 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

amd驅(qū)動要安裝64位的

2013-12-01 20:30 [回復(fù)]

0樓 孤寡老人:

guiminer-scrypt我裝了怎么用不了,我的是7850的,電腦是64位的

2013-12-01 19:02 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

需要安裝64位版本

2013-12-01 19:03 [回復(fù)]

0樓 孤寡老人:

請問我的系統(tǒng)是64位的,哪里可以下載得到我適合的SDK呀?苦等回復(fù)。。

2013-12-01 13:06 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

AMD官網(wǎng)

2013-12-01 15:27 [回復(fù)]

0樓 風(fēng)信子:

請問樓主,我購買了6張微星 HD7950,每天能挖多少個LTC?另外,cgminner配置不太懂,有什么視頻可以看看,或者詳細(xì)的資料發(fā)到郵箱中,謝謝。

2013-11-30 22:39 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

hd 7950速度在650-750k之間人品爆發(fā)能到800k,現(xiàn)在600k每天可以挖0.3個ltc.cgminer這兩天做視頻教程

2013-12-01 00:44 [回復(fù)]

去網(wǎng)上:

萊特幣挖礦機(jī)怎么登陸

2017-05-25 15:23 [回復(fù)]

BTC-Miner:

直接進(jìn)入管理界面就可以了,要看哪一款挖礦機(jī),不同的礦機(jī)登錄網(wǎng)址和端口不一樣

2017-06-10 09:32 [回復(fù)]

0樓 追求卓越:

HD6800系列現(xiàn)在一天能挖多少個萊特幣

2013-11-30 16:21 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

600k,現(xiàn)在一天可以挖0.3個ltc

2013-11-30 18:21 [回復(fù)]

追求卓越:

那HD6800的速度是多少的

2013-11-30 19:40 [回復(fù)]

BTC-Miner:

6850從215-275k;6870從300-355k

2013-12-01 00:40 [回復(fù)]

0樓 youyu:

請問版主 thread concurrency 和 intensity這2個參數(shù)怎么填 如何計(jì)算? 如果顯卡是5770 填多少 7870填多少?

2013-11-30 01:21 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

并發(fā)線程你需要查看顯卡的手冊,一般是您顯卡流處理器數(shù)的數(shù)倍。一般來說,5系顯卡的最佳線程數(shù)是流處理器數(shù)的5倍;而6系和7系顯卡的最佳線程數(shù)是流處理器數(shù)的4倍。優(yōu)先級需要自己調(diào)整,從0-20,最小的優(yōu)先級可以通過并發(fā)線程(thread concurrency)的值計(jì)算得出。例如并發(fā)線程是6144,2的X次冪=6144,其中X是優(yōu)先級,最近似的X是13,因此選定13為最小優(yōu)先級的值,在此基礎(chǔ)上調(diào)試。。你的5770或者7870因?yàn)椴恢谰唧w的流處理器,所以不好直接給出這兩個數(shù)字,你需要用軟件看了流處理器自己計(jì)算一下即可。

2013-11-30 10:13 [回復(fù)]

0樓 chengtongge:

,博主,這兩個挖礦軟件那個更好用呢

2013-11-29 22:34 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

看自己,如果用不慣cmd就用gui界面的,gui界面更加容易上手,cgminer是命令行形式的,相對占用資源少一些

2013-11-29 22:39 [回復(fù)]

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比特幣挖礦機(jī)

◆挖礦機(jī)QQ群:163936239(已滿),332650628(2群可加)。歡迎加入請勿廣告,否則T!

◆挖萊特幣難度是40278GH,1M挖0.03LTC/天,下一個難度是39134GH,請自行對比計(jì)算。

◆有挖礦機(jī)轉(zhuǎn)讓銷售者,請?jiān)凇傲粞赞D(zhuǎn)讓”發(fā)文,每天審核

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HD7850組裝的LTC挖礦機(jī)cgminer配置文件 | 藍(lán)藍(lán)的天空|挖礦機(jī)

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HD7850組裝的LTC挖礦機(jī)cgminer配置文件 | 藍(lán)藍(lán)的天空|挖礦機(jī)

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HD7850組裝的LTC挖礦機(jī)cgminer配置文件

作者:BTC-Miner ? 發(fā)布:2013-08-05 14:16 ? 分類:挖礦機(jī)教程 ?踩踏:24,204次 ? 2條吐槽 ?

前面挖礦機(jī)博主發(fā)布了HD6870組裝的LTC挖礦機(jī)cgminer配置文件,一些朋友認(rèn)為挖LTC的速度太低了,這里再發(fā)布一個基于HD7850組建的LTC挖礦機(jī)的cgminer配置文件。HD7850單卡挖礦速度能夠達(dá)到500K左右。適當(dāng)優(yōu)化,降壓使用,可以達(dá)到550-600K的穩(wěn)定速度。但是能耗和HD6870相比較要高很多。使用方法,同樣將下面的配置文件拷貝到cgminer.conf里面即可。當(dāng)然你可以將該文件名重命名為cgminer-ltc-7850.conf,這個屬于個人習(xí)慣。

{

“pools” : [

{

“url” : “http://coinotron.com:8322”,

“user” : “wakuangji.1”,

“pass” : “1”

}

]

,

“intensity” : “12,12”,

“vectors” : “1,1”,

“worksize” : “256,256”,

“kernel” : “scrypt,scrypt”,

“l(fā)ookup-gap” : “2,2”,

“thread-concurrency” : “4096,4096”,

“shaders” : “1024,1024”,

“gpu-engine” : “1000,1000,”,

“gpu-fan” : “0-85,0-85”,

“gpu-memclock” : “1200,1200”,

“gpu-memdiff” : “0,0”,

“gpu-powertune” : “0,0”,

“gpu-vddc” : “0,0”,

“temp-cutoff” : “95,95”,

“temp-overheat” : “85,85”,

“temp-target” : “75,75”,

“api-port” : “4028”,

“expiry” : “120”,

“gpu-dyninterval” : “7”,

“gpu-platform” : “0”,

“gpu-threads” : “2”,

“l(fā)og” : “5”,

“queue” : “1”,

“scan-time” : “60”,

“scrypt” : true,

“temp-hysteresis” : “3”,

“shares” : “0”,

“kernel-path” : “/usr/local/bin”

}

本文固定鏈接: http://www.wakuangji.cn/jiaocheng/hd7850-cgminer-profile/ | 藍(lán)藍(lán)的天空|挖礦機(jī)

作者:BTC-Miner | 發(fā)布:2013年08月05日 | 分類:挖礦機(jī)教程 | 標(biāo)簽:cgminer, cgminer配置, HD7850原創(chuàng)文章轉(zhuǎn)載請注明:HD7850組裝的LTC挖礦機(jī)cgminer配置文件 | 藍(lán)藍(lán)的天空|挖礦機(jī)

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HD7850組裝的LTC挖礦機(jī)cgminer配置文件:目前有2 條留言

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

0樓 bit fish:

HD7850單卡挖礦速度能夠達(dá)到500K左右? 是怎么做的呀? 我怎么做也只能到350K,網(wǎng)上也都說350K。

可詳細(xì)說下嗎?

我是:win7 cgminer 3.7.2, i3CPU,HD7850 1G,gpu-engine 863/1000, 超頻到1000/1200

2014-02-26 14:43 [回復(fù)]

Warning: A non-numeric value encountered in /www/wwwroot/www.wakuangji.cn/wp-content/themes/raycms/functions.php on line 527

BTC-Miner:

7850能夠達(dá)到500K的屬于異類,很少,需要顯卡質(zhì)量非常過硬才行,一般就是350-380K左右。普遍的基本上都是這個速度。

2014-02-26 17:12 [回復(fù)]

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比特幣挖礦機(jī)

◆挖礦機(jī)QQ群:163936239(已滿),332650628(2群可加)。歡迎加入請勿廣告,否則T!

◆挖萊特幣難度是40278GH,1M挖0.03LTC/天,下一個難度是39134GH,請自行對比計(jì)算。

◆有挖礦機(jī)轉(zhuǎn)讓銷售者,請?jiān)凇傲粞赞D(zhuǎn)讓”發(fā)文,每天審核

最新日志熱評日志隨機(jī)日志

8.1比特幣分叉如期而至,利好還是利空?

虛擬幣大趨勢分析報告2017版正式發(fā)售

我為什么推薦地球幣EAC,為什么說E...

有關(guān)永恒之藍(lán)病毒的猜想,會是一場玩笑...

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近期評論BTC-Miner發(fā)表在《如何挖萊特幣,如何挖ltc幣,萊特幣經(jīng)典挖礦教程》去網(wǎng)上發(fā)表在《如何挖萊特幣,如何挖ltc幣,萊特幣經(jīng)典挖礦教程》外管局嚴(yán)控螞蟻搬家式購匯,比特幣萊特幣被禁想來不遠(yuǎn)矣! | 挖礦機(jī)發(fā)表在《公安部部署統(tǒng)一打擊地下錢莊新聞,不知道有多少人用心看了》BTC-Miner發(fā)表在《現(xiàn)貨黃金白銀權(quán)威交易所 American Bullion,宣布接受BTC交易》現(xiàn)貨黃金白銀發(fā)表在《現(xiàn)貨黃金白銀權(quán)威交易所 American Bullion,宣布接受BTC交易》分類目錄

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CGMiner Setup Guide [2023]

CGMiner Setup Guide [2023]

CGMiner

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我的平衡

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Contents

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Setup

Command Line Arguments

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CGMiner Setup Guide

少于 1 分鐘讀完

在本頁上

You can use this list as a reference for all Launch Parameters supported by CGMiner.

You can download CGMiner 3.7.2 from here:

Download Now

Download (mirror)

CGMiner 有一個命令行界面。 對于最小配置,請?jiān)?.bat 文件中輸入:

CGMiner -a [挖礦算法] -o [礦池服務(wù)器] -u [用戶名或錢包地址]

例子:

cgminer -o http://pool:port -u wallet_address -p password

獲取錢包最簡單的方法是在 Huobi 或 Binance。

有關(guān)配置選項(xiàng)的完整列表,請運(yùn)行:

CGMiner --help

Linux:

Under Linux you need to replace cgminer.exe with ./cgminer in the command-line examples below.

The software supports the following algorithms:

Scrypt

SHA-256

NeoScrypt

CryptoNight

更新時間: 28.03.2023

Download now

Latest version is 3.7.2

File: *cgminer.exe,

SHA256: 417b22681a716e2481fde1fcaed96d66a5716a188186a4ae765d558d4a7ec2f5

Based on 3,400+ reviews

Download (windows)

Download (linux)

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Get started with CGMiner

Version: 3.7.2

File: *cgminer.exe,

SHA256: 417b22681a716e2481fde1fcaed96d66a5716a188186a4ae765d558d4a7ec2f5

(Down...

CGMiner: 變更日志和發(fā)行說明

少于 1 分鐘讀完

發(fā)行說明是隨軟件產(chǎn)品分發(fā)的文檔

CGMiner - 命令行參數(shù)和選項(xiàng)

少于 1 分鐘讀完

您必須優(yōu)化您的 cgminer.conf 和 cgminer.bat 文件,以生成特定硬件裝備支持的吞吐量和散列的最佳組合。

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CGMiner Community

irc

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Minerstat

SimpleMining OS

Note, when downloading the CGMiner, Windows may issue a warning, but if you used CGMiner download link you can ignore this.

Disclaimer: This isn't an official CGMiner's site. No binary files were affected.

All rights belong to their respective owners.

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? 2023 CGMiner.

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CGMiner - 命令行參數(shù)和選項(xiàng)

CGMiner - 命令行參數(shù)和選項(xiàng)

CGMiner

快速入門

我的平衡

Toggle search

切換菜單

en

ru

es

zh

Contents

Toggle menu

Setup

Command Line Arguments

Changelog

CGMiner - 命令行參數(shù)和選項(xiàng)

少于 1 分鐘讀完

在本頁上

下載地址

命令行參數(shù)

您必須優(yōu)化您的 cgminer.conf 和 cgminer.bat 文件,以生成特定硬件裝備支持的吞吐量和散列的最佳組合。

下載地址

從這里下載

命令行參數(shù)

更新時間: 04.02.2022

Download now

Latest version is 3.7.2

File: *cgminer.exe,

SHA256: 417b22681a716e2481fde1fcaed96d66a5716a188186a4ae765d558d4a7ec2f5

Based on 3,400+ reviews

Download (windows)

Download (linux)

猜您還喜歡

下載 CGMiner 3.7.2 - ASIC、GPU 和 FPGA 礦工 [2022]

少于 1 分鐘讀完

Get started with CGMiner

Version: 3.7.2

File: *cgminer.exe,

SHA256: 417b22681a716e2481fde1fcaed96d66a5716a188186a4ae765d558d4a7ec2f5

(Down...

CGMiner: 變更日志和發(fā)行說明

少于 1 分鐘讀完

發(fā)行說明是隨軟件產(chǎn)品分發(fā)的文檔

CGMiner Setup Guide [2023]

少于 1 分鐘讀完

You can use this list as a reference for all Launch Parameters supported by CGMiner.

分享

Twitter

Facebook

LinkedIn

向前

向后

CGMiner Community

irc

GitHub

Bitcointalk

Awesome Miner

Ethoprotocol

Hive OS

RaveOS

PiMP OS

Minerstat

SimpleMining OS

Note, when downloading the CGMiner, Windows may issue a warning, but if you used CGMiner download link you can ignore this.

Disclaimer: This isn't an official CGMiner's site. No binary files were affected.

All rights belong to their respective owners.

Back to top

? 2023 CGMiner.

About |

Russian version: Switch Language |

Cookie Policy |

Privacy Policy

Powered by

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